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epoger@google.comec3ed6a2011-07-28 14:26:00 +00001
junov@google.comf93e7172011-03-31 21:26:24 +00002/*
epoger@google.comec3ed6a2011-07-28 14:26:00 +00003 * Copyright 2011 Google Inc.
4 *
5 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file.
junov@google.comf93e7172011-03-31 21:26:24 +00007 */
8
epoger@google.comec3ed6a2011-07-28 14:26:00 +00009
junov@google.comf93e7172011-03-31 21:26:24 +000010#include "GrGLProgram.h"
11
bsalomon@google.com4fa66942011-09-20 19:06:12 +000012#include "GrAllocator.h"
13#include "GrGLShaderVar.h"
tomhudson@google.com0c8d93a2011-07-01 17:08:26 +000014#include "SkTrace.h"
Scroggo97c88c22011-05-11 14:05:25 +000015#include "SkXfermode.h"
16
junov@google.comf93e7172011-03-31 21:26:24 +000017namespace {
18
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +000019enum {
20 /// Used to mark a StageUniLocation field that should be bound
21 /// to a uniform during getUniformLocationsAndInitCache().
22 kUseUniform = 2000
23};
24
25
bsalomon@google.com0b77d682011-08-19 13:28:54 +000026const char* GrPrecision(const GrGLInterface* gl) {
27 if (gl->supportsES()) {
junov@google.comf93e7172011-03-31 21:26:24 +000028 return "mediump";
29 } else {
bsalomon@google.com91961302011-05-09 18:39:58 +000030 return " ";
junov@google.comf93e7172011-03-31 21:26:24 +000031 }
32}
33
bsalomon@google.com0b77d682011-08-19 13:28:54 +000034const char* GrShaderPrecision(const GrGLInterface* gl) {
35 if (gl->supportsES()) {
junov@google.comf93e7172011-03-31 21:26:24 +000036 return "precision mediump float;\n";
37 } else {
38 return "";
39 }
40}
41
42} // namespace
43
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +000044#define PRINT_SHADERS 0
45
bsalomon@google.com4fa66942011-09-20 19:06:12 +000046typedef GrTAllocator<GrGLShaderVar> VarArray;
47
48// number of each input/output type in a single allocation block
49static const int gVarsPerBlock = 8;
50// except FS outputs where we expect 2 at most.
51static const int gMaxFSOutputs = 2;
52
53struct ShaderCodeSegments {
54 ShaderCodeSegments()
55 : fVSUnis(gVarsPerBlock)
56 , fVSAttrs(gVarsPerBlock)
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000057 , fVSOutputs(gVarsPerBlock)
58 , fGSInputs(gVarsPerBlock)
59 , fGSOutputs(gVarsPerBlock)
60 , fFSInputs(gVarsPerBlock)
bsalomon@google.com4fa66942011-09-20 19:06:12 +000061 , fFSUnis(gVarsPerBlock)
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000062 , fFSOutputs(gMaxFSOutputs)
63 , fUsesGS(false) {}
bsalomon@google.com4fa66942011-09-20 19:06:12 +000064 GrStringBuilder fHeader; // VS+FS, GLSL version, etc
65 VarArray fVSUnis;
66 VarArray fVSAttrs;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000067 VarArray fVSOutputs;
68 VarArray fGSInputs;
69 VarArray fGSOutputs;
70 VarArray fFSInputs;
71 GrStringBuilder fGSHeader; // layout qualifiers specific to GS
bsalomon@google.com4fa66942011-09-20 19:06:12 +000072 VarArray fFSUnis;
73 VarArray fFSOutputs;
74 GrStringBuilder fFSFunctions;
75 GrStringBuilder fVSCode;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000076 GrStringBuilder fGSCode;
bsalomon@google.com4fa66942011-09-20 19:06:12 +000077 GrStringBuilder fFSCode;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +000078
79 bool fUsesGS;
bsalomon@google.com4fa66942011-09-20 19:06:12 +000080};
81
bsalomon@google.com85b505b2011-11-07 14:56:51 +000082typedef GrGLProgram::ProgramDesc::StageDesc StageDesc;
bsalomon@google.com4fa66942011-09-20 19:06:12 +000083
bsalomon@google.com4be283f2011-04-19 21:15:09 +000084#if GR_GL_ATTRIBUTE_MATRICES
junov@google.comf93e7172011-03-31 21:26:24 +000085 #define VIEW_MATRIX_NAME "aViewM"
86#else
87 #define VIEW_MATRIX_NAME "uViewM"
88#endif
89
90#define POS_ATTR_NAME "aPosition"
91#define COL_ATTR_NAME "aColor"
bsalomon@google.coma3108262011-10-10 14:08:47 +000092#define COV_ATTR_NAME "aCoverage"
bsalomon@google.comaeb21602011-08-30 18:13:44 +000093#define EDGE_ATTR_NAME "aEdge"
bsalomon@google.com4be283f2011-04-19 21:15:09 +000094#define COL_UNI_NAME "uColor"
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +000095#define EDGES_UNI_NAME "uEdges"
Scroggo97c88c22011-05-11 14:05:25 +000096#define COL_FILTER_UNI_NAME "uColorFilter"
junov@google.comf93e7172011-03-31 21:26:24 +000097
bsalomon@google.com4fa66942011-09-20 19:06:12 +000098namespace {
99inline void tex_attr_name(int coordIdx, GrStringBuilder* s) {
junov@google.comf93e7172011-03-31 21:26:24 +0000100 *s = "aTexCoord";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000101 s->appendS32(coordIdx);
junov@google.comf93e7172011-03-31 21:26:24 +0000102}
103
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000104inline GrGLShaderVar::Type float_vector_type(int count) {
105 GR_STATIC_ASSERT(GrGLShaderVar::kFloat_Type == 0);
106 GR_STATIC_ASSERT(GrGLShaderVar::kVec2f_Type == 1);
107 GR_STATIC_ASSERT(GrGLShaderVar::kVec3f_Type == 2);
108 GR_STATIC_ASSERT(GrGLShaderVar::kVec4f_Type == 3);
109 GrAssert(count > 0 && count <= 4);
110 return (GrGLShaderVar::Type)(count - 1);
junov@google.comf93e7172011-03-31 21:26:24 +0000111}
112
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000113inline const char* float_vector_type_str(int count) {
114 return GrGLShaderVar::TypeString(float_vector_type(count));
115}
116
117inline const char* vector_homog_coord(int count) {
junov@google.comf93e7172011-03-31 21:26:24 +0000118 static const char* HOMOGS[] = {"ERROR", "", ".y", ".z", ".w"};
119 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(HOMOGS));
120 return HOMOGS[count];
121}
122
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000123inline const char* vector_nonhomog_coords(int count) {
junov@google.comf93e7172011-03-31 21:26:24 +0000124 static const char* NONHOMOGS[] = {"ERROR", "", ".x", ".xy", ".xyz"};
125 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(NONHOMOGS));
126 return NONHOMOGS[count];
127}
128
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000129inline const char* vector_all_coords(int count) {
junov@google.comf93e7172011-03-31 21:26:24 +0000130 static const char* ALL[] = {"ERROR", "", ".xy", ".xyz", ".xyzw"};
131 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ALL));
132 return ALL[count];
133}
134
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000135inline const char* all_ones_vec(int count) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000136 static const char* ONESVEC[] = {"ERROR", "1.0", "vec2(1,1)",
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000137 "vec3(1,1,1)", "vec4(1,1,1,1)"};
138 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ONESVEC));
139 return ONESVEC[count];
140}
141
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000142inline const char* all_zeros_vec(int count) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000143 static const char* ZEROSVEC[] = {"ERROR", "0.0", "vec2(0,0)",
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000144 "vec3(0,0,0)", "vec4(0,0,0,0)"};
145 GrAssert(count >= 1 && count < (int)GR_ARRAY_COUNT(ZEROSVEC));
146 return ZEROSVEC[count];
147}
148
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000149inline const char* declared_color_output_name() { return "fsColorOut"; }
150inline const char* dual_source_output_name() { return "dualSourceOut"; }
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000151
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000152inline void tex_matrix_name(int stage, GrStringBuilder* s) {
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000153#if GR_GL_ATTRIBUTE_MATRICES
junov@google.comf93e7172011-03-31 21:26:24 +0000154 *s = "aTexM";
155#else
156 *s = "uTexM";
157#endif
bsalomon@google.comfc296292011-05-06 13:53:47 +0000158 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000159}
160
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000161inline void normalized_texel_size_name(int stage, GrStringBuilder* s) {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000162 *s = "uTexelSize";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000163 s->appendS32(stage);
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000164}
165
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000166inline void sampler_name(int stage, GrStringBuilder* s) {
junov@google.comf93e7172011-03-31 21:26:24 +0000167 *s = "uSampler";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000168 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000169}
170
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000171inline void radial2_param_name(int stage, GrStringBuilder* s) {
junov@google.comf93e7172011-03-31 21:26:24 +0000172 *s = "uRadial2Params";
bsalomon@google.comfc296292011-05-06 13:53:47 +0000173 s->appendS32(stage);
junov@google.comf93e7172011-03-31 21:26:24 +0000174}
175
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000176inline void convolve_param_names(int stage, GrStringBuilder* k, GrStringBuilder* i) {
senorblanco@chromium.org027de5f2011-07-08 18:03:33 +0000177 *k = "uKernel";
178 k->appendS32(stage);
179 *i = "uImageIncrement";
180 i->appendS32(stage);
181}
182
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000183inline void tex_domain_name(int stage, GrStringBuilder* s) {
junov@google.com6acc9b32011-05-16 18:32:07 +0000184 *s = "uTexDom";
185 s->appendS32(stage);
186}
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000187}
junov@google.com6acc9b32011-05-16 18:32:07 +0000188
junov@google.comf93e7172011-03-31 21:26:24 +0000189GrGLProgram::GrGLProgram() {
junov@google.comf93e7172011-03-31 21:26:24 +0000190}
191
192GrGLProgram::~GrGLProgram() {
junov@google.comf93e7172011-03-31 21:26:24 +0000193}
194
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000195void GrGLProgram::overrideBlend(GrBlendCoeff* srcCoeff,
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000196 GrBlendCoeff* dstCoeff) const {
197 switch (fProgramDesc.fDualSrcOutput) {
198 case ProgramDesc::kNone_DualSrcOutput:
199 break;
200 // the prog will write a coverage value to the secondary
201 // output and the dst is blended by one minus that value.
202 case ProgramDesc::kCoverage_DualSrcOutput:
203 case ProgramDesc::kCoverageISA_DualSrcOutput:
204 case ProgramDesc::kCoverageISC_DualSrcOutput:
205 *dstCoeff = (GrBlendCoeff)GrGpu::kIS2C_BlendCoeff;
206 break;
207 default:
208 GrCrash("Unexpected dual source blend output");
209 break;
210 }
211}
212
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000213// assigns modulation of two vars to an output var
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000214// vars can be vec4s or floats (or one of each)
215// result is always vec4
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000216// if either var is "" then assign to the other var
217// if both are "" then assign all ones
218static inline void modulate_helper(const char* outputVar,
219 const char* var0,
220 const char* var1,
221 GrStringBuilder* code) {
222 GrAssert(NULL != outputVar);
223 GrAssert(NULL != var0);
224 GrAssert(NULL != var1);
225 GrAssert(NULL != code);
226
227 bool has0 = '\0' != *var0;
228 bool has1 = '\0' != *var1;
229
230 if (!has0 && !has1) {
231 code->appendf("\t%s = %s;\n", outputVar, all_ones_vec(4));
232 } else if (!has0) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000233 code->appendf("\t%s = vec4(%s);\n", outputVar, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000234 } else if (!has1) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000235 code->appendf("\t%s = vec4(%s);\n", outputVar, var0);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000236 } else {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000237 code->appendf("\t%s = vec4(%s * %s);\n", outputVar, var0, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000238 }
239}
240
241// assigns addition of two vars to an output var
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000242// vars can be vec4s or floats (or one of each)
243// result is always vec4
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000244// if either var is "" then assign to the other var
245// if both are "" then assign all zeros
246static inline void add_helper(const char* outputVar,
247 const char* var0,
248 const char* var1,
249 GrStringBuilder* code) {
250 GrAssert(NULL != outputVar);
251 GrAssert(NULL != var0);
252 GrAssert(NULL != var1);
253 GrAssert(NULL != code);
254
255 bool has0 = '\0' != *var0;
256 bool has1 = '\0' != *var1;
257
258 if (!has0 && !has1) {
259 code->appendf("\t%s = %s;\n", outputVar, all_zeros_vec(4));
260 } else if (!has0) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000261 code->appendf("\t%s = vec4(%s);\n", outputVar, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000262 } else if (!has1) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000263 code->appendf("\t%s = vec4(%s);\n", outputVar, var0);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000264 } else {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000265 code->appendf("\t%s = vec4(%s + %s);\n", outputVar, var0, var1);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000266 }
267}
268
269// given two blend coeffecients determine whether the src
270// and/or dst computation can be omitted.
271static inline void needBlendInputs(SkXfermode::Coeff srcCoeff,
272 SkXfermode::Coeff dstCoeff,
273 bool* needSrcValue,
274 bool* needDstValue) {
275 if (SkXfermode::kZero_Coeff == srcCoeff) {
276 switch (dstCoeff) {
277 // these all read the src
278 case SkXfermode::kSC_Coeff:
279 case SkXfermode::kISC_Coeff:
280 case SkXfermode::kSA_Coeff:
281 case SkXfermode::kISA_Coeff:
282 *needSrcValue = true;
283 break;
284 default:
285 *needSrcValue = false;
286 break;
287 }
288 } else {
289 *needSrcValue = true;
290 }
291 if (SkXfermode::kZero_Coeff == dstCoeff) {
292 switch (srcCoeff) {
293 // these all read the dst
294 case SkXfermode::kDC_Coeff:
295 case SkXfermode::kIDC_Coeff:
296 case SkXfermode::kDA_Coeff:
297 case SkXfermode::kIDA_Coeff:
298 *needDstValue = true;
299 break;
300 default:
301 *needDstValue = false;
302 break;
303 }
304 } else {
305 *needDstValue = true;
Scroggo97c88c22011-05-11 14:05:25 +0000306 }
307}
308
309/**
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000310 * Create a blend_coeff * value string to be used in shader code. Sets empty
311 * string if result is trivially zero.
312 */
313static void blendTermString(GrStringBuilder* str, SkXfermode::Coeff coeff,
314 const char* src, const char* dst,
315 const char* value) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000316 switch (coeff) {
317 case SkXfermode::kZero_Coeff: /** 0 */
318 *str = "";
319 break;
320 case SkXfermode::kOne_Coeff: /** 1 */
321 *str = value;
322 break;
323 case SkXfermode::kSC_Coeff:
324 str->printf("(%s * %s)", src, value);
325 break;
326 case SkXfermode::kISC_Coeff:
327 str->printf("((%s - %s) * %s)", all_ones_vec(4), src, value);
328 break;
329 case SkXfermode::kDC_Coeff:
330 str->printf("(%s * %s)", dst, value);
331 break;
332 case SkXfermode::kIDC_Coeff:
333 str->printf("((%s - %s) * %s)", all_ones_vec(4), dst, value);
334 break;
335 case SkXfermode::kSA_Coeff: /** src alpha */
336 str->printf("(%s.a * %s)", src, value);
337 break;
338 case SkXfermode::kISA_Coeff: /** inverse src alpha (i.e. 1 - sa) */
339 str->printf("((1.0 - %s.a) * %s)", src, value);
340 break;
341 case SkXfermode::kDA_Coeff: /** dst alpha */
342 str->printf("(%s.a * %s)", dst, value);
343 break;
344 case SkXfermode::kIDA_Coeff: /** inverse dst alpha (i.e. 1 - da) */
345 str->printf("((1.0 - %s.a) * %s)", dst, value);
346 break;
347 default:
348 GrCrash("Unexpected xfer coeff.");
349 break;
350 }
351}
352/**
Scroggo97c88c22011-05-11 14:05:25 +0000353 * Adds a line to the fragment shader code which modifies the color by
354 * the specified color filter.
355 */
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000356static void addColorFilter(GrStringBuilder* fsCode, const char * outputVar,
tomhudson@google.com0d3f1fb2011-06-01 19:27:31 +0000357 SkXfermode::Coeff uniformCoeff,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000358 SkXfermode::Coeff colorCoeff,
359 const char* inColor) {
360 GrStringBuilder colorStr, constStr;
361 blendTermString(&colorStr, colorCoeff, COL_FILTER_UNI_NAME,
362 inColor, inColor);
363 blendTermString(&constStr, uniformCoeff, COL_FILTER_UNI_NAME,
364 inColor, COL_FILTER_UNI_NAME);
365
366 add_helper(outputVar, colorStr.c_str(), constStr.c_str(), fsCode);
Scroggo97c88c22011-05-11 14:05:25 +0000367}
368
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000369namespace {
370
371const char* glsl_version_string(const GrGLInterface* gl,
372 GrGLProgram::GLSLVersion v) {
373 switch (v) {
bsalomon@google.com373a6632011-10-19 20:43:20 +0000374 case GrGLProgram::k110_GLSLVersion:
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000375 if (gl->supportsES()) {
376 // ES2s shader language is based on version 1.20 but is version
377 // 1.00 of the ES language.
378 return "#version 100\n";
379 } else {
bsalomon@google.com373a6632011-10-19 20:43:20 +0000380 return "#version 110\n";
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000381 }
382 case GrGLProgram::k130_GLSLVersion:
383 GrAssert(!gl->supportsES());
384 return "#version 130\n";
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000385 case GrGLProgram::k150_GLSLVersion:
386 GrAssert(!gl->supportsES());
387 return "#version 150\n";
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000388 default:
389 GrCrash("Unknown GL version.");
390 return ""; // suppress warning
391 }
392}
393
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000394// Adds a var that is computed in the VS and read in FS.
395// If there is a GS it will just pass it through.
396void append_varying(GrGLShaderVar::Type type,
397 const char* name,
398 ShaderCodeSegments* segments,
399 const char** vsOutName = NULL,
400 const char** fsInName = NULL) {
401 segments->fVSOutputs.push_back();
402 segments->fVSOutputs.back().setType(type);
403 segments->fVSOutputs.back().accessName()->printf("v%s", name);
404 if (vsOutName) {
405 *vsOutName = segments->fVSOutputs.back().getName().c_str();
406 }
407 // input to FS comes either from VS or GS
408 const GrStringBuilder* fsName;
409 if (segments->fUsesGS) {
410 // if we have a GS take each varying in as an array
411 // and output as non-array.
412 segments->fGSInputs.push_back();
413 segments->fGSInputs.back().setType(type);
414 segments->fGSInputs.back().setUnsizedArray();
415 *segments->fGSInputs.back().accessName() =
416 segments->fVSOutputs.back().getName();
417 segments->fGSOutputs.push_back();
418 segments->fGSOutputs.back().setType(type);
419 segments->fGSOutputs.back().accessName()->printf("g%s", name);
420 fsName = segments->fGSOutputs.back().accessName();
421 } else {
422 fsName = segments->fVSOutputs.back().accessName();
423 }
424 segments->fFSInputs.push_back();
425 segments->fFSInputs.back().setType(type);
426 segments->fFSInputs.back().setName(*fsName);
427 if (fsInName) {
428 *fsInName = fsName->c_str();
429 }
430}
431
432// version of above that adds a stage number to the
433// the var name (for uniqueness)
434void append_varying(GrGLShaderVar::Type type,
435 const char* name,
436 int stageNum,
437 ShaderCodeSegments* segments,
438 const char** vsOutName = NULL,
439 const char** fsInName = NULL) {
440 GrStringBuilder nameWithStage(name);
441 nameWithStage.appendS32(stageNum);
442 append_varying(type, nameWithStage.c_str(), segments, vsOutName, fsInName);
443}
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000444}
445
bsalomon@google.com66105672011-09-15 15:12:00 +0000446void GrGLProgram::genEdgeCoverage(const GrGLInterface* gl,
447 GrVertexLayout layout,
448 CachedData* programData,
449 GrStringBuilder* coverageVar,
450 ShaderCodeSegments* segments) const {
451 if (fProgramDesc.fEdgeAANumEdges > 0) {
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000452 segments->fFSUnis.push_back().set(GrGLShaderVar::kVec3f_Type,
453 EDGES_UNI_NAME,
454 fProgramDesc.fEdgeAANumEdges);
bsalomon@google.com66105672011-09-15 15:12:00 +0000455 programData->fUniLocations.fEdgesUni = kUseUniform;
456 int count = fProgramDesc.fEdgeAANumEdges;
457 segments->fFSCode.append(
458 "\tvec3 pos = vec3(gl_FragCoord.xy, 1);\n");
459 for (int i = 0; i < count; i++) {
460 segments->fFSCode.append("\tfloat a");
461 segments->fFSCode.appendS32(i);
462 segments->fFSCode.append(" = clamp(dot(" EDGES_UNI_NAME "[");
463 segments->fFSCode.appendS32(i);
464 segments->fFSCode.append("], pos), 0.0, 1.0);\n");
465 }
466 if (fProgramDesc.fEdgeAAConcave && (count & 0x01) == 0) {
467 // For concave polys, we consider the edges in pairs.
468 segments->fFSFunctions.append("float cross2(vec2 a, vec2 b) {\n");
469 segments->fFSFunctions.append("\treturn dot(a, vec2(b.y, -b.x));\n");
470 segments->fFSFunctions.append("}\n");
471 for (int i = 0; i < count; i += 2) {
472 segments->fFSCode.appendf("\tfloat eb%d;\n", i / 2);
473 segments->fFSCode.appendf("\tif (cross2(" EDGES_UNI_NAME "[%d].xy, " EDGES_UNI_NAME "[%d].xy) < 0.0) {\n", i, i + 1);
474 segments->fFSCode.appendf("\t\teb%d = a%d * a%d;\n", i / 2, i, i + 1);
475 segments->fFSCode.append("\t} else {\n");
476 segments->fFSCode.appendf("\t\teb%d = a%d + a%d - a%d * a%d;\n", i / 2, i, i + 1, i, i + 1);
477 segments->fFSCode.append("\t}\n");
478 }
479 segments->fFSCode.append("\tfloat edgeAlpha = ");
480 for (int i = 0; i < count / 2 - 1; i++) {
481 segments->fFSCode.appendf("min(eb%d, ", i);
482 }
483 segments->fFSCode.appendf("eb%d", count / 2 - 1);
484 for (int i = 0; i < count / 2 - 1; i++) {
485 segments->fFSCode.append(")");
486 }
487 segments->fFSCode.append(";\n");
488 } else {
489 segments->fFSCode.append("\tfloat edgeAlpha = ");
490 for (int i = 0; i < count - 1; i++) {
491 segments->fFSCode.appendf("min(a%d * a%d, ", i, i + 1);
492 }
493 segments->fFSCode.appendf("a%d * a0", count - 1);
494 for (int i = 0; i < count - 1; i++) {
495 segments->fFSCode.append(")");
496 }
497 segments->fFSCode.append(";\n");
498 }
499 *coverageVar = "edgeAlpha";
500 } else if (layout & GrDrawTarget::kEdge_VertexLayoutBit) {
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000501 const char *vsName, *fsName;
502 append_varying(GrGLShaderVar::kVec4f_Type, "Edge", segments, &vsName, &fsName);
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000503 segments->fVSAttrs.push_back().set(GrGLShaderVar::kVec4f_Type, EDGE_ATTR_NAME);
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000504 segments->fVSCode.appendf("\t%s = " EDGE_ATTR_NAME ";\n", vsName);
tomhudson@google.com93813632011-10-27 20:21:16 +0000505 if (GrDrawState::kHairLine_EdgeType == fProgramDesc.fVertexEdgeType) {
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000506 segments->fFSCode.appendf("\tfloat edgeAlpha = abs(dot(vec3(gl_FragCoord.xy,1), %s.xyz));\n", fsName);
bsalomon@google.com66105672011-09-15 15:12:00 +0000507 } else {
tomhudson@google.com93813632011-10-27 20:21:16 +0000508 GrAssert(GrDrawState::kHairQuad_EdgeType == fProgramDesc.fVertexEdgeType);
bsalomon@google.com66105672011-09-15 15:12:00 +0000509 // for now we know we're not in perspective, so we could compute this
510 // per-quadratic rather than per pixel
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000511 segments->fFSCode.appendf("\tvec2 duvdx = dFdx(%s.xy);\n", fsName);
512 segments->fFSCode.appendf("\tvec2 duvdy = dFdy(%s.xy);\n", fsName);
513 segments->fFSCode.appendf("\tfloat dfdx = 2.0*%s.x*duvdx.x - duvdx.y;\n", fsName);
514 segments->fFSCode.appendf("\tfloat dfdy = 2.0*%s.x*duvdy.x - duvdy.y;\n", fsName);
515 segments->fFSCode.appendf("\tfloat edgeAlpha = (%s.x*%s.x - %s.y);\n", fsName, fsName, fsName);
bsalomon@google.com66105672011-09-15 15:12:00 +0000516 segments->fFSCode.append("\tedgeAlpha = sqrt(edgeAlpha*edgeAlpha / (dfdx*dfdx + dfdy*dfdy));\n");
517 if (gl->supportsES()) {
518 segments->fHeader.printf("#extension GL_OES_standard_derivatives: enable\n");
519 }
520 }
521 segments->fFSCode.append("\tedgeAlpha = max(1.0 - edgeAlpha, 0.0);\n");
522 *coverageVar = "edgeAlpha";
523 } else {
524 coverageVar->reset();
525 }
526}
527
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000528namespace {
529
530// returns true if the color output was explicitly declared or not.
531bool decl_and_get_fs_color_output(GrGLProgram::GLSLVersion v,
532 VarArray* fsOutputs,
533 const char** name) {
534 switch (v) {
bsalomon@google.com373a6632011-10-19 20:43:20 +0000535 case GrGLProgram::k110_GLSLVersion:
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000536 *name = "gl_FragColor";
537 return false;
538 break;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000539 case GrGLProgram::k130_GLSLVersion: // fallthru
540 case GrGLProgram::k150_GLSLVersion:
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000541 *name = declared_color_output_name();
542 fsOutputs->push_back().set(GrGLShaderVar::kVec4f_Type,
543 declared_color_output_name());
544 return true;
545 break;
546 default:
547 GrCrash("Unknown GLSL version.");
548 return false; // suppress warning
549 }
550}
551
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000552void genInputColor(GrGLProgram::ProgramDesc::ColorInput colorInput,
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000553 GrGLProgram::CachedData* programData,
554 ShaderCodeSegments* segments,
555 GrStringBuilder* inColor) {
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000556 switch (colorInput) {
557 case GrGLProgram::ProgramDesc::kAttribute_ColorInput: {
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000558 segments->fVSAttrs.push_back().set(GrGLShaderVar::kVec4f_Type,
559 COL_ATTR_NAME);
560 const char *vsName, *fsName;
561 append_varying(GrGLShaderVar::kVec4f_Type, "Color", segments, &vsName, &fsName);
562 segments->fVSCode.appendf("\t%s = " COL_ATTR_NAME ";\n", vsName);
563 *inColor = fsName;
564 } break;
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000565 case GrGLProgram::ProgramDesc::kUniform_ColorInput:
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000566 segments->fFSUnis.push_back().set(GrGLShaderVar::kVec4f_Type,
567 COL_UNI_NAME);
568 programData->fUniLocations.fColorUni = kUseUniform;
569 *inColor = COL_UNI_NAME;
570 break;
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000571 case GrGLProgram::ProgramDesc::kTransBlack_ColorInput:
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000572 GrAssert(!"needComputedColor should be false.");
573 break;
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000574 case GrGLProgram::ProgramDesc::kSolidWhite_ColorInput:
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000575 break;
576 default:
577 GrCrash("Unknown color type.");
578 break;
579 }
580}
581
582void genPerVertexCoverage(ShaderCodeSegments* segments,
583 GrStringBuilder* inCoverage) {
584 segments->fVSAttrs.push_back().set(GrGLShaderVar::kFloat_Type,
585 COV_ATTR_NAME);
586 const char *vsName, *fsName;
587 append_varying(GrGLShaderVar::kFloat_Type, "Coverage",
588 segments, &vsName, &fsName);
589 segments->fVSCode.appendf("\t%s = " COV_ATTR_NAME ";\n", vsName);
590 if (inCoverage->size()) {
591 segments->fFSCode.appendf("\tfloat edgeAndAttrCov = %s * %s;\n",
592 fsName, inCoverage->c_str());
593 *inCoverage = "edgeAndAttrCov";
594 } else {
595 *inCoverage = fsName;
596 }
597}
598
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000599}
600
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000601void GrGLProgram::genGeometryShader(const GrGLInterface* gl,
602 GLSLVersion glslVersion,
603 ShaderCodeSegments* segments) const {
604#if GR_GL_EXPERIMENTAL_GS
605 if (fProgramDesc.fExperimentalGS) {
606 GrAssert(glslVersion >= k150_GLSLVersion);
607 segments->fGSHeader.append("layout(triangles) in;\n"
608 "layout(triangle_strip, max_vertices = 6) out;\n");
609 segments->fGSCode.append("void main() {\n"
610 "\tfor (int i = 0; i < 3; ++i) {\n"
611 "\t\tgl_Position = gl_in[i].gl_Position;\n");
612 if (this->fProgramDesc.fEmitsPointSize) {
613 segments->fGSCode.append("\t\tgl_PointSize = 1.0;\n");
614 }
615 GrAssert(segments->fGSInputs.count() == segments->fGSOutputs.count());
616 int count = segments->fGSInputs.count();
617 for (int i = 0; i < count; ++i) {
618 segments->fGSCode.appendf("\t\t%s = %s[i];\n",
619 segments->fGSOutputs[i].getName().c_str(),
620 segments->fGSInputs[i].getName().c_str());
621 }
622 segments->fGSCode.append("\t\tEmitVertex();\n"
623 "\t}\n"
624 "\tEndPrimitive();\n"
625 "}\n");
626 }
627#endif
628}
629
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000630bool GrGLProgram::genProgram(const GrGLInterface* gl,
631 GLSLVersion glslVersion,
bsalomon@google.com0b77d682011-08-19 13:28:54 +0000632 GrGLProgram::CachedData* programData) const {
junov@google.comf93e7172011-03-31 21:26:24 +0000633
634 ShaderCodeSegments segments;
635 const uint32_t& layout = fProgramDesc.fVertexLayout;
636
bsalomon@google.com91961302011-05-09 18:39:58 +0000637 programData->fUniLocations.reset();
junov@google.comf93e7172011-03-31 21:26:24 +0000638
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000639#if GR_GL_EXPERIMENTAL_GS
640 segments.fUsesGS = fProgramDesc.fExperimentalGS;
641#endif
642
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000643 SkXfermode::Coeff colorCoeff, uniformCoeff;
644 // The rest of transfer mode color filters have not been implemented
645 if (fProgramDesc.fColorFilterXfermode < SkXfermode::kCoeffModesCnt) {
646 GR_DEBUGCODE(bool success =)
tomhudson@google.com0d831722011-06-02 15:37:14 +0000647 SkXfermode::ModeAsCoeff(static_cast<SkXfermode::Mode>
648 (fProgramDesc.fColorFilterXfermode),
649 &uniformCoeff, &colorCoeff);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000650 GR_DEBUGASSERT(success);
651 } else {
652 colorCoeff = SkXfermode::kOne_Coeff;
653 uniformCoeff = SkXfermode::kZero_Coeff;
654 }
655
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000656 // If we know the final color is going to be all zeros then we can
657 // simplify the color filter coeffecients. needComputedColor will then
658 // come out false below.
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000659 if (ProgramDesc::kTransBlack_ColorInput == fProgramDesc.fColorInput) {
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000660 colorCoeff = SkXfermode::kZero_Coeff;
661 if (SkXfermode::kDC_Coeff == uniformCoeff ||
662 SkXfermode::kDA_Coeff == uniformCoeff) {
663 uniformCoeff = SkXfermode::kZero_Coeff;
664 } else if (SkXfermode::kIDC_Coeff == uniformCoeff ||
665 SkXfermode::kIDA_Coeff == uniformCoeff) {
666 uniformCoeff = SkXfermode::kOne_Coeff;
667 }
668 }
669
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000670 bool needColorFilterUniform;
671 bool needComputedColor;
672 needBlendInputs(uniformCoeff, colorCoeff,
673 &needColorFilterUniform, &needComputedColor);
674
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000675 // the dual source output has no canonical var name, have to
676 // declare an output, which is incompatible with gl_FragColor/gl_FragData.
bsalomon@google.com2ec72802011-09-21 21:46:03 +0000677 const char* fsColorOutput = NULL;
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000678 bool dualSourceOutputWritten = false;
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000679 segments.fHeader.printf(glsl_version_string(gl, glslVersion));
680 bool isColorDeclared = decl_and_get_fs_color_output(glslVersion,
681 &segments.fFSOutputs,
682 &fsColorOutput);
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000683
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000684#if GR_GL_ATTRIBUTE_MATRICES
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000685 segments.fVSAttrs.push_back().set(GrGLShaderVar::kMat33f_Type, VIEW_MATRIX_NAME);
bsalomon@google.com91961302011-05-09 18:39:58 +0000686 programData->fUniLocations.fViewMatrixUni = kSetAsAttribute;
junov@google.comf93e7172011-03-31 21:26:24 +0000687#else
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000688 segments.fVSUnis.push_back().set(GrGLShaderVar::kMat33f_Type, VIEW_MATRIX_NAME);
bsalomon@google.com91961302011-05-09 18:39:58 +0000689 programData->fUniLocations.fViewMatrixUni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +0000690#endif
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000691 segments.fVSAttrs.push_back().set(GrGLShaderVar::kVec2f_Type, POS_ATTR_NAME);
junov@google.comf93e7172011-03-31 21:26:24 +0000692
bsalomon@google.com91961302011-05-09 18:39:58 +0000693 segments.fVSCode.append(
694 "void main() {\n"
695 "\tvec3 pos3 = " VIEW_MATRIX_NAME " * vec3("POS_ATTR_NAME", 1);\n"
696 "\tgl_Position = vec4(pos3.xy, 0, pos3.z);\n");
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000697
bsalomon@google.com91961302011-05-09 18:39:58 +0000698 // incoming color to current stage being processed.
699 GrStringBuilder inColor;
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000700
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000701 if (needComputedColor) {
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000702 genInputColor((ProgramDesc::ColorInput) fProgramDesc.fColorInput,
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000703 programData, &segments, &inColor);
junov@google.comf93e7172011-03-31 21:26:24 +0000704 }
705
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000706 // we output point size in the GS if present
707 if (fProgramDesc.fEmitsPointSize && !segments.fUsesGS){
bsalomon@google.com91961302011-05-09 18:39:58 +0000708 segments.fVSCode.append("\tgl_PointSize = 1.0;\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000709 }
bsalomon@google.com4be283f2011-04-19 21:15:09 +0000710
bsalomon@google.com91961302011-05-09 18:39:58 +0000711 segments.fFSCode.append("void main() {\n");
junov@google.comf93e7172011-03-31 21:26:24 +0000712
713 // add texture coordinates that are used to the list of vertex attr decls
tomhudson@google.com93813632011-10-27 20:21:16 +0000714 GrStringBuilder texCoordAttrs[GrDrawState::kMaxTexCoords];
715 for (int t = 0; t < GrDrawState::kMaxTexCoords; ++t) {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +0000716 if (GrDrawTarget::VertexUsesTexCoordIdx(t, layout)) {
junov@google.comf93e7172011-03-31 21:26:24 +0000717 tex_attr_name(t, texCoordAttrs + t);
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000718 segments.fVSAttrs.push_back().set(GrGLShaderVar::kVec2f_Type,
719 texCoordAttrs[t].c_str());
junov@google.comf93e7172011-03-31 21:26:24 +0000720 }
721 }
722
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000723 ///////////////////////////////////////////////////////////////////////////
724 // compute the final color
Scroggo97c88c22011-05-11 14:05:25 +0000725
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000726 // if we have color stages string them together, feeding the output color
727 // of each to the next and generating code for each stage.
728 if (needComputedColor) {
729 GrStringBuilder outColor;
730 for (int s = 0; s < fProgramDesc.fFirstCoverageStage; ++s) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000731 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000732 // create var to hold stage result
733 outColor = "color";
734 outColor.appendS32(s);
735 segments.fFSCode.appendf("\tvec4 %s;\n", outColor.c_str());
736
737 const char* inCoords;
738 // figure out what our input coords are
739 if (GrDrawTarget::StagePosAsTexCoordVertexLayoutBit(s) &
740 layout) {
741 inCoords = POS_ATTR_NAME;
Scroggo97c88c22011-05-11 14:05:25 +0000742 } else {
743 int tcIdx = GrDrawTarget::VertexTexCoordsForStage(s, layout);
744 // we better have input tex coordinates if stage is enabled.
745 GrAssert(tcIdx >= 0);
746 GrAssert(texCoordAttrs[tcIdx].size());
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000747 inCoords = texCoordAttrs[tcIdx].c_str();
junov@google.comf93e7172011-03-31 21:26:24 +0000748 }
749
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000750 this->genStageCode(gl,
751 s,
752 fProgramDesc.fStages[s],
753 inColor.size() ? inColor.c_str() : NULL,
754 outColor.c_str(),
755 inCoords,
756 &segments,
757 &programData->fUniLocations.fStages[s]);
junov@google.comf93e7172011-03-31 21:26:24 +0000758 inColor = outColor;
junov@google.comf93e7172011-03-31 21:26:24 +0000759 }
760 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000761 }
Scroggo97c88c22011-05-11 14:05:25 +0000762
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000763 // if have all ones or zeros for the "dst" input to the color filter then we
764 // may be able to make additional optimizations.
765 if (needColorFilterUniform && needComputedColor && !inColor.size()) {
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000766 GrAssert(ProgramDesc::kSolidWhite_ColorInput == fProgramDesc.fColorInput);
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000767 bool uniformCoeffIsZero = SkXfermode::kIDC_Coeff == uniformCoeff ||
768 SkXfermode::kIDA_Coeff == uniformCoeff;
769 if (uniformCoeffIsZero) {
770 uniformCoeff = SkXfermode::kZero_Coeff;
771 bool bogus;
772 needBlendInputs(SkXfermode::kZero_Coeff, colorCoeff,
773 &needColorFilterUniform, &bogus);
774 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000775 }
776 if (needColorFilterUniform) {
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000777 segments.fFSUnis.push_back().set(GrGLShaderVar::kVec4f_Type,
778 COL_FILTER_UNI_NAME);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000779 programData->fUniLocations.fColorFilterUni = kUseUniform;
780 }
781
782 bool wroteFragColorZero = false;
tomhudson@google.com0d831722011-06-02 15:37:14 +0000783 if (SkXfermode::kZero_Coeff == uniformCoeff &&
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000784 SkXfermode::kZero_Coeff == colorCoeff) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000785 segments.fFSCode.appendf("\t%s = %s;\n",
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000786 fsColorOutput,
787 all_zeros_vec(4));
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000788 wroteFragColorZero = true;
789 } else if (SkXfermode::kDst_Mode != fProgramDesc.fColorFilterXfermode) {
790 segments.fFSCode.appendf("\tvec4 filteredColor;\n");
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000791 const char* color;
792 if (inColor.size()) {
793 color = inColor.c_str();
794 } else {
bsalomon@google.com85b505b2011-11-07 14:56:51 +0000795 if (ProgramDesc::kSolidWhite_ColorInput == fProgramDesc.fColorInput) {
bsalomon@google.com86c1f712011-10-12 14:54:26 +0000796 color = all_ones_vec(4);
797 } else {
798 color = all_zeros_vec(4);
799 }
800 }
tomhudson@google.com0d831722011-06-02 15:37:14 +0000801 addColorFilter(&segments.fFSCode, "filteredColor", uniformCoeff,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000802 colorCoeff, color);
803 inColor = "filteredColor";
804 }
805
806 ///////////////////////////////////////////////////////////////////////////
807 // compute the partial coverage (coverage stages and edge aa)
808
809 GrStringBuilder inCoverage;
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000810
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000811 // we don't need to compute coverage at all if we know the final shader
812 // output will be zero and we don't have a dual src blend output.
813 if (!wroteFragColorZero ||
814 ProgramDesc::kNone_DualSrcOutput != fProgramDesc.fDualSrcOutput) {
bsalomon@google.com66105672011-09-15 15:12:00 +0000815
816 // get edge AA coverage and use it as inCoverage to first coverage stage
817 this->genEdgeCoverage(gl, layout, programData, &inCoverage, &segments);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000818
bsalomon@google.coma3108262011-10-10 14:08:47 +0000819 // include explicit per-vertex coverage if we have it
820 if (GrDrawTarget::kCoverage_VertexLayoutBit & layout) {
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +0000821 genPerVertexCoverage(&segments, &inCoverage);
bsalomon@google.coma3108262011-10-10 14:08:47 +0000822 }
823
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000824 GrStringBuilder outCoverage;
825 const int& startStage = fProgramDesc.fFirstCoverageStage;
tomhudson@google.com93813632011-10-27 20:21:16 +0000826 for (int s = startStage; s < GrDrawState::kNumStages; ++s) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000827 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000828 // create var to hold stage output
829 outCoverage = "coverage";
830 outCoverage.appendS32(s);
831 segments.fFSCode.appendf("\tvec4 %s;\n", outCoverage.c_str());
832
833 const char* inCoords;
834 // figure out what our input coords are
835 if (GrDrawTarget::StagePosAsTexCoordVertexLayoutBit(s) & layout) {
836 inCoords = POS_ATTR_NAME;
837 } else {
838 int tcIdx = GrDrawTarget::VertexTexCoordsForStage(s, layout);
839 // we better have input tex coordinates if stage is enabled.
840 GrAssert(tcIdx >= 0);
841 GrAssert(texCoordAttrs[tcIdx].size());
842 inCoords = texCoordAttrs[tcIdx].c_str();
843 }
844
bsalomon@google.com0b77d682011-08-19 13:28:54 +0000845 genStageCode(gl, s,
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000846 fProgramDesc.fStages[s],
847 inCoverage.size() ? inCoverage.c_str() : NULL,
848 outCoverage.c_str(),
849 inCoords,
850 &segments,
851 &programData->fUniLocations.fStages[s]);
852 inCoverage = outCoverage;
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +0000853 }
854 }
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000855 if (ProgramDesc::kNone_DualSrcOutput != fProgramDesc.fDualSrcOutput) {
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000856 segments.fFSOutputs.push_back().set(GrGLShaderVar::kVec4f_Type,
857 dual_source_output_name());
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000858 bool outputIsZero = false;
859 GrStringBuilder coeff;
tomhudson@google.com0d831722011-06-02 15:37:14 +0000860 if (ProgramDesc::kCoverage_DualSrcOutput !=
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000861 fProgramDesc.fDualSrcOutput && !wroteFragColorZero) {
862 if (!inColor.size()) {
863 outputIsZero = true;
864 } else {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000865 if (fProgramDesc.fDualSrcOutput ==
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000866 ProgramDesc::kCoverageISA_DualSrcOutput) {
867 coeff.printf("(1 - %s.a)", inColor.c_str());
868 } else {
869 coeff.printf("(vec4(1,1,1,1) - %s)", inColor.c_str());
870 }
871 }
872 }
873 if (outputIsZero) {
tomhudson@google.com0d831722011-06-02 15:37:14 +0000874 segments.fFSCode.appendf("\t%s = %s;\n",
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000875 dual_source_output_name(),
876 all_zeros_vec(4));
877 } else {
878 modulate_helper(dual_source_output_name(),
879 coeff.c_str(),
880 inCoverage.c_str(),
881 &segments.fFSCode);
882 }
883 dualSourceOutputWritten = true;
884 }
junov@google.comf93e7172011-03-31 21:26:24 +0000885 }
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000886
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000887 ///////////////////////////////////////////////////////////////////////////
888 // combine color and coverage as frag color
889
890 if (!wroteFragColorZero) {
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000891 modulate_helper(fsColorOutput,
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000892 inColor.c_str(),
893 inCoverage.c_str(),
894 &segments.fFSCode);
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000895 }
896
bsalomon@google.com91961302011-05-09 18:39:58 +0000897 segments.fVSCode.append("}\n");
898 segments.fFSCode.append("}\n");
899
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000900 ///////////////////////////////////////////////////////////////////////////
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000901 // insert GS
902#if GR_DEBUG
903 this->genGeometryShader(gl, glslVersion, &segments);
904#endif
905
906 ///////////////////////////////////////////////////////////////////////////
bsalomon@google.comf2d91552011-05-16 20:56:06 +0000907 // compile and setup attribs and unis
908
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000909 if (!CompileShaders(gl, glslVersion, segments, programData)) {
bsalomon@google.com91961302011-05-09 18:39:58 +0000910 return false;
911 }
912
bsalomon@google.com0b77d682011-08-19 13:28:54 +0000913 if (!this->bindOutputsAttribsAndLinkProgram(gl, texCoordAttrs,
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000914 isColorDeclared,
bsalomon@google.com271cffc2011-05-20 14:13:56 +0000915 dualSourceOutputWritten,
916 programData)) {
bsalomon@google.com91961302011-05-09 18:39:58 +0000917 return false;
918 }
919
bsalomon@google.com0b77d682011-08-19 13:28:54 +0000920 this->getUniformLocationsAndInitCache(gl, programData);
bsalomon@google.com91961302011-05-09 18:39:58 +0000921
922 return true;
923}
924
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000925namespace {
926
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000927inline void expand_decls(const VarArray& vars,
928 const GrGLInterface* gl,
929 const char* prefix,
930 GrStringBuilder* string) {
931 const int count = vars.count();
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000932 for (int i = 0; i < count; ++i) {
933 string->append(prefix);
934 string->append(" ");
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000935 vars[i].appendDecl(gl, string);
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000936 string->append(";\n");
937 }
938}
939
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000940inline void print_shader(int stringCnt,
941 const char** strings,
942 int* stringLengths) {
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000943 for (int i = 0; i < stringCnt; ++i) {
944 if (NULL == stringLengths || stringLengths[i] < 0) {
945 GrPrintf(strings[i]);
946 } else {
947 GrPrintf("%.*s", stringLengths[i], strings[i]);
948 }
949 }
950}
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000951
952typedef SkTArray<const char*, true> StrArray;
953#define PREALLOC_STR_ARRAY(N) SkSTArray<(N), const char*, true>
954
955typedef SkTArray<int, true> LengthArray;
956#define PREALLOC_LENGTH_ARRAY(N) SkSTArray<(N), int, true>
957
958// these shouldn't relocate
959typedef GrTAllocator<GrStringBuilder> TempArray;
960#define PREALLOC_TEMP_ARRAY(N) GrSTAllocator<(N), GrStringBuilder>
961
962inline void append_string(const GrStringBuilder& str,
963 StrArray* strings,
964 LengthArray* lengths) {
965 int length = (int) str.size();
966 if (length) {
967 strings->push_back(str.c_str());
968 lengths->push_back(length);
969 }
970 GrAssert(strings->count() == lengths->count());
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000971}
972
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000973inline void append_decls(const VarArray& vars,
974 const GrGLInterface* gl,
975 const char* prefix,
976 StrArray* strings,
977 LengthArray* lengths,
978 TempArray* temp) {
979 expand_decls(vars, gl, prefix, &temp->push_back());
980 append_string(temp->back(), strings, lengths);
981}
982
983}
984
985bool GrGLProgram::CompileShaders(const GrGLInterface* gl,
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000986 GLSLVersion glslVersion,
bsalomon@google.com0b77d682011-08-19 13:28:54 +0000987 const ShaderCodeSegments& segments,
bsalomon@google.com91961302011-05-09 18:39:58 +0000988 CachedData* programData) {
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000989 enum { kPreAllocStringCnt = 8 };
junov@google.comf93e7172011-03-31 21:26:24 +0000990
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000991 PREALLOC_STR_ARRAY(kPreAllocStringCnt) strs;
992 PREALLOC_LENGTH_ARRAY(kPreAllocStringCnt) lengths;
993 PREALLOC_TEMP_ARRAY(kPreAllocStringCnt) temps;
994
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000995 GrStringBuilder unis;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +0000996 GrStringBuilder inputs;
997 GrStringBuilder outputs;
bsalomon@google.com4fa66942011-09-20 19:06:12 +0000998
999 static const char* gVaryingPrefixes[2][2] = {{"varying", "varying"},
1000 {"out", "in"}};
bsalomon@google.com373a6632011-10-19 20:43:20 +00001001 const char** varyingPrefixes = k110_GLSLVersion == glslVersion ?
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001002 gVaryingPrefixes[0] :
1003 gVaryingPrefixes[1];
bsalomon@google.com373a6632011-10-19 20:43:20 +00001004 const char* attributePrefix = k110_GLSLVersion == glslVersion ?
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001005 "attribute" :
1006 "in";
junov@google.comf93e7172011-03-31 21:26:24 +00001007
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001008 append_string(segments.fHeader, &strs, &lengths);
1009 append_decls(segments.fVSUnis, gl, "uniform", &strs, &lengths, &temps);
1010 append_decls(segments.fVSAttrs, gl, attributePrefix, &strs, &lengths, &temps);
1011 append_decls(segments.fVSOutputs, gl, varyingPrefixes[0], &strs, &lengths, &temps);
1012 append_string(segments.fVSCode, &strs, &lengths);
junov@google.comf93e7172011-03-31 21:26:24 +00001013
1014#if PRINT_SHADERS
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001015 print_shader(strs.count(), &strs[0], &lengths[0]);
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001016 GrPrintf("\n");
junov@google.comf93e7172011-03-31 21:26:24 +00001017#endif
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001018
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001019 programData->fVShaderID =
1020 CompileShader(gl, GR_GL_VERTEX_SHADER, strs.count(),
1021 &strs[0], &lengths[0]);
junov@google.comf93e7172011-03-31 21:26:24 +00001022
bsalomon@google.com91961302011-05-09 18:39:58 +00001023 if (!programData->fVShaderID) {
1024 return false;
1025 }
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001026 if (segments.fUsesGS) {
1027 strs.reset();
1028 lengths.reset();
1029 temps.reset();
1030 append_string(segments.fHeader, &strs, &lengths);
1031 append_string(segments.fGSHeader, &strs, &lengths);
1032 append_decls(segments.fGSInputs, gl, "in", &strs, &lengths, &temps);
1033 append_decls(segments.fGSOutputs, gl, "out", &strs, &lengths, &temps);
1034 append_string(segments.fGSCode, &strs, &lengths);
1035#if PRINT_SHADERS
1036 print_shader(strs.count(), &strs[0], &lengths[0]);
1037 GrPrintf("\n");
1038#endif
1039 programData->fGShaderID =
1040 CompileShader(gl, GR_GL_GEOMETRY_SHADER, strs.count(),
1041 &strs[0], &lengths[0]);
1042 } else {
1043 programData->fGShaderID = 0;
senorblanco@chromium.org129b8e32011-06-15 17:52:09 +00001044 }
junov@google.comf93e7172011-03-31 21:26:24 +00001045
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001046 strs.reset();
1047 lengths.reset();
1048 temps.reset();
1049
1050 append_string(segments.fHeader, &strs, &lengths);
1051 GrStringBuilder precisionStr(GrShaderPrecision(gl));
1052 append_string(precisionStr, &strs, &lengths);
1053 append_decls(segments.fFSUnis, gl, "uniform", &strs, &lengths, &temps);
1054 append_decls(segments.fFSInputs, gl, varyingPrefixes[1], &strs, &lengths, &temps);
bsalomon@google.com373a6632011-10-19 20:43:20 +00001055 // We shouldn't have declared outputs on 1.10
1056 GrAssert(k110_GLSLVersion != glslVersion || segments.fFSOutputs.empty());
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001057 append_decls(segments.fFSOutputs, gl, "out", &strs, &lengths, &temps);
1058 append_string(segments.fFSFunctions, &strs, &lengths);
1059 append_string(segments.fFSCode, &strs, &lengths);
junov@google.comf93e7172011-03-31 21:26:24 +00001060
1061#if PRINT_SHADERS
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001062 print_shader(strs.count(), &strs[0], &lengths[0]);
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001063 GrPrintf("\n");
junov@google.comf93e7172011-03-31 21:26:24 +00001064#endif
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001065
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001066 programData->fFShaderID =
1067 CompileShader(gl, GR_GL_FRAGMENT_SHADER, strs.count(),
1068 &strs[0], &lengths[0]);
junov@google.comf93e7172011-03-31 21:26:24 +00001069
bsalomon@google.com91961302011-05-09 18:39:58 +00001070 if (!programData->fFShaderID) {
1071 return false;
junov@google.comf93e7172011-03-31 21:26:24 +00001072 }
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001073
bsalomon@google.com91961302011-05-09 18:39:58 +00001074 return true;
junov@google.comf93e7172011-03-31 21:26:24 +00001075}
1076
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001077GrGLuint GrGLProgram::CompileShader(const GrGLInterface* gl,
1078 GrGLenum type,
1079 int stringCnt,
1080 const char** strings,
1081 int* stringLengths) {
tomhudson@google.com278cbb42011-06-30 19:37:01 +00001082 SK_TRACE_EVENT1("GrGLProgram::CompileShader",
1083 "stringCount", SkStringPrintf("%i", stringCnt).c_str());
1084
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001085 GrGLuint shader;
1086 GR_GL_CALL_RET(gl, shader, CreateShader(type));
junov@google.comf93e7172011-03-31 21:26:24 +00001087 if (0 == shader) {
1088 return 0;
1089 }
1090
1091 GrGLint compiled = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001092 GR_GL_CALL(gl, ShaderSource(shader, stringCnt, strings, stringLengths));
1093 GR_GL_CALL(gl, CompileShader(shader));
1094 GR_GL_CALL(gl, GetShaderiv(shader, GR_GL_COMPILE_STATUS, &compiled));
junov@google.comf93e7172011-03-31 21:26:24 +00001095
1096 if (!compiled) {
1097 GrGLint infoLen = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001098 GR_GL_CALL(gl, GetShaderiv(shader, GR_GL_INFO_LOG_LENGTH, &infoLen));
bsalomon@google.com3582bf92011-06-30 21:32:31 +00001099 SkAutoMalloc log(sizeof(char)*(infoLen+1)); // outside if for debugger
junov@google.comf93e7172011-03-31 21:26:24 +00001100 if (infoLen > 0) {
bsalomon@google.com79afcaa2011-09-14 14:29:18 +00001101 // retrieve length even though we don't need it to workaround
1102 // bug in chrome cmd buffer param validation.
1103 GrGLsizei length = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001104 GR_GL_CALL(gl, GetShaderInfoLog(shader, infoLen+1,
bsalomon@google.com79afcaa2011-09-14 14:29:18 +00001105 &length, (char*)log.get()));
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001106 print_shader(stringCnt, strings, stringLengths);
junov@google.comf93e7172011-03-31 21:26:24 +00001107 GrPrintf("\n%s", log.get());
1108 }
1109 GrAssert(!"Shader compilation failed!");
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001110 GR_GL_CALL(gl, DeleteShader(shader));
junov@google.comf93e7172011-03-31 21:26:24 +00001111 return 0;
1112 }
1113 return shader;
1114}
1115
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001116bool GrGLProgram::bindOutputsAttribsAndLinkProgram(
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001117 const GrGLInterface* gl,
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001118 GrStringBuilder texCoordAttrNames[],
1119 bool bindColorOut,
tomhudson@google.com0d831722011-06-02 15:37:14 +00001120 bool bindDualSrcOut,
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001121 CachedData* programData) const {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001122 GR_GL_CALL_RET(gl, programData->fProgramID, CreateProgram());
bsalomon@google.com91961302011-05-09 18:39:58 +00001123 if (!programData->fProgramID) {
1124 return false;
1125 }
1126 const GrGLint& progID = programData->fProgramID;
1127
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001128 GR_GL_CALL(gl, AttachShader(progID, programData->fVShaderID));
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001129 if (programData->fGShaderID) {
1130 GR_GL_CALL(gl, AttachShader(progID, programData->fGShaderID));
1131 }
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001132 GR_GL_CALL(gl, AttachShader(progID, programData->fFShaderID));
bsalomon@google.com91961302011-05-09 18:39:58 +00001133
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001134 if (bindColorOut) {
bsalomon@google.combc5cf512011-09-21 16:21:07 +00001135 GR_GL_CALL(gl, BindFragDataLocation(programData->fProgramID,
1136 0, declared_color_output_name()));
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001137 }
1138 if (bindDualSrcOut) {
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001139 GR_GL_CALL(gl, BindFragDataLocationIndexed(programData->fProgramID,
bsalomon@google.com271cffc2011-05-20 14:13:56 +00001140 0, 1, dual_source_output_name()));
1141 }
1142
bsalomon@google.com91961302011-05-09 18:39:58 +00001143 // Bind the attrib locations to same values for all shaders
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001144 GR_GL_CALL(gl, BindAttribLocation(progID, PositionAttributeIdx(),
1145 POS_ATTR_NAME));
tomhudson@google.com93813632011-10-27 20:21:16 +00001146 for (int t = 0; t < GrDrawState::kMaxTexCoords; ++t) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001147 if (texCoordAttrNames[t].size()) {
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001148 GR_GL_CALL(gl, BindAttribLocation(progID,
1149 TexCoordAttributeIdx(t),
1150 texCoordAttrNames[t].c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001151 }
1152 }
1153
bsalomon@google.com91961302011-05-09 18:39:58 +00001154 if (kSetAsAttribute == programData->fUniLocations.fViewMatrixUni) {
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001155 GR_GL_CALL(gl, BindAttribLocation(progID,
1156 ViewMatrixAttributeIdx(),
1157 VIEW_MATRIX_NAME));
bsalomon@google.com91961302011-05-09 18:39:58 +00001158 }
1159
tomhudson@google.com93813632011-10-27 20:21:16 +00001160 for (int s = 0; s < GrDrawState::kNumStages; ++s) {
bsalomon@google.com72b4fcb2011-05-09 20:47:34 +00001161 const StageUniLocations& unis = programData->fUniLocations.fStages[s];
1162 if (kSetAsAttribute == unis.fTextureMatrixUni) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001163 GrStringBuilder matName;
1164 tex_matrix_name(s, &matName);
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001165 GR_GL_CALL(gl, BindAttribLocation(progID,
1166 TextureMatrixAttributeIdx(s),
1167 matName.c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001168 }
1169 }
1170
bsalomon@google.comaeb21602011-08-30 18:13:44 +00001171 GR_GL_CALL(gl, BindAttribLocation(progID, ColorAttributeIdx(),
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001172 COL_ATTR_NAME));
bsalomon@google.coma3108262011-10-10 14:08:47 +00001173 GR_GL_CALL(gl, BindAttribLocation(progID, CoverageAttributeIdx(),
1174 COV_ATTR_NAME));
bsalomon@google.comaeb21602011-08-30 18:13:44 +00001175 GR_GL_CALL(gl, BindAttribLocation(progID, EdgeAttributeIdx(),
1176 EDGE_ATTR_NAME));
bsalomon@google.com91961302011-05-09 18:39:58 +00001177
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001178 GR_GL_CALL(gl, LinkProgram(progID));
bsalomon@google.com91961302011-05-09 18:39:58 +00001179
1180 GrGLint linked = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001181 GR_GL_CALL(gl, GetProgramiv(progID, GR_GL_LINK_STATUS, &linked));
bsalomon@google.com91961302011-05-09 18:39:58 +00001182 if (!linked) {
1183 GrGLint infoLen = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001184 GR_GL_CALL(gl, GetProgramiv(progID, GR_GL_INFO_LOG_LENGTH, &infoLen));
bsalomon@google.com3582bf92011-06-30 21:32:31 +00001185 SkAutoMalloc log(sizeof(char)*(infoLen+1)); // outside if for debugger
bsalomon@google.com91961302011-05-09 18:39:58 +00001186 if (infoLen > 0) {
bsalomon@google.com79afcaa2011-09-14 14:29:18 +00001187 // retrieve length even though we don't need it to workaround
1188 // bug in chrome cmd buffer param validation.
1189 GrGLsizei length = GR_GL_INIT_ZERO;
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001190 GR_GL_CALL(gl, GetProgramInfoLog(progID, infoLen+1,
bsalomon@google.com79afcaa2011-09-14 14:29:18 +00001191 &length, (char*)log.get()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001192 GrPrintf((char*)log.get());
1193 }
1194 GrAssert(!"Error linking program");
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001195 GR_GL_CALL(gl, DeleteProgram(progID));
bsalomon@google.com91961302011-05-09 18:39:58 +00001196 programData->fProgramID = 0;
1197 return false;
1198 }
1199 return true;
1200}
1201
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001202void GrGLProgram::getUniformLocationsAndInitCache(const GrGLInterface* gl,
1203 CachedData* programData) const {
bsalomon@google.com91961302011-05-09 18:39:58 +00001204 const GrGLint& progID = programData->fProgramID;
1205
1206 if (kUseUniform == programData->fUniLocations.fViewMatrixUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001207 GR_GL_CALL_RET(gl, programData->fUniLocations.fViewMatrixUni,
1208 GetUniformLocation(progID, VIEW_MATRIX_NAME));
bsalomon@google.com91961302011-05-09 18:39:58 +00001209 GrAssert(kUnusedUniform != programData->fUniLocations.fViewMatrixUni);
1210 }
1211 if (kUseUniform == programData->fUniLocations.fColorUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001212 GR_GL_CALL_RET(gl, programData->fUniLocations.fColorUni,
1213 GetUniformLocation(progID, COL_UNI_NAME));
bsalomon@google.com91961302011-05-09 18:39:58 +00001214 GrAssert(kUnusedUniform != programData->fUniLocations.fColorUni);
1215 }
Scroggo97c88c22011-05-11 14:05:25 +00001216 if (kUseUniform == programData->fUniLocations.fColorFilterUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001217 GR_GL_CALL_RET(gl, programData->fUniLocations.fColorFilterUni,
1218 GetUniformLocation(progID, COL_FILTER_UNI_NAME));
Scroggo97c88c22011-05-11 14:05:25 +00001219 GrAssert(kUnusedUniform != programData->fUniLocations.fColorFilterUni);
1220 }
bsalomon@google.com91961302011-05-09 18:39:58 +00001221
bsalomon@google.comf2d91552011-05-16 20:56:06 +00001222 if (kUseUniform == programData->fUniLocations.fEdgesUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001223 GR_GL_CALL_RET(gl, programData->fUniLocations.fEdgesUni,
1224 GetUniformLocation(progID, EDGES_UNI_NAME));
senorblanco@chromium.org92e0f222011-05-12 15:49:15 +00001225 GrAssert(kUnusedUniform != programData->fUniLocations.fEdgesUni);
1226 } else {
1227 programData->fUniLocations.fEdgesUni = kUnusedUniform;
1228 }
1229
tomhudson@google.com93813632011-10-27 20:21:16 +00001230 for (int s = 0; s < GrDrawState::kNumStages; ++s) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001231 StageUniLocations& locations = programData->fUniLocations.fStages[s];
tomhudson@google.com0d831722011-06-02 15:37:14 +00001232 if (fProgramDesc.fStages[s].isEnabled()) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001233 if (kUseUniform == locations.fTextureMatrixUni) {
1234 GrStringBuilder texMName;
1235 tex_matrix_name(s, &texMName);
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001236 GR_GL_CALL_RET(gl, locations.fTextureMatrixUni,
1237 GetUniformLocation(progID, texMName.c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001238 GrAssert(kUnusedUniform != locations.fTextureMatrixUni);
1239 }
1240
1241 if (kUseUniform == locations.fSamplerUni) {
1242 GrStringBuilder samplerName;
1243 sampler_name(s, &samplerName);
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001244 GR_GL_CALL_RET(gl, locations.fSamplerUni,
1245 GetUniformLocation(progID,samplerName.c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001246 GrAssert(kUnusedUniform != locations.fSamplerUni);
1247 }
1248
1249 if (kUseUniform == locations.fNormalizedTexelSizeUni) {
1250 GrStringBuilder texelSizeName;
1251 normalized_texel_size_name(s, &texelSizeName);
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001252 GR_GL_CALL_RET(gl, locations.fNormalizedTexelSizeUni,
1253 GetUniformLocation(progID, texelSizeName.c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001254 GrAssert(kUnusedUniform != locations.fNormalizedTexelSizeUni);
1255 }
1256
1257 if (kUseUniform == locations.fRadial2Uni) {
1258 GrStringBuilder radial2ParamName;
1259 radial2_param_name(s, &radial2ParamName);
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001260 GR_GL_CALL_RET(gl, locations.fRadial2Uni,
1261 GetUniformLocation(progID, radial2ParamName.c_str()));
bsalomon@google.com91961302011-05-09 18:39:58 +00001262 GrAssert(kUnusedUniform != locations.fRadial2Uni);
1263 }
junov@google.com6acc9b32011-05-16 18:32:07 +00001264
1265 if (kUseUniform == locations.fTexDomUni) {
1266 GrStringBuilder texDomName;
1267 tex_domain_name(s, &texDomName);
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001268 GR_GL_CALL_RET(gl, locations.fTexDomUni,
1269 GetUniformLocation(progID, texDomName.c_str()));
junov@google.com6acc9b32011-05-16 18:32:07 +00001270 GrAssert(kUnusedUniform != locations.fTexDomUni);
1271 }
senorblanco@chromium.org027de5f2011-07-08 18:03:33 +00001272
1273 GrStringBuilder kernelName, imageIncrementName;
1274 convolve_param_names(s, &kernelName, &imageIncrementName);
1275 if (kUseUniform == locations.fKernelUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001276 GR_GL_CALL_RET(gl, locations.fKernelUni,
1277 GetUniformLocation(progID, kernelName.c_str()));
senorblanco@chromium.org027de5f2011-07-08 18:03:33 +00001278 GrAssert(kUnusedUniform != locations.fKernelUni);
1279 }
1280
1281 if (kUseUniform == locations.fImageIncrementUni) {
bsalomon@google.com56bfc5a2011-09-01 13:28:16 +00001282 GR_GL_CALL_RET(gl, locations.fImageIncrementUni,
1283 GetUniformLocation(progID,
1284 imageIncrementName.c_str()));
senorblanco@chromium.org027de5f2011-07-08 18:03:33 +00001285 GrAssert(kUnusedUniform != locations.fImageIncrementUni);
1286 }
bsalomon@google.com91961302011-05-09 18:39:58 +00001287 }
1288 }
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001289 GR_GL_CALL(gl, UseProgram(progID));
bsalomon@google.com91961302011-05-09 18:39:58 +00001290
1291 // init sampler unis and set bogus values for state tracking
tomhudson@google.com93813632011-10-27 20:21:16 +00001292 for (int s = 0; s < GrDrawState::kNumStages; ++s) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001293 if (kUnusedUniform != programData->fUniLocations.fStages[s].fSamplerUni) {
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001294 GR_GL_CALL(gl, Uniform1i(programData->fUniLocations.fStages[s].fSamplerUni, s));
bsalomon@google.com91961302011-05-09 18:39:58 +00001295 }
1296 programData->fTextureMatrices[s] = GrMatrix::InvalidMatrix();
1297 programData->fRadial2CenterX1[s] = GR_ScalarMax;
1298 programData->fRadial2Radius0[s] = -GR_ScalarMax;
1299 programData->fTextureWidth[s] = -1;
1300 programData->fTextureHeight[s] = -1;
1301 }
1302 programData->fViewMatrix = GrMatrix::InvalidMatrix();
1303 programData->fColor = GrColor_ILLEGAL;
Scroggo97c88c22011-05-11 14:05:25 +00001304 programData->fColorFilterColor = GrColor_ILLEGAL;
bsalomon@google.com91961302011-05-09 18:39:58 +00001305}
1306
junov@google.comf93e7172011-03-31 21:26:24 +00001307//============================================================================
1308// Stage code generation
1309//============================================================================
1310
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001311namespace {
1312
1313bool isRadialMapping(GrGLProgram::StageDesc::CoordMapping mapping) {
1314 return
1315 (GrGLProgram::StageDesc::kRadial2Gradient_CoordMapping == mapping ||
1316 GrGLProgram::StageDesc::kRadial2GradientDegenerate_CoordMapping == mapping);
1317}
1318
1319const char* genRadialVS(int stageNum,
1320 ShaderCodeSegments* segments,
1321 GrGLProgram::StageUniLocations* locations,
1322 const char** radial2VaryingVSName,
1323 const char** radial2VaryingFSName,
1324 const char* varyingVSName,
1325 int varyingDims, int coordDims) {
1326
1327 GrGLShaderVar* radial2FSParams = &segments->fFSUnis.push_back();
1328 radial2FSParams->setType(GrGLShaderVar::kFloat_Type);
1329 radial2FSParams->setArrayCount(6);
1330 radial2_param_name(stageNum, radial2FSParams->accessName());
1331 segments->fVSUnis.push_back(*radial2FSParams).setEmitPrecision(true);
1332
1333 locations->fRadial2Uni = kUseUniform;
1334
1335 // for radial grads without perspective we can pass the linear
1336 // part of the quadratic as a varying.
1337 if (varyingDims == coordDims) {
1338 GrAssert(2 == coordDims);
1339 append_varying(GrGLShaderVar::kFloat_Type,
1340 "Radial2BCoeff",
1341 stageNum,
1342 segments,
1343 radial2VaryingVSName,
1344 radial2VaryingFSName);
1345
1346 // r2Var = 2 * (r2Parm[2] * varCoord.x - r2Param[3])
1347 const char* r2ParamName = radial2FSParams->getName().c_str();
1348 segments->fVSCode.appendf("\t%s = 2.0 *(%s[2] * %s.x - %s[3]);\n",
1349 *radial2VaryingVSName, r2ParamName,
1350 varyingVSName, r2ParamName);
1351 }
1352
1353 return radial2FSParams->getName().c_str();
1354}
1355
1356bool genRadial2GradientCoordMapping(int stageNum,
1357 ShaderCodeSegments* segments,
1358 const char* radial2VaryingFSName,
1359 const char* radial2ParamsName,
1360 GrStringBuilder& sampleCoords,
1361 GrStringBuilder& fsCoordName,
1362 int varyingDims,
1363 int coordDims) {
tomhudson@google.com5960d002011-10-19 20:21:48 +00001364 GrStringBuilder cName("c");
1365 GrStringBuilder ac4Name("ac4");
1366 GrStringBuilder rootName("root");
1367
1368 cName.appendS32(stageNum);
1369 ac4Name.appendS32(stageNum);
1370 rootName.appendS32(stageNum);
1371
1372 // if we were able to interpolate the linear component bVar is the varying
1373 // otherwise compute it
1374 GrStringBuilder bVar;
1375 if (coordDims == varyingDims) {
1376 bVar = radial2VaryingFSName;
1377 GrAssert(2 == varyingDims);
1378 } else {
1379 GrAssert(3 == varyingDims);
1380 bVar = "b";
1381 bVar.appendS32(stageNum);
1382 segments->fFSCode.appendf("\tfloat %s = 2.0 * (%s[2] * %s.x - %s[3]);\n",
1383 bVar.c_str(), radial2ParamsName,
1384 fsCoordName.c_str(), radial2ParamsName);
1385 }
1386
1387 // c = (x^2)+(y^2) - params[4]
1388 segments->fFSCode.appendf("\tfloat %s = dot(%s, %s) - %s[4];\n",
1389 cName.c_str(), fsCoordName.c_str(),
1390 fsCoordName.c_str(),
1391 radial2ParamsName);
1392 // ac4 = 4.0 * params[0] * c
1393 segments->fFSCode.appendf("\tfloat %s = %s[0] * 4.0 * %s;\n",
1394 ac4Name.c_str(), radial2ParamsName,
1395 cName.c_str());
1396
1397 // root = sqrt(b^2-4ac)
1398 // (abs to avoid exception due to fp precision)
1399 segments->fFSCode.appendf("\tfloat %s = sqrt(abs(%s*%s - %s));\n",
1400 rootName.c_str(), bVar.c_str(), bVar.c_str(),
1401 ac4Name.c_str());
1402
1403 // x coord is: (-b + params[5] * sqrt(b^2-4ac)) * params[1]
1404 // y coord is 0.5 (texture is effectively 1D)
1405 sampleCoords.printf("vec2((-%s + %s[5] * %s) * %s[1], 0.5)",
1406 bVar.c_str(), radial2ParamsName,
1407 rootName.c_str(), radial2ParamsName);
1408 return true;
1409}
1410
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001411bool genRadial2GradientDegenerateCoordMapping(int stageNum,
1412 ShaderCodeSegments* segments,
1413 const char* radial2VaryingFSName,
1414 const char* radial2ParamsName,
1415 GrStringBuilder& sampleCoords,
1416 GrStringBuilder& fsCoordName,
1417 int varyingDims,
1418 int coordDims) {
tomhudson@google.com5960d002011-10-19 20:21:48 +00001419 GrStringBuilder cName("c");
1420
1421 cName.appendS32(stageNum);
1422
1423 // if we were able to interpolate the linear component bVar is the varying
1424 // otherwise compute it
1425 GrStringBuilder bVar;
1426 if (coordDims == varyingDims) {
1427 bVar = radial2VaryingFSName;
1428 GrAssert(2 == varyingDims);
1429 } else {
1430 GrAssert(3 == varyingDims);
1431 bVar = "b";
1432 bVar.appendS32(stageNum);
1433 segments->fFSCode.appendf("\tfloat %s = 2.0 * (%s[2] * %s.x - %s[3]);\n",
1434 bVar.c_str(), radial2ParamsName,
1435 fsCoordName.c_str(), radial2ParamsName);
1436 }
1437
1438 // c = (x^2)+(y^2) - params[4]
1439 segments->fFSCode.appendf("\tfloat %s = dot(%s, %s) - %s[4];\n",
1440 cName.c_str(), fsCoordName.c_str(),
1441 fsCoordName.c_str(),
1442 radial2ParamsName);
1443
1444 // x coord is: -c/b
1445 // y coord is 0.5 (texture is effectively 1D)
1446 sampleCoords.printf("vec2((-%s / %s), 0.5)", cName.c_str(), bVar.c_str());
1447 return true;
1448}
1449
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001450void gen2x2FS(int stageNum,
1451 ShaderCodeSegments* segments,
1452 GrGLProgram::StageUniLocations* locations,
1453 GrStringBuilder* sampleCoords,
1454 const char* samplerName,
1455 const char* texelSizeName,
1456 const char* smear,
1457 const char* fsOutColor,
1458 GrStringBuilder& texFunc,
1459 GrStringBuilder& modulate,
1460 bool complexCoord,
1461 int coordDims) {
1462 locations->fNormalizedTexelSizeUni = kUseUniform;
1463 if (complexCoord) {
1464 // assign the coord to a var rather than compute 4x.
1465 GrStringBuilder coordVar("tCoord");
1466 coordVar.appendS32(stageNum);
1467 segments->fFSCode.appendf("\t%s %s = %s;\n",
1468 float_vector_type_str(coordDims),
1469 coordVar.c_str(), sampleCoords->c_str());
1470 *sampleCoords = coordVar;
1471 }
1472 GrAssert(2 == coordDims);
1473 GrStringBuilder accumVar("accum");
1474 accumVar.appendS32(stageNum);
1475 segments->fFSCode.appendf("\tvec4 %s = %s(%s, %s + vec2(-%s.x,-%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName, sampleCoords->c_str(), texelSizeName, texelSizeName, smear);
1476 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(+%s.x,-%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName, sampleCoords->c_str(), texelSizeName, texelSizeName, smear);
1477 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(-%s.x,+%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName, sampleCoords->c_str(), texelSizeName, texelSizeName, smear);
1478 segments->fFSCode.appendf("\t%s += %s(%s, %s + vec2(+%s.x,+%s.y))%s;\n", accumVar.c_str(), texFunc.c_str(), samplerName, sampleCoords->c_str(), texelSizeName, texelSizeName, smear);
1479 segments->fFSCode.appendf("\t%s = .25 * %s%s;\n", fsOutColor, accumVar.c_str(), modulate.c_str());
1480
1481}
1482
1483void genConvolutionVS(int stageNum,
bsalomon@google.com85b505b2011-11-07 14:56:51 +00001484 const StageDesc& desc,
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001485 ShaderCodeSegments* segments,
1486 GrGLProgram::StageUniLocations* locations,
1487 const char** kernelName,
1488 const char** imageIncrementName,
1489 const char* varyingVSName) {
1490 GrGLShaderVar* kernel = &segments->fFSUnis.push_back();
1491 kernel->setType(GrGLShaderVar::kFloat_Type);
1492 kernel->setArrayCount(desc.fKernelWidth);
1493 GrGLShaderVar* imgInc = &segments->fFSUnis.push_back();
1494 imgInc->setType(GrGLShaderVar::kVec2f_Type);
1495
1496 convolve_param_names(stageNum,
1497 kernel->accessName(),
1498 imgInc->accessName());
1499 *kernelName = kernel->getName().c_str();
1500 *imageIncrementName = imgInc->getName().c_str();
1501
1502 // need image increment in both VS and FS
1503 segments->fVSUnis.push_back(*imgInc).setEmitPrecision(true);
1504
1505 locations->fKernelUni = kUseUniform;
1506 locations->fImageIncrementUni = kUseUniform;
1507 float scale = (desc.fKernelWidth - 1) * 0.5f;
1508 segments->fVSCode.appendf("\t%s -= vec2(%g, %g) * %s;\n",
1509 varyingVSName, scale, scale,
1510 *imageIncrementName);
1511}
1512
1513void genConvolutionFS(int stageNum,
bsalomon@google.com85b505b2011-11-07 14:56:51 +00001514 const StageDesc& desc,
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001515 ShaderCodeSegments* segments,
1516 const char* samplerName,
1517 const char* kernelName,
1518 const char* smear,
1519 const char* imageIncrementName,
1520 const char* fsOutColor,
1521 GrStringBuilder& sampleCoords,
1522 GrStringBuilder& texFunc,
1523 GrStringBuilder& modulate) {
1524 GrStringBuilder sumVar("sum");
1525 sumVar.appendS32(stageNum);
1526 GrStringBuilder coordVar("coord");
1527 coordVar.appendS32(stageNum);
1528
1529 segments->fFSCode.appendf("\tvec4 %s = vec4(0, 0, 0, 0);\n",
1530 sumVar.c_str());
1531 segments->fFSCode.appendf("\tvec2 %s = %s;\n",
1532 coordVar.c_str(),
1533 sampleCoords.c_str());
1534 segments->fFSCode.appendf("\tfor (int i = 0; i < %d; i++) {\n",
1535 desc.fKernelWidth);
1536 segments->fFSCode.appendf("\t\t%s += %s(%s, %s)%s * %s[i];\n",
1537 sumVar.c_str(), texFunc.c_str(),
1538 samplerName, coordVar.c_str(), smear,
1539 kernelName);
1540 segments->fFSCode.appendf("\t\t%s += %s;\n",
1541 coordVar.c_str(),
1542 imageIncrementName);
1543 segments->fFSCode.appendf("\t}\n");
1544 segments->fFSCode.appendf("\t%s = %s%s;\n", fsOutColor,
1545 sumVar.c_str(), modulate.c_str());
1546}
1547
1548}
1549
bsalomon@google.com0b77d682011-08-19 13:28:54 +00001550void GrGLProgram::genStageCode(const GrGLInterface* gl,
1551 int stageNum,
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001552 const GrGLProgram::StageDesc& desc,
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001553 const char* fsInColor, // NULL means no incoming color
1554 const char* fsOutColor,
1555 const char* vsInCoord,
1556 ShaderCodeSegments* segments,
1557 StageUniLocations* locations) const {
junov@google.comf93e7172011-03-31 21:26:24 +00001558
1559 GrAssert(stageNum >= 0 && stageNum <= 9);
1560
junov@google.comf93e7172011-03-31 21:26:24 +00001561 // First decide how many coords are needed to access the texture
1562 // Right now it's always 2 but we could start using 1D textures for
1563 // gradients.
1564 static const int coordDims = 2;
1565 int varyingDims;
1566 /// Vertex Shader Stuff
1567
1568 // decide whether we need a matrix to transform texture coords
1569 // and whether the varying needs a perspective coord.
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001570 const char* matName = NULL;
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001571 if (desc.fOptFlags & StageDesc::kIdentityMatrix_OptFlagBit) {
junov@google.comf93e7172011-03-31 21:26:24 +00001572 varyingDims = coordDims;
1573 } else {
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001574 GrGLShaderVar* mat;
bsalomon@google.com4be283f2011-04-19 21:15:09 +00001575 #if GR_GL_ATTRIBUTE_MATRICES
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001576 mat = &segments->fVSAttrs.push_back();
bsalomon@google.com91961302011-05-09 18:39:58 +00001577 locations->fTextureMatrixUni = kSetAsAttribute;
junov@google.comf93e7172011-03-31 21:26:24 +00001578 #else
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001579 mat = &segments->fVSUnis.push_back();
bsalomon@google.com91961302011-05-09 18:39:58 +00001580 locations->fTextureMatrixUni = kUseUniform;
junov@google.comf93e7172011-03-31 21:26:24 +00001581 #endif
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001582 tex_matrix_name(stageNum, mat->accessName());
1583 mat->setType(GrGLShaderVar::kMat33f_Type);
1584 matName = mat->getName().c_str();
1585
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001586 if (desc.fOptFlags & StageDesc::kNoPerspective_OptFlagBit) {
junov@google.comf93e7172011-03-31 21:26:24 +00001587 varyingDims = coordDims;
1588 } else {
1589 varyingDims = coordDims + 1;
1590 }
1591 }
1592
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001593 segments->fFSUnis.push_back().setType(GrGLShaderVar::kSampler2D_Type);
1594 sampler_name(stageNum, segments->fFSUnis.back().accessName());
bsalomon@google.com91961302011-05-09 18:39:58 +00001595 locations->fSamplerUni = kUseUniform;
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001596 const char* samplerName = segments->fFSUnis.back().getName().c_str();
junov@google.comf93e7172011-03-31 21:26:24 +00001597
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001598 const char* texelSizeName = NULL;
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001599 if (StageDesc::k2x2_FetchMode == desc.fFetchMode) {
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001600 segments->fFSUnis.push_back().setType(GrGLShaderVar::kVec2f_Type);
1601 normalized_texel_size_name(stageNum, segments->fFSUnis.back().accessName());
1602 texelSizeName = segments->fFSUnis.back().getName().c_str();
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001603 }
1604
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001605 const char *varyingVSName, *varyingFSName;
1606 append_varying(float_vector_type(varyingDims),
1607 "Stage",
1608 stageNum,
1609 segments,
1610 &varyingVSName,
1611 &varyingFSName);
junov@google.comf93e7172011-03-31 21:26:24 +00001612
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001613 if (!matName) {
junov@google.comf93e7172011-03-31 21:26:24 +00001614 GrAssert(varyingDims == coordDims);
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001615 segments->fVSCode.appendf("\t%s = %s;\n", varyingVSName, vsInCoord);
junov@google.comf93e7172011-03-31 21:26:24 +00001616 } else {
bsalomon@google.com91961302011-05-09 18:39:58 +00001617 // varying = texMatrix * texCoord
1618 segments->fVSCode.appendf("\t%s = (%s * vec3(%s, 1))%s;\n",
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001619 varyingVSName, matName, vsInCoord,
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001620 vector_all_coords(varyingDims));
junov@google.comf93e7172011-03-31 21:26:24 +00001621 }
1622
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001623 const char* radial2ParamsName = NULL;
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001624 const char *radial2VaryingVSName = NULL;
1625 const char *radial2VaryingFSName = NULL;
junov@google.comf93e7172011-03-31 21:26:24 +00001626
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001627 if (isRadialMapping((StageDesc::CoordMapping) desc.fCoordMapping)) {
1628 radial2ParamsName = genRadialVS(stageNum, segments,
1629 locations,
1630 &radial2VaryingVSName,
1631 &radial2VaryingFSName,
1632 varyingVSName,
1633 varyingDims, coordDims);
junov@google.comf93e7172011-03-31 21:26:24 +00001634 }
1635
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001636 const char* kernelName = NULL;
1637 const char* imageIncrementName = NULL;
bsalomon@google.com85b505b2011-11-07 14:56:51 +00001638 if (StageDesc::kConvolution_FetchMode == desc.fFetchMode) {
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001639 genConvolutionVS(stageNum, desc, segments, locations,
1640 &kernelName, &imageIncrementName, varyingVSName);
bsalomon@google.coma8e686e2011-08-16 15:45:58 +00001641 }
senorblanco@chromium.org027de5f2011-07-08 18:03:33 +00001642
junov@google.comf93e7172011-03-31 21:26:24 +00001643 /// Fragment Shader Stuff
bsalomon@google.com91961302011-05-09 18:39:58 +00001644 GrStringBuilder fsCoordName;
junov@google.comf93e7172011-03-31 21:26:24 +00001645 // function used to access the shader, may be made projective
bsalomon@google.com91961302011-05-09 18:39:58 +00001646 GrStringBuilder texFunc("texture2D");
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001647 if (desc.fOptFlags & (StageDesc::kIdentityMatrix_OptFlagBit |
1648 StageDesc::kNoPerspective_OptFlagBit)) {
junov@google.comf93e7172011-03-31 21:26:24 +00001649 GrAssert(varyingDims == coordDims);
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001650 fsCoordName = varyingFSName;
junov@google.comf93e7172011-03-31 21:26:24 +00001651 } else {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001652 // if we have to do some special op on the varyings to get
junov@google.comf93e7172011-03-31 21:26:24 +00001653 // our final tex coords then when in perspective we have to
bsalomon@google.com91961302011-05-09 18:39:58 +00001654 // do an explicit divide. Otherwise, we can use a Proj func.
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001655 if (StageDesc::kIdentity_CoordMapping == desc.fCoordMapping &&
1656 StageDesc::kSingle_FetchMode == desc.fFetchMode) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001657 texFunc.append("Proj");
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001658 fsCoordName = varyingFSName;
junov@google.comf93e7172011-03-31 21:26:24 +00001659 } else {
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001660 fsCoordName = "inCoord";
bsalomon@google.comfc296292011-05-06 13:53:47 +00001661 fsCoordName.appendS32(stageNum);
bsalomon@google.com91961302011-05-09 18:39:58 +00001662 segments->fFSCode.appendf("\t%s %s = %s%s / %s%s;\n",
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001663 GrGLShaderVar::TypeString(float_vector_type(coordDims)),
1664 fsCoordName.c_str(),
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001665 varyingFSName,
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001666 vector_nonhomog_coords(varyingDims),
bsalomon@google.comedfe1aa2011-09-29 14:40:26 +00001667 varyingFSName,
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001668 vector_homog_coord(varyingDims));
junov@google.comf93e7172011-03-31 21:26:24 +00001669 }
1670 }
1671
bsalomon@google.comfc296292011-05-06 13:53:47 +00001672 GrStringBuilder sampleCoords;
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001673 bool complexCoord = false;
junov@google.comf93e7172011-03-31 21:26:24 +00001674 switch (desc.fCoordMapping) {
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001675 case StageDesc::kIdentity_CoordMapping:
junov@google.comf93e7172011-03-31 21:26:24 +00001676 sampleCoords = fsCoordName;
1677 break;
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001678 case StageDesc::kSweepGradient_CoordMapping:
bsalomon@google.com91961302011-05-09 18:39:58 +00001679 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 +00001680 complexCoord = true;
junov@google.comf93e7172011-03-31 21:26:24 +00001681 break;
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001682 case StageDesc::kRadialGradient_CoordMapping:
bsalomon@google.com91961302011-05-09 18:39:58 +00001683 sampleCoords.printf("vec2(length(%s.xy), 0.5)", fsCoordName.c_str());
bsalomon@google.com6aef1fb2011-05-05 12:33:22 +00001684 complexCoord = true;
junov@google.comf93e7172011-03-31 21:26:24 +00001685 break;
tomhudson@google.com5960d002011-10-19 20:21:48 +00001686 case StageDesc::kRadial2Gradient_CoordMapping:
1687 complexCoord = genRadial2GradientCoordMapping(
1688 stageNum, segments,
1689 radial2VaryingFSName, radial2ParamsName,
1690 sampleCoords, fsCoordName,
1691 varyingDims, coordDims);
junov@google.comf93e7172011-03-31 21:26:24 +00001692
tomhudson@google.com5960d002011-10-19 20:21:48 +00001693 break;
1694 case StageDesc::kRadial2GradientDegenerate_CoordMapping:
1695 complexCoord = genRadial2GradientDegenerateCoordMapping(
1696 stageNum, segments,
1697 radial2VaryingFSName, radial2ParamsName,
1698 sampleCoords, fsCoordName,
1699 varyingDims, coordDims);
1700 break;
junov@google.comf93e7172011-03-31 21:26:24 +00001701
junov@google.comf93e7172011-03-31 21:26:24 +00001702 };
1703
bsalomon@google.com91961302011-05-09 18:39:58 +00001704 const char* smear;
bsalomon@google.com85b505b2011-11-07 14:56:51 +00001705 if (desc.fInputConfig == StageDesc::kAlphaOnly_InputConfig) {
bsalomon@google.com91961302011-05-09 18:39:58 +00001706 smear = ".aaaa";
1707 } else {
1708 smear = "";
1709 }
1710 GrStringBuilder modulate;
1711 if (NULL != fsInColor) {
1712 modulate.printf(" * %s", fsInColor);
1713 }
1714
tomhudson@google.com0d831722011-06-02 15:37:14 +00001715 if (desc.fOptFlags &
bsalomon@google.com22c5dea2011-07-07 14:38:03 +00001716 StageDesc::kCustomTextureDomain_OptFlagBit) {
junov@google.com6acc9b32011-05-16 18:32:07 +00001717 GrStringBuilder texDomainName;
1718 tex_domain_name(stageNum, &texDomainName);
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001719 segments->fFSUnis.push_back().set(GrGLShaderVar::kVec4f_Type, texDomainName);
junov@google.com6acc9b32011-05-16 18:32:07 +00001720 GrStringBuilder coordVar("clampCoord");
1721 segments->fFSCode.appendf("\t%s %s = clamp(%s, %s.xy, %s.zw);\n",
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001722 float_vector_type_str(coordDims),
junov@google.com6acc9b32011-05-16 18:32:07 +00001723 coordVar.c_str(),
1724 sampleCoords.c_str(),
1725 texDomainName.c_str(),
1726 texDomainName.c_str());
1727 sampleCoords = coordVar;
1728 locations->fTexDomUni = kUseUniform;
1729 }
1730
tomhudson@google.com5960d002011-10-19 20:21:48 +00001731 switch (desc.fFetchMode) {
1732 case StageDesc::k2x2_FetchMode:
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001733 gen2x2FS(stageNum, segments, locations, &sampleCoords,
tomhudson@google.com5960d002011-10-19 20:21:48 +00001734 samplerName, texelSizeName, smear, fsOutColor,
1735 texFunc, modulate, complexCoord, coordDims);
1736 break;
bsalomon@google.com85b505b2011-11-07 14:56:51 +00001737 case StageDesc::kConvolution_FetchMode:
tomhudson@google.com2a2e3ef2011-10-25 19:51:09 +00001738 genConvolutionFS(stageNum, desc, segments,
tomhudson@google.com5960d002011-10-19 20:21:48 +00001739 samplerName, kernelName, smear, imageIncrementName, fsOutColor,
1740 sampleCoords, texFunc, modulate);
1741 break;
1742 default:
bsalomon@google.coma8e686e2011-08-16 15:45:58 +00001743 segments->fFSCode.appendf("\t%s = %s(%s, %s)%s%s;\n",
1744 fsOutColor, texFunc.c_str(),
bsalomon@google.com4fa66942011-09-20 19:06:12 +00001745 samplerName, sampleCoords.c_str(),
bsalomon@google.coma8e686e2011-08-16 15:45:58 +00001746 smear, modulate.c_str());
junov@google.comf93e7172011-03-31 21:26:24 +00001747 }
junov@google.comf93e7172011-03-31 21:26:24 +00001748}
tomhudson@google.com5960d002011-10-19 20:21:48 +00001749
tomhudson@google.com5960d002011-10-19 20:21:48 +00001750