mirror of
https://chromium.googlesource.com/libyuv/libyuv
synced 2025-12-06 08:46:47 +08:00
Lane-indexed LD2 instructions are slow and introduce an unnecessary dependency on the previous iteration of the loop. To avoid this dependency use a scalar load for the first iteration and lane-indexed LD1 for the remainder, then TRN1 and TRN2 to split out the even and odd elements. Reduction in runtimes observed compared to the existing Neon implementation: Cortex-A55: -6.7% Cortex-A510: -13.2% Cortex-A520: -13.1% Cortex-A76: -54.5% Cortex-A715: -60.3% Cortex-A720: -61.0% Cortex-X1: -69.1% Cortex-X2: -68.6% Cortex-X3: -73.9% Cortex-X4: -73.8% Cortex-X925: -69.0% Bug: b/42280945 Change-Id: I1c4adfb82a43bdcf2dd4cc212088fc21a5812244 Reviewed-on: https://chromium-review.googlesource.com/c/libyuv/libyuv/+/5872804 Reviewed-by: Justin Green <greenjustin@google.com> Reviewed-by: Frank Barchard <fbarchard@chromium.org> |
||
|---|---|---|
| build_overrides | ||
| docs | ||
| include | ||
| infra/config | ||
| riscv_script | ||
| source | ||
| tools_libyuv | ||
| unit_test | ||
| util | ||
| .clang-format | ||
| .gitignore | ||
| .gn | ||
| .vpython | ||
| .vpython3 | ||
| Android.bp | ||
| Android.mk | ||
| AUTHORS | ||
| BUILD.gn | ||
| CM_linux_packages.cmake | ||
| CMakeLists.txt | ||
| codereview.settings | ||
| DEPS | ||
| DIR_METADATA | ||
| download_vs_toolchain.py | ||
| libyuv.gni | ||
| libyuv.gyp | ||
| libyuv.gypi | ||
| LICENSE | ||
| linux.mk | ||
| OWNERS | ||
| PATENTS | ||
| PRESUBMIT.py | ||
| public.mk | ||
| pylintrc | ||
| README.chromium | ||
| README.md | ||
| winarm.mk | ||
libyuv is an open source project that includes YUV scaling and conversion functionality.
- Scale YUV to prepare content for compression, with point, bilinear or box filter.
- Convert to YUV from webcam formats for compression.
- Convert to RGB formats for rendering/effects.
- Rotate by 90/180/270 degrees to adjust for mobile devices in portrait mode.
- Optimized for SSSE3/AVX2 on x86/x64.
- Optimized for Neon/SVE2/SME on Arm.
- Optimized for MSA on Mips.
- Optimized for RVV on RISC-V.
Development
See Getting started for instructions on how to get started developing.
You can also browse the docs directory for more documentation.