swr: move msaa resolve to generalized StoreTile
[mesa.git] / src / gallium / drivers / r300 / r300_tgsi_to_rc.c
1 /*
2 * Copyright 2009 Nicolai Hähnle <nhaehnle@gmail.com>
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * on the rights to use, copy, modify, merge, publish, distribute, sub
8 * license, and/or sell copies of the Software, and to permit persons to whom
9 * the Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
18 * THE COPYRIGHT HOLDER(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM,
19 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
20 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
21 * USE OR OTHER DEALINGS IN THE SOFTWARE. */
22
23 #include <stdio.h>
24 #include "r300_tgsi_to_rc.h"
25
26 #include "compiler/radeon_compiler.h"
27
28 #include "tgsi/tgsi_info.h"
29 #include "tgsi/tgsi_parse.h"
30 #include "tgsi/tgsi_scan.h"
31 #include "tgsi/tgsi_util.h"
32
33 static unsigned translate_opcode(unsigned opcode)
34 {
35 switch(opcode) {
36 case TGSI_OPCODE_ARL: return RC_OPCODE_ARL;
37 case TGSI_OPCODE_MOV: return RC_OPCODE_MOV;
38 case TGSI_OPCODE_LIT: return RC_OPCODE_LIT;
39 case TGSI_OPCODE_RCP: return RC_OPCODE_RCP;
40 case TGSI_OPCODE_RSQ: return RC_OPCODE_RSQ;
41 case TGSI_OPCODE_EXP: return RC_OPCODE_EXP;
42 case TGSI_OPCODE_LOG: return RC_OPCODE_LOG;
43 case TGSI_OPCODE_MUL: return RC_OPCODE_MUL;
44 case TGSI_OPCODE_ADD: return RC_OPCODE_ADD;
45 case TGSI_OPCODE_DP3: return RC_OPCODE_DP3;
46 case TGSI_OPCODE_DP4: return RC_OPCODE_DP4;
47 case TGSI_OPCODE_DST: return RC_OPCODE_DST;
48 case TGSI_OPCODE_MIN: return RC_OPCODE_MIN;
49 case TGSI_OPCODE_MAX: return RC_OPCODE_MAX;
50 case TGSI_OPCODE_SLT: return RC_OPCODE_SLT;
51 case TGSI_OPCODE_SGE: return RC_OPCODE_SGE;
52 case TGSI_OPCODE_MAD: return RC_OPCODE_MAD;
53 case TGSI_OPCODE_LRP: return RC_OPCODE_LRP;
54 /* case TGSI_OPCODE_DP2A: return RC_OPCODE_DP2A; */
55 case TGSI_OPCODE_FRC: return RC_OPCODE_FRC;
56 case TGSI_OPCODE_FLR: return RC_OPCODE_FLR;
57 case TGSI_OPCODE_ROUND: return RC_OPCODE_ROUND;
58 case TGSI_OPCODE_EX2: return RC_OPCODE_EX2;
59 case TGSI_OPCODE_LG2: return RC_OPCODE_LG2;
60 case TGSI_OPCODE_POW: return RC_OPCODE_POW;
61 case TGSI_OPCODE_XPD: return RC_OPCODE_XPD;
62 case TGSI_OPCODE_DPH: return RC_OPCODE_DPH;
63 case TGSI_OPCODE_COS: return RC_OPCODE_COS;
64 case TGSI_OPCODE_DDX: return RC_OPCODE_DDX;
65 case TGSI_OPCODE_DDY: return RC_OPCODE_DDY;
66 case TGSI_OPCODE_KILL: return RC_OPCODE_KILP;
67 /* case TGSI_OPCODE_PK2H: return RC_OPCODE_PK2H; */
68 /* case TGSI_OPCODE_PK2US: return RC_OPCODE_PK2US; */
69 /* case TGSI_OPCODE_PK4B: return RC_OPCODE_PK4B; */
70 /* case TGSI_OPCODE_PK4UB: return RC_OPCODE_PK4UB; */
71 case TGSI_OPCODE_SEQ: return RC_OPCODE_SEQ;
72 case TGSI_OPCODE_SGT: return RC_OPCODE_SGT;
73 case TGSI_OPCODE_SIN: return RC_OPCODE_SIN;
74 case TGSI_OPCODE_SLE: return RC_OPCODE_SLE;
75 case TGSI_OPCODE_SNE: return RC_OPCODE_SNE;
76 case TGSI_OPCODE_TEX: return RC_OPCODE_TEX;
77 case TGSI_OPCODE_TXD: return RC_OPCODE_TXD;
78 case TGSI_OPCODE_TXP: return RC_OPCODE_TXP;
79 /* case TGSI_OPCODE_UP2H: return RC_OPCODE_UP2H; */
80 /* case TGSI_OPCODE_UP2US: return RC_OPCODE_UP2US; */
81 /* case TGSI_OPCODE_UP4B: return RC_OPCODE_UP4B; */
82 /* case TGSI_OPCODE_UP4UB: return RC_OPCODE_UP4UB; */
83 case TGSI_OPCODE_ARR: return RC_OPCODE_ARR;
84 /* case TGSI_OPCODE_CAL: return RC_OPCODE_CAL; */
85 /* case TGSI_OPCODE_RET: return RC_OPCODE_RET; */
86 case TGSI_OPCODE_SSG: return RC_OPCODE_SSG;
87 case TGSI_OPCODE_CMP: return RC_OPCODE_CMP;
88 case TGSI_OPCODE_SCS: return RC_OPCODE_SCS;
89 case TGSI_OPCODE_TXB: return RC_OPCODE_TXB;
90 /* case TGSI_OPCODE_DIV: return RC_OPCODE_DIV; */
91 case TGSI_OPCODE_DP2: return RC_OPCODE_DP2;
92 case TGSI_OPCODE_TXL: return RC_OPCODE_TXL;
93 case TGSI_OPCODE_BRK: return RC_OPCODE_BRK;
94 case TGSI_OPCODE_IF: return RC_OPCODE_IF;
95 case TGSI_OPCODE_BGNLOOP: return RC_OPCODE_BGNLOOP;
96 case TGSI_OPCODE_ELSE: return RC_OPCODE_ELSE;
97 case TGSI_OPCODE_ENDIF: return RC_OPCODE_ENDIF;
98 case TGSI_OPCODE_ENDLOOP: return RC_OPCODE_ENDLOOP;
99 /* case TGSI_OPCODE_PUSHA: return RC_OPCODE_PUSHA; */
100 /* case TGSI_OPCODE_POPA: return RC_OPCODE_POPA; */
101 case TGSI_OPCODE_CEIL: return RC_OPCODE_CEIL;
102 /* case TGSI_OPCODE_I2F: return RC_OPCODE_I2F; */
103 /* case TGSI_OPCODE_NOT: return RC_OPCODE_NOT; */
104 case TGSI_OPCODE_TRUNC: return RC_OPCODE_TRUNC;
105 /* case TGSI_OPCODE_SHL: return RC_OPCODE_SHL; */
106 /* case TGSI_OPCODE_ISHR: return RC_OPCODE_SHR; */
107 /* case TGSI_OPCODE_AND: return RC_OPCODE_AND; */
108 /* case TGSI_OPCODE_OR: return RC_OPCODE_OR; */
109 /* case TGSI_OPCODE_MOD: return RC_OPCODE_MOD; */
110 /* case TGSI_OPCODE_XOR: return RC_OPCODE_XOR; */
111 /* case TGSI_OPCODE_SAD: return RC_OPCODE_SAD; */
112 /* case TGSI_OPCODE_TXF: return RC_OPCODE_TXF; */
113 /* case TGSI_OPCODE_TXQ: return RC_OPCODE_TXQ; */
114 case TGSI_OPCODE_CONT: return RC_OPCODE_CONT;
115 /* case TGSI_OPCODE_EMIT: return RC_OPCODE_EMIT; */
116 /* case TGSI_OPCODE_ENDPRIM: return RC_OPCODE_ENDPRIM; */
117 /* case TGSI_OPCODE_BGNLOOP2: return RC_OPCODE_BGNLOOP2; */
118 /* case TGSI_OPCODE_BGNSUB: return RC_OPCODE_BGNSUB; */
119 /* case TGSI_OPCODE_ENDLOOP2: return RC_OPCODE_ENDLOOP2; */
120 /* case TGSI_OPCODE_ENDSUB: return RC_OPCODE_ENDSUB; */
121 case TGSI_OPCODE_NOP: return RC_OPCODE_NOP;
122 /* case TGSI_OPCODE_CALLNZ: return RC_OPCODE_CALLNZ; */
123 /* case TGSI_OPCODE_BREAKC: return RC_OPCODE_BREAKC; */
124 case TGSI_OPCODE_KILL_IF: return RC_OPCODE_KIL;
125 }
126
127 fprintf(stderr, "r300: Unknown TGSI/RC opcode: %s\n", tgsi_get_opcode_name(opcode));
128 return RC_OPCODE_ILLEGAL_OPCODE;
129 }
130
131 static unsigned translate_saturate(unsigned saturate)
132 {
133 return saturate ? RC_SATURATE_ZERO_ONE : RC_SATURATE_NONE;
134 }
135
136 static unsigned translate_register_file(unsigned file)
137 {
138 switch(file) {
139 case TGSI_FILE_CONSTANT: return RC_FILE_CONSTANT;
140 case TGSI_FILE_IMMEDIATE: return RC_FILE_CONSTANT;
141 case TGSI_FILE_INPUT: return RC_FILE_INPUT;
142 case TGSI_FILE_OUTPUT: return RC_FILE_OUTPUT;
143 default:
144 fprintf(stderr, "Unhandled register file: %i\n", file);
145 /* fall-through */
146 case TGSI_FILE_TEMPORARY: return RC_FILE_TEMPORARY;
147 case TGSI_FILE_ADDRESS: return RC_FILE_ADDRESS;
148 }
149 }
150
151 static int translate_register_index(
152 struct tgsi_to_rc * ttr,
153 unsigned file,
154 int index)
155 {
156 if (file == TGSI_FILE_IMMEDIATE)
157 return ttr->immediate_offset + index;
158
159 return index;
160 }
161
162 static void transform_dstreg(
163 struct tgsi_to_rc * ttr,
164 struct rc_dst_register * dst,
165 struct tgsi_full_dst_register * src)
166 {
167 dst->File = translate_register_file(src->Register.File);
168 dst->Index = translate_register_index(ttr, src->Register.File, src->Register.Index);
169 dst->WriteMask = src->Register.WriteMask;
170
171 if (src->Register.Indirect) {
172 ttr->error = TRUE;
173 fprintf(stderr, "r300: Relative addressing of destination operands "
174 "is unsupported.\n");
175 }
176 }
177
178 static void transform_srcreg(
179 struct tgsi_to_rc * ttr,
180 struct rc_src_register * dst,
181 struct tgsi_full_src_register * src)
182 {
183 unsigned i, j;
184
185 dst->File = translate_register_file(src->Register.File);
186 dst->Index = translate_register_index(ttr, src->Register.File, src->Register.Index);
187 dst->RelAddr = src->Register.Indirect;
188 dst->Swizzle = tgsi_util_get_full_src_register_swizzle(src, 0);
189 dst->Swizzle |= tgsi_util_get_full_src_register_swizzle(src, 1) << 3;
190 dst->Swizzle |= tgsi_util_get_full_src_register_swizzle(src, 2) << 6;
191 dst->Swizzle |= tgsi_util_get_full_src_register_swizzle(src, 3) << 9;
192 dst->Abs = src->Register.Absolute;
193 dst->Negate = src->Register.Negate ? RC_MASK_XYZW : 0;
194
195 if (src->Register.File == TGSI_FILE_IMMEDIATE) {
196 for (i = 0; i < ttr->imms_to_swizzle_count; i++) {
197 if (ttr->imms_to_swizzle[i].index == src->Register.Index) {
198 dst->File = RC_FILE_TEMPORARY;
199 dst->Index = 0;
200 dst->Swizzle = 0;
201 for (j = 0; j < 4; j++) {
202 dst->Swizzle |= GET_SWZ(ttr->imms_to_swizzle[i].swizzle,
203 tgsi_util_get_full_src_register_swizzle(src, j)) << (j * 3);
204 }
205 break;
206 }
207 }
208 }
209 }
210
211 static void transform_texture(struct rc_instruction * dst, struct tgsi_instruction_texture src,
212 uint32_t *shadowSamplers)
213 {
214 switch(src.Texture) {
215 case TGSI_TEXTURE_1D:
216 dst->U.I.TexSrcTarget = RC_TEXTURE_1D;
217 break;
218 case TGSI_TEXTURE_2D:
219 dst->U.I.TexSrcTarget = RC_TEXTURE_2D;
220 break;
221 case TGSI_TEXTURE_3D:
222 dst->U.I.TexSrcTarget = RC_TEXTURE_3D;
223 break;
224 case TGSI_TEXTURE_CUBE:
225 dst->U.I.TexSrcTarget = RC_TEXTURE_CUBE;
226 break;
227 case TGSI_TEXTURE_RECT:
228 dst->U.I.TexSrcTarget = RC_TEXTURE_RECT;
229 break;
230 case TGSI_TEXTURE_SHADOW1D:
231 dst->U.I.TexSrcTarget = RC_TEXTURE_1D;
232 dst->U.I.TexShadow = 1;
233 *shadowSamplers |= 1 << dst->U.I.TexSrcUnit;
234 break;
235 case TGSI_TEXTURE_SHADOW2D:
236 dst->U.I.TexSrcTarget = RC_TEXTURE_2D;
237 dst->U.I.TexShadow = 1;
238 *shadowSamplers |= 1 << dst->U.I.TexSrcUnit;
239 break;
240 case TGSI_TEXTURE_SHADOWRECT:
241 dst->U.I.TexSrcTarget = RC_TEXTURE_RECT;
242 dst->U.I.TexShadow = 1;
243 *shadowSamplers |= 1 << dst->U.I.TexSrcUnit;
244 break;
245 }
246 dst->U.I.TexSwizzle = RC_SWIZZLE_XYZW;
247 }
248
249 static void transform_instruction(struct tgsi_to_rc * ttr, struct tgsi_full_instruction * src)
250 {
251 struct rc_instruction * dst;
252 int i;
253
254 dst = rc_insert_new_instruction(ttr->compiler, ttr->compiler->Program.Instructions.Prev);
255 dst->U.I.Opcode = translate_opcode(src->Instruction.Opcode);
256 dst->U.I.SaturateMode = translate_saturate(src->Instruction.Saturate);
257
258 if (src->Instruction.NumDstRegs)
259 transform_dstreg(ttr, &dst->U.I.DstReg, &src->Dst[0]);
260
261 for(i = 0; i < src->Instruction.NumSrcRegs; ++i) {
262 if (src->Src[i].Register.File == TGSI_FILE_SAMPLER)
263 dst->U.I.TexSrcUnit = src->Src[i].Register.Index;
264 else
265 transform_srcreg(ttr, &dst->U.I.SrcReg[i], &src->Src[i]);
266 }
267
268 /* Texturing. */
269 if (src->Instruction.Texture)
270 transform_texture(dst, src->Texture,
271 &ttr->compiler->Program.ShadowSamplers);
272 }
273
274 static void handle_immediate(struct tgsi_to_rc * ttr,
275 struct tgsi_full_immediate * imm,
276 unsigned index)
277 {
278 struct rc_constant constant;
279 unsigned swizzle = 0;
280 boolean can_swizzle = TRUE;
281 unsigned i;
282
283 for (i = 0; i < 4; i++) {
284 if (imm->u[i].Float == 0.0f) {
285 swizzle |= RC_SWIZZLE_ZERO << (i * 3);
286 } else if (imm->u[i].Float == 0.5f && ttr->use_half_swizzles) {
287 swizzle |= RC_SWIZZLE_HALF << (i * 3);
288 } else if (imm->u[i].Float == 1.0f) {
289 swizzle |= RC_SWIZZLE_ONE << (i * 3);
290 } else {
291 can_swizzle = FALSE;
292 break;
293 }
294 }
295
296 if (can_swizzle) {
297 ttr->imms_to_swizzle[ttr->imms_to_swizzle_count].index = index;
298 ttr->imms_to_swizzle[ttr->imms_to_swizzle_count].swizzle = swizzle;
299 ttr->imms_to_swizzle_count++;
300 } else {
301 constant.Type = RC_CONSTANT_IMMEDIATE;
302 constant.Size = 4;
303 for(i = 0; i < 4; ++i)
304 constant.u.Immediate[i] = imm->u[i].Float;
305 rc_constants_add(&ttr->compiler->Program.Constants, &constant);
306 }
307 }
308
309 void r300_tgsi_to_rc(struct tgsi_to_rc * ttr,
310 const struct tgsi_token * tokens)
311 {
312 struct tgsi_full_instruction *inst;
313 struct tgsi_parse_context parser;
314 unsigned imm_index = 0;
315 int i;
316
317 ttr->error = FALSE;
318
319 /* Allocate constants placeholders.
320 *
321 * Note: What if declared constants are not contiguous? */
322 for(i = 0; i <= ttr->info->file_max[TGSI_FILE_CONSTANT]; ++i) {
323 struct rc_constant constant;
324 memset(&constant, 0, sizeof(constant));
325 constant.Type = RC_CONSTANT_EXTERNAL;
326 constant.Size = 4;
327 constant.u.External = i;
328 rc_constants_add(&ttr->compiler->Program.Constants, &constant);
329 }
330
331 ttr->immediate_offset = ttr->compiler->Program.Constants.Count;
332
333 ttr->imms_to_swizzle = malloc(ttr->info->immediate_count * sizeof(struct swizzled_imms));
334 ttr->imms_to_swizzle_count = 0;
335
336 tgsi_parse_init(&parser, tokens);
337
338 while (!tgsi_parse_end_of_tokens(&parser)) {
339 tgsi_parse_token(&parser);
340
341 switch (parser.FullToken.Token.Type) {
342 case TGSI_TOKEN_TYPE_DECLARATION:
343 break;
344 case TGSI_TOKEN_TYPE_IMMEDIATE:
345 handle_immediate(ttr, &parser.FullToken.FullImmediate, imm_index);
346 imm_index++;
347 break;
348 case TGSI_TOKEN_TYPE_INSTRUCTION:
349 inst = &parser.FullToken.FullInstruction;
350 if (inst->Instruction.Opcode == TGSI_OPCODE_END) {
351 break;
352 }
353
354 transform_instruction(ttr, inst);
355 break;
356 }
357 }
358
359 tgsi_parse_free(&parser);
360
361 free(ttr->imms_to_swizzle);
362
363 rc_calculate_inputs_outputs(ttr->compiler);
364 }