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1 /* | |
2 * Copyright 2015 Google Inc. | |
3 * | |
4 * Use of this source code is governed by a BSD-style license that can be | |
5 * found in the LICENSE file. | |
6 */ | |
7 | |
8 #include "SkCodec.h" | |
9 #include "SkJpegCodec.h" | |
10 #include "SkJpegDecoderMgr.h" | |
11 #include "SkJpegUtility.h" | |
12 #include "SkCodecPriv.h" | |
13 #include "SkColorPriv.h" | |
14 #include "SkStream.h" | |
15 #include "SkTemplates.h" | |
16 #include "SkTypes.h" | |
17 | |
18 // stdio is needed for jpeglib | |
19 #include <stdio.h> | |
20 | |
21 extern "C" { | |
22 #include "jerror.h" | |
23 #include "jmorecfg.h" | |
24 #include "jpegint.h" | |
25 #include "jpeglib.h" | |
26 } | |
27 | |
28 // ANDROID_RGB | |
29 // If this is defined in the jpeg headers it indicates that jpeg offers | |
30 // support for two additional formats: JCS_RGBA_8888 and JCS_RGB_565. | |
31 | |
32 /* | |
33 * Get the source configuarion for the swizzler | |
34 */ | |
35 SkSwizzler::SrcConfig get_src_config(jpeg_decompress_struct* dinfo) { | |
scroggo
2015/04/15 00:31:06
Do we modify dinfo? Could it be const& instead?
msarett
2015/04/15 12:43:11
Done.
| |
36 if (JCS_CMYK == dinfo->out_color_space) { | |
37 // We will need to perform a manual conversion | |
38 return SkSwizzler::kRGBX; | |
39 } | |
40 if (3 == dinfo->out_color_components && JCS_RGB == dinfo->out_color_space) { | |
41 return SkSwizzler::kRGB; | |
42 } | |
43 #ifdef ANDROID_RGB | |
44 if (JCS_RGBA_8888 == dinfo->out_color_space) { | |
45 return SkSwizzler::kRGBX; | |
46 } | |
47 | |
48 if (JCS_RGB_565 == dinfo->out_color_space) { | |
49 return SkSwizzler::kRGB_565; | |
50 } | |
51 #endif | |
52 if (1 == dinfo->out_color_components && JCS_GRAYSCALE == dinfo->out_color_sp ace) { | |
53 return SkSwizzler::kGray; | |
54 } | |
55 return SkSwizzler::kUnknown; | |
56 } | |
57 | |
58 /* | |
59 * Convert a row of CMYK samples to RGBX in place. | |
60 * Note that this method moves the row pointer. | |
61 * @param width the number of pixels in the row that is being converted | |
62 * CMYK is stored as four bytes per pixel | |
63 */ | |
64 static void convert_CMYK_to_RGB(uint8_t* row, uint32_t width) { | |
65 // We will implement a crude conversion from CMYK -> RGB using formulas | |
66 // from easyrgb.com. | |
67 // | |
68 // CMYK -> CMY | |
69 // C = C * (1 - K) + K | |
70 // M = M * (1 - K) + K | |
71 // Y = Y * (1 - K) + K | |
72 // | |
73 // libjpeg actually gives us inverted CMYK, so we must subtract the | |
74 // original terms from 1. | |
75 // CMYK -> CMY | |
76 // C = (1 - C) * (1 - (1 - K)) + (1 - K) | |
77 // M = (1 - M) * (1 - (1 - K)) + (1 - K) | |
78 // Y = (1 - Y) * (1 - (1 - K)) + (1 - K) | |
79 // | |
80 // Simplifying the above expression. | |
81 // CMYK -> CMY | |
82 // C = 1 - CK | |
83 // M = 1 - MK | |
84 // Y = 1 - YK | |
85 // | |
86 // CMY -> RGB | |
87 // R = (1 - C) * 255 | |
88 // G = (1 - M) * 255 | |
89 // B = (1 - Y) * 255 | |
90 // | |
91 // Therefore the full conversion is below. This can be verified at | |
92 // www.rapidtables.com (assuming inverted CMYK). | |
93 // CMYK -> RGB | |
94 // R = C * K * 255 | |
95 // G = M * K * 255 | |
96 // B = Y * K * 255 | |
97 // | |
98 // As a final note, we have treated the CMYK values as if they were on | |
99 // a scale from 0-1, when in fact they are 8-bit ints scaling from 0-255. | |
100 // We must divide each CMYK component by 255 to obtain the true conversion | |
101 // we should perform. | |
102 // CMYK -> RGB | |
103 // R = C * K / 255 | |
104 // G = M * K / 255 | |
105 // B = Y * K / 255 | |
106 for (uint32_t x = 0; x < width; x++, row += 4) { | |
107 row[0] = SkMulDiv255Round(row[0], row[3]); | |
108 row[1] = SkMulDiv255Round(row[1], row[3]); | |
109 row[2] = SkMulDiv255Round(row[2], row[3]); | |
110 row[3] = 0xFF; | |
111 } | |
112 } | |
113 | |
114 bool SkJpegCodec::IsJpeg(SkStream* stream) { | |
115 static const uint8_t jpegSig[] = { 0xFF, 0xD8, 0xFF }; | |
116 char buffer[sizeof(jpegSig)]; | |
117 return stream->read(buffer, sizeof(jpegSig)) == sizeof(jpegSig) && | |
118 !memcmp(buffer, jpegSig, sizeof(jpegSig)); | |
119 } | |
120 | |
121 bool SkJpegCodec::ReadHeader(SkStream* stream, SkCodec** codecOut, | |
122 JpegDecoderMgr** decoderMgrOut) { | |
123 | |
124 // Create a JpegDecoderMgr to own all of the decompress information | |
125 SkAutoTDelete<JpegDecoderMgr> decoderMgr(SkNEW_ARGS(JpegDecoderMgr, (stream) )); | |
126 | |
127 // libjpeg errors will be caught and reported here | |
128 if (setjmp(decoderMgr->errorMgr()->fJmpBuf)) { | |
129 return decoderMgr->returnFalse("setjmp"); | |
130 } | |
131 | |
132 // Initialize the decompress info and the source manager | |
133 decoderMgr->init(); | |
134 | |
135 // Read the jpeg header | |
136 if (JPEG_HEADER_OK != jpeg_read_header(decoderMgr->dinfo(), true)) { | |
137 return decoderMgr->returnFalse("read_header"); | |
138 } | |
139 | |
140 if (NULL != codecOut) { | |
141 // Recommend the color type to decode to | |
142 const SkColorType colorType = decoderMgr->getColorType(); | |
143 | |
144 // Create image info object and the codec | |
145 const SkImageInfo& imageInfo = SkImageInfo::Make(decoderMgr->dinfo()->im age_width, | |
146 decoderMgr->dinfo()->image_height, colorType, kOpaque_SkAlphaTyp e); | |
147 *codecOut = SkNEW_ARGS(SkJpegCodec, (imageInfo, stream, decoderMgr.detac h())); | |
148 } else { | |
149 SkASSERT(NULL != decoderMgrOut); | |
150 *decoderMgrOut = decoderMgr.detach(); | |
151 } | |
152 return true; | |
153 } | |
154 | |
155 SkCodec* SkJpegCodec::NewFromStream(SkStream* stream) { | |
156 SkAutoTDelete<SkStream> streamDeleter(stream); | |
157 SkCodec* codec = NULL; | |
158 if (ReadHeader(stream, &codec, NULL)) { | |
159 // Codec has taken ownership of the stream, we do not need to delete it | |
160 SkASSERT(codec); | |
161 streamDeleter.detach(); | |
162 return codec; | |
163 } | |
164 return NULL; | |
165 } | |
166 | |
167 SkJpegCodec::SkJpegCodec(const SkImageInfo& srcInfo, SkStream* stream, | |
168 JpegDecoderMgr* decoderMgr) | |
169 : INHERITED(srcInfo, stream) | |
170 , fDecoderMgr(decoderMgr) | |
171 {} | |
172 | |
173 /* | |
174 * Return a valid set of output dimensions for this decoder, given an input scal e | |
175 */ | |
176 SkISize SkJpegCodec::onGetScaledDimensions(float desiredScale) const { | |
177 // libjpeg supports scaling by 1/1, 1/2, 1/4, and 1/8, so we will support th ese as well | |
178 long scale; | |
179 if (desiredScale > 0.75f) { | |
180 scale = 1; | |
181 } else if (desiredScale > 0.375f) { | |
182 scale = 2; | |
183 } else if (desiredScale > 0.1875f) { | |
184 scale = 4; | |
185 } else { | |
186 scale = 8; | |
187 } | |
188 | |
189 // Set up a fake decompress struct in order to use libjpeg to calculate outp ut dimensions | |
190 jpeg_decompress_struct dinfo; | |
191 dinfo.image_width = this->getInfo().width(); | |
192 dinfo.image_height = this->getInfo().height(); | |
193 dinfo.global_state = DSTATE_READY; | |
194 dinfo.num_components = 0; | |
195 dinfo.scale_num = 1; | |
196 dinfo.scale_denom = scale; | |
197 jpeg_calc_output_dimensions(&dinfo); | |
198 | |
199 // Return the calculated output dimensions for the given scale | |
200 return SkISize::Make(dinfo.output_width, dinfo.output_height); | |
201 } | |
202 | |
203 /* | |
204 * Checks if the conversion between the input image and the requested output | |
205 * image has been implemented | |
206 */ | |
207 static bool conversion_possible(const SkImageInfo& dst, | |
208 const SkImageInfo& src) { | |
209 // Ensure that the profile type is unchanged | |
210 if (dst.profileType() != src.profileType()) { | |
211 return false; | |
212 } | |
213 | |
214 // Ensure that the alpha type is opaque | |
215 if (kOpaque_SkAlphaType != dst.alphaType()) { | |
216 return false; | |
217 } | |
218 | |
219 // Always allow kN32 as the color type | |
220 if (kN32_SkColorType == dst.colorType()) { | |
221 return true; | |
222 } | |
223 | |
224 // Otherwise require that the destination color type match our recommendatio n | |
225 return dst.colorType() == src.colorType(); | |
226 } | |
227 | |
228 /* | |
229 * Performs the jpeg decode | |
230 */ | |
231 SkCodec::Result SkJpegCodec::onGetPixels(const SkImageInfo& dstInfo, | |
232 void* dst, size_t dstRowBytes, | |
233 const Options& options, SkPMColor*, int *) { | |
234 // Rewind the stream if needed | |
235 SkCodec::RewindState rewindState = this->rewindIfNeeded(); | |
236 if (rewindState == kCouldNotRewind_RewindState) { | |
237 return kCouldNotRewind; | |
238 } else if (rewindState == kRewound_RewindState) { | |
239 JpegDecoderMgr* decoderMgr = NULL; | |
240 if (!ReadHeader(this->stream(), NULL, &decoderMgr)) { | |
241 return kCouldNotRewind; | |
242 } | |
243 SkASSERT(NULL != decoderMgr); | |
244 fDecoderMgr.reset(decoderMgr); | |
245 } | |
246 | |
247 // Set the jump location for libjpeg errors | |
248 if (setjmp(fDecoderMgr->errorMgr()->fJmpBuf)) { | |
249 return fDecoderMgr->returnFailure("setjmp", kInvalidInput); | |
250 } | |
251 | |
252 // Check if we can decode to the requested destination | |
253 if (!conversion_possible(dstInfo, this->getInfo())) { | |
254 return fDecoderMgr->returnFailure("conversion_possible", kInvalidConvers ion); | |
255 } | |
256 // Check if we can scale to the requested dimensions | |
257 // libjpeg can scale to 1/1, 1/2, 1/4, and 1/8 | |
258 SkASSERT(1 == fDecoderMgr->dinfo()->scale_num); | |
259 SkASSERT(1 == fDecoderMgr->dinfo()->scale_denom); | |
260 jpeg_calc_output_dimensions(fDecoderMgr->dinfo()); | |
261 const uint32_t dstWidth = dstInfo.width(); | |
262 const uint32_t dstHeight = dstInfo.height(); | |
263 while (fDecoderMgr->dinfo()->output_width != dstWidth || | |
264 fDecoderMgr->dinfo()->output_height != dstHeight) { | |
265 | |
266 // Return a failure if we have tried all of the possible scales | |
267 if (8 == fDecoderMgr->dinfo()->scale_denom || | |
268 dstWidth > fDecoderMgr->dinfo()->output_width || | |
269 dstHeight > fDecoderMgr->dinfo()->output_height) { | |
270 return fDecoderMgr->returnFailure("cannot scale to requested dims", kInvalidScale); | |
271 } | |
272 | |
273 // Try the next scale | |
274 fDecoderMgr->dinfo()->scale_denom *= 2; | |
275 jpeg_calc_output_dimensions(fDecoderMgr->dinfo()); | |
276 } | |
277 | |
278 // Now, given valid output dimensions, we can start the decompress | |
279 if (!jpeg_start_decompress(fDecoderMgr->dinfo())) { | |
280 return fDecoderMgr->returnFailure("startDecompress", kInvalidInput); | |
281 } | |
282 | |
283 // Create the swizzler | |
284 SkSwizzler::SrcConfig srcConfig = get_src_config(fDecoderMgr->dinfo()); | |
285 SkAutoTDelete<SkSwizzler> swizzler(SkSwizzler::CreateSwizzler(srcConfig, NUL L, dstInfo, dst, dstRowBytes, options.fZeroInitialized)); | |
286 if (NULL == swizzler) { | |
287 return fDecoderMgr->returnFailure("getSwizzler", kInvalidInput); | |
288 } | |
289 const uint32_t srcBytesPerPixel = SkSwizzler::BytesPerPixel(srcConfig); | |
290 | |
291 // This is usually 1, but can also be 2 or 4. | |
292 // If we wanted to always read one row at a time, we could, but we will save space and time | |
293 // by using the recommendation from libjpeg. | |
294 const uint32_t rowsPerDecode = fDecoderMgr->dinfo()->rec_outbuf_height; | |
295 SkASSERT(rowsPerDecode <= 4); | |
296 | |
297 // Create a buffer to contain decoded rows (libjpeg requires a 2D array) | |
298 const uint32_t srcRowBytes = srcBytesPerPixel * dstWidth; | |
299 SkAutoTDeleteArray<uint8_t> srcBuffer(SkNEW_ARRAY(uint8_t, srcRowBytes * row sPerDecode)); | |
300 JSAMPLE* srcRows[4]; | |
301 uint8_t* srcPtr = srcBuffer.get(); | |
302 for (uint8_t i = 0; i < rowsPerDecode; i++) { | |
303 srcRows[i] = (JSAMPLE*) srcPtr; | |
304 srcPtr += srcRowBytes; | |
305 } | |
306 | |
307 // Ensure that we loop enough times to decode all of the rows | |
308 // libjpeg will prevent us from reading past the bottom of the image | |
309 for (uint32_t y = 0; y < dstHeight + rowsPerDecode - 1; y += rowsPerDecode) { | |
310 // Read rows of the image | |
311 uint32_t rowsDecoded = jpeg_read_scanlines(fDecoderMgr->dinfo(), srcRows , rowsPerDecode); | |
312 | |
313 // Convert to RGB if necessary | |
314 if (JCS_CMYK == fDecoderMgr->dinfo()->out_color_space) { | |
315 convert_CMYK_to_RGB(srcRows[0], dstWidth * rowsDecoded); | |
316 } | |
317 | |
318 // Swizzle to output destination | |
319 for (uint32_t i = 0; i < rowsDecoded; i++) { | |
320 swizzler->next(srcRows[i]); | |
321 } | |
322 | |
323 // If we cannot read enough rows, assume the input is incomplete | |
324 if (rowsDecoded < rowsPerDecode && y + rowsDecoded < dstHeight) { | |
325 // Fill the remainder of the image with black. This error handling | |
326 // behavior is unspecified but SkCodec consistently uses black as | |
327 // the fill color for opaque images. | |
328 SkSwizzler::Fill(swizzler->getDstRow(), dstInfo, dstRowBytes, | |
329 dstHeight - y - rowsDecoded, SK_ColorBLACK, NULL); | |
scroggo
2015/04/15 00:31:06
Maybe add a comment that SK_ColorBLACK is valid to
msarett
2015/04/15 12:43:11
Done.
| |
330 | |
331 // Prevent libjpeg from failing | |
332 fDecoderMgr->dinfo()->output_scanline = dstHeight; | |
333 | |
334 // Finish the decode and indicate that the input was incomplete. | |
335 jpeg_finish_decompress(fDecoderMgr->dinfo()); | |
336 return fDecoderMgr->returnFailure("Incomplete image data", kIncomple teInput); | |
337 } | |
338 } | |
339 jpeg_finish_decompress(fDecoderMgr->dinfo()); | |
340 | |
341 return kSuccess; | |
342 } | |
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