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      1 
      2 /*
      3  * Copyright 2011 Google Inc.
      4  *
      5  * Use of this source code is governed by a BSD-style license that can be
      6  * found in the LICENSE file.
      7  */
      8 
      9 
     10 
     11 #include "SkCanvas.h"
     12 #include "SkData.h"
     13 #include "SkDevice.h"
     14 #include "SkPaint.h"
     15 #include "SkGPipe.h"
     16 #include "SkGPipePriv.h"
     17 #include "SkStream.h"
     18 #include "SkTSearch.h"
     19 #include "SkTypeface.h"
     20 #include "SkWriter32.h"
     21 #include "SkColorFilter.h"
     22 #include "SkDrawLooper.h"
     23 #include "SkMaskFilter.h"
     24 #include "SkRasterizer.h"
     25 #include "SkShader.h"
     26 
     27 static SkFlattenable* get_paintflat(const SkPaint& paint, unsigned paintFlat) {
     28     SkASSERT(paintFlat < kCount_PaintFlats);
     29     switch (paintFlat) {
     30         case kColorFilter_PaintFlat:    return paint.getColorFilter();
     31         case kDrawLooper_PaintFlat:     return paint.getLooper();
     32         case kMaskFilter_PaintFlat:     return paint.getMaskFilter();
     33         case kPathEffect_PaintFlat:     return paint.getPathEffect();
     34         case kRasterizer_PaintFlat:     return paint.getRasterizer();
     35         case kShader_PaintFlat:         return paint.getShader();
     36         case kXfermode_PaintFlat:       return paint.getXfermode();
     37     }
     38     SkDEBUGFAIL("never gets here");
     39     return NULL;
     40 }
     41 
     42 static size_t estimateFlattenSize(const SkPath& path) {
     43     int n = path.countPoints();
     44     size_t bytes = 3 * sizeof(int32_t);
     45     bytes += n * sizeof(SkPoint);
     46     bytes += SkAlign4(n + 2);    // verbs: add 2 for move/close extras
     47 
     48 #ifdef SK_DEBUG
     49     {
     50         SkWriter32 writer(1024);
     51         path.flatten(writer);
     52         SkASSERT(writer.size() <= bytes);
     53     }
     54 #endif
     55     return bytes;
     56 }
     57 
     58 static size_t writeTypeface(SkWriter32* writer, SkTypeface* typeface) {
     59     SkASSERT(typeface);
     60     SkDynamicMemoryWStream stream;
     61     typeface->serialize(&stream);
     62     size_t size = stream.getOffset();
     63     if (writer) {
     64         writer->write32(size);
     65         SkAutoDataUnref data(stream.copyToData());
     66         writer->write(data.data(), size);
     67     }
     68     return 4 + size;
     69 }
     70 
     71 ///////////////////////////////////////////////////////////////////////////////
     72 
     73 class SkGPipeCanvas : public SkCanvas {
     74 public:
     75     SkGPipeCanvas(SkGPipeController*, SkWriter32*, SkFactorySet*);
     76     virtual ~SkGPipeCanvas();
     77 
     78     void finish() {
     79         if (!fDone) {
     80             if (this->needOpBytes()) {
     81                 this->writeOp(kDone_DrawOp);
     82                 this->doNotify();
     83             }
     84             fDone = true;
     85         }
     86     }
     87 
     88     // overrides from SkCanvas
     89     virtual int save(SaveFlags);
     90     virtual int saveLayer(const SkRect* bounds, const SkPaint*, SaveFlags);
     91     virtual void restore();
     92     virtual bool translate(SkScalar dx, SkScalar dy);
     93     virtual bool scale(SkScalar sx, SkScalar sy);
     94     virtual bool rotate(SkScalar degrees);
     95     virtual bool skew(SkScalar sx, SkScalar sy);
     96     virtual bool concat(const SkMatrix& matrix);
     97     virtual void setMatrix(const SkMatrix& matrix);
     98     virtual bool clipRect(const SkRect& rect, SkRegion::Op op);
     99     virtual bool clipPath(const SkPath& path, SkRegion::Op op);
    100     virtual bool clipRegion(const SkRegion& region, SkRegion::Op op);
    101     virtual void clear(SkColor);
    102     virtual void drawPaint(const SkPaint& paint);
    103     virtual void drawPoints(PointMode, size_t count, const SkPoint pts[],
    104                             const SkPaint&);
    105     virtual void drawRect(const SkRect& rect, const SkPaint&);
    106     virtual void drawPath(const SkPath& path, const SkPaint&);
    107     virtual void drawBitmap(const SkBitmap&, SkScalar left, SkScalar top,
    108                             const SkPaint*);
    109     virtual void drawBitmapRect(const SkBitmap&, const SkIRect* src,
    110                                 const SkRect& dst, const SkPaint*);
    111     virtual void drawBitmapMatrix(const SkBitmap&, const SkMatrix&,
    112                                   const SkPaint*);
    113     virtual void drawSprite(const SkBitmap&, int left, int top,
    114                             const SkPaint*);
    115     virtual void drawText(const void* text, size_t byteLength, SkScalar x,
    116                           SkScalar y, const SkPaint&);
    117     virtual void drawPosText(const void* text, size_t byteLength,
    118                              const SkPoint pos[], const SkPaint&);
    119     virtual void drawPosTextH(const void* text, size_t byteLength,
    120                       const SkScalar xpos[], SkScalar constY, const SkPaint&);
    121     virtual void drawTextOnPath(const void* text, size_t byteLength,
    122                             const SkPath& path, const SkMatrix* matrix,
    123                                 const SkPaint&);
    124     virtual void drawPicture(SkPicture& picture);
    125     virtual void drawVertices(VertexMode, int vertexCount,
    126                           const SkPoint vertices[], const SkPoint texs[],
    127                           const SkColor colors[], SkXfermode*,
    128                           const uint16_t indices[], int indexCount,
    129                               const SkPaint&);
    130     virtual void drawData(const void*, size_t);
    131 
    132 private:
    133     SkFactorySet* fFactorySet;  // optional, only used if cross-process
    134     SkGPipeController* fController;
    135     SkWriter32& fWriter;
    136     size_t      fBlockSize; // amount allocated for writer
    137     size_t      fBytesNotified;
    138     bool        fDone;
    139 
    140     SkRefCntSet fTypefaceSet;
    141 
    142     uint32_t getTypefaceID(SkTypeface*);
    143 
    144     inline void writeOp(DrawOps op, unsigned flags, unsigned data) {
    145         fWriter.write32(DrawOp_packOpFlagData(op, flags, data));
    146     }
    147 
    148     inline void writeOp(DrawOps op) {
    149         fWriter.write32(DrawOp_packOpFlagData(op, 0, 0));
    150     }
    151 
    152     bool needOpBytes(size_t size = 0);
    153 
    154     inline void doNotify() {
    155         if (!fDone) {
    156             size_t bytes = fWriter.size() - fBytesNotified;
    157             fController->notifyWritten(bytes);
    158             fBytesNotified += bytes;
    159         }
    160     }
    161 
    162     struct FlatData {
    163         uint32_t    fIndex; // always > 0
    164         uint32_t    fSize;
    165 
    166         void*       data() { return (char*)this + sizeof(*this); }
    167 
    168         static int Compare(const FlatData* a, const FlatData* b) {
    169             return memcmp(&a->fSize, &b->fSize, a->fSize + sizeof(a->fSize));
    170         }
    171     };
    172     SkTDArray<FlatData*> fFlatArray;
    173     int fCurrFlatIndex[kCount_PaintFlats];
    174     int flattenToIndex(SkFlattenable* obj, PaintFlats);
    175 
    176     SkPaint fPaint;
    177     void writePaint(const SkPaint&);
    178 
    179     class AutoPipeNotify {
    180     public:
    181         AutoPipeNotify(SkGPipeCanvas* canvas) : fCanvas(canvas) {}
    182         ~AutoPipeNotify() { fCanvas->doNotify(); }
    183     private:
    184         SkGPipeCanvas* fCanvas;
    185     };
    186     friend class AutoPipeNotify;
    187 
    188     typedef SkCanvas INHERITED;
    189 };
    190 
    191 // return 0 for NULL (or unflattenable obj), or index-base-1
    192 int SkGPipeCanvas::flattenToIndex(SkFlattenable* obj, PaintFlats paintflat) {
    193     if (NULL == obj) {
    194         return 0;
    195     }
    196 
    197     SkFlattenableWriteBuffer tmpWriter(1024);
    198     tmpWriter.setFlags(SkFlattenableWriteBuffer::kInlineFactoryNames_Flag);
    199     tmpWriter.setFactoryRecorder(fFactorySet);
    200 
    201     tmpWriter.writeFlattenable(obj);
    202     size_t len = tmpWriter.size();
    203     size_t allocSize = len + sizeof(FlatData);
    204 
    205     SkAutoSMalloc<1024> storage(allocSize);
    206     FlatData* flat = (FlatData*)storage.get();
    207     flat->fSize = len;
    208     tmpWriter.flatten(flat->data());
    209 
    210     int index = SkTSearch<FlatData>((const FlatData**)fFlatArray.begin(),
    211                                     fFlatArray.count(), flat, sizeof(flat),
    212                                     &FlatData::Compare);
    213     if (index < 0) {
    214         index = ~index;
    215         FlatData* copy = (FlatData*)sk_malloc_throw(allocSize);
    216         memcpy(copy, flat, allocSize);
    217         *fFlatArray.insert(index) = copy;
    218         // call this after the insert, so that count() will have been grown
    219         copy->fIndex = fFlatArray.count();
    220 //        SkDebugf("--- add flattenable[%d] size=%d index=%d\n", paintflat, len, copy->fIndex);
    221 
    222         if (this->needOpBytes(len)) {
    223             this->writeOp(kDef_Flattenable_DrawOp, paintflat, copy->fIndex);
    224             fWriter.write(copy->data(), len);
    225         }
    226     }
    227     return fFlatArray[index]->fIndex;
    228 }
    229 
    230 ///////////////////////////////////////////////////////////////////////////////
    231 
    232 #define MIN_BLOCK_SIZE  (16 * 1024)
    233 
    234 SkGPipeCanvas::SkGPipeCanvas(SkGPipeController* controller,
    235                              SkWriter32* writer, SkFactorySet* fset)
    236         : fWriter(*writer) {
    237     fFactorySet = fset;
    238     fController = controller;
    239     fDone = false;
    240     fBlockSize = 0; // need first block from controller
    241     sk_bzero(fCurrFlatIndex, sizeof(fCurrFlatIndex));
    242 
    243     // we need a device to limit our clip
    244     // should the caller give us the bounds?
    245     // We don't allocate pixels for the bitmap
    246     SkBitmap bitmap;
    247     bitmap.setConfig(SkBitmap::kARGB_8888_Config, 32767, 32767);
    248     SkDevice* device = SkNEW_ARGS(SkDevice, (bitmap));
    249     this->setDevice(device)->unref();
    250 }
    251 
    252 SkGPipeCanvas::~SkGPipeCanvas() {
    253     this->finish();
    254 
    255     fFlatArray.freeAll();
    256 }
    257 
    258 bool SkGPipeCanvas::needOpBytes(size_t needed) {
    259     if (fDone) {
    260         return false;
    261     }
    262 
    263     needed += 4;  // size of DrawOp atom
    264     if (fWriter.size() + needed > fBlockSize) {
    265         void* block = fController->requestBlock(MIN_BLOCK_SIZE, &fBlockSize);
    266         if (NULL == block) {
    267             fDone = true;
    268             return false;
    269         }
    270         fWriter.reset(block, fBlockSize);
    271         fBytesNotified = 0;
    272     }
    273     return true;
    274 }
    275 
    276 uint32_t SkGPipeCanvas::getTypefaceID(SkTypeface* face) {
    277     uint32_t id = 0; // 0 means default/null typeface
    278     if (face) {
    279         id = fTypefaceSet.find(face);
    280         if (0 == id) {
    281             id = fTypefaceSet.add(face);
    282             size_t size = writeTypeface(NULL, face);
    283             if (this->needOpBytes(size)) {
    284                 this->writeOp(kDef_Typeface_DrawOp);
    285                 writeTypeface(&fWriter, face);
    286             }
    287         }
    288     }
    289     return id;
    290 }
    291 
    292 ///////////////////////////////////////////////////////////////////////////////
    293 
    294 #define NOTIFY_SETUP(canvas)    \
    295     AutoPipeNotify apn(canvas)
    296 
    297 int SkGPipeCanvas::save(SaveFlags flags) {
    298     NOTIFY_SETUP(this);
    299     if (this->needOpBytes()) {
    300         this->writeOp(kSave_DrawOp, 0, flags);
    301     }
    302     return this->INHERITED::save(flags);
    303 }
    304 
    305 int SkGPipeCanvas::saveLayer(const SkRect* bounds, const SkPaint* paint,
    306                              SaveFlags saveFlags) {
    307     NOTIFY_SETUP(this);
    308     size_t size = 0;
    309     unsigned opFlags = 0;
    310 
    311     if (bounds) {
    312         opFlags |= kSaveLayer_HasBounds_DrawOpFlag;
    313         size += sizeof(SkRect);
    314     }
    315     if (paint) {
    316         opFlags |= kSaveLayer_HasPaint_DrawOpFlag;
    317         this->writePaint(*paint);
    318     }
    319 
    320     if (this->needOpBytes(size)) {
    321         this->writeOp(kSaveLayer_DrawOp, opFlags, saveFlags);
    322         if (bounds) {
    323             fWriter.writeRect(*bounds);
    324         }
    325     }
    326 
    327     // we just pass on the save, so we don't create a layer
    328     return this->INHERITED::save(saveFlags);
    329 }
    330 
    331 void SkGPipeCanvas::restore() {
    332     NOTIFY_SETUP(this);
    333     if (this->needOpBytes()) {
    334         this->writeOp(kRestore_DrawOp);
    335     }
    336     this->INHERITED::restore();
    337 }
    338 
    339 bool SkGPipeCanvas::translate(SkScalar dx, SkScalar dy) {
    340     if (dx || dy) {
    341         NOTIFY_SETUP(this);
    342         if (this->needOpBytes(2 * sizeof(SkScalar))) {
    343             this->writeOp(kTranslate_DrawOp);
    344             fWriter.writeScalar(dx);
    345             fWriter.writeScalar(dy);
    346         }
    347     }
    348     return this->INHERITED::translate(dx, dy);
    349 }
    350 
    351 bool SkGPipeCanvas::scale(SkScalar sx, SkScalar sy) {
    352     if (sx || sy) {
    353         NOTIFY_SETUP(this);
    354         if (this->needOpBytes(2 * sizeof(SkScalar))) {
    355             this->writeOp(kScale_DrawOp);
    356             fWriter.writeScalar(sx);
    357             fWriter.writeScalar(sy);
    358         }
    359     }
    360     return this->INHERITED::scale(sx, sy);
    361 }
    362 
    363 bool SkGPipeCanvas::rotate(SkScalar degrees) {
    364     if (degrees) {
    365         NOTIFY_SETUP(this);
    366         if (this->needOpBytes(sizeof(SkScalar))) {
    367             this->writeOp(kRotate_DrawOp);
    368             fWriter.writeScalar(degrees);
    369         }
    370     }
    371     return this->INHERITED::rotate(degrees);
    372 }
    373 
    374 bool SkGPipeCanvas::skew(SkScalar sx, SkScalar sy) {
    375     if (sx || sy) {
    376         NOTIFY_SETUP(this);
    377         if (this->needOpBytes(2 * sizeof(SkScalar))) {
    378             this->writeOp(kSkew_DrawOp);
    379             fWriter.writeScalar(sx);
    380             fWriter.writeScalar(sy);
    381         }
    382     }
    383     return this->INHERITED::skew(sx, sy);
    384 }
    385 
    386 bool SkGPipeCanvas::concat(const SkMatrix& matrix) {
    387     if (!matrix.isIdentity()) {
    388         NOTIFY_SETUP(this);
    389         if (this->needOpBytes(matrix.flatten(NULL))) {
    390             this->writeOp(kConcat_DrawOp);
    391             SkWriteMatrix(&fWriter, matrix);
    392         }
    393     }
    394     return this->INHERITED::concat(matrix);
    395 }
    396 
    397 void SkGPipeCanvas::setMatrix(const SkMatrix& matrix) {
    398     NOTIFY_SETUP(this);
    399     if (this->needOpBytes(matrix.flatten(NULL))) {
    400         this->writeOp(kSetMatrix_DrawOp);
    401         SkWriteMatrix(&fWriter, matrix);
    402     }
    403     this->INHERITED::setMatrix(matrix);
    404 }
    405 
    406 bool SkGPipeCanvas::clipRect(const SkRect& rect, SkRegion::Op rgnOp) {
    407     NOTIFY_SETUP(this);
    408     if (this->needOpBytes(sizeof(SkRect))) {
    409         this->writeOp(kClipRect_DrawOp, 0, rgnOp);
    410         fWriter.writeRect(rect);
    411     }
    412     return this->INHERITED::clipRect(rect, rgnOp);
    413 }
    414 
    415 bool SkGPipeCanvas::clipPath(const SkPath& path, SkRegion::Op rgnOp) {
    416     NOTIFY_SETUP(this);
    417     if (this->needOpBytes(estimateFlattenSize(path))) {
    418         this->writeOp(kClipPath_DrawOp, 0, rgnOp);
    419         path.flatten(fWriter);
    420     }
    421     // we just pass on the bounds of the path
    422     return this->INHERITED::clipRect(path.getBounds(), rgnOp);
    423 }
    424 
    425 bool SkGPipeCanvas::clipRegion(const SkRegion& region, SkRegion::Op rgnOp) {
    426     NOTIFY_SETUP(this);
    427     if (this->needOpBytes(region.flatten(NULL))) {
    428         this->writeOp(kClipRegion_DrawOp, 0, rgnOp);
    429         SkWriteRegion(&fWriter, region);
    430     }
    431     return this->INHERITED::clipRegion(region, rgnOp);
    432 }
    433 
    434 ///////////////////////////////////////////////////////////////////////////////
    435 
    436 void SkGPipeCanvas::clear(SkColor color) {
    437     NOTIFY_SETUP(this);
    438     unsigned flags = 0;
    439     if (color) {
    440         flags |= kClear_HasColor_DrawOpFlag;
    441     }
    442     if (this->needOpBytes(sizeof(SkColor))) {
    443         this->writeOp(kDrawClear_DrawOp, flags, 0);
    444         if (color) {
    445             fWriter.write32(color);
    446         }
    447     }
    448 }
    449 
    450 void SkGPipeCanvas::drawPaint(const SkPaint& paint) {
    451     NOTIFY_SETUP(this);
    452     this->writePaint(paint);
    453     if (this->needOpBytes()) {
    454         this->writeOp(kDrawPaint_DrawOp);
    455     }
    456 }
    457 
    458 void SkGPipeCanvas::drawPoints(PointMode mode, size_t count,
    459                                    const SkPoint pts[], const SkPaint& paint) {
    460     if (count) {
    461         NOTIFY_SETUP(this);
    462         this->writePaint(paint);
    463         if (this->needOpBytes(4 + count * sizeof(SkPoint))) {
    464             this->writeOp(kDrawPoints_DrawOp, mode, 0);
    465             fWriter.write32(count);
    466             fWriter.write(pts, count * sizeof(SkPoint));
    467         }
    468     }
    469 }
    470 
    471 void SkGPipeCanvas::drawRect(const SkRect& rect, const SkPaint& paint) {
    472     NOTIFY_SETUP(this);
    473     this->writePaint(paint);
    474     if (this->needOpBytes(sizeof(SkRect))) {
    475         this->writeOp(kDrawRect_DrawOp);
    476         fWriter.writeRect(rect);
    477     }
    478 }
    479 
    480 void SkGPipeCanvas::drawPath(const SkPath& path, const SkPaint& paint) {
    481     NOTIFY_SETUP(this);
    482     this->writePaint(paint);
    483     if (this->needOpBytes(estimateFlattenSize(path))) {
    484         this->writeOp(kDrawPath_DrawOp);
    485         path.flatten(fWriter);
    486     }
    487 }
    488 
    489 void SkGPipeCanvas::drawBitmap(const SkBitmap&, SkScalar left, SkScalar top,
    490                                    const SkPaint*) {
    491     UNIMPLEMENTED
    492 }
    493 
    494 void SkGPipeCanvas::drawBitmapRect(const SkBitmap&, const SkIRect* src,
    495                                        const SkRect& dst, const SkPaint*) {
    496     UNIMPLEMENTED
    497 }
    498 
    499 void SkGPipeCanvas::drawBitmapMatrix(const SkBitmap&, const SkMatrix&,
    500                                          const SkPaint*) {
    501     UNIMPLEMENTED
    502 }
    503 
    504 void SkGPipeCanvas::drawSprite(const SkBitmap&, int left, int top,
    505                                    const SkPaint*) {
    506     UNIMPLEMENTED
    507 }
    508 
    509 void SkGPipeCanvas::drawText(const void* text, size_t byteLength, SkScalar x,
    510                                  SkScalar y, const SkPaint& paint) {
    511     if (byteLength) {
    512         NOTIFY_SETUP(this);
    513         this->writePaint(paint);
    514         if (this->needOpBytes(4 + SkAlign4(byteLength) + 2 * sizeof(SkScalar))) {
    515             this->writeOp(kDrawText_DrawOp);
    516             fWriter.write32(byteLength);
    517             fWriter.writePad(text, byteLength);
    518             fWriter.writeScalar(x);
    519             fWriter.writeScalar(y);
    520         }
    521     }
    522 }
    523 
    524 void SkGPipeCanvas::drawPosText(const void* text, size_t byteLength,
    525                                 const SkPoint pos[], const SkPaint& paint) {
    526     if (byteLength) {
    527         NOTIFY_SETUP(this);
    528         this->writePaint(paint);
    529         int count = paint.textToGlyphs(text, byteLength, NULL);
    530         if (this->needOpBytes(4 + SkAlign4(byteLength) + 4 + count * sizeof(SkPoint))) {
    531             this->writeOp(kDrawPosText_DrawOp);
    532             fWriter.write32(byteLength);
    533             fWriter.writePad(text, byteLength);
    534             fWriter.write32(count);
    535             fWriter.write(pos, count * sizeof(SkPoint));
    536         }
    537     }
    538 }
    539 
    540 void SkGPipeCanvas::drawPosTextH(const void* text, size_t byteLength,
    541                                  const SkScalar xpos[], SkScalar constY,
    542                                  const SkPaint& paint) {
    543     if (byteLength) {
    544         NOTIFY_SETUP(this);
    545         this->writePaint(paint);
    546         int count = paint.textToGlyphs(text, byteLength, NULL);
    547         if (this->needOpBytes(4 + SkAlign4(byteLength) + 4 + count * sizeof(SkScalar) + 4)) {
    548             this->writeOp(kDrawPosTextH_DrawOp);
    549             fWriter.write32(byteLength);
    550             fWriter.writePad(text, byteLength);
    551             fWriter.write32(count);
    552             fWriter.write(xpos, count * sizeof(SkScalar));
    553             fWriter.writeScalar(constY);
    554         }
    555     }
    556 }
    557 
    558 void SkGPipeCanvas::drawTextOnPath(const void* text, size_t byteLength,
    559                                    const SkPath& path, const SkMatrix* matrix,
    560                                    const SkPaint& paint) {
    561     if (byteLength) {
    562         NOTIFY_SETUP(this);
    563         unsigned flags = 0;
    564         size_t size = 4 + SkAlign4(byteLength) + estimateFlattenSize(path);
    565         if (matrix) {
    566             flags |= kDrawTextOnPath_HasMatrix_DrawOpFlag;
    567             size += matrix->flatten(NULL);
    568         }
    569         this->writePaint(paint);
    570         if (this->needOpBytes(size)) {
    571             this->writeOp(kDrawTextOnPath_DrawOp, flags, 0);
    572 
    573             fWriter.write32(byteLength);
    574             fWriter.writePad(text, byteLength);
    575 
    576             path.flatten(fWriter);
    577             if (matrix) {
    578                 SkWriteMatrix(&fWriter, *matrix);
    579             }
    580         }
    581     }
    582 }
    583 
    584 void SkGPipeCanvas::drawPicture(SkPicture& picture) {
    585     // we want to playback the picture into individual draw calls
    586     this->INHERITED::drawPicture(picture);
    587 }
    588 
    589 void SkGPipeCanvas::drawVertices(VertexMode mode, int vertexCount,
    590                                  const SkPoint vertices[], const SkPoint texs[],
    591                                  const SkColor colors[], SkXfermode*,
    592                                  const uint16_t indices[], int indexCount,
    593                                  const SkPaint& paint) {
    594     if (0 == vertexCount) {
    595         return;
    596     }
    597 
    598     NOTIFY_SETUP(this);
    599     size_t size = 4 + vertexCount * sizeof(SkPoint);
    600     this->writePaint(paint);
    601     unsigned flags = 0;
    602     if (texs) {
    603         flags |= kDrawVertices_HasTexs_DrawOpFlag;
    604         size += vertexCount * sizeof(SkPoint);
    605     }
    606     if (colors) {
    607         flags |= kDrawVertices_HasColors_DrawOpFlag;
    608         size += vertexCount * sizeof(SkColor);
    609     }
    610     if (indices && indexCount > 0) {
    611         flags |= kDrawVertices_HasIndices_DrawOpFlag;
    612         size += 4 + SkAlign4(indexCount * sizeof(uint16_t));
    613     }
    614 
    615     if (this->needOpBytes(size)) {
    616         this->writeOp(kDrawVertices_DrawOp, flags, 0);
    617         fWriter.write32(mode);
    618         fWriter.write32(vertexCount);
    619         fWriter.write(vertices, vertexCount * sizeof(SkPoint));
    620         if (texs) {
    621             fWriter.write(texs, vertexCount * sizeof(SkPoint));
    622         }
    623         if (colors) {
    624             fWriter.write(colors, vertexCount * sizeof(SkColor));
    625         }
    626 
    627         // TODO: flatten xfermode
    628 
    629         if (indices && indexCount > 0) {
    630             fWriter.write32(indexCount);
    631             fWriter.writePad(indices, indexCount * sizeof(uint16_t));
    632         }
    633     }
    634 }
    635 
    636 void SkGPipeCanvas::drawData(const void* ptr, size_t size) {
    637     if (size && ptr) {
    638         NOTIFY_SETUP(this);
    639         unsigned data = 0;
    640         if (size < (1 << DRAWOPS_DATA_BITS)) {
    641             data = (unsigned)size;
    642         }
    643         if (this->needOpBytes(4 + SkAlign4(size))) {
    644             this->writeOp(kDrawData_DrawOp, 0, data);
    645             if (0 == data) {
    646                 fWriter.write32(size);
    647             }
    648             fWriter.writePad(ptr, size);
    649         }
    650     }
    651 }
    652 
    653 ///////////////////////////////////////////////////////////////////////////////
    654 
    655 template <typename T> uint32_t castToU32(T value) {
    656     union {
    657         T           fSrc;
    658         uint32_t    fDst;
    659     } data;
    660     data.fSrc = value;
    661     return data.fDst;
    662 }
    663 
    664 void SkGPipeCanvas::writePaint(const SkPaint& paint) {
    665     SkPaint& base = fPaint;
    666     uint32_t storage[32];
    667     uint32_t* ptr = storage;
    668 
    669     if (base.getFlags() != paint.getFlags()) {
    670         *ptr++ = PaintOp_packOpData(kFlags_PaintOp, paint.getFlags());
    671         base.setFlags(paint.getFlags());
    672     }
    673     if (base.getColor() != paint.getColor()) {
    674         *ptr++ = PaintOp_packOp(kColor_PaintOp);
    675         *ptr++ = paint.getColor();
    676         base.setColor(paint.getColor());
    677     }
    678     if (base.getStyle() != paint.getStyle()) {
    679         *ptr++ = PaintOp_packOpData(kStyle_PaintOp, paint.getStyle());
    680         base.setStyle(paint.getStyle());
    681     }
    682     if (base.getStrokeJoin() != paint.getStrokeJoin()) {
    683         *ptr++ = PaintOp_packOpData(kJoin_PaintOp, paint.getStrokeJoin());
    684         base.setStrokeJoin(paint.getStrokeJoin());
    685     }
    686     if (base.getStrokeCap() != paint.getStrokeCap()) {
    687         *ptr++ = PaintOp_packOpData(kCap_PaintOp, paint.getStrokeCap());
    688         base.setStrokeCap(paint.getStrokeCap());
    689     }
    690     if (base.getStrokeWidth() != paint.getStrokeWidth()) {
    691         *ptr++ = PaintOp_packOp(kWidth_PaintOp);
    692         *ptr++ = castToU32(paint.getStrokeWidth());
    693         base.setStrokeWidth(paint.getStrokeWidth());
    694     }
    695     if (base.getStrokeMiter() != paint.getStrokeMiter()) {
    696         *ptr++ = PaintOp_packOp(kMiter_PaintOp);
    697         *ptr++ = castToU32(paint.getStrokeMiter());
    698         base.setStrokeMiter(paint.getStrokeMiter());
    699     }
    700     if (base.getTextEncoding() != paint.getTextEncoding()) {
    701         *ptr++ = PaintOp_packOpData(kEncoding_PaintOp, paint.getTextEncoding());
    702         base.setTextEncoding(paint.getTextEncoding());
    703     }
    704     if (base.getHinting() != paint.getHinting()) {
    705         *ptr++ = PaintOp_packOpData(kHinting_PaintOp, paint.getHinting());
    706         base.setHinting(paint.getHinting());
    707     }
    708     if (base.getTextAlign() != paint.getTextAlign()) {
    709         *ptr++ = PaintOp_packOpData(kAlign_PaintOp, paint.getTextAlign());
    710         base.setTextAlign(paint.getTextAlign());
    711     }
    712     if (base.getTextSize() != paint.getTextSize()) {
    713         *ptr++ = PaintOp_packOp(kTextSize_PaintOp);
    714         *ptr++ = castToU32(paint.getTextSize());
    715         base.setTextSize(paint.getTextSize());
    716     }
    717     if (base.getTextScaleX() != paint.getTextScaleX()) {
    718         *ptr++ = PaintOp_packOp(kTextScaleX_PaintOp);
    719         *ptr++ = castToU32(paint.getTextScaleX());
    720         base.setTextScaleX(paint.getTextScaleX());
    721     }
    722     if (base.getTextSkewX() != paint.getTextSkewX()) {
    723         *ptr++ = PaintOp_packOp(kTextSkewX_PaintOp);
    724         *ptr++ = castToU32(paint.getTextSkewX());
    725         base.setTextSkewX(paint.getTextSkewX());
    726     }
    727 
    728     if (!SkTypeface::Equal(base.getTypeface(), paint.getTypeface())) {
    729         uint32_t id = this->getTypefaceID(paint.getTypeface());
    730         *ptr++ = PaintOp_packOpData(kTypeface_PaintOp, id);
    731         base.setTypeface(paint.getTypeface());
    732     }
    733 
    734     for (int i = 0; i < kCount_PaintFlats; i++) {
    735         int index = this->flattenToIndex(get_paintflat(paint, i), (PaintFlats)i);
    736         SkASSERT(index >= 0 && index <= fFlatArray.count());
    737         if (index != fCurrFlatIndex[i]) {
    738             *ptr++ = PaintOp_packOpFlagData(kFlatIndex_PaintOp, i, index);
    739             fCurrFlatIndex[i] = index;
    740         }
    741     }
    742 
    743     size_t size = (char*)ptr - (char*)storage;
    744     if (size && this->needOpBytes(size)) {
    745         this->writeOp(kPaintOp_DrawOp, 0, size);
    746         fWriter.write(storage, size);
    747         for (size_t i = 0; i < size/4; i++) {
    748 //            SkDebugf("[%d] %08X\n", i, storage[i]);
    749         }
    750     }
    751 }
    752 
    753 ///////////////////////////////////////////////////////////////////////////////
    754 
    755 #include "SkGPipe.h"
    756 
    757 SkGPipeWriter::SkGPipeWriter() : fWriter(0) {
    758     fCanvas = NULL;
    759 }
    760 
    761 SkGPipeWriter::~SkGPipeWriter() {
    762     this->endRecording();
    763     SkSafeUnref(fCanvas);
    764 }
    765 
    766 SkCanvas* SkGPipeWriter::startRecording(SkGPipeController* controller,
    767                                         uint32_t flags) {
    768     if (NULL == fCanvas) {
    769         fWriter.reset(NULL, 0);
    770         fFactorySet.reset();
    771         fCanvas = SkNEW_ARGS(SkGPipeCanvas, (controller, &fWriter,
    772                                              (flags & kCrossProcess_Flag) ?
    773                                              &fFactorySet : NULL));
    774     }
    775     return fCanvas;
    776 }
    777 
    778 void SkGPipeWriter::endRecording() {
    779     if (fCanvas) {
    780         fCanvas->finish();
    781         fCanvas->unref();
    782         fCanvas = NULL;
    783     }
    784 }
    785 
    786