c84ad83df8
Change-Id: Ib488f11980da110a03ca832203db4bc35c456887 Reviewed-on: https://skia-review.googlesource.com/c/skia/+/259417 Commit-Queue: Nathaniel Nifong <nifong@google.com> Reviewed-by: Kevin Lubick <kjlubick@google.com>
430 lines
17 KiB
C++
430 lines
17 KiB
C++
/*
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* Copyright 2019 Google LLC
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#include "include/core/SkPicture.h"
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#include "include/core/SkSurface.h"
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#include "include/utils/SkBase64.h"
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#include "src/utils/SkJSONWriter.h"
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#include "src/utils/SkMultiPictureDocument.h"
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#include "tools/SkSharingProc.h"
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#include "tools/UrlDataManager.h"
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#include "tools/debugger/DebugCanvas.h"
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#include <emscripten.h>
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#include <emscripten/bind.h>
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#if SK_SUPPORT_GPU
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#include "include/gpu/GrBackendSurface.h"
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#include "include/gpu/GrContext.h"
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#include "include/gpu/gl/GrGLInterface.h"
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#include "include/gpu/gl/GrGLTypes.h"
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#include <GL/gl.h>
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#include <emscripten/html5.h>
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#endif
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using JSColor = int32_t;
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using Uint8Array = emscripten::val;
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// file signature for SkMultiPictureDocument
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// TODO(nifong): make public and include from SkMultiPictureDocument.h
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static constexpr char kMultiMagic[] = "Skia Multi-Picture Doc\n\n";
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struct SimpleImageInfo {
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int width;
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int height;
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SkColorType colorType;
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SkAlphaType alphaType;
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// Shown in the textual description of the image, and used as a common identifier between
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// the resources tab and the command list.
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// TODO(nifong) make the command list use the resource tab's ids instead of UrlDataManager
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uintptr_t imageAddress;
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};
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SkImageInfo toSkImageInfo(const SimpleImageInfo& sii) {
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return SkImageInfo::Make(sii.width, sii.height, sii.colorType, sii.alphaType);
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}
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SimpleImageInfo toSimpleImageInfo(const SkImageInfo& ii, const SkImage* addr) {
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return (SimpleImageInfo){ii.width(), ii.height(), ii.colorType(), ii.alphaType(), (uintptr_t)addr};
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}
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class SkpDebugPlayer {
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public:
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SkpDebugPlayer() :
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udm(UrlDataManager(SkString("/data"))){}
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/* loadSkp deserializes a skp file that has been copied into the shared WASM memory.
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* cptr - a pointer to the data to deserialize.
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* length - length of the data in bytes.
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* The caller must allocate the memory with M._malloc where M is the wasm module in javascript
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* and copy the data into M.buffer at the pointer returned by malloc.
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*
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* uintptr_t is used here because emscripten will not allow binding of functions with pointers
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* to primitive types. We can instead pass a number and cast it to whatever kind of
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* pointer we're expecting.
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*/
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void loadSkp(uintptr_t cptr, int length) {
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const uint8_t* data = reinterpret_cast<const uint8_t*>(cptr);
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char magic[8];
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// Both traditional and multi-frame skp files have a magic word
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SkMemoryStream stream(data, length);
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SkDebugf("make stream at %p, with %d bytes\n",data, length);
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// Why -1? I think it's got to do with using a constexpr, just a guess.
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const size_t magicsize = sizeof(kMultiMagic) - 1;
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if (memcmp(data, kMultiMagic, magicsize) == 0) {
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SkDebugf("Try reading as a multi-frame skp\n");
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loadMultiFrame(&stream);
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} else {
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SkDebugf("Try reading as single-frame skp\n");
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frames.push_back(loadSingleFrame(&stream));
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}
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}
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/* drawTo asks the debug canvas to draw from the beginning of the picture
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* to the given command and flush the canvas.
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*/
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void drawTo(SkSurface* surface, int32_t index) {
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int cmdlen = frames[fp]->getSize();
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if (cmdlen == 0) {
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SkDebugf("Zero commands to execute");
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return;
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}
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if (index >= cmdlen) {
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SkDebugf("Constrained command index (%d) within this frame's length (%d)\n", index, cmdlen);
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index = cmdlen-1;
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}
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frames[fp]->drawTo(surface->getCanvas(), index);
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surface->getCanvas()->flush();
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}
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const SkIRect& getBounds() { return fBounds; }
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// The following three operations apply to every frame because they are overdraw features.
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// There is only one toggle for them on the app, they are global settings.
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void setOverdrawVis(bool on) {
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for (int i=0; i < frames.size(); i++) {
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frames[i]->setOverdrawViz(on);
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}
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}
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void setGpuOpBounds(bool on) {
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for (int i=0; i < frames.size(); i++) {
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frames[i]->setDrawGpuOpBounds(on);
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}
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}
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void setClipVizColor(JSColor color) {
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for (int i=0; i < frames.size(); i++) {
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frames[i]->setClipVizColor(SkColor(color));
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}
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}
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// The two operations below only apply to the current frame, because they concern the command
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// list, which is unique to each frame.
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void deleteCommand(int index) {
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frames[fp]->deleteDrawCommandAt(index);
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}
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void setCommandVisibility(int index, bool visible) {
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frames[fp]->toggleCommand(index, visible);
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}
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int getSize() const {
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return frames[fp]->getSize();
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}
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int getFrameCount() const {
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return frames.size();
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}
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// Return the command list in JSON representation as a string
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std::string jsonCommandList(sk_sp<SkSurface> surface) {
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SkDynamicMemoryWStream stream;
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SkJSONWriter writer(&stream, SkJSONWriter::Mode::kFast);
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writer.beginObject(); // root
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frames[fp]->toJSON(writer, udm, getSize(), surface->getCanvas());
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writer.endObject(); // root
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writer.flush();
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auto skdata = stream.detachAsData();
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// Convert skdata to string_view, which accepts a length
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std::string_view data_view(reinterpret_cast<const char*>(skdata->data()), skdata->size());
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// and string_view to string, which emscripten understands.
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return std::string(data_view);
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}
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// Gets the clip and matrix of the last command drawn
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std::string lastCommandInfo() {
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SkMatrix vm = frames[fp]->getCurrentMatrix();
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SkIRect clip = frames[fp]->getCurrentClip();
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SkDynamicMemoryWStream stream;
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SkJSONWriter writer(&stream, SkJSONWriter::Mode::kFast);
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writer.beginObject(); // root
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writer.appendName("ViewMatrix");
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DrawCommand::MakeJsonMatrix(writer, vm);
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writer.appendName("ClipRect");
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DrawCommand::MakeJsonIRect(writer, clip);
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writer.endObject(); // root
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writer.flush();
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auto skdata = stream.detachAsData();
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// Convert skdata to string_view, which accepts a length
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std::string_view data_view(reinterpret_cast<const char*>(skdata->data()), skdata->size());
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// and string_view to string, which emscripten understands.
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return std::string(data_view);
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}
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void changeFrame(int index) {
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fp = index;
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}
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// Return the png file at the requested index in
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// the skp file's vector of shared images. this is the set of images referred to by the
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// filenames like "\\1" in DrawImage commands.
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// Return type is the PNG data as a base64 encoded string with prepended URI.
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std::string getImageResource(int index) {
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sk_sp<SkData> pngData = fImages[index]->encodeToData();
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size_t len = SkBase64::Encode(pngData->data(), pngData->size(), nullptr);
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SkString dst;
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dst.resize(len);
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SkBase64::Encode(pngData->data(), pngData->size(), dst.writable_str());
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dst.prepend("data:image/png;base64,");
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return std::string(dst.c_str());
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}
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int getImageCount() {
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return fImages.size();
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}
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// Get the image info of one of the resource images.
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SimpleImageInfo getImageInfo(int index) {
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return toSimpleImageInfo(fImages[index]->imageInfo(), fImages[index].get());
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}
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private:
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// Loads a single frame (traditional) skp file from the provided data stream and returns
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// a newly allocated DebugCanvas initialized with the SkPicture that was in the file.
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std::unique_ptr<DebugCanvas> loadSingleFrame(SkMemoryStream* stream) {
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// note overloaded = operator that actually does a move
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sk_sp<SkPicture> picture = SkPicture::MakeFromStream(stream);
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if (!picture) {
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SkDebugf("Unable to deserialze frame.\n");
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return nullptr;
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}
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SkDebugf("Parsed SKP file.\n");
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// Make debug canvas using bounds from SkPicture
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fBounds = picture->cullRect().roundOut();
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std::unique_ptr<DebugCanvas> debugDanvas = std::make_unique<DebugCanvas>(fBounds);
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SkDebugf("DebugCanvas created.\n");
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// Only draw picture to the debug canvas once.
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debugDanvas->drawPicture(picture);
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SkDebugf("Added picture with %d commands.\n", debugDanvas->getSize());
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return debugDanvas;
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}
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void loadMultiFrame(SkMemoryStream* stream) {
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// Attempt to deserialize with an image sharing serial proc.
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auto deserialContext = std::make_unique<SkSharingDeserialContext>();
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SkDeserialProcs procs;
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procs.fImageProc = SkSharingDeserialContext::deserializeImage;
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procs.fImageCtx = deserialContext.get();
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int page_count = SkMultiPictureDocumentReadPageCount(stream);
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if (!page_count) {
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SkDebugf("Not a MultiPictureDocument");
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return;
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}
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SkDebugf("Expecting %d frames\n", page_count);
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std::vector<SkDocumentPage> pages(page_count);
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if (!SkMultiPictureDocumentRead(stream, pages.data(), page_count, &procs)) {
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SkDebugf("Reading frames from MultiPictureDocument failed");
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return;
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}
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for (const auto& page : pages) {
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// Make debug canvas using bounds from SkPicture
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fBounds = page.fPicture->cullRect().roundOut();
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std::unique_ptr<DebugCanvas> debugDanvas = std::make_unique<DebugCanvas>(fBounds);
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// Only draw picture to the debug canvas once.
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debugDanvas->drawPicture(page.fPicture);
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SkDebugf("Added picture with %d commands.\n", debugDanvas->getSize());
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if (debugDanvas->getSize() <=0 ){
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SkDebugf("Skipped corrupted frame, had %d commands \n", debugDanvas->getSize());
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continue;
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}
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debugDanvas->setOverdrawViz(false);
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debugDanvas->setDrawGpuOpBounds(false);
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debugDanvas->setClipVizColor(SK_ColorTRANSPARENT);
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frames.push_back(std::move(debugDanvas));
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}
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fImages = deserialContext->fImages;
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}
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// A vector of DebugCanvas, each one initialized to a frame of the animation.
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std::vector<std::unique_ptr<DebugCanvas>> frames;
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// The index of the current frame (into the vector above)
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int fp = 0;
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// The width and height of the animation. (in practice the bounds of the last loaded frame)
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SkIRect fBounds;
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// SKP version of loaded file.
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uint32_t fFileVersion;
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// image resources from a loaded file
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std::vector<sk_sp<SkImage>> fImages;
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// The URLDataManager here is a cache that accepts encoded data (pngs) and puts
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// numbers on them. We have our own collection of images (fImages) that was populated by the
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// SkSharingDeserialContext when mskp files are loaded. It would be nice to have the mapping
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// indices between these two caches so the urls displayed in command info match the list
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// in the resource tab, and to make cross linking possible. One way to do this would be to
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// look up all of fImages in udm but the exact encoding of the PNG differs and we wouldn't
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// find anything. TODO(nifong): Unify these two numbering schemes in CollatingCanvas.
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UrlDataManager udm;
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};
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#if SK_SUPPORT_GPU
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sk_sp<GrContext> MakeGrContext(EMSCRIPTEN_WEBGL_CONTEXT_HANDLE context)
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{
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EMSCRIPTEN_RESULT r = emscripten_webgl_make_context_current(context);
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if (r < 0) {
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SkDebugf("failed to make webgl context current %d\n", r);
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return nullptr;
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}
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// setup GrContext
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auto interface = GrGLMakeNativeInterface();
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// setup contexts
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sk_sp<GrContext> grContext(GrContext::MakeGL(interface));
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return grContext;
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}
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sk_sp<SkSurface> MakeOnScreenGLSurface(sk_sp<GrContext> grContext, int width, int height) {
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glClearColor(0, 0, 0, 0);
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glClearStencil(0);
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glClear(GL_COLOR_BUFFER_BIT | GL_STENCIL_BUFFER_BIT);
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// Wrap the frame buffer object attached to the screen in a Skia render
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// target so Skia can render to it
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GrGLint buffer;
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glGetIntegerv(GL_FRAMEBUFFER_BINDING, &buffer);
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GrGLFramebufferInfo info;
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info.fFBOID = (GrGLuint) buffer;
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SkColorType colorType;
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info.fFormat = GL_RGBA8;
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colorType = kRGBA_8888_SkColorType;
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GrBackendRenderTarget target(width, height, 0, 8, info);
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sk_sp<SkSurface> surface(SkSurface::MakeFromBackendRenderTarget(grContext.get(), target,
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kBottomLeft_GrSurfaceOrigin,
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colorType, nullptr, nullptr));
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return surface;
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}
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sk_sp<SkSurface> MakeRenderTarget(sk_sp<GrContext> grContext, int width, int height) {
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SkImageInfo info = SkImageInfo::MakeN32(width, height, SkAlphaType::kPremul_SkAlphaType);
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sk_sp<SkSurface> surface(SkSurface::MakeRenderTarget(grContext.get(),
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SkBudgeted::kYes,
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info, 0,
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kBottomLeft_GrSurfaceOrigin,
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nullptr, true));
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return surface;
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}
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sk_sp<SkSurface> MakeRenderTarget(sk_sp<GrContext> grContext, SimpleImageInfo sii) {
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sk_sp<SkSurface> surface(SkSurface::MakeRenderTarget(grContext.get(),
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SkBudgeted::kYes,
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toSkImageInfo(sii), 0,
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kBottomLeft_GrSurfaceOrigin,
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nullptr, true));
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return surface;
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}
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#endif
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using namespace emscripten;
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EMSCRIPTEN_BINDINGS(my_module) {
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// The main class that the JavaScript in index.html uses
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class_<SkpDebugPlayer>("SkpDebugPlayer")
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.constructor<>()
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.function("loadSkp", &SkpDebugPlayer::loadSkp, allow_raw_pointers())
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.function("drawTo", &SkpDebugPlayer::drawTo, allow_raw_pointers())
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.function("getBounds", &SkpDebugPlayer::getBounds)
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.function("setOverdrawVis", &SkpDebugPlayer::setOverdrawVis)
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.function("setClipVizColor", &SkpDebugPlayer::setClipVizColor)
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.function("getSize", &SkpDebugPlayer::getSize)
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.function("deleteCommand", &SkpDebugPlayer::deleteCommand)
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.function("setCommandVisibility", &SkpDebugPlayer::setCommandVisibility)
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.function("setGpuOpBounds", &SkpDebugPlayer::setGpuOpBounds)
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.function("jsonCommandList", &SkpDebugPlayer::jsonCommandList, allow_raw_pointers())
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.function("lastCommandInfo", &SkpDebugPlayer::lastCommandInfo)
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.function("changeFrame", &SkpDebugPlayer::changeFrame)
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.function("getFrameCount", &SkpDebugPlayer::getFrameCount)
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.function("getImageResource", &SkpDebugPlayer::getImageResource)
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.function("getImageCount", &SkpDebugPlayer::getImageCount)
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.function("getImageInfo", &SkpDebugPlayer::getImageInfo);
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// Structs used as arguments or returns to the functions above
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value_object<SkIRect>("SkIRect")
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.field("fLeft", &SkIRect::fLeft)
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.field("fTop", &SkIRect::fTop)
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.field("fRight", &SkIRect::fRight)
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.field("fBottom", &SkIRect::fBottom);
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// Symbols needed by cpu.js to perform surface creation and flushing.
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enum_<SkColorType>("ColorType")
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.value("RGBA_8888", SkColorType::kRGBA_8888_SkColorType);
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enum_<SkAlphaType>("AlphaType")
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.value("Opaque", SkAlphaType::kOpaque_SkAlphaType)
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.value("Premul", SkAlphaType::kPremul_SkAlphaType)
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.value("Unpremul", SkAlphaType::kUnpremul_SkAlphaType);
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value_object<SimpleImageInfo>("SkImageInfo")
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.field("width", &SimpleImageInfo::width)
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.field("height", &SimpleImageInfo::height)
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.field("colorType", &SimpleImageInfo::colorType)
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.field("alphaType", &SimpleImageInfo::alphaType)
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.field("imageAddress", &SimpleImageInfo::imageAddress);
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constant("TRANSPARENT", (JSColor) SK_ColorTRANSPARENT);
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function("_getRasterDirectSurface", optional_override([](const SimpleImageInfo ii,
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uintptr_t /* uint8_t* */ pPtr,
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size_t rowBytes)->sk_sp<SkSurface> {
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uint8_t* pixels = reinterpret_cast<uint8_t*>(pPtr);
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SkImageInfo imageInfo = toSkImageInfo(ii);
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SkDebugf("Made raster direct surface.\n");
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return SkSurface::MakeRasterDirect(imageInfo, pixels, rowBytes, nullptr);
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}), allow_raw_pointers());
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class_<SkSurface>("SkSurface")
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.smart_ptr<sk_sp<SkSurface>>("sk_sp<SkSurface>")
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.function("width", &SkSurface::width)
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.function("height", &SkSurface::height)
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.function("_flush", select_overload<void()>(&SkSurface::flush))
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.function("getCanvas", &SkSurface::getCanvas, allow_raw_pointers());
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class_<SkCanvas>("SkCanvas")
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.function("clear", optional_override([](SkCanvas& self, JSColor color)->void {
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// JS side gives us a signed int instead of an unsigned int for color
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// Add a optional_override to change it out.
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self.clear(SkColor(color));
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}));
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#if SK_SUPPORT_GPU
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class_<GrContext>("GrContext")
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.smart_ptr<sk_sp<GrContext>>("sk_sp<GrContext>");
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function("currentContext", &emscripten_webgl_get_current_context);
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function("setCurrentContext", &emscripten_webgl_make_context_current);
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function("MakeGrContext", &MakeGrContext);
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function("MakeOnScreenGLSurface", &MakeOnScreenGLSurface);
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function("MakeRenderTarget", select_overload<sk_sp<SkSurface>(
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sk_sp<GrContext>, int, int)>(&MakeRenderTarget));
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function("MakeRenderTarget", select_overload<sk_sp<SkSurface>(
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sk_sp<GrContext>, SimpleImageInfo)>(&MakeRenderTarget));
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constant("gpu", true);
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#endif
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}
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