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2136 Commits
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| 80709697e5 | |||
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| e1b3cf5c14 | |||
| 0f298a4203 | |||
| 5e68f35500 | |||
| ba1bd64bf9 | |||
| db88cd1b25 | |||
| 936d2963a2 | |||
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| 6ddef3b7a9 | |||
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| 84b3b5b4a4 | |||
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| 98c8584b88 | |||
| 2b2fa58f97 | |||
| 2d54fed3cc | |||
| 964a4d75b4 |
+42
-10
@@ -1,15 +1,8 @@
|
||||
<!--
|
||||
If you have a question rather than reporting a bug please go to http://answers.opencv.org where you get much faster responses.
|
||||
If you need further assistance please read [How To Contribute](https://github.com/opencv/opencv/wiki/How_to_contribute).
|
||||
|
||||
This is a template helping you to create an issue which can be processed as quickly as possible. This is the bug reporting section for the OpenCV library.
|
||||
-->
|
||||
|
||||
##### System information (version)
|
||||
<!-- Example
|
||||
- OpenCV => 3.1
|
||||
- OpenCV => 4.2
|
||||
- Operating System / Platform => Windows 64 Bit
|
||||
- Compiler => Visual Studio 2015
|
||||
- Compiler => Visual Studio 2017
|
||||
-->
|
||||
|
||||
- OpenCV => :grey_question:
|
||||
@@ -27,4 +20,43 @@ This is a template helping you to create an issue which can be processed as quic
|
||||
// C++ code example
|
||||
```
|
||||
or attach as .txt or .zip file
|
||||
-->
|
||||
-->
|
||||
|
||||
##### Issue submission checklist
|
||||
|
||||
- [ ] I report the issue, it's not a question
|
||||
<!--
|
||||
OpenCV team works with answers.opencv.org, Stack Overflow and other communities
|
||||
to discuss problems. Tickets with question without real issue statement will be
|
||||
closed.
|
||||
-->
|
||||
- [ ] I checked the problem with documentation, FAQ, open issues,
|
||||
answers.opencv.org, Stack Overflow, etc and have not found solution
|
||||
<!--
|
||||
Places to check:
|
||||
* OpenCV documentation: https://docs.opencv.org
|
||||
* FAQ page: https://github.com/opencv/opencv/wiki/FAQ
|
||||
* OpenCV forum: https://answers.opencv.org
|
||||
* OpenCV issue tracker: https://github.com/opencv/opencv/issues?q=is%3Aissue
|
||||
* Stack Overflow branch: https://stackoverflow.com/questions/tagged/opencv
|
||||
-->
|
||||
- [ ] I updated to latest OpenCV version and the issue is still there
|
||||
<!--
|
||||
master branch for OpenCV 4.x and 3.4 branch for OpenCV 3.x releases.
|
||||
OpenCV team supports only latest release for each branch.
|
||||
The ticket is closed, if the problem is not reproduced with modern version.
|
||||
-->
|
||||
- [ ] There is reproducer code and related data files: videos, images, onnx, etc
|
||||
<!--
|
||||
The best reproducer -- test case for OpenCV that we can add to the library.
|
||||
Recommendations for media files and binary files:
|
||||
* Try to reproduce the issue with images and videos in opencv_extra repository
|
||||
to reduce attachment size
|
||||
* Use PNG for images, if you report some CV related bug, but not image reader
|
||||
issue
|
||||
* Attach the image as archite to the ticket, if you report some reader issue.
|
||||
Image hosting services compress images and it breaks the repro code.
|
||||
* Provide ONNX file for some public model or ONNX file with with random weights,
|
||||
if you report ONNX parsing or handling issue. Architecture details diagram
|
||||
from netron tool can be very useful too. See https://lutzroeder.github.io/netron/
|
||||
-->
|
||||
|
||||
@@ -1,9 +1,11 @@
|
||||
<!-- Please use this line to close one or multiple issues when this pullrequest gets merged
|
||||
You can add another line right under the first one:
|
||||
resolves #1234
|
||||
resolves #1235
|
||||
-->
|
||||
### Pull Request Readiness Checklist
|
||||
|
||||
### This pullrequest changes
|
||||
See details at https://github.com/opencv/opencv/wiki/How_to_contribute#making-a-good-pull-request
|
||||
|
||||
<!-- Please describe what your pullrequest is changing -->
|
||||
- [ ] I agree to contribute to the project under OpenCV (BSD) License.
|
||||
- [ ] To the best of my knowledge, the proposed patch is not based on a code under GPL or other license that is incompatible with OpenCV
|
||||
- [ ] The PR is proposed to proper branch
|
||||
- [ ] There is reference to original bug report and related work
|
||||
- [ ] There is accuracy test, performance test and test data in opencv_extra repository, if applicable
|
||||
Patch to opencv_extra has the same branch name.
|
||||
- [ ] The feature is well documented and sample code can be built with the project CMake
|
||||
|
||||
@@ -22,3 +22,5 @@ bin/
|
||||
*.log
|
||||
*.tlog
|
||||
build
|
||||
node_modules
|
||||
CMakeSettings.json
|
||||
|
||||
Vendored
+5
-2
@@ -20,8 +20,11 @@ if(CMAKE_COMPILER_IS_GNUCC)
|
||||
# - matchTemplate about 5-10%
|
||||
# - goodFeaturesToTrack 10-20%
|
||||
# - cornerHarris 30% for some cases
|
||||
|
||||
set_source_files_properties(${carotene_sources} COMPILE_FLAGS "--param ipcp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
if(CMAKE_CXX_COMPILER_VERSION VERSION_LESS "10.0.0")
|
||||
set_source_files_properties(${carotene_sources} COMPILE_FLAGS "--param ipcp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
else()
|
||||
set_source_files_properties(${carotene_sources} COMPILE_FLAGS "--param ipa-cp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
endif()
|
||||
endif()
|
||||
|
||||
add_library(carotene_objs OBJECT
|
||||
|
||||
Vendored
+7
-17
@@ -12,6 +12,8 @@ elseif (CMAKE_SYSTEM_PROCESSOR MATCHES "aarch64.*|AARCH64.*")
|
||||
set(AARCH64 TRUE)
|
||||
endif()
|
||||
|
||||
ocv_warnings_disable(CMAKE_CXX_FLAGS -Wunused-function)
|
||||
|
||||
set(TEGRA_COMPILER_FLAGS "")
|
||||
|
||||
if(CV_GCC OR CV_CLANG)
|
||||
@@ -58,22 +60,6 @@ function(compile_carotene)
|
||||
endif()
|
||||
|
||||
add_subdirectory("${CAROTENE_DIR}" "${CMAKE_CURRENT_BINARY_DIR}/carotene")
|
||||
|
||||
if(ARM OR AARCH64)
|
||||
if(CMAKE_BUILD_TYPE)
|
||||
set(CMAKE_TRY_COMPILE_CONFIGURATION ${CMAKE_BUILD_TYPE})
|
||||
endif()
|
||||
check_cxx_compiler_flag("-mfpu=neon" CXX_HAS_MFPU_NEON)
|
||||
check_c_compiler_flag("-mfpu=neon" C_HAS_MFPU_NEON)
|
||||
if(${CXX_HAS_MFPU_NEON} AND ${C_HAS_MFPU_NEON} AND NOT "${CMAKE_CXX_FLAGS} " MATCHES "-mfpu=neon[^ ]*")
|
||||
get_target_property(old_flags "carotene_objs" COMPILE_FLAGS)
|
||||
if(old_flags)
|
||||
set_target_properties("carotene_objs" PROPERTIES COMPILE_FLAGS "${old_flags} -mfpu=neon")
|
||||
else()
|
||||
set_target_properties("carotene_objs" PROPERTIES COMPILE_FLAGS "-mfpu=neon")
|
||||
endif()
|
||||
endif()
|
||||
endif()
|
||||
endfunction()
|
||||
|
||||
compile_carotene()
|
||||
@@ -88,7 +74,11 @@ set_property(DIRECTORY APPEND PROPERTY COMPILE_DEFINITIONS ${carotene_defs})
|
||||
# matchTemplate about 5-10%
|
||||
# goodFeaturesToTrack 10-20%
|
||||
# cornerHarris 30% for some cases
|
||||
set_source_files_properties(impl.cpp $<TARGET_OBJECTS:carotene_objs> COMPILE_FLAGS "--param ipcp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
if(CMAKE_CXX_COMPILER_VERSION VERSION_LESS "10.0.0")
|
||||
set_source_files_properties(impl.cpp $<TARGET_OBJECTS:carotene_objs> COMPILE_FLAGS "--param ipcp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
else()
|
||||
set_source_files_properties(impl.cpp $<TARGET_OBJECTS:carotene_objs> COMPILE_FLAGS "--param ipa-cp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
endif()
|
||||
# set_source_files_properties(impl.cpp $<TARGET_OBJECTS:carotene_objs> COMPILE_FLAGS "--param ipcp-unit-growth=100000 --param inline-unit-growth=100000 --param large-stack-frame-growth=5000")
|
||||
endif()
|
||||
|
||||
|
||||
Vendored
+2
@@ -1127,6 +1127,7 @@ inline int TEGRA_FILTERINIT(cvhalFilter2D **context, uchar *kernel_data, size_t
|
||||
{
|
||||
std::memcpy(ctx->kernel_data + kernel_width * j, kernel_data + kernel_step * j, kernel_width * sizeof(int16_t));
|
||||
}
|
||||
break;
|
||||
default:
|
||||
delete[] ctx->kernel_data;
|
||||
delete ctx;
|
||||
@@ -1243,6 +1244,7 @@ inline int TEGRA_SEPFILTERINIT(cvhalFilter2D **context, int src_type, int dst_ty
|
||||
ctx->kernely_data[0]=((int16_t*)kernely_data)[0];
|
||||
ctx->kernely_data[1]=((int16_t*)kernely_data)[1];
|
||||
ctx->kernely_data[2]=((int16_t*)kernely_data)[2];
|
||||
break;
|
||||
default:
|
||||
delete ctx;
|
||||
return CV_HAL_ERROR_NOT_IMPLEMENTED;
|
||||
|
||||
+4
-4
@@ -49,12 +49,12 @@ namespace {
|
||||
|
||||
enum
|
||||
{
|
||||
SHIFT = 14,
|
||||
SHIFT = 15,
|
||||
SHIFT_DELTA = 1 << (SHIFT - 1),
|
||||
|
||||
R2Y_BT601 = 4899,
|
||||
G2Y_BT601 = 9617,
|
||||
B2Y_BT601 = 1868,
|
||||
R2Y_BT601 = 9798,
|
||||
G2Y_BT601 = 19235,
|
||||
B2Y_BT601 = 3735,
|
||||
|
||||
R2Y_BT709 = 3483,
|
||||
G2Y_BT709 = 11718,
|
||||
|
||||
Vendored
+22
-36
@@ -151,6 +151,10 @@ void div(const Size2D &size,
|
||||
typedef typename internal::VecTraits<T>::vec128 vec128;
|
||||
typedef typename internal::VecTraits<T>::vec64 vec64;
|
||||
|
||||
#if defined(__GNUC__) && (defined(__GXX_EXPERIMENTAL_CXX0X__) || __cplusplus >= 201103L)
|
||||
static_assert(std::numeric_limits<T>::is_integer, "template implementation is for integer types only");
|
||||
#endif
|
||||
|
||||
if (scale == 0.0f ||
|
||||
(std::numeric_limits<T>::is_integer &&
|
||||
(scale * std::numeric_limits<T>::max()) < 1.0f &&
|
||||
@@ -311,6 +315,10 @@ void recip(const Size2D &size,
|
||||
typedef typename internal::VecTraits<T>::vec128 vec128;
|
||||
typedef typename internal::VecTraits<T>::vec64 vec64;
|
||||
|
||||
#if defined(__GNUC__) && (defined(__GXX_EXPERIMENTAL_CXX0X__) || __cplusplus >= 201103L)
|
||||
static_assert(std::numeric_limits<T>::is_integer, "template implementation is for integer types only");
|
||||
#endif
|
||||
|
||||
if (scale == 0.0f ||
|
||||
(std::numeric_limits<T>::is_integer &&
|
||||
scale < 1.0f &&
|
||||
@@ -463,8 +471,6 @@ void div(const Size2D &size,
|
||||
return;
|
||||
}
|
||||
|
||||
float32x4_t v_zero = vdupq_n_f32(0.0f);
|
||||
|
||||
size_t roiw128 = size.width >= 3 ? size.width - 3 : 0;
|
||||
size_t roiw64 = size.width >= 1 ? size.width - 1 : 0;
|
||||
|
||||
@@ -485,9 +491,7 @@ void div(const Size2D &size,
|
||||
float32x4_t v_src0 = vld1q_f32(src0 + j);
|
||||
float32x4_t v_src1 = vld1q_f32(src1 + j);
|
||||
|
||||
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
|
||||
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
|
||||
vreinterpretq_u32_f32(vmulq_f32(v_src0, internal::vrecpq_f32(v_src1))), v_mask)));
|
||||
vst1q_f32(dst + j, vmulq_f32(v_src0, internal::vrecpq_f32(v_src1)));
|
||||
}
|
||||
|
||||
for (; j < roiw64; j += 2)
|
||||
@@ -495,14 +499,12 @@ void div(const Size2D &size,
|
||||
float32x2_t v_src0 = vld1_f32(src0 + j);
|
||||
float32x2_t v_src1 = vld1_f32(src1 + j);
|
||||
|
||||
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
|
||||
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
|
||||
vreinterpret_u32_f32(vmul_f32(v_src0, internal::vrecp_f32(v_src1))), v_mask)));
|
||||
vst1_f32(dst + j, vmul_f32(v_src0, internal::vrecp_f32(v_src1)));
|
||||
}
|
||||
|
||||
for (; j < size.width; j++)
|
||||
{
|
||||
dst[j] = src1[j] ? src0[j] / src1[j] : 0.0f;
|
||||
dst[j] = src0[j] / src1[j];
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -523,10 +525,8 @@ void div(const Size2D &size,
|
||||
float32x4_t v_src0 = vld1q_f32(src0 + j);
|
||||
float32x4_t v_src1 = vld1q_f32(src1 + j);
|
||||
|
||||
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
|
||||
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
|
||||
vreinterpretq_u32_f32(vmulq_f32(vmulq_n_f32(v_src0, scale),
|
||||
internal::vrecpq_f32(v_src1))), v_mask)));
|
||||
vst1q_f32(dst + j, vmulq_f32(vmulq_n_f32(v_src0, scale),
|
||||
internal::vrecpq_f32(v_src1)));
|
||||
}
|
||||
|
||||
for (; j < roiw64; j += 2)
|
||||
@@ -534,15 +534,13 @@ void div(const Size2D &size,
|
||||
float32x2_t v_src0 = vld1_f32(src0 + j);
|
||||
float32x2_t v_src1 = vld1_f32(src1 + j);
|
||||
|
||||
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
|
||||
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
|
||||
vreinterpret_u32_f32(vmul_f32(vmul_n_f32(v_src0, scale),
|
||||
internal::vrecp_f32(v_src1))), v_mask)));
|
||||
vst1_f32(dst + j, vmul_f32(vmul_n_f32(v_src0, scale),
|
||||
internal::vrecp_f32(v_src1)));
|
||||
}
|
||||
|
||||
for (; j < size.width; j++)
|
||||
{
|
||||
dst[j] = src1[j] ? src0[j] * scale / src1[j] : 0.0f;
|
||||
dst[j] = src0[j] * scale / src1[j];
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -620,8 +618,6 @@ void reciprocal(const Size2D &size,
|
||||
return;
|
||||
}
|
||||
|
||||
float32x4_t v_zero = vdupq_n_f32(0.0f);
|
||||
|
||||
size_t roiw128 = size.width >= 3 ? size.width - 3 : 0;
|
||||
size_t roiw64 = size.width >= 1 ? size.width - 1 : 0;
|
||||
|
||||
@@ -639,23 +635,19 @@ void reciprocal(const Size2D &size,
|
||||
|
||||
float32x4_t v_src1 = vld1q_f32(src1 + j);
|
||||
|
||||
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
|
||||
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
|
||||
vreinterpretq_u32_f32(internal::vrecpq_f32(v_src1)), v_mask)));
|
||||
vst1q_f32(dst + j, internal::vrecpq_f32(v_src1));
|
||||
}
|
||||
|
||||
for (; j < roiw64; j += 2)
|
||||
{
|
||||
float32x2_t v_src1 = vld1_f32(src1 + j);
|
||||
|
||||
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
|
||||
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
|
||||
vreinterpret_u32_f32(internal::vrecp_f32(v_src1)), v_mask)));
|
||||
vst1_f32(dst + j, internal::vrecp_f32(v_src1));
|
||||
}
|
||||
|
||||
for (; j < size.width; j++)
|
||||
{
|
||||
dst[j] = src1[j] ? 1.0f / src1[j] : 0;
|
||||
dst[j] = 1.0f / src1[j];
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -673,25 +665,19 @@ void reciprocal(const Size2D &size,
|
||||
|
||||
float32x4_t v_src1 = vld1q_f32(src1 + j);
|
||||
|
||||
uint32x4_t v_mask = vceqq_f32(v_src1,v_zero);
|
||||
vst1q_f32(dst + j, vreinterpretq_f32_u32(vbicq_u32(
|
||||
vreinterpretq_u32_f32(vmulq_n_f32(internal::vrecpq_f32(v_src1),
|
||||
scale)),v_mask)));
|
||||
vst1q_f32(dst + j, vmulq_n_f32(internal::vrecpq_f32(v_src1), scale));
|
||||
}
|
||||
|
||||
for (; j < roiw64; j += 2)
|
||||
{
|
||||
float32x2_t v_src1 = vld1_f32(src1 + j);
|
||||
|
||||
uint32x2_t v_mask = vceq_f32(v_src1,vget_low_f32(v_zero));
|
||||
vst1_f32(dst + j, vreinterpret_f32_u32(vbic_u32(
|
||||
vreinterpret_u32_f32(vmul_n_f32(internal::vrecp_f32(v_src1),
|
||||
scale)), v_mask)));
|
||||
vst1_f32(dst + j, vmul_n_f32(internal::vrecp_f32(v_src1), scale));
|
||||
}
|
||||
|
||||
for (; j < size.width; j++)
|
||||
{
|
||||
dst[j] = src1[j] ? scale / src1[j] : 0;
|
||||
dst[j] = scale / src1[j];
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
Vendored
+1
@@ -30,6 +30,7 @@
|
||||
|
||||
#include <sys/cdefs.h>
|
||||
#include <stdint.h>
|
||||
#include <string.h>
|
||||
|
||||
__BEGIN_DECLS
|
||||
|
||||
|
||||
+2
-2
@@ -1,6 +1,6 @@
|
||||
$url = "https://raw.githubusercontent.com/opencv/opencv_3rdparty/@FFMPEG_BINARIES_COMMIT@/ffmpeg/opencv_ffmpeg_64.dll"
|
||||
$url = "https://raw.githubusercontent.com/opencv/opencv_3rdparty/@FFMPEG_BINARIES_COMMIT@/ffmpeg/opencv_videoio_ffmpeg_64.dll"
|
||||
$expected_md5 = "@FFMPEG_FILE_HASH_BIN64@"
|
||||
$output = "$PSScriptRoot\@OPENCV_BIN_INSTALL_PATH@\opencv_ffmpeg@OPENCV_DLLVERSION@_64.dll"
|
||||
$output = "$PSScriptRoot\@OPENCV_BIN_INSTALL_PATH@\opencv_videoio_ffmpeg@OPENCV_DLLVERSION@_64.dll"
|
||||
|
||||
Write-Output ("=" * 120)
|
||||
try {
|
||||
|
||||
Vendored
+8
-8
@@ -1,16 +1,16 @@
|
||||
# Binaries branch name: ffmpeg/3.4_20190612
|
||||
# Binaries were created for OpenCV: 1c661e754812d3423e8c15ccb9cdab57fc122c44
|
||||
ocv_update(FFMPEG_BINARIES_COMMIT "d284fd09e76966e95f08e1ac3a1a28b227447501")
|
||||
ocv_update(FFMPEG_FILE_HASH_BIN32 "a7032bf6cc1cb010dc055f352277792c")
|
||||
ocv_update(FFMPEG_FILE_HASH_BIN64 "40d1a38b83a0413a3fcf9df1044fff2a")
|
||||
ocv_update(FFMPEG_FILE_HASH_CMAKE "3b90f67f4b429e77d3da36698cef700c")
|
||||
# Binaries branch name: ffmpeg/master_20200311
|
||||
# Binaries were created for OpenCV: 850414a501d5e6dba111c92d73fdd05794c7061d
|
||||
ocv_update(FFMPEG_BINARIES_COMMIT "3d2e97081683265950316c65a52c2e8858ffba1b")
|
||||
ocv_update(FFMPEG_FILE_HASH_BIN32 "3b094c37d270a30f0b20a0bc8d3ecafb")
|
||||
ocv_update(FFMPEG_FILE_HASH_BIN64 "388ee23a7ca44eef2344e265fafd5940")
|
||||
ocv_update(FFMPEG_FILE_HASH_CMAKE "ad57c038ba34b868277ccbe6dd0f9602")
|
||||
|
||||
function(download_win_ffmpeg script_var)
|
||||
set(${script_var} "" PARENT_SCOPE)
|
||||
|
||||
set(ids BIN32 BIN64 CMAKE)
|
||||
set(name_BIN32 "opencv_ffmpeg.dll")
|
||||
set(name_BIN64 "opencv_ffmpeg_64.dll")
|
||||
set(name_BIN32 "opencv_videoio_ffmpeg.dll")
|
||||
set(name_BIN64 "opencv_videoio_ffmpeg_64.dll")
|
||||
set(name_CMAKE "ffmpeg_version.cmake")
|
||||
|
||||
set(FFMPEG_DOWNLOAD_DIR "${OpenCV_BINARY_DIR}/3rdparty/ffmpeg")
|
||||
|
||||
Vendored
+4
-4
@@ -13,10 +13,10 @@
|
||||
|
||||
* On Windows OpenCV uses pre-built ffmpeg binaries, built with proper flags (without GPL components) and
|
||||
wrapped with simple, stable OpenCV-compatible API.
|
||||
The binaries are opencv_ffmpeg.dll (version for 32-bit Windows) and
|
||||
opencv_ffmpeg_64.dll (version for 64-bit Windows).
|
||||
The binaries are opencv_videoio_ffmpeg.dll (version for 32-bit Windows) and
|
||||
opencv_videoio_ffmpeg_64.dll (version for 64-bit Windows).
|
||||
|
||||
The pre-built opencv_ffmpeg*.dll is:
|
||||
The pre-built opencv_videoio_ffmpeg*.dll is:
|
||||
* LGPL library, not BSD libraries.
|
||||
* Loaded at runtime by opencv_videoio module.
|
||||
If it succeeds, ffmpeg can be used to decode/encode videos;
|
||||
@@ -30,7 +30,7 @@
|
||||
Or you can specify location of binary file via OPENH264_LIBRARY environment variable.
|
||||
|
||||
If LGPL/GPL software can not be supplied with your OpenCV-based product, simply exclude
|
||||
opencv_ffmpeg*.dll from your distribution; OpenCV will stay fully functional except for the ability to
|
||||
opencv_videoio_ffmpeg*.dll from your distribution; OpenCV will stay fully functional except for the ability to
|
||||
decode/encode videos using FFMPEG (though, it may still be able to do that using other API,
|
||||
such as Video for Windows, Windows Media Foundation or our self-contained motion jpeg codec).
|
||||
|
||||
|
||||
+92
@@ -0,0 +1,92 @@
|
||||
//
|
||||
// File: vk_platform.h
|
||||
//
|
||||
/*
|
||||
** Copyright (c) 2014-2017 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
|
||||
#ifndef VK_PLATFORM_H_
|
||||
#define VK_PLATFORM_H_
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C"
|
||||
{
|
||||
#endif // __cplusplus
|
||||
|
||||
/*
|
||||
***************************************************************************************************
|
||||
* Platform-specific directives and type declarations
|
||||
***************************************************************************************************
|
||||
*/
|
||||
|
||||
/* Platform-specific calling convention macros.
|
||||
*
|
||||
* Platforms should define these so that Vulkan clients call Vulkan commands
|
||||
* with the same calling conventions that the Vulkan implementation expects.
|
||||
*
|
||||
* VKAPI_ATTR - Placed before the return type in function declarations.
|
||||
* Useful for C++11 and GCC/Clang-style function attribute syntax.
|
||||
* VKAPI_CALL - Placed after the return type in function declarations.
|
||||
* Useful for MSVC-style calling convention syntax.
|
||||
* VKAPI_PTR - Placed between the '(' and '*' in function pointer types.
|
||||
*
|
||||
* Function declaration: VKAPI_ATTR void VKAPI_CALL vkCommand(void);
|
||||
* Function pointer type: typedef void (VKAPI_PTR *PFN_vkCommand)(void);
|
||||
*/
|
||||
#if defined(_WIN32)
|
||||
// On Windows, Vulkan commands use the stdcall convention
|
||||
#define VKAPI_ATTR
|
||||
#define VKAPI_CALL __stdcall
|
||||
#define VKAPI_PTR VKAPI_CALL
|
||||
#elif defined(__ANDROID__) && defined(__ARM_ARCH) && __ARM_ARCH < 7
|
||||
#error "Vulkan isn't supported for the 'armeabi' NDK ABI"
|
||||
#elif defined(__ANDROID__) && defined(__ARM_ARCH) && __ARM_ARCH >= 7 && defined(__ARM_32BIT_STATE)
|
||||
// On Android 32-bit ARM targets, Vulkan functions use the "hardfloat"
|
||||
// calling convention, i.e. float parameters are passed in registers. This
|
||||
// is true even if the rest of the application passes floats on the stack,
|
||||
// as it does by default when compiling for the armeabi-v7a NDK ABI.
|
||||
#define VKAPI_ATTR __attribute__((pcs("aapcs-vfp")))
|
||||
#define VKAPI_CALL
|
||||
#define VKAPI_PTR VKAPI_ATTR
|
||||
#else
|
||||
// On other platforms, use the default calling convention
|
||||
#define VKAPI_ATTR
|
||||
#define VKAPI_CALL
|
||||
#define VKAPI_PTR
|
||||
#endif
|
||||
|
||||
#include <stddef.h>
|
||||
|
||||
#if !defined(VK_NO_STDINT_H)
|
||||
#if defined(_MSC_VER) && (_MSC_VER < 1600)
|
||||
typedef signed __int8 int8_t;
|
||||
typedef unsigned __int8 uint8_t;
|
||||
typedef signed __int16 int16_t;
|
||||
typedef unsigned __int16 uint16_t;
|
||||
typedef signed __int32 int32_t;
|
||||
typedef unsigned __int32 uint32_t;
|
||||
typedef signed __int64 int64_t;
|
||||
typedef unsigned __int64 uint64_t;
|
||||
#else
|
||||
#include <stdint.h>
|
||||
#endif
|
||||
#endif // !defined(VK_NO_STDINT_H)
|
||||
|
||||
#ifdef __cplusplus
|
||||
} // extern "C"
|
||||
#endif // __cplusplus
|
||||
|
||||
#endif
|
||||
Vendored
+83
@@ -0,0 +1,83 @@
|
||||
#ifndef VULKAN_H_
|
||||
#define VULKAN_H_ 1
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
#include "vk_platform.h"
|
||||
#include "vulkan_core.h"
|
||||
|
||||
#ifdef VK_USE_PLATFORM_ANDROID_KHR
|
||||
#include "vulkan_android.h"
|
||||
#endif
|
||||
|
||||
#ifdef VK_USE_PLATFORM_FUCHSIA
|
||||
#include <zircon/types.h>
|
||||
#include "vulkan_fuchsia.h"
|
||||
#endif
|
||||
|
||||
#ifdef VK_USE_PLATFORM_IOS_MVK
|
||||
#include "vulkan_ios.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_MACOS_MVK
|
||||
#include "vulkan_macos.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_MIR_KHR
|
||||
#include <mir_toolkit/client_types.h>
|
||||
#include "vulkan_mir.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_VI_NN
|
||||
#include "vulkan_vi.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_WAYLAND_KHR
|
||||
#include <wayland-client.h>
|
||||
#include "vulkan_wayland.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_WIN32_KHR
|
||||
#include <windows.h>
|
||||
#include "vulkan_win32.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_XCB_KHR
|
||||
#include <xcb/xcb.h>
|
||||
#include "vulkan_xcb.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_XLIB_KHR
|
||||
#include <X11/Xlib.h>
|
||||
#include "vulkan_xlib.h"
|
||||
#endif
|
||||
|
||||
|
||||
#ifdef VK_USE_PLATFORM_XLIB_XRANDR_EXT
|
||||
#include <X11/Xlib.h>
|
||||
#include <X11/extensions/Xrandr.h>
|
||||
#include "vulkan_xlib_xrandr.h"
|
||||
#endif
|
||||
|
||||
#endif // VULKAN_H_
|
||||
+126
@@ -0,0 +1,126 @@
|
||||
#ifndef VULKAN_ANDROID_H_
|
||||
#define VULKAN_ANDROID_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_android_surface 1
|
||||
struct ANativeWindow;
|
||||
|
||||
#define VK_KHR_ANDROID_SURFACE_SPEC_VERSION 6
|
||||
#define VK_KHR_ANDROID_SURFACE_EXTENSION_NAME "VK_KHR_android_surface"
|
||||
|
||||
typedef VkFlags VkAndroidSurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkAndroidSurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkAndroidSurfaceCreateFlagsKHR flags;
|
||||
struct ANativeWindow* window;
|
||||
} VkAndroidSurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateAndroidSurfaceKHR)(VkInstance instance, const VkAndroidSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateAndroidSurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkAndroidSurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
#endif
|
||||
|
||||
#define VK_ANDROID_external_memory_android_hardware_buffer 1
|
||||
struct AHardwareBuffer;
|
||||
|
||||
#define VK_ANDROID_EXTERNAL_MEMORY_ANDROID_HARDWARE_BUFFER_SPEC_VERSION 3
|
||||
#define VK_ANDROID_EXTERNAL_MEMORY_ANDROID_HARDWARE_BUFFER_EXTENSION_NAME "VK_ANDROID_external_memory_android_hardware_buffer"
|
||||
|
||||
typedef struct VkAndroidHardwareBufferUsageANDROID {
|
||||
VkStructureType sType;
|
||||
void* pNext;
|
||||
uint64_t androidHardwareBufferUsage;
|
||||
} VkAndroidHardwareBufferUsageANDROID;
|
||||
|
||||
typedef struct VkAndroidHardwareBufferPropertiesANDROID {
|
||||
VkStructureType sType;
|
||||
void* pNext;
|
||||
VkDeviceSize allocationSize;
|
||||
uint32_t memoryTypeBits;
|
||||
} VkAndroidHardwareBufferPropertiesANDROID;
|
||||
|
||||
typedef struct VkAndroidHardwareBufferFormatPropertiesANDROID {
|
||||
VkStructureType sType;
|
||||
void* pNext;
|
||||
VkFormat format;
|
||||
uint64_t externalFormat;
|
||||
VkFormatFeatureFlags formatFeatures;
|
||||
VkComponentMapping samplerYcbcrConversionComponents;
|
||||
VkSamplerYcbcrModelConversion suggestedYcbcrModel;
|
||||
VkSamplerYcbcrRange suggestedYcbcrRange;
|
||||
VkChromaLocation suggestedXChromaOffset;
|
||||
VkChromaLocation suggestedYChromaOffset;
|
||||
} VkAndroidHardwareBufferFormatPropertiesANDROID;
|
||||
|
||||
typedef struct VkImportAndroidHardwareBufferInfoANDROID {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
struct AHardwareBuffer* buffer;
|
||||
} VkImportAndroidHardwareBufferInfoANDROID;
|
||||
|
||||
typedef struct VkMemoryGetAndroidHardwareBufferInfoANDROID {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkDeviceMemory memory;
|
||||
} VkMemoryGetAndroidHardwareBufferInfoANDROID;
|
||||
|
||||
typedef struct VkExternalFormatANDROID {
|
||||
VkStructureType sType;
|
||||
void* pNext;
|
||||
uint64_t externalFormat;
|
||||
} VkExternalFormatANDROID;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetAndroidHardwareBufferPropertiesANDROID)(VkDevice device, const struct AHardwareBuffer* buffer, VkAndroidHardwareBufferPropertiesANDROID* pProperties);
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryAndroidHardwareBufferANDROID)(VkDevice device, const VkMemoryGetAndroidHardwareBufferInfoANDROID* pInfo, struct AHardwareBuffer** pBuffer);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetAndroidHardwareBufferPropertiesANDROID(
|
||||
VkDevice device,
|
||||
const struct AHardwareBuffer* buffer,
|
||||
VkAndroidHardwareBufferPropertiesANDROID* pProperties);
|
||||
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryAndroidHardwareBufferANDROID(
|
||||
VkDevice device,
|
||||
const VkMemoryGetAndroidHardwareBufferInfoANDROID* pInfo,
|
||||
struct AHardwareBuffer** pBuffer);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+8524
File diff suppressed because it is too large
Load Diff
+58
@@ -0,0 +1,58 @@
|
||||
#ifndef VULKAN_FUCHSIA_H_
|
||||
#define VULKAN_FUCHSIA_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_FUCHSIA_imagepipe_surface 1
|
||||
#define VK_FUCHSIA_IMAGEPIPE_SURFACE_SPEC_VERSION 1
|
||||
#define VK_FUCHSIA_IMAGEPIPE_SURFACE_EXTENSION_NAME "VK_FUCHSIA_imagepipe_surface"
|
||||
|
||||
typedef VkFlags VkImagePipeSurfaceCreateFlagsFUCHSIA;
|
||||
|
||||
typedef struct VkImagePipeSurfaceCreateInfoFUCHSIA {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkImagePipeSurfaceCreateFlagsFUCHSIA flags;
|
||||
zx_handle_t imagePipeHandle;
|
||||
} VkImagePipeSurfaceCreateInfoFUCHSIA;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateImagePipeSurfaceFUCHSIA)(VkInstance instance, const VkImagePipeSurfaceCreateInfoFUCHSIA* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateImagePipeSurfaceFUCHSIA(
|
||||
VkInstance instance,
|
||||
const VkImagePipeSurfaceCreateInfoFUCHSIA* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
Vendored
+58
@@ -0,0 +1,58 @@
|
||||
#ifndef VULKAN_IOS_H_
|
||||
#define VULKAN_IOS_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_MVK_ios_surface 1
|
||||
#define VK_MVK_IOS_SURFACE_SPEC_VERSION 2
|
||||
#define VK_MVK_IOS_SURFACE_EXTENSION_NAME "VK_MVK_ios_surface"
|
||||
|
||||
typedef VkFlags VkIOSSurfaceCreateFlagsMVK;
|
||||
|
||||
typedef struct VkIOSSurfaceCreateInfoMVK {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkIOSSurfaceCreateFlagsMVK flags;
|
||||
const void* pView;
|
||||
} VkIOSSurfaceCreateInfoMVK;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateIOSSurfaceMVK)(VkInstance instance, const VkIOSSurfaceCreateInfoMVK* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateIOSSurfaceMVK(
|
||||
VkInstance instance,
|
||||
const VkIOSSurfaceCreateInfoMVK* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+58
@@ -0,0 +1,58 @@
|
||||
#ifndef VULKAN_MACOS_H_
|
||||
#define VULKAN_MACOS_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_MVK_macos_surface 1
|
||||
#define VK_MVK_MACOS_SURFACE_SPEC_VERSION 2
|
||||
#define VK_MVK_MACOS_SURFACE_EXTENSION_NAME "VK_MVK_macos_surface"
|
||||
|
||||
typedef VkFlags VkMacOSSurfaceCreateFlagsMVK;
|
||||
|
||||
typedef struct VkMacOSSurfaceCreateInfoMVK {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkMacOSSurfaceCreateFlagsMVK flags;
|
||||
const void* pView;
|
||||
} VkMacOSSurfaceCreateInfoMVK;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateMacOSSurfaceMVK)(VkInstance instance, const VkMacOSSurfaceCreateInfoMVK* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateMacOSSurfaceMVK(
|
||||
VkInstance instance,
|
||||
const VkMacOSSurfaceCreateInfoMVK* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
Vendored
+65
@@ -0,0 +1,65 @@
|
||||
#ifndef VULKAN_MIR_H_
|
||||
#define VULKAN_MIR_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_mir_surface 1
|
||||
#define VK_KHR_MIR_SURFACE_SPEC_VERSION 4
|
||||
#define VK_KHR_MIR_SURFACE_EXTENSION_NAME "VK_KHR_mir_surface"
|
||||
|
||||
typedef VkFlags VkMirSurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkMirSurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkMirSurfaceCreateFlagsKHR flags;
|
||||
MirConnection* connection;
|
||||
MirSurface* mirSurface;
|
||||
} VkMirSurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateMirSurfaceKHR)(VkInstance instance, const VkMirSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceMirPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, MirConnection* connection);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateMirSurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkMirSurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
|
||||
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceMirPresentationSupportKHR(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
uint32_t queueFamilyIndex,
|
||||
MirConnection* connection);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
Vendored
+58
@@ -0,0 +1,58 @@
|
||||
#ifndef VULKAN_VI_H_
|
||||
#define VULKAN_VI_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_NN_vi_surface 1
|
||||
#define VK_NN_VI_SURFACE_SPEC_VERSION 1
|
||||
#define VK_NN_VI_SURFACE_EXTENSION_NAME "VK_NN_vi_surface"
|
||||
|
||||
typedef VkFlags VkViSurfaceCreateFlagsNN;
|
||||
|
||||
typedef struct VkViSurfaceCreateInfoNN {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkViSurfaceCreateFlagsNN flags;
|
||||
void* window;
|
||||
} VkViSurfaceCreateInfoNN;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateViSurfaceNN)(VkInstance instance, const VkViSurfaceCreateInfoNN* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateViSurfaceNN(
|
||||
VkInstance instance,
|
||||
const VkViSurfaceCreateInfoNN* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+65
@@ -0,0 +1,65 @@
|
||||
#ifndef VULKAN_WAYLAND_H_
|
||||
#define VULKAN_WAYLAND_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_wayland_surface 1
|
||||
#define VK_KHR_WAYLAND_SURFACE_SPEC_VERSION 6
|
||||
#define VK_KHR_WAYLAND_SURFACE_EXTENSION_NAME "VK_KHR_wayland_surface"
|
||||
|
||||
typedef VkFlags VkWaylandSurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkWaylandSurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkWaylandSurfaceCreateFlagsKHR flags;
|
||||
struct wl_display* display;
|
||||
struct wl_surface* surface;
|
||||
} VkWaylandSurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateWaylandSurfaceKHR)(VkInstance instance, const VkWaylandSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceWaylandPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, struct wl_display* display);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateWaylandSurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkWaylandSurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
|
||||
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceWaylandPresentationSupportKHR(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
uint32_t queueFamilyIndex,
|
||||
struct wl_display* display);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+276
@@ -0,0 +1,276 @@
|
||||
#ifndef VULKAN_WIN32_H_
|
||||
#define VULKAN_WIN32_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_win32_surface 1
|
||||
#define VK_KHR_WIN32_SURFACE_SPEC_VERSION 6
|
||||
#define VK_KHR_WIN32_SURFACE_EXTENSION_NAME "VK_KHR_win32_surface"
|
||||
|
||||
typedef VkFlags VkWin32SurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkWin32SurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkWin32SurfaceCreateFlagsKHR flags;
|
||||
HINSTANCE hinstance;
|
||||
HWND hwnd;
|
||||
} VkWin32SurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateWin32SurfaceKHR)(VkInstance instance, const VkWin32SurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceWin32PresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateWin32SurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkWin32SurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
|
||||
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceWin32PresentationSupportKHR(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
uint32_t queueFamilyIndex);
|
||||
#endif
|
||||
|
||||
#define VK_KHR_external_memory_win32 1
|
||||
#define VK_KHR_EXTERNAL_MEMORY_WIN32_SPEC_VERSION 1
|
||||
#define VK_KHR_EXTERNAL_MEMORY_WIN32_EXTENSION_NAME "VK_KHR_external_memory_win32"
|
||||
|
||||
typedef struct VkImportMemoryWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkExternalMemoryHandleTypeFlagBits handleType;
|
||||
HANDLE handle;
|
||||
LPCWSTR name;
|
||||
} VkImportMemoryWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkExportMemoryWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
const SECURITY_ATTRIBUTES* pAttributes;
|
||||
DWORD dwAccess;
|
||||
LPCWSTR name;
|
||||
} VkExportMemoryWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkMemoryWin32HandlePropertiesKHR {
|
||||
VkStructureType sType;
|
||||
void* pNext;
|
||||
uint32_t memoryTypeBits;
|
||||
} VkMemoryWin32HandlePropertiesKHR;
|
||||
|
||||
typedef struct VkMemoryGetWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkDeviceMemory memory;
|
||||
VkExternalMemoryHandleTypeFlagBits handleType;
|
||||
} VkMemoryGetWin32HandleInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandleKHR)(VkDevice device, const VkMemoryGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandlePropertiesKHR)(VkDevice device, VkExternalMemoryHandleTypeFlagBits handleType, HANDLE handle, VkMemoryWin32HandlePropertiesKHR* pMemoryWin32HandleProperties);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandleKHR(
|
||||
VkDevice device,
|
||||
const VkMemoryGetWin32HandleInfoKHR* pGetWin32HandleInfo,
|
||||
HANDLE* pHandle);
|
||||
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandlePropertiesKHR(
|
||||
VkDevice device,
|
||||
VkExternalMemoryHandleTypeFlagBits handleType,
|
||||
HANDLE handle,
|
||||
VkMemoryWin32HandlePropertiesKHR* pMemoryWin32HandleProperties);
|
||||
#endif
|
||||
|
||||
#define VK_KHR_win32_keyed_mutex 1
|
||||
#define VK_KHR_WIN32_KEYED_MUTEX_SPEC_VERSION 1
|
||||
#define VK_KHR_WIN32_KEYED_MUTEX_EXTENSION_NAME "VK_KHR_win32_keyed_mutex"
|
||||
|
||||
typedef struct VkWin32KeyedMutexAcquireReleaseInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
uint32_t acquireCount;
|
||||
const VkDeviceMemory* pAcquireSyncs;
|
||||
const uint64_t* pAcquireKeys;
|
||||
const uint32_t* pAcquireTimeouts;
|
||||
uint32_t releaseCount;
|
||||
const VkDeviceMemory* pReleaseSyncs;
|
||||
const uint64_t* pReleaseKeys;
|
||||
} VkWin32KeyedMutexAcquireReleaseInfoKHR;
|
||||
|
||||
|
||||
|
||||
#define VK_KHR_external_semaphore_win32 1
|
||||
#define VK_KHR_EXTERNAL_SEMAPHORE_WIN32_SPEC_VERSION 1
|
||||
#define VK_KHR_EXTERNAL_SEMAPHORE_WIN32_EXTENSION_NAME "VK_KHR_external_semaphore_win32"
|
||||
|
||||
typedef struct VkImportSemaphoreWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkSemaphore semaphore;
|
||||
VkSemaphoreImportFlags flags;
|
||||
VkExternalSemaphoreHandleTypeFlagBits handleType;
|
||||
HANDLE handle;
|
||||
LPCWSTR name;
|
||||
} VkImportSemaphoreWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkExportSemaphoreWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
const SECURITY_ATTRIBUTES* pAttributes;
|
||||
DWORD dwAccess;
|
||||
LPCWSTR name;
|
||||
} VkExportSemaphoreWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkD3D12FenceSubmitInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
uint32_t waitSemaphoreValuesCount;
|
||||
const uint64_t* pWaitSemaphoreValues;
|
||||
uint32_t signalSemaphoreValuesCount;
|
||||
const uint64_t* pSignalSemaphoreValues;
|
||||
} VkD3D12FenceSubmitInfoKHR;
|
||||
|
||||
typedef struct VkSemaphoreGetWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkSemaphore semaphore;
|
||||
VkExternalSemaphoreHandleTypeFlagBits handleType;
|
||||
} VkSemaphoreGetWin32HandleInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkImportSemaphoreWin32HandleKHR)(VkDevice device, const VkImportSemaphoreWin32HandleInfoKHR* pImportSemaphoreWin32HandleInfo);
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetSemaphoreWin32HandleKHR)(VkDevice device, const VkSemaphoreGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkImportSemaphoreWin32HandleKHR(
|
||||
VkDevice device,
|
||||
const VkImportSemaphoreWin32HandleInfoKHR* pImportSemaphoreWin32HandleInfo);
|
||||
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetSemaphoreWin32HandleKHR(
|
||||
VkDevice device,
|
||||
const VkSemaphoreGetWin32HandleInfoKHR* pGetWin32HandleInfo,
|
||||
HANDLE* pHandle);
|
||||
#endif
|
||||
|
||||
#define VK_KHR_external_fence_win32 1
|
||||
#define VK_KHR_EXTERNAL_FENCE_WIN32_SPEC_VERSION 1
|
||||
#define VK_KHR_EXTERNAL_FENCE_WIN32_EXTENSION_NAME "VK_KHR_external_fence_win32"
|
||||
|
||||
typedef struct VkImportFenceWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkFence fence;
|
||||
VkFenceImportFlags flags;
|
||||
VkExternalFenceHandleTypeFlagBits handleType;
|
||||
HANDLE handle;
|
||||
LPCWSTR name;
|
||||
} VkImportFenceWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkExportFenceWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
const SECURITY_ATTRIBUTES* pAttributes;
|
||||
DWORD dwAccess;
|
||||
LPCWSTR name;
|
||||
} VkExportFenceWin32HandleInfoKHR;
|
||||
|
||||
typedef struct VkFenceGetWin32HandleInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkFence fence;
|
||||
VkExternalFenceHandleTypeFlagBits handleType;
|
||||
} VkFenceGetWin32HandleInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkImportFenceWin32HandleKHR)(VkDevice device, const VkImportFenceWin32HandleInfoKHR* pImportFenceWin32HandleInfo);
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetFenceWin32HandleKHR)(VkDevice device, const VkFenceGetWin32HandleInfoKHR* pGetWin32HandleInfo, HANDLE* pHandle);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkImportFenceWin32HandleKHR(
|
||||
VkDevice device,
|
||||
const VkImportFenceWin32HandleInfoKHR* pImportFenceWin32HandleInfo);
|
||||
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetFenceWin32HandleKHR(
|
||||
VkDevice device,
|
||||
const VkFenceGetWin32HandleInfoKHR* pGetWin32HandleInfo,
|
||||
HANDLE* pHandle);
|
||||
#endif
|
||||
|
||||
#define VK_NV_external_memory_win32 1
|
||||
#define VK_NV_EXTERNAL_MEMORY_WIN32_SPEC_VERSION 1
|
||||
#define VK_NV_EXTERNAL_MEMORY_WIN32_EXTENSION_NAME "VK_NV_external_memory_win32"
|
||||
|
||||
typedef struct VkImportMemoryWin32HandleInfoNV {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkExternalMemoryHandleTypeFlagsNV handleType;
|
||||
HANDLE handle;
|
||||
} VkImportMemoryWin32HandleInfoNV;
|
||||
|
||||
typedef struct VkExportMemoryWin32HandleInfoNV {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
const SECURITY_ATTRIBUTES* pAttributes;
|
||||
DWORD dwAccess;
|
||||
} VkExportMemoryWin32HandleInfoNV;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetMemoryWin32HandleNV)(VkDevice device, VkDeviceMemory memory, VkExternalMemoryHandleTypeFlagsNV handleType, HANDLE* pHandle);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetMemoryWin32HandleNV(
|
||||
VkDevice device,
|
||||
VkDeviceMemory memory,
|
||||
VkExternalMemoryHandleTypeFlagsNV handleType,
|
||||
HANDLE* pHandle);
|
||||
#endif
|
||||
|
||||
#define VK_NV_win32_keyed_mutex 1
|
||||
#define VK_NV_WIN32_KEYED_MUTEX_SPEC_VERSION 1
|
||||
#define VK_NV_WIN32_KEYED_MUTEX_EXTENSION_NAME "VK_NV_win32_keyed_mutex"
|
||||
|
||||
typedef struct VkWin32KeyedMutexAcquireReleaseInfoNV {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
uint32_t acquireCount;
|
||||
const VkDeviceMemory* pAcquireSyncs;
|
||||
const uint64_t* pAcquireKeys;
|
||||
const uint32_t* pAcquireTimeoutMilliseconds;
|
||||
uint32_t releaseCount;
|
||||
const VkDeviceMemory* pReleaseSyncs;
|
||||
const uint64_t* pReleaseKeys;
|
||||
} VkWin32KeyedMutexAcquireReleaseInfoNV;
|
||||
|
||||
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
Vendored
+66
@@ -0,0 +1,66 @@
|
||||
#ifndef VULKAN_XCB_H_
|
||||
#define VULKAN_XCB_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_xcb_surface 1
|
||||
#define VK_KHR_XCB_SURFACE_SPEC_VERSION 6
|
||||
#define VK_KHR_XCB_SURFACE_EXTENSION_NAME "VK_KHR_xcb_surface"
|
||||
|
||||
typedef VkFlags VkXcbSurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkXcbSurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkXcbSurfaceCreateFlagsKHR flags;
|
||||
xcb_connection_t* connection;
|
||||
xcb_window_t window;
|
||||
} VkXcbSurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateXcbSurfaceKHR)(VkInstance instance, const VkXcbSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceXcbPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, xcb_connection_t* connection, xcb_visualid_t visual_id);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateXcbSurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkXcbSurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
|
||||
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceXcbPresentationSupportKHR(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
uint32_t queueFamilyIndex,
|
||||
xcb_connection_t* connection,
|
||||
xcb_visualid_t visual_id);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+66
@@ -0,0 +1,66 @@
|
||||
#ifndef VULKAN_XLIB_H_
|
||||
#define VULKAN_XLIB_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_KHR_xlib_surface 1
|
||||
#define VK_KHR_XLIB_SURFACE_SPEC_VERSION 6
|
||||
#define VK_KHR_XLIB_SURFACE_EXTENSION_NAME "VK_KHR_xlib_surface"
|
||||
|
||||
typedef VkFlags VkXlibSurfaceCreateFlagsKHR;
|
||||
|
||||
typedef struct VkXlibSurfaceCreateInfoKHR {
|
||||
VkStructureType sType;
|
||||
const void* pNext;
|
||||
VkXlibSurfaceCreateFlagsKHR flags;
|
||||
Display* dpy;
|
||||
Window window;
|
||||
} VkXlibSurfaceCreateInfoKHR;
|
||||
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkCreateXlibSurfaceKHR)(VkInstance instance, const VkXlibSurfaceCreateInfoKHR* pCreateInfo, const VkAllocationCallbacks* pAllocator, VkSurfaceKHR* pSurface);
|
||||
typedef VkBool32 (VKAPI_PTR *PFN_vkGetPhysicalDeviceXlibPresentationSupportKHR)(VkPhysicalDevice physicalDevice, uint32_t queueFamilyIndex, Display* dpy, VisualID visualID);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkCreateXlibSurfaceKHR(
|
||||
VkInstance instance,
|
||||
const VkXlibSurfaceCreateInfoKHR* pCreateInfo,
|
||||
const VkAllocationCallbacks* pAllocator,
|
||||
VkSurfaceKHR* pSurface);
|
||||
|
||||
VKAPI_ATTR VkBool32 VKAPI_CALL vkGetPhysicalDeviceXlibPresentationSupportKHR(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
uint32_t queueFamilyIndex,
|
||||
Display* dpy,
|
||||
VisualID visualID);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
+54
@@ -0,0 +1,54 @@
|
||||
#ifndef VULKAN_XLIB_XRANDR_H_
|
||||
#define VULKAN_XLIB_XRANDR_H_ 1
|
||||
|
||||
#ifdef __cplusplus
|
||||
extern "C" {
|
||||
#endif
|
||||
|
||||
/*
|
||||
** Copyright (c) 2015-2018 The Khronos Group Inc.
|
||||
**
|
||||
** Licensed under the Apache License, Version 2.0 (the "License");
|
||||
** you may not use this file except in compliance with the License.
|
||||
** You may obtain a copy of the License at
|
||||
**
|
||||
** http://www.apache.org/licenses/LICENSE-2.0
|
||||
**
|
||||
** Unless required by applicable law or agreed to in writing, software
|
||||
** distributed under the License is distributed on an "AS IS" BASIS,
|
||||
** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
** See the License for the specific language governing permissions and
|
||||
** limitations under the License.
|
||||
*/
|
||||
|
||||
/*
|
||||
** This header is generated from the Khronos Vulkan XML API Registry.
|
||||
**
|
||||
*/
|
||||
|
||||
|
||||
#define VK_EXT_acquire_xlib_display 1
|
||||
#define VK_EXT_ACQUIRE_XLIB_DISPLAY_SPEC_VERSION 1
|
||||
#define VK_EXT_ACQUIRE_XLIB_DISPLAY_EXTENSION_NAME "VK_EXT_acquire_xlib_display"
|
||||
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkAcquireXlibDisplayEXT)(VkPhysicalDevice physicalDevice, Display* dpy, VkDisplayKHR display);
|
||||
typedef VkResult (VKAPI_PTR *PFN_vkGetRandROutputDisplayEXT)(VkPhysicalDevice physicalDevice, Display* dpy, RROutput rrOutput, VkDisplayKHR* pDisplay);
|
||||
|
||||
#ifndef VK_NO_PROTOTYPES
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkAcquireXlibDisplayEXT(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
Display* dpy,
|
||||
VkDisplayKHR display);
|
||||
|
||||
VKAPI_ATTR VkResult VKAPI_CALL vkGetRandROutputDisplayEXT(
|
||||
VkPhysicalDevice physicalDevice,
|
||||
Display* dpy,
|
||||
RROutput rrOutput,
|
||||
VkDisplayKHR* pDisplay);
|
||||
#endif
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
||||
#endif
|
||||
Vendored
+11
-16
@@ -2,37 +2,32 @@ function(download_ippicv root_var)
|
||||
set(${root_var} "" PARENT_SCOPE)
|
||||
|
||||
# Commit SHA in the opencv_3rdparty repo
|
||||
set(IPPICV_COMMIT "32e315a5b106a7b89dbed51c28f8120a48b368b4")
|
||||
set(IPPICV_COMMIT "a56b6ac6f030c312b2dce17430eef13aed9af274")
|
||||
# Define actual ICV versions
|
||||
if(APPLE)
|
||||
set(OPENCV_ICV_PLATFORM "macosx")
|
||||
set(OPENCV_ICV_PACKAGE_SUBDIR "ippicv_mac")
|
||||
if(X86_64)
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_mac_intel64_general_20180723.tgz")
|
||||
set(OPENCV_ICV_HASH "fe6b2bb75ae0e3f19ad3ae1a31dfa4a2")
|
||||
else()
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_mac_ia32_general_20180723.tgz")
|
||||
set(OPENCV_ICV_HASH "b5dfa78c87eb75c64470cbe5ec876f4f")
|
||||
endif()
|
||||
set(OPENCV_ICV_NAME "ippicv_2020_mac_intel64_20191018_general.tgz")
|
||||
set(OPENCV_ICV_HASH "1c3d675c2a2395d094d523024896e01b")
|
||||
elseif((UNIX AND NOT ANDROID) OR (UNIX AND ANDROID_ABI MATCHES "x86"))
|
||||
set(OPENCV_ICV_PLATFORM "linux")
|
||||
set(OPENCV_ICV_PACKAGE_SUBDIR "ippicv_lnx")
|
||||
if(X86_64)
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_lnx_intel64_general_20180723.tgz")
|
||||
set(OPENCV_ICV_HASH "c0bd78adb4156bbf552c1dfe90599607")
|
||||
set(OPENCV_ICV_NAME "ippicv_2020_lnx_intel64_20191018_general.tgz")
|
||||
set(OPENCV_ICV_HASH "7421de0095c7a39162ae13a6098782f9")
|
||||
else()
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_lnx_ia32_general_20180723.tgz")
|
||||
set(OPENCV_ICV_HASH "4f38432c30bfd6423164b7a24bbc98a0")
|
||||
set(OPENCV_ICV_NAME "ippicv_2020_lnx_ia32_20191018_general.tgz")
|
||||
set(OPENCV_ICV_HASH "ad189a940fb60eb71f291321322fe3e8")
|
||||
endif()
|
||||
elseif(WIN32 AND NOT ARM)
|
||||
set(OPENCV_ICV_PLATFORM "windows")
|
||||
set(OPENCV_ICV_PACKAGE_SUBDIR "ippicv_win")
|
||||
if(X86_64)
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_win_intel64_20180723_general.zip")
|
||||
set(OPENCV_ICV_HASH "1d222685246896fe089f88b8858e4b2f")
|
||||
set(OPENCV_ICV_NAME "ippicv_2020_win_intel64_20191018_general.zip")
|
||||
set(OPENCV_ICV_HASH "879741a7946b814455eee6c6ffde2984")
|
||||
else()
|
||||
set(OPENCV_ICV_NAME "ippicv_2019_win_ia32_20180723_general.zip")
|
||||
set(OPENCV_ICV_HASH "0157251a2eb9cd63a3ebc7eed0f3e59e")
|
||||
set(OPENCV_ICV_NAME "ippicv_2020_win_ia32_20191018_general.zip")
|
||||
set(OPENCV_ICV_HASH "cd39bdf0c2e1cac9a61101dad7a2413e")
|
||||
endif()
|
||||
else()
|
||||
return()
|
||||
|
||||
+6
@@ -17,6 +17,12 @@
|
||||
#if !defined(JAS_WIN_MSVC_BUILD)
|
||||
/* A configure-based build is being used. */
|
||||
|
||||
#include <stdio.h>
|
||||
|
||||
// uClibc-ng workaround: https://github.com/opencv/opencv/pull/15279
|
||||
#ifndef L_tmpnam
|
||||
#define L_tmpnam 20
|
||||
#endif
|
||||
|
||||
|
||||
/* Extra debugging support */
|
||||
|
||||
+2
-2
@@ -4,9 +4,9 @@ ocv_warnings_disable(CMAKE_C_FLAGS -Wunused-parameter -Wsign-compare -Wshorten-6
|
||||
|
||||
set(VERSION_MAJOR 2)
|
||||
set(VERSION_MINOR 0)
|
||||
set(VERSION_REVISION 2)
|
||||
set(VERSION_REVISION 4)
|
||||
set(VERSION ${VERSION_MAJOR}.${VERSION_MINOR}.${VERSION_REVISION})
|
||||
set(LIBJPEG_TURBO_VERSION_NUMBER 2000002)
|
||||
set(LIBJPEG_TURBO_VERSION_NUMBER 2000004)
|
||||
|
||||
string(TIMESTAMP BUILD "opencv-${OPENCV_VERSION}-libjpeg-turbo")
|
||||
if(CMAKE_BUILD_TYPE STREQUAL "Debug")
|
||||
|
||||
Vendored
+36
-26
@@ -1,14 +1,14 @@
|
||||
Background
|
||||
==========
|
||||
|
||||
libjpeg-turbo is a JPEG image codec that uses SIMD instructions (MMX, SSE2,
|
||||
AVX2, NEON, AltiVec) to accelerate baseline JPEG compression and decompression
|
||||
on x86, x86-64, ARM, and PowerPC systems, as well as progressive JPEG
|
||||
compression on x86 and x86-64 systems. On such systems, libjpeg-turbo is
|
||||
generally 2-6x as fast as libjpeg, all else being equal. On other types of
|
||||
systems, libjpeg-turbo can still outperform libjpeg by a significant amount, by
|
||||
virtue of its highly-optimized Huffman coding routines. In many cases, the
|
||||
performance of libjpeg-turbo rivals that of proprietary high-speed JPEG codecs.
|
||||
libjpeg-turbo is a JPEG image codec that uses SIMD instructions to accelerate
|
||||
baseline JPEG compression and decompression on x86, x86-64, ARM, PowerPC, and
|
||||
MIPS systems, as well as progressive JPEG compression on x86 and x86-64
|
||||
systems. On such systems, libjpeg-turbo is generally 2-6x as fast as libjpeg,
|
||||
all else being equal. On other types of systems, libjpeg-turbo can still
|
||||
outperform libjpeg by a significant amount, by virtue of its highly-optimized
|
||||
Huffman coding routines. In many cases, the performance of libjpeg-turbo
|
||||
rivals that of proprietary high-speed JPEG codecs.
|
||||
|
||||
libjpeg-turbo implements both the traditional libjpeg API as well as the less
|
||||
powerful but more straightforward TurboJPEG API. libjpeg-turbo also features
|
||||
@@ -135,25 +135,24 @@ without recompiling. libjpeg-turbo does not claim to support all of the
|
||||
libjpeg v7+ features, nor to produce identical output to libjpeg v7+ in all
|
||||
cases (see below.)
|
||||
|
||||
By passing an argument of `--with-jpeg7` or `--with-jpeg8` to `configure`, or
|
||||
an argument of `-DWITH_JPEG7=1` or `-DWITH_JPEG8=1` to `cmake`, you can build a
|
||||
version of libjpeg-turbo that emulates the libjpeg v7 or v8 ABI, so that
|
||||
programs that are built against libjpeg v7 or v8 can be run with libjpeg-turbo.
|
||||
The following section describes which libjpeg v7+ features are supported and
|
||||
which aren't.
|
||||
By passing an argument of `-DWITH_JPEG7=1` or `-DWITH_JPEG8=1` to `cmake`, you
|
||||
can build a version of libjpeg-turbo that emulates the libjpeg v7 or v8 ABI, so
|
||||
that programs that are built against libjpeg v7 or v8 can be run with
|
||||
libjpeg-turbo. The following section describes which libjpeg v7+ features are
|
||||
supported and which aren't.
|
||||
|
||||
### Support for libjpeg v7 and v8 Features
|
||||
|
||||
#### Fully supported
|
||||
|
||||
- **libjpeg: IDCT scaling extensions in decompressor**<br>
|
||||
- **libjpeg API: IDCT scaling extensions in decompressor**<br>
|
||||
libjpeg-turbo supports IDCT scaling with scaling factors of 1/8, 1/4, 3/8,
|
||||
1/2, 5/8, 3/4, 7/8, 9/8, 5/4, 11/8, 3/2, 13/8, 7/4, 15/8, and 2/1 (only 1/4
|
||||
and 1/2 are SIMD-accelerated.)
|
||||
|
||||
- **libjpeg: Arithmetic coding**
|
||||
- **libjpeg API: Arithmetic coding**
|
||||
|
||||
- **libjpeg: In-memory source and destination managers**<br>
|
||||
- **libjpeg API: In-memory source and destination managers**<br>
|
||||
See notes below.
|
||||
|
||||
- **cjpeg: Separate quality settings for luminance and chrominance**<br>
|
||||
@@ -185,14 +184,14 @@ means of quality improvement. The reader is invited to peruse the research at
|
||||
but it is the general belief of our project that these features have not
|
||||
demonstrated sufficient usefulness to justify inclusion in libjpeg-turbo.
|
||||
|
||||
- **libjpeg: DCT scaling in compressor**<br>
|
||||
- **libjpeg API: DCT scaling in compressor**<br>
|
||||
`cinfo.scale_num` and `cinfo.scale_denom` are silently ignored.
|
||||
There is no technical reason why DCT scaling could not be supported when
|
||||
emulating the libjpeg v7+ API/ABI, but without the SmartScale extension (see
|
||||
below), only scaling factors of 1/2, 8/15, 4/7, 8/13, 2/3, 8/11, 4/5, and
|
||||
8/9 would be available, which is of limited usefulness.
|
||||
|
||||
- **libjpeg: SmartScale**<br>
|
||||
- **libjpeg API: SmartScale**<br>
|
||||
`cinfo.block_size` is silently ignored.
|
||||
SmartScale is an extension to the JPEG format that allows for DCT block
|
||||
sizes other than 8x8. Providing support for this new format would be
|
||||
@@ -205,7 +204,7 @@ demonstrated sufficient usefulness to justify inclusion in libjpeg-turbo.
|
||||
interest in providing this feature would be as a means of supporting
|
||||
additional DCT scaling factors.
|
||||
|
||||
- **libjpeg: Fancy downsampling in compressor**<br>
|
||||
- **libjpeg API: Fancy downsampling in compressor**<br>
|
||||
`cinfo.do_fancy_downsampling` is silently ignored.
|
||||
This requires the DCT scaling feature, which is not supported.
|
||||
|
||||
@@ -247,15 +246,14 @@ don't, and it allows those functions to be provided in the "official"
|
||||
libjpeg-turbo binaries.
|
||||
|
||||
Those who are concerned about maintaining strict conformance with the libjpeg
|
||||
v6b or v7 API can pass an argument of `--without-mem-srcdst` to `configure` or
|
||||
an argument of `-DWITH_MEM_SRCDST=0` to `cmake` prior to building
|
||||
libjpeg-turbo. This will restore the pre-1.3 behavior, in which
|
||||
v6b or v7 API can pass an argument of `-DWITH_MEM_SRCDST=0` to `cmake` prior to
|
||||
building libjpeg-turbo. This will restore the pre-1.3 behavior, in which
|
||||
`jpeg_mem_src()` and `jpeg_mem_dest()` are only included when emulating the
|
||||
libjpeg v8 API/ABI.
|
||||
|
||||
On Un*x systems, including the in-memory source/destination managers changes
|
||||
the dynamic library version from 62.1.0 to 62.2.0 if using libjpeg v6b API/ABI
|
||||
emulation and from 7.1.0 to 7.2.0 if using libjpeg v7 API/ABI emulation.
|
||||
the dynamic library version from 62.2.0 to 62.3.0 if using libjpeg v6b API/ABI
|
||||
emulation and from 7.2.0 to 7.3.0 if using libjpeg v7 API/ABI emulation.
|
||||
|
||||
Note that, on most Un*x systems, the dynamic linker will not look for a
|
||||
function in a library until that function is actually used. Thus, if a program
|
||||
@@ -331,7 +329,7 @@ in a way that makes the rest of the libjpeg infrastructure happy, so it is
|
||||
necessary to use the slow Huffman decoder when decompressing a JPEG image that
|
||||
has restart markers. This can cause the decompression performance to drop by
|
||||
as much as 20%, but the performance will still be much greater than that of
|
||||
libjpeg. Many consumer packages, such as PhotoShop, use restart markers when
|
||||
libjpeg. Many consumer packages, such as Photoshop, use restart markers when
|
||||
generating JPEG images, so images generated by those programs will experience
|
||||
this issue.
|
||||
|
||||
@@ -344,3 +342,15 @@ quality of 98-100. Thus, libjpeg-turbo must use the non-SIMD quantization
|
||||
function in those cases. This causes performance to drop by as much as 40%.
|
||||
It is therefore strongly advised that you use the slow integer forward DCT
|
||||
whenever encoding images with a JPEG quality of 98 or higher.
|
||||
|
||||
|
||||
Memory Debugger Pitfalls
|
||||
========================
|
||||
|
||||
Valgrind and Memory Sanitizer (MSan) can generate false positives
|
||||
(specifically, incorrect reports of uninitialized memory accesses) when used
|
||||
with libjpeg-turbo's SIMD extensions. It is generally recommended that the
|
||||
SIMD extensions be disabled, either by passing an argument of `-DWITH_SIMD=0`
|
||||
to `cmake` when configuring the build or by setting the environment variable
|
||||
`JSIMD_FORCENONE` to `1` at run time, when testing libjpeg-turbo with Valgrind,
|
||||
MSan, or other memory debuggers.
|
||||
|
||||
Vendored
+8
-4
@@ -4,7 +4,7 @@
|
||||
* This file was part of the Independent JPEG Group's software:
|
||||
* Copyright (C) 1991-1997, Thomas G. Lane.
|
||||
* libjpeg-turbo Modifications:
|
||||
* Copyright (C) 2009-2011, 2014-2016, 2018, D. R. Commander.
|
||||
* Copyright (C) 2009-2011, 2014-2016, 2018-2019, D. R. Commander.
|
||||
* Copyright (C) 2015, Matthieu Darbois.
|
||||
* For conditions of distribution and use, see the accompanying README.ijg
|
||||
* file.
|
||||
@@ -43,8 +43,8 @@
|
||||
*/
|
||||
|
||||
/* NOTE: Both GCC and Clang define __GNUC__ */
|
||||
#if defined __GNUC__ && (defined __arm__ || defined __aarch64__)
|
||||
#if !defined __thumb__ || defined __thumb2__
|
||||
#if defined(__GNUC__) && (defined(__arm__) || defined(__aarch64__))
|
||||
#if !defined(__thumb__) || defined(__thumb2__)
|
||||
#define USE_CLZ_INTRINSIC
|
||||
#endif
|
||||
#endif
|
||||
@@ -356,6 +356,8 @@ dump_buffer(working_state *state)
|
||||
put_buffer = (put_buffer << size) | code; \
|
||||
}
|
||||
|
||||
#if SIZEOF_SIZE_T != 8 && !defined(_WIN64)
|
||||
|
||||
#define CHECKBUF15() { \
|
||||
if (put_bits > 15) { \
|
||||
EMIT_BYTE() \
|
||||
@@ -363,6 +365,8 @@ dump_buffer(working_state *state)
|
||||
} \
|
||||
}
|
||||
|
||||
#endif
|
||||
|
||||
#define CHECKBUF31() { \
|
||||
if (put_bits > 31) { \
|
||||
EMIT_BYTE() \
|
||||
@@ -428,7 +432,7 @@ dump_buffer(working_state *state)
|
||||
* scanning order-- 1, 8, 16, etc.), then this will produce an encoded block
|
||||
* larger than 200 bytes.
|
||||
*/
|
||||
#define BUFSIZE (DCTSIZE2 * 4)
|
||||
#define BUFSIZE (DCTSIZE2 * 8)
|
||||
|
||||
#define LOAD_BUFFER() { \
|
||||
if (state->free_in_buffer < BUFSIZE) { \
|
||||
|
||||
+1
-1
@@ -492,8 +492,8 @@ prepare_for_pass(j_compress_ptr cinfo)
|
||||
*/
|
||||
master->pass_type = output_pass;
|
||||
master->pass_number++;
|
||||
/*FALLTHROUGH*/
|
||||
#endif
|
||||
/*FALLTHROUGH*/
|
||||
case output_pass:
|
||||
/* Do a data-output pass. */
|
||||
/* We need not repeat per-scan setup if prior optimization pass did it. */
|
||||
|
||||
Vendored
+2
-2
@@ -52,8 +52,8 @@
|
||||
*/
|
||||
|
||||
/* NOTE: Both GCC and Clang define __GNUC__ */
|
||||
#if defined __GNUC__ && (defined __arm__ || defined __aarch64__)
|
||||
#if !defined __thumb__ || defined __thumb2__
|
||||
#if defined(__GNUC__) && (defined(__arm__) || defined(__aarch64__))
|
||||
#if !defined(__thumb__) || defined(__thumb2__)
|
||||
#define USE_CLZ_INTRINSIC
|
||||
#endif
|
||||
#endif
|
||||
|
||||
Vendored
+7
-3
@@ -4,7 +4,7 @@
|
||||
* This file was part of the Independent JPEG Group's software:
|
||||
* Copyright (C) 1991-1997, Thomas G. Lane.
|
||||
* libjpeg-turbo Modifications:
|
||||
* Copyright (C) 2009-2011, 2016, 2018, D. R. Commander.
|
||||
* Copyright (C) 2009-2011, 2016, 2018-2019, D. R. Commander.
|
||||
* For conditions of distribution and use, see the accompanying README.ijg
|
||||
* file.
|
||||
*
|
||||
@@ -589,7 +589,11 @@ decode_mcu_slow(j_decompress_ptr cinfo, JBLOCKROW *MCU_data)
|
||||
if (entropy->dc_needed[blkn]) {
|
||||
/* Convert DC difference to actual value, update last_dc_val */
|
||||
int ci = cinfo->MCU_membership[blkn];
|
||||
s += state.last_dc_val[ci];
|
||||
/* This is really just
|
||||
* s += state.last_dc_val[ci];
|
||||
* It is written this way in order to shut up UBSan.
|
||||
*/
|
||||
s = (int)((unsigned int)s + (unsigned int)state.last_dc_val[ci]);
|
||||
state.last_dc_val[ci] = s;
|
||||
if (block) {
|
||||
/* Output the DC coefficient (assumes jpeg_natural_order[0] = 0) */
|
||||
@@ -684,7 +688,7 @@ decode_mcu_fast(j_decompress_ptr cinfo, JBLOCKROW *MCU_data)
|
||||
|
||||
if (entropy->dc_needed[blkn]) {
|
||||
int ci = cinfo->MCU_membership[blkn];
|
||||
s += state.last_dc_val[ci];
|
||||
s = (int)((unsigned int)s + (unsigned int)state.last_dc_val[ci]);
|
||||
state.last_dc_val[ci] = s;
|
||||
if (block)
|
||||
(*block)[0] = (JCOEF)s;
|
||||
|
||||
Vendored
-2
@@ -429,8 +429,6 @@ h2v2_merged_upsample(j_decompress_ptr cinfo, JSAMPIMAGE input_buf,
|
||||
#define PACK_TWO_PIXELS_LE(l, r) ((r << 16) | l)
|
||||
#define PACK_TWO_PIXELS_BE(l, r) ((l << 16) | r)
|
||||
|
||||
#define PACK_NEED_ALIGNMENT(ptr) (((size_t)(ptr)) & 3)
|
||||
|
||||
#define WRITE_TWO_PIXELS_LE(addr, pixels) { \
|
||||
((INT16 *)(addr))[0] = (INT16)(pixels); \
|
||||
((INT16 *)(addr))[1] = (INT16)((pixels) >> 16); \
|
||||
|
||||
+9
-5
@@ -8,6 +8,7 @@
|
||||
* Copyright (C) 2010, 2015-2016, D. R. Commander.
|
||||
* Copyright (C) 2014, MIPS Technologies, Inc., California.
|
||||
* Copyright (C) 2015, Google, Inc.
|
||||
* Copyright (C) 2019, Arm Limited.
|
||||
* For conditions of distribution and use, see the accompanying README.ijg
|
||||
* file.
|
||||
*
|
||||
@@ -315,9 +316,9 @@ h1v2_fancy_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
|
||||
JSAMPARRAY output_data = *output_data_ptr;
|
||||
JSAMPROW inptr0, inptr1, outptr;
|
||||
#if BITS_IN_JSAMPLE == 8
|
||||
int thiscolsum;
|
||||
int thiscolsum, bias;
|
||||
#else
|
||||
JLONG thiscolsum;
|
||||
JLONG thiscolsum, bias;
|
||||
#endif
|
||||
JDIMENSION colctr;
|
||||
int inrow, outrow, v;
|
||||
@@ -327,15 +328,18 @@ h1v2_fancy_upsample(j_decompress_ptr cinfo, jpeg_component_info *compptr,
|
||||
for (v = 0; v < 2; v++) {
|
||||
/* inptr0 points to nearest input row, inptr1 points to next nearest */
|
||||
inptr0 = input_data[inrow];
|
||||
if (v == 0) /* next nearest is row above */
|
||||
if (v == 0) { /* next nearest is row above */
|
||||
inptr1 = input_data[inrow - 1];
|
||||
else /* next nearest is row below */
|
||||
bias = 1;
|
||||
} else { /* next nearest is row below */
|
||||
inptr1 = input_data[inrow + 1];
|
||||
bias = 2;
|
||||
}
|
||||
outptr = output_data[outrow++];
|
||||
|
||||
for (colctr = 0; colctr < compptr->downsampled_width; colctr++) {
|
||||
thiscolsum = GETJSAMPLE(*inptr0++) * 3 + GETJSAMPLE(*inptr1++);
|
||||
*outptr++ = (JSAMPLE)((thiscolsum + 1) >> 2);
|
||||
*outptr++ = (JSAMPLE)((thiscolsum + bias) >> 2);
|
||||
}
|
||||
}
|
||||
inrow++;
|
||||
|
||||
+1
-1
@@ -1,7 +1,7 @@
|
||||
/*
|
||||
* jfdctint.c
|
||||
*
|
||||
* This file was part of the Independent JPEG Group's software.
|
||||
* This file was part of the Independent JPEG Group's software:
|
||||
* Copyright (C) 1991-1996, Thomas G. Lane.
|
||||
* libjpeg-turbo Modifications:
|
||||
* Copyright (C) 2015, D. R. Commander.
|
||||
|
||||
+1
-1
@@ -1,7 +1,7 @@
|
||||
/*
|
||||
* jidctint.c
|
||||
*
|
||||
* This file was part of the Independent JPEG Group's software.
|
||||
* This file was part of the Independent JPEG Group's software:
|
||||
* Copyright (C) 1991-1998, Thomas G. Lane.
|
||||
* Modification developed 2002-2009 by Guido Vollbeding.
|
||||
* libjpeg-turbo Modifications:
|
||||
|
||||
+1
-1
@@ -1,7 +1,7 @@
|
||||
/*
|
||||
* jidctred.c
|
||||
*
|
||||
* This file was part of the Independent JPEG Group's software.
|
||||
* This file was part of the Independent JPEG Group's software:
|
||||
* Copyright (C) 1994-1998, Thomas G. Lane.
|
||||
* libjpeg-turbo Modifications:
|
||||
* Copyright (C) 2015, D. R. Commander.
|
||||
|
||||
Vendored
-7
@@ -15,13 +15,6 @@ else()
|
||||
ocv_list_filterout(lib_srcs jmemnobs.c)
|
||||
endif()
|
||||
|
||||
if(WINRT)
|
||||
add_definitions(-DNO_GETENV)
|
||||
get_directory_property( DirDefs COMPILE_DEFINITIONS )
|
||||
message(STATUS "Adding NO_GETENV to compiler definitions for WINRT:")
|
||||
message(STATUS " COMPILE_DEFINITIONS = ${DirDefs}")
|
||||
endif()
|
||||
|
||||
# ----------------------------------------------------------------------------------
|
||||
# Define the library target:
|
||||
# ----------------------------------------------------------------------------------
|
||||
|
||||
Vendored
+12
-1
@@ -46,8 +46,19 @@ if(";${CPU_BASELINE_FINAL};" MATCHES "SSE2"
|
||||
add_definitions(-DPNG_INTEL_SSE)
|
||||
endif()
|
||||
|
||||
# set definitions and sources for MIPS
|
||||
if(";${CPU_BASELINE_FINAL};" MATCHES "MSA")
|
||||
list(APPEND lib_srcs mips/mips_init.c mips/filter_msa_intrinsics.c)
|
||||
add_definitions(-DPNG_MIPS_MSA_OPT=2)
|
||||
ocv_warnings_disable(CMAKE_C_FLAGS -Wshadow)
|
||||
else()
|
||||
add_definitions(-DPNG_MIPS_MSA_OPT=0)
|
||||
endif()
|
||||
|
||||
if(PPC64LE OR PPC64)
|
||||
if(ENABLE_VSX AND NOT PPC64)
|
||||
# VSX3 features are backwards compatible
|
||||
if(";${CPU_BASELINE_FINAL};" MATCHES "VSX.*"
|
||||
AND NOT PPC64)
|
||||
list(APPEND lib_srcs powerpc/powerpc_init.c powerpc/filter_vsx_intrinsics.c)
|
||||
add_definitions(-DPNG_POWERPC_VSX_OPT=2)
|
||||
else()
|
||||
|
||||
+808
@@ -0,0 +1,808 @@
|
||||
|
||||
/* filter_msa_intrinsics.c - MSA optimised filter functions
|
||||
*
|
||||
* Copyright (c) 2018 Cosmin Truta
|
||||
* Copyright (c) 2016 Glenn Randers-Pehrson
|
||||
* Written by Mandar Sahastrabuddhe, August 2016.
|
||||
*
|
||||
* This code is released under the libpng license.
|
||||
* For conditions of distribution and use, see the disclaimer
|
||||
* and license in png.h
|
||||
*/
|
||||
|
||||
#include <stdio.h>
|
||||
#include <stdint.h>
|
||||
#include "../pngpriv.h"
|
||||
|
||||
#ifdef PNG_READ_SUPPORTED
|
||||
|
||||
/* This code requires -mfpu=msa on the command line: */
|
||||
#if PNG_MIPS_MSA_IMPLEMENTATION == 1 /* intrinsics code from pngpriv.h */
|
||||
|
||||
#include <msa.h>
|
||||
|
||||
/* libpng row pointers are not necessarily aligned to any particular boundary,
|
||||
* however this code will only work with appropriate alignment. mips/mips_init.c
|
||||
* checks for this (and will not compile unless it is done). This code uses
|
||||
* variants of png_aligncast to avoid compiler warnings.
|
||||
*/
|
||||
#define png_ptr(type,pointer) png_aligncast(type *,pointer)
|
||||
#define png_ptrc(type,pointer) png_aligncastconst(const type *,pointer)
|
||||
|
||||
/* The following relies on a variable 'temp_pointer' being declared with type
|
||||
* 'type'. This is written this way just to hide the GCC strict aliasing
|
||||
* warning; note that the code is safe because there never is an alias between
|
||||
* the input and output pointers.
|
||||
*/
|
||||
#define png_ldr(type,pointer)\
|
||||
(temp_pointer = png_ptr(type,pointer), *temp_pointer)
|
||||
|
||||
#if PNG_MIPS_MSA_OPT > 0
|
||||
|
||||
#ifdef CLANG_BUILD
|
||||
#define MSA_SRLI_B(a, b) __msa_srli_b((v16i8) a, b)
|
||||
|
||||
#define LW(psrc) \
|
||||
( { \
|
||||
uint8_t *psrc_lw_m = (uint8_t *) (psrc); \
|
||||
uint32_t val_m; \
|
||||
\
|
||||
asm volatile ( \
|
||||
"lw %[val_m], %[psrc_lw_m] \n\t" \
|
||||
\
|
||||
: [val_m] "=r" (val_m) \
|
||||
: [psrc_lw_m] "m" (*psrc_lw_m) \
|
||||
); \
|
||||
\
|
||||
val_m; \
|
||||
} )
|
||||
|
||||
#define SH(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sh_m = (uint8_t *) (pdst); \
|
||||
uint16_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sh %[val_m], %[pdst_sh_m] \n\t" \
|
||||
\
|
||||
: [pdst_sh_m] "=m" (*pdst_sh_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#define SW(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sw_m = (uint8_t *) (pdst); \
|
||||
uint32_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sw %[val_m], %[pdst_sw_m] \n\t" \
|
||||
\
|
||||
: [pdst_sw_m] "=m" (*pdst_sw_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#if (__mips == 64)
|
||||
#define SD(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sd_m = (uint8_t *) (pdst); \
|
||||
uint64_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sd %[val_m], %[pdst_sd_m] \n\t" \
|
||||
\
|
||||
: [pdst_sd_m] "=m" (*pdst_sd_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
#else
|
||||
#define SD(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sd_m = (uint8_t *) (pdst); \
|
||||
uint32_t val0_m, val1_m; \
|
||||
\
|
||||
val0_m = (uint32_t) ((val) & 0x00000000FFFFFFFF); \
|
||||
val1_m = (uint32_t) (((val) >> 32) & 0x00000000FFFFFFFF); \
|
||||
\
|
||||
SW(val0_m, pdst_sd_m); \
|
||||
SW(val1_m, pdst_sd_m + 4); \
|
||||
}
|
||||
#endif
|
||||
#else
|
||||
#define MSA_SRLI_B(a, b) (a >> b)
|
||||
|
||||
#if (__mips_isa_rev >= 6)
|
||||
#define LW(psrc) \
|
||||
( { \
|
||||
uint8_t *psrc_lw_m = (uint8_t *) (psrc); \
|
||||
uint32_t val_m; \
|
||||
\
|
||||
asm volatile ( \
|
||||
"lw %[val_m], %[psrc_lw_m] \n\t" \
|
||||
\
|
||||
: [val_m] "=r" (val_m) \
|
||||
: [psrc_lw_m] "m" (*psrc_lw_m) \
|
||||
); \
|
||||
\
|
||||
val_m; \
|
||||
} )
|
||||
|
||||
#define SH(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sh_m = (uint8_t *) (pdst); \
|
||||
uint16_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sh %[val_m], %[pdst_sh_m] \n\t" \
|
||||
\
|
||||
: [pdst_sh_m] "=m" (*pdst_sh_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#define SW(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sw_m = (uint8_t *) (pdst); \
|
||||
uint32_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sw %[val_m], %[pdst_sw_m] \n\t" \
|
||||
\
|
||||
: [pdst_sw_m] "=m" (*pdst_sw_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#if (__mips == 64)
|
||||
#define SD(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sd_m = (uint8_t *) (pdst); \
|
||||
uint64_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"sd %[val_m], %[pdst_sd_m] \n\t" \
|
||||
\
|
||||
: [pdst_sd_m] "=m" (*pdst_sd_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
#else
|
||||
#define SD(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sd_m = (uint8_t *) (pdst); \
|
||||
uint32_t val0_m, val1_m; \
|
||||
\
|
||||
val0_m = (uint32_t) ((val) & 0x00000000FFFFFFFF); \
|
||||
val1_m = (uint32_t) (((val) >> 32) & 0x00000000FFFFFFFF); \
|
||||
\
|
||||
SW(val0_m, pdst_sd_m); \
|
||||
SW(val1_m, pdst_sd_m + 4); \
|
||||
}
|
||||
#endif
|
||||
#else // !(__mips_isa_rev >= 6)
|
||||
#define LW(psrc) \
|
||||
( { \
|
||||
uint8_t *psrc_lw_m = (uint8_t *) (psrc); \
|
||||
uint32_t val_m; \
|
||||
\
|
||||
asm volatile ( \
|
||||
"ulw %[val_m], %[psrc_lw_m] \n\t" \
|
||||
\
|
||||
: [val_m] "=r" (val_m) \
|
||||
: [psrc_lw_m] "m" (*psrc_lw_m) \
|
||||
); \
|
||||
\
|
||||
val_m; \
|
||||
} )
|
||||
|
||||
#define SH(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sh_m = (uint8_t *) (pdst); \
|
||||
uint16_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"ush %[val_m], %[pdst_sh_m] \n\t" \
|
||||
\
|
||||
: [pdst_sh_m] "=m" (*pdst_sh_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#define SW(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sw_m = (uint8_t *) (pdst); \
|
||||
uint32_t val_m = (val); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"usw %[val_m], %[pdst_sw_m] \n\t" \
|
||||
\
|
||||
: [pdst_sw_m] "=m" (*pdst_sw_m) \
|
||||
: [val_m] "r" (val_m) \
|
||||
); \
|
||||
}
|
||||
|
||||
#define SD(val, pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_sd_m = (uint8_t *) (pdst); \
|
||||
uint32_t val0_m, val1_m; \
|
||||
\
|
||||
val0_m = (uint32_t) ((val) & 0x00000000FFFFFFFF); \
|
||||
val1_m = (uint32_t) (((val) >> 32) & 0x00000000FFFFFFFF); \
|
||||
\
|
||||
SW(val0_m, pdst_sd_m); \
|
||||
SW(val1_m, pdst_sd_m + 4); \
|
||||
}
|
||||
|
||||
#define SW_ZERO(pdst) \
|
||||
{ \
|
||||
uint8_t *pdst_m = (uint8_t *) (pdst); \
|
||||
\
|
||||
asm volatile ( \
|
||||
"usw $0, %[pdst_m] \n\t" \
|
||||
\
|
||||
: [pdst_m] "=m" (*pdst_m) \
|
||||
: \
|
||||
); \
|
||||
}
|
||||
#endif // (__mips_isa_rev >= 6)
|
||||
#endif
|
||||
|
||||
#define LD_B(RTYPE, psrc) *((RTYPE *) (psrc))
|
||||
#define LD_UB(...) LD_B(v16u8, __VA_ARGS__)
|
||||
#define LD_B2(RTYPE, psrc, stride, out0, out1) \
|
||||
{ \
|
||||
out0 = LD_B(RTYPE, (psrc)); \
|
||||
out1 = LD_B(RTYPE, (psrc) + stride); \
|
||||
}
|
||||
#define LD_UB2(...) LD_B2(v16u8, __VA_ARGS__)
|
||||
#define LD_B4(RTYPE, psrc, stride, out0, out1, out2, out3) \
|
||||
{ \
|
||||
LD_B2(RTYPE, (psrc), stride, out0, out1); \
|
||||
LD_B2(RTYPE, (psrc) + 2 * stride , stride, out2, out3); \
|
||||
}
|
||||
#define LD_UB4(...) LD_B4(v16u8, __VA_ARGS__)
|
||||
|
||||
#define ST_B(RTYPE, in, pdst) *((RTYPE *) (pdst)) = (in)
|
||||
#define ST_UB(...) ST_B(v16u8, __VA_ARGS__)
|
||||
#define ST_B2(RTYPE, in0, in1, pdst, stride) \
|
||||
{ \
|
||||
ST_B(RTYPE, in0, (pdst)); \
|
||||
ST_B(RTYPE, in1, (pdst) + stride); \
|
||||
}
|
||||
#define ST_UB2(...) ST_B2(v16u8, __VA_ARGS__)
|
||||
#define ST_B4(RTYPE, in0, in1, in2, in3, pdst, stride) \
|
||||
{ \
|
||||
ST_B2(RTYPE, in0, in1, (pdst), stride); \
|
||||
ST_B2(RTYPE, in2, in3, (pdst) + 2 * stride, stride); \
|
||||
}
|
||||
#define ST_UB4(...) ST_B4(v16u8, __VA_ARGS__)
|
||||
|
||||
#define ADD2(in0, in1, in2, in3, out0, out1) \
|
||||
{ \
|
||||
out0 = in0 + in1; \
|
||||
out1 = in2 + in3; \
|
||||
}
|
||||
#define ADD3(in0, in1, in2, in3, in4, in5, \
|
||||
out0, out1, out2) \
|
||||
{ \
|
||||
ADD2(in0, in1, in2, in3, out0, out1); \
|
||||
out2 = in4 + in5; \
|
||||
}
|
||||
#define ADD4(in0, in1, in2, in3, in4, in5, in6, in7, \
|
||||
out0, out1, out2, out3) \
|
||||
{ \
|
||||
ADD2(in0, in1, in2, in3, out0, out1); \
|
||||
ADD2(in4, in5, in6, in7, out2, out3); \
|
||||
}
|
||||
|
||||
#define ILVR_B2(RTYPE, in0, in1, in2, in3, out0, out1) \
|
||||
{ \
|
||||
out0 = (RTYPE) __msa_ilvr_b((v16i8) in0, (v16i8) in1); \
|
||||
out1 = (RTYPE) __msa_ilvr_b((v16i8) in2, (v16i8) in3); \
|
||||
}
|
||||
#define ILVR_B2_SH(...) ILVR_B2(v8i16, __VA_ARGS__)
|
||||
|
||||
#define HSUB_UB2(RTYPE, in0, in1, out0, out1) \
|
||||
{ \
|
||||
out0 = (RTYPE) __msa_hsub_u_h((v16u8) in0, (v16u8) in0); \
|
||||
out1 = (RTYPE) __msa_hsub_u_h((v16u8) in1, (v16u8) in1); \
|
||||
}
|
||||
#define HSUB_UB2_SH(...) HSUB_UB2(v8i16, __VA_ARGS__)
|
||||
|
||||
#define SLDI_B2_0(RTYPE, in0, in1, out0, out1, slide_val) \
|
||||
{ \
|
||||
v16i8 zero_m = { 0 }; \
|
||||
out0 = (RTYPE) __msa_sldi_b((v16i8) zero_m, (v16i8) in0, slide_val); \
|
||||
out1 = (RTYPE) __msa_sldi_b((v16i8) zero_m, (v16i8) in1, slide_val); \
|
||||
}
|
||||
#define SLDI_B2_0_UB(...) SLDI_B2_0(v16u8, __VA_ARGS__)
|
||||
|
||||
#define SLDI_B3_0(RTYPE, in0, in1, in2, out0, out1, out2, slide_val) \
|
||||
{ \
|
||||
v16i8 zero_m = { 0 }; \
|
||||
SLDI_B2_0(RTYPE, in0, in1, out0, out1, slide_val); \
|
||||
out2 = (RTYPE) __msa_sldi_b((v16i8) zero_m, (v16i8) in2, slide_val); \
|
||||
}
|
||||
#define SLDI_B3_0_UB(...) SLDI_B3_0(v16u8, __VA_ARGS__)
|
||||
|
||||
#define ILVEV_W2(RTYPE, in0, in1, in2, in3, out0, out1) \
|
||||
{ \
|
||||
out0 = (RTYPE) __msa_ilvev_w((v4i32) in1, (v4i32) in0); \
|
||||
out1 = (RTYPE) __msa_ilvev_w((v4i32) in3, (v4i32) in2); \
|
||||
}
|
||||
#define ILVEV_W2_UB(...) ILVEV_W2(v16u8, __VA_ARGS__)
|
||||
|
||||
#define ADD_ABS_H3(RTYPE, in0, in1, in2, out0, out1, out2) \
|
||||
{ \
|
||||
RTYPE zero = {0}; \
|
||||
\
|
||||
out0 = __msa_add_a_h((v8i16) zero, in0); \
|
||||
out1 = __msa_add_a_h((v8i16) zero, in1); \
|
||||
out2 = __msa_add_a_h((v8i16) zero, in2); \
|
||||
}
|
||||
#define ADD_ABS_H3_SH(...) ADD_ABS_H3(v8i16, __VA_ARGS__)
|
||||
|
||||
#define VSHF_B2(RTYPE, in0, in1, in2, in3, mask0, mask1, out0, out1) \
|
||||
{ \
|
||||
out0 = (RTYPE) __msa_vshf_b((v16i8) mask0, (v16i8) in1, (v16i8) in0); \
|
||||
out1 = (RTYPE) __msa_vshf_b((v16i8) mask1, (v16i8) in3, (v16i8) in2); \
|
||||
}
|
||||
#define VSHF_B2_UB(...) VSHF_B2(v16u8, __VA_ARGS__)
|
||||
|
||||
#define CMP_AND_SELECT(inp0, inp1, inp2, inp3, inp4, inp5, out0) \
|
||||
{ \
|
||||
v8i16 _sel_h0, _sel_h1; \
|
||||
v16u8 _sel_b0, _sel_b1; \
|
||||
_sel_h0 = (v8i16) __msa_clt_u_h((v8u16) inp1, (v8u16) inp0); \
|
||||
_sel_b0 = (v16u8) __msa_pckev_b((v16i8) _sel_h0, (v16i8) _sel_h0); \
|
||||
inp0 = (v8i16) __msa_bmnz_v((v16u8) inp0, (v16u8) inp1, (v16u8) _sel_h0); \
|
||||
inp4 = (v16u8) __msa_bmnz_v(inp3, inp4, _sel_b0); \
|
||||
_sel_h1 = (v8i16) __msa_clt_u_h((v8u16) inp2, (v8u16) inp0); \
|
||||
_sel_b1 = (v16u8) __msa_pckev_b((v16i8) _sel_h1, (v16i8) _sel_h1); \
|
||||
inp4 = (v16u8) __msa_bmnz_v(inp4, inp5, _sel_b1); \
|
||||
out0 += inp4; \
|
||||
}
|
||||
|
||||
void png_read_filter_row_up_msa(png_row_infop row_info, png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
size_t i, cnt, cnt16, cnt32;
|
||||
size_t istop = row_info->rowbytes;
|
||||
png_bytep rp = row;
|
||||
png_const_bytep pp = prev_row;
|
||||
v16u8 src0, src1, src2, src3, src4, src5, src6, src7;
|
||||
|
||||
for (i = 0; i < (istop >> 6); i++)
|
||||
{
|
||||
LD_UB4(rp, 16, src0, src1, src2, src3);
|
||||
LD_UB4(pp, 16, src4, src5, src6, src7);
|
||||
pp += 64;
|
||||
|
||||
ADD4(src0, src4, src1, src5, src2, src6, src3, src7,
|
||||
src0, src1, src2, src3);
|
||||
|
||||
ST_UB4(src0, src1, src2, src3, rp, 16);
|
||||
rp += 64;
|
||||
}
|
||||
|
||||
if (istop & 0x3F)
|
||||
{
|
||||
cnt32 = istop & 0x20;
|
||||
cnt16 = istop & 0x10;
|
||||
cnt = istop & 0xF;
|
||||
|
||||
if(cnt32)
|
||||
{
|
||||
if (cnt16 && cnt)
|
||||
{
|
||||
LD_UB4(rp, 16, src0, src1, src2, src3);
|
||||
LD_UB4(pp, 16, src4, src5, src6, src7);
|
||||
|
||||
ADD4(src0, src4, src1, src5, src2, src6, src3, src7,
|
||||
src0, src1, src2, src3);
|
||||
|
||||
ST_UB4(src0, src1, src2, src3, rp, 16);
|
||||
rp += 64;
|
||||
}
|
||||
else if (cnt16 || cnt)
|
||||
{
|
||||
LD_UB2(rp, 16, src0, src1);
|
||||
LD_UB2(pp, 16, src4, src5);
|
||||
pp += 32;
|
||||
src2 = LD_UB(rp + 32);
|
||||
src6 = LD_UB(pp);
|
||||
|
||||
ADD3(src0, src4, src1, src5, src2, src6, src0, src1, src2);
|
||||
|
||||
ST_UB2(src0, src1, rp, 16);
|
||||
rp += 32;
|
||||
ST_UB(src2, rp);
|
||||
rp += 16;
|
||||
}
|
||||
else
|
||||
{
|
||||
LD_UB2(rp, 16, src0, src1);
|
||||
LD_UB2(pp, 16, src4, src5);
|
||||
|
||||
ADD2(src0, src4, src1, src5, src0, src1);
|
||||
|
||||
ST_UB2(src0, src1, rp, 16);
|
||||
rp += 32;
|
||||
}
|
||||
}
|
||||
else if (cnt16 && cnt)
|
||||
{
|
||||
LD_UB2(rp, 16, src0, src1);
|
||||
LD_UB2(pp, 16, src4, src5);
|
||||
|
||||
ADD2(src0, src4, src1, src5, src0, src1);
|
||||
|
||||
ST_UB2(src0, src1, rp, 16);
|
||||
rp += 32;
|
||||
}
|
||||
else if (cnt16 || cnt)
|
||||
{
|
||||
src0 = LD_UB(rp);
|
||||
src4 = LD_UB(pp);
|
||||
pp += 16;
|
||||
|
||||
src0 += src4;
|
||||
|
||||
ST_UB(src0, rp);
|
||||
rp += 16;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_sub4_msa(png_row_infop row_info, png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
size_t count;
|
||||
size_t istop = row_info->rowbytes;
|
||||
png_bytep src = row;
|
||||
png_bytep nxt = row + 4;
|
||||
int32_t inp0;
|
||||
v16u8 src0, src1, src2, src3, src4;
|
||||
v16u8 dst0, dst1;
|
||||
v16u8 zero = { 0 };
|
||||
|
||||
istop -= 4;
|
||||
|
||||
inp0 = LW(src);
|
||||
src += 4;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
|
||||
for (count = 0; count < istop; count += 16)
|
||||
{
|
||||
src1 = LD_UB(src);
|
||||
src += 16;
|
||||
|
||||
src2 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 4);
|
||||
src3 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 8);
|
||||
src4 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 12);
|
||||
src1 += src0;
|
||||
src2 += src1;
|
||||
src3 += src2;
|
||||
src4 += src3;
|
||||
src0 = src4;
|
||||
ILVEV_W2_UB(src1, src2, src3, src4, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_pckev_d((v2i64) dst1, (v2i64) dst0);
|
||||
|
||||
ST_UB(dst0, nxt);
|
||||
nxt += 16;
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_sub3_msa(png_row_infop row_info, png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
size_t count;
|
||||
size_t istop = row_info->rowbytes;
|
||||
png_bytep src = row;
|
||||
png_bytep nxt = row + 3;
|
||||
int64_t out0;
|
||||
int32_t inp0, out1;
|
||||
v16u8 src0, src1, src2, src3, src4, dst0, dst1;
|
||||
v16u8 zero = { 0 };
|
||||
v16i8 mask0 = { 0, 1, 2, 16, 17, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
|
||||
v16i8 mask1 = { 0, 1, 2, 3, 4, 5, 16, 17, 18, 19, 20, 21, 0, 0, 0, 0 };
|
||||
|
||||
istop -= 3;
|
||||
|
||||
inp0 = LW(src);
|
||||
src += 3;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
|
||||
for (count = 0; count < istop; count += 12)
|
||||
{
|
||||
src1 = LD_UB(src);
|
||||
src += 12;
|
||||
|
||||
src2 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 3);
|
||||
src3 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 6);
|
||||
src4 = (v16u8) __msa_sldi_b((v16i8) zero, (v16i8) src1, 9);
|
||||
src1 += src0;
|
||||
src2 += src1;
|
||||
src3 += src2;
|
||||
src4 += src3;
|
||||
src0 = src4;
|
||||
VSHF_B2_UB(src1, src2, src3, src4, mask0, mask0, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_vshf_b(mask1, (v16i8) dst1, (v16i8) dst0);
|
||||
out0 = __msa_copy_s_d((v2i64) dst0, 0);
|
||||
out1 = __msa_copy_s_w((v4i32) dst0, 2);
|
||||
|
||||
SD(out0, nxt);
|
||||
nxt += 8;
|
||||
SW(out1, nxt);
|
||||
nxt += 4;
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_avg4_msa(png_row_infop row_info, png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
size_t i;
|
||||
png_bytep src = row;
|
||||
png_bytep nxt = row;
|
||||
png_const_bytep pp = prev_row;
|
||||
size_t istop = row_info->rowbytes - 4;
|
||||
int32_t inp0, inp1, out0;
|
||||
v16u8 src0, src1, src2, src3, src4, src5, src6, src7, src8, src9, dst0, dst1;
|
||||
v16u8 zero = { 0 };
|
||||
|
||||
inp0 = LW(pp);
|
||||
pp += 4;
|
||||
inp1 = LW(src);
|
||||
src += 4;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
src1 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp1);
|
||||
src0 = (v16u8) MSA_SRLI_B(src0, 1);
|
||||
src1 += src0;
|
||||
out0 = __msa_copy_s_w((v4i32) src1, 0);
|
||||
SW(out0, nxt);
|
||||
nxt += 4;
|
||||
|
||||
for (i = 0; i < istop; i += 16)
|
||||
{
|
||||
src2 = LD_UB(pp);
|
||||
pp += 16;
|
||||
src6 = LD_UB(src);
|
||||
src += 16;
|
||||
|
||||
SLDI_B2_0_UB(src2, src6, src3, src7, 4);
|
||||
SLDI_B2_0_UB(src2, src6, src4, src8, 8);
|
||||
SLDI_B2_0_UB(src2, src6, src5, src9, 12);
|
||||
src2 = __msa_ave_u_b(src2, src1);
|
||||
src6 += src2;
|
||||
src3 = __msa_ave_u_b(src3, src6);
|
||||
src7 += src3;
|
||||
src4 = __msa_ave_u_b(src4, src7);
|
||||
src8 += src4;
|
||||
src5 = __msa_ave_u_b(src5, src8);
|
||||
src9 += src5;
|
||||
src1 = src9;
|
||||
ILVEV_W2_UB(src6, src7, src8, src9, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_pckev_d((v2i64) dst1, (v2i64) dst0);
|
||||
|
||||
ST_UB(dst0, nxt);
|
||||
nxt += 16;
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_avg3_msa(png_row_infop row_info, png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
size_t i;
|
||||
png_bytep src = row;
|
||||
png_bytep nxt = row;
|
||||
png_const_bytep pp = prev_row;
|
||||
size_t istop = row_info->rowbytes - 3;
|
||||
int64_t out0;
|
||||
int32_t inp0, inp1, out1;
|
||||
int16_t out2;
|
||||
v16u8 src0, src1, src2, src3, src4, src5, src6, src7, src8, src9, dst0, dst1;
|
||||
v16u8 zero = { 0 };
|
||||
v16i8 mask0 = { 0, 1, 2, 16, 17, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
|
||||
v16i8 mask1 = { 0, 1, 2, 3, 4, 5, 16, 17, 18, 19, 20, 21, 0, 0, 0, 0 };
|
||||
|
||||
inp0 = LW(pp);
|
||||
pp += 3;
|
||||
inp1 = LW(src);
|
||||
src += 3;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
src1 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp1);
|
||||
src0 = (v16u8) MSA_SRLI_B(src0, 1);
|
||||
src1 += src0;
|
||||
out2 = __msa_copy_s_h((v8i16) src1, 0);
|
||||
SH(out2, nxt);
|
||||
nxt += 2;
|
||||
nxt[0] = src1[2];
|
||||
nxt++;
|
||||
|
||||
for (i = 0; i < istop; i += 12)
|
||||
{
|
||||
src2 = LD_UB(pp);
|
||||
pp += 12;
|
||||
src6 = LD_UB(src);
|
||||
src += 12;
|
||||
|
||||
SLDI_B2_0_UB(src2, src6, src3, src7, 3);
|
||||
SLDI_B2_0_UB(src2, src6, src4, src8, 6);
|
||||
SLDI_B2_0_UB(src2, src6, src5, src9, 9);
|
||||
src2 = __msa_ave_u_b(src2, src1);
|
||||
src6 += src2;
|
||||
src3 = __msa_ave_u_b(src3, src6);
|
||||
src7 += src3;
|
||||
src4 = __msa_ave_u_b(src4, src7);
|
||||
src8 += src4;
|
||||
src5 = __msa_ave_u_b(src5, src8);
|
||||
src9 += src5;
|
||||
src1 = src9;
|
||||
VSHF_B2_UB(src6, src7, src8, src9, mask0, mask0, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_vshf_b(mask1, (v16i8) dst1, (v16i8) dst0);
|
||||
out0 = __msa_copy_s_d((v2i64) dst0, 0);
|
||||
out1 = __msa_copy_s_w((v4i32) dst0, 2);
|
||||
|
||||
SD(out0, nxt);
|
||||
nxt += 8;
|
||||
SW(out1, nxt);
|
||||
nxt += 4;
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_paeth4_msa(png_row_infop row_info,
|
||||
png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
int32_t count, rp_end;
|
||||
png_bytep nxt;
|
||||
png_const_bytep prev_nxt;
|
||||
int32_t inp0, inp1, res0;
|
||||
v16u8 src0, src1, src2, src3, src4, src5, src6, src7, src8, src9;
|
||||
v16u8 src10, src11, src12, src13, dst0, dst1;
|
||||
v8i16 vec0, vec1, vec2;
|
||||
v16u8 zero = { 0 };
|
||||
|
||||
nxt = row;
|
||||
prev_nxt = prev_row;
|
||||
|
||||
inp0 = LW(nxt);
|
||||
inp1 = LW(prev_nxt);
|
||||
prev_nxt += 4;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
src1 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp1);
|
||||
|
||||
src1 += src0;
|
||||
res0 = __msa_copy_s_w((v4i32) src1, 0);
|
||||
|
||||
SW(res0, nxt);
|
||||
nxt += 4;
|
||||
|
||||
/* Remainder */
|
||||
rp_end = row_info->rowbytes - 4;
|
||||
|
||||
for (count = 0; count < rp_end; count += 16)
|
||||
{
|
||||
src2 = LD_UB(prev_nxt);
|
||||
prev_nxt += 16;
|
||||
src6 = LD_UB(prev_row);
|
||||
prev_row += 16;
|
||||
src10 = LD_UB(nxt);
|
||||
|
||||
SLDI_B3_0_UB(src2, src6, src10, src3, src7, src11, 4);
|
||||
SLDI_B3_0_UB(src2, src6, src10, src4, src8, src12, 8);
|
||||
SLDI_B3_0_UB(src2, src6, src10, src5, src9, src13, 12);
|
||||
ILVR_B2_SH(src2, src6, src1, src6, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src1, src2, src6, src10);
|
||||
ILVR_B2_SH(src3, src7, src10, src7, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src10, src3, src7, src11);
|
||||
ILVR_B2_SH(src4, src8, src11, src8, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src11, src4, src8, src12);
|
||||
ILVR_B2_SH(src5, src9, src12, src9, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src12, src5, src9, src13);
|
||||
src1 = src13;
|
||||
ILVEV_W2_UB(src10, src11, src12, src1, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_pckev_d((v2i64) dst1, (v2i64) dst0);
|
||||
|
||||
ST_UB(dst0, nxt);
|
||||
nxt += 16;
|
||||
}
|
||||
}
|
||||
|
||||
void png_read_filter_row_paeth3_msa(png_row_infop row_info,
|
||||
png_bytep row,
|
||||
png_const_bytep prev_row)
|
||||
{
|
||||
int32_t count, rp_end;
|
||||
png_bytep nxt;
|
||||
png_const_bytep prev_nxt;
|
||||
int64_t out0;
|
||||
int32_t inp0, inp1, out1;
|
||||
int16_t out2;
|
||||
v16u8 src0, src1, src2, src3, src4, src5, src6, src7, src8, src9, dst0, dst1;
|
||||
v16u8 src10, src11, src12, src13;
|
||||
v8i16 vec0, vec1, vec2;
|
||||
v16u8 zero = { 0 };
|
||||
v16i8 mask0 = { 0, 1, 2, 16, 17, 18, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
|
||||
v16i8 mask1 = { 0, 1, 2, 3, 4, 5, 16, 17, 18, 19, 20, 21, 0, 0, 0, 0 };
|
||||
|
||||
nxt = row;
|
||||
prev_nxt = prev_row;
|
||||
|
||||
inp0 = LW(nxt);
|
||||
inp1 = LW(prev_nxt);
|
||||
prev_nxt += 3;
|
||||
src0 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp0);
|
||||
src1 = (v16u8) __msa_insert_w((v4i32) zero, 0, inp1);
|
||||
|
||||
src1 += src0;
|
||||
out2 = __msa_copy_s_h((v8i16) src1, 0);
|
||||
|
||||
SH(out2, nxt);
|
||||
nxt += 2;
|
||||
nxt[0] = src1[2];
|
||||
nxt++;
|
||||
|
||||
/* Remainder */
|
||||
rp_end = row_info->rowbytes - 3;
|
||||
|
||||
for (count = 0; count < rp_end; count += 12)
|
||||
{
|
||||
src2 = LD_UB(prev_nxt);
|
||||
prev_nxt += 12;
|
||||
src6 = LD_UB(prev_row);
|
||||
prev_row += 12;
|
||||
src10 = LD_UB(nxt);
|
||||
|
||||
SLDI_B3_0_UB(src2, src6, src10, src3, src7, src11, 3);
|
||||
SLDI_B3_0_UB(src2, src6, src10, src4, src8, src12, 6);
|
||||
SLDI_B3_0_UB(src2, src6, src10, src5, src9, src13, 9);
|
||||
ILVR_B2_SH(src2, src6, src1, src6, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src1, src2, src6, src10);
|
||||
ILVR_B2_SH(src3, src7, src10, src7, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src10, src3, src7, src11);
|
||||
ILVR_B2_SH(src4, src8, src11, src8, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src11, src4, src8, src12);
|
||||
ILVR_B2_SH(src5, src9, src12, src9, vec0, vec1);
|
||||
HSUB_UB2_SH(vec0, vec1, vec0, vec1);
|
||||
vec2 = vec0 + vec1;
|
||||
ADD_ABS_H3_SH(vec0, vec1, vec2, vec0, vec1, vec2);
|
||||
CMP_AND_SELECT(vec0, vec1, vec2, src12, src5, src9, src13);
|
||||
src1 = src13;
|
||||
VSHF_B2_UB(src10, src11, src12, src13, mask0, mask0, dst0, dst1);
|
||||
dst0 = (v16u8) __msa_vshf_b(mask1, (v16i8) dst1, (v16i8) dst0);
|
||||
out0 = __msa_copy_s_d((v2i64) dst0, 0);
|
||||
out1 = __msa_copy_s_w((v4i32) dst0, 2);
|
||||
|
||||
SD(out0, nxt);
|
||||
nxt += 8;
|
||||
SW(out1, nxt);
|
||||
nxt += 4;
|
||||
}
|
||||
}
|
||||
|
||||
#endif /* PNG_MIPS_MSA_OPT > 0 */
|
||||
#endif /* PNG_MIPS_MSA_IMPLEMENTATION == 1 (intrinsics) */
|
||||
#endif /* READ */
|
||||
Vendored
+127
@@ -0,0 +1,127 @@
|
||||
|
||||
/* mips_init.c - MSA optimised filter functions
|
||||
*
|
||||
* Copyright (c) 2018 Cosmin Truta
|
||||
* Copyright (c) 2016 Glenn Randers-Pehrson
|
||||
* Written by Mandar Sahastrabuddhe, 2016.
|
||||
*
|
||||
* This code is released under the libpng license.
|
||||
* For conditions of distribution and use, see the disclaimer
|
||||
* and license in png.h
|
||||
*/
|
||||
|
||||
/* Below, after checking __linux__, various non-C90 POSIX 1003.1 functions are
|
||||
* called.
|
||||
*/
|
||||
#define _POSIX_SOURCE 1
|
||||
|
||||
#include <stdio.h>
|
||||
#include "../pngpriv.h"
|
||||
|
||||
#ifdef PNG_READ_SUPPORTED
|
||||
|
||||
#if PNG_MIPS_MSA_OPT > 0
|
||||
#ifdef PNG_MIPS_MSA_CHECK_SUPPORTED /* Do run-time checks */
|
||||
/* WARNING: it is strongly recommended that you do not build libpng with
|
||||
* run-time checks for CPU features if at all possible. In the case of the MIPS
|
||||
* MSA instructions there is no processor-specific way of detecting the
|
||||
* presence of the required support, therefore run-time detection is extremely
|
||||
* OS specific.
|
||||
*
|
||||
* You may set the macro PNG_MIPS_MSA_FILE to the file name of file containing
|
||||
* a fragment of C source code which defines the png_have_msa function. There
|
||||
* are a number of implementations in contrib/mips-msa, but the only one that
|
||||
* has partial support is contrib/mips-msa/linux.c - a generic Linux
|
||||
* implementation which reads /proc/cpufino.
|
||||
*/
|
||||
#ifndef PNG_MIPS_MSA_FILE
|
||||
# ifdef __linux__
|
||||
# define PNG_MIPS_MSA_FILE "contrib/mips-msa/linux.c"
|
||||
# endif
|
||||
#endif
|
||||
|
||||
#ifdef PNG_MIPS_MSA_FILE
|
||||
|
||||
#include <signal.h> /* for sig_atomic_t */
|
||||
static int png_have_msa(png_structp png_ptr);
|
||||
#include PNG_MIPS_MSA_FILE
|
||||
|
||||
#else /* PNG_MIPS_MSA_FILE */
|
||||
# error "PNG_MIPS_MSA_FILE undefined: no support for run-time MIPS MSA checks"
|
||||
#endif /* PNG_MIPS_MSA_FILE */
|
||||
#endif /* PNG_MIPS_MSA_CHECK_SUPPORTED */
|
||||
|
||||
#ifndef PNG_ALIGNED_MEMORY_SUPPORTED
|
||||
# error "ALIGNED_MEMORY is required; set: -DPNG_ALIGNED_MEMORY_SUPPORTED"
|
||||
#endif
|
||||
|
||||
void
|
||||
png_init_filter_functions_msa(png_structp pp, unsigned int bpp)
|
||||
{
|
||||
/* The switch statement is compiled in for MIPS_MSA_API, the call to
|
||||
* png_have_msa is compiled in for MIPS_MSA_CHECK. If both are defined
|
||||
* the check is only performed if the API has not set the MSA option on
|
||||
* or off explicitly. In this case the check controls what happens.
|
||||
*/
|
||||
|
||||
#ifdef PNG_MIPS_MSA_API_SUPPORTED
|
||||
switch ((pp->options >> PNG_MIPS_MSA) & 3)
|
||||
{
|
||||
case PNG_OPTION_UNSET:
|
||||
/* Allow the run-time check to execute if it has been enabled -
|
||||
* thus both API and CHECK can be turned on. If it isn't supported
|
||||
* this case will fall through to the 'default' below, which just
|
||||
* returns.
|
||||
*/
|
||||
#ifdef PNG_MIPS_MSA_CHECK_SUPPORTED
|
||||
{
|
||||
static volatile sig_atomic_t no_msa = -1; /* not checked */
|
||||
|
||||
if (no_msa < 0)
|
||||
no_msa = !png_have_msa(pp);
|
||||
|
||||
if (no_msa)
|
||||
return;
|
||||
}
|
||||
#endif /* PNG_MIPS_MSA_CHECK_SUPPORTED */
|
||||
break;
|
||||
|
||||
default: /* OFF or INVALID */
|
||||
return;
|
||||
|
||||
case PNG_OPTION_ON:
|
||||
/* Option turned on */
|
||||
break;
|
||||
}
|
||||
/* IMPORTANT: any new external functions used here must be declared using
|
||||
* PNG_INTERNAL_FUNCTION in ../pngpriv.h. This is required so that the
|
||||
* 'prefix' option to configure works:
|
||||
*
|
||||
* ./configure --with-libpng-prefix=foobar_
|
||||
*
|
||||
* Verify you have got this right by running the above command, doing a build
|
||||
* and examining pngprefix.h; it must contain a #define for every external
|
||||
* function you add. (Notice that this happens automatically for the
|
||||
* initialization function.)
|
||||
*/
|
||||
pp->read_filter[PNG_FILTER_VALUE_UP-1] = png_read_filter_row_up_msa;
|
||||
|
||||
if (bpp == 3)
|
||||
{
|
||||
pp->read_filter[PNG_FILTER_VALUE_SUB-1] = png_read_filter_row_sub3_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_AVG-1] = png_read_filter_row_avg3_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_PAETH-1] = png_read_filter_row_paeth3_msa;
|
||||
}
|
||||
else if (bpp == 4)
|
||||
{
|
||||
pp->read_filter[PNG_FILTER_VALUE_SUB-1] = png_read_filter_row_sub4_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_AVG-1] = png_read_filter_row_avg4_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_PAETH-1] = png_read_filter_row_paeth4_msa;
|
||||
}
|
||||
#else
|
||||
(void)pp;
|
||||
(void)bpp;
|
||||
#endif /* PNG_MIPS_MSA_API_SUPPORTED */
|
||||
}
|
||||
#endif /* PNG_MIPS_MSA_OPT > 0 */
|
||||
#endif /* READ */
|
||||
+53
@@ -0,0 +1,53 @@
|
||||
diff --git a/3rdparty/libpng/mips/mips_init.c b/3rdparty/libpng/mips/mips_init.c
|
||||
index 8dd283deef..6a061cccfa 100644
|
||||
--- a/3rdparty/libpng/mips/mips_init.c
|
||||
+++ b/3rdparty/libpng/mips/mips_init.c
|
||||
@@ -73,7 +73,6 @@ png_init_filter_functions_msa(png_structp pp, unsigned int bpp)
|
||||
* this case will fall through to the 'default' below, which just
|
||||
* returns.
|
||||
*/
|
||||
-#endif /* PNG_MIPS_MSA_API_SUPPORTED */
|
||||
#ifdef PNG_MIPS_MSA_CHECK_SUPPORTED
|
||||
{
|
||||
static volatile sig_atomic_t no_msa = -1; /* not checked */
|
||||
@@ -84,12 +83,9 @@ png_init_filter_functions_msa(png_structp pp, unsigned int bpp)
|
||||
if (no_msa)
|
||||
return;
|
||||
}
|
||||
-#ifdef PNG_MIPS_MSA_API_SUPPORTED
|
||||
- break;
|
||||
-#endif
|
||||
#endif /* PNG_MIPS_MSA_CHECK_SUPPORTED */
|
||||
+ break;
|
||||
|
||||
-#ifdef PNG_MIPS_MSA_API_SUPPORTED
|
||||
default: /* OFF or INVALID */
|
||||
return;
|
||||
|
||||
@@ -97,8 +93,6 @@ png_init_filter_functions_msa(png_structp pp, unsigned int bpp)
|
||||
/* Option turned on */
|
||||
break;
|
||||
}
|
||||
-#endif
|
||||
-
|
||||
/* IMPORTANT: any new external functions used here must be declared using
|
||||
* PNG_INTERNAL_FUNCTION in ../pngpriv.h. This is required so that the
|
||||
* 'prefix' option to configure works:
|
||||
@@ -118,13 +112,16 @@ png_init_filter_functions_msa(png_structp pp, unsigned int bpp)
|
||||
pp->read_filter[PNG_FILTER_VALUE_AVG-1] = png_read_filter_row_avg3_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_PAETH-1] = png_read_filter_row_paeth3_msa;
|
||||
}
|
||||
-
|
||||
else if (bpp == 4)
|
||||
{
|
||||
pp->read_filter[PNG_FILTER_VALUE_SUB-1] = png_read_filter_row_sub4_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_AVG-1] = png_read_filter_row_avg4_msa;
|
||||
pp->read_filter[PNG_FILTER_VALUE_PAETH-1] = png_read_filter_row_paeth4_msa;
|
||||
}
|
||||
+#else
|
||||
+ (void)pp;
|
||||
+ (void)bpp;
|
||||
+#endif /* PNG_MIPS_MSA_API_SUPPORTED */
|
||||
}
|
||||
#endif /* PNG_MIPS_MSA_OPT > 0 */
|
||||
#endif /* READ */
|
||||
Vendored
+91
@@ -0,0 +1,91 @@
|
||||
# COPYRIGHT
|
||||
# Licensed to the Apache Software Foundation (ASF) under one
|
||||
# or more contributor license agreements. See the NOTICE file
|
||||
# distributed with this work for additional information
|
||||
# regarding copyright ownership. The ASF licenses this file
|
||||
# to you under the Apache License, Version 2.0 (the
|
||||
# License); you may not use this file except in compliance
|
||||
# with the License. You may obtain a copy of the License at
|
||||
#
|
||||
# http://www.apache.org/licenses/LICENSE-2.0
|
||||
#
|
||||
# Unless required by applicable law or agreed to in writing,
|
||||
# software distributed under the License is distributed on an
|
||||
# AS IS BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
|
||||
# KIND, either express or implied. See the License for the
|
||||
# specific language governing permissions and limitations
|
||||
# under the License.
|
||||
#
|
||||
# Copyright (c) 2020, OPEN AI LAB
|
||||
# Author: qtang@openailab.com or https://github.com/BUG1989
|
||||
# qli@openailab.com
|
||||
# sqfu@openailab.com
|
||||
#
|
||||
|
||||
SET(TENGINE_COMMIT_VERSION "2f3cd86217f3530c8e4a82f3ed5af14c7a4e3943")
|
||||
SET(OCV_TENGINE_DIR "${OpenCV_BINARY_DIR}/3rdparty/libtengine")
|
||||
SET(OCV_TENGINE_SOURCE_PATH "${OCV_TENGINE_DIR}/Tengine-${TENGINE_COMMIT_VERSION}")
|
||||
|
||||
IF(EXISTS "${OCV_TENGINE_SOURCE_PATH}")
|
||||
MESSAGE(STATUS "Tengine is exist already at: ${OCV_TENGINE_SOURCE_PATH}")
|
||||
|
||||
SET(Tengine_FOUND ON)
|
||||
SET(BUILD_TENGINE ON)
|
||||
ELSE()
|
||||
SET(OCV_TENGINE_FILENAME "${TENGINE_COMMIT_VERSION}.zip")#name2
|
||||
SET(OCV_TENGINE_URL "https://github.com/OAID/Tengine/archive/") #url2
|
||||
SET(tengine_md5sum 9124324b6e2b350012e46ae1db4bad7d) #md5sum2
|
||||
|
||||
#MESSAGE(STATUS "**** TENGINE DOWNLOAD BEGIN ****")
|
||||
ocv_download(FILENAME ${OCV_TENGINE_FILENAME}
|
||||
HASH ${tengine_md5sum}
|
||||
URL
|
||||
"${OPENCV_TENGINE_URL}"
|
||||
"$ENV{OPENCV_TENGINE_URL}"
|
||||
"${OCV_TENGINE_URL}"
|
||||
DESTINATION_DIR "${OCV_TENGINE_DIR}"
|
||||
ID TENGINE
|
||||
STATUS res
|
||||
UNPACK RELATIVE_URL)
|
||||
|
||||
if (NOT res)
|
||||
MESSAGE(STATUS "TENGINE DOWNLOAD FAILED. Turning Tengine_FOUND off.")
|
||||
SET(Tengine_FOUND OFF)
|
||||
else ()
|
||||
MESSAGE(STATUS "TENGINE DOWNLOAD success . ")
|
||||
|
||||
SET(Tengine_FOUND ON)
|
||||
SET(BUILD_TENGINE ON)
|
||||
endif()
|
||||
ENDIF()
|
||||
|
||||
if(BUILD_TENGINE)
|
||||
SET(HAVE_TENGINE 1)
|
||||
|
||||
# android system
|
||||
if(ANDROID)
|
||||
if(${ANDROID_ABI} STREQUAL "armeabi-v7a")
|
||||
SET(CONFIG_ARCH_ARM32 ON)
|
||||
elseif(${ANDROID_ABI} STREQUAL "arm64-v8a")
|
||||
SET(CONFIG_ARCH_ARM64 ON)
|
||||
endif()
|
||||
SET(Tengine_LIB "tengine" CACHE INTERNAL "")
|
||||
else()
|
||||
# linux system
|
||||
if(CMAKE_SYSTEM_PROCESSOR STREQUAL arm)
|
||||
SET(CONFIG_ARCH_ARM32 ON)
|
||||
elseif(CMAKE_SYSTEM_PROCESSOR STREQUAL aarch64) ## AARCH64
|
||||
SET(CONFIG_ARCH_ARM64 ON)
|
||||
endif()
|
||||
SET(Tengine_LIB "tengine" CACHE INTERNAL "")
|
||||
endif()
|
||||
|
||||
SET(BUILT_IN_OPENCV ON) ## set for tengine compile discern .
|
||||
SET(Tengine_INCLUDE_DIR "${OCV_TENGINE_SOURCE_PATH}/core/include" CACHE INTERNAL "")
|
||||
if(EXISTS "${OCV_TENGINE_SOURCE_PATH}/CMakeLists.txt")
|
||||
add_subdirectory("${OCV_TENGINE_SOURCE_PATH}" "${OCV_TENGINE_DIR}/build")
|
||||
else()
|
||||
message(WARNING "TENGINE: Missing 'CMakeLists.txt' in source code package: ${OCV_TENGINE_SOURCE_PATH}")
|
||||
SET(HAVE_TENGINE 1)
|
||||
endif()
|
||||
endif()
|
||||
Vendored
+8
-6
@@ -126,30 +126,30 @@ endif()
|
||||
if(SIZEOF_UNSIGNED_INT EQUAL SIZEOF_SIZE_T)
|
||||
set(TIFF_SIZE_T "unsigned int")
|
||||
set(TIFF_SIZE_FORMAT "%u")
|
||||
set(TIFF_SSIZE_T "signed int")
|
||||
set(TIFF_SSIZE_FORMAT "%d")
|
||||
elseif(SIZEOF_UNSIGNED_LONG EQUAL SIZEOF_SIZE_T)
|
||||
set(TIFF_SIZE_T "unsigned long")
|
||||
set(TIFF_SIZE_FORMAT "%lu")
|
||||
set(TIFF_SSIZE_T "signed long")
|
||||
set(TIFF_SSIZE_FORMAT "%ld")
|
||||
elseif(SIZEOF_UNSIGNED_LONG_LONG EQUAL SIZEOF_SIZE_T)
|
||||
set(TIFF_SIZE_T "unsigned long")
|
||||
if(MINGW)
|
||||
set(TIFF_SIZE_FORMAT "%I64u")
|
||||
set(TIFF_SSIZE_FORMAT "%I64d")
|
||||
else()
|
||||
set(TIFF_SIZE_FORMAT "%llu")
|
||||
set(TIFF_SSIZE_FORMAT "%lld")
|
||||
endif()
|
||||
endif()
|
||||
|
||||
if(SIZEOF_SIGNED_INT EQUAL SIZEOF_UNSIGNED_CHAR_P)
|
||||
set(TIFF_SSIZE_T "signed int")
|
||||
set(TIFF_SSIZE_FORMAT "%d")
|
||||
elseif(SIZEOF_SIGNED_LONG EQUAL SIZEOF_UNSIGNED_CHAR_P)
|
||||
set(TIFF_SSIZE_T "signed long")
|
||||
set(TIFF_SSIZE_FORMAT "%ld")
|
||||
elseif(SIZEOF_SIGNED_LONG_LONG EQUAL SIZEOF_UNSIGNED_CHAR_P)
|
||||
set(TIFF_SSIZE_T "signed long long")
|
||||
if(MINGW)
|
||||
set(TIFF_SSIZE_FORMAT "%I64d")
|
||||
else()
|
||||
set(TIFF_SSIZE_FORMAT "%lld")
|
||||
endif()
|
||||
endif()
|
||||
|
||||
@@ -216,6 +216,8 @@ endif()
|
||||
set(fillorder FILLORDER_MSB2LSB)
|
||||
if(CMAKE_HOST_SYSTEM_PROCESSOR MATCHES "i.*86.*" OR
|
||||
CMAKE_HOST_SYSTEM_PROCESSOR MATCHES "amd64.*" OR
|
||||
# AMD64 on Windows
|
||||
CMAKE_HOST_SYSTEM_PROCESSOR MATCHES "AMD64" OR
|
||||
CMAKE_HOST_SYSTEM_PROCESSOR MATCHES "x86_64.*")
|
||||
set(fillorder FILLORDER_LSB2MSB)
|
||||
endif()
|
||||
|
||||
Vendored
+4
@@ -16,7 +16,11 @@ int _TIFF_vsnprintf_f(char* str, size_t size, const char* format, va_list ap)
|
||||
int count = -1;
|
||||
|
||||
if (size != 0)
|
||||
#if _MSC_VER <= 1310
|
||||
count = _vsnprintf(str, size, format, ap);
|
||||
#else
|
||||
count = _vsnprintf_s(str, size, _TRUNCATE, format, ap);
|
||||
#endif
|
||||
if (count == -1)
|
||||
count = _vscprintf(format, ap);
|
||||
|
||||
|
||||
Vendored
+10
@@ -30,6 +30,7 @@
|
||||
#include "tiffiop.h"
|
||||
#include "tif_predict.h"
|
||||
#include <math.h>
|
||||
#include <float.h>
|
||||
|
||||
uint32
|
||||
_TIFFMultiply32(TIFF* tif, uint32 first, uint32 second, const char* where)
|
||||
@@ -357,6 +358,15 @@ _TIFFUInt64ToDouble(uint64 ui64)
|
||||
}
|
||||
}
|
||||
|
||||
float _TIFFClampDoubleToFloat( double val )
|
||||
{
|
||||
if( val > FLT_MAX )
|
||||
return FLT_MAX;
|
||||
if( val < -FLT_MAX )
|
||||
return -FLT_MAX;
|
||||
return (float)val;
|
||||
}
|
||||
|
||||
int _TIFFSeekOK(TIFF* tif, toff_t off)
|
||||
{
|
||||
/* Huge offsets, especially -1 / UINT64_MAX, can cause issues */
|
||||
|
||||
+1
-1
@@ -216,7 +216,7 @@
|
||||
#endif
|
||||
|
||||
/* Number of bits in a file offset, on hosts where this is settable. */
|
||||
//disabled for OpenCV CMakeLists.txt: #define _FILE_OFFSET_BITS @FILE_OFFSET_BITS@
|
||||
#define _FILE_OFFSET_BITS @FILE_OFFSET_BITS@
|
||||
|
||||
/* Define to `__inline__' or `__inline' if that's what the C compiler
|
||||
calls it, or to nothing if 'inline' is not supported under any name. */
|
||||
|
||||
Vendored
+33
-17
@@ -29,7 +29,6 @@
|
||||
* (and also some miscellaneous stuff)
|
||||
*/
|
||||
#include "tiffiop.h"
|
||||
#include <float.h>
|
||||
|
||||
/*
|
||||
* These are used in the backwards compatibility code...
|
||||
@@ -88,13 +87,15 @@ setDoubleArrayOneValue(double** vpp, double value, size_t nmemb)
|
||||
* Install extra samples information.
|
||||
*/
|
||||
static int
|
||||
setExtraSamples(TIFFDirectory* td, va_list ap, uint32* v)
|
||||
setExtraSamples(TIFF* tif, va_list ap, uint32* v)
|
||||
{
|
||||
/* XXX: Unassociated alpha data == 999 is a known Corel Draw bug, see below */
|
||||
#define EXTRASAMPLE_COREL_UNASSALPHA 999
|
||||
|
||||
uint16* va;
|
||||
uint32 i;
|
||||
TIFFDirectory* td = &tif->tif_dir;
|
||||
static const char module[] = "setExtraSamples";
|
||||
|
||||
*v = (uint16) va_arg(ap, uint16_vap);
|
||||
if ((uint16) *v > td->td_samplesperpixel)
|
||||
@@ -116,6 +117,18 @@ setExtraSamples(TIFFDirectory* td, va_list ap, uint32* v)
|
||||
return 0;
|
||||
}
|
||||
}
|
||||
|
||||
if ( td->td_transferfunction[0] != NULL && (td->td_samplesperpixel - *v > 1) &&
|
||||
!(td->td_samplesperpixel - td->td_extrasamples > 1))
|
||||
{
|
||||
TIFFWarningExt(tif->tif_clientdata,module,
|
||||
"ExtraSamples tag value is changing, "
|
||||
"but TransferFunction was read with a different value. Cancelling it");
|
||||
TIFFClrFieldBit(tif,FIELD_TRANSFERFUNCTION);
|
||||
_TIFFfree(td->td_transferfunction[0]);
|
||||
td->td_transferfunction[0] = NULL;
|
||||
}
|
||||
|
||||
td->td_extrasamples = (uint16) *v;
|
||||
_TIFFsetShortArray(&td->td_sampleinfo, va, td->td_extrasamples);
|
||||
return 1;
|
||||
@@ -153,15 +166,6 @@ bad:
|
||||
return (0);
|
||||
}
|
||||
|
||||
static float TIFFClampDoubleToFloat( double val )
|
||||
{
|
||||
if( val > FLT_MAX )
|
||||
return FLT_MAX;
|
||||
if( val < -FLT_MAX )
|
||||
return -FLT_MAX;
|
||||
return (float)val;
|
||||
}
|
||||
|
||||
static int
|
||||
_TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
{
|
||||
@@ -285,6 +289,18 @@ _TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
_TIFFfree(td->td_smaxsamplevalue);
|
||||
td->td_smaxsamplevalue = NULL;
|
||||
}
|
||||
/* Test if 3 transfer functions instead of just one are now needed
|
||||
See http://bugzilla.maptools.org/show_bug.cgi?id=2820 */
|
||||
if( td->td_transferfunction[0] != NULL && (v - td->td_extrasamples > 1) &&
|
||||
!(td->td_samplesperpixel - td->td_extrasamples > 1))
|
||||
{
|
||||
TIFFWarningExt(tif->tif_clientdata,module,
|
||||
"SamplesPerPixel tag value is changing, "
|
||||
"but TransferFunction was read with a different value. Cancelling it");
|
||||
TIFFClrFieldBit(tif,FIELD_TRANSFERFUNCTION);
|
||||
_TIFFfree(td->td_transferfunction[0]);
|
||||
td->td_transferfunction[0] = NULL;
|
||||
}
|
||||
}
|
||||
td->td_samplesperpixel = (uint16) v;
|
||||
break;
|
||||
@@ -320,13 +336,13 @@ _TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
dblval = va_arg(ap, double);
|
||||
if( dblval < 0 )
|
||||
goto badvaluedouble;
|
||||
td->td_xresolution = TIFFClampDoubleToFloat( dblval );
|
||||
td->td_xresolution = _TIFFClampDoubleToFloat( dblval );
|
||||
break;
|
||||
case TIFFTAG_YRESOLUTION:
|
||||
dblval = va_arg(ap, double);
|
||||
if( dblval < 0 )
|
||||
goto badvaluedouble;
|
||||
td->td_yresolution = TIFFClampDoubleToFloat( dblval );
|
||||
td->td_yresolution = _TIFFClampDoubleToFloat( dblval );
|
||||
break;
|
||||
case TIFFTAG_PLANARCONFIG:
|
||||
v = (uint16) va_arg(ap, uint16_vap);
|
||||
@@ -335,10 +351,10 @@ _TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
td->td_planarconfig = (uint16) v;
|
||||
break;
|
||||
case TIFFTAG_XPOSITION:
|
||||
td->td_xposition = TIFFClampDoubleToFloat( va_arg(ap, double) );
|
||||
td->td_xposition = _TIFFClampDoubleToFloat( va_arg(ap, double) );
|
||||
break;
|
||||
case TIFFTAG_YPOSITION:
|
||||
td->td_yposition = TIFFClampDoubleToFloat( va_arg(ap, double) );
|
||||
td->td_yposition = _TIFFClampDoubleToFloat( va_arg(ap, double) );
|
||||
break;
|
||||
case TIFFTAG_RESOLUTIONUNIT:
|
||||
v = (uint16) va_arg(ap, uint16_vap);
|
||||
@@ -361,7 +377,7 @@ _TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
_TIFFsetShortArray(&td->td_colormap[2], va_arg(ap, uint16*), v32);
|
||||
break;
|
||||
case TIFFTAG_EXTRASAMPLES:
|
||||
if (!setExtraSamples(td, ap, &v))
|
||||
if (!setExtraSamples(tif, ap, &v))
|
||||
goto badvalue;
|
||||
break;
|
||||
case TIFFTAG_MATTEING:
|
||||
@@ -684,7 +700,7 @@ _TIFFVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
case TIFF_SRATIONAL:
|
||||
case TIFF_FLOAT:
|
||||
{
|
||||
float v2 = TIFFClampDoubleToFloat(va_arg(ap, double));
|
||||
float v2 = _TIFFClampDoubleToFloat(va_arg(ap, double));
|
||||
_TIFFmemcpy(val, &v2, tv_size);
|
||||
}
|
||||
break;
|
||||
|
||||
Vendored
+169
-41
@@ -164,6 +164,7 @@ static int TIFFFetchNormalTag(TIFF*, TIFFDirEntry*, int recover);
|
||||
static int TIFFFetchStripThing(TIFF* tif, TIFFDirEntry* dir, uint32 nstrips, uint64** lpp);
|
||||
static int TIFFFetchSubjectDistance(TIFF*, TIFFDirEntry*);
|
||||
static void ChopUpSingleUncompressedStrip(TIFF*);
|
||||
static void TryChopUpUncompressedBigTiff(TIFF*);
|
||||
static uint64 TIFFReadUInt64(const uint8 *value);
|
||||
static int _TIFFGetMaxColorChannels(uint16 photometric);
|
||||
|
||||
@@ -4246,6 +4247,19 @@ TIFFReadDirectory(TIFF* tif)
|
||||
ChopUpSingleUncompressedStrip(tif);
|
||||
}
|
||||
|
||||
/* There are also uncompressed stripped files with strips larger than */
|
||||
/* 2 GB, which make them unfriendly with a lot of code. If possible, */
|
||||
/* try to expose smaller "virtual" strips. */
|
||||
if( tif->tif_dir.td_planarconfig == PLANARCONFIG_CONTIG &&
|
||||
tif->tif_dir.td_compression == COMPRESSION_NONE &&
|
||||
(tif->tif_flags&(TIFF_STRIPCHOP|TIFF_ISTILED)) == TIFF_STRIPCHOP &&
|
||||
TIFFStripSize64(tif) > 0x7FFFFFFFUL )
|
||||
{
|
||||
if ( !_TIFFFillStriles(tif) || !tif->tif_dir.td_stripbytecount )
|
||||
return 0;
|
||||
TryChopUpUncompressedBigTiff(tif);
|
||||
}
|
||||
|
||||
/*
|
||||
* Clear the dirty directory flag.
|
||||
*/
|
||||
@@ -5699,6 +5713,63 @@ TIFFFetchSubjectDistance(TIFF* tif, TIFFDirEntry* dir)
|
||||
}
|
||||
}
|
||||
|
||||
static void allocChoppedUpStripArrays(TIFF* tif, uint32 nstrips,
|
||||
uint64 stripbytes, uint32 rowsperstrip)
|
||||
{
|
||||
TIFFDirectory *td = &tif->tif_dir;
|
||||
uint64 bytecount;
|
||||
uint64 offset;
|
||||
uint32 i;
|
||||
uint64 *newcounts;
|
||||
uint64 *newoffsets;
|
||||
|
||||
newcounts = (uint64*) _TIFFCheckMalloc(tif, nstrips, sizeof (uint64),
|
||||
"for chopped \"StripByteCounts\" array");
|
||||
newoffsets = (uint64*) _TIFFCheckMalloc(tif, nstrips, sizeof (uint64),
|
||||
"for chopped \"StripOffsets\" array");
|
||||
if (newcounts == NULL || newoffsets == NULL) {
|
||||
/*
|
||||
* Unable to allocate new strip information, give up and use
|
||||
* the original one strip information.
|
||||
*/
|
||||
if (newcounts != NULL)
|
||||
_TIFFfree(newcounts);
|
||||
if (newoffsets != NULL)
|
||||
_TIFFfree(newoffsets);
|
||||
return;
|
||||
}
|
||||
|
||||
/*
|
||||
* Fill the strip information arrays with new bytecounts and offsets
|
||||
* that reflect the broken-up format.
|
||||
*/
|
||||
offset = td->td_stripoffset[0];
|
||||
bytecount = td->td_stripoffset[td->td_nstrips-1] +
|
||||
td->td_stripbytecount[td->td_nstrips-1] - offset;
|
||||
for (i = 0; i < nstrips; i++)
|
||||
{
|
||||
if (stripbytes > bytecount)
|
||||
stripbytes = bytecount;
|
||||
newcounts[i] = stripbytes;
|
||||
newoffsets[i] = stripbytes ? offset : 0;
|
||||
offset += stripbytes;
|
||||
bytecount -= stripbytes;
|
||||
}
|
||||
|
||||
/*
|
||||
* Replace old single strip info with multi-strip info.
|
||||
*/
|
||||
td->td_stripsperimage = td->td_nstrips = nstrips;
|
||||
TIFFSetField(tif, TIFFTAG_ROWSPERSTRIP, rowsperstrip);
|
||||
|
||||
_TIFFfree(td->td_stripbytecount);
|
||||
_TIFFfree(td->td_stripoffset);
|
||||
td->td_stripbytecount = newcounts;
|
||||
td->td_stripoffset = newoffsets;
|
||||
td->td_stripbytecountsorted = 1;
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
* Replace a single strip (tile) of uncompressed data by multiple strips
|
||||
* (tiles), each approximately STRIP_SIZE_DEFAULT bytes. This is useful for
|
||||
@@ -5714,11 +5785,8 @@ ChopUpSingleUncompressedStrip(TIFF* tif)
|
||||
uint32 rowblock;
|
||||
uint64 rowblockbytes;
|
||||
uint64 stripbytes;
|
||||
uint32 strip;
|
||||
uint32 nstrips;
|
||||
uint32 rowsperstrip;
|
||||
uint64* newcounts;
|
||||
uint64* newoffsets;
|
||||
|
||||
bytecount = td->td_stripbytecount[0];
|
||||
/* On a newly created file, just re-opened to be filled, we */
|
||||
@@ -5769,46 +5837,106 @@ ChopUpSingleUncompressedStrip(TIFF* tif)
|
||||
return;
|
||||
}
|
||||
|
||||
newcounts = (uint64*) _TIFFCheckMalloc(tif, nstrips, sizeof (uint64),
|
||||
"for chopped \"StripByteCounts\" array");
|
||||
newoffsets = (uint64*) _TIFFCheckMalloc(tif, nstrips, sizeof (uint64),
|
||||
"for chopped \"StripOffsets\" array");
|
||||
if (newcounts == NULL || newoffsets == NULL) {
|
||||
/*
|
||||
* Unable to allocate new strip information, give up and use
|
||||
* the original one strip information.
|
||||
*/
|
||||
if (newcounts != NULL)
|
||||
_TIFFfree(newcounts);
|
||||
if (newoffsets != NULL)
|
||||
_TIFFfree(newoffsets);
|
||||
return;
|
||||
}
|
||||
/*
|
||||
* Fill the strip information arrays with new bytecounts and offsets
|
||||
* that reflect the broken-up format.
|
||||
*/
|
||||
for (strip = 0; strip < nstrips; strip++) {
|
||||
if (stripbytes > bytecount)
|
||||
stripbytes = bytecount;
|
||||
newcounts[strip] = stripbytes;
|
||||
newoffsets[strip] = stripbytes ? offset : 0;
|
||||
offset += stripbytes;
|
||||
bytecount -= stripbytes;
|
||||
}
|
||||
/*
|
||||
* Replace old single strip info with multi-strip info.
|
||||
*/
|
||||
td->td_stripsperimage = td->td_nstrips = nstrips;
|
||||
TIFFSetField(tif, TIFFTAG_ROWSPERSTRIP, rowsperstrip);
|
||||
|
||||
_TIFFfree(td->td_stripbytecount);
|
||||
_TIFFfree(td->td_stripoffset);
|
||||
td->td_stripbytecount = newcounts;
|
||||
td->td_stripoffset = newoffsets;
|
||||
td->td_stripbytecountsorted = 1;
|
||||
allocChoppedUpStripArrays(tif, nstrips, stripbytes, rowsperstrip);
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
* Replace a file with contiguous strips > 2 GB of uncompressed data by
|
||||
* multiple smaller strips. This is useful for
|
||||
* dealing with large images or for dealing with machines with a limited
|
||||
* amount memory.
|
||||
*/
|
||||
static void TryChopUpUncompressedBigTiff( TIFF* tif )
|
||||
{
|
||||
TIFFDirectory *td = &tif->tif_dir;
|
||||
uint32 rowblock;
|
||||
uint64 rowblockbytes;
|
||||
uint32 i;
|
||||
uint64 stripsize;
|
||||
uint32 rowblocksperstrip;
|
||||
uint32 rowsperstrip;
|
||||
uint64 stripbytes;
|
||||
uint32 nstrips;
|
||||
|
||||
stripsize = TIFFStripSize64(tif);
|
||||
|
||||
assert( tif->tif_dir.td_planarconfig == PLANARCONFIG_CONTIG );
|
||||
assert( tif->tif_dir.td_compression == COMPRESSION_NONE );
|
||||
assert( (tif->tif_flags&(TIFF_STRIPCHOP|TIFF_ISTILED)) == TIFF_STRIPCHOP );
|
||||
assert( stripsize > 0x7FFFFFFFUL );
|
||||
|
||||
/* On a newly created file, just re-opened to be filled, we */
|
||||
/* don't want strip chop to trigger as it is going to cause issues */
|
||||
/* later ( StripOffsets and StripByteCounts improperly filled) . */
|
||||
if( td->td_stripbytecount[0] == 0 && tif->tif_mode != O_RDONLY )
|
||||
return;
|
||||
|
||||
if ((td->td_photometric == PHOTOMETRIC_YCBCR)&&
|
||||
(!isUpSampled(tif)))
|
||||
rowblock = td->td_ycbcrsubsampling[1];
|
||||
else
|
||||
rowblock = 1;
|
||||
rowblockbytes = TIFFVStripSize64(tif, rowblock);
|
||||
if( rowblockbytes == 0 || rowblockbytes > 0x7FFFFFFFUL )
|
||||
{
|
||||
/* In case of file with gigantic width */
|
||||
return;
|
||||
}
|
||||
|
||||
/* Check that the strips are contiguous and of the expected size */
|
||||
for( i = 0; i < td->td_nstrips; i++ )
|
||||
{
|
||||
if( i == td->td_nstrips - 1 )
|
||||
{
|
||||
if( td->td_stripbytecount[i] < TIFFVStripSize64(
|
||||
tif, td->td_imagelength - i * td->td_rowsperstrip ) )
|
||||
{
|
||||
return;
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
if( td->td_stripbytecount[i] != stripsize )
|
||||
{
|
||||
return;
|
||||
}
|
||||
if( i > 0 && td->td_stripoffset[i] !=
|
||||
td->td_stripoffset[i-1] + td->td_stripbytecount[i - 1] )
|
||||
{
|
||||
return;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/* Aim for 512 MB strips (that will still be manageable by 32 bit builds */
|
||||
rowblocksperstrip = (uint32) (512 * 1024 * 1024 / rowblockbytes);
|
||||
if( rowblocksperstrip == 0 )
|
||||
rowblocksperstrip = 1;
|
||||
rowsperstrip = rowblocksperstrip * rowblock;
|
||||
stripbytes = rowblocksperstrip * rowblockbytes;
|
||||
assert( stripbytes <= 0x7FFFFFFFUL );
|
||||
|
||||
nstrips = TIFFhowmany_32(td->td_imagelength, rowsperstrip);
|
||||
if( nstrips == 0 )
|
||||
return;
|
||||
|
||||
/* If we are going to allocate a lot of memory, make sure that the */
|
||||
/* file is as big as needed */
|
||||
if( tif->tif_mode == O_RDONLY &&
|
||||
nstrips > 1000000 &&
|
||||
(td->td_stripoffset[td->td_nstrips-1] > TIFFGetFileSize(tif) ||
|
||||
td->td_stripoffset[td->td_nstrips-1] +
|
||||
td->td_stripbytecount[td->td_nstrips-1] > TIFFGetFileSize(tif)) )
|
||||
{
|
||||
return;
|
||||
}
|
||||
|
||||
allocChoppedUpStripArrays(tif, nstrips, stripbytes, rowsperstrip);
|
||||
}
|
||||
|
||||
|
||||
|
||||
int _TIFFFillStriles( TIFF *tif )
|
||||
{
|
||||
return _TIFFFillStrilesInternal( tif, 1 );
|
||||
|
||||
Vendored
+5
-13
@@ -28,7 +28,6 @@
|
||||
* Directory Write Support Routines.
|
||||
*/
|
||||
#include "tiffiop.h"
|
||||
#include <float.h>
|
||||
|
||||
#ifdef HAVE_IEEEFP
|
||||
#define TIFFCvtNativeToIEEEFloat(tif, n, fp)
|
||||
@@ -946,15 +945,6 @@ bad:
|
||||
return(0);
|
||||
}
|
||||
|
||||
static float TIFFClampDoubleToFloat( double val )
|
||||
{
|
||||
if( val > FLT_MAX )
|
||||
return FLT_MAX;
|
||||
if( val < -FLT_MAX )
|
||||
return -FLT_MAX;
|
||||
return (float)val;
|
||||
}
|
||||
|
||||
static int8 TIFFClampDoubleToInt8( double val )
|
||||
{
|
||||
if( val > 127 )
|
||||
@@ -1029,7 +1019,7 @@ TIFFWriteDirectoryTagSampleformatArray(TIFF* tif, uint32* ndir, TIFFDirEntry* di
|
||||
if (tif->tif_dir.td_bitspersample<=32)
|
||||
{
|
||||
for (i = 0; i < count; ++i)
|
||||
((float*)conv)[i] = TIFFClampDoubleToFloat(value[i]);
|
||||
((float*)conv)[i] = _TIFFClampDoubleToFloat(value[i]);
|
||||
ok = TIFFWriteDirectoryTagFloatArray(tif,ndir,dir,tag,count,(float*)conv);
|
||||
}
|
||||
else
|
||||
@@ -1893,12 +1883,14 @@ TIFFWriteDirectoryTagTransferfunction(TIFF* tif, uint32* ndir, TIFFDirEntry* dir
|
||||
n=3;
|
||||
if (n==3)
|
||||
{
|
||||
if (!_TIFFmemcmp(tif->tif_dir.td_transferfunction[0],tif->tif_dir.td_transferfunction[2],m*sizeof(uint16)))
|
||||
if (tif->tif_dir.td_transferfunction[2] == NULL ||
|
||||
!_TIFFmemcmp(tif->tif_dir.td_transferfunction[0],tif->tif_dir.td_transferfunction[2],m*sizeof(uint16)))
|
||||
n=2;
|
||||
}
|
||||
if (n==2)
|
||||
{
|
||||
if (!_TIFFmemcmp(tif->tif_dir.td_transferfunction[0],tif->tif_dir.td_transferfunction[1],m*sizeof(uint16)))
|
||||
if (tif->tif_dir.td_transferfunction[1] == NULL ||
|
||||
!_TIFFmemcmp(tif->tif_dir.td_transferfunction[0],tif->tif_dir.td_transferfunction[1],m*sizeof(uint16)))
|
||||
n=1;
|
||||
}
|
||||
if (n==0)
|
||||
|
||||
Vendored
+8
-3
@@ -742,9 +742,14 @@ LogLuvEncodeTile(TIFF* tif, uint8* bp, tmsize_t cc, uint16 s)
|
||||
#undef exp2 /* Conflict with C'99 function */
|
||||
#define exp2(x) exp(M_LN2*(x))
|
||||
|
||||
#define itrunc(x,m) ((m)==SGILOGENCODE_NODITHER ? \
|
||||
(int)(x) : \
|
||||
(int)((x) + rand()*(1./RAND_MAX) - .5))
|
||||
static int itrunc(double x, int m)
|
||||
{
|
||||
if( m == SGILOGENCODE_NODITHER )
|
||||
return (int)x;
|
||||
/* Silence CoverityScan warning about bad crypto function */
|
||||
/* coverity[dont_call] */
|
||||
return (int)(x + rand()*(1./RAND_MAX) - .5);
|
||||
}
|
||||
|
||||
#if !LOGLUV_PUBLIC
|
||||
static
|
||||
|
||||
Vendored
+2
@@ -247,6 +247,8 @@ LZWSetupDecode(TIFF* tif)
|
||||
/*
|
||||
* Zero-out the unused entries
|
||||
*/
|
||||
/* Silence false positive */
|
||||
/* coverity[overrun-buffer-arg] */
|
||||
_TIFFmemset(&sp->dec_codetab[CODE_CLEAR], 0,
|
||||
(CODE_FIRST - CODE_CLEAR) * sizeof (code_t));
|
||||
}
|
||||
|
||||
Vendored
+3
-3
@@ -640,6 +640,7 @@ PixarLogGuessDataFmt(TIFFDirectory *td)
|
||||
static tmsize_t
|
||||
multiply_ms(tmsize_t m1, tmsize_t m2)
|
||||
{
|
||||
assert(m1 >= 0 && m2 >= 0);
|
||||
if( m1 == 0 || m2 > TIFF_TMSIZE_T_MAX / m1 )
|
||||
return 0;
|
||||
return m1 * m2;
|
||||
@@ -648,6 +649,7 @@ multiply_ms(tmsize_t m1, tmsize_t m2)
|
||||
static tmsize_t
|
||||
add_ms(tmsize_t m1, tmsize_t m2)
|
||||
{
|
||||
assert(m1 >= 0 && m2 >= 0);
|
||||
/* if either input is zero, assume overflow already occurred */
|
||||
if (m1 == 0 || m2 == 0)
|
||||
return 0;
|
||||
@@ -817,9 +819,7 @@ PixarLogDecode(TIFF* tif, uint8* op, tmsize_t occ, uint16 s)
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Decoding error at scanline %lu, %s",
|
||||
(unsigned long) tif->tif_row, sp->stream.msg ? sp->stream.msg : "(null)");
|
||||
if (inflateSync(&sp->stream) != Z_OK)
|
||||
return (0);
|
||||
continue;
|
||||
return (0);
|
||||
}
|
||||
if (state != Z_OK) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "ZLib error: %s",
|
||||
|
||||
Vendored
+7
-1
@@ -103,6 +103,11 @@ static int TIFFReadAndRealloc( TIFF* tif, tmsize_t size,
|
||||
}
|
||||
tif->tif_rawdata = new_rawdata;
|
||||
}
|
||||
if( tif->tif_rawdata == NULL )
|
||||
{
|
||||
/* should not happen in practice but helps CoverityScan */
|
||||
return 0;
|
||||
}
|
||||
|
||||
bytes_read = TIFFReadFile(tif,
|
||||
tif->tif_rawdata + rawdata_offset + already_read, to_read);
|
||||
@@ -1367,7 +1372,8 @@ TIFFFillTile(TIFF* tif, uint32 tile)
|
||||
tif->tif_rawdataoff = 0;
|
||||
tif->tif_rawdataloaded = bytecountm;
|
||||
|
||||
if (!isFillOrder(tif, td->td_fillorder) &&
|
||||
if (tif->tif_rawdata != NULL &&
|
||||
!isFillOrder(tif, td->td_fillorder) &&
|
||||
(tif->tif_flags & TIFF_NOBITREV) == 0)
|
||||
TIFFReverseBits(tif->tif_rawdata,
|
||||
tif->tif_rawdataloaded);
|
||||
|
||||
Vendored
+28
-17
@@ -349,6 +349,12 @@ TWebPSetupEncode(TIFF* tif)
|
||||
|
||||
sp->state |= LSTATE_INIT_ENCODE;
|
||||
|
||||
if (!WebPPictureInit(&sp->sPicture)) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Error initializing WebP picture.");
|
||||
return 0;
|
||||
}
|
||||
|
||||
if (!WebPConfigInitInternal(&sp->sEncoderConfig, WEBP_PRESET_DEFAULT,
|
||||
sp->quality_level,
|
||||
WEBP_ENCODER_ABI_VERSION)) {
|
||||
@@ -357,9 +363,13 @@ TWebPSetupEncode(TIFF* tif)
|
||||
return 0;
|
||||
}
|
||||
|
||||
#if WEBP_ENCODER_ABI_VERSION >= 0x0100
|
||||
sp->sEncoderConfig.lossless = sp->lossless;
|
||||
#endif
|
||||
// WebPConfigInitInternal above sets lossless to false
|
||||
#if WEBP_ENCODER_ABI_VERSION >= 0x0100
|
||||
sp->sEncoderConfig.lossless = sp->lossless;
|
||||
if (sp->lossless) {
|
||||
sp->sPicture.use_argb = 1;
|
||||
}
|
||||
#endif
|
||||
|
||||
if (!WebPValidateConfig(&sp->sEncoderConfig)) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
@@ -367,12 +377,6 @@ TWebPSetupEncode(TIFF* tif)
|
||||
return 0;
|
||||
}
|
||||
|
||||
if (!WebPPictureInit(&sp->sPicture)) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Error initializing WebP picture.");
|
||||
return 0;
|
||||
}
|
||||
|
||||
return 1;
|
||||
}
|
||||
|
||||
@@ -415,6 +419,12 @@ TWebPPreEncode(TIFF* tif, uint16 s)
|
||||
/* set up buffer for raw data */
|
||||
/* given above check and that nSamples <= 4, buffer_size is <= 1 GB */
|
||||
sp->buffer_size = segment_width * segment_height * sp->nSamples;
|
||||
|
||||
if (sp->pBuffer != NULL) {
|
||||
_TIFFfree(sp->pBuffer);
|
||||
sp->pBuffer = NULL;
|
||||
}
|
||||
|
||||
sp->pBuffer = _TIFFmalloc(sp->buffer_size);
|
||||
if( !sp->pBuffer) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "Cannot allocate buffer");
|
||||
@@ -460,7 +470,7 @@ TWebPPostEncode(TIFF* tif)
|
||||
"WebPPictureImportRGB() failed");
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
if (!WebPEncode(&sp->sEncoderConfig, &sp->sPicture)) {
|
||||
|
||||
#if WEBP_ENCODER_ABI_VERSION >= 0x0100
|
||||
@@ -540,15 +550,13 @@ TWebPCleanup(TIFF* tif)
|
||||
}
|
||||
|
||||
if (sp->pBuffer != NULL) {
|
||||
_TIFFfree(sp->pBuffer);
|
||||
sp->pBuffer = NULL;
|
||||
_TIFFfree(sp->pBuffer);
|
||||
sp->pBuffer = NULL;
|
||||
}
|
||||
|
||||
if (tif->tif_data) {
|
||||
_TIFFfree(tif->tif_data);
|
||||
tif->tif_data = NULL;
|
||||
}
|
||||
|
||||
_TIFFfree(tif->tif_data);
|
||||
tif->tif_data = NULL;
|
||||
|
||||
_TIFFSetDefaultCompressionState(tif);
|
||||
}
|
||||
|
||||
@@ -570,6 +578,9 @@ TWebPVSetField(TIFF* tif, uint32 tag, va_list ap)
|
||||
case TIFFTAG_WEBP_LOSSLESS:
|
||||
#if WEBP_ENCODER_ABI_VERSION >= 0x0100
|
||||
sp->lossless = va_arg(ap, int);
|
||||
if (sp->lossless){
|
||||
sp->quality_level = 100.0f;
|
||||
}
|
||||
return 1;
|
||||
#else
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
|
||||
Vendored
+20
-38
@@ -124,7 +124,6 @@ ZIPSetupDecode(TIFF* tif)
|
||||
static int
|
||||
ZIPPreDecode(TIFF* tif, uint16 s)
|
||||
{
|
||||
static const char module[] = "ZIPPreDecode";
|
||||
ZIPState* sp = DecoderState(tif);
|
||||
|
||||
(void) s;
|
||||
@@ -138,12 +137,7 @@ ZIPPreDecode(TIFF* tif, uint16 s)
|
||||
we need to simplify this code to reflect a ZLib that is likely updated
|
||||
to deal with 8byte memory sizes, though this code will respond
|
||||
appropriately even before we simplify it */
|
||||
sp->stream.avail_in = (uInt) tif->tif_rawcc;
|
||||
if ((tmsize_t)sp->stream.avail_in != tif->tif_rawcc)
|
||||
{
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "ZLib cannot deal with buffers this size");
|
||||
return (0);
|
||||
}
|
||||
sp->stream.avail_in = (uint64)tif->tif_rawcc < 0xFFFFFFFFU ? (uInt) tif->tif_rawcc : 0xFFFFFFFFU;
|
||||
return (inflateReset(&sp->stream) == Z_OK);
|
||||
}
|
||||
|
||||
@@ -158,46 +152,43 @@ ZIPDecode(TIFF* tif, uint8* op, tmsize_t occ, uint16 s)
|
||||
assert(sp->state == ZSTATE_INIT_DECODE);
|
||||
|
||||
sp->stream.next_in = tif->tif_rawcp;
|
||||
sp->stream.avail_in = (uInt) tif->tif_rawcc;
|
||||
|
||||
sp->stream.next_out = op;
|
||||
assert(sizeof(sp->stream.avail_out)==4); /* if this assert gets raised,
|
||||
we need to simplify this code to reflect a ZLib that is likely updated
|
||||
to deal with 8byte memory sizes, though this code will respond
|
||||
appropriately even before we simplify it */
|
||||
sp->stream.avail_out = (uInt) occ;
|
||||
if ((tmsize_t)sp->stream.avail_out != occ)
|
||||
{
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "ZLib cannot deal with buffers this size");
|
||||
return (0);
|
||||
}
|
||||
do {
|
||||
int state = inflate(&sp->stream, Z_PARTIAL_FLUSH);
|
||||
int state;
|
||||
uInt avail_in_before = (uint64)tif->tif_rawcc <= 0xFFFFFFFFU ? (uInt)tif->tif_rawcc : 0xFFFFFFFFU;
|
||||
uInt avail_out_before = (uint64)occ < 0xFFFFFFFFU ? (uInt) occ : 0xFFFFFFFFU;
|
||||
sp->stream.avail_in = avail_in_before;
|
||||
sp->stream.avail_out = avail_out_before;
|
||||
state = inflate(&sp->stream, Z_PARTIAL_FLUSH);
|
||||
tif->tif_rawcc -= (avail_in_before - sp->stream.avail_in);
|
||||
occ -= (avail_out_before - sp->stream.avail_out);
|
||||
if (state == Z_STREAM_END)
|
||||
break;
|
||||
if (state == Z_DATA_ERROR) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Decoding error at scanline %lu, %s",
|
||||
(unsigned long) tif->tif_row, SAFE_MSG(sp));
|
||||
if (inflateSync(&sp->stream) != Z_OK)
|
||||
return (0);
|
||||
continue;
|
||||
return (0);
|
||||
}
|
||||
if (state != Z_OK) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"ZLib error: %s", SAFE_MSG(sp));
|
||||
return (0);
|
||||
}
|
||||
} while (sp->stream.avail_out > 0);
|
||||
if (sp->stream.avail_out != 0) {
|
||||
} while (occ > 0);
|
||||
if (occ != 0) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Not enough data at scanline %lu (short " TIFF_UINT64_FORMAT " bytes)",
|
||||
(unsigned long) tif->tif_row, (TIFF_UINT64_T) sp->stream.avail_out);
|
||||
(unsigned long) tif->tif_row, (TIFF_UINT64_T) occ);
|
||||
return (0);
|
||||
}
|
||||
|
||||
tif->tif_rawcp = sp->stream.next_in;
|
||||
tif->tif_rawcc = sp->stream.avail_in;
|
||||
|
||||
return (1);
|
||||
}
|
||||
@@ -229,7 +220,6 @@ ZIPSetupEncode(TIFF* tif)
|
||||
static int
|
||||
ZIPPreEncode(TIFF* tif, uint16 s)
|
||||
{
|
||||
static const char module[] = "ZIPPreEncode";
|
||||
ZIPState *sp = EncoderState(tif);
|
||||
|
||||
(void) s;
|
||||
@@ -242,12 +232,7 @@ ZIPPreEncode(TIFF* tif, uint16 s)
|
||||
we need to simplify this code to reflect a ZLib that is likely updated
|
||||
to deal with 8byte memory sizes, though this code will respond
|
||||
appropriately even before we simplify it */
|
||||
sp->stream.avail_out = (uInt)tif->tif_rawdatasize;
|
||||
if ((tmsize_t)sp->stream.avail_out != tif->tif_rawdatasize)
|
||||
{
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "ZLib cannot deal with buffers this size");
|
||||
return (0);
|
||||
}
|
||||
sp->stream.avail_out = (uint64)tif->tif_rawdatasize <= 0xFFFFFFFFU ? (uInt)tif->tif_rawdatasize : 0xFFFFFFFFU;
|
||||
return (deflateReset(&sp->stream) == Z_OK);
|
||||
}
|
||||
|
||||
@@ -269,13 +254,9 @@ ZIPEncode(TIFF* tif, uint8* bp, tmsize_t cc, uint16 s)
|
||||
we need to simplify this code to reflect a ZLib that is likely updated
|
||||
to deal with 8byte memory sizes, though this code will respond
|
||||
appropriately even before we simplify it */
|
||||
sp->stream.avail_in = (uInt) cc;
|
||||
if ((tmsize_t)sp->stream.avail_in != cc)
|
||||
{
|
||||
TIFFErrorExt(tif->tif_clientdata, module, "ZLib cannot deal with buffers this size");
|
||||
return (0);
|
||||
}
|
||||
do {
|
||||
uInt avail_in_before = (uint64)cc <= 0xFFFFFFFFU ? (uInt)cc : 0xFFFFFFFFU;
|
||||
sp->stream.avail_in = avail_in_before;
|
||||
if (deflate(&sp->stream, Z_NO_FLUSH) != Z_OK) {
|
||||
TIFFErrorExt(tif->tif_clientdata, module,
|
||||
"Encoder error: %s",
|
||||
@@ -286,9 +267,10 @@ ZIPEncode(TIFF* tif, uint8* bp, tmsize_t cc, uint16 s)
|
||||
tif->tif_rawcc = tif->tif_rawdatasize;
|
||||
TIFFFlushData1(tif);
|
||||
sp->stream.next_out = tif->tif_rawdata;
|
||||
sp->stream.avail_out = (uInt) tif->tif_rawdatasize; /* this is a safe typecast, as check is made already in ZIPPreEncode */
|
||||
sp->stream.avail_out = (uint64)tif->tif_rawdatasize <= 0xFFFFFFFFU ? (uInt)tif->tif_rawdatasize : 0xFFFFFFFFU;
|
||||
}
|
||||
} while (sp->stream.avail_in > 0);
|
||||
cc -= (avail_in_before - sp->stream.avail_in);
|
||||
} while (cc > 0);
|
||||
return (1);
|
||||
}
|
||||
|
||||
@@ -314,7 +296,7 @@ ZIPPostEncode(TIFF* tif)
|
||||
tif->tif_rawcc = tif->tif_rawdatasize - sp->stream.avail_out;
|
||||
TIFFFlushData1(tif);
|
||||
sp->stream.next_out = tif->tif_rawdata;
|
||||
sp->stream.avail_out = (uInt) tif->tif_rawdatasize; /* this is a safe typecast, as check is made already in ZIPPreEncode */
|
||||
sp->stream.avail_out = (uint64)tif->tif_rawdatasize <= 0xFFFFFFFFU ? (uInt)tif->tif_rawdatasize : 0xFFFFFFFFU;
|
||||
}
|
||||
break;
|
||||
default:
|
||||
|
||||
Vendored
+2
@@ -374,6 +374,8 @@ extern void* _TIFFCheckRealloc(TIFF*, void*, tmsize_t, tmsize_t, const char*);
|
||||
extern double _TIFFUInt64ToDouble(uint64);
|
||||
extern float _TIFFUInt64ToFloat(uint64);
|
||||
|
||||
extern float _TIFFClampDoubleToFloat(double);
|
||||
|
||||
extern tmsize_t
|
||||
_TIFFReadEncodedStripAndAllocBuffer(TIFF* tif, uint32 strip,
|
||||
void **buf, tmsize_t bufsizetoalloc,
|
||||
|
||||
@@ -0,0 +1,22 @@
|
||||
diff --git a/3rdparty/libwebp/src/dsp/msa_macro.h b/3rdparty/libwebp/src/dsp/msa_macro.h
|
||||
index de026a1d9e..a16c0bb300 100644
|
||||
--- a/3rdparty/libwebp/src/dsp/msa_macro.h
|
||||
+++ b/3rdparty/libwebp/src/dsp/msa_macro.h
|
||||
@@ -73,7 +73,7 @@
|
||||
static inline TYPE FUNC_NAME(const void* const psrc) { \
|
||||
const uint8_t* const psrc_m = (const uint8_t*)psrc; \
|
||||
TYPE val_m; \
|
||||
- asm volatile ( \
|
||||
+ __asm__ volatile ( \
|
||||
"" #INSTR " %[val_m], %[psrc_m] \n\t" \
|
||||
: [val_m] "=r" (val_m) \
|
||||
: [psrc_m] "m" (*psrc_m)); \
|
||||
@@ -86,7 +86,7 @@
|
||||
static inline void FUNC_NAME(TYPE val, void* const pdst) { \
|
||||
uint8_t* const pdst_m = (uint8_t*)pdst; \
|
||||
TYPE val_m = val; \
|
||||
- asm volatile ( \
|
||||
+ __asm__ volatile ( \
|
||||
" " #INSTR " %[val_m], %[pdst_m] \n\t" \
|
||||
: [pdst_m] "=m" (*pdst_m) \
|
||||
: [val_m] "r" (val_m)); \
|
||||
Vendored
+1
-1
@@ -732,7 +732,7 @@ static int AllocateMemory(VP8Decoder* const dec) {
|
||||
mem += f_info_size;
|
||||
dec->thread_ctx_.id_ = 0;
|
||||
dec->thread_ctx_.f_info_ = dec->f_info_;
|
||||
if (dec->mt_method_ > 0) {
|
||||
if (dec->filter_type_ > 0 && dec->mt_method_ > 0) {
|
||||
// secondary cache line. The deblocking process need to make use of the
|
||||
// filtering strength from previous macroblock row, while the new ones
|
||||
// are being decoded in parallel. We'll just swap the pointers.
|
||||
|
||||
Vendored
+8
-3
@@ -166,9 +166,11 @@ static int AppendToMemBuffer(WebPIDecoder* const idec,
|
||||
VP8Decoder* const dec = (VP8Decoder*)idec->dec_;
|
||||
MemBuffer* const mem = &idec->mem_;
|
||||
const int need_compressed_alpha = NeedCompressedAlpha(idec);
|
||||
const uint8_t* const old_start = mem->buf_ + mem->start_;
|
||||
const uint8_t* const old_start =
|
||||
(mem->buf_ == NULL) ? NULL : mem->buf_ + mem->start_;
|
||||
const uint8_t* const old_base =
|
||||
need_compressed_alpha ? dec->alpha_data_ : old_start;
|
||||
assert(mem->buf_ != NULL || mem->start_ == 0);
|
||||
assert(mem->mode_ == MEM_MODE_APPEND);
|
||||
if (data_size > MAX_CHUNK_PAYLOAD) {
|
||||
// security safeguard: trying to allocate more than what the format
|
||||
@@ -184,7 +186,7 @@ static int AppendToMemBuffer(WebPIDecoder* const idec,
|
||||
uint8_t* const new_buf =
|
||||
(uint8_t*)WebPSafeMalloc(extra_size, sizeof(*new_buf));
|
||||
if (new_buf == NULL) return 0;
|
||||
memcpy(new_buf, old_base, current_size);
|
||||
if (old_base != NULL) memcpy(new_buf, old_base, current_size);
|
||||
WebPSafeFree(mem->buf_);
|
||||
mem->buf_ = new_buf;
|
||||
mem->buf_size_ = (size_t)extra_size;
|
||||
@@ -192,6 +194,7 @@ static int AppendToMemBuffer(WebPIDecoder* const idec,
|
||||
mem->end_ = current_size;
|
||||
}
|
||||
|
||||
assert(mem->buf_ != NULL);
|
||||
memcpy(mem->buf_ + mem->end_, data, data_size);
|
||||
mem->end_ += data_size;
|
||||
assert(mem->end_ <= mem->buf_size_);
|
||||
@@ -204,7 +207,9 @@ static int RemapMemBuffer(WebPIDecoder* const idec,
|
||||
const uint8_t* const data, size_t data_size) {
|
||||
MemBuffer* const mem = &idec->mem_;
|
||||
const uint8_t* const old_buf = mem->buf_;
|
||||
const uint8_t* const old_start = old_buf + mem->start_;
|
||||
const uint8_t* const old_start =
|
||||
(old_buf == NULL) ? NULL : old_buf + mem->start_;
|
||||
assert(old_buf != NULL || mem->start_ == 0);
|
||||
assert(mem->mode_ == MEM_MODE_MAP);
|
||||
|
||||
if (data_size < mem->buf_size_) return 0; // can't remap to a shorter buffer!
|
||||
|
||||
Vendored
+11
-6
@@ -61,12 +61,17 @@ static const uint16_t kAcTable[128] = {
|
||||
|
||||
void VP8ParseQuant(VP8Decoder* const dec) {
|
||||
VP8BitReader* const br = &dec->br_;
|
||||
const int base_q0 = VP8GetValue(br, 7);
|
||||
const int dqy1_dc = VP8Get(br) ? VP8GetSignedValue(br, 4) : 0;
|
||||
const int dqy2_dc = VP8Get(br) ? VP8GetSignedValue(br, 4) : 0;
|
||||
const int dqy2_ac = VP8Get(br) ? VP8GetSignedValue(br, 4) : 0;
|
||||
const int dquv_dc = VP8Get(br) ? VP8GetSignedValue(br, 4) : 0;
|
||||
const int dquv_ac = VP8Get(br) ? VP8GetSignedValue(br, 4) : 0;
|
||||
const int base_q0 = VP8GetValue(br, 7, "global-header");
|
||||
const int dqy1_dc = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 4, "global-header") : 0;
|
||||
const int dqy2_dc = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 4, "global-header") : 0;
|
||||
const int dqy2_ac = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 4, "global-header") : 0;
|
||||
const int dquv_dc = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 4, "global-header") : 0;
|
||||
const int dquv_ac = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 4, "global-header") : 0;
|
||||
|
||||
const VP8SegmentHeader* const hdr = &dec->segment_hdr_;
|
||||
int i;
|
||||
|
||||
Vendored
+31
-26
@@ -296,20 +296,21 @@ static void ParseIntraMode(VP8BitReader* const br,
|
||||
// to decode more than 1 keyframe.
|
||||
if (dec->segment_hdr_.update_map_) {
|
||||
// Hardcoded tree parsing
|
||||
block->segment_ = !VP8GetBit(br, dec->proba_.segments_[0])
|
||||
? VP8GetBit(br, dec->proba_.segments_[1])
|
||||
: 2 + VP8GetBit(br, dec->proba_.segments_[2]);
|
||||
block->segment_ = !VP8GetBit(br, dec->proba_.segments_[0], "segments")
|
||||
? VP8GetBit(br, dec->proba_.segments_[1], "segments")
|
||||
: VP8GetBit(br, dec->proba_.segments_[2], "segments") + 2;
|
||||
} else {
|
||||
block->segment_ = 0; // default for intra
|
||||
}
|
||||
if (dec->use_skip_proba_) block->skip_ = VP8GetBit(br, dec->skip_p_);
|
||||
if (dec->use_skip_proba_) block->skip_ = VP8GetBit(br, dec->skip_p_, "skip");
|
||||
|
||||
block->is_i4x4_ = !VP8GetBit(br, 145); // decide for B_PRED first
|
||||
block->is_i4x4_ = !VP8GetBit(br, 145, "block-size");
|
||||
if (!block->is_i4x4_) {
|
||||
// Hardcoded 16x16 intra-mode decision tree.
|
||||
const int ymode =
|
||||
VP8GetBit(br, 156) ? (VP8GetBit(br, 128) ? TM_PRED : H_PRED)
|
||||
: (VP8GetBit(br, 163) ? V_PRED : DC_PRED);
|
||||
VP8GetBit(br, 156, "pred-modes") ?
|
||||
(VP8GetBit(br, 128, "pred-modes") ? TM_PRED : H_PRED) :
|
||||
(VP8GetBit(br, 163, "pred-modes") ? V_PRED : DC_PRED);
|
||||
block->imodes_[0] = ymode;
|
||||
memset(top, ymode, 4 * sizeof(*top));
|
||||
memset(left, ymode, 4 * sizeof(*left));
|
||||
@@ -323,22 +324,25 @@ static void ParseIntraMode(VP8BitReader* const br,
|
||||
const uint8_t* const prob = kBModesProba[top[x]][ymode];
|
||||
#if (USE_GENERIC_TREE == 1)
|
||||
// Generic tree-parsing
|
||||
int i = kYModesIntra4[VP8GetBit(br, prob[0])];
|
||||
int i = kYModesIntra4[VP8GetBit(br, prob[0], "pred-modes")];
|
||||
while (i > 0) {
|
||||
i = kYModesIntra4[2 * i + VP8GetBit(br, prob[i])];
|
||||
i = kYModesIntra4[2 * i + VP8GetBit(br, prob[i], "pred-modes")];
|
||||
}
|
||||
ymode = -i;
|
||||
#else
|
||||
// Hardcoded tree parsing
|
||||
ymode = !VP8GetBit(br, prob[0]) ? B_DC_PRED :
|
||||
!VP8GetBit(br, prob[1]) ? B_TM_PRED :
|
||||
!VP8GetBit(br, prob[2]) ? B_VE_PRED :
|
||||
!VP8GetBit(br, prob[3]) ?
|
||||
(!VP8GetBit(br, prob[4]) ? B_HE_PRED :
|
||||
(!VP8GetBit(br, prob[5]) ? B_RD_PRED : B_VR_PRED)) :
|
||||
(!VP8GetBit(br, prob[6]) ? B_LD_PRED :
|
||||
(!VP8GetBit(br, prob[7]) ? B_VL_PRED :
|
||||
(!VP8GetBit(br, prob[8]) ? B_HD_PRED : B_HU_PRED)));
|
||||
ymode = !VP8GetBit(br, prob[0], "pred-modes") ? B_DC_PRED :
|
||||
!VP8GetBit(br, prob[1], "pred-modes") ? B_TM_PRED :
|
||||
!VP8GetBit(br, prob[2], "pred-modes") ? B_VE_PRED :
|
||||
!VP8GetBit(br, prob[3], "pred-modes") ?
|
||||
(!VP8GetBit(br, prob[4], "pred-modes") ? B_HE_PRED :
|
||||
(!VP8GetBit(br, prob[5], "pred-modes") ? B_RD_PRED
|
||||
: B_VR_PRED)) :
|
||||
(!VP8GetBit(br, prob[6], "pred-modes") ? B_LD_PRED :
|
||||
(!VP8GetBit(br, prob[7], "pred-modes") ? B_VL_PRED :
|
||||
(!VP8GetBit(br, prob[8], "pred-modes") ? B_HD_PRED
|
||||
: B_HU_PRED))
|
||||
);
|
||||
#endif // USE_GENERIC_TREE
|
||||
top[x] = ymode;
|
||||
}
|
||||
@@ -348,9 +352,9 @@ static void ParseIntraMode(VP8BitReader* const br,
|
||||
}
|
||||
}
|
||||
// Hardcoded UVMode decision tree
|
||||
block->uvmode_ = !VP8GetBit(br, 142) ? DC_PRED
|
||||
: !VP8GetBit(br, 114) ? V_PRED
|
||||
: VP8GetBit(br, 183) ? TM_PRED : H_PRED;
|
||||
block->uvmode_ = !VP8GetBit(br, 142, "pred-modes-uv") ? DC_PRED
|
||||
: !VP8GetBit(br, 114, "pred-modes-uv") ? V_PRED
|
||||
: VP8GetBit(br, 183, "pred-modes-uv") ? TM_PRED : H_PRED;
|
||||
}
|
||||
|
||||
int VP8ParseIntraModeRow(VP8BitReader* const br, VP8Decoder* const dec) {
|
||||
@@ -514,8 +518,10 @@ void VP8ParseProba(VP8BitReader* const br, VP8Decoder* const dec) {
|
||||
for (b = 0; b < NUM_BANDS; ++b) {
|
||||
for (c = 0; c < NUM_CTX; ++c) {
|
||||
for (p = 0; p < NUM_PROBAS; ++p) {
|
||||
const int v = VP8GetBit(br, CoeffsUpdateProba[t][b][c][p]) ?
|
||||
VP8GetValue(br, 8) : CoeffsProba0[t][b][c][p];
|
||||
const int v =
|
||||
VP8GetBit(br, CoeffsUpdateProba[t][b][c][p], "global-header") ?
|
||||
VP8GetValue(br, 8, "global-header") :
|
||||
CoeffsProba0[t][b][c][p];
|
||||
proba->bands_[t][b].probas_[c][p] = v;
|
||||
}
|
||||
}
|
||||
@@ -524,9 +530,8 @@ void VP8ParseProba(VP8BitReader* const br, VP8Decoder* const dec) {
|
||||
proba->bands_ptr_[t][b] = &proba->bands_[t][kBands[b]];
|
||||
}
|
||||
}
|
||||
dec->use_skip_proba_ = VP8Get(br);
|
||||
dec->use_skip_proba_ = VP8Get(br, "global-header");
|
||||
if (dec->use_skip_proba_) {
|
||||
dec->skip_p_ = VP8GetValue(br, 8);
|
||||
dec->skip_p_ = VP8GetValue(br, 8, "global-header");
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
Vendored
+42
-39
@@ -161,23 +161,26 @@ static int ParseSegmentHeader(VP8BitReader* br,
|
||||
VP8SegmentHeader* hdr, VP8Proba* proba) {
|
||||
assert(br != NULL);
|
||||
assert(hdr != NULL);
|
||||
hdr->use_segment_ = VP8Get(br);
|
||||
hdr->use_segment_ = VP8Get(br, "global-header");
|
||||
if (hdr->use_segment_) {
|
||||
hdr->update_map_ = VP8Get(br);
|
||||
if (VP8Get(br)) { // update data
|
||||
hdr->update_map_ = VP8Get(br, "global-header");
|
||||
if (VP8Get(br, "global-header")) { // update data
|
||||
int s;
|
||||
hdr->absolute_delta_ = VP8Get(br);
|
||||
hdr->absolute_delta_ = VP8Get(br, "global-header");
|
||||
for (s = 0; s < NUM_MB_SEGMENTS; ++s) {
|
||||
hdr->quantizer_[s] = VP8Get(br) ? VP8GetSignedValue(br, 7) : 0;
|
||||
hdr->quantizer_[s] = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 7, "global-header") : 0;
|
||||
}
|
||||
for (s = 0; s < NUM_MB_SEGMENTS; ++s) {
|
||||
hdr->filter_strength_[s] = VP8Get(br) ? VP8GetSignedValue(br, 6) : 0;
|
||||
hdr->filter_strength_[s] = VP8Get(br, "global-header") ?
|
||||
VP8GetSignedValue(br, 6, "global-header") : 0;
|
||||
}
|
||||
}
|
||||
if (hdr->update_map_) {
|
||||
int s;
|
||||
for (s = 0; s < MB_FEATURE_TREE_PROBS; ++s) {
|
||||
proba->segments_[s] = VP8Get(br) ? VP8GetValue(br, 8) : 255u;
|
||||
proba->segments_[s] = VP8Get(br, "global-header") ?
|
||||
VP8GetValue(br, 8, "global-header") : 255u;
|
||||
}
|
||||
}
|
||||
} else {
|
||||
@@ -205,7 +208,7 @@ static VP8StatusCode ParsePartitions(VP8Decoder* const dec,
|
||||
size_t last_part;
|
||||
size_t p;
|
||||
|
||||
dec->num_parts_minus_one_ = (1 << VP8GetValue(br, 2)) - 1;
|
||||
dec->num_parts_minus_one_ = (1 << VP8GetValue(br, 2, "global-header")) - 1;
|
||||
last_part = dec->num_parts_minus_one_;
|
||||
if (size < 3 * last_part) {
|
||||
// we can't even read the sizes with sz[]! That's a failure.
|
||||
@@ -229,21 +232,21 @@ static VP8StatusCode ParsePartitions(VP8Decoder* const dec,
|
||||
// Paragraph 9.4
|
||||
static int ParseFilterHeader(VP8BitReader* br, VP8Decoder* const dec) {
|
||||
VP8FilterHeader* const hdr = &dec->filter_hdr_;
|
||||
hdr->simple_ = VP8Get(br);
|
||||
hdr->level_ = VP8GetValue(br, 6);
|
||||
hdr->sharpness_ = VP8GetValue(br, 3);
|
||||
hdr->use_lf_delta_ = VP8Get(br);
|
||||
hdr->simple_ = VP8Get(br, "global-header");
|
||||
hdr->level_ = VP8GetValue(br, 6, "global-header");
|
||||
hdr->sharpness_ = VP8GetValue(br, 3, "global-header");
|
||||
hdr->use_lf_delta_ = VP8Get(br, "global-header");
|
||||
if (hdr->use_lf_delta_) {
|
||||
if (VP8Get(br)) { // update lf-delta?
|
||||
if (VP8Get(br, "global-header")) { // update lf-delta?
|
||||
int i;
|
||||
for (i = 0; i < NUM_REF_LF_DELTAS; ++i) {
|
||||
if (VP8Get(br)) {
|
||||
hdr->ref_lf_delta_[i] = VP8GetSignedValue(br, 6);
|
||||
if (VP8Get(br, "global-header")) {
|
||||
hdr->ref_lf_delta_[i] = VP8GetSignedValue(br, 6, "global-header");
|
||||
}
|
||||
}
|
||||
for (i = 0; i < NUM_MODE_LF_DELTAS; ++i) {
|
||||
if (VP8Get(br)) {
|
||||
hdr->mode_lf_delta_[i] = VP8GetSignedValue(br, 6);
|
||||
if (VP8Get(br, "global-header")) {
|
||||
hdr->mode_lf_delta_[i] = VP8GetSignedValue(br, 6, "global-header");
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -352,8 +355,8 @@ int VP8GetHeaders(VP8Decoder* const dec, VP8Io* const io) {
|
||||
buf_size -= frm_hdr->partition_length_;
|
||||
|
||||
if (frm_hdr->key_frame_) {
|
||||
pic_hdr->colorspace_ = VP8Get(br);
|
||||
pic_hdr->clamp_type_ = VP8Get(br);
|
||||
pic_hdr->colorspace_ = VP8Get(br, "global-header");
|
||||
pic_hdr->clamp_type_ = VP8Get(br, "global-header");
|
||||
}
|
||||
if (!ParseSegmentHeader(br, &dec->segment_hdr_, &dec->proba_)) {
|
||||
return VP8SetError(dec, VP8_STATUS_BITSTREAM_ERROR,
|
||||
@@ -378,7 +381,7 @@ int VP8GetHeaders(VP8Decoder* const dec, VP8Io* const io) {
|
||||
"Not a key frame.");
|
||||
}
|
||||
|
||||
VP8Get(br); // ignore the value of update_proba_
|
||||
VP8Get(br, "global-header"); // ignore the value of update_proba_
|
||||
|
||||
VP8ParseProba(br, dec);
|
||||
|
||||
@@ -403,28 +406,28 @@ static const uint8_t kZigzag[16] = {
|
||||
// See section 13-2: http://tools.ietf.org/html/rfc6386#section-13.2
|
||||
static int GetLargeValue(VP8BitReader* const br, const uint8_t* const p) {
|
||||
int v;
|
||||
if (!VP8GetBit(br, p[3])) {
|
||||
if (!VP8GetBit(br, p[4])) {
|
||||
if (!VP8GetBit(br, p[3], "coeffs")) {
|
||||
if (!VP8GetBit(br, p[4], "coeffs")) {
|
||||
v = 2;
|
||||
} else {
|
||||
v = 3 + VP8GetBit(br, p[5]);
|
||||
v = 3 + VP8GetBit(br, p[5], "coeffs");
|
||||
}
|
||||
} else {
|
||||
if (!VP8GetBit(br, p[6])) {
|
||||
if (!VP8GetBit(br, p[7])) {
|
||||
v = 5 + VP8GetBit(br, 159);
|
||||
if (!VP8GetBit(br, p[6], "coeffs")) {
|
||||
if (!VP8GetBit(br, p[7], "coeffs")) {
|
||||
v = 5 + VP8GetBit(br, 159, "coeffs");
|
||||
} else {
|
||||
v = 7 + 2 * VP8GetBit(br, 165);
|
||||
v += VP8GetBit(br, 145);
|
||||
v = 7 + 2 * VP8GetBit(br, 165, "coeffs");
|
||||
v += VP8GetBit(br, 145, "coeffs");
|
||||
}
|
||||
} else {
|
||||
const uint8_t* tab;
|
||||
const int bit1 = VP8GetBit(br, p[8]);
|
||||
const int bit0 = VP8GetBit(br, p[9 + bit1]);
|
||||
const int bit1 = VP8GetBit(br, p[8], "coeffs");
|
||||
const int bit0 = VP8GetBit(br, p[9 + bit1], "coeffs");
|
||||
const int cat = 2 * bit1 + bit0;
|
||||
v = 0;
|
||||
for (tab = kCat3456[cat]; *tab; ++tab) {
|
||||
v += v + VP8GetBit(br, *tab);
|
||||
v += v + VP8GetBit(br, *tab, "coeffs");
|
||||
}
|
||||
v += 3 + (8 << cat);
|
||||
}
|
||||
@@ -438,24 +441,24 @@ static int GetCoeffsFast(VP8BitReader* const br,
|
||||
int ctx, const quant_t dq, int n, int16_t* out) {
|
||||
const uint8_t* p = prob[n]->probas_[ctx];
|
||||
for (; n < 16; ++n) {
|
||||
if (!VP8GetBit(br, p[0])) {
|
||||
if (!VP8GetBit(br, p[0], "coeffs")) {
|
||||
return n; // previous coeff was last non-zero coeff
|
||||
}
|
||||
while (!VP8GetBit(br, p[1])) { // sequence of zero coeffs
|
||||
while (!VP8GetBit(br, p[1], "coeffs")) { // sequence of zero coeffs
|
||||
p = prob[++n]->probas_[0];
|
||||
if (n == 16) return 16;
|
||||
}
|
||||
{ // non zero coeff
|
||||
const VP8ProbaArray* const p_ctx = &prob[n + 1]->probas_[0];
|
||||
int v;
|
||||
if (!VP8GetBit(br, p[2])) {
|
||||
if (!VP8GetBit(br, p[2], "coeffs")) {
|
||||
v = 1;
|
||||
p = p_ctx[1];
|
||||
} else {
|
||||
v = GetLargeValue(br, p);
|
||||
p = p_ctx[2];
|
||||
}
|
||||
out[kZigzag[n]] = VP8GetSigned(br, v) * dq[n > 0];
|
||||
out[kZigzag[n]] = VP8GetSigned(br, v, "coeffs") * dq[n > 0];
|
||||
}
|
||||
}
|
||||
return 16;
|
||||
@@ -468,24 +471,24 @@ static int GetCoeffsAlt(VP8BitReader* const br,
|
||||
int ctx, const quant_t dq, int n, int16_t* out) {
|
||||
const uint8_t* p = prob[n]->probas_[ctx];
|
||||
for (; n < 16; ++n) {
|
||||
if (!VP8GetBitAlt(br, p[0])) {
|
||||
if (!VP8GetBitAlt(br, p[0], "coeffs")) {
|
||||
return n; // previous coeff was last non-zero coeff
|
||||
}
|
||||
while (!VP8GetBitAlt(br, p[1])) { // sequence of zero coeffs
|
||||
while (!VP8GetBitAlt(br, p[1], "coeffs")) { // sequence of zero coeffs
|
||||
p = prob[++n]->probas_[0];
|
||||
if (n == 16) return 16;
|
||||
}
|
||||
{ // non zero coeff
|
||||
const VP8ProbaArray* const p_ctx = &prob[n + 1]->probas_[0];
|
||||
int v;
|
||||
if (!VP8GetBitAlt(br, p[2])) {
|
||||
if (!VP8GetBitAlt(br, p[2], "coeffs")) {
|
||||
v = 1;
|
||||
p = p_ctx[1];
|
||||
} else {
|
||||
v = GetLargeValue(br, p);
|
||||
p = p_ctx[2];
|
||||
}
|
||||
out[kZigzag[n]] = VP8GetSigned(br, v) * dq[n > 0];
|
||||
out[kZigzag[n]] = VP8GetSigned(br, v, "coeffs") * dq[n > 0];
|
||||
}
|
||||
}
|
||||
return 16;
|
||||
|
||||
Vendored
+2
-2
@@ -31,8 +31,8 @@ extern "C" {
|
||||
|
||||
// version numbers
|
||||
#define DEC_MAJ_VERSION 1
|
||||
#define DEC_MIN_VERSION 0
|
||||
#define DEC_REV_VERSION 2
|
||||
#define DEC_MIN_VERSION 1
|
||||
#define DEC_REV_VERSION 0
|
||||
|
||||
// YUV-cache parameters. Cache is 32-bytes wide (= one cacheline).
|
||||
// Constraints are: We need to store one 16x16 block of luma samples (y),
|
||||
|
||||
Vendored
+66
-69
@@ -362,12 +362,8 @@ static int ReadHuffmanCodes(VP8LDecoder* const dec, int xsize, int ysize,
|
||||
VP8LMetadata* const hdr = &dec->hdr_;
|
||||
uint32_t* huffman_image = NULL;
|
||||
HTreeGroup* htree_groups = NULL;
|
||||
// When reading htrees, some might be unused, as the format allows it.
|
||||
// We will still read them but put them in this htree_group_bogus.
|
||||
HTreeGroup htree_group_bogus;
|
||||
HuffmanCode* huffman_tables = NULL;
|
||||
HuffmanCode* huffman_tables_bogus = NULL;
|
||||
HuffmanCode* next = NULL;
|
||||
HuffmanCode* huffman_table = NULL;
|
||||
int num_htree_groups = 1;
|
||||
int num_htree_groups_max = 1;
|
||||
int max_alphabet_size = 0;
|
||||
@@ -418,12 +414,6 @@ static int ReadHuffmanCodes(VP8LDecoder* const dec, int xsize, int ysize,
|
||||
if (*mapped_group == -1) *mapped_group = num_htree_groups++;
|
||||
huffman_image[i] = *mapped_group;
|
||||
}
|
||||
huffman_tables_bogus = (HuffmanCode*)WebPSafeMalloc(
|
||||
table_size, sizeof(*huffman_tables_bogus));
|
||||
if (huffman_tables_bogus == NULL) {
|
||||
dec->status_ = VP8_STATUS_OUT_OF_MEMORY;
|
||||
goto Error;
|
||||
}
|
||||
} else {
|
||||
num_htree_groups = num_htree_groups_max;
|
||||
}
|
||||
@@ -453,63 +443,71 @@ static int ReadHuffmanCodes(VP8LDecoder* const dec, int xsize, int ysize,
|
||||
goto Error;
|
||||
}
|
||||
|
||||
next = huffman_tables;
|
||||
huffman_table = huffman_tables;
|
||||
for (i = 0; i < num_htree_groups_max; ++i) {
|
||||
// If the index "i" is unused in the Huffman image, read the coefficients
|
||||
// but store them to a bogus htree_group.
|
||||
const int is_bogus = (mapping != NULL && mapping[i] == -1);
|
||||
HTreeGroup* const htree_group =
|
||||
is_bogus ? &htree_group_bogus :
|
||||
&htree_groups[(mapping == NULL) ? i : mapping[i]];
|
||||
HuffmanCode** const htrees = htree_group->htrees;
|
||||
HuffmanCode* huffman_tables_i = is_bogus ? huffman_tables_bogus : next;
|
||||
int size;
|
||||
int total_size = 0;
|
||||
int is_trivial_literal = 1;
|
||||
int max_bits = 0;
|
||||
for (j = 0; j < HUFFMAN_CODES_PER_META_CODE; ++j) {
|
||||
int alphabet_size = kAlphabetSize[j];
|
||||
htrees[j] = huffman_tables_i;
|
||||
if (j == 0 && color_cache_bits > 0) {
|
||||
alphabet_size += 1 << color_cache_bits;
|
||||
}
|
||||
size =
|
||||
ReadHuffmanCode(alphabet_size, dec, code_lengths, huffman_tables_i);
|
||||
if (size == 0) {
|
||||
goto Error;
|
||||
}
|
||||
if (is_trivial_literal && kLiteralMap[j] == 1) {
|
||||
is_trivial_literal = (huffman_tables_i->bits == 0);
|
||||
}
|
||||
total_size += huffman_tables_i->bits;
|
||||
huffman_tables_i += size;
|
||||
if (j <= ALPHA) {
|
||||
int local_max_bits = code_lengths[0];
|
||||
int k;
|
||||
for (k = 1; k < alphabet_size; ++k) {
|
||||
if (code_lengths[k] > local_max_bits) {
|
||||
local_max_bits = code_lengths[k];
|
||||
}
|
||||
// If the index "i" is unused in the Huffman image, just make sure the
|
||||
// coefficients are valid but do not store them.
|
||||
if (mapping != NULL && mapping[i] == -1) {
|
||||
for (j = 0; j < HUFFMAN_CODES_PER_META_CODE; ++j) {
|
||||
int alphabet_size = kAlphabetSize[j];
|
||||
if (j == 0 && color_cache_bits > 0) {
|
||||
alphabet_size += (1 << color_cache_bits);
|
||||
}
|
||||
// Passing in NULL so that nothing gets filled.
|
||||
if (!ReadHuffmanCode(alphabet_size, dec, code_lengths, NULL)) {
|
||||
goto Error;
|
||||
}
|
||||
max_bits += local_max_bits;
|
||||
}
|
||||
}
|
||||
if (!is_bogus) next = huffman_tables_i;
|
||||
htree_group->is_trivial_literal = is_trivial_literal;
|
||||
htree_group->is_trivial_code = 0;
|
||||
if (is_trivial_literal) {
|
||||
const int red = htrees[RED][0].value;
|
||||
const int blue = htrees[BLUE][0].value;
|
||||
const int alpha = htrees[ALPHA][0].value;
|
||||
htree_group->literal_arb = ((uint32_t)alpha << 24) | (red << 16) | blue;
|
||||
if (total_size == 0 && htrees[GREEN][0].value < NUM_LITERAL_CODES) {
|
||||
htree_group->is_trivial_code = 1;
|
||||
htree_group->literal_arb |= htrees[GREEN][0].value << 8;
|
||||
} else {
|
||||
HTreeGroup* const htree_group =
|
||||
&htree_groups[(mapping == NULL) ? i : mapping[i]];
|
||||
HuffmanCode** const htrees = htree_group->htrees;
|
||||
int size;
|
||||
int total_size = 0;
|
||||
int is_trivial_literal = 1;
|
||||
int max_bits = 0;
|
||||
for (j = 0; j < HUFFMAN_CODES_PER_META_CODE; ++j) {
|
||||
int alphabet_size = kAlphabetSize[j];
|
||||
htrees[j] = huffman_table;
|
||||
if (j == 0 && color_cache_bits > 0) {
|
||||
alphabet_size += (1 << color_cache_bits);
|
||||
}
|
||||
size = ReadHuffmanCode(alphabet_size, dec, code_lengths, huffman_table);
|
||||
if (size == 0) {
|
||||
goto Error;
|
||||
}
|
||||
if (is_trivial_literal && kLiteralMap[j] == 1) {
|
||||
is_trivial_literal = (huffman_table->bits == 0);
|
||||
}
|
||||
total_size += huffman_table->bits;
|
||||
huffman_table += size;
|
||||
if (j <= ALPHA) {
|
||||
int local_max_bits = code_lengths[0];
|
||||
int k;
|
||||
for (k = 1; k < alphabet_size; ++k) {
|
||||
if (code_lengths[k] > local_max_bits) {
|
||||
local_max_bits = code_lengths[k];
|
||||
}
|
||||
}
|
||||
max_bits += local_max_bits;
|
||||
}
|
||||
}
|
||||
htree_group->is_trivial_literal = is_trivial_literal;
|
||||
htree_group->is_trivial_code = 0;
|
||||
if (is_trivial_literal) {
|
||||
const int red = htrees[RED][0].value;
|
||||
const int blue = htrees[BLUE][0].value;
|
||||
const int alpha = htrees[ALPHA][0].value;
|
||||
htree_group->literal_arb = ((uint32_t)alpha << 24) | (red << 16) | blue;
|
||||
if (total_size == 0 && htrees[GREEN][0].value < NUM_LITERAL_CODES) {
|
||||
htree_group->is_trivial_code = 1;
|
||||
htree_group->literal_arb |= htrees[GREEN][0].value << 8;
|
||||
}
|
||||
}
|
||||
htree_group->use_packed_table =
|
||||
!htree_group->is_trivial_code && (max_bits < HUFFMAN_PACKED_BITS);
|
||||
if (htree_group->use_packed_table) BuildPackedTable(htree_group);
|
||||
}
|
||||
htree_group->use_packed_table =
|
||||
!htree_group->is_trivial_code && (max_bits < HUFFMAN_PACKED_BITS);
|
||||
if (htree_group->use_packed_table) BuildPackedTable(htree_group);
|
||||
}
|
||||
ok = 1;
|
||||
|
||||
@@ -521,7 +519,6 @@ static int ReadHuffmanCodes(VP8LDecoder* const dec, int xsize, int ysize,
|
||||
|
||||
Error:
|
||||
WebPSafeFree(code_lengths);
|
||||
WebPSafeFree(huffman_tables_bogus);
|
||||
WebPSafeFree(mapping);
|
||||
if (!ok) {
|
||||
WebPSafeFree(huffman_image);
|
||||
@@ -757,11 +754,11 @@ static WEBP_INLINE HTreeGroup* GetHtreeGroupForPos(VP8LMetadata* const hdr,
|
||||
|
||||
typedef void (*ProcessRowsFunc)(VP8LDecoder* const dec, int row);
|
||||
|
||||
static void ApplyInverseTransforms(VP8LDecoder* const dec, int num_rows,
|
||||
static void ApplyInverseTransforms(VP8LDecoder* const dec,
|
||||
int start_row, int num_rows,
|
||||
const uint32_t* const rows) {
|
||||
int n = dec->next_transform_;
|
||||
const int cache_pixs = dec->width_ * num_rows;
|
||||
const int start_row = dec->last_row_;
|
||||
const int end_row = start_row + num_rows;
|
||||
const uint32_t* rows_in = rows;
|
||||
uint32_t* const rows_out = dec->argb_cache_;
|
||||
@@ -792,8 +789,7 @@ static void ProcessRows(VP8LDecoder* const dec, int row) {
|
||||
VP8Io* const io = dec->io_;
|
||||
uint8_t* rows_data = (uint8_t*)dec->argb_cache_;
|
||||
const int in_stride = io->width * sizeof(uint32_t); // in unit of RGBA
|
||||
|
||||
ApplyInverseTransforms(dec, num_rows, rows);
|
||||
ApplyInverseTransforms(dec, dec->last_row_, num_rows, rows);
|
||||
if (!SetCropWindow(io, dec->last_row_, row, &rows_data, in_stride)) {
|
||||
// Nothing to output (this time).
|
||||
} else {
|
||||
@@ -1196,6 +1192,7 @@ static int DecodeImageData(VP8LDecoder* const dec, uint32_t* const data,
|
||||
VP8LFillBitWindow(br);
|
||||
dist_code = GetCopyDistance(dist_symbol, br);
|
||||
dist = PlaneCodeToDistance(width, dist_code);
|
||||
|
||||
if (VP8LIsEndOfStream(br)) break;
|
||||
if (src - data < (ptrdiff_t)dist || src_end - src < (ptrdiff_t)length) {
|
||||
goto Error;
|
||||
@@ -1556,7 +1553,7 @@ static void ExtractAlphaRows(VP8LDecoder* const dec, int last_row) {
|
||||
const int cache_pixs = width * num_rows_to_process;
|
||||
uint8_t* const dst = output + width * cur_row;
|
||||
const uint32_t* const src = dec->argb_cache_;
|
||||
ApplyInverseTransforms(dec, num_rows_to_process, in);
|
||||
ApplyInverseTransforms(dec, cur_row, num_rows_to_process, in);
|
||||
WebPExtractGreen(src, dst, cache_pixs);
|
||||
AlphaApplyFilter(alph_dec,
|
||||
cur_row, cur_row + num_rows_to_process, dst, width);
|
||||
|
||||
Vendored
+10
-10
@@ -37,7 +37,7 @@ struct VP8LTransform {
|
||||
int bits_; // subsampling bits defining transform window.
|
||||
int xsize_; // transform window X index.
|
||||
int ysize_; // transform window Y index.
|
||||
uint32_t *data_; // transform data.
|
||||
uint32_t* data_; // transform data.
|
||||
};
|
||||
|
||||
typedef struct {
|
||||
@@ -48,23 +48,23 @@ typedef struct {
|
||||
int huffman_mask_;
|
||||
int huffman_subsample_bits_;
|
||||
int huffman_xsize_;
|
||||
uint32_t *huffman_image_;
|
||||
uint32_t* huffman_image_;
|
||||
int num_htree_groups_;
|
||||
HTreeGroup *htree_groups_;
|
||||
HuffmanCode *huffman_tables_;
|
||||
HTreeGroup* htree_groups_;
|
||||
HuffmanCode* huffman_tables_;
|
||||
} VP8LMetadata;
|
||||
|
||||
typedef struct VP8LDecoder VP8LDecoder;
|
||||
struct VP8LDecoder {
|
||||
VP8StatusCode status_;
|
||||
VP8LDecodeState state_;
|
||||
VP8Io *io_;
|
||||
VP8Io* io_;
|
||||
|
||||
const WebPDecBuffer *output_; // shortcut to io->opaque->output
|
||||
const WebPDecBuffer* output_; // shortcut to io->opaque->output
|
||||
|
||||
uint32_t *pixels_; // Internal data: either uint8_t* for alpha
|
||||
uint32_t* pixels_; // Internal data: either uint8_t* for alpha
|
||||
// or uint32_t* for BGRA.
|
||||
uint32_t *argb_cache_; // Scratch buffer for temporary BGRA storage.
|
||||
uint32_t* argb_cache_; // Scratch buffer for temporary BGRA storage.
|
||||
|
||||
VP8LBitReader br_;
|
||||
int incremental_; // if true, incremental decoding is expected
|
||||
@@ -86,8 +86,8 @@ struct VP8LDecoder {
|
||||
// or'd bitset storing the transforms types.
|
||||
uint32_t transforms_seen_;
|
||||
|
||||
uint8_t *rescaler_memory; // Working memory for rescaling work.
|
||||
WebPRescaler *rescaler; // Common rescaler for all channels.
|
||||
uint8_t* rescaler_memory; // Working memory for rescaling work.
|
||||
WebPRescaler* rescaler; // Common rescaler for all channels.
|
||||
};
|
||||
|
||||
//------------------------------------------------------------------------------
|
||||
|
||||
Vendored
+2
-2
@@ -24,8 +24,8 @@
|
||||
#include "src/webp/format_constants.h"
|
||||
|
||||
#define DMUX_MAJ_VERSION 1
|
||||
#define DMUX_MIN_VERSION 0
|
||||
#define DMUX_REV_VERSION 2
|
||||
#define DMUX_MIN_VERSION 1
|
||||
#define DMUX_REV_VERSION 0
|
||||
|
||||
typedef struct {
|
||||
size_t start_; // start location of the data
|
||||
|
||||
+2
-2
@@ -214,7 +214,7 @@ static void ApplyAlphaMultiply_SSE2(uint8_t* rgba, int alpha_first,
|
||||
// Alpha detection
|
||||
|
||||
static int HasAlpha8b_SSE2(const uint8_t* src, int length) {
|
||||
const __m128i all_0xff = _mm_set1_epi8(0xff);
|
||||
const __m128i all_0xff = _mm_set1_epi8((char)0xff);
|
||||
int i = 0;
|
||||
for (; i + 16 <= length; i += 16) {
|
||||
const __m128i v = _mm_loadu_si128((const __m128i*)(src + i));
|
||||
@@ -228,7 +228,7 @@ static int HasAlpha8b_SSE2(const uint8_t* src, int length) {
|
||||
|
||||
static int HasAlpha32b_SSE2(const uint8_t* src, int length) {
|
||||
const __m128i alpha_mask = _mm_set1_epi32(0xff);
|
||||
const __m128i all_0xff = _mm_set1_epi8(0xff);
|
||||
const __m128i all_0xff = _mm_set1_epi8((char)0xff);
|
||||
int i = 0;
|
||||
// We don't know if we can access the last 3 bytes after the last alpha
|
||||
// value 'src[4 * length - 4]' (because we don't know if alpha is the first
|
||||
|
||||
Vendored
+2
-2
@@ -173,8 +173,8 @@ static int AndroidCPUInfo(CPUFeature feature) {
|
||||
const AndroidCpuFamily cpu_family = android_getCpuFamily();
|
||||
const uint64_t cpu_features = android_getCpuFeatures();
|
||||
if (feature == kNEON) {
|
||||
return (cpu_family == ANDROID_CPU_FAMILY_ARM &&
|
||||
0 != (cpu_features & ANDROID_CPU_ARM_FEATURE_NEON));
|
||||
return cpu_family == ANDROID_CPU_FAMILY_ARM &&
|
||||
(cpu_features & ANDROID_CPU_ARM_FEATURE_NEON) != 0;
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
Vendored
+8
-1
@@ -1361,7 +1361,8 @@ static void RD4_NEON(uint8_t* dst) { // Down-right
|
||||
const uint32_t J = dst[-1 + 1 * BPS];
|
||||
const uint32_t K = dst[-1 + 2 * BPS];
|
||||
const uint32_t L = dst[-1 + 3 * BPS];
|
||||
const uint64x1_t LKJI____ = vcreate_u64(L | (K << 8) | (J << 16) | (I << 24));
|
||||
const uint64x1_t LKJI____ =
|
||||
vcreate_u64((uint64_t)L | (K << 8) | (J << 16) | (I << 24));
|
||||
const uint64x1_t LKJIXABC = vorr_u64(LKJI____, ____XABC);
|
||||
const uint8x8_t KJIXABC_ = vreinterpret_u8_u64(vshr_n_u64(LKJIXABC, 8));
|
||||
const uint8x8_t JIXABC__ = vreinterpret_u8_u64(vshr_n_u64(LKJIXABC, 16));
|
||||
@@ -1427,10 +1428,16 @@ static WEBP_INLINE void DC8_NEON(uint8_t* dst, int do_top, int do_left) {
|
||||
|
||||
if (do_top) {
|
||||
const uint8x8_t A = vld1_u8(dst - BPS); // top row
|
||||
#if defined(__aarch64__)
|
||||
const uint16x8_t B = vmovl_u8(A);
|
||||
const uint16_t p2 = vaddvq_u16(B);
|
||||
sum_top = vdupq_n_u16(p2);
|
||||
#else
|
||||
const uint16x4_t p0 = vpaddl_u8(A); // cascading summation of the top
|
||||
const uint16x4_t p1 = vpadd_u16(p0, p0);
|
||||
const uint16x4_t p2 = vpadd_u16(p1, p1);
|
||||
sum_top = vcombine_u16(p2, p2);
|
||||
#endif
|
||||
}
|
||||
|
||||
if (do_left) {
|
||||
|
||||
Vendored
+7
-7
@@ -326,7 +326,7 @@ static WEBP_INLINE void Update2Pixels_SSE2(__m128i* const pi, __m128i* const qi,
|
||||
const __m128i a1_lo = _mm_srai_epi16(*a0_lo, 7);
|
||||
const __m128i a1_hi = _mm_srai_epi16(*a0_hi, 7);
|
||||
const __m128i delta = _mm_packs_epi16(a1_lo, a1_hi);
|
||||
const __m128i sign_bit = _mm_set1_epi8(0x80);
|
||||
const __m128i sign_bit = _mm_set1_epi8((char)0x80);
|
||||
*pi = _mm_adds_epi8(*pi, delta);
|
||||
*qi = _mm_subs_epi8(*qi, delta);
|
||||
FLIP_SIGN_BIT2(*pi, *qi);
|
||||
@@ -338,9 +338,9 @@ static WEBP_INLINE void NeedsFilter_SSE2(const __m128i* const p1,
|
||||
const __m128i* const q0,
|
||||
const __m128i* const q1,
|
||||
int thresh, __m128i* const mask) {
|
||||
const __m128i m_thresh = _mm_set1_epi8(thresh);
|
||||
const __m128i m_thresh = _mm_set1_epi8((char)thresh);
|
||||
const __m128i t1 = MM_ABS(*p1, *q1); // abs(p1 - q1)
|
||||
const __m128i kFE = _mm_set1_epi8(0xFE);
|
||||
const __m128i kFE = _mm_set1_epi8((char)0xFE);
|
||||
const __m128i t2 = _mm_and_si128(t1, kFE); // set lsb of each byte to zero
|
||||
const __m128i t3 = _mm_srli_epi16(t2, 1); // abs(p1 - q1) / 2
|
||||
|
||||
@@ -360,7 +360,7 @@ static WEBP_INLINE void DoFilter2_SSE2(__m128i* const p1, __m128i* const p0,
|
||||
__m128i* const q0, __m128i* const q1,
|
||||
int thresh) {
|
||||
__m128i a, mask;
|
||||
const __m128i sign_bit = _mm_set1_epi8(0x80);
|
||||
const __m128i sign_bit = _mm_set1_epi8((char)0x80);
|
||||
// convert p1/q1 to int8_t (for GetBaseDelta_SSE2)
|
||||
const __m128i p1s = _mm_xor_si128(*p1, sign_bit);
|
||||
const __m128i q1s = _mm_xor_si128(*q1, sign_bit);
|
||||
@@ -380,7 +380,7 @@ static WEBP_INLINE void DoFilter4_SSE2(__m128i* const p1, __m128i* const p0,
|
||||
const __m128i* const mask,
|
||||
int hev_thresh) {
|
||||
const __m128i zero = _mm_setzero_si128();
|
||||
const __m128i sign_bit = _mm_set1_epi8(0x80);
|
||||
const __m128i sign_bit = _mm_set1_epi8((char)0x80);
|
||||
const __m128i k64 = _mm_set1_epi8(64);
|
||||
const __m128i k3 = _mm_set1_epi8(3);
|
||||
const __m128i k4 = _mm_set1_epi8(4);
|
||||
@@ -427,7 +427,7 @@ static WEBP_INLINE void DoFilter6_SSE2(__m128i* const p2, __m128i* const p1,
|
||||
const __m128i* const mask,
|
||||
int hev_thresh) {
|
||||
const __m128i zero = _mm_setzero_si128();
|
||||
const __m128i sign_bit = _mm_set1_epi8(0x80);
|
||||
const __m128i sign_bit = _mm_set1_epi8((char)0x80);
|
||||
__m128i a, not_hev;
|
||||
|
||||
// compute hev mask
|
||||
@@ -941,7 +941,7 @@ static void VR4_SSE2(uint8_t* dst) { // Vertical-Right
|
||||
const __m128i ABCD0 = _mm_srli_si128(XABCD, 1);
|
||||
const __m128i abcd = _mm_avg_epu8(XABCD, ABCD0);
|
||||
const __m128i _XABCD = _mm_slli_si128(XABCD, 1);
|
||||
const __m128i IXABCD = _mm_insert_epi16(_XABCD, I | (X << 8), 0);
|
||||
const __m128i IXABCD = _mm_insert_epi16(_XABCD, (short)(I | (X << 8)), 0);
|
||||
const __m128i avg1 = _mm_avg_epu8(IXABCD, ABCD0);
|
||||
const __m128i lsb = _mm_and_si128(_mm_xor_si128(IXABCD, ABCD0), one);
|
||||
const __m128i avg2 = _mm_subs_epu8(avg1, lsb);
|
||||
|
||||
Vendored
+2
-2
@@ -246,9 +246,9 @@ extern VP8Fdct VP8FTransform2; // performs two transforms at a time
|
||||
extern VP8WHT VP8FTransformWHT;
|
||||
// Predictions
|
||||
// *dst is the destination block. *top and *left can be NULL.
|
||||
typedef void (*VP8IntraPreds)(uint8_t *dst, const uint8_t* left,
|
||||
typedef void (*VP8IntraPreds)(uint8_t* dst, const uint8_t* left,
|
||||
const uint8_t* top);
|
||||
typedef void (*VP8Intra4Preds)(uint8_t *dst, const uint8_t* top);
|
||||
typedef void (*VP8Intra4Preds)(uint8_t* dst, const uint8_t* top);
|
||||
extern VP8Intra4Preds VP8EncPredLuma4;
|
||||
extern VP8IntraPreds VP8EncPredLuma16;
|
||||
extern VP8IntraPreds VP8EncPredChroma8;
|
||||
|
||||
Vendored
+1
-1
@@ -777,7 +777,7 @@ static WEBP_INLINE void VR4_SSE2(uint8_t* dst,
|
||||
const __m128i ABCD0 = _mm_srli_si128(XABCD, 1);
|
||||
const __m128i abcd = _mm_avg_epu8(XABCD, ABCD0);
|
||||
const __m128i _XABCD = _mm_slli_si128(XABCD, 1);
|
||||
const __m128i IXABCD = _mm_insert_epi16(_XABCD, I | (X << 8), 0);
|
||||
const __m128i IXABCD = _mm_insert_epi16(_XABCD, (short)(I | (X << 8)), 0);
|
||||
const __m128i avg1 = _mm_avg_epu8(IXABCD, ABCD0);
|
||||
const __m128i lsb = _mm_and_si128(_mm_xor_si128(IXABCD, ABCD0), one);
|
||||
const __m128i avg2 = _mm_subs_epu8(avg1, lsb);
|
||||
|
||||
Vendored
+6
-6
@@ -33,9 +33,9 @@ static WEBP_INLINE void PredictLine_C(const uint8_t* src, const uint8_t* pred,
|
||||
uint8_t* dst, int length, int inverse) {
|
||||
int i;
|
||||
if (inverse) {
|
||||
for (i = 0; i < length; ++i) dst[i] = src[i] + pred[i];
|
||||
for (i = 0; i < length; ++i) dst[i] = (uint8_t)(src[i] + pred[i]);
|
||||
} else {
|
||||
for (i = 0; i < length; ++i) dst[i] = src[i] - pred[i];
|
||||
for (i = 0; i < length; ++i) dst[i] = (uint8_t)(src[i] - pred[i]);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -155,7 +155,7 @@ static WEBP_INLINE void DoGradientFilter_C(const uint8_t* in,
|
||||
const int pred = GradientPredictor_C(preds[w - 1],
|
||||
preds[w - stride],
|
||||
preds[w - stride - 1]);
|
||||
out[w] = in[w] + (inverse ? pred : -pred);
|
||||
out[w] = (uint8_t)(in[w] + (inverse ? pred : -pred));
|
||||
}
|
||||
++row;
|
||||
preds += stride;
|
||||
@@ -194,7 +194,7 @@ static void HorizontalUnfilter_C(const uint8_t* prev, const uint8_t* in,
|
||||
uint8_t pred = (prev == NULL) ? 0 : prev[0];
|
||||
int i;
|
||||
for (i = 0; i < width; ++i) {
|
||||
out[i] = pred + in[i];
|
||||
out[i] = (uint8_t)(pred + in[i]);
|
||||
pred = out[i];
|
||||
}
|
||||
}
|
||||
@@ -206,7 +206,7 @@ static void VerticalUnfilter_C(const uint8_t* prev, const uint8_t* in,
|
||||
HorizontalUnfilter_C(NULL, in, out, width);
|
||||
} else {
|
||||
int i;
|
||||
for (i = 0; i < width; ++i) out[i] = prev[i] + in[i];
|
||||
for (i = 0; i < width; ++i) out[i] = (uint8_t)(prev[i] + in[i]);
|
||||
}
|
||||
}
|
||||
#endif // !WEBP_NEON_OMIT_C_CODE
|
||||
@@ -220,7 +220,7 @@ static void GradientUnfilter_C(const uint8_t* prev, const uint8_t* in,
|
||||
int i;
|
||||
for (i = 0; i < width; ++i) {
|
||||
top = prev[i]; // need to read this first, in case prev==out
|
||||
left = in[i] + GradientPredictor_C(left, top, top_left);
|
||||
left = (uint8_t)(in[i] + GradientPredictor_C(left, top, top_left));
|
||||
top_left = top;
|
||||
out[i] = left;
|
||||
}
|
||||
|
||||
+9
-7
@@ -163,7 +163,8 @@ static void GradientPredictDirect_SSE2(const uint8_t* const row,
|
||||
_mm_storel_epi64((__m128i*)(out + i), H);
|
||||
}
|
||||
for (; i < length; ++i) {
|
||||
out[i] = row[i] - GradientPredictor_SSE2(row[i - 1], top[i], top[i - 1]);
|
||||
const int delta = GradientPredictor_SSE2(row[i - 1], top[i], top[i - 1]);
|
||||
out[i] = (uint8_t)(row[i] - delta);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -188,7 +189,7 @@ static WEBP_INLINE void DoGradientFilter_SSE2(const uint8_t* in,
|
||||
|
||||
// Filter line-by-line.
|
||||
while (row < last_row) {
|
||||
out[0] = in[0] - in[-stride];
|
||||
out[0] = (uint8_t)(in[0] - in[-stride]);
|
||||
GradientPredictDirect_SSE2(in + 1, in + 1 - stride, out + 1, width - 1);
|
||||
++row;
|
||||
in += stride;
|
||||
@@ -223,7 +224,7 @@ static void HorizontalUnfilter_SSE2(const uint8_t* prev, const uint8_t* in,
|
||||
uint8_t* out, int width) {
|
||||
int i;
|
||||
__m128i last;
|
||||
out[0] = in[0] + (prev == NULL ? 0 : prev[0]);
|
||||
out[0] = (uint8_t)(in[0] + (prev == NULL ? 0 : prev[0]));
|
||||
if (width <= 1) return;
|
||||
last = _mm_set_epi32(0, 0, 0, out[0]);
|
||||
for (i = 1; i + 8 <= width; i += 8) {
|
||||
@@ -238,7 +239,7 @@ static void HorizontalUnfilter_SSE2(const uint8_t* prev, const uint8_t* in,
|
||||
_mm_storel_epi64((__m128i*)(out + i), A7);
|
||||
last = _mm_srli_epi64(A7, 56);
|
||||
}
|
||||
for (; i < width; ++i) out[i] = in[i] + out[i - 1];
|
||||
for (; i < width; ++i) out[i] = (uint8_t)(in[i] + out[i - 1]);
|
||||
}
|
||||
|
||||
static void VerticalUnfilter_SSE2(const uint8_t* prev, const uint8_t* in,
|
||||
@@ -259,7 +260,7 @@ static void VerticalUnfilter_SSE2(const uint8_t* prev, const uint8_t* in,
|
||||
_mm_storeu_si128((__m128i*)&out[i + 0], C0);
|
||||
_mm_storeu_si128((__m128i*)&out[i + 16], C1);
|
||||
}
|
||||
for (; i < width; ++i) out[i] = in[i] + prev[i];
|
||||
for (; i < width; ++i) out[i] = (uint8_t)(in[i] + prev[i]);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -296,7 +297,8 @@ static void GradientPredictInverse_SSE2(const uint8_t* const in,
|
||||
_mm_storel_epi64((__m128i*)&row[i], out);
|
||||
}
|
||||
for (; i < length; ++i) {
|
||||
row[i] = in[i] + GradientPredictor_SSE2(row[i - 1], top[i], top[i - 1]);
|
||||
const int delta = GradientPredictor_SSE2(row[i - 1], top[i], top[i - 1]);
|
||||
row[i] = (uint8_t)(in[i] + delta);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -306,7 +308,7 @@ static void GradientUnfilter_SSE2(const uint8_t* prev, const uint8_t* in,
|
||||
if (prev == NULL) {
|
||||
HorizontalUnfilter_SSE2(NULL, in, out, width);
|
||||
} else {
|
||||
out[0] = in[0] + prev[0]; // predict from above
|
||||
out[0] = (uint8_t)(in[0] + prev[0]); // predict from above
|
||||
GradientPredictInverse_SSE2(in + 1, prev + 1, out + 1, width - 1);
|
||||
}
|
||||
}
|
||||
|
||||
Vendored
+10
-5
@@ -81,7 +81,7 @@ static WEBP_INLINE uint32_t ClampedAddSubtractHalf(uint32_t c0, uint32_t c1,
|
||||
|
||||
// gcc <= 4.9 on ARM generates incorrect code in Select() when Sub3() is
|
||||
// inlined.
|
||||
#if defined(__arm__) && LOCAL_GCC_VERSION <= 0x409
|
||||
#if defined(__arm__) && defined(__GNUC__) && LOCAL_GCC_VERSION <= 0x409
|
||||
# define LOCAL_INLINE __attribute__ ((noinline))
|
||||
#else
|
||||
# define LOCAL_INLINE WEBP_INLINE
|
||||
@@ -167,15 +167,20 @@ static uint32_t Predictor13_C(uint32_t left, const uint32_t* const top) {
|
||||
return pred;
|
||||
}
|
||||
|
||||
GENERATE_PREDICTOR_ADD(Predictor0_C, PredictorAdd0_C)
|
||||
static void PredictorAdd0_C(const uint32_t* in, const uint32_t* upper,
|
||||
int num_pixels, uint32_t* out) {
|
||||
int x;
|
||||
(void)upper;
|
||||
for (x = 0; x < num_pixels; ++x) out[x] = VP8LAddPixels(in[x], ARGB_BLACK);
|
||||
}
|
||||
static void PredictorAdd1_C(const uint32_t* in, const uint32_t* upper,
|
||||
int num_pixels, uint32_t* out) {
|
||||
int i;
|
||||
uint32_t left = out[-1];
|
||||
(void)upper;
|
||||
for (i = 0; i < num_pixels; ++i) {
|
||||
out[i] = left = VP8LAddPixels(in[i], left);
|
||||
}
|
||||
(void)upper;
|
||||
}
|
||||
GENERATE_PREDICTOR_ADD(Predictor2_C, PredictorAdd2_C)
|
||||
GENERATE_PREDICTOR_ADD(Predictor3_C, PredictorAdd3_C)
|
||||
@@ -270,14 +275,14 @@ void VP8LTransformColorInverse_C(const VP8LMultipliers* const m,
|
||||
int i;
|
||||
for (i = 0; i < num_pixels; ++i) {
|
||||
const uint32_t argb = src[i];
|
||||
const uint32_t green = argb >> 8;
|
||||
const int8_t green = (int8_t)(argb >> 8);
|
||||
const uint32_t red = argb >> 16;
|
||||
int new_red = red & 0xff;
|
||||
int new_blue = argb & 0xff;
|
||||
new_red += ColorTransformDelta(m->green_to_red_, green);
|
||||
new_red &= 0xff;
|
||||
new_blue += ColorTransformDelta(m->green_to_blue_, green);
|
||||
new_blue += ColorTransformDelta(m->red_to_blue_, new_red);
|
||||
new_blue += ColorTransformDelta(m->red_to_blue_, (int8_t)new_red);
|
||||
new_blue &= 0xff;
|
||||
dst[i] = (argb & 0xff00ff00u) | (new_red << 16) | (new_blue);
|
||||
}
|
||||
|
||||
+2
@@ -177,6 +177,7 @@ uint32_t VP8LSubPixels(uint32_t a, uint32_t b) {
|
||||
static void PREDICTOR_ADD(const uint32_t* in, const uint32_t* upper, \
|
||||
int num_pixels, uint32_t* out) { \
|
||||
int x; \
|
||||
assert(upper != NULL); \
|
||||
for (x = 0; x < num_pixels; ++x) { \
|
||||
const uint32_t pred = (PREDICTOR)(out[x - 1], upper + x); \
|
||||
out[x] = VP8LAddPixels(in[x], pred); \
|
||||
@@ -189,6 +190,7 @@ static void PREDICTOR_ADD(const uint32_t* in, const uint32_t* upper, \
|
||||
static void PREDICTOR_SUB(const uint32_t* in, const uint32_t* upper, \
|
||||
int num_pixels, uint32_t* out) { \
|
||||
int x; \
|
||||
assert(upper != NULL); \
|
||||
for (x = 0; x < num_pixels; ++x) { \
|
||||
const uint32_t pred = (PREDICTOR)(in[x - 1], upper + x); \
|
||||
out[x] = VP8LSubPixels(in[x], pred); \
|
||||
|
||||
+13
-8
@@ -515,13 +515,17 @@ static WEBP_INLINE int ColorTransformDelta(int8_t color_pred, int8_t color) {
|
||||
return ((int)color_pred * color) >> 5;
|
||||
}
|
||||
|
||||
static WEBP_INLINE int8_t U32ToS8(uint32_t v) {
|
||||
return (int8_t)(v & 0xff);
|
||||
}
|
||||
|
||||
void VP8LTransformColor_C(const VP8LMultipliers* const m, uint32_t* data,
|
||||
int num_pixels) {
|
||||
int i;
|
||||
for (i = 0; i < num_pixels; ++i) {
|
||||
const uint32_t argb = data[i];
|
||||
const uint32_t green = argb >> 8;
|
||||
const uint32_t red = argb >> 16;
|
||||
const int8_t green = U32ToS8(argb >> 8);
|
||||
const int8_t red = U32ToS8(argb >> 16);
|
||||
int new_red = red & 0xff;
|
||||
int new_blue = argb & 0xff;
|
||||
new_red -= ColorTransformDelta(m->green_to_red_, green);
|
||||
@@ -535,7 +539,7 @@ void VP8LTransformColor_C(const VP8LMultipliers* const m, uint32_t* data,
|
||||
|
||||
static WEBP_INLINE uint8_t TransformColorRed(uint8_t green_to_red,
|
||||
uint32_t argb) {
|
||||
const uint32_t green = argb >> 8;
|
||||
const int8_t green = U32ToS8(argb >> 8);
|
||||
int new_red = argb >> 16;
|
||||
new_red -= ColorTransformDelta(green_to_red, green);
|
||||
return (new_red & 0xff);
|
||||
@@ -544,9 +548,9 @@ static WEBP_INLINE uint8_t TransformColorRed(uint8_t green_to_red,
|
||||
static WEBP_INLINE uint8_t TransformColorBlue(uint8_t green_to_blue,
|
||||
uint8_t red_to_blue,
|
||||
uint32_t argb) {
|
||||
const uint32_t green = argb >> 8;
|
||||
const uint32_t red = argb >> 16;
|
||||
uint8_t new_blue = argb;
|
||||
const int8_t green = U32ToS8(argb >> 8);
|
||||
const int8_t red = U32ToS8(argb >> 16);
|
||||
uint8_t new_blue = argb & 0xff;
|
||||
new_blue -= ColorTransformDelta(green_to_blue, green);
|
||||
new_blue -= ColorTransformDelta(red_to_blue, red);
|
||||
return (new_blue & 0xff);
|
||||
@@ -558,7 +562,7 @@ void VP8LCollectColorRedTransforms_C(const uint32_t* argb, int stride,
|
||||
while (tile_height-- > 0) {
|
||||
int x;
|
||||
for (x = 0; x < tile_width; ++x) {
|
||||
++histo[TransformColorRed(green_to_red, argb[x])];
|
||||
++histo[TransformColorRed((uint8_t)green_to_red, argb[x])];
|
||||
}
|
||||
argb += stride;
|
||||
}
|
||||
@@ -571,7 +575,8 @@ void VP8LCollectColorBlueTransforms_C(const uint32_t* argb, int stride,
|
||||
while (tile_height-- > 0) {
|
||||
int x;
|
||||
for (x = 0; x < tile_width; ++x) {
|
||||
++histo[TransformColorBlue(green_to_blue, red_to_blue, argb[x])];
|
||||
++histo[TransformColorBlue((uint8_t)green_to_blue, (uint8_t)red_to_blue,
|
||||
argb[x])];
|
||||
}
|
||||
argb += stride;
|
||||
}
|
||||
|
||||
+4
-3
@@ -363,7 +363,7 @@ static void BundleColorMap_SSE2(const uint8_t* const row, int width, int xbits,
|
||||
assert(xbits <= 3);
|
||||
switch (xbits) {
|
||||
case 0: {
|
||||
const __m128i ff = _mm_set1_epi16(0xff00);
|
||||
const __m128i ff = _mm_set1_epi16((short)0xff00);
|
||||
const __m128i zero = _mm_setzero_si128();
|
||||
// Store 0xff000000 | (row[x] << 8).
|
||||
for (x = 0; x + 16 <= width; x += 16, dst += 16) {
|
||||
@@ -382,7 +382,7 @@ static void BundleColorMap_SSE2(const uint8_t* const row, int width, int xbits,
|
||||
break;
|
||||
}
|
||||
case 1: {
|
||||
const __m128i ff = _mm_set1_epi16(0xff00);
|
||||
const __m128i ff = _mm_set1_epi16((short)0xff00);
|
||||
const __m128i mul = _mm_set1_epi16(0x110);
|
||||
for (x = 0; x + 16 <= width; x += 16, dst += 8) {
|
||||
// 0a0b | (where a/b are 4 bits).
|
||||
@@ -455,8 +455,9 @@ static void PredictorSub0_SSE2(const uint32_t* in, const uint32_t* upper,
|
||||
_mm_storeu_si128((__m128i*)&out[i], res);
|
||||
}
|
||||
if (i != num_pixels) {
|
||||
VP8LPredictorsSub_C[0](in + i, upper + i, num_pixels - i, out + i);
|
||||
VP8LPredictorsSub_C[0](in + i, NULL, num_pixels - i, out + i);
|
||||
}
|
||||
(void)upper;
|
||||
}
|
||||
|
||||
#define GENERATE_PREDICTOR_1(X, IN) \
|
||||
|
||||
+3
-3
@@ -51,9 +51,9 @@ static void CollectColorBlueTransforms_SSE41(const uint32_t* argb, int stride,
|
||||
int histo[]) {
|
||||
const __m128i mults_r = _mm_set1_epi16(CST_5b(red_to_blue));
|
||||
const __m128i mults_g = _mm_set1_epi16(CST_5b(green_to_blue));
|
||||
const __m128i mask_g = _mm_set1_epi16(0xff00); // green mask
|
||||
const __m128i mask_gb = _mm_set1_epi32(0xffff); // green/blue mask
|
||||
const __m128i mask_b = _mm_set1_epi16(0x00ff); // blue mask
|
||||
const __m128i mask_g = _mm_set1_epi16((short)0xff00); // green mask
|
||||
const __m128i mask_gb = _mm_set1_epi32(0xffff); // green/blue mask
|
||||
const __m128i mask_b = _mm_set1_epi16(0x00ff); // blue mask
|
||||
const __m128i shuffler_lo = _mm_setr_epi8(-1, 2, -1, 6, -1, 10, -1, 14, -1,
|
||||
-1, -1, -1, -1, -1, -1, -1);
|
||||
const __m128i shuffler_hi = _mm_setr_epi8(-1, -1, -1, -1, -1, -1, -1, -1, -1,
|
||||
|
||||
+2
-1
@@ -191,8 +191,9 @@ static void PredictorAdd0_SSE2(const uint32_t* in, const uint32_t* upper,
|
||||
_mm_storeu_si128((__m128i*)&out[i], res);
|
||||
}
|
||||
if (i != num_pixels) {
|
||||
VP8LPredictorsAdd_C[0](in + i, upper + i, num_pixels - i, out + i);
|
||||
VP8LPredictorsAdd_C[0](in + i, NULL, num_pixels - i, out + i);
|
||||
}
|
||||
(void)upper;
|
||||
}
|
||||
|
||||
// Predictor1: left.
|
||||
|
||||
Vendored
+2
-2
@@ -73,7 +73,7 @@
|
||||
static inline TYPE FUNC_NAME(const void* const psrc) { \
|
||||
const uint8_t* const psrc_m = (const uint8_t*)psrc; \
|
||||
TYPE val_m; \
|
||||
asm volatile ( \
|
||||
__asm__ volatile ( \
|
||||
"" #INSTR " %[val_m], %[psrc_m] \n\t" \
|
||||
: [val_m] "=r" (val_m) \
|
||||
: [psrc_m] "m" (*psrc_m)); \
|
||||
@@ -86,7 +86,7 @@
|
||||
static inline void FUNC_NAME(TYPE val, void* const pdst) { \
|
||||
uint8_t* const pdst_m = (uint8_t*)pdst; \
|
||||
TYPE val_m = val; \
|
||||
asm volatile ( \
|
||||
__asm__ volatile ( \
|
||||
" " #INSTR " %[val_m], %[pdst_m] \n\t" \
|
||||
: [pdst_m] "=m" (*pdst_m) \
|
||||
: [val_m] "r" (val_m)); \
|
||||
|
||||
Vendored
+15
@@ -10,6 +10,8 @@
|
||||
#ifndef WEBP_DSP_QUANT_H_
|
||||
#define WEBP_DSP_QUANT_H_
|
||||
|
||||
#include <string.h>
|
||||
|
||||
#include "src/dsp/dsp.h"
|
||||
#include "src/webp/types.h"
|
||||
|
||||
@@ -67,4 +69,17 @@ static WEBP_INLINE int IsFlat(const int16_t* levels, int num_blocks,
|
||||
#endif // defined(WEBP_USE_NEON) && !defined(WEBP_ANDROID_NEON) &&
|
||||
// !defined(WEBP_HAVE_NEON_RTCD)
|
||||
|
||||
static WEBP_INLINE int IsFlatSource16(const uint8_t* src) {
|
||||
const uint32_t v = src[0] * 0x01010101u;
|
||||
int i;
|
||||
for (i = 0; i < 16; ++i) {
|
||||
if (memcmp(src + 0, &v, 4) || memcmp(src + 4, &v, 4) ||
|
||||
memcmp(src + 8, &v, 4) || memcmp(src + 12, &v, 4)) {
|
||||
return 0;
|
||||
}
|
||||
src += BPS;
|
||||
}
|
||||
return 1;
|
||||
}
|
||||
|
||||
#endif // WEBP_DSP_QUANT_H_
|
||||
|
||||
Vendored
+6
-10
@@ -109,8 +109,7 @@ void WebPRescalerExportRowExpand_C(WebPRescaler* const wrk) {
|
||||
for (x_out = 0; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t J = frow[x_out];
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
} else {
|
||||
const uint32_t B = WEBP_RESCALER_FRAC(-wrk->y_accum, wrk->y_sub);
|
||||
@@ -120,8 +119,7 @@ void WebPRescalerExportRowExpand_C(WebPRescaler* const wrk) {
|
||||
+ (uint64_t)B * irow[x_out];
|
||||
const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -138,17 +136,15 @@ void WebPRescalerExportRowShrink_C(WebPRescaler* const wrk) {
|
||||
assert(!wrk->y_expand);
|
||||
if (yscale) {
|
||||
for (x_out = 0; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t frac = (uint32_t)MULT_FIX(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX_FLOOR(irow[x_out] - frac, wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
const uint32_t frac = (uint32_t)MULT_FIX_FLOOR(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = frac; // new fractional start
|
||||
}
|
||||
} else {
|
||||
for (x_out = 0; x_out < x_out_max; ++x_out) {
|
||||
const int v = (int)MULT_FIX(irow[x_out], wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = 0;
|
||||
}
|
||||
}
|
||||
|
||||
+6
-10
@@ -107,10 +107,9 @@ static void ExportRowShrink_MIPSdspR2(WebPRescaler* const wrk) {
|
||||
);
|
||||
}
|
||||
for (i = 0; i < (x_out_max & 0x3); ++i) {
|
||||
const uint32_t frac = (uint32_t)MULT_FIX(*frow++, yscale);
|
||||
const int v = (int)MULT_FIX_FLOOR(*irow - frac, wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
*dst++ = v;
|
||||
const uint32_t frac = (uint32_t)MULT_FIX_FLOOR(*frow++, yscale);
|
||||
const int v = (int)MULT_FIX(*irow - frac, wrk->fxy_scale);
|
||||
*dst++ = (v > 255) ? 255u : (uint8_t)v;
|
||||
*irow++ = frac; // new fractional start
|
||||
}
|
||||
} else {
|
||||
@@ -157,8 +156,7 @@ static void ExportRowShrink_MIPSdspR2(WebPRescaler* const wrk) {
|
||||
}
|
||||
for (i = 0; i < (x_out_max & 0x3); ++i) {
|
||||
const int v = (int)MULT_FIX_FLOOR(*irow, wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
*dst++ = v;
|
||||
*dst++ = (v > 255) ? 255u : (uint8_t)v;
|
||||
*irow++ = 0;
|
||||
}
|
||||
}
|
||||
@@ -219,8 +217,7 @@ static void ExportRowExpand_MIPSdspR2(WebPRescaler* const wrk) {
|
||||
for (i = 0; i < (x_out_max & 0x3); ++i) {
|
||||
const uint32_t J = *frow++;
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
*dst++ = v;
|
||||
*dst++ = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
} else {
|
||||
const uint32_t B = WEBP_RESCALER_FRAC(-wrk->y_accum, wrk->y_sub);
|
||||
@@ -291,8 +288,7 @@ static void ExportRowExpand_MIPSdspR2(WebPRescaler* const wrk) {
|
||||
+ (uint64_t)B * *irow++;
|
||||
const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
*dst++ = v;
|
||||
*dst++ = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
+6
-10
@@ -166,8 +166,7 @@ static WEBP_INLINE void ExportRowExpand_0(const uint32_t* frow, uint8_t* dst,
|
||||
for (x_out = 0; x_out < length; ++x_out) {
|
||||
const uint32_t J = frow[x_out];
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -241,8 +240,7 @@ static WEBP_INLINE void ExportRowExpand_1(const uint32_t* frow, uint32_t* irow,
|
||||
+ (uint64_t)B * irow[x_out];
|
||||
const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -342,10 +340,9 @@ static WEBP_INLINE void ExportRowShrink_0(const uint32_t* frow, uint32_t* irow,
|
||||
length -= 4;
|
||||
}
|
||||
for (x_out = 0; x_out < length; ++x_out) {
|
||||
const uint32_t frac = (uint32_t)MULT_FIX(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX_FLOOR(irow[x_out] - frac, wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
const uint32_t frac = (uint32_t)MULT_FIX_FLOOR(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = frac;
|
||||
}
|
||||
}
|
||||
@@ -406,8 +403,7 @@ static WEBP_INLINE void ExportRowShrink_1(uint32_t* irow, uint8_t* dst,
|
||||
}
|
||||
for (x_out = 0; x_out < length; ++x_out) {
|
||||
const int v = (int)MULT_FIX(irow[x_out], wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = 0;
|
||||
}
|
||||
}
|
||||
|
||||
+14
-18
@@ -81,14 +81,13 @@ static void RescalerExportRowExpand_NEON(WebPRescaler* const wrk) {
|
||||
const uint32x4_t B1 = MULT_FIX(A1, fy_scale_half);
|
||||
const uint16x4_t C0 = vmovn_u32(B0);
|
||||
const uint16x4_t C1 = vmovn_u32(B1);
|
||||
const uint8x8_t D = vmovn_u16(vcombine_u16(C0, C1));
|
||||
const uint8x8_t D = vqmovn_u16(vcombine_u16(C0, C1));
|
||||
vst1_u8(dst + x_out, D);
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t J = frow[x_out];
|
||||
const int v = (int)MULT_FIX_C(J, fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
} else {
|
||||
const uint32_t B = WEBP_RESCALER_FRAC(-wrk->y_accum, wrk->y_sub);
|
||||
@@ -102,7 +101,7 @@ static void RescalerExportRowExpand_NEON(WebPRescaler* const wrk) {
|
||||
const uint32x4_t D1 = MULT_FIX(C1, fy_scale_half);
|
||||
const uint16x4_t E0 = vmovn_u32(D0);
|
||||
const uint16x4_t E1 = vmovn_u32(D1);
|
||||
const uint8x8_t F = vmovn_u16(vcombine_u16(E0, E1));
|
||||
const uint8x8_t F = vqmovn_u16(vcombine_u16(E0, E1));
|
||||
vst1_u8(dst + x_out, F);
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
@@ -110,8 +109,7 @@ static void RescalerExportRowExpand_NEON(WebPRescaler* const wrk) {
|
||||
+ (uint64_t)B * irow[x_out];
|
||||
const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
|
||||
const int v = (int)MULT_FIX_C(J, fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -135,23 +133,22 @@ static void RescalerExportRowShrink_NEON(WebPRescaler* const wrk) {
|
||||
for (x_out = 0; x_out < max_span; x_out += 8) {
|
||||
LOAD_32x8(frow + x_out, in0, in1);
|
||||
LOAD_32x8(irow + x_out, in2, in3);
|
||||
const uint32x4_t A0 = MULT_FIX(in0, yscale_half);
|
||||
const uint32x4_t A1 = MULT_FIX(in1, yscale_half);
|
||||
const uint32x4_t A0 = MULT_FIX_FLOOR(in0, yscale_half);
|
||||
const uint32x4_t A1 = MULT_FIX_FLOOR(in1, yscale_half);
|
||||
const uint32x4_t B0 = vqsubq_u32(in2, A0);
|
||||
const uint32x4_t B1 = vqsubq_u32(in3, A1);
|
||||
const uint32x4_t C0 = MULT_FIX_FLOOR(B0, fxy_scale_half);
|
||||
const uint32x4_t C1 = MULT_FIX_FLOOR(B1, fxy_scale_half);
|
||||
const uint32x4_t C0 = MULT_FIX(B0, fxy_scale_half);
|
||||
const uint32x4_t C1 = MULT_FIX(B1, fxy_scale_half);
|
||||
const uint16x4_t D0 = vmovn_u32(C0);
|
||||
const uint16x4_t D1 = vmovn_u32(C1);
|
||||
const uint8x8_t E = vmovn_u16(vcombine_u16(D0, D1));
|
||||
const uint8x8_t E = vqmovn_u16(vcombine_u16(D0, D1));
|
||||
vst1_u8(dst + x_out, E);
|
||||
STORE_32x8(A0, A1, irow + x_out);
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t frac = (uint32_t)MULT_FIX_C(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX_FLOOR_C(irow[x_out] - frac, fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
const uint32_t frac = (uint32_t)MULT_FIX_FLOOR_C(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX_C(irow[x_out] - frac, fxy_scale);
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = frac; // new fractional start
|
||||
}
|
||||
} else {
|
||||
@@ -161,14 +158,13 @@ static void RescalerExportRowShrink_NEON(WebPRescaler* const wrk) {
|
||||
const uint32x4_t A1 = MULT_FIX(in1, fxy_scale_half);
|
||||
const uint16x4_t B0 = vmovn_u32(A0);
|
||||
const uint16x4_t B1 = vmovn_u32(A1);
|
||||
const uint8x8_t C = vmovn_u16(vcombine_u16(B0, B1));
|
||||
const uint8x8_t C = vqmovn_u16(vcombine_u16(B0, B1));
|
||||
vst1_u8(dst + x_out, C);
|
||||
STORE_32x8(zero, zero, irow + x_out);
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const int v = (int)MULT_FIX_C(irow[x_out], fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = 0;
|
||||
}
|
||||
}
|
||||
|
||||
+11
-49
@@ -225,35 +225,6 @@ static WEBP_INLINE void ProcessRow_SSE2(const __m128i* const A0,
|
||||
_mm_storel_epi64((__m128i*)dst, G);
|
||||
}
|
||||
|
||||
static WEBP_INLINE void ProcessRow_Floor_SSE2(const __m128i* const A0,
|
||||
const __m128i* const A1,
|
||||
const __m128i* const A2,
|
||||
const __m128i* const A3,
|
||||
const __m128i* const mult,
|
||||
uint8_t* const dst) {
|
||||
const __m128i mask = _mm_set_epi32(0xffffffffu, 0, 0xffffffffu, 0);
|
||||
const __m128i B0 = _mm_mul_epu32(*A0, *mult);
|
||||
const __m128i B1 = _mm_mul_epu32(*A1, *mult);
|
||||
const __m128i B2 = _mm_mul_epu32(*A2, *mult);
|
||||
const __m128i B3 = _mm_mul_epu32(*A3, *mult);
|
||||
const __m128i D0 = _mm_srli_epi64(B0, WEBP_RESCALER_RFIX);
|
||||
const __m128i D1 = _mm_srli_epi64(B1, WEBP_RESCALER_RFIX);
|
||||
#if (WEBP_RESCALER_RFIX < 32)
|
||||
const __m128i D2 =
|
||||
_mm_and_si128(_mm_slli_epi64(B2, 32 - WEBP_RESCALER_RFIX), mask);
|
||||
const __m128i D3 =
|
||||
_mm_and_si128(_mm_slli_epi64(B3, 32 - WEBP_RESCALER_RFIX), mask);
|
||||
#else
|
||||
const __m128i D2 = _mm_and_si128(B2, mask);
|
||||
const __m128i D3 = _mm_and_si128(B3, mask);
|
||||
#endif
|
||||
const __m128i E0 = _mm_or_si128(D0, D2);
|
||||
const __m128i E1 = _mm_or_si128(D1, D3);
|
||||
const __m128i F = _mm_packs_epi32(E0, E1);
|
||||
const __m128i G = _mm_packus_epi16(F, F);
|
||||
_mm_storel_epi64((__m128i*)dst, G);
|
||||
}
|
||||
|
||||
static void RescalerExportRowExpand_SSE2(WebPRescaler* const wrk) {
|
||||
int x_out;
|
||||
uint8_t* const dst = wrk->dst;
|
||||
@@ -274,8 +245,7 @@ static void RescalerExportRowExpand_SSE2(WebPRescaler* const wrk) {
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t J = frow[x_out];
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
} else {
|
||||
const uint32_t B = WEBP_RESCALER_FRAC(-wrk->y_accum, wrk->y_sub);
|
||||
@@ -308,8 +278,7 @@ static void RescalerExportRowExpand_SSE2(WebPRescaler* const wrk) {
|
||||
+ (uint64_t)B * irow[x_out];
|
||||
const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
|
||||
const int v = (int)MULT_FIX(J, wrk->fy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -328,20 +297,15 @@ static void RescalerExportRowShrink_SSE2(WebPRescaler* const wrk) {
|
||||
const int scale_xy = wrk->fxy_scale;
|
||||
const __m128i mult_xy = _mm_set_epi32(0, scale_xy, 0, scale_xy);
|
||||
const __m128i mult_y = _mm_set_epi32(0, yscale, 0, yscale);
|
||||
const __m128i rounder = _mm_set_epi32(0, ROUNDER, 0, ROUNDER);
|
||||
for (x_out = 0; x_out + 8 <= x_out_max; x_out += 8) {
|
||||
__m128i A0, A1, A2, A3, B0, B1, B2, B3;
|
||||
LoadDispatchAndMult_SSE2(irow + x_out, NULL, &A0, &A1, &A2, &A3);
|
||||
LoadDispatchAndMult_SSE2(frow + x_out, &mult_y, &B0, &B1, &B2, &B3);
|
||||
{
|
||||
const __m128i C0 = _mm_add_epi64(B0, rounder);
|
||||
const __m128i C1 = _mm_add_epi64(B1, rounder);
|
||||
const __m128i C2 = _mm_add_epi64(B2, rounder);
|
||||
const __m128i C3 = _mm_add_epi64(B3, rounder);
|
||||
const __m128i D0 = _mm_srli_epi64(C0, WEBP_RESCALER_RFIX); // = frac
|
||||
const __m128i D1 = _mm_srli_epi64(C1, WEBP_RESCALER_RFIX);
|
||||
const __m128i D2 = _mm_srli_epi64(C2, WEBP_RESCALER_RFIX);
|
||||
const __m128i D3 = _mm_srli_epi64(C3, WEBP_RESCALER_RFIX);
|
||||
const __m128i D0 = _mm_srli_epi64(B0, WEBP_RESCALER_RFIX); // = frac
|
||||
const __m128i D1 = _mm_srli_epi64(B1, WEBP_RESCALER_RFIX);
|
||||
const __m128i D2 = _mm_srli_epi64(B2, WEBP_RESCALER_RFIX);
|
||||
const __m128i D3 = _mm_srli_epi64(B3, WEBP_RESCALER_RFIX);
|
||||
const __m128i E0 = _mm_sub_epi64(A0, D0); // irow[x] - frac
|
||||
const __m128i E1 = _mm_sub_epi64(A1, D1);
|
||||
const __m128i E2 = _mm_sub_epi64(A2, D2);
|
||||
@@ -352,14 +316,13 @@ static void RescalerExportRowShrink_SSE2(WebPRescaler* const wrk) {
|
||||
const __m128i G1 = _mm_or_si128(D1, F3);
|
||||
_mm_storeu_si128((__m128i*)(irow + x_out + 0), G0);
|
||||
_mm_storeu_si128((__m128i*)(irow + x_out + 4), G1);
|
||||
ProcessRow_Floor_SSE2(&E0, &E1, &E2, &E3, &mult_xy, dst + x_out);
|
||||
ProcessRow_SSE2(&E0, &E1, &E2, &E3, &mult_xy, dst + x_out);
|
||||
}
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const uint32_t frac = (int)MULT_FIX(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX_FLOOR(irow[x_out] - frac, wrk->fxy_scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
const uint32_t frac = (int)MULT_FIX_FLOOR(frow[x_out], yscale);
|
||||
const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = frac; // new fractional start
|
||||
}
|
||||
} else {
|
||||
@@ -375,8 +338,7 @@ static void RescalerExportRowShrink_SSE2(WebPRescaler* const wrk) {
|
||||
}
|
||||
for (; x_out < x_out_max; ++x_out) {
|
||||
const int v = (int)MULT_FIX(irow[x_out], scale);
|
||||
assert(v >= 0 && v <= 255);
|
||||
dst[x_out] = v;
|
||||
dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
|
||||
irow[x_out] = 0;
|
||||
}
|
||||
}
|
||||
|
||||
+2
-2
@@ -576,9 +576,9 @@ static void FUNC_NAME(const uint8_t* top_y, const uint8_t* bot_y, \
|
||||
const uint32_t l_uv = ((cur_u[0]) | ((cur_v[0]) << 16)); \
|
||||
const uint32_t uv0 = (3 * tl_uv + l_uv + 0x00020002u) >> 2; \
|
||||
const uint8_t* ptop_y = &top_y[1]; \
|
||||
uint8_t *ptop_dst = top_dst + XSTEP; \
|
||||
uint8_t* ptop_dst = top_dst + XSTEP; \
|
||||
const uint8_t* pbot_y = &bot_y[1]; \
|
||||
uint8_t *pbot_dst = bot_dst + XSTEP; \
|
||||
uint8_t* pbot_dst = bot_dst + XSTEP; \
|
||||
\
|
||||
FUNC(top_y[0], uv0 & 0xff, (uv0 >> 16), top_dst); \
|
||||
if (bot_y != NULL) { \
|
||||
|
||||
+7
-7
@@ -58,8 +58,8 @@
|
||||
} while (0)
|
||||
|
||||
// Turn the macro into a function for reducing code-size when non-critical
|
||||
static void Upsample16Pixels_NEON(const uint8_t *r1, const uint8_t *r2,
|
||||
uint8_t *out) {
|
||||
static void Upsample16Pixels_NEON(const uint8_t* r1, const uint8_t* r2,
|
||||
uint8_t* out) {
|
||||
UPSAMPLE_16PIXELS(r1, r2, out);
|
||||
}
|
||||
|
||||
@@ -190,14 +190,14 @@ static const int16_t kCoeffs1[4] = { 19077, 26149, 6419, 13320 };
|
||||
}
|
||||
|
||||
#define NEON_UPSAMPLE_FUNC(FUNC_NAME, FMT, XSTEP) \
|
||||
static void FUNC_NAME(const uint8_t *top_y, const uint8_t *bottom_y, \
|
||||
const uint8_t *top_u, const uint8_t *top_v, \
|
||||
const uint8_t *cur_u, const uint8_t *cur_v, \
|
||||
uint8_t *top_dst, uint8_t *bottom_dst, int len) { \
|
||||
static void FUNC_NAME(const uint8_t* top_y, const uint8_t* bottom_y, \
|
||||
const uint8_t* top_u, const uint8_t* top_v, \
|
||||
const uint8_t* cur_u, const uint8_t* cur_v, \
|
||||
uint8_t* top_dst, uint8_t* bottom_dst, int len) { \
|
||||
int block; \
|
||||
/* 16 byte aligned array to cache reconstructed u and v */ \
|
||||
uint8_t uv_buf[2 * 32 + 15]; \
|
||||
uint8_t *const r_uv = (uint8_t*)((uintptr_t)(uv_buf + 15) & ~15); \
|
||||
uint8_t* const r_uv = (uint8_t*)((uintptr_t)(uv_buf + 15) & ~15); \
|
||||
const int uv_len = (len + 1) >> 1; \
|
||||
/* 9 pixels must be read-able for each block */ \
|
||||
const int num_blocks = (uv_len - 1) >> 3; \
|
||||
|
||||
+6
-5
@@ -191,13 +191,14 @@ void VP8LHashChainClear(VP8LHashChain* const p) {
|
||||
|
||||
// -----------------------------------------------------------------------------
|
||||
|
||||
#define HASH_MULTIPLIER_HI (0xc6a4a793ULL)
|
||||
#define HASH_MULTIPLIER_LO (0x5bd1e996ULL)
|
||||
static const uint32_t kHashMultiplierHi = 0xc6a4a793u;
|
||||
static const uint32_t kHashMultiplierLo = 0x5bd1e996u;
|
||||
|
||||
static WEBP_INLINE uint32_t GetPixPairHash64(const uint32_t* const argb) {
|
||||
static WEBP_UBSAN_IGNORE_UNSIGNED_OVERFLOW WEBP_INLINE
|
||||
uint32_t GetPixPairHash64(const uint32_t* const argb) {
|
||||
uint32_t key;
|
||||
key = (argb[1] * HASH_MULTIPLIER_HI) & 0xffffffffu;
|
||||
key += (argb[0] * HASH_MULTIPLIER_LO) & 0xffffffffu;
|
||||
key = argb[1] * kHashMultiplierHi;
|
||||
key += argb[0] * kHashMultiplierLo;
|
||||
key = key >> (32 - HASH_BITS);
|
||||
return key;
|
||||
}
|
||||
|
||||
+3
-4
@@ -641,7 +641,7 @@ static void HistogramAnalyzeEntropyBin(VP8LHistogramSet* const image_histo,
|
||||
// Merges some histograms with same bin_id together if it's advantageous.
|
||||
// Sets the remaining histograms to NULL.
|
||||
static void HistogramCombineEntropyBin(VP8LHistogramSet* const image_histo,
|
||||
int *num_used,
|
||||
int* num_used,
|
||||
const uint16_t* const clusters,
|
||||
uint16_t* const cluster_mappings,
|
||||
VP8LHistogram* cur_combo,
|
||||
@@ -929,9 +929,8 @@ static int HistogramCombineStochastic(VP8LHistogramSet* const image_histo,
|
||||
}
|
||||
|
||||
mappings = (int*) WebPSafeMalloc(*num_used, sizeof(*mappings));
|
||||
if (mappings == NULL || !HistoQueueInit(&histo_queue, kHistoQueueSize)) {
|
||||
goto End;
|
||||
}
|
||||
if (mappings == NULL) return 0;
|
||||
if (!HistoQueueInit(&histo_queue, kHistoQueueSize)) goto End;
|
||||
// Fill the initial mapping.
|
||||
for (j = 0, iter = 0; iter < image_histo->size; ++iter) {
|
||||
if (histograms[iter] == NULL) continue;
|
||||
|
||||
+11
-7
@@ -29,11 +29,15 @@
|
||||
#define USE_INVERSE_ALPHA_TABLE
|
||||
|
||||
#ifdef WORDS_BIGENDIAN
|
||||
#define ALPHA_OFFSET 0 // uint32_t 0xff000000 is 0xff,00,00,00 in memory
|
||||
// uint32_t 0xff000000 is 0xff,00,00,00 in memory
|
||||
#define CHANNEL_OFFSET(i) (i)
|
||||
#else
|
||||
#define ALPHA_OFFSET 3 // uint32_t 0xff000000 is 0x00,00,00,ff in memory
|
||||
// uint32_t 0xff000000 is 0x00,00,00,ff in memory
|
||||
#define CHANNEL_OFFSET(i) (3-(i))
|
||||
#endif
|
||||
|
||||
#define ALPHA_OFFSET CHANNEL_OFFSET(0)
|
||||
|
||||
//------------------------------------------------------------------------------
|
||||
// Detection of non-trivial transparency
|
||||
|
||||
@@ -997,10 +1001,10 @@ static int PictureARGBToYUVA(WebPPicture* picture, WebPEncCSP colorspace,
|
||||
return WebPEncodingSetError(picture, VP8_ENC_ERROR_INVALID_CONFIGURATION);
|
||||
} else {
|
||||
const uint8_t* const argb = (const uint8_t*)picture->argb;
|
||||
const uint8_t* const a = argb + (0 ^ ALPHA_OFFSET);
|
||||
const uint8_t* const r = argb + (1 ^ ALPHA_OFFSET);
|
||||
const uint8_t* const g = argb + (2 ^ ALPHA_OFFSET);
|
||||
const uint8_t* const b = argb + (3 ^ ALPHA_OFFSET);
|
||||
const uint8_t* const a = argb + CHANNEL_OFFSET(0);
|
||||
const uint8_t* const r = argb + CHANNEL_OFFSET(1);
|
||||
const uint8_t* const g = argb + CHANNEL_OFFSET(2);
|
||||
const uint8_t* const b = argb + CHANNEL_OFFSET(3);
|
||||
|
||||
picture->colorspace = WEBP_YUV420;
|
||||
return ImportYUVAFromRGBA(r, g, b, a, 4, 4 * picture->argb_stride,
|
||||
@@ -1050,7 +1054,7 @@ int WebPPictureYUVAToARGB(WebPPicture* picture) {
|
||||
const int height = picture->height;
|
||||
const int argb_stride = 4 * picture->argb_stride;
|
||||
uint8_t* dst = (uint8_t*)picture->argb;
|
||||
const uint8_t *cur_u = picture->u, *cur_v = picture->v, *cur_y = picture->y;
|
||||
const uint8_t* cur_u = picture->u, *cur_v = picture->v, *cur_y = picture->y;
|
||||
WebPUpsampleLinePairFunc upsample =
|
||||
WebPGetLinePairConverter(ALPHA_OFFSET > 0);
|
||||
|
||||
|
||||
+7
-7
@@ -202,7 +202,7 @@ static uint32_t NearLossless(uint32_t value, uint32_t predict,
|
||||
}
|
||||
if ((value >> 24) == 0 || (value >> 24) == 0xff) {
|
||||
// Preserve transparency of fully transparent or fully opaque pixels.
|
||||
a = NearLosslessDiff(value >> 24, predict >> 24);
|
||||
a = NearLosslessDiff((value >> 24) & 0xff, (predict >> 24) & 0xff);
|
||||
} else {
|
||||
a = NearLosslessComponent(value >> 24, predict >> 24, 0xff, quantization);
|
||||
}
|
||||
@@ -215,12 +215,12 @@ static uint32_t NearLossless(uint32_t value, uint32_t predict,
|
||||
// The amount by which green has been adjusted during quantization. It is
|
||||
// subtracted from red and blue for compensation, to avoid accumulating two
|
||||
// quantization errors in them.
|
||||
green_diff = NearLosslessDiff(new_green, value >> 8);
|
||||
green_diff = NearLosslessDiff(new_green, (value >> 8) & 0xff);
|
||||
}
|
||||
r = NearLosslessComponent(NearLosslessDiff(value >> 16, green_diff),
|
||||
r = NearLosslessComponent(NearLosslessDiff((value >> 16) & 0xff, green_diff),
|
||||
(predict >> 16) & 0xff, 0xff - new_green,
|
||||
quantization);
|
||||
b = NearLosslessComponent(NearLosslessDiff(value, green_diff),
|
||||
b = NearLosslessComponent(NearLosslessDiff(value & 0xff, green_diff),
|
||||
predict & 0xff, 0xff - new_green, quantization);
|
||||
return ((uint32_t)a << 24) | ((uint32_t)r << 16) | ((uint32_t)g << 8) | b;
|
||||
}
|
||||
@@ -587,7 +587,7 @@ static void GetBestGreenToRed(
|
||||
}
|
||||
}
|
||||
}
|
||||
best_tx->green_to_red_ = green_to_red_best;
|
||||
best_tx->green_to_red_ = (green_to_red_best & 0xff);
|
||||
}
|
||||
|
||||
static float GetPredictionCostCrossColorBlue(
|
||||
@@ -666,8 +666,8 @@ static void GetBestGreenRedToBlue(
|
||||
break; // out of iter-loop.
|
||||
}
|
||||
}
|
||||
best_tx->green_to_blue_ = green_to_blue_best;
|
||||
best_tx->red_to_blue_ = red_to_blue_best;
|
||||
best_tx->green_to_blue_ = green_to_blue_best & 0xff;
|
||||
best_tx->red_to_blue_ = red_to_blue_best & 0xff;
|
||||
}
|
||||
#undef kGreenRedToBlueMaxIters
|
||||
#undef kGreenRedToBlueNumAxis
|
||||
|
||||
Vendored
+20
-6
@@ -33,7 +33,7 @@
|
||||
|
||||
// number of non-zero coeffs below which we consider the block very flat
|
||||
// (and apply a penalty to complex predictions)
|
||||
#define FLATNESS_LIMIT_I16 10 // I16 mode
|
||||
#define FLATNESS_LIMIT_I16 0 // I16 mode (special case)
|
||||
#define FLATNESS_LIMIT_I4 3 // I4 mode
|
||||
#define FLATNESS_LIMIT_UV 2 // UV mode
|
||||
#define FLATNESS_PENALTY 140 // roughly ~1bit per block
|
||||
@@ -988,6 +988,7 @@ static void PickBestIntra16(VP8EncIterator* const it, VP8ModeScore* rd) {
|
||||
VP8ModeScore* rd_cur = &rd_tmp;
|
||||
VP8ModeScore* rd_best = rd;
|
||||
int mode;
|
||||
int is_flat = IsFlatSource16(it->yuv_in_ + Y_OFF_ENC);
|
||||
|
||||
rd->mode_i16 = -1;
|
||||
for (mode = 0; mode < NUM_PRED_MODES; ++mode) {
|
||||
@@ -1003,10 +1004,14 @@ static void PickBestIntra16(VP8EncIterator* const it, VP8ModeScore* rd) {
|
||||
tlambda ? MULT_8B(tlambda, VP8TDisto16x16(src, tmp_dst, kWeightY)) : 0;
|
||||
rd_cur->H = VP8FixedCostsI16[mode];
|
||||
rd_cur->R = VP8GetCostLuma16(it, rd_cur);
|
||||
if (mode > 0 &&
|
||||
IsFlat(rd_cur->y_ac_levels[0], kNumBlocks, FLATNESS_LIMIT_I16)) {
|
||||
// penalty to avoid flat area to be mispredicted by complex mode
|
||||
rd_cur->R += FLATNESS_PENALTY * kNumBlocks;
|
||||
if (is_flat) {
|
||||
// refine the first impression (which was in pixel space)
|
||||
is_flat = IsFlat(rd_cur->y_ac_levels[0], kNumBlocks, FLATNESS_LIMIT_I16);
|
||||
if (is_flat) {
|
||||
// Block is very flat. We put emphasis on the distortion being very low!
|
||||
rd_cur->D *= 2;
|
||||
rd_cur->SD *= 2;
|
||||
}
|
||||
}
|
||||
|
||||
// Since we always examine Intra16 first, we can overwrite *rd directly.
|
||||
@@ -1087,7 +1092,8 @@ static int PickBestIntra4(VP8EncIterator* const it, VP8ModeScore* const rd) {
|
||||
: 0;
|
||||
rd_tmp.H = mode_costs[mode];
|
||||
|
||||
// Add flatness penalty
|
||||
// Add flatness penalty, to avoid flat area to be mispredicted
|
||||
// by a complex mode.
|
||||
if (mode > 0 && IsFlat(tmp_levels, kNumBlocks, FLATNESS_LIMIT_I4)) {
|
||||
rd_tmp.R = FLATNESS_PENALTY * kNumBlocks;
|
||||
} else {
|
||||
@@ -1242,11 +1248,19 @@ static void RefineUsingDistortion(VP8EncIterator* const it,
|
||||
if (mode > 0 && VP8FixedCostsI16[mode] > bit_limit) {
|
||||
continue;
|
||||
}
|
||||
|
||||
if (score < best_score) {
|
||||
best_mode = mode;
|
||||
best_score = score;
|
||||
}
|
||||
}
|
||||
if (it->x_ == 0 || it->y_ == 0) {
|
||||
// avoid starting a checkerboard resonance from the border. See bug #432.
|
||||
if (IsFlatSource16(src)) {
|
||||
best_mode = (it->x_ == 0) ? 0 : 2;
|
||||
try_both_modes = 0; // stick to i16
|
||||
}
|
||||
}
|
||||
VP8SetIntra16Mode(it, best_mode);
|
||||
// we'll reconstruct later, if i16 mode actually gets selected
|
||||
}
|
||||
|
||||
Vendored
+3
-3
@@ -31,8 +31,8 @@ extern "C" {
|
||||
|
||||
// version numbers
|
||||
#define ENC_MAJ_VERSION 1
|
||||
#define ENC_MIN_VERSION 0
|
||||
#define ENC_REV_VERSION 2
|
||||
#define ENC_MIN_VERSION 1
|
||||
#define ENC_REV_VERSION 0
|
||||
|
||||
enum { MAX_LF_LEVELS = 64, // Maximum loop filter level
|
||||
MAX_VARIABLE_LEVEL = 67, // last (inclusive) level with variable cost
|
||||
@@ -249,7 +249,7 @@ typedef struct {
|
||||
int percent0_; // saved initial progress percent
|
||||
|
||||
DError left_derr_; // left error diffusion (u/v)
|
||||
DError *top_derr_; // top diffusion error - NULL if disabled
|
||||
DError* top_derr_; // top diffusion error - NULL if disabled
|
||||
|
||||
uint8_t* y_left_; // left luma samples (addressable from index -1 to 15).
|
||||
uint8_t* u_left_; // left u samples (addressable from index -1 to 7)
|
||||
|
||||
Vendored
+2
-2
@@ -28,8 +28,8 @@ extern "C" {
|
||||
// Defines and constants.
|
||||
|
||||
#define MUX_MAJ_VERSION 1
|
||||
#define MUX_MIN_VERSION 0
|
||||
#define MUX_REV_VERSION 2
|
||||
#define MUX_MIN_VERSION 1
|
||||
#define MUX_REV_VERSION 0
|
||||
|
||||
// Chunk object.
|
||||
typedef struct WebPChunk WebPChunk;
|
||||
|
||||
Vendored
+1
-1
@@ -100,7 +100,7 @@ static int MuxImageParse(const WebPChunk* const chunk, int copy_data,
|
||||
WebPMuxImage* const wpi) {
|
||||
const uint8_t* bytes = chunk->data_.bytes;
|
||||
size_t size = chunk->data_.size;
|
||||
const uint8_t* const last = bytes + size;
|
||||
const uint8_t* const last = (bytes == NULL) ? NULL : bytes + size;
|
||||
WebPChunk subchunk;
|
||||
size_t subchunk_size;
|
||||
WebPChunk** unknown_chunk_list = &wpi->unknown_;
|
||||
|
||||
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user