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1 #include "DMWriteTask.h" | 1 #include "DMWriteTask.h" |
2 | 2 |
3 #include "DMUtil.h" | 3 #include "DMUtil.h" |
4 #include "SkColorPriv.h" | 4 #include "SkColorPriv.h" |
5 #include "SkCommonFlags.h" | 5 #include "SkCommonFlags.h" |
6 #include "SkImageEncoder.h" | 6 #include "SkImageEncoder.h" |
| 7 #include "SkMD5.h" |
7 #include "SkMallocPixelRef.h" | 8 #include "SkMallocPixelRef.h" |
| 9 #include "SkOSFile.h" |
8 #include "SkStream.h" | 10 #include "SkStream.h" |
9 #include "SkString.h" | 11 #include "SkString.h" |
10 | 12 |
11 DEFINE_bool(writePngOnly, false, "If true, don't encode raw bitmap after .png da
ta. " | |
12 "This means -r won't work, but skdiff will stil
l work fine."); | |
13 | |
14 namespace DM { | 13 namespace DM { |
15 | 14 |
16 // Splits off the last N suffixes of name (splitting on _) and appends them to o
ut. | 15 // Splits off the last N suffixes of name (splitting on _) and appends them to o
ut. |
17 // Returns the total number of characters consumed. | 16 // Returns the total number of characters consumed. |
18 static int split_suffixes(int N, const char* name, SkTArray<SkString>* out) { | 17 static int split_suffixes(int N, const char* name, SkTArray<SkString>* out) { |
19 SkTArray<SkString> split; | 18 SkTArray<SkString> split; |
20 SkStrSplit(name, "_", &split); | 19 SkStrSplit(name, "_", &split); |
21 int consumed = 0; | 20 int consumed = 0; |
22 for (int i = 0; i < N; i++) { | 21 for (int i = 0; i < N; i++) { |
23 // We're splitting off suffixes from the back to front. | 22 // We're splitting off suffixes from the back to front. |
24 out->push_back(split[split.count()-i-1]); | 23 out->push_back(split[split.count()-i-1]); |
25 consumed += out->back().size() + 1; // Add one for the _. | 24 consumed += out->back().size() + 1; // Add one for the _. |
26 } | 25 } |
27 return consumed; | 26 return consumed; |
28 } | 27 } |
29 | 28 |
30 inline static SkString find_gm_name(const Task& parent, SkTArray<SkString>* suff
ixList) { | 29 inline static SkString find_base_name(const Task& parent, SkTArray<SkString>* su
ffixList) { |
31 const int suffixes = parent.depth() + 1; | 30 const int suffixes = parent.depth() + 1; |
32 const SkString& name = parent.name(); | 31 const SkString& name = parent.name(); |
33 const int totalSuffixLength = split_suffixes(suffixes, name.c_str(), suffixL
ist); | 32 const int totalSuffixLength = split_suffixes(suffixes, name.c_str(), suffixL
ist); |
34 return SkString(name.c_str(), name.size() - totalSuffixLength); | 33 return SkString(name.c_str(), name.size() - totalSuffixLength); |
35 } | 34 } |
36 | 35 |
| 36 struct JsonData { |
| 37 SkString name; |
| 38 SkMD5::Digest md5; |
| 39 }; |
| 40 SkTArray<JsonData> gJsonData; |
| 41 SK_DECLARE_STATIC_MUTEX(gJsonDataLock); |
| 42 |
37 WriteTask::WriteTask(const Task& parent, SkBitmap bitmap) | 43 WriteTask::WriteTask(const Task& parent, SkBitmap bitmap) |
38 : CpuTask(parent) | 44 : CpuTask(parent) |
39 , fGmName(find_gm_name(parent, &fSuffixes)) | 45 , fFullName(parent.name()) |
| 46 , fBaseName(find_base_name(parent, &fSuffixes)) |
40 , fBitmap(bitmap) | 47 , fBitmap(bitmap) |
41 , fData(NULL) | 48 , fData(NULL) |
42 , fExtension(".png") {} | 49 , fExtension(".png") { |
| 50 } |
43 | 51 |
44 WriteTask::WriteTask(const Task& parent, SkStreamAsset *data, const char* ext) | 52 WriteTask::WriteTask(const Task& parent, SkStreamAsset *data, const char* ext) |
45 : CpuTask(parent) | 53 : CpuTask(parent) |
46 , fGmName(find_gm_name(parent, &fSuffixes)) | 54 , fFullName(parent.name()) |
| 55 , fBaseName(find_base_name(parent, &fSuffixes)) |
47 , fData(data) | 56 , fData(data) |
48 , fExtension(ext) { | 57 , fExtension(ext) { |
49 SkASSERT(fData.get()); | 58 SkASSERT(fData.get()); |
50 SkASSERT(fData->unique()); | 59 SkASSERT(fData->unique()); |
51 } | 60 } |
52 | 61 |
53 void WriteTask::makeDirOrFail(SkString dir) { | 62 void WriteTask::makeDirOrFail(SkString dir) { |
54 if (!sk_mkdir(dir.c_str())) { | 63 if (!sk_mkdir(dir.c_str())) { |
55 this->fail(); | 64 this->fail(); |
56 } | 65 } |
57 } | 66 } |
58 | 67 |
59 namespace { | 68 static bool save_bitmap_to_file(SkBitmap bitmap, const char* path) { |
60 | |
61 // One file that first contains a .png of an SkBitmap, then its raw pixels. | |
62 // We use this custom format to avoid premultiplied/unpremultiplied pixel conver
sions. | |
63 struct PngAndRaw { | |
64 static bool Encode(SkBitmap bitmap, const char* path) { | |
65 SkFILEWStream stream(path); | |
66 if (!stream.isValid()) { | |
67 SkDebugf("Can't write %s.\n", path); | |
68 return false; | |
69 } | |
70 | |
71 // Write a PNG first for humans and other tools to look at. | |
72 if (!SkImageEncoder::EncodeStream(&stream, bitmap, SkImageEncoder::kPNG_
Type, 100)) { | |
73 SkDebugf("Can't encode a PNG.\n"); | |
74 return false; | |
75 } | |
76 if (FLAGS_writePngOnly) { | |
77 return true; | |
78 } | |
79 | |
80 // Pad out so the raw pixels start 4-byte aligned. | |
81 const uint32_t maxPadding = 0; | |
82 const size_t pos = stream.bytesWritten(); | |
83 stream.write(&maxPadding, SkAlign4(pos) - pos); | |
84 | |
85 // Then write our secret raw pixels that only DM reads. | |
86 SkAutoLockPixels lock(bitmap); | |
87 return stream.write(bitmap.getPixels(), bitmap.getSize()); | |
88 } | |
89 | |
90 // This assumes bitmap already has allocated pixels of the correct size. | |
91 static bool Decode(const char* path, SkImageInfo info, SkBitmap* bitmap) { | |
92 SkAutoTUnref<SkData> data(SkData::NewFromFileName(path)); | |
93 if (!data) { | |
94 SkDebugf("Can't read %s.\n", path); | |
95 return false; | |
96 } | |
97 | |
98 // The raw pixels are at the end of the file. We'll skip the encoded PN
G at the front. | |
99 const size_t rowBytes = info.minRowBytes(); // Assume densely packed. | |
100 const size_t bitmapBytes = info.getSafeSize(rowBytes); | |
101 if (data->size() < bitmapBytes) { | |
102 SkDebugf("%s is too small to contain the bitmap we're looking for.\n
", path); | |
103 return false; | |
104 } | |
105 | |
106 const size_t offset = data->size() - bitmapBytes; | |
107 SkAutoTUnref<SkData> subset( | |
108 SkData::NewSubset(data, offset, bitmapBytes)); | |
109 SkAutoTUnref<SkPixelRef> pixels( | |
110 SkMallocPixelRef::NewWithData( | |
111 info, rowBytes, NULL/*ctable*/, subset)); | |
112 SkASSERT(pixels); | |
113 | |
114 bitmap->setInfo(info, rowBytes); | |
115 bitmap->setPixelRef(pixels); | |
116 return true; | |
117 } | |
118 }; | |
119 | |
120 // Does not take ownership of data. | |
121 bool save_data_to_file(SkStreamAsset* data, const char* path) { | |
122 data->rewind(); | |
123 SkFILEWStream stream(path); | 69 SkFILEWStream stream(path); |
124 if (!stream.isValid() || !stream.writeStream(data, data->getLength())) { | 70 if (!stream.isValid() || |
125 SkDebugf("Can't write %s.\n", path); | 71 !SkImageEncoder::EncodeStream(&stream, bitmap, SkImageEncoder::kPNG_Type
, 100)) { |
| 72 SkDebugf("Can't write a PNG to %s.\n", path); |
126 return false; | 73 return false; |
127 } | 74 } |
128 return true; | 75 return true; |
129 } | 76 } |
130 | 77 |
131 } // namespace | 78 // Does not take ownership of data. |
| 79 static bool save_data_to_file(SkStreamAsset* data, const char* path) { |
| 80 data->rewind(); |
| 81 SkFILEWStream stream(path); |
| 82 if (!stream.isValid() || !stream.writeStream(data, data->getLength())) { |
| 83 SkDebugf("Can't write data to %s.\n", path); |
| 84 return false; |
| 85 } |
| 86 return true; |
| 87 } |
132 | 88 |
133 void WriteTask::draw() { | 89 void WriteTask::draw() { |
134 SkString dir(FLAGS_writePath[0]); | 90 SkString dir(FLAGS_writePath[0]); |
135 #if SK_BUILD_FOR_IOS | 91 #if SK_BUILD_FOR_IOS |
136 if (dir.equals("@")) { | 92 if (dir.equals("@")) { |
137 dir.set(FLAGS_resourcePath[0]); | 93 dir.set(FLAGS_resourcePath[0]); |
138 } | 94 } |
139 #endif | 95 #endif |
140 this->makeDirOrFail(dir); | 96 this->makeDirOrFail(dir); |
141 for (int i = 0; i < fSuffixes.count(); i++) { | 97 for (int i = 0; i < fSuffixes.count(); i++) { |
142 dir = SkOSPath::Join(dir.c_str(), fSuffixes[i].c_str()); | 98 dir = SkOSPath::Join(dir.c_str(), fSuffixes[i].c_str()); |
143 this->makeDirOrFail(dir); | 99 this->makeDirOrFail(dir); |
144 } | 100 } |
145 | 101 |
146 SkString path = SkOSPath::Join(dir.c_str(), fGmName.c_str()); | 102 // FIXME: MD5 is really slow. Let's use a different hash. |
| 103 SkMD5 hasher; |
| 104 if (fData.get()) { |
| 105 hasher.write(fData->getMemoryBase(), fData->getLength()); |
| 106 } else { |
| 107 SkAutoLockPixels lock(fBitmap); |
| 108 hasher.write(fBitmap.getPixels(), fBitmap.getSize()); |
| 109 } |
| 110 |
| 111 JsonData entry; |
| 112 entry.name = fFullName; |
| 113 hasher.finish(entry.md5); |
| 114 |
| 115 { |
| 116 SkAutoMutexAcquire lock(&gJsonDataLock); |
| 117 gJsonData.push_back(entry); |
| 118 } |
| 119 |
| 120 SkString path = SkOSPath::Join(dir.c_str(), fBaseName.c_str()); |
147 path.append(fExtension); | 121 path.append(fExtension); |
148 | 122 |
149 const bool ok = fData.get() ? save_data_to_file(fData.get(), path.c_str()) | 123 const bool ok = fData.get() ? save_data_to_file(fData.get(), path.c_str()) |
150 : PngAndRaw::Encode(fBitmap, path.c_str()); | 124 : save_bitmap_to_file(fBitmap, path.c_str()); |
151 if (!ok) { | 125 if (!ok) { |
152 this->fail(); | 126 this->fail(); |
153 } | 127 } |
154 } | 128 } |
155 | 129 |
156 SkString WriteTask::name() const { | 130 SkString WriteTask::name() const { |
157 SkString name("writing "); | 131 SkString name("writing "); |
158 for (int i = 0; i < fSuffixes.count(); i++) { | 132 for (int i = 0; i < fSuffixes.count(); i++) { |
159 name.appendf("%s/", fSuffixes[i].c_str()); | 133 name.appendf("%s/", fSuffixes[i].c_str()); |
160 } | 134 } |
161 name.append(fGmName.c_str()); | 135 name.append(fBaseName.c_str()); |
162 return name; | 136 return name; |
163 } | 137 } |
164 | 138 |
165 bool WriteTask::shouldSkip() const { | 139 bool WriteTask::shouldSkip() const { |
166 return FLAGS_writePath.isEmpty(); | 140 return FLAGS_writePath.isEmpty(); |
167 } | 141 } |
168 | 142 |
169 static SkString path_to_expected_image(const char* root, const Task& task) { | 143 WriteTask::Expectations* WriteTask::Expectations::Create(const char* path) { |
170 SkString filename = task.name(); | 144 if (!FLAGS_writePath.isEmpty() && 0 == strcmp(FLAGS_writePath[0], path)) { |
| 145 SkDebugf("We seem to be reading and writing %s concurrently. This won't
work.\n", path); |
| 146 return NULL; |
| 147 } |
171 | 148 |
172 // We know that all names passed in here belong to top-level Tasks, which ha
ve a single suffix | 149 SkString jsonPath; |
173 // (8888, 565, gpu, etc.) indicating what subdirectory to look in. | 150 if (sk_isdir(path)) { |
174 SkTArray<SkString> suffixes; | 151 jsonPath = SkOSPath::Join(path, "dm.json"); |
175 const int suffixLength = split_suffixes(1, filename.c_str(), &suffixes); | 152 } else { |
176 SkASSERT(1 == suffixes.count()); | 153 jsonPath.set(path); |
| 154 } |
177 | 155 |
178 // We'll look in root/suffix for images. | 156 SkAutoDataUnref json(SkData::NewFromFileName(jsonPath.c_str())); |
179 const SkString dir = SkOSPath::Join(root, suffixes[0].c_str()); | 157 if (NULL == json.get()) { |
| 158 SkDebugf("Can't read %s!\n", jsonPath.c_str()); |
| 159 return NULL; |
| 160 } |
180 | 161 |
181 // Remove the suffix and tack on a .png. | 162 SkAutoTDelete<Expectations> expectations(SkNEW(Expectations)); |
182 filename.remove(filename.size() - suffixLength, suffixLength); | 163 Json::Reader reader; |
183 filename.append(".png"); | 164 const char* begin = (const char*)json->bytes(); |
184 | 165 const char* end = begin + json->size(); |
185 return SkOSPath::Join(dir.c_str(), filename.c_str()); | 166 if (!reader.parse(begin, end, expectations->fJson)) { |
| 167 SkDebugf("Can't read %s as JSON!\n", jsonPath.c_str()); |
| 168 return NULL; |
| 169 } |
| 170 return expectations.detach(); |
186 } | 171 } |
187 | 172 |
188 bool WriteTask::Expectations::check(const Task& task, SkBitmap bitmap) const { | 173 bool WriteTask::Expectations::check(const Task& task, SkBitmap bitmap) const { |
189 if (!FLAGS_writePath.isEmpty() && 0 == strcmp(FLAGS_writePath[0], fRoot)) { | 174 const SkString name = task.name(); |
190 SkDebugf("We seem to be reading and writing %s concurrently. This won't
work.\n", fRoot); | 175 if (fJson[name.c_str()].isNull()) { |
191 return false; | 176 return true; // No expectations. |
192 } | 177 } |
193 | 178 |
194 const SkString path = path_to_expected_image(fRoot, task); | 179 const char* md5Ascii = fJson[name.c_str()].asCString(); |
195 SkBitmap expected; | 180 uint8_t md5[16]; |
196 if (!PngAndRaw::Decode(path.c_str(), bitmap.info(), &expected)) { | 181 |
197 return false; | 182 for (int j = 0; j < 16; j++) { |
| 183 sscanf(md5Ascii + (j*2), "%02hhx", md5 + j); |
198 } | 184 } |
199 | 185 |
200 return BitmapsEqual(expected, bitmap); | 186 SkMD5 hasher; |
| 187 { |
| 188 SkAutoLockPixels lock(bitmap); |
| 189 hasher.write(bitmap.getPixels(), bitmap.getSize()); |
| 190 } |
| 191 SkMD5::Digest digest; |
| 192 hasher.finish(digest); |
| 193 |
| 194 return 0 == memcmp(md5, digest.data, 16); |
| 195 } |
| 196 |
| 197 void WriteTask::DumpJson() { |
| 198 if (FLAGS_writePath.isEmpty()) { |
| 199 return; |
| 200 } |
| 201 |
| 202 // FIXME: This JSON format is a complete MVP strawman. |
| 203 Json::Value root; |
| 204 { |
| 205 SkAutoMutexAcquire lock(&gJsonDataLock); |
| 206 for (int i = 0; i < gJsonData.count(); i++) { |
| 207 char md5Ascii[32]; |
| 208 for (int j = 0; j < 16; j++) { |
| 209 sprintf(md5Ascii + (j*2), "%02x", gJsonData[i].md5.data[j]); |
| 210 } |
| 211 root[gJsonData[i].name.c_str()] = md5Ascii; |
| 212 } |
| 213 } |
| 214 |
| 215 SkString path = SkOSPath::Join(FLAGS_writePath[0], "dm.json"); |
| 216 SkFILEWStream stream(path.c_str()); |
| 217 stream.writeText(Json::StyledWriter().write(root).c_str()); |
| 218 stream.flush(); |
201 } | 219 } |
202 | 220 |
203 } // namespace DM | 221 } // namespace DM |
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