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1 /* | 1 /* |
2 * Copyright 2014 Google Inc. | 2 * Copyright 2014 Google Inc. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license that can be | 4 * Use of this source code is governed by a BSD-style license that can be |
5 * found in the LICENSE file. | 5 * found in the LICENSE file. |
6 */ | 6 */ |
7 | 7 |
8 #include "SkBitmap.h" | 8 #include "SkBitmap.h" |
9 #include "SkData.h" | 9 #include "SkData.h" |
10 #include "SkEndian.h" | 10 #include "SkEndian.h" |
11 #include "SkImageInfo.h" | 11 #include "SkImageInfo.h" |
12 #include "SkTextureCompressor.h" | 12 #include "SkTextureCompressor.h" |
13 #include "Test.h" | 13 #include "Test.h" |
14 | 14 |
15 static const int kLATCBlockDimension = 4; | |
16 static const int kLATCEncodedBlockSize = 8; | |
17 | |
18 /** | 15 /** |
19 * Make sure that we properly fail when we don't have multiple of four image dim ensions. | 16 * Make sure that we properly fail when we don't have multiple of four image dim ensions. |
20 */ | 17 */ |
21 DEF_TEST(CompressLATCFailDimensions, reporter) { | 18 DEF_TEST(CompressAlphaFailDimensions, reporter) { |
22 SkBitmap bitmap; | 19 SkBitmap bitmap; |
23 static const int kWidth = 63; | 20 static const int kWidth = 63; |
24 static const int kHeight = 63; | 21 static const int kHeight = 63; |
25 SkImageInfo info = SkImageInfo::MakeA8(kWidth, kHeight); | 22 SkImageInfo info = SkImageInfo::MakeA8(kWidth, kHeight); |
26 REPORTER_ASSERT(reporter, kWidth % kLATCBlockDimension != 0); | 23 |
27 REPORTER_ASSERT(reporter, kHeight % kLATCBlockDimension != 0); | 24 // R11_EAC and LATC are both dimensions of 4, so we need to make sure that w e |
25 // are violating those assumptions. And if we are, then we're also violating the | |
26 // assumptions of ASTC, which is 12x12 since any number not divisible by 4 i s | |
27 // also not divisible by 12. | |
28 REPORTER_ASSERT(reporter, kWidth % 4 != 0); | |
29 REPORTER_ASSERT(reporter, kHeight % 4 != 0); | |
28 | 30 |
29 bool setInfoSuccess = bitmap.setInfo(info); | 31 bool setInfoSuccess = bitmap.setInfo(info); |
30 REPORTER_ASSERT(reporter, setInfoSuccess); | 32 REPORTER_ASSERT(reporter, setInfoSuccess); |
31 | 33 |
32 bool allocPixelsSuccess = bitmap.allocPixels(info); | 34 bool allocPixelsSuccess = bitmap.allocPixels(info); |
33 REPORTER_ASSERT(reporter, allocPixelsSuccess); | 35 REPORTER_ASSERT(reporter, allocPixelsSuccess); |
34 bitmap.unlockPixels(); | 36 bitmap.unlockPixels(); |
35 | 37 |
36 const SkTextureCompressor::Format kLATCFormat = SkTextureCompressor::kLATC_F ormat; | 38 for (int i = 0; i < SkTextureCompressor::kFormatCnt; ++i) { |
37 SkAutoDataUnref latcData(SkTextureCompressor::CompressBitmapToFormat(bitmap, kLATCFormat)); | 39 const SkTextureCompressor::Format fmt = static_cast<SkTextureCompressor: :Format>(i); |
38 REPORTER_ASSERT(reporter, NULL == latcData); | 40 SkAutoDataUnref data(SkTextureCompressor::CompressBitmapToFormat(bitmap, fmt)); |
41 REPORTER_ASSERT(reporter, NULL == data); | |
42 } | |
39 } | 43 } |
40 | 44 |
41 /** | 45 /** |
42 * Make sure that we properly fail when we don't have the correct bitmap type. | 46 * Make sure that we properly fail when we don't have the correct bitmap type. |
43 * LATC compressed textures can only be created from A8 bitmaps. | 47 * compressed textures can (currently) only be created from A8 bitmaps. |
44 */ | 48 */ |
45 DEF_TEST(CompressLATCFailColorType, reporter) { | 49 DEF_TEST(CompressAlphaFailColorType, reporter) { |
46 SkBitmap bitmap; | 50 SkBitmap bitmap; |
47 static const int kWidth = 64; | 51 static const int kWidth = 60; |
48 static const int kHeight = 64; | 52 static const int kHeight = 60; |
49 SkImageInfo info = SkImageInfo::MakeN32Premul(kWidth, kHeight); | 53 SkImageInfo info = SkImageInfo::MakeN32Premul(kWidth, kHeight); |
50 REPORTER_ASSERT(reporter, kWidth % kLATCBlockDimension == 0); | 54 |
51 REPORTER_ASSERT(reporter, kHeight % kLATCBlockDimension == 0); | 55 // ASTC is at most 12x12, and any dimension divisible by 12 is also divisibl e |
56 // by 4, which is the dimensions of R11_EAC and LATC | |
robertphillips
2014/07/30 15:02:23
What about 8 ?
krajcevski
2014/07/30 15:23:27
We don't currently support 8x8 ASTC, if we do ever
| |
57 REPORTER_ASSERT(reporter, kWidth % 12 == 0); | |
58 REPORTER_ASSERT(reporter, kHeight % 12 == 0); | |
52 | 59 |
53 bool setInfoSuccess = bitmap.setInfo(info); | 60 bool setInfoSuccess = bitmap.setInfo(info); |
54 REPORTER_ASSERT(reporter, setInfoSuccess); | 61 REPORTER_ASSERT(reporter, setInfoSuccess); |
55 | 62 |
56 bool allocPixelsSuccess = bitmap.allocPixels(info); | 63 bool allocPixelsSuccess = bitmap.allocPixels(info); |
57 REPORTER_ASSERT(reporter, allocPixelsSuccess); | 64 REPORTER_ASSERT(reporter, allocPixelsSuccess); |
58 bitmap.unlockPixels(); | 65 bitmap.unlockPixels(); |
59 | 66 |
60 const SkTextureCompressor::Format kLATCFormat = SkTextureCompressor::kLATC_F ormat; | 67 for (int i = 0; i < SkTextureCompressor::kFormatCnt; ++i) { |
61 SkAutoDataUnref latcData(SkTextureCompressor::CompressBitmapToFormat(bitmap, kLATCFormat)); | 68 const SkTextureCompressor::Format fmt = static_cast<SkTextureCompressor: :Format>(i); |
62 REPORTER_ASSERT(reporter, NULL == latcData); | 69 SkAutoDataUnref data(SkTextureCompressor::CompressBitmapToFormat(bitmap, fmt)); |
70 REPORTER_ASSERT(reporter, NULL == data); | |
71 } | |
63 } | 72 } |
64 | 73 |
65 /** | 74 /** |
66 * Make sure that if we pass in a solid color bitmap that we get the appropriate results | 75 * Make sure that if we pass in a solid color bitmap that we get the appropriate results |
67 */ | 76 */ |
68 DEF_TEST(CompressLATC, reporter) { | 77 DEF_TEST(CompressLATC, reporter) { |
78 | |
79 const SkTextureCompressor::Format kLATCFormat = SkTextureCompressor::kLATC_F ormat; | |
80 static const int kLATCEncodedBlockSize = 8; | |
81 | |
69 SkBitmap bitmap; | 82 SkBitmap bitmap; |
70 static const int kWidth = 8; | 83 static const int kWidth = 8; |
71 static const int kHeight = 8; | 84 static const int kHeight = 8; |
72 SkImageInfo info = SkImageInfo::MakeA8(kWidth, kHeight); | 85 SkImageInfo info = SkImageInfo::MakeA8(kWidth, kHeight); |
73 | 86 |
74 bool setInfoSuccess = bitmap.setInfo(info); | 87 bool setInfoSuccess = bitmap.setInfo(info); |
75 REPORTER_ASSERT(reporter, setInfoSuccess); | 88 REPORTER_ASSERT(reporter, setInfoSuccess); |
76 | 89 |
77 bool allocPixelsSuccess = bitmap.allocPixels(info); | 90 bool allocPixelsSuccess = bitmap.allocPixels(info); |
78 REPORTER_ASSERT(reporter, allocPixelsSuccess); | 91 REPORTER_ASSERT(reporter, allocPixelsSuccess); |
79 bitmap.unlockPixels(); | 92 bitmap.unlockPixels(); |
80 | 93 |
81 REPORTER_ASSERT(reporter, kWidth % kLATCBlockDimension == 0); | 94 int latcDimX, latcDimY; |
82 REPORTER_ASSERT(reporter, kHeight % kLATCBlockDimension == 0); | 95 SkTextureCompressor::GetBlockDimensions(kLATCFormat, &latcDimX, &latcDimY); |
83 const int numBlocks = (kWidth / kLATCBlockDimension) * (kHeight / kLATCBlock Dimension); | 96 |
84 const size_t kSizeToBe = static_cast<size_t>(kLATCEncodedBlockSize * numBloc ks); | 97 REPORTER_ASSERT(reporter, kWidth % latcDimX == 0); |
98 REPORTER_ASSERT(reporter, kHeight % latcDimY == 0); | |
99 const size_t kSizeToBe = | |
100 SkTextureCompressor::GetCompressedDataSize(kLATCFormat, kWidth, kHeight) ; | |
101 REPORTER_ASSERT(reporter, kSizeToBe == ((kWidth*kHeight*kLATCEncodedBlockSiz e)/16)); | |
102 REPORTER_ASSERT(reporter, (kSizeToBe % kLATCEncodedBlockSize) == 0); | |
85 | 103 |
86 for (int lum = 0; lum < 256; ++lum) { | 104 for (int lum = 0; lum < 256; ++lum) { |
87 bitmap.lockPixels(); | 105 bitmap.lockPixels(); |
88 uint8_t* pixels = reinterpret_cast<uint8_t*>(bitmap.getPixels()); | 106 uint8_t* pixels = reinterpret_cast<uint8_t*>(bitmap.getPixels()); |
89 REPORTER_ASSERT(reporter, NULL != pixels); | 107 REPORTER_ASSERT(reporter, NULL != pixels); |
90 | 108 |
91 for (int i = 0; i < kWidth*kHeight; ++i) { | 109 for (int i = 0; i < kWidth*kHeight; ++i) { |
92 pixels[i] = lum; | 110 pixels[i] = lum; |
93 } | 111 } |
94 bitmap.unlockPixels(); | 112 bitmap.unlockPixels(); |
95 | 113 |
96 const SkTextureCompressor::Format kLATCFormat = SkTextureCompressor::kLA TC_Format; | |
97 SkAutoDataUnref latcData( | 114 SkAutoDataUnref latcData( |
98 SkTextureCompressor::CompressBitmapToFormat(bitmap, kLATCFormat)); | 115 SkTextureCompressor::CompressBitmapToFormat(bitmap, kLATCFormat)); |
99 REPORTER_ASSERT(reporter, NULL != latcData); | 116 REPORTER_ASSERT(reporter, NULL != latcData); |
100 REPORTER_ASSERT(reporter, kSizeToBe == latcData->size()); | 117 REPORTER_ASSERT(reporter, kSizeToBe == latcData->size()); |
101 | 118 |
102 // Make sure that it all matches a given block encoding. If the entire b itmap | 119 // Make sure that it all matches a given block encoding. Since we have |
103 // is a single value, then the lower two bytes of the encoded data shoul d be that | 120 // COMPRESS_LATC_FAST defined in SkTextureCompressor_LATC.cpp, we are us ing |
104 // value. The remaining indices can be any value, and since we try to ma tch the pixels | 121 // an approximation scheme that optimizes for speed against coverage map s. |
105 // in the chosen palette in increasing index order, each one should be z ero. Hence, | 122 // That means that each palette in the encoded block is exactly the same , |
106 // the correct encoding should be just the two luminance values in the b ottom two | 123 // and that the three bits saved per pixel are computed from the top thr ee |
107 // bytes of the block encoding. | 124 // bits of the luminance value. |
108 const uint64_t kConstColorEncoding = SkEndian_SwapLE64(lum | (lum << 8)) ; | 125 const uint64_t kIndexEncodingMap[8] = { 1, 7, 6, 5, 4, 3, 2, 0 }; |
126 const uint64_t kIndex = kIndexEncodingMap[lum >> 5]; | |
127 const uint64_t kConstColorEncoding = | |
128 SkEndian_SwapLE64( | |
129 255 | | |
130 (kIndex << 16) | (kIndex << 19) | (kIndex << 22) | (kIndex << 25 ) | | |
131 (kIndex << 28) | (kIndex << 31) | (kIndex << 34) | (kIndex << 37 ) | | |
132 (kIndex << 40) | (kIndex << 43) | (kIndex << 46) | (kIndex << 49 ) | | |
133 (kIndex << 52) | (kIndex << 55) | (kIndex << 58) | (kIndex << 61 )); | |
134 | |
109 const uint64_t* blockPtr = reinterpret_cast<const uint64_t*>(latcData->d ata()); | 135 const uint64_t* blockPtr = reinterpret_cast<const uint64_t*>(latcData->d ata()); |
110 for (int i = 0; i < numBlocks; ++i) { | 136 for (size_t i = 0; i < (kSizeToBe/8); ++i) { |
111 REPORTER_ASSERT(reporter, blockPtr[i] == kConstColorEncoding); | 137 REPORTER_ASSERT(reporter, blockPtr[i] == kConstColorEncoding); |
112 } | 138 } |
113 } | 139 } |
114 } | 140 } |
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