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Author SHA1 Message Date
Ian Romanick
9f4366f1ac !UPSTREAM: Make GL_STENCIL_INDEX exist again in ES2.
This lets gles2conform build since 88ec004.
2013-11-07 19:16:40 -08:00
7670 changed files with 464315 additions and 2090234 deletions

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@@ -1,66 +0,0 @@
goto %1
:install
rem Check pip
if "%buildsystem%" == "scons" (
python --version
python -m pip --version
rem Install Mako
python -m pip install Mako==1.0.7
rem Install pywin32 extensions, needed by SCons
python -m pip install pypiwin32
rem Install python wheels, necessary to install SCons via pip
python -m pip install wheel
rem Install SCons
python -m pip install scons==3.0.1
call scons --version
) else (
python --version
python -m pip install Mako==1.0.7 meson
meson --version
rem Install pkg-config, which meson requires even on windows
cinst -y pkgconfiglite
)
rem Install flex/bison
set WINFLEXBISON_ARCHIVE=win_flex_bison-%WINFLEXBISON_VERSION%.zip
if not exist "%WINFLEXBISON_ARCHIVE%" appveyor DownloadFile "https://github.com/lexxmark/winflexbison/releases/download/v%WINFLEXBISON_VERSION%/%WINFLEXBISON_ARCHIVE%"
7z x -y -owinflexbison\ "%WINFLEXBISON_ARCHIVE%" > nul
set Path=%CD%\winflexbison;%Path%
win_flex --version
win_bison --version
rem Download and extract LLVM
if not exist "%LLVM_ARCHIVE%" appveyor DownloadFile "https://people.freedesktop.org/~jrfonseca/llvm/%LLVM_ARCHIVE%"
7z x -y "%LLVM_ARCHIVE%" > nul
if "%buildsystem%" == "scons" (
mkdir llvm\bin
set LLVM=%CD%\llvm
) else (
move llvm subprojects\
copy .appveyor\llvm-wrap.meson subprojects\llvm\meson.build
)
goto :eof
:build_script
if "%buildsystem%" == "scons" (
call scons -j%NUMBER_OF_PROCESSORS% MSVC_VERSION=14.1 llvm=1
) else (
call "C:\Program Files (x86)\Microsoft Visual Studio\2017\Community\Common7\Tools\VsDevCmd.bat" -arch=x86
rem We use default-library as static to affect any wraps (such as expat and zlib)
rem it would be better if we could set subprojects buildtype independently,
rem but I haven't written that patch yet :)
call meson builddir --backend=vs2017 --default-library=static -Dbuild-tests=true -Db_vscrt=mtd --buildtype=release -Dllvm=true -Dgallium-drivers=swrast -Dosmesa=gallium
pushd builddir
call msbuild mesa.sln /m
popd
)
goto :eof
:test_script
if "%buildsystem%" == "scons" (
call scons -j%NUMBER_OF_PROCESSORS% MSVC_VERSION=14.1 llvm=1 check
) else (
call meson test -C builddir
)
goto :eof

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@@ -1,36 +0,0 @@
# A meson.build file for binary wrapping the LLVM used in the appvyeor CI
project('llvm', ['cpp'])
cpp = meson.get_compiler('cpp')
_deps = []
_search = join_paths(meson.current_source_dir(), 'lib')
foreach d : ['LLVMAnalysis', 'LLVMAsmParser', 'LLVMAsmPrinter',
'LLVMBinaryFormat', 'LLVMBitReader', 'LLVMBitWriter',
'LLVMCodeGen', 'LLVMCore', 'LLVMCoroutines', 'LLVMCoverage',
'LLVMDebugInfoCodeView', 'LLVMDebugInfoDWARF',
'LLVMDebugInfoMSF', 'LLVMDebugInfoPDB', 'LLVMDemangle',
'LLVMDlltoolDriver', 'LLVMExecutionEngine', 'LLVMGlobalISel',
'LLVMInstCombine', 'LLVMInstrumentation', 'LLVMInterpreter',
'LLVMipo', 'LLVMIRReader', 'LLVMLibDriver', 'LLVMLineEditor',
'LLVMLinker', 'LLVMLTO', 'LLVMMCDisassembler', 'LLVMMCJIT',
'LLVMMC', 'LLVMMCParser', 'LLVMMIRParser', 'LLVMObjCARCOpts',
'LLVMObject', 'LLVMObjectYAML', 'LLVMOption', 'LLVMOrcJIT',
'LLVMPasses', 'LLVMProfileData', 'LLVMRuntimeDyld',
'LLVMScalarOpts', 'LLVMSelectionDAG', 'LLVMSupport',
'LLVMSymbolize', 'LLVMTableGen', 'LLVMTarget',
'LLVMTransformUtils', 'LLVMVectorize', 'LLVMX86AsmParser',
'LLVMX86AsmPrinter', 'LLVMX86CodeGen', 'LLVMX86Desc',
'LLVMX86Disassembler', 'LLVMX86Info', 'LLVMX86Utils',
'LLVMXRay']
_deps += cpp.find_library(d, dirs : _search)
endforeach
dep_llvm = declare_dependency(
include_directories : include_directories('include'),
dependencies : _deps,
version : '5.0.1',
)
has_rtti = false
irbuilder_h = files('include/llvm/IR/IRBuilder.h')

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@@ -1,18 +1,11 @@
((nil . ((show-trailing-whitespace . t)))
(prog-mode
((nil
(indent-tabs-mode . nil)
(tab-width . 8)
(c-basic-offset . 3)
(c-file-style . "stroustrup")
(fill-column . 78)
(eval . (progn
(c-set-offset 'case-label '0)
(c-set-offset 'innamespace '0)
(c-set-offset 'inline-open '0)))
(whitespace-style face indentation)
(whitespace-line-column . 79)
(eval ignore-errors
(require 'whitespace)
(whitespace-mode 1)))
(makefile-mode (indent-tabs-mode . t))
)
)

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@@ -1,40 +0,0 @@
# To use this config on you editor, follow the instructions at:
# http://editorconfig.org
root = true
[*]
charset = utf-8
insert_final_newline = true
tab_width = 8
[*.{c,h,cpp,hpp,cc,hh}]
indent_style = space
indent_size = 3
max_line_length = 78
[{Makefile*,*.mk}]
indent_style = tab
[{*.py,SCons*}]
indent_style = space
indent_size = 4
[*.pl]
indent_style = space
indent_size = 4
[*.m4]
indent_style = space
indent_size = 2
[*.yml]
indent_style = space
indent_size = 2
[*.patch]
trim_trailing_whitespace = false
[{meson.build,meson_options.txt}]
indent_style = space
indent_size = 2

4
.gitattributes vendored Normal file
View File

@@ -0,0 +1,4 @@
*.dsp -crlf
*.dsw -crlf
*.sln -crlf
*.vcproj -crlf

44
.gitignore vendored
View File

@@ -1,4 +1,46 @@
*.a
*.dll
*.exe
*.ilk
*.la
*.lo
*.log
*.o
*.obj
*.os
*.pc
*.pdb
*.pyc
*.pyo
*.out
*.so
*.so.*
*.sw[a-z]
*.tar
*.tar.bz2
*.tar.gz
*.trs
*.zip
*~
depend
depend.bak
bin/ltmain.sh
lib
lib64
configure
configure.lineno
autom4te.cache
aclocal.m4
config.log
config.status
cscope*
.scon*
config.py
build
libtool
manifest.txt
.dir-locals.el
.deps/
.dirstamp
.libs/
Makefile
Makefile.in

View File

@@ -1,532 +0,0 @@
# This is the tag of the docker image used for the build jobs. If the
# image doesn't exist yet, the containers stage generates it.
#
# In order to generate a new image, one should generally change the tag.
# While removing the image from the registry would also work, that's not
# recommended except for ephemeral images during development: Replacing
# an image after a significant amount of time might pull in newer
# versions of gcc/clang or other packages, which might break the build
# with older commits using the same tag.
#
# After merging a change resulting in generating a new image to the
# main repository, it's recommended to remove the image from the source
# repository's container registry, so that the image from the main
# repository's registry will be used there as well.
variables:
UPSTREAM_REPO: mesa/mesa
DEBIAN_TAG: "2019-10-29"
DEBIAN_ARM64_TAG: "arm64v8-2019-10-23"
STRETCH_TAG: "2019-09-18"
DEBIAN_VERSION: buster-slim
STRETCH_VERSION: stretch-slim
DEBIAN_IMAGE: "$CI_REGISTRY_IMAGE/debian/$DEBIAN_VERSION:$DEBIAN_TAG"
DEBIAN_ARM64_IMAGE: "$CI_REGISTRY_IMAGE/debian/$DEBIAN_VERSION:$DEBIAN_ARM64_TAG"
STRETCH_IMAGE: "$CI_REGISTRY_IMAGE/debian/$STRETCH_VERSION:$STRETCH_TAG"
include:
- project: 'wayland/ci-templates'
ref: b7030c2cd0d6ccc5f6d4f8299bafa4daa9240d71
file: '/templates/debian.yml'
include:
- local: '.gitlab-ci/lava-gitlab-ci.yml'
stages:
- container
- build
- test
# When to automatically run the CI
.ci-run-policy:
only:
refs:
- branches@mesa/mesa
- merge_requests
- /^ci([-/].*)?$/
changes:
- VERSION
- bin/**/*
# GitLab CI
- .gitlab-ci.yml
- .gitlab-ci/**/*
# Meson
- meson*
- build-support/**/*
- subprojects/**/*
# SCons
- SConstruct
- scons/**/*
- common.py
# Source code
- include/**/*
- src/**/*
retry:
max: 2
when:
- runner_system_failure
.ci-deqp-artifacts:
artifacts:
when: always
untracked: false
paths:
# Watch out! Artifacts are relative to the build dir.
# https://gitlab.com/gitlab-org/gitlab-ce/commit/8788fb925706cad594adf6917a6c5f6587dd1521
- artifacts
# Build the normal CI native and cross-build docker images.
.container:
stage: container
extends:
- .ci-run-policy
variables:
# no need to pull the whole repo to build the container image
GIT_STRATEGY: none
debian-10:amd64:
extends:
- .debian@container-ifnot-exists
- .container
variables:
DEBIAN_EXEC: 'bash .gitlab-ci/debian-install.sh'
.use-debian-10:amd64:
image: $DEBIAN_IMAGE
needs:
- debian-10:amd64
debian-9:amd64:
extends: debian-10:amd64
variables:
DEBIAN_TAG: $STRETCH_TAG
DEBIAN_VERSION: $STRETCH_VERSION
DEBIAN_IMAGE: $STRETCH_IMAGE
DEBIAN_EXEC: 'bash .gitlab-ci/debian-stretch-install.sh'
.use-debian-9:amd64:
image: $STRETCH_IMAGE
needs:
- debian-9:amd64
debian-10:arm64:
extends:
- .debian@container-ifnot-exists@arm64v8
- .container
variables:
DEBIAN_TAG: "$DEBIAN_ARM64_TAG"
DEBIAN_EXEC: 'bash .gitlab-ci/debian-arm64-install.sh'
# BUILD
# Shared between windows and Linux
.build-common:
extends: .ci-run-policy
stage: build
artifacts:
when: always
paths:
- _build/meson-logs/*.txt
# scons:
- build/*/config.log
- shader-db
# Just Linux
.build-linux:
extends: .build-common
cache:
key: ${CI_JOB_NAME}
paths:
- ccache
variables:
CCACHE_COMPILERCHECK: "content"
# Use ccache transparently, and print stats before/after
before_script:
- export PATH="/usr/lib/ccache:$PATH"
- export CCACHE_BASEDIR="$PWD"
- export CCACHE_DIR="$PWD/ccache"
- ccache --max-size=1500M
- ccache --zero-stats || true
- ccache --show-stats || true
after_script:
# In case the install dir is being saved as artifacts, tar it up
# so that symlinks and hardlinks aren't each packed separately in
# the zip file.
- if [ -d install ]; then
tar -cf artifacts/install.tar install;
fi
- export CCACHE_DIR="$PWD/ccache"
- ccache --show-stats
.build-windows:
extends: .build-common
tags:
- mesa-windows
cache:
key: ${CI_JOB_NAME}
paths:
- subprojects/packagecache
.meson-build:
extends:
- .build-linux
- .use-debian-10:amd64
script:
- .gitlab-ci/meson-build.sh
.scons-build:
extends:
- .build-linux
- .use-debian-10:amd64
variables:
SCONSFLAGS: "-j4"
script:
- .gitlab-ci/scons-build.sh
meson-main:
extends:
- .meson-build
- .ci-deqp-artifacts
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glx=dri
-D gbm=true
-D egl=true
-D platforms=x11,wayland,drm,surfaceless
DRI_DRIVERS: "i915,i965,r100,r200,nouveau"
GALLIUM_ST: >
-D dri3=true
-D gallium-extra-hud=true
-D gallium-vdpau=true
-D gallium-xvmc=true
-D gallium-omx=bellagio
-D gallium-va=true
-D gallium-xa=true
-D gallium-nine=true
-D gallium-opencl=disabled
GALLIUM_DRIVERS: "iris,nouveau,kmsro,r300,r600,freedreno,swrast,svga,v3d,vc4,virgl,etnaviv,panfrost,lima,zink"
LLVM_VERSION: "7"
EXTRA_OPTION: >
-D osmesa=gallium
-D tools=all
MESON_SHADERDB: "true"
BUILDTYPE: "debugoptimized"
.meson-cross:
extends:
- .meson-build
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D gbm=false
-D egl=true
-D platforms=surfaceless
-D osmesa=none
GALLIUM_ST: >
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
.meson-arm:
extends: .meson-cross
image: $DEBIAN_ARM64_IMAGE
variables:
VULKAN_DRIVERS: freedreno
GALLIUM_DRIVERS: "etnaviv,freedreno,kmsro,lima,nouveau,panfrost,swrast,tegra,v3d,vc4"
EXTRA_OPTION: >
-D I-love-half-baked-turnips=true
needs:
- debian-10:arm64
tags:
- aarch64
meson-armhf:
extends: .meson-arm
variables:
CROSS: armhf
LLVM_VERSION: "7"
meson-arm64:
extends:
- .meson-arm
- .ci-deqp-artifacts
variables:
BUILDTYPE: "debugoptimized"
# NOTE: Building SWR is 2x (yes two) times slower than all the other
# gallium drivers combined.
# Start this early so that it doesn't limit the total run time.
#
# We also stick the glvnd build here, since we want non-glvnd in
# meson-main for actual driver CI.
meson-swr-glvnd:
extends: .meson-build
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glvnd=true
-D egl=true
GALLIUM_ST: >
-D dri3=true
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=disabled
GALLIUM_DRIVERS: "swr,iris"
LLVM_VERSION: "6.0"
meson-clang:
extends: .meson-build
variables:
UNWIND: "true"
DRI_DRIVERS: "auto"
GALLIUM_DRIVERS: "auto"
VULKAN_DRIVERS: intel,amd,freedreno
CC: "ccache clang-8"
CXX: "ccache clang++-8"
.meson-windows:
extends:
- .build-windows
before_script:
- $ENV:ARCH = "x86"
- $ENV:VERSION = "2019\Community"
script:
- cmd /C .gitlab-ci\meson-build.bat
scons-swr:
extends: .scons-build
variables:
SCONS_TARGET: "swr=1"
SCONS_CHECK_COMMAND: "true"
LLVM_VERSION: "6.0"
scons-win64:
extends: .scons-build
variables:
SCONS_TARGET: platform=windows machine=x86_64
SCONS_CHECK_COMMAND: "true"
meson-clover:
extends: .meson-build
variables:
UNWIND: "true"
DRI_LOADERS: >
-D glx=disabled
-D egl=false
-D gbm=false
GALLIUM_ST: >
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=icd
script:
- export GALLIUM_DRIVERS="r600,radeonsi"
- .gitlab-ci/meson-build.sh
- LLVM_VERSION=8 .gitlab-ci/meson-build.sh
- export GALLIUM_DRIVERS="i915,r600"
- LLVM_VERSION=6.0 .gitlab-ci/meson-build.sh
- LLVM_VERSION=7 .gitlab-ci/meson-build.sh
meson-clover-old-llvm:
extends:
- meson-clover
- .use-debian-9:amd64
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D egl=false
-D gbm=false
-D platforms=drm,surfaceless
GALLIUM_DRIVERS: "i915,r600"
script:
- LLVM_VERSION=3.9 .gitlab-ci/meson-build.sh
- LLVM_VERSION=4.0 .gitlab-ci/meson-build.sh
- LLVM_VERSION=5.0 .gitlab-ci/meson-build.sh
meson-vulkan:
extends: .meson-build
variables:
UNWIND: "false"
DRI_LOADERS: >
-D glx=disabled
-D gbm=false
-D egl=false
-D platforms=x11,wayland,drm
-D osmesa=none
GALLIUM_ST: >
-D dri3=true
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D gallium-opencl=disabled
-D b_sanitize=undefined
-D c_args=-fno-sanitize-recover=all
-D cpp_args=-fno-sanitize-recover=all
UBSAN_OPTIONS: "print_stacktrace=1"
VULKAN_DRIVERS: intel,amd,freedreno
LLVM_VERSION: "8"
EXTRA_OPTION: >
-D vulkan-overlay-layer=true
# While the main point of this build is testing the i386 cross build,
# we also use this one to test some other options that are exclusive
# with meson-main's choices (classic swrast and osmesa)
meson-i386:
extends: .meson-cross
variables:
CROSS: i386
VULKAN_DRIVERS: intel
DRI_DRIVERS: "swrast"
GALLIUM_DRIVERS: "iris"
EXTRA_OPTION: >
-D vulkan-overlay-layer=true
-D llvm=false
-D osmesa=classic
meson-mingw32-x86_64:
extends: .meson-build
variables:
UNWIND: "false"
DRI_DRIVERS: ""
GALLIUM_DRIVERS: "swrast"
EXTRA_OPTION: >
-Dllvm=false
-Dosmesa=gallium
--cross-file=.gitlab-ci/x86_64-w64-mingw32
scons:
extends: .scons-build
variables:
SCONS_TARGET: "llvm=1"
SCONS_CHECK_COMMAND: "scons llvm=1 force_scons=1 check"
script:
- SCONS_TARGET="" SCONS_CHECK_COMMAND="scons check force_scons=1" .gitlab-ci/scons-build.sh
- LLVM_VERSION=6.0 .gitlab-ci/scons-build.sh
- LLVM_VERSION=7 .gitlab-ci/scons-build.sh
- LLVM_VERSION=8 .gitlab-ci/scons-build.sh
scons-old-llvm:
extends:
- scons
- .use-debian-9:amd64
script:
- LLVM_VERSION=3.9 .gitlab-ci/scons-build.sh
- LLVM_VERSION=4.0 .gitlab-ci/scons-build.sh
- LLVM_VERSION=5.0 .gitlab-ci/scons-build.sh
.test:
extends: .ci-run-policy
stage: test
variables:
GIT_STRATEGY: none # testing doesn't build anything from source
.deqp-test:
extends:
- .test
- .use-debian-10:amd64
variables:
DEQP_SKIPS: deqp-default-skips.txt
script:
# Note: Build dir (and thus install) may be dirty due to GIT_STRATEGY
- rm -rf install
- tar -xf artifacts/install.tar
- ./artifacts/deqp-runner.sh
artifacts:
when: on_failure
name: "$CI_JOB_NAME-$CI_COMMIT_REF_NAME"
paths:
- results/
dependencies:
- meson-main
needs:
- meson-main
- debian-10:amd64
test-llvmpipe-gles2:
parallel: 4
variables:
DEQP_VER: gles2
DEQP_EXPECTED_FAILS: deqp-llvmpipe-fails.txt
LIBGL_ALWAYS_SOFTWARE: "true"
DEQP_RENDERER_MATCH: "llvmpipe"
extends: .deqp-test
test-softpipe-gles2:
extends: test-llvmpipe-gles2
variables:
DEQP_EXPECTED_FAILS: deqp-softpipe-fails.txt
DEQP_RENDERER_MATCH: "softpipe"
GALLIUM_DRIVER: "softpipe"
# The GLES2 CTS run takes about 8 minutes of CPU time, while GLES3 is
# 25 minutes. Until we can get its runtime down, just do a partial
# (every 10 tests) run.
test-softpipe-gles3-limited:
variables:
DEQP_VER: gles3
DEQP_EXPECTED_FAILS: deqp-softpipe-fails.txt
LIBGL_ALWAYS_SOFTWARE: "true"
DEQP_RENDERER_MATCH: "softpipe"
GALLIUM_DRIVER: "softpipe"
CI_NODE_INDEX: 1
CI_NODE_TOTAL: 10
extends: .deqp-test
arm64_a630_gles2:
extends: .deqp-test
image: $DEBIAN_ARM64_IMAGE
variables:
DEQP_VER: gles2
DEQP_RENDERER_MATCH: "FD630"
DEQP_EXPECTED_FAILS: deqp-freedreno-a630-fails.txt
DEQP_SKIPS: deqp-freedreno-a630-skips.txt
NIR_VALIDATE: 0
tags:
- mesa-cheza
dependencies:
- meson-arm64
needs:
- meson-arm64
- debian-10:arm64
arm64_a630_gles31:
extends: arm64_a630_gles2
parallel: 4
variables:
DEQP_VER: gles31
arm64_a630_gles3:
parallel: 6
extends: arm64_a630_gles2
variables:
DEQP_VER: gles3
arm64_a306_gles2:
parallel: 4
extends: arm64_a630_gles2
variables:
DEQP_EXPECTED_FAILS: deqp-freedreno-a307-fails.txt
DEQP_SKIPS: deqp-default-skips.txt
DEQP_RENDERER_MATCH: "FD307"
tags:
- db410c

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@@ -1,122 +0,0 @@
## Mesa testing using gitlab-runner
The goal of the "test" stage of the .gitlab-ci.yml is to do pre-merge
testing of Mesa drivers on various platforms, so that we can ensure no
regressions are merged, as long as developers are merging code using
the "Merge when pipeline completes" button.
This document only covers the CI from .gitlab-ci.yml and this
directory. For other CI systems, see Intel's [Mesa
CI](https://gitlab.freedesktop.org/Mesa_CI) or panfrost's LAVA-based
CI (`src/gallium/drivers/panfrost/ci/`)
### Software architecture
For freedreno and llvmpipe CI, we're using gitlab-runner on the test
devices (DUTs), cached docker containers with VK-GL-CTS, and the
normal shared x86_64 runners to build the Mesa drivers to be run
inside of those containers on the DUTs.
The docker containers are rebuilt from the debian-install.sh script
when DEBIAN\_TAG is changed in .gitlab-ci.yml, and
debian-test-install.sh when DEBIAN\_ARM64\_TAG is changed in
.gitlab-ci.yml. The resulting images are around 500MB, and are
expected to change approximately weekly (though an individual
developer working on them may produce many more images while trying to
come up with a working MR!).
gitlab-runner is a client that polls gitlab.freedesktop.org for
available jobs, with no inbound networking requirements. Jobs can
have tags, so we can have DUT-specific jobs that only run on runners
with that tag marked in the gitlab UI.
Since dEQP takes a long time to run, we mark the job as "parallel" at
some level, which spawns multiple jobs from one definition, and then
deqp-runner.sh takes the corresponding fraction of the test list for
that job.
To reduce dEQP runtime (or avoid tests with unreliable results), a
deqp-runner.sh invocation can provide a list of tests to skip. If
your driver is not yet conformant, you can pass a list of expected
failures, and the job will only fail on tests that aren't listed (look
at the job's log for which specific tests failed).
### DUT requirements
#### DUTs must have a stable kernel and GPU reset.
If the system goes down during a test run, that job will eventually
time out and fail (default 1 hour). However, if the kernel can't
reliably reset the GPU on failure, bugs in one MR may leak into
spurious failures in another MR. This would be an unacceptable impact
on Mesa developers working on other drivers.
#### DUTs must be able to run docker
The Mesa gitlab-runner based test architecture is built around docker,
so that we can cache the debian package installation and CTS build
step across multiple test runs. Since the images are large and change
approximately weekly, the DUTs also need to be running some script to
prune stale docker images periodically in order to not run out of disk
space as we rev those containers (perhaps [this
script](https://gitlab.com/gitlab-org/gitlab-runner/issues/2980#note_169233611)).
Note that docker doesn't allow containers to be stored on NFS, and
doesn't allow multiple docker daemons to interact with the same
network block device, so you will probably need some sort of physical
storage on your DUTs.
#### DUTs must be public
By including your device in .gitlab-ci.yml, you're effectively letting
anyone on the internet run code on your device. docker containers may
provide some limited protection, but how much you trust that and what
you do to mitigate hostile access is up to you.
#### DUTs must expose the dri device nodes to the containers.
Obviously, to get access to the HW, we need to pass the render node
through. This is done by adding `devices = ["/dev/dri"]` to the
`runners.docker` section of /etc/gitlab-runner/config.toml.
### HW CI farm expectations
To make sure that testing of one vendor's drivers doesn't block
unrelated work by other vendors, we require that a given driver's test
farm produces a spurious failure no more than once a week. If every
driver had CI and failed once a week, we would be seeing someone's
code getting blocked on a spurious failure daily, which is an
unacceptable cost to the project.
Additionally, the test farm needs to be able to provide a short enough
turnaround time that people can regularly use the "Merge when pipeline
succeeds" button successfully (until we get
[marge-bot](https://github.com/smarkets/marge-bot) in place on
freedesktop.org). As a result, we require that the test farm be able
to handle a whole pipeline's worth of jobs in less than 5 minutes (to
compare, the build stage is about 10 minutes, if you could get all
your jobs scheduled on the shared runners in time.).
If a test farm is short the HW to provide these guarantees, consider
dropping tests to reduce runtime.
`VK-GL-CTS/scripts/log/bottleneck_report.py` can help you find what
tests were slow in a `results.qpa` file. Or, you can have a job with
no `parallel` field set and:
```
variables:
CI_NODE_INDEX: 1
CI_NODE_TOTAL: 10
```
to just run 1/10th of the test list.
If a HW CI farm goes offline (network dies and all CI pipelines end up
stalled) or its runners are consistenly spuriously failing (disk
full?), and the maintainer is not immediately available to fix the
issue, please push through an MR disabling that farm's jobs by adding
'.' to the front of the jobs names until the maintainer can bring
things back up. If this happens, the farm maintainer should provide a
report to mesa-dev@lists.freedesktop.org after the fact explaining
what happened and what the mitigation plan is for that failure next
time.

View File

@@ -1,46 +0,0 @@
CONFIG_LOCALVERSION="ccu"
CONFIG_DEBUG_KERNEL=y
CONFIG_DEVFREQ_GOV_PERFORMANCE=y
CONFIG_DEVFREQ_GOV_POWERSAVE=y
CONFIG_DEVFREQ_GOV_USERSPACE=y
CONFIG_DEVFREQ_GOV_PASSIVE=y
CONFIG_DEVFREQ_GOV_SIMPLE_ONDEMAND=y
CONFIG_DRM=y
CONFIG_DRM_ROCKCHIP=y
CONFIG_DRM_PANFROST=y
CONFIG_DRM_LIMA=y
CONFIG_DRM_PANEL_SIMPLE=y
CONFIG_PWM_CROS_EC=y
CONFIG_BACKLIGHT_PWM=y
CONFIG_ROCKCHIP_CDN_DP=n
CONFIG_SPI_ROCKCHIP=y
CONFIG_PWM_ROCKCHIP=y
CONFIG_PHY_ROCKCHIP_DP=y
CONFIG_DWMAC_ROCKCHIP=y
CONFIG_MFD_RK808=y
CONFIG_REGULATOR_RK808=y
CONFIG_RTC_DRV_RK808=y
CONFIG_COMMON_CLK_RK808=y
CONFIG_REGULATOR_FAN53555=y
CONFIG_REGULATOR=y
CONFIG_REGULATOR_VCTRL=y
CONFIG_KASAN=n
CONFIG_KASAN_INLINE=n
CONFIG_STACKTRACE=n
CONFIG_TMPFS=y
CONFIG_PROVE_LOCKING=n
CONFIG_DEBUG_LOCKDEP=n
CONFIG_SOFTLOCKUP_DETECTOR=n
CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=n

View File

@@ -1,84 +0,0 @@
CONFIG_LOCALVERSION="ccu"
CONFIG_DEBUG_KERNEL=y
CONFIG_DEVFREQ_GOV_PERFORMANCE=y
CONFIG_DEVFREQ_GOV_POWERSAVE=y
CONFIG_DEVFREQ_GOV_USERSPACE=y
CONFIG_DEVFREQ_GOV_PASSIVE=y
CONFIG_DRM=y
CONFIG_DRM_ROCKCHIP=y
CONFIG_DRM_PANFROST=y
CONFIG_DRM_LIMA=y
CONFIG_DRM_PANEL_SIMPLE=y
CONFIG_PWM_CROS_EC=y
CONFIG_BACKLIGHT_PWM=y
CONFIG_ROCKCHIP_CDN_DP=n
CONFIG_SPI_ROCKCHIP=y
CONFIG_PWM_ROCKCHIP=y
CONFIG_PHY_ROCKCHIP_DP=y
CONFIG_DWMAC_ROCKCHIP=y
CONFIG_STMMAC_ETH=y
CONFIG_TYPEC_FUSB302=y
CONFIG_TYPEC=y
CONFIG_TYPEC_TCPM=y
CONFIG_ARCH_SUNXI=n
CONFIG_ARCH_ALPINE=n
CONFIG_ARCH_BCM2835=n
CONFIG_ARCH_BCM_IPROC=n
CONFIG_ARCH_BERLIN=n
CONFIG_ARCH_BRCMSTB=n
CONFIG_ARCH_EXYNOS=n
CONFIG_ARCH_K3=n
CONFIG_ARCH_LAYERSCAPE=n
CONFIG_ARCH_LG1K=n
CONFIG_ARCH_HISI=n
CONFIG_ARCH_MEDIATEK=n
CONFIG_ARCH_MVEBU=n
CONFIG_ARCH_QCOM=n
CONFIG_ARCH_SEATTLE=n
CONFIG_ARCH_SYNQUACER=n
CONFIG_ARCH_RENESAS=n
CONFIG_ARCH_R8A774A1=n
CONFIG_ARCH_R8A774C0=n
CONFIG_ARCH_R8A7795=n
CONFIG_ARCH_R8A7796=n
CONFIG_ARCH_R8A77965=n
CONFIG_ARCH_R8A77970=n
CONFIG_ARCH_R8A77980=n
CONFIG_ARCH_R8A77990=n
CONFIG_ARCH_R8A77995=n
CONFIG_ARCH_STRATIX10=n
CONFIG_ARCH_TEGRA=n
CONFIG_ARCH_SPRD=n
CONFIG_ARCH_THUNDER=n
CONFIG_ARCH_THUNDER2=n
CONFIG_ARCH_UNIPHIER=n
CONFIG_ARCH_VEXPRESS=n
CONFIG_ARCH_XGENE=n
CONFIG_ARCH_ZX=n
CONFIG_ARCH_ZYNQMP=n
CONFIG_ACPI=n
CONFIG_REGULATOR_FAN53555=y
CONFIG_REGULATOR=y
CONFIG_REGULATOR_VCTRL=y
CONFIG_KASAN=n
CONFIG_KASAN_INLINE=n
CONFIG_STACKTRACE=n
CONFIG_TMPFS=y
CONFIG_PROVE_LOCKING=n
CONFIG_DEBUG_LOCKDEP=n
CONFIG_SOFTLOCKUP_DETECTOR=y
CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=y
CONFIG_DETECT_HUNG_TASK=y

View File

@@ -1,185 +0,0 @@
#!/bin/sh
set -ex
apt-get -y install --no-install-recommends initramfs-tools libpng16-16 strace libsensors5 libexpat1 libdrm2
passwd root -d
chsh -s /bin/sh
ln -s /bin/sh /init
#######################################################################
# Strip the image to a small minimal system without removing the debian
# toolchain.
# Copy timezone file and remove tzdata package
rm -rf /etc/localtime
cp /usr/share/zoneinfo/Etc/UTC /etc/localtime
UNNEEDED_PACKAGES="libfdisk1
tzdata
diffutils"
export DEBIAN_FRONTEND=noninteractive
# Removing unused packages
for PACKAGE in ${UNNEEDED_PACKAGES}
do
echo ${PACKAGE}
if ! apt-get remove --purge --yes "${PACKAGE}"
then
echo "WARNING: ${PACKAGE} isn't installed"
fi
done
apt-get autoremove --yes || true
# Dropping logs
rm -rf /var/log/*
# Dropping documentation, localization, i18n files, etc
rm -rf /usr/share/doc/*
rm -rf /usr/share/locale/*
rm -rf /usr/share/man
rm -rf /usr/share/i18n/*
rm -rf /usr/share/info/*
rm -rf /usr/share/lintian/*
rm -rf /usr/share/common-licenses/*
rm -rf /usr/share/mime/*
# Dropping reportbug scripts
rm -rf /usr/share/bug
# Drop udev hwdb not required on a stripped system
rm -rf /lib/udev/hwdb.bin /lib/udev/hwdb.d/*
# Drop all gconv conversions && binaries
rm -rf usr/bin/iconv
rm -rf usr/sbin/iconvconfig
rm -rf usr/lib/*/gconv/
# Remove libusb database
rm -rf usr/sbin/update-usbids
rm -rf var/lib/usbutils/usb.ids
rm -rf usr/share/misc/usb.ids
#######################################################################
# Crush into a minimal production image to be deployed via some type of image
# updating system.
# IMPORTANT: The Debian system is not longer functional at this point,
# for example, apt and dpkg will stop working
UNNEEDED_PACKAGES="apt libapt-pkg5.0 "\
"ncurses-bin ncurses-base libncursesw5 libncurses5 "\
"perl-base "\
"debconf libdebconfclient0 "\
"e2fsprogs e2fslibs libfdisk1 "\
"insserv "\
"udev "\
"init-system-helpers "\
"bash "\
"cpio "\
"passwd "\
"libsemanage1 libsemanage-common "\
"libsepol1 "\
"gzip "\
"gnupg "\
"gpgv "\
"hostname "\
"adduser "\
"debian-archive-keyring "\
"libgl1 libgl1-mesa-dri libglapi-mesa libglvnd0 libglx-mesa0 libegl-mesa0 libgles2 "\
"libllvm7 "\
"libx11-data libthai-data "\
"systemd dbus "\
# Removing unneeded packages
for PACKAGE in ${UNNEEDED_PACKAGES}
do
echo "Forcing removal of ${PACKAGE}"
if ! dpkg --purge --force-remove-essential --force-depends "${PACKAGE}"
then
echo "WARNING: ${PACKAGE} isn't installed"
fi
done
# Show what's left package-wise before dropping dpkg itself
COLUMNS=300 dpkg-query -W --showformat='${Installed-Size;10}\t${Package}\n' | sort -k1,1n
# Drop dpkg
dpkg --purge --force-remove-essential --force-depends dpkg
# No apt or dpkg, no need for its configuration archives
rm -rf etc/apt
rm -rf etc/dpkg
# Drop directories not part of ostree
# Note that /var needs to exist as ostree bind mounts the deployment /var over
# it
rm -rf var/* opt srv share
# ca-certificates are in /etc drop the source
rm -rf usr/share/ca-certificates
# No bash, no need for completions
rm -rf usr/share/bash-completion
# No zsh, no need for comletions
rm -rf usr/share/zsh/vendor-completions
# drop gcc-6 python helpers
rm -rf usr/share/gcc-6
# Drop sysvinit leftovers
rm -rf etc/init.d
rm -rf etc/rc[0-6S].d
# Drop upstart helpers
rm -rf etc/init
# Various xtables helpers
rm -rf usr/lib/xtables
# Drop all locales
# TODO: only remaining locale is actually "C". Should we really remove it?
rm -rf usr/lib/locale/*
# partition helpers
rm usr/sbin/*fdisk
# local compiler
rm usr/bin/localedef
# Systemd dns resolver
find usr etc -name '*systemd-resolve*' -prune -exec rm -r {} \;
# Systemd network configuration
find usr etc -name '*networkd*' -prune -exec rm -r {} \;
# systemd ntp client
find usr etc -name '*timesyncd*' -prune -exec rm -r {} \;
# systemd hw database manager
find usr etc -name '*systemd-hwdb*' -prune -exec rm -r {} \;
# No need for fuse
find usr etc -name '*fuse*' -prune -exec rm -r {} \;
# lsb init function leftovers
rm -rf usr/lib/lsb
# Only needed when adding libraries
rm usr/sbin/ldconfig*
# Games, unused
rmdir usr/games
# Remove pam module to authenticate against a DB
# plus libdb-5.3.so that is only used by this pam module
rm usr/lib/*/security/pam_userdb.so
rm usr/lib/*/libdb-5.3.so
# remove NSS support for nis, nisplus and hesiod
rm usr/lib/*/libnss_hesiod*
rm usr/lib/*/libnss_nis*
rm bin/tar

View File

@@ -1 +0,0 @@
u_format_test

View File

@@ -1,121 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
############### Install packages for building
apt-get -y install ca-certificates
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian buster-backports main' >/etc/apt/sources.list.d/backports.list
dpkg --add-architecture armhf
apt-get update
apt-get -y install \
bc \
bison \
bzip2 \
ccache \
cmake \
crossbuild-essential-armhf \
curl \
flex \
g++ \
gettext \
git \
libdrm-dev \
libdrm-dev:armhf \
libelf-dev \
libelf-dev:armhf \
libexpat1-dev \
libexpat1-dev:armhf \
libgbm-dev \
libgles2-mesa-dev \
libpng-dev \
libssl-dev \
llvm-7-dev:armhf \
llvm-8-dev \
meson \
ninja-build \
pkg-config \
procps \
python \
python3-mako \
wget \
zlib1g-dev
############### Generate cross build file for Meson
cross_file="/cross_file-armhf.txt"
/usr/share/meson/debcrossgen --arch armhf -o "$cross_file"
# Explicitly set ccache path for cross compilers
sed -i "s|/usr/bin/\([^-]*\)-linux-gnu\([^-]*\)-g|/usr/lib/ccache/\\1-linux-gnu\\2-g|g" "$cross_file"
# Don't need wrapper for armhf executables
sed -i -e '/\[properties\]/a\' -e "needs_exe_wrapper = False" "$cross_file"
export LIBDRM_VERSION=libdrm-2.4.99
############### Build libdrm
wget https://dri.freedesktop.org/libdrm/$LIBDRM_VERSION.tar.bz2
tar -xvf $LIBDRM_VERSION.tar.bz2 && rm $LIBDRM_VERSION.tar.bz2
cd $LIBDRM_VERSION; meson build/ -Detnaviv=true; ninja -C build/ install; cd ..
rm -rf $LIBDRM_VERSION
############### Build dEQP
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
# --insecure is due to SSL cert failures hitting sourceforge for zlib and
# libpng (sigh). The archives get their checksums checked anyway, and git
# always goes through ssh or https.
python3 external/fetch_sources.py --insecure
mkdir -p /deqp
cd /deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
/VK-GL-CTS
ninja
# Copy out the mustpass lists we want from a bunch of other junk.
mkdir /deqp/mustpass
for gles in gles2 gles3 gles31; do
cp \
/deqp/external/openglcts/modules/gl_cts/data/mustpass/gles/aosp_mustpass/3.2.5.x/$gles-master.txt \
/deqp/mustpass/$gles-master.txt
done
rm -rf /deqp/external
rm -rf /deqp/modules/internal
rm -rf /deqp/executor
rm -rf /deqp/execserver
rm -rf /deqp/modules/egl
rm -rf /deqp/framework
du -sh *
rm -rf /VK-GL-CTS
############### Uninstall the build software
apt-get purge -y \
cmake \
git \
libgbm-dev \
libgles2-mesa-dev \
wget
apt-get autoremove -y --purge

View File

@@ -1,285 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
export DEBIAN_FRONTEND=noninteractive
CROSS_ARCHITECTURES="i386"
for arch in $CROSS_ARCHITECTURES; do
dpkg --add-architecture $arch
done
apt-get install -y \
ca-certificates \
wget \
unzip
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian buster-backports main' >/etc/apt/sources.list.d/backports.list
apt-get update
# Use newer packages from backports by default
cat >/etc/apt/preferences <<EOF
Package: *
Pin: release a=buster-backports
Pin-Priority: 500
EOF
apt-get dist-upgrade -y
apt-get install -y --no-remove \
llvm-6.0-dev \
libclang-6.0-dev \
llvm-7-dev \
libclang-7-dev \
llvm-8-dev \
libclang-8-dev \
g++ \
clang-8 \
git \
bzip2 \
zlib1g-dev \
pkg-config \
libxrender-dev \
libxdamage-dev \
libxxf86vm-dev \
gcc \
git \
libepoxy-dev \
libegl1-mesa-dev \
libgbm-dev \
libclc-dev \
libxvmc-dev \
libomxil-bellagio-dev \
xz-utils \
libexpat1-dev \
libx11-xcb-dev \
libelf-dev \
libunwind-dev \
libglvnd-dev \
libgtk-3-dev \
libpng-dev \
libgbm-dev \
libgles2-mesa-dev \
libvulkan-dev \
python-mako \
python3-mako \
bison \
flex \
gettext \
cmake \
meson \
scons
# Cross-build Mesa deps
for arch in $CROSS_ARCHITECTURES; do
apt-get install -y --no-remove \
libdrm-dev:${arch} \
libexpat1-dev:${arch} \
libelf-dev:${arch} \
crossbuild-essential-${arch}
done
# for 64bit windows cross-builds
apt-get install -y --no-remove \
mingw-w64 \
libz-mingw-w64-dev \
wine \
wine32 \
wine64
# Debian's pkg-config wrapers for mingw are broken, and there's no sign that
# they're going to be fixed, so we'll just have to fix it ourselves
# https://bugs.debian.org/cgi-bin/bugreport.cgi?bug=930492
cat >/usr/local/bin/x86_64-w64-mingw32-pkg-config <<EOF
#!/bin/sh
PKG_CONFIG_LIBDIR=/usr/x86_64-w64-mingw32/lib/pkgconfig pkg-config \$@
EOF
chmod +x /usr/local/bin/x86_64-w64-mingw32-pkg-config
# for the vulkan overlay layer
wget https://github.com/KhronosGroup/glslang/releases/download/master-tot/glslang-master-linux-Release.zip
unzip glslang-master-linux-Release.zip bin/glslangValidator
install -m755 bin/glslangValidator /usr/local/bin/
rm bin/glslangValidator glslang-master-linux-Release.zip
# dependencies where we want a specific version
export XORG_RELEASES=https://xorg.freedesktop.org/releases/individual
export XCB_RELEASES=https://xcb.freedesktop.org/dist
export WAYLAND_RELEASES=https://wayland.freedesktop.org/releases
export XORGMACROS_VERSION=util-macros-1.19.0
export GLPROTO_VERSION=glproto-1.4.17
export DRI2PROTO_VERSION=dri2proto-2.8
export LIBPCIACCESS_VERSION=libpciaccess-0.13.4
export LIBDRM_VERSION=libdrm-2.4.100
export XCBPROTO_VERSION=xcb-proto-1.13
export RANDRPROTO_VERSION=randrproto-1.5.0
export LIBXRANDR_VERSION=libXrandr-1.5.0
export LIBXCB_VERSION=libxcb-1.13
export LIBXSHMFENCE_VERSION=libxshmfence-1.3
export LIBVDPAU_VERSION=libvdpau-1.1
export LIBVA_VERSION=libva-1.7.0
export LIBWAYLAND_VERSION=wayland-1.15.0
export WAYLAND_PROTOCOLS_VERSION=wayland-protocols-1.12
wget $XORG_RELEASES/util/$XORGMACROS_VERSION.tar.bz2
tar -xvf $XORGMACROS_VERSION.tar.bz2 && rm $XORGMACROS_VERSION.tar.bz2
cd $XORGMACROS_VERSION; ./configure; make install; cd ..
rm -rf $XORGMACROS_VERSION
wget $XORG_RELEASES/proto/$GLPROTO_VERSION.tar.bz2
tar -xvf $GLPROTO_VERSION.tar.bz2 && rm $GLPROTO_VERSION.tar.bz2
cd $GLPROTO_VERSION; ./configure; make install; cd ..
rm -rf $GLPROTO_VERSION
wget $XORG_RELEASES/proto/$DRI2PROTO_VERSION.tar.bz2
tar -xvf $DRI2PROTO_VERSION.tar.bz2 && rm $DRI2PROTO_VERSION.tar.bz2
cd $DRI2PROTO_VERSION; ./configure; make install; cd ..
rm -rf $DRI2PROTO_VERSION
wget $XCB_RELEASES/$XCBPROTO_VERSION.tar.bz2
tar -xvf $XCBPROTO_VERSION.tar.bz2 && rm $XCBPROTO_VERSION.tar.bz2
cd $XCBPROTO_VERSION; ./configure; make install; cd ..
rm -rf $XCBPROTO_VERSION
wget $XCB_RELEASES/$LIBXCB_VERSION.tar.bz2
tar -xvf $LIBXCB_VERSION.tar.bz2 && rm $LIBXCB_VERSION.tar.bz2
cd $LIBXCB_VERSION; ./configure; make install; cd ..
rm -rf $LIBXCB_VERSION
wget $XORG_RELEASES/lib/$LIBPCIACCESS_VERSION.tar.bz2
tar -xvf $LIBPCIACCESS_VERSION.tar.bz2 && rm $LIBPCIACCESS_VERSION.tar.bz2
cd $LIBPCIACCESS_VERSION; ./configure; make install; cd ..
rm -rf $LIBPCIACCESS_VERSION
wget https://dri.freedesktop.org/libdrm/$LIBDRM_VERSION.tar.bz2
tar -xvf $LIBDRM_VERSION.tar.bz2 && rm $LIBDRM_VERSION.tar.bz2
cd $LIBDRM_VERSION; ./configure --enable-vc4 --enable-freedreno --enable-etnaviv-experimental-api; make install; cd ..
rm -rf $LIBDRM_VERSION
wget $XORG_RELEASES/proto/$RANDRPROTO_VERSION.tar.bz2
tar -xvf $RANDRPROTO_VERSION.tar.bz2 && rm $RANDRPROTO_VERSION.tar.bz2
cd $RANDRPROTO_VERSION; ./configure; make install; cd ..
rm -rf $RANDRPROTO_VERSION
wget $XORG_RELEASES/lib/$LIBXRANDR_VERSION.tar.bz2
tar -xvf $LIBXRANDR_VERSION.tar.bz2 && rm $LIBXRANDR_VERSION.tar.bz2
cd $LIBXRANDR_VERSION; ./configure; make install; cd ..
rm -rf $LIBXRANDR_VERSION
wget $XORG_RELEASES/lib/$LIBXSHMFENCE_VERSION.tar.bz2
tar -xvf $LIBXSHMFENCE_VERSION.tar.bz2 && rm $LIBXSHMFENCE_VERSION.tar.bz2
cd $LIBXSHMFENCE_VERSION; ./configure; make install; cd ..
rm -rf $LIBXSHMFENCE_VERSION
wget https://people.freedesktop.org/~aplattner/vdpau/$LIBVDPAU_VERSION.tar.bz2
tar -xvf $LIBVDPAU_VERSION.tar.bz2 && rm $LIBVDPAU_VERSION.tar.bz2
cd $LIBVDPAU_VERSION; ./configure; make install; cd ..
rm -rf $LIBVDPAU_VERSION
wget https://www.freedesktop.org/software/vaapi/releases/libva/$LIBVA_VERSION.tar.bz2
tar -xvf $LIBVA_VERSION.tar.bz2 && rm $LIBVA_VERSION.tar.bz2
cd $LIBVA_VERSION; ./configure --disable-wayland --disable-dummy-driver; make install; cd ..
rm -rf $LIBVA_VERSION
wget $WAYLAND_RELEASES/$LIBWAYLAND_VERSION.tar.xz
tar -xvf $LIBWAYLAND_VERSION.tar.xz && rm $LIBWAYLAND_VERSION.tar.xz
cd $LIBWAYLAND_VERSION; ./configure --enable-libraries --without-host-scanner --disable-documentation --disable-dtd-validation; make install; cd ..
rm -rf $LIBWAYLAND_VERSION
wget $WAYLAND_RELEASES/$WAYLAND_PROTOCOLS_VERSION.tar.xz
tar -xvf $WAYLAND_PROTOCOLS_VERSION.tar.xz && rm $WAYLAND_PROTOCOLS_VERSION.tar.xz
cd $WAYLAND_PROTOCOLS_VERSION; ./configure; make install; cd ..
rm -rf $WAYLAND_PROTOCOLS_VERSION
pushd /usr/local
git clone https://gitlab.freedesktop.org/mesa/shader-db.git --depth 1
rm -rf shader-db/.git
cd shader-db
make
popd
# Use ccache to speed up builds
apt-get install -y --no-remove ccache
# We need xmllint to validate the XML files in Mesa
apt-get install -y --no-remove libxml2-utils
# Generate cross build files for Meson
for arch in $CROSS_ARCHITECTURES; do
cross_file="/cross_file-$arch.txt"
/usr/share/meson/debcrossgen --arch "$arch" -o "$cross_file"
# Explicitly set ccache path for cross compilers
sed -i "s|/usr/bin/\([^-]*\)-linux-gnu\([^-]*\)-g|/usr/lib/ccache/\\1-linux-gnu\\2-g|g" "$cross_file"
if [ "$arch" = "i386" ]; then
# Work around a bug in debcrossgen that should be fixed in the next release
sed -i "s|cpu_family = 'i686'|cpu_family = 'x86'|g" "$cross_file"
# Don't need wrapper for i386 executables
sed -i -e '/\[properties\]/a\' -e "needs_exe_wrapper = False" "$cross_file"
fi
done
############### Build dEQP
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
python3 external/fetch_sources.py
mkdir -p /deqp
cd /deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
/VK-GL-CTS
ninja
# Copy out the mustpass lists we want from a bunch of other junk.
mkdir /deqp/mustpass
for gles in gles2 gles3 gles31; do
cp \
/deqp/external/openglcts/modules/gl_cts/data/mustpass/gles/aosp_mustpass/3.2.5.x/$gles-master.txt \
/deqp/mustpass/$gles-master.txt
done
# Remove the rest of the build products that we don't need.
rm -rf /deqp/external
rm -rf /deqp/modules/internal
rm -rf /deqp/executor
rm -rf /deqp/execserver
rm -rf /deqp/modules/egl
rm -rf /deqp/framework
du -sh *
rm -rf /VK-GL-CTS
############### Uninstall the build software
apt-get purge -y \
wget \
unzip \
cmake \
git \
libgles2-mesa-dev \
libgbm-dev
apt-get autoremove -y --purge

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@@ -1,59 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
export DEBIAN_FRONTEND=noninteractive
apt-get install -y \
apt-transport-https \
ca-certificates
sed -i -e 's/http:\/\/deb/https:\/\/deb/g' /etc/apt/sources.list
echo 'deb https://deb.debian.org/debian stretch-backports main' >/etc/apt/sources.list.d/backports.list
apt-get update
# Use newer packages from backports by default
cat >/etc/apt/preferences <<EOF
Package: *
Pin: release a=stretch-backports
Pin-Priority: 500
EOF
apt-get dist-upgrade -y
apt-get install -y --no-remove \
llvm-3.9-dev \
libclang-3.9-dev \
llvm-4.0-dev \
libclang-4.0-dev \
llvm-5.0-dev \
libclang-5.0-dev \
g++ \
bzip2 \
ccache \
zlib1g-dev \
pkg-config \
gcc \
git \
libepoxy-dev \
libclc-dev \
xz-utils \
libdrm-dev \
libexpat1-dev \
libelf-dev \
libunwind-dev \
libpng-dev \
python-mako \
python3-mako \
bison \
flex \
gettext \
scons \
meson
############### Uninstall unused packages
apt-get autoremove -y --purge

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@@ -1,10 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish

View File

@@ -1,33 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgb565_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_tex2d_rgba_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_tex2d_rgb_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgb565_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_tex2d_rgba_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_tex2d_rgb_stencil_index8
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.2d.linear_nearest_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.2d.nearest_linear_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.cube.linear_nearest_clamp_rgba8888_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_l8_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgb888_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgba4444_npot
dEQP-GLES2.functional.texture.filtering.cube.nearest_linear_clamp_rgba8888_npot

View File

@@ -1,3 +0,0 @@
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES31.functional.stencil_texturing.render.depth24_stencil8_clear
dEQP-GLES31.functional.stencil_texturing.render.depth24_stencil8_draw

View File

@@ -1,29 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
# Unstable test results
dEQP-GLES3.functional.fragment_out.random.*
dEQP-GLES3.functional.transform_feedback.*
dEQP-GLES31.functional.primitive_bounding_box.*
dEQP-GLES31.functional.layout_binding.ssbo.fragment_binding_array
# Seen a couple flakes on this one. Note that valgrind complains about
# some things in deqp reference renderer on this one. Not sure if that
# is a real problem or perhaps valgrind gets confused about unitialized
# z24 channel in z24s8?? Let's just skip this one for now:
dEQP-GLES3.functional.fbo.msaa.2_samples.stencil_index8
# Two reports of spurious failures on unrelated MRs (2019-09-27, 2019-10-05)
dEQP-GLES3.functional.texture.specification.texsubimage2d_pbo.r16ui_2d
# Layered rendering is sysmem only and needs working clears
dEQP-GLES31.functional.geometry_shading.layered.*
dEQP-GLES31.functional.geometry_shading.instanced.*layer.*

View File

@@ -1,982 +0,0 @@
dEQP-GLES2.functional.depth_stencil_clear.stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.stencil_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.buffer.write.use.index_array.array Fail
dEQP-GLES2.functional.buffer.write.use.index_array.element_array Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_float4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_6_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_6_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_2_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_3_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_3_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_4_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_17_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_8_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_12_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_16_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.strides.buffer_0_32_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_float4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_short4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_byte4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_short4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_unsigned_byte4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed2_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed2_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed3_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed3_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed4_normalized_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.normalize.user_ptr_0_0_fixed4_normalized_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_float4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_short4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_unsigned_byte4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec3_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec3_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed2_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed3_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec4_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.output_types.user_ptr_0_0_fixed4_vec4_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_4_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_short2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_static_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_stream_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_0_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_static_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_stream_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.usages.buffer_0_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_float2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_float2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_1_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_17_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_2_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_17_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_byte2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_2_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_17_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_byte2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_4_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_fixed2_vec2_dynamic_draw_quads_1 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_8_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.offset.buffer_32_32_fixed2_vec2_dynamic_draw_quads_256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.float_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset1_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset1_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride2_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride17_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride2_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride17_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first6_offset17_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.byte_first24_offset17_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride8_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride32_quads5 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride8_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first6_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.single_attribute.first.fixed_first24_offset16_stride32_quads256 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.3 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.4 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.5 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.6 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.7 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.attribute_count.8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_user_ptr_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_buffer_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_user_ptr_buffer_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_user_ptr_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_user_ptr_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_buffer_user_ptr Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.storage.3_buffer_buffer_buffer Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_0_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_8_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_17_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_0_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_8_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_17_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_0 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_8 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_17 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.stride.3_float2_32_float2_32_float2_32 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_fixed2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_byte2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_short2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_byte2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_fixed2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_byte2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_fixed2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_short2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_unsigned_byte2_vec2 Fail
dEQP-GLES2.functional.vertex_arrays.multiple_attributes.input_types.3_unsigned_short2_vec2_unsigned_short2_vec2_unsigned_short2_vec2 Fail
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_width_height_max_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_x BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_pos_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_x BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_invalid_border_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copyteximage2d_incomplete_framebuffer BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_invalid_target BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_level_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_level_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_level_max_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_level_max_cube_pos BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_offset BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_offset_allowed BadTerminate
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_neg_wdt_hgt BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.copytexsubimage2d_incomplete_framebuffer BadTerminate
dEQP-GLES2.functional.negative_api.texture.deletetextures_invalid_number BadTerminate
dEQP-GLES2.functional.negative_api.texture.deletetextures_invalid_number_bind BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_invalid_target BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_npot_wdt_hgt BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_zero_level_array_compressed BadTerminate
dEQP-GLES2.functional.negative_api.texture.generatemipmap_incomplete_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.gentextures_invalid_size BadTerminate
dEQP-GLES2.functional.negative_api.texture.pixelstorei_invalid_pname BadTerminate
dEQP-GLES2.functional.negative_api.texture.pixelstorei_invalid_param BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_target BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_format BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_type BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_inequal_width_height_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_neg_level_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.teximage2d_width_height_max_cube_neg_y BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_width_height_max_cube_neg_z BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_invalid_border BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_format_mismatch BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.teximage2d_type_format_mismatch BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_target BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_format BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_invalid_type BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_level_tex2d BadTerminatePass
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_level_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_level_max_tex2d BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_level_max_cube BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_offset BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_offset_allowed BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_neg_wdt_hgt BadTerminate
dEQP-GLES2.functional.negative_api.texture.texsubimage2d_type_format_mismatch BadTerminate
dEQP-GLES2.functional.rasterization.primitives.triangles Fail
dEQP-GLES2.functional.rasterization.primitives.triangle_strip Fail
dEQP-GLES2.functional.rasterization.primitives.triangle_fan Fail
dEQP-GLES2.functional.rasterization.primitives.lines Fail
dEQP-GLES2.functional.rasterization.primitives.line_strip Fail
dEQP-GLES2.functional.rasterization.primitives.line_loop Fail
dEQP-GLES2.functional.rasterization.primitives.lines_wide Fail
dEQP-GLES2.functional.rasterization.primitives.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.primitives.line_loop_wide Fail
dEQP-GLES2.functional.rasterization.primitives.points Fail
dEQP-GLES2.functional.rasterization.fill_rules.basic_quad Fail
dEQP-GLES2.functional.rasterization.fill_rules.basic_quad_reverse Fail
dEQP-GLES2.functional.rasterization.fill_rules.clipped_full Fail
dEQP-GLES2.functional.rasterization.fill_rules.clipped_partly Fail
dEQP-GLES2.functional.rasterization.fill_rules.projected Fail
dEQP-GLES2.functional.rasterization.culling.front_triangles Fail
dEQP-GLES2.functional.rasterization.culling.front_triangles_reverse Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_strip Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_strip_reverse Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_fan Fail
dEQP-GLES2.functional.rasterization.culling.front_triangle_fan_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangles Fail
dEQP-GLES2.functional.rasterization.culling.back_triangles_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_strip Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_strip_reverse Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_fan Fail
dEQP-GLES2.functional.rasterization.culling.back_triangle_fan_reverse Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangles Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangle_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.triangle_fan Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.lines Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangles Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangle_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.triangle_fan Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.lines Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide Fail
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide Fail
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec2_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic.samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.initial.render.basic_array.float_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bool_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bool_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec2_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.int_ivec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.basic_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.struct_in_array.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.array_in_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.mat4_mat2_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.nested_structs_arrays.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_basic_array.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_pointer.render.multiple_nested_structs_arrays.both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.get_uniform.basic.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.get_uniform.basic.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec3_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.sampler2D_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic.samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.float_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_array.vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.float_vec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.float_vec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.basic_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.int_ivec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_vertex BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_fragment BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.bool_bvec4_both BadTerminatePass
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.struct_in_array.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.bool_bvec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.array_in_struct.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.float_vec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.int_ivec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.bool_bvec4_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_vertex BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_fragment BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.nested_structs_arrays.sampler2D_samplerCube_both BadTerminate
dEQP-GLES2.functional.uniform_api.value.assigned.by_value.render.multiple_basic_array.vertex BadTerminate
dEQP-GLES2.functional.uniform_api.random.40 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.41 BadTerminate
dEQP-GLES2.functional.uniform_api.random.42 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.43 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.44 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.45 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.46 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.47 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.48 BadTerminate
dEQP-GLES2.functional.uniform_api.random.49 BadTerminate
dEQP-GLES2.functional.uniform_api.random.50 BadTerminate
dEQP-GLES2.functional.uniform_api.random.51 BadTerminate
dEQP-GLES2.functional.uniform_api.random.52 BadTerminate
dEQP-GLES2.functional.uniform_api.random.53 BadTerminate
dEQP-GLES2.functional.uniform_api.random.54 BadTerminate
dEQP-GLES2.functional.uniform_api.random.55 BadTerminate
dEQP-GLES2.functional.uniform_api.random.88 BadTerminate
dEQP-GLES2.functional.uniform_api.random.89 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.90 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.91 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.92 BadTerminatePass
dEQP-GLES2.functional.uniform_api.random.93 BadTerminate
dEQP-GLES2.functional.uniform_api.random.94 BadTerminate
dEQP-GLES2.functional.uniform_api.random.95 BadTerminate
dEQP-GLES2.functional.uniform_api.random.96 BadTerminate
dEQP-GLES2.functional.uniform_api.random.97 BadTerminate
dEQP-GLES2.functional.uniform_api.random.98 BadTerminate
dEQP-GLES2.functional.uniform_api.random.99 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_1 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_2 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_4 BadTerminate
dEQP-GLES2.functional.read_pixels.rgba_ubyte_align_8 BadTerminate
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.compare.reverse Fail
dEQP-GLES2.functional.depth_range.compare.half_to_zero Fail
dEQP-GLES2.functional.depth_range.compare.one_to_half Fail
dEQP-GLES2.functional.depth_range.compare.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.compare.half_to_half Fail
dEQP-GLES2.functional.dither.disabled.gradient_white Fail
dEQP-GLES2.functional.dither.disabled.gradient_red Fail
dEQP-GLES2.functional.dither.disabled.gradient_green Fail
dEQP-GLES2.functional.dither.disabled.gradient_blue Fail
dEQP-GLES2.functional.dither.disabled.gradient_alpha Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_white Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_red Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_green Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_blue Fail
dEQP-GLES2.functional.dither.disabled.unicolored_quad_alpha Fail
dEQP-GLES2.functional.state_query.fbo.framebuffer_attachment_texture_cube_map_face BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_size BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_internal_format BadTerminate
dEQP-GLES2.functional.state_query.rbo.renderbuffer_component_size_color BadTerminate
dEQP-GLES2.functional.draw.draw_arrays.first.first_0 Fail
dEQP-GLES2.functional.draw.draw_arrays.first.first_1 Fail
dEQP-GLES2.functional.draw.draw_arrays.first.first_17 Fail
dEQP-GLES2.functional.draw.draw_arrays.points.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.points.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.points.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangles.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_fan.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.triangle_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.lines.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.line_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.single_attribute Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_arrays.line_loop.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.indices.user_ptr.index_byte Fail
dEQP-GLES2.functional.draw.draw_elements.indices.user_ptr.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.indices.unaligned_user_ptr.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.indices.buffer.index_byte Fail
dEQP-GLES2.functional.draw.draw_elements.indices.buffer.index_short Fail
dEQP-GLES2.functional.draw.draw_elements.points.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.points.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.points.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangles.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_fan.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.triangle_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.lines.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.lines.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.lines.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.line_strip.default_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.single_attribute Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.multiple_attributes Fail
dEQP-GLES2.functional.draw.draw_elements.line_loop.default_attribute Fail
dEQP-GLES2.functional.draw.random.0 Fail
dEQP-GLES2.functional.draw.random.1 Fail
dEQP-GLES2.functional.draw.random.2 Fail
dEQP-GLES2.functional.draw.random.6 Fail
dEQP-GLES2.functional.draw.random.8 Fail
dEQP-GLES2.functional.draw.random.9 Fail
dEQP-GLES2.functional.draw.random.10 Fail
dEQP-GLES2.functional.draw.random.12 Fail
dEQP-GLES2.functional.draw.random.14 Fail
dEQP-GLES2.functional.draw.random.16 Fail
dEQP-GLES2.functional.draw.random.17 Fail
dEQP-GLES2.functional.draw.random.18 Fail
dEQP-GLES2.functional.draw.random.20 Fail
dEQP-GLES2.functional.draw.random.21 Fail
dEQP-GLES2.functional.draw.random.25 Fail
dEQP-GLES2.functional.draw.random.26 Fail
dEQP-GLES2.functional.draw.random.28 Fail
dEQP-GLES2.functional.draw.random.30 Fail
dEQP-GLES2.functional.draw.random.31 Fail
dEQP-GLES2.functional.draw.random.32 Fail
dEQP-GLES2.functional.draw.random.33 Fail
dEQP-GLES2.functional.draw.random.34 Fail
dEQP-GLES2.functional.draw.random.36 Fail
dEQP-GLES2.functional.draw.random.37 Fail
dEQP-GLES2.functional.draw.random.39 Fail
dEQP-GLES2.functional.draw.random.40 Fail
dEQP-GLES2.functional.draw.random.41 Fail
dEQP-GLES2.functional.draw.random.42 Fail
dEQP-GLES2.functional.draw.random.43 Fail
dEQP-GLES2.functional.draw.random.44 Fail
dEQP-GLES2.functional.draw.random.45 Fail
dEQP-GLES2.functional.draw.random.46 Fail
dEQP-GLES2.functional.draw.random.47 Fail
dEQP-GLES2.functional.draw.random.48 Fail
dEQP-GLES2.functional.draw.random.49 Fail
dEQP-GLES2.functional.draw.random.50 Fail
dEQP-GLES2.functional.draw.random.51 Fail
dEQP-GLES2.functional.draw.random.52 Fail
dEQP-GLES2.functional.draw.random.56 Fail
dEQP-GLES2.functional.draw.random.58 Fail
dEQP-GLES2.functional.draw.random.61 Fail
dEQP-GLES2.functional.draw.random.62 Fail
dEQP-GLES2.functional.draw.random.63 Fail
dEQP-GLES2.functional.draw.random.65 Fail
dEQP-GLES2.functional.draw.random.67 Fail
dEQP-GLES2.functional.draw.random.69 Fail
dEQP-GLES2.functional.draw.random.70 Fail
dEQP-GLES2.functional.draw.random.71 Fail

View File

@@ -1,21 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.accuracy.texture.*
dEQP-GLES2.functional.clipping.*
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.fbo.render.*
dEQP-GLES2.functional.fbo.completeness.*
dEQP-GLES2.functional.fragment_ops.*
dEQP-GLES2.functional.light_amount.*
dEQP-GLES2.functional.polygon_offset.*
dEQP-GLES2.functional.shaders.*
dEQP-GLES2.functional.texture.*

View File

@@ -1,124 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.depth.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.no_rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.rebind_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.no_rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.rebind_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.polygon_offset.default_displacement_with_units
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES2.functional.rasterization.limits.points
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2d_bias
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2dproj_vec3_bias
dEQP-GLES2.functional.shaders.texture_functions.fragment.texture2dproj_vec4_bias
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_linear_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_l8
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgb888
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgba4444
dEQP-GLES2.functional.texture.filtering.2d.linear_mipmap_linear_nearest_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_linear_repeat_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_clamp_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_mirror_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_mirror_rgba8888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_etc1
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_l8
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgb888
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgba4444
dEQP-GLES2.functional.texture.filtering.2d.nearest_mipmap_linear_nearest_repeat_rgba8888
dEQP-GLES2.functional.texture.mipmap.2d.affine.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.affine.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.linear_linear_repeat_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_clamp_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_mirror_non_square
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.basic.nearest_linear_repeat_non_square
dEQP-GLES2.functional.texture.mipmap.2d.projected.linear_linear_repeat
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_clamp
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_mirror
dEQP-GLES2.functional.texture.mipmap.2d.projected.nearest_linear_repeat
dEQP-GLES2.functional.texture.mipmap.cube.basic.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.basic.linear_nearest
dEQP-GLES2.functional.texture.mipmap.cube.bias.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.bias.linear_nearest
dEQP-GLES2.functional.texture.mipmap.cube.projected.linear_linear
dEQP-GLES2.functional.texture.mipmap.cube.projected.linear_nearest
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.2d.filtering.nearest_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.clamp_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.mirror_repeat
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_clamp
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_mirror
dEQP-GLES2.functional.texture.vertex.2d.wrap.repeat_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_clamp
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_mirror
dEQP-GLES2.functional.texture.vertex.cube.filtering.nearest_mipmap_linear_nearest_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.clamp_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.mirror_repeat
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_clamp
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_mirror
dEQP-GLES2.functional.texture.vertex.cube.wrap.repeat_repeat

View File

@@ -1,728 +0,0 @@
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.clamp_both Fail
dEQP-GLES2.functional.depth_range.write.clamp_far Fail
dEQP-GLES2.functional.depth_range.write.clamp_near Fail
dEQP-GLES2.functional.depth_range.write.default Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.write.half_to_one Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.one_to_one Fail
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.third_to_0_8 Fail
dEQP-GLES2.functional.depth_range.write.zero_to_half Fail
dEQP-GLES2.functional.depth_stencil_clear.depth Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.add_dst_color_one_minus_src_color Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_dst_alpha Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_dst_color Fail
dEQP-GLES2.functional.fragment_ops.blend.equation_src_func_dst_func.reverse_subtract_zero_one Fail
dEQP-GLES2.functional.fragment_ops.blend.rgb_func_alpha_func.dst.one_minus_src_color_one_minus_src_alpha Fail
dEQP-GLES2.functional.fragment_ops.blend.rgb_func_alpha_func.dst.one_minus_src_color_one_minus_src_color Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.0 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.10 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.11 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.12 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.13 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.14 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.15 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.17 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.18 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.19 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.1 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.20 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.21 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.22 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.23 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.24 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.2 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.3 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.4 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.5 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.6 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.7 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.8 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.9 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.both Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.stencil Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.11 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.13 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.15 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.17 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.18 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.19 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.20 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.22 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.26 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.39 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.42 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.44 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.47 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.48 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.57 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.60 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.61 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.64 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.68 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.72 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.75 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.77 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.79 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.8 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.93 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.98 Fail
dEQP-GLES2.functional.fragment_ops.random.0 Fail
dEQP-GLES2.functional.fragment_ops.random.11 Fail
dEQP-GLES2.functional.fragment_ops.random.19 Fail
dEQP-GLES2.functional.fragment_ops.random.24 Fail
dEQP-GLES2.functional.fragment_ops.random.25 Fail
dEQP-GLES2.functional.fragment_ops.random.32 Fail
dEQP-GLES2.functional.fragment_ops.random.37 Fail
dEQP-GLES2.functional.fragment_ops.random.3 Fail
dEQP-GLES2.functional.fragment_ops.random.45 Fail
dEQP-GLES2.functional.fragment_ops.random.48 Fail
dEQP-GLES2.functional.fragment_ops.random.53 Fail
dEQP-GLES2.functional.fragment_ops.random.56 Fail
dEQP-GLES2.functional.fragment_ops.random.63 Fail
dEQP-GLES2.functional.fragment_ops.random.65 Fail
dEQP-GLES2.functional.fragment_ops.random.66 Fail
dEQP-GLES2.functional.fragment_ops.random.67 Fail
dEQP-GLES2.functional.fragment_ops.random.68 Fail
dEQP-GLES2.functional.fragment_ops.random.6 Fail
dEQP-GLES2.functional.fragment_ops.random.72 Fail
dEQP-GLES2.functional.fragment_ops.random.75 Fail
dEQP-GLES2.functional.fragment_ops.random.81 Fail
dEQP-GLES2.functional.fragment_ops.random.87 Fail
dEQP-GLES2.functional.fragment_ops.random.94 Fail
dEQP-GLES2.functional.fragment_ops.random.96 Fail
dEQP-GLES2.functional.polygon_offset.default_render_with_units Fail
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope Fail
dEQP-GLES2.functional.polygon_offset.fixed16_render_with_units Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_fragment Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_vertex Fail

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@@ -1,63 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_pos_y_pos_z_and_neg_x_neg_y_pos_z_and_pos_x_pos_y_neg_z
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.*
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.*
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgb
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgba
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.stencil_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.lifetime.attach.deleted_input.renderbuffer_framebuffer
dEQP-GLES2.functional.lifetime.attach.deleted_output.renderbuffer_framebuffer
dEQP-GLES2.functional.polygon_offset.fixed16_factor_0_slope
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope
dEQP-GLES2.functional.shaders.invariance.highp.loop_4
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_mat4_vec4_vertex
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_vec4_mat4_fragment
dEQP-GLES2.functional.shaders.operator.common_functions.smoothstep.mediump_vec3_vertex
dEQP-GLES2.functional.shaders.random.all_features.fragment.12
dEQP-GLES2.functional.shaders.random.all_features.fragment.37
dEQP-GLES2.functional.texture.units.2_units.mixed.1
dEQP-GLES2.functional.texture.units.2_units.mixed.3
dEQP-GLES2.functional.texture.units.2_units.only_2d.2
dEQP-GLES2.functional.texture.units.4_units.mixed.5
dEQP-GLES2.functional.texture.units.4_units.only_2d.0
dEQP-GLES2.functional.texture.units.8_units.only_cube.2
dEQP-GLES2.functional.texture.units.all_units.mixed.6
dEQP-GLES2.functional.texture.units.all_units.only_cube.4
dEQP-GLES2.functional.texture.units.all_units.only_cube.7
dEQP-GLES2.functional.texture.units.all_units.only_cube.8

View File

@@ -1,722 +0,0 @@
dEQP-GLES2.functional.depth_range.write.0_8_to_third Fail
dEQP-GLES2.functional.depth_range.write.clamp_both Fail
dEQP-GLES2.functional.depth_range.write.clamp_far Fail
dEQP-GLES2.functional.depth_range.write.clamp_near Fail
dEQP-GLES2.functional.depth_range.write.default Fail
dEQP-GLES2.functional.depth_range.write.half_to_half Fail
dEQP-GLES2.functional.depth_range.write.half_to_one Fail
dEQP-GLES2.functional.depth_range.write.half_to_zero Fail
dEQP-GLES2.functional.depth_range.write.one_to_half Fail
dEQP-GLES2.functional.depth_range.write.one_to_one Fail
dEQP-GLES2.functional.depth_range.write.reverse Fail
dEQP-GLES2.functional.depth_range.write.third_to_0_8 Fail
dEQP-GLES2.functional.depth_range.write.zero_to_half Fail
dEQP-GLES2.functional.depth_stencil_clear.depth Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_scissored_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_masked Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored Fail
dEQP-GLES2.functional.depth_stencil_clear.depth_stencil_scissored_masked Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.no_rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb565_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgb5_a1_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_rbo_rgba4_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgba_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.recreate_colorbuffer.rebind_tex2d_rgb_stencil_index8 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb565_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgba_depth_component16 Fail
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.tex2d_rgb_depth_component16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.0 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.10 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.11 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.12 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.13 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.14 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.15 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.16 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.17 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.18 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.19 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.1 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.20 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.21 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.22 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.23 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.24 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.2 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.3 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.4 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.5 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.6 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.7 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.8 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.random.9 Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.no_stencil_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_always_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_equal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_gequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_greater_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_lequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_less_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_never_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_always Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_equal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_gequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_greater Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_lequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_less Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_never Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_depth_notequal Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_depth_funcs.stencil_notequal_no_depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.decr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_wrap_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.incr_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.invert_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.keep_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.replace_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_decr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_wrap_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_incr_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_invert_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_keep_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_replace_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_decr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_incr_wrap Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_invert Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_keep Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_replace Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.stencil_ops.zero_zero_zero Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.both Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.depth Fail
dEQP-GLES2.functional.fragment_ops.depth_stencil.write_mask.stencil Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.11 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.13 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.15 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.17 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.18 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.19 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.20 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.22 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.26 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.39 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.42 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.44 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.47 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.48 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.57 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.60 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.61 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.64 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.68 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.72 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.75 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.77 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.79 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.8 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.93 Fail
dEQP-GLES2.functional.fragment_ops.interaction.basic_shader.98 Fail
dEQP-GLES2.functional.fragment_ops.random.0 Fail
dEQP-GLES2.functional.fragment_ops.random.11 Fail
dEQP-GLES2.functional.fragment_ops.random.19 Fail
dEQP-GLES2.functional.fragment_ops.random.24 Fail
dEQP-GLES2.functional.fragment_ops.random.25 Fail
dEQP-GLES2.functional.fragment_ops.random.32 Fail
dEQP-GLES2.functional.fragment_ops.random.37 Fail
dEQP-GLES2.functional.fragment_ops.random.3 Fail
dEQP-GLES2.functional.fragment_ops.random.45 Fail
dEQP-GLES2.functional.fragment_ops.random.48 Fail
dEQP-GLES2.functional.fragment_ops.random.53 Fail
dEQP-GLES2.functional.fragment_ops.random.56 Fail
dEQP-GLES2.functional.fragment_ops.random.63 Fail
dEQP-GLES2.functional.fragment_ops.random.65 Fail
dEQP-GLES2.functional.fragment_ops.random.66 Fail
dEQP-GLES2.functional.fragment_ops.random.67 Fail
dEQP-GLES2.functional.fragment_ops.random.68 Fail
dEQP-GLES2.functional.fragment_ops.random.6 Fail
dEQP-GLES2.functional.fragment_ops.random.72 Fail
dEQP-GLES2.functional.fragment_ops.random.75 Fail
dEQP-GLES2.functional.fragment_ops.random.81 Fail
dEQP-GLES2.functional.fragment_ops.random.87 Fail
dEQP-GLES2.functional.fragment_ops.random.94 Fail
dEQP-GLES2.functional.fragment_ops.random.96 Fail
dEQP-GLES2.functional.polygon_offset.default_render_with_units Fail
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope Fail
dEQP-GLES2.functional.polygon_offset.fixed16_render_with_units Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_fragment Fail
dEQP-GLES2.functional.shaders.scoping.valid.local_variable_hides_function_parameter_vertex Fail

View File

@@ -1,63 +0,0 @@
# Note: skips lists for CI are just a list of lines that, when
# non-zero-length and not starting with '#', will regex match to
# delete lines from the test list. Be careful.
# Skip the perf/stress tests to keep runtime manageable
dEQP-GLES[0-9]*.performance
dEQP-GLES[0-9]*.stress
# These are really slow on tiling architectures (including llvmpipe).
dEQP-GLES[0-9]*.functional.flush_finish
dEQP-GLES2.functional.fbo.render.depth.*
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_neg_x_neg_z_and_pos_x_pos_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_three.clip_pos_y_pos_z_and_neg_x_neg_y_pos_z_and_pos_x_pos_y_neg_z
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4
dEQP-GLES2.functional.fbo.render.color.blend_npot_rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.color_clear.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.recreate_depthbuffer.*
dEQP-GLES2.functional.fbo.render.recreate_stencilbuffer.*
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgb
dEQP-GLES2.functional.fbo.render.shared_colorbuffer_clear.tex2d_rgba
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgb5_a1
dEQP-GLES2.functional.fbo.render.shared_colorbuffer.rbo_rgba4
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgb5_a1_depth_component16
dEQP-GLES2.functional.fbo.render.shared_depthbuffer.rbo_rgba4_depth_component16
dEQP-GLES2.functional.fbo.render.stencil_clear.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.npot_rbo_rgba4_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgb5_a1_stencil_index8
dEQP-GLES2.functional.fbo.render.stencil.rbo_rgba4_stencil_index8
dEQP-GLES2.functional.lifetime.attach.deleted_input.renderbuffer_framebuffer
dEQP-GLES2.functional.lifetime.attach.deleted_output.renderbuffer_framebuffer
dEQP-GLES2.functional.polygon_offset.fixed16_factor_0_slope
dEQP-GLES2.functional.polygon_offset.fixed16_factor_1_slope
dEQP-GLES2.functional.shaders.invariance.highp.loop_4
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_mat4_vec4_vertex
dEQP-GLES2.functional.shaders.matrix.mul.dynamic_highp_vec4_mat4_fragment
dEQP-GLES2.functional.shaders.operator.common_functions.smoothstep.mediump_vec3_vertex
dEQP-GLES2.functional.shaders.random.all_features.fragment.12
dEQP-GLES2.functional.shaders.random.all_features.fragment.37
dEQP-GLES2.functional.texture.units.2_units.mixed.1
dEQP-GLES2.functional.texture.units.2_units.mixed.3
dEQP-GLES2.functional.texture.units.2_units.only_2d.2
dEQP-GLES2.functional.texture.units.4_units.mixed.5
dEQP-GLES2.functional.texture.units.4_units.only_2d.0
dEQP-GLES2.functional.texture.units.8_units.only_cube.2
dEQP-GLES2.functional.texture.units.all_units.mixed.6
dEQP-GLES2.functional.texture.units.all_units.only_cube.4
dEQP-GLES2.functional.texture.units.all_units.only_cube.7
dEQP-GLES2.functional.texture.units.all_units.only_cube.8

View File

@@ -1,136 +0,0 @@
#!/bin/bash
set -ex
DEQP_OPTIONS=(--deqp-surface-width=256 --deqp-surface-height=256)
DEQP_OPTIONS+=(--deqp-surface-type=pbuffer)
DEQP_OPTIONS+=(--deqp-gl-config-name=rgba8888d24s8ms0)
DEQP_OPTIONS+=(--deqp-visibility=hidden)
DEQP_OPTIONS+=(--deqp-log-images=disable)
DEQP_OPTIONS+=(--deqp-crashhandler=enable)
# It would be nice to be able to enable the watchdog, so that hangs in a test
# don't need to wait the full hour for the run to time out. However, some
# shaders end up taking long enough to compile
# (dEQP-GLES31.functional.ubo.random.all_per_block_buffers.20 for example)
# that they'll sporadically trigger the watchdog.
#DEQP_OPTIONS+=(--deqp-watchdog=enable)
if [ -z "$DEQP_VER" ]; then
echo 'DEQP_VER must be set to something like "gles2" or "gles31" for the test run'
exit 1
fi
if [ -z "$DEQP_SKIPS" ]; then
echo 'DEQP_SKIPS must be set to something like "deqp-default-skips.txt"'
exit 1
fi
# Prep the expected failure list
if [ -n "$DEQP_EXPECTED_FAILS" ]; then
export DEQP_EXPECTED_FAILS=`pwd`/artifacts/$DEQP_EXPECTED_FAILS
else
export DEQP_EXPECTED_FAILS=/tmp/expect-no-failures.txt
touch $DEQP_EXPECTED_FAILS
fi
sort < $DEQP_EXPECTED_FAILS > /tmp/expected-fails.txt
# Fix relative paths on inputs.
export DEQP_SKIPS=`pwd`/artifacts/$DEQP_SKIPS
# Be a good citizen on the shared runners.
export LP_NUM_THREADS=4
# Set up the driver environment.
export LD_LIBRARY_PATH=`pwd`/install/lib/
export EGL_PLATFORM=surfaceless
# the runner was failing to look for libkms in /usr/local/lib for some reason
# I never figured out.
export LD_LIBRARY_PATH=$LD_LIBRARY_PATH:/usr/local/lib
RESULTS=`pwd`/results
mkdir -p $RESULTS
cd /deqp/modules/$DEQP_VER
# Generate test case list file
cp /deqp/mustpass/$DEQP_VER-master.txt /tmp/case-list.txt
# Note: not using sorted input and comm, becuase I want to run the tests in
# the same order that dEQP would.
while read -r line; do
if echo "$line" | grep -q '^[^#]'; then
sed -i "/$line/d" /tmp/case-list.txt
fi
done < $DEQP_SKIPS
# If the job is parallel, take the corresponding fraction of the caselist.
# Note: N~M is a gnu sed extension to match every nth line (first line is #1).
if [ -n "$CI_NODE_INDEX" ]; then
sed -ni $CI_NODE_INDEX~$CI_NODE_TOTAL"p" /tmp/case-list.txt
fi
if [ ! -s /tmp/case-list.txt ]; then
echo "Caselist generation failed"
exit 1
fi
# Cannot use tee because dash doesn't have pipefail
touch /tmp/result.txt
tail -f /tmp/result.txt &
./deqp-$DEQP_VER "${DEQP_OPTIONS[@]}" --deqp-log-filename=$RESULTS/results.qpa --deqp-caselist-file=/tmp/case-list.txt >> /tmp/result.txt
DEQP_EXITCODE=$?
sed -ne \
'/StatusCode="Fail"/{x;p}; s/#beginTestCaseResult //; T; h' \
$RESULTS/results.qpa \
> /tmp/unsorted-fails.txt
# Scrape out the renderer that the test run used, so we can validate that the
# right driver was used.
if grep -q "dEQP-.*.info.renderer" /tmp/case-list.txt; then
# This is an ugly dependency on the .qpa format: Print 3 lines after the
# match, which happens to contain the result.
RENDERER=`sed -n '/#beginTestCaseResult dEQP-.*.info.renderer/{n;n;n;p}' $RESULTS/results.qpa | sed -n -E "s|<Text>(.*)</Text>|\1|p"`
echo "GL_RENDERER for this test run: $RENDERER"
if [ -n "$DEQP_RENDERER_MATCH" ]; then
echo $RENDERER | grep -q $DEQP_RENDERER_MATCH > /dev/null
fi
fi
if grep -q "dEQP-.*.info.version" /tmp/case-list.txt; then
# This is an ugly dependency on the .qpa format: Print 3 lines after the
# match, which happens to contain the result.
VERSION=`sed -n '/#beginTestCaseResult dEQP-.*.info.version/{n;n;n;p}' $RESULTS/results.qpa | sed -n -E "s|<Text>(.*)</Text>|\1|p"`
echo "Driver version tested: $VERSION"
fi
if [ $DEQP_EXITCODE -ne 0 ]; then
exit $DEQP_EXITCODE
fi
sort < /tmp/unsorted-fails.txt > $RESULTS/fails.txt
comm -23 $RESULTS/fails.txt /tmp/expected-fails.txt > /tmp/new-fails.txt
if [ -s /tmp/new-fails.txt ]; then
echo "Unexpected failures:"
cat /tmp/new-fails.txt
exit 1
else
echo "No new failures"
fi
sort /tmp/case-list.txt > /tmp/sorted-case-list.txt
comm -12 /tmp/sorted-case-list.txt /tmp/expected-fails.txt > /tmp/expected-fails-in-caselist.txt
comm -13 $RESULTS/fails.txt /tmp/expected-fails-in-caselist.txt > /tmp/new-passes.txt
if [ -s /tmp/new-passes.txt ]; then
echo "Unexpected passes, please update $DEQP_EXPECTED_FAILS (or add flaky tests to $DEQP_SKIPS):"
cat /tmp/new-passes.txt
exit 1
else
echo "No new passes"
fi

View File

@@ -1,445 +0,0 @@
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES2.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES2.functional.clipping.point.wide_point_clip
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES2.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES2.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES2.functional.polygon_offset.default_displacement_with_units
dEQP-GLES2.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES2.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES2.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES2.functional.rasterization.limits.points
dEQP-GLES2.functional.rasterization.primitives.points
dEQP-GLES3.functional.clipping.line.wide_line_clip_viewport_center
dEQP-GLES3.functional.clipping.line.wide_line_clip_viewport_corner
dEQP-GLES3.functional.clipping.point.wide_point_clip
dEQP-GLES3.functional.clipping.point.wide_point_clip_viewport_center
dEQP-GLES3.functional.clipping.point.wide_point_clip_viewport_corner
dEQP-GLES3.functional.clipping.triangle_vertex.clip_two.clip_neg_y_neg_z_and_neg_x_neg_y_pos_z
dEQP-GLES3.functional.clipping.triangle_vertex.clip_two.clip_pos_y_pos_z_and_neg_x_neg_y_neg_z
dEQP-GLES3.functional.draw.random.124
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth24_stencil8
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth32f_stencil8
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component16
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component24
dEQP-GLES3.functional.fbo.depth.depth_test_clamp.depth_component32f
dEQP-GLES3.functional.fbo.depth.depth_write_clamp.depth32f_stencil8
dEQP-GLES3.functional.fbo.depth.depth_write_clamp.depth_component32f
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_color
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_depth
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_depth_stencil
dEQP-GLES3.functional.fbo.invalidate.sub.unbind_blit_msaa_stencil
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_color
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_depth
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_depth_stencil
dEQP-GLES3.functional.fbo.invalidate.whole.unbind_blit_msaa_stencil
dEQP-GLES3.functional.fbo.msaa.2_samples.depth24_stencil8
dEQP-GLES3.functional.fbo.msaa.2_samples.depth32f_stencil8
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component16
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component24
dEQP-GLES3.functional.fbo.msaa.2_samples.depth_component32f
dEQP-GLES3.functional.fbo.msaa.2_samples.r11f_g11f_b10f
dEQP-GLES3.functional.fbo.msaa.2_samples.r16f
dEQP-GLES3.functional.fbo.msaa.2_samples.r8
dEQP-GLES3.functional.fbo.msaa.2_samples.rg16f
dEQP-GLES3.functional.fbo.msaa.2_samples.rg8
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb10_a2
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb565
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb5_a1
dEQP-GLES3.functional.fbo.msaa.2_samples.rgb8
dEQP-GLES3.functional.fbo.msaa.2_samples.rgba4
dEQP-GLES3.functional.fbo.msaa.2_samples.rgba8
dEQP-GLES3.functional.fbo.msaa.2_samples.srgb8_alpha8
dEQP-GLES3.functional.fbo.msaa.2_samples.stencil_index8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth24_stencil8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth32f_stencil8
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component16
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component24
dEQP-GLES3.functional.fbo.msaa.4_samples.depth_component32f
dEQP-GLES3.functional.fbo.msaa.4_samples.r11f_g11f_b10f
dEQP-GLES3.functional.fbo.msaa.4_samples.r16f
dEQP-GLES3.functional.fbo.msaa.4_samples.r8
dEQP-GLES3.functional.fbo.msaa.4_samples.rg16f
dEQP-GLES3.functional.fbo.msaa.4_samples.rg8
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb10_a2
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb565
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb5_a1
dEQP-GLES3.functional.fbo.msaa.4_samples.rgb8
dEQP-GLES3.functional.fbo.msaa.4_samples.rgba4
dEQP-GLES3.functional.fbo.msaa.4_samples.rgba8
dEQP-GLES3.functional.fbo.msaa.4_samples.srgb8_alpha8
dEQP-GLES3.functional.fbo.msaa.4_samples.stencil_index8
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_alpha_to_coverage
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_sample_coverage
dEQP-GLES3.functional.multisample.fbo_max_samples.proportionality_sample_coverage_inverted
dEQP-GLES3.functional.multisample.fbo_max_samples.sample_coverage_invert
dEQP-GLES3.functional.negative_api.buffer.blit_framebuffer_multisample
dEQP-GLES3.functional.negative_api.buffer.read_pixels_fbo_format_mismatch
dEQP-GLES3.functional.polygon_offset.default_displacement_with_units
dEQP-GLES3.functional.polygon_offset.fixed16_displacement_with_units
dEQP-GLES3.functional.polygon_offset.fixed24_displacement_with_units
dEQP-GLES3.functional.polygon_offset.float32_displacement_with_units
dEQP-GLES3.functional.rasterization.fbo.rbo_multisample_max.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_multisample_max.primitives.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_singlesample.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.rbo_singlesample.primitives.points
dEQP-GLES3.functional.rasterization.fbo.texture_2d.interpolation.lines_wide
dEQP-GLES3.functional.rasterization.fbo.texture_2d.primitives.points
dEQP-GLES3.functional.rasterization.interpolation.basic.line_loop_wide
dEQP-GLES3.functional.rasterization.interpolation.basic.line_strip_wide
dEQP-GLES3.functional.rasterization.interpolation.basic.lines_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.line_loop_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.line_strip_wide
dEQP-GLES3.functional.rasterization.interpolation.projected.lines_wide
dEQP-GLES3.functional.rasterization.primitives.points
dEQP-GLES3.functional.rasterizer_discard.basic.write_depth_points
dEQP-GLES3.functional.rasterizer_discard.basic.write_stencil_points
dEQP-GLES3.functional.rasterizer_discard.fbo.write_depth_points
dEQP-GLES3.functional.rasterizer_discard.fbo.write_stencil_points
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dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_clamp_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_mirror_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_mirror_repeat
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_repeat_mirror
dEQP-GLES3.functional.texture.filtering.3d.combinations.nearest_mipmap_nearest_linear_repeat_repeat_repeat
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.r11f_g11f_b10f_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb10_a2_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb565_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb5_a1_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgb9_e5_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba16f_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba4_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.rgba8_snorm_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb8_alpha8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.formats.srgb_r8_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.128x32x64_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_linear_mipmap_nearest
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_nearest_mipmap_linear
dEQP-GLES3.functional.texture.filtering.3d.sizes.63x63x63_nearest_mipmap_nearest
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_linear_nearest_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_mipmap_nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_clamp
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_mirror
dEQP-GLES3.functional.texture.vertex.3d.filtering.linear_nearest_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_mipmap_linear_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.filtering.nearest_mipmap_nearest_linear_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.clamp_repeat_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.mirror_repeat_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_clamp_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_mirror_repeat
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_clamp
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_mirror
dEQP-GLES3.functional.texture.vertex.3d.wrap.repeat_repeat_repeat
dEQP-GLES3.functional.texture.wrap.astc_8x8.repeat_repeat_linear_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8.repeat_repeat_linear_not_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8_srgb.repeat_repeat_linear_divisible
dEQP-GLES3.functional.texture.wrap.astc_8x8_srgb.repeat_repeat_linear_not_divisible
dEQP-GLES3.functional.vertex_arrays.single_attribute.normalize.int2_10_10_10.components4_quads1
dEQP-GLES3.functional.vertex_arrays.single_attribute.normalize.int2_10_10_10.components4_quads256

View File

@@ -1,58 +0,0 @@
#!/usr/bin/env python3
from jinja2 import Environment, FileSystemLoader
import argparse
device_types = {
"rk3288-veyron-jaq": {
"gpu_version": "panfrost-t760",
"boot_method": "depthcharge",
"lava_device_type": "rk3288-veyron-jaq",
"kernel_image_type": "",
},
"rk3399-gru-kevin": {
"gpu_version": "panfrost-t860",
"boot_method": "depthcharge",
"lava_device_type": "rk3399-gru-kevin",
"kernel_image_type": "",
},
"sun8i-h3-libretech-all-h3-cc": {
"gpu_version": "lima",
"boot_method": "u-boot",
"lava_device_type": "sun8i-h3-libretech-all-h3-cc",
"kernel_image_type": "type: zimage",
},
"meson-gxl-s905x-libretech-cc": {
"gpu_version": "lima",
"boot_method": "u-boot",
"lava_device_type": "meson-gxl-s905x-libretech-cc",
"kernel_image_type": "type: image",
},
}
parser = argparse.ArgumentParser()
parser.add_argument("--template")
parser.add_argument("--base-artifacts-url")
parser.add_argument("--arch")
parser.add_argument("--device-types", nargs="+")
parser.add_argument("--kernel-image-name")
args = parser.parse_args()
env = Environment(loader = FileSystemLoader('.'), trim_blocks=True, lstrip_blocks=True)
template = env.get_template(args.template)
for device_type in args.device_types:
values = {}
values['base_artifacts_url'] = args.base_artifacts_url
values['arch'] = args.arch
values['device_type'] = device_type
values['kernel_image_name'] = args.kernel_image_name
values['lava_device_type'] = device_types[device_type]['lava_device_type']
values['gpu_version'] = device_types[device_type]['gpu_version']
values['boot_method'] = device_types[device_type]['boot_method']
values['kernel_image_type'] = device_types[device_type]['kernel_image_type']
f = open('results/lava-deqp-%s.yml' % device_type, "w")
f.write(template.render(values))
f.close()

View File

@@ -1,187 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
############### Install packages for building
dpkg --add-architecture ${DEBIAN_ARCH}
echo 'deb-src https://deb.debian.org/debian testing main' > /etc/apt/sources.list.d/deb-src.list
apt-get update
apt-get -y install ca-certificates
apt-get -y install --no-install-recommends \
crossbuild-essential-${DEBIAN_ARCH} \
meson \
g++ \
git \
ccache \
pkg-config \
python3-mako \
python-numpy \
python-six \
python-mako \
python3-pip \
python3-setuptools \
python3-six \
python3-wheel \
python3-jinja2 \
bison \
flex \
gettext \
cmake \
bc \
libssl-dev \
lqa \
csvkit \
curl \
unzip \
wget \
debootstrap \
procps \
qemu-user-static \
cpio \
clang-8 \
llvm-8 \
libclang-8-dev \
llvm-8-dev \
gdc-9 \
lld-8 \
nasm \
libegl1-mesa-dev \
\
libdrm-dev:${DEBIAN_ARCH} \
libx11-dev:${DEBIAN_ARCH} \
libxxf86vm-dev:${DEBIAN_ARCH} \
libexpat1-dev:${DEBIAN_ARCH} \
libsensors-dev:${DEBIAN_ARCH} \
libxfixes-dev:${DEBIAN_ARCH} \
libxdamage-dev:${DEBIAN_ARCH} \
libxext-dev:${DEBIAN_ARCH} \
x11proto-dev:${DEBIAN_ARCH} \
libx11-xcb-dev:${DEBIAN_ARCH} \
libxcb-dri2-0-dev:${DEBIAN_ARCH} \
libxcb-glx0-dev:${DEBIAN_ARCH} \
libxcb-xfixes0-dev:${DEBIAN_ARCH} \
libxcb-dri3-dev:${DEBIAN_ARCH} \
libxcb-present-dev:${DEBIAN_ARCH} \
libxcb-randr0-dev:${DEBIAN_ARCH} \
libxcb-sync-dev:${DEBIAN_ARCH} \
libxrandr-dev:${DEBIAN_ARCH} \
libxshmfence-dev:${DEBIAN_ARCH} \
libelf-dev:${DEBIAN_ARCH} \
zlib1g-dev:${DEBIAN_ARCH} \
libglvnd-core-dev:${DEBIAN_ARCH} \
libgles2-mesa-dev:${DEBIAN_ARCH} \
libegl1-mesa-dev:${DEBIAN_ARCH} \
libpng-dev:${DEBIAN_ARCH}
############### Install lavacli (remove after it's back into Debian testing)
mkdir -p lavacli
wget -qO- https://git.lavasoftware.org/lava/lavacli/-/archive/v0.9.8/lavacli-v0.9.8.tar.gz | tar -xz --strip-components=1 -C lavacli
pushd lavacli
python3 ./setup.py install
popd
############### Cross-build dEQP
mkdir -p /artifacts/rootfs/deqp
git config --global user.email "mesa@example.com"
git config --global user.name "Mesa CI"
# XXX: Use --depth 1 once we can drop the cherry-picks.
git clone \
https://github.com/KhronosGroup/VK-GL-CTS.git \
-b opengl-es-cts-3.2.5.1 \
/VK-GL-CTS
cd /VK-GL-CTS
# Fix surfaceless build
git cherry-pick -x 22f41e5e321c6dcd8569c4dad91bce89f06b3670
git cherry-pick -x 1daa8dff73161ea60ead965bd6c9f2a0a2165648
# surfaceless links against libkms and such despite not using it.
sed -i '/gbm/d' targets/surfaceless/surfaceless.cmake
sed -i '/libkms/d' targets/surfaceless/surfaceless.cmake
sed -i '/libgbm/d' targets/surfaceless/surfaceless.cmake
python3 external/fetch_sources.py
cd /artifacts/rootfs/deqp
cmake -G Ninja \
-DDEQP_TARGET=surfaceless \
-DCMAKE_BUILD_TYPE=Release \
-DCMAKE_C_COMPILER=${GCC_ARCH}-gcc \
-DCMAKE_CXX_COMPILER=${GCC_ARCH}-g++ \
/VK-GL-CTS
ninja
rm -rf /artifacts/rootfs/deqp/external
rm -rf /artifacts/rootfs/deqp/modules/gles31
rm -rf /artifacts/rootfs/deqp/modules/internal
rm -rf /artifacts/rootfs/deqp/executor
rm -rf /artifacts/rootfs/deqp/execserver
rm -rf /artifacts/rootfs/deqp/modules/egl
rm -rf /artifacts/rootfs/deqp/framework
find . -name CMakeFiles | xargs rm -rf
find . -name lib\*.a | xargs rm -rf
du -sh *
rm -rf /VK-GL-CTS-opengl-es-cts-3.2.5.0
############### Cross-build Volt dEQP runner
mkdir -p /battery
cd /battery
wget https://github.com/VoltLang/Battery/releases/download/v0.1.23/battery-0.1.23-x86_64-linux.tar.gz
tar xzvf battery-0.1.23-x86_64-linux.tar.gz
rm battery-0.1.23-x86_64-linux.tar.gz
mv battery /usr/local/bin
rm -rf /battery
mkdir -p /volt
cd /volt
mkdir -p Watt Volta dEQP
wget -qO- https://github.com/VoltLang/Watt/archive/v0.1.3.tar.gz | tar -xz --strip-components=1 -C ./Watt
wget -qO- https://github.com/VoltLang/Volta/archive/v0.1.3.tar.gz | tar -xz --strip-components=1 -C ./Volta
wget -qO- https://github.com/Wallbraker/dEQP/archive/v0.1.4.tar.gz | tar -xz --strip-components=1 -C ./dEQP
battery config --release --lto Volta Watt
battery build
battery config --arch ${VOLT_ARCH} --cmd-volta Volta/volta Volta/rt Watt dEQP
battery build
rm /usr/local/bin/battery
cp dEQP/deqp /artifacts/rootfs/deqp/deqp-volt
rm -rf /volt
############### Remove LLVM now, so the container image is smaller
apt-get -y remove \*llvm\*
############### Cross-build kernel
KERNEL_URL="https://gitlab.freedesktop.org/tomeu/linux/-/archive/panfrost-veyron-fix/linux-panfrost-veyron-fix.tar.gz"
export ARCH=${KERNEL_ARCH}
export CROSS_COMPILE="${GCC_ARCH}-"
mkdir -p /kernel
wget -qO- ${KERNEL_URL} | tar -xz --strip-components=1 -C /kernel
cd /kernel
./scripts/kconfig/merge_config.sh ${DEFCONFIG} /tmp/clone/.gitlab-ci/${KERNEL_ARCH}.config
make -j12 ${KERNEL_IMAGE_NAME} dtbs
cp arch/${KERNEL_ARCH}/boot/${KERNEL_IMAGE_NAME} /artifacts/.
cp ${DEVICE_TREES} /artifacts/.
rm -rf /kernel
############### Create rootfs
cp /tmp/clone/.gitlab-ci/create-rootfs.sh /artifacts/rootfs/.
mkdir -p /artifacts/rootfs/bin
cp /usr/bin/qemu-aarch64-static /artifacts/rootfs/bin
cp /usr/bin/qemu-arm-static /artifacts/rootfs/bin
set +e
debootstrap --variant=minbase --arch=${DEBIAN_ARCH} testing /artifacts/rootfs/ http://deb.debian.org/debian
cat /artifacts/rootfs/debootstrap/debootstrap.log
set -e
chroot /artifacts/rootfs sh /create-rootfs.sh
rm /artifacts/rootfs/bin/qemu-arm-static
rm /artifacts/rootfs/bin/qemu-aarch64-static
rm /artifacts/rootfs/create-rootfs.sh

View File

@@ -1,51 +0,0 @@
#!/bin/sh
GPU_VERSION="$1"
DEQP_OPTIONS="--deqp-surface-width=256 --deqp-surface-height=256"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-visibility=hidden"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-log-images=disable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-watchdog=enable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-crashhandler=enable"
DEQP_OPTIONS="$DEQP_OPTIONS --deqp-surface-type=pbuffer"
export LIBGL_DRIVERS_PATH=/mesa/lib/dri/
export LD_LIBRARY_PATH=/mesa/lib/
export MESA_GLES_VERSION_OVERRIDE=3.0
DEVFREQ_GOVERNOR=`echo /sys/devices/platform/*.gpu/devfreq/devfreq0/governor`
echo performance > $DEVFREQ_GOVERNOR
cd /deqp/modules/gles2
# Generate test case list file
./deqp-gles2 $DEQP_OPTIONS --deqp-runmode=stdout-caselist | grep "TEST: dEQP-GLES2" | cut -d ' ' -f 2 > /tmp/case-list.txt
# Note: not using sorted input and comm, becuase I want to run the tests in
# the same order that dEQP would.
while read -r line; do
if echo "$line" | grep -q '^[^#]'; then
sed -i "/$line/d" /tmp/case-list.txt
fi
done < /deqp/deqp-$GPU_VERSION-skips.txt
/deqp/deqp-volt --cts-build-dir=/deqp \
--threads=8 \
--test-names-file=/tmp/case-list.txt \
--results-file=/tmp/results.txt \
--no-passed-results \
--regression-file=/deqp/deqp-$GPU_VERSION-fails.txt \
--no-rerun-tests \
--print-regression \
--no-print-fail \
--no-print-quality \
--no-colour-term \
$DEQP_OPTIONS
if [ $? -ne 0 ]; then
echo "Regressions detected"
echo "deqp: fail"
else
echo "No regressions detected"
echo "deqp: pass"
fi

View File

@@ -1,61 +0,0 @@
job_name: mesa-deqp-{{ gpu_version }}
device_type: {{ lava_device_type }}
timeouts:
job:
minutes: 40
action:
minutes: 10
actions:
power-off:
seconds: 30
priority: 75
visibility: public
actions:
- deploy:
timeout:
minutes: 10
to: tftp
kernel:
url: {{ base_artifacts_url }}/{{ kernel_image_name }}
{{ kernel_image_type }}
ramdisk:
url: {{ base_artifacts_url }}/lava-rootfs-{{ arch }}.cpio.gz
compression: gz
dtb:
url: {{ base_artifacts_url }}/{{ device_type }}.dtb
os: oe
- boot:
timeout:
minutes: 5
method: {{ boot_method }}
commands: ramdisk
prompts:
- '#'
- test:
timeout:
minutes: 60
definitions:
- repository:
metadata:
format: Lava-Test Test Definition 1.0
name: deqp
description: "Mesa dEQP test plan"
os:
- oe
scope:
- functional
run:
steps:
- mount -t proc none /proc
- mount -t sysfs none /sys
- mount -t devtmpfs none /dev
- mkdir -p /dev/pts
- mount -t devpts devpts /dev/pts
- echo 3 > /proc/sys/kernel/printk
- sh /deqp/lava-deqp-runner.sh {{ gpu_version }}
- cat /proc/loadavg
parse:
pattern: '(?P<test_case_id>\S*):\s+(?P<result>(pass|fail))'
from: inline
name: deqp
path: inline/mesa-deqp.yaml

View File

@@ -1,209 +0,0 @@
variables:
LAVA_DEBIAN_VERSION: testing-slim
LAVA_IMAGE_TAG: "lava-2019-10-23-1"
include:
- project: 'wayland/ci-templates'
ref: b7030c2cd0d6ccc5f6d4f8299bafa4daa9240d71
file: '/templates/debian.yml'
# When to automatically run the CI
.ci-run-policy:
only:
- branches@mesa/mesa
- merge_requests
- /^ci([-/].*)?$/
retry:
max: 2
when:
- runner_system_failure
# Build Docker image with deqp, the rootfs and the build deps for Mesa
.lava-container:
extends:
- .debian@container-ifnot-exists
- .container
variables:
DEBIAN_TAG: '${DEBIAN_ARCH}-${LAVA_IMAGE_TAG}'
DEBIAN_EXEC: 'DEBIAN_ARCH=${DEBIAN_ARCH}
GCC_ARCH=${GCC_ARCH}
KERNEL_ARCH=${KERNEL_ARCH}
VOLT_ARCH=${VOLT_ARCH}
DEFCONFIG=${DEFCONFIG}
DEVICE_TREES="${DEVICE_TREES}"
KERNEL_IMAGE_NAME=${KERNEL_IMAGE_NAME}
bash .gitlab-ci/lava-debian-install.sh'
DEBIAN_VERSION: ${LAVA_DEBIAN_VERSION}
lava-container:armhf:
extends: .lava-container
variables:
DEBIAN_ARCH: "armhf"
GCC_ARCH: "arm-linux-gnueabihf"
KERNEL_ARCH: "arm"
VOLT_ARCH: "armhf"
DEFCONFIG: "arch/arm/configs/multi_v7_defconfig"
DEVICE_TREES: "arch/arm/boot/dts/rk3288-veyron-jaq.dtb arch/arm/boot/dts/sun8i-h3-libretech-all-h3-cc.dtb"
KERNEL_IMAGE_NAME: "zImage"
lava-container:arm64:
extends: .lava-container
variables:
DEBIAN_ARCH: "arm64"
GCC_ARCH: "aarch64-linux-gnu"
KERNEL_ARCH: "arm64"
VOLT_ARCH: "aarch64"
DEFCONFIG: "arch/arm64/configs/defconfig"
DEVICE_TREES: "arch/arm64/boot/dts/rockchip/rk3399-gru-kevin.dtb arch/arm64/boot/dts/amlogic/meson-gxl-s905x-libretech-cc.dtb"
KERNEL_IMAGE_NAME: "Image"
.lava-build:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:$DEBIAN_ARCH-$LAVA_IMAGE_TAG
extends:
- .build-linux
# Use ccache transparently, and print stats before/after
before_script:
- mkdir -p results mesa-build
- mkdir -p ccache
- export PATH="/usr/lib/ccache:$PATH"
- export CCACHE_BASEDIR="$PWD"
- export CCACHE_DIR="$PWD/ccache"
- ccache --max-size=1500M
- ccache --zero-stats || true
- ccache --show-stats || true
script:
# Build Mesa
- /usr/share/meson/debcrossgen --arch ${DEBIAN_ARCH} -o /tmp/cross_file.txt
- meson . mesa-build
--cross-file /tmp/cross_file.txt
--libdir /artifacts/rootfs/mesa/lib/
--buildtype debugoptimized
-D gallium-drivers=kmsro,panfrost,lima
-D dri-drivers=
-D prefix=/artifacts/rootfs/mesa
-D glx=disabled
-D gbm=false
-D egl=true
-D platforms=surfaceless
-D osmesa=none
-D dri3=false
-D gallium-vdpau=false
-D gallium-xvmc=false
-D gallium-omx=disabled
-D gallium-va=false
-D gallium-xa=false
-D gallium-nine=false
-D llvm=false
- ninja -C mesa-build -j4
- ninja -C mesa-build install
- find /artifacts/rootfs/mesa/lib -name \*.so -exec ${GCC_ARCH}-strip {} \;
- du -sh /artifacts/rootfs/mesa/*
- rm -rf /artifacts/rootfs/mesa/include
# Pack rootfs
- cp .gitlab-ci/lava-deqp-runner.sh /artifacts/rootfs/deqp/.
- cp .gitlab-ci/deqp-*-fails.txt /artifacts/rootfs/deqp/.
- cp .gitlab-ci/deqp-*-skips.txt /artifacts/rootfs/deqp/.
- du -sh /artifacts/rootfs/deqp/*
- find /artifacts/rootfs/ -type f -printf "%s\t%p\n" | sort -n
- pushd /artifacts/rootfs/ ; find -H | cpio -H newc -v -o | gzip -c - > $CI_PROJECT_DIR/results/lava-rootfs-${DEBIAN_ARCH}.cpio.gz; popd
# Copy kernel and DT
- cp /artifacts/${KERNEL_IMAGE_NAME} /artifacts/*.dtb $CI_PROJECT_DIR/results/.
# Generate LAVA job
- cd $CI_PROJECT_DIR
- .gitlab-ci/generate_lava.py
--template .gitlab-ci/lava-deqp.yml.jinja2
--arch ${DEBIAN_ARCH}
--base-artifacts-url $CI_PROJECT_URL/-/jobs/$CI_JOB_ID/artifacts/raw/results
--device-types ${DEVICE_TYPES}
--kernel-image-name ${KERNEL_IMAGE_NAME}
after_script:
- export CCACHE_DIR="$PWD/ccache"
- ccache --show-stats
artifacts:
when: always
paths:
- results/
lava-build:armhf:
extends: .lava-build
needs: ["lava-container:armhf"]
variables:
DEBIAN_ARCH: "armhf"
GCC_ARCH: "arm-linux-gnueabihf"
DEVICE_TYPES: "rk3288-veyron-jaq sun8i-h3-libretech-all-h3-cc"
KERNEL_IMAGE_NAME: "zImage"
lava-build:arm64:
extends: .lava-build
needs: ["lava-container:arm64"]
variables:
DEBIAN_ARCH: "arm64"
GCC_ARCH: "aarch64-linux-gnu"
DEVICE_TYPES: "rk3399-gru-kevin meson-gxl-s905x-libretech-cc"
KERNEL_IMAGE_NAME: "Image"
.lava-test:
extends:
- .test
script:
- lava_job_id=`lavacli jobs submit $CI_PROJECT_DIR/results/lava-deqp-$DEVICE_TYPE.yml`
- echo $lava_job_id
- lavacli jobs logs $lava_job_id | grep -a -v "{'case':" | tee results/lava-deqp-$lava_job_id.log
- lavacli jobs show $lava_job_id
- result=`lavacli results $lava_job_id 0_deqp deqp | head -1`
- echo $result
- '[[ "$result" == "pass" ]]'
artifacts:
when: always
paths:
- results/
.lava-test:armhf:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:armhf-$LAVA_IMAGE_TAG
extends: .lava-test
needs:
- lava-container:armhf
- lava-build:armhf
dependencies:
- lava-build:armhf
.lava-test:arm64:
image: $CI_REGISTRY_IMAGE/debian/$LAVA_DEBIAN_VERSION:arm64-$LAVA_IMAGE_TAG
extends: .lava-test
needs:
- lava-container:arm64
- lava-build:arm64
dependencies:
- lava-build:arm64
panfrost-t760-test:armhf:
extends: .lava-test:armhf
variables:
DEVICE_TYPE: rk3288-veyron-jaq
tags:
- lava-rk3288-veyron-jaq
panfrost-t860-test:arm64:
extends: .lava-test:arm64
variables:
DEVICE_TYPE: rk3399-gru-kevin
tags:
- lava-rk3399-gru-kevin
lima-test:armhf:
extends: .lava-test:armhf
variables:
DEVICE_TYPE: sun8i-h3-libretech-all-h3-cc
tags:
- lava-sun8i-h3-libretech-all-h3-cc
lima-test:arm64:
extends: .lava-test:arm64
variables:
DEVICE_TYPE: meson-gxl-s905x-libretech-cc
tags:
- lava-meson-gxl-s905x-libretech-cc

View File

@@ -1,13 +0,0 @@
call "C:\Program Files (x86)\Microsoft Visual Studio\%VERSION%\Common7\Tools\VsDevCmd.bat" -arch=%ARCH%
del /Q /S _build
meson _build ^
-Dbuild-tests=true ^
-Db_vscrt=mtd ^
-Dbuildtype=release ^
-Dllvm=false ^
-Dgallium-drivers=swrast ^
-Dosmesa=gallium
meson configure _build
ninja -C _build
ninja -C _build test

View File

@@ -1,89 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
CROSS_FILE=/cross_file-"$CROSS".txt
# We need to control the version of llvm-config we're using, so we'll
# tweak the cross file or generate a native file to do so.
if test -n "$LLVM_VERSION"; then
LLVM_CONFIG="llvm-config-${LLVM_VERSION}"
echo -e "[binaries]\nllvm-config = '`which $LLVM_CONFIG`'" > native.file
if [ -n "$CROSS" ]; then
sed -i -e '/\[binaries\]/a\' -e "llvm-config = '`which $LLVM_CONFIG`'" $CROSS_FILE
fi
$LLVM_CONFIG --version
else
rm -f native.file
touch native.file
fi
# cross-xfail-$CROSS, if it exists, contains a list of tests that are expected
# to fail for the $CROSS configuration, one per line. you can then mark those
# tests in their meson.build with:
#
# test(...,
# should_fail: meson.get_cross_property('xfail', '').contains(t),
# )
#
# where t is the name of the test, and the '' is the string to search when
# not cross-compiling (which is empty, because for amd64 everything is
# expected to pass).
if [ -n "$CROSS" ]; then
CROSS_XFAIL=.gitlab-ci/cross-xfail-"$CROSS"
if [ -s "$CROSS_XFAIL" ]; then
sed -i \
-e '/\[properties\]/a\' \
-e "xfail = '$(tr '\n' , < $CROSS_XFAIL)'" \
"$CROSS_FILE"
fi
fi
rm -rf _build
meson _build --native-file=native.file \
--wrap-mode=nofallback \
${CROSS+--cross "$CROSS_FILE"} \
-D prefix=`pwd`/install \
-D libdir=lib \
-D buildtype=${BUILDTYPE:-debug} \
-D build-tests=true \
-D libunwind=${UNWIND} \
${DRI_LOADERS} \
-D dri-drivers=${DRI_DRIVERS:-[]} \
${GALLIUM_ST} \
-D gallium-drivers=${GALLIUM_DRIVERS:-[]} \
-D vulkan-drivers=${VULKAN_DRIVERS:-[]} \
-D I-love-half-baked-turnips=true \
${EXTRA_OPTION}
cd _build
meson configure
ninja -j4
LC_ALL=C.UTF-8 ninja test
ninja install
cd ..
if test -n "$MESON_SHADERDB"; then
./.gitlab-ci/run-shader-db.sh;
fi
# Delete 2MB of includes from artifacts.
rm -rf install/include
# Strip the drivers in the artifacts to cut 80% of the artifacts size.
if [ -n "$CROSS" ]; then
STRIP=`sed -n -E "s/strip\s*=\s*'(.*)'/\1/p" "$CROSS_FILE"`
if [ -z "$STRIP" ]; then
echo "Failed to find strip command in cross file"
exit 1
fi
else
STRIP="strip"
fi
find install -name \*.so -exec $STRIP {} \;
# Test runs don't pull down the git tree, so put the dEQP helper
# script and associated bits there.
mkdir -p artifacts/
cp -Rp .gitlab-ci/deqp* artifacts/
# cp -Rp src/freedreno/ci/expected* artifacts/

View File

@@ -1,17 +0,0 @@
set -e
set -v
ARTIFACTSDIR=`pwd`/shader-db
mkdir -p $ARTIFACTSDIR
export DRM_SHIM_DEBUG=true
LIBDIR=`pwd`/install/lib
export LD_LIBRARY_PATH=$LIBDIR
cd /usr/local/shader-db
for driver in freedreno v3d; do
env LD_PRELOAD=$LIBDIR/lib${driver}_noop_drm_shim.so \
./run -j 4 ./shaders \
> $ARTIFACTSDIR/${driver}-shader-db.txt
done

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@@ -1,12 +0,0 @@
#!/bin/bash
set -e
set -o xtrace
if test -n "$LLVM_VERSION"; then
export LLVM_CONFIG="llvm-config-${LLVM_VERSION}"
fi
rm -rf build
scons $SCONS_TARGET force_scons=on
eval $SCONS_CHECK_COMMAND

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@@ -1,20 +0,0 @@
[binaries]
c = ['ccache', 'x86_64-w64-mingw32-gcc']
cpp = ['ccache', 'x86_64-w64-mingw32-g++']
ar = 'x86_64-w64-mingw32-ar'
strip = 'x86_64-w64-mingw32-strip'
pkgconfig = '/usr/local/bin/x86_64-w64-mingw32-pkg-config'
windres = 'x86_64-w64-mingw32-windres'
exe_wrapper = ['wine64']
[properties]
needs_exe_wrapper = True
sys_root = '/usr/x86_64-w64-mingw32/'
[host_machine]
system = 'windows'
cpu_family = 'x86_64'
cpu = 'x86_64'
endian = 'little'
; vim: ft=dosini

490
.mailmap
View File

@@ -1,490 +0,0 @@
Aapo Tahkola <aet@rasterburn.org> <aapo@aapo-desktop.(none)>
Adam Jackson <ajax@redhat.com> <ajax@benzedrine.nwnk.net>
Adam Jackson <ajax@redhat.com> <ajax@freedesktop.org>
Adrian Marius Negreanu <adrian.m.negreanu@intel.com> Adrian Negreanu <adrian.m.negreanu@intel.com>
Adrian Marius Negreanu <adrian.m.negreanu@intel.com> Negreanu Marius Adrian <adrian.m.negreanu@intel.com>
Dave Airlie <airlied@redhat.com> <airliedfreedesktop.org>
Dave Airlie <airlied@redhat.com> airlied <airlied@unused-12-215.bne.redhat.com>
Dave Airlie <airlied@redhat.com> <airlied@dhcp-1-203.bne.redhat.com>
Dave Airlie <airlied@redhat.com> <airlied@gmail.com>
Dave Airlie <airlied@redhat.com> <airlied@itt42.(none)>
Dave Airlie <airlied@redhat.com> <airlied@linux.ie>
Dave Airlie <airlied@redhat.com> <airlied@nx6125b.(none)>
Dave Airlie <airlied@redhat.com> <airlied@panoply-rh.(none)>
Dave Airlie <airlied@redhat.com> <airlied@ppcg5.localdomain>
Alan Coopersmith <alan.coopersmith@oracle.com> <alan.coopersmith@sun.com>
Alan Hourihane <alanh@vmware.com> <alanh@tungstengraphics.com>
Alan Hourihane <alanh@vmware.com> <alanh@fairlite.demon.co.uk>
Alan Hourihane <alanh@vmware.com> <alanh@jetpack.(none)>
Alexander Monakov <amonakov@gmail.com> <amonakov@ispras.ru>
Alexander von Gluck IV <kallisti5@unixzen.com> Alexander von Gluck <kallisti5@unixzen.com>
Alexandros Frantzis <alexandros.frantzis@collabora.com> <Alexandros.Frantzis@canonical.com>
Alex Corscadden <alexc@vmware.com> <alexc@alexc-dev1.prom.eng.vmware.com>
Alex Corscadden <alexc@vmware.com> <alexc@alexc-dev1.vmware.com>
Alex Deucher <alexdeucher@gmail.com> <alexander.deucher@amd.com>
Alex Deucher <alexdeucher@gmail.com> <agd5f@yahoo.com>
Alex Deucher <alexdeucher@gmail.com> <alex@botch2.com>
Alex Deucher <alexdeucher@gmail.com> <alex@botch2.(none)>
Alex Deucher <alexdeucher@gmail.com> <alex@cube.(none)>
Alex Deucher <alexdeucher@gmail.com> <alex@samba.(none)>
Andreas Fänger <a.faenger@e-sign.com> <a.faenger@e-sign.com>
Andreas Hartmetz <ahartmetz@gmail.com> <andreas.hartmetz@kdab.com>
Andre Heider <a.heider@gmail.com>
Andreas Heider <andreas@heider.io>
Andreas Pokorny <andreas.pokorny@canonical.com> <andreas.pokorny@elektrobit.com>
Andrew Randrianasulu <randrianasulu@gmail.com> <randrik_a@yahoo.com>
Andrew Randrianasulu <randrianasulu@gmail.com> <randrik@mail.ru>
Arthur Huillet <arthur.huillet@free.fr> Arthur HUILLET <arthur.huillet@free.fr>
Bas Nieuwenhuizen <bas@basnieuwenhuizen.nl> <basni@chromium.org>
Benjamin Franzke <benjaminfranzke@googlemail.com> ben <benjaminfranzke@googlemail.com>
Ben Skeggs <bskeggs@redhat.com> <darktama@beleth.(none)>
Ben Skeggs <bskeggs@redhat.com> <darktama@iinet.net.au>
Ben Skeggs <bskeggs@redhat.com> <darktama@nisroch.keine.ath.cx>
Ben Skeggs <bskeggs@redhat.com> <skeggsb-at-gmail.com>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@gmail.com>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@localhost.localdomain>
Ben Skeggs <bskeggs@redhat.com> <skeggsb@nisroch.keine.ath.cx>
Ben Widawsky <benjamin.widawsky@intel.com> Ben Widawsky <ben@bwidawsk.net>
Blair Sadewitz <blair.sadewitz@gmail.com> Blair Sadewitz <blair.sadewitz.gmail.com>
Boris Peterbarg <reist@users.sourceforge.net> reist <reist>
Brian Paul <brianp@vmware.com> Brian <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> <brian.e.paul@gmail.com>
Brian Paul <brianp@vmware.com> <brianp@kemper.freedesktop.org>
Brian Paul <brianp@vmware.com> brian <brian@cvp965.(none)>
Brian Paul <brianp@vmware.com> Brian <brian@i915.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@nostromo.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@poulsbo.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brian@ps3.localnet.net>
Brian Paul <brianp@vmware.com> Brian <brianp@vmware.com>
Brian Paul <brianp@vmware.com> Brian <brian@yutani.localnet.net>
Brian Paul <brianp@vmware.com> root <brian.paul@tungstengraphics.com>
Brian Paul <brianp@vmware.com> root <root@i915.localnet.net>
Brian Paul <brianp@vmware.com> root <root@nostromo.localnet.net>
Brian Paul <brianp@vmware.com> root <root@i965.localnet.net>
Bruce Merry <bmerry@users.sourceforge.net> <bmerry@gmail.com>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <s3734770@mail.zih.tu-dresden.de>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <carli@carli-laptop.(none)>
Carl-Philip Hänsch <cphaensch@googlemail.com> Carl-Philip Haensch <Carl-Philip.Haensch@mailbox.tu-dresden.de>
Chad Versace <chadversary@chromium.org> <chad@kiwitree.net>
Chad Versace <chadversary@chromium.org> <chad@chad-versace.us>
Chad Versace <chadversary@chromium.org> <Chad Versace chad@chad-versace.us>
Chad Versace <chadversary@chromium.org> <chad.versace@intel.com>
Chad Versace <chadversary@chromium.org> <chad.versace@linux.intel.com>
Chia-I Wu <olvaffe@gmail.com> <olv@lunarg.com>
Chia-I Wu <olvaffe@gmail.com> Chia-Wu <olvaffe@gmail.com>
Chih-Wei Huang <cwhuang@linux.org.tw> Chih-Wei Huang <cwhuang@android-x86.org>
Christian König <christian.koenig@amd.com> Christian Koenig <christian.koenig@amd.com>
Christian König <christian.koenig@amd.com> Christian König <christian.koenig at amd.com>
Christian König <christian.koenig@amd.com> Christian König <deathsimple@vodafone.de>
Christoph Brill <egore911@egore911.de> Christoph Bill <egore@gmx.de>
Christoph Brill <egore911@egore911.de> <egore@gmx.de>
Christoph Bumiller <christoph.bumiller@speed.at> <e0425955@student.tuwien.ac.at>
Christopher James Halse Rogers <christopher.halse.rogers@canonical.com> Christopher James Halse Rogers <raof@ubuntu.com>
Claudio Ciccani <klan@directfb.org> <klan@users.sf.net>
Claudio Ciccani <klan@directfb.org> <klan@users.sourceforge.net>
Connor Abbott <cwabbott0@gmail.com> <connor.w.abbott@intel.com>
Connor Abbott <cwabbott0@gmail.com> <connor.abbott@intel.com>
Corbin Simpson <MostAwesomeDude@gmail.com> <mostawesomed...@gmail.com>
Corbin Simpson <MostAwesomeDude@gmail.com> <mostawesomedude@gmail.com>
Courtney Goeltzenleuchter <courtney@lunarg.com> <courtney@LunarG.com>
Daniel Skinner <sio@users.sourceforge.net> sio <sio>
Daniel Stone <daniels@collabora.com> <daniel@fooishbar.org>
David Miller <davem@davemloft.net> David S. Miller <davem@davemloft.net>
David Miller <davem@davemloft.net> Dave Miller <davem@davemloft.net>
David Miller <davem@davemloft.net> davem69 <davem69>
David Heidelberger <david.heidelberger@ixit.cz> David Heidelberg <david@ixit.cz>
David Heidelberger <david.heidelberger@ixit.cz> <d.okias@gmail.com>
David Reveman <reveman@chromium.org> <c99drn@cs.umu.se>
Dieter Nützel <Dieter@nuetzel-hh.de> Dieter Nützel <dieter@nuetzel-hh.de>
Dmitry Cherkassov <dcherkassov@gmail.com> Dmitry Cherkasov <dcherkassov@gmail.com>
Dylan Baker <dylanx.c.baker@intel.com> <baker.dylan.c@gmail.com>
Edward O'Callaghan <funfunctor@folklore1984.net> <eocallaghan@alterapraxis.com>
Elie Tournier <tournier.elie@gmail.com>
Emeric Grange <emeric.grange@gmail.com> Emeric <emeric.grange@gmail.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.veliko@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@collabora.co.uk>
Emil Velikov <emil.l.velikov@gmail.com> <emil.veliikov@collabora.com>
Emil Velikov <emil.l.velikov@gmail.com> <emil.velikov@gmail.com>
Emil Velikov <emil.l.velikov@gmail.com> <emmil.velikov@collabora.com>
Eric Anholt <eric@anholt.net> Eric Anholt <anholt@FreeBSD.org>
Eric Engestrom <eric@engestrom.ch> <eric.engestrom@imgtec.com>
Eric Engestrom <eric@engestrom.ch> <eric.engestrom@intel.com>
Eugeni Dodonov <eugeni.dodonov@intel.com> <eugeni@mandriva.com>
Fabian Bieler <der.fabe@gmx.net> <fabianbieler@fastmail.fm>
Fabian Bieler <der.fabe@gmx.net> <&lt;der.fabe@gmx.net&gt>
Feng, Haitao <haitao.feng@intel.com> Haitao Feng <haitao.feng@intel.com>
Frank Binns <frank.binns@imgtec.com> <francisbinns@gmail.com>
Frank Henigman <fjhenigman@google.com> <fjhenigman@chromium.org>
George Sapountzis <gsapountzis@gmail.com> George Sapountzis <gsap7@yahoo.gr>
Gert Wollny <gert.wollny@collabora.com> <gw.fossdev@gmail.com>
Gwenole Beauchesne <gwenole.beauchesne@intel.com> <gb.devel@gmail.com>
Hamish Marson <hmarson@users.sourceforge.net> hmarson <hmarson>
Hans de Goede <hdegoede@redhat.com> Hans de Goede <j.w..r..degoede@hhs.nl>
Homer Hsing <dongsheng.xing@intel.com> <homer.hsing@gmail.com>
Hui Qi Tay <hqtay@vmware.com> <tayhuiqithq@gmail.com>
Ian Romanick <ian.d.romanick@intel.com> <idr@freedesktop.org>
Ian Romanick <ian.d.romanick@intel.com> <idr@us.ibm.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@vmware.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@aurora.(none)>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@aurora.walkyrie.se>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@tungstengraphics.com>
Jakob Bornecrantz <wallbraker@gmail.com> <wallbraker 'at' gmail 'dot' com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob.bornecrantz@collabora.com>
Jakob Bornecrantz <wallbraker@gmail.com> <jakob@collabora.com>
Jakub Bogusz <qboosh@pld-linux.org> <gboosh@pld-linux.org>
James Legg <jlegg@feralinteractive.com> <lankyleggy@gmail.com>
Jan Vesely <jano.vesely@gmail.com> Jan Vesely <jan.vesely@rutgers.edu>
Jason Ekstrand <jason@jlekstrand.net> <jason.ekstrand@intel.com>
Jeremy Huddleston <jeremyhu@apple.com> <jeremyhu@freedesktop.org>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@tifa.local>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@vincent.local>
Jeremy Huddleston <jeremyhu@apple.com> <jeremy@yuffie.local>
Jeremy Huddleston <jeremyhu@apple.com> Jeremy Huddleston Sequoia <jeremyhu@apple.com>
Jeremy Kolb <jkolb@freedesktop.org> <jkolb@brandeis.edu>
Jerome Glisse <jglisse@redhat.com> <glisse@freedesktop.org>
Jerome Glisse <jglisse@redhat.com> <glisse@kemper.freedesktop.org>
Jerome Glisse <jglisse@redhat.com> John Doe <glisse@barney.(none)>
Jerome Glisse <jglisse@redhat.com> John Doe <glisse@localhost.localdomain>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@hobbes.lan>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@hobbes.(none)>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@jbarnes-desktop.localdomain>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@jbarnes-t61.(none)>
Jesse Barnes <jesse.barnes@intel.com> <jbarnes@virtuousgeek.org>
Joakim Sindholt <bacn@zhasha.com> <opensource@zhasha.com>
Joakim Sindholt <bacn@zhasha.com> <zhasha@gallium-dev.(none)>
Jochen Gerlach <jtg@users.sourceforge.net> jtg <jtg>
Joel Bosveld <joel.bosveld@gmail.com> <Joel.Bosveld@gmail.com>
Jonathan Adamczewski <jadamcze@utas.edu.au> <jadamcze@utas.edu.a>
Jon Turney <jon.turney@dronecode.org.uk> Jon TURNEY <jon.turney@dronecode.org.uk>
José Fonseca <jfonseca@vmware.com> Jose Fonseca <jfonseca@vmware.com>
José Fonseca <jfonseca@vmware.com> Jose Fonseca <jrfonseca@tungstengraphics.com>
José Fonseca <jfonseca@vmware.com> <jfonseca@pegasus.(none)>
José Fonseca <jfonseca@vmware.com> <jfonseca@titan.(none)>
José Fonseca <jfonseca@vmware.com> <jose.r.fonseca@gmail.com>
José Fonseca <jfonseca@vmware.com> <jrfonseca@tungstengraphics.com>
José Fonseca <jfonseca@vmware.com> <j_r_fonseca@yahoo.co.uk>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk Jansen <jouk@hrem.nano.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk Jansen <joukj@hrem.stm.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> joukj <joukj@tarantella.(none)>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk <joukj@tarantella.nano.tudelft.nl>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> Jouk <joukj@tarantella.(none)>
Jouk Jansen <joukj@hrem.nano.tudelft.nl> J.Jansen <joukj@tarantella.nano.tudelft.nl>
Juan Zhao <juan.j.zhao@intel.com> <juan.j.zhao@linux.intel.com>
Julien Cristau <jcristau@debian.org> <julien.cristau@logilab.fr>
Julien Isorce <j.isorce@samsung.com> <julien.isorce@gmail.com>
Kalyan Kondapally <kalyan.kondapally@intel.com> <kondapallykalyancontribute@gmail.com>
Karl Schultz <karl.w.schultz@gmail.com> Karl Schultze <k.w.schultz@comcast.net>
Karl Schultz <karl.w.schultz@gmail.com> unknown <kwschult@.na.qualcomm.com>
Karl Schultz <karl.w.schultz@gmail.com> <k.w.schultz@comcast.net>
Karl Schultz <karl.w.schultz@gmail.com> <Karl.W.Schultz@gmail.com>
Karl Schultz <karl.w.schultz@gmail.com> <kschultz@freedesktop.org>
Keith Harrison <sio2@users.sourceforge.net> sio2 <sio2>
Keith Packard <keithp@keithp.com> <keithp@koto.keithp.com>
Keith Packard <keithp@keithp.com> <keithp@neko.keithp.com>
Keith Whitwell <keithw@vmware.com> <keith@tungstengraphics.com>
Keith Whitwell <keithw@vmware.com> keithw <keithw@keithw-laptop.(none)>
Kristian Høgsberg <krh@bitplanet.net> <krh@redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@hinata.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@sasori.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <krh@temari.boston.redhat.com>
Kristian Høgsberg <krh@bitplanet.net> <kristian.h.kristensen@intel.com>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@chromium.org>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@google.com>
Kristian Høgsberg <krh@bitplanet.net> <hoegsberg@gmail.com>
Krzesimir Nowak <qdlacz@gmail.com> <krzesimir@kinvolk.io>
Li Peng <peng.li@intel.com> <peng.li@linux.intel.com>
Lucas Stach <dev@lynxeye.de> <l.stach@pengutronix.de>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <dev@mblankhorst.nl>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <m.b.lankhorst@gmail.com>
Maarten Lankhorst <maarten.lankhorst@ubuntu.com> <maarten.lankhorst@canonical.com>
Maciej Cencora <m.cencora@gmail.com> <maciej@osiris.(none)>
Marc-André Lureau <marcandre.lureau@gmail.com> Marc-Andre Lureau <marcandre.lureau@gmail.com>
Marc Dietrich <marvin24@gmx.de> Marc <marvin24@gmx.de>
Marc Dietrich <marvin24@gmx.de> marvin24 <marvin24@gmx.de>
Marcin Ślusarz <marcin.slusarz@gmail.com> Marcin Slusarz <marcin.slusarz@gmail.com>
Marek Olšák <maraeo@gmail.com> <marek.olsak@amd.com>
Mario Kleiner <mario.kleiner.de@gmail.com> kleinerm <mario.kleiner@tuebingen.mpg.de>
Mario Kleiner <mario.kleiner.de@gmail.com> <mario.kleiner@tuebingen.mpg.de>
Mark Mueller <markkmueller@gmail.com> <MarkKMueller@gmail.com>
Marta Lofstedt <marta.lofstedt@intel.com> <marta.lofstedt@linux.intel.com>
Martin Peres <martin.peres@linux.intel.com> <martin.peres@labri.fr>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Froehlich <Mathias.Froehlich@gmx.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Froehlich <Mathias.Froehlich@web.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> Mathias Frohlich <M.Froehlich@science-computing.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> <frohlich8@users.sourceforge.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> <Mathias.Froehlich@gmx.net>
Mathias Fröhlich <mathias.froehlich@gmx.net> <Mathias.Froehlich@web.de>
Mathias Fröhlich <mathias.froehlich@gmx.net> M.Froehlich@science-computing.de <M.Froehlich@science-computing.de>
Matthew W. S. Bell <matthew@bells23.org.uk> Matthew Bell <matthew@bells23.org.uk>
Maxence Le Doré <maxence.ledore@gmail.com> Maxence Le Dore <maxence.ledore@gmail.com>
Micah Fedke <micah.fedke@collabora.co.uk> <M.Fedke@Astronautics.com>
Michal Krol <michal@vmware.com> <michal@tungstengraphics.com>
Michal Krol <michal@vmware.com> Michal Krol <michal@ubuntu-vbox.(none)>
Michal Krol <michal@vmware.com> Michal Krol <mjkrol@gmail.org>
Michal Krol <michal@vmware.com> michal <michal@capacitor.(none)>
Michal Krol <michal@vmware.com> michal <michal@michal-laptop.(none)>
Michal Krol <michal@vmware.com> michal <michal@quad.(none)>
Michal Krol <michal@vmware.com> michal <michal@transistor.(none)>
Michal Krol <michal@vmware.com> Michal <michal@tungstengraphics.com>
Michal Krol <michal@vmware.com> michal <michal@wmvare.com>
Michel Dänzer <michel@daenzer.net> <michel.daenzer@amd.com>
Michel Dänzer <michel@daenzer.net> <daenzer@vmware.com>
Michel Dänzer <michel@daenzer.net> <michel@tungstengraphics.com>
Michel Dänzer <michel@daenzer.net> Michel Daenzer <michel.daenzer@amd.com>
Michel Dänzer <michel@daenzer.net> Michel Daenzer <daenzer@localhost.(none)>
Michel Dänzer <michel@daenzer.net> <mdaenzer@redhat.com>
Mike Kaplinskiy <mike.kaplinskiy@gmail.com> Mike Kaplinksiy <mike.kaplinskiy@gmail.com>
Mike Kaplinskiy <mike.kaplinskiy@gmail.com> <mike.kaplinskiy@gmai.com>
Mike Stroyan <mike@lunarg.com> <mike@LunarG.com>
Nian Wu <nian.wu@intel.com> <nian@graphics.(none)>
Nian Wu <nian.wu@intel.com> <nian@tinderbox.sh.intel.com>
Nick Bowler <nbowler@draconx.ca>
Nick Sarnie <commendsarnex@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> <nhaehnle@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <nhaehnle@gmail.com>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <prefect_@gmx.net>
Nicolai Hähnle <nicolai.haehnle@amd.com> Nicolai Haehnle <prefect@upb.de>
Nigel Stewart <nigels@users.sourceforge.net> <nigels@sourceforge.net>
Nigel Stewart <nigels@users.sourceforge.net> <nstewart@nvidia.com>
nobled <nobled@dreamwidth.org> <nobled2@nobled2-karmic.(none)>
Oliver McFadden <oliver.mcfadden@linux.intel.com> <z3ro.geek@gmail.com>
Owain Ainsworth <zerooa@googlemail.com> Owain G. Ainsworth <oga@openbsd.org>
Owen W. Taylor <otaylor@fishsoup.net> Owen Taylor <otaylor@snell.localdomain>
Patrice Mandin <patmandin@gmail.com> <patrice@manoir.racoon.city>
Patrice Mandin <patmandin@gmail.com> <pmandin@caramail.com>
Patrice Mandin <patmandin@gmail.com> <pmandin@freedesktop.org>
Pauli Nieminen <pauli.nieminen@linux.intel.com> <suokkos@gmail.com>
Paulo Zanoni <paulo.r.zanoni@intel.com> Paulo Zanoni <pzanoni@mandriva.com>
Paul Seidler <sepek@exherbo.org> Paul Seidler <pl.seidler@googlemail.com>
Pekka Paalanen <pekka.paalanen@collabora.co.uk> <ppaalanen@gmail.com>
Pekka Paalanen <pekka.paalanen@collabora.co.uk> <pq@iki.fi>
Peter Hutterer <peter.hutterer@who-t.net> <peter@cs.unisa.edu.au>
Pierre-Eric Pelloux-Prayer <pelloux@gmail.com> pepp <pelloux@gmail.com>
Pierre Willenbrock <pierre@pirsoft.de> Pierre Willenbrok <pierre@pirsoft.de>
Quentin Glidic <sardemff7+git@sardemff7.net> <sardemff7@sardemff7.net>
RALOVICH, Kristóf <tade60@freemail.hu> <kristof.ralovich@gmail.com>
Richard Li <richardradeon@gmail.com> <RichardZ.Li@amd.com>
# The next ones are not 100% sure
Richard Li <richardradeon@gmail.com> richard <richard@richard-desktop3.(none)>
Richard Li <richardradeon@gmail.com> richard <richard@richard-desktop.(none)>
Richard Li <richardradeon@gmail.com> root <root@richard-desktop.(none)>
Richard Sandiford <rsandifo@linux.vnet.ibm.com> <r.sandiford@uk.ibm.com>
Rob Clark <robclark@freedesktop.org> <Rob Clark robdclark@freedesktop.org>
Rob Clark <robclark@freedesktop.org> <robdclark@gmail.com>
Robert Bragg <robert@sixbynine.org> <robert@linux.intel.com>
Robert Ellison <papillo@vmware.com> <papillo@i965-laptop.(none)>
Robert Ellison <papillo@vmware.com> <papillo@tungstengraphics.com>
Robert Hooker <sarvatt@ubuntu.com> <robert.hooker@canonical.com>
Roland Scheidegger <sroland@vmware.com> <rscheidegger@gmx.ch>
Roland Scheidegger <sroland@vmware.com> <sroland@tungstengraphics.com>
Roy Spliet <rspliet@eclipso.eu> <r.spliet@student.tudelft.nl>
Rune Petersen <rune@megahurts.dk> Rune Peterson <rune@megahurts.dk>
Ryan Houdek <sonicadvance1@gmail.com> <Sonicadvance1@gmail.com>
Sam Hocevar <sam@hocevar.net> Sam Hocevar <sam@zoy.org>
Samuel Iglesias Gonsálvez <siglesias@igalia.com> Samuel Iglesias Gonsalvez <siglesias@igalia.com>
Sean D'Epagnier <sean@depagnier.com> <geckosenator@freedesktop.org>
Serge Martin <edb+mesa@sigluy.net> Serge Martin (EdB) <edb+mesa@sigluy.net>
Serge Martin <edb+mesa@sigluy.net> EdB <edb+mesa@sigluy.net>
Sinclair Yeh <syeh@vmware.com> <sinclair.yeh@intel.com>
Stefan Brüns <stefan.bruens@rwth-aachen.de> <Stefan.Bruens@rwth-aachen.de>
Stéphane Marchesin <marcheu@chromium.org> Stephane Marchesin <marchesin@icps.u-strasbg.fr>
Stéphane Marchesin <marcheu@chromium.org> Stephane Marchesin <stephane.marchesin@gmail.com>
Sven M. Hallberg <pesco@users.sourceforge.net> pesco <pesco>
Tapani Pälli <tapani.palli@intel.com> <tapani.palli@gmail.com>
Tapani Pälli <tapani.palli@intel.com> Tapani <tapani.palli@intel.com>
Thierry Reding <treding@nvidia.com> <thierry@gilfi.de>
Thierry Reding <treding@nvidia.com> <thierry.reding@avionic-design.de>
Thierry Vignaud <thierry.vignaud@gmail.com> <tvignaud@mandriva.com>
Thomas Balling Sørensen <tball@io.dk> <tball@tball-laptop.(none)>
Thomas Hellstrom <thellstrom@vmware.com> Thomas <thellstrom@vmware.com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thellstrom-at-vmware-dot-com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thomas-at-tungstengraphics-dot-com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellstrom <thomas@tungstengraphics.com>
Thomas Hellstrom <thellstrom@vmware.com> Thomas Hellström <thomas@tungstengraphics.com>
Thomas Tanner <tanner@gmx.net> tanner <tanner>
Tilman Sauerbeck <tilman@code-monkey.de> <tilman@freedesktop.org>
Timothy Arceri <timothy.arceri@collabora.com> <t_arceri@yahoo.com.au>
Timothy Arceri <timothy.arceri@collabora.com> Timothy <t_arceri@yahoo.com.au>
Tom Fogal <tfogal@alumni.unh.edu> <tfogal@sci.utah.edu>
Tom Stellard <thomas.stellard@amd.com> <tstellar@gmail.com>
Tom Stellard <thomas.stellard@amd.com> Thomas Stellard <tom.stellard@amd.com>
Tomeu Vizoso <tomeu.vizoso@collabora.com> <tomeu@tomeuvizoso.net>
Tormod Volden <debian.tormod@gmail.com> <lists.tormod@gmail.com>
Török Edwin <edwin+mesa@etorok.net> Török Edvin <edwintorok@gmail.com>
Török Edwin <edwin+mesa@etorok.net> <edwintorok@gmail.com>
Ville Syrjälä <ville.syrjala@linux.intel.com> Ville Syrjala <syrjala@freedesktop.org>
Ville Syrjälä <ville.syrjala@linux.intel.com> Ville Syrjala <syrjala@sci.fi>
Vincent Lejeune <vljn@ovi.com> <peluche.canard@gmail.com>
Vinson Lee <vlee@freedesktop.org> <vlee@vmware.com>
Zhenyu Wang <zhenyuw@linux.intel.com> Wang Zhenyu <zhenyu.z.wang@intel.com>
Zack Rusin <zackr@vmware.com> <zack@kde.org>
Zack Rusin <zackr@vmware.com> <zack@pixel.(none)>
Zack Rusin <zackr@vmware.com> <zack@tungstengraphics.com>
Zhang <zxpmyth@yahoo.com.cn> zhang <zxpmyth@yahoo.com.cn>

File diff suppressed because it is too large Load Diff

View File

@@ -1,63 +0,0 @@
language: c
os: osx
cache:
ccache: true
env:
global:
- PKG_CONFIG_PATH=""
matrix:
include:
- env:
- BUILD=meson
- env:
- BUILD=scons
before_install:
- HOMEBREW_NO_AUTO_UPDATE=1 brew install expat gettext
- if test "x$BUILD" = xmeson; then
HOMEBREW_NO_AUTO_UPDATE=1 brew install ninja;
fi
- if test "x$BUILD" = xscons; then
HOMEBREW_NO_AUTO_UPDATE=1 brew install scons;
fi
# Set PATH for homebrew pip3 installs
- PATH="$HOME/Library/Python/3.6/bin:${PATH}"
# Set PKG_CONFIG_PATH for keg-only expat
- PKG_CONFIG_PATH="/usr/local/opt/expat/lib/pkgconfig:${PKG_CONFIG_PATH}"
# Set PATH for keg-only gettext
- PATH="/usr/local/opt/gettext/bin:${PATH}"
# Install xquartz for prereqs ...
- XQUARTZ_VERSION="2.7.11"
- wget -nv https://dl.bintray.com/xquartz/downloads/XQuartz-${XQUARTZ_VERSION}.dmg
- hdiutil attach XQuartz-${XQUARTZ_VERSION}.dmg
- sudo installer -pkg /Volumes/XQuartz-${XQUARTZ_VERSION}/XQuartz.pkg -target /
- hdiutil detach /Volumes/XQuartz-${XQUARTZ_VERSION}
# ... and set paths
- PKG_CONFIG_PATH="/opt/X11/share/pkgconfig:/opt/X11/lib/pkgconfig:${PKG_CONFIG_PATH}"
install:
- if test "x$BUILD" = xmeson; then
pip3 install --user meson;
pip3 install --user mako;
fi
- if test "x$BUILD" = xscons; then
pip2 install --user mako;
fi
script:
- if test "x$BUILD" = xmeson; then
meson _build -Dbuild-tests=true;
ninja -C _build || travis_terminate 1;
ninja -C _build test || travis_terminate 1;
ninja -C _build install || travis_terminate 1;
fi
- if test "x$BUILD" = xscons; then
scons force_scons=1 || travis_terminate 1;
scons force_scons=1 check || travis_terminate 1;
fi

View File

@@ -21,108 +21,42 @@
# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
# DEALINGS IN THE SOFTWARE.
# use c99 compiler by default
ifeq ($(LOCAL_CC),)
ifeq ($(LOCAL_IS_HOST_MODULE),true)
LOCAL_CFLAGS += -D_GNU_SOURCE
LOCAL_CC := $(HOST_CC) -std=c99
else
LOCAL_CC := $(TARGET_CC) -std=c99
endif
endif
LOCAL_C_INCLUDES += \
$(MESA_TOP)/src \
$(MESA_TOP)/include
MESA_VERSION := $(shell cat $(MESA_TOP)/VERSION)
MESA_VERSION=$(shell cat $(MESA_TOP)/VERSION)
# define ANDROID_VERSION (e.g., 4.0.x => 0x0400)
LOCAL_CFLAGS += \
-Wno-error \
-Werror=incompatible-pointer-types \
-Wno-unused-parameter \
-Wno-pointer-arith \
-Wno-missing-field-initializers \
-Wno-initializer-overrides \
-Wno-mismatched-tags \
-DPACKAGE_VERSION=\"$(MESA_VERSION)\" \
-DPACKAGE_BUGREPORT=\"https://gitlab.freedesktop.org/mesa/mesa/issues\"
-DPACKAGE_BUGREPORT=\"https://bugs.freedesktop.org/enter_bug.cgi?product=Mesa\" \
-DANDROID_VERSION=0x0$(MESA_ANDROID_MAJOR_VERSION)0$(MESA_ANDROID_MINOR_VERSION)
# XXX: The following __STDC_*_MACROS defines should not be needed.
# It's likely due to a bug elsewhere, but let's temporarily add them
# here to fix the radeonsi build.
LOCAL_CFLAGS += \
-DANDROID_API_LEVEL=$(PLATFORM_SDK_VERSION) \
-DENABLE_SHADER_CACHE \
-D__STDC_CONSTANT_MACROS \
-D__STDC_LIMIT_MACROS \
-DHAVE___BUILTIN_EXPECT \
-DHAVE___BUILTIN_FFS \
-DHAVE___BUILTIN_FFSLL \
-DHAVE_DLFCN_H \
-DHAVE_FUNC_ATTRIBUTE_FLATTEN \
-DHAVE_FUNC_ATTRIBUTE_UNUSED \
-DHAVE_FUNC_ATTRIBUTE_FORMAT \
-DHAVE_FUNC_ATTRIBUTE_PACKED \
-DHAVE_FUNC_ATTRIBUTE_ALIAS \
-DHAVE_FUNC_ATTRIBUTE_NORETURN \
-DHAVE_FUNC_ATTRIBUTE_RETURNS_NONNULL \
-DHAVE_FUNC_ATTRIBUTE_WARN_UNUSED_RESULT \
-DHAVE___BUILTIN_CTZ \
-DHAVE___BUILTIN_POPCOUNT \
-DHAVE___BUILTIN_POPCOUNTLL \
-DHAVE___BUILTIN_CLZ \
-DHAVE___BUILTIN_CLZLL \
-DHAVE___BUILTIN_UNREACHABLE \
-DHAVE_PTHREAD=1 \
-DHAVE_DLADDR \
-DHAVE_DL_ITERATE_PHDR \
-DHAVE_LINUX_FUTEX_H \
-DHAVE_ENDIAN_H \
-DHAVE_ZLIB \
-DMAJOR_IN_SYSMACROS \
-DVK_USE_PLATFORM_ANDROID_KHR \
-fvisibility=hidden \
-fno-math-errno \
-fno-trapping-math \
-Wno-sign-compare
LOCAL_CPPFLAGS += \
-D__STDC_CONSTANT_MACROS \
-D__STDC_FORMAT_MACROS \
-D__STDC_LIMIT_MACROS \
-Wno-error=non-virtual-dtor \
-Wno-non-virtual-dtor
# mesa requires at least c99 compiler
LOCAL_CONLYFLAGS += \
-std=c99
# c11 timespec_get is part of bionic as well
# https://android-review.googlesource.com/c/718518
# This means releases from P and earlier won't need this
ifeq ($(filter 5 6 7 8 9, $(MESA_ANDROID_MAJOR_VERSION)),)
LOCAL_CFLAGS += -DHAVE_TIMESPEC_GET
endif
# Android's libc began supporting shm in Oreo
ifeq ($(shell test $(PLATFORM_SDK_VERSION) -ge 26 && echo true),true)
LOCAL_CFLAGS += -DHAVE_SYS_SHM_H
endif
ifeq ($(strip $(MESA_ENABLE_ASM)),true)
ifeq ($(TARGET_ARCH),x86)
LOCAL_CFLAGS += \
-DUSE_X86_ASM
-DUSE_X86_ASM \
-DHAVE_DLOPEN \
endif
endif
ifeq ($(ARCH_ARM_HAVE_NEON),true)
LOCAL_CFLAGS_arm += -DUSE_ARM_ASM
endif
LOCAL_CFLAGS_arm64 += -DUSE_AARCH64_ASM
ifneq ($(LOCAL_IS_HOST_MODULE),true)
LOCAL_CFLAGS += -DHAVE_LIBDRM
LOCAL_SHARED_LIBRARIES += libdrm
endif
LOCAL_CFLAGS_32 += -DDEFAULT_DRIVER_DIR=\"/vendor/lib/$(MESA_DRI_MODULE_REL_PATH)\"
LOCAL_CFLAGS_64 += -DDEFAULT_DRIVER_DIR=\"/vendor/lib64/$(MESA_DRI_MODULE_REL_PATH)\"
LOCAL_PROPRIETARY_MODULE := true
LOCAL_CPPFLAGS += \
-Wno-error=non-virtual-dtor \
-Wno-non-virtual-dtor
# uncomment to keep the debug symbols
#LOCAL_STRIP_MODULE := false
@@ -130,6 +64,3 @@ LOCAL_PROPRIETARY_MODULE := true
ifeq ($(strip $(LOCAL_MODULE_TAGS)),)
LOCAL_MODULE_TAGS := optional
endif
# Quiet down the build system and remove any .h files from the sources
LOCAL_SRC_FILES := $(patsubst %.h, , $(LOCAL_SRC_FILES))

View File

@@ -24,7 +24,7 @@
# BOARD_GPU_DRIVERS should be defined. The valid values are
#
# classic drivers: i915 i965
# gallium drivers: swrast freedreno i915g nouveau kmsro r300g r600g radeonsi vc4 virgl vmwgfx etnaviv iris lima
# gallium drivers: swrast i915g ilo nouveau r300g r600g radeonsi vmwgfx
#
# The main target is libGLES_mesa. For each classic driver enabled, a DRI
# module will also be built. DRI modules will be loaded by libGLES_mesa.
@@ -32,56 +32,28 @@
MESA_TOP := $(call my-dir)
MESA_ANDROID_MAJOR_VERSION := $(word 1, $(subst ., , $(PLATFORM_VERSION)))
ifneq ($(filter 2 4, $(MESA_ANDROID_MAJOR_VERSION)),)
$(error "Android 4.4 and earlier not supported")
endif
MESA_DRI_MODULE_REL_PATH := dri
MESA_DRI_MODULE_PATH := $(TARGET_OUT_SHARED_LIBRARIES)/$(MESA_DRI_MODULE_REL_PATH)
MESA_DRI_MODULE_UNSTRIPPED_PATH := $(TARGET_OUT_SHARED_LIBRARIES_UNSTRIPPED)/$(MESA_DRI_MODULE_REL_PATH)
MESA_DRI_LDFLAGS := -Wl,--build-id=sha1
MESA_ANDROID_MINOR_VERSION := $(word 2, $(subst ., , $(PLATFORM_VERSION)))
MESA_ANDROID_VERSION := $(MESA_ANDROID_MAJOR_VERSION).$(MESA_ANDROID_MINOR_VERSION)
MESA_COMMON_MK := $(MESA_TOP)/Android.common.mk
MESA_PYTHON2 := python
# Lists to convert driver names to boolean variables
# in form of <driver name>.<boolean make variable>
classic_drivers := i915.HAVE_I915_DRI i965.HAVE_I965_DRI
gallium_drivers := \
swrast.HAVE_GALLIUM_SOFTPIPE \
freedreno.HAVE_GALLIUM_FREEDRENO \
i915g.HAVE_GALLIUM_I915 \
nouveau.HAVE_GALLIUM_NOUVEAU \
kmsro.HAVE_GALLIUM_KMSRO \
r300g.HAVE_GALLIUM_R300 \
r600g.HAVE_GALLIUM_R600 \
radeonsi.HAVE_GALLIUM_RADEONSI \
vmwgfx.HAVE_GALLIUM_VMWGFX \
vc4.HAVE_GALLIUM_VC4 \
virgl.HAVE_GALLIUM_VIRGL \
etnaviv.HAVE_GALLIUM_ETNAVIV \
iris.HAVE_GALLIUM_IRIS \
lima.HAVE_GALLIUM_LIMA
DRM_TOP := external/drm
DRM_GRALLOC_TOP := hardware/drm_gralloc
ifeq ($(BOARD_GPU_DRIVERS),all)
MESA_BUILD_CLASSIC := $(filter HAVE_%, $(subst ., , $(classic_drivers)))
MESA_BUILD_GALLIUM := $(filter HAVE_%, $(subst ., , $(gallium_drivers)))
else
# Warn if we have any invalid driver names
$(foreach d, $(BOARD_GPU_DRIVERS), \
$(if $(findstring $(d).,$(classic_drivers) $(gallium_drivers)), \
, \
$(warning invalid GPU driver: $(d)) \
) \
)
MESA_BUILD_CLASSIC := $(strip $(foreach d, $(BOARD_GPU_DRIVERS), $(patsubst $(d).%,%, $(filter $(d).%, $(classic_drivers)))))
MESA_BUILD_GALLIUM := $(strip $(foreach d, $(BOARD_GPU_DRIVERS), $(patsubst $(d).%,%, $(filter $(d).%, $(gallium_drivers)))))
endif
ifeq ($(filter x86%,$(TARGET_ARCH)),)
MESA_BUILD_CLASSIC :=
endif
classic_drivers := i915 i965
gallium_drivers := swrast i915g ilo nouveau r300g r600g radeonsi vmwgfx
$(foreach d, $(MESA_BUILD_CLASSIC) $(MESA_BUILD_GALLIUM), $(eval $(d) := true))
MESA_GPU_DRIVERS := $(strip $(BOARD_GPU_DRIVERS))
# warn about invalid drivers
invalid_drivers := $(filter-out \
$(classic_drivers) $(gallium_drivers), $(MESA_GPU_DRIVERS))
ifneq ($(invalid_drivers),)
$(warning invalid GPU drivers: $(invalid_drivers))
# tidy up
MESA_GPU_DRIVERS := $(filter-out $(invalid_drivers), $(MESA_GPU_DRIVERS))
endif
# host and target must be the same arch to generate matypes.h
ifeq ($(TARGET_ARCH),$(HOST_ARCH))
@@ -90,34 +62,38 @@ else
MESA_ENABLE_ASM := false
endif
ifneq ($(filter true, $(HAVE_GALLIUM_RADEONSI)),)
MESA_ENABLE_LLVM := true
ifneq ($(filter $(classic_drivers), $(MESA_GPU_DRIVERS)),)
MESA_BUILD_CLASSIC := true
else
MESA_BUILD_CLASSIC := false
endif
define mesa-build-with-llvm
$(if $(filter $(MESA_ANDROID_MAJOR_VERSION), 4 5 6 7), \
$(warning Unsupported LLVM version in Android $(MESA_ANDROID_MAJOR_VERSION)),) \
$(eval LOCAL_CFLAGS += -DLLVM_AVAILABLE -DMESA_LLVM_VERSION_STRING=\"3.9\") \
$(eval LOCAL_SHARED_LIBRARIES += libLLVM)
endef
ifneq ($(filter $(gallium_drivers), $(MESA_GPU_DRIVERS)),)
MESA_BUILD_GALLIUM := true
else
MESA_BUILD_GALLIUM := false
endif
# add subdirectories
SUBDIRS := \
src/freedreno \
src/gbm \
src/loader \
src/mapi \
src/compiler \
src/mesa \
src/util \
src/egl \
src/amd \
src/broadcom \
src/intel \
src/mesa/drivers/dri \
src/vulkan \
src/panfrost \
ifneq ($(strip $(MESA_GPU_DRIVERS)),)
INC_DIRS := $(call all-named-subdir-makefiles,$(SUBDIRS))
INC_DIRS += $(call all-named-subdir-makefiles,src/gallium)
include $(INC_DIRS)
SUBDIRS := \
src/mapi \
src/glsl \
src/mesa \
src/egl/main
ifeq ($(strip $(MESA_BUILD_CLASSIC)),true)
SUBDIRS += \
src/egl/drivers/dri2 \
src/mesa/drivers/dri
endif
ifeq ($(strip $(MESA_BUILD_GALLIUM)),true)
SUBDIRS += src/gallium
endif
mkfiles := $(patsubst %,$(MESA_TOP)/%/Android.mk,$(SUBDIRS))
include $(mkfiles)
endif

View File

@@ -1,16 +0,0 @@
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/i9*5_dri_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/libglapi_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/obj/SHARED_LIBRARIES/libGLES_mesa_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/EXECUTABLES/mesa_*_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/EXECUTABLES/glsl_compiler_intermediates)
$(call add-clean-step, rm -rf $(OUT_DIR)/host/$(HOST_OS)-$(HOST_ARCH)/obj/STATIC_LIBRARIES/libmesa_glsl_utils_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/i9?5_dri_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/libglapi_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/libGLES_mesa_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/EXECUTABLES/mesa_*_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/EXECUTABLES/glsl_compiler_intermediates)
$(call add-clean-step, rm -rf $(HOST_OUT)/*/STATIC_LIBRARIES/libmesa_*_intermediates)
$(call add-clean-step, rm -rf $(PRODUCT_OUT)/*/SHARED_LIBRARIES/*_dri_intermediates)

106
Makefile.am Normal file
View File

@@ -0,0 +1,106 @@
# Copyright © 2012 Intel Corporation
#
# Permission is hereby granted, free of charge, to any person obtaining a
# copy of this software and associated documentation files (the "Software"),
# to deal in the Software without restriction, including without limitation
# the rights to use, copy, modify, merge, publish, distribute, sublicense,
# and/or sell copies of the Software, and to permit persons to whom the
# Software is furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice (including the next
# paragraph) shall be included in all copies or substantial portions of the
# Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
# THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
# FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
# IN THE SOFTWARE.
SUBDIRS = src
ACLOCAL_AMFLAGS = -I m4
doxygen:
cd doxygen && $(MAKE)
.PHONY: doxygen
# Rules for making release tarballs
PACKAGE_DIR = Mesa-$(PACKAGE_VERSION)
PACKAGE_NAME = MesaLib-$(PACKAGE_VERSION)
EXTRA_FILES = \
aclocal.m4 \
configure \
VERSION \
bin/ar-lib \
bin/compile \
bin/config.sub \
bin/config.guess \
bin/depcomp \
bin/install-sh \
bin/ltmain.sh \
bin/missing \
bin/ylwrap \
src/glsl/glsl_parser.cpp \
src/glsl/glsl_parser.h \
src/glsl/glsl_lexer.cpp \
src/glsl/glcpp/glcpp-lex.c \
src/glsl/glcpp/glcpp-parse.c \
src/glsl/glcpp/glcpp-parse.h \
src/mesa/program/lex.yy.c \
src/mesa/program/program_parse.tab.c \
src/mesa/program/program_parse.tab.h \
`git ls-files | grep "Makefile.am" | sed -e "s/Makefile.am/Makefile.in/"`
IGNORE_FILES = \
-x autogen.sh
parsers: configure
$(MAKE) -C src/glsl glsl_parser.cpp glsl_parser.h glsl_lexer.cpp glcpp/glcpp-lex.c glcpp/glcpp-parse.c glcpp/glcpp-parse.h
$(MAKE) -C src/mesa program/lex.yy.c program/program_parse.tab.c program/program_parse.tab.h
# Everything for new a Mesa release:
ARCHIVES = $(PACKAGE_NAME).tar.gz \
$(PACKAGE_NAME).tar.bz2 \
$(PACKAGE_NAME).zip
tarballs: md5
rm -f ../$(PACKAGE_DIR) $(PACKAGE_NAME).tar
manifest.txt: .git
( \
ls -1 $(EXTRA_FILES) ; \
git ls-files $(IGNORE_FILES) \
) | sed -e '/^\(.*\/\)\?\./d' -e "s@^@$(PACKAGE_DIR)/@" > $@
../$(PACKAGE_DIR):
ln -s $(PWD) $@
$(PACKAGE_NAME).tar: parsers ../$(PACKAGE_DIR) manifest.txt
cd .. ; tar -cf $(PACKAGE_DIR)/$(PACKAGE_NAME).tar -T $(PACKAGE_DIR)/manifest.txt
$(PACKAGE_NAME).tar.gz: $(PACKAGE_NAME).tar ../$(PACKAGE_DIR)
gzip --stdout --best $(PACKAGE_NAME).tar > $(PACKAGE_NAME).tar.gz
$(PACKAGE_NAME).tar.bz2: $(PACKAGE_NAME).tar
bzip2 --stdout --best $(PACKAGE_NAME).tar > $(PACKAGE_NAME).tar.bz2
$(PACKAGE_NAME).zip: parsers ../$(PACKAGE_DIR) manifest.txt
rm -f $(PACKAGE_NAME).zip ; \
cd .. ; \
zip -q -@ $(PACKAGE_NAME).zip < $(PACKAGE_DIR)/manifest.txt ; \
mv $(PACKAGE_NAME).zip $(PACKAGE_DIR)
md5: $(ARCHIVES)
@-md5sum $(PACKAGE_NAME).tar.gz
@-md5sum $(PACKAGE_NAME).tar.bz2
@-md5sum $(PACKAGE_NAME).zip
.PHONY: tarballs md5

View File

@@ -1,60 +0,0 @@
`Mesa <https://mesa3d.org>`_ - The 3D Graphics Library
======================================================
Source
------
This repository lives at https://gitlab.freedesktop.org/mesa/mesa.
Other repositories are likely forks, and code found there is not supported.
Build & install
---------------
You can find more information in our documentation (`docs/install.html
<https://mesa3d.org/install.html>`_), but the recommended way is to use
Meson (`docs/meson.html <https://mesa3d.org/meson.html>`_):
.. code-block:: sh
$ mkdir build
$ cd build
$ meson ..
$ sudo ninja install
Support
-------
Many Mesa devs hang on IRC; if you're not sure which channel is
appropriate, you should ask your question on `Freenode's #dri-devel
<irc://chat.freenode.net#dri-devel>`_, someone will redirect you if
necessary.
Remember that not everyone is in the same timezone as you, so it might
take a while before someone qualified sees your question.
To figure out who you're talking to, or which nick to ping for your
question, check out `Who's Who on IRC
<https://dri.freedesktop.org/wiki/WhosWho/>`_.
The next best option is to ask your question in an email to the
mailing lists: `mesa-dev\@lists.freedesktop.org
<https://lists.freedesktop.org/mailman/listinfo/mesa-dev>`_
Bug reports
-----------
If you think something isn't working properly, please file a bug report
(`docs/bugs.html <https://mesa3d.org/bugs.html>`_).
Contributing
------------
Contributions are welcome, and step-by-step instructions can be found in our
documentation (`docs/submittingpatches.html
<https://mesa3d.org/submittingpatches.html>`_).
Note that Mesa uses email mailing-lists for patches submission, review and
discussions.

120
REVIEWERS
View File

@@ -1,120 +0,0 @@
Overview:
This file is similar in syntax (or more precisly a subset) of what is
used by the MAINTAINERS file in the linux kernel.
The purpose is not exactly the same the MAINTAINERS file in the linux
kernel, as there are not official/formal maintainers of different
subsystems in mesa, but is meant to give an idea of who to CC for
various patches for review.
Descriptions of section entries:
R: Designated reviewer: FullName <address@domain>
These reviewers should be CCed on patches.
F: Files and directories with wildcard patterns.
A trailing slash includes all files and subdirectory files.
F: drivers/net/ all files in and below drivers/net
F: drivers/net/* all files in drivers/net, but not below
F: */net/* all files in "any top level directory"/net
One pattern per line. Multiple F: lines acceptable.
Maintainers List (try to look for most precise areas first)
Note: this is an opt-in system, I have not tried to add anyone who hasn't
either asked me or sent a patch to add themselves.
-----------------------------------
NIR
R: Jason Ekstrand <jason@jlekstrand.net>
F: src/compiler/nir/
DOCUMENTATION
R: Emil Velikov <emil.l.velikov@gmail.com>
R: Eric Engestrom <eric@engestrom.ch>
F: docs/
F: doxygen/
COMPATIBILITY HEADERS
R: Emil Velikov <emil.l.velikov@gmail.com>
F: include/c99*
DRI LOADER
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/loader/
EGL
R: Eric Engestrom <eric@engestrom.ch>
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/egl/
F: include/EGL/
HAIKU
R: Alexander von Gluck IV <kallisti5@unixzen.com>
F: include/HaikuGL/
F: src/egl/drivers/haiku/
F: src/gallium/state_trackers/hgl/
F: src/gallium/targets/haiku-softpipe/
F: src/gallium/winsys/sw/hgl/
F: src/hgl/
GALLIUM LOADER
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/gallium/auxiliary/pipe-loader/
F: src/gallium/auxiliary/target-helpers/
GALLIUM TARGETS
R: Emil Velikov <emil.l.velikov@gmail.com>
F: src/gallium/targets/
SCONS BUILD
F: scons/
F: */SConscript*
F: */Makefile.sources
ANDROID BUILD
R: Emil Velikov <emil.l.velikov@gmail.com>
R: Rob Herring <robh@kernel.org>
F: CleanSpec.mk
F: */Android.*mk
F: */Makefile.sources
MESON BUILD
R: Dylan Baker <dylan@pnwbakers.com>
R: Eric Engestrom <eric@engestrom.ch>
F: */meson.build
F: meson.build
F: meson_options.txt
ANDROID EGL SUPPORT
R: Rob Herring <robh@kernel.org>
R: Tomasz Figa <tfiga@chromium.org>
F: src/egl/drivers/dri2/platform_android.c
WAYLAND EGL SUPPORT
R: Daniel Stone <daniels@collabora.com>
F: src/egl/wayland/*
F: src/egl/drivers/dri2/platform_wayland.c
FREEDRENO
R: Rob Clark <robclark@freedesktop.org>
F: src/gallium/drivers/freedreno/
GLX
R: Adam Jackson <ajax@redhat.com>
F: src/glx/
VULKAN
R: Eric Engestrom <eric@engestrom.ch>
F: src/vulkan/
F: include/vulkan/
VMWARE DRIVER
R: Brian Paul <brianp@vmware.com>
R: Charmaine Lee <charmainel@vmware.com>
F: src/gallium/drivers/svga/
VMWARE WINSYS CODE
R: Thomas Hellstrom <thellstrom@vmware.com>
R: Deepak Rawat <drawat@vmware.com>
F: src/gallium/winsys/svga/

View File

@@ -1,7 +1,7 @@
#######################################################################
# Top-level SConstruct
#
# For example, invoke scons as
# For example, invoke scons as
#
# scons build=debug llvm=yes machine=x86
#
@@ -12,15 +12,14 @@
# build='debug'
# llvm=True
# machine='x86'
#
#
# Invoke
#
# scons -h
#
# to get the full list of options. See scons manpage for more info.
#
#
from __future__ import print_function
import os
import os.path
import sys
@@ -28,13 +27,6 @@ import SCons.Util
import common
#######################################################################
# Minimal scons version
EnsureSConsVersion(2, 4)
EnsurePythonVersion(2, 7)
#######################################################################
# Configuration options
@@ -44,7 +36,7 @@ common.AddOptions(opts)
env = Environment(
options = opts,
tools = ['gallium'],
toolpath = ['#scons'],
toolpath = ['#scons'],
ENV = os.environ,
)
@@ -58,34 +50,21 @@ except KeyError:
pass
else:
targets = targets.split(',')
print('scons: warning: targets option is deprecated; pass the targets on their own such as')
print()
print(' scons %s' % ' '.join(targets))
print()
print 'scons: warning: targets option is deprecated; pass the targets on their own such as'
print
print ' scons %s' % ' '.join(targets)
print
COMMAND_LINE_TARGETS.append(targets)
Help(opts.GenerateHelpText(env))
#######################################################################
# Print a deprecation warning for using scons on non-windows
if common.host_platform != 'windows' and env['platform'] != 'windows':
if env['force_scons']:
print("WARNING: Scons is deprecated for non-windows platforms (including cygwin) "
"please use meson instead.", file=sys.stderr)
else:
print("ERROR: Scons is deprecated for non-windows platforms (including cygwin) "
"please use meson instead. If you really need to use scons you "
"can add `force_scons=1` to the scons command line.", file=sys.stderr)
sys.exit(1)
else:
print("WARNING: Scons support is in the process of being deprecated on "
"on windows platforms (including mingw). If you haven't already "
"please try using meson for windows builds. Be sure to report any "
"issues you run into", file=sys.stderr)
# fail early for a common error on windows
if env['gles']:
try:
import libxml2
except ImportError:
raise SCons.Errors.UserError, "GLES requires libxml2-python to build"
#######################################################################
# Environment setup
@@ -94,7 +73,7 @@ with open("VERSION") as f:
mesa_version = f.read().strip()
env.Append(CPPDEFINES = [
('PACKAGE_VERSION', '\\"%s\\"' % mesa_version),
('PACKAGE_BUGREPORT', '\\"https://gitlab.freedesktop.org/mesa/mesa/issues\\"'),
('PACKAGE_BUGREPORT', '\\"https://bugs.freedesktop.org/enter_bug.cgi?product=Mesa\\"'),
])
# Includes
@@ -108,18 +87,16 @@ env.Append(CPPPATH = [
'#/src/gallium/winsys',
])
if env['msvc']:
env.Append(CPPPATH = ['#include/c99'])
# for debugging
#print env.Dump()
# Add a check target for running tests
check = env.Alias('check')
env.AlwaysBuild(check)
#######################################################################
# Invoke host SConscripts
#
# Invoke host SConscripts
#
# For things that are meant to be run on the native host build machine, instead
# of the target machine.
#
@@ -145,6 +122,9 @@ if env['crosscompile'] and not env['embedded']:
host_env['hostonly'] = True
assert host_env['crosscompile'] == False
if host_env['msvc']:
host_env.Append(CPPPATH = ['#include/c99'])
target_env = env
env = host_env
Export('env')
@@ -180,7 +160,8 @@ try:
except ImportError:
pass
else:
aliases = sorted(default_ans.keys())
aliases = default_ans.keys()
aliases.sort()
env.Help('\n')
env.Help('Recognized targets:\n')
for alias in aliases:

View File

@@ -1 +1 @@
19.3.5
10.0.0-devel

View File

@@ -1,73 +0,0 @@
# http://www.appveyor.com/docs/appveyor-yml
#
# To setup AppVeyor for your own personal repositories do the following:
# - Sign up
# - Add a new project
# - Select Git and fill in the Git clone URL
# - Setup a Git hook as explained in
# https://github.com/appveyor/webhooks#installing-git-hook
# - Check 'Settings > General > Skip branches without appveyor.yml'
# - Check 'Settings > General > Rolling builds'
# - Setup the global or project notifications to your liking
#
# Note that kicking (or restarting) a build via the web UI will not work, as it
# will fail to find appveyor.yml . The Git hook is the most practical way to
# kick a build.
#
# See also:
# - http://help.appveyor.com/discussions/problems/2209-node-grunt-build-specify-a-project-or-solution-file-the-directory-does-not-contain-a-project-or-solution-file
# - http://help.appveyor.com/discussions/questions/1184-build-config-vs-appveyoryaml
version: '{build}'
branches:
except:
- /^travis.*$/
# Don't download the full Mesa history to speed up cloning. However the clone
# depth must not be too small, otherwise builds might fail when lots of patches
# are committed in succession, because the desired commit is not found on the
# truncated history.
#
# See also:
# - https://www.appveyor.com/blog/2014/06/04/shallow-clone-for-git-repositories
clone_depth: 100
# https://www.appveyor.com/docs/build-cache/
cache:
- '%LOCALAPPDATA%\pip\Cache -> appveyor.yml'
- win_flex_bison-2.5.15.zip
- llvm-5.0.1-msvc2017-mtd.7z
- subprojects\packagecache -> subprojects\*.wrap
os: Visual Studio 2017
init:
# Appveyor defaults core.autocrlf to input instead of the default (true), but
# that can hide problems processing CRLF text on Windows
- git config --global core.autocrlf true
environment:
WINFLEXBISON_VERSION: 2.5.15
LLVM_ARCHIVE: llvm-5.0.1-msvc2017-mtd.7z
matrix:
- compiler: msvc
buildsystem: scons
- compiler: msvc
buildsystem: meson
path: C:\Python37-x64;C:\Python37-x64\Scripts;%path%
install:
- cmd: .appveyor\appveyor_msvc.bat install
build_script:
- cmd: .appveyor\appveyor_msvc.bat build_script
test_script:
- cmd: .appveyor\appveyor_msvc.bat test_script
# It's possible to setup notification here, as described in
# http://www.appveyor.com/docs/notifications#appveyor-yml-configuration , but
# doing so would cause the notification settings to be replicated across all
# repos, which is most likely undesired. So it's better to rely on the
# Appveyor global/project notification settings.

14
autogen.sh Executable file
View File

@@ -0,0 +1,14 @@
#! /bin/sh
srcdir=`dirname "$0"`
test -z "$srcdir" && srcdir=.
ORIGDIR=`pwd`
cd "$srcdir"
autoreconf -v --install || exit 1
cd $ORIGDIR || exit $?
if test -z "$NOCONFIGURE"; then
"$srcdir"/configure "$@"
fi

View File

@@ -1,16 +0,0 @@
# This is reverted shortly after landing
4432a2d14d80081d062f7939a950d65ea3a16eed
# These were manually backported
21be5c8edd3ad156f6cbfbceb96e7939716d9f2c
4b392ced2d744fccffe95490ff57e6b41033c266
b6905438514ae4de0b7f85c861e3d811ddaadda9
809c8feb92d33c43ace3ef25584a2adca24b1be0
05c81875d7bf871f73f24903e04dad3d286ed02e
# This isn't worth the effort to backport, as it only affects build with
# asserts enable, which hopefully wont happen in a stable branch.
937b9055698be0dfdb7d2e0673a989e2ecc05912
# this is reverted, so just don't apply
973181c06cca3fe232c3a435abde31f2fc1b81ef

View File

@@ -1,2 +0,0 @@
[*.sh]
indent_style = tab

9
bin/.gitignore vendored Normal file
View File

@@ -0,0 +1,9 @@
config.guess
config.sub
install-sh
/depcomp
/missing
ylwrap
compile
ar-lib
/test-driver

View File

52
bin/bugzilla_mesa.sh Executable file
View File

@@ -0,0 +1,52 @@
#!/bin/bash
# This script is used to generate the list of fixed bugs that
# appears in the release notes files, with HTML formatting.
#
# Note: This script could take a while until all details have
# been fetched from bugzilla.
#
# Usage examples:
#
# $ bin/bugzilla_mesa.sh mesa-9.0.2..mesa-9.0.3
# $ bin/bugzilla_mesa.sh mesa-9.0.2..mesa-9.0.3 > bugfixes
# $ bin/bugzilla_mesa.sh mesa-9.0.2..mesa-9.0.3 | tee bugfixes
# $ DRYRUN=yes bin/bugzilla_mesa.sh mesa-9.0.2..mesa-9.0.3
# $ DRYRUN=yes bin/bugzilla_mesa.sh mesa-9.0.2..mesa-9.0.3 | wc -l
# regex pattern: trim before url
trim_before='s/.*\(http\)/\1/'
# regex pattern: trim after url
trim_after='s/\(show_bug.cgi?id=[0-9]*\).*/\1/'
# regex pattern: always use https
use_https='s/http:/https:/'
# extract fdo urls from commit log
urls=$(git log $* | grep 'bugs.freedesktop.org/show_bug' | sed -e $trim_before -e $trim_after -e $use_https | sort | uniq)
# if DRYRUN is set to "yes", simply print the URLs and don't fetch the
# details from fdo bugzilla.
#DRYRUN=yes
if [ "x$DRYRUN" = xyes ]; then
for i in $urls
do
echo $i
done
else
echo "<ul>"
echo ""
for i in $urls
do
id=$(echo $i | cut -d'=' -f2)
summary=$(wget --quiet -O - $i | grep -e '<title>.*</title>' | sed -e 's/ *<title>Bug [0-9]\+ &ndash; \(.*\)<\/title>/\1/')
echo "<li><a href=\"$i\">Bug $id</a> - $summary</li>"
echo ""
done
echo "</ul>"
fi

View File

@@ -1,272 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Generates release notes for a given version of mesa."""
import asyncio
import datetime
import os
import pathlib
import sys
import textwrap
import typing
import urllib.parse
import aiohttp
from mako.template import Template
from mako import exceptions
CURRENT_GL_VERSION = '4.6'
CURRENT_VK_VERSION = '1.1'
TEMPLATE = Template(textwrap.dedent("""\
<%!
import html
%>
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Mesa Release Notes</title>
<link rel="stylesheet" type="text/css" href="../mesa.css">
</head>
<body>
<div class="header">
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="../contents.html"></iframe>
<div class="content">
<h1>Mesa ${next_version} Release Notes / ${today}</h1>
<p>
%if not bugfix:
Mesa ${next_version} is a new development release. People who are concerned
with stability and reliability should stick with a previous release or
wait for Mesa ${version[:-1]}1.
%else:
Mesa ${next_version} is a bug fix release which fixes bugs found since the ${version} release.
%endif
</p>
<p>
Mesa ${next_version} implements the OpenGL ${gl_version} API, but the version reported by
glGetString(GL_VERSION) or glGetIntegerv(GL_MAJOR_VERSION) /
glGetIntegerv(GL_MINOR_VERSION) depends on the particular driver being used.
Some drivers don't support all the features required in OpenGL ${gl_version}. OpenGL
${gl_version} is <strong>only</strong> available if requested at context creation.
Compatibility contexts may report a lower version depending on each driver.
</p>
<p>
Mesa ${next_version} implements the Vulkan ${vk_version} API, but the version reported by
the apiVersion property of the VkPhysicalDeviceProperties struct
depends on the particular driver being used.
</p>
<h2>SHA256 checksum</h2>
<pre>
TBD.
</pre>
<h2>New features</h2>
<ul>
%for f in features:
<li>${html.escape(f)}</li>
%endfor
</ul>
<h2>Bug fixes</h2>
<ul>
%for b in bugs:
<li>${html.escape(b)}</li>
%endfor
</ul>
<h2>Changes</h2>
<ul>
%for c, author in changes:
%if author:
<p>${html.escape(c)}</p>
%else:
<li>${html.escape(c)}</li>
%endif
%endfor
</ul>
</div>
</body>
</html>
"""))
async def gather_commits(version: str) -> str:
p = await asyncio.create_subprocess_exec(
'git', 'log', '--oneline', f'mesa-{version}..', '--grep', r'Closes: \(https\|#\).*',
stdout=asyncio.subprocess.PIPE)
out, _ = await p.communicate()
assert p.returncode == 0, f"git log didn't work: {version}"
return out.decode().strip()
async def gather_bugs(version: str) -> typing.List[str]:
commits = await gather_commits(version)
issues: typing.List[str] = []
for commit in commits.split('\n'):
sha, message = commit.split(maxsplit=1)
p = await asyncio.create_subprocess_exec(
'git', 'log', '--max-count', '1', r'--format=%b', sha,
stdout=asyncio.subprocess.PIPE)
_out, _ = await p.communicate()
out = _out.decode().split('\n')
for line in reversed(out):
if line.startswith('Closes:'):
bug = line.lstrip('Closes:').strip()
break
else:
raise Exception('No closes found?')
if bug.startswith('h'):
# This means we have a bug in the form "Closes: https://..."
issues.append(os.path.basename(urllib.parse.urlparse(bug).path))
else:
issues.append(bug.lstrip('#'))
loop = asyncio.get_event_loop()
async with aiohttp.ClientSession(loop=loop) as session:
results = await asyncio.gather(*[get_bug(session, i) for i in issues])
typing.cast(typing.Tuple[str, ...], results)
return list(results)
async def get_bug(session: aiohttp.ClientSession, bug_id: str) -> str:
"""Query gitlab to get the name of the issue that was closed."""
# Mesa's gitlab id is 176,
url = 'https://gitlab.freedesktop.org/api/v4/projects/176/issues'
params = {'iids[]': bug_id}
async with session.get(url, params=params) as response:
content = await response.json()
return content[0]['title']
async def get_shortlog(version: str) -> str:
"""Call git shortlog."""
p = await asyncio.create_subprocess_exec('git', 'shortlog', f'mesa-{version}..',
stdout=asyncio.subprocess.PIPE)
out, _ = await p.communicate()
assert p.returncode == 0, 'error getting shortlog'
assert out is not None, 'just for mypy'
return out.decode()
def walk_shortlog(log: str) -> typing.Generator[typing.Tuple[str, bool], None, None]:
for l in log.split('\n'):
if l.startswith(' '): # this means we have a patch description
yield l, False
else:
yield l, True
def calculate_next_version(version: str, is_point: bool) -> str:
"""Calculate the version about to be released."""
if '-' in version:
version = version.split('-')[0]
if is_point:
base = version.split('.')
base[2] = str(int(base[2]) + 1)
return '.'.join(base)
return version
def calculate_previous_version(version: str, is_point: bool) -> str:
"""Calculate the previous version to compare to.
In the case of -rc to final that verison is the previous .0 release,
(19.3.0 in the case of 20.0.0, for example). for point releases that is
the last point release. This value will be the same as the input value
for a point release, but different for a major release.
"""
if '-' in version:
version = version.split('-')[0]
if is_point:
return version
base = version.split('.')
if base[1] == '0':
base[0] = str(int(base[0]) - 1)
base[1] = '3'
else:
base[1] = str(int(base[1]) - 1)
return '.'.join(base)
def get_features(is_point_release: bool) -> typing.Generator[str, None, None]:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes' / 'new_features.txt'
if p.exists():
if is_point_release:
print("WARNING: new features being introduced in a point release", file=sys.stderr)
with p.open('rt') as f:
for line in f:
yield line
else:
yield "None"
async def main() -> None:
v = pathlib.Path(__file__).parent.parent / 'VERSION'
with v.open('rt') as f:
raw_version = f.read().strip()
is_point_release = '-rc' not in raw_version
assert '-devel' not in raw_version, 'Do not run this script on -devel'
version = raw_version.split('-')[0]
previous_version = calculate_previous_version(version, is_point_release)
next_version = calculate_next_version(version, is_point_release)
shortlog, bugs = await asyncio.gather(
get_shortlog(previous_version),
gather_bugs(previous_version),
)
final = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes' / f'{next_version}.html'
with final.open('wt') as f:
try:
f.write(TEMPLATE.render(
bugfix=is_point_release,
bugs=bugs,
changes=walk_shortlog(shortlog),
features=get_features(is_point_release),
gl_version=CURRENT_GL_VERSION,
next_version=next_version,
today=datetime.date.today(),
version=previous_version,
vk_version=CURRENT_VK_VERSION,
))
except:
print(exceptions.text_error_template().render())
if __name__ == "__main__":
loop = asyncio.get_event_loop()
loop.run_until_complete(main())

View File

@@ -1,62 +0,0 @@
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
from unittest import mock
import pytest
from .gen_release_notes import *
@pytest.mark.parametrize(
'current, is_point, expected',
[
('19.2.0', True, '19.2.1'),
('19.3.6', True, '19.3.7'),
('20.0.0-rc4', False, '20.0.0'),
])
def test_next_version(current: str, is_point: bool, expected: str) -> None:
assert calculate_next_version(current, is_point) == expected
@pytest.mark.parametrize(
'current, is_point, expected',
[
('19.3.6', True, '19.3.6'),
('20.0.0-rc4', False, '19.3.0'),
])
def test_previous_version(current: str, is_point: bool, expected: str) -> None:
assert calculate_previous_version(current, is_point) == expected
@pytest.mark.asyncio
async def test_get_shortlog():
# Certainly not perfect, but it's something
version = '19.2.0'
out = await get_shortlog(version)
assert out
@pytest.mark.asyncio
async def test_gather_commits():
# Certainly not perfect, but it's something
version = '19.2.0'
out = await gather_commits(version)
assert out

View File

@@ -1,45 +0,0 @@
#!/bin/sh
# Script for generating a list of candidates which fix commits that have been
# previously cherry-picked to a stable branch.
#
# Usage examples:
#
# $ bin/get-extra-pick-list.sh
# $ bin/get-extra-pick-list.sh > picklist
# $ bin/get-extra-pick-list.sh | tee picklist
# Use the last branchpoint as our limit for the search
latest_branchpoint=`git merge-base origin/master HEAD`
# Grep for commits with "cherry picked from commit" in the commit message.
git log --reverse --grep="cherry picked from commit" $latest_branchpoint..HEAD |\
grep "cherry picked from commit" |\
sed -e 's/^[[:space:]]*(cherry picked from commit[[:space:]]*//' -e 's/)//' > already_picked
# For each cherry-picked commit...
cat already_picked | cut -c -8 |\
while read sha
do
# ... check if it's referenced (fixed by another) patch
git log -n1 --pretty=oneline --grep=$sha $latest_branchpoint..origin/master |\
cut -c -8 |\
while read candidate
do
# And flag up if it hasn't landed in branch yet.
if grep -q ^$candidate already_picked ; then
continue
fi
# Or if it isn't in the ignore list.
if [ -f bin/.cherry-ignore ] ; then
if grep -q ^$candidate bin/.cherry-ignore ; then
continue
fi
fi
printf "Commit \"%s\" references %s\n" \
"`git log -n1 --pretty=oneline $candidate`" \
"$sha"
done
done
rm -f already_picked

View File

@@ -7,107 +7,18 @@
# $ bin/get-pick-list.sh
# $ bin/get-pick-list.sh > picklist
# $ bin/get-pick-list.sh | tee picklist
#
# The output is as follows:
# [nomination_type] commit_sha commit summary
is_stable_nomination()
{
git show --pretty=medium --summary "$1" | grep -q -i -o "CC:.*mesa-stable"
}
is_typod_nomination()
{
git show --pretty=medium --summary "$1" | grep -q -i -o "CC:.*mesa-dev"
}
fixes=
# Helper to handle various mistypos of the fixes tag.
# The tag string itself is passed as argument and normalised within.
#
# Resulting string in the global variable "fixes" and contains entries
# in the form "fixes:$sha"
is_sha_nomination()
{
fixes=`git show --pretty=medium -s $1 | tr -d "\n" | \
sed -e 's/'"$2"'/\nfixes:/Ig' | \
grep -Eo 'fixes:[a-f0-9]{4,40}'`
fixes_count=`echo "$fixes" | grep "fixes:" | wc -l`
if test $fixes_count -eq 0; then
return 1
fi
# Throw a warning for each invalid sha
while test $fixes_count -gt 0; do
# Treat only the current line
id=`echo "$fixes" | tail -n $fixes_count | head -n 1 | cut -d : -f 2`
fixes_count=$(($fixes_count-1))
if ! git show $id >/dev/null 2>&1; then
echo WARNING: Commit $1 lists invalid sha $id
fi
done
return 0
}
# Checks if at least one of offending commits, listed in the global
# "fixes", is in branch.
sha_in_range()
{
fixes_count=`echo "$fixes" | grep "fixes:" | wc -l`
while test $fixes_count -gt 0; do
# Treat only the current line
id=`echo "$fixes" | tail -n $fixes_count | head -n 1 | cut -d : -f 2`
fixes_count=$(($fixes_count-1))
# Be that cherry-picked ...
# ... or landed before the branchpoint.
if grep -q ^$id already_picked ||
grep -q ^$id already_landed ; then
return 0
fi
done
return 1
}
is_fixes_nomination()
{
is_sha_nomination "$1" "fixes:[[:space:]]*"
if test $? -eq 0; then
return 0
fi
is_sha_nomination "$1" "fixes[[:space:]]\+"
}
is_brokenby_nomination()
{
is_sha_nomination "$1" "broken by"
}
is_revert_nomination()
{
is_sha_nomination "$1" "This reverts commit "
}
# Use the last branchpoint as our limit for the search
latest_branchpoint=`git merge-base upstream/master HEAD`
# List all the commits between day 1 and the branch point...
git log --reverse --pretty=%H $latest_branchpoint > already_landed
# ... and the ones cherry-picked.
git log --reverse --pretty=medium --grep="cherry picked from commit" $latest_branchpoint..HEAD |\
# Grep for commits with "cherry picked from commit" in the commit message.
git log --reverse --grep="cherry picked from commit" origin/master..HEAD |\
grep "cherry picked from commit" |\
sed -e 's/^[[:space:]]*(cherry picked from commit[[:space:]]*//' -e 's/)//' > already_picked
# Grep for potential candidates
git log --reverse --pretty=%H -i --grep='^CC:.*mesa-stable\|^CC:.*mesa-dev\|\<fixes\>\|\<broken by\>\|This reverts commit' $latest_branchpoint..upstream/master |\
# Grep for commits that were marked as a candidate for the stable tree.
git log --reverse --pretty=%H -i --grep='^\([[:space:]]*NOTE: .*[Cc]andidate\|CC:.*mesa-stable\)' HEAD..origin/master |\
while read sha
do
# Check to see whether the patch is on the ignore list.
if test -f bin/.cherry-ignore; then
if [ -f bin/.cherry-ignore ] ; then
if grep -q ^$sha bin/.cherry-ignore ; then
continue
fi
@@ -118,33 +29,7 @@ do
continue
fi
if is_fixes_nomination "$sha"; then
tag=fixes
elif is_brokenby_nomination "$sha"; then
tag=brokenby
elif is_revert_nomination "$sha"; then
tag=revert
elif is_stable_nomination "$sha"; then
tag=stable
elif is_typod_nomination "$sha"; then
tag=typod
else
continue
fi
case "$tag" in
fixes | brokenby | revert )
if ! sha_in_range; then
continue
fi
;;
* )
;;
esac
printf "[ %8s ] " "$tag"
git --no-pager show --no-patch --pretty=oneline $sha
git log -n1 --pretty=oneline $sha | cat
done
rm -f already_picked
rm -f already_landed

View File

@@ -1,50 +0,0 @@
"""
Generate the contents of the git_sha1.h file.
The output of this script goes to stdout.
"""
import argparse
import os
import os.path
import subprocess
import sys
def get_git_sha1():
"""Try to get the git SHA1 with git rev-parse."""
git_dir = os.path.join(os.path.dirname(sys.argv[0]), '..', '.git')
try:
git_sha1 = subprocess.check_output([
'git',
'--git-dir=' + git_dir,
'rev-parse',
'HEAD',
], stderr=open(os.devnull, 'w')).decode("ascii")
except:
# don't print anything if it fails
git_sha1 = ''
return git_sha1
def write_if_different(contents):
"""
Avoid touching the output file if it doesn't need modifications
Useful to avoid triggering rebuilds when nothing has changed.
"""
if os.path.isfile(args.output):
with open(args.output, 'r') as file:
if file.read() == contents:
return
with open(args.output, 'w') as file:
file.write(contents)
parser = argparse.ArgumentParser()
parser.add_argument('--output', help='File to write the #define in',
required=True)
args = parser.parse_args()
git_sha1 = os.environ.get('MESA_GIT_SHA1_OVERRIDE', get_git_sha1())[:10]
if git_sha1:
write_if_different('#define MESA_GIT_SHA1 " (git-' + git_sha1 + ')"')
else:
write_if_different('#define MESA_GIT_SHA1 ""')

View File

@@ -1,83 +0,0 @@
# encoding=utf-8
# Copyright © 2017-2018 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Script to install megadriver symlinks for meson."""
from __future__ import print_function
import argparse
import os
def main():
parser = argparse.ArgumentParser()
parser.add_argument('megadriver')
parser.add_argument('libdir')
parser.add_argument('drivers', nargs='+')
args = parser.parse_args()
if os.path.isabs(args.libdir):
destdir = os.environ.get('DESTDIR')
if destdir:
to = os.path.join(destdir, args.libdir[1:])
else:
to = args.libdir
else:
to = os.path.join(os.environ['MESON_INSTALL_DESTDIR_PREFIX'], args.libdir)
master = os.path.join(to, os.path.basename(args.megadriver))
if not os.path.exists(to):
if os.path.lexists(to):
os.unlink(to)
os.makedirs(to)
for driver in args.drivers:
abs_driver = os.path.join(to, driver)
if os.path.lexists(abs_driver):
os.unlink(abs_driver)
print('installing {} to {}'.format(args.megadriver, abs_driver))
os.link(master, abs_driver)
try:
ret = os.getcwd()
os.chdir(to)
name, ext = os.path.splitext(driver)
while ext != '.so':
if os.path.lexists(name):
os.unlink(name)
os.symlink(driver, name)
name, ext = os.path.splitext(name)
finally:
os.chdir(ret)
# Remove meson-created master .so and symlinks
os.unlink(master)
name, ext = os.path.splitext(master)
while ext != '.so':
if os.path.lexists(name):
os.unlink(name)
name, ext = os.path.splitext(name)
if __name__ == '__main__':
main()

View File

@@ -1,88 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""This script reads a meson build directory and gives back the command line it
was configured with.
This only works for meson 0.49.0 and newer.
"""
import argparse
import ast
import configparser
import pathlib
import sys
def parse_args() -> argparse.Namespace:
"""Parse arguments."""
parser = argparse.ArgumentParser()
parser.add_argument(
'build_dir',
help='Path the meson build directory')
args = parser.parse_args()
return args
def load_config(path: pathlib.Path) -> configparser.ConfigParser:
"""Load config file."""
conf = configparser.ConfigParser()
with path.open() as f:
conf.read_file(f)
return conf
def build_cmd(conf: configparser.ConfigParser) -> str:
"""Rebuild the command line."""
args = []
for k, v in conf['options'].items():
if ' ' in v:
args.append(f'-D{k}="{v}"')
else:
args.append(f'-D{k}={v}')
cf = conf['properties'].get('cross_file')
if cf:
args.append('--cross-file={}'.format(cf))
nf = conf['properties'].get('native_file')
if nf:
# this will be in the form "['str', 'str']", so use ast.literal_eval to
# convert it to a list of strings.
nf = ast.literal_eval(nf)
args.extend(['--native-file={}'.format(f) for f in nf])
return ' '.join(args)
def main():
args = parse_args()
path = pathlib.Path(args.build_dir, 'meson-private', 'cmd_line.txt')
if not path.exists():
print('Cannot find the necessary file to rebuild command line. '
'Is your meson version >= 0.49.0?', file=sys.stderr)
sys.exit(1)
conf = load_config(path)
cmd = build_cmd(conf)
print(cmd)
if __name__ == '__main__':
main()

View File

@@ -1,63 +0,0 @@
#!/usr/bin/env python3
from os import get_terminal_size
from textwrap import wrap
from mesonbuild import coredata
from mesonbuild import optinterpreter
(COLUMNS, _) = get_terminal_size()
def describe_option(option_name: str, option_default_value: str,
option_type: str, option_message: str) -> None:
print('name: ' + option_name)
print('default: ' + option_default_value)
print('type: ' + option_type)
for line in wrap(option_message, width=COLUMNS - 9):
print(' ' + line)
print('---')
oi = optinterpreter.OptionInterpreter('')
oi.process('meson_options.txt')
for (name, value) in oi.options.items():
if isinstance(value, coredata.UserStringOption):
describe_option(name,
value.value,
'string',
"You can type what you want, but make sure it makes sense")
elif isinstance(value, coredata.UserBooleanOption):
describe_option(name,
'true' if value.value else 'false',
'boolean',
"You can set it to 'true' or 'false'")
elif isinstance(value, coredata.UserIntegerOption):
describe_option(name,
str(value.value),
'integer',
"You can set it to any integer value between '{}' and '{}'".format(value.min_value, value.max_value))
elif isinstance(value, coredata.UserUmaskOption):
describe_option(name,
str(value.value),
'umask',
"You can set it to 'preserve' or a value between '0000' and '0777'")
elif isinstance(value, coredata.UserComboOption):
choices = '[' + ', '.join(["'" + v + "'" for v in value.choices]) + ']'
describe_option(name,
value.value,
'combo',
"You can set it to any one of those values: " + choices)
elif isinstance(value, coredata.UserArrayOption):
choices = '[' + ', '.join(["'" + v + "'" for v in value.choices]) + ']'
value = '[' + ', '.join(["'" + v + "'" for v in value.value]) + ']'
describe_option(name,
value,
'array',
"You can set it to one or more of those values: " + choices)
elif isinstance(value, coredata.UserFeatureOption):
describe_option(name,
value.value,
'feature',
"You can set it to 'auto', 'enabled', or 'disabled'")
else:
print(name + ' is an option of a type unknown to this script')
print('---')

View File

@@ -1,22 +0,0 @@
# Copyright © 2017 Eric Engestrom
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
git_sha1_gen_py = files('git_sha1_gen.py')
symbols_check = find_program('symbols-check.py')

View File

@@ -1,35 +0,0 @@
#!/usr/bin/env python
# encoding=utf-8
# Copyright © 2017 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
from __future__ import print_function
import os
def main():
filename = os.path.join(os.environ['MESON_SOURCE_ROOT'], 'VERSION')
with open(filename) as f:
version = f.read().strip()
print(version, end='')
if __name__ == '__main__':
main()

251
bin/perf-annotate-jit Executable file
View File

@@ -0,0 +1,251 @@
#!/usr/bin/env python
#
# Copyright 2012 VMware Inc
# Copyright 2008-2009 Jose Fonseca
#
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
# THE SOFTWARE.
#
"""Perf annotate for JIT code.
Linux `perf annotate` does not work with JIT code. This script takes the data
produced by `perf script` command, plus the diassemblies outputed by gallivm
into /tmp/perf-XXXXX.map.asm and produces output similar to `perf annotate`.
See docs/llvmpipe.html for usage instructions.
The `perf script` output parser was derived from the gprof2dot.py script.
"""
import sys
import os.path
import re
import optparse
import subprocess
class Parser:
"""Parser interface."""
def __init__(self):
pass
def parse(self):
raise NotImplementedError
class LineParser(Parser):
"""Base class for parsers that read line-based formats."""
def __init__(self, file):
Parser.__init__(self)
self._file = file
self.__line = None
self.__eof = False
self.line_no = 0
def readline(self):
line = self._file.readline()
if not line:
self.__line = ''
self.__eof = True
else:
self.line_no += 1
self.__line = line.rstrip('\r\n')
def lookahead(self):
assert self.__line is not None
return self.__line
def consume(self):
assert self.__line is not None
line = self.__line
self.readline()
return line
def eof(self):
assert self.__line is not None
return self.__eof
mapFile = None
def lookupMap(filename, matchSymbol):
global mapFile
mapFile = filename
stream = open(filename, 'rt')
for line in stream:
start, length, symbol = line.split()
start = int(start, 16)
length = int(length,16)
if symbol == matchSymbol:
return start
return None
def lookupAsm(filename, desiredFunction):
stream = open(filename + '.asm', 'rt')
while stream.readline() != desiredFunction + ':\n':
pass
asm = []
line = stream.readline().strip()
while line:
addr, instr = line.split(':', 1)
addr = int(addr)
asm.append((addr, instr))
line = stream.readline().strip()
return asm
samples = {}
class PerfParser(LineParser):
"""Parser for linux perf callgraph output.
It expects output generated with
perf record -g
perf script
"""
def __init__(self, infile, symbol):
LineParser.__init__(self, infile)
self.symbol = symbol
def readline(self):
# Override LineParser.readline to ignore comment lines
while True:
LineParser.readline(self)
if self.eof() or not self.lookahead().startswith('#'):
break
def parse(self):
# read lookahead
self.readline()
while not self.eof():
self.parse_event()
asm = lookupAsm(mapFile, self.symbol)
addresses = samples.keys()
addresses.sort()
total_samples = 0
sys.stdout.write('%s:\n' % self.symbol)
for address, instr in asm:
try:
sample = samples.pop(address)
except KeyError:
sys.stdout.write(6*' ')
else:
sys.stdout.write('%6u' % (sample))
total_samples += sample
sys.stdout.write('%6u: %s\n' % (address, instr))
print 'total:', total_samples
assert len(samples) == 0
sys.exit(0)
def parse_event(self):
if self.eof():
return
line = self.consume()
assert line
callchain = self.parse_callchain()
if not callchain:
return
def parse_callchain(self):
callchain = []
while self.lookahead():
function = self.parse_call(len(callchain) == 0)
if function is None:
break
callchain.append(function)
if self.lookahead() == '':
self.consume()
return callchain
call_re = re.compile(r'^\s+(?P<address>[0-9a-fA-F]+)\s+(?P<symbol>.*)\s+\((?P<module>[^)]*)\)$')
def parse_call(self, first):
line = self.consume()
mo = self.call_re.match(line)
assert mo
if not mo:
return None
if not first:
return None
function_name = mo.group('symbol')
if not function_name:
function_name = mo.group('address')
module = mo.group('module')
function_id = function_name + ':' + module
address = mo.group('address')
address = int(address, 16)
if function_name != self.symbol:
return None
start_address = lookupMap(module, function_name)
address -= start_address
#print function_name, module, address
samples[address] = samples.get(address, 0) + 1
return True
def main():
"""Main program."""
optparser = optparse.OptionParser(
usage="\n\t%prog [options] symbol_name")
(options, args) = optparser.parse_args(sys.argv[1:])
if len(args) != 1:
optparser.error('wrong number of arguments')
symbol = args[0]
p = subprocess.Popen(['perf', 'script'], stdout=subprocess.PIPE, stderr=subprocess.PIPE)
parser = PerfParser(p.stdout, symbol)
parser.parse()
if __name__ == '__main__':
main()
# vim: set sw=4 et:

View File

@@ -1,251 +0,0 @@
#!/usr/bin/env python
#
# Copyright 2012 VMware Inc
# Copyright 2008-2009 Jose Fonseca
#
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
# THE SOFTWARE.
#
"""Perf annotate for JIT code.
Linux `perf annotate` does not work with JIT code. This script takes the data
produced by `perf script` command, plus the diassemblies outputed by gallivm
into /tmp/perf-XXXXX.map.asm and produces output similar to `perf annotate`.
See docs/llvmpipe.html for usage instructions.
The `perf script` output parser was derived from the gprof2dot.py script.
"""
import sys
import os.path
import re
import optparse
import subprocess
class Parser:
"""Parser interface."""
def __init__(self):
pass
def parse(self):
raise NotImplementedError
class LineParser(Parser):
"""Base class for parsers that read line-based formats."""
def __init__(self, file):
Parser.__init__(self)
self._file = file
self.__line = None
self.__eof = False
self.line_no = 0
def readline(self):
line = self._file.readline()
if not line:
self.__line = ''
self.__eof = True
else:
self.line_no += 1
self.__line = line.rstrip('\r\n')
def lookahead(self):
assert self.__line is not None
return self.__line
def consume(self):
assert self.__line is not None
line = self.__line
self.readline()
return line
def eof(self):
assert self.__line is not None
return self.__eof
mapFile = None
def lookupMap(filename, matchSymbol):
global mapFile
mapFile = filename
stream = open(filename, 'rt')
for line in stream:
start, length, symbol = line.split()
start = int(start, 16)
length = int(length,16)
if symbol == matchSymbol:
return start
return None
def lookupAsm(filename, desiredFunction):
stream = open(filename + '.asm', 'rt')
while stream.readline() != desiredFunction + ':\n':
pass
asm = []
line = stream.readline().strip()
while line:
addr, instr = line.split(':', 1)
addr = int(addr)
asm.append((addr, instr))
line = stream.readline().strip()
return asm
samples = {}
class PerfParser(LineParser):
"""Parser for linux perf callgraph output.
It expects output generated with
perf record -g
perf script
"""
def __init__(self, infile, symbol):
LineParser.__init__(self, infile)
self.symbol = symbol
def readline(self):
# Override LineParser.readline to ignore comment lines
while True:
LineParser.readline(self)
if self.eof() or not self.lookahead().startswith('#'):
break
def parse(self):
# read lookahead
self.readline()
while not self.eof():
self.parse_event()
asm = lookupAsm(mapFile, self.symbol)
addresses = samples.keys()
addresses.sort()
total_samples = 0
sys.stdout.write('%s:\n' % self.symbol)
for address, instr in asm:
try:
sample = samples.pop(address)
except KeyError:
sys.stdout.write(6*' ')
else:
sys.stdout.write('%6u' % (sample))
total_samples += sample
sys.stdout.write('%6u: %s\n' % (address, instr))
print 'total:', total_samples
assert len(samples) == 0
sys.exit(0)
def parse_event(self):
if self.eof():
return
line = self.consume()
assert line
callchain = self.parse_callchain()
if not callchain:
return
def parse_callchain(self):
callchain = []
while self.lookahead():
function = self.parse_call(len(callchain) == 0)
if function is None:
break
callchain.append(function)
if self.lookahead() == '':
self.consume()
return callchain
call_re = re.compile(r'^\s+(?P<address>[0-9a-fA-F]+)\s+(?P<symbol>.*)\s+\((?P<module>[^)]*)\)$')
def parse_call(self, first):
line = self.consume()
mo = self.call_re.match(line)
assert mo
if not mo:
return None
if not first:
return None
function_name = mo.group('symbol')
if not function_name:
function_name = mo.group('address')
module = mo.group('module')
function_id = function_name + ':' + module
address = mo.group('address')
address = int(address, 16)
if function_name != self.symbol:
return None
start_address = lookupMap(module, function_name)
address -= start_address
#print function_name, module, address
samples[address] = samples.get(address, 0) + 1
return True
def main():
"""Main program."""
optparser = optparse.OptionParser(
usage="\n\t%prog [options] symbol_name")
(options, args) = optparser.parse_args(sys.argv[1:])
if len(args) != 1:
optparser.error('wrong number of arguments')
symbol = args[0]
p = subprocess.Popen(['perf', 'script'], stdout=subprocess.PIPE, stderr=subprocess.PIPE)
parser = PerfParser(p.stdout, symbol)
parser.parse()
if __name__ == '__main__':
main()
# vim: set sw=4 et:

View File

@@ -1,33 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019-2020 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
import asyncio
import urwid
from pick.ui import UI, PALETTE
if __name__ == "__main__":
u = UI()
evl = urwid.AsyncioEventLoop(loop=asyncio.get_event_loop())
loop = urwid.MainLoop(u.render(), PALETTE, event_loop=evl)
u.mainloop = loop
loop.run()

View File

View File

@@ -1,367 +0,0 @@
# Copyright © 2019-2020 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Core data structures and routines for pick."""
import asyncio
import enum
import json
import pathlib
import re
import typing
import attr
if typing.TYPE_CHECKING:
from .ui import UI
import typing_extensions
class CommitDict(typing_extensions.TypedDict):
sha: str
description: str
nomintated: bool
nomination_type: typing.Optional[int]
resolution: typing.Optional[int]
master_sha: typing.Optional[str]
IS_FIX = re.compile(r'^\s*fixes:\s*([a-f0-9]{6,40})', flags=re.MULTILINE | re.IGNORECASE)
# FIXME: I dislike the duplication in this regex, but I couldn't get it to work otherwise
IS_CC = re.compile(r'^\s*cc:\s*["\']?([0-9]{2}\.[0-9])?["\']?\s*["\']?([0-9]{2}\.[0-9])?["\']?\s*\<?mesa-stable',
flags=re.MULTILINE | re.IGNORECASE)
IS_REVERT = re.compile(r'This reverts commit ([0-9a-f]{40})')
# XXX: hack
SEM = asyncio.Semaphore(50)
COMMIT_LOCK = asyncio.Lock()
class PickUIException(Exception):
pass
@enum.unique
class NominationType(enum.Enum):
CC = 0
FIXES = 1
REVERT = 2
@enum.unique
class Resolution(enum.Enum):
UNRESOLVED = 0
MERGED = 1
DENOMINATED = 2
BACKPORTED = 3
NOTNEEDED = 4
async def commit_state(*, amend: bool = False, message: str = 'Update') -> None:
"""Commit the .pick_status.json file."""
f = pathlib.Path(__file__).parent.parent.parent / '.pick_status.json'
async with COMMIT_LOCK:
p = await asyncio.create_subprocess_exec(
'git', 'add', f.as_posix(),
stdout=asyncio.subprocess.DEVNULL,
stderr=asyncio.subprocess.DEVNULL,
)
v = await p.wait()
if v != 0:
return False
if amend:
cmd = ['--amend', '--no-edit']
else:
cmd = ['--message', f'.pick_status.json: {message}']
p = await asyncio.create_subprocess_exec(
'git', 'commit', *cmd,
stdout=asyncio.subprocess.DEVNULL,
stderr=asyncio.subprocess.DEVNULL,
)
v = await p.wait()
if v != 0:
return False
return True
@attr.s(slots=True)
class Commit:
sha: str = attr.ib()
description: str = attr.ib()
nominated: bool = attr.ib(False)
nomination_type: typing.Optional[NominationType] = attr.ib(None)
resolution: Resolution = attr.ib(Resolution.UNRESOLVED)
master_sha: typing.Optional[str] = attr.ib(None)
because_sha: typing.Optional[str] = attr.ib(None)
def to_json(self) -> 'CommitDict':
d: typing.Dict[str, typing.Any] = attr.asdict(self)
if self.nomination_type is not None:
d['nomination_type'] = self.nomination_type.value
if self.resolution is not None:
d['resolution'] = self.resolution.value
return typing.cast('CommitDict', d)
@classmethod
def from_json(cls, data: 'CommitDict') -> 'Commit':
c = cls(data['sha'], data['description'], data['nominated'], master_sha=data['master_sha'], because_sha=data['because_sha'])
if data['nomination_type'] is not None:
c.nomination_type = NominationType(data['nomination_type'])
if data['resolution'] is not None:
c.resolution = Resolution(data['resolution'])
return c
async def apply(self, ui: 'UI') -> typing.Tuple[bool, str]:
# FIXME: This isn't really enough if we fail to cherry-pick because the
# git tree will still be dirty
async with COMMIT_LOCK:
p = await asyncio.create_subprocess_exec(
'git', 'cherry-pick', '-x', self.sha,
stdout=asyncio.subprocess.DEVNULL,
stderr=asyncio.subprocess.PIPE,
)
_, err = await p.communicate()
if p.returncode != 0:
return (False, err)
self.resolution = Resolution.MERGED
await ui.feedback(f'{self.sha} ({self.description}) applied successfully')
# Append the changes to the .pickstatus.json file
ui.save()
v = await commit_state(amend=True)
return (v, '')
async def abort_cherry(self, ui: 'UI', err: str) -> None:
await ui.feedback(f'{self.sha} ({self.description}) failed to apply\n{err}')
async with COMMIT_LOCK:
p = await asyncio.create_subprocess_exec(
'git', 'cherry-pick', '--abort',
stdout=asyncio.subprocess.DEVNULL,
stderr=asyncio.subprocess.DEVNULL,
)
r = await p.wait()
await ui.feedback(f'{"Successfully" if r == 0 else "Failed to"} abort cherry-pick.')
async def denominate(self, ui: 'UI') -> bool:
self.resolution = Resolution.DENOMINATED
ui.save()
v = await commit_state(message=f'Mark {self.sha} as denominated')
assert v
await ui.feedback(f'{self.sha} ({self.description}) denominated successfully')
return True
async def backport(self, ui: 'UI') -> bool:
self.resolution = Resolution.BACKPORTED
ui.save()
v = await commit_state(message=f'Mark {self.sha} as backported')
assert v
await ui.feedback(f'{self.sha} ({self.description}) backported successfully')
return True
async def resolve(self, ui: 'UI') -> None:
self.resolution = Resolution.MERGED
ui.save()
v = await commit_state(amend=True)
assert v
await ui.feedback(f'{self.sha} ({self.description}) committed successfully')
async def get_new_commits(sha: str) -> typing.List[typing.Tuple[str, str]]:
# TODO: config file that points to the upstream branch
p = await asyncio.create_subprocess_exec(
'git', 'log', '--pretty=oneline', f'{sha}..master',
stdout=asyncio.subprocess.PIPE,
stderr=asyncio.subprocess.DEVNULL)
out, _ = await p.communicate()
assert p.returncode == 0, f"git log didn't work: {sha}"
return list(split_commit_list(out.decode().strip()))
def split_commit_list(commits: str) -> typing.Generator[typing.Tuple[str, str], None, None]:
if not commits:
return
for line in commits.split('\n'):
v = tuple(line.split(' ', 1))
assert len(v) == 2, 'this is really just for mypy'
yield typing.cast(typing.Tuple[str, str], v)
async def is_commit_in_branch(sha: str) -> bool:
async with SEM:
p = await asyncio.create_subprocess_exec(
'git', 'merge-base', '--is-ancestor', sha, 'HEAD',
stdout=asyncio.subprocess.DEVNULL,
stderr=asyncio.subprocess.DEVNULL,
)
await p.wait()
return p.returncode == 0
async def full_sha(sha: str) -> str:
async with SEM:
p = await asyncio.create_subprocess_exec(
'git', 'rev-parse', sha,
stdout=asyncio.subprocess.PIPE,
stderr=asyncio.subprocess.DEVNULL,
)
out, _ = await p.communicate()
if p.returncode:
raise PickUIException(f'Invalid Sha {sha}')
return out.decode().strip()
async def resolve_nomination(commit: 'Commit', version: str) -> 'Commit':
async with SEM:
p = await asyncio.create_subprocess_exec(
'git', 'log', '--pretty=medium', '-1', commit.sha,
stdout=asyncio.subprocess.PIPE,
stderr=asyncio.subprocess.DEVNULL,
)
_out, _ = await p.communicate()
assert p.returncode == 0, f'git log for {commit.sha} failed'
out = _out.decode()
# We give presedence to fixes and cc tags over revert tags.
# XXX: not having the wallrus operator available makes me sad :=
m = IS_FIX.search(out)
if m:
# We set the nomination_type and because_sha here so that we can later
# check to see if this fixes another staged commit.
try:
commit.because_sha = fixed = await full_sha(m.group(1))
except PickUIException:
pass
else:
commit.nomination_type = NominationType.FIXES
if await is_commit_in_branch(fixed):
commit.nominated = True
return commit
m = IS_CC.search(out)
if m:
if m.groups() == (None, None) or version in m.groups():
commit.nominated = True
commit.nomination_type = NominationType.CC
return commit
m = IS_REVERT.search(out)
if m:
# See comment for IS_FIX path
try:
commit.because_sha = reverted = await full_sha(m.group(1))
except PickUIException:
pass
else:
commit.nomination_type = NominationType.REVERT
if await is_commit_in_branch(reverted):
commit.nominated = True
return commit
return commit
async def resolve_fixes(commits: typing.List['Commit'], previous: typing.List['Commit']) -> None:
"""Determine if any of the undecided commits fix/revert a staged commit.
The are still needed if they apply to a commit that is staged for
inclusion, but not yet included.
This must be done in order, because a commit 3 might fix commit 2 which
fixes commit 1.
"""
shas: typing.Set[str] = set(c.sha for c in previous if c.nominated)
assert None not in shas, 'None in shas'
for commit in reversed(commits):
if not commit.nominated and commit.nomination_type is NominationType.FIXES:
commit.nominated = commit.because_sha in shas
if commit.nominated:
shas.add(commit.sha)
for commit in commits:
if (commit.nomination_type is NominationType.REVERT and
commit.because_sha in shas):
for oldc in reversed(commits):
if oldc.sha == commit.because_sha:
# In this case a commit that hasn't yet been applied is
# reverted, we don't want to apply that commit at all
oldc.nominated = False
oldc.resolution = Resolution.DENOMINATED
commit.nominated = False
commit.resolution = Resolution.DENOMINATED
shas.remove(commit.because_sha)
break
async def gather_commits(version: str, previous: typing.List['Commit'],
new: typing.List[typing.Tuple[str, str]], cb) -> typing.List['Commit']:
# We create an array of the final size up front, then we pass that array
# to the "inner" co-routine, which is turned into a list of tasks and
# collected by asyncio.gather. We do this to allow the tasks to be
# asyncrounously gathered, but to also ensure that the commits list remains
# in order.
commits = [None] * len(new)
tasks = []
async def inner(commit: 'Commit', version: str, commits: typing.List['Commit'],
index: int, cb) -> None:
commits[index] = await resolve_nomination(commit, version)
cb()
for i, (sha, desc) in enumerate(new):
tasks.append(asyncio.ensure_future(
inner(Commit(sha, desc), version, commits, i, cb)))
await asyncio.gather(*tasks)
assert None not in commits
await resolve_fixes(commits, previous)
for commit in commits:
if commit.resolution is Resolution.UNRESOLVED and not commit.nominated:
commit.resolution = Resolution.NOTNEEDED
return commits
def load() -> typing.List['Commit']:
p = pathlib.Path(__file__).parent.parent.parent / '.pick_status.json'
if not p.exists():
return []
with p.open('r') as f:
raw = json.load(f)
return [Commit.from_json(c) for c in raw]
def save(commits: typing.Iterable['Commit']) -> None:
p = pathlib.Path(__file__).parent.parent.parent / '.pick_status.json'
commits = list(commits)
with p.open('wt') as f:
json.dump([c.to_json() for c in commits], f, indent=4)
asyncio.ensure_future(commit_state(message=f'Update to {commits[0].sha}'))

View File

@@ -1,470 +0,0 @@
# Copyright © 2019-2020 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Tests for pick's core data structures and routines."""
from unittest import mock
import textwrap
import typing
import attr
import pytest
from . import core
class TestCommit:
@pytest.fixture
def unnominated_commit(self) -> 'core.Commit':
return core.Commit('abc123', 'sub: A commit', master_sha='45678')
@pytest.fixture
def nominated_commit(self) -> 'core.Commit':
return core.Commit('abc123', 'sub: A commit', True,
core.NominationType.CC, core.Resolution.UNRESOLVED)
class TestToJson:
def test_not_nominated(self, unnominated_commit: 'core.Commit'):
c = unnominated_commit
v = c.to_json()
assert v == {'sha': 'abc123', 'description': 'sub: A commit', 'nominated': False,
'nomination_type': None, 'resolution': core.Resolution.UNRESOLVED.value,
'master_sha': '45678', 'because_sha': None}
def test_nominated(self, nominated_commit: 'core.Commit'):
c = nominated_commit
v = c.to_json()
assert v == {'sha': 'abc123',
'description': 'sub: A commit',
'nominated': True,
'nomination_type': core.NominationType.CC.value,
'resolution': core.Resolution.UNRESOLVED.value,
'master_sha': None,
'because_sha': None}
class TestFromJson:
def test_not_nominated(self, unnominated_commit: 'core.Commit'):
c = unnominated_commit
v = c.to_json()
c2 = core.Commit.from_json(v)
assert c == c2
def test_nominated(self, nominated_commit: 'core.Commit'):
c = nominated_commit
v = c.to_json()
c2 = core.Commit.from_json(v)
assert c == c2
class TestRE:
"""Tests for the regular expressions used to identify commits."""
class TestFixes:
def test_simple(self):
message = textwrap.dedent("""\
etnaviv: fix vertex buffer state emission for single stream GPUs
GPUs with a single supported vertex stream must use the single state
address to program the stream.
Fixes: 3d09bb390a39 (etnaviv: GC7000: State changes for HALTI3..5)
Signed-off-by: Lucas Stach <l.stach@pengutronix.de>
Reviewed-by: Jonathan Marek <jonathan@marek.ca>
""")
m = core.IS_FIX.search(message)
assert m is not None
assert m.group(1) == '3d09bb390a39'
class TestCC:
def test_single_branch(self):
"""Tests commit meant for a single branch, ie, 19.1"""
message = textwrap.dedent("""\
radv: fix DCC fast clear code for intensity formats
This fixes a rendering issue with DiRT 4 on GFX10. Only GFX10 was
affected because intensity formats are different.
Cc: 19.2 <mesa-stable@lists.freedesktop.org>
Closes: https://gitlab.freedesktop.org/mesa/mesa/issues/1923
Signed-off-by: Samuel Pitoiset <samuel.pitoiset@gmail.com>
Reviewed-by: Bas Nieuwenhuizen <bas@basnieuwenhuizen.nl>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '19.2'
def test_multiple_branches(self):
"""Tests commit with more than one branch specified"""
message = textwrap.dedent("""\
radeonsi: enable zerovram for Rocket League
Fixes corruption on game startup.
Closes: https://gitlab.freedesktop.org/mesa/mesa/issues/1888
Cc: 19.1 19.2 <mesa-stable@lists.freedesktop.org>
Reviewed-by: Pierre-Eric Pelloux-Prayer <pierre-eric.pelloux-prayer@amd.com>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '19.1'
assert m.group(2) == '19.2'
def test_no_branch(self):
"""Tests commit with no branch specification"""
message = textwrap.dedent("""\
anv/android: fix images created with external format support
This fixes a case where user first creates image and then later binds it
with memory created from AHW buffer.
Cc: <mesa-stable@lists.freedesktop.org>
Signed-off-by: Tapani Pälli <tapani.palli@intel.com>
Reviewed-by: Lionel Landwerlin <lionel.g.landwerlin@intel.com>
""")
m = core.IS_CC.search(message)
assert m is not None
def test_quotes(self):
"""Tests commit with quotes around the versions"""
message = textwrap.dedent("""\
anv: Always fill out the AUX table even if CCS is disabled
Cc: "20.0" mesa-stable@lists.freedesktop.org
Reviewed-by: Kenneth Graunke <kenneth@whitecape.org>
Tested-by: Marge Bot <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
Part-of: <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '20.0'
def test_multiple_quotes(self):
"""Tests commit with quotes around the versions"""
message = textwrap.dedent("""\
anv: Always fill out the AUX table even if CCS is disabled
Cc: "20.0" "20.1" mesa-stable@lists.freedesktop.org
Reviewed-by: Kenneth Graunke <kenneth@whitecape.org>
Tested-by: Marge Bot <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
Part-of: <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '20.0'
assert m.group(2) == '20.1'
def test_single_quotes(self):
"""Tests commit with quotes around the versions"""
message = textwrap.dedent("""\
anv: Always fill out the AUX table even if CCS is disabled
Cc: '20.0' mesa-stable@lists.freedesktop.org
Reviewed-by: Kenneth Graunke <kenneth@whitecape.org>
Tested-by: Marge Bot <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
Part-of: <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '20.0'
def test_multiple_single_quotes(self):
"""Tests commit with quotes around the versions"""
message = textwrap.dedent("""\
anv: Always fill out the AUX table even if CCS is disabled
Cc: '20.0' '20.1' mesa-stable@lists.freedesktop.org
Reviewed-by: Kenneth Graunke <kenneth@whitecape.org>
Tested-by: Marge Bot <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
Part-of: <https://gitlab.freedesktop.org/mesa/mesa/merge_requests/3454>
""")
m = core.IS_CC.search(message)
assert m is not None
assert m.group(1) == '20.0'
assert m.group(2) == '20.1'
class TestRevert:
def test_simple(self):
message = textwrap.dedent("""\
Revert "radv: do not emit PKT3_CONTEXT_CONTROL with AMDGPU 3.6.0+"
This reverts commit 2ca8629fa9b303e24783b76a7b3b0c2513e32fbd.
This was initially ported from RadeonSI, but in the meantime it has
been reverted because it might hang. Be conservative and re-introduce
this packet emission.
Unfortunately this doesn't fix anything known.
Cc: 19.2 <mesa-stable@lists.freedesktop.org>
Signed-off-by: Samuel Pitoiset <samuel.pitoiset@gmail.com>
Reviewed-by: Bas Nieuwenhuizen <bas@basnieuwenhuizen.nl>
""")
m = core.IS_REVERT.search(message)
assert m is not None
assert m.group(1) == '2ca8629fa9b303e24783b76a7b3b0c2513e32fbd'
class TestResolveNomination:
@attr.s(slots=True)
class FakeSubprocess:
"""A fake asyncio.subprocess like classe for use with mock."""
out: typing.Optional[bytes] = attr.ib(None)
returncode: int = attr.ib(0)
async def mock(self, *_, **__):
"""A dirtly little helper for mocking."""
return self
async def communicate(self) -> typing.Tuple[bytes, bytes]:
assert self.out is not None
return self.out, b''
async def wait(self) -> int:
return self.returncode
@staticmethod
async def return_true(*_, **__) -> bool:
return True
@staticmethod
async def return_false(*_, **__) -> bool:
return False
@pytest.mark.asyncio
async def test_fix_is_nominated(self):
s = self.FakeSubprocess(b'Fixes: 3d09bb390a39 (etnaviv: GC7000: State changes for HALTI3..5)')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_true):
await core.resolve_nomination(c, '')
assert c.nominated
assert c.nomination_type is core.NominationType.FIXES
@pytest.mark.asyncio
async def test_fix_is_not_nominated(self):
s = self.FakeSubprocess(b'Fixes: 3d09bb390a39 (etnaviv: GC7000: State changes for HALTI3..5)')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_false):
await core.resolve_nomination(c, '')
assert not c.nominated
assert c.nomination_type is core.NominationType.FIXES
@pytest.mark.asyncio
async def test_cc_is_nominated(self):
s = self.FakeSubprocess(b'Cc: 16.2 <mesa-stable@lists.freedesktop.org>')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
await core.resolve_nomination(c, '16.2')
assert c.nominated
assert c.nomination_type is core.NominationType.CC
@pytest.mark.asyncio
async def test_cc_is_nominated2(self):
s = self.FakeSubprocess(b'Cc: mesa-stable@lists.freedesktop.org')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
await core.resolve_nomination(c, '16.2')
assert c.nominated
assert c.nomination_type is core.NominationType.CC
@pytest.mark.asyncio
async def test_cc_is_not_nominated(self):
s = self.FakeSubprocess(b'Cc: 16.2 <mesa-stable@lists.freedesktop.org>')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
await core.resolve_nomination(c, '16.1')
assert not c.nominated
assert c.nomination_type is None
@pytest.mark.asyncio
async def test_revert_is_nominated(self):
s = self.FakeSubprocess(b'This reverts commit 1234567890123456789012345678901234567890.')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_true):
await core.resolve_nomination(c, '')
assert c.nominated
assert c.nomination_type is core.NominationType.REVERT
@pytest.mark.asyncio
async def test_revert_is_not_nominated(self):
s = self.FakeSubprocess(b'This reverts commit 1234567890123456789012345678901234567890.')
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_false):
await core.resolve_nomination(c, '')
assert not c.nominated
assert c.nomination_type is core.NominationType.REVERT
@pytest.mark.asyncio
async def test_is_fix_and_cc(self):
s = self.FakeSubprocess(
b'Fixes: 3d09bb390a39 (etnaviv: GC7000: State changes for HALTI3..5)\n'
b'Cc: 16.1 <mesa-stable@lists.freedesktop.org>'
)
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_true):
await core.resolve_nomination(c, '16.1')
assert c.nominated
assert c.nomination_type is core.NominationType.FIXES
@pytest.mark.asyncio
async def test_is_fix_and_revert(self):
s = self.FakeSubprocess(
b'Fixes: 3d09bb390a39 (etnaviv: GC7000: State changes for HALTI3..5)\n'
b'This reverts commit 1234567890123456789012345678901234567890.'
)
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_true):
await core.resolve_nomination(c, '16.1')
assert c.nominated
assert c.nomination_type is core.NominationType.FIXES
@pytest.mark.asyncio
async def test_is_cc_and_revert(self):
s = self.FakeSubprocess(
b'This reverts commit 1234567890123456789012345678901234567890.\n'
b'Cc: 16.1 <mesa-stable@lists.freedesktop.org>'
)
c = core.Commit('abcdef1234567890', 'a commit')
with mock.patch('bin.pick.core.asyncio.create_subprocess_exec', s.mock):
with mock.patch('bin.pick.core.is_commit_in_branch', self.return_true):
await core.resolve_nomination(c, '16.1')
assert c.nominated
assert c.nomination_type is core.NominationType.CC
class TestResolveFixes:
@pytest.mark.asyncio
async def test_in_new(self):
"""Because commit abcd is nominated, so f123 should be as well."""
c = [
core.Commit('f123', 'desc', nomination_type=core.NominationType.FIXES, because_sha='abcd'),
core.Commit('abcd', 'desc', True),
]
await core.resolve_fixes(c, [])
assert c[1].nominated
@pytest.mark.asyncio
async def test_not_in_new(self):
"""Because commit abcd is not nominated, commit f123 shouldn't be either."""
c = [
core.Commit('f123', 'desc', nomination_type=core.NominationType.FIXES, because_sha='abcd'),
core.Commit('abcd', 'desc'),
]
await core.resolve_fixes(c, [])
assert not c[0].nominated
@pytest.mark.asyncio
async def test_in_previous(self):
"""Because commit abcd is nominated, so f123 should be as well."""
p = [
core.Commit('abcd', 'desc', True),
]
c = [
core.Commit('f123', 'desc', nomination_type=core.NominationType.FIXES, because_sha='abcd'),
]
await core.resolve_fixes(c, p)
assert c[0].nominated
@pytest.mark.asyncio
async def test_not_in_previous(self):
"""Because commit abcd is not nominated, commit f123 shouldn't be either."""
p = [
core.Commit('abcd', 'desc'),
]
c = [
core.Commit('f123', 'desc', nomination_type=core.NominationType.FIXES, because_sha='abcd'),
]
await core.resolve_fixes(c, p)
assert not c[0].nominated
class TestIsCommitInBranch:
@pytest.mark.asyncio
async def test_no(self):
# Hopefully this is never true?
value = await core.is_commit_in_branch('ffffffffffffffffffffffffffffff')
assert not value
@pytest.mark.asyncio
async def test_yes(self):
# This commit is from 2000, it better always be in the branch
value = await core.is_commit_in_branch('88f3b89a2cb77766d2009b9868c44e03abe2dbb2')
assert value
class TestFullSha:
@pytest.mark.asyncio
async def test_basic(self):
# This commit is from 2000, it better always be in the branch
value = await core.full_sha('88f3b89a2cb777')
assert value
@pytest.mark.asyncio
async def test_invalid(self):
# This commit is from 2000, it better always be in the branch
with pytest.raises(core.PickUIException):
await core.full_sha('fffffffffffffffffffffffffffffffffff')

View File

@@ -1,259 +0,0 @@
# Copyright © 2020-2020 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Urwid UI for pick script."""
import asyncio
import functools
import itertools
import textwrap
import typing
import attr
import urwid
from . import core
if typing.TYPE_CHECKING:
WidgetType = typing.TypeVar('WidgetType', bound=urwid.Widget)
PALETTE = [
('a', 'black', 'light gray'),
('b', 'black', 'dark red'),
('bg', 'black', 'dark blue'),
('reversed', 'standout', ''),
]
class RootWidget(urwid.Frame):
def __init__(self, *args, ui: 'UI' = None, **kwargs):
super().__init__(*args, **kwargs)
assert ui is not None
self.ui = ui
def keypress(self, size: int, key: str) -> typing.Optional[str]:
if key == 'q':
raise urwid.ExitMainLoop()
elif key == 'u':
asyncio.ensure_future(self.ui.update())
elif key == 'a':
self.ui.add()
else:
return super().keypress(size, key)
return None
class CommitWidget(urwid.Text):
# urwid.Text is normally not interactable, this is required to tell urwid
# to use our keypress method
_selectable = True
def __init__(self, ui: 'UI', commit: 'core.Commit'):
super().__init__(commit.description)
self.ui = ui
self.commit = commit
async def apply(self) -> None:
result, err = await self.commit.apply(self.ui)
if not result:
self.ui.chp_failed(self, err)
else:
self.ui.remove_commit(self)
async def denominate(self) -> None:
await self.commit.denominate(self.ui)
self.ui.remove_commit(self)
async def backport(self) -> None:
await self.commit.backport(self.ui)
self.ui.remove_commit(self)
def keypress(self, size: int, key: str) -> typing.Optional[str]:
if key == 'c':
asyncio.ensure_future(self.apply())
elif key == 'd':
asyncio.ensure_future(self.denominate())
elif key == 'b':
asyncio.ensure_future(self.backport())
else:
return key
return None
@attr.s(slots=True)
class UI:
"""Main management object.
:previous_commits: A list of commits to master since this branch was created
:new_commits: Commits added to master since the last time this script was run
"""
commit_list: typing.List['urwid.Button'] = attr.ib(factory=lambda: urwid.SimpleFocusListWalker([]), init=False)
feedback_box: typing.List['urwid.Text'] = attr.ib(factory=lambda: urwid.SimpleFocusListWalker([]), init=False)
header: 'urwid.Text' = attr.ib(factory=lambda: urwid.Text('Mesa Stable Picker', align='center'), init=False)
body: 'urwid.Columns' = attr.ib(attr.Factory(lambda s: s._make_body(), True), init=False)
footer: 'urwid.Columns' = attr.ib(attr.Factory(lambda s: s._make_footer(), True), init=False)
root: RootWidget = attr.ib(attr.Factory(lambda s: s._make_root(), True), init=False)
mainloop: urwid.MainLoop = attr.ib(None, init=False)
previous_commits: typing.List['core.Commit'] = attr.ib(factory=list, init=False)
new_commits: typing.List['core.Commit'] = attr.ib(factory=list, init=False)
def _make_body(self) -> 'urwid.Columns':
commits = urwid.ListBox(self.commit_list)
feedback = urwid.ListBox(self.feedback_box)
return urwid.Columns([commits, feedback])
def _make_footer(self) -> 'urwid.Columns':
body = [
urwid.Text('[U]pdate'),
urwid.Text('[Q]uit'),
urwid.Text('[C]herry Pick'),
urwid.Text('[D]enominate'),
urwid.Text('[B]ackport'),
urwid.Text('[A]pply additional patch')
]
return urwid.Columns(body)
def _make_root(self) -> 'RootWidget':
return RootWidget(self.body, self.header, self.footer, 'body', ui=self)
def render(self) -> 'WidgetType':
asyncio.ensure_future(self.update())
return self.root
def load(self) -> None:
self.previous_commits = core.load()
async def update(self) -> None:
self.load()
with open('VERSION', 'r') as f:
version = f.read().strip()[:4]
if self.previous_commits:
sha = self.previous_commits[0].sha
else:
sha = f'{version}-branchpoint'
new_commits = await core.get_new_commits(sha)
if new_commits:
pb = urwid.ProgressBar('a', 'b', done=len(new_commits))
o = self.mainloop.widget
self.mainloop.widget = urwid.Overlay(
urwid.Filler(urwid.LineBox(pb)), o, 'center', ('relative', 50), 'middle', ('relative', 50))
self.new_commits = await core.gather_commits(
version, self.previous_commits, new_commits,
lambda: pb.set_completion(pb.current + 1))
self.mainloop.widget = o
for commit in reversed(list(itertools.chain(self.new_commits, self.previous_commits))):
if commit.nominated and commit.resolution is core.Resolution.UNRESOLVED:
b = urwid.AttrMap(CommitWidget(self, commit), None, focus_map='reversed')
self.commit_list.append(b)
self.save()
async def feedback(self, text: str) -> None:
self.feedback_box.append(urwid.AttrMap(urwid.Text(text), None))
def remove_commit(self, commit: CommitWidget) -> None:
for i, c in enumerate(self.commit_list):
if c.base_widget is commit:
del self.commit_list[i]
break
def save(self):
core.save(itertools.chain(self.new_commits, self.previous_commits))
def add(self) -> None:
"""Add an additional commit which isn't nominated."""
o = self.mainloop.widget
def reset_cb(_) -> None:
self.mainloop.widget = o
async def apply_cb(edit: urwid.Edit) -> None:
text: str = edit.get_edit_text()
# In case the text is empty
if not text:
return
sha = await core.full_sha(text)
for c in reversed(list(itertools.chain(self.new_commits, self.previous_commits))):
if c.sha == sha:
commit = c
break
else:
raise RuntimeError(f"Couldn't find {sha}")
await commit.apply(self)
q = urwid.Edit("Comit sha\n")
ok_btn = urwid.Button('Ok')
urwid.connect_signal(ok_btn, 'click', lambda _: asyncio.ensure_future(apply_cb(q)))
urwid.connect_signal(ok_btn, 'click', reset_cb)
can_btn = urwid.Button('Cancel')
urwid.connect_signal(can_btn, 'click', reset_cb)
cols = urwid.Columns([ok_btn, can_btn])
pile = urwid.Pile([q, cols])
box = urwid.LineBox(pile)
self.mainloop.widget = urwid.Overlay(
urwid.Filler(box), o, 'center', ('relative', 50), 'middle', ('relative', 50)
)
def chp_failed(self, commit: 'CommitWidget', err: str) -> None:
o = self.mainloop.widget
def reset_cb(_) -> None:
self.mainloop.widget = o
t = urwid.Text(textwrap.dedent(f"""
Failed to apply {commit.commit.sha} {commit.commit.description} with the following error:
{err}
You can either cancel, or resolve the conflicts, commit the
changes and select ok."""))
can_btn = urwid.Button('Cancel')
urwid.connect_signal(can_btn, 'click', reset_cb)
urwid.connect_signal(
can_btn, 'click', lambda _: asyncio.ensure_future(commit.commit.abort_cherry(self, err)))
ok_btn = urwid.Button('Ok')
urwid.connect_signal(ok_btn, 'click', reset_cb)
urwid.connect_signal(
ok_btn, 'click', lambda _: asyncio.ensure_future(commit.commit.resolve(self)))
urwid.connect_signal(
ok_btn, 'click', lambda _: self.remove_commit(commit))
cols = urwid.Columns([ok_btn, can_btn])
pile = urwid.Pile([t, cols])
box = urwid.LineBox(pile)
self.mainloop.widget = urwid.Overlay(
urwid.Filler(box), o, 'center', ('relative', 50), 'middle', ('relative', 50)
)

View File

@@ -1,117 +0,0 @@
#!/usr/bin/env python3
# Copyright © 2019 Intel Corporation
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
# The above copyright notice and this permission notice shall be included in
# all copies or substantial portions of the Software.
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
"""Update the main page, release notes, and calendar."""
import argparse
import calendar
import datetime
import pathlib
from lxml import (
etree,
html,
)
def calculate_previous_version(version: str, is_point: bool) -> str:
"""Calculate the previous version to compare to.
In the case of -rc to final that verison is the previous .0 release,
(19.3.0 in the case of 20.0.0, for example). for point releases that is
the last point release. This value will be the same as the input value
for a poiont release, but different for a major release.
"""
if '-' in version:
version = version.split('-')[0]
if is_point:
return version
base = version.split('.')
if base[1] == '0':
base[0] = str(int(base[0]) - 1)
base[1] = '3'
else:
base[1] = str(int(base[1]) - 1)
return '.'.join(base)
def is_point_release(version: str) -> bool:
return not version.endswith('.0')
def update_index(is_point: bool, version: str, previous_version: str) -> None:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'index.html'
with p.open('rt') as f:
tree = html.parse(f)
news = tree.xpath('.//h1')[0]
date = datetime.date.today()
month = calendar.month_name[date.month]
header = etree.Element('h2')
header.text = f"{month} {date.day}, {date.year}"
body = etree.Element('p')
a = etree.SubElement(
body, 'a', attrib={'href': f'relnotes/{previous_version}.html'})
a.text = f"Mesa {previous_version}"
if is_point:
a.tail = " is released. This is a bug fix release."
else:
a.tail = (" is released. This is a new development release. "
"See the release notes for mor information about this release.")
root = news.getparent()
index = root.index(news) + 1
root.insert(index, body)
root.insert(index, header)
tree.write(p.as_posix(), method='html')
def update_release_notes(previous_version: str) -> None:
p = pathlib.Path(__file__).parent.parent / 'docs' / 'relnotes.html'
with p.open('rt') as f:
tree = html.parse(f)
li = etree.Element('li')
a = etree.SubElement(li, 'a', href=f'relnotes/{previous_version}.html')
a.text = f'{previous_version} release notes'
ul = tree.xpath('.//ul')[0]
ul.insert(0, li)
tree.write(p.as_posix(), method='html')
def main() -> None:
parser = argparse.ArgumentParser()
parser.add_argument('version', help="The released version.")
args = parser.parse_args()
is_point = is_point_release(args.version)
previous_version = calculate_previous_version(args.version, is_point)
update_index(is_point, args.version, previous_version)
update_release_notes(previous_version)
if __name__ == "__main__":
main()

29
bin/shortlog_mesa.sh Executable file
View File

@@ -0,0 +1,29 @@
#!/bin/bash
# This script is used to generate the list of changes that
# appears in the release notes files, with HTML formatting.
#
# Usage examples:
#
# $ bin/shortlog_mesa.sh mesa-9.0.2..mesa-9.0.3
# $ bin/shortlog_mesa.sh mesa-9.0.2..mesa-9.0.3 > changes
# $ bin/shortlog_mesa.sh mesa-9.0.2..mesa-9.0.3 | tee changes
typeset -i in_log=0
git shortlog $* | while read l
do
if [ $in_log -eq 0 ]; then
echo '<p>'$l'</p>'
echo '<ul>'
in_log=1
elif echo "$l" | egrep -q '^$' ; then
echo '</ul>'
echo
in_log=0
else
mesg=$(echo $l | sed 's/ (cherry picked from commit [0-9a-f]\+)//;s/\&/&amp;/g;s/</\&lt;/g;s/>/\&gt;/g')
echo ' <li>'${mesg}'</li>'
fi
done

View File

@@ -1,134 +0,0 @@
#!/usr/bin/env python
import argparse
import os
import platform
import subprocess
# This list contains symbols that _might_ be exported for some platforms
PLATFORM_SYMBOLS = [
'__bss_end__',
'__bss_start__',
'__bss_start',
'__end__',
'_bss_end__',
'_edata',
'_end',
'_fini',
'_init',
]
def get_symbols(nm, lib):
'''
List all the (non platform-specific) symbols exported by the library
'''
symbols = []
platform_name = platform.system()
output = subprocess.check_output([nm, '-gP', lib],
stderr=open(os.devnull, 'w')).decode("ascii")
for line in output.splitlines():
fields = line.split()
if len(fields) == 2 or fields[1] == 'U':
continue
symbol_name = fields[0]
if platform_name == 'Linux':
if symbol_name in PLATFORM_SYMBOLS:
continue
elif platform_name == 'Darwin':
assert symbol_name[0] == '_'
symbol_name = symbol_name[1:]
symbols.append(symbol_name)
return symbols
def main():
parser = argparse.ArgumentParser()
parser.add_argument('--symbols-file',
action='store',
required=True,
help='path to file containing symbols')
parser.add_argument('--lib',
action='store',
required=True,
help='path to library')
parser.add_argument('--nm',
action='store',
required=True,
help='path to binary (or name in $PATH)')
args = parser.parse_args()
try:
lib_symbols = get_symbols(args.nm, args.lib)
except:
# We can't run this test, but we haven't technically failed it either
# Return the GNU "skip" error code
exit(77)
mandatory_symbols = []
optional_symbols = []
with open(args.symbols_file) as symbols_file:
qualifier_optional = '(optional)'
for line in symbols_file.readlines():
# Strip comments
line = line.split('#')[0]
line = line.strip()
if not line:
continue
# Line format:
# [qualifier] symbol
qualifier = None
symbol = None
fields = line.split()
if len(fields) == 1:
symbol = fields[0]
elif len(fields) == 2:
qualifier = fields[0]
symbol = fields[1]
else:
print(args.symbols_file + ': invalid format: ' + line)
exit(1)
# The only supported qualifier is 'optional', which means the
# symbol doesn't have to be exported by the library
if qualifier and not qualifier == qualifier_optional:
print(args.symbols_file + ': invalid qualifier: ' + qualifier)
exit(1)
if qualifier == qualifier_optional:
optional_symbols.append(symbol)
else:
mandatory_symbols.append(symbol)
unknown_symbols = []
for symbol in lib_symbols:
if symbol in mandatory_symbols:
continue
if symbol in optional_symbols:
continue
if symbol[:2] == '_Z':
# Ignore random C++ symbols
#TODO: figure out if there's any way to avoid exporting them in the first place
continue
unknown_symbols.append(symbol)
missing_symbols = [
sym for sym in mandatory_symbols if sym not in lib_symbols
]
for symbol in unknown_symbols:
print(args.lib + ': unknown symbol exported: ' + symbol)
for symbol in missing_symbols:
print(args.lib + ': missing symbol: ' + symbol)
if unknown_symbols or missing_symbols:
exit(1)
exit(0)
if __name__ == '__main__':
main()

View File

@@ -1,3 +0,0 @@
{
radeon_drm_winsys_create;
};

View File

@@ -1,6 +0,0 @@
VERSION_1 {
global:
main;
local:
*;
};

109
common.py
View File

@@ -17,9 +17,6 @@ import SCons.Script.SConscript
host_platform = _platform.system().lower()
if host_platform.startswith('cygwin'):
host_platform = 'cygwin'
# MSYS2 default platform selection.
if host_platform.startswith('mingw'):
host_platform = 'windows'
# Search sys.argv[] for a "platform=foo" argument since we don't have
# an 'env' variable at this point.
@@ -29,41 +26,32 @@ else:
target_platform = host_platform
_machine_map = {
'x86': 'x86',
'i386': 'x86',
'i486': 'x86',
'i586': 'x86',
'i686': 'x86',
'BePC': 'x86',
'Intel': 'x86',
'ppc': 'ppc',
'BeBox': 'ppc',
'BeMac': 'ppc',
'AMD64': 'x86_64',
'x86_64': 'x86_64',
'sparc': 'sparc',
'sun4u': 'sparc',
'x86': 'x86',
'i386': 'x86',
'i486': 'x86',
'i586': 'x86',
'i686': 'x86',
'BePC': 'x86',
'Intel': 'x86',
'ppc' : 'ppc',
'BeBox': 'ppc',
'BeMac': 'ppc',
'AMD64': 'x86_64',
'x86_64': 'x86_64',
'sparc': 'sparc',
'sun4u': 'sparc',
}
# find host_machine value
if 'PROCESSOR_ARCHITECTURE' in os.environ:
host_machine = os.environ['PROCESSOR_ARCHITECTURE']
host_machine = os.environ['PROCESSOR_ARCHITECTURE']
else:
host_machine = _platform.machine()
host_machine = _platform.machine()
host_machine = _machine_map.get(host_machine, 'generic')
# MSYS2 default machine selection.
if _platform.system().lower().startswith('mingw') and 'MSYSTEM' in os.environ:
if os.environ['MSYSTEM'] == 'MINGW32':
host_machine = 'x86'
if os.environ['MSYSTEM'] == 'MINGW64':
host_machine = 'x86_64'
default_machine = host_machine
default_toolchain = 'default'
# MSYS2 default toolchain selection.
if _platform.system().lower().startswith('mingw'):
default_toolchain = 'mingw'
if target_platform == 'windows' and host_platform != 'windows':
default_machine = 'x86'
@@ -71,14 +59,13 @@ if target_platform == 'windows' and host_platform != 'windows':
# find default_llvm value
if 'LLVM' in os.environ or 'LLVM_CONFIG' in os.environ:
if 'LLVM' in os.environ:
default_llvm = 'yes'
else:
default_llvm = 'no'
try:
if target_platform != 'windows' and \
subprocess.call(['llvm-config', '--version'],
stdout=subprocess.PIPE) == 0:
subprocess.call(['llvm-config', '--version'], stdout=subprocess.PIPE) == 0:
default_llvm = 'yes'
except:
pass
@@ -88,37 +75,29 @@ else:
# Common options
def AddOptions(opts):
try:
from SCons.Variables.BoolVariable import BoolVariable as BoolOption
except ImportError:
from SCons.Options.BoolOption import BoolOption
try:
from SCons.Variables.EnumVariable import EnumVariable as EnumOption
except ImportError:
from SCons.Options.EnumOption import EnumOption
opts.Add(EnumOption('build', 'build type', 'debug',
allowed_values=('debug', 'checked', 'profile',
'release')))
opts.Add(BoolOption('verbose', 'verbose output', 'no'))
opts.Add(EnumOption('machine', 'use machine-specific assembly code',
default_machine,
allowed_values=('generic', 'ppc', 'x86', 'x86_64')))
opts.Add(EnumOption('platform', 'target platform', host_platform,
allowed_values=('cygwin', 'darwin', 'freebsd', 'haiku',
'linux', 'sunos', 'windows')))
opts.Add(BoolOption('embedded', 'embedded build', 'no'))
opts.Add(BoolOption('analyze',
'enable static code analysis where available', 'no'))
opts.Add(BoolOption('asan', 'enable Address Sanitizer', 'no'))
opts.Add('toolchain', 'compiler toolchain', default_toolchain)
opts.Add(BoolOption('llvm', 'use LLVM', default_llvm))
opts.Add(BoolOption('force_scons', 'Force enable scons on deprecated platforms', 'false'))
opts.Add(BoolOption('openmp', 'EXPERIMENTAL: compile with openmp (swrast)',
'no'))
opts.Add(BoolOption('debug', 'DEPRECATED: debug build', 'yes'))
opts.Add(BoolOption('profile', 'DEPRECATED: profile build', 'no'))
opts.Add(BoolOption('quiet', 'DEPRECATED: profile build', 'yes'))
opts.Add(BoolOption('swr', 'Build OpenSWR', 'no'))
if host_platform == 'windows':
opts.Add('MSVC_VERSION', 'Microsoft Visual C/C++ version')
opts.Add('MSVC_USE_SCRIPT', 'Microsoft Visual C/C++ vcvarsall script', True)
try:
from SCons.Variables.BoolVariable import BoolVariable as BoolOption
except ImportError:
from SCons.Options.BoolOption import BoolOption
try:
from SCons.Variables.EnumVariable import EnumVariable as EnumOption
except ImportError:
from SCons.Options.EnumOption import EnumOption
opts.Add(EnumOption('build', 'build type', 'debug',
allowed_values=('debug', 'checked', 'profile', 'release')))
opts.Add(BoolOption('verbose', 'verbose output', 'no'))
opts.Add(EnumOption('machine', 'use machine-specific assembly code', default_machine,
allowed_values=('generic', 'ppc', 'x86', 'x86_64')))
opts.Add(EnumOption('platform', 'target platform', host_platform,
allowed_values=('cygwin', 'darwin', 'freebsd', 'haiku', 'linux', 'sunos', 'windows')))
opts.Add(BoolOption('embedded', 'embedded build', 'no'))
opts.Add('toolchain', 'compiler toolchain', default_toolchain)
opts.Add(BoolOption('gles', 'EXPERIMENTAL: enable OpenGL ES support', 'no'))
opts.Add(BoolOption('llvm', 'use LLVM', default_llvm))
opts.Add(BoolOption('openmp', 'EXPERIMENTAL: compile with openmp (swrast)', 'no'))
opts.Add(BoolOption('debug', 'DEPRECATED: debug build', 'yes'))
opts.Add(BoolOption('profile', 'DEPRECATED: profile build', 'no'))
opts.Add(BoolOption('quiet', 'DEPRECATED: profile build', 'yes'))
opts.Add(BoolOption('texture_float', 'enable floating-point textures and renderbuffers', 'no'))
if host_platform == 'windows':
opts.Add(EnumOption('MSVC_VERSION', 'MS Visual C++ version', None, allowed_values=('7.1', '8.0', '9.0', '10.0', '11.0')))

2196
configure.ac Normal file

File diff suppressed because it is too large Load Diff

490
docs/COPYING Normal file
View File

@@ -0,0 +1,490 @@
Some parts of Mesa are copyrighted under the GNU LGPL. See the
Mesa/docs/COPYRIGHT file for details.
The following is the standard GNU copyright file.
----------------------------------------------------------------------
GNU LIBRARY GENERAL PUBLIC LICENSE
Version 2, June 1991
Copyright (C) 1991 Free Software Foundation, Inc.
675 Mass Ave, Cambridge, MA 02139, USA
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
[This is the first released version of the library GPL. It is
numbered 2 because it goes with version 2 of the ordinary GPL.]
Preamble
The licenses for most software are designed to take away your
freedom to share and change it. By contrast, the GNU General Public
Licenses are intended to guarantee your freedom to share and change
free software--to make sure the software is free for all its users.
This license, the Library General Public License, applies to some
specially designated Free Software Foundation software, and to any
other libraries whose authors decide to use it. You can use it for
your libraries, too.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
this service if you wish), that you receive source code or can get it
if you want it, that you can change the software or use pieces of it
in new free programs; and that you know you can do these things.
To protect your rights, we need to make restrictions that forbid
anyone to deny you these rights or to ask you to surrender the rights.
These restrictions translate to certain responsibilities for you if
you distribute copies of the library, or if you modify it.
For example, if you distribute copies of the library, whether gratis
or for a fee, you must give the recipients all the rights that we gave
you. You must make sure that they, too, receive or can get the source
code. If you link a program with the library, you must provide
complete object files to the recipients so that they can relink them
with the library, after making changes to the library and recompiling
it. And you must show them these terms so they know their rights.
Our method of protecting your rights has two steps: (1) copyright
the library, and (2) offer you this license which gives you legal
permission to copy, distribute and/or modify the library.
Also, for each distributor's protection, we want to make certain
that everyone understands that there is no warranty for this free
library. If the library is modified by someone else and passed on, we
want its recipients to know that what they have is not the original
version, so that any problems introduced by others will not reflect on
the original authors' reputations.
Finally, any free program is threatened constantly by software
patents. We wish to avoid the danger that companies distributing free
software will individually obtain patent licenses, thus in effect
transforming the program into proprietary software. To prevent this,
we have made it clear that any patent must be licensed for everyone's
free use or not licensed at all.
Most GNU software, including some libraries, is covered by the ordinary
GNU General Public License, which was designed for utility programs. This
license, the GNU Library General Public License, applies to certain
designated libraries. This license is quite different from the ordinary
one; be sure to read it in full, and don't assume that anything in it is
the same as in the ordinary license.
The reason we have a separate public license for some libraries is that
they blur the distinction we usually make between modifying or adding to a
program and simply using it. Linking a program with a library, without
changing the library, is in some sense simply using the library, and is
analogous to running a utility program or application program. However, in
a textual and legal sense, the linked executable is a combined work, a
derivative of the original library, and the ordinary General Public License
treats it as such.
Because of this blurred distinction, using the ordinary General
Public License for libraries did not effectively promote software
sharing, because most developers did not use the libraries. We
concluded that weaker conditions might promote sharing better.
However, unrestricted linking of non-free programs would deprive the
users of those programs of all benefit from the free status of the
libraries themselves. This Library General Public License is intended to
permit developers of non-free programs to use free libraries, while
preserving your freedom as a user of such programs to change the free
libraries that are incorporated in them. (We have not seen how to achieve
this as regards changes in header files, but we have achieved it as regards
changes in the actual functions of the Library.) The hope is that this
will lead to faster development of free libraries.
The precise terms and conditions for copying, distribution and
modification follow. Pay close attention to the difference between a
"work based on the library" and a "work that uses the library". The
former contains code derived from the library, while the latter only
works together with the library.
Note that it is possible for a library to be covered by the ordinary
General Public License rather than by this special one.
GNU LIBRARY GENERAL PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. This License Agreement applies to any software library which
contains a notice placed by the copyright holder or other authorized
party saying it may be distributed under the terms of this Library
General Public License (also called "this License"). Each licensee is
addressed as "you".
A "library" means a collection of software functions and/or data
prepared so as to be conveniently linked with application programs
(which use some of those functions and data) to form executables.
The "Library", below, refers to any such software library or work
which has been distributed under these terms. A "work based on the
Library" means either the Library or any derivative work under
copyright law: that is to say, a work containing the Library or a
portion of it, either verbatim or with modifications and/or translated
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That's all there is to it!

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Status of OpenGL 3.x features in Mesa
Note: when an item is marked as "DONE" it means all the core Mesa
infrastructure is complete but it may be the case that few (if any) drivers
implement the features.
OpenGL Core and Compatibility context support
OpenGL 3.1 and later versions are only supported with the Core profile.
There are no plans to support GL_ARB_compatibility. The last supported OpenGL
version with all deprecated features is 3.0. Some of the later GL features
are exposed in the 3.0 context as extensions.
Feature Status
----------------------------------------------------- ------------------------
GL 3.0:
GLSL 1.30 DONE (i965, r600, radeonsi)
glBindFragDataLocation, glGetFragDataLocation DONE
Conditional rendering (GL_NV_conditional_render) DONE (i965, r300, r600, radeonsi, swrast)
Map buffer subranges (GL_ARB_map_buffer_range) DONE (i965, r300, r600, radeonsi, swrast)
Clamping controls (GL_ARB_color_buffer_float) DONE (i965, r300, r600, radeonsi)
Float textures, renderbuffers (GL_ARB_texture_float) DONE (i965, r300, r600, radeonsi)
GL_EXT_packed_float DONE (i965, r600, radeonsi)
GL_EXT_texture_shared_exponent DONE (i965, r600, radeonsi, swrast)
Float depth buffers (GL_ARB_depth_buffer_float) DONE (i965, r600, radeonsi)
Framebuffer objects (GL_ARB_framebuffer_object) DONE (i965, r300, r600, radeonsi, swrast)
Half-float DONE (i965, r300, r600, radeonsi, swrast)
Non-normalized Integer texture/framebuffer formats DONE (i965, r600, radeonsi)
1D/2D Texture arrays DONE (i965, r600, radeonsi)
Per-buffer blend and masks (GL_EXT_draw_buffers2) DONE (i965, r600, radeonsi, swrast)
GL_EXT_texture_compression_rgtc DONE (i965, r300, r600, radeonsi, swrast)
Red and red/green texture formats DONE (i965, r300, r600, radeonsi, swrast)
Transform feedback (GL_EXT_transform_feedback) DONE (i965, r600, radeonsi)
Vertex array objects (GL_APPLE_vertex_array_object) DONE (all drivers)
sRGB framebuffer format (GL_EXT_framebuffer_sRGB) DONE (i965, r600, radeonsi)
glClearBuffer commands DONE
glGetStringi command DONE
glTexParameterI, glGetTexParameterI commands DONE
glVertexAttribI commands DONE
Depth format cube textures DONE (i965, r600, radeonsi)
GLX_ARB_create_context (GLX 1.4 is required) DONE
GL 3.1:
GLSL 1.40 DONE (i965, r600, radeonsi)
Forward compatible context support/deprecations DONE (i965, r600, radeonsi)
Instanced drawing (GL_ARB_draw_instanced) DONE (i965, r600, radeonsi, swrast)
Buffer copying (GL_ARB_copy_buffer) DONE (i965, r300, r600, radeonsi, swrast)
Primitive restart (GL_NV_primitive_restart) DONE (i965, r300, r600, radeonsi)
16 vertex texture image units DONE (i965, r600, radeonsi)
Texture buffer objs (GL_ARB_texture_buffer_object) DONE for OpenGL 3.1 contexts (i965, r600, radeonsi)
Rectangular textures (GL_ARB_texture_rectangle) DONE (i965, r300, r600, radeonsi, swrast)
Uniform buffer objs (GL_ARB_uniform_buffer_object) DONE (i965, r600, radeonsi, swrast)
Signed normalized textures (GL_EXT_texture_snorm) DONE (i965, r300, r600, radeonsi)
GL 3.2:
Core/compatibility profiles DONE
GLSL 1.50 DONE (i965)
Geometry shaders DONE (i965)
BGRA vertex order (GL_ARB_vertex_array_bgra) DONE (i965, r300, r600, radeonsi, swrast)
Base vertex offset(GL_ARB_draw_elements_base_vertex) DONE (i965, r300, r600, radeonsi, swrast)
Frag shader coord (GL_ARB_fragment_coord_conventions) DONE (i965, r300, r600, radeonsi, swrast)
Provoking vertex (GL_ARB_provoking_vertex) DONE (i965, r300, r600, radeonsi, swrast)
Seamless cubemaps (GL_ARB_seamless_cube_map) DONE (i965, r600, radeonsi)
Multisample textures (GL_ARB_texture_multisample) DONE (i965, r600, radeonsi)
Frag depth clamp (GL_ARB_depth_clamp) DONE (i965, r600, swrast, radeonsi)
Fence objects (GL_ARB_sync) DONE (i965, r300, r600, radeonsi, swrast)
GLX_ARB_create_context_profile DONE
GL 3.3:
GLSL 3.30 DONE (i965)
GL_ARB_blend_func_extended DONE (i965, r600, radeonsi, softpipe)
GL_ARB_explicit_attrib_location DONE (i915, i965, r300, r600, radeonsi, swrast)
GL_ARB_occlusion_query2 DONE (i965, r300, r600, radeonsi, swrast)
GL_ARB_sampler_objects DONE (i965, r300, r600, radeonsi)
GL_ARB_shader_bit_encoding DONE (i965, r600, radeonsi)
GL_ARB_texture_rgb10_a2ui DONE (i965, r600, radeonsi)
GL_ARB_texture_swizzle DONE (i965, r300, r600, radeonsi, swrast)
GL_ARB_timer_query DONE (i965, r600, radeonsi)
GL_ARB_instanced_arrays DONE (i965, r300, r600, radeonsi)
GL_ARB_vertex_type_2_10_10_10_rev DONE (i965, r600, radeonsi)
GL 4.0:
GLSL 4.0 not started
GL_ARB_texture_query_lod DONE (i965)
GL_ARB_draw_buffers_blend DONE (i965, r600, radeonsi, softpipe)
GL_ARB_draw_indirect started (Christoph)
GL_ARB_gpu_shader5 started
GL_ARB_gpu_shader_fp64 not started
GL_ARB_sample_shading DONE (i965)
GL_ARB_shader_subroutine not started
GL_ARB_tessellation_shader not started
GL_ARB_texture_buffer_object_rgb32 DONE (i965, r600, radeonsi, softpipe)
GL_ARB_texture_cube_map_array DONE (i965, r600, softpipe)
GL_ARB_texture_gather DONE (i965)
GL_ARB_transform_feedback2 DONE (i965, r600, radeonsi)
GL_ARB_transform_feedback3 DONE (i965, r600, radeonsi)
GL 4.1:
GLSL 4.1 not started
GL_ARB_ES2_compatibility DONE (i965, r300, r600, radeonsi)
GL_ARB_get_program_binary DONE (0 binary formats)
GL_ARB_separate_shader_objects some infrastructure done
GL_ARB_shader_precision not started
GL_ARB_vertex_attrib_64bit not started
GL_ARB_viewport_array not started
GL 4.2:
GLSL 4.2 not started
GL_ARB_texture_compression_bptc not started
GL_ARB_compressed_texture_pixel_storage not started
GL_ARB_shader_atomic_counters DONE (i965)
GL_ARB_texture_storage DONE (all drivers)
GL_ARB_transform_feedback_instanced DONE (i965, r600, radeonsi)
GL_ARB_base_instance DONE (i965, nv50, nvc0, r600, radeonsi)
GL_ARB_shader_image_load_store not started
GL_ARB_conservative_depth DONE (all drivers that support GLSL 1.30)
GL_ARB_shading_language_420pack DONE (all drivers that support GLSL 1.30)
GL_ARB_internalformat_query DONE (i965, r300, r600, radeonsi)
GL_ARB_map_buffer_alignment DONE (r300, r600, radeonsi)
GL 4.3:
GLSL 4.3 not started
GL_ARB_arrays_of_arrays not started
GL_ARB_ES3_compatibility DONE (i965)
GL_ARB_clear_buffer_object not started
GL_ARB_compute_shader not started
GL_ARB_copy_image not started
GL_KHR_debug DONE (all drivers)
GL_ARB_explicit_uniform_location not started
GL_ARB_fragment_layer_viewport not started
GL_ARB_framebuffer_no_attachments not started
GL_ARB_internalformat_query2 not started
GL_ARB_invalidate_subdata DONE (all drivers)
GL_ARB_multi_draw_indirect not started
GL_ARB_program_interface_query not started
GL_ARB_robust_buffer_access_behavior not started
GL_ARB_shader_image_size not started
GL_ARB_shader_storage_buffer_object not started
GL_ARB_stencil_texturing not started
GL_ARB_texture_buffer_range DONE (nv50, nvc0, i965, r600, radeonsi)
GL_ARB_texture_query_levels DONE (i965)
GL_ARB_texture_storage_multisample DONE (all drivers that support GL_ARB_texture_multisample)
GL_ARB_texture_view not started
GL_ARB_vertex_attrib_binding DONE (all drivers)
GL 4.4:
GLSL 4.4 not started
GL_MAX_VERTEX_ATTRIB_STRIDE not started
GL_ARB_buffer_storage not started
GL_ARB_clear_texture not started
GL_ARB_enhanced_layouts not started
GL_ARB_multi_bind not started
GL_ARB_query_buffer_object not started
GL_ARB_texture_mirror_clamp_to_edge DONE (i965, nv30, nv50, nvc0, r300, r600, radeonsi, swrast)
GL_ARB_texture_stencil8 not started
GL_ARB_vertex_type_10f_11f_11f_rev DONE (i965, r600)
More info about these features and the work involved can be found at
http://dri.freedesktop.org/wiki/MissingFunctionality

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Mesa Cygwin/X11 Information
WARNING
=======
If you installed X11 (packages xorg-x11-devel and xorg-x11-bin-dlls ) with the
latest setup.exe from Cygwin the GL (Mesa) libraries and include are already
installed in /usr/X11R6.
The following will explain how to "replace" them.
Installation
============
How to compile Mesa on Cygwin/X11 systems:
1. Shared libs:
type 'make cygwin-sl'.
When finished, the Mesa DLL will be in the Mesa-x.y/lib/ and
Mesa-x.y/bin directories.
2. Static libs:
type 'make cygwin-static'.
When finished, the Mesa libraries will be in the Mesa-x.y/lib/ directory.
Header and library files:
After you've compiled Mesa and tried the demos I recommend the following
procedure for "installing" Mesa.
Copy the Mesa include/GL directory to /usr/X11R6/include:
cp -a include/GL /usr/X11R6/include
Copy the Mesa library files to /usr/X11R6/lib:
cp -a lib/* /usr/X11R6ocal/lib
Copy the Mesa bin files (used by the DLL stuff) to /usr/X11R6/bin:
cp -a lib/cyg* /usr/X11R6/bin
Xt/Motif widgets:
If you want to use Mesa or OpenGL in your Xt/Motif program you can build
the widgets found in either the widgets-mesa or widgets-sgi directories.
The former were written for Mesa and the later are the original SGI
widgets. Look in those directories for more information.
For the Motif widgets you must have downloaded the lesstif package.
Using the library
=================
Configuration options:
The file src/mesa/main/config.h has many parameters which you can adjust
such as maximum number of lights, clipping planes, maximum texture size,
etc. In particular, you may want to change DEPTH_BITS from 16 to 32
if a 16-bit depth buffer isn't precise enough for your application.
Shared libraries:
If you compile shared libraries (Win32 DLLS) you may have to set an
environment variable to specify where the Mesa libraries are located.
Set the PATH variable to include /your-dir/Mesa-2.6/bin.
Otherwise, when you try to run a demo it may fail with a message saying
that one or more DLL couldn't be found.
Xt/Motif Widgets:
Two versions of the Xt/Motif OpenGL drawing area widgets are included:
widgets-sgi/ SGI's stock widgets
widgets-mesa/ Mesa-tuned widgets
Look in those directories for details
Togl:
Togl is an OpenGL/Mesa widget for Tcl/Tk.
See http://togl.sourceforge.net for more information.
X Display Modes:
Mesa supports RGB(A) rendering into almost any X visual type and depth.
The glXChooseVisual function tries its best to pick an appropriate visual
for the given attribute list. However, if this doesn't suit your needs
you can force Mesa to use any X visual you want (any supported by your
X server that is) by setting the MESA_RGB_VISUAL and MESA_CI_VISUAL
environment variables. When an RGB visual is requested, glXChooseVisual
will first look if the MESA_RGB_VISUAL variable is defined. If so, it
will try to use the specified visual. Similarly, when a color index
visual is requested, glXChooseVisual will look for the MESA_CI_VISUAL
variable.
The format of accepted values is: <visual-class> <depth>
Here are some examples:
using the C-shell:
% setenv MESA_RGB_VISUAL "TrueColor 8" // 8-bit TrueColor
% setenv MESA_CI_VISUAL "PseudoColor 12" // 12-bit PseudoColor
% setenv MESA_RGB_VISUAL "PseudoColor 8" // 8-bit PseudoColor
using the KornShell:
$ export MESA_RGB_VISUAL="TrueColor 8"
$ export MESA_CI_VISUAL="PseudoColor 12"
$ export MESA_RGB_VISUAL="PseudoColor 8"
Double buffering:
Mesa can use either an X Pixmap or XImage as the backbuffer when in
double buffer mode. Using GLX, the default is to use an XImage. The
MESA_BACK_BUFFER environment variable can override this. The valid
values for MESA_BACK_BUFFER are: Pixmap and XImage (only the first
letter is checked, case doesn't matter).
A pixmap is faster when drawing simple lines and polygons while an
XImage is faster when Mesa has to do pixel-by-pixel rendering. If you
need depth buffering the XImage will almost surely be faster. Exper-
iment with the MESA_BACK_BUFFER variable to see which is faster for
your application.
Colormaps:
When using Mesa directly or with GLX, it's up to the application writer
to create a window with an appropriate colormap. The aux, tk, and GLUT
toolkits try to minimize colormap "flashing" by sharing colormaps when
possible. Specifically, if the visual and depth of the window matches
that of the root window, the root window's colormap will be shared by
the Mesa window. Otherwise, a new, private colormap will be allocated.
When sharing the root colormap, Mesa may be unable to allocate the colors
it needs, resulting in poor color quality. This can happen when a
large number of colorcells in the root colormap are already allocated.
To prevent colormap sharing in aux, tk and GLUT, define the environment
variable MESA_PRIVATE_CMAP. The value isn't significant.
Gamma correction:
To compensate for the nonlinear relationship between pixel values
and displayed intensities, there is a gamma correction feature in
Mesa. Some systems, such as Silicon Graphics, support gamma
correction in hardware (man gamma) so you won't need to use Mesa's
gamma facility. Other systems, however, may need gamma adjustment
to produce images which look correct. If in the past you thought
Mesa's images were too dim, read on.
Gamma correction is controlled with the MESA_GAMMA environment
variable. Its value is of the form "Gr Gg Gb" or just "G" where
Gr is the red gamma value, Gg is the green gamma value, Gb is the
blue gamma value and G is one gamma value to use for all three
channels. Each value is a positive real number typically in the
range 1.0 to 2.5. The defaults are all 1.0, effectively disabling
gamma correction. Examples using csh:
% setenv MESA_GAMMA "2.3 2.2 2.4" // separate R,G,B values
% setenv MESA_GAMMA "2.0" // same gamma for R,G,B
The demos/gamma.c program may help you to determine reasonable gamma
value for your display. With correct gamma values, the color intensities
displayed in the top row (drawn by dithering) should nearly match those
in the bottom row (drawn as grays).
Alex De Bruyn reports that gamma values of 1.6, 1.6 and 1.9 work well
on HP displays using the HP-ColorRecovery technology.
Mesa implements gamma correction with a lookup table which translates
a "linear" pixel value to a gamma-corrected pixel value. There is a
small performance penalty. Gamma correction only works in RGB mode.
Also be aware that pixel values read back from the frame buffer will
not be "un-corrected" so glReadPixels may not return the same data
drawn with glDrawPixels.
For more information about gamma correction see:
http://www.inforamp.net/~poynton/notes/colour_and_gamma/GammaFAQ.html
Overlay Planes
Overlay planes in the frame buffer are supported by Mesa but require
hardware and X server support. To determine if your X server has
overlay support you can test for the SERVER_OVERLAY_VISUALS property:
xprop -root | grep SERVER_OVERLAY_VISUALS
HPCR glClear(GL_COLOR_BUFFER_BIT) dithering
If you set the MESA_HPCR_CLEAR environment variable then dithering
will be used when clearing the color buffer. This is only applicable
to HP systems with the HPCR (Color Recovery) system.
Extensions
==========
There are three Mesa-specific GLX extensions at this time.
GLX_MESA_pixmap_colormap
This extension adds the GLX function:
GLXPixmap glXCreateGLXPixmapMESA( Display *dpy, XVisualInfo *visual,
Pixmap pixmap, Colormap cmap )
It is an alternative to the standard glXCreateGLXPixmap() function.
Since Mesa supports RGB rendering into any X visual, not just True-
Color or DirectColor, Mesa needs colormap information to convert RGB
values into pixel values. An X window carries this information but a
pixmap does not. This function associates a colormap to a GLX pixmap.
See the xdemos/glxpixmap.c file for an example of how to use this
extension.
GLX_MESA_release_buffers
Mesa associates a set of ancillary (depth, accumulation, stencil and
alpha) buffers with each X window it draws into. These ancillary
buffers are allocated for each X window the first time the X window
is passed to glXMakeCurrent(). Mesa, however, can't detect when an
X window has been destroyed in order to free the ancillary buffers.
The best it can do is to check for recently destroyed windows whenever
the client calls the glXCreateContext() or glXDestroyContext()
functions. This may not be sufficient in all situations though.
The GLX_MESA_release_buffers extension allows a client to explicitly
deallocate the ancillary buffers by calling glxReleaseBuffersMESA()
just before an X window is destroyed. For example:
#ifdef GLX_MESA_release_buffers
glXReleaseBuffersMESA( dpy, window );
#endif
XDestroyWindow( dpy, window );
This extension is new in Mesa 2.0.
GLX_MESA_copy_sub_buffer
This extension adds the glXCopySubBufferMESA() function. It works
like glXSwapBuffers() but only copies a sub-region of the window
instead of the whole window.
This extension is new in Mesa version 2.6
Summary of X-related environment variables:
MESA_RGB_VISUAL - specifies the X visual and depth for RGB mode (X only)
MESA_CI_VISUAL - specifies the X visual and depth for CI mode (X only)
MESA_BACK_BUFFER - specifies how to implement the back color buffer (X only)
MESA_PRIVATE_CMAP - force aux/tk libraries to use private colormaps (X only)
MESA_GAMMA - gamma correction coefficients (X only)
----------------------------------------------------------------------
README.CYGWIN - lassauge April 2004 - based on README.X11

102
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@@ -0,0 +1,102 @@
Mesa 3.0 MITS Information
This software is distributed under the terms of the GNU Library
General Public License, see the LICENSE file for details.
This document is a preliminary introduction to help you get
started. For more detaile information consult the web page.
http://10-dencies.zkm.de/~mesa/
Version 0.1 (Yes it's very alpha code so be warned!)
Contributors:
Emil Briggs (briggs@bucky.physics.ncsu.edu)
David Bucciarelli (tech.hmw@plus.it)
Andreas Schiffler (schiffler@zkm.de)
1. Requirements:
Mesa 3.0.
An SMP capable machine running Linux 2.x
libpthread installed on your machine.
2. What does MITS stand for?
MITS stands for Mesa Internal Threading System. By adding
internal threading to Mesa it should be possible to improve
performance of OpenGL applications on SMP machines.
3. Do applications have to be recoded to take advantage of MITS?
No. The threading is internal to Mesa and transparent to
applications.
4. Will all applications benefit from the current implementation of MITS?
No. This implementation splits the processing of the vertex buffer
over two threads. There is a certain amount of overhead involved
with the thread synchronization and if there is not enough work
to be done the extra overhead outweighs any speedup from using
dual processors. You will not for example see any speedup when
running Quake because it uses GL_POLYGON and there is only one
polygon for each vertex buffer processed. Test results on a
dual 200 Mhz. Pentium Pro system show that one needs around
100-200 vertices in the vertex buffer before any there is any
appreciable benefit from the threading.
5. Are there any parameters that I can tune to try to improve performance.
Yes. You can try to vary the size of the vertex buffer which is
define in VB_MAX located in the file src/vb.h from your top level
Mesa distribution. The number needs to be a multiple of 12 and
the optimum value will probably depend on the capabilities of
your machine and the particular application you are running.
6. Are there any ways I can modify the application to improve its
performance with the MITS?
Yes. Try to use as many vertices between each Begin/End pair
as possbile. This will reduce the thread synchronization
overhead.
7. What sort of speedups can I expect?
On some benchmarks performance gains of up to 30% have been
observerd. Others may see no gain at all and in a few rare
cases even some degradation.
8. What still needs to be done?
Lots of testing and benchmarking.
A portable implementation that works within the Mesa thread API.
Threading of additional areas of Mesa to improve performance
even more.
Installation:
1. This assumes that you already have a working Mesa 3.0 installation
from source.
2. Place the tarball MITS.tar.gz in your top level Mesa directory.
3. Unzip it and untar it. It will replace the following files in
your Mesa source tree so back them up if you want to save them.
README.MITS
Make-config
Makefile
mklib.glide
src/vbxform.c
src/vb.h
4. Rebuild Mesa using the command
make linux-386-glide-mits

207
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@@ -0,0 +1,207 @@
Info on using Mesa 3.0 with Linux Quake I and Quake II
Disclaimer
----------
I am _not_ a Quake expert by any means. I pretty much only run it to
test Mesa. There have been a lot of questions about Linux Quake and
Mesa so I'm trying to provide some useful info here. If this file
doesn't help you then you should look elsewhere for help. The Mesa
mailing list or the news://news.3dfx.com/3dfx.linux.glide newsgroup
might be good.
Again, all the information I have is in this file. Please don't email
me with questions.
If you have information to contribute to this file please send it to
me at brianp@elastic.avid.com
Linux Quake
-----------
You can get Linux Quake from http://www.idsoftware.com/
Quake I and II for Linux were tested with, and include, Mesa 2.6. You
shouldn't have too many problems if you simply follow the instructions
in the Quake distribution.
RedHat 5.0 Linux problems
-------------------------
RedHat Linux 5.x uses the GNU C library ("glibc" or "libc6") whereas
previous RedHat and other Linux distributions use "libc5" for its
runtime C library.
Linux Quake I and II were compiled for libc5. If you compile Mesa
on a RedHat 5.x system the resulting libMesaGL.so file will not work
with Linux Quake because of the different C runtime libraries.
The symptom of this is a segmentation fault soon after starting Quake.
If you want to use a newer version of Mesa (like 3.x) with Quake on
RedHat 5.x then read on.
The solution to the C library problem is to force Mesa to use libc5.
libc5 is in /usr/i486-linux-libc5/lib on RedHat 5.x systems.
Emil Briggs (briggs@tick.physics.ncsu.edu) nicely gave me the following
info:
> I only know what works on a RedHat 5.0 distribution. RH5 includes
> a full set of libraries for both libc5 and glibc. The loader ld.so
> uses the libc5 libraries in /usr/i486-linux-libc5/lib for programs
> linked against libc5 while it uses the glibc libraries in /lib and
> /usr/lib for programs linked against glibc.
>
> Anyway I changed line 41 of mklib.glide to
> GLIDELIBS="-L/usr/local/glide/lib -lglide2x -L/usr/i486-linux-libc5/lib"
>
> And I started quake2 up with a script like this
> #!/bin/csh
> setenv LD_LIBRARY_PATH /usr/i486-linux-libc5/lib
> setenv MESA_GLX_FX f
> ./quake2 +set vid_ref gl
> kbd_mode -a
> reset
I've already patched the mklib.glide file. You'll have to start Quake
with the script shown above though.
**********************
Daryll Strauss writes:
Here's my thoughts on the problem. On a RH 5.x system, you can NOT build
a libc5 executable or library. Red Hat just doesn't include the right
stuff to do it.
Since Quake is a libc5 based application, you are in trouble. You need
libc5 libraries.
What can you do about it? Well there's a package called gcc5 that does
MOST of the right stuff to compile with libc5. (It brings back older
header files, makes appropriate symbolic links for libraries, and sets
up the compiler to use the correct directories) You can find gcc5 here:
ftp://ecg.mit.edu/pub/linux/gcc5-1.0-1.i386.rpm
No, this isn't quite enough. There are still a few tricks to getting
Mesa to compile as a libc5 application. First you have to make sure that
every compile uses gcc5 instead of gcc. Second, in some cases the link
line actually lists -L/usr/lib which breaks gcc5 (because it forces you
to use the glibc version of things)
If you get all the stuff correctly compiled with gcc5 it should work.
I've run Mesa 3.0B6 and its demos in a window with my Rush on a Red Hat
5.1 system. It is a big hassle, but it can be done. I've only made Quake
segfault, but I think that's from my libRush using the wrong libc.
Yes, mixing libc5 and glibc is a major pain. I've been working to get
all my libraries compiling correctly with this setup. Someone should
make an RPM out of it and feed changes back to Brian once they get it
all working. If no one else has done so by the time I get the rest of my
stuff straightened out, I'll try to do it myself.
- |Daryll
*********************
David Bucciarelli (tech.hmw@plus.it) writes:
I'm using the Mesa-3.0beta7 and the RedHat 5.1 and QuakeII is
working fine for me. I had only to make a small change to the
Mesa-3.0/mklib.glide file, from:
GLIDELIBS="-L/usr/local/glide/lib -lglide2x
-L/usr/i486-linux-libc5/lib -lm"
to:
GLIDELIBS="-L/usr/i486-linux-libc5/lib -lglide2x"
and to make two symbolic links:
[david@localhost Mesa]$ ln -s libMesaGL.so libMesaGL.so.2
[david@localhost Mesa]$ ln -s libMesaGLU.so libMesaGLU.so.2
I'm using the Daryll's Linux glide rpm for the Voodoo2 and glibc (it
includes also the Glide for the libc5). I'm not using the /dev/3Dfx and
running QuakeII as root with the following env. var:
export
LD_LIBRARY_PATH=/dsk1/home/david/src/gl/Mesa/lib:/usr/i486-linux-libc5/lib
I think that all problems are related to the glibc, Quake will never
work if you get the following output:
[david@localhost Mesa]$ ldd lib/libMesaGL.so
libglide2x.so => /usr/lib/libglide2x.so (0x400f8000)
libm.so.6 => /lib/libm.so.6 (0x40244000)
libc.so.6 => /lib/libc.so.6 (0x4025d000)
/lib/ld-linux.so.2 => /lib/ld-linux.so.2 (0x00000000)
You must get the following outputs:
[david@localhost Mesa]# ldd lib/libMesaGL.so
libglide2x.so => /usr/i486-linux-libc5/lib/libglide2x.so
(0x400f3000)
[root@localhost quake2]# ldd quake2
libdl.so.1 => /lib/libdl.so.1 (0x40005000)
libm.so.5 => /usr/i486-linux-libc5/lib/libm.so.5 (0x40008000)
libc.so.5 => /usr/i486-linux-libc5/lib/libc.so.5 (0x40010000)
[root@localhost quake2]# ldd ref_gl.so
libMesaGL.so.2 =>
/dsk1/home/david/src/gl/Mesa/lib/libMesaGL.so.2 (0x400eb000)
libglide2x.so => /usr/i486-linux-libc5/lib/libglide2x.so
(0x401d9000)
libX11.so.6 => /usr/i486-linux-libc5/lib/libX11.so.6
(0x40324000)
libXext.so.6 => /usr/i486-linux-libc5/lib/libXext.so.6
(0x403b7000)
libvga.so.1 => /usr/i486-linux-libc5/lib/libvga.so.1
(0x403c1000)
libm.so.5 => /usr/i486-linux-libc5/lib/libm.so.5 (0x403f5000)
libc.so.5 => /usr/i486-linux-libc5/lib/libc.so.5 (0x403fd000)
***********************
Steve Davies (steve@one47.demon.co.uk) writes:
Try using:
export LD_LIBRARY_PATH=/usr/i486-linux-libc5/lib
./quake2 +set vid_ref gl
to start the game... Works for me, but assumes that you have the
compatability libc5 RPMs installed.
***************************
WWW resources - you may find additional Linux Quake help at these URLs:
http://quake.medina.net/howto
http://webpages.mr.net/bobz
http://www.linuxgames.com/quake2/
----------------------------------------------------------------------

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@@ -0,0 +1,52 @@
Mesa Threads README
-------------------
Thread safety was introduced in Mesa 2.6 by John Stone and
Christoph Poliwoda.
It was redesigned in Mesa 3.3 so that thread safety is
supported by default (on systems which support threads,
that is). There is no measurable penalty on single
threaded applications.
NOTE that the only _driver_ which is thread safe at this time
is the OS/Mesa driver!
At present the mthreads code supports three thread APIS:
1) POSIX threads (aka pthreads).
2) Solaris / Unix International threads.
3) Win32 threads (Win 95/NT).
Support for other thread libraries can be added src/glthread.[ch]
In order to guarantee proper operation, it is
necessary for both Mesa and application code to use the same threads API.
So, if your application uses Sun's thread API, then you should build Mesa
using one of the targets for Sun threads.
The mtdemos directory contains some example programs which use
multiple threads to render to osmesa rendering context(s).
Linux users should be aware that there exist many different POSIX
threads packages. The best solution is the linuxthreads package
(http://pauillac.inria.fr/~xleroy/linuxthreads/) as this package is the
only one that really supports multiprocessor machines (AFAIK). See
http://pauillac.inria.fr/~xleroy/linuxthreads/README for further
information about the usage of linuxthreads.
If you are interested in helping with thread safety work in Mesa
join the Mesa developers mailing list and post your proposal.
Regards,
John Stone -- j.stone@acm.org johns@cs.umr.edu
Christoph Poliwoda -- poliwoda@volumegraphics.com
Version info:
Mesa 2.6 - initial thread support.
Mesa 3.3 - thread support mostly rewritten (Brian Paul)

View File

@@ -2,8 +2,8 @@ The software may implement third party technologies (e.g. third party
libraries) that are not licensed to you by AMD and for which you may need
to obtain licenses from other parties. Unless explicitly stated otherwise,
these third party technologies are not licensed hereunder. Such third
party technologies include, but are not limited, to H.264, H.265, HEVC, MPEG-2,
MPEG-4, AVC, and VC-1.
party technologies include, but are not limited, to H.264, MPEG-2, MPEG-4,
AVC, and VC-1.
For MPEG-2 Encoding Products ANY USE OF THIS PRODUCT IN ANY MANNER OTHER
THAN PERSONAL USE THAT COMPLIES WITH THE MPEG-2 STANDARD FOR ENCODING VIDEO
@@ -11,34 +11,3 @@ INFORMATION FOR PACKAGED MEDIA IS EXPRESSLY PROHIBITED WITHOUT A LICENSE
UNDER APPLICABLE PATENTS IN THE MPEG-2 PATENT PORTFOLIO, WHICH LICENSES IS
AVAILABLE FROM MPEG LA, LLC, 6312 S. Fiddlers Green Circle, Suite 400E,
Greenwood Village, Colorado 80111 U.S.A.
WARRANTY DISCLAIMER: THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
KIND. AMD DISCLAIMS ALL WARRANTIES, EXPRESS, IMPLIED, OR STATUTORY, INCLUDING
BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A
PARTICULAR PURPOSE, TITLE, NON-INFRINGEMENT, THAT THE SOFTWARE WILL RUN
UNINTERRUPTED OR ERROR-FREE OR WARRANTIES ARISING FROM CUSTOM OF TRADE OR
COURSE OF USAGE. THE ENTIRE RISK ASSOCIATED WITH THE USE OF THE SOFTWARE IS
ASSUMED BY YOU. Some jurisdictions do not allow the exclusion of implied
warranties, so the above exclusion may not apply to You.
LIMITATION OF LIABILITY AND INDEMNIFICATION: AMD AND ITS LICENSORS WILL NOT,
UNDER ANY CIRCUMSTANCES BE LIABLE FOR ANY PUNITIVE, DIRECT, INCIDENTAL,
INDIRECT, SPECIAL OR CONSEQUENTIAL DAMAGES ARISING FROM USE OF THE SOFTWARE OR
THIS AGREEMENT EVEN IF AMD AND ITS LICENSORS HAVE BEEN ADVISED OF THE
POSSIBILITY OF SUCH DAMAGES. In no event shall AMD's total liability to You
for all damages, losses, and causes of action (whether in contract, tort
(including negligence) or otherwise) exceed the amount of $100 USD. You agree
to defend, indemnify and hold harmless AMD and its licensors, and any of their
directors, officers, employees, affiliates or agents from and against any and
all loss, damage, liability and other expenses (including reasonable
attorneys' fees), resulting from Your use of the Software or violation of the
terms and conditions of this Agreement.
U.S. GOVERNMENT RESTRICTED RIGHTS: The Software is provided with "RESTRICTED
RIGHTS." Use, duplication, or disclosure by the Government is subject to the
restrictions as set forth in FAR 52.227-14 and DFAR252.227-7013, et seq., or
its successor. Use of the Software by the Government constitutes
acknowledgement of AMD's proprietary rights in them.
EXPORT RESTRICTIONS: The Software may be subject to export restrictions as
stated in the Software License Agreement.

View File

@@ -1,43 +0,0 @@
The software may implement third party technologies (e.g. third party
libraries) that are not licensed to you by AMD and for which you may need
to obtain licenses from other parties. Unless explicitly stated otherwise,
these third party technologies are not licensed hereunder. Such third
party technologies include, but are not limited, to H.264, MPEG-2, MPEG-4,
AVC, and VC-1.
For MPEG-2 Intermediate Products: ANY USE OF THIS PRODUCT IN ANY MANNER OTHER
THAN PERSONAL USE THAT COMPLIES WITH THE MPEG-2 STANDARD IS EXPRESSLY
PROHIBITED WITHOUT A LICENSE UNDER APPLICABLE PATENTS IN THE MPEG-2 PATENT
PORTFOLIO, WHICH LICENSES IS AVAILABLE FROM MPEG LA, LLC, 6312 S. Fiddlers
Green Circle, Suite 400E, Greenwood Village, Colorado 80111 U.S.A.
WARRANTY DISCLAIMER: THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
KIND. AMD DISCLAIMS ALL WARRANTIES, EXPRESS, IMPLIED, OR STATUTORY, INCLUDING
BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A
PARTICULAR PURPOSE, TITLE, NON-INFRINGEMENT, THAT THE SOFTWARE WILL RUN
UNINTERRUPTED OR ERROR-FREE OR WARRANTIES ARISING FROM CUSTOM OF TRADE OR
COURSE OF USAGE. THE ENTIRE RISK ASSOCIATED WITH THE USE OF THE SOFTWARE IS
ASSUMED BY YOU. Some jurisdictions do not allow the exclusion of implied
warranties, so the above exclusion may not apply to You.
LIMITATION OF LIABILITY AND INDEMNIFICATION: AMD AND ITS LICENSORS WILL NOT,
UNDER ANY CIRCUMSTANCES BE LIABLE FOR ANY PUNITIVE, DIRECT, INCIDENTAL,
INDIRECT, SPECIAL OR CONSEQUENTIAL DAMAGES ARISING FROM USE OF THE SOFTWARE OR
THIS AGREEMENT EVEN IF AMD AND ITS LICENSORS HAVE BEEN ADVISED OF THE
POSSIBILITY OF SUCH DAMAGES. In no event shall AMD's total liability to You
for all damages, losses, and causes of action (whether in contract, tort
(including negligence) or otherwise) exceed the amount of $100 USD. You agree
to defend, indemnify and hold harmless AMD and its licensors, and any of their
directors, officers, employees, affiliates or agents from and against any and
all loss, damage, liability and other expenses (including reasonable
attorneys' fees), resulting from Your use of the Software or violation of the
terms and conditions of this Agreement.
U.S. GOVERNMENT RESTRICTED RIGHTS: The Software is provided with "RESTRICTED
RIGHTS." Use, duplication, or disclosure by the Government is subject to the
restrictions as set forth in FAR 52.227-14 and DFAR252.227-7013, et seq., or
its successor. Use of the Software by the Government constitutes
acknowledgement of AMD's proprietary rights in them.
EXPORT RESTRICTIONS: The Software may be subject to export restrictions as
stated in the Software License Agreement.

View File

@@ -11,6 +11,10 @@ no longer shipped or supported.
Run
scons osmesa mesagdi
to build classic mesa Windows GDI drivers; or
scons libgl-gdi
to build gallium based GDI driver.
@@ -32,15 +36,17 @@ Recipe
Building on windows requires several open-source packages. These are
steps that work as of this writing.
- install python 2.7
- install scons (latest)
- install mingw, flex, and bison
- install pywin32 from here: http://www.lfd.uci.edu/~gohlke/pythonlibs
1) install python 2.7
2) install scons (latest)
3) install mingw, flex, and bison
4) install libxml2 from here: http://www.lfd.uci.edu/~gohlke/pythonlibs
get libxml2-python-2.9.1.win-amd64-py2.7.exe
5) install pywin32 from here: http://www.lfd.uci.edu/~gohlke/pythonlibs
get pywin32-218.4.win-amd64-py2.7.exe
- install git
- download mesa from git
see https://www.mesa3d.org/repository.html
- run scons
6) install git
7) download mesa from git
see http://www.mesa3d.org/repository.html
8) run scons
General
-------

View File

@@ -103,7 +103,7 @@ Mesa Version History
- Stencil-related functions now work in display lists
Changes:
- renamed aux.h as glaux.h (MS-DOS names can't start with aux)
- most filenames are in 8.3 format to accommodate MS-DOS
- most filenames are in 8.3 format to accomodate MS-DOS
- use GLubytes to store arrays of colors instead of GLints
1.2.2 August 2, 1995
@@ -1007,7 +1007,7 @@ Mesa Version History
- glGetTexImage was using pixel unpacking instead of packing params
- auto-mipmap generation for cube maps was incorrect
Changes:
- max texture units reduced to six to accommodate texture rectangles
- max texture units reduced to six to accomodate texture rectangles
- removed unfinished GL_MESA_sprite_point extension code

View File

@@ -8,7 +8,7 @@
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
@@ -33,7 +33,7 @@ without a depth buffer.
<p>
Mesa 9.1.2 and later (will) support a DRI configuration option to work around
this issue.
Using the <a href="https://dri.freedesktop.org/wiki/DriConf">driconf</a> tool,
Using the <a href="http://dri.freedesktop.org/wiki/DriConf">driconf</a> tool,
set the "Create all visuals with a depth buffer" option before running Topogun.
Then, all GLX visuals will be created with a depth buffer.
</p>
@@ -48,25 +48,23 @@ start-up because of an extension string buffer-overflow problem.
<p>
The problem is a modern OpenGL driver will return a very long string
for the <code>glGetString(GL_EXTENSIONS)</code> query and if the application
for the glGetString(GL_EXTENSIONS) query and if the application
naively copies the string into a fixed-size buffer it can overflow the
buffer and crash the application.
</p>
<p>
The work-around is to set the <code>MESA_EXTENSION_MAX_YEAR</code>
environment variable to the approximate release year of the game.
This will cause the <code>glGetString(GL_EXTENSIONS)</code> query to only report
extensions older than the given year.
The work-around is to set the MESA_EXTENSION_MAX_YEAR environment variable
to the approximate release year of the game.
This will cause the glGetString(GL_EXTENSIONS) query to only report extensions
older than the given year.
</p>
<p>
For example, if the game was released in 2001, do
</p>
<pre>
export MESA_EXTENSION_MAX_YEAR=2001
</pre>
<p>
before running the game.
</p>

233
docs/autoconf.html Normal file
View File

@@ -0,0 +1,233 @@
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Compilation and Installation using Autoconf</title>
<link rel="stylesheet" type="text/css" href="mesa.css">
</head>
<body>
<div class="header">
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
<div class="content">
<h1>Compilation and Installation using Autoconf</h1>
<ol>
<li><p><a href="#basic">Basic Usage</a></li>
<li><p><a href="#driver">Driver Options</a>
<ul>
<li><a href="#xlib">Xlib Driver Options</a></li>
<li><a href="#dri">DRI Driver Options</a></li>
<li><a href="#osmesa">OSMesa Driver Options</a></li>
</ul>
</ol>
<h2 id="basic">1. Basic Usage</h2>
<p>
The autoconf generated configure script can be used to guess your
platform and change various options for building Mesa. To use the
configure script, type:
</p>
<pre>
./configure
</pre>
<p>
To see a short description of all the options, type <code>./configure
--help</code>. If you are using a development snapshot and the configure
script does not exist, type <code>./autogen.sh</code> to generate it
first. If you know the options you want to pass to
<code>configure</code>, you can pass them to <code>autogen.sh</code>. It
will run <code>configure</code> with these options after it is
generated. Once you have run <code>configure</code> and set the options
to your preference, type:
</p>
<pre>
make
</pre>
<p>
This will produce libGL.so and several other libraries depending on the
options you have chosen. Later, if you want to rebuild for a different
configuration run <code>make realclean</code> before rebuilding.
</p>
<p>
Some of the generic autoconf options are used with Mesa:
</p>
<dl>
<dt><code>--prefix=PREFIX</code></dt>
<dd><p>This is the root directory where
files will be installed by <code>make install</code>. The default is
<code>/usr/local</code>.</p>
</dd>
<dt><code>--exec-prefix=EPREFIX</code></dt>
<dd><p>This is the root directory
where architecture-dependent files will be installed. In Mesa, this is
only used to derive the directory for the libraries. The default is
<code>${prefix}</code>.</p>
</dd>
<dt><code>--libdir=LIBDIR</code></dt>
<dd><p>This option specifies the directory
where the GL libraries will be installed. The default is
<code>${exec_prefix}/lib</code>. It also serves as the name of the
library staging area in the source tree. For instance, if the option
<code>--libdir=/usr/local/lib64</code> is used, the libraries will be
created in a <code>lib64</code> directory at the top of the Mesa source
tree.</p>
</dd>
<dt><code>--enable-static, --disable-shared</code></dt>
<dd><p>By default, Mesa
will build shared libraries. Either of these options will force static
libraries to be built. It is not currently possible to build static and
shared libraries in a single pass.</p>
</dd>
<dt><code>CC, CFLAGS, CXX, CXXFLAGS</code></dt>
<dd><p>These environment variables
control the C and C++ compilers used during the build. By default,
<code>gcc</code> and <code>g++</code> are used with the options
<code>"-g -O2"</code>.</p>
</dd>
<dt><code>LDFLAGS</code></dt>
<dd><p>An environment variable specifying flags to
pass when linking programs. These are normally empty, but can be used
to direct the linker to use libraries in nonstandard directories. For
example, <code>LDFLAGS="-L/usr/X11R6/lib"</code>.</p>
</dd>
<dt><code>PKG_CONFIG_PATH</code></dt>
<dd><p>When available, the
<code>pkg-config</code> utility is used to search for external libraries
on the system. This environment variable is used to control the search
path for <code>pkg-config</code>. For instance, setting
<code>PKG_CONFIG_PATH=/usr/X11R6/lib/pkgconfig</code> will search for
package metadata in <code>/usr/X11R6</code> before the standard
directories.</p>
</dd>
</dl>
<p>
There are also a few general options for altering the Mesa build:
</p>
<dl>
<dt><code>--enable-debug</code></dt>
<dd><p>This option will enable compiler
options and macros to aid in debugging the Mesa libraries.</p>
</dd>
<dt><code>--disable-asm</code></dt>
<dd><p>There are assembly routines
available for a few architectures. These will be used by default if
one of these architectures is detected. This option ensures that
assembly will not be used.</p>
</dd>
<dt><code>--enable-32-bit</code></dt>
<dt><code>--enable-64-bit</code></dt>
<dd><p>By default, the build will compile code as directed by the environment
variables
<code>CC</code>, <code>CFLAGS</code>, etc. If the compiler is
<code>gcc</code>, these options offer a helper to add the compiler flags
to force 32- or 64-bit code generation as used on the x86 and x86_64
architectures. Note that these options are mutually exclusive.</p>
</dd>
</dl>
<h2 id="driver">2. Driver Options</h2>
<p>
There are several different driver modes that Mesa can use. These are
described in more detail in the <a href="install.html">basic
installation instructions</a>. The Mesa driver is controlled through the
configure options <code>--enable-xlib-glx</code>, <code>--enable-osmesa</code>,
and <code>--enable-dri</code>.
</p>
<h3 id="xlib">Xlib</h3><p>
It uses Xlib as a software renderer to do all rendering. It corresponds
to the option <code>--enable-xlib-glx</code>. The libX11 and libXext
libraries, as well as the X11 development headers, will be need to
support the Xlib driver.
<h3 id="dri">DRI</h3><p>This mode uses the DRI hardware drivers for
accelerated OpenGL rendering. Enable the DRI drivers with the option
<code>--enable-dri</code>. See the <a href="install.html">basic
installation instructions</a> for details on prerequisites for the DRI
drivers.
<!-- DRI specific options -->
<dl>
<dt><code>--with-dri-driverdir=DIR</code>
<dd><p> This option specifies the
location the DRI drivers will be installed to and the location libGL
will search for DRI drivers. The default is <code>${libdir}/dri</code>.
<dt><code>--with-dri-drivers=DRIVER,DRIVER,...</code>
<dd><p> This option
allows a specific set of DRI drivers to be built. For example,
<code>--with-dri-drivers="swrast,i965,radeon,nouveau"</code>. By
default, the drivers will be chosen depending on the target platform.
See the directory <code>src/mesa/drivers/dri</code> in the source tree
for available drivers. Beware that the swrast DRI driver is used by both
libGL and the X.Org xserver GLX module to do software rendering, so you
may run into problems if it is not available.
<!-- This explanation might be totally bogus. Kristian? -->
<dt><code>--disable-driglx-direct</code>
<dd><p> Disable direct rendering in
GLX. Normally, direct hardware rendering through the DRI drivers and
indirect software rendering are enabled in GLX. This option disables
direct rendering entirely. It can be useful on architectures where
kernel DRM modules are not available.
<dt><code>--enable-glx-tls</code> <dd><p>
Enable Thread Local Storage (TLS) in
GLX.
<dt><code>--with-expat=DIR</code> <dd> The DRI-enabled libGL uses expat to
parse the DRI configuration files in <code>/etc/drirc</code> and
<code>~/.drirc</code>. This option allows a specific expat installation
to be used. For example, <code>--with-expat=/usr/local</code> will
search for expat headers and libraries in <code>/usr/local/include</code>
and <code>/usr/local/lib</code>, respectively.
</dl>
<h3 id="osmesa">OSMesa </h3><p> No libGL is built in this
mode. Instead, the driver code is built into the Off-Screen Mesa
(OSMesa) library. See the <a href="osmesa.html">Off-Screen Rendering</a>
page for more details. It corresponds to the option
<code>--enable-osmesa</code>.
<!-- OSMesa specific options -->
<dl>
<dt><code>--with-osmesa-bits=BITS</code>
<dd><p> This option allows the size
of the color channel in bits to be specified. By default, an 8-bit
channel will be used, and the driver will be named libOSMesa. Other
options are 16- and 32-bit color channels, which will add the bit size
to the library name. For example, <code>--with-osmesa-bits=16</code>
will create the libOSMesa16 library with a 16-bit color channel.
</dl>
<h2 id="library">3. Library Options</h2>
<p>
The configure script provides more fine grained control over the GL
libraries that will be built. More details on the specific GL libraries
can be found in the <a href="install.html">basic installation
instructions</a>.
</div>
</body>
</html>

View File

@@ -2,30 +2,30 @@
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Report a Bug</title>
<title>Mesa Bug Reporting</title>
<link rel="stylesheet" type="text/css" href="mesa.css">
</head>
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
<div class="content">
<h1>Report a Bug</h1>
<h1>Bug Database</h1>
<p>
The Mesa bug database is hosted on
<a href="https://freedesktop.org">freedesktop.org</a>.
<a href="http://freedesktop.org">freedesktop.org</a>.
The old bug database on SourceForge is no longer used.
</p>
<p>
To file a Mesa bug, go to
<a href="https://gitlab.freedesktop.org/mesa/mesa/issues">
GitLab on freedesktop.org</a>
<a href="https://bugs.freedesktop.org/enter_bug.cgi?product=Mesa">
Bugzilla on freedesktop.org</a>
</p>
<p>
@@ -37,14 +37,11 @@ Please follow these bug reporting guidelines:
the problem.
<li>Check if your bug is already reported in the database.
<li>Monitor your bug report for requests for additional information, etc.
<li>Attach the output of running glxinfo or wglinfo.
This will tell us the Mesa version, which device driver you're using, etc.
<li>If you're reporting a crash, try to use your debugger (gdb) to get a stack
trace. Also, recompile Mesa in debug mode to get more detailed information.
<li>Describe in detail how to reproduce the bug, especially with games
and applications that the Mesa developers might not be familiar with.
<li>Provide an <a href="https://github.com/apitrace/apitrace">apitrace</a>
or simple GLUT-based test program if possible.
<li>Provide a simple GLUT-based test program if possible
</ul>
<p>

View File

@@ -1,143 +0,0 @@
<!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.01 Transitional//EN" "http://www.w3.org/TR/html4/loose.dtd">
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Coding Style</title>
<link rel="stylesheet" type="text/css" href="mesa.css">
</head>
<body>
<div class="header">
The Mesa 3D Graphics Library
</div>
<iframe src="contents.html"></iframe>
<div class="content">
<h1>Coding Style</h1>
<p>
Mesa is over 20 years old and the coding style has evolved over time.
Some old parts use a style that's a bit out of date.
Different sections of mesa can use different coding style as set in the local
EditorConfig (.editorconfig) and/or Emacs (.dir-locals.el) file.
Alternatively the following is applicable.
If the guidelines below don't cover something, try following the format of
existing, neighboring code.
</p>
<p>
Basic formatting guidelines
</p>
<ul>
<li>3-space indentation, no tabs.
<li>Limit lines to 78 or fewer characters. The idea is to prevent line
wrapping in 80-column editors and terminals. There are exceptions, such
as if you're defining a large, static table of information.
<li>Opening braces go on the same line as the if/for/while statement.
For example:
<pre>
if (condition) {
foo;
} else {
bar;
}
</pre>
<li>Put a space before/after operators. For example, <code>a = b + c;</code>
and not <code>a=b+c;</code>
<li>This GNU indent command generally does the right thing for formatting:
<pre>
indent -br -i3 -npcs --no-tabs infile.c -o outfile.c
</pre>
<li>
<p>Use comments wherever you think it would be helpful for other developers.
Several specific cases and style examples follow. Note that we roughly
follow <a href="http://www.doxygen.nl">Doxygen</a> conventions.
</p>
Single-line comments:
<pre>
/* null-out pointer to prevent dangling reference below */
bufferObj = NULL;
</pre>
Or,
<pre>
bufferObj = NULL; /* prevent dangling reference below */
</pre>
Multi-line comment:
<pre>
/* If this is a new buffer object id, or one which was generated but
* never used before, allocate a buffer object now.
*/
</pre>
We try to quote the OpenGL specification where prudent:
<pre>
/* Page 38 of the PDF of the OpenGL ES 3.0 spec says:
*
* "An INVALID_OPERATION error is generated for any of the following
* conditions:
*
* * &lt;length&gt; is zero."
*
* Additionally, page 94 of the PDF of the OpenGL 4.5 core spec
* (30.10.2014) also says this, so it's no longer allowed for desktop GL,
* either.
*/
</pre>
Function comment example:
<pre>
/**
* Create and initialize a new buffer object. Called via the
* ctx-&gt;Driver.CreateObject() driver callback function.
* \param name integer name of the object
* \param type one of GL_FOO, GL_BAR, etc.
* \return pointer to new object or NULL if error
*/
struct gl_object *
_mesa_create_object(GLuint name, GLenum type)
{
/* function body */
}
</pre>
<li>Put the function return type and qualifiers on one line and the function
name and parameters on the next, as seen above. This makes it easy to use
<code>grep ^function_name dir/*</code> to find function definitions. Also,
the opening brace goes on the next line by itself (see above.)
<li>Function names follow various conventions depending on the type of function:
<pre>
glFooBar() - a public GL entry point (in glapi_dispatch.c)
_mesa_FooBar() - the internal immediate mode function
save_FooBar() - retained mode (display list) function in dlist.c
foo_bar() - a static (private) function
_mesa_foo_bar() - an internal non-static Mesa function
</pre>
<li>Constants, macros and enum names are <code>ALL_UPPERCASE</code>, with _
between words.
<li>Mesa usually uses camel case for local variables (Ex:
<code>localVarname</code>) while gallium typically uses underscores (Ex:
<code>local_var_name</code>).
<li>Global variables are almost never used because Mesa should be thread-safe.
<li>Booleans. Places that are not directly visible to the GL API
should prefer the use of <code>bool</code>, <code>true</code>, and
<code>false</code> over <code>GLboolean</code>, <code>GL_TRUE</code>, and
<code>GL_FALSE</code>. In C code, this may mean that
<code>#include &lt;stdbool.h&gt;</code> needs to be added. The
<code>try_emit_*</code> methods in <code>src/mesa/program/ir_to_mesa.cpp</code>
and <code>src/mesa/state_tracker/st_glsl_to_tgsi.cpp</code> can serve as
examples.
</ul>
</div>
</body>
</html>

View File

@@ -2,24 +2,24 @@
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>Conformance Testing</title>
<title>Conformance</title>
<link rel="stylesheet" type="text/css" href="mesa.css">
</head>
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
<div class="content">
<h1>Conformance Testing</h1>
<h1>Conformance</h1>
<p>
The SGI OpenGL conformance tests verify correct operation of OpenGL
implementations. I, Brian Paul, have been given a copy of the tests
for testing Mesa. The tests are not publicly available.
for testing Mesa. The tests are not publically available.
</p>
<p>
This file has the latest results of testing Mesa with the OpenGL 1.2

View File

@@ -12,10 +12,6 @@
background-color: #cccccc;
color: black;
}
h2 {
font-size: inherit;
font-weight: bold;
}
a:link {
color: #000;
}
@@ -27,82 +23,83 @@
</head>
<body>
<h2>Documentation</h2>
<b>Documentation</b>
<ul>
<li><a href="intro.html" target="_parent">Introduction</a>
<li><a href="index.html" target="_parent">News</a>
<li><a href="developers.html" target="_parent">Developers</a>
<li><a href="systems.html" target="_parent">Platforms and Drivers</a>
<li><a href="license.html" target="_parent">License and Copyright</a>
<li><a href="faq.html" target="_parent">Frequently Asked Questions</a>
<li><a href="license.html" target="_parent">License &amp; Copyright</a>
<li><a href="faq.html" target="_parent">FAQ</a>
<li><a href="relnotes.html" target="_parent">Release Notes</a>
<li><a href="thanks.html" target="_parent">Acknowledgements</a>
<li><a href="conform.html" target="_parent">Conformance Testing</a>
<li>more docs below...
</ul>
<h2>Download and Install</h2>
<b>Download / Install</b>
<ul>
<li><a href="download.html" target="_parent">Downloading and Unpacking</a>
<li><a href="install.html" target="_parent">Compiling and Installing</a>
<li><a href="download.html" target="_parent">Downloading / Unpacking</a>
<li><a href="install.html" target="_parent">Compiling / Installing</a>
<ul>
<li><a href="meson.html" target="_parent">Meson</a></li>
<li><a href="autoconf.html" target="_parent">Autoconf</a></li>
</ul>
</li>
<li><a href="precompiled.html" target="_parent">Precompiled Libraries</a>
</ul>
<h2>Need help?</h2>
<b>Resources</b>
<ul>
<li><a href="lists.html" target="_parent">Mailing Lists</a>
<li><a href="bugs.html" target="_parent">Report a bug</a>
<li><a href="bugs.html" target="_parent">Bug Database</a>
<li><a href="webmaster.html" target="_parent">Webmaster</a>
<li><a href="https://dri.freedesktop.org/" target="_parent">Mesa/DRI Wiki</a>
<li><a href="http://dri.freedesktop.org/" target="_parent">Mesa/DRI Wiki</a>
</ul>
<h2>User Topics</h2>
<b>User Topics</b>
<ul>
<li><a href="shading.html" target="_parent">Shading Language</a>
<li><a href="egl.html" target="_parent">EGL</a>
<li><a href="opengles.html" target="_parent">OpenGL ES</a>
<li><a href="openvg.html" target="_parent">OpenVG / Vega</a>
<li><a href="envvars.html" target="_parent">Environment Variables</a>
<li><a href="osmesa.html" target="_parent">Off-screen Rendering</a>
<li><a href="osmesa.html" target="_parent">Off-Screen Rendering</a>
<li><a href="debugging.html" target="_parent">Debugging Tips</a>
<li><a href="perf.html" target="_parent">Performance Tips</a>
<li><a href="extensions.html" target="_parent">Mesa Extensions</a>
<li><a href="llvmpipe.html" target="_parent">Gallium LLVMpipe Driver</a>
<li><a href="vmware-guest.html" target="_parent">VMware SVGA3D Guest Driver</a>
<li><a href="postprocess.html" target="_parent">Gallium Post-processing</a>
<li><a href="mangling.html" target="_parent">Function Name Mangling</a>
<li><a href="llvmpipe.html" target="_parent">Gallium llvmpipe driver</a>
<li><a href="vmware-guest.html" target="_parent">VMware SVGA3D guest driver</a>
<li><a href="postprocess.html" target="_parent">Gallium post-processing</a>
<li><a href="application-issues.html" target="_parent">Application Issues</a>
<li><a href="viewperf.html" target="_parent">Viewperf Issues</a>
</ul>
<h2>Developer Topics</h2>
<b>Developer Topics</b>
<ul>
<li><a href="repository.html" target="_parent">Source Code Repository</a>
<li><a href="sourcetree.html" target="_parent">Source Code Tree</a>
<li><a href="utilities.html" target="_parent">Utilities</a>
<li><a href="helpwanted.html" target="_parent">Help Wanted</a>
<li><a href="devinfo.html" target="_parent">Development Notes</a>
<li><a href="codingstyle.html" target="_parent">Coding Style</a>
<li><a href="submittingpatches.html" target="_parent">Submitting Patches</a>
<li><a href="releasing.html" target="_parent">Releasing Process</a>
<li><a href="release-calendar.html" target="_parent">Release Calendar</a>
<li><a href="sourcedocs.html" target="_parent">Source Documentation</a>
<li><a href="dispatch.html" target="_parent">GL Dispatch</a>
</ul>
<h2>Links</h2>
<b>Links</b>
<ul>
<li><a href="https://www.opengl.org" target="_parent">OpenGL Website</a>
<li><a href="https://dri.freedesktop.org" target="_parent">DRI Website</a>
<li><a href="https://www.freedesktop.org" target="_parent">freedesktop.org</a>
<li><a href="https://planet.freedesktop.org" target="_parent">Developer Blogs</a>
<li><a href="http://www.opengl.org" target="_parent">OpenGL website</a>
<li><a href="http://dri.freedesktop.org" target="_parent">DRI website</a>
<li><a href="http://www.freedesktop.org" target="_parent">freedesktop.org</a>
</ul>
<h2>Hosted by:</h2>
<dl>
<dd><a href="https://www.freedesktop.org" target="_parent">freedesktop.org</a>
</dl>
<b>Hosted by:</b>
<br>
<blockquote>
<a href="http://sourceforge.net"
target="_parent"><img src="http://sourceforge.net/sflogo.php?group_id=3&amp;type=1"
width="88" height="31" align="bottom" alt="Sourceforge.net" border="0"></a>
</blockquote>
</body>
</html>

View File

@@ -8,7 +8,7 @@
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
@@ -20,22 +20,26 @@
Normally Mesa (and OpenGL) records but does not notify the user of
errors. It is up to the application to call
<code>glGetError</code> to check for errors. Mesa supports an
environment variable, <code>MESA_DEBUG</code>, to help with debugging. If
<code>MESA_DEBUG</code> is defined, a message will be printed to stdout
whenever an error occurs.
environment variable, MESA_DEBUG, to help with debugging. If
MESA_DEBUG is defined, a message will be printed to stdout whenever
an error occurs.
</p>
<p>
More extensive error checking is done in DEBUG builds
(<code>--buildtype debug</code> for meson, <code>build=debug</code> for scons).
More extensive error checking is done when Mesa is compiled with the
DEBUG symbol defined. You'll have to edit the Make-config file and
add -DDEBUG to the CFLAGS line for your system configuration. You may
also want to replace any optimization flags with the -g flag so you can
use your debugger. After you've edited Make-config type 'make clean'
before recompiling.
</p>
<p>
In your debugger you can set a breakpoint in <code>_mesa_error()</code> to trap
Mesa errors.
In your debugger you can set a breakpoint in _mesa_error() to trap Mesa
errors.
</p>
<p>
There is a display list printing/debugging facility. See the end of
<code>src/dlist.c</code> for details.
src/dlist.c for details.
</p>
</div>

View File

@@ -8,7 +8,7 @@
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
@@ -20,7 +20,7 @@
Both professional and volunteer developers contribute to Mesa.
</p>
<p>
<a href="https://www.vmware.com/">VMware</a>
<a href="http://www.vmware.com/">VMware</a>
employs several of the main Mesa developers including Brian Paul
and Keith Whitwell.
</p>
@@ -38,13 +38,13 @@ including:
<p>
Other companies including
<a href="https://01.org/linuxgraphics">Intel</a>
<a href="http://www.intellinuxgraphics.org/index.html">Intel</a>
and RedHat also actively contribute to the project.
Intel has recently contributed the new GLSL compiler in Mesa 7.9.
</p>
<p>
<a href="https://www.lunarg.com/">LunarG</a> can be contacted
<a href="http://www.lunarg.com/">LunarG</a> can be contacted
for custom Mesa / 3D graphics development.
</p>

View File

@@ -8,7 +8,7 @@
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
@@ -17,20 +17,15 @@
<h1>Development Notes</h1>
<ul>
<li><a href="#extensions">Adding Extensions</a>
</ul>
<h2 id="extensions">Adding Extensions</h2>
<h2>Adding Extentions</h2>
<p>
To add a new GL extension to Mesa you have to do at least the following.
</p>
<ul>
<li>
If <code>glext.h</code> doesn't define the extension, edit
<code>include/GL/gl.h</code> and add code like this:
If glext.h doesn't define the extension, edit include/GL/gl.h and add
code like this:
<pre>
#ifndef GL_EXT_the_extension_name
#define GL_EXT_the_extension_name 1
@@ -41,18 +36,16 @@ To add a new GL extension to Mesa you have to do at least the following.
</pre>
</li>
<li>
In the <code>src/mapi/glapi/gen/</code> directory, add the new extension
functions and enums to the <code>gl_API.xml</code> file.
In the src/mapi/glapi/gen/ directory, add the new extension functions and
enums to the gl_API.xml file.
Then, a bunch of source files must be regenerated by executing the
corresponding Python scripts.
</li>
<li>
Add a new entry to the <code>gl_extensions</code> struct in
<code>mtypes.h</code> if the extension requires driver capabilities not
already exposed by another extension.
Add a new entry to the <code>gl_extensions</code> struct in mtypes.h
</li>
<li>
Add a new entry to the <code>src/mesa/main/extensions_table.h</code> file.
Update the <code>extensions.c</code> file.
</li>
<li>
From this point, the best way to proceed is to find another extension,
@@ -60,25 +53,242 @@ To add a new GL extension to Mesa you have to do at least the following.
as an example.
</li>
<li>
If the new extension adds new GL state, the functions in
<code>get.c</code>, <code>enable.c</code> and <code>attrib.c</code>
will most likely require new code.
</li>
<li>
To determine if the new extension is active in the current context,
use the auto-generated <code>_mesa_has_##name_str()</code> function
defined in <code>src/mesa/main/extensions.h</code>.
</li>
<li>
The dispatch tests <code>check_table.cpp</code> and
<code>dispatch_sanity.cpp</code> should be updated with details about
the new extensions functions. These tests are run using
<code>meson test</code>.
If the new extension adds new GL state, the functions in get.c, enable.c
and attrib.c will most likely require new code.
</li>
</ul>
<h2>Coding Style</h2>
<p>
Mesa's code style has changed over the years. Here's the latest.
</p>
<p>
Comment your code! It's extremely important that open-source code be
well documented. Also, strive to write clean, easily understandable code.
</p>
<p>
3-space indentation
</p>
<p>
If you use tabs, set them to 8 columns
</p>
<p>
Line width: the preferred width to fill comments and code in Mesa is 78
columns. Exceptions are sometimes made for clarity (e.g. tabular data is
sometimes filled to a much larger width so that extraneous carriage returns
don't obscure the table).
</p>
<p>
Brace example:
</p>
<pre>
if (condition) {
foo;
}
else {
bar;
}
switch (condition) {
case 0:
foo();
break;
case 1: {
...
break;
}
default:
...
break;
}
</pre>
<p>
Here's the GNU indent command which will best approximate my preferred style:
(Note that it won't format switch statements in the preferred way)
</p>
<pre>
indent -br -i3 -npcs --no-tabs infile.c -o outfile.c
</pre>
<p>
Local variable name example: localVarName (no underscores)
</p>
<p>
Constants and macros are ALL_UPPERCASE, with _ between words
</p>
<p>
Global variables are not allowed.
</p>
<p>
Function name examples:
</p>
<pre>
glFooBar() - a public GL entry point (in glapi_dispatch.c)
_mesa_FooBar() - the internal immediate mode function
save_FooBar() - retained mode (display list) function in dlist.c
foo_bar() - a static (private) function
_mesa_foo_bar() - an internal non-static Mesa function
</pre>
<p>
Places that are not directly visible to the GL API should prefer the use
of <tt>bool</tt>, <tt>true</tt>, and
<tt>false</tt> over <tt>GLboolean</tt>, <tt>GL_TRUE</tt>, and
<tt>GL_FALSE</tt>. In C code, this may mean that
<tt>#include &lt;stdbool.h&gt;</tt> needs to be added. The
<tt>try_emit_</tt>* methods in src/mesa/program/ir_to_mesa.cpp and
src/mesa/state_tracker/st_glsl_to_tgsi.cpp can serve as examples.
</p>
<h2>Submitting patches</h2>
<p>
You should always run the Mesa Testsuite before submitting patches.
The Testsuite can be run using the 'make check' command. All tests
must pass before patches will be accepted, this may mean you have
to update the tests themselves.
</p>
<p>
Patches should be sent to the Mesa mailing list for review.
When submitting a patch make sure to use git send-email rather than attaching
patches to emails. Sending patches as attachments prevents people from being
able to provide in-line review comments.
</p>
<p>
When submitting follow-up patches you can use --in-reply-to to make v2, v3,
etc patches show up as replies to the originals. This usually works well
when you're sending out updates to individual patches (as opposed to
re-sending the whole series). Using --in-reply-to makes
it harder for reviewers to accidentally review old patches.
</p>
<h2>Marking a commit as a candidate for a stable branch</h2>
<p>
If you want a commit to be applied to a stable branch,
you should add an appropriate note to the commit message.
</p>
<p>
Here are some examples of such a note:
</p>
<ul>
<li>NOTE: This is a candidate for the 9.0 branch.</li>
<li>NOTE: This is a candidate for the 8.0 and 9.0 branches.</li>
<li>NOTE: This is a candidate for the stable branches.</li>
</ul>
<h2>Cherry-picking candidates for a stable branch</h2>
<p>
Please use <code>git cherry-pick -x &lt;commit&gt;</code> for cherry-picking a commit
from master to a stable branch.
</p>
<h2>Making a New Mesa Release</h2>
<p>
These are the instructions for making a new Mesa release.
</p>
<h3>Get latest source files</h3>
<p>
Use git to get the latest Mesa files from the git repository, from whatever
branch is relevant.
</p>
<h3>Verify and update version info in VERSION</h3>
<p>
Create a docs/relnotes/x.y.z.html file.
The bin/bugzilla_mesa.sh and bin/shortlog_mesa.sh scripts can be used to
create the HTML-formatted lists of bugfixes and changes to include in the file.
Link the new docs/relnotes/x.y.z.html file into the main <a href="relnotes.html">relnotes.html</a> file.
</p>
<p>
Update <a href="index.html">docs/index.html</a>.
</p>
<p>
Tag the files with the release name (in the form <b>mesa-x.y</b>)
with: <code>git tag -s mesa-x.y -m "Mesa x.y Release"</code>
Then: <code>git push origin mesa-x.y</code>
</p>
<h3>Make the tarballs</h3>
<p>
Make the distribution files. From inside the Mesa directory:
<pre>
./autogen.sh
make tarballs
</pre>
<p>
After the tarballs are created, the md5 checksums for the files will
be computed.
Add them to the docs/relnotes/x.y.html file.
</p>
<p>
Copy the distribution files to a temporary directory, unpack them,
compile everything, and run some demos to be sure everything works.
</p>
<h3>Update the website and announce the release</h3>
<p>
Make a new directory for the release on annarchy.freedesktop.org with:
<br>
<code>
mkdir /srv/ftp.freedesktop.org/pub/mesa/x.y
</code>
</p>
<p>
Basically, to upload the tarball files with:
<br>
<code>
rsync -avP -e ssh MesaLib-x.y.* USERNAME@annarchy.freedesktop.org:/srv/ftp.freedesktop.org/pub/mesa/x.y/
</code>
</p>
<p>
Update the web site by copying the docs/ directory's files to
/home/users/b/br/brianp/mesa-www/htdocs/ with:
<br>
<code>
sftp USERNAME,mesa3d@web.sourceforge.net
</code>
</p>
<p>
Make an announcement on the mailing lists:
<em>mesa-dev@lists.freedesktop.org</em>,
<em>mesa-users@lists.freedesktop.org</em>
and
<em>mesa-announce@lists.freedesktop.org</em>
</p>
</div>
</body>

View File

@@ -2,19 +2,19 @@
<html lang="en">
<head>
<meta http-equiv="content-type" content="text/html; charset=utf-8">
<title>GL Dispatch</title>
<title>GL Dispatch in Mesa</title>
<link rel="stylesheet" type="text/css" href="mesa.css">
</head>
<body>
<div class="header">
The Mesa 3D Graphics Library
<h1>The Mesa 3D Graphics Library</h1>
</div>
<iframe src="contents.html"></iframe>
<div class="content">
<h1>GL Dispatch</h1>
<h1>GL Dispatch in Mesa</h1>
<p>Several factors combine to make efficient dispatch of OpenGL functions
fairly complicated. This document attempts to explain some of the issues
@@ -25,33 +25,33 @@ href="#overview">overview of Mesa's implementation</a>.</p>
<h2>1. Complexity of GL Dispatch</h2>
<p>Every GL application has at least one object called a GL <em>context</em>.
This object, which is an implicit parameter to every GL function, stores all
This object, which is an implicit parameter to ever GL function, stores all
of the GL related state for the application. Every texture, every buffer
object, every enable, and much, much more is stored in the context. Since
an application can have more than one context, the context to be used is
selected by a window-system dependent function such as
<code>glXMakeContextCurrent</code>.</p>
<tt>glXMakeContextCurrent</tt>.</p>
<p>In environments that implement OpenGL with X-Windows using GLX, every GL
function, including the pointers returned by <code>glXGetProcAddress</code>, are
function, including the pointers returned by <tt>glXGetProcAddress</tt>, are
<em>context independent</em>. This means that no matter what context is
currently active, the same <code>glVertex3fv</code> function is used.</p>
currently active, the same <tt>glVertex3fv</tt> function is used.</p>
<p>This creates the first bit of dispatch complexity. An application can
have two GL contexts. One context is a direct rendering context where
function calls are routed directly to a driver loaded within the
application's address space. The other context is an indirect rendering
context where function calls are converted to GLX protocol and sent to a
server. The same <code>glVertex3fv</code> has to do the right thing depending
server. The same <tt>glVertex3fv</tt> has to do the right thing depending
on which context is current.</p>
<p>Highly optimized drivers or GLX protocol implementations may want to
change the behavior of GL functions depending on current state. For
example, <code>glFogCoordf</code> may operate differently depending on whether
example, <tt>glFogCoordf</tt> may operate differently depending on whether
or not fog is enabled.</p>
<p>In multi-threaded environments, it is possible for each thread to have a
different GL context current. This means that poor old <code>glVertex3fv</code>
differnt GL context current. This means that poor old <tt>glVertex3fv</tt>
has to know which GL context is current in the thread where it is being
called.</p>
@@ -64,18 +64,18 @@ dispatch table stores pointers to functions that actually implement
specific GL functions. Each time a new context is made current in a thread,
these pointers a updated.</p>
<p>The implementation of functions such as <code>glVertex3fv</code> becomes
<p>The implementation of functions such as <tt>glVertex3fv</tt> becomes
conceptually simple:</p>
<ul>
<li>Fetch the current dispatch table pointer.</li>
<li>Fetch the pointer to the real <code>glVertex3fv</code> function from the
<li>Fetch the pointer to the real <tt>glVertex3fv</tt> function from the
table.</li>
<li>Call the real function.</li>
</ul>
<p>This can be implemented in just a few lines of C code. The file
<code>src/mesa/glapi/glapitemp.h</code> contains code very similar to this.</p>
<tt>src/mesa/glapi/glapitemp.h</tt> contains code very similar to this.</p>
<blockquote>
<table border="1">
@@ -93,9 +93,9 @@ void glVertex3f(GLfloat x, GLfloat y, GLfloat z)
overhead that it adds to every GL function call.</p>
<p>In a multithreaded environment, a naive implementation of
<code>GET_DISPATCH</code> involves a call to <code>pthread_getspecific</code> or a
<tt>GET_DISPATCH</tt> involves a call to <tt>pthread_getspecific</tt> or a
similar function. Mesa provides a wrapper function called
<code>_glapi_get_dispatch</code> that is used by default.</p>
<tt>_glapi_get_dispatch</tt> that is used by default.</p>
<h2>3. Optimizations</h2>
@@ -109,7 +109,7 @@ each can or cannot be used are listed.</p>
<p>The vast majority of OpenGL applications use the API in a single threaded
manner. That is, the application has only one thread that makes calls into
the GL. In these cases, not only do the calls to
<code>pthread_getspecific</code> hurt performance, but they are completely
<tt>pthread_getspecific</tt> hurt performance, but they are completely
unnecessary! It is possible to detect this common case and avoid these
calls.</p>
@@ -118,15 +118,15 @@ of the executing thread. If the same thread ID is always seen, Mesa knows
that the application is, from OpenGL's point of view, single threaded.</p>
<p>As long as an application is single threaded, Mesa stores a pointer to
the dispatch table in a global variable called <code>_glapi_Dispatch</code>.
the dispatch table in a global variable called <tt>_glapi_Dispatch</tt>.
The pointer is also stored in a per-thread location via
<code>pthread_setspecific</code>. When Mesa detects that an application has
become multithreaded, <code>NULL</code> is stored in <code>_glapi_Dispatch</code>.</p>
<tt>pthread_setspecific</tt>. When Mesa detects that an application has
become multithreaded, <tt>NULL</tt> is stored in <tt>_glapi_Dispatch</tt>.</p>
<p>Using this simple mechanism the dispatch functions can detect the
multithreaded case by comparing <code>_glapi_Dispatch</code> to <code>NULL</code>.
The resulting implementation of <code>GET_DISPATCH</code> is slightly more
complex, but it avoids the expensive <code>pthread_getspecific</code> call in
multithreaded case by comparing <tt>_glapi_Dispatch</tt> to <tt>NULL</tt>.
The resulting implementation of <tt>GET_DISPATCH</tt> is slightly more
complex, but it avoids the expensive <tt>pthread_getspecific</tt> call in
the common case.</p>
<blockquote>
@@ -134,9 +134,9 @@ the common case.</p>
<tr><td><pre>
#define GET_DISPATCH() \
(_glapi_Dispatch != NULL) \
? _glapi_Dispatch : pthread_getspecific(&amp;_glapi_Dispatch_key)
? _glapi_Dispatch : pthread_getspecific(&_glapi_Dispatch_key)
</pre></td></tr>
<tr><td>Improved <code>GET_DISPATCH</code> Implementation</td></tr></table>
<tr><td>Improved <tt>GET_DISPATCH</tt> Implementation</td></tr></table>
</blockquote>
<h3>3.2. ELF TLS</h3>
@@ -144,14 +144,14 @@ the common case.</p>
<p>Starting with the 2.4.20 Linux kernel, each thread is allocated an area
of per-thread, global storage. Variables can be put in this area using some
extensions to GCC. By storing the dispatch table pointer in this area, the
expensive call to <code>pthread_getspecific</code> and the test of
<code>_glapi_Dispatch</code> can be avoided.</p>
expensive call to <tt>pthread_getspecific</tt> and the test of
<tt>_glapi_Dispatch</tt> can be avoided.</p>
<p>The dispatch table pointer is stored in a new variable called
<code>_glapi_tls_Dispatch</code>. A new variable name is used so that a single
<tt>_glapi_tls_Dispatch</tt>. A new variable name is used so that a single
libGL can implement both interfaces. This allows the libGL to operate with
direct rendering drivers that use either interface. Once the pointer is
properly declared, <code>GET_DISPACH</code> becomes a simple variable
properly declared, <tt>GET_DISPACH</tt> becomes a simple variable
reference.</p>
<blockquote>
@@ -162,12 +162,12 @@ extern __thread struct _glapi_table *_glapi_tls_Dispatch
#define GET_DISPATCH() _glapi_tls_Dispatch
</pre></td></tr>
<tr><td>TLS <code>GET_DISPATCH</code> Implementation</td></tr></table>
<tr><td>TLS <tt>GET_DISPATCH</tt> Implementation</td></tr></table>
</blockquote>
<p>Use of this path is controlled by the preprocessor define
<code>USE_ELF_TLS</code>. Any platform capable of using ELF TLS should use this
as the default dispatch method.</p>
<tt>GLX_USE_TLS</tt>. Any platform capable of using TLS should use this as
the default dispatch method.</p>
<h3>3.3. Assembly Language Dispatch Stubs</h3>
@@ -185,13 +185,13 @@ ways that the dispatch table pointer can be accessed. There are four
different methods that can be used:</p>
<ol>
<li>Using <code>_glapi_Dispatch</code> directly in builds for non-multithreaded
<li>Using <tt>_glapi_Dispatch</tt> directly in builds for non-multithreaded
environments.</li>
<li>Using <code>_glapi_Dispatch</code> and <code>_glapi_get_dispatch</code> in
<li>Using <tt>_glapi_Dispatch</tt> and <tt>_glapi_get_dispatch</tt> in
multithreaded environments.</li>
<li>Using <code>_glapi_Dispatch</code> and <code>pthread_getspecific</code> in
<li>Using <tt>_glapi_Dispatch</tt> and <tt>pthread_getspecific</tt> in
multithreaded environments.</li>
<li>Using <code>_glapi_tls_Dispatch</code> directly in TLS enabled
<li>Using <tt>_glapi_tls_Dispatch</tt> directly in TLS enabled
multithreaded environments.</li>
</ol>
@@ -204,15 +204,16 @@ terribly relevant.</p>
few preprocessor defines.</p>
<ul>
<li>If <code>USE_ELF_TLS</code> is defined, method #3 is used.</li>
<li>If <code>HAVE_PTHREAD</code> is defined, method #2 is used.</li>
<li>If none of the preceding are defined, method #1 is used.</li>
<li>If <tt>GLX_USE_TLS</tt> is defined, method #4 is used.</li>
<li>If <tt>HAVE_PTHREAD</tt> is defined, method #3 is used.</li>
<li>If <tt>WIN32_THREADS</tt> is defined, method #2 is used.</li>
<li>If none of the preceeding are defined, method #1 is used.</li>
</ul>
<p>Two different techniques are used to handle the various different cases.
On x86 and SPARC, a macro called <code>GL_STUB</code> is used. In the preamble
On x86 and SPARC, a macro called <tt>GL_STUB</tt> is used. In the preamble
of the assembly source file different implementations of the macro are
selected based on the defined preprocessor variables. The assembly code
selected based on the defined preprocessor variables. The assmebly code
then consists of a series of invocations of the macros such as:
<blockquote>
@@ -220,7 +221,7 @@ then consists of a series of invocations of the macros such as:
<tr><td><pre>
GL_STUB(Color3fv, _gloffset_Color3fv)
</pre></td></tr>
<tr><td>SPARC Assembly Implementation of <code>glColor3fv</code></td></tr></table>
<tr><td>SPARC Assembly Implementation of <tt>glColor3fv</tt></td></tr></table>
</blockquote>
<p>The benefit of this technique is that changes to the calling pattern
@@ -231,32 +232,32 @@ changed lines in the assembly code.</p>
implementation does not change based on the parameters passed to the
function. For example, since x86 passes all parameters on the stack, no
additional code is needed to save and restore function parameters around a
call to <code>pthread_getspecific</code>. Since x86-64 passes parameters in
call to <tt>pthread_getspecific</tt>. Since x86-64 passes parameters in
registers, varying amounts of code needs to be inserted around the call to
<code>pthread_getspecific</code> to save and restore the GL function's
<tt>pthread_getspecific</tt> to save and restore the GL function's
parameters.</p>
<p>The other technique, used by platforms like x86-64 that cannot use the
first technique, is to insert <code>#ifdef</code> within the assembly
first technique, is to insert <tt>#ifdef</tt> within the assembly
implementation of each function. This makes the assembly file considerably
larger (e.g., 29,332 lines for <code>glapi_x86-64.S</code> versus 1,155 lines for
<code>glapi_x86.S</code>) and causes simple changes to the function
implementation to generate many lines of diffs. Since the assembly files
larger (e.g., 29,332 lines for <tt>glapi_x86-64.S</tt> versus 1,155 lines for
<tt>glapi_x86.S</tt>) and causes simple changes to the function
implementation to generate many lines of diffs. Since the assmebly files
are typically generated by scripts (see <a href="#autogen">below</a>), this
isn't a significant problem.</p>
<p>Once a new assembly file is created, it must be inserted in the build
system. There are two steps to this. The file must first be added to
<code>src/mesa/sources</code>. That gets the file built and linked. The second
step is to add the correct <code>#ifdef</code> magic to
<code>src/mesa/glapi/glapi_dispatch.c</code> to prevent the C version of the
<tt>src/mesa/sources</tt>. That gets the file built and linked. The second
step is to add the correct <tt>#ifdef</tt> magic to
<tt>src/mesa/glapi/glapi_dispatch.c</tt> to prevent the C version of the
dispatch functions from being built.</p>
<h3 id="fixedsize">3.4. Fixed-Length Dispatch Stubs</h3>
<p>To implement <code>glXGetProcAddress</code>, Mesa stores a table that
<p>To implement <tt>glXGetProcAddress</tt>, Mesa stores a table that
associates function names with pointers to those functions. This table is
stored in <code>src/mesa/glapi/glprocs.h</code>. For different reasons on
stored in <tt>src/mesa/glapi/glprocs.h</tt>. For different reasons on
different platforms, storing all of those pointers is inefficient. On most
platforms, including all known platforms that support TLS, we can avoid this
added overhead.</p>
@@ -267,8 +268,8 @@ calculated by multiplying the size of the dispatch stub by the offset of the
function in the table. This value is then added to the address of the first
dispatch stub.</p>
<p>This path is activated by adding the correct <code>#ifdef</code> magic to
<code>src/mesa/glapi/glapi.c</code> just before <code>glprocs.h</code> is
<p>This path is activated by adding the correct <tt>#ifdef</tt> magic to
<tt>src/mesa/glapi/glapi.c</tt> just before <tt>glprocs.h</tt> is
included.</p>
<h2 id="autogen">4. Automatic Generation of Dispatch Stubs</h2>

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