blob: ec9d9f3a7a199908fffdcf839154630a4a878e90 [file] [log] [blame]
Tom Stellarda75c6162012-01-06 17:38:37 -05001
Christian Königce40e472012-08-02 12:14:59 +02002/*
3 * Copyright 2012 Advanced Micro Devices, Inc.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * on the rights to use, copy, modify, merge, publish, distribute, sub
9 * license, and/or sell copies of the Software, and to permit persons to whom
10 * the Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the next
13 * paragraph) shall be included in all copies or substantial portions of the
14 * Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHOR(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM,
20 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
21 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
22 * USE OR OTHER DEALINGS IN THE SOFTWARE.
23 *
24 * Authors:
25 * Tom Stellard <thomas.stellard@amd.com>
26 * Michel Dänzer <michel.daenzer@amd.com>
27 * Christian König <christian.koenig@amd.com>
28 */
29
Tom Stellarda75c6162012-01-06 17:38:37 -050030#include "gallivm/lp_bld_tgsi_action.h"
31#include "gallivm/lp_bld_const.h"
Michel Dänzerc2bae6b2012-08-02 17:19:22 +020032#include "gallivm/lp_bld_gather.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050033#include "gallivm/lp_bld_intr.h"
Michel Dänzer7708a862012-11-02 15:57:30 +010034#include "gallivm/lp_bld_logic.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050035#include "gallivm/lp_bld_tgsi.h"
36#include "radeon_llvm.h"
Tom Stellard509ddb02012-04-16 17:48:44 -040037#include "radeon_llvm_emit.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050038#include "tgsi/tgsi_info.h"
39#include "tgsi/tgsi_parse.h"
40#include "tgsi/tgsi_scan.h"
41#include "tgsi/tgsi_dump.h"
42
43#include "radeonsi_pipe.h"
44#include "radeonsi_shader.h"
Christian Königf67fae02012-07-17 23:43:00 +020045#include "si_state.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050046#include "sid.h"
47
48#include <assert.h>
49#include <errno.h>
50#include <stdio.h>
51
Tom Stellarda75c6162012-01-06 17:38:37 -050052struct si_shader_context
53{
54 struct radeon_llvm_context radeon_bld;
55 struct r600_context *rctx;
56 struct tgsi_parse_context parse;
57 struct tgsi_token * tokens;
58 struct si_pipe_shader *shader;
Michel Dänzer44ef0332012-10-05 16:59:10 +020059 struct si_shader_key key;
Tom Stellarda75c6162012-01-06 17:38:37 -050060 unsigned type; /* TGSI_PROCESSOR_* specifies the type of shader. */
Michel Dänzercfebaf92012-08-31 19:04:08 +020061 unsigned ninput_emitted;
Tom Stellarda75c6162012-01-06 17:38:37 -050062/* struct list_head inputs; */
63/* unsigned * input_mappings *//* From TGSI to SI hw */
64/* struct tgsi_shader_info info;*/
65};
66
67static struct si_shader_context * si_shader_context(
68 struct lp_build_tgsi_context * bld_base)
69{
70 return (struct si_shader_context *)bld_base;
71}
72
73
74#define PERSPECTIVE_BASE 0
75#define LINEAR_BASE 9
76
77#define SAMPLE_OFFSET 0
78#define CENTER_OFFSET 2
79#define CENTROID_OFSET 4
80
81#define USE_SGPR_MAX_SUFFIX_LEN 5
Tom Stellard467f5162012-05-16 15:15:35 -040082#define CONST_ADDR_SPACE 2
Tom Stellard89ece082012-05-29 11:36:29 -040083#define USER_SGPR_ADDR_SPACE 8
Tom Stellarda75c6162012-01-06 17:38:37 -050084
85enum sgpr_type {
Tom Stellard467f5162012-05-16 15:15:35 -040086 SGPR_CONST_PTR_F32,
87 SGPR_CONST_PTR_V4I32,
88 SGPR_CONST_PTR_V8I32,
Tom Stellarda75c6162012-01-06 17:38:37 -050089 SGPR_I32,
Tom Stellard467f5162012-05-16 15:15:35 -040090 SGPR_I64
Tom Stellarda75c6162012-01-06 17:38:37 -050091};
92
Tom Stellard467f5162012-05-16 15:15:35 -040093/**
94 * Build an LLVM bytecode indexed load using LLVMBuildGEP + LLVMBuildLoad
95 *
96 * @param offset The offset parameter specifies the number of
97 * elements to offset, not the number of bytes or dwords. An element is the
98 * the type pointed to by the base_ptr parameter (e.g. int is the element of
99 * an int* pointer)
100 *
101 * When LLVM lowers the load instruction, it will convert the element offset
102 * into a dword offset automatically.
103 *
104 */
105static LLVMValueRef build_indexed_load(
106 struct gallivm_state * gallivm,
107 LLVMValueRef base_ptr,
108 LLVMValueRef offset)
109{
110 LLVMValueRef computed_ptr = LLVMBuildGEP(
111 gallivm->builder, base_ptr, &offset, 1, "");
112
113 return LLVMBuildLoad(gallivm->builder, computed_ptr, "");
114}
115
Tom Stellard89ece082012-05-29 11:36:29 -0400116/**
117 * Load a value stored in one of the user SGPRs
118 *
119 * @param sgpr This is the sgpr to load the value from. If you need to load a
120 * value that is stored in consecutive SGPR registers (e.g. a 64-bit pointer),
121 * then you should pass the index of the first SGPR that holds the value. For
122 * example, if you want to load a pointer that is stored in SGPRs 2 and 3, then
123 * use pass 2 for the sgpr parameter.
124 *
125 * The value of the sgpr parameter must also be aligned to the width of the type
126 * being loaded, so that the sgpr parameter is divisible by the dword width of the
127 * type. For example, if the value being loaded is two dwords wide, then the sgpr
128 * parameter must be divisible by two.
Tom Stellard467f5162012-05-16 15:15:35 -0400129 */
Tom Stellarda75c6162012-01-06 17:38:37 -0500130static LLVMValueRef use_sgpr(
131 struct gallivm_state * gallivm,
132 enum sgpr_type type,
133 unsigned sgpr)
134{
135 LLVMValueRef sgpr_index;
Tom Stellarda75c6162012-01-06 17:38:37 -0500136 LLVMTypeRef ret_type;
Tom Stellard89ece082012-05-29 11:36:29 -0400137 LLVMValueRef ptr;
Tom Stellarda75c6162012-01-06 17:38:37 -0500138
139 sgpr_index = lp_build_const_int32(gallivm, sgpr);
140
Tom Stellard467f5162012-05-16 15:15:35 -0400141 switch (type) {
142 case SGPR_CONST_PTR_F32:
Tom Stellard89ece082012-05-29 11:36:29 -0400143 assert(sgpr % 2 == 0);
Tom Stellard467f5162012-05-16 15:15:35 -0400144 ret_type = LLVMFloatTypeInContext(gallivm->context);
145 ret_type = LLVMPointerType(ret_type, CONST_ADDR_SPACE);
Tom Stellard89ece082012-05-29 11:36:29 -0400146 break;
147
Tom Stellard467f5162012-05-16 15:15:35 -0400148 case SGPR_I32:
Tom Stellarda75c6162012-01-06 17:38:37 -0500149 ret_type = LLVMInt32TypeInContext(gallivm->context);
Tom Stellard89ece082012-05-29 11:36:29 -0400150 break;
151
Tom Stellard467f5162012-05-16 15:15:35 -0400152 case SGPR_I64:
Tom Stellard89ece082012-05-29 11:36:29 -0400153 assert(sgpr % 2 == 0);
Tom Stellard467f5162012-05-16 15:15:35 -0400154 ret_type= LLVMInt64TypeInContext(gallivm->context);
Tom Stellard89ece082012-05-29 11:36:29 -0400155 break;
156
Tom Stellard467f5162012-05-16 15:15:35 -0400157 case SGPR_CONST_PTR_V4I32:
Tom Stellard89ece082012-05-29 11:36:29 -0400158 assert(sgpr % 2 == 0);
Tom Stellarda75c6162012-01-06 17:38:37 -0500159 ret_type = LLVMInt32TypeInContext(gallivm->context);
160 ret_type = LLVMVectorType(ret_type, 4);
Tom Stellard467f5162012-05-16 15:15:35 -0400161 ret_type = LLVMPointerType(ret_type, CONST_ADDR_SPACE);
Tom Stellard89ece082012-05-29 11:36:29 -0400162 break;
163
Tom Stellard467f5162012-05-16 15:15:35 -0400164 case SGPR_CONST_PTR_V8I32:
Tom Stellard89ece082012-05-29 11:36:29 -0400165 assert(sgpr % 2 == 0);
Tom Stellarda75c6162012-01-06 17:38:37 -0500166 ret_type = LLVMInt32TypeInContext(gallivm->context);
167 ret_type = LLVMVectorType(ret_type, 8);
Tom Stellard467f5162012-05-16 15:15:35 -0400168 ret_type = LLVMPointerType(ret_type, CONST_ADDR_SPACE);
Tom Stellard89ece082012-05-29 11:36:29 -0400169 break;
170
Tom Stellarda75c6162012-01-06 17:38:37 -0500171 default:
172 assert(!"Unsupported SGPR type in use_sgpr()");
173 return NULL;
174 }
Tom Stellard89ece082012-05-29 11:36:29 -0400175
176 ret_type = LLVMPointerType(ret_type, USER_SGPR_ADDR_SPACE);
177 ptr = LLVMBuildIntToPtr(gallivm->builder, sgpr_index, ret_type, "");
178 return LLVMBuildLoad(gallivm->builder, ptr, "");
Tom Stellarda75c6162012-01-06 17:38:37 -0500179}
180
181static void declare_input_vs(
182 struct si_shader_context * si_shader_ctx,
183 unsigned input_index,
184 const struct tgsi_full_declaration *decl)
185{
186 LLVMValueRef t_list_ptr;
187 LLVMValueRef t_offset;
Tom Stellard467f5162012-05-16 15:15:35 -0400188 LLVMValueRef t_list;
Tom Stellarda75c6162012-01-06 17:38:37 -0500189 LLVMValueRef attribute_offset;
190 LLVMValueRef buffer_index_reg;
Tom Stellard467f5162012-05-16 15:15:35 -0400191 LLVMValueRef args[3];
Tom Stellarda75c6162012-01-06 17:38:37 -0500192 LLVMTypeRef vec4_type;
193 LLVMValueRef input;
194 struct lp_build_context * uint = &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
195 struct lp_build_context * base = &si_shader_ctx->radeon_bld.soa.bld_base.base;
Christian Königb15e3ae2012-07-25 11:22:59 +0200196 //struct pipe_vertex_element *velem = &rctx->vertex_elements->elements[input_index];
Tom Stellarda75c6162012-01-06 17:38:37 -0500197 unsigned chan;
198
Tom Stellard467f5162012-05-16 15:15:35 -0400199 /* Load the T list */
Christian König22ae0622012-09-26 20:42:23 +0200200 t_list_ptr = use_sgpr(base->gallivm, SGPR_CONST_PTR_V4I32, SI_SGPR_VERTEX_BUFFER);
Tom Stellarda75c6162012-01-06 17:38:37 -0500201
Christian Königb15e3ae2012-07-25 11:22:59 +0200202 t_offset = lp_build_const_int32(base->gallivm, input_index);
Tom Stellard467f5162012-05-16 15:15:35 -0400203
204 t_list = build_indexed_load(base->gallivm, t_list_ptr, t_offset);
205
206 /* Build the attribute offset */
Christian Königb15e3ae2012-07-25 11:22:59 +0200207 attribute_offset = lp_build_const_int32(base->gallivm, 0);
Tom Stellarda75c6162012-01-06 17:38:37 -0500208
209 /* Load the buffer index is always, which is always stored in VGPR0
210 * for Vertex Shaders */
Tom Stellard40c41fe2012-07-25 19:17:16 +0000211 buffer_index_reg = build_intrinsic(base->gallivm->builder,
212 "llvm.SI.vs.load.buffer.index", uint->elem_type, NULL, 0,
213 LLVMReadNoneAttribute);
Tom Stellarda75c6162012-01-06 17:38:37 -0500214
215 vec4_type = LLVMVectorType(base->elem_type, 4);
Tom Stellard467f5162012-05-16 15:15:35 -0400216 args[0] = t_list;
217 args[1] = attribute_offset;
218 args[2] = buffer_index_reg;
Tom Stellarda75c6162012-01-06 17:38:37 -0500219 input = lp_build_intrinsic(base->gallivm->builder,
Tom Stellard467f5162012-05-16 15:15:35 -0400220 "llvm.SI.vs.load.input", vec4_type, args, 3);
Tom Stellarda75c6162012-01-06 17:38:37 -0500221
222 /* Break up the vec4 into individual components */
223 for (chan = 0; chan < 4; chan++) {
224 LLVMValueRef llvm_chan = lp_build_const_int32(base->gallivm, chan);
225 /* XXX: Use a helper function for this. There is one in
226 * tgsi_llvm.c. */
227 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, chan)] =
228 LLVMBuildExtractElement(base->gallivm->builder,
229 input, llvm_chan, "");
230 }
231}
232
233static void declare_input_fs(
234 struct si_shader_context * si_shader_ctx,
235 unsigned input_index,
236 const struct tgsi_full_declaration *decl)
237{
238 const char * intr_name;
239 unsigned chan;
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200240 struct si_shader *shader = &si_shader_ctx->shader->shader;
Tom Stellarda75c6162012-01-06 17:38:37 -0500241 struct lp_build_context * base =
242 &si_shader_ctx->radeon_bld.soa.bld_base.base;
243 struct gallivm_state * gallivm = base->gallivm;
Tom Stellard0fb1e682012-09-06 16:18:11 -0400244 LLVMTypeRef input_type = LLVMFloatTypeInContext(gallivm->context);
Tom Stellarda75c6162012-01-06 17:38:37 -0500245
246 /* This value is:
247 * [15:0] NewPrimMask (Bit mask for each quad. It is set it the
248 * quad begins a new primitive. Bit 0 always needs
249 * to be unset)
250 * [32:16] ParamOffset
251 *
252 */
Christian König22ae0622012-09-26 20:42:23 +0200253 LLVMValueRef params = use_sgpr(base->gallivm, SGPR_I32, SI_PS_NUM_USER_SGPR);
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200254 LLVMValueRef attr_number;
Tom Stellarda75c6162012-01-06 17:38:37 -0500255
Tom Stellard0fb1e682012-09-06 16:18:11 -0400256 if (decl->Semantic.Name == TGSI_SEMANTIC_POSITION) {
257 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
258 LLVMValueRef args[1];
259 unsigned soa_index =
260 radeon_llvm_reg_index_soa(input_index, chan);
261 args[0] = lp_build_const_int32(gallivm, chan);
262 si_shader_ctx->radeon_bld.inputs[soa_index] =
263 build_intrinsic(base->gallivm->builder,
264 "llvm.SI.fs.read.pos", input_type,
265 args, 1, LLVMReadNoneAttribute);
266 }
267 return;
268 }
269
Michel Dänzer97078b12012-09-25 12:41:31 +0200270 if (decl->Semantic.Name == TGSI_SEMANTIC_FACE) {
271 LLVMValueRef face, is_face_positive;
272
273 face = build_intrinsic(gallivm->builder,
274 "llvm.SI.fs.read.face",
275 input_type,
276 NULL, 0, LLVMReadNoneAttribute);
277 is_face_positive = LLVMBuildFCmp(gallivm->builder,
278 LLVMRealUGT, face,
279 lp_build_const_float(gallivm, 0.0f),
280 "");
281
282 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, 0)] =
283 LLVMBuildSelect(gallivm->builder,
284 is_face_positive,
285 lp_build_const_float(gallivm, 1.0f),
286 lp_build_const_float(gallivm, 0.0f),
287 "");
288 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, 1)] =
289 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, 2)] =
290 lp_build_const_float(gallivm, 0.0f);
291 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, 3)] =
292 lp_build_const_float(gallivm, 1.0f);
293
294 return;
295 }
296
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200297 shader->input[input_index].param_offset = shader->ninterp++;
298 attr_number = lp_build_const_int32(gallivm,
299 shader->input[input_index].param_offset);
300
Tom Stellarda75c6162012-01-06 17:38:37 -0500301 /* XXX: Handle all possible interpolation modes */
Francisco Jerez12799232012-04-30 18:27:52 +0200302 switch (decl->Interp.Interpolate) {
Tom Stellarda75c6162012-01-06 17:38:37 -0500303 case TGSI_INTERPOLATE_COLOR:
Michel Dänzer90c6eac2012-06-08 17:15:21 +0200304 /* XXX: Flat shading hangs the GPU */
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200305 if (si_shader_ctx->rctx->queued.named.rasterizer &&
306 si_shader_ctx->rctx->queued.named.rasterizer->flatshade) {
Michel Dänzer90c6eac2012-06-08 17:15:21 +0200307#if 0
Tom Stellarda75c6162012-01-06 17:38:37 -0500308 intr_name = "llvm.SI.fs.interp.constant";
Michel Dänzer90c6eac2012-06-08 17:15:21 +0200309#else
310 intr_name = "llvm.SI.fs.interp.linear.center";
311#endif
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200312 } else {
313 if (decl->Interp.Centroid)
314 intr_name = "llvm.SI.fs.interp.persp.centroid";
315 else
316 intr_name = "llvm.SI.fs.interp.persp.center";
317 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500318 break;
319 case TGSI_INTERPOLATE_CONSTANT:
Michel Dänzer90c6eac2012-06-08 17:15:21 +0200320 /* XXX: Flat shading hangs the GPU */
321#if 0
Tom Stellarda75c6162012-01-06 17:38:37 -0500322 intr_name = "llvm.SI.fs.interp.constant";
323 break;
Michel Dänzer90c6eac2012-06-08 17:15:21 +0200324#endif
Tom Stellarda75c6162012-01-06 17:38:37 -0500325 case TGSI_INTERPOLATE_LINEAR:
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200326 if (decl->Interp.Centroid)
327 intr_name = "llvm.SI.fs.interp.linear.centroid";
328 else
329 intr_name = "llvm.SI.fs.interp.linear.center";
330 break;
331 case TGSI_INTERPOLATE_PERSPECTIVE:
332 if (decl->Interp.Centroid)
333 intr_name = "llvm.SI.fs.interp.persp.centroid";
334 else
335 intr_name = "llvm.SI.fs.interp.persp.center";
Tom Stellarda75c6162012-01-06 17:38:37 -0500336 break;
337 default:
338 fprintf(stderr, "Warning: Unhandled interpolation mode.\n");
339 return;
340 }
341
Michel Dänzercfebaf92012-08-31 19:04:08 +0200342 if (!si_shader_ctx->ninput_emitted++) {
343 /* Enable whole quad mode */
344 lp_build_intrinsic(gallivm->builder,
345 "llvm.SI.wqm",
346 LLVMVoidTypeInContext(gallivm->context),
347 NULL, 0);
348 }
349
Tom Stellarda75c6162012-01-06 17:38:37 -0500350 /* XXX: Could there be more than TGSI_NUM_CHANNELS (4) ? */
Michel Dänzer691f08d2012-09-06 18:03:38 +0200351 if (decl->Semantic.Name == TGSI_SEMANTIC_COLOR &&
352 si_shader_ctx->key.color_two_side) {
Tom Stellarda75c6162012-01-06 17:38:37 -0500353 LLVMValueRef args[3];
Michel Dänzer691f08d2012-09-06 18:03:38 +0200354 LLVMValueRef face, is_face_positive;
355 LLVMValueRef back_attr_number =
356 lp_build_const_int32(gallivm,
357 shader->input[input_index].param_offset + 1);
358
359 face = build_intrinsic(gallivm->builder,
360 "llvm.SI.fs.read.face",
361 input_type,
362 NULL, 0, LLVMReadNoneAttribute);
363 is_face_positive = LLVMBuildFCmp(gallivm->builder,
364 LLVMRealUGT, face,
365 lp_build_const_float(gallivm, 0.0f),
366 "");
367
Tom Stellarda75c6162012-01-06 17:38:37 -0500368 args[2] = params;
Michel Dänzer691f08d2012-09-06 18:03:38 +0200369 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
370 LLVMValueRef llvm_chan = lp_build_const_int32(gallivm, chan);
371 unsigned soa_index = radeon_llvm_reg_index_soa(input_index, chan);
372 LLVMValueRef front, back;
373
374 args[0] = llvm_chan;
375 args[1] = attr_number;
376 front = build_intrinsic(base->gallivm->builder, intr_name,
377 input_type, args, 3, LLVMReadOnlyAttribute);
378
379 args[1] = back_attr_number;
380 back = build_intrinsic(base->gallivm->builder, intr_name,
381 input_type, args, 3, LLVMReadOnlyAttribute);
382
383 si_shader_ctx->radeon_bld.inputs[soa_index] =
384 LLVMBuildSelect(gallivm->builder,
385 is_face_positive,
386 front,
387 back,
388 "");
389 }
390
391 shader->ninterp++;
392 } else {
393 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
394 LLVMValueRef args[3];
395 LLVMValueRef llvm_chan = lp_build_const_int32(gallivm, chan);
396 unsigned soa_index = radeon_llvm_reg_index_soa(input_index, chan);
397 args[0] = llvm_chan;
398 args[1] = attr_number;
399 args[2] = params;
400 si_shader_ctx->radeon_bld.inputs[soa_index] =
401 build_intrinsic(base->gallivm->builder, intr_name,
402 input_type, args, 3, LLVMReadOnlyAttribute);
403 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500404 }
405}
406
407static void declare_input(
408 struct radeon_llvm_context * radeon_bld,
409 unsigned input_index,
410 const struct tgsi_full_declaration *decl)
411{
412 struct si_shader_context * si_shader_ctx =
413 si_shader_context(&radeon_bld->soa.bld_base);
414 if (si_shader_ctx->type == TGSI_PROCESSOR_VERTEX) {
415 declare_input_vs(si_shader_ctx, input_index, decl);
416 } else if (si_shader_ctx->type == TGSI_PROCESSOR_FRAGMENT) {
417 declare_input_fs(si_shader_ctx, input_index, decl);
418 } else {
419 fprintf(stderr, "Warning: Unsupported shader type,\n");
420 }
421}
422
423static LLVMValueRef fetch_constant(
424 struct lp_build_tgsi_context * bld_base,
425 const struct tgsi_full_src_register *reg,
426 enum tgsi_opcode_type type,
427 unsigned swizzle)
428{
429 struct lp_build_context * base = &bld_base->base;
Christian König88a4fd82012-08-29 10:48:01 +0200430 unsigned idx;
Tom Stellarda75c6162012-01-06 17:38:37 -0500431
432 LLVMValueRef const_ptr;
433 LLVMValueRef offset;
Tom Stellard022b5432012-07-25 08:23:52 -0400434 LLVMValueRef load;
Tom Stellarda75c6162012-01-06 17:38:37 -0500435
Christian Könige7723b52012-08-24 12:55:34 +0200436 /* currently not supported */
437 if (reg->Register.Indirect) {
438 assert(0);
439 load = lp_build_const_int32(base->gallivm, 0);
440 return bitcast(bld_base, type, load);
441 }
442
Christian König22ae0622012-09-26 20:42:23 +0200443 const_ptr = use_sgpr(base->gallivm, SGPR_CONST_PTR_F32, SI_SGPR_CONST);
Tom Stellarda75c6162012-01-06 17:38:37 -0500444
445 /* XXX: This assumes that the constant buffer is not packed, so
446 * CONST[0].x will have an offset of 0 and CONST[1].x will have an
447 * offset of 4. */
Christian König88a4fd82012-08-29 10:48:01 +0200448 idx = (reg->Register.Index * 4) + swizzle;
449
450 /* index loads above 255 are currently not supported */
451 if (idx > 255) {
452 assert(0);
453 idx = 0;
454 }
455 offset = lp_build_const_int32(base->gallivm, idx);
Tom Stellarda75c6162012-01-06 17:38:37 -0500456
Tom Stellard022b5432012-07-25 08:23:52 -0400457 load = build_indexed_load(base->gallivm, const_ptr, offset);
458 return bitcast(bld_base, type, load);
Tom Stellarda75c6162012-01-06 17:38:37 -0500459}
460
Michel Dänzer26c71392012-08-24 12:03:11 +0200461/* Initialize arguments for the shader export intrinsic */
462static void si_llvm_init_export_args(struct lp_build_tgsi_context *bld_base,
463 struct tgsi_full_declaration *d,
464 unsigned index,
465 unsigned target,
466 LLVMValueRef *args)
467{
468 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
469 struct lp_build_context *uint =
470 &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
471 struct lp_build_context *base = &bld_base->base;
472 unsigned compressed = 0;
473 unsigned chan;
474
Michel Dänzerf402acd2012-08-22 18:15:36 +0200475 if (si_shader_ctx->type == TGSI_PROCESSOR_FRAGMENT) {
476 int cbuf = target - V_008DFC_SQ_EXP_MRT;
477
478 if (cbuf >= 0 && cbuf < 8) {
479 struct r600_context *rctx = si_shader_ctx->rctx;
Michel Dänzer44ef0332012-10-05 16:59:10 +0200480 compressed = (si_shader_ctx->key.export_16bpc >> cbuf) & 0x1;
Michel Dänzerf402acd2012-08-22 18:15:36 +0200481 }
482 }
483
484 if (compressed) {
485 /* Pixel shader needs to pack output values before export */
486 for (chan = 0; chan < 2; chan++ ) {
487 LLVMValueRef *out_ptr =
488 si_shader_ctx->radeon_bld.soa.outputs[index];
489 args[0] = LLVMBuildLoad(base->gallivm->builder,
490 out_ptr[2 * chan], "");
491 args[1] = LLVMBuildLoad(base->gallivm->builder,
492 out_ptr[2 * chan + 1], "");
493 args[chan + 5] =
494 build_intrinsic(base->gallivm->builder,
495 "llvm.SI.packf16",
496 LLVMInt32TypeInContext(base->gallivm->context),
497 args, 2,
498 LLVMReadNoneAttribute);
499 args[chan + 7] = args[chan + 5];
500 }
501
502 /* Set COMPR flag */
503 args[4] = uint->one;
504 } else {
505 for (chan = 0; chan < 4; chan++ ) {
506 LLVMValueRef out_ptr =
507 si_shader_ctx->radeon_bld.soa.outputs[index][chan];
508 /* +5 because the first output value will be
509 * the 6th argument to the intrinsic. */
510 args[chan + 5] = LLVMBuildLoad(base->gallivm->builder,
511 out_ptr, "");
512 }
513
514 /* Clear COMPR flag */
515 args[4] = uint->zero;
Michel Dänzer26c71392012-08-24 12:03:11 +0200516 }
517
518 /* XXX: This controls which components of the output
519 * registers actually get exported. (e.g bit 0 means export
520 * X component, bit 1 means export Y component, etc.) I'm
521 * hard coding this to 0xf for now. In the future, we might
522 * want to do something else. */
523 args[0] = lp_build_const_int32(base->gallivm, 0xf);
524
525 /* Specify whether the EXEC mask represents the valid mask */
526 args[1] = uint->zero;
527
528 /* Specify whether this is the last export */
529 args[2] = uint->zero;
530
531 /* Specify the target we are exporting */
532 args[3] = lp_build_const_int32(base->gallivm, target);
533
Michel Dänzer26c71392012-08-24 12:03:11 +0200534 /* XXX: We probably need to keep track of the output
535 * values, so we know what we are passing to the next
536 * stage. */
537}
538
Tom Stellardcc571a32012-09-07 09:12:51 -0400539static void si_llvm_emit_prologue(struct lp_build_tgsi_context *bld_base)
540{
541 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
542 struct gallivm_state *gallivm = bld_base->base.gallivm;
543 lp_build_intrinsic_unary(gallivm->builder,
544 "llvm.AMDGPU.shader.type",
545 LLVMVoidTypeInContext(gallivm->context),
546 lp_build_const_int32(gallivm, si_shader_ctx->type));
547}
548
549
Michel Dänzer7708a862012-11-02 15:57:30 +0100550static void si_alpha_test(struct lp_build_tgsi_context *bld_base,
551 unsigned index)
552{
553 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
554 struct gallivm_state *gallivm = bld_base->base.gallivm;
555
556 if (si_shader_ctx->key.alpha_func != PIPE_FUNC_NEVER) {
557 LLVMValueRef out_ptr = si_shader_ctx->radeon_bld.soa.outputs[index][3];
558 LLVMValueRef alpha_pass =
559 lp_build_cmp(&bld_base->base,
560 si_shader_ctx->key.alpha_func,
561 LLVMBuildLoad(gallivm->builder, out_ptr, ""),
562 lp_build_const_float(gallivm, si_shader_ctx->key.alpha_ref));
563 LLVMValueRef arg =
564 lp_build_select(&bld_base->base,
565 alpha_pass,
566 lp_build_const_float(gallivm, 1.0f),
567 lp_build_const_float(gallivm, -1.0f));
568
569 build_intrinsic(gallivm->builder,
570 "llvm.AMDGPU.kill",
571 LLVMVoidTypeInContext(gallivm->context),
572 &arg, 1, 0);
573 } else {
574 build_intrinsic(gallivm->builder,
575 "llvm.AMDGPU.kilp",
576 LLVMVoidTypeInContext(gallivm->context),
577 NULL, 0, 0);
578 }
579}
580
Tom Stellarda75c6162012-01-06 17:38:37 -0500581/* XXX: This is partially implemented for VS only at this point. It is not complete */
582static void si_llvm_emit_epilogue(struct lp_build_tgsi_context * bld_base)
583{
584 struct si_shader_context * si_shader_ctx = si_shader_context(bld_base);
Christian König3c09f112012-07-18 17:39:15 +0200585 struct si_shader * shader = &si_shader_ctx->shader->shader;
Tom Stellarda75c6162012-01-06 17:38:37 -0500586 struct lp_build_context * base = &bld_base->base;
587 struct lp_build_context * uint =
588 &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
589 struct tgsi_parse_context *parse = &si_shader_ctx->parse;
590 LLVMValueRef last_args[9] = { 0 };
Christian König35088152012-08-01 22:35:24 +0200591 unsigned color_count = 0;
592 unsigned param_count = 0;
Tom Stellarda75c6162012-01-06 17:38:37 -0500593
594 while (!tgsi_parse_end_of_tokens(parse)) {
Tom Stellarda75c6162012-01-06 17:38:37 -0500595 struct tgsi_full_declaration *d =
596 &parse->FullToken.FullDeclaration;
597 LLVMValueRef args[9];
598 unsigned target;
599 unsigned index;
Tom Stellarda75c6162012-01-06 17:38:37 -0500600 int i;
601
602 tgsi_parse_token(parse);
603 if (parse->FullToken.Token.Type != TGSI_TOKEN_TYPE_DECLARATION)
604 continue;
605
606 switch (d->Declaration.File) {
607 case TGSI_FILE_INPUT:
608 i = shader->ninput++;
609 shader->input[i].name = d->Semantic.Name;
610 shader->input[i].sid = d->Semantic.Index;
Francisco Jerez12799232012-04-30 18:27:52 +0200611 shader->input[i].interpolate = d->Interp.Interpolate;
612 shader->input[i].centroid = d->Interp.Centroid;
Christian König35088152012-08-01 22:35:24 +0200613 continue;
614
Tom Stellarda75c6162012-01-06 17:38:37 -0500615 case TGSI_FILE_OUTPUT:
616 i = shader->noutput++;
617 shader->output[i].name = d->Semantic.Name;
618 shader->output[i].sid = d->Semantic.Index;
Francisco Jerez12799232012-04-30 18:27:52 +0200619 shader->output[i].interpolate = d->Interp.Interpolate;
Tom Stellarda75c6162012-01-06 17:38:37 -0500620 break;
Tom Stellarda75c6162012-01-06 17:38:37 -0500621
Christian König35088152012-08-01 22:35:24 +0200622 default:
Tom Stellarda75c6162012-01-06 17:38:37 -0500623 continue;
Christian König35088152012-08-01 22:35:24 +0200624 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500625
626 for (index = d->Range.First; index <= d->Range.Last; index++) {
Tom Stellarda75c6162012-01-06 17:38:37 -0500627 /* Select the correct target */
628 switch(d->Semantic.Name) {
Tom Stellardc3c323a2012-08-30 10:35:36 -0400629 case TGSI_SEMANTIC_PSIZE:
Tom Stellarda75c6162012-01-06 17:38:37 -0500630 case TGSI_SEMANTIC_POSITION:
631 target = V_008DFC_SQ_EXP_POS;
632 break;
633 case TGSI_SEMANTIC_COLOR:
634 if (si_shader_ctx->type == TGSI_PROCESSOR_VERTEX) {
Michel Dänzer691f08d2012-09-06 18:03:38 +0200635 case TGSI_SEMANTIC_BCOLOR:
Tom Stellarda75c6162012-01-06 17:38:37 -0500636 target = V_008DFC_SQ_EXP_PARAM + param_count;
Michel Dänzerdd9d6192012-05-18 15:01:10 +0200637 shader->output[i].param_offset = param_count;
Tom Stellarda75c6162012-01-06 17:38:37 -0500638 param_count++;
639 } else {
640 target = V_008DFC_SQ_EXP_MRT + color_count;
Michel Dänzer7708a862012-11-02 15:57:30 +0100641 if (color_count == 0 &&
642 si_shader_ctx->key.alpha_func != PIPE_FUNC_ALWAYS)
643 si_alpha_test(bld_base, index);
644
Tom Stellarda75c6162012-01-06 17:38:37 -0500645 color_count++;
646 }
647 break;
Michel Dänzer30b30372012-09-06 17:53:04 +0200648 case TGSI_SEMANTIC_FOG:
Tom Stellarda75c6162012-01-06 17:38:37 -0500649 case TGSI_SEMANTIC_GENERIC:
650 target = V_008DFC_SQ_EXP_PARAM + param_count;
Michel Dänzerdd9d6192012-05-18 15:01:10 +0200651 shader->output[i].param_offset = param_count;
Tom Stellarda75c6162012-01-06 17:38:37 -0500652 param_count++;
653 break;
654 default:
655 target = 0;
656 fprintf(stderr,
657 "Warning: SI unhandled output type:%d\n",
658 d->Semantic.Name);
659 }
660
Michel Dänzer26c71392012-08-24 12:03:11 +0200661 si_llvm_init_export_args(bld_base, d, index, target, args);
Tom Stellarda75c6162012-01-06 17:38:37 -0500662
663 if (si_shader_ctx->type == TGSI_PROCESSOR_VERTEX ?
664 (d->Semantic.Name == TGSI_SEMANTIC_POSITION) :
665 (d->Semantic.Name == TGSI_SEMANTIC_COLOR)) {
666 if (last_args[0]) {
667 lp_build_intrinsic(base->gallivm->builder,
668 "llvm.SI.export",
669 LLVMVoidTypeInContext(base->gallivm->context),
670 last_args, 9);
671 }
672
673 memcpy(last_args, args, sizeof(args));
674 } else {
675 lp_build_intrinsic(base->gallivm->builder,
676 "llvm.SI.export",
677 LLVMVoidTypeInContext(base->gallivm->context),
678 args, 9);
679 }
680
681 }
682 }
683
Christian Königf18fd252012-07-25 21:58:46 +0200684 if (!last_args[0]) {
685 assert(si_shader_ctx->type == TGSI_PROCESSOR_FRAGMENT);
686
687 /* Specify which components to enable */
688 last_args[0] = lp_build_const_int32(base->gallivm, 0x0);
689
690 /* Specify the target we are exporting */
691 last_args[3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_MRT);
692
693 /* Set COMPR flag to zero to export data as 32-bit */
694 last_args[4] = uint->zero;
695
696 /* dummy bits */
697 last_args[5]= uint->zero;
698 last_args[6]= uint->zero;
699 last_args[7]= uint->zero;
700 last_args[8]= uint->zero;
701 }
702
Tom Stellarda75c6162012-01-06 17:38:37 -0500703 /* Specify whether the EXEC mask represents the valid mask */
704 last_args[1] = lp_build_const_int32(base->gallivm,
705 si_shader_ctx->type == TGSI_PROCESSOR_FRAGMENT);
706
707 /* Specify that this is the last export */
708 last_args[2] = lp_build_const_int32(base->gallivm, 1);
709
710 lp_build_intrinsic(base->gallivm->builder,
711 "llvm.SI.export",
712 LLVMVoidTypeInContext(base->gallivm->context),
713 last_args, 9);
714
715/* XXX: Look up what this function does */
716/* ctx->shader->output[i].spi_sid = r600_spi_sid(&ctx->shader->output[i]);*/
717}
718
719static void tex_fetch_args(
720 struct lp_build_tgsi_context * bld_base,
721 struct lp_build_emit_data * emit_data)
722{
Michel Dänzerc2bae6b2012-08-02 17:19:22 +0200723 const struct tgsi_full_instruction * inst = emit_data->inst;
Tom Stellard467f5162012-05-16 15:15:35 -0400724 LLVMValueRef ptr;
725 LLVMValueRef offset;
726
Tom Stellarda75c6162012-01-06 17:38:37 -0500727 /* WriteMask */
Christian König250b7fd2012-08-01 23:18:14 +0200728 /* XXX: should be optimized using emit_data->inst->Dst[0].Register.WriteMask*/
729 emit_data->args[0] = lp_build_const_int32(bld_base->base.gallivm, 0xf);
Tom Stellarda75c6162012-01-06 17:38:37 -0500730
731 /* Coordinates */
732 /* XXX: Not all sample instructions need 4 address arguments. */
Michel Dänzerc2bae6b2012-08-02 17:19:22 +0200733 if (inst->Instruction.Opcode == TGSI_OPCODE_TXP) {
734 LLVMValueRef src_w;
735 unsigned chan;
736 LLVMValueRef coords[4];
737
738 emit_data->dst_type = LLVMVectorType(bld_base->base.elem_type, 4);
739 src_w = lp_build_emit_fetch(bld_base, emit_data->inst, 0, TGSI_CHAN_W);
740
741 for (chan = 0; chan < 3; chan++ ) {
742 LLVMValueRef arg = lp_build_emit_fetch(bld_base,
743 emit_data->inst, 0, chan);
744 coords[chan] = lp_build_emit_llvm_binary(bld_base,
745 TGSI_OPCODE_DIV,
746 arg, src_w);
747 }
748 coords[3] = bld_base->base.one;
749 emit_data->args[1] = lp_build_gather_values(bld_base->base.gallivm,
750 coords, 4);
751 } else
752 emit_data->args[1] = lp_build_emit_fetch(bld_base, emit_data->inst,
753 0, LP_CHAN_ALL);
Tom Stellarda75c6162012-01-06 17:38:37 -0500754
755 /* Resource */
Christian König22ae0622012-09-26 20:42:23 +0200756 ptr = use_sgpr(bld_base->base.gallivm, SGPR_CONST_PTR_V8I32, SI_SGPR_RESOURCE);
Tom Stellard467f5162012-05-16 15:15:35 -0400757 offset = lp_build_const_int32(bld_base->base.gallivm,
Christian König92b96a82012-08-01 15:20:07 +0200758 emit_data->inst->Src[1].Register.Index);
Tom Stellard467f5162012-05-16 15:15:35 -0400759 emit_data->args[2] = build_indexed_load(bld_base->base.gallivm,
760 ptr, offset);
Tom Stellarda75c6162012-01-06 17:38:37 -0500761
762 /* Sampler */
Christian König22ae0622012-09-26 20:42:23 +0200763 ptr = use_sgpr(bld_base->base.gallivm, SGPR_CONST_PTR_V4I32, SI_SGPR_SAMPLER);
Tom Stellard467f5162012-05-16 15:15:35 -0400764 offset = lp_build_const_int32(bld_base->base.gallivm,
Christian König92b96a82012-08-01 15:20:07 +0200765 emit_data->inst->Src[1].Register.Index);
Tom Stellard467f5162012-05-16 15:15:35 -0400766 emit_data->args[3] = build_indexed_load(bld_base->base.gallivm,
767 ptr, offset);
Tom Stellarda75c6162012-01-06 17:38:37 -0500768
769 /* Dimensions */
770 /* XXX: We might want to pass this information to the shader at some. */
771/* emit_data->args[4] = lp_build_const_int32(bld_base->base.gallivm,
772 emit_data->inst->Texture.Texture);
773*/
774
Tom Stellard467f5162012-05-16 15:15:35 -0400775 emit_data->arg_count = 4;
Tom Stellarda75c6162012-01-06 17:38:37 -0500776 /* XXX: To optimize, we could use a float or v2f32, if the last bits of
777 * the writemask are clear */
778 emit_data->dst_type = LLVMVectorType(
779 LLVMFloatTypeInContext(bld_base->base.gallivm->context),
780 4);
781}
782
783static const struct lp_build_tgsi_action tex_action = {
784 .fetch_args = tex_fetch_args,
785 .emit = lp_build_tgsi_intrinsic,
786 .intr_name = "llvm.SI.sample"
787};
788
789
790int si_pipe_shader_create(
791 struct pipe_context *ctx,
Michel Dänzer44ef0332012-10-05 16:59:10 +0200792 struct si_pipe_shader *shader,
793 struct si_shader_key key)
Tom Stellarda75c6162012-01-06 17:38:37 -0500794{
795 struct r600_context *rctx = (struct r600_context*)ctx;
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200796 struct si_pipe_shader_selector *sel = shader->selector;
Tom Stellarda75c6162012-01-06 17:38:37 -0500797 struct si_shader_context si_shader_ctx;
798 struct tgsi_shader_info shader_info;
799 struct lp_build_tgsi_context * bld_base;
800 LLVMModuleRef mod;
801 unsigned char * inst_bytes;
802 unsigned inst_byte_count;
803 unsigned i;
Christian Königd51b9b72012-07-24 18:50:49 +0200804 uint32_t *ptr;
Michel Dänzer4c4ef9c2012-06-07 19:30:47 +0200805 bool dump;
806
807 dump = debug_get_bool_option("RADEON_DUMP_SHADERS", FALSE);
Tom Stellarda75c6162012-01-06 17:38:37 -0500808
Michel Dänzer82e38ac2012-09-27 16:39:26 +0200809 assert(shader->shader.noutput == 0);
810 assert(shader->shader.ninterp == 0);
811 assert(shader->shader.ninput == 0);
812
Michel Dänzercfebaf92012-08-31 19:04:08 +0200813 memset(&si_shader_ctx, 0, sizeof(si_shader_ctx));
Tom Stellarda75c6162012-01-06 17:38:37 -0500814 radeon_llvm_context_init(&si_shader_ctx.radeon_bld);
815 bld_base = &si_shader_ctx.radeon_bld.soa.bld_base;
816
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200817 tgsi_scan_shader(sel->tokens, &shader_info);
Michel Dänzere44dfd42012-11-07 17:33:08 +0100818 shader->shader.uses_kill = shader_info.uses_kill;
Tom Stellarda75c6162012-01-06 17:38:37 -0500819 bld_base->info = &shader_info;
820 bld_base->emit_fetch_funcs[TGSI_FILE_CONSTANT] = fetch_constant;
Tom Stellardcc571a32012-09-07 09:12:51 -0400821 bld_base->emit_prologue = si_llvm_emit_prologue;
Tom Stellarda75c6162012-01-06 17:38:37 -0500822 bld_base->emit_epilogue = si_llvm_emit_epilogue;
823
824 bld_base->op_actions[TGSI_OPCODE_TEX] = tex_action;
Michel Dänzerc2bae6b2012-08-02 17:19:22 +0200825 bld_base->op_actions[TGSI_OPCODE_TXP] = tex_action;
Tom Stellarda75c6162012-01-06 17:38:37 -0500826
827 si_shader_ctx.radeon_bld.load_input = declare_input;
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200828 si_shader_ctx.tokens = sel->tokens;
Tom Stellarda75c6162012-01-06 17:38:37 -0500829 tgsi_parse_init(&si_shader_ctx.parse, si_shader_ctx.tokens);
830 si_shader_ctx.shader = shader;
Michel Dänzer44ef0332012-10-05 16:59:10 +0200831 si_shader_ctx.key = key;
Tom Stellarda75c6162012-01-06 17:38:37 -0500832 si_shader_ctx.type = si_shader_ctx.parse.FullHeader.Processor.Processor;
833 si_shader_ctx.rctx = rctx;
834
Christian König835098a2012-07-17 21:28:10 +0200835 shader->shader.nr_cbufs = rctx->framebuffer.nr_cbufs;
Tom Stellarda75c6162012-01-06 17:38:37 -0500836
Tom Stellard185fc9a2012-07-12 10:40:47 -0400837 /* Dump TGSI code before doing TGSI->LLVM conversion in case the
838 * conversion fails. */
839 if (dump) {
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200840 tgsi_dump(sel->tokens, 0);
Tom Stellard185fc9a2012-07-12 10:40:47 -0400841 }
842
Michel Dänzerd1e40b32012-08-23 17:10:37 +0200843 if (!lp_build_tgsi_llvm(bld_base, sel->tokens)) {
Michel Dänzer82cd9c02012-08-08 15:35:42 +0200844 fprintf(stderr, "Failed to translate shader from TGSI to LLVM\n");
845 return -EINVAL;
846 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500847
848 radeon_llvm_finalize_module(&si_shader_ctx.radeon_bld);
849
850 mod = bld_base->base.gallivm->module;
Michel Dänzer4c4ef9c2012-06-07 19:30:47 +0200851 if (dump) {
Michel Dänzer4c4ef9c2012-06-07 19:30:47 +0200852 LLVMDumpModule(mod);
853 }
854 radeon_llvm_compile(mod, &inst_bytes, &inst_byte_count, "SI", dump);
855 if (dump) {
856 fprintf(stderr, "SI CODE:\n");
857 for (i = 0; i < inst_byte_count; i+=4 ) {
858 fprintf(stderr, "%02x%02x%02x%02x\n", inst_bytes[i + 3],
859 inst_bytes[i + 2], inst_bytes[i + 1],
860 inst_bytes[i]);
861 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500862 }
863
864 shader->num_sgprs = util_le32_to_cpu(*(uint32_t*)inst_bytes);
865 shader->num_vgprs = util_le32_to_cpu(*(uint32_t*)(inst_bytes + 4));
866 shader->spi_ps_input_ena = util_le32_to_cpu(*(uint32_t*)(inst_bytes + 8));
867
Michel Dänzer4b64fa22012-08-15 18:22:46 +0200868 radeon_llvm_dispose(&si_shader_ctx.radeon_bld);
Tom Stellarda75c6162012-01-06 17:38:37 -0500869 tgsi_parse_free(&si_shader_ctx.parse);
870
871 /* copy new shader */
Christian Königd51b9b72012-07-24 18:50:49 +0200872 si_resource_reference(&shader->bo, NULL);
873 shader->bo = si_resource_create_custom(ctx->screen, PIPE_USAGE_IMMUTABLE,
874 inst_byte_count - 12);
Tom Stellarda75c6162012-01-06 17:38:37 -0500875 if (shader->bo == NULL) {
Christian Königd51b9b72012-07-24 18:50:49 +0200876 return -ENOMEM;
Tom Stellarda75c6162012-01-06 17:38:37 -0500877 }
878
Christian Königd51b9b72012-07-24 18:50:49 +0200879 ptr = (uint32_t*)rctx->ws->buffer_map(shader->bo->cs_buf, rctx->cs, PIPE_TRANSFER_WRITE);
880 if (0 /*R600_BIG_ENDIAN*/) {
881 for (i = 0; i < (inst_byte_count-12)/4; ++i) {
882 ptr[i] = util_bswap32(*(uint32_t*)(inst_bytes+12 + i*4));
883 }
884 } else {
885 memcpy(ptr, inst_bytes + 12, inst_byte_count - 12);
886 }
887 rctx->ws->buffer_unmap(shader->bo->cs_buf);
888
Tom Stellarda75c6162012-01-06 17:38:37 -0500889 free(inst_bytes);
890
891 return 0;
892}
893
894void si_pipe_shader_destroy(struct pipe_context *ctx, struct si_pipe_shader *shader)
895{
Christian Königfe412872012-07-24 18:47:19 +0200896 si_resource_reference(&shader->bo, NULL);
Tom Stellarda75c6162012-01-06 17:38:37 -0500897}