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Unified Diff: src/codec/SkPngCodec.cpp

Issue 1997703003: Make SkPngCodec decode progressively. (Closed) Base URL: https://skia.googlesource.com/skia.git@foil
Patch Set: Rebase Created 4 years, 3 months ago
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Index: src/codec/SkPngCodec.cpp
diff --git a/src/codec/SkPngCodec.cpp b/src/codec/SkPngCodec.cpp
index 0002bc5a31b922eb1e869bc20f9eb6c2440f7886..04c88212035664d4e5d15f93d534f98a0faf3467 100644
--- a/src/codec/SkPngCodec.cpp
+++ b/src/codec/SkPngCodec.cpp
@@ -27,31 +27,34 @@
#pragma GCC diagnostic ignored "-Wclobbered"
#endif
+#if PNG_LIBPNG_VER_MAJOR > 1 || (PNG_LIBPNG_VER_MAJOR == 1 && PNG_LIBPNG_VER_MINOR >= 5)
+ // This is not needed with version 1.5
+ #undef SK_GOOGLE3_PNG_HACK
+#endif
+
+// FIXME (scroggo): We can use png_jumpbuf directly once Google3 is on 1.6
+#define PNG_JMPBUF(x) png_jmpbuf((png_structp) x)
+
///////////////////////////////////////////////////////////////////////////////
// Callback functions
///////////////////////////////////////////////////////////////////////////////
+// When setjmp is first called, it returns 0, meaning longjmp was not called.
+constexpr int kSetJmpOkay = 0;
+// An error internal to libpng.
+constexpr int kPngError = 1;
+// Passed to longjmp when we have decoded as many lines as we need.
+constexpr int kStopDecoding = 2;
+
static void sk_error_fn(png_structp png_ptr, png_const_charp msg) {
SkCodecPrintf("------ png error %s\n", msg);
- longjmp(png_jmpbuf(png_ptr), 1);
+ longjmp(PNG_JMPBUF(png_ptr), kPngError);
}
void sk_warning_fn(png_structp, png_const_charp msg) {
SkCodecPrintf("----- png warning %s\n", msg);
}
-static void sk_read_fn(png_structp png_ptr, png_bytep data,
- png_size_t length) {
- SkStream* stream = static_cast<SkStream*>(png_get_io_ptr(png_ptr));
- const size_t bytes = stream->read(data, length);
- if (bytes != length) {
- // FIXME: We want to report the fact that the stream was truncated.
- // One way to do that might be to pass a enum to longjmp so setjmp can
- // specify the failure.
- png_error(png_ptr, "Read Error!");
- }
-}
-
#ifdef PNG_READ_UNKNOWN_CHUNKS_SUPPORTED
static int sk_read_user_chunk(png_structp png_ptr, png_unknown_chunkp chunk) {
SkPngChunkReader* chunkReader = (SkPngChunkReader*)png_get_user_chunk_ptr(png_ptr);
@@ -66,9 +69,22 @@ static int sk_read_user_chunk(png_structp png_ptr, png_unknown_chunkp chunk) {
class AutoCleanPng : public SkNoncopyable {
public:
- AutoCleanPng(png_structp png_ptr)
+ /*
+ * This class does not take ownership of stream or reader, but if codecPtr
+ * is non-NULL, and decodeBounds succeeds, it will have created a new
+ * SkCodec (pointed to by *codecPtr) which will own/ref them, as well as
+ * the png_ptr and info_ptr.
+ */
+ AutoCleanPng(png_structp png_ptr, SkStream* stream, SkPngChunkReader* reader,
+ SkCodec** codecPtr)
: fPng_ptr(png_ptr)
- , fInfo_ptr(nullptr) {}
+ , fInfo_ptr(nullptr)
+ , fDecodedBounds(false)
+ , fReadHeader(false)
+ , fStream(stream)
+ , fChunkReader(reader)
+ , fOutCodec(codecPtr)
+ {}
~AutoCleanPng() {
// fInfo_ptr will never be non-nullptr unless fPng_ptr is.
@@ -83,17 +99,119 @@ public:
fInfo_ptr = info_ptr;
}
- void release() {
+ /**
+ * Reads enough of the input stream to decode the bounds.
+ * @return false if the stream is not a valid PNG (or too short).
+ * true if it read enough of the stream to determine the bounds.
+ * In the latter case, the stream may have been read beyond the
+ * point to determine the bounds, and the png_ptr will have saved
+ * any extra data. Further, if the codecPtr supplied to the
+ * constructor was not NULL, it will now point to a new SkCodec,
+ * which owns (or refs, in the case of the SkPngChunkReader) the
+ * inputs. If codecPtr was NULL, the png_ptr and info_ptr are
+ * unowned, and it is up to the caller to destroy them.
+ */
+ bool decodeBounds();
+
+private:
+ png_structp fPng_ptr;
+ png_infop fInfo_ptr;
+ bool fDecodedBounds;
+ bool fReadHeader;
+ SkStream* fStream;
+ SkPngChunkReader* fChunkReader;
+ SkCodec** fOutCodec;
+
+ /**
+ * Supplied to libpng to call when it has read enough data to determine
+ * bounds.
+ */
+ static void InfoCallback(png_structp png_ptr, png_infop) {
+ // png_get_progressive_ptr returns the pointer we set on the png_ptr with
+ // png_set_progressive_read_fn
+ static_cast<AutoCleanPng*>(png_get_progressive_ptr(png_ptr))->infoCallback();
+ }
+
+ void infoCallback();
+
+#ifdef SK_GOOGLE3_PNG_HACK
+// public so it can be called by SkPngCodec::rereadHeaderIfNecessary().
+public:
+#endif
+ void releasePngPtrs() {
fPng_ptr = nullptr;
fInfo_ptr = nullptr;
}
-
-private:
- png_structp fPng_ptr;
- png_infop fInfo_ptr;
};
#define AutoCleanPng(...) SK_REQUIRE_LOCAL_VAR(AutoCleanPng)
+bool AutoCleanPng::decodeBounds() {
+ if (setjmp(PNG_JMPBUF(fPng_ptr))) {
+ return false;
+ }
+
+ png_set_progressive_read_fn(fPng_ptr, this, InfoCallback, nullptr, nullptr);
+
+ // Arbitrary buffer size, though note that it matches (below)
+ // SkPngCodec::processData(). FIXME: Can we better suit this to the size of
+ // the PNG header?
+ constexpr size_t kBufferSize = 4096;
+ char buffer[kBufferSize];
+
+ while (true) {
+ const size_t bytesRead = fStream->read(buffer, kBufferSize);
+ if (!bytesRead) {
+ // We have read to the end of the input without decoding bounds.
+ break;
+ }
+
+ png_process_data(fPng_ptr, fInfo_ptr, (png_bytep) buffer, bytesRead);
+ if (fReadHeader) {
+ break;
+ }
+ }
+
+ // For safety, clear the pointer to this object.
+ png_set_progressive_read_fn(fPng_ptr, nullptr, nullptr, nullptr, nullptr);
+ return fDecodedBounds;
+}
+
+void SkPngCodec::processData() {
+ switch (setjmp(PNG_JMPBUF(fPng_ptr))) {
+ case kPngError:
+ // There was an error. Stop processing data.
+ // FIXME: Do we need to discard png_ptr?
+ return;
+ case kStopDecoding:
+ // We decoded all the lines we want.
+ return;
+ case kSetJmpOkay:
+ // Everything is okay.
+ break;
+ default:
+ // No other values should be passed to longjmp.
+ SkASSERT(false);
+ }
+
+ // Arbitrary buffer size
+ constexpr size_t kBufferSize = 4096;
+ char buffer[kBufferSize];
+
+ while (true) {
+ const size_t bytesRead = this->stream()->read(buffer, kBufferSize);
+ png_process_data(fPng_ptr, fInfo_ptr, (png_bytep) buffer, bytesRead);
+
+ if (!bytesRead) {
+ // We have read to the end of the input. Note that we quit *after*
+ // calling png_process_data, because decodeBounds may have told
+ // libpng to save the remainder of the buffer, in which case
+ // png_process_data will process the saved buffer, though the
+ // stream has no more to read.
+ break;
+ }
+ }
+}
+
// Note: SkColorTable claims to store SkPMColors, which is not necessarily the case here.
bool SkPngCodec::createColorTable(const SkImageInfo& dstInfo, int* ctableCount) {
@@ -181,6 +299,8 @@ bool SkPngCodec::IsPng(const char* buf, size_t bytesRead) {
return !png_sig_cmp((png_bytep) buf, (png_size_t)0, bytesRead);
}
+#if (PNG_LIBPNG_VER_MAJOR > 1) || (PNG_LIBPNG_VER_MAJOR == 1 && PNG_LIBPNG_VER_MINOR >= 6)
+
static float png_fixed_point_to_float(png_fixed_point x) {
// We multiply by the same factor that libpng used to convert
// fixed point -> double. Since we want floats, we choose to
@@ -257,6 +377,8 @@ static bool convert_to_D50(SkMatrix44* toXYZD50, float toXYZ[9], float whitePoin
return true;
}
+#endif // LIBPNG >= 1.6
+
// Returns a colorSpace object that represents any color space information in
// the encoded data. If the encoded data contains no color space, this will
// return NULL.
@@ -352,226 +474,372 @@ sk_sp<SkColorSpace> read_color_space(png_structp png_ptr, png_infop info_ptr) {
return nullptr;
}
-static int bytes_per_pixel(int bitsPerPixel) {
- // Note that we will have to change this implementation if we start
- // supporting outputs from libpng that are less than 8-bits per component.
- return bitsPerPixel / 8;
-}
-
void SkPngCodec::allocateStorage(const SkImageInfo& dstInfo) {
switch (fXformMode) {
case kSwizzleOnly_XformMode:
- fStorage.reset(SkAlign4(fSrcRowBytes));
- fSwizzlerSrcRow = fStorage.get();
break;
case kColorOnly_XformMode:
// Intentional fall through. A swizzler hasn't been created yet, but one will
// be created later if we are sampling. We'll go ahead and allocate
// enough memory to swizzle if necessary.
case kSwizzleColor_XformMode: {
- size_t colorXformBytes = dstInfo.width() * sizeof(uint32_t);
- fStorage.reset(SkAlign4(fSrcRowBytes) + colorXformBytes);
- fSwizzlerSrcRow = fStorage.get();
- fColorXformSrcRow = SkTAddOffset<uint32_t>(fSwizzlerSrcRow, SkAlign4(fSrcRowBytes));
+ const size_t colorXformBytes = dstInfo.width() * sizeof(uint32_t);
+ fStorage.reset(colorXformBytes);
+ fColorXformSrcRow = (uint32_t*) fStorage.get();
break;
}
}
}
-void SkPngCodec::applyXformRow(void* dst, const void* src, SkColorType colorType,
- SkAlphaType alphaType, int width) {
+void SkPngCodec::applyXformRow(void* dst, const void* src) {
+ const SkColorType colorType = this->dstInfo().colorType();
switch (fXformMode) {
case kSwizzleOnly_XformMode:
fSwizzler->swizzle(dst, (const uint8_t*) src);
break;
case kColorOnly_XformMode:
- fColorXform->apply(dst, (const uint32_t*) src, width, colorType, alphaType);
+ fColorXform->apply(dst, (const uint32_t*) src, fXformWidth, colorType, fXformAlphaType);
break;
case kSwizzleColor_XformMode:
fSwizzler->swizzle(fColorXformSrcRow, (const uint8_t*) src);
- fColorXform->apply(dst, fColorXformSrcRow, width, colorType, alphaType);
+ fColorXform->apply(dst, fColorXformSrcRow, fXformWidth, colorType, fXformAlphaType);
break;
}
}
-class SkPngNormalCodec : public SkPngCodec {
+class SkPngNormalDecoder : public SkPngCodec {
public:
- SkPngNormalCodec(const SkEncodedInfo& encodedInfo, const SkImageInfo& imageInfo,
- SkStream* stream, SkPngChunkReader* chunkReader, png_structp png_ptr,
- png_infop info_ptr, int bitDepth)
- : INHERITED(encodedInfo, imageInfo, stream, chunkReader, png_ptr, info_ptr, bitDepth, 1)
+ SkPngNormalDecoder(const SkEncodedInfo& info, const SkImageInfo& imageInfo, SkStream* stream,
+ SkPngChunkReader* reader, png_structp png_ptr, png_infop info_ptr, int bitDepth)
+ : INHERITED(info, imageInfo, stream, reader, png_ptr, info_ptr, bitDepth)
+ , fLinesDecoded(0)
+ , fDst(nullptr)
+ , fRowBytes(0)
+ , fFirstRow(0)
+ , fLastRow(0)
{}
- Result onStartScanlineDecode(const SkImageInfo& dstInfo, const Options& options,
- SkPMColor ctable[], int* ctableCount) override {
- if (!conversion_possible(dstInfo, this->getInfo()) ||
- !this->initializeXforms(dstInfo, options, ctable, ctableCount))
- {
- return kInvalidConversion;
- }
+ static void AllRowsCallback(png_structp png_ptr, png_bytep row, png_uint_32 rowNum, int /*pass*/) {
+ GetDecoder(png_ptr)->allRowsCallback(row, rowNum);
+ }
+
+ static void RowCallback(png_structp png_ptr, png_bytep row, png_uint_32 rowNum, int /*pass*/) {
+ GetDecoder(png_ptr)->rowCallback(row, rowNum);
+ }
- this->allocateStorage(dstInfo);
- return kSuccess;
+#ifdef SK_GOOGLE3_PNG_HACK
+ static void RereadInfoCallback(png_structp png_ptr, png_infop) {
+ GetDecoder(png_ptr)->rereadInfoCallback();
}
+#endif
- int readRows(const SkImageInfo& dstInfo, void* dst, size_t rowBytes, int count, int startRow)
- override {
- SkASSERT(0 == startRow);
+private:
+ int fLinesDecoded; // FIXME: Move to baseclass?
+ void* fDst;
+ size_t fRowBytes;
- // Assume that an error in libpng indicates an incomplete input.
- int y = 0;
- if (setjmp(png_jmpbuf((png_struct*)fPng_ptr))) {
- SkCodecPrintf("Failed to read row.\n");
- return y;
- }
+ // Variables for partial decode
+ int fFirstRow; // FIXME: Move to baseclass?
+ int fLastRow;
- SkAlphaType xformAlphaType = select_alpha_xform(dstInfo.alphaType(),
- this->getInfo().alphaType());
- int width = fSwizzler ? fSwizzler->swizzleWidth() : dstInfo.width();
+ typedef SkPngCodec INHERITED;
- for (; y < count; y++) {
- png_read_row(fPng_ptr, fSwizzlerSrcRow, nullptr);
- this->applyXformRow(dst, fSwizzlerSrcRow, dstInfo.colorType(), xformAlphaType, width);
- dst = SkTAddOffset<void>(dst, rowBytes);
+ static SkPngNormalDecoder* GetDecoder(png_structp png_ptr) {
+ return static_cast<SkPngNormalDecoder*>(png_get_progressive_ptr(png_ptr));
+ }
+
+ Result decodeAllRows(void* dst, size_t rowBytes, int* rowsDecoded) override {
+ const int height = this->getInfo().height();
+ png_progressive_info_ptr callback = nullptr;
+#ifdef SK_GOOGLE3_PNG_HACK
+ callback = RereadInfoCallback;
+#endif
+ png_set_progressive_read_fn(this->png_ptr(), this, callback, AllRowsCallback, nullptr);
+ fDst = dst;
+ fRowBytes = rowBytes;
+
+ fLinesDecoded = 0;
+
+ this->processData();
+
+ if (fLinesDecoded == height) {
+ return SkCodec::kSuccess;
+ }
+
+ if (rowsDecoded) {
+ *rowsDecoded = fLinesDecoded;
}
- return y;
+ return SkCodec::kIncompleteInput;
}
- int onGetScanlines(void* dst, int count, size_t rowBytes) override {
- return this->readRows(this->dstInfo(), dst, rowBytes, count, 0);
+ void allRowsCallback(png_bytep row, int rowNum) {
+ SkASSERT(rowNum - fFirstRow == fLinesDecoded);
+ fLinesDecoded++;
+ this->applyXformRow(fDst, row);
+ fDst = SkTAddOffset<void>(fDst, fRowBytes);
}
- bool onSkipScanlines(int count) override {
- if (setjmp(png_jmpbuf((png_struct*)fPng_ptr))) {
- SkCodecPrintf("Failed to skip row.\n");
- return false;
+ void setRange(int firstRow, int lastRow, void* dst, size_t rowBytes) override {
+ png_progressive_info_ptr callback = nullptr;
+#ifdef SK_GOOGLE3_PNG_HACK
+ callback = RereadInfoCallback;
+#endif
+ png_set_progressive_read_fn(this->png_ptr(), this, callback, RowCallback, nullptr);
+ fFirstRow = firstRow;
+ fLastRow = lastRow;
+ fDst = dst;
+ fRowBytes = rowBytes;
+ fLinesDecoded = 0;
+ }
+
+ SkCodec::Result decode(int* rowsDecoded) override {
+ this->processData();
+
+ if (fLinesDecoded == fLastRow - fFirstRow + 1) {
+ return SkCodec::kSuccess;
}
- for (int row = 0; row < count; row++) {
- png_read_row(fPng_ptr, fSwizzlerSrcRow, nullptr);
+ if (rowsDecoded) {
+ *rowsDecoded = fLinesDecoded;
}
- return true;
+
+ return SkCodec::kIncompleteInput;
}
- typedef SkPngCodec INHERITED;
+ void rowCallback(png_bytep row, int rowNum) {
+ if (rowNum < fFirstRow) {
+ // Ignore this row.
+ return;
+ }
+
+ SkASSERT(rowNum <= fLastRow);
+
+ // If there is no swizzler, all rows are needed.
+ if (!this->swizzler() || this->swizzler()->rowNeeded(fLinesDecoded)) {
+ this->applyXformRow(fDst, row);
+ fDst = SkTAddOffset<void>(fDst, fRowBytes);
+ }
+
+ fLinesDecoded++;
+
+ if (rowNum == fLastRow) {
+ // Fake error to stop decoding scanlines.
+ longjmp(PNG_JMPBUF(this->png_ptr()), kStopDecoding);
+ }
+ }
};
-class SkPngInterlacedCodec : public SkPngCodec {
+class SkPngInterlacedDecoder : public SkPngCodec {
public:
- SkPngInterlacedCodec(const SkEncodedInfo& encodedInfo, const SkImageInfo& imageInfo,
- SkStream* stream, SkPngChunkReader* chunkReader, png_structp png_ptr,
- png_infop info_ptr, int bitDepth, int numberPasses)
- : INHERITED(encodedInfo, imageInfo, stream, chunkReader, png_ptr, info_ptr, bitDepth,
- numberPasses)
- , fCanSkipRewind(false)
- {
- SkASSERT(numberPasses != 1);
+ SkPngInterlacedDecoder(const SkEncodedInfo& info, const SkImageInfo& imageInfo,
+ SkStream* stream, SkPngChunkReader* reader, png_structp png_ptr, png_infop info_ptr,
+ int bitDepth, int numberPasses)
+ : INHERITED(info, imageInfo, stream, reader, png_ptr, info_ptr, bitDepth)
+ , fNumberPasses(numberPasses)
+ , fFirstRow(0)
+ , fLastRow(0)
+ , fLinesDecoded(0)
+ , fInterlacedComplete(false)
+ , fPng_rowbytes(0)
+ {}
+
+ static void InterlacedRowCallback(png_structp png_ptr, png_bytep row, png_uint_32 rowNum, int pass) {
+ auto decoder = static_cast<SkPngInterlacedDecoder*>(png_get_progressive_ptr(png_ptr));
+ decoder->interlacedRowCallback(row, rowNum, pass);
}
- Result onStartScanlineDecode(const SkImageInfo& dstInfo, const Options& options,
- SkPMColor ctable[], int* ctableCount) override {
- if (!conversion_possible(dstInfo, this->getInfo()) ||
- !this->initializeXforms(dstInfo, options, ctable, ctableCount))
- {
- return kInvalidConversion;
- }
+#ifdef SK_GOOGLE3_PNG_HACK
+ static void RereadInfoInterlacedCallback(png_structp png_ptr, png_infop) {
+ static_cast<SkPngInterlacedDecoder*>(png_get_progressive_ptr(png_ptr))->rereadInfoInterlaced();
+ }
+#endif
+
+private:
+ const int fNumberPasses;
+ int fFirstRow;
+ int fLastRow;
+ void* fDst;
+ size_t fRowBytes;
+ int fLinesDecoded;
+ bool fInterlacedComplete;
+ size_t fPng_rowbytes;
+ SkAutoTMalloc<png_byte> fInterlaceBuffer;
+
+ typedef SkPngCodec INHERITED;
- this->allocateStorage(dstInfo);
- fCanSkipRewind = true;
- return SkCodec::kSuccess;
+#ifdef SK_GOOGLE3_PNG_HACK
+ void rereadInfoInterlaced() {
+ this->rereadInfoCallback();
+ // Note: This allocates more memory than necessary, if we are sampling/subset.
+ this->setUpInterlaceBuffer(this->getInfo().height());
}
+#endif
- int readRows(const SkImageInfo& dstInfo, void* dst, size_t rowBytes, int count, int startRow)
- override {
- if (setjmp(png_jmpbuf((png_struct*)fPng_ptr))) {
- SkCodecPrintf("Failed to get scanlines.\n");
- // FIXME (msarett): Returning 0 is pessimistic. If we can complete a single pass,
- // we may be able to report that all of the memory has been initialized. Even if we
- // fail on the first pass, we can still report than some scanlines are initialized.
- return 0;
+ // FIXME: Currently sharing interlaced callback for all rows and subset. It's not
+ // as expensive as the subset version of non-interlaced, but it still does extra
+ // work.
+ void interlacedRowCallback(png_bytep row, int rowNum, int pass) {
+ if (rowNum < fFirstRow || rowNum > fLastRow) {
+ // Ignore this row
+ return;
}
- SkAutoTMalloc<uint8_t> storage(count * fSrcRowBytes);
- uint8_t* srcRow;
- for (int i = 0; i < fNumberPasses; i++) {
- // Discard rows that we planned to skip.
- for (int y = 0; y < startRow; y++){
- png_read_row(fPng_ptr, fSwizzlerSrcRow, nullptr);
- }
- // Read rows we care about into storage.
- srcRow = storage.get();
- for (int y = 0; y < count; y++) {
- png_read_row(fPng_ptr, srcRow, nullptr);
- srcRow += fSrcRowBytes;
- }
- // Discard rows that we don't need.
- for (int y = 0; y < this->getInfo().height() - startRow - count; y++) {
- png_read_row(fPng_ptr, fSwizzlerSrcRow, nullptr);
+ png_bytep oldRow = fInterlaceBuffer.get() + (rowNum - fFirstRow) * fPng_rowbytes;
+ png_progressive_combine_row(this->png_ptr(), oldRow, row);
+
+ if (0 == pass) {
+ // The first pass initializes all rows.
+ SkASSERT(row);
+ SkASSERT(fLinesDecoded == rowNum - fFirstRow);
+ fLinesDecoded++;
+ } else {
+ SkASSERT(fLinesDecoded == fLastRow - fFirstRow + 1);
+ if (fNumberPasses - 1 == pass && rowNum == fLastRow) {
+ // Last pass, and we have read all of the rows we care about. Note that
+ // we do not care about reading anything beyond the end of the image (or
+ // beyond the last scanline requested).
+ fInterlacedComplete = true;
+ // Fake error to stop decoding scanlines.
+ longjmp(PNG_JMPBUF(this->png_ptr()), kStopDecoding);
}
}
+ }
- SkAlphaType xformAlphaType = select_alpha_xform(dstInfo.alphaType(),
- this->getInfo().alphaType());
- int width = fSwizzler ? fSwizzler->swizzleWidth() : dstInfo.width();
- srcRow = storage.get();
- for (int y = 0; y < count; y++) {
- this->applyXformRow(dst, srcRow, dstInfo.colorType(), xformAlphaType, width);
- srcRow = SkTAddOffset<uint8_t>(srcRow, fSrcRowBytes);
+ SkCodec::Result decodeAllRows(void* dst, size_t rowBytes, int* rowsDecoded) override {
+ const int height = this->getInfo().height();
+ this->setUpInterlaceBuffer(height);
+ png_progressive_info_ptr callback = nullptr;
+#ifdef SK_GOOGLE3_PNG_HACK
+ callback = RereadInfoInterlacedCallback;
+#endif
+ png_set_progressive_read_fn(this->png_ptr(), this, callback, InterlacedRowCallback,
+ nullptr);
+
+ fFirstRow = 0;
+ fLastRow = height - 1;
+ fLinesDecoded = 0;
+
+ this->processData();
+
+ png_bytep srcRow = fInterlaceBuffer.get();
+ // FIXME: When resuming, this may rewrite rows that did not change.
+ for (int rowNum = 0; rowNum < fLinesDecoded; rowNum++) {
+ this->applyXformRow(dst, srcRow);
dst = SkTAddOffset<void>(dst, rowBytes);
+ srcRow = SkTAddOffset<png_byte>(srcRow, fPng_rowbytes);
+ }
+ if (fInterlacedComplete) {
+ return SkCodec::kSuccess;
}
- return count;
+ if (rowsDecoded) {
+ *rowsDecoded = fLinesDecoded;
+ }
+
+ return SkCodec::kIncompleteInput;
}
- int onGetScanlines(void* dst, int count, size_t rowBytes) override {
- // rewind stream if have previously called onGetScanlines,
- // since we need entire progressive image to get scanlines
- if (fCanSkipRewind) {
- // We already rewound in onStartScanlineDecode, so there is no reason to rewind.
- // Next time onGetScanlines is called, we will need to rewind.
- fCanSkipRewind = false;
- } else {
- // rewindIfNeeded resets fCurrScanline, since it assumes that start
- // needs to be called again before scanline decoding. PNG scanline
- // decoding is the exception, since it needs to rewind between
- // calls to getScanlines. Keep track of fCurrScanline, to undo the
- // reset.
- const int currScanline = this->nextScanline();
- // This method would never be called if currScanline is -1
- SkASSERT(currScanline != -1);
-
- if (!this->rewindIfNeeded()) {
- return kCouldNotRewind;
- }
- this->updateCurrScanline(currScanline);
+ void setRange(int firstRow, int lastRow, void* dst, size_t rowBytes) override {
+ // FIXME: We could skip rows in the interlace buffer that we won't put in the output.
+ this->setUpInterlaceBuffer(lastRow - firstRow + 1);
+ png_progressive_info_ptr callback = nullptr;
+#ifdef SK_GOOGLE3_PNG_HACK
+ callback = RereadInfoInterlacedCallback;
+#endif
+ png_set_progressive_read_fn(this->png_ptr(), this, callback, InterlacedRowCallback, nullptr);
+ fFirstRow = firstRow;
+ fLastRow = lastRow;
+ fDst = dst;
+ fRowBytes = rowBytes;
+ fLinesDecoded = 0;
+ }
+
+ SkCodec::Result decode(int* rowsDecoded) override {
+ this->processData();
+
+ // Now apply Xforms on all the rows that were decoded.
+ if (!fLinesDecoded) {
+ return SkCodec::kIncompleteInput;
+ }
+ const int lastRow = fLinesDecoded + fFirstRow - 1;
+ SkASSERT(lastRow <= fLastRow);
+
+ // FIXME: For resuming interlace, we may swizzle a row that hasn't changed. But it
+ // may be too tricky/expensive to handle that correctly.
+ png_bytep srcRow = fInterlaceBuffer.get();
+ const int sampleY = this->swizzler() ? this->swizzler()->sampleY() : 1;
+ void* dst = fDst;
+ for (int rowNum = fFirstRow; rowNum <= lastRow; rowNum += sampleY) {
+ this->applyXformRow(dst, srcRow);
+ dst = SkTAddOffset<void>(dst, fRowBytes);
+ srcRow = SkTAddOffset<png_byte>(srcRow, fPng_rowbytes * sampleY);
+ }
+
+ if (fInterlacedComplete) {
+ return SkCodec::kSuccess;
}
- return this->readRows(this->dstInfo(), dst, rowBytes, count, this->nextScanline());
+ if (rowsDecoded) {
+ *rowsDecoded = fLinesDecoded;
+ }
+ return SkCodec::kIncompleteInput;
}
- bool onSkipScanlines(int count) override {
- // The non-virtual version will update fCurrScanline.
+ void setUpInterlaceBuffer(int height) {
+ fPng_rowbytes = png_get_rowbytes(this->png_ptr(), this->info_ptr());
+ fInterlaceBuffer.reset(fPng_rowbytes * height);
+ fInterlacedComplete = false;
+ }
+};
+
+#ifdef SK_GOOGLE3_PNG_HACK
+bool SkPngCodec::rereadHeaderIfNecessary() {
+ if (!fNeedsToRereadHeader) {
return true;
}
- SkScanlineOrder onGetScanlineOrder() const override {
- return kNone_SkScanlineOrder;
+ // On the first call, we'll need to rewind ourselves. Future calls will
+ // have already rewound in rewindIfNecessary.
+ if (this->stream()->getPosition() > 0) {
+ this->stream()->rewind();
}
-private:
- // FIXME: This imitates behavior in SkCodec::rewindIfNeeded. That function
- // is called whenever some action is taken that reads the stream and
- // therefore the next call will require a rewind. So it modifies a boolean
- // to note that the *next* time it is called a rewind is needed.
- // SkPngInterlacedCodec has an extra wrinkle - calling
- // onStartScanlineDecode followed by onGetScanlines does *not* require a
- // rewind. Since rewindIfNeeded does not have this flexibility, we need to
- // add another layer.
- bool fCanSkipRewind;
+ this->destroyReadStruct();
+ png_structp png_ptr = png_create_read_struct(PNG_LIBPNG_VER_STRING, nullptr,
+ sk_error_fn, sk_warning_fn);
+ if (!png_ptr) {
+ return false;
+ }
- typedef SkPngCodec INHERITED;
-};
+ // Only use the AutoCleanPng to delete png_ptr as necessary.
+ // (i.e. not for reading bounds etc.)
+ AutoCleanPng autoClean(png_ptr, nullptr, nullptr, nullptr);
+
+ png_infop info_ptr = png_create_info_struct(png_ptr);
+ if (info_ptr == nullptr) {
+ return false;
+ }
+
+ autoClean.setInfoPtr(info_ptr);
+
+#ifdef PNG_READ_UNKNOWN_CHUNKS_SUPPORTED
+ // Hookup our chunkReader so we can see any user-chunks the caller may be interested in.
+ // This needs to be installed before we read the png header. Android may store ninepatch
+ // chunks in the header.
+ if (fPngChunkReader.get()) {
+ png_set_keep_unknown_chunks(png_ptr, PNG_HANDLE_CHUNK_ALWAYS, (png_byte*)"", 0);
+ png_set_read_user_chunk_fn(png_ptr, (png_voidp) fPngChunkReader.get(), sk_read_user_chunk);
+ }
+#endif
+
+ fPng_ptr = png_ptr;
+ fInfo_ptr = info_ptr;
+ autoClean.releasePngPtrs();
+ fNeedsToRereadHeader = false;
+ return true;
+}
+#endif // SK_GOOGLE3_PNG_HACK
// Reads the header and initializes the output fields, if not NULL.
//
@@ -598,7 +866,7 @@ static bool read_header(SkStream* stream, SkPngChunkReader* chunkReader, SkCodec
return false;
}
- AutoCleanPng autoClean(png_ptr);
+ AutoCleanPng autoClean(png_ptr, stream, chunkReader, outCodec);
png_infop info_ptr = png_create_info_struct(png_ptr);
if (info_ptr == nullptr) {
@@ -609,12 +877,10 @@ static bool read_header(SkStream* stream, SkPngChunkReader* chunkReader, SkCodec
// FIXME: Could we use the return value of setjmp to specify the type of
// error?
- if (setjmp(png_jmpbuf(png_ptr))) {
+ if (setjmp(PNG_JMPBUF(png_ptr))) {
return false;
}
- png_set_read_fn(png_ptr, static_cast<void*>(stream), sk_read_fn);
-
#ifdef PNG_READ_UNKNOWN_CHUNKS_SUPPORTED
// Hookup our chunkReader so we can see any user-chunks the caller may be interested in.
// This needs to be installed before we read the png header. Android may store ninepatch
@@ -625,9 +891,31 @@ static bool read_header(SkStream* stream, SkPngChunkReader* chunkReader, SkCodec
}
#endif
- // The call to png_read_info() gives us all of the information from the
- // PNG file before the first IDAT (image data chunk).
- png_read_info(png_ptr, info_ptr);
+ const bool decodedBounds = autoClean.decodeBounds();
+
+ if (!decodedBounds) {
+ return false;
+ }
+
+ // On success, decodeBounds releases ownership of png_ptr and info_ptr.
+ if (png_ptrp) {
+ *png_ptrp = png_ptr;
+ }
+ if (info_ptrp) {
+ *info_ptrp = info_ptr;
+ }
+
+ // decodeBounds takes care of setting outCodec
+ if (outCodec) {
+ SkASSERT(*outCodec);
+ }
+ return true;
+}
+
+// FIXME (scroggo): Once SK_GOOGLE3_PNG_HACK is no more, this method can be inline in
+// AutoCleanPng::infoCallback
+static void general_info_callback(png_structp png_ptr, png_infop info_ptr,
+ SkEncodedInfo::Color* outColor, SkEncodedInfo::Alpha* outAlpha) {
png_uint_32 origWidth, origHeight;
int bitDepth, encodedColorType;
png_get_IHDR(png_ptr, info_ptr, &origWidth, &origHeight, &bitDepth,
@@ -701,30 +989,58 @@ static bool read_header(SkStream* stream, SkPngChunkReader* chunkReader, SkCodec
color = SkEncodedInfo::kRGBA_Color;
alpha = SkEncodedInfo::kUnpremul_Alpha;
}
-
- int numberPasses = png_set_interlace_handling(png_ptr);
-
- autoClean.release();
- if (png_ptrp) {
- *png_ptrp = png_ptr;
+ if (outColor) {
+ *outColor = color;
}
- if (info_ptrp) {
- *info_ptrp = info_ptr;
+ if (outAlpha) {
+ *outAlpha = alpha;
}
+}
- if (outCodec) {
- sk_sp<SkColorSpace> colorSpace = read_color_space(png_ptr, info_ptr);
+#ifdef SK_GOOGLE3_PNG_HACK
+void SkPngCodec::rereadInfoCallback() {
+ general_info_callback(fPng_ptr, fInfo_ptr, nullptr, nullptr);
+ png_set_interlace_handling(fPng_ptr);
+ png_read_update_info(fPng_ptr, fInfo_ptr);
+}
+#endif
+
+void AutoCleanPng::infoCallback() {
+ SkEncodedInfo::Color color;
+ SkEncodedInfo::Alpha alpha;
+ general_info_callback(fPng_ptr, fInfo_ptr, &color, &alpha);
+
+ const int numberPasses = png_set_interlace_handling(fPng_ptr);
+
+ fReadHeader = true;
+ fDecodedBounds = true;
+#ifndef SK_GOOGLE3_PNG_HACK
+ // 1 tells libpng to save any extra data. We may be able to be more efficient by saving
+ // it ourselves.
+ png_process_data_pause(fPng_ptr, 1);
+#else
+ // Hack to make png_process_data stop.
+ fPng_ptr->buffer_size = 0;
+#endif
+ if (fOutCodec) {
+ SkASSERT(nullptr == *fOutCodec);
+ sk_sp<SkColorSpace> colorSpace = read_color_space(fPng_ptr, fInfo_ptr);
if (!colorSpace) {
// Treat unmarked pngs as sRGB.
colorSpace = SkColorSpace::NewNamed(SkColorSpace::kSRGB_Named);
}
SkEncodedInfo encodedInfo = SkEncodedInfo::Make(color, alpha, 8);
+ // FIXME (scroggo): Once we get rid of SK_GOOGLE3_PNG_HACK, general_info_callback can
+ // be inlined, so these values will already be set.
+ png_uint_32 origWidth = png_get_image_width(fPng_ptr, fInfo_ptr);
+ png_uint_32 origHeight = png_get_image_height(fPng_ptr, fInfo_ptr);
+ png_byte bitDepth = png_get_bit_depth(fPng_ptr, fInfo_ptr);
SkImageInfo imageInfo = encodedInfo.makeImageInfo(origWidth, origHeight, colorSpace);
if (SkEncodedInfo::kOpaque_Alpha == alpha) {
png_color_8p sigBits;
- if (png_get_sBIT(png_ptr, info_ptr, &sigBits)) {
+ if (png_get_sBIT(fPng_ptr, fInfo_ptr, &sigBits)) {
if (5 == sigBits->red && 6 == sigBits->green && 5 == sigBits->blue) {
// Recommend a decode to 565 if the sBIT indicates 565.
imageInfo = imageInfo.makeColorType(kRGB_565_SkColorType);
@@ -733,29 +1049,32 @@ static bool read_header(SkStream* stream, SkPngChunkReader* chunkReader, SkCodec
}
if (1 == numberPasses) {
- *outCodec = new SkPngNormalCodec(encodedInfo, imageInfo, stream,
- chunkReader, png_ptr, info_ptr, bitDepth);
+ *fOutCodec = new SkPngNormalDecoder(encodedInfo, imageInfo, fStream,
+ fChunkReader, fPng_ptr, fInfo_ptr, bitDepth);
} else {
- *outCodec = new SkPngInterlacedCodec(encodedInfo, imageInfo, stream,
- chunkReader, png_ptr, info_ptr, bitDepth, numberPasses);
+ *fOutCodec = new SkPngInterlacedDecoder(encodedInfo, imageInfo, fStream,
+ fChunkReader, fPng_ptr, fInfo_ptr, bitDepth, numberPasses);
}
}
- return true;
+
+ // Release the pointers, which are now owned by the codec or the caller is expected to
+ // take ownership.
+ this->releasePngPtrs();
}
SkPngCodec::SkPngCodec(const SkEncodedInfo& encodedInfo, const SkImageInfo& imageInfo,
SkStream* stream, SkPngChunkReader* chunkReader, void* png_ptr,
- void* info_ptr, int bitDepth, int numberPasses)
+ void* info_ptr, int bitDepth)
: INHERITED(encodedInfo, imageInfo, stream)
, fPngChunkReader(SkSafeRef(chunkReader))
, fPng_ptr(png_ptr)
, fInfo_ptr(info_ptr)
- , fSwizzlerSrcRow(nullptr)
, fColorXformSrcRow(nullptr)
- , fSrcRowBytes(imageInfo.width() * (bytes_per_pixel(this->getEncodedInfo().bitsPerPixel())))
- , fNumberPasses(numberPasses)
, fBitDepth(bitDepth)
+#ifdef SK_GOOGLE3_PNG_HACK
+ , fNeedsToRereadHeader(true)
+#endif
{}
SkPngCodec::~SkPngCodec() {
@@ -778,7 +1097,7 @@ void SkPngCodec::destroyReadStruct() {
bool SkPngCodec::initializeXforms(const SkImageInfo& dstInfo, const Options& options,
SkPMColor ctable[], int* ctableCount) {
- if (setjmp(png_jmpbuf((png_struct*)fPng_ptr))) {
+ if (setjmp(PNG_JMPBUF((png_struct*)fPng_ptr))) {
SkCodecPrintf("Failed on png_read_update_info.\n");
return false;
}
@@ -818,6 +1137,11 @@ bool SkPngCodec::initializeXforms(const SkImageInfo& dstInfo, const Options& opt
return true;
}
+void SkPngCodec::initializeXformAlphaAndWidth() {
+ fXformAlphaType = select_alpha_xform(this->dstInfo().alphaType(), this->getInfo().alphaType());
+ fXformWidth = this->swizzler() ? this->swizzler()->swizzleWidth() : this->dstInfo().width();
+}
+
static inline bool apply_xform_on_decode(SkColorType dstColorType, SkEncodedInfo::Color srcColor) {
// We will apply the color xform when reading the color table, unless F16 is requested.
return SkEncodedInfo::kPalette_Color != srcColor || kRGBA_F16_SkColorType == dstColorType;
@@ -857,6 +1181,10 @@ SkSampler* SkPngCodec::getSampler(bool createIfNecessary) {
}
bool SkPngCodec::onRewind() {
+#ifdef SK_GOOGLE3_PNG_HACK
+ fNeedsToRereadHeader = true;
+ return true;
+#else
// This sets fPng_ptr and fInfo_ptr to nullptr. If read_header
// succeeds, they will be repopulated, and if it fails, they will
// remain nullptr. Any future accesses to fPng_ptr and fInfo_ptr will
@@ -873,6 +1201,7 @@ bool SkPngCodec::onRewind() {
fPng_ptr = png_ptr;
fInfo_ptr = info_ptr;
return true;
+#endif
}
SkCodec::Result SkPngCodec::onGetPixels(const SkImageInfo& dstInfo, void* dst,
@@ -884,21 +1213,59 @@ SkCodec::Result SkPngCodec::onGetPixels(const SkImageInfo& dstInfo, void* dst,
{
return kInvalidConversion;
}
+#ifdef SK_GOOGLE3_PNG_HACK
+ // Note that this is done after initializeXforms. Otherwise that method
+ // would not have png_ptr to use.
+ if (!this->rereadHeaderIfNecessary()) {
+ return kCouldNotRewind;
+ }
+#endif
if (options.fSubset) {
return kUnimplemented;
}
this->allocateStorage(dstInfo);
- int count = this->readRows(dstInfo, dst, rowBytes, dstInfo.height(), 0);
- if (count > dstInfo.height()) {
- *rowsDecoded = count;
- return kIncompleteInput;
+ this->initializeXformAlphaAndWidth();
+ return this->decodeAllRows(dst, rowBytes, rowsDecoded);
+}
+
+SkCodec::Result SkPngCodec::onStartIncrementalDecode(const SkImageInfo& dstInfo,
+ void* dst, size_t rowBytes, const SkCodec::Options& options,
+ SkPMColor* ctable, int* ctableCount) {
+ if (!conversion_possible(dstInfo, this->getInfo()) ||
+ !this->initializeXforms(dstInfo, options, ctable, ctableCount))
+ {
+ return kInvalidConversion;
}
+#ifdef SK_GOOGLE3_PNG_HACK
+ // See note in onGetPixels.
+ if (!this->rereadHeaderIfNecessary()) {
+ return kCouldNotRewind;
+ }
+#endif
+
+ this->allocateStorage(dstInfo);
+ int firstRow, lastRow;
+ if (options.fSubset) {
+ firstRow = options.fSubset->top();
+ lastRow = options.fSubset->bottom() - 1;
+ } else {
+ firstRow = 0;
+ lastRow = dstInfo.height() - 1;
+ }
+ this->setRange(firstRow, lastRow, dst, rowBytes);
return kSuccess;
}
+SkCodec::Result SkPngCodec::onIncrementalDecode(int* rowsDecoded) {
+ // FIXME: Only necessary on the first call.
+ this->initializeXformAlphaAndWidth();
+
+ return this->decode(rowsDecoded);
+}
+
uint64_t SkPngCodec::onGetFillValue(const SkImageInfo& dstInfo) const {
const SkPMColor* colorPtr = get_color_ptr(fColorTable.get());
if (colorPtr) {
@@ -913,8 +1280,8 @@ uint64_t SkPngCodec::onGetFillValue(const SkImageInfo& dstInfo) const {
SkCodec* SkPngCodec::NewFromStream(SkStream* stream, SkPngChunkReader* chunkReader) {
SkAutoTDelete<SkStream> streamDeleter(stream);
- SkCodec* outCodec;
- if (read_header(stream, chunkReader, &outCodec, nullptr, nullptr)) {
+ SkCodec* outCodec = nullptr;
+ if (read_header(streamDeleter.get(), chunkReader, &outCodec, nullptr, nullptr)) {
// Codec has taken ownership of the stream.
SkASSERT(outCodec);
streamDeleter.release();
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