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epoger@google.comec3ed6a2011-07-28 14:26:00 +00001
reed@google.comac10a2d2010-12-22 21:39:39 +00002/*
epoger@google.comec3ed6a2011-07-28 14:26:00 +00003 * Copyright 2010 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.
reed@google.comac10a2d2010-12-22 21:39:39 +00007 */
8
9
epoger@google.comec3ed6a2011-07-28 14:26:00 +000010
reed@google.comac10a2d2010-12-22 21:39:39 +000011#ifndef GrDrawTarget_DEFINED
12#define GrDrawTarget_DEFINED
13
reed@google.comac10a2d2010-12-22 21:39:39 +000014#include "GrClip.h"
bsalomon@google.comaa5b6732011-07-29 15:13:20 +000015#include "GrColor.h"
tomhudson@google.com93813632011-10-27 20:21:16 +000016#include "GrDrawState.h"
bsalomon@google.comaa5b6732011-07-29 15:13:20 +000017#include "GrMatrix.h"
18#include "GrRefCnt.h"
bsalomon@google.comaa5b6732011-07-29 15:13:20 +000019#include "GrSamplerState.h"
bsalomon@google.comd302f142011-03-03 13:54:13 +000020#include "GrStencil.h"
bsalomon@google.comaa5b6732011-07-29 15:13:20 +000021#include "GrTexture.h"
reed@google.comac10a2d2010-12-22 21:39:39 +000022
Scroggo97c88c22011-05-11 14:05:25 +000023#include "SkXfermode.h"
bsalomon@google.com46f7afb2012-01-18 19:51:55 +000024#include "SkTLazy.h"
Scroggo97c88c22011-05-11 14:05:25 +000025
reed@google.comac10a2d2010-12-22 21:39:39 +000026class GrTexture;
reed@google.comac10a2d2010-12-22 21:39:39 +000027class GrClipIterator;
28class GrVertexBuffer;
29class GrIndexBuffer;
30
31class GrDrawTarget : public GrRefCnt {
32public:
33 /**
bsalomon@google.com18c9c192011-09-22 21:01:31 +000034 * Represents the draw target capabilities.
35 */
36 struct Caps {
37 Caps() { memset(this, 0, sizeof(Caps)); }
38 Caps(const Caps& c) { *this = c; }
39 Caps& operator= (const Caps& c) {
40 memcpy(this, &c, sizeof(Caps));
41 return *this;
42 }
43 void print() const;
44 bool f8BitPaletteSupport : 1;
bsalomon@google.com18c9c192011-09-22 21:01:31 +000045 bool fNPOTTextureTileSupport : 1;
bsalomon@google.com18c9c192011-09-22 21:01:31 +000046 bool fTwoSidedStencilSupport : 1;
47 bool fStencilWrapOpsSupport : 1;
48 bool fHWAALineSupport : 1;
bsalomon@google.com18c9c192011-09-22 21:01:31 +000049 bool fShaderDerivativeSupport : 1;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000050 bool fGeometryShaderSupport : 1;
bsalomon@google.com18c9c192011-09-22 21:01:31 +000051 bool fFSAASupport : 1;
52 bool fDualSourceBlendingSupport : 1;
53 bool fBufferLockSupport : 1;
bsalomon@google.com18c9c192011-09-22 21:01:31 +000054 int fMaxRenderTargetSize;
55 int fMaxTextureSize;
56 };
57
bsalomon@google.com8f9cbd62011-12-09 15:55:34 +000058 // for convenience
bsalomon@google.com39ee0ff2011-12-06 15:32:52 +000059 typedef GrDrawState::StageMask StageMask;
reed@google.comac10a2d2010-12-22 21:39:39 +000060
reed@google.comac10a2d2010-12-22 21:39:39 +000061 ///////////////////////////////////////////////////////////////////////////
62
63 GrDrawTarget();
bsalomon@google.com25fb21f2011-06-21 18:17:25 +000064 virtual ~GrDrawTarget();
reed@google.comac10a2d2010-12-22 21:39:39 +000065
66 /**
bsalomon@google.com18c9c192011-09-22 21:01:31 +000067 * Gets the capabilities of the draw target.
68 */
69 const Caps& getCaps() const { return fCaps; }
70
71 /**
reed@google.comac10a2d2010-12-22 21:39:39 +000072 * Sets the current clip to the region specified by clip. All draws will be
73 * clipped against this clip if kClip_StateBit is enabled.
74 *
bsalomon@google.com5aaa69e2011-03-04 20:29:08 +000075 * Setting the clip may (or may not) zero out the client's stencil bits.
76 *
reed@google.comac10a2d2010-12-22 21:39:39 +000077 * @param description of the clipping region
78 */
79 void setClip(const GrClip& clip);
80
81 /**
82 * Gets the current clip.
83 *
84 * @return the clip.
85 */
86 const GrClip& getClip() const;
87
bsalomon@google.com8f9cbd62011-12-09 15:55:34 +000088 const GrDrawState& getDrawState() const { return fCurrDrawState; }
89 GrDrawState* drawState() { return &fCurrDrawState; }
bsalomon@google.com3d0835b2011-12-08 16:12:03 +000090
bsalomon@google.com3d0835b2011-12-08 16:12:03 +000091 /**
bsalomon@google.com8f9cbd62011-12-09 15:55:34 +000092 * Shortcut for drawState()->preConcatSamplerMatrices() on all enabled
93 * stages
bsalomon@google.com3d0835b2011-12-08 16:12:03 +000094 *
bsalomon@google.com3d0835b2011-12-08 16:12:03 +000095 * @param matrix the matrix to concat
96 */
97 void preConcatEnabledSamplerMatrices(const GrMatrix& matrix) {
98 StageMask stageMask = this->enabledStages();
bsalomon@google.com8f9cbd62011-12-09 15:55:34 +000099 this->drawState()->preConcatSamplerMatrices(stageMask, matrix);
bsalomon@google.com3d0835b2011-12-08 16:12:03 +0000100 }
101
102 /**
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000103 * Determines if blending will require a read of a dst given the current
104 * state set on the draw target
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000105 *
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000106 * @return true if the dst surface will be read at each pixel hit by the
107 * a draw operation.
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000108 */
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000109 bool drawWillReadDst() const;
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000110
bsalomon@google.comd46e2422011-09-23 17:40:07 +0000111 /**
112 * Color alpha and coverage are two inputs to the drawing pipeline. For some
113 * blend modes it is safe to fold the coverage into constant or per-vertex
114 * color alpha value. For other blend modes they must be handled separately.
115 * Depending on features available in the underlying 3D API this may or may
116 * not be possible.
117 *
118 * This function looks at the current blend on the draw target and the draw
119 * target's capabilities to determine whether coverage can be handled
120 * correctly.
121 */
122 bool canApplyCoverage() const;
123
124 /**
125 * Determines whether incorporating partial pixel coverage into the constant
126 * color specified by setColor or per-vertex colors will give the right
127 * blending result.
128 */
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000129 bool canTweakAlphaForCoverage() const;
bsalomon@google.comd46e2422011-09-23 17:40:07 +0000130
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +0000131 /**
bsalomon@google.com471d4712011-08-23 15:45:25 +0000132 * Given the current draw state, vertex layout, and hw support, will HW AA
133 * lines be used (if line primitive type is drawn)? (Note that lines are
134 * always 1 pixel wide)
135 */
tomhudson@google.com93813632011-10-27 20:21:16 +0000136 bool willUseHWAALines() const;
bsalomon@google.com471d4712011-08-23 15:45:25 +0000137
bsalomon@google.com3d0835b2011-12-08 16:12:03 +0000138 /**
bsalomon@google.coma3108262011-10-10 14:08:47 +0000139 * Used to save and restore the GrGpu's drawing state
140 */
141 struct SavedDrawState {
142 private:
bsalomon@google.com46f7afb2012-01-18 19:51:55 +0000143 SkTLazy<GrDrawState> fState;
bsalomon@google.coma3108262011-10-10 14:08:47 +0000144 friend class GrDrawTarget;
145 };
146
147 /**
148 * Saves the current draw state. The state can be restored at a later time
149 * with restoreDrawState.
150 *
151 * See also AutoStateRestore class.
152 *
153 * @param state will hold the state after the function returns.
154 */
155 void saveCurrentDrawState(SavedDrawState* state) const;
156
157 /**
158 * Restores previously saved draw state. The client guarantees that state
159 * was previously passed to saveCurrentDrawState and that the rendertarget
160 * and texture set at save are still valid.
161 *
162 * See also AutoStateRestore class.
163 *
164 * @param state the previously saved state to restore.
165 */
166 void restoreDrawState(const SavedDrawState& state);
167
168 /**
169 * Copies the draw state from another target to this target.
170 *
171 * @param srcTarget draw target used as src of the draw state.
172 */
173 void copyDrawState(const GrDrawTarget& srcTarget);
174
175 /**
176 * The format of vertices is represented as a bitfield of flags.
177 * Flags that indicate the layout of vertex data. Vertices always contain
tomhudson@google.com93813632011-10-27 20:21:16 +0000178 * positions and may also contain up to GrDrawState::kMaxTexCoords sets
179 * of 2D texture * coordinates, per-vertex colors, and per-vertex coverage.
180 * Each stage can
bsalomon@google.coma3108262011-10-10 14:08:47 +0000181 * use any of the texture coordinates as its input texture coordinates or it
182 * may use the positions as texture coordinates.
183 *
184 * If no texture coordinates are specified for a stage then the stage is
185 * disabled.
186 *
187 * Only one type of texture coord can be specified per stage. For
188 * example StageTexCoordVertexLayoutBit(0, 2) and
189 * StagePosAsTexCoordVertexLayoutBit(0) cannot both be specified.
190 *
191 * The order in memory is always (position, texture coord 0, ..., color,
192 * coverage) with any unused fields omitted. Note that this means that if
193 * only texture coordinates 1 is referenced then there is no texture
194 * coordinates 0 and the order would be (position, texture coordinate 1
195 * [, color][, coverage]).
196 */
197
198 /**
199 * Generates a bit indicating that a texture stage uses texture coordinates
200 *
201 * @param stage the stage that will use texture coordinates.
202 * @param texCoordIdx the index of the texture coordinates to use
203 *
204 * @return the bit to add to a GrVertexLayout bitfield.
205 */
206 static int StageTexCoordVertexLayoutBit(int stage, int texCoordIdx) {
tomhudson@google.com93813632011-10-27 20:21:16 +0000207 GrAssert(stage < GrDrawState::kNumStages);
208 GrAssert(texCoordIdx < GrDrawState::kMaxTexCoords);
209 return 1 << (stage + (texCoordIdx * GrDrawState::kNumStages));
bsalomon@google.coma3108262011-10-10 14:08:47 +0000210 }
211
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000212private:
tomhudson@google.com93813632011-10-27 20:21:16 +0000213 static const int TEX_COORD_BIT_CNT = GrDrawState::kNumStages *
214 GrDrawState::kMaxTexCoords;
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000215
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000216public:
217 /**
218 * Generates a bit indicating that a texture stage uses the position
219 * as its texture coordinate.
220 *
bsalomon@google.com5782d712011-01-21 21:03:59 +0000221 * @param stage the stage that will use position as texture
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000222 * coordinates.
223 *
224 * @return the bit to add to a GrVertexLayout bitfield.
225 */
226 static int StagePosAsTexCoordVertexLayoutBit(int stage) {
tomhudson@google.com93813632011-10-27 20:21:16 +0000227 GrAssert(stage < GrDrawState::kNumStages);
bsalomon@google.com5782d712011-01-21 21:03:59 +0000228 return (1 << (TEX_COORD_BIT_CNT + stage));
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000229 }
bsalomon@google.coma3108262011-10-10 14:08:47 +0000230
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000231private:
tomhudson@google.com93813632011-10-27 20:21:16 +0000232 static const int STAGE_BIT_CNT = TEX_COORD_BIT_CNT +
233 GrDrawState::kNumStages;
bsalomon@google.com5782d712011-01-21 21:03:59 +0000234
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000235public:
bsalomon@google.com5782d712011-01-21 21:03:59 +0000236
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000237 /**
238 * Additional Bits that can be specified in GrVertexLayout.
reed@google.comac10a2d2010-12-22 21:39:39 +0000239 */
240 enum VertexLayoutBits {
bsalomon@google.coma3108262011-10-10 14:08:47 +0000241 /* vertices have colors (GrColor) */
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000242 kColor_VertexLayoutBit = 1 << (STAGE_BIT_CNT + 0),
bsalomon@google.com2401ae82012-01-17 21:03:05 +0000243 /* vertices have coverage (GrColor)
bsalomon@google.come10f6fd2011-10-11 20:15:26 +0000244 */
bsalomon@google.coma3108262011-10-10 14:08:47 +0000245 kCoverage_VertexLayoutBit = 1 << (STAGE_BIT_CNT + 1),
bsalomon@google.comaeb21602011-08-30 18:13:44 +0000246 /* Use text vertices. (Pos and tex coords may be a different type for
bsalomon@google.come10f6fd2011-10-11 20:15:26 +0000247 * text [GrGpuTextVertex vs GrPoint].)
248 */
bsalomon@google.coma3108262011-10-10 14:08:47 +0000249 kTextFormat_VertexLayoutBit = 1 << (STAGE_BIT_CNT + 2),
bsalomon@google.comaeb21602011-08-30 18:13:44 +0000250
bsalomon@google.come10f6fd2011-10-11 20:15:26 +0000251 /* Each vertex specificies an edge. Distance to the edge is used to
bsalomon@google.comcff56082012-01-11 15:33:20 +0000252 * compute a coverage. See GrDrawState::setVertexEdgeType().
bsalomon@google.come10f6fd2011-10-11 20:15:26 +0000253 */
bsalomon@google.coma3108262011-10-10 14:08:47 +0000254 kEdge_VertexLayoutBit = 1 << (STAGE_BIT_CNT + 3),
reed@google.comac10a2d2010-12-22 21:39:39 +0000255 // for below assert
bsalomon@google.comd302f142011-03-03 13:54:13 +0000256 kDummyVertexLayoutBit,
257 kHighVertexLayoutBit = kDummyVertexLayoutBit - 1
reed@google.comac10a2d2010-12-22 21:39:39 +0000258 };
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000259 // make sure we haven't exceeded the number of bits in GrVertexLayout.
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000260 GR_STATIC_ASSERT(kHighVertexLayoutBit < ((uint64_t)1 << 8*sizeof(GrVertexLayout)));
reed@google.comac10a2d2010-12-22 21:39:39 +0000261
262 /**
bsalomon@google.come3d70952012-03-13 12:40:53 +0000263 * There are three types of "sources" of geometry (vertices and indices) for
264 * draw calls made on the target. When performing an indexed draw, the
265 * indices and vertices can use different source types. Once a source is
266 * specified it can be used for multiple drawIndexed and drawNonIndexed
267 * calls. However, the time at which the geometry data is no longer editable
268 * depends on the source type.
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000269 *
270 * Sometimes it is necessary to perform a draw while upstack code has
bsalomon@google.come3d70952012-03-13 12:40:53 +0000271 * already specified geometry that it isn't finished with. So there are push
272 * and pop methods. This allows the client to push the sources, draw
273 * something using alternate sources, and then pop to restore the original
274 * sources.
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000275 *
bsalomon@google.come3d70952012-03-13 12:40:53 +0000276 * Aside from pushes and pops, a source remains valid until another source
277 * is set or resetVertexSource / resetIndexSource is called. Drawing from
278 * a reset source is an error.
279 *
280 * The three types of sources are:
281 *
282 * 1. A cpu array (set*SourceToArray). This is useful when the caller
283 * already provided vertex data in a format compatible with a
284 * GrVertexLayout. The data in the array is consumed at the time that
285 * set*SourceToArray is called and subsequent edits to the array will not
286 * be reflected in draws.
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000287 *
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000288 * 2. Reserve. This is most useful when the caller has data it must
289 * transform before drawing and is not long-lived. The caller requests
290 * that the draw target make room for some amount of vertex and/or index
291 * data. The target provides ptrs to hold the vertex and/or index data.
292 *
293 * The data is writable up until the next drawIndexed, drawNonIndexed,
bsalomon@google.come3d70952012-03-13 12:40:53 +0000294 * or pushGeometrySource. At this point the data is frozen and the ptrs
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000295 * are no longer valid.
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000296 *
bsalomon@google.come3d70952012-03-13 12:40:53 +0000297 * Where the space is allocated and how it is uploaded to the GPU is
298 * subclass-dependent.
299 *
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000300 * 3. Vertex and Index Buffers. This is most useful for geometry that will
bsalomon@google.come3d70952012-03-13 12:40:53 +0000301 * is long-lived. When the data in the buffer is consumed depends on the
302 * GrDrawTarget subclass. For deferred subclasses the caller has to
303 * guarantee that the data is still available in the buffers at playback.
304 * (TODO: Make this more automatic as we have done for read/write pixels)
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000305 */
306
307 /**
bsalomon@google.come3d70952012-03-13 12:40:53 +0000308 * Reserves space for vertices and/or indices. Zero can be specifed as
309 * either the vertex or index count if the caller desires to only reserve
310 * space for only indices or only vertices. If zero is specifed for
311 * vertexCount then the vertex source will be unmodified and likewise for
312 * indexCount.
reed@google.comac10a2d2010-12-22 21:39:39 +0000313 *
bsalomon@google.come3d70952012-03-13 12:40:53 +0000314 * If the function returns true then the reserve suceeded and the vertices
315 * and indices pointers will point to the space created.
reed@google.comac10a2d2010-12-22 21:39:39 +0000316 *
bsalomon@google.come3d70952012-03-13 12:40:53 +0000317 * If the target cannot make space for the request then this function will
318 * return false. If vertexCount was non-zero then upon failure the vertex
319 * source is reset and likewise for indexCount.
reed@google.comac10a2d2010-12-22 21:39:39 +0000320 *
bsalomon@google.come3d70952012-03-13 12:40:53 +0000321 * The pointers to the space allocated for vertices and indices remain valid
322 * until a drawIndexed, drawNonIndexed, or push/popGeomtrySource is called.
323 * At that point logically a snapshot of the data is made and the pointers
324 * are invalid.
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000325 *
reed@google.comac10a2d2010-12-22 21:39:39 +0000326 * @param vertexLayout the format of vertices (ignored if vertexCount == 0).
bsalomon@google.come3d70952012-03-13 12:40:53 +0000327 * @param vertexCount the number of vertices to reserve space for. Can be
328 * 0.
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000329 * @param indexCount the number of indices to reserve space for. Can be 0.
bsalomon@google.come3d70952012-03-13 12:40:53 +0000330 * @param vertices will point to reserved vertex space if vertexCount is
331 * non-zero. Illegal to pass NULL if vertexCount > 0.
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000332 * @param indices will point to reserved index space if indexCount is
333 * non-zero. Illegal to pass NULL if indexCount > 0.
334 */
bsalomon@google.com97805382012-03-13 14:32:07 +0000335 bool reserveVertexAndIndexSpace(GrVertexLayout vertexLayout,
336 int vertexCount,
337 int indexCount,
338 void** vertices,
339 void** indices);
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000340
reed@google.comac10a2d2010-12-22 21:39:39 +0000341 /**
342 * Provides hints to caller about the number of vertices and indices
343 * that can be allocated cheaply. This can be useful if caller is reserving
344 * space but doesn't know exactly how much geometry is needed.
345 *
346 * Also may hint whether the draw target should be flushed first. This is
347 * useful for deferred targets.
348 *
349 * @param vertexLayout layout of vertices caller would like to reserve
350 * @param vertexCount in: hint about how many vertices the caller would
351 * like to allocate.
352 * out: a hint about the number of vertices that can be
353 * allocated cheaply. Negative means no hint.
354 * Ignored if NULL.
355 * @param indexCount in: hint about how many indices the caller would
356 * like to allocate.
357 * out: a hint about the number of indices that can be
358 * allocated cheaply. Negative means no hint.
359 * Ignored if NULL.
360 *
361 * @return true if target should be flushed based on the input values.
362 */
363 virtual bool geometryHints(GrVertexLayout vertexLayout,
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000364 int* vertexCount,
365 int* indexCount) const;
reed@google.comac10a2d2010-12-22 21:39:39 +0000366
367 /**
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000368 * Sets source of vertex data for the next draw. Array must contain
369 * the vertex data when this is called.
reed@google.comac10a2d2010-12-22 21:39:39 +0000370 *
371 * @param array cpu array containing vertex data.
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000372 * @param size size of the vertex data.
373 * @param vertexCount the number of vertices in the array.
reed@google.comac10a2d2010-12-22 21:39:39 +0000374 */
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000375 void setVertexSourceToArray(GrVertexLayout vertexLayout,
376 const void* vertexArray,
377 int vertexCount);
reed@google.comac10a2d2010-12-22 21:39:39 +0000378
379 /**
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000380 * Sets source of index data for the next indexed draw. Array must contain
381 * the indices when this is called.
reed@google.comac10a2d2010-12-22 21:39:39 +0000382 *
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000383 * @param array cpu array containing index data.
384 * @param indexCount the number of indices in the array.
reed@google.comac10a2d2010-12-22 21:39:39 +0000385 */
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000386 void setIndexSourceToArray(const void* indexArray, int indexCount);
reed@google.comac10a2d2010-12-22 21:39:39 +0000387
388 /**
389 * Sets source of vertex data for the next draw. Data does not have to be
390 * in the buffer until drawIndexed or drawNonIndexed.
391 *
392 * @param buffer vertex buffer containing vertex data. Must be
393 * unlocked before draw call.
394 * @param vertexLayout layout of the vertex data in the buffer.
395 */
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000396 void setVertexSourceToBuffer(GrVertexLayout vertexLayout,
397 const GrVertexBuffer* buffer);
reed@google.comac10a2d2010-12-22 21:39:39 +0000398
399 /**
400 * Sets source of index data for the next indexed draw. Data does not have
401 * to be in the buffer until drawIndexed or drawNonIndexed.
402 *
403 * @param buffer index buffer containing indices. Must be unlocked
404 * before indexed draw call.
405 */
406 void setIndexSourceToBuffer(const GrIndexBuffer* buffer);
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000407
408 /**
409 * Resets vertex source. Drawing from reset vertices is illegal. Set vertex
410 * source to reserved, array, or buffer before next draw. May be able to free
411 * up temporary storage allocated by setVertexSourceToArray or
412 * reserveVertexSpace.
413 */
414 void resetVertexSource();
415
416 /**
417 * Resets index source. Indexed Drawing from reset indices is illegal. Set
418 * index source to reserved, array, or buffer before next indexed draw. May
419 * be able to free up temporary storage allocated by setIndexSourceToArray
420 * or reserveIndexSpace.
421 */
bsalomon@google.com97805382012-03-13 14:32:07 +0000422 void resetIndexSource();
423
424 /**
425 * Query to find out if the vertex or index source is reserved.
426 */
427 bool hasReservedVerticesOrIndices() const {
428 kReserved_GeometrySrcType == this->getGeomSrc().fVertexSrc ||
429 kReserved_GeometrySrcType == this->getGeomSrc().fIndexSrc;
430 }
reed@google.comac10a2d2010-12-22 21:39:39 +0000431
432 /**
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000433 * Pushes and resets the vertex/index sources. Any reserved vertex / index
434 * data is finalized (i.e. cannot be updated after the matching pop but can
435 * be drawn from). Must be balanced by a pop.
436 */
437 void pushGeometrySource();
438
439 /**
440 * Pops the vertex / index sources from the matching push.
441 */
442 void popGeometrySource();
443
444 /**
reed@google.comac10a2d2010-12-22 21:39:39 +0000445 * Draws indexed geometry using the current state and current vertex / index
446 * sources.
447 *
448 * @param type The type of primitives to draw.
449 * @param startVertex the vertex in the vertex array/buffer corresponding
450 * to index 0
451 * @param startIndex first index to read from index src.
452 * @param vertexCount one greater than the max index.
453 * @param indexCount the number of index elements to read. The index count
454 * is effectively trimmed to the last completely
455 * specified primitive.
456 */
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000457 void drawIndexed(GrPrimitiveType type,
458 int startVertex,
459 int startIndex,
460 int vertexCount,
461 int indexCount);
reed@google.comac10a2d2010-12-22 21:39:39 +0000462
463 /**
464 * Draws non-indexed geometry using the current state and current vertex
465 * sources.
466 *
467 * @param type The type of primitives to draw.
468 * @param startVertex the vertex in the vertex array/buffer corresponding
469 * to index 0
470 * @param vertexCount one greater than the max index.
471 */
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000472 void drawNonIndexed(GrPrimitiveType type,
473 int startVertex,
474 int vertexCount);
reed@google.comac10a2d2010-12-22 21:39:39 +0000475
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000476 /**
477 * Helper function for drawing rects. This does not use the current index
478 * and vertex sources. After returning, the vertex and index sources may
479 * have changed. They should be reestablished before the next drawIndexed
480 * or drawNonIndexed. This cannot be called between reserving and releasing
481 * geometry. The GrDrawTarget subclass may be able to perform additional
bsalomon@google.comd302f142011-03-03 13:54:13 +0000482 * optimizations if drawRect is used rather than drawIndexed or
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000483 * drawNonIndexed.
484 * @param rect the rect to draw
485 * @param matrix optional matrix applied to rect (before viewMatrix)
bsalomon@google.com39ee0ff2011-12-06 15:32:52 +0000486 * @param stageMask bitmask indicating which stages are enabled.
487 * Bit i indicates whether stage i is enabled.
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000488 * @param srcRects specifies rects for stages enabled by stageEnableMask.
489 * if stageEnableMask bit i is 1, srcRects is not NULL,
490 * and srcRects[i] is not NULL, then srcRects[i] will be
491 * used as coordinates for stage i. Otherwise, if stage i
492 * is enabled then rect is used as the coordinates.
493 * @param srcMatrices optional matrices applied to srcRects. If
494 * srcRect[i] is non-NULL and srcMatrices[i] is
495 * non-NULL then srcRect[i] will be transformed by
496 * srcMatrix[i]. srcMatrices can be NULL when no
497 * srcMatrices are desired.
498 */
bsalomon@google.comd302f142011-03-03 13:54:13 +0000499 virtual void drawRect(const GrRect& rect,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000500 const GrMatrix* matrix,
bsalomon@google.com39ee0ff2011-12-06 15:32:52 +0000501 StageMask stageMask,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000502 const GrRect* srcRects[],
503 const GrMatrix* srcMatrices[]);
504
505 /**
bsalomon@google.comd302f142011-03-03 13:54:13 +0000506 * Helper for drawRect when the caller doesn't need separate src rects or
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000507 * matrices.
508 */
bsalomon@google.comd302f142011-03-03 13:54:13 +0000509 void drawSimpleRect(const GrRect& rect,
510 const GrMatrix* matrix,
bsalomon@google.com39ee0ff2011-12-06 15:32:52 +0000511 StageMask stageEnableBitfield) {
bsalomon@google.comffca4002011-02-22 20:34:01 +0000512 drawRect(rect, matrix, stageEnableBitfield, NULL, NULL);
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000513 }
514
bsalomon@google.com0b335c12011-04-25 19:17:44 +0000515 /**
bsalomon@google.com6aa25c32011-04-27 19:55:29 +0000516 * Clear the render target. Ignores the clip and all other draw state
517 * (blend mode, stages, etc). Clears the whole thing if rect is NULL,
518 * otherwise just the rect.
bsalomon@google.com0b335c12011-04-25 19:17:44 +0000519 */
bsalomon@google.com6aa25c32011-04-27 19:55:29 +0000520 virtual void clear(const GrIRect* rect, GrColor color) = 0;
bsalomon@google.com0b335c12011-04-25 19:17:44 +0000521
senorblanco@chromium.orgef3913b2011-05-19 17:11:07 +0000522 /**
523 * Returns the maximum number of edges that may be specified in a single
524 * draw call when performing edge antialiasing. This is usually limited
525 * by the number of fragment uniforms which may be uploaded. Must be a
526 * minimum of six, since a triangle's vertices each belong to two boundary
527 * edges which may be distinct.
528 */
529 virtual int getMaxEdges() const { return 6; }
530
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000531 ////////////////////////////////////////////////////////////////////////////
reed@google.comac10a2d2010-12-22 21:39:39 +0000532
533 class AutoStateRestore : ::GrNoncopyable {
534 public:
bsalomon@google.com06afe7b2011-04-26 15:31:40 +0000535 AutoStateRestore();
reed@google.comac10a2d2010-12-22 21:39:39 +0000536 AutoStateRestore(GrDrawTarget* target);
537 ~AutoStateRestore();
538
bsalomon@google.com06afe7b2011-04-26 15:31:40 +0000539 /**
540 * if this object is already saving state for param target then
541 * this does nothing. Otherise, it restores previously saved state on
542 * previous target (if any) and saves current state on param target.
543 */
544 void set(GrDrawTarget* target);
545
reed@google.comac10a2d2010-12-22 21:39:39 +0000546 private:
547 GrDrawTarget* fDrawTarget;
548 SavedDrawState fDrawState;
549 };
550
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000551 ////////////////////////////////////////////////////////////////////////////
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000552
bsalomon@google.com7ac249b2011-06-14 18:46:24 +0000553 /**
554 * Sets the view matrix to I and preconcats all stage matrices enabled in
555 * mask by the view inverse. Destructor undoes these changes.
556 */
557 class AutoDeviceCoordDraw : ::GrNoncopyable {
558 public:
bsalomon@google.com3d0835b2011-12-08 16:12:03 +0000559 AutoDeviceCoordDraw(GrDrawTarget* target, StageMask stageMask);
bsalomon@google.com7ac249b2011-06-14 18:46:24 +0000560 ~AutoDeviceCoordDraw();
561 private:
bsalomon@google.com3d0835b2011-12-08 16:12:03 +0000562 GrDrawTarget* fDrawTarget;
563 GrMatrix fViewMatrix;
564 GrMatrix fSamplerMatrices[GrDrawState::kNumStages];
565 int fStageMask;
bsalomon@google.com7ac249b2011-06-14 18:46:24 +0000566 };
567
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000568 ////////////////////////////////////////////////////////////////////////////
bsalomon@google.com7ac249b2011-06-14 18:46:24 +0000569
reed@google.comac10a2d2010-12-22 21:39:39 +0000570 class AutoReleaseGeometry : ::GrNoncopyable {
571 public:
572 AutoReleaseGeometry(GrDrawTarget* target,
573 GrVertexLayout vertexLayout,
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000574 int vertexCount,
575 int indexCount);
576 AutoReleaseGeometry();
577 ~AutoReleaseGeometry();
bsalomon@google.com5782d712011-01-21 21:03:59 +0000578 bool set(GrDrawTarget* target,
579 GrVertexLayout vertexLayout,
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000580 int vertexCount,
581 int indexCount);
bsalomon@google.coma47a48d2011-04-26 20:22:11 +0000582 bool succeeded() const { return NULL != fTarget; }
bsalomon@google.com6513cd02011-08-05 20:12:30 +0000583 void* vertices() const { GrAssert(this->succeeded()); return fVertices; }
584 void* indices() const { GrAssert(this->succeeded()); return fIndices; }
reed@google.comac10a2d2010-12-22 21:39:39 +0000585 GrPoint* positions() const {
bsalomon@google.com6513cd02011-08-05 20:12:30 +0000586 return static_cast<GrPoint*>(this->vertices());
reed@google.comac10a2d2010-12-22 21:39:39 +0000587 }
588
589 private:
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000590 void reset();
591
reed@google.comac10a2d2010-12-22 21:39:39 +0000592 GrDrawTarget* fTarget;
reed@google.comac10a2d2010-12-22 21:39:39 +0000593 void* fVertices;
594 void* fIndices;
595 };
596
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000597 ////////////////////////////////////////////////////////////////////////////
reed@google.comac10a2d2010-12-22 21:39:39 +0000598
599 class AutoClipRestore : ::GrNoncopyable {
600 public:
601 AutoClipRestore(GrDrawTarget* target) {
602 fTarget = target;
603 fClip = fTarget->getClip();
604 }
605
606 ~AutoClipRestore() {
607 fTarget->setClip(fClip);
608 }
609 private:
610 GrDrawTarget* fTarget;
611 GrClip fClip;
612 };
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000613
614 ////////////////////////////////////////////////////////////////////////////
615
616 class AutoGeometryPush : ::GrNoncopyable {
617 public:
618 AutoGeometryPush(GrDrawTarget* target) {
619 GrAssert(NULL != target);
620 fTarget = target;
621 target->pushGeometrySource();
622 }
623 ~AutoGeometryPush() {
624 fTarget->popGeometrySource();
625 }
626 private:
627 GrDrawTarget* fTarget;
628 };
reed@google.comac10a2d2010-12-22 21:39:39 +0000629
630 ////////////////////////////////////////////////////////////////////////////
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000631 // Helpers for picking apart vertex layouts
bsalomon@google.com5782d712011-01-21 21:03:59 +0000632
reed@google.comac10a2d2010-12-22 21:39:39 +0000633 /**
634 * Helper function to compute the size of a vertex from a vertex layout
635 * @return size of a single vertex.
636 */
637 static size_t VertexSize(GrVertexLayout vertexLayout);
bsalomon@google.com5782d712011-01-21 21:03:59 +0000638
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000639 /**
640 * Helper function for determining the index of texture coordinates that
641 * is input for a texture stage. Note that a stage may instead use positions
642 * as texture coordinates, in which case the result of the function is
643 * indistinguishable from the case when the stage is disabled.
644 *
645 * @param stage the stage to query
646 * @param vertexLayout layout to query
647 *
648 * @return the texture coordinate index or -1 if the stage doesn't use
649 * separate (non-position) texture coordinates.
650 */
651 static int VertexTexCoordsForStage(int stage, GrVertexLayout vertexLayout);
reed@google.comac10a2d2010-12-22 21:39:39 +0000652
653 /**
654 * Helper function to compute the offset of texture coordinates in a vertex
655 * @return offset of texture coordinates in vertex layout or -1 if the
bsalomon@google.com5782d712011-01-21 21:03:59 +0000656 * layout has no texture coordinates. Will be 0 if positions are
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000657 * used as texture coordinates for the stage.
reed@google.comac10a2d2010-12-22 21:39:39 +0000658 */
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000659 static int VertexStageCoordOffset(int stage, GrVertexLayout vertexLayout);
reed@google.comac10a2d2010-12-22 21:39:39 +0000660
661 /**
662 * Helper function to compute the offset of the color in a vertex
663 * @return offset of color in vertex layout or -1 if the
664 * layout has no color.
665 */
666 static int VertexColorOffset(GrVertexLayout vertexLayout);
667
bsalomon@google.coma3108262011-10-10 14:08:47 +0000668 /**
669 * Helper function to compute the offset of the coverage in a vertex
670 * @return offset of coverage in vertex layout or -1 if the
671 * layout has no coverage.
672 */
673 static int VertexCoverageOffset(GrVertexLayout vertexLayout);
674
bsalomon@google.comaeb21602011-08-30 18:13:44 +0000675 /**
676 * Helper function to compute the offset of the edge pts in a vertex
677 * @return offset of edge in vertex layout or -1 if the
678 * layout has no edge.
679 */
680 static int VertexEdgeOffset(GrVertexLayout vertexLayout);
681
reed@google.comac10a2d2010-12-22 21:39:39 +0000682 /**
bsalomon@google.com5782d712011-01-21 21:03:59 +0000683 * Helper function to determine if vertex layout contains explicit texture
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000684 * coordinates of some index.
685 *
686 * @param coordIndex the tex coord index to query
687 * @param vertexLayout layout to query
688 *
bsalomon@google.com5782d712011-01-21 21:03:59 +0000689 * @return true if vertex specifies texture coordinates for the index,
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000690 * false otherwise.
reed@google.comac10a2d2010-12-22 21:39:39 +0000691 */
bsalomon@google.com5782d712011-01-21 21:03:59 +0000692 static bool VertexUsesTexCoordIdx(int coordIndex,
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000693 GrVertexLayout vertexLayout);
bsalomon@google.com5782d712011-01-21 21:03:59 +0000694
reed@google.comac10a2d2010-12-22 21:39:39 +0000695 /**
696 * Helper function to determine if vertex layout contains either explicit or
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000697 * implicit texture coordinates for a stage.
reed@google.comac10a2d2010-12-22 21:39:39 +0000698 *
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000699 * @param stage the stage to query
700 * @param vertexLayout layout to query
701 *
bsalomon@google.com5782d712011-01-21 21:03:59 +0000702 * @return true if vertex specifies texture coordinates for the stage,
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000703 * false otherwise.
reed@google.comac10a2d2010-12-22 21:39:39 +0000704 */
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000705 static bool VertexUsesStage(int stage, GrVertexLayout vertexLayout);
reed@google.comac10a2d2010-12-22 21:39:39 +0000706
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000707 /**
bsalomon@google.com5782d712011-01-21 21:03:59 +0000708 * Helper function to compute the size of each vertex and the offsets of
709 * texture coordinates and color. Determines tex coord offsets by tex coord
710 * index rather than by stage. (Each stage can be mapped to any t.c. index
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000711 * by StageTexCoordVertexLayoutBit.)
712 *
713 * @param vertexLayout the layout to query
714 * @param texCoordOffsetsByIdx after return it is the offset of each
715 * tex coord index in the vertex or -1 if
bsalomon@google.coma3108262011-10-10 14:08:47 +0000716 * index isn't used. (optional)
717 * @param colorOffset after return it is the offset of the
718 * color field in each vertex, or -1 if
719 * there aren't per-vertex colors. (optional)
720 * @param coverageOffset after return it is the offset of the
721 * coverage field in each vertex, or -1 if
722 * there aren't per-vertex coeverages.
723 * (optional)
724 * @param edgeOffset after return it is the offset of the
725 * edge eq field in each vertex, or -1 if
726 * there aren't per-vertex edge equations.
727 * (optional)
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000728 * @return size of a single vertex
729 */
730 static int VertexSizeAndOffsetsByIdx(GrVertexLayout vertexLayout,
tomhudson@google.com93813632011-10-27 20:21:16 +0000731 int texCoordOffsetsByIdx[GrDrawState::kMaxTexCoords],
732 int *colorOffset,
733 int *coverageOffset,
734 int* edgeOffset);
bsalomon@google.com5782d712011-01-21 21:03:59 +0000735
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000736 /**
bsalomon@google.com5782d712011-01-21 21:03:59 +0000737 * Helper function to compute the size of each vertex and the offsets of
738 * texture coordinates and color. Determines tex coord offsets by stage
739 * rather than by index. (Each stage can be mapped to any t.c. index
740 * by StageTexCoordVertexLayoutBit.) If a stage uses positions for
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000741 * tex coords then that stage's offset will be 0 (positions are always at 0).
742 *
743 * @param vertexLayout the layout to query
744 * @param texCoordOffsetsByStage after return it is the offset of each
745 * tex coord index in the vertex or -1 if
bsalomon@google.coma3108262011-10-10 14:08:47 +0000746 * index isn't used. (optional)
747 * @param colorOffset after return it is the offset of the
748 * color field in each vertex, or -1 if
749 * there aren't per-vertex colors.
750 * (optional)
751 * @param coverageOffset after return it is the offset of the
752 * coverage field in each vertex, or -1 if
753 * there aren't per-vertex coeverages.
754 * (optional)
755 * @param edgeOffset after return it is the offset of the
756 * edge eq field in each vertex, or -1 if
757 * there aren't per-vertex edge equations.
758 * (optional)
bsalomon@google.com8531c1c2011-01-13 19:52:45 +0000759 * @return size of a single vertex
760 */
761 static int VertexSizeAndOffsetsByStage(GrVertexLayout vertexLayout,
tomhudson@google.com93813632011-10-27 20:21:16 +0000762 int texCoordOffsetsByStage[GrDrawState::kNumStages],
763 int* colorOffset,
764 int* coverageOffset,
765 int* edgeOffset);
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000766
767 /**
768 * Accessing positions, texture coords, or colors, of a vertex within an
769 * array is a hassle involving casts and simple math. These helpers exist
770 * to keep GrDrawTarget clients' code a bit nicer looking.
771 */
772
773 /**
774 * Gets a pointer to a GrPoint of a vertex's position or texture
775 * coordinate.
776 * @param vertices the vetex array
777 * @param vertexIndex the index of the vertex in the array
778 * @param vertexSize the size of each vertex in the array
779 * @param offset the offset in bytes of the vertex component.
780 * Defaults to zero (corresponding to vertex position)
781 * @return pointer to the vertex component as a GrPoint
782 */
bsalomon@google.comd302f142011-03-03 13:54:13 +0000783 static GrPoint* GetVertexPoint(void* vertices,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000784 int vertexIndex,
785 int vertexSize,
786 int offset = 0) {
787 intptr_t start = GrTCast<intptr_t>(vertices);
bsalomon@google.comd302f142011-03-03 13:54:13 +0000788 return GrTCast<GrPoint*>(start + offset +
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000789 vertexIndex * vertexSize);
790 }
791 static const GrPoint* GetVertexPoint(const void* vertices,
792 int vertexIndex,
bsalomon@google.comd302f142011-03-03 13:54:13 +0000793 int vertexSize,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000794 int offset = 0) {
795 intptr_t start = GrTCast<intptr_t>(vertices);
bsalomon@google.comd302f142011-03-03 13:54:13 +0000796 return GrTCast<const GrPoint*>(start + offset +
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000797 vertexIndex * vertexSize);
798 }
799
800 /**
801 * Gets a pointer to a GrColor inside a vertex within a vertex array.
802 * @param vertices the vetex array
803 * @param vertexIndex the index of the vertex in the array
804 * @param vertexSize the size of each vertex in the array
805 * @param offset the offset in bytes of the vertex color
806 * @return pointer to the vertex component as a GrColor
807 */
bsalomon@google.comd302f142011-03-03 13:54:13 +0000808 static GrColor* GetVertexColor(void* vertices,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000809 int vertexIndex,
810 int vertexSize,
811 int offset) {
812 intptr_t start = GrTCast<intptr_t>(vertices);
bsalomon@google.comd302f142011-03-03 13:54:13 +0000813 return GrTCast<GrColor*>(start + offset +
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000814 vertexIndex * vertexSize);
815 }
816 static const GrColor* GetVertexColor(const void* vertices,
817 int vertexIndex,
bsalomon@google.comd302f142011-03-03 13:54:13 +0000818 int vertexSize,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000819 int offset) {
820 const intptr_t start = GrTCast<intptr_t>(vertices);
bsalomon@google.comd302f142011-03-03 13:54:13 +0000821 return GrTCast<const GrColor*>(start + offset +
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000822 vertexIndex * vertexSize);
823 }
824
bsalomon@google.com5aaa69e2011-03-04 20:29:08 +0000825 static void VertexLayoutUnitTest();
826
reed@google.comac10a2d2010-12-22 21:39:39 +0000827protected:
bsalomon@google.com471d4712011-08-23 15:45:25 +0000828
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000829 /**
830 * Optimizations for blending / coverage to be applied based on the current
831 * state.
832 * Subclasses that actually draw (as opposed to those that just buffer for
833 * playback) must implement the flags that replace the output color.
834 */
835 enum BlendOptFlags {
836 /**
837 * No optimization
838 */
839 kNone_BlendOpt = 0,
840 /**
841 * Don't draw at all
842 */
843 kSkipDraw_BlendOptFlag = 0x2,
844 /**
845 * Emit the src color, disable HW blending (replace dst with src)
846 */
847 kDisableBlend_BlendOptFlag = 0x4,
848 /**
849 * The coverage value does not have to be computed separately from
850 * alpha, the the output color can be the modulation of the two.
851 */
852 kCoverageAsAlpha_BlendOptFlag = 0x1,
853 /**
854 * Instead of emitting a src color, emit coverage in the alpha channel
855 * and r,g,b are "don't cares".
856 */
857 kEmitCoverage_BlendOptFlag = 0x10,
858 /**
859 * Emit transparent black instead of the src color, no need to compute
860 * coverage.
861 */
862 kEmitTransBlack_BlendOptFlag = 0x8,
863 };
864 GR_DECL_BITFIELD_OPS_FRIENDS(BlendOptFlags);
bsalomon@google.com471d4712011-08-23 15:45:25 +0000865
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000866 // Determines what optimizations can be applied based on the blend.
867 // The coeffecients may have to be tweaked in order for the optimization
868 // to work. srcCoeff and dstCoeff are optional params that receive the
869 // tweaked coeffecients.
870 // Normally the function looks at the current state to see if coverage
871 // is enabled. By setting forceCoverage the caller can speculatively
872 // determine the blend optimizations that would be used if there was
873 // partial pixel coverage
874 BlendOptFlags getBlendOpts(bool forceCoverage = false,
875 GrBlendCoeff* srcCoeff = NULL,
876 GrBlendCoeff* dstCoeff = NULL) const;
877
878 // determine if src alpha is guaranteed to be one for all src pixels
879 bool srcAlphaWillBeOne() const;
bsalomon@google.com471d4712011-08-23 15:45:25 +0000880
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000881 enum GeometrySrcType {
882 kNone_GeometrySrcType, //<! src has not been specified
883 kReserved_GeometrySrcType, //<! src was set using reserve*Space
884 kArray_GeometrySrcType, //<! src was set using set*SourceToArray
885 kBuffer_GeometrySrcType //<! src was set using set*SourceToBuffer
886 };
887
888 struct GeometrySrcState {
889 GeometrySrcType fVertexSrc;
890 union {
891 // valid if src type is buffer
892 const GrVertexBuffer* fVertexBuffer;
893 // valid if src type is reserved or array
894 int fVertexCount;
895 };
896
897 GeometrySrcType fIndexSrc;
898 union {
899 // valid if src type is buffer
900 const GrIndexBuffer* fIndexBuffer;
901 // valid if src type is reserved or array
902 int fIndexCount;
903 };
904
905 GrVertexLayout fVertexLayout;
906 };
907
bsalomon@google.coma47a48d2011-04-26 20:22:11 +0000908 // given a vertex layout and a draw state, will a stage be used?
909 static bool StageWillBeUsed(int stage, GrVertexLayout layout,
tomhudson@google.com93813632011-10-27 20:21:16 +0000910 const GrDrawState& state) {
bsalomon@google.com8f9cbd62011-12-09 15:55:34 +0000911 return NULL != state.getTexture(stage) &&
912 VertexUsesStage(stage, layout);
bsalomon@google.coma47a48d2011-04-26 20:22:11 +0000913 }
914
915 bool isStageEnabled(int stage) const {
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000916 return StageWillBeUsed(stage, this->getGeomSrc().fVertexLayout,
917 fCurrDrawState);
bsalomon@google.coma47a48d2011-04-26 20:22:11 +0000918 }
bsalomon@google.com5782d712011-01-21 21:03:59 +0000919
bsalomon@google.com39ee0ff2011-12-06 15:32:52 +0000920 StageMask enabledStages() const {
921 StageMask mask = 0;
tomhudson@google.com93813632011-10-27 20:21:16 +0000922 for (int s = 0; s < GrDrawState::kNumStages; ++s) {
bsalomon@google.comaeb21602011-08-30 18:13:44 +0000923 mask |= this->isStageEnabled(s) ? 1 : 0;
924 }
925 return mask;
926 }
927
reed@google.comac10a2d2010-12-22 21:39:39 +0000928 // Helpers for GrDrawTarget subclasses that won't have private access to
929 // SavedDrawState but need to peek at the state values.
bsalomon@google.com46f7afb2012-01-18 19:51:55 +0000930 static GrDrawState& accessSavedDrawState(SavedDrawState& sds) {
931 return *sds.fState.get();
932 }
933 static const GrDrawState& accessSavedDrawState(const SavedDrawState& sds){
934 return *sds.fState.get();
935 }
reed@google.comac10a2d2010-12-22 21:39:39 +0000936
bsalomon@google.com97805382012-03-13 14:32:07 +0000937 // A sublcass can optionally overload this function to be notified before
938 // vertex and index space is reserved.
939 virtual void willReserveVertexAndIndexSpace(GrVertexLayout vertexLayout,
940 int vertexCount,
941 int indexCount) {}
942
943
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000944 // implemented by subclass to allocate space for reserved geom
945 virtual bool onReserveVertexSpace(GrVertexLayout vertexLayout,
946 int vertexCount,
947 void** vertices) = 0;
948 virtual bool onReserveIndexSpace(int indexCount, void** indices) = 0;
949 // implemented by subclass to handle release of reserved geom space
950 virtual void releaseReservedVertexSpace() = 0;
951 virtual void releaseReservedIndexSpace() = 0;
952 // subclass must consume array contents when set
953 virtual void onSetVertexSourceToArray(const void* vertexArray,
954 int vertexCount) = 0;
955 virtual void onSetIndexSourceToArray(const void* indexArray,
956 int indexCount) = 0;
957 // subclass is notified that geom source will be set away from an array
958 virtual void releaseVertexArray() = 0;
959 virtual void releaseIndexArray() = 0;
960 // subclass overrides to be notified just before geo src state
961 // is pushed/popped.
962 virtual void geometrySourceWillPush() = 0;
963 virtual void geometrySourceWillPop(const GeometrySrcState& restoredState) = 0;
964 // subclass called to perform drawing
965 virtual void onDrawIndexed(GrPrimitiveType type,
966 int startVertex,
967 int startIndex,
968 int vertexCount,
969 int indexCount) = 0;
970 virtual void onDrawNonIndexed(GrPrimitiveType type,
971 int startVertex,
972 int vertexCount) = 0;
bsalomon@google.comdea2f8d2011-08-01 15:51:05 +0000973 // subclass overrides to be notified when clip is set. Must call
974 // INHERITED::clipwillBeSet
975 virtual void clipWillBeSet(const GrClip& clip);
bsalomon@google.com1c13c962011-02-14 16:51:21 +0000976
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000977 // Helpers for drawRect, protected so subclasses that override drawRect
978 // can use them.
bsalomon@google.com3d0835b2011-12-08 16:12:03 +0000979 static GrVertexLayout GetRectVertexLayout(StageMask stageEnableBitfield,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000980 const GrRect* srcRects[]);
981
982 static void SetRectVertices(const GrRect& rect,
bsalomon@google.comd302f142011-03-03 13:54:13 +0000983 const GrMatrix* matrix,
984 const GrRect* srcRects[],
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000985 const GrMatrix* srcMatrices[],
bsalomon@google.comd302f142011-03-03 13:54:13 +0000986 GrVertexLayout layout,
bsalomon@google.com86afc2a2011-02-16 16:12:19 +0000987 void* vertices);
988
bsalomon@google.com25fb21f2011-06-21 18:17:25 +0000989 // accessor for derived classes
990 const GeometrySrcState& getGeomSrc() const {
991 return fGeoSrcStateStack.back();
992 }
reed@google.comac10a2d2010-12-22 21:39:39 +0000993
994 GrClip fClip;
995
tomhudson@google.com93813632011-10-27 20:21:16 +0000996 GrDrawState fCurrDrawState;
reed@google.comac10a2d2010-12-22 21:39:39 +0000997
bsalomon@google.com18c9c192011-09-22 21:01:31 +0000998 Caps fCaps;
999
bsalomon@google.com4a018bb2011-10-28 19:50:21 +00001000 // subclasses must call this in their destructors to ensure all vertex
1001 // and index sources have been released (including those held by
1002 // pushGeometrySource())
1003 void releaseGeometry();
bsalomon@google.come3d70952012-03-13 12:40:53 +00001004
bsalomon@google.com25fb21f2011-06-21 18:17:25 +00001005private:
bsalomon@google.come3d70952012-03-13 12:40:53 +00001006 // helpers for reserving vertex and index space.
1007 bool reserveVertexSpace(GrVertexLayout vertexLayout,
1008 int vertexCount,
1009 void** vertices);
1010 bool reserveIndexSpace(int indexCount, void** indices);
1011
bsalomon@google.come8262622011-11-07 02:30:51 +00001012 // called by drawIndexed and drawNonIndexed. Use a negative indexCount to
1013 // indicate non-indexed drawing.
1014 bool checkDraw(GrPrimitiveType type, int startVertex,
1015 int startIndex, int vertexCount,
1016 int indexCount) const;
bsalomon@google.com25fb21f2011-06-21 18:17:25 +00001017 // called when setting a new vert/idx source to unref prev vb/ib
1018 void releasePreviousVertexSource();
1019 void releasePreviousIndexSource();
1020
1021 enum {
1022 kPreallocGeoSrcStateStackCnt = 4,
reed@google.comac10a2d2010-12-22 21:39:39 +00001023 };
bsalomon@google.com92669012011-09-27 19:10:05 +00001024 SkSTArray<kPreallocGeoSrcStateStackCnt,
1025 GeometrySrcState, true> fGeoSrcStateStack;
bsalomon@google.com25fb21f2011-06-21 18:17:25 +00001026
reed@google.comac10a2d2010-12-22 21:39:39 +00001027};
1028
bsalomon@google.com86c1f712011-10-12 14:54:26 +00001029GR_MAKE_BITFIELD_OPS(GrDrawTarget::BlendOptFlags);
1030
reed@google.comac10a2d2010-12-22 21:39:39 +00001031#endif