| OLD | NEW |
| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "base/base_paths.h" | 5 #include "base/base_paths.h" |
| 6 #include "base/cpu.h" | 6 #include "base/cpu.h" |
| 7 #include "base/file_util.h" | 7 #include "base/file_util.h" |
| 8 #include "base/logging.h" | 8 #include "base/logging.h" |
| 9 #include "base/path_service.h" | 9 #include "base/path_service.h" |
| 10 #include "media/base/djb2.h" | 10 #include "media/base/djb2.h" |
| 11 #include "media/base/simd/convert_rgb_to_yuv.h" | 11 #include "media/base/simd/convert_rgb_to_yuv.h" |
| 12 #include "media/base/simd/convert_yuv_to_rgb.h" | 12 #include "media/base/simd/convert_yuv_to_rgb.h" |
| 13 #include "media/base/simd/filter_yuv.h" | 13 #include "media/base/simd/filter_yuv.h" |
| 14 #include "media/base/simd/yuv_to_rgb_table.h" |
| 14 #include "media/base/yuv_convert.h" | 15 #include "media/base/yuv_convert.h" |
| 15 #include "testing/gtest/include/gtest/gtest.h" | 16 #include "testing/gtest/include/gtest/gtest.h" |
| 16 #include "ui/gfx/rect.h" | 17 #include "ui/gfx/rect.h" |
| 17 | 18 |
| 18 // Size of raw image. | 19 // Size of raw image. |
| 19 static const int kSourceWidth = 640; | 20 static const int kSourceWidth = 640; |
| 20 static const int kSourceHeight = 360; | 21 static const int kSourceHeight = 360; |
| 21 static const int kSourceYSize = kSourceWidth * kSourceHeight; | 22 static const int kSourceYSize = kSourceWidth * kSourceHeight; |
| 22 static const int kSourceUOffset = kSourceYSize; | 23 static const int kSourceUOffset = kSourceYSize; |
| 23 static const int kSourceVOffset = kSourceYSize * 5 / 4; | 24 static const int kSourceVOffset = kSourceYSize * 5 / 4; |
| (...skipping 131 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 155 media::YUVType yuv_type; | 156 media::YUVType yuv_type; |
| 156 media::ScaleFilter scale_filter; | 157 media::ScaleFilter scale_filter; |
| 157 uint32 rgb_hash; | 158 uint32 rgb_hash; |
| 158 }; | 159 }; |
| 159 | 160 |
| 160 class YUVScaleTest : public ::testing::TestWithParam<YUVScaleTestData> { | 161 class YUVScaleTest : public ::testing::TestWithParam<YUVScaleTestData> { |
| 161 public: | 162 public: |
| 162 YUVScaleTest() { | 163 YUVScaleTest() { |
| 163 switch (GetParam().yuv_type) { | 164 switch (GetParam().yuv_type) { |
| 164 case media::YV12: | 165 case media::YV12: |
| 166 case media::YV12J: |
| 165 ReadYV12Data(&yuv_bytes_); | 167 ReadYV12Data(&yuv_bytes_); |
| 166 break; | 168 break; |
| 167 case media::YV16: | 169 case media::YV16: |
| 168 ReadYV16Data(&yuv_bytes_); | 170 ReadYV16Data(&yuv_bytes_); |
| 169 break; | 171 break; |
| 170 } | 172 } |
| 171 | 173 |
| 172 rgb_bytes_.reset(new uint8[kRGBSizeScaled]); | 174 rgb_bytes_.reset(new uint8[kRGBSizeScaled]); |
| 173 } | 175 } |
| 174 | 176 |
| 175 // Helpers for getting the proper Y, U and V plane offsets. | 177 // Helpers for getting the proper Y, U and V plane offsets. |
| 176 uint8* y_plane() { return yuv_bytes_.get(); } | 178 uint8* y_plane() { return yuv_bytes_.get(); } |
| 177 uint8* u_plane() { return yuv_bytes_.get() + kSourceYSize; } | 179 uint8* u_plane() { return yuv_bytes_.get() + kSourceYSize; } |
| 178 uint8* v_plane() { | 180 uint8* v_plane() { |
| 179 switch (GetParam().yuv_type) { | 181 switch (GetParam().yuv_type) { |
| 180 case media::YV12: | 182 case media::YV12: |
| 183 case media::YV12J: |
| 181 return yuv_bytes_.get() + kSourceVOffset; | 184 return yuv_bytes_.get() + kSourceVOffset; |
| 182 case media::YV16: | 185 case media::YV16: |
| 183 return yuv_bytes_.get() + kSourceYSize * 3 / 2; | 186 return yuv_bytes_.get() + kSourceYSize * 3 / 2; |
| 184 } | 187 } |
| 185 return NULL; | 188 return NULL; |
| 186 } | 189 } |
| 187 | 190 |
| 188 scoped_ptr<uint8[]> yuv_bytes_; | 191 scoped_ptr<uint8[]> yuv_bytes_; |
| 189 scoped_ptr<uint8[]> rgb_bytes_; | 192 scoped_ptr<uint8[]> rgb_bytes_; |
| 190 }; | 193 }; |
| (...skipping 420 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 611 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 614 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 612 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 615 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 613 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 616 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 614 ReadYV12Data(&yuv_bytes); | 617 ReadYV12Data(&yuv_bytes); |
| 615 | 618 |
| 616 const int kWidth = 167; | 619 const int kWidth = 167; |
| 617 ConvertYUVToRGB32Row_C(yuv_bytes.get(), | 620 ConvertYUVToRGB32Row_C(yuv_bytes.get(), |
| 618 yuv_bytes.get() + kSourceUOffset, | 621 yuv_bytes.get() + kSourceUOffset, |
| 619 yuv_bytes.get() + kSourceVOffset, | 622 yuv_bytes.get() + kSourceVOffset, |
| 620 rgb_bytes_reference.get(), | 623 rgb_bytes_reference.get(), |
| 621 kWidth); | 624 kWidth, |
| 625 kCoefficientsRgbY); |
| 622 ConvertYUVToRGB32Row_MMX(yuv_bytes.get(), | 626 ConvertYUVToRGB32Row_MMX(yuv_bytes.get(), |
| 623 yuv_bytes.get() + kSourceUOffset, | 627 yuv_bytes.get() + kSourceUOffset, |
| 624 yuv_bytes.get() + kSourceVOffset, | 628 yuv_bytes.get() + kSourceVOffset, |
| 625 rgb_bytes_converted.get(), | 629 rgb_bytes_converted.get(), |
| 626 kWidth); | 630 kWidth, |
| 631 kCoefficientsRgbY); |
| 627 media::EmptyRegisterState(); | 632 media::EmptyRegisterState(); |
| 628 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 633 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 629 rgb_bytes_converted.get(), | 634 rgb_bytes_converted.get(), |
| 630 kWidth * kBpp)); | 635 kWidth * kBpp)); |
| 631 } | 636 } |
| 632 | 637 |
| 633 TEST(YUVConvertTest, ConvertYUVToRGB32Row_SSE) { | 638 TEST(YUVConvertTest, ConvertYUVToRGB32Row_SSE) { |
| 634 base::CPU cpu; | 639 base::CPU cpu; |
| 635 if (!cpu.has_sse()) { | 640 if (!cpu.has_sse()) { |
| 636 LOG(WARNING) << "System not supported. Test skipped."; | 641 LOG(WARNING) << "System not supported. Test skipped."; |
| 637 return; | 642 return; |
| 638 } | 643 } |
| 639 | 644 |
| 640 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 645 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 641 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 646 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 642 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 647 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 643 ReadYV12Data(&yuv_bytes); | 648 ReadYV12Data(&yuv_bytes); |
| 644 | 649 |
| 645 const int kWidth = 167; | 650 const int kWidth = 167; |
| 646 ConvertYUVToRGB32Row_C(yuv_bytes.get(), | 651 ConvertYUVToRGB32Row_C(yuv_bytes.get(), |
| 647 yuv_bytes.get() + kSourceUOffset, | 652 yuv_bytes.get() + kSourceUOffset, |
| 648 yuv_bytes.get() + kSourceVOffset, | 653 yuv_bytes.get() + kSourceVOffset, |
| 649 rgb_bytes_reference.get(), | 654 rgb_bytes_reference.get(), |
| 650 kWidth); | 655 kWidth, |
| 656 kCoefficientsRgbY); |
| 651 ConvertYUVToRGB32Row_SSE(yuv_bytes.get(), | 657 ConvertYUVToRGB32Row_SSE(yuv_bytes.get(), |
| 652 yuv_bytes.get() + kSourceUOffset, | 658 yuv_bytes.get() + kSourceUOffset, |
| 653 yuv_bytes.get() + kSourceVOffset, | 659 yuv_bytes.get() + kSourceVOffset, |
| 654 rgb_bytes_converted.get(), | 660 rgb_bytes_converted.get(), |
| 655 kWidth); | 661 kWidth, |
| 662 kCoefficientsRgbY); |
| 656 media::EmptyRegisterState(); | 663 media::EmptyRegisterState(); |
| 657 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 664 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 658 rgb_bytes_converted.get(), | 665 rgb_bytes_converted.get(), |
| 659 kWidth * kBpp)); | 666 kWidth * kBpp)); |
| 660 } | 667 } |
| 661 | 668 |
| 662 TEST(YUVConvertTest, ScaleYUVToRGB32Row_MMX) { | 669 TEST(YUVConvertTest, ScaleYUVToRGB32Row_MMX) { |
| 663 base::CPU cpu; | 670 base::CPU cpu; |
| 664 if (!cpu.has_mmx()) { | 671 if (!cpu.has_mmx()) { |
| 665 LOG(WARNING) << "System not supported. Test skipped."; | 672 LOG(WARNING) << "System not supported. Test skipped."; |
| 666 return; | 673 return; |
| 667 } | 674 } |
| 668 | 675 |
| 669 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 676 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 670 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 677 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 671 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 678 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 672 ReadYV12Data(&yuv_bytes); | 679 ReadYV12Data(&yuv_bytes); |
| 673 | 680 |
| 674 const int kWidth = 167; | 681 const int kWidth = 167; |
| 675 const int kSourceDx = 80000; // This value means a scale down. | 682 const int kSourceDx = 80000; // This value means a scale down. |
| 676 ScaleYUVToRGB32Row_C(yuv_bytes.get(), | 683 ScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 677 yuv_bytes.get() + kSourceUOffset, | 684 yuv_bytes.get() + kSourceUOffset, |
| 678 yuv_bytes.get() + kSourceVOffset, | 685 yuv_bytes.get() + kSourceVOffset, |
| 679 rgb_bytes_reference.get(), | 686 rgb_bytes_reference.get(), |
| 680 kWidth, | 687 kWidth, |
| 681 kSourceDx); | 688 kSourceDx, |
| 689 kCoefficientsRgbY); |
| 682 ScaleYUVToRGB32Row_MMX(yuv_bytes.get(), | 690 ScaleYUVToRGB32Row_MMX(yuv_bytes.get(), |
| 683 yuv_bytes.get() + kSourceUOffset, | 691 yuv_bytes.get() + kSourceUOffset, |
| 684 yuv_bytes.get() + kSourceVOffset, | 692 yuv_bytes.get() + kSourceVOffset, |
| 685 rgb_bytes_converted.get(), | 693 rgb_bytes_converted.get(), |
| 686 kWidth, | 694 kWidth, |
| 687 kSourceDx); | 695 kSourceDx, |
| 696 kCoefficientsRgbY); |
| 688 media::EmptyRegisterState(); | 697 media::EmptyRegisterState(); |
| 689 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 698 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 690 rgb_bytes_converted.get(), | 699 rgb_bytes_converted.get(), |
| 691 kWidth * kBpp)); | 700 kWidth * kBpp)); |
| 692 } | 701 } |
| 693 | 702 |
| 694 TEST(YUVConvertTest, ScaleYUVToRGB32Row_SSE) { | 703 TEST(YUVConvertTest, ScaleYUVToRGB32Row_SSE) { |
| 695 base::CPU cpu; | 704 base::CPU cpu; |
| 696 if (!cpu.has_sse()) { | 705 if (!cpu.has_sse()) { |
| 697 LOG(WARNING) << "System not supported. Test skipped."; | 706 LOG(WARNING) << "System not supported. Test skipped."; |
| 698 return; | 707 return; |
| 699 } | 708 } |
| 700 | 709 |
| 701 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 710 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 702 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 711 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 703 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 712 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 704 ReadYV12Data(&yuv_bytes); | 713 ReadYV12Data(&yuv_bytes); |
| 705 | 714 |
| 706 const int kWidth = 167; | 715 const int kWidth = 167; |
| 707 const int kSourceDx = 80000; // This value means a scale down. | 716 const int kSourceDx = 80000; // This value means a scale down. |
| 708 ScaleYUVToRGB32Row_C(yuv_bytes.get(), | 717 ScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 709 yuv_bytes.get() + kSourceUOffset, | 718 yuv_bytes.get() + kSourceUOffset, |
| 710 yuv_bytes.get() + kSourceVOffset, | 719 yuv_bytes.get() + kSourceVOffset, |
| 711 rgb_bytes_reference.get(), | 720 rgb_bytes_reference.get(), |
| 712 kWidth, | 721 kWidth, |
| 713 kSourceDx); | 722 kSourceDx, |
| 723 kCoefficientsRgbY); |
| 714 ScaleYUVToRGB32Row_SSE(yuv_bytes.get(), | 724 ScaleYUVToRGB32Row_SSE(yuv_bytes.get(), |
| 715 yuv_bytes.get() + kSourceUOffset, | 725 yuv_bytes.get() + kSourceUOffset, |
| 716 yuv_bytes.get() + kSourceVOffset, | 726 yuv_bytes.get() + kSourceVOffset, |
| 717 rgb_bytes_converted.get(), | 727 rgb_bytes_converted.get(), |
| 718 kWidth, | 728 kWidth, |
| 719 kSourceDx); | 729 kSourceDx, |
| 730 kCoefficientsRgbY); |
| 720 media::EmptyRegisterState(); | 731 media::EmptyRegisterState(); |
| 721 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 732 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 722 rgb_bytes_converted.get(), | 733 rgb_bytes_converted.get(), |
| 723 kWidth * kBpp)); | 734 kWidth * kBpp)); |
| 724 } | 735 } |
| 725 | 736 |
| 726 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_MMX) { | 737 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_MMX) { |
| 727 base::CPU cpu; | 738 base::CPU cpu; |
| 728 if (!cpu.has_mmx()) { | 739 if (!cpu.has_mmx()) { |
| 729 LOG(WARNING) << "System not supported. Test skipped."; | 740 LOG(WARNING) << "System not supported. Test skipped."; |
| 730 return; | 741 return; |
| 731 } | 742 } |
| 732 | 743 |
| 733 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 744 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 734 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 745 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 735 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 746 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 736 ReadYV12Data(&yuv_bytes); | 747 ReadYV12Data(&yuv_bytes); |
| 737 | 748 |
| 738 const int kWidth = 167; | 749 const int kWidth = 167; |
| 739 const int kSourceDx = 80000; // This value means a scale down. | 750 const int kSourceDx = 80000; // This value means a scale down. |
| 740 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), | 751 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 741 yuv_bytes.get() + kSourceUOffset, | 752 yuv_bytes.get() + kSourceUOffset, |
| 742 yuv_bytes.get() + kSourceVOffset, | 753 yuv_bytes.get() + kSourceVOffset, |
| 743 rgb_bytes_reference.get(), | 754 rgb_bytes_reference.get(), |
| 744 kWidth, | 755 kWidth, |
| 745 kSourceDx); | 756 kSourceDx, |
| 757 kCoefficientsRgbY); |
| 746 LinearScaleYUVToRGB32Row_MMX(yuv_bytes.get(), | 758 LinearScaleYUVToRGB32Row_MMX(yuv_bytes.get(), |
| 747 yuv_bytes.get() + kSourceUOffset, | 759 yuv_bytes.get() + kSourceUOffset, |
| 748 yuv_bytes.get() + kSourceVOffset, | 760 yuv_bytes.get() + kSourceVOffset, |
| 749 rgb_bytes_converted.get(), | 761 rgb_bytes_converted.get(), |
| 750 kWidth, | 762 kWidth, |
| 751 kSourceDx); | 763 kSourceDx, |
| 764 kCoefficientsRgbY); |
| 752 media::EmptyRegisterState(); | 765 media::EmptyRegisterState(); |
| 753 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 766 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 754 rgb_bytes_converted.get(), | 767 rgb_bytes_converted.get(), |
| 755 kWidth * kBpp)); | 768 kWidth * kBpp)); |
| 756 } | 769 } |
| 757 | 770 |
| 758 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_SSE) { | 771 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_SSE) { |
| 759 base::CPU cpu; | 772 base::CPU cpu; |
| 760 if (!cpu.has_sse()) { | 773 if (!cpu.has_sse()) { |
| 761 LOG(WARNING) << "System not supported. Test skipped."; | 774 LOG(WARNING) << "System not supported. Test skipped."; |
| 762 return; | 775 return; |
| 763 } | 776 } |
| 764 | 777 |
| 765 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 778 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 766 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 779 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 767 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 780 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 768 ReadYV12Data(&yuv_bytes); | 781 ReadYV12Data(&yuv_bytes); |
| 769 | 782 |
| 770 const int kWidth = 167; | 783 const int kWidth = 167; |
| 771 const int kSourceDx = 80000; // This value means a scale down. | 784 const int kSourceDx = 80000; // This value means a scale down. |
| 772 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), | 785 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 773 yuv_bytes.get() + kSourceUOffset, | 786 yuv_bytes.get() + kSourceUOffset, |
| 774 yuv_bytes.get() + kSourceVOffset, | 787 yuv_bytes.get() + kSourceVOffset, |
| 775 rgb_bytes_reference.get(), | 788 rgb_bytes_reference.get(), |
| 776 kWidth, | 789 kWidth, |
| 777 kSourceDx); | 790 kSourceDx, |
| 791 kCoefficientsRgbY); |
| 778 LinearScaleYUVToRGB32Row_SSE(yuv_bytes.get(), | 792 LinearScaleYUVToRGB32Row_SSE(yuv_bytes.get(), |
| 779 yuv_bytes.get() + kSourceUOffset, | 793 yuv_bytes.get() + kSourceUOffset, |
| 780 yuv_bytes.get() + kSourceVOffset, | 794 yuv_bytes.get() + kSourceVOffset, |
| 781 rgb_bytes_converted.get(), | 795 rgb_bytes_converted.get(), |
| 782 kWidth, | 796 kWidth, |
| 783 kSourceDx); | 797 kSourceDx, |
| 798 kCoefficientsRgbY); |
| 784 media::EmptyRegisterState(); | 799 media::EmptyRegisterState(); |
| 785 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 800 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 786 rgb_bytes_converted.get(), | 801 rgb_bytes_converted.get(), |
| 787 kWidth * kBpp)); | 802 kWidth * kBpp)); |
| 788 } | 803 } |
| 789 | 804 |
| 790 TEST(YUVConvertTest, FilterYUVRows_C_OutOfBounds) { | 805 TEST(YUVConvertTest, FilterYUVRows_C_OutOfBounds) { |
| 791 scoped_ptr<uint8[]> src(new uint8[16]); | 806 scoped_ptr<uint8[]> src(new uint8[16]); |
| 792 scoped_ptr<uint8[]> dst(new uint8[16]); | 807 scoped_ptr<uint8[]> dst(new uint8[16]); |
| 793 | 808 |
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| 917 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 932 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 918 ReadYV12Data(&yuv_bytes); | 933 ReadYV12Data(&yuv_bytes); |
| 919 | 934 |
| 920 const int kWidth = 167; | 935 const int kWidth = 167; |
| 921 const int kSourceDx = 80000; // This value means a scale down. | 936 const int kSourceDx = 80000; // This value means a scale down. |
| 922 ScaleYUVToRGB32Row_C(yuv_bytes.get(), | 937 ScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 923 yuv_bytes.get() + kSourceUOffset, | 938 yuv_bytes.get() + kSourceUOffset, |
| 924 yuv_bytes.get() + kSourceVOffset, | 939 yuv_bytes.get() + kSourceVOffset, |
| 925 rgb_bytes_reference.get(), | 940 rgb_bytes_reference.get(), |
| 926 kWidth, | 941 kWidth, |
| 927 kSourceDx); | 942 kSourceDx, |
| 943 kCoefficientsRgbY); |
| 928 ScaleYUVToRGB32Row_SSE2_X64(yuv_bytes.get(), | 944 ScaleYUVToRGB32Row_SSE2_X64(yuv_bytes.get(), |
| 929 yuv_bytes.get() + kSourceUOffset, | 945 yuv_bytes.get() + kSourceUOffset, |
| 930 yuv_bytes.get() + kSourceVOffset, | 946 yuv_bytes.get() + kSourceVOffset, |
| 931 rgb_bytes_converted.get(), | 947 rgb_bytes_converted.get(), |
| 932 kWidth, | 948 kWidth, |
| 933 kSourceDx); | 949 kSourceDx, |
| 950 kCoefficientsRgbY); |
| 934 media::EmptyRegisterState(); | 951 media::EmptyRegisterState(); |
| 935 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 952 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 936 rgb_bytes_converted.get(), | 953 rgb_bytes_converted.get(), |
| 937 kWidth * kBpp)); | 954 kWidth * kBpp)); |
| 938 } | 955 } |
| 939 | 956 |
| 940 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_MMX_X64) { | 957 TEST(YUVConvertTest, LinearScaleYUVToRGB32Row_MMX_X64) { |
| 941 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); | 958 scoped_ptr<uint8[]> yuv_bytes(new uint8[kYUV12Size]); |
| 942 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); | 959 scoped_ptr<uint8[]> rgb_bytes_reference(new uint8[kRGBSize]); |
| 943 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); | 960 scoped_ptr<uint8[]> rgb_bytes_converted(new uint8[kRGBSize]); |
| 944 ReadYV12Data(&yuv_bytes); | 961 ReadYV12Data(&yuv_bytes); |
| 945 | 962 |
| 946 const int kWidth = 167; | 963 const int kWidth = 167; |
| 947 const int kSourceDx = 80000; // This value means a scale down. | 964 const int kSourceDx = 80000; // This value means a scale down. |
| 948 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), | 965 LinearScaleYUVToRGB32Row_C(yuv_bytes.get(), |
| 949 yuv_bytes.get() + kSourceUOffset, | 966 yuv_bytes.get() + kSourceUOffset, |
| 950 yuv_bytes.get() + kSourceVOffset, | 967 yuv_bytes.get() + kSourceVOffset, |
| 951 rgb_bytes_reference.get(), | 968 rgb_bytes_reference.get(), |
| 952 kWidth, | 969 kWidth, |
| 953 kSourceDx); | 970 kSourceDx, |
| 971 kCoefficientsRgbY); |
| 954 LinearScaleYUVToRGB32Row_MMX_X64(yuv_bytes.get(), | 972 LinearScaleYUVToRGB32Row_MMX_X64(yuv_bytes.get(), |
| 955 yuv_bytes.get() + kSourceUOffset, | 973 yuv_bytes.get() + kSourceUOffset, |
| 956 yuv_bytes.get() + kSourceVOffset, | 974 yuv_bytes.get() + kSourceVOffset, |
| 957 rgb_bytes_converted.get(), | 975 rgb_bytes_converted.get(), |
| 958 kWidth, | 976 kWidth, |
| 959 kSourceDx); | 977 kSourceDx, |
| 978 kCoefficientsRgbY); |
| 960 media::EmptyRegisterState(); | 979 media::EmptyRegisterState(); |
| 961 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), | 980 EXPECT_EQ(0, memcmp(rgb_bytes_reference.get(), |
| 962 rgb_bytes_converted.get(), | 981 rgb_bytes_converted.get(), |
| 963 kWidth * kBpp)); | 982 kWidth * kBpp)); |
| 964 } | 983 } |
| 965 | 984 |
| 966 #endif // defined(ARCH_CPU_X86_64) | 985 #endif // defined(ARCH_CPU_X86_64) |
| 967 | 986 |
| 968 #endif // defined(ARCH_CPU_X86_FAMILY) | 987 #endif // defined(ARCH_CPU_X86_FAMILY) |
| 969 | 988 |
| 970 } // namespace media | 989 } // namespace media |
| OLD | NEW |