blob: b0d41aa9bd2b840264540bb9a1d0ad0854b8d5f5 [file] [log] [blame]
junov@google.comf93e7172011-03-31 21:26:24 +00001/*
2 Copyright 2011 Google Inc.
3
4 Licensed under the Apache License, Version 2.0 (the "License");
5 you may not use this file except in compliance with the License.
6 You may obtain a copy of the License at
7
8 http://www.apache.org/licenses/LICENSE-2.0
9
10 Unless required by applicable law or agreed to in writing, software
11 distributed under the License is distributed on an "AS IS" BASIS,
12 WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 See the License for the specific language governing permissions and
14 limitations under the License.
15 */
16
17#include "GrGLProgram.h"
18
19#include "GrBinHashKey.h"
20#include "GrGLConfig.h"
junov@google.comf93e7172011-03-31 21:26:24 +000021#include "GrMemory.h"
junov@google.comf93e7172011-03-31 21:26:24 +000022
Scroggo97c88c22011-05-11 14:05:25 +000023#include "SkXfermode.h"
24
junov@google.comf93e7172011-03-31 21:26:24 +000025namespace {
26
27const char* GrPrecision() {
28 if (GR_GL_SUPPORT_ES2) {
29 return "mediump";
30 } else {
bsalomon@google.com91961302011-05-09 18:39:58 +000031 return " ";
junov@google.comf93e7172011-03-31 21:26:24 +000032 }
33}
34
35const char* GrShaderPrecision() {
36 if (GR_GL_SUPPORT_ES2) {
37 return "precision mediump float;\n";
38 } else {
39 return "";
40 }
41}
42
43} // namespace
44
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +000045#define PRINT_SHADERS 0
46
bsalomon@google.com4be283f2011-04-19 21:15:09 +000047#if GR_GL_ATTRIBUTE_MATRICES
junov@google.comf93e7172011-03-31 21:26:24 +000048 #define VIEW_MATRIX_NAME "aViewM"
49#else
50 #define VIEW_MATRIX_NAME "uViewM"
51#endif
52
53#define POS_ATTR_NAME "aPosition"
54#define COL_ATTR_NAME "aColor"
bsalomon@google.com4be283f2011-04-19 21:15:09 +000055#define COL_UNI_NAME "uColor"
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +000056#define EDGES_UNI_NAME "uEdges"
Scroggo97c88c22011-05-11 14:05:25 +000057#define COL_FILTER_UNI_NAME "uColorFilter"
junov@google.comf93e7172011-03-31 21:26:24 +000058
junov@google.comf93e7172011-03-31 21:26:24 +000059static inline void tex_attr_name(int coordIdx, GrStringBuilder* s) {
60 *s = "aTexCoord";
bsalomon@google.comfc296292011-05-06 13:53:47 +000061 s->appendS32(coordIdx);
junov@google.comf93e7172011-03-31 21:26:24 +000062}
63
64static inline const char* float_vector_type(int count) {
65 static const char* FLOAT_VECS[] = {"ERROR", "float", "vec2", "vec3", "vec4"};
66 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(FLOAT_VECS));
67 return FLOAT_VECS[count];
68}
69
70static inline const char* vector_homog_coord(int count) {
71 static const char* HOMOGS[] = {"ERROR", "", ".y", ".z", ".w"};
72 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(HOMOGS));
73 return HOMOGS[count];
74}
75
76static inline const char* vector_nonhomog_coords(int count) {
77 static const char* NONHOMOGS[] = {"ERROR", "", ".x", ".xy", ".xyz"};
78 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(NONHOMOGS));
79 return NONHOMOGS[count];
80}
81
82static inline const char* vector_all_coords(int count) {
83 static const char* ALL[] = {"ERROR", "", ".xy", ".xyz", ".xyzw"};
84 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ALL));
85 return ALL[count];
86}
87
bsalomon@google.comf2d91552011-05-16 20:56:06 +000088static inline const char* all_ones_vec(int count) {
tomhudson@google.com0d831722011-06-02 15:37:14 +000089 static const char* ONESVEC[] = {"ERROR", "1.0", "vec2(1,1)",
bsalomon@google.comf2d91552011-05-16 20:56:06 +000090 "vec3(1,1,1)", "vec4(1,1,1,1)"};
91 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ONESVEC));
92 return ONESVEC[count];
93}
94
95static inline const char* all_zeros_vec(int count) {
tomhudson@google.com0d831722011-06-02 15:37:14 +000096 static const char* ZEROSVEC[] = {"ERROR", "0.0", "vec2(0,0)",
bsalomon@google.comf2d91552011-05-16 20:56:06 +000097 "vec3(0,0,0)", "vec4(0,0,0,0)"};
98 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ZEROSVEC));
99 return ZEROSVEC[count];
100}
101
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000102static inline const char* declared_color_output_name() { return "fsColorOut"; }
103static inline const char* dual_source_output_name() { return "dualSourceOut"; }
104
junov@google.comf93e7172011-03-31 21:26:24 +0000105static void tex_matrix_name(int stage, GrStringBuilder* s) {
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000106#if GR_GL_ATTRIBUTE_MATRICES
junov@google.comf93e7172011-03-31 21:26:24 +0000107 *s = "aTexM";
108#else
109 *s = "uTexM";
110#endif
bsalomon@google.comfc296292011-05-06 13:53:47 +0000111 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000112}
113
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000114static void normalized_texel_size_name(int stage, GrStringBuilder* s) {
115 *s = "uTexelSize";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000116 s->appendS32(stage);
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000117}
118
junov@google.comf93e7172011-03-31 21:26:24 +0000119static void sampler_name(int stage, GrStringBuilder* s) {
120 *s = "uSampler";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000121 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000122}
123
124static void stage_varying_name(int stage, GrStringBuilder* s) {
125 *s = "vStage";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000126 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000127}
128
129static void radial2_param_name(int stage, GrStringBuilder* s) {
130 *s = "uRadial2Params";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000131 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000132}
133
134static void radial2_varying_name(int stage, GrStringBuilder* s) {
135 *s = "vB";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000136 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000137}
138
junov@google.com6acc9b32011-05-16 18:32:07 +0000139static void tex_domain_name(int stage, GrStringBuilder* s) {
140 *s = "uTexDom";
141 s->appendS32(stage);
142}
143
junov@google.comf93e7172011-03-31 21:26:24 +0000144GrGLProgram::GrGLProgram() {
junov@google.comf93e7172011-03-31 21:26:24 +0000145}
146
147GrGLProgram::~GrGLProgram() {
junov@google.comf93e7172011-03-31 21:26:24 +0000148}
149
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000150void GrGLProgram::overrideBlend(GrBlendCoeff* srcCoeff,
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000151 GrBlendCoeff* dstCoeff) const {
152 switch (fProgramDesc.fDualSrcOutput) {
153 case ProgramDesc::kNone_DualSrcOutput:
154 break;
155 // the prog will write a coverage value to the secondary
156 // output and the dst is blended by one minus that value.
157 case ProgramDesc::kCoverage_DualSrcOutput:
158 case ProgramDesc::kCoverageISA_DualSrcOutput:
159 case ProgramDesc::kCoverageISC_DualSrcOutput:
160 *dstCoeff = (GrBlendCoeff)GrGpu::kIS2C_BlendCoeff;
161 break;
162 default:
163 GrCrash("Unexpected dual source blend output");
164 break;
165 }
166}
167
junov@google.comf93e7172011-03-31 21:26:24 +0000168void GrGLProgram::buildKey(GrBinHashKeyBuilder& key) const {
169 // Add stage configuration to the key
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000170 key.keyData(reinterpret_cast<const uint32_t*>(&fProgramDesc), sizeof(ProgramDesc));
junov@google.comf93e7172011-03-31 21:26:24 +0000171}
172
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000173// assigns modulation of two vars to an output var
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000174// vars can be vec4s or floats (or one of each)
175// result is always vec4
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000176// if either var is "" then assign to the other var
177// if both are "" then assign all ones
178static inline void modulate_helper(const char* outputVar,
179 const char* var0,
180 const char* var1,
181 GrStringBuilder* code) {
182 GrAssert(NULL != outputVar);
183 GrAssert(NULL != var0);
184 GrAssert(NULL != var1);
185 GrAssert(NULL != code);
186
187 bool has0 = '\0' != *var0;
188 bool has1 = '\0' != *var1;
189
190 if (!has0 && !has1) {
191 code->appendf("\t%s = %s;\n", outputVar, all_ones_vec(4));
192 } else if (!has0) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000193 code->appendf("\t%s = vec4(%s);\n", outputVar, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000194 } else if (!has1) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000195 code->appendf("\t%s = vec4(%s);\n", outputVar, var0);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000196 } else {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000197 code->appendf("\t%s = vec4(%s * %s);\n", outputVar, var0, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000198 }
199}
200
201// assigns addition of two vars to an output var
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000202// vars can be vec4s or floats (or one of each)
203// result is always vec4
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000204// if either var is "" then assign to the other var
205// if both are "" then assign all zeros
206static inline void add_helper(const char* outputVar,
207 const char* var0,
208 const char* var1,
209 GrStringBuilder* code) {
210 GrAssert(NULL != outputVar);
211 GrAssert(NULL != var0);
212 GrAssert(NULL != var1);
213 GrAssert(NULL != code);
214
215 bool has0 = '\0' != *var0;
216 bool has1 = '\0' != *var1;
217
218 if (!has0 && !has1) {
219 code->appendf("\t%s = %s;\n", outputVar, all_zeros_vec(4));
220 } else if (!has0) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000221 code->appendf("\t%s = vec4(%s);\n", outputVar, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000222 } else if (!has1) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000223 code->appendf("\t%s = vec4(%s);\n", outputVar, var0);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000224 } else {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000225 code->appendf("\t%s = vec4(%s + %s);\n", outputVar, var0, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000226 }
227}
228
229// given two blend coeffecients determine whether the src
230// and/or dst computation can be omitted.
231static inline void needBlendInputs(SkXfermode::Coeff srcCoeff,
232 SkXfermode::Coeff dstCoeff,
233 bool* needSrcValue,
234 bool* needDstValue) {
235 if (SkXfermode::kZero_Coeff == srcCoeff) {
236 switch (dstCoeff) {
237 // these all read the src
238 case SkXfermode::kSC_Coeff:
239 case SkXfermode::kISC_Coeff:
240 case SkXfermode::kSA_Coeff:
241 case SkXfermode::kISA_Coeff:
242 *needSrcValue = true;
243 break;
244 default:
245 *needSrcValue = false;
246 break;
247 }
248 } else {
249 *needSrcValue = true;
250 }
251 if (SkXfermode::kZero_Coeff == dstCoeff) {
252 switch (srcCoeff) {
253 // these all read the dst
254 case SkXfermode::kDC_Coeff:
255 case SkXfermode::kIDC_Coeff:
256 case SkXfermode::kDA_Coeff:
257 case SkXfermode::kIDA_Coeff:
258 *needDstValue = true;
259 break;
260 default:
261 *needDstValue = false;
262 break;
263 }
264 } else {
265 *needDstValue = true;
Scroggo97c88c22011-05-11 14:05:25 +0000266 }
267}
268
269/**
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000270 * Create a blend_coeff * value string to be used in shader code. Sets empty
271 * string if result is trivially zero.
272 */
273static void blendTermString(GrStringBuilder* str, SkXfermode::Coeff coeff,
274 const char* src, const char* dst,
275 const char* value) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000276 switch (coeff) {
277 case SkXfermode::kZero_Coeff: /** 0 */
278 *str = "";
279 break;
280 case SkXfermode::kOne_Coeff: /** 1 */
281 *str = value;
282 break;
283 case SkXfermode::kSC_Coeff:
284 str->printf("(%s * %s)", src, value);
285 break;
286 case SkXfermode::kISC_Coeff:
287 str->printf("((%s - %s) * %s)", all_ones_vec(4), src, value);
288 break;
289 case SkXfermode::kDC_Coeff:
290 str->printf("(%s * %s)", dst, value);
291 break;
292 case SkXfermode::kIDC_Coeff:
293 str->printf("((%s - %s) * %s)", all_ones_vec(4), dst, value);
294 break;
295 case SkXfermode::kSA_Coeff: /** src alpha */
296 str->printf("(%s.a * %s)", src, value);
297 break;
298 case SkXfermode::kISA_Coeff: /** inverse src alpha (i.e. 1 - sa) */
299 str->printf("((1.0 - %s.a) * %s)", src, value);
300 break;
301 case SkXfermode::kDA_Coeff: /** dst alpha */
302 str->printf("(%s.a * %s)", dst, value);
303 break;
304 case SkXfermode::kIDA_Coeff: /** inverse dst alpha (i.e. 1 - da) */
305 str->printf("((1.0 - %s.a) * %s)", dst, value);
306 break;
307 default:
308 GrCrash("Unexpected xfer coeff.");
309 break;
310 }
311}
312/**
Scroggo97c88c22011-05-11 14:05:25 +0000313 * Adds a line to the fragment shader code which modifies the color by
314 * the specified color filter.
315 */
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000316static void addColorFilter(GrStringBuilder* fsCode, const char * outputVar,
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000317 SkXfermode::Coeff uniformCoeff,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000318 SkXfermode::Coeff colorCoeff,
319 const char* inColor) {
320 GrStringBuilder colorStr, constStr;
321 blendTermString(&colorStr, colorCoeff, COL_FILTER_UNI_NAME,
322 inColor, inColor);
323 blendTermString(&constStr, uniformCoeff, COL_FILTER_UNI_NAME,
324 inColor, COL_FILTER_UNI_NAME);
325
326 add_helper(outputVar, colorStr.c_str(), constStr.c_str(), fsCode);
Scroggo97c88c22011-05-11 14:05:25 +0000327}
328
bsalomon@google.com91961302011-05-09 18:39:58 +0000329bool GrGLProgram::genProgram(GrGLProgram::CachedData* programData) const {
junov@google.comf93e7172011-03-31 21:26:24 +0000330
331 ShaderCodeSegments segments;
332 const uint32_t& layout = fProgramDesc.fVertexLayout;
333
bsalomon@google.com91961302011-05-09 18:39:58 +0000334 programData->fUniLocations.reset();
junov@google.comf93e7172011-03-31 21:26:24 +0000335
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000336 SkXfermode::Coeff colorCoeff, uniformCoeff;
337 // The rest of transfer mode color filters have not been implemented
338 if (fProgramDesc.fColorFilterXfermode < SkXfermode::kCoeffModesCnt) {
339 GR_DEBUGCODE(bool success =)
tomhudson@google.com0d831722011-06-02 15:37:14 +0000340 SkXfermode::ModeAsCoeff(static_cast<SkXfermode::Mode>
341 (fProgramDesc.fColorFilterXfermode),
342 &uniformCoeff, &colorCoeff);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000343 GR_DEBUGASSERT(success);
344 } else {
345 colorCoeff = SkXfermode::kOne_Coeff;
346 uniformCoeff = SkXfermode::kZero_Coeff;
347 }
348
349 bool needColorFilterUniform;
350 bool needComputedColor;
351 needBlendInputs(uniformCoeff, colorCoeff,
352 &needColorFilterUniform, &needComputedColor);
353
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000354 // the dual source output has no canonical var name, have to
355 // declare an output, which is incompatible with gl_FragColor/gl_FragData.
356 const char* fsColorOutput;
357 bool dualSourceOutputWritten = false;
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000358 bool usingDeclaredOutputs = ProgramDesc::kNone_DualSrcOutput !=
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000359 fProgramDesc.fDualSrcOutput;
360 if (usingDeclaredOutputs) {
361 GrAssert(0 == segments.fHeader.size());
362 segments.fHeader.printf("#version 150\n");
363 fsColorOutput = declared_color_output_name();
364 segments.fFSOutputs.appendf("out vec4 %s;\n", fsColorOutput);
365 } else {
366 fsColorOutput = "gl_FragColor";
367 }
368
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000369#if GR_GL_ATTRIBUTE_MATRICES
370 segments.fVSAttrs += "attribute mat3 " VIEW_MATRIX_NAME ";\n";
bsalomon@google.com91961302011-05-09 18:39:58 +0000371 programData->fUniLocations.fViewMatrixUni = kSetAsAttribute;
junov@google.comf93e7172011-03-31 21:26:24 +0000372#else
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000373 segments.fVSUnis += "uniform mat3 " VIEW_MATRIX_NAME ";\n";
bsalomon@google.com91961302011-05-09 18:39:58 +0000374 programData->fUniLocations.fViewMatrixUni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +0000375#endif
376 segments.fVSAttrs += "attribute vec2 " POS_ATTR_NAME ";\n";
junov@google.comf93e7172011-03-31 21:26:24 +0000377
bsalomon@google.com91961302011-05-09 18:39:58 +0000378 segments.fVSCode.append(
379 "void main() {\n"
380 "\tvec3 pos3 = " VIEW_MATRIX_NAME " * vec3("POS_ATTR_NAME", 1);\n"
381 "\tgl_Position = vec4(pos3.xy, 0, pos3.z);\n");
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000382
bsalomon@google.com91961302011-05-09 18:39:58 +0000383 // incoming color to current stage being processed.
384 GrStringBuilder inColor;
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000385
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000386 if (needComputedColor) {
387 switch (fProgramDesc.fColorType) {
388 case ProgramDesc::kAttribute_ColorType:
389 segments.fVSAttrs.append( "attribute vec4 " COL_ATTR_NAME ";\n");
390 segments.fVaryings.append("varying vec4 vColor;\n");
391 segments.fVSCode.append( "\tvColor = " COL_ATTR_NAME ";\n");
392 inColor = "vColor";
393 break;
394 case ProgramDesc::kUniform_ColorType:
395 segments.fFSUnis.append( "uniform vec4 " COL_UNI_NAME ";\n");
396 programData->fUniLocations.fColorUni = kUseUniform;
397 inColor = COL_UNI_NAME;
398 break;
399 default:
400 GrAssert(ProgramDesc::kNone_ColorType == fProgramDesc.fColorType);
401 break;
402 }
junov@google.comf93e7172011-03-31 21:26:24 +0000403 }
404
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000405 if (fProgramDesc.fEmitsPointSize){
bsalomon@google.com91961302011-05-09 18:39:58 +0000406 segments.fVSCode.append("\tgl_PointSize = 1.0;\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000407 }
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000408
bsalomon@google.com91961302011-05-09 18:39:58 +0000409 segments.fFSCode.append("void main() {\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000410
411 // add texture coordinates that are used to the list of vertex attr decls
bsalomon@google.com91961302011-05-09 18:39:58 +0000412 GrStringBuilder texCoordAttrs[GrDrawTarget::kMaxTexCoords];
junov@google.comf93e7172011-03-31 21:26:24 +0000413 for (int t = 0; t < GrDrawTarget::kMaxTexCoords; ++t) {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000414 if (GrDrawTarget::VertexUsesTexCoordIdx(t, layout)) {
junov@google.comf93e7172011-03-31 21:26:24 +0000415 tex_attr_name(t, texCoordAttrs + t);
bsalomon@google.com91961302011-05-09 18:39:58 +0000416 segments.fVSAttrs.appendf("attribute vec2 %s;\n", texCoordAttrs[t].c_str());
junov@google.comf93e7172011-03-31 21:26:24 +0000417 }
418 }
419
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000420 ///////////////////////////////////////////////////////////////////////////
421 // compute the final color
Scroggo97c88c22011-05-11 14:05:25 +0000422
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000423 // if we have color stages string them together, feeding the output color
424 // of each to the next and generating code for each stage.
425 if (needComputedColor) {
426 GrStringBuilder outColor;
427 for (int s = 0; s < fProgramDesc.fFirstCoverageStage; ++s) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000428 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000429 // create var to hold stage result
430 outColor = "color";
431 outColor.appendS32(s);
432 segments.fFSCode.appendf("\tvec4 %s;\n", outColor.c_str());
433
434 const char* inCoords;
435 // figure out what our input coords are
436 if (GrDrawTarget::StagePosAsTexCoordVertexLayoutBit(s) &
437 layout) {
438 inCoords = POS_ATTR_NAME;
Scroggo97c88c22011-05-11 14:05:25 +0000439 } else {
440 int tcIdx = GrDrawTarget::VertexTexCoordsForStage(s, layout);
441 // we better have input tex coordinates if stage is enabled.
442 GrAssert(tcIdx >= 0);
443 GrAssert(texCoordAttrs[tcIdx].size());
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000444 inCoords = texCoordAttrs[tcIdx].c_str();
junov@google.comf93e7172011-03-31 21:26:24 +0000445 }
446
447 genStageCode(s,
448 fProgramDesc.fStages[s],
bsalomon@google.comfc296292011-05-06 13:53:47 +0000449 inColor.size() ? inColor.c_str() : NULL,
450 outColor.c_str(),
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000451 inCoords,
junov@google.comf93e7172011-03-31 21:26:24 +0000452 &segments,
453 &programData->fUniLocations.fStages[s]);
junov@google.comf93e7172011-03-31 21:26:24 +0000454 inColor = outColor;
junov@google.comf93e7172011-03-31 21:26:24 +0000455 }
456 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000457 }
Scroggo97c88c22011-05-11 14:05:25 +0000458
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000459 // if have all ones for the "dst" input to the color filter then we can make
460 // additional optimizations.
tomhudson@google.com0d831722011-06-02 15:37:14 +0000461 if (needColorFilterUniform && !inColor.size() &&
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000462 (SkXfermode::kIDC_Coeff == uniformCoeff ||
463 SkXfermode::kIDA_Coeff == uniformCoeff)) {
464 uniformCoeff = SkXfermode::kZero_Coeff;
465 bool bogus;
tomhudson@google.com0d831722011-06-02 15:37:14 +0000466 needBlendInputs(SkXfermode::kZero_Coeff, colorCoeff,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000467 &needColorFilterUniform, &bogus);
468 }
469 if (needColorFilterUniform) {
470 segments.fFSUnis.append( "uniform vec4 " COL_FILTER_UNI_NAME ";\n");
471 programData->fUniLocations.fColorFilterUni = kUseUniform;
472 }
473
474 bool wroteFragColorZero = false;
tomhudson@google.com0d831722011-06-02 15:37:14 +0000475 if (SkXfermode::kZero_Coeff == uniformCoeff &&
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000476 SkXfermode::kZero_Coeff == colorCoeff) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000477 segments.fFSCode.appendf("\t%s = %s;\n",
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000478 fsColorOutput,
479 all_zeros_vec(4));
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000480 wroteFragColorZero = true;
481 } else if (SkXfermode::kDst_Mode != fProgramDesc.fColorFilterXfermode) {
482 segments.fFSCode.appendf("\tvec4 filteredColor;\n");
483 const char* color = inColor.size() ? inColor.c_str() : all_ones_vec(4);
tomhudson@google.com0d831722011-06-02 15:37:14 +0000484 addColorFilter(&segments.fFSCode, "filteredColor", uniformCoeff,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000485 colorCoeff, color);
486 inColor = "filteredColor";
487 }
488
489 ///////////////////////////////////////////////////////////////////////////
490 // compute the partial coverage (coverage stages and edge aa)
491
492 GrStringBuilder inCoverage;
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000493
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000494 // we don't need to compute coverage at all if we know the final shader
495 // output will be zero and we don't have a dual src blend output.
496 if (!wroteFragColorZero ||
497 ProgramDesc::kNone_DualSrcOutput != fProgramDesc.fDualSrcOutput) {
senorblanco@chromium.orgef3913b2011-05-19 17:11:07 +0000498 if (fProgramDesc.fEdgeAANumEdges > 0) {
499 segments.fFSUnis.append("uniform vec3 " EDGES_UNI_NAME "[");
500 segments.fFSUnis.appendS32(fProgramDesc.fEdgeAANumEdges);
501 segments.fFSUnis.append("];\n");
502 programData->fUniLocations.fEdgesUni = kUseUniform;
503 int count = fProgramDesc.fEdgeAANumEdges;
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +0000504 segments.fFSCode.append(
senorblanco@chromium.orgef3913b2011-05-19 17:11:07 +0000505 "\tvec3 pos = vec3(gl_FragCoord.xy, 1);\n");
506 for (int i = 0; i < count; i++) {
507 segments.fFSCode.append("\tfloat a");
508 segments.fFSCode.appendS32(i);
509 segments.fFSCode.append(" = clamp(dot(" EDGES_UNI_NAME "[");
510 segments.fFSCode.appendS32(i);
511 segments.fFSCode.append("], pos), 0.0, 1.0);\n");
512 }
senorblanco@chromium.org129b8e32011-06-15 17:52:09 +0000513 if (fProgramDesc.fEdgeAAConcave && (count & 0x01) == 0) {
514 // For concave polys, we consider the edges in pairs.
515 segments.fFSFunctions.append("float cross2(vec2 a, vec2 b) {\n");
516 segments.fFSFunctions.append("\treturn dot(a, vec2(b.y, -b.x));\n");
517 segments.fFSFunctions.append("}\n");
518 for (int i = 0; i < count; i += 2) {
519 segments.fFSCode.appendf("\tfloat eb%d;\n", i / 2);
520 segments.fFSCode.appendf("\tif (cross2(" EDGES_UNI_NAME "[%d].xy, " EDGES_UNI_NAME "[%d].xy) < 0.0) {\n", i, i + 1);
521 segments.fFSCode.appendf("\t\teb%d = a%d * a%d;\n", i / 2, i, i + 1);
522 segments.fFSCode.append("\t} else {\n");
523 segments.fFSCode.appendf("\t\teb%d = a%d + a%d - a%d * a%d;\n", i / 2, i, i + 1, i, i + 1);
524 segments.fFSCode.append("\t}\n");
525 }
526 segments.fFSCode.append("\tfloat edgeAlpha = ");
527 for (int i = 0; i < count / 2 - 1; i++) {
528 segments.fFSCode.appendf("min(eb%d, ", i);
529 }
530 segments.fFSCode.appendf("eb%d", count / 2 - 1);
531 for (int i = 0; i < count / 2 - 1; i++) {
532 segments.fFSCode.append(")");
533 }
534 segments.fFSCode.append(";\n");
535 } else {
536 segments.fFSCode.append("\tfloat edgeAlpha = ");
537 for (int i = 0; i < count - 1; i++) {
538 segments.fFSCode.appendf("min(a%d * a%d, ", i, i + 1);
539 }
540 segments.fFSCode.appendf("a%d * a0", count - 1);
541 for (int i = 0; i < count - 1; i++) {
542 segments.fFSCode.append(")");
543 }
544 segments.fFSCode.append(";\n");
senorblanco@chromium.orgef3913b2011-05-19 17:11:07 +0000545 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000546 inCoverage = "edgeAlpha";
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000547 }
548
549 GrStringBuilder outCoverage;
550 const int& startStage = fProgramDesc.fFirstCoverageStage;
551 for (int s = startStage; s < GrDrawTarget::kNumStages; ++s) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000552 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000553 // create var to hold stage output
554 outCoverage = "coverage";
555 outCoverage.appendS32(s);
556 segments.fFSCode.appendf("\tvec4 %s;\n", outCoverage.c_str());
557
558 const char* inCoords;
559 // figure out what our input coords are
560 if (GrDrawTarget::StagePosAsTexCoordVertexLayoutBit(s) & layout) {
561 inCoords = POS_ATTR_NAME;
562 } else {
563 int tcIdx = GrDrawTarget::VertexTexCoordsForStage(s, layout);
564 // we better have input tex coordinates if stage is enabled.
565 GrAssert(tcIdx >= 0);
566 GrAssert(texCoordAttrs[tcIdx].size());
567 inCoords = texCoordAttrs[tcIdx].c_str();
568 }
569
570 genStageCode(s,
571 fProgramDesc.fStages[s],
572 inCoverage.size() ? inCoverage.c_str() : NULL,
573 outCoverage.c_str(),
574 inCoords,
575 &segments,
576 &programData->fUniLocations.fStages[s]);
577 inCoverage = outCoverage;
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +0000578 }
579 }
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000580 if (ProgramDesc::kNone_DualSrcOutput != fProgramDesc.fDualSrcOutput) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000581 segments.fFSOutputs.appendf("out vec4 %s;\n",
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000582 dual_source_output_name());
583 bool outputIsZero = false;
584 GrStringBuilder coeff;
tomhudson@google.com0d831722011-06-02 15:37:14 +0000585 if (ProgramDesc::kCoverage_DualSrcOutput !=
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000586 fProgramDesc.fDualSrcOutput && !wroteFragColorZero) {
587 if (!inColor.size()) {
588 outputIsZero = true;
589 } else {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000590 if (fProgramDesc.fDualSrcOutput ==
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000591 ProgramDesc::kCoverageISA_DualSrcOutput) {
592 coeff.printf("(1 - %s.a)", inColor.c_str());
593 } else {
594 coeff.printf("(vec4(1,1,1,1) - %s)", inColor.c_str());
595 }
596 }
597 }
598 if (outputIsZero) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000599 segments.fFSCode.appendf("\t%s = %s;\n",
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000600 dual_source_output_name(),
601 all_zeros_vec(4));
602 } else {
603 modulate_helper(dual_source_output_name(),
604 coeff.c_str(),
605 inCoverage.c_str(),
606 &segments.fFSCode);
607 }
608 dualSourceOutputWritten = true;
609 }
junov@google.comf93e7172011-03-31 21:26:24 +0000610 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000611
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000612 ///////////////////////////////////////////////////////////////////////////
613 // combine color and coverage as frag color
614
615 if (!wroteFragColorZero) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000616 modulate_helper(fsColorOutput,
617 inColor.c_str(),
618 inCoverage.c_str(),
619 &segments.fFSCode);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000620 }
621
bsalomon@google.com91961302011-05-09 18:39:58 +0000622 segments.fVSCode.append("}\n");
623 segments.fFSCode.append("}\n");
624
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000625 ///////////////////////////////////////////////////////////////////////////
626 // compile and setup attribs and unis
627
bsalomon@google.com91961302011-05-09 18:39:58 +0000628 if (!CompileFSAndVS(segments, programData)) {
629 return false;
630 }
631
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000632 if (!this->bindOutputsAttribsAndLinkProgram(texCoordAttrs,
633 usingDeclaredOutputs,
634 dualSourceOutputWritten,
635 programData)) {
bsalomon@google.com91961302011-05-09 18:39:58 +0000636 return false;
637 }
638
639 this->getUniformLocationsAndInitCache(programData);
640
641 return true;
642}
643
644bool GrGLProgram::CompileFSAndVS(const ShaderCodeSegments& segments,
645 CachedData* programData) {
junov@google.comf93e7172011-03-31 21:26:24 +0000646
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000647 static const int MAX_STRINGS = 6;
648 const char* strings[MAX_STRINGS];
649 int lengths[MAX_STRINGS];
junov@google.comf93e7172011-03-31 21:26:24 +0000650 int stringCnt = 0;
651
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000652 if (segments.fHeader.size()) {
653 strings[stringCnt] = segments.fHeader.c_str();
654 lengths[stringCnt] = segments.fHeader.size();
655 ++stringCnt;
656 }
bsalomon@google.comfc296292011-05-06 13:53:47 +0000657 if (segments.fVSUnis.size()) {
658 strings[stringCnt] = segments.fVSUnis.c_str();
659 lengths[stringCnt] = segments.fVSUnis.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000660 ++stringCnt;
661 }
bsalomon@google.comfc296292011-05-06 13:53:47 +0000662 if (segments.fVSAttrs.size()) {
663 strings[stringCnt] = segments.fVSAttrs.c_str();
664 lengths[stringCnt] = segments.fVSAttrs.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000665 ++stringCnt;
666 }
bsalomon@google.comfc296292011-05-06 13:53:47 +0000667 if (segments.fVaryings.size()) {
668 strings[stringCnt] = segments.fVaryings.c_str();
669 lengths[stringCnt] = segments.fVaryings.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000670 ++stringCnt;
671 }
672
bsalomon@google.comfc296292011-05-06 13:53:47 +0000673 GrAssert(segments.fVSCode.size());
674 strings[stringCnt] = segments.fVSCode.c_str();
675 lengths[stringCnt] = segments.fVSCode.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000676 ++stringCnt;
677
678#if PRINT_SHADERS
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000679 GrPrintf(segments.fHeader.c_str());
bsalomon@google.comfc296292011-05-06 13:53:47 +0000680 GrPrintf(segments.fVSUnis.c_str());
681 GrPrintf(segments.fVSAttrs.c_str());
682 GrPrintf(segments.fVaryings.c_str());
683 GrPrintf(segments.fVSCode.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000684 GrPrintf("\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000685#endif
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000686 GrAssert(stringCnt <= MAX_STRINGS);
junov@google.comf93e7172011-03-31 21:26:24 +0000687 programData->fVShaderID = CompileShader(GR_GL_VERTEX_SHADER,
688 stringCnt,
689 strings,
690 lengths);
691
bsalomon@google.com91961302011-05-09 18:39:58 +0000692 if (!programData->fVShaderID) {
693 return false;
694 }
695
junov@google.comf93e7172011-03-31 21:26:24 +0000696 stringCnt = 0;
697
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000698 if (segments.fHeader.size()) {
699 strings[stringCnt] = segments.fHeader.c_str();
700 lengths[stringCnt] = segments.fHeader.size();
701 ++stringCnt;
702 }
junov@google.comf93e7172011-03-31 21:26:24 +0000703 if (strlen(GrShaderPrecision()) > 1) {
704 strings[stringCnt] = GrShaderPrecision();
705 lengths[stringCnt] = strlen(GrShaderPrecision());
706 ++stringCnt;
707 }
bsalomon@google.comfc296292011-05-06 13:53:47 +0000708 if (segments.fFSUnis.size()) {
709 strings[stringCnt] = segments.fFSUnis.c_str();
710 lengths[stringCnt] = segments.fFSUnis.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000711 ++stringCnt;
712 }
bsalomon@google.comfc296292011-05-06 13:53:47 +0000713 if (segments.fVaryings.size()) {
714 strings[stringCnt] = segments.fVaryings.c_str();
715 lengths[stringCnt] = segments.fVaryings.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000716 ++stringCnt;
717 }
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000718 if (segments.fFSOutputs.size()) {
719 strings[stringCnt] = segments.fFSOutputs.c_str();
720 lengths[stringCnt] = segments.fFSOutputs.size();
721 ++stringCnt;
722 }
senorblanco@chromium.org129b8e32011-06-15 17:52:09 +0000723 if (segments.fFSFunctions.size()) {
724 strings[stringCnt] = segments.fFSFunctions.c_str();
725 lengths[stringCnt] = segments.fFSFunctions.size();
726 ++stringCnt;
727 }
junov@google.comf93e7172011-03-31 21:26:24 +0000728
bsalomon@google.comfc296292011-05-06 13:53:47 +0000729 GrAssert(segments.fFSCode.size());
730 strings[stringCnt] = segments.fFSCode.c_str();
731 lengths[stringCnt] = segments.fFSCode.size();
junov@google.comf93e7172011-03-31 21:26:24 +0000732 ++stringCnt;
733
734#if PRINT_SHADERS
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000735 GrPrintf(segments.fHeader.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000736 GrPrintf(GrShaderPrecision());
bsalomon@google.comfc296292011-05-06 13:53:47 +0000737 GrPrintf(segments.fFSUnis.c_str());
738 GrPrintf(segments.fVaryings.c_str());
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000739 GrPrintf(segments.fFSOutputs.c_str());
senorblanco@chromium.org129b8e32011-06-15 17:52:09 +0000740 GrPrintf(segments.fFSFunctions.c_str());
bsalomon@google.comfc296292011-05-06 13:53:47 +0000741 GrPrintf(segments.fFSCode.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000742 GrPrintf("\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000743#endif
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000744 GrAssert(stringCnt <= MAX_STRINGS);
junov@google.comf93e7172011-03-31 21:26:24 +0000745 programData->fFShaderID = CompileShader(GR_GL_FRAGMENT_SHADER,
746 stringCnt,
747 strings,
748 lengths);
749
bsalomon@google.com91961302011-05-09 18:39:58 +0000750 if (!programData->fFShaderID) {
751 return false;
junov@google.comf93e7172011-03-31 21:26:24 +0000752 }
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000753
bsalomon@google.com91961302011-05-09 18:39:58 +0000754 return true;
junov@google.comf93e7172011-03-31 21:26:24 +0000755}
756
757GrGLuint GrGLProgram::CompileShader(GrGLenum type,
758 int stringCnt,
759 const char** strings,
760 int* stringLengths) {
761 GrGLuint shader = GR_GL(CreateShader(type));
762 if (0 == shader) {
763 return 0;
764 }
765
766 GrGLint compiled = GR_GL_INIT_ZERO;
767 GR_GL(ShaderSource(shader, stringCnt, strings, stringLengths));
768 GR_GL(CompileShader(shader));
769 GR_GL(GetShaderiv(shader, GR_GL_COMPILE_STATUS, &compiled));
770
771 if (!compiled) {
772 GrGLint infoLen = GR_GL_INIT_ZERO;
773 GR_GL(GetShaderiv(shader, GR_GL_INFO_LOG_LENGTH, &infoLen));
774 GrAutoMalloc log(sizeof(char)*(infoLen+1)); // outside if for debugger
775 if (infoLen > 0) {
776 GR_GL(GetShaderInfoLog(shader, infoLen+1, NULL, (char*)log.get()));
777 for (int i = 0; i < stringCnt; ++i) {
778 if (NULL == stringLengths || stringLengths[i] < 0) {
779 GrPrintf(strings[i]);
780 } else {
781 GrPrintf("%.*s", stringLengths[i], strings[i]);
782 }
783 }
784 GrPrintf("\n%s", log.get());
785 }
786 GrAssert(!"Shader compilation failed!");
787 GR_GL(DeleteShader(shader));
788 return 0;
789 }
790 return shader;
791}
792
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000793bool GrGLProgram::bindOutputsAttribsAndLinkProgram(
794 GrStringBuilder texCoordAttrNames[],
795 bool bindColorOut,
tomhudson@google.com0d831722011-06-02 15:37:14 +0000796 bool bindDualSrcOut,
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000797 CachedData* programData) const {
bsalomon@google.com91961302011-05-09 18:39:58 +0000798 programData->fProgramID = GR_GL(CreateProgram());
799 if (!programData->fProgramID) {
800 return false;
801 }
802 const GrGLint& progID = programData->fProgramID;
803
804 GR_GL(AttachShader(progID, programData->fVShaderID));
805 GR_GL(AttachShader(progID, programData->fFShaderID));
806
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000807 if (bindColorOut) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000808 GR_GL(BindFragDataLocationIndexed(programData->fProgramID,
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000809 0, 0, declared_color_output_name()));
810 }
811 if (bindDualSrcOut) {
812 GR_GL(BindFragDataLocationIndexed(programData->fProgramID,
813 0, 1, dual_source_output_name()));
814 }
815
bsalomon@google.com91961302011-05-09 18:39:58 +0000816 // Bind the attrib locations to same values for all shaders
817 GR_GL(BindAttribLocation(progID, PositionAttributeIdx(), POS_ATTR_NAME));
818 for (int t = 0; t < GrDrawTarget::kMaxTexCoords; ++t) {
819 if (texCoordAttrNames[t].size()) {
820 GR_GL(BindAttribLocation(progID,
821 TexCoordAttributeIdx(t),
822 texCoordAttrNames[t].c_str()));
823 }
824 }
825
bsalomon@google.com91961302011-05-09 18:39:58 +0000826 if (kSetAsAttribute == programData->fUniLocations.fViewMatrixUni) {
827 GR_GL(BindAttribLocation(progID,
828 ViewMatrixAttributeIdx(),
829 VIEW_MATRIX_NAME));
830 }
831
832 for (int s = 0; s < GrDrawTarget::kNumStages; ++s) {
bsalomon@google.com72b4fcb2011-05-09 20:47:34 +0000833 const StageUniLocations& unis = programData->fUniLocations.fStages[s];
834 if (kSetAsAttribute == unis.fTextureMatrixUni) {
bsalomon@google.com91961302011-05-09 18:39:58 +0000835 GrStringBuilder matName;
836 tex_matrix_name(s, &matName);
837 GR_GL(BindAttribLocation(progID,
838 TextureMatrixAttributeIdx(s),
839 matName.c_str()));
840 }
841 }
842
bsalomon@google.com91961302011-05-09 18:39:58 +0000843 GR_GL(BindAttribLocation(progID, ColorAttributeIdx(), COL_ATTR_NAME));
844
845 GR_GL(LinkProgram(progID));
846
847 GrGLint linked = GR_GL_INIT_ZERO;
848 GR_GL(GetProgramiv(progID, GR_GL_LINK_STATUS, &linked));
849 if (!linked) {
850 GrGLint infoLen = GR_GL_INIT_ZERO;
851 GR_GL(GetProgramiv(progID, GR_GL_INFO_LOG_LENGTH, &infoLen));
852 GrAutoMalloc log(sizeof(char)*(infoLen+1)); // outside if for debugger
853 if (infoLen > 0) {
854 GR_GL(GetProgramInfoLog(progID,
855 infoLen+1,
856 NULL,
857 (char*)log.get()));
858 GrPrintf((char*)log.get());
859 }
860 GrAssert(!"Error linking program");
861 GR_GL(DeleteProgram(progID));
862 programData->fProgramID = 0;
863 return false;
864 }
865 return true;
866}
867
868void GrGLProgram::getUniformLocationsAndInitCache(CachedData* programData) const {
869 const GrGLint& progID = programData->fProgramID;
870
871 if (kUseUniform == programData->fUniLocations.fViewMatrixUni) {
872 programData->fUniLocations.fViewMatrixUni =
873 GR_GL(GetUniformLocation(progID, VIEW_MATRIX_NAME));
874 GrAssert(kUnusedUniform != programData->fUniLocations.fViewMatrixUni);
875 }
876 if (kUseUniform == programData->fUniLocations.fColorUni) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000877 programData->fUniLocations.fColorUni =
bsalomon@google.com91961302011-05-09 18:39:58 +0000878 GR_GL(GetUniformLocation(progID, COL_UNI_NAME));
879 GrAssert(kUnusedUniform != programData->fUniLocations.fColorUni);
880 }
Scroggo97c88c22011-05-11 14:05:25 +0000881 if (kUseUniform == programData->fUniLocations.fColorFilterUni) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000882 programData->fUniLocations.fColorFilterUni =
Scroggo97c88c22011-05-11 14:05:25 +0000883 GR_GL(GetUniformLocation(progID, COL_FILTER_UNI_NAME));
884 GrAssert(kUnusedUniform != programData->fUniLocations.fColorFilterUni);
885 }
bsalomon@google.com91961302011-05-09 18:39:58 +0000886
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000887 if (kUseUniform == programData->fUniLocations.fEdgesUni) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000888 programData->fUniLocations.fEdgesUni =
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +0000889 GR_GL(GetUniformLocation(progID, EDGES_UNI_NAME));
890 GrAssert(kUnusedUniform != programData->fUniLocations.fEdgesUni);
891 } else {
892 programData->fUniLocations.fEdgesUni = kUnusedUniform;
893 }
894
bsalomon@google.com91961302011-05-09 18:39:58 +0000895 for (int s = 0; s < GrDrawTarget::kNumStages; ++s) {
896 StageUniLocations& locations = programData->fUniLocations.fStages[s];
tomhudson@google.com0d831722011-06-02 15:37:14 +0000897 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.com91961302011-05-09 18:39:58 +0000898 if (kUseUniform == locations.fTextureMatrixUni) {
899 GrStringBuilder texMName;
900 tex_matrix_name(s, &texMName);
901 locations.fTextureMatrixUni = GR_GL(GetUniformLocation(
902 progID,
903 texMName.c_str()));
904 GrAssert(kUnusedUniform != locations.fTextureMatrixUni);
905 }
906
907 if (kUseUniform == locations.fSamplerUni) {
908 GrStringBuilder samplerName;
909 sampler_name(s, &samplerName);
910 locations.fSamplerUni = GR_GL(GetUniformLocation(
911 progID,
912 samplerName.c_str()));
913 GrAssert(kUnusedUniform != locations.fSamplerUni);
914 }
915
916 if (kUseUniform == locations.fNormalizedTexelSizeUni) {
917 GrStringBuilder texelSizeName;
918 normalized_texel_size_name(s, &texelSizeName);
tomhudson@google.com0d831722011-06-02 15:37:14 +0000919 locations.fNormalizedTexelSizeUni =
bsalomon@google.com91961302011-05-09 18:39:58 +0000920 GR_GL(GetUniformLocation(progID, texelSizeName.c_str()));
921 GrAssert(kUnusedUniform != locations.fNormalizedTexelSizeUni);
922 }
923
924 if (kUseUniform == locations.fRadial2Uni) {
925 GrStringBuilder radial2ParamName;
926 radial2_param_name(s, &radial2ParamName);
927 locations.fRadial2Uni = GR_GL(GetUniformLocation(
928 progID,
929 radial2ParamName.c_str()));
930 GrAssert(kUnusedUniform != locations.fRadial2Uni);
931 }
junov@google.com6acc9b32011-05-16 18:32:07 +0000932
933 if (kUseUniform == locations.fTexDomUni) {
934 GrStringBuilder texDomName;
935 tex_domain_name(s, &texDomName);
936 locations.fTexDomUni = GR_GL(GetUniformLocation(
937 progID,
938 texDomName.c_str()));
939 GrAssert(kUnusedUniform != locations.fTexDomUni);
940 }
bsalomon@google.com91961302011-05-09 18:39:58 +0000941 }
942 }
943 GR_GL(UseProgram(progID));
944
945 // init sampler unis and set bogus values for state tracking
946 for (int s = 0; s < GrDrawTarget::kNumStages; ++s) {
947 if (kUnusedUniform != programData->fUniLocations.fStages[s].fSamplerUni) {
948 GR_GL(Uniform1i(programData->fUniLocations.fStages[s].fSamplerUni, s));
949 }
950 programData->fTextureMatrices[s] = GrMatrix::InvalidMatrix();
951 programData->fRadial2CenterX1[s] = GR_ScalarMax;
952 programData->fRadial2Radius0[s] = -GR_ScalarMax;
953 programData->fTextureWidth[s] = -1;
954 programData->fTextureHeight[s] = -1;
955 }
956 programData->fViewMatrix = GrMatrix::InvalidMatrix();
957 programData->fColor = GrColor_ILLEGAL;
Scroggo97c88c22011-05-11 14:05:25 +0000958 programData->fColorFilterColor = GrColor_ILLEGAL;
bsalomon@google.com91961302011-05-09 18:39:58 +0000959}
960
junov@google.comf93e7172011-03-31 21:26:24 +0000961//============================================================================
962// Stage code generation
963//============================================================================
964
965void GrGLProgram::genStageCode(int stageNum,
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000966 const GrGLProgram::ProgramDesc::StageDesc& desc,
967 const char* fsInColor, // NULL means no incoming color
968 const char* fsOutColor,
969 const char* vsInCoord,
970 ShaderCodeSegments* segments,
971 StageUniLocations* locations) const {
junov@google.comf93e7172011-03-31 21:26:24 +0000972
973 GrAssert(stageNum >= 0 && stageNum <= 9);
974
bsalomon@google.com91961302011-05-09 18:39:58 +0000975 GrStringBuilder varyingName;
junov@google.comf93e7172011-03-31 21:26:24 +0000976 stage_varying_name(stageNum, &varyingName);
977
978 // First decide how many coords are needed to access the texture
979 // Right now it's always 2 but we could start using 1D textures for
980 // gradients.
981 static const int coordDims = 2;
982 int varyingDims;
983 /// Vertex Shader Stuff
984
985 // decide whether we need a matrix to transform texture coords
986 // and whether the varying needs a perspective coord.
bsalomon@google.com91961302011-05-09 18:39:58 +0000987 GrStringBuilder texMName;
junov@google.comf93e7172011-03-31 21:26:24 +0000988 tex_matrix_name(stageNum, &texMName);
989 if (desc.fOptFlags & ProgramDesc::StageDesc::kIdentityMatrix_OptFlagBit) {
990 varyingDims = coordDims;
991 } else {
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000992 #if GR_GL_ATTRIBUTE_MATRICES
bsalomon@google.com91961302011-05-09 18:39:58 +0000993 segments->fVSAttrs.appendf("attribute mat3 %s;\n", texMName.c_str());
994 locations->fTextureMatrixUni = kSetAsAttribute;
junov@google.comf93e7172011-03-31 21:26:24 +0000995 #else
bsalomon@google.com91961302011-05-09 18:39:58 +0000996 segments->fVSUnis.appendf("uniform mat3 %s;\n", texMName.c_str());
997 locations->fTextureMatrixUni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +0000998 #endif
999 if (desc.fOptFlags & ProgramDesc::StageDesc::kNoPerspective_OptFlagBit) {
1000 varyingDims = coordDims;
1001 } else {
1002 varyingDims = coordDims + 1;
1003 }
1004 }
1005
bsalomon@google.com91961302011-05-09 18:39:58 +00001006 GrStringBuilder samplerName;
junov@google.comf93e7172011-03-31 21:26:24 +00001007 sampler_name(stageNum, &samplerName);
bsalomon@google.com91961302011-05-09 18:39:58 +00001008 segments->fFSUnis.appendf("uniform sampler2D %s;\n", samplerName.c_str());
1009 locations->fSamplerUni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +00001010
bsalomon@google.com91961302011-05-09 18:39:58 +00001011 GrStringBuilder texelSizeName;
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001012 if (ProgramDesc::StageDesc::k2x2_FetchMode == desc.fFetchMode) {
1013 normalized_texel_size_name(stageNum, &texelSizeName);
bsalomon@google.com91961302011-05-09 18:39:58 +00001014 segments->fFSUnis.appendf("uniform vec2 %s;\n", texelSizeName.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001015 }
1016
tomhudson@google.com0d831722011-06-02 15:37:14 +00001017 segments->fVaryings.appendf("varying %s %s;\n",
bsalomon@google.com91961302011-05-09 18:39:58 +00001018 float_vector_type(varyingDims), varyingName.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001019
1020 if (desc.fOptFlags & ProgramDesc::StageDesc::kIdentityMatrix_OptFlagBit) {
1021 GrAssert(varyingDims == coordDims);
bsalomon@google.com91961302011-05-09 18:39:58 +00001022 segments->fVSCode.appendf("\t%s = %s;\n", varyingName.c_str(), vsInCoord);
junov@google.comf93e7172011-03-31 21:26:24 +00001023 } else {
bsalomon@google.com91961302011-05-09 18:39:58 +00001024 // varying = texMatrix * texCoord
1025 segments->fVSCode.appendf("\t%s = (%s * vec3(%s, 1))%s;\n",
1026 varyingName.c_str(), texMName.c_str(),
1027 vsInCoord, vector_all_coords(varyingDims));
junov@google.comf93e7172011-03-31 21:26:24 +00001028 }
1029
bsalomon@google.com91961302011-05-09 18:39:58 +00001030 GrStringBuilder radial2ParamsName;
junov@google.comf93e7172011-03-31 21:26:24 +00001031 radial2_param_name(stageNum, &radial2ParamsName);
1032 // for radial grads without perspective we can pass the linear
1033 // part of the quadratic as a varying.
bsalomon@google.com91961302011-05-09 18:39:58 +00001034 GrStringBuilder radial2VaryingName;
junov@google.comf93e7172011-03-31 21:26:24 +00001035 radial2_varying_name(stageNum, &radial2VaryingName);
1036
1037 if (ProgramDesc::StageDesc::kRadial2Gradient_CoordMapping == desc.fCoordMapping) {
1038
tomhudson@google.com0d831722011-06-02 15:37:14 +00001039 segments->fVSUnis.appendf("uniform %s float %s[6];\n",
bsalomon@google.com91961302011-05-09 18:39:58 +00001040 GrPrecision(), radial2ParamsName.c_str());
tomhudson@google.com0d831722011-06-02 15:37:14 +00001041 segments->fFSUnis.appendf("uniform float %s[6];\n",
bsalomon@google.com91961302011-05-09 18:39:58 +00001042 radial2ParamsName.c_str());
1043 locations->fRadial2Uni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +00001044
1045 // if there is perspective we don't interpolate this
1046 if (varyingDims == coordDims) {
1047 GrAssert(2 == coordDims);
bsalomon@google.com91961302011-05-09 18:39:58 +00001048 segments->fVaryings.appendf("varying float %s;\n", radial2VaryingName.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001049
bsalomon@google.com91961302011-05-09 18:39:58 +00001050 // r2Var = 2 * (r2Parm[2] * varCoord.x - r2Param[3])
1051 segments->fVSCode.appendf("\t%s = 2.0 *(%s[2] * %s.x - %s[3]);\n",
1052 radial2VaryingName.c_str(), radial2ParamsName.c_str(),
1053 varyingName.c_str(), radial2ParamsName.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001054 }
1055 }
1056
1057 /// Fragment Shader Stuff
bsalomon@google.com91961302011-05-09 18:39:58 +00001058 GrStringBuilder fsCoordName;
junov@google.comf93e7172011-03-31 21:26:24 +00001059 // function used to access the shader, may be made projective
bsalomon@google.com91961302011-05-09 18:39:58 +00001060 GrStringBuilder texFunc("texture2D");
junov@google.comf93e7172011-03-31 21:26:24 +00001061 if (desc.fOptFlags & (ProgramDesc::StageDesc::kIdentityMatrix_OptFlagBit |
1062 ProgramDesc::StageDesc::kNoPerspective_OptFlagBit)) {
1063 GrAssert(varyingDims == coordDims);
1064 fsCoordName = varyingName;
1065 } else {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001066 // if we have to do some special op on the varyings to get
junov@google.comf93e7172011-03-31 21:26:24 +00001067 // our final tex coords then when in perspective we have to
bsalomon@google.com91961302011-05-09 18:39:58 +00001068 // do an explicit divide. Otherwise, we can use a Proj func.
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001069 if (ProgramDesc::StageDesc::kIdentity_CoordMapping == desc.fCoordMapping &&
1070 ProgramDesc::StageDesc::kSingle_FetchMode == desc.fFetchMode) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001071 texFunc.append("Proj");
junov@google.comf93e7172011-03-31 21:26:24 +00001072 fsCoordName = varyingName;
1073 } else {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001074 fsCoordName = "inCoord";
bsalomon@google.comfc296292011-05-06 13:53:47 +00001075 fsCoordName.appendS32(stageNum);
bsalomon@google.com91961302011-05-09 18:39:58 +00001076 segments->fFSCode.appendf("\t%s %s = %s%s / %s%s;\n",
1077 float_vector_type(coordDims),
1078 fsCoordName.c_str(),
1079 varyingName.c_str(),
1080 vector_nonhomog_coords(varyingDims),
1081 varyingName.c_str(),
1082 vector_homog_coord(varyingDims));
junov@google.comf93e7172011-03-31 21:26:24 +00001083 }
1084 }
1085
bsalomon@google.comfc296292011-05-06 13:53:47 +00001086 GrStringBuilder sampleCoords;
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001087 bool complexCoord = false;
junov@google.comf93e7172011-03-31 21:26:24 +00001088 switch (desc.fCoordMapping) {
1089 case ProgramDesc::StageDesc::kIdentity_CoordMapping:
1090 sampleCoords = fsCoordName;
1091 break;
1092 case ProgramDesc::StageDesc::kSweepGradient_CoordMapping:
bsalomon@google.com91961302011-05-09 18:39:58 +00001093 sampleCoords.printf("vec2(atan(- %s.y, - %s.x) * 0.1591549430918 + 0.5, 0.5)", fsCoordName.c_str(), fsCoordName.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001094 complexCoord = true;
junov@google.comf93e7172011-03-31 21:26:24 +00001095 break;
1096 case ProgramDesc::StageDesc::kRadialGradient_CoordMapping:
bsalomon@google.com91961302011-05-09 18:39:58 +00001097 sampleCoords.printf("vec2(length(%s.xy), 0.5)", fsCoordName.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001098 complexCoord = true;
junov@google.comf93e7172011-03-31 21:26:24 +00001099 break;
1100 case ProgramDesc::StageDesc::kRadial2Gradient_CoordMapping: {
bsalomon@google.com91961302011-05-09 18:39:58 +00001101 GrStringBuilder cName("c");
1102 GrStringBuilder ac4Name("ac4");
1103 GrStringBuilder rootName("root");
junov@google.comf93e7172011-03-31 21:26:24 +00001104
bsalomon@google.comfc296292011-05-06 13:53:47 +00001105 cName.appendS32(stageNum);
1106 ac4Name.appendS32(stageNum);
1107 rootName.appendS32(stageNum);
junov@google.comf93e7172011-03-31 21:26:24 +00001108
bsalomon@google.com91961302011-05-09 18:39:58 +00001109 // if we were able to interpolate the linear component bVar is the varying
1110 // otherwise compute it
1111 GrStringBuilder bVar;
junov@google.comf93e7172011-03-31 21:26:24 +00001112 if (coordDims == varyingDims) {
1113 bVar = radial2VaryingName;
1114 GrAssert(2 == varyingDims);
1115 } else {
1116 GrAssert(3 == varyingDims);
1117 bVar = "b";
bsalomon@google.comfc296292011-05-06 13:53:47 +00001118 bVar.appendS32(stageNum);
bsalomon@google.com91961302011-05-09 18:39:58 +00001119 segments->fFSCode.appendf("\tfloat %s = 2.0 * (%s[2] * %s.x - %s[3]);\n",
1120 bVar.c_str(), radial2ParamsName.c_str(),
1121 fsCoordName.c_str(), radial2ParamsName.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001122 }
1123
bsalomon@google.com91961302011-05-09 18:39:58 +00001124 // c = (x^2)+(y^2) - params[4]
1125 segments->fFSCode.appendf("\tfloat %s = dot(%s, %s) - %s[4];\n",
1126 cName.c_str(), fsCoordName.c_str(),
1127 fsCoordName.c_str(),
1128 radial2ParamsName.c_str());
1129 // ac4 = 4.0 * params[0] * c
1130 segments->fFSCode.appendf("\tfloat %s = %s[0] * 4.0 * %s;\n",
1131 ac4Name.c_str(), radial2ParamsName.c_str(),
1132 cName.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001133
bsalomon@google.com91961302011-05-09 18:39:58 +00001134 // root = sqrt(b^2-4ac)
1135 // (abs to avoid exception due to fp precision)
1136 segments->fFSCode.appendf("\tfloat %s = sqrt(abs(%s*%s - %s));\n",
1137 rootName.c_str(), bVar.c_str(), bVar.c_str(),
1138 ac4Name.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001139
bsalomon@google.com91961302011-05-09 18:39:58 +00001140 // x coord is: (-b + params[5] * sqrt(b^2-4ac)) * params[1]
1141 // y coord is 0.5 (texture is effectively 1D)
1142 sampleCoords.printf("vec2((-%s + %s[5] * %s) * %s[1], 0.5)",
1143 bVar.c_str(), radial2ParamsName.c_str(),
1144 rootName.c_str(), radial2ParamsName.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001145 complexCoord = true;
junov@google.comf93e7172011-03-31 21:26:24 +00001146 break;}
1147 };
1148
bsalomon@google.com91961302011-05-09 18:39:58 +00001149 const char* smear;
1150 if (desc.fModulation == ProgramDesc::StageDesc::kAlpha_Modulation) {
1151 smear = ".aaaa";
1152 } else {
1153 smear = "";
1154 }
1155 GrStringBuilder modulate;
1156 if (NULL != fsInColor) {
1157 modulate.printf(" * %s", fsInColor);
1158 }
1159
tomhudson@google.com0d831722011-06-02 15:37:14 +00001160 if (desc.fOptFlags &
junov@google.com6acc9b32011-05-16 18:32:07 +00001161 ProgramDesc::StageDesc::kCustomTextureDomain_OptFlagBit) {
1162 GrStringBuilder texDomainName;
1163 tex_domain_name(stageNum, &texDomainName);
tomhudson@google.com0d831722011-06-02 15:37:14 +00001164 segments->fFSUnis.appendf("uniform %s %s;\n",
junov@google.com6acc9b32011-05-16 18:32:07 +00001165 float_vector_type(4),
1166 texDomainName.c_str());
1167 GrStringBuilder coordVar("clampCoord");
1168 segments->fFSCode.appendf("\t%s %s = clamp(%s, %s.xy, %s.zw);\n",
1169 float_vector_type(coordDims),
1170 coordVar.c_str(),
1171 sampleCoords.c_str(),
1172 texDomainName.c_str(),
1173 texDomainName.c_str());
1174 sampleCoords = coordVar;
1175 locations->fTexDomUni = kUseUniform;
1176 }
1177
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001178 if (ProgramDesc::StageDesc::k2x2_FetchMode == desc.fFetchMode) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001179 locations->fNormalizedTexelSizeUni = kUseUniform;
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001180 if (complexCoord) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001181 // assign the coord to a var rather than compute 4x.
1182 GrStringBuilder coordVar("tCoord");
bsalomon@google.comfc296292011-05-06 13:53:47 +00001183 coordVar.appendS32(stageNum);
bsalomon@google.com91961302011-05-09 18:39:58 +00001184 segments->fFSCode.appendf("\t%s %s = %s;\n",
1185 float_vector_type(coordDims),
1186 coordVar.c_str(), sampleCoords.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001187 sampleCoords = coordVar;
1188 }
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001189 GrAssert(2 == coordDims);
bsalomon@google.com91961302011-05-09 18:39:58 +00001190 GrStringBuilder accumVar("accum");
1191 accumVar.appendS32(stageNum);
1192 segments->fFSCode.appendf("\tvec4 %s = %s(%s, %s + vec2(-%s.x,-%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName.c_str(), sampleCoords.c_str(), texelSizeName.c_str(), texelSizeName.c_str(), smear);
1193 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(+%s.x,-%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName.c_str(), sampleCoords.c_str(), texelSizeName.c_str(), texelSizeName.c_str(), smear);
1194 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(-%s.x,+%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName.c_str(), sampleCoords.c_str(), texelSizeName.c_str(), texelSizeName.c_str(), smear);
1195 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(+%s.x,+%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName.c_str(), sampleCoords.c_str(), texelSizeName.c_str(), texelSizeName.c_str(), smear);
1196 segments->fFSCode.appendf("\t%s = .25 * %s%s;\n", fsOutColor, accumVar.c_str(), modulate.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001197 } else {
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001198 segments->fFSCode.appendf("\t%s = %s(%s, %s)%s%s;\n", fsOutColor, texFunc.c_str(), samplerName.c_str(), sampleCoords.c_str(), smear, modulate.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001199 }
junov@google.comf93e7172011-03-31 21:26:24 +00001200}