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| 1 /* | 1 /* |
| 2 * Copyright 2015 Google Inc. | 2 * Copyright 2015 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 "SkBmpCodec.h" | 8 #include "SkBmpCodec.h" |
| 9 #include "SkCodec.h" | 9 #include "SkCodec.h" |
| 10 #include "SkCodecPriv.h" | 10 #include "SkCodecPriv.h" |
| (...skipping 147 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 158 // startScanlineDecode will need to be called before decoding scanlines. | 158 // startScanlineDecode will need to be called before decoding scanlines. |
| 159 fCurrScanline = -1; | 159 fCurrScanline = -1; |
| 160 | 160 |
| 161 if (!fStream->rewind()) { | 161 if (!fStream->rewind()) { |
| 162 return false; | 162 return false; |
| 163 } | 163 } |
| 164 | 164 |
| 165 return this->onRewind(); | 165 return this->onRewind(); |
| 166 } | 166 } |
| 167 | 167 |
| 168 #define CHECK_COLOR_TABLE \ |
| 169 if (kIndex_8_SkColorType == info.colorType()) { \ |
| 170 if (nullptr == ctable || nullptr == ctableCount) { \ |
| 171 return SkCodec::kInvalidParameters; \ |
| 172 } \ |
| 173 } else { \ |
| 174 if (ctableCount) { \ |
| 175 *ctableCount = 0; \ |
| 176 } \ |
| 177 ctableCount = nullptr; \ |
| 178 ctable = nullptr; \ |
| 179 } |
| 180 |
| 181 |
| 168 SkCodec::Result SkCodec::getPixels(const SkImageInfo& info, void* pixels, size_t
rowBytes, | 182 SkCodec::Result SkCodec::getPixels(const SkImageInfo& info, void* pixels, size_t
rowBytes, |
| 169 const Options* options, SkPMColor ctable[], i
nt* ctableCount) { | 183 const Options* options, SkPMColor ctable[], i
nt* ctableCount) { |
| 170 if (kUnknown_SkColorType == info.colorType()) { | 184 if (kUnknown_SkColorType == info.colorType()) { |
| 171 return kInvalidConversion; | 185 return kInvalidConversion; |
| 172 } | 186 } |
| 173 if (nullptr == pixels) { | 187 if (nullptr == pixels) { |
| 174 return kInvalidParameters; | 188 return kInvalidParameters; |
| 175 } | 189 } |
| 176 if (rowBytes < info.minRowBytes()) { | 190 if (rowBytes < info.minRowBytes()) { |
| 177 return kInvalidParameters; | 191 return kInvalidParameters; |
| 178 } | 192 } |
| 179 | 193 |
| 180 if (kIndex_8_SkColorType == info.colorType()) { | 194 CHECK_COLOR_TABLE; |
| 181 if (nullptr == ctable || nullptr == ctableCount) { | |
| 182 return kInvalidParameters; | |
| 183 } | |
| 184 } else { | |
| 185 if (ctableCount) { | |
| 186 *ctableCount = 0; | |
| 187 } | |
| 188 ctableCount = nullptr; | |
| 189 ctable = nullptr; | |
| 190 } | |
| 191 | 195 |
| 192 if (!this->rewindIfNeeded()) { | 196 if (!this->rewindIfNeeded()) { |
| 193 return kCouldNotRewind; | 197 return kCouldNotRewind; |
| 194 } | 198 } |
| 195 | 199 |
| 196 // Default options. | 200 // Default options. |
| 197 Options optsStorage; | 201 Options optsStorage; |
| 198 if (nullptr == options) { | 202 if (nullptr == options) { |
| 199 options = &optsStorage; | 203 options = &optsStorage; |
| 200 } else if (options->fSubset) { | 204 } else if (options->fSubset) { |
| 201 SkIRect subset(*options->fSubset); | 205 SkIRect subset(*options->fSubset); |
| 202 if (!this->onGetValidSubset(&subset) || subset != *options->fSubset) { | 206 if (!this->onGetValidSubset(&subset) || subset != *options->fSubset) { |
| 203 // FIXME: How to differentiate between not supporting subset at all | 207 // FIXME: How to differentiate between not supporting subset at all |
| 204 // and not supporting this particular subset? | 208 // and not supporting this particular subset? |
| 205 return kUnimplemented; | 209 return kUnimplemented; |
| 206 } | 210 } |
| 207 } | 211 } |
| 208 | 212 |
| 209 // FIXME: Support subsets somehow? Note that this works for SkWebpCodec | 213 // FIXME: Support subsets somehow? Note that this works for SkWebpCodec |
| 210 // because it supports arbitrary scaling/subset combinations. | 214 // because it supports arbitrary scaling/subset combinations. |
| 211 if (!this->dimensionsSupported(info.dimensions())) { | 215 if (!this->dimensionsSupported(info.dimensions())) { |
| 212 return kInvalidScale; | 216 return kInvalidScale; |
| 213 } | 217 } |
| 214 | 218 |
| 219 fDstInfo = info; |
| 220 fOptions = *options; |
| 221 |
| 215 // On an incomplete decode, the subclass will specify the number of scanline
s that it decoded | 222 // On an incomplete decode, the subclass will specify the number of scanline
s that it decoded |
| 216 // successfully. | 223 // successfully. |
| 217 int rowsDecoded = 0; | 224 int rowsDecoded = 0; |
| 218 const Result result = this->onGetPixels(info, pixels, rowBytes, *options, ct
able, ctableCount, | 225 const Result result = this->onGetPixels(info, pixels, rowBytes, *options, ct
able, ctableCount, |
| 219 &rowsDecoded); | 226 &rowsDecoded); |
| 220 | 227 |
| 221 if ((kIncompleteInput == result || kSuccess == result) && ctableCount) { | 228 if ((kIncompleteInput == result || kSuccess == result) && ctableCount) { |
| 222 SkASSERT(*ctableCount >= 0 && *ctableCount <= 256); | 229 SkASSERT(*ctableCount >= 0 && *ctableCount <= 256); |
| 223 } | 230 } |
| 224 | 231 |
| 225 // A return value of kIncompleteInput indicates a truncated image stream. | 232 // A return value of kIncompleteInput indicates a truncated image stream. |
| 226 // In this case, we will fill any uninitialized memory with a default value. | 233 // In this case, we will fill any uninitialized memory with a default value. |
| 227 // Some subclasses will take care of filling any uninitialized memory on | 234 // Some subclasses will take care of filling any uninitialized memory on |
| 228 // their own. They indicate that all of the memory has been filled by | 235 // their own. They indicate that all of the memory has been filled by |
| 229 // setting rowsDecoded equal to the height. | 236 // setting rowsDecoded equal to the height. |
| 230 if (kIncompleteInput == result && rowsDecoded != info.height()) { | 237 if (kIncompleteInput == result && rowsDecoded != info.height()) { |
| 231 this->fillIncompleteImage(info, pixels, rowBytes, options->fZeroInitiali
zed, info.height(), | 238 this->fillIncompleteImage(info, pixels, rowBytes, options->fZeroInitiali
zed, info.height(), |
| 232 rowsDecoded); | 239 rowsDecoded); |
| 233 } | 240 } |
| 234 | 241 |
| 235 return result; | 242 return result; |
| 236 } | 243 } |
| 237 | 244 |
| 238 SkCodec::Result SkCodec::getPixels(const SkImageInfo& info, void* pixels, size_t
rowBytes) { | 245 SkCodec::Result SkCodec::getPixels(const SkImageInfo& info, void* pixels, size_t
rowBytes) { |
| 239 return this->getPixels(info, pixels, rowBytes, nullptr, nullptr, nullptr); | 246 return this->getPixels(info, pixels, rowBytes, nullptr, nullptr, nullptr); |
| 240 } | 247 } |
| 241 | 248 |
| 242 SkCodec::Result SkCodec::startScanlineDecode(const SkImageInfo& dstInfo, | 249 SkCodec::Result SkCodec::startIncrementalDecode(const SkImageInfo& info, void* p
ixels, |
| 250 size_t rowBytes, const SkCodec::Options* options, SkPMColor* ctable, int
* ctableCount) { |
| 251 fStartedIncrementalDecode = false; |
| 252 |
| 253 if (kUnknown_SkColorType == info.colorType()) { |
| 254 return kInvalidConversion; |
| 255 } |
| 256 if (nullptr == pixels) { |
| 257 return kInvalidParameters; |
| 258 } |
| 259 |
| 260 // Ensure that valid color ptrs are passed in for kIndex8 color type |
| 261 CHECK_COLOR_TABLE; |
| 262 |
| 263 // FIXME: If the rows come after the rows of a previous incremental decode, |
| 264 // we might be able to skip the rewind, but only the implementation knows |
| 265 // that. (e.g. PNG will always need to rewind, since we called longjmp, but |
| 266 // a bottom-up BMP could skip rewinding if the new rows are above the old |
| 267 // rows.) |
| 268 if (!this->rewindIfNeeded()) { |
| 269 return kCouldNotRewind; |
| 270 } |
| 271 |
| 272 // Set options. |
| 273 Options optsStorage; |
| 274 if (nullptr == options) { |
| 275 options = &optsStorage; |
| 276 } else if (options->fSubset) { |
| 277 SkIRect size = SkIRect::MakeSize(info.dimensions()); |
| 278 if (!size.contains(*options->fSubset)) { |
| 279 return kInvalidParameters; |
| 280 } |
| 281 |
| 282 const int top = options->fSubset->top(); |
| 283 const int bottom = options->fSubset->bottom(); |
| 284 if (top < 0 || top >= info.height() || top >= bottom || bottom > info.he
ight()) { |
| 285 return kInvalidParameters; |
| 286 } |
| 287 } |
| 288 |
| 289 if (!this->dimensionsSupported(info.dimensions())) { |
| 290 return kInvalidScale; |
| 291 } |
| 292 |
| 293 fDstInfo = info; |
| 294 fOptions = *options; |
| 295 |
| 296 const Result result = this->onStartIncrementalDecode(info, pixels, rowBytes, |
| 297 fOptions, ctable, ctableCount); |
| 298 if (kSuccess == result) { |
| 299 fStartedIncrementalDecode = true; |
| 300 } else if (kUnimplemented == result) { |
| 301 // FIXME: This is temporarily necessary, until we transition SkCodec |
| 302 // implementations from scanline decoding to incremental decoding. |
| 303 // SkAndroidCodec will first attempt to use incremental decoding, but |
| 304 // will fall back to scanline decoding if incremental returns |
| 305 // kUnimplemented. rewindIfNeeded(), above, set fNeedsRewind to true |
| 306 // (after potentially rewinding), but we do not want the next call to |
| 307 // startScanlineDecode() to do a rewind. |
| 308 fNeedsRewind = false; |
| 309 } |
| 310 return result; |
| 311 } |
| 312 |
| 313 |
| 314 SkCodec::Result SkCodec::startScanlineDecode(const SkImageInfo& info, |
| 243 const SkCodec::Options* options, SkPMColor ctable[], int* ctableCount) { | 315 const SkCodec::Options* options, SkPMColor ctable[], int* ctableCount) { |
| 244 // Reset fCurrScanline in case of failure. | 316 // Reset fCurrScanline in case of failure. |
| 245 fCurrScanline = -1; | 317 fCurrScanline = -1; |
| 246 // Ensure that valid color ptrs are passed in for kIndex8 color type | 318 // Ensure that valid color ptrs are passed in for kIndex8 color type |
| 247 if (kIndex_8_SkColorType == dstInfo.colorType()) { | 319 CHECK_COLOR_TABLE; |
| 248 if (nullptr == ctable || nullptr == ctableCount) { | |
| 249 return SkCodec::kInvalidParameters; | |
| 250 } | |
| 251 } else { | |
| 252 if (ctableCount) { | |
| 253 *ctableCount = 0; | |
| 254 } | |
| 255 ctableCount = nullptr; | |
| 256 ctable = nullptr; | |
| 257 } | |
| 258 | 320 |
| 259 if (!this->rewindIfNeeded()) { | 321 if (!this->rewindIfNeeded()) { |
| 260 return kCouldNotRewind; | 322 return kCouldNotRewind; |
| 261 } | 323 } |
| 262 | 324 |
| 263 // Set options. | 325 // Set options. |
| 264 Options optsStorage; | 326 Options optsStorage; |
| 265 if (nullptr == options) { | 327 if (nullptr == options) { |
| 266 options = &optsStorage; | 328 options = &optsStorage; |
| 267 } else if (options->fSubset) { | 329 } else if (options->fSubset) { |
| 268 SkIRect size = SkIRect::MakeSize(dstInfo.dimensions()); | 330 SkIRect size = SkIRect::MakeSize(info.dimensions()); |
| 269 if (!size.contains(*options->fSubset)) { | 331 if (!size.contains(*options->fSubset)) { |
| 270 return kInvalidInput; | 332 return kInvalidInput; |
| 271 } | 333 } |
| 272 | 334 |
| 273 // We only support subsetting in the x-dimension for scanline decoder. | 335 // We only support subsetting in the x-dimension for scanline decoder. |
| 274 // Subsetting in the y-dimension can be accomplished using skipScanlines
(). | 336 // Subsetting in the y-dimension can be accomplished using skipScanlines
(). |
| 275 if (options->fSubset->top() != 0 || options->fSubset->height() != dstInf
o.height()) { | 337 if (options->fSubset->top() != 0 || options->fSubset->height() != info.h
eight()) { |
| 276 return kInvalidInput; | 338 return kInvalidInput; |
| 277 } | 339 } |
| 278 } | 340 } |
| 279 | 341 |
| 280 // FIXME: Support subsets somehow? | 342 // FIXME: Support subsets somehow? |
| 281 if (!this->dimensionsSupported(dstInfo.dimensions())) { | 343 if (!this->dimensionsSupported(info.dimensions())) { |
| 282 return kInvalidScale; | 344 return kInvalidScale; |
| 283 } | 345 } |
| 284 | 346 |
| 285 const Result result = this->onStartScanlineDecode(dstInfo, *options, ctable,
ctableCount); | 347 const Result result = this->onStartScanlineDecode(info, *options, ctable, ct
ableCount); |
| 286 if (result != SkCodec::kSuccess) { | 348 if (result != SkCodec::kSuccess) { |
| 287 return result; | 349 return result; |
| 288 } | 350 } |
| 289 | 351 |
| 290 fCurrScanline = 0; | 352 fCurrScanline = 0; |
| 291 fDstInfo = dstInfo; | 353 fDstInfo = info; |
| 292 fOptions = *options; | 354 fOptions = *options; |
| 293 return kSuccess; | 355 return kSuccess; |
| 294 } | 356 } |
| 295 | 357 |
| 296 SkCodec::Result SkCodec::startScanlineDecode(const SkImageInfo& dstInfo) { | 358 #undef CHECK_COLOR_TABLE |
| 297 return this->startScanlineDecode(dstInfo, nullptr, nullptr, nullptr); | 359 |
| 360 SkCodec::Result SkCodec::startScanlineDecode(const SkImageInfo& info) { |
| 361 return this->startScanlineDecode(info, nullptr, nullptr, nullptr); |
| 298 } | 362 } |
| 299 | 363 |
| 300 int SkCodec::getScanlines(void* dst, int countLines, size_t rowBytes) { | 364 int SkCodec::getScanlines(void* dst, int countLines, size_t rowBytes) { |
| 301 if (fCurrScanline < 0) { | 365 if (fCurrScanline < 0) { |
| 302 return 0; | 366 return 0; |
| 303 } | 367 } |
| 304 | 368 |
| 305 SkASSERT(!fDstInfo.isEmpty()); | 369 SkASSERT(!fDstInfo.isEmpty()); |
| 306 if (countLines <= 0 || fCurrScanline + countLines > fDstInfo.height()) { | 370 if (countLines <= 0 || fCurrScanline + countLines > fDstInfo.height()) { |
| 307 return 0; | 371 return 0; |
| (...skipping 27 matching lines...) Expand all Loading... |
| 335 } | 399 } |
| 336 | 400 |
| 337 int SkCodec::outputScanline(int inputScanline) const { | 401 int SkCodec::outputScanline(int inputScanline) const { |
| 338 SkASSERT(0 <= inputScanline && inputScanline < this->getInfo().height()); | 402 SkASSERT(0 <= inputScanline && inputScanline < this->getInfo().height()); |
| 339 return this->onOutputScanline(inputScanline); | 403 return this->onOutputScanline(inputScanline); |
| 340 } | 404 } |
| 341 | 405 |
| 342 int SkCodec::onOutputScanline(int inputScanline) const { | 406 int SkCodec::onOutputScanline(int inputScanline) const { |
| 343 switch (this->getScanlineOrder()) { | 407 switch (this->getScanlineOrder()) { |
| 344 case kTopDown_SkScanlineOrder: | 408 case kTopDown_SkScanlineOrder: |
| 345 case kNone_SkScanlineOrder: | |
| 346 return inputScanline; | 409 return inputScanline; |
| 347 case kBottomUp_SkScanlineOrder: | 410 case kBottomUp_SkScanlineOrder: |
| 348 return this->getInfo().height() - inputScanline - 1; | 411 return this->getInfo().height() - inputScanline - 1; |
| 349 default: | 412 default: |
| 350 // This case indicates an interlaced gif and is implemented by SkGif
Codec. | 413 // This case indicates an interlaced gif and is implemented by SkGif
Codec. |
| 351 SkASSERT(false); | 414 SkASSERT(false); |
| 352 return 0; | 415 return 0; |
| 353 } | 416 } |
| 354 } | 417 } |
| 355 | 418 |
| (...skipping 13 matching lines...) Expand all Loading... |
| 369 const uint32_t fillValue = this->getFillValue(info.colorType()); | 432 const uint32_t fillValue = this->getFillValue(info.colorType()); |
| 370 const int linesRemaining = linesRequested - linesDecoded; | 433 const int linesRemaining = linesRequested - linesDecoded; |
| 371 SkSampler* sampler = this->getSampler(false); | 434 SkSampler* sampler = this->getSampler(false); |
| 372 | 435 |
| 373 int fillWidth = info.width(); | 436 int fillWidth = info.width(); |
| 374 if (fOptions.fSubset) { | 437 if (fOptions.fSubset) { |
| 375 fillWidth = fOptions.fSubset->width(); | 438 fillWidth = fOptions.fSubset->width(); |
| 376 } | 439 } |
| 377 | 440 |
| 378 switch (this->getScanlineOrder()) { | 441 switch (this->getScanlineOrder()) { |
| 379 case kTopDown_SkScanlineOrder: | 442 case kTopDown_SkScanlineOrder: { |
| 380 case kNone_SkScanlineOrder: { | |
| 381 const SkImageInfo fillInfo = info.makeWH(fillWidth, linesRemaining); | 443 const SkImageInfo fillInfo = info.makeWH(fillWidth, linesRemaining); |
| 382 fillDst = SkTAddOffset<void>(dst, linesDecoded * rowBytes); | 444 fillDst = SkTAddOffset<void>(dst, linesDecoded * rowBytes); |
| 383 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, sampler)
; | 445 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, sampler)
; |
| 384 break; | 446 break; |
| 385 } | 447 } |
| 386 case kBottomUp_SkScanlineOrder: { | 448 case kBottomUp_SkScanlineOrder: { |
| 387 fillDst = dst; | 449 fillDst = dst; |
| 388 const SkImageInfo fillInfo = info.makeWH(fillWidth, linesRemaining); | 450 const SkImageInfo fillInfo = info.makeWH(fillWidth, linesRemaining); |
| 389 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, sampler)
; | 451 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, sampler)
; |
| 390 break; | 452 break; |
| 391 } | 453 } |
| 392 case kOutOfOrder_SkScanlineOrder: { | 454 case kOutOfOrder_SkScanlineOrder: { |
| 393 SkASSERT(1 == linesRequested || this->getInfo().height() == linesReq
uested); | 455 SkASSERT(1 == linesRequested || this->getInfo().height() == linesReq
uested); |
| 394 const SkImageInfo fillInfo = info.makeWH(fillWidth, 1); | 456 const SkImageInfo fillInfo = info.makeWH(fillWidth, 1); |
| 395 for (int srcY = linesDecoded; srcY < linesRequested; srcY++) { | 457 for (int srcY = linesDecoded; srcY < linesRequested; srcY++) { |
| 396 fillDst = SkTAddOffset<void>(dst, this->outputScanline(srcY) * r
owBytes); | 458 fillDst = SkTAddOffset<void>(dst, this->outputScanline(srcY) * r
owBytes); |
| 397 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, samp
ler); | 459 fill_proc(fillInfo, fillDst, rowBytes, fillValue, zeroInit, samp
ler); |
| 398 } | 460 } |
| 399 break; | 461 break; |
| 400 } | 462 } |
| 401 } | 463 } |
| 402 } | 464 } |
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