1bf215546Sopenharmony_ci/*
2bf215546Sopenharmony_ci * Mesa 3-D graphics library
3bf215546Sopenharmony_ci *
4bf215546Sopenharmony_ci * Copyright (C) 1999-2007  Brian Paul   All Rights Reserved.
5bf215546Sopenharmony_ci *
6bf215546Sopenharmony_ci * Permission is hereby granted, free of charge, to any person obtaining a
7bf215546Sopenharmony_ci * copy of this software and associated documentation files (the "Software"),
8bf215546Sopenharmony_ci * to deal in the Software without restriction, including without limitation
9bf215546Sopenharmony_ci * the rights to use, copy, modify, merge, publish, distribute, sublicense,
10bf215546Sopenharmony_ci * and/or sell copies of the Software, and to permit persons to whom the
11bf215546Sopenharmony_ci * Software is furnished to do so, subject to the following conditions:
12bf215546Sopenharmony_ci *
13bf215546Sopenharmony_ci * The above copyright notice and this permission notice shall be included
14bf215546Sopenharmony_ci * in all copies or substantial portions of the Software.
15bf215546Sopenharmony_ci *
16bf215546Sopenharmony_ci * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
17bf215546Sopenharmony_ci * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18bf215546Sopenharmony_ci * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
19bf215546Sopenharmony_ci * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
20bf215546Sopenharmony_ci * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
21bf215546Sopenharmony_ci * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
22bf215546Sopenharmony_ci * OTHER DEALINGS IN THE SOFTWARE.
23bf215546Sopenharmony_ci */
24bf215546Sopenharmony_ci
25bf215546Sopenharmony_ci/**
26bf215546Sopenharmony_ci * \file  programopt.c
27bf215546Sopenharmony_ci * Vertex/Fragment program optimizations and transformations for program
28bf215546Sopenharmony_ci * options, etc.
29bf215546Sopenharmony_ci *
30bf215546Sopenharmony_ci * \author Brian Paul
31bf215546Sopenharmony_ci */
32bf215546Sopenharmony_ci
33bf215546Sopenharmony_ci
34bf215546Sopenharmony_ci#include "main/glheader.h"
35bf215546Sopenharmony_ci#include "main/context.h"
36bf215546Sopenharmony_ci#include "prog_parameter.h"
37bf215546Sopenharmony_ci#include "prog_statevars.h"
38bf215546Sopenharmony_ci#include "program.h"
39bf215546Sopenharmony_ci#include "programopt.h"
40bf215546Sopenharmony_ci#include "prog_instruction.h"
41bf215546Sopenharmony_ci
42bf215546Sopenharmony_ci
43bf215546Sopenharmony_ci/**
44bf215546Sopenharmony_ci * This function inserts instructions for coordinate modelview * projection
45bf215546Sopenharmony_ci * into a vertex program.
46bf215546Sopenharmony_ci * May be used to implement the position_invariant option.
47bf215546Sopenharmony_ci */
48bf215546Sopenharmony_cistatic void
49bf215546Sopenharmony_ciinsert_mvp_dp4_code(struct gl_context *ctx, struct gl_program *vprog)
50bf215546Sopenharmony_ci{
51bf215546Sopenharmony_ci   struct prog_instruction *newInst;
52bf215546Sopenharmony_ci   const GLuint origLen = vprog->arb.NumInstructions;
53bf215546Sopenharmony_ci   const GLuint newLen = origLen + 4;
54bf215546Sopenharmony_ci   GLuint i;
55bf215546Sopenharmony_ci
56bf215546Sopenharmony_ci   /*
57bf215546Sopenharmony_ci    * Setup state references for the modelview/projection matrix.
58bf215546Sopenharmony_ci    * XXX we should check if these state vars are already declared.
59bf215546Sopenharmony_ci    */
60bf215546Sopenharmony_ci   static const gl_state_index16 mvpState[4][STATE_LENGTH] = {
61bf215546Sopenharmony_ci      { STATE_MVP_MATRIX, 0, 0, 0 },  /* state.matrix.mvp.row[0] */
62bf215546Sopenharmony_ci      { STATE_MVP_MATRIX, 0, 1, 1 },  /* state.matrix.mvp.row[1] */
63bf215546Sopenharmony_ci      { STATE_MVP_MATRIX, 0, 2, 2 },  /* state.matrix.mvp.row[2] */
64bf215546Sopenharmony_ci      { STATE_MVP_MATRIX, 0, 3, 3 },  /* state.matrix.mvp.row[3] */
65bf215546Sopenharmony_ci   };
66bf215546Sopenharmony_ci   GLint mvpRef[4];
67bf215546Sopenharmony_ci
68bf215546Sopenharmony_ci   for (i = 0; i < 4; i++) {
69bf215546Sopenharmony_ci      mvpRef[i] = _mesa_add_state_reference(vprog->Parameters, mvpState[i]);
70bf215546Sopenharmony_ci   }
71bf215546Sopenharmony_ci
72bf215546Sopenharmony_ci   /* Alloc storage for new instructions */
73bf215546Sopenharmony_ci   newInst = rzalloc_array(vprog, struct prog_instruction, newLen);
74bf215546Sopenharmony_ci   if (!newInst) {
75bf215546Sopenharmony_ci      _mesa_error(ctx, GL_OUT_OF_MEMORY,
76bf215546Sopenharmony_ci                  "glProgramString(inserting position_invariant code)");
77bf215546Sopenharmony_ci      return;
78bf215546Sopenharmony_ci   }
79bf215546Sopenharmony_ci
80bf215546Sopenharmony_ci   /*
81bf215546Sopenharmony_ci    * Generated instructions:
82bf215546Sopenharmony_ci    * newInst[0] = DP4 result.position.x, mvp.row[0], vertex.position;
83bf215546Sopenharmony_ci    * newInst[1] = DP4 result.position.y, mvp.row[1], vertex.position;
84bf215546Sopenharmony_ci    * newInst[2] = DP4 result.position.z, mvp.row[2], vertex.position;
85bf215546Sopenharmony_ci    * newInst[3] = DP4 result.position.w, mvp.row[3], vertex.position;
86bf215546Sopenharmony_ci    */
87bf215546Sopenharmony_ci   _mesa_init_instructions(newInst, 4);
88bf215546Sopenharmony_ci   for (i = 0; i < 4; i++) {
89bf215546Sopenharmony_ci      newInst[i].Opcode = OPCODE_DP4;
90bf215546Sopenharmony_ci      newInst[i].DstReg.File = PROGRAM_OUTPUT;
91bf215546Sopenharmony_ci      newInst[i].DstReg.Index = VARYING_SLOT_POS;
92bf215546Sopenharmony_ci      newInst[i].DstReg.WriteMask = (WRITEMASK_X << i);
93bf215546Sopenharmony_ci      newInst[i].SrcReg[0].File = PROGRAM_STATE_VAR;
94bf215546Sopenharmony_ci      newInst[i].SrcReg[0].Index = mvpRef[i];
95bf215546Sopenharmony_ci      newInst[i].SrcReg[0].Swizzle = SWIZZLE_NOOP;
96bf215546Sopenharmony_ci      newInst[i].SrcReg[1].File = PROGRAM_INPUT;
97bf215546Sopenharmony_ci      newInst[i].SrcReg[1].Index = VERT_ATTRIB_POS;
98bf215546Sopenharmony_ci      newInst[i].SrcReg[1].Swizzle = SWIZZLE_NOOP;
99bf215546Sopenharmony_ci   }
100bf215546Sopenharmony_ci
101bf215546Sopenharmony_ci   /* Append original instructions after new instructions */
102bf215546Sopenharmony_ci   _mesa_copy_instructions (newInst + 4, vprog->arb.Instructions, origLen);
103bf215546Sopenharmony_ci
104bf215546Sopenharmony_ci   /* free old instructions */
105bf215546Sopenharmony_ci   ralloc_free(vprog->arb.Instructions);
106bf215546Sopenharmony_ci
107bf215546Sopenharmony_ci   /* install new instructions */
108bf215546Sopenharmony_ci   vprog->arb.Instructions = newInst;
109bf215546Sopenharmony_ci   vprog->arb.NumInstructions = newLen;
110bf215546Sopenharmony_ci   vprog->info.inputs_read |= VERT_BIT_POS;
111bf215546Sopenharmony_ci   vprog->info.outputs_written |= BITFIELD64_BIT(VARYING_SLOT_POS);
112bf215546Sopenharmony_ci}
113bf215546Sopenharmony_ci
114bf215546Sopenharmony_ci
115bf215546Sopenharmony_cistatic void
116bf215546Sopenharmony_ciinsert_mvp_mad_code(struct gl_context *ctx, struct gl_program *vprog)
117bf215546Sopenharmony_ci{
118bf215546Sopenharmony_ci   struct prog_instruction *newInst;
119bf215546Sopenharmony_ci   const GLuint origLen = vprog->arb.NumInstructions;
120bf215546Sopenharmony_ci   const GLuint newLen = origLen + 4;
121bf215546Sopenharmony_ci   GLuint hposTemp;
122bf215546Sopenharmony_ci   GLuint i;
123bf215546Sopenharmony_ci
124bf215546Sopenharmony_ci   /*
125bf215546Sopenharmony_ci    * Setup state references for the modelview/projection matrix.
126bf215546Sopenharmony_ci    * XXX we should check if these state vars are already declared.
127bf215546Sopenharmony_ci    */
128bf215546Sopenharmony_ci   static const gl_state_index16 mvpState[4][STATE_LENGTH] = {
129bf215546Sopenharmony_ci      { STATE_MVP_MATRIX_TRANSPOSE, 0, 0, 0 },
130bf215546Sopenharmony_ci      { STATE_MVP_MATRIX_TRANSPOSE, 0, 1, 1 },
131bf215546Sopenharmony_ci      { STATE_MVP_MATRIX_TRANSPOSE, 0, 2, 2 },
132bf215546Sopenharmony_ci      { STATE_MVP_MATRIX_TRANSPOSE, 0, 3, 3 },
133bf215546Sopenharmony_ci   };
134bf215546Sopenharmony_ci   GLint mvpRef[4];
135bf215546Sopenharmony_ci
136bf215546Sopenharmony_ci   for (i = 0; i < 4; i++) {
137bf215546Sopenharmony_ci      mvpRef[i] = _mesa_add_state_reference(vprog->Parameters, mvpState[i]);
138bf215546Sopenharmony_ci   }
139bf215546Sopenharmony_ci
140bf215546Sopenharmony_ci   /* Alloc storage for new instructions */
141bf215546Sopenharmony_ci   newInst = rzalloc_array(vprog, struct prog_instruction, newLen);
142bf215546Sopenharmony_ci   if (!newInst) {
143bf215546Sopenharmony_ci      _mesa_error(ctx, GL_OUT_OF_MEMORY,
144bf215546Sopenharmony_ci                  "glProgramString(inserting position_invariant code)");
145bf215546Sopenharmony_ci      return;
146bf215546Sopenharmony_ci   }
147bf215546Sopenharmony_ci
148bf215546Sopenharmony_ci   /* TEMP hposTemp; */
149bf215546Sopenharmony_ci   hposTemp = vprog->arb.NumTemporaries++;
150bf215546Sopenharmony_ci
151bf215546Sopenharmony_ci   /*
152bf215546Sopenharmony_ci    * Generated instructions:
153bf215546Sopenharmony_ci    *    emit_op2(p, OPCODE_MUL, tmp, 0, swizzle1(src,X), mat[0]);
154bf215546Sopenharmony_ci    *    emit_op3(p, OPCODE_MAD, tmp, 0, swizzle1(src,Y), mat[1], tmp);
155bf215546Sopenharmony_ci    *    emit_op3(p, OPCODE_MAD, tmp, 0, swizzle1(src,Z), mat[2], tmp);
156bf215546Sopenharmony_ci    *    emit_op3(p, OPCODE_MAD, dest, 0, swizzle1(src,W), mat[3], tmp);
157bf215546Sopenharmony_ci    */
158bf215546Sopenharmony_ci   _mesa_init_instructions(newInst, 4);
159bf215546Sopenharmony_ci
160bf215546Sopenharmony_ci   newInst[0].Opcode = OPCODE_MUL;
161bf215546Sopenharmony_ci   newInst[0].DstReg.File = PROGRAM_TEMPORARY;
162bf215546Sopenharmony_ci   newInst[0].DstReg.Index = hposTemp;
163bf215546Sopenharmony_ci   newInst[0].DstReg.WriteMask = WRITEMASK_XYZW;
164bf215546Sopenharmony_ci   newInst[0].SrcReg[0].File = PROGRAM_INPUT;
165bf215546Sopenharmony_ci   newInst[0].SrcReg[0].Index = VERT_ATTRIB_POS;
166bf215546Sopenharmony_ci   newInst[0].SrcReg[0].Swizzle = SWIZZLE_XXXX;
167bf215546Sopenharmony_ci   newInst[0].SrcReg[1].File = PROGRAM_STATE_VAR;
168bf215546Sopenharmony_ci   newInst[0].SrcReg[1].Index = mvpRef[0];
169bf215546Sopenharmony_ci   newInst[0].SrcReg[1].Swizzle = SWIZZLE_NOOP;
170bf215546Sopenharmony_ci
171bf215546Sopenharmony_ci   for (i = 1; i <= 2; i++) {
172bf215546Sopenharmony_ci      newInst[i].Opcode = OPCODE_MAD;
173bf215546Sopenharmony_ci      newInst[i].DstReg.File = PROGRAM_TEMPORARY;
174bf215546Sopenharmony_ci      newInst[i].DstReg.Index = hposTemp;
175bf215546Sopenharmony_ci      newInst[i].DstReg.WriteMask = WRITEMASK_XYZW;
176bf215546Sopenharmony_ci      newInst[i].SrcReg[0].File = PROGRAM_INPUT;
177bf215546Sopenharmony_ci      newInst[i].SrcReg[0].Index = VERT_ATTRIB_POS;
178bf215546Sopenharmony_ci      newInst[i].SrcReg[0].Swizzle = MAKE_SWIZZLE4(i,i,i,i);
179bf215546Sopenharmony_ci      newInst[i].SrcReg[1].File = PROGRAM_STATE_VAR;
180bf215546Sopenharmony_ci      newInst[i].SrcReg[1].Index = mvpRef[i];
181bf215546Sopenharmony_ci      newInst[i].SrcReg[1].Swizzle = SWIZZLE_NOOP;
182bf215546Sopenharmony_ci      newInst[i].SrcReg[2].File = PROGRAM_TEMPORARY;
183bf215546Sopenharmony_ci      newInst[i].SrcReg[2].Index = hposTemp;
184bf215546Sopenharmony_ci      newInst[1].SrcReg[2].Swizzle = SWIZZLE_NOOP;
185bf215546Sopenharmony_ci   }
186bf215546Sopenharmony_ci
187bf215546Sopenharmony_ci   newInst[3].Opcode = OPCODE_MAD;
188bf215546Sopenharmony_ci   newInst[3].DstReg.File = PROGRAM_OUTPUT;
189bf215546Sopenharmony_ci   newInst[3].DstReg.Index = VARYING_SLOT_POS;
190bf215546Sopenharmony_ci   newInst[3].DstReg.WriteMask = WRITEMASK_XYZW;
191bf215546Sopenharmony_ci   newInst[3].SrcReg[0].File = PROGRAM_INPUT;
192bf215546Sopenharmony_ci   newInst[3].SrcReg[0].Index = VERT_ATTRIB_POS;
193bf215546Sopenharmony_ci   newInst[3].SrcReg[0].Swizzle = SWIZZLE_WWWW;
194bf215546Sopenharmony_ci   newInst[3].SrcReg[1].File = PROGRAM_STATE_VAR;
195bf215546Sopenharmony_ci   newInst[3].SrcReg[1].Index = mvpRef[3];
196bf215546Sopenharmony_ci   newInst[3].SrcReg[1].Swizzle = SWIZZLE_NOOP;
197bf215546Sopenharmony_ci   newInst[3].SrcReg[2].File = PROGRAM_TEMPORARY;
198bf215546Sopenharmony_ci   newInst[3].SrcReg[2].Index = hposTemp;
199bf215546Sopenharmony_ci   newInst[3].SrcReg[2].Swizzle = SWIZZLE_NOOP;
200bf215546Sopenharmony_ci
201bf215546Sopenharmony_ci
202bf215546Sopenharmony_ci   /* Append original instructions after new instructions */
203bf215546Sopenharmony_ci   _mesa_copy_instructions (newInst + 4, vprog->arb.Instructions, origLen);
204bf215546Sopenharmony_ci
205bf215546Sopenharmony_ci   /* free old instructions */
206bf215546Sopenharmony_ci   ralloc_free(vprog->arb.Instructions);
207bf215546Sopenharmony_ci
208bf215546Sopenharmony_ci   /* install new instructions */
209bf215546Sopenharmony_ci   vprog->arb.Instructions = newInst;
210bf215546Sopenharmony_ci   vprog->arb.NumInstructions = newLen;
211bf215546Sopenharmony_ci   vprog->info.inputs_read |= VERT_BIT_POS;
212bf215546Sopenharmony_ci   vprog->info.outputs_written |= BITFIELD64_BIT(VARYING_SLOT_POS);
213bf215546Sopenharmony_ci}
214bf215546Sopenharmony_ci
215bf215546Sopenharmony_ci
216bf215546Sopenharmony_civoid
217bf215546Sopenharmony_ci_mesa_insert_mvp_code(struct gl_context *ctx, struct gl_program *vprog)
218bf215546Sopenharmony_ci{
219bf215546Sopenharmony_ci   if (ctx->Const.ShaderCompilerOptions[MESA_SHADER_VERTEX].OptimizeForAOS)
220bf215546Sopenharmony_ci      insert_mvp_dp4_code( ctx, vprog );
221bf215546Sopenharmony_ci   else
222bf215546Sopenharmony_ci      insert_mvp_mad_code( ctx, vprog );
223bf215546Sopenharmony_ci}
224bf215546Sopenharmony_ci
225bf215546Sopenharmony_ci
226bf215546Sopenharmony_ci
227bf215546Sopenharmony_ci
228bf215546Sopenharmony_ci
229bf215546Sopenharmony_ci
230bf215546Sopenharmony_ci/**
231bf215546Sopenharmony_ci * Append instructions to implement fog
232bf215546Sopenharmony_ci *
233bf215546Sopenharmony_ci * The \c fragment.fogcoord input is used to compute the fog blend factor.
234bf215546Sopenharmony_ci *
235bf215546Sopenharmony_ci * \param ctx      The GL context
236bf215546Sopenharmony_ci * \param fprog    Fragment program that fog instructions will be appended to.
237bf215546Sopenharmony_ci * \param fog_mode Fog mode.  One of \c GL_EXP, \c GL_EXP2, or \c GL_LINEAR.
238bf215546Sopenharmony_ci * \param saturate True if writes to color outputs should be clamped to [0, 1]
239bf215546Sopenharmony_ci *
240bf215546Sopenharmony_ci * \note
241bf215546Sopenharmony_ci * This function sets \c VARYING_BIT_FOGC in \c fprog->info.inputs_read.
242bf215546Sopenharmony_ci *
243bf215546Sopenharmony_ci * \todo With a little work, this function could be adapted to add fog code
244bf215546Sopenharmony_ci * to vertex programs too.
245bf215546Sopenharmony_ci */
246bf215546Sopenharmony_civoid
247bf215546Sopenharmony_ci_mesa_append_fog_code(struct gl_context *ctx, struct gl_program *fprog,
248bf215546Sopenharmony_ci                      GLenum fog_mode, GLboolean saturate)
249bf215546Sopenharmony_ci{
250bf215546Sopenharmony_ci   static const gl_state_index16 fogPStateOpt[STATE_LENGTH]
251bf215546Sopenharmony_ci      = { STATE_FOG_PARAMS_OPTIMIZED, 0, 0 };
252bf215546Sopenharmony_ci   static const gl_state_index16 fogColorState[STATE_LENGTH]
253bf215546Sopenharmony_ci      = { STATE_FOG_COLOR, 0, 0, 0 };
254bf215546Sopenharmony_ci   struct prog_instruction *newInst, *inst;
255bf215546Sopenharmony_ci   const GLuint origLen = fprog->arb.NumInstructions;
256bf215546Sopenharmony_ci   const GLuint newLen = origLen + 5;
257bf215546Sopenharmony_ci   GLuint i;
258bf215546Sopenharmony_ci   GLint fogPRefOpt, fogColorRef; /* state references */
259bf215546Sopenharmony_ci   GLuint colorTemp, fogFactorTemp; /* temporary registerss */
260bf215546Sopenharmony_ci
261bf215546Sopenharmony_ci   if (fog_mode == GL_NONE) {
262bf215546Sopenharmony_ci      _mesa_problem(ctx, "_mesa_append_fog_code() called for fragment program"
263bf215546Sopenharmony_ci                    " with fog_mode == GL_NONE");
264bf215546Sopenharmony_ci      return;
265bf215546Sopenharmony_ci   }
266bf215546Sopenharmony_ci
267bf215546Sopenharmony_ci   if (!(fprog->info.outputs_written & (1 << FRAG_RESULT_COLOR))) {
268bf215546Sopenharmony_ci      /* program doesn't output color, so nothing to do */
269bf215546Sopenharmony_ci      return;
270bf215546Sopenharmony_ci   }
271bf215546Sopenharmony_ci
272bf215546Sopenharmony_ci   /* Alloc storage for new instructions */
273bf215546Sopenharmony_ci   newInst = rzalloc_array(fprog, struct prog_instruction, newLen);
274bf215546Sopenharmony_ci   if (!newInst) {
275bf215546Sopenharmony_ci      _mesa_error(ctx, GL_OUT_OF_MEMORY,
276bf215546Sopenharmony_ci                  "glProgramString(inserting fog_option code)");
277bf215546Sopenharmony_ci      return;
278bf215546Sopenharmony_ci   }
279bf215546Sopenharmony_ci
280bf215546Sopenharmony_ci   /* Copy orig instructions into new instruction buffer */
281bf215546Sopenharmony_ci   _mesa_copy_instructions(newInst, fprog->arb.Instructions, origLen);
282bf215546Sopenharmony_ci
283bf215546Sopenharmony_ci   /* PARAM fogParamsRefOpt = internal optimized fog params; */
284bf215546Sopenharmony_ci   fogPRefOpt
285bf215546Sopenharmony_ci      = _mesa_add_state_reference(fprog->Parameters, fogPStateOpt);
286bf215546Sopenharmony_ci   /* PARAM fogColorRef = state.fog.color; */
287bf215546Sopenharmony_ci   fogColorRef
288bf215546Sopenharmony_ci      = _mesa_add_state_reference(fprog->Parameters, fogColorState);
289bf215546Sopenharmony_ci
290bf215546Sopenharmony_ci   /* TEMP colorTemp; */
291bf215546Sopenharmony_ci   colorTemp = fprog->arb.NumTemporaries++;
292bf215546Sopenharmony_ci   /* TEMP fogFactorTemp; */
293bf215546Sopenharmony_ci   fogFactorTemp = fprog->arb.NumTemporaries++;
294bf215546Sopenharmony_ci
295bf215546Sopenharmony_ci   /* Scan program to find where result.color is written */
296bf215546Sopenharmony_ci   inst = newInst;
297bf215546Sopenharmony_ci   for (i = 0; i < fprog->arb.NumInstructions; i++) {
298bf215546Sopenharmony_ci      if (inst->Opcode == OPCODE_END)
299bf215546Sopenharmony_ci         break;
300bf215546Sopenharmony_ci      if (inst->DstReg.File == PROGRAM_OUTPUT &&
301bf215546Sopenharmony_ci          inst->DstReg.Index == FRAG_RESULT_COLOR) {
302bf215546Sopenharmony_ci         /* change the instruction to write to colorTemp w/ clamping */
303bf215546Sopenharmony_ci         inst->DstReg.File = PROGRAM_TEMPORARY;
304bf215546Sopenharmony_ci         inst->DstReg.Index = colorTemp;
305bf215546Sopenharmony_ci         inst->Saturate = saturate;
306bf215546Sopenharmony_ci         /* don't break (may be several writes to result.color) */
307bf215546Sopenharmony_ci      }
308bf215546Sopenharmony_ci      inst++;
309bf215546Sopenharmony_ci   }
310bf215546Sopenharmony_ci   assert(inst->Opcode == OPCODE_END); /* we'll overwrite this inst */
311bf215546Sopenharmony_ci
312bf215546Sopenharmony_ci   _mesa_init_instructions(inst, 5);
313bf215546Sopenharmony_ci
314bf215546Sopenharmony_ci   /* emit instructions to compute fog blending factor */
315bf215546Sopenharmony_ci   /* this is always clamped to [0, 1] regardless of fragment clamping */
316bf215546Sopenharmony_ci   if (fog_mode == GL_LINEAR) {
317bf215546Sopenharmony_ci      /* MAD fogFactorTemp.x, fragment.fogcoord.x, fogPRefOpt.x, fogPRefOpt.y; */
318bf215546Sopenharmony_ci      inst->Opcode = OPCODE_MAD;
319bf215546Sopenharmony_ci      inst->DstReg.File = PROGRAM_TEMPORARY;
320bf215546Sopenharmony_ci      inst->DstReg.Index = fogFactorTemp;
321bf215546Sopenharmony_ci      inst->DstReg.WriteMask = WRITEMASK_X;
322bf215546Sopenharmony_ci      inst->SrcReg[0].File = PROGRAM_INPUT;
323bf215546Sopenharmony_ci      inst->SrcReg[0].Index = VARYING_SLOT_FOGC;
324bf215546Sopenharmony_ci      inst->SrcReg[0].Swizzle = SWIZZLE_XXXX;
325bf215546Sopenharmony_ci      inst->SrcReg[1].File = PROGRAM_STATE_VAR;
326bf215546Sopenharmony_ci      inst->SrcReg[1].Index = fogPRefOpt;
327bf215546Sopenharmony_ci      inst->SrcReg[1].Swizzle = SWIZZLE_XXXX;
328bf215546Sopenharmony_ci      inst->SrcReg[2].File = PROGRAM_STATE_VAR;
329bf215546Sopenharmony_ci      inst->SrcReg[2].Index = fogPRefOpt;
330bf215546Sopenharmony_ci      inst->SrcReg[2].Swizzle = SWIZZLE_YYYY;
331bf215546Sopenharmony_ci      inst->Saturate = GL_TRUE;
332bf215546Sopenharmony_ci      inst++;
333bf215546Sopenharmony_ci   }
334bf215546Sopenharmony_ci   else {
335bf215546Sopenharmony_ci      assert(fog_mode == GL_EXP || fog_mode == GL_EXP2);
336bf215546Sopenharmony_ci      /* fogPRefOpt.z = d/ln(2), fogPRefOpt.w = d/sqrt(ln(2) */
337bf215546Sopenharmony_ci      /* EXP: MUL fogFactorTemp.x, fogPRefOpt.z, fragment.fogcoord.x; */
338bf215546Sopenharmony_ci      /* EXP2: MUL fogFactorTemp.x, fogPRefOpt.w, fragment.fogcoord.x; */
339bf215546Sopenharmony_ci      inst->Opcode = OPCODE_MUL;
340bf215546Sopenharmony_ci      inst->DstReg.File = PROGRAM_TEMPORARY;
341bf215546Sopenharmony_ci      inst->DstReg.Index = fogFactorTemp;
342bf215546Sopenharmony_ci      inst->DstReg.WriteMask = WRITEMASK_X;
343bf215546Sopenharmony_ci      inst->SrcReg[0].File = PROGRAM_STATE_VAR;
344bf215546Sopenharmony_ci      inst->SrcReg[0].Index = fogPRefOpt;
345bf215546Sopenharmony_ci      inst->SrcReg[0].Swizzle
346bf215546Sopenharmony_ci         = (fog_mode == GL_EXP) ? SWIZZLE_ZZZZ : SWIZZLE_WWWW;
347bf215546Sopenharmony_ci      inst->SrcReg[1].File = PROGRAM_INPUT;
348bf215546Sopenharmony_ci      inst->SrcReg[1].Index = VARYING_SLOT_FOGC;
349bf215546Sopenharmony_ci      inst->SrcReg[1].Swizzle = SWIZZLE_XXXX;
350bf215546Sopenharmony_ci      inst++;
351bf215546Sopenharmony_ci      if (fog_mode == GL_EXP2) {
352bf215546Sopenharmony_ci         /* MUL fogFactorTemp.x, fogFactorTemp.x, fogFactorTemp.x; */
353bf215546Sopenharmony_ci         inst->Opcode = OPCODE_MUL;
354bf215546Sopenharmony_ci         inst->DstReg.File = PROGRAM_TEMPORARY;
355bf215546Sopenharmony_ci         inst->DstReg.Index = fogFactorTemp;
356bf215546Sopenharmony_ci         inst->DstReg.WriteMask = WRITEMASK_X;
357bf215546Sopenharmony_ci         inst->SrcReg[0].File = PROGRAM_TEMPORARY;
358bf215546Sopenharmony_ci         inst->SrcReg[0].Index = fogFactorTemp;
359bf215546Sopenharmony_ci         inst->SrcReg[0].Swizzle = SWIZZLE_XXXX;
360bf215546Sopenharmony_ci         inst->SrcReg[1].File = PROGRAM_TEMPORARY;
361bf215546Sopenharmony_ci         inst->SrcReg[1].Index = fogFactorTemp;
362bf215546Sopenharmony_ci         inst->SrcReg[1].Swizzle = SWIZZLE_XXXX;
363bf215546Sopenharmony_ci         inst++;
364bf215546Sopenharmony_ci      }
365bf215546Sopenharmony_ci      /* EX2_SAT fogFactorTemp.x, -fogFactorTemp.x; */
366bf215546Sopenharmony_ci      inst->Opcode = OPCODE_EX2;
367bf215546Sopenharmony_ci      inst->DstReg.File = PROGRAM_TEMPORARY;
368bf215546Sopenharmony_ci      inst->DstReg.Index = fogFactorTemp;
369bf215546Sopenharmony_ci      inst->DstReg.WriteMask = WRITEMASK_X;
370bf215546Sopenharmony_ci      inst->SrcReg[0].File = PROGRAM_TEMPORARY;
371bf215546Sopenharmony_ci      inst->SrcReg[0].Index = fogFactorTemp;
372bf215546Sopenharmony_ci      inst->SrcReg[0].Negate = NEGATE_XYZW;
373bf215546Sopenharmony_ci      inst->SrcReg[0].Swizzle = SWIZZLE_XXXX;
374bf215546Sopenharmony_ci      inst->Saturate = GL_TRUE;
375bf215546Sopenharmony_ci      inst++;
376bf215546Sopenharmony_ci   }
377bf215546Sopenharmony_ci   /* LRP result.color.xyz, fogFactorTemp.xxxx, colorTemp, fogColorRef; */
378bf215546Sopenharmony_ci   inst->Opcode = OPCODE_LRP;
379bf215546Sopenharmony_ci   inst->DstReg.File = PROGRAM_OUTPUT;
380bf215546Sopenharmony_ci   inst->DstReg.Index = FRAG_RESULT_COLOR;
381bf215546Sopenharmony_ci   inst->DstReg.WriteMask = WRITEMASK_XYZ;
382bf215546Sopenharmony_ci   inst->SrcReg[0].File = PROGRAM_TEMPORARY;
383bf215546Sopenharmony_ci   inst->SrcReg[0].Index = fogFactorTemp;
384bf215546Sopenharmony_ci   inst->SrcReg[0].Swizzle = SWIZZLE_XXXX;
385bf215546Sopenharmony_ci   inst->SrcReg[1].File = PROGRAM_TEMPORARY;
386bf215546Sopenharmony_ci   inst->SrcReg[1].Index = colorTemp;
387bf215546Sopenharmony_ci   inst->SrcReg[1].Swizzle = SWIZZLE_NOOP;
388bf215546Sopenharmony_ci   inst->SrcReg[2].File = PROGRAM_STATE_VAR;
389bf215546Sopenharmony_ci   inst->SrcReg[2].Index = fogColorRef;
390bf215546Sopenharmony_ci   inst->SrcReg[2].Swizzle = SWIZZLE_NOOP;
391bf215546Sopenharmony_ci   inst++;
392bf215546Sopenharmony_ci   /* MOV result.color.w, colorTemp.x;  # copy alpha */
393bf215546Sopenharmony_ci   inst->Opcode = OPCODE_MOV;
394bf215546Sopenharmony_ci   inst->DstReg.File = PROGRAM_OUTPUT;
395bf215546Sopenharmony_ci   inst->DstReg.Index = FRAG_RESULT_COLOR;
396bf215546Sopenharmony_ci   inst->DstReg.WriteMask = WRITEMASK_W;
397bf215546Sopenharmony_ci   inst->SrcReg[0].File = PROGRAM_TEMPORARY;
398bf215546Sopenharmony_ci   inst->SrcReg[0].Index = colorTemp;
399bf215546Sopenharmony_ci   inst->SrcReg[0].Swizzle = SWIZZLE_NOOP;
400bf215546Sopenharmony_ci   inst++;
401bf215546Sopenharmony_ci   /* END; */
402bf215546Sopenharmony_ci   inst->Opcode = OPCODE_END;
403bf215546Sopenharmony_ci   inst++;
404bf215546Sopenharmony_ci
405bf215546Sopenharmony_ci   /* free old instructions */
406bf215546Sopenharmony_ci   ralloc_free(fprog->arb.Instructions);
407bf215546Sopenharmony_ci
408bf215546Sopenharmony_ci   /* install new instructions */
409bf215546Sopenharmony_ci   fprog->arb.Instructions = newInst;
410bf215546Sopenharmony_ci   fprog->arb.NumInstructions = inst - newInst;
411bf215546Sopenharmony_ci   fprog->info.inputs_read |= VARYING_BIT_FOGC;
412bf215546Sopenharmony_ci   assert(fprog->info.outputs_written & (1 << FRAG_RESULT_COLOR));
413bf215546Sopenharmony_ci}
414