зеркало из https://github.com/mozilla/moz-skia.git
Address lint issues in pdf directories.
Review URL: http://codereview.appspot.com/4887042 git-svn-id: http://skia.googlecode.com/svn/trunk@2117 2bbb7eff-a529-9590-31e7-b0007b416f81
This commit is contained in:
Родитель
7b5e017169
Коммит
a5c7234e81
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@ -55,7 +55,7 @@ private:
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SkASSERT((size_t)index < fBitCount);
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size_t internalIndex = index / 32;
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SkASSERT(internalIndex < fDwordCount);
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return (uint32_t*)fBitData.get() + internalIndex;
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return reinterpret_cast<uint32_t*>(fBitData.get()) + internalIndex;
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}
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};
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@ -71,8 +71,7 @@ public:
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}
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virtual void setMatrixClip(const SkMatrix& m, const SkRegion& r,
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const SkClipStack& c)
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{
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const SkClipStack& c) {
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SkDevice::setMatrixClip(m, r, c);
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}
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@ -48,7 +48,7 @@ public:
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class F2BIter {
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public:
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F2BIter(const SkPDFGlyphSetMap& map);
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explicit F2BIter(const SkPDFGlyphSetMap& map);
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FontGlyphSetPair* next() const;
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void reset(const SkPDFGlyphSetMap& map);
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@ -285,22 +285,22 @@ public:
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* @return The value argument is returned.
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*/
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SkPDFObject* append(SkPDFObject* value);
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/** Creates a SkPDFInt object and appends it to the array.
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* @param value The value to add to the array.
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*/
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void appendInt(int32_t value);
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/** Creates a SkPDFScalar object and appends it to the array.
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* @param value The value to add to the array.
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*/
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void appendScalar(SkScalar value);
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/** Creates a SkPDFName object and appends it to the array.
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* @param value The value to add to the array.
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*/
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void appendName(const char name[]);
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private:
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static const int kMaxLen = 8191;
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SkTDArray<SkPDFObject*> fValue;
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@ -346,19 +346,19 @@ public:
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* @return The value argument is returned.
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*/
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SkPDFObject* insert(const char key[], SkPDFObject* value);
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/** Add the int to the dictionary with the given key.
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* @param key The text of the key for this dictionary entry.
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* @param value The int value for this dictionary entry.
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*/
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void insertInt(const char key[], int32_t value);
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/** Add the scalar to the dictionary with the given key.
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* @param key The text of the key for this dictionary entry.
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* @param value The scalar value for this dictionary entry.
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*/
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void insertScalar(const char key[], SkScalar value);
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/** Add the name to the dictionary with the given key.
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* @param key The text of the key for this dictionary entry.
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* @param name The name for this dictionary entry.
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@ -372,7 +372,7 @@ public:
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void insertName(const char key[], const SkString& name) {
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this->insertName(key, name.c_str());
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}
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/** Remove all entries from the dictionary.
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*/
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void clear();
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@ -29,7 +29,7 @@ struct SkRect;
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PRINT_NOT_IMPL("NOT_IMPLEMENTED: " #condition "\n"); \
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SkDEBUGCODE(SkASSERT(!assert);) \
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} \
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} while(0)
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} while (0)
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class SkPDFUtils {
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public:
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@ -24,7 +24,7 @@ SkBitSet::SkBitSet(const SkBitSet& source)
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}
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const SkBitSet& SkBitSet::operator=(const SkBitSet& rhs) {
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if (this == (SkBitSet*)&rhs) {
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if (this == &rhs) {
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return *this;
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}
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fBitCount = rhs.fBitCount;
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@ -84,7 +84,7 @@ bool SkBitSet::orBits(const SkBitSet& source) {
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void SkBitSet::exportTo(SkTDArray<uint32_t>* array) const {
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SkASSERT(array);
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uint32_t* data = (uint32_t*)fBitData.get();
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uint32_t* data = reinterpret_cast<uint32_t*>(fBitData.get());
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for (unsigned int i = 0; i < fDwordCount; ++i) {
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uint32_t value = data[i];
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if (value) { // There are set bits
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@ -106,11 +106,11 @@ int32_t SkPDFCatalog::emitXrefTable(SkWStream* stream, bool firstPage) {
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int first = -1;
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int last = fCatalog.count() - 1;
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// TODO(vandebo) support linearized format.
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//int last = fCatalog.count() - fFirstPageCount - 1;
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//if (firstPage) {
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// first = fCatalog.count() - fFirstPageCount;
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// last = fCatalog.count() - 1;
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//}
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// int last = fCatalog.count() - fFirstPageCount - 1;
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// if (firstPage) {
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// first = fCatalog.count() - fFirstPageCount;
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// last = fCatalog.count() - 1;
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// }
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stream->writeText("xref\n");
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stream->writeDecAsText(first + 1);
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@ -793,9 +793,8 @@ void SkPDFDevice::drawText(const SkDraw& d, const void* text, size_t len,
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// We want the text in glyph id encoding and a writable buffer, so we end
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// up making a copy either way.
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size_t numGlyphs = paint.textToGlyphs(text, len, NULL);
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uint16_t* glyphIDs =
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(uint16_t*)sk_malloc_flags(numGlyphs * 2,
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SK_MALLOC_TEMP | SK_MALLOC_THROW);
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uint16_t* glyphIDs = reinterpret_cast<uint16_t*>(
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sk_malloc_flags(numGlyphs * 2, SK_MALLOC_TEMP | SK_MALLOC_THROW));
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SkAutoFree autoFreeGlyphIDs(glyphIDs);
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if (paint.getTextEncoding() != SkPaint::kGlyphID_TextEncoding) {
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paint.textToGlyphs(text, len, glyphIDs);
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@ -872,15 +871,15 @@ void SkPDFDevice::drawPosText(const SkDraw& d, const void* text, size_t len,
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size_t numGlyphs;
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if (paint.getTextEncoding() != SkPaint::kGlyphID_TextEncoding) {
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numGlyphs = paint.textToGlyphs(text, len, NULL);
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glyphIDs = (uint16_t*)sk_malloc_flags(numGlyphs * 2,
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SK_MALLOC_TEMP | SK_MALLOC_THROW);
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glyphIDs = reinterpret_cast<uint16_t*>(sk_malloc_flags(
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numGlyphs * 2, SK_MALLOC_TEMP | SK_MALLOC_THROW));
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glyphStorage.set(glyphIDs);
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paint.textToGlyphs(text, len, glyphIDs);
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textPaint.setTextEncoding(SkPaint::kGlyphID_TextEncoding);
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} else {
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SkASSERT((len & 1) == 0);
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numGlyphs = len / 2;
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glyphIDs = (uint16_t*)text;
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glyphIDs = reinterpret_cast<uint16_t*>(const_cast<void*>((text)));
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}
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SkDrawCacheProc glyphCacheProc = textPaint.getDrawCacheProc();
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@ -161,10 +161,10 @@ bool SkPDFDocument::emitPDF(SkWStream* stream) {
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}
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fCatalog->emitSubstituteResources(stream, true);
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// TODO(vandebo) support linearized format
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//if (fPages.size() > 1) {
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// // TODO(vandebo) save the file offset for the first page xref table.
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// fCatalog->emitXrefTable(stream, true);
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//}
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// if (fPages.size() > 1) {
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// // TODO(vandebo) save the file offset for the first page xref table.
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// fCatalog->emitXrefTable(stream, true);
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// }
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for (int i = 0; i < fPageTree.count(); i++) {
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fPageTree[i]->emitObject(stream, fCatalog.get(), true);
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@ -204,7 +204,7 @@ bool SkPDFDocument::setPage(int pageNumber, SkPDFDevice* pdfDevice) {
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SkPDFPage* page = new SkPDFPage(pdfDevice);
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SkSafeUnref(fPages[pageNumber]);
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fPages[pageNumber] = page; // Reference from new passed to fPages.
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fPages[pageNumber] = page; // Reference from new passed to fPages.
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return true;
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}
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@ -166,10 +166,10 @@ SkStream* handleType1Stream(SkStream* srcStream, size_t* headerLen,
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}
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((uint8_t *)src)[srcLen] = 0;
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} else {
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static const size_t bufSize = 4096;
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uint8_t buf[bufSize];
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static const size_t kBufSize = 4096;
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uint8_t buf[kBufSize];
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size_t amount;
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while ((amount = srcStream->read(buf, bufSize)) > 0)
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while ((amount = srcStream->read(buf, kBufSize)) > 0)
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dynamicStream.write(buf, amount);
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amount = 0;
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dynamicStream.write(&amount, 1); // NULL terminator.
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@ -147,7 +147,7 @@ void extractImageData(const SkBitmap& bitmap, const SkIRect& srcRect,
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int offset2 = 8 - offset1;
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for (int y = srcRect.fTop; y < srcRect.fBottom; y++) {
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uint8_t* src = bitmap.getAddr1(0, y);
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// This may read up to one byte after src, but the potentially
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// This may read up to one byte after src, but the potentially
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// invalid bits are never used for computation.
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for (int x = srcRect.fLeft; x < srcRect.fRight; x += 8) {
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if (offset1) {
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@ -103,7 +103,7 @@ void SkPDFPage::GeneratePageTree(const SkTDArray<SkPDFPage*>& pages,
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// TODO(vandebo) put the objects in strict access order.
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// Probably doesn't matter because they are so small.
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if (curNodes[i] != pages[0]) {
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pageTree->push(curNodes[i]); // Transfer reference.
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pageTree->push(curNodes[i]); // Transfer reference.
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catalog->addObject(curNodes[i], false);
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} else {
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SkSafeUnref(curNodes[i]);
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curNodes = nextRoundNodes;
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nextRoundNodes.rewind();
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treeCapacity *= kNodeSize;
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} while(curNodes.count() > 1);
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} while (curNodes.count() > 1);
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pageTree->push(curNodes[0]); // Transfer reference.
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pageTree->push(curNodes[0]); // Transfer reference.
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catalog->addObject(curNodes[0], false);
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if (rootNode)
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*rootNode = curNodes[0];
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@ -200,7 +200,7 @@ static void tileModeCode(SkShader::TileMode mode, SkString* result) {
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}
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static SkString linearCode(const SkShader::GradientInfo& info) {
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SkString function("{pop\n"); // Just ditch the y value.
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SkString function("{pop\n"); // Just ditch the y value.
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tileModeCode(info.fTileMode, &function);
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gradientFunctionCode(info, &function);
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function.append("}");
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@ -300,7 +300,7 @@ public:
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class SkPDFFunctionShader : public SkPDFDict, public SkPDFShader {
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public:
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SkPDFFunctionShader(SkPDFShader::State* state);
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explicit SkPDFFunctionShader(SkPDFShader::State* state);
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~SkPDFFunctionShader() {
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if (isValid()) {
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RemoveShader(this);
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class SkPDFImageShader : public SkPDFStream, public SkPDFShader {
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public:
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SkPDFImageShader(SkPDFShader::State* state);
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explicit SkPDFImageShader(SkPDFShader::State* state);
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~SkPDFImageShader() {
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RemoveShader(this);
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fResources.unrefAll();
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@ -808,8 +808,8 @@ SkPDFShader::State::State(const SkShader& shader,
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} else {
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fColorData.set(sk_malloc_throw(
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fInfo.fColorCount * (sizeof(SkColor) + sizeof(SkScalar))));
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fInfo.fColors = (SkColor*)fColorData.get();
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fInfo.fColorOffsets = (SkScalar*)(fInfo.fColors + fInfo.fColorCount);
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fInfo.fColors = reinterpret_cast<SkColor*>(fColorData.get());
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fInfo.fColorOffsets = reinterpret_cast<SkScalar*>(fInfo.fColors + fInfo.fColorCount);
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shader.asAGradient(&fInfo);
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}
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}
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