Index: src/gpu/batches/GrRectBatch.cpp |
diff --git a/src/gpu/batches/GrRectBatch.cpp b/src/gpu/batches/GrRectBatch.cpp |
index 1cc948652b150a73353c1721c7b6ae0429ce6d80..0995156b4e05bbbbc8628d1ad97fc79359d8a911 100644 |
--- a/src/gpu/batches/GrRectBatch.cpp |
+++ b/src/gpu/batches/GrRectBatch.cpp |
@@ -7,262 +7,168 @@ |
#include "GrRectBatch.h" |
-#include "GrBatch.h" |
#include "GrBatchTarget.h" |
-#include "GrBatchTest.h" |
#include "GrDefaultGeoProcFactory.h" |
#include "GrPrimitiveProcessor.h" |
-class RectBatch : public GrBatch { |
-public: |
- struct Geometry { |
- SkMatrix fViewMatrix; |
- SkRect fRect; |
- SkRect fLocalRect; |
- SkMatrix fLocalMatrix; |
- GrColor fColor; |
- bool fHasLocalRect; |
- bool fHasLocalMatrix; |
- }; |
- |
- static GrBatch* Create(const Geometry& geometry) { |
- return SkNEW_ARGS(RectBatch, (geometry)); |
+void GrRectBatch::initBatchTracker(const GrPipelineInfo& init) { |
+ // Handle any color overrides |
+ if (!init.readsColor()) { |
+ fGeoData[0].fColor = GrColor_ILLEGAL; |
} |
+ init.getOverrideColorIfSet(&fGeoData[0].fColor); |
- const char* name() const override { return "RectBatch"; } |
+ // setup batch properties |
+ fBatch.fColorIgnored = !init.readsColor(); |
+ fBatch.fColor = fGeoData[0].fColor; |
+ fBatch.fUsesLocalCoords = init.readsLocalCoords(); |
+ fBatch.fCoverageIgnored = !init.readsCoverage(); |
+} |
- void getInvariantOutputColor(GrInitInvariantOutput* out) const override { |
- // When this is called on a batch, there is only one geometry bundle |
- out->setKnownFourComponents(fGeoData[0].fColor); |
+void GrRectBatch::generateGeometry(GrBatchTarget* batchTarget) { |
+ SkAutoTUnref<const GrGeometryProcessor> gp(this->createRectGP()); |
+ if (!gp) { |
+ SkDebugf("Could not create GrGeometryProcessor\n"); |
+ return; |
} |
- void getInvariantOutputCoverage(GrInitInvariantOutput* out) const override { |
- out->setKnownSingleComponent(0xff); |
- } |
+ batchTarget->initDraw(gp, this->pipeline()); |
- void initBatchTracker(const GrPipelineInfo& init) override { |
- // Handle any color overrides |
- if (!init.readsColor()) { |
- fGeoData[0].fColor = GrColor_ILLEGAL; |
- } |
- init.getOverrideColorIfSet(&fGeoData[0].fColor); |
+ int instanceCount = fGeoData.count(); |
+ size_t vertexStride = gp->getVertexStride(); |
+ SkASSERT(this->hasLocalRect() ? |
+ vertexStride == sizeof(GrDefaultGeoProcFactory::PositionColorLocalCoordAttr) : |
+ vertexStride == sizeof(GrDefaultGeoProcFactory::PositionColorAttr)); |
+ QuadHelper helper; |
+ void* vertices = helper.init(batchTarget, vertexStride, instanceCount); |
- // setup batch properties |
- fBatch.fColorIgnored = !init.readsColor(); |
- fBatch.fColor = fGeoData[0].fColor; |
- fBatch.fUsesLocalCoords = init.readsLocalCoords(); |
- fBatch.fCoverageIgnored = !init.readsCoverage(); |
+ if (!vertices) { |
+ return; |
} |
- void generateGeometry(GrBatchTarget* batchTarget) override { |
- SkAutoTUnref<const GrGeometryProcessor> gp(this->createRectGP()); |
- if (!gp) { |
- SkDebugf("Could not create GrGeometryProcessor\n"); |
- return; |
+ for (int i = 0; i < instanceCount; i++) { |
+ const Geometry& geom = fGeoData[i]; |
+ |
+ intptr_t offset = reinterpret_cast<intptr_t>(vertices) + |
+ kVerticesPerQuad * i * vertexStride; |
+ SkPoint* positions = reinterpret_cast<SkPoint*>(offset); |
+ |
+ positions->setRectFan(geom.fRect.fLeft, geom.fRect.fTop, |
+ geom.fRect.fRight, geom.fRect.fBottom, vertexStride); |
+ geom.fViewMatrix.mapPointsWithStride(positions, vertexStride, kVerticesPerQuad); |
+ |
+ // TODO we should only do this if local coords are being read |
+ if (geom.fHasLocalRect) { |
+ static const int kLocalOffset = sizeof(SkPoint) + sizeof(GrColor); |
+ SkPoint* coords = reinterpret_cast<SkPoint*>(offset + kLocalOffset); |
+ coords->setRectFan(geom.fLocalRect.fLeft, geom.fLocalRect.fTop, |
+ geom.fLocalRect.fRight, geom.fLocalRect.fBottom, |
+ vertexStride); |
+ if (geom.fHasLocalMatrix) { |
+ geom.fLocalMatrix.mapPointsWithStride(coords, vertexStride, kVerticesPerQuad); |
+ } |
} |
- batchTarget->initDraw(gp, this->pipeline()); |
- |
- int instanceCount = fGeoData.count(); |
- size_t vertexStride = gp->getVertexStride(); |
- SkASSERT(this->hasLocalRect() ? |
- vertexStride == sizeof(GrDefaultGeoProcFactory::PositionColorLocalCoordAttr) : |
- vertexStride == sizeof(GrDefaultGeoProcFactory::PositionColorAttr)); |
- QuadHelper helper; |
- void* vertices = helper.init(batchTarget, vertexStride, instanceCount); |
- |
- if (!vertices) { |
- return; |
+ static const int kColorOffset = sizeof(SkPoint); |
+ GrColor* vertColor = reinterpret_cast<GrColor*>(offset + kColorOffset); |
+ for (int j = 0; j < 4; ++j) { |
+ *vertColor = geom.fColor; |
+ vertColor = (GrColor*) ((intptr_t) vertColor + vertexStride); |
} |
+ } |
- for (int i = 0; i < instanceCount; i++) { |
- const Geometry& geom = fGeoData[i]; |
- |
- intptr_t offset = reinterpret_cast<intptr_t>(vertices) + |
- kVerticesPerQuad * i * vertexStride; |
- SkPoint* positions = reinterpret_cast<SkPoint*>(offset); |
- |
- positions->setRectFan(geom.fRect.fLeft, geom.fRect.fTop, |
- geom.fRect.fRight, geom.fRect.fBottom, vertexStride); |
- geom.fViewMatrix.mapPointsWithStride(positions, vertexStride, kVerticesPerQuad); |
- |
- // TODO we should only do this if local coords are being read |
- if (geom.fHasLocalRect) { |
- static const int kLocalOffset = sizeof(SkPoint) + sizeof(GrColor); |
- SkPoint* coords = reinterpret_cast<SkPoint*>(offset + kLocalOffset); |
- coords->setRectFan(geom.fLocalRect.fLeft, geom.fLocalRect.fTop, |
- geom.fLocalRect.fRight, geom.fLocalRect.fBottom, |
- vertexStride); |
- if (geom.fHasLocalMatrix) { |
- geom.fLocalMatrix.mapPointsWithStride(coords, vertexStride, kVerticesPerQuad); |
- } |
- } |
- |
- static const int kColorOffset = sizeof(SkPoint); |
- GrColor* vertColor = reinterpret_cast<GrColor*>(offset + kColorOffset); |
- for (int j = 0; j < 4; ++j) { |
- *vertColor = geom.fColor; |
- vertColor = (GrColor*) ((intptr_t) vertColor + vertexStride); |
- } |
- } |
+ helper.issueDraw(batchTarget); |
+} |
- helper.issueDraw(batchTarget); |
+bool GrRectBatch::onCombineIfPossible(GrBatch* t) { |
+ if (!this->pipeline()->isEqual(*t->pipeline())) { |
+ return false; |
} |
- SkSTArray<1, Geometry, true>* geoData() { return &fGeoData; } |
+ GrRectBatch* that = t->cast<GrRectBatch>(); |
-private: |
- RectBatch(const Geometry& geometry) { |
- this->initClassID<RectBatch>(); |
- fGeoData.push_back(geometry); |
- |
- fBounds = geometry.fRect; |
- geometry.fViewMatrix.mapRect(&fBounds); |
+ if (this->hasLocalRect() != that->hasLocalRect()) { |
+ return false; |
} |
- GrColor color() const { return fBatch.fColor; } |
- bool usesLocalCoords() const { return fBatch.fUsesLocalCoords; } |
- bool colorIgnored() const { return fBatch.fColorIgnored; } |
- const SkMatrix& viewMatrix() const { return fGeoData[0].fViewMatrix; } |
- const SkMatrix& localMatrix() const { return fGeoData[0].fLocalMatrix; } |
- bool hasLocalRect() const { return fGeoData[0].fHasLocalRect; } |
- bool hasLocalMatrix() const { return fGeoData[0].fHasLocalMatrix; } |
- bool coverageIgnored() const { return fBatch.fCoverageIgnored; } |
- |
- bool onCombineIfPossible(GrBatch* t) override { |
- if (!this->pipeline()->isEqual(*t->pipeline())) { |
+ SkASSERT(this->usesLocalCoords() == that->usesLocalCoords()); |
+ if (!this->hasLocalRect() && this->usesLocalCoords()) { |
+ if (!this->viewMatrix().cheapEqualTo(that->viewMatrix())) { |
return false; |
} |
- RectBatch* that = t->cast<RectBatch>(); |
- |
- if (this->hasLocalRect() != that->hasLocalRect()) { |
+ if (this->hasLocalMatrix() != that->hasLocalMatrix()) { |
return false; |
} |
- SkASSERT(this->usesLocalCoords() == that->usesLocalCoords()); |
- if (!this->hasLocalRect() && this->usesLocalCoords()) { |
- if (!this->viewMatrix().cheapEqualTo(that->viewMatrix())) { |
- return false; |
- } |
- |
- if (this->hasLocalMatrix() != that->hasLocalMatrix()) { |
- return false; |
- } |
- |
- if (this->hasLocalMatrix() && !this->localMatrix().cheapEqualTo(that->localMatrix())) { |
- return false; |
- } |
- } |
- |
- if (this->color() != that->color()) { |
- fBatch.fColor = GrColor_ILLEGAL; |
+ if (this->hasLocalMatrix() && !this->localMatrix().cheapEqualTo(that->localMatrix())) { |
+ return false; |
} |
- fGeoData.push_back_n(that->geoData()->count(), that->geoData()->begin()); |
- this->joinBounds(that->bounds()); |
- return true; |
} |
- /** We always use per-vertex colors so that rects can be batched across color changes. Sometimes |
- we have explicit local coords and sometimes not. We *could* always provide explicit local |
- coords and just duplicate the positions when the caller hasn't provided a local coord rect, |
- but we haven't seen a use case which frequently switches between local rect and no local |
- rect draws. |
- |
- The color param is used to determine whether the opaque hint can be set on the draw state. |
- The caller must populate the vertex colors itself. |
- |
- The vertex attrib order is always pos, color, [local coords]. |
- */ |
- const GrGeometryProcessor* createRectGP() { |
- using namespace GrDefaultGeoProcFactory; |
- Color color(Color::kAttribute_Type); |
- Coverage coverage(this->coverageIgnored() ? Coverage::kNone_Type : Coverage::kSolid_Type); |
- |
- // if we have a local rect, then we apply the localMatrix directly to the localRect to |
- // generate vertex local coords |
- if (this->hasLocalRect()) { |
- LocalCoords localCoords(LocalCoords::kHasExplicit_Type); |
- return GrDefaultGeoProcFactory::Create(color, coverage, localCoords, SkMatrix::I()); |
- } else { |
- LocalCoords localCoords(LocalCoords::kUsePosition_Type, |
- this->hasLocalMatrix() ? &this->localMatrix() : NULL); |
- return GrDefaultGeoProcFactory::CreateForDeviceSpace(color, coverage, localCoords, |
- this->viewMatrix()); |
- } |
+ if (this->color() != that->color()) { |
+ fBatch.fColor = GrColor_ILLEGAL; |
} |
+ fGeoData.push_back_n(that->geoData()->count(), that->geoData()->begin()); |
+ this->joinBounds(that->bounds()); |
+ return true; |
+} |
+/** We always use per-vertex colors so that rects can be batched across color changes. Sometimes |
+ we have explicit local coords and sometimes not. We *could* always provide explicit local |
+ coords and just duplicate the positions when the caller hasn't provided a local coord rect, |
+ but we haven't seen a use case which frequently switches between local rect and no local |
+ rect draws. |
- struct BatchTracker { |
- GrColor fColor; |
- bool fUsesLocalCoords; |
- bool fColorIgnored; |
- bool fCoverageIgnored; |
- }; |
- |
- BatchTracker fBatch; |
- SkSTArray<1, Geometry, true> fGeoData; |
-}; |
- |
-namespace GrRectBatch { |
- |
-GrBatch* Create(GrColor color, |
- const SkMatrix& viewMatrix, |
- const SkRect& rect, |
- const SkRect* localRect, |
- const SkMatrix* localMatrix) { |
- RectBatch::Geometry geometry; |
- geometry.fColor = color; |
- geometry.fViewMatrix = viewMatrix; |
- geometry.fRect = rect; |
- |
- if (localRect) { |
- geometry.fHasLocalRect = true; |
- geometry.fLocalRect = *localRect; |
- } else { |
- geometry.fHasLocalRect = false; |
- } |
+ The color param is used to determine whether the opaque hint can be set on the draw state. |
+ The caller must populate the vertex colors itself. |
- if (localMatrix) { |
- geometry.fHasLocalMatrix = true; |
- geometry.fLocalMatrix = *localMatrix; |
+ The vertex attrib order is always pos, color, [local coords]. |
+ */ |
+const GrGeometryProcessor* GrRectBatch::createRectGP() { |
+ using namespace GrDefaultGeoProcFactory; |
+ Color color(Color::kAttribute_Type); |
+ Coverage coverage(this->coverageIgnored() ? Coverage::kNone_Type : Coverage::kSolid_Type); |
+ |
+ // if we have a local rect, then we apply the localMatrix directly to the localRect to |
+ // generate vertex local coords |
+ if (this->hasLocalRect()) { |
+ LocalCoords localCoords(LocalCoords::kHasExplicit_Type); |
+ return GrDefaultGeoProcFactory::Create(color, coverage, localCoords, SkMatrix::I()); |
} else { |
- geometry.fHasLocalMatrix = false; |
+ LocalCoords localCoords(LocalCoords::kUsePosition_Type, |
+ this->hasLocalMatrix() ? &this->localMatrix() : NULL); |
+ return GrDefaultGeoProcFactory::CreateForDeviceSpace(color, coverage, localCoords, |
+ this->viewMatrix()); |
} |
- |
- return RectBatch::Create(geometry); |
} |
-}; |
- |
/////////////////////////////////////////////////////////////////////////////////////////////////// |
#ifdef GR_TEST_UTILS |
+#include "GrBatchTest.h" |
+ |
BATCH_TEST_DEFINE(RectBatch) { |
- GrColor color = GrRandomColor(random); |
- |
- SkRect rect = GrTest::TestRect(random); |
- SkRect localRect; |
- bool hasLocalRect = random->nextBool(); |
- bool hasLocalMatrix = random->nextBool(); |
- |
- SkMatrix viewMatrix; |
- SkMatrix localMatrix; |
- if (hasLocalRect) { |
- viewMatrix = GrTest::TestMatrixInvertible(random); |
- localRect = GrTest::TestRect(random); |
+ GrRectBatch::Geometry geometry; |
+ geometry.fColor = GrRandomColor(random); |
+ |
+ geometry.fRect = GrTest::TestRect(random); |
+ geometry.fHasLocalRect = random->nextBool(); |
+ |
+ if (geometry.fHasLocalRect) { |
+ geometry.fViewMatrix = GrTest::TestMatrixInvertible(random); |
+ geometry.fLocalRect = GrTest::TestRect(random); |
} else { |
- viewMatrix = GrTest::TestMatrix(random); |
+ geometry.fViewMatrix = GrTest::TestMatrix(random); |
} |
- if (hasLocalMatrix) { |
- localMatrix = GrTest::TestMatrix(random); |
+ geometry.fHasLocalMatrix = random->nextBool(); |
+ if (geometry.fHasLocalMatrix) { |
+ geometry.fLocalMatrix = GrTest::TestMatrix(random); |
} |
- return GrRectBatch::Create(color, viewMatrix, rect, |
- hasLocalRect ? &localRect : NULL, |
- hasLocalMatrix ? &localMatrix : NULL); |
+ return GrRectBatch::Create(geometry); |
} |
#endif |