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apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001//
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002// Copyright (c) 2002-2013 The ANGLE Project Authors. All rights reserved.
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00003// Use of this source code is governed by a BSD-style license that can be
4// found in the LICENSE file.
5//
6
7// Program.cpp: Implements the gl::Program class. Implements GL program objects
8// and related functionality. [OpenGL ES 2.0.24] section 2.10.3 page 28.
9
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +000010#include "libGLESv2/BinaryStream.h"
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000011#include "libGLESv2/ProgramBinary.h"
12
13#include "common/debug.h"
apatrick@chromium.org90080e32012-07-09 22:15:33 +000014#include "common/version.h"
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000015
16#include "libGLESv2/main.h"
17#include "libGLESv2/Shader.h"
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000018
19#include <string>
20
daniel@transgaming.com88853c52012-12-20 20:56:40 +000021#undef near
22#undef far
23
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000024namespace gl
25{
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000026std::string str(int i)
27{
28 char buffer[20];
29 snprintf(buffer, sizeof(buffer), "%d", i);
30 return buffer;
31}
32
daniel@transgaming.comdb019952012-12-20 21:13:32 +000033UniformLocation::UniformLocation(const std::string &name, unsigned int element, unsigned int index)
34 : name(name), element(element), index(index)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000035{
36}
37
daniel@transgaming.come87ca002012-07-24 18:30:43 +000038unsigned int ProgramBinary::mCurrentSerial = 1;
39
daniel@transgaming.com77fbf972012-11-28 21:02:55 +000040ProgramBinary::ProgramBinary(rx::Renderer *renderer) : mRenderer(renderer), RefCountObject(0), mSerial(issueSerial())
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000041{
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000042 mPixelExecutable = NULL;
43 mVertexExecutable = NULL;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000044
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000045 mValidated = false;
46
47 for (int index = 0; index < MAX_VERTEX_ATTRIBS; index++)
48 {
49 mSemanticIndex[index] = -1;
50 }
51
52 for (int index = 0; index < MAX_TEXTURE_IMAGE_UNITS; index++)
53 {
54 mSamplersPS[index].active = false;
55 }
56
57 for (int index = 0; index < MAX_VERTEX_TEXTURE_IMAGE_UNITS_VTF; index++)
58 {
59 mSamplersVS[index].active = false;
60 }
61
62 mUsedVertexSamplerRange = 0;
63 mUsedPixelSamplerRange = 0;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000064}
65
66ProgramBinary::~ProgramBinary()
67{
daniel@transgaming.com95892412012-11-28 20:59:09 +000068 delete mPixelExecutable;
69 delete mVertexExecutable;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000070
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000071 while (!mUniforms.empty())
72 {
73 delete mUniforms.back();
74 mUniforms.pop_back();
75 }
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000076}
77
daniel@transgaming.come87ca002012-07-24 18:30:43 +000078unsigned int ProgramBinary::getSerial() const
79{
80 return mSerial;
81}
82
83unsigned int ProgramBinary::issueSerial()
84{
85 return mCurrentSerial++;
86}
87
daniel@transgaming.com95892412012-11-28 20:59:09 +000088rx::ShaderExecutable *ProgramBinary::getPixelExecutable()
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000089{
90 return mPixelExecutable;
91}
92
daniel@transgaming.com95892412012-11-28 20:59:09 +000093rx::ShaderExecutable *ProgramBinary::getVertexExecutable()
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +000094{
95 return mVertexExecutable;
96}
97
98GLuint ProgramBinary::getAttributeLocation(const char *name)
99{
100 if (name)
101 {
102 for (int index = 0; index < MAX_VERTEX_ATTRIBS; index++)
103 {
104 if (mLinkedAttribute[index].name == std::string(name))
105 {
106 return index;
107 }
108 }
109 }
110
111 return -1;
112}
113
114int ProgramBinary::getSemanticIndex(int attributeIndex)
115{
116 ASSERT(attributeIndex >= 0 && attributeIndex < MAX_VERTEX_ATTRIBS);
117
118 return mSemanticIndex[attributeIndex];
119}
120
121// Returns one more than the highest sampler index used.
122GLint ProgramBinary::getUsedSamplerRange(SamplerType type)
123{
124 switch (type)
125 {
126 case SAMPLER_PIXEL:
127 return mUsedPixelSamplerRange;
128 case SAMPLER_VERTEX:
129 return mUsedVertexSamplerRange;
130 default:
131 UNREACHABLE();
132 return 0;
133 }
134}
135
daniel@transgaming.com087e5782012-09-17 21:28:47 +0000136bool ProgramBinary::usesPointSize() const
137{
138 return mUsesPointSize;
139}
140
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000141// Returns the index of the texture image unit (0-19) corresponding to a Direct3D 9 sampler
142// index (0-15 for the pixel shader and 0-3 for the vertex shader).
143GLint ProgramBinary::getSamplerMapping(SamplerType type, unsigned int samplerIndex)
144{
145 GLint logicalTextureUnit = -1;
146
147 switch (type)
148 {
149 case SAMPLER_PIXEL:
150 ASSERT(samplerIndex < sizeof(mSamplersPS)/sizeof(mSamplersPS[0]));
151
152 if (mSamplersPS[samplerIndex].active)
153 {
154 logicalTextureUnit = mSamplersPS[samplerIndex].logicalTextureUnit;
155 }
156 break;
157 case SAMPLER_VERTEX:
158 ASSERT(samplerIndex < sizeof(mSamplersVS)/sizeof(mSamplersVS[0]));
159
160 if (mSamplersVS[samplerIndex].active)
161 {
162 logicalTextureUnit = mSamplersVS[samplerIndex].logicalTextureUnit;
163 }
164 break;
165 default: UNREACHABLE();
166 }
167
168 if (logicalTextureUnit >= 0 && logicalTextureUnit < (GLint)getContext()->getMaximumCombinedTextureImageUnits())
169 {
170 return logicalTextureUnit;
171 }
172
173 return -1;
174}
175
176// Returns the texture type for a given Direct3D 9 sampler type and
177// index (0-15 for the pixel shader and 0-3 for the vertex shader).
178TextureType ProgramBinary::getSamplerTextureType(SamplerType type, unsigned int samplerIndex)
179{
180 switch (type)
181 {
182 case SAMPLER_PIXEL:
183 ASSERT(samplerIndex < sizeof(mSamplersPS)/sizeof(mSamplersPS[0]));
184 ASSERT(mSamplersPS[samplerIndex].active);
185 return mSamplersPS[samplerIndex].textureType;
186 case SAMPLER_VERTEX:
187 ASSERT(samplerIndex < sizeof(mSamplersVS)/sizeof(mSamplersVS[0]));
188 ASSERT(mSamplersVS[samplerIndex].active);
189 return mSamplersVS[samplerIndex].textureType;
190 default: UNREACHABLE();
191 }
192
193 return TEXTURE_2D;
194}
195
196GLint ProgramBinary::getUniformLocation(std::string name)
197{
198 unsigned int subscript = 0;
199
200 // Strip any trailing array operator and retrieve the subscript
201 size_t open = name.find_last_of('[');
202 size_t close = name.find_last_of(']');
203 if (open != std::string::npos && close == name.length() - 1)
204 {
205 subscript = atoi(name.substr(open + 1).c_str());
206 name.erase(open);
207 }
208
209 unsigned int numUniforms = mUniformIndex.size();
210 for (unsigned int location = 0; location < numUniforms; location++)
211 {
212 if (mUniformIndex[location].name == name &&
213 mUniformIndex[location].element == subscript)
214 {
215 return location;
216 }
217 }
218
219 return -1;
220}
221
222bool ProgramBinary::setUniform1fv(GLint location, GLsizei count, const GLfloat* v)
223{
224 if (location < 0 || location >= (int)mUniformIndex.size())
225 {
226 return false;
227 }
228
229 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
230 targetUniform->dirty = true;
231
232 if (targetUniform->type == GL_FLOAT)
233 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000234 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000235
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000236 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000237 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
238
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000239 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000240
241 GLfloat *target = (GLfloat*)targetUniform->data + mUniformIndex[location].element * 4;
242
243 for (int i = 0; i < count; i++)
244 {
245 target[0] = v[0];
246 target[1] = 0;
247 target[2] = 0;
248 target[3] = 0;
249 target += 4;
250 v += 1;
251 }
252 }
253 else if (targetUniform->type == GL_BOOL)
254 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000255 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000256
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000257 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000258 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
259
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000260 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000261 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element;
262
263 for (int i = 0; i < count; ++i)
264 {
265 if (v[i] == 0.0f)
266 {
267 boolParams[i] = GL_FALSE;
268 }
269 else
270 {
271 boolParams[i] = GL_TRUE;
272 }
273 }
274 }
275 else
276 {
277 return false;
278 }
279
280 return true;
281}
282
283bool ProgramBinary::setUniform2fv(GLint location, GLsizei count, const GLfloat *v)
284{
285 if (location < 0 || location >= (int)mUniformIndex.size())
286 {
287 return false;
288 }
289
290 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
291 targetUniform->dirty = true;
292
293 if (targetUniform->type == GL_FLOAT_VEC2)
294 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000295 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000296
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000297 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000298 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
299
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000300 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000301
302 GLfloat *target = (GLfloat*)targetUniform->data + mUniformIndex[location].element * 4;
303
304 for (int i = 0; i < count; i++)
305 {
306 target[0] = v[0];
307 target[1] = v[1];
308 target[2] = 0;
309 target[3] = 0;
310 target += 4;
311 v += 2;
312 }
313 }
314 else if (targetUniform->type == GL_BOOL_VEC2)
315 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000316 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000317
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000318 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000319 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
320
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000321 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000322
323 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 2;
324
325 for (int i = 0; i < count * 2; ++i)
326 {
327 if (v[i] == 0.0f)
328 {
329 boolParams[i] = GL_FALSE;
330 }
331 else
332 {
333 boolParams[i] = GL_TRUE;
334 }
335 }
336 }
337 else
338 {
339 return false;
340 }
341
342 return true;
343}
344
345bool ProgramBinary::setUniform3fv(GLint location, GLsizei count, const GLfloat *v)
346{
347 if (location < 0 || location >= (int)mUniformIndex.size())
348 {
349 return false;
350 }
351
352 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
353 targetUniform->dirty = true;
354
355 if (targetUniform->type == GL_FLOAT_VEC3)
356 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000357 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000358
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000359 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000360 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
361
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000362 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000363
364 GLfloat *target = (GLfloat*)targetUniform->data + mUniformIndex[location].element * 4;
365
366 for (int i = 0; i < count; i++)
367 {
368 target[0] = v[0];
369 target[1] = v[1];
370 target[2] = v[2];
371 target[3] = 0;
372 target += 4;
373 v += 3;
374 }
375 }
376 else if (targetUniform->type == GL_BOOL_VEC3)
377 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000378 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000379
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000380 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000381 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
382
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000383 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000384 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 3;
385
386 for (int i = 0; i < count * 3; ++i)
387 {
388 if (v[i] == 0.0f)
389 {
390 boolParams[i] = GL_FALSE;
391 }
392 else
393 {
394 boolParams[i] = GL_TRUE;
395 }
396 }
397 }
398 else
399 {
400 return false;
401 }
402
403 return true;
404}
405
406bool ProgramBinary::setUniform4fv(GLint location, GLsizei count, const GLfloat *v)
407{
408 if (location < 0 || location >= (int)mUniformIndex.size())
409 {
410 return false;
411 }
412
413 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
414 targetUniform->dirty = true;
415
416 if (targetUniform->type == GL_FLOAT_VEC4)
417 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000418 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000419
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000420 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000421 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
422
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000423 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000424
425 memcpy(targetUniform->data + mUniformIndex[location].element * sizeof(GLfloat) * 4,
426 v, 4 * sizeof(GLfloat) * count);
427 }
428 else if (targetUniform->type == GL_BOOL_VEC4)
429 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000430 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000431
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000432 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000433 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
434
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000435 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000436 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 4;
437
438 for (int i = 0; i < count * 4; ++i)
439 {
440 if (v[i] == 0.0f)
441 {
442 boolParams[i] = GL_FALSE;
443 }
444 else
445 {
446 boolParams[i] = GL_TRUE;
447 }
448 }
449 }
450 else
451 {
452 return false;
453 }
454
455 return true;
456}
457
458template<typename T, int targetWidth, int targetHeight, int srcWidth, int srcHeight>
459void transposeMatrix(T *target, const GLfloat *value)
460{
461 int copyWidth = std::min(targetWidth, srcWidth);
462 int copyHeight = std::min(targetHeight, srcHeight);
463
464 for (int x = 0; x < copyWidth; x++)
465 {
466 for (int y = 0; y < copyHeight; y++)
467 {
468 target[x * targetWidth + y] = (T)value[y * srcWidth + x];
469 }
470 }
471 // clear unfilled right side
472 for (int y = 0; y < copyHeight; y++)
473 {
474 for (int x = srcWidth; x < targetWidth; x++)
475 {
476 target[y * targetWidth + x] = (T)0;
477 }
478 }
479 // clear unfilled bottom.
480 for (int y = srcHeight; y < targetHeight; y++)
481 {
482 for (int x = 0; x < targetWidth; x++)
483 {
484 target[y * targetWidth + x] = (T)0;
485 }
486 }
487}
488
489bool ProgramBinary::setUniformMatrix2fv(GLint location, GLsizei count, const GLfloat *value)
490{
491 if (location < 0 || location >= (int)mUniformIndex.size())
492 {
493 return false;
494 }
495
496 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
497 targetUniform->dirty = true;
498
499 if (targetUniform->type != GL_FLOAT_MAT2)
500 {
501 return false;
502 }
503
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000504 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000505
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000506 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000507 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
508
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000509 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000510
511 GLfloat *target = (GLfloat*)targetUniform->data + mUniformIndex[location].element * 8;
512 for (int i = 0; i < count; i++)
513 {
514 transposeMatrix<GLfloat,4,2,2,2>(target, value);
515 target += 8;
516 value += 4;
517 }
518
519 return true;
520}
521
522bool ProgramBinary::setUniformMatrix3fv(GLint location, GLsizei count, const GLfloat *value)
523{
524 if (location < 0 || location >= (int)mUniformIndex.size())
525 {
526 return false;
527 }
528
529 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
530 targetUniform->dirty = true;
531
532 if (targetUniform->type != GL_FLOAT_MAT3)
533 {
534 return false;
535 }
536
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000537 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000538
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000539 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000540 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
541
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000542 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000543
544 GLfloat *target = (GLfloat*)targetUniform->data + mUniformIndex[location].element * 12;
545 for (int i = 0; i < count; i++)
546 {
547 transposeMatrix<GLfloat,4,3,3,3>(target, value);
548 target += 12;
549 value += 9;
550 }
551
552 return true;
553}
554
555
556bool ProgramBinary::setUniformMatrix4fv(GLint location, GLsizei count, const GLfloat *value)
557{
558 if (location < 0 || location >= (int)mUniformIndex.size())
559 {
560 return false;
561 }
562
563 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
564 targetUniform->dirty = true;
565
566 if (targetUniform->type != GL_FLOAT_MAT4)
567 {
568 return false;
569 }
570
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000571 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000572
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000573 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000574 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
575
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000576 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000577
578 GLfloat *target = (GLfloat*)(targetUniform->data + mUniformIndex[location].element * sizeof(GLfloat) * 16);
579 for (int i = 0; i < count; i++)
580 {
581 transposeMatrix<GLfloat,4,4,4,4>(target, value);
582 target += 16;
583 value += 16;
584 }
585
586 return true;
587}
588
589bool ProgramBinary::setUniform1iv(GLint location, GLsizei count, const GLint *v)
590{
591 if (location < 0 || location >= (int)mUniformIndex.size())
592 {
593 return false;
594 }
595
596 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
597 targetUniform->dirty = true;
598
599 if (targetUniform->type == GL_INT ||
600 targetUniform->type == GL_SAMPLER_2D ||
601 targetUniform->type == GL_SAMPLER_CUBE)
602 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000603 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000604
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000605 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000606 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
607
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000608 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000609
610 memcpy(targetUniform->data + mUniformIndex[location].element * sizeof(GLint),
611 v, sizeof(GLint) * count);
612 }
613 else if (targetUniform->type == GL_BOOL)
614 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000615 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000616
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000617 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000618 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
619
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000620 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000621 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element;
622
623 for (int i = 0; i < count; ++i)
624 {
625 if (v[i] == 0)
626 {
627 boolParams[i] = GL_FALSE;
628 }
629 else
630 {
631 boolParams[i] = GL_TRUE;
632 }
633 }
634 }
635 else
636 {
637 return false;
638 }
639
640 return true;
641}
642
643bool ProgramBinary::setUniform2iv(GLint location, GLsizei count, const GLint *v)
644{
645 if (location < 0 || location >= (int)mUniformIndex.size())
646 {
647 return false;
648 }
649
650 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
651 targetUniform->dirty = true;
652
653 if (targetUniform->type == GL_INT_VEC2)
654 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000655 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000656
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000657 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000658 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
659
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000660 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000661
662 memcpy(targetUniform->data + mUniformIndex[location].element * sizeof(GLint) * 2,
663 v, 2 * sizeof(GLint) * count);
664 }
665 else if (targetUniform->type == GL_BOOL_VEC2)
666 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000667 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000668
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000669 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000670 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
671
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000672 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000673 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 2;
674
675 for (int i = 0; i < count * 2; ++i)
676 {
677 if (v[i] == 0)
678 {
679 boolParams[i] = GL_FALSE;
680 }
681 else
682 {
683 boolParams[i] = GL_TRUE;
684 }
685 }
686 }
687 else
688 {
689 return false;
690 }
691
692 return true;
693}
694
695bool ProgramBinary::setUniform3iv(GLint location, GLsizei count, const GLint *v)
696{
697 if (location < 0 || location >= (int)mUniformIndex.size())
698 {
699 return false;
700 }
701
702 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
703 targetUniform->dirty = true;
704
705 if (targetUniform->type == GL_INT_VEC3)
706 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000707 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000708
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000709 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000710 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
711
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000712 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000713
714 memcpy(targetUniform->data + mUniformIndex[location].element * sizeof(GLint) * 3,
715 v, 3 * sizeof(GLint) * count);
716 }
717 else if (targetUniform->type == GL_BOOL_VEC3)
718 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000719 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000720
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000721 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000722 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
723
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000724 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000725 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 3;
726
727 for (int i = 0; i < count * 3; ++i)
728 {
729 if (v[i] == 0)
730 {
731 boolParams[i] = GL_FALSE;
732 }
733 else
734 {
735 boolParams[i] = GL_TRUE;
736 }
737 }
738 }
739 else
740 {
741 return false;
742 }
743
744 return true;
745}
746
747bool ProgramBinary::setUniform4iv(GLint location, GLsizei count, const GLint *v)
748{
749 if (location < 0 || location >= (int)mUniformIndex.size())
750 {
751 return false;
752 }
753
754 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
755 targetUniform->dirty = true;
756
757 if (targetUniform->type == GL_INT_VEC4)
758 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000759 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000760
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000761 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000762 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
763
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000764 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000765
766 memcpy(targetUniform->data + mUniformIndex[location].element * sizeof(GLint) * 4,
767 v, 4 * sizeof(GLint) * count);
768 }
769 else if (targetUniform->type == GL_BOOL_VEC4)
770 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000771 int elementCount = targetUniform->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000772
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000773 if (elementCount == 1 && count > 1)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000774 return false; // attempting to write an array to a non-array uniform is an INVALID_OPERATION
775
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000776 count = std::min(elementCount - (int)mUniformIndex[location].element, count);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000777 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * 4;
778
779 for (int i = 0; i < count * 4; ++i)
780 {
781 if (v[i] == 0)
782 {
783 boolParams[i] = GL_FALSE;
784 }
785 else
786 {
787 boolParams[i] = GL_TRUE;
788 }
789 }
790 }
791 else
792 {
793 return false;
794 }
795
796 return true;
797}
798
799bool ProgramBinary::getUniformfv(GLint location, GLsizei *bufSize, GLfloat *params)
800{
801 if (location < 0 || location >= (int)mUniformIndex.size())
802 {
803 return false;
804 }
805
806 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
807
808 // sized queries -- ensure the provided buffer is large enough
809 if (bufSize)
810 {
811 int requiredBytes = UniformExternalSize(targetUniform->type);
812 if (*bufSize < requiredBytes)
813 {
814 return false;
815 }
816 }
817
818 switch (targetUniform->type)
819 {
820 case GL_FLOAT_MAT2:
821 transposeMatrix<GLfloat,2,2,4,2>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 8);
822 break;
823 case GL_FLOAT_MAT3:
824 transposeMatrix<GLfloat,3,3,4,3>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 12);
825 break;
826 case GL_FLOAT_MAT4:
827 transposeMatrix<GLfloat,4,4,4,4>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 16);
828 break;
829 default:
830 {
831 unsigned int count = UniformExternalComponentCount(targetUniform->type);
832 unsigned int internalCount = UniformInternalComponentCount(targetUniform->type);
833
834 switch (UniformComponentType(targetUniform->type))
835 {
836 case GL_BOOL:
837 {
838 GLboolean *boolParams = (GLboolean*)targetUniform->data + mUniformIndex[location].element * internalCount;
839
840 for (unsigned int i = 0; i < count; ++i)
841 {
842 params[i] = (boolParams[i] == GL_FALSE) ? 0.0f : 1.0f;
843 }
844 }
845 break;
846 case GL_FLOAT:
847 memcpy(params, targetUniform->data + mUniformIndex[location].element * internalCount * sizeof(GLfloat),
848 count * sizeof(GLfloat));
849 break;
850 case GL_INT:
851 {
852 GLint *intParams = (GLint*)targetUniform->data + mUniformIndex[location].element * internalCount;
853
854 for (unsigned int i = 0; i < count; ++i)
855 {
856 params[i] = (float)intParams[i];
857 }
858 }
859 break;
860 default: UNREACHABLE();
861 }
862 }
863 }
864
865 return true;
866}
867
868bool ProgramBinary::getUniformiv(GLint location, GLsizei *bufSize, GLint *params)
869{
870 if (location < 0 || location >= (int)mUniformIndex.size())
871 {
872 return false;
873 }
874
875 Uniform *targetUniform = mUniforms[mUniformIndex[location].index];
876
877 // sized queries -- ensure the provided buffer is large enough
878 if (bufSize)
879 {
880 int requiredBytes = UniformExternalSize(targetUniform->type);
881 if (*bufSize < requiredBytes)
882 {
883 return false;
884 }
885 }
886
887 switch (targetUniform->type)
888 {
889 case GL_FLOAT_MAT2:
890 {
891 transposeMatrix<GLint,2,2,4,2>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 8);
892 }
893 break;
894 case GL_FLOAT_MAT3:
895 {
896 transposeMatrix<GLint,3,3,4,3>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 12);
897 }
898 break;
899 case GL_FLOAT_MAT4:
900 {
901 transposeMatrix<GLint,4,4,4,4>(params, (GLfloat*)targetUniform->data + mUniformIndex[location].element * 16);
902 }
903 break;
904 default:
905 {
906 unsigned int count = UniformExternalComponentCount(targetUniform->type);
907 unsigned int internalCount = UniformInternalComponentCount(targetUniform->type);
908
909 switch (UniformComponentType(targetUniform->type))
910 {
911 case GL_BOOL:
912 {
913 GLboolean *boolParams = targetUniform->data + mUniformIndex[location].element * internalCount;
914
915 for (unsigned int i = 0; i < count; ++i)
916 {
917 params[i] = (GLint)boolParams[i];
918 }
919 }
920 break;
921 case GL_FLOAT:
922 {
923 GLfloat *floatParams = (GLfloat*)targetUniform->data + mUniformIndex[location].element * internalCount;
924
925 for (unsigned int i = 0; i < count; ++i)
926 {
927 params[i] = (GLint)floatParams[i];
928 }
929 }
930 break;
931 case GL_INT:
932 memcpy(params, targetUniform->data + mUniformIndex[location].element * internalCount * sizeof(GLint),
933 count * sizeof(GLint));
934 break;
935 default: UNREACHABLE();
936 }
937 }
938 }
939
940 return true;
941}
942
943void ProgramBinary::dirtyAllUniforms()
944{
945 unsigned int numUniforms = mUniforms.size();
946 for (unsigned int index = 0; index < numUniforms; index++)
947 {
948 mUniforms[index]->dirty = true;
949 }
950}
951
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000952// Applies all the uniforms set for this program object to the renderer
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +0000953void ProgramBinary::applyUniforms()
954{
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000955 // Retrieve sampler uniform values
956 for (std::vector<Uniform*>::iterator ub = mUniforms.begin(), ue = mUniforms.end(); ub != ue; ++ub)
957 {
958 Uniform *targetUniform = *ub;
959
960 if (targetUniform->dirty)
961 {
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000962 if (targetUniform->type == GL_SAMPLER_2D ||
963 targetUniform->type == GL_SAMPLER_CUBE)
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000964 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +0000965 int count = targetUniform->elementCount();
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000966 GLint *v = (GLint*)targetUniform->data;
967
daniel@transgaming.come76b64b2013-01-11 04:10:08 +0000968 if (targetUniform->psRegisterIndex >= 0)
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000969 {
daniel@transgaming.come76b64b2013-01-11 04:10:08 +0000970 unsigned int firstIndex = targetUniform->psRegisterIndex;
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000971
972 for (int i = 0; i < count; i++)
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000973 {
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000974 unsigned int samplerIndex = firstIndex + i;
975
976 if (samplerIndex < MAX_TEXTURE_IMAGE_UNITS)
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000977 {
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000978 ASSERT(mSamplersPS[samplerIndex].active);
979 mSamplersPS[samplerIndex].logicalTextureUnit = v[i];
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000980 }
981 }
982 }
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000983
daniel@transgaming.come76b64b2013-01-11 04:10:08 +0000984 if (targetUniform->vsRegisterIndex >= 0)
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000985 {
daniel@transgaming.come76b64b2013-01-11 04:10:08 +0000986 unsigned int firstIndex = targetUniform->vsRegisterIndex;
daniel@transgaming.comf9561862012-12-20 21:12:07 +0000987
988 for (int i = 0; i < count; i++)
989 {
990 unsigned int samplerIndex = firstIndex + i;
991
992 if (samplerIndex < MAX_VERTEX_TEXTURE_IMAGE_UNITS_VTF)
993 {
994 ASSERT(mSamplersVS[samplerIndex].active);
995 mSamplersVS[samplerIndex].logicalTextureUnit = v[i];
996 }
997 }
998 }
daniel@transgaming.comb6e55102012-12-20 21:08:14 +0000999 }
1000 }
1001 }
1002
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00001003 mRenderer->applyUniforms(&mUniforms, mVertexConstants, mPixelConstants);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001004}
1005
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001006// Packs varyings into generic varying registers, using the algorithm from [OpenGL ES Shading Language 1.00 rev. 17] appendix A section 7 page 111
1007// Returns the number of used varying registers, or -1 if unsuccesful
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001008int ProgramBinary::packVaryings(InfoLog &infoLog, const Varying *packing[][4], FragmentShader *fragmentShader)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001009{
1010 Context *context = getContext();
1011 const int maxVaryingVectors = context->getMaximumVaryingVectors();
1012
1013 for (VaryingList::iterator varying = fragmentShader->mVaryings.begin(); varying != fragmentShader->mVaryings.end(); varying++)
1014 {
1015 int n = VariableRowCount(varying->type) * varying->size;
1016 int m = VariableColumnCount(varying->type);
1017 bool success = false;
1018
1019 if (m == 2 || m == 3 || m == 4)
1020 {
1021 for (int r = 0; r <= maxVaryingVectors - n && !success; r++)
1022 {
1023 bool available = true;
1024
1025 for (int y = 0; y < n && available; y++)
1026 {
1027 for (int x = 0; x < m && available; x++)
1028 {
1029 if (packing[r + y][x])
1030 {
1031 available = false;
1032 }
1033 }
1034 }
1035
1036 if (available)
1037 {
1038 varying->reg = r;
1039 varying->col = 0;
1040
1041 for (int y = 0; y < n; y++)
1042 {
1043 for (int x = 0; x < m; x++)
1044 {
1045 packing[r + y][x] = &*varying;
1046 }
1047 }
1048
1049 success = true;
1050 }
1051 }
1052
1053 if (!success && m == 2)
1054 {
1055 for (int r = maxVaryingVectors - n; r >= 0 && !success; r--)
1056 {
1057 bool available = true;
1058
1059 for (int y = 0; y < n && available; y++)
1060 {
1061 for (int x = 2; x < 4 && available; x++)
1062 {
1063 if (packing[r + y][x])
1064 {
1065 available = false;
1066 }
1067 }
1068 }
1069
1070 if (available)
1071 {
1072 varying->reg = r;
1073 varying->col = 2;
1074
1075 for (int y = 0; y < n; y++)
1076 {
1077 for (int x = 2; x < 4; x++)
1078 {
1079 packing[r + y][x] = &*varying;
1080 }
1081 }
1082
1083 success = true;
1084 }
1085 }
1086 }
1087 }
1088 else if (m == 1)
1089 {
1090 int space[4] = {0};
1091
1092 for (int y = 0; y < maxVaryingVectors; y++)
1093 {
1094 for (int x = 0; x < 4; x++)
1095 {
1096 space[x] += packing[y][x] ? 0 : 1;
1097 }
1098 }
1099
1100 int column = 0;
1101
1102 for (int x = 0; x < 4; x++)
1103 {
1104 if (space[x] >= n && space[x] < space[column])
1105 {
1106 column = x;
1107 }
1108 }
1109
1110 if (space[column] >= n)
1111 {
1112 for (int r = 0; r < maxVaryingVectors; r++)
1113 {
1114 if (!packing[r][column])
1115 {
1116 varying->reg = r;
1117
1118 for (int y = r; y < r + n; y++)
1119 {
1120 packing[y][column] = &*varying;
1121 }
1122
1123 break;
1124 }
1125 }
1126
1127 varying->col = column;
1128
1129 success = true;
1130 }
1131 }
1132 else UNREACHABLE();
1133
1134 if (!success)
1135 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001136 infoLog.append("Could not pack varying %s", varying->name.c_str());
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001137
1138 return -1;
1139 }
1140 }
1141
1142 // Return the number of used registers
1143 int registers = 0;
1144
1145 for (int r = 0; r < maxVaryingVectors; r++)
1146 {
1147 if (packing[r][0] || packing[r][1] || packing[r][2] || packing[r][3])
1148 {
1149 registers++;
1150 }
1151 }
1152
1153 return registers;
1154}
1155
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001156bool ProgramBinary::linkVaryings(InfoLog &infoLog, std::string& pixelHLSL, std::string& vertexHLSL, FragmentShader *fragmentShader, VertexShader *vertexShader)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001157{
1158 if (pixelHLSL.empty() || vertexHLSL.empty())
1159 {
1160 return false;
1161 }
1162
1163 // Reset the varying register assignments
1164 for (VaryingList::iterator fragVar = fragmentShader->mVaryings.begin(); fragVar != fragmentShader->mVaryings.end(); fragVar++)
1165 {
1166 fragVar->reg = -1;
1167 fragVar->col = -1;
1168 }
1169
1170 for (VaryingList::iterator vtxVar = vertexShader->mVaryings.begin(); vtxVar != vertexShader->mVaryings.end(); vtxVar++)
1171 {
1172 vtxVar->reg = -1;
1173 vtxVar->col = -1;
1174 }
1175
1176 // Map the varyings to the register file
1177 const Varying *packing[MAX_VARYING_VECTORS_SM3][4] = {NULL};
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001178 int registers = packVaryings(infoLog, packing, fragmentShader);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001179
1180 if (registers < 0)
1181 {
1182 return false;
1183 }
1184
1185 // Write the HLSL input/output declarations
daniel@transgaming.comc5693152012-11-28 21:03:02 +00001186 const bool sm3 = (mRenderer->getMajorShaderModel() >= 3);
1187 const bool sm4 = (mRenderer->getMajorShaderModel() >= 4);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001188 Context *context = getContext();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001189 const int maxVaryingVectors = context->getMaximumVaryingVectors();
1190
1191 if (registers == maxVaryingVectors && fragmentShader->mUsesFragCoord)
1192 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001193 infoLog.append("No varying registers left to support gl_FragCoord");
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001194
1195 return false;
1196 }
1197
1198 for (VaryingList::iterator input = fragmentShader->mVaryings.begin(); input != fragmentShader->mVaryings.end(); input++)
1199 {
1200 bool matched = false;
1201
1202 for (VaryingList::iterator output = vertexShader->mVaryings.begin(); output != vertexShader->mVaryings.end(); output++)
1203 {
1204 if (output->name == input->name)
1205 {
1206 if (output->type != input->type || output->size != input->size)
1207 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001208 infoLog.append("Type of vertex varying %s does not match that of the fragment varying", output->name.c_str());
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001209
1210 return false;
1211 }
1212
1213 output->reg = input->reg;
1214 output->col = input->col;
1215
1216 matched = true;
1217 break;
1218 }
1219 }
1220
1221 if (!matched)
1222 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001223 infoLog.append("Fragment varying %s does not match any vertex varying", input->name.c_str());
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001224
1225 return false;
1226 }
1227 }
1228
daniel@transgaming.com087e5782012-09-17 21:28:47 +00001229 mUsesPointSize = vertexShader->mUsesPointSize;
1230 std::string varyingSemantic = (mUsesPointSize && sm3) ? "COLOR" : "TEXCOORD";
daniel@transgaming.comc5693152012-11-28 21:03:02 +00001231 std::string targetSemantic = sm4 ? "SV_Target" : "COLOR";
daniel@transgaming.com617048e2012-11-28 21:05:22 +00001232 std::string positionSemantic = sm4 ? "SV_POSITION" : "POSITION";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001233
1234 vertexHLSL += "struct VS_INPUT\n"
1235 "{\n";
1236
1237 int semanticIndex = 0;
1238 for (AttributeArray::iterator attribute = vertexShader->mAttributes.begin(); attribute != vertexShader->mAttributes.end(); attribute++)
1239 {
1240 switch (attribute->type)
1241 {
1242 case GL_FLOAT: vertexHLSL += " float "; break;
1243 case GL_FLOAT_VEC2: vertexHLSL += " float2 "; break;
1244 case GL_FLOAT_VEC3: vertexHLSL += " float3 "; break;
1245 case GL_FLOAT_VEC4: vertexHLSL += " float4 "; break;
1246 case GL_FLOAT_MAT2: vertexHLSL += " float2x2 "; break;
1247 case GL_FLOAT_MAT3: vertexHLSL += " float3x3 "; break;
1248 case GL_FLOAT_MAT4: vertexHLSL += " float4x4 "; break;
1249 default: UNREACHABLE();
1250 }
1251
1252 vertexHLSL += decorateAttribute(attribute->name) + " : TEXCOORD" + str(semanticIndex) + ";\n";
1253
1254 semanticIndex += VariableRowCount(attribute->type);
1255 }
1256
1257 vertexHLSL += "};\n"
1258 "\n"
1259 "struct VS_OUTPUT\n"
daniel@transgaming.com9c4a6252013-01-11 04:07:18 +00001260 "{\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001261
1262 for (int r = 0; r < registers; r++)
1263 {
1264 int registerSize = packing[r][3] ? 4 : (packing[r][2] ? 3 : (packing[r][1] ? 2 : 1));
1265
1266 vertexHLSL += " float" + str(registerSize) + " v" + str(r) + " : " + varyingSemantic + str(r) + ";\n";
1267 }
1268
1269 if (fragmentShader->mUsesFragCoord)
1270 {
1271 vertexHLSL += " float4 gl_FragCoord : " + varyingSemantic + str(registers) + ";\n";
1272 }
1273
1274 if (vertexShader->mUsesPointSize && sm3)
1275 {
1276 vertexHLSL += " float gl_PointSize : PSIZE;\n";
1277 }
1278
daniel@transgaming.com9c4a6252013-01-11 04:07:18 +00001279 vertexHLSL += " float4 gl_Position : " + positionSemantic + ";\n"
1280 "};\n"
1281 "\n"
1282 "VS_OUTPUT main(VS_INPUT input)\n"
1283 "{\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001284
1285 for (AttributeArray::iterator attribute = vertexShader->mAttributes.begin(); attribute != vertexShader->mAttributes.end(); attribute++)
1286 {
1287 vertexHLSL += " " + decorateAttribute(attribute->name) + " = ";
1288
1289 if (VariableRowCount(attribute->type) > 1) // Matrix
1290 {
1291 vertexHLSL += "transpose";
1292 }
1293
1294 vertexHLSL += "(input." + decorateAttribute(attribute->name) + ");\n";
1295 }
1296
1297 vertexHLSL += "\n"
1298 " gl_main();\n"
1299 "\n"
1300 " VS_OUTPUT output;\n"
1301 " output.gl_Position.x = gl_Position.x - dx_HalfPixelSize.x * gl_Position.w;\n"
apatrick@chromium.org9616e582012-06-22 18:27:01 +00001302 " output.gl_Position.y = -(gl_Position.y + dx_HalfPixelSize.y * gl_Position.w);\n"
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001303 " output.gl_Position.z = (gl_Position.z + gl_Position.w) * 0.5;\n"
1304 " output.gl_Position.w = gl_Position.w;\n";
1305
1306 if (vertexShader->mUsesPointSize && sm3)
1307 {
daniel@transgaming.com13be3e42012-07-04 19:16:24 +00001308 vertexHLSL += " output.gl_PointSize = gl_PointSize;\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001309 }
1310
1311 if (fragmentShader->mUsesFragCoord)
1312 {
1313 vertexHLSL += " output.gl_FragCoord = gl_Position;\n";
1314 }
1315
1316 for (VaryingList::iterator varying = vertexShader->mVaryings.begin(); varying != vertexShader->mVaryings.end(); varying++)
1317 {
1318 if (varying->reg >= 0)
1319 {
1320 for (int i = 0; i < varying->size; i++)
1321 {
1322 int rows = VariableRowCount(varying->type);
1323
1324 for (int j = 0; j < rows; j++)
1325 {
1326 int r = varying->reg + i * rows + j;
1327 vertexHLSL += " output.v" + str(r);
1328
1329 bool sharedRegister = false; // Register used by multiple varyings
1330
1331 for (int x = 0; x < 4; x++)
1332 {
1333 if (packing[r][x] && packing[r][x] != packing[r][0])
1334 {
1335 sharedRegister = true;
1336 break;
1337 }
1338 }
1339
1340 if(sharedRegister)
1341 {
1342 vertexHLSL += ".";
1343
1344 for (int x = 0; x < 4; x++)
1345 {
1346 if (packing[r][x] == &*varying)
1347 {
1348 switch(x)
1349 {
1350 case 0: vertexHLSL += "x"; break;
1351 case 1: vertexHLSL += "y"; break;
1352 case 2: vertexHLSL += "z"; break;
1353 case 3: vertexHLSL += "w"; break;
1354 }
1355 }
1356 }
1357 }
1358
1359 vertexHLSL += " = " + varying->name;
1360
1361 if (varying->array)
1362 {
1363 vertexHLSL += "[" + str(i) + "]";
1364 }
1365
1366 if (rows > 1)
1367 {
1368 vertexHLSL += "[" + str(j) + "]";
1369 }
1370
1371 vertexHLSL += ";\n";
1372 }
1373 }
1374 }
1375 }
1376
1377 vertexHLSL += "\n"
1378 " return output;\n"
1379 "}\n";
1380
1381 pixelHLSL += "struct PS_INPUT\n"
1382 "{\n";
1383
1384 for (VaryingList::iterator varying = fragmentShader->mVaryings.begin(); varying != fragmentShader->mVaryings.end(); varying++)
1385 {
1386 if (varying->reg >= 0)
1387 {
1388 for (int i = 0; i < varying->size; i++)
1389 {
1390 int rows = VariableRowCount(varying->type);
1391 for (int j = 0; j < rows; j++)
1392 {
1393 std::string n = str(varying->reg + i * rows + j);
daniel@transgaming.com00c0d152013-01-11 04:07:23 +00001394 pixelHLSL += " float" + str(VariableColumnCount(varying->type)) + " v" + n + " : " + varyingSemantic + n + ";\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001395 }
1396 }
1397 }
1398 else UNREACHABLE();
1399 }
1400
1401 if (fragmentShader->mUsesFragCoord)
1402 {
1403 pixelHLSL += " float4 gl_FragCoord : " + varyingSemantic + str(registers) + ";\n";
daniel@transgaming.com74471e02013-01-11 04:10:26 +00001404
1405 if (sm4)
1406 {
1407 pixelHLSL += " float4 dx_VPos : SV_Position;\n";
1408 }
1409 else if (sm3)
1410 {
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001411 pixelHLSL += " float2 dx_VPos : VPOS;\n";
1412 }
1413 }
1414
1415 if (fragmentShader->mUsesPointCoord && sm3)
1416 {
1417 pixelHLSL += " float2 gl_PointCoord : TEXCOORD0;\n";
1418 }
1419
1420 if (fragmentShader->mUsesFrontFacing)
1421 {
1422 pixelHLSL += " float vFace : VFACE;\n";
1423 }
1424
1425 pixelHLSL += "};\n"
1426 "\n"
1427 "struct PS_OUTPUT\n"
1428 "{\n"
daniel@transgaming.comc5693152012-11-28 21:03:02 +00001429 " float4 gl_Color[1] : " + targetSemantic + ";\n"
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001430 "};\n"
1431 "\n"
1432 "PS_OUTPUT main(PS_INPUT input)\n"
1433 "{\n";
1434
1435 if (fragmentShader->mUsesFragCoord)
1436 {
1437 pixelHLSL += " float rhw = 1.0 / input.gl_FragCoord.w;\n";
1438
daniel@transgaming.com74471e02013-01-11 04:10:26 +00001439 if (sm4)
1440 {
1441 pixelHLSL += " gl_FragCoord.x = input.dx_VPos.x;\n"
1442 " gl_FragCoord.y = input.dx_VPos.y;\n";
1443 }
1444 else if (sm3)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001445 {
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001446 pixelHLSL += " gl_FragCoord.x = input.dx_VPos.x + 0.5;\n"
daniel@transgaming.com74471e02013-01-11 04:10:26 +00001447 " gl_FragCoord.y = input.dx_VPos.y + 0.5;\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001448 }
1449 else
1450 {
1451 // dx_Coord contains the viewport width/2, height/2, center.x and center.y. See Context::applyRenderTarget()
1452 pixelHLSL += " gl_FragCoord.x = (input.gl_FragCoord.x * rhw) * dx_Coord.x + dx_Coord.z;\n"
daniel@transgaming.com74471e02013-01-11 04:10:26 +00001453 " gl_FragCoord.y = (input.gl_FragCoord.y * rhw) * dx_Coord.y + dx_Coord.w;\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001454 }
1455
daniel@transgaming.com12985182012-12-20 20:56:31 +00001456 pixelHLSL += " gl_FragCoord.z = (input.gl_FragCoord.z * rhw) * dx_DepthFront.x + dx_DepthFront.y;\n"
daniel@transgaming.com74471e02013-01-11 04:10:26 +00001457 " gl_FragCoord.w = rhw;\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001458 }
1459
1460 if (fragmentShader->mUsesPointCoord && sm3)
1461 {
apatrick@chromium.org9616e582012-06-22 18:27:01 +00001462 pixelHLSL += " gl_PointCoord.x = input.gl_PointCoord.x;\n";
1463 pixelHLSL += " gl_PointCoord.y = 1.0 - input.gl_PointCoord.y;\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001464 }
1465
1466 if (fragmentShader->mUsesFrontFacing)
1467 {
daniel@transgaming.com12985182012-12-20 20:56:31 +00001468 pixelHLSL += " gl_FrontFacing = (input.vFace * dx_DepthFront.z >= 0.0);\n";
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001469 }
1470
1471 for (VaryingList::iterator varying = fragmentShader->mVaryings.begin(); varying != fragmentShader->mVaryings.end(); varying++)
1472 {
1473 if (varying->reg >= 0)
1474 {
1475 for (int i = 0; i < varying->size; i++)
1476 {
1477 int rows = VariableRowCount(varying->type);
1478 for (int j = 0; j < rows; j++)
1479 {
1480 std::string n = str(varying->reg + i * rows + j);
1481 pixelHLSL += " " + varying->name;
1482
1483 if (varying->array)
1484 {
1485 pixelHLSL += "[" + str(i) + "]";
1486 }
1487
1488 if (rows > 1)
1489 {
1490 pixelHLSL += "[" + str(j) + "]";
1491 }
1492
daniel@transgaming.comf5a2ae52012-12-20 20:52:03 +00001493 switch (VariableColumnCount(varying->type))
1494 {
1495 case 1: pixelHLSL += " = input.v" + n + ".x;\n"; break;
1496 case 2: pixelHLSL += " = input.v" + n + ".xy;\n"; break;
1497 case 3: pixelHLSL += " = input.v" + n + ".xyz;\n"; break;
1498 case 4: pixelHLSL += " = input.v" + n + ";\n"; break;
1499 default: UNREACHABLE();
1500 }
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001501 }
1502 }
1503 }
1504 else UNREACHABLE();
1505 }
1506
1507 pixelHLSL += "\n"
1508 " gl_main();\n"
1509 "\n"
1510 " PS_OUTPUT output;\n"
1511 " output.gl_Color[0] = gl_Color[0];\n"
1512 "\n"
1513 " return output;\n"
1514 "}\n";
1515
1516 return true;
1517}
1518
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001519bool ProgramBinary::load(InfoLog &infoLog, const void *binary, GLsizei length)
1520{
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001521 BinaryInputStream stream(binary, length);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001522
1523 int format = 0;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001524 stream.read(&format);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001525 if (format != GL_PROGRAM_BINARY_ANGLE)
1526 {
1527 infoLog.append("Invalid program binary format.");
1528 return false;
1529 }
1530
1531 int version = 0;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001532 stream.read(&version);
daniel@transgaming.com8226f4c2012-12-20 21:08:42 +00001533 if (version != VERSION_DWORD)
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001534 {
1535 infoLog.append("Invalid program binary version.");
1536 return false;
1537 }
1538
1539 for (int i = 0; i < MAX_VERTEX_ATTRIBS; ++i)
1540 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001541 stream.read(&mLinkedAttribute[i].type);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001542 std::string name;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001543 stream.read(&name);
1544 mLinkedAttribute[i].name = name;
1545 stream.read(&mSemanticIndex[i]);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001546 }
1547
1548 for (unsigned int i = 0; i < MAX_TEXTURE_IMAGE_UNITS; ++i)
1549 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001550 stream.read(&mSamplersPS[i].active);
1551 stream.read(&mSamplersPS[i].logicalTextureUnit);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001552
1553 int textureType;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001554 stream.read(&textureType);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001555 mSamplersPS[i].textureType = (TextureType) textureType;
1556 }
1557
1558 for (unsigned int i = 0; i < MAX_VERTEX_TEXTURE_IMAGE_UNITS_VTF; ++i)
1559 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001560 stream.read(&mSamplersVS[i].active);
1561 stream.read(&mSamplersVS[i].logicalTextureUnit);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001562
1563 int textureType;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001564 stream.read(&textureType);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001565 mSamplersVS[i].textureType = (TextureType) textureType;
1566 }
1567
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001568 stream.read(&mUsedVertexSamplerRange);
1569 stream.read(&mUsedPixelSamplerRange);
daniel@transgaming.com9aa6fe12012-12-20 21:13:39 +00001570 stream.read(&mUsesPointSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001571
1572 unsigned int size;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001573 stream.read(&size);
1574 if (stream.error())
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001575 {
1576 infoLog.append("Invalid program binary.");
1577 return false;
1578 }
1579
1580 mUniforms.resize(size);
1581 for (unsigned int i = 0; i < size; ++i)
1582 {
1583 GLenum type;
daniel@transgaming.comdb019952012-12-20 21:13:32 +00001584 std::string name;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001585 unsigned int arraySize;
1586
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001587 stream.read(&type);
daniel@transgaming.comdb019952012-12-20 21:13:32 +00001588 stream.read(&name);
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001589 stream.read(&arraySize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001590
daniel@transgaming.comdb019952012-12-20 21:13:32 +00001591 mUniforms[i] = new Uniform(type, name, arraySize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001592
daniel@transgaming.come76b64b2013-01-11 04:10:08 +00001593 stream.read(&mUniforms[i]->psRegisterIndex);
1594 stream.read(&mUniforms[i]->vsRegisterIndex);
1595 stream.read(&mUniforms[i]->registerCount);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001596 }
1597
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001598 stream.read(&size);
1599 if (stream.error())
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001600 {
1601 infoLog.append("Invalid program binary.");
1602 return false;
1603 }
1604
1605 mUniformIndex.resize(size);
1606 for (unsigned int i = 0; i < size; ++i)
1607 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001608 stream.read(&mUniformIndex[i].name);
1609 stream.read(&mUniformIndex[i].element);
1610 stream.read(&mUniformIndex[i].index);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001611 }
1612
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001613 unsigned int pixelShaderSize;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001614 stream.read(&pixelShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001615
1616 unsigned int vertexShaderSize;
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001617 stream.read(&vertexShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001618
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001619 const char *ptr = (const char*) binary + stream.offset();
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001620
daniel@transgaming.com36038542012-11-28 20:59:26 +00001621 const GUID *binaryIdentifier = (const GUID *) ptr;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001622 ptr += sizeof(GUID);
1623
daniel@transgaming.com4ca789e2012-10-31 18:46:40 +00001624 GUID identifier = mRenderer->getAdapterIdentifier();
1625 if (memcmp(&identifier, binaryIdentifier, sizeof(GUID)) != 0)
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001626 {
1627 infoLog.append("Invalid program binary.");
1628 return false;
1629 }
1630
1631 const char *pixelShaderFunction = ptr;
1632 ptr += pixelShaderSize;
1633
1634 const char *vertexShaderFunction = ptr;
1635 ptr += vertexShaderSize;
1636
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001637 mPixelExecutable = mRenderer->loadExecutable(reinterpret_cast<const DWORD*>(pixelShaderFunction),
daniel@transgaming.com2275f912012-12-20 21:13:22 +00001638 pixelShaderSize, GL_FRAGMENT_SHADER);
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001639 if (!mPixelExecutable)
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001640 {
1641 infoLog.append("Could not create pixel shader.");
1642 return false;
1643 }
1644
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001645 mVertexExecutable = mRenderer->loadExecutable(reinterpret_cast<const DWORD*>(vertexShaderFunction),
daniel@transgaming.com2275f912012-12-20 21:13:22 +00001646 vertexShaderSize, GL_VERTEX_SHADER);
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001647 if (!mVertexExecutable)
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001648 {
1649 infoLog.append("Could not create vertex shader.");
daniel@transgaming.com95892412012-11-28 20:59:09 +00001650 delete mPixelExecutable;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001651 mPixelExecutable = NULL;
1652 return false;
1653 }
1654
1655 return true;
1656}
1657
1658bool ProgramBinary::save(void* binary, GLsizei bufSize, GLsizei *length)
1659{
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001660 BinaryOutputStream stream;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001661
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001662 stream.write(GL_PROGRAM_BINARY_ANGLE);
daniel@transgaming.com8226f4c2012-12-20 21:08:42 +00001663 stream.write(VERSION_DWORD);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001664
1665 for (unsigned int i = 0; i < MAX_VERTEX_ATTRIBS; ++i)
1666 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001667 stream.write(mLinkedAttribute[i].type);
1668 stream.write(mLinkedAttribute[i].name);
1669 stream.write(mSemanticIndex[i]);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001670 }
1671
1672 for (unsigned int i = 0; i < MAX_TEXTURE_IMAGE_UNITS; ++i)
1673 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001674 stream.write(mSamplersPS[i].active);
1675 stream.write(mSamplersPS[i].logicalTextureUnit);
1676 stream.write((int) mSamplersPS[i].textureType);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001677 }
1678
1679 for (unsigned int i = 0; i < MAX_VERTEX_TEXTURE_IMAGE_UNITS_VTF; ++i)
1680 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001681 stream.write(mSamplersVS[i].active);
1682 stream.write(mSamplersVS[i].logicalTextureUnit);
1683 stream.write((int) mSamplersVS[i].textureType);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001684 }
1685
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001686 stream.write(mUsedVertexSamplerRange);
1687 stream.write(mUsedPixelSamplerRange);
daniel@transgaming.com9aa6fe12012-12-20 21:13:39 +00001688 stream.write(mUsesPointSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001689
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001690 stream.write(mUniforms.size());
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001691 for (unsigned int i = 0; i < mUniforms.size(); ++i)
1692 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001693 stream.write(mUniforms[i]->type);
daniel@transgaming.comdb019952012-12-20 21:13:32 +00001694 stream.write(mUniforms[i]->name);
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001695 stream.write(mUniforms[i]->arraySize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001696
daniel@transgaming.come76b64b2013-01-11 04:10:08 +00001697 stream.write(mUniforms[i]->psRegisterIndex);
1698 stream.write(mUniforms[i]->vsRegisterIndex);
1699 stream.write(mUniforms[i]->registerCount);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001700 }
1701
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001702 stream.write(mUniformIndex.size());
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001703 for (unsigned int i = 0; i < mUniformIndex.size(); ++i)
1704 {
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001705 stream.write(mUniformIndex[i].name);
1706 stream.write(mUniformIndex[i].element);
1707 stream.write(mUniformIndex[i].index);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001708 }
1709
daniel@transgaming.com7b18d0c2012-11-28 21:04:10 +00001710 UINT pixelShaderSize = mPixelExecutable->getLength();
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001711 stream.write(pixelShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001712
daniel@transgaming.com7b18d0c2012-11-28 21:04:10 +00001713 UINT vertexShaderSize = mVertexExecutable->getLength();
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001714 stream.write(vertexShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001715
daniel@transgaming.com4ca789e2012-10-31 18:46:40 +00001716 GUID identifier = mRenderer->getAdapterIdentifier();
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001717
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001718 GLsizei streamLength = stream.length();
1719 const void *streamData = stream.data();
1720
1721 GLsizei totalLength = streamLength + sizeof(GUID) + pixelShaderSize + vertexShaderSize;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001722 if (totalLength > bufSize)
1723 {
1724 if (length)
1725 {
1726 *length = 0;
1727 }
1728
1729 return false;
1730 }
1731
1732 if (binary)
1733 {
1734 char *ptr = (char*) binary;
1735
apatrick@chromium.org6f1796f2012-07-12 01:40:11 +00001736 memcpy(ptr, streamData, streamLength);
1737 ptr += streamLength;
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001738
daniel@transgaming.com4ca789e2012-10-31 18:46:40 +00001739 memcpy(ptr, &identifier, sizeof(GUID));
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001740 ptr += sizeof(GUID);
1741
daniel@transgaming.com7b18d0c2012-11-28 21:04:10 +00001742 memcpy(ptr, mPixelExecutable->getFunction(), pixelShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001743 ptr += pixelShaderSize;
1744
daniel@transgaming.com7b18d0c2012-11-28 21:04:10 +00001745 memcpy(ptr, mVertexExecutable->getFunction(), vertexShaderSize);
apatrick@chromium.org90080e32012-07-09 22:15:33 +00001746 ptr += vertexShaderSize;
1747
1748 ASSERT(ptr - totalLength == binary);
1749 }
1750
1751 if (length)
1752 {
1753 *length = totalLength;
1754 }
1755
1756 return true;
1757}
1758
1759GLint ProgramBinary::getLength()
1760{
1761 GLint length;
1762 if (save(NULL, INT_MAX, &length))
1763 {
1764 return length;
1765 }
1766 else
1767 {
1768 return 0;
1769 }
1770}
1771
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001772bool ProgramBinary::link(InfoLog &infoLog, const AttributeBindings &attributeBindings, FragmentShader *fragmentShader, VertexShader *vertexShader)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001773{
1774 if (!fragmentShader || !fragmentShader->isCompiled())
1775 {
1776 return false;
1777 }
1778
1779 if (!vertexShader || !vertexShader->isCompiled())
1780 {
1781 return false;
1782 }
1783
1784 std::string pixelHLSL = fragmentShader->getHLSL();
1785 std::string vertexHLSL = vertexShader->getHLSL();
1786
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001787 if (!linkVaryings(infoLog, pixelHLSL, vertexHLSL, fragmentShader, vertexShader))
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001788 {
1789 return false;
1790 }
1791
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001792 bool success = true;
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001793 mVertexExecutable = mRenderer->compileToExecutable(infoLog, vertexHLSL.c_str(), GL_VERTEX_SHADER);
1794 mPixelExecutable = mRenderer->compileToExecutable(infoLog, pixelHLSL.c_str(), GL_FRAGMENT_SHADER);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001795
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001796 if (!mVertexExecutable || !mPixelExecutable)
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001797 {
daniel@transgaming.com95892412012-11-28 20:59:09 +00001798 infoLog.append("Failed to create D3D shaders.");
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001799 success = false;
daniel@transgaming.com95892412012-11-28 20:59:09 +00001800
daniel@transgaming.com4f0f65e2012-11-28 21:00:00 +00001801 delete mVertexExecutable;
1802 mVertexExecutable = NULL;
1803 delete mPixelExecutable;
1804 mPixelExecutable = NULL;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001805 }
1806
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001807 if (!linkAttributes(infoLog, attributeBindings, fragmentShader, vertexShader))
1808 {
1809 success = false;
1810 }
1811
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001812 if (!linkUniforms(infoLog, vertexShader->getUniforms(), fragmentShader->getUniforms()))
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001813 {
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001814 success = false;
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001815 }
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001816
daniel@transgaming.comc68fa872012-11-28 20:58:32 +00001817 Context *context = getContext();
1818 context->markDxUniformsDirty();
1819
1820 return success;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001821}
1822
1823// Determines the mapping between GL attributes and Direct3D 9 vertex stream usage indices
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001824bool ProgramBinary::linkAttributes(InfoLog &infoLog, const AttributeBindings &attributeBindings, FragmentShader *fragmentShader, VertexShader *vertexShader)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001825{
1826 unsigned int usedLocations = 0;
1827
1828 // Link attributes that have a binding location
1829 for (AttributeArray::iterator attribute = vertexShader->mAttributes.begin(); attribute != vertexShader->mAttributes.end(); attribute++)
1830 {
1831 int location = attributeBindings.getAttributeBinding(attribute->name);
1832
1833 if (location != -1) // Set by glBindAttribLocation
1834 {
1835 if (!mLinkedAttribute[location].name.empty())
1836 {
1837 // Multiple active attributes bound to the same location; not an error
1838 }
1839
1840 mLinkedAttribute[location] = *attribute;
1841
1842 int rows = VariableRowCount(attribute->type);
1843
1844 if (rows + location > MAX_VERTEX_ATTRIBS)
1845 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001846 infoLog.append("Active attribute (%s) at location %d is too big to fit", attribute->name.c_str(), location);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001847
1848 return false;
1849 }
1850
1851 for (int i = 0; i < rows; i++)
1852 {
1853 usedLocations |= 1 << (location + i);
1854 }
1855 }
1856 }
1857
1858 // Link attributes that don't have a binding location
1859 for (AttributeArray::iterator attribute = vertexShader->mAttributes.begin(); attribute != vertexShader->mAttributes.end(); attribute++)
1860 {
1861 int location = attributeBindings.getAttributeBinding(attribute->name);
1862
1863 if (location == -1) // Not set by glBindAttribLocation
1864 {
1865 int rows = VariableRowCount(attribute->type);
1866 int availableIndex = AllocateFirstFreeBits(&usedLocations, rows, MAX_VERTEX_ATTRIBS);
1867
1868 if (availableIndex == -1 || availableIndex + rows > MAX_VERTEX_ATTRIBS)
1869 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00001870 infoLog.append("Too many active attributes (%s)", attribute->name.c_str());
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001871
1872 return false; // Fail to link
1873 }
1874
1875 mLinkedAttribute[availableIndex] = *attribute;
1876 }
1877 }
1878
1879 for (int attributeIndex = 0; attributeIndex < MAX_VERTEX_ATTRIBS; )
1880 {
1881 int index = vertexShader->getSemanticIndex(mLinkedAttribute[attributeIndex].name);
1882 int rows = std::max(VariableRowCount(mLinkedAttribute[attributeIndex].type), 1);
1883
1884 for (int r = 0; r < rows; r++)
1885 {
1886 mSemanticIndex[attributeIndex++] = index++;
1887 }
1888 }
1889
1890 return true;
1891}
1892
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001893bool ProgramBinary::linkUniforms(InfoLog &infoLog, const sh::ActiveUniforms &vertexUniforms, const sh::ActiveUniforms &fragmentUniforms)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001894{
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001895 for (sh::ActiveUniforms::const_iterator uniform = vertexUniforms.begin(); uniform != vertexUniforms.end(); uniform++)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001896 {
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001897 if (!defineUniform(GL_VERTEX_SHADER, *uniform, infoLog))
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001898 {
1899 return false;
1900 }
1901 }
1902
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001903 for (sh::ActiveUniforms::const_iterator uniform = fragmentUniforms.begin(); uniform != fragmentUniforms.end(); uniform++)
daniel@transgaming.coma418ef12012-11-28 20:58:22 +00001904 {
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001905 if (!defineUniform(GL_FRAGMENT_SHADER, *uniform, infoLog))
daniel@transgaming.coma418ef12012-11-28 20:58:22 +00001906 {
1907 return false;
1908 }
1909 }
daniel@transgaming.com68aaf932012-12-20 21:13:16 +00001910
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00001911 return true;
1912}
1913
daniel@transgaming.comda8d3802012-12-20 21:12:55 +00001914bool ProgramBinary::defineUniform(GLenum shader, const sh::Uniform &constant, InfoLog &infoLog)
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001915{
daniel@transgaming.comda8d3802012-12-20 21:12:55 +00001916 if (constant.type == GL_SAMPLER_2D ||
1917 constant.type == GL_SAMPLER_CUBE)
1918 {
1919 unsigned int samplerIndex = constant.registerIndex;
1920
1921 do
1922 {
1923 if (shader == GL_VERTEX_SHADER)
1924 {
1925 if (samplerIndex < getContext()->getMaximumVertexTextureImageUnits())
1926 {
1927 mSamplersVS[samplerIndex].active = true;
1928 mSamplersVS[samplerIndex].textureType = (constant.type == GL_SAMPLER_CUBE) ? TEXTURE_CUBE : TEXTURE_2D;
1929 mSamplersVS[samplerIndex].logicalTextureUnit = 0;
1930 mUsedVertexSamplerRange = std::max(samplerIndex + 1, mUsedVertexSamplerRange);
1931 }
1932 else
1933 {
1934 infoLog.append("Vertex shader sampler count exceeds MAX_VERTEX_TEXTURE_IMAGE_UNITS (%d).", getContext()->getMaximumVertexTextureImageUnits());
1935 return false;
1936 }
1937 }
1938 else if (shader == GL_FRAGMENT_SHADER)
1939 {
1940 if (samplerIndex < MAX_TEXTURE_IMAGE_UNITS)
1941 {
1942 mSamplersPS[samplerIndex].active = true;
1943 mSamplersPS[samplerIndex].textureType = (constant.type == GL_SAMPLER_CUBE) ? TEXTURE_CUBE : TEXTURE_2D;
1944 mSamplersPS[samplerIndex].logicalTextureUnit = 0;
1945 mUsedPixelSamplerRange = std::max(samplerIndex + 1, mUsedPixelSamplerRange);
1946 }
1947 else
1948 {
1949 infoLog.append("Pixel shader sampler count exceeds MAX_TEXTURE_IMAGE_UNITS (%d).", MAX_TEXTURE_IMAGE_UNITS);
1950 return false;
1951 }
1952 }
1953 else UNREACHABLE();
1954
1955 samplerIndex++;
1956 }
1957 while (samplerIndex < constant.registerIndex + constant.arraySize);
1958 }
1959
daniel@transgaming.come6d12e92012-12-20 21:12:47 +00001960 Uniform *uniform = NULL;
1961 GLint location = getUniformLocation(constant.name);
1962
1963 if (location >= 0) // Previously defined, types must match
1964 {
1965 uniform = mUniforms[mUniformIndex[location].index];
1966
1967 if (uniform->type != constant.type)
1968 {
1969 return false;
1970 }
1971 }
1972 else
1973 {
1974 uniform = new Uniform(constant.type, constant.name, constant.arraySize);
1975 }
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001976
1977 if (!uniform)
1978 {
1979 return false;
1980 }
1981
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001982 if (shader == GL_FRAGMENT_SHADER)
1983 {
daniel@transgaming.come76b64b2013-01-11 04:10:08 +00001984 uniform->psRegisterIndex = constant.registerIndex;
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001985 }
1986 else if (shader == GL_VERTEX_SHADER)
1987 {
daniel@transgaming.come76b64b2013-01-11 04:10:08 +00001988 uniform->vsRegisterIndex = constant.registerIndex;
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001989 }
1990 else UNREACHABLE();
1991
1992 if (location >= 0)
1993 {
daniel@transgaming.come6d12e92012-12-20 21:12:47 +00001994 return uniform->type == constant.type;
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00001995 }
1996
1997 mUniforms.push_back(uniform);
1998 unsigned int uniformIndex = mUniforms.size() - 1;
1999
daniel@transgaming.come6d12e92012-12-20 21:12:47 +00002000 for (unsigned int i = 0; i < uniform->elementCount(); i++)
daniel@transgaming.comfdc7f562012-12-20 21:12:37 +00002001 {
2002 mUniformIndex.push_back(UniformLocation(constant.name, i, uniformIndex));
2003 }
2004
2005 return true;
2006}
2007
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002008// This method needs to match OutputHLSL::decorate
2009std::string ProgramBinary::decorateAttribute(const std::string &name)
2010{
2011 if (name.compare(0, 3, "gl_") != 0 && name.compare(0, 3, "dx_") != 0)
2012 {
2013 return "_" + name;
2014 }
2015
2016 return name;
2017}
2018
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002019bool ProgramBinary::isValidated() const
2020{
2021 return mValidated;
2022}
2023
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002024void ProgramBinary::getActiveAttribute(GLuint index, GLsizei bufsize, GLsizei *length, GLint *size, GLenum *type, GLchar *name)
2025{
2026 // Skip over inactive attributes
2027 unsigned int activeAttribute = 0;
2028 unsigned int attribute;
2029 for (attribute = 0; attribute < MAX_VERTEX_ATTRIBS; attribute++)
2030 {
2031 if (mLinkedAttribute[attribute].name.empty())
2032 {
2033 continue;
2034 }
2035
2036 if (activeAttribute == index)
2037 {
2038 break;
2039 }
2040
2041 activeAttribute++;
2042 }
2043
2044 if (bufsize > 0)
2045 {
2046 const char *string = mLinkedAttribute[attribute].name.c_str();
2047
2048 strncpy(name, string, bufsize);
2049 name[bufsize - 1] = '\0';
2050
2051 if (length)
2052 {
2053 *length = strlen(name);
2054 }
2055 }
2056
2057 *size = 1; // Always a single 'type' instance
2058
2059 *type = mLinkedAttribute[attribute].type;
2060}
2061
2062GLint ProgramBinary::getActiveAttributeCount()
2063{
2064 int count = 0;
2065
2066 for (int attributeIndex = 0; attributeIndex < MAX_VERTEX_ATTRIBS; attributeIndex++)
2067 {
2068 if (!mLinkedAttribute[attributeIndex].name.empty())
2069 {
2070 count++;
2071 }
2072 }
2073
2074 return count;
2075}
2076
2077GLint ProgramBinary::getActiveAttributeMaxLength()
2078{
2079 int maxLength = 0;
2080
2081 for (int attributeIndex = 0; attributeIndex < MAX_VERTEX_ATTRIBS; attributeIndex++)
2082 {
2083 if (!mLinkedAttribute[attributeIndex].name.empty())
2084 {
2085 maxLength = std::max((int)(mLinkedAttribute[attributeIndex].name.length() + 1), maxLength);
2086 }
2087 }
2088
2089 return maxLength;
2090}
2091
2092void ProgramBinary::getActiveUniform(GLuint index, GLsizei bufsize, GLsizei *length, GLint *size, GLenum *type, GLchar *name)
2093{
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002094 ASSERT(index < mUniforms.size()); // index must be smaller than getActiveUniformCount()
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002095
2096 if (bufsize > 0)
2097 {
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002098 std::string string = mUniforms[index]->name;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002099
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002100 if (mUniforms[index]->isArray())
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002101 {
2102 string += "[0]";
2103 }
2104
2105 strncpy(name, string.c_str(), bufsize);
2106 name[bufsize - 1] = '\0';
2107
2108 if (length)
2109 {
2110 *length = strlen(name);
2111 }
2112 }
2113
daniel@transgaming.come6d12e92012-12-20 21:12:47 +00002114 *size = mUniforms[index]->elementCount();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002115
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002116 *type = mUniforms[index]->type;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002117}
2118
2119GLint ProgramBinary::getActiveUniformCount()
2120{
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002121 return mUniforms.size();
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002122}
2123
2124GLint ProgramBinary::getActiveUniformMaxLength()
2125{
2126 int maxLength = 0;
2127
2128 unsigned int numUniforms = mUniforms.size();
2129 for (unsigned int uniformIndex = 0; uniformIndex < numUniforms; uniformIndex++)
2130 {
daniel@transgaming.com8320a282012-12-20 21:08:08 +00002131 if (!mUniforms[uniformIndex]->name.empty())
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002132 {
2133 int length = (int)(mUniforms[uniformIndex]->name.length() + 1);
2134 if (mUniforms[uniformIndex]->isArray())
2135 {
2136 length += 3; // Counting in "[0]".
2137 }
2138 maxLength = std::max(length, maxLength);
2139 }
2140 }
2141
2142 return maxLength;
2143}
2144
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002145void ProgramBinary::validate(InfoLog &infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002146{
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002147 applyUniforms();
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002148 if (!validateSamplers(&infoLog))
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002149 {
2150 mValidated = false;
2151 }
2152 else
2153 {
2154 mValidated = true;
2155 }
2156}
2157
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002158bool ProgramBinary::validateSamplers(InfoLog *infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002159{
2160 // if any two active samplers in a program are of different types, but refer to the same
2161 // texture image unit, and this is the current program, then ValidateProgram will fail, and
2162 // DrawArrays and DrawElements will issue the INVALID_OPERATION error.
2163
2164 const unsigned int maxCombinedTextureImageUnits = getContext()->getMaximumCombinedTextureImageUnits();
2165 TextureType textureUnitType[MAX_COMBINED_TEXTURE_IMAGE_UNITS_VTF];
2166
2167 for (unsigned int i = 0; i < MAX_COMBINED_TEXTURE_IMAGE_UNITS_VTF; ++i)
2168 {
2169 textureUnitType[i] = TEXTURE_UNKNOWN;
2170 }
2171
2172 for (unsigned int i = 0; i < mUsedPixelSamplerRange; ++i)
2173 {
2174 if (mSamplersPS[i].active)
2175 {
2176 unsigned int unit = mSamplersPS[i].logicalTextureUnit;
2177
2178 if (unit >= maxCombinedTextureImageUnits)
2179 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002180 if (infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002181 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002182 infoLog->append("Sampler uniform (%d) exceeds MAX_COMBINED_TEXTURE_IMAGE_UNITS (%d)", unit, maxCombinedTextureImageUnits);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002183 }
2184
2185 return false;
2186 }
2187
2188 if (textureUnitType[unit] != TEXTURE_UNKNOWN)
2189 {
2190 if (mSamplersPS[i].textureType != textureUnitType[unit])
2191 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002192 if (infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002193 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002194 infoLog->append("Samplers of conflicting types refer to the same texture image unit (%d).", unit);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002195 }
2196
2197 return false;
2198 }
2199 }
2200 else
2201 {
2202 textureUnitType[unit] = mSamplersPS[i].textureType;
2203 }
2204 }
2205 }
2206
2207 for (unsigned int i = 0; i < mUsedVertexSamplerRange; ++i)
2208 {
2209 if (mSamplersVS[i].active)
2210 {
2211 unsigned int unit = mSamplersVS[i].logicalTextureUnit;
2212
2213 if (unit >= maxCombinedTextureImageUnits)
2214 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002215 if (infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002216 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002217 infoLog->append("Sampler uniform (%d) exceeds MAX_COMBINED_TEXTURE_IMAGE_UNITS (%d)", unit, maxCombinedTextureImageUnits);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002218 }
2219
2220 return false;
2221 }
2222
2223 if (textureUnitType[unit] != TEXTURE_UNKNOWN)
2224 {
2225 if (mSamplersVS[i].textureType != textureUnitType[unit])
2226 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002227 if (infoLog)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002228 {
apatrick@chromium.org253b8d22012-06-22 19:27:21 +00002229 infoLog->append("Samplers of conflicting types refer to the same texture image unit (%d).", unit);
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002230 }
2231
2232 return false;
2233 }
2234 }
2235 else
2236 {
2237 textureUnitType[unit] = mSamplersVS[i].textureType;
2238 }
2239 }
2240 }
2241
2242 return true;
2243}
2244
daniel@transgaming.com88853c52012-12-20 20:56:40 +00002245void ProgramBinary::applyDxDepthRange(float near, float far, float diff)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002246{
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002247 mVertexConstants.depthRange[0] = near;
2248 mVertexConstants.depthRange[1] = far;
2249 mVertexConstants.depthRange[2] = diff;
daniel@transgaming.com593ebc42012-12-20 20:56:46 +00002250
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002251 mPixelConstants.depthRange[0] = near;
2252 mPixelConstants.depthRange[1] = far;
2253 mPixelConstants.depthRange[2] = diff;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002254}
2255
daniel@transgaming.com88853c52012-12-20 20:56:40 +00002256void ProgramBinary::applyDxDepthFront(float range, float start, float frontCCW)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002257{
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002258 mPixelConstants.depthFront[0] = range;
2259 mPixelConstants.depthFront[1] = start;
2260 mPixelConstants.depthFront[2] = frontCCW;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002261}
2262
daniel@transgaming.com88853c52012-12-20 20:56:40 +00002263void ProgramBinary::applyDxCoord(float halfWidth, float halfHeight, float x0, float y0)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002264{
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002265 mPixelConstants.coord[0] = halfWidth;
2266 mPixelConstants.coord[1] = halfHeight;
2267 mPixelConstants.coord[2] = x0;
2268 mPixelConstants.coord[3] = y0;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002269}
2270
daniel@transgaming.com88853c52012-12-20 20:56:40 +00002271void ProgramBinary::applyDxHalfPixelSize(float width, float height)
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002272{
daniel@transgaming.coma390e1e2013-01-11 04:09:39 +00002273 mVertexConstants.halfPixelSize[0] = width;
2274 mVertexConstants.halfPixelSize[1] = height;
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002275}
2276
apatrick@chromium.org90080e32012-07-09 22:15:33 +00002277ProgramBinary::Sampler::Sampler() : active(false), logicalTextureUnit(0), textureType(TEXTURE_2D)
2278{
2279}
2280
apatrick@chromium.orgea09f9b2012-06-08 00:45:32 +00002281}