blob: 42febe22cf85bc6d38e973e8c4b09407522b1bb5 [file] [log] [blame]
Christian Königce40e472012-08-02 12:14:59 +02001/*
2 * Copyright 2012 Advanced Micro Devices, Inc.
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 AUTHOR(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 * Authors:
24 * Tom Stellard <thomas.stellard@amd.com>
25 * Michel Dänzer <michel.daenzer@amd.com>
26 * Christian König <christian.koenig@amd.com>
27 */
28
Tom Stellarda75c6162012-01-06 17:38:37 -050029#include "gallivm/lp_bld_const.h"
Michel Dänzerc2bae6b2012-08-02 17:19:22 +020030#include "gallivm/lp_bld_gather.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050031#include "gallivm/lp_bld_intr.h"
Michel Dänzer7708a862012-11-02 15:57:30 +010032#include "gallivm/lp_bld_logic.h"
Christian König5e616cf2013-03-07 11:58:56 +010033#include "gallivm/lp_bld_arit.h"
Marek Olšák8d03d922013-09-01 23:59:06 +020034#include "gallivm/lp_bld_flow.h"
Emil Velikova1312632014-08-16 17:58:25 +010035#include "radeon/radeon_llvm.h"
Tom Stellard1f4e48d2014-09-25 18:11:24 -070036#include "radeon/radeon_elf_util.h"
Emil Velikova1312632014-08-16 17:58:25 +010037#include "radeon/radeon_llvm_emit.h"
Christian König0f6cf2b2013-03-15 15:53:25 +010038#include "util/u_memory.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050039#include "tgsi/tgsi_parse.h"
Michel Dänzerbeaa5eb2013-05-24 13:23:26 +010040#include "tgsi/tgsi_util.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050041#include "tgsi/tgsi_dump.h"
42
Andreas Hartmetz786af2f2014-01-04 18:44:33 +010043#include "si_pipe.h"
44#include "si_shader.h"
Tom Stellarda75c6162012-01-06 17:38:37 -050045#include "sid.h"
46
Tom Stellarda75c6162012-01-06 17:38:37 -050047#include <errno.h>
Tom Stellarda75c6162012-01-06 17:38:37 -050048
Michel Dänzer404b29d2013-11-21 16:45:28 +090049struct si_shader_output_values
50{
51 LLVMValueRef values[4];
52 unsigned name;
Michel Dänzer67e385b2014-01-08 17:48:21 +090053 unsigned sid;
Michel Dänzer404b29d2013-11-21 16:45:28 +090054};
55
Tom Stellarda75c6162012-01-06 17:38:37 -050056struct si_shader_context
57{
58 struct radeon_llvm_context radeon_bld;
Tom Stellarda75c6162012-01-06 17:38:37 -050059 struct tgsi_parse_context parse;
60 struct tgsi_token * tokens;
Marek Olšák8c37c162014-09-16 18:40:07 +020061 struct si_shader *shader;
Marek Olšák368b0a72014-12-28 21:51:35 +010062 struct si_screen *screen;
Tom Stellarda75c6162012-01-06 17:38:37 -050063 unsigned type; /* TGSI_PROCESSOR_* specifies the type of shader. */
Marek Olšák8d03d922013-09-01 23:59:06 +020064 int param_streamout_config;
65 int param_streamout_write_index;
66 int param_streamout_offset[4];
67 int param_vertex_id;
68 int param_instance_id;
Christian König206f0592013-03-20 14:37:21 +010069 LLVMValueRef const_md;
Marek Olšákee2a8182014-07-07 23:27:19 +020070 LLVMValueRef const_resource[SI_NUM_CONST_BUFFERS];
Michel Dänzera06ee5a2013-06-19 18:14:01 +020071 LLVMValueRef ddxy_lds;
Marek Olšákee2a8182014-07-07 23:27:19 +020072 LLVMValueRef *constants[SI_NUM_CONST_BUFFERS];
Marek Olšák55a9b772014-10-05 12:38:54 +020073 LLVMValueRef resources[SI_NUM_SAMPLER_VIEWS];
74 LLVMValueRef samplers[SI_NUM_SAMPLER_STATES];
Marek Olšák8d03d922013-09-01 23:59:06 +020075 LLVMValueRef so_buffers[4];
Marek Olšákfc3b3352014-10-05 13:33:40 +020076 LLVMValueRef esgs_ring;
77 LLVMValueRef gsvs_ring;
Michel Dänzerf07a96d2014-01-08 18:45:10 +090078 LLVMValueRef gs_next_vertex;
Tom Stellarda75c6162012-01-06 17:38:37 -050079};
80
81static struct si_shader_context * si_shader_context(
82 struct lp_build_tgsi_context * bld_base)
83{
84 return (struct si_shader_context *)bld_base;
85}
86
87
88#define PERSPECTIVE_BASE 0
89#define LINEAR_BASE 9
90
91#define SAMPLE_OFFSET 0
92#define CENTER_OFFSET 2
93#define CENTROID_OFSET 4
94
95#define USE_SGPR_MAX_SUFFIX_LEN 5
Tom Stellard467f5162012-05-16 15:15:35 -040096#define CONST_ADDR_SPACE 2
Michel Dänzera06ee5a2013-06-19 18:14:01 +020097#define LOCAL_ADDR_SPACE 3
Tom Stellard89ece082012-05-29 11:36:29 -040098#define USER_SGPR_ADDR_SPACE 8
Tom Stellarda75c6162012-01-06 17:38:37 -050099
Michel Dänzer404b29d2013-11-21 16:45:28 +0900100
101#define SENDMSG_GS 2
102#define SENDMSG_GS_DONE 3
103
104#define SENDMSG_GS_OP_NOP (0 << 4)
105#define SENDMSG_GS_OP_CUT (1 << 4)
106#define SENDMSG_GS_OP_EMIT (2 << 4)
107#define SENDMSG_GS_OP_EMIT_CUT (3 << 4)
108
Marek Olšáke29353f2014-09-17 22:17:02 +0200109/**
110 * Returns a unique index for a semantic name and index. The index must be
111 * less than 64, so that a 64-bit bitmask of used inputs or outputs can be
112 * calculated.
113 */
Marek Olšák0a2d6f02014-09-30 16:55:36 +0200114unsigned si_shader_io_get_unique_index(unsigned semantic_name, unsigned index)
Marek Olšáke29353f2014-09-17 22:17:02 +0200115{
116 switch (semantic_name) {
117 case TGSI_SEMANTIC_POSITION:
118 return 0;
119 case TGSI_SEMANTIC_PSIZE:
120 return 1;
121 case TGSI_SEMANTIC_CLIPDIST:
122 assert(index <= 1);
123 return 2 + index;
124 case TGSI_SEMANTIC_CLIPVERTEX:
125 return 4;
126 case TGSI_SEMANTIC_COLOR:
127 assert(index <= 1);
128 return 5 + index;
129 case TGSI_SEMANTIC_BCOLOR:
130 assert(index <= 1);
131 return 7 + index;
132 case TGSI_SEMANTIC_FOG:
133 return 9;
134 case TGSI_SEMANTIC_EDGEFLAG:
135 return 10;
136 case TGSI_SEMANTIC_GENERIC:
137 assert(index <= 63-11);
138 return 11 + index;
139 default:
140 assert(0);
141 return 63;
142 }
143}
144
145/**
146 * Given a semantic name and index of a parameter and a mask of used parameters
147 * (inputs or outputs), return the index of the parameter in the list of all
148 * used parameters.
149 *
150 * For example, assume this list of parameters:
151 * POSITION, PSIZE, GENERIC0, GENERIC2
152 * which has the mask:
153 * 11000000000101
154 * Then:
155 * querying POSITION returns 0,
156 * querying PSIZE returns 1,
157 * querying GENERIC0 returns 2,
158 * querying GENERIC2 returns 3.
159 *
160 * Which can be used as an offset to a parameter buffer in units of vec4s.
161 */
162static int get_param_index(unsigned semantic_name, unsigned index,
163 uint64_t mask)
164{
Marek Olšák0a2d6f02014-09-30 16:55:36 +0200165 unsigned unique_index = si_shader_io_get_unique_index(semantic_name, index);
Marek Olšáke29353f2014-09-17 22:17:02 +0200166 int i, param_index = 0;
167
168 /* If not present... */
169 if (!((1llu << unique_index) & mask))
170 return -1;
171
172 for (i = 0; mask; i++) {
173 uint64_t bit = 1llu << i;
174
175 if (bit & mask) {
176 if (i == unique_index)
177 return param_index;
178
179 mask &= ~bit;
180 param_index++;
181 }
182 }
183
184 assert(!"unreachable");
185 return -1;
186}
Michel Dänzer404b29d2013-11-21 16:45:28 +0900187
Tom Stellard467f5162012-05-16 15:15:35 -0400188/**
Marek Olšákd7876082014-09-26 23:06:32 +0200189 * Build an LLVM bytecode indexed load using LLVMBuildGEP + LLVMBuildLoad.
190 * It's equivalent to doing a load from &base_ptr[index].
Tom Stellard467f5162012-05-16 15:15:35 -0400191 *
Marek Olšákd7876082014-09-26 23:06:32 +0200192 * \param base_ptr Where the array starts.
193 * \param index The element index into the array.
Tom Stellard467f5162012-05-16 15:15:35 -0400194 */
Marek Olšákd7876082014-09-26 23:06:32 +0200195static LLVMValueRef build_indexed_load(struct si_shader_context *si_shader_ctx,
196 LLVMValueRef base_ptr, LLVMValueRef index)
Tom Stellard467f5162012-05-16 15:15:35 -0400197{
Marek Olšákd7876082014-09-26 23:06:32 +0200198 struct lp_build_tgsi_context *bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
199 struct gallivm_state *gallivm = bld_base->base.gallivm;
200 LLVMValueRef indices[2], pointer;
Tom Stellard467f5162012-05-16 15:15:35 -0400201
Marek Olšákd7876082014-09-26 23:06:32 +0200202 indices[0] = bld_base->uint_bld.zero;
203 indices[1] = index;
Christian König206f0592013-03-20 14:37:21 +0100204
Marek Olšákd7876082014-09-26 23:06:32 +0200205 pointer = LLVMBuildGEP(gallivm->builder, base_ptr, indices, 2, "");
206 return LLVMBuildLoad(gallivm->builder, pointer, "");
207}
208
209/**
210 * Do a load from &base_ptr[index], but also add a flag that it's loading
211 * a constant.
212 */
213static LLVMValueRef build_indexed_load_const(
214 struct si_shader_context * si_shader_ctx,
215 LLVMValueRef base_ptr, LLVMValueRef index)
216{
217 LLVMValueRef result = build_indexed_load(si_shader_ctx, base_ptr, index);
Christian König206f0592013-03-20 14:37:21 +0100218 LLVMSetMetadata(result, 1, si_shader_ctx->const_md);
219 return result;
Tom Stellard467f5162012-05-16 15:15:35 -0400220}
221
Marek Olšákf317ce52013-09-05 15:39:57 +0200222static LLVMValueRef get_instance_index_for_fetch(
Christian Königa0dca442013-03-22 15:59:22 +0100223 struct radeon_llvm_context * radeon_bld,
224 unsigned divisor)
225{
Marek Olšák8d03d922013-09-01 23:59:06 +0200226 struct si_shader_context *si_shader_ctx =
227 si_shader_context(&radeon_bld->soa.bld_base);
Christian Königa0dca442013-03-22 15:59:22 +0100228 struct gallivm_state * gallivm = radeon_bld->soa.bld_base.base.gallivm;
229
Marek Olšák8d03d922013-09-01 23:59:06 +0200230 LLVMValueRef result = LLVMGetParam(radeon_bld->main_fn,
231 si_shader_ctx->param_instance_id);
Christian Königa0dca442013-03-22 15:59:22 +0100232 result = LLVMBuildAdd(gallivm->builder, result, LLVMGetParam(
233 radeon_bld->main_fn, SI_PARAM_START_INSTANCE), "");
234
235 if (divisor > 1)
236 result = LLVMBuildUDiv(gallivm->builder, result,
237 lp_build_const_int32(gallivm, divisor), "");
238
239 return result;
240}
241
Tom Stellarda75c6162012-01-06 17:38:37 -0500242static void declare_input_vs(
Michel Dänzer51f89a02013-12-09 15:33:53 +0900243 struct radeon_llvm_context *radeon_bld,
Tom Stellarda75c6162012-01-06 17:38:37 -0500244 unsigned input_index,
245 const struct tgsi_full_declaration *decl)
246{
Michel Dänzer51f89a02013-12-09 15:33:53 +0900247 struct lp_build_context *base = &radeon_bld->soa.bld_base.base;
248 struct gallivm_state *gallivm = base->gallivm;
249 struct si_shader_context *si_shader_ctx =
250 si_shader_context(&radeon_bld->soa.bld_base);
Christian Königa0dca442013-03-22 15:59:22 +0100251 unsigned divisor = si_shader_ctx->shader->key.vs.instance_divisors[input_index];
252
253 unsigned chan;
254
Tom Stellarda75c6162012-01-06 17:38:37 -0500255 LLVMValueRef t_list_ptr;
256 LLVMValueRef t_offset;
Tom Stellard467f5162012-05-16 15:15:35 -0400257 LLVMValueRef t_list;
Tom Stellarda75c6162012-01-06 17:38:37 -0500258 LLVMValueRef attribute_offset;
Christian Königa0dca442013-03-22 15:59:22 +0100259 LLVMValueRef buffer_index;
Tom Stellard467f5162012-05-16 15:15:35 -0400260 LLVMValueRef args[3];
Tom Stellarda75c6162012-01-06 17:38:37 -0500261 LLVMTypeRef vec4_type;
262 LLVMValueRef input;
Tom Stellarda75c6162012-01-06 17:38:37 -0500263
Tom Stellard467f5162012-05-16 15:15:35 -0400264 /* Load the T list */
Christian König55fe5cc2013-03-04 16:30:06 +0100265 t_list_ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_VERTEX_BUFFER);
Tom Stellarda75c6162012-01-06 17:38:37 -0500266
Michel Dänzer51f89a02013-12-09 15:33:53 +0900267 t_offset = lp_build_const_int32(gallivm, input_index);
Tom Stellard467f5162012-05-16 15:15:35 -0400268
Marek Olšákd7876082014-09-26 23:06:32 +0200269 t_list = build_indexed_load_const(si_shader_ctx, t_list_ptr, t_offset);
Tom Stellard467f5162012-05-16 15:15:35 -0400270
271 /* Build the attribute offset */
Michel Dänzer51f89a02013-12-09 15:33:53 +0900272 attribute_offset = lp_build_const_int32(gallivm, 0);
Tom Stellarda75c6162012-01-06 17:38:37 -0500273
Christian Königa0dca442013-03-22 15:59:22 +0100274 if (divisor) {
275 /* Build index from instance ID, start instance and divisor */
Marek Olšák8c37c162014-09-16 18:40:07 +0200276 si_shader_ctx->shader->uses_instanceid = true;
Marek Olšákf317ce52013-09-05 15:39:57 +0200277 buffer_index = get_instance_index_for_fetch(&si_shader_ctx->radeon_bld, divisor);
Christian Königa0dca442013-03-22 15:59:22 +0100278 } else {
Marek Olšák09056b32014-04-23 16:15:36 +0200279 /* Load the buffer index for vertices. */
280 LLVMValueRef vertex_id = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
281 si_shader_ctx->param_vertex_id);
282 LLVMValueRef base_vertex = LLVMGetParam(radeon_bld->main_fn,
283 SI_PARAM_BASE_VERTEX);
284 buffer_index = LLVMBuildAdd(gallivm->builder, base_vertex, vertex_id, "");
Christian Königa0dca442013-03-22 15:59:22 +0100285 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500286
287 vec4_type = LLVMVectorType(base->elem_type, 4);
Tom Stellard467f5162012-05-16 15:15:35 -0400288 args[0] = t_list;
289 args[1] = attribute_offset;
Christian Königa0dca442013-03-22 15:59:22 +0100290 args[2] = buffer_index;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900291 input = build_intrinsic(gallivm->builder,
Christian König44e32242013-03-20 12:10:35 +0100292 "llvm.SI.vs.load.input", vec4_type, args, 3,
293 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
Tom Stellarda75c6162012-01-06 17:38:37 -0500294
295 /* Break up the vec4 into individual components */
296 for (chan = 0; chan < 4; chan++) {
Michel Dänzer51f89a02013-12-09 15:33:53 +0900297 LLVMValueRef llvm_chan = lp_build_const_int32(gallivm, chan);
Tom Stellarda75c6162012-01-06 17:38:37 -0500298 /* XXX: Use a helper function for this. There is one in
299 * tgsi_llvm.c. */
300 si_shader_ctx->radeon_bld.inputs[radeon_llvm_reg_index_soa(input_index, chan)] =
Michel Dänzer51f89a02013-12-09 15:33:53 +0900301 LLVMBuildExtractElement(gallivm->builder,
Tom Stellarda75c6162012-01-06 17:38:37 -0500302 input, llvm_chan, "");
303 }
304}
305
Michel Dänzer404b29d2013-11-21 16:45:28 +0900306static LLVMValueRef fetch_input_gs(
307 struct lp_build_tgsi_context *bld_base,
308 const struct tgsi_full_src_register *reg,
309 enum tgsi_opcode_type type,
310 unsigned swizzle)
311{
312 struct lp_build_context *base = &bld_base->base;
313 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
Marek Olšák8c37c162014-09-16 18:40:07 +0200314 struct si_shader *shader = si_shader_ctx->shader;
Michel Dänzer404b29d2013-11-21 16:45:28 +0900315 struct lp_build_context *uint = &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
316 struct gallivm_state *gallivm = base->gallivm;
317 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
318 LLVMValueRef vtx_offset;
Michel Dänzer404b29d2013-11-21 16:45:28 +0900319 LLVMValueRef args[9];
320 unsigned vtx_offset_param;
Marek Olšáke23fec12014-10-04 17:40:39 +0200321 struct tgsi_shader_info *info = &shader->selector->info;
322 unsigned semantic_name = info->input_semantic_name[reg->Register.Index];
323 unsigned semantic_index = info->input_semantic_index[reg->Register.Index];
Michel Dänzer404b29d2013-11-21 16:45:28 +0900324
Marek Olšáke23fec12014-10-04 17:40:39 +0200325 if (swizzle != ~0 && semantic_name == TGSI_SEMANTIC_PRIMID) {
Michel Dänzerd8b3d802014-01-09 12:55:26 +0900326 if (swizzle == 0)
327 return LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
328 SI_PARAM_PRIMITIVE_ID);
329 else
330 return uint->zero;
331 }
332
Michel Dänzer404b29d2013-11-21 16:45:28 +0900333 if (!reg->Register.Dimension)
334 return NULL;
335
336 if (swizzle == ~0) {
337 LLVMValueRef values[TGSI_NUM_CHANNELS];
338 unsigned chan;
339 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
340 values[chan] = fetch_input_gs(bld_base, reg, type, chan);
341 }
342 return lp_build_gather_values(bld_base->base.gallivm, values,
343 TGSI_NUM_CHANNELS);
344 }
345
346 /* Get the vertex offset parameter */
347 vtx_offset_param = reg->Dimension.Index;
348 if (vtx_offset_param < 2) {
349 vtx_offset_param += SI_PARAM_VTX0_OFFSET;
350 } else {
351 assert(vtx_offset_param < 6);
352 vtx_offset_param += SI_PARAM_VTX2_OFFSET - 2;
353 }
354 vtx_offset = lp_build_mul_imm(uint,
355 LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
356 vtx_offset_param),
357 4);
358
Marek Olšákfc3b3352014-10-05 13:33:40 +0200359 args[0] = si_shader_ctx->esgs_ring;
Michel Dänzer404b29d2013-11-21 16:45:28 +0900360 args[1] = vtx_offset;
361 args[2] = lp_build_const_int32(gallivm,
Marek Olšáke23fec12014-10-04 17:40:39 +0200362 (get_param_index(semantic_name, semantic_index,
Marek Olšák0a2d6f02014-09-30 16:55:36 +0200363 shader->selector->gs_used_inputs) * 4 +
Michel Dänzer7c7d7382014-01-09 15:33:34 +0900364 swizzle) * 256);
Michel Dänzer404b29d2013-11-21 16:45:28 +0900365 args[3] = uint->zero;
366 args[4] = uint->one; /* OFFEN */
367 args[5] = uint->zero; /* IDXEN */
368 args[6] = uint->one; /* GLC */
369 args[7] = uint->zero; /* SLC */
370 args[8] = uint->zero; /* TFE */
371
372 return LLVMBuildBitCast(gallivm->builder,
373 build_intrinsic(gallivm->builder,
374 "llvm.SI.buffer.load.dword.i32.i32",
375 i32, args, 9,
376 LLVMReadOnlyAttribute | LLVMNoUnwindAttribute),
377 tgsi2llvmtype(bld_base, type), "");
378}
379
Tom Stellarda75c6162012-01-06 17:38:37 -0500380static void declare_input_fs(
Michel Dänzer51f89a02013-12-09 15:33:53 +0900381 struct radeon_llvm_context *radeon_bld,
Tom Stellarda75c6162012-01-06 17:38:37 -0500382 unsigned input_index,
383 const struct tgsi_full_declaration *decl)
384{
Michel Dänzer51f89a02013-12-09 15:33:53 +0900385 struct lp_build_context *base = &radeon_bld->soa.bld_base.base;
386 struct si_shader_context *si_shader_ctx =
387 si_shader_context(&radeon_bld->soa.bld_base);
Marek Olšák8c37c162014-09-16 18:40:07 +0200388 struct si_shader *shader = si_shader_ctx->shader;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900389 struct lp_build_context *uint = &radeon_bld->soa.bld_base.uint_bld;
390 struct gallivm_state *gallivm = base->gallivm;
Tom Stellard0fb1e682012-09-06 16:18:11 -0400391 LLVMTypeRef input_type = LLVMFloatTypeInContext(gallivm->context);
Michel Dänzer51f89a02013-12-09 15:33:53 +0900392 LLVMValueRef main_fn = radeon_bld->main_fn;
Christian König0666ffd2013-03-05 15:07:39 +0100393
394 LLVMValueRef interp_param;
395 const char * intr_name;
Tom Stellarda75c6162012-01-06 17:38:37 -0500396
397 /* This value is:
398 * [15:0] NewPrimMask (Bit mask for each quad. It is set it the
399 * quad begins a new primitive. Bit 0 always needs
400 * to be unset)
401 * [32:16] ParamOffset
402 *
403 */
Michel Dänzer51f89a02013-12-09 15:33:53 +0900404 LLVMValueRef params = LLVMGetParam(main_fn, SI_PARAM_PRIM_MASK);
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200405 LLVMValueRef attr_number;
Tom Stellarda75c6162012-01-06 17:38:37 -0500406
Christian König0666ffd2013-03-05 15:07:39 +0100407 unsigned chan;
408
Tom Stellard0fb1e682012-09-06 16:18:11 -0400409 if (decl->Semantic.Name == TGSI_SEMANTIC_POSITION) {
410 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
Tom Stellard0fb1e682012-09-06 16:18:11 -0400411 unsigned soa_index =
412 radeon_llvm_reg_index_soa(input_index, chan);
Michel Dänzer51f89a02013-12-09 15:33:53 +0900413 radeon_bld->inputs[soa_index] =
Christian König0666ffd2013-03-05 15:07:39 +0100414 LLVMGetParam(main_fn, SI_PARAM_POS_X_FLOAT + chan);
Michel Dänzer954bc4a2013-02-13 15:57:23 +0100415
416 if (chan == 3)
417 /* RCP for fragcoord.w */
Michel Dänzer51f89a02013-12-09 15:33:53 +0900418 radeon_bld->inputs[soa_index] =
Michel Dänzer954bc4a2013-02-13 15:57:23 +0100419 LLVMBuildFDiv(gallivm->builder,
420 lp_build_const_float(gallivm, 1.0f),
Michel Dänzer51f89a02013-12-09 15:33:53 +0900421 radeon_bld->inputs[soa_index],
Michel Dänzer954bc4a2013-02-13 15:57:23 +0100422 "");
Tom Stellard0fb1e682012-09-06 16:18:11 -0400423 }
424 return;
425 }
426
Michel Dänzer97078b12012-09-25 12:41:31 +0200427 if (decl->Semantic.Name == TGSI_SEMANTIC_FACE) {
Michel Dänzer51f89a02013-12-09 15:33:53 +0900428 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 0)] =
Marek Olšáke827bb62014-10-16 16:20:26 +0200429 LLVMGetParam(main_fn, SI_PARAM_FRONT_FACE);
Michel Dänzer51f89a02013-12-09 15:33:53 +0900430 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 1)] =
431 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 2)] =
Michel Dänzer97078b12012-09-25 12:41:31 +0200432 lp_build_const_float(gallivm, 0.0f);
Michel Dänzer51f89a02013-12-09 15:33:53 +0900433 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 3)] =
Michel Dänzer97078b12012-09-25 12:41:31 +0200434 lp_build_const_float(gallivm, 1.0f);
435
436 return;
437 }
438
Marek Olšák8b057dd2014-10-04 22:15:07 +0200439 shader->ps_input_param_offset[input_index] = shader->nparam++;
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200440 attr_number = lp_build_const_int32(gallivm,
Marek Olšák8b057dd2014-10-04 22:15:07 +0200441 shader->ps_input_param_offset[input_index]);
Michel Dänzerc3db19e2012-09-27 20:01:33 +0200442
Francisco Jerez12799232012-04-30 18:27:52 +0200443 switch (decl->Interp.Interpolate) {
Tom Stellarda75c6162012-01-06 17:38:37 -0500444 case TGSI_INTERPOLATE_CONSTANT:
Christian König0666ffd2013-03-05 15:07:39 +0100445 interp_param = 0;
Tom Stellarda75c6162012-01-06 17:38:37 -0500446 break;
447 case TGSI_INTERPOLATE_LINEAR:
Marek Olšák10e386f2014-09-30 17:09:13 +0200448 if (decl->Interp.Location == TGSI_INTERPOLATE_LOC_SAMPLE)
Marek Olšák99df1202014-05-06 19:10:52 +0200449 interp_param = LLVMGetParam(main_fn, SI_PARAM_LINEAR_SAMPLE);
Ilia Mirkin4c97ed42014-07-01 20:54:01 -0400450 else if (decl->Interp.Location == TGSI_INTERPOLATE_LOC_CENTROID)
Christian König0666ffd2013-03-05 15:07:39 +0100451 interp_param = LLVMGetParam(main_fn, SI_PARAM_LINEAR_CENTROID);
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200452 else
Christian König0666ffd2013-03-05 15:07:39 +0100453 interp_param = LLVMGetParam(main_fn, SI_PARAM_LINEAR_CENTER);
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200454 break;
Marek Olšák99df1202014-05-06 19:10:52 +0200455 case TGSI_INTERPOLATE_COLOR:
456 if (si_shader_ctx->shader->key.ps.flatshade) {
457 interp_param = 0;
458 break;
459 }
460 /* fall through to perspective */
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200461 case TGSI_INTERPOLATE_PERSPECTIVE:
Marek Olšák10e386f2014-09-30 17:09:13 +0200462 if (decl->Interp.Location == TGSI_INTERPOLATE_LOC_SAMPLE)
Marek Olšák99df1202014-05-06 19:10:52 +0200463 interp_param = LLVMGetParam(main_fn, SI_PARAM_PERSP_SAMPLE);
Ilia Mirkin4c97ed42014-07-01 20:54:01 -0400464 else if (decl->Interp.Location == TGSI_INTERPOLATE_LOC_CENTROID)
Christian König0666ffd2013-03-05 15:07:39 +0100465 interp_param = LLVMGetParam(main_fn, SI_PARAM_PERSP_CENTROID);
Michel Dänzer1deb2be2012-05-14 16:26:19 +0200466 else
Christian König0666ffd2013-03-05 15:07:39 +0100467 interp_param = LLVMGetParam(main_fn, SI_PARAM_PERSP_CENTER);
Tom Stellarda75c6162012-01-06 17:38:37 -0500468 break;
469 default:
470 fprintf(stderr, "Warning: Unhandled interpolation mode.\n");
471 return;
472 }
473
Christian König0666ffd2013-03-05 15:07:39 +0100474 intr_name = interp_param ? "llvm.SI.fs.interp" : "llvm.SI.fs.constant";
475
Tom Stellarda75c6162012-01-06 17:38:37 -0500476 /* XXX: Could there be more than TGSI_NUM_CHANNELS (4) ? */
Michel Dänzer691f08d2012-09-06 18:03:38 +0200477 if (decl->Semantic.Name == TGSI_SEMANTIC_COLOR &&
Christian Königa0dca442013-03-22 15:59:22 +0100478 si_shader_ctx->shader->key.ps.color_two_side) {
Christian König0666ffd2013-03-05 15:07:39 +0100479 LLVMValueRef args[4];
Michel Dänzer691f08d2012-09-06 18:03:38 +0200480 LLVMValueRef face, is_face_positive;
481 LLVMValueRef back_attr_number =
482 lp_build_const_int32(gallivm,
Marek Olšák8b057dd2014-10-04 22:15:07 +0200483 shader->ps_input_param_offset[input_index] + 1);
Michel Dänzer691f08d2012-09-06 18:03:38 +0200484
Christian König0666ffd2013-03-05 15:07:39 +0100485 face = LLVMGetParam(main_fn, SI_PARAM_FRONT_FACE);
486
Michel Dänzer691f08d2012-09-06 18:03:38 +0200487 is_face_positive = LLVMBuildFCmp(gallivm->builder,
Marek Olšákd1d2af22015-01-04 20:45:35 +0100488 LLVMRealOGT, face,
Michel Dänzer691f08d2012-09-06 18:03:38 +0200489 lp_build_const_float(gallivm, 0.0f),
490 "");
491
Tom Stellarda75c6162012-01-06 17:38:37 -0500492 args[2] = params;
Christian König0666ffd2013-03-05 15:07:39 +0100493 args[3] = interp_param;
Michel Dänzer691f08d2012-09-06 18:03:38 +0200494 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
495 LLVMValueRef llvm_chan = lp_build_const_int32(gallivm, chan);
496 unsigned soa_index = radeon_llvm_reg_index_soa(input_index, chan);
497 LLVMValueRef front, back;
498
499 args[0] = llvm_chan;
500 args[1] = attr_number;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900501 front = build_intrinsic(gallivm->builder, intr_name,
Christian König0666ffd2013-03-05 15:07:39 +0100502 input_type, args, args[3] ? 4 : 3,
Christian König44e32242013-03-20 12:10:35 +0100503 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
Michel Dänzer691f08d2012-09-06 18:03:38 +0200504
505 args[1] = back_attr_number;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900506 back = build_intrinsic(gallivm->builder, intr_name,
Christian König0666ffd2013-03-05 15:07:39 +0100507 input_type, args, args[3] ? 4 : 3,
Christian König44e32242013-03-20 12:10:35 +0100508 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
Michel Dänzer691f08d2012-09-06 18:03:38 +0200509
Michel Dänzer51f89a02013-12-09 15:33:53 +0900510 radeon_bld->inputs[soa_index] =
Michel Dänzer691f08d2012-09-06 18:03:38 +0200511 LLVMBuildSelect(gallivm->builder,
512 is_face_positive,
513 front,
514 back,
515 "");
516 }
517
Michel Dänzer7c7d7382014-01-09 15:33:34 +0900518 shader->nparam++;
Michel Dänzer237cb072013-08-21 18:00:35 +0200519 } else if (decl->Semantic.Name == TGSI_SEMANTIC_FOG) {
520 LLVMValueRef args[4];
521
522 args[0] = uint->zero;
523 args[1] = attr_number;
524 args[2] = params;
525 args[3] = interp_param;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900526 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 0)] =
527 build_intrinsic(gallivm->builder, intr_name,
528 input_type, args, args[3] ? 4 : 3,
529 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
530 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 1)] =
531 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 2)] =
Michel Dänzer237cb072013-08-21 18:00:35 +0200532 lp_build_const_float(gallivm, 0.0f);
Michel Dänzer51f89a02013-12-09 15:33:53 +0900533 radeon_bld->inputs[radeon_llvm_reg_index_soa(input_index, 3)] =
Michel Dänzer237cb072013-08-21 18:00:35 +0200534 lp_build_const_float(gallivm, 1.0f);
Michel Dänzer691f08d2012-09-06 18:03:38 +0200535 } else {
536 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
Christian König0666ffd2013-03-05 15:07:39 +0100537 LLVMValueRef args[4];
Michel Dänzer691f08d2012-09-06 18:03:38 +0200538 LLVMValueRef llvm_chan = lp_build_const_int32(gallivm, chan);
539 unsigned soa_index = radeon_llvm_reg_index_soa(input_index, chan);
540 args[0] = llvm_chan;
541 args[1] = attr_number;
542 args[2] = params;
Christian König0666ffd2013-03-05 15:07:39 +0100543 args[3] = interp_param;
Michel Dänzer51f89a02013-12-09 15:33:53 +0900544 radeon_bld->inputs[soa_index] =
545 build_intrinsic(gallivm->builder, intr_name,
Christian König0666ffd2013-03-05 15:07:39 +0100546 input_type, args, args[3] ? 4 : 3,
Christian König44e32242013-03-20 12:10:35 +0100547 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
Michel Dänzer691f08d2012-09-06 18:03:38 +0200548 }
Tom Stellarda75c6162012-01-06 17:38:37 -0500549 }
550}
551
Marek Olšák5b06fc32014-05-06 18:12:40 +0200552static LLVMValueRef get_sample_id(struct radeon_llvm_context *radeon_bld)
553{
554 struct gallivm_state *gallivm = &radeon_bld->gallivm;
555 LLVMValueRef value = LLVMGetParam(radeon_bld->main_fn,
556 SI_PARAM_ANCILLARY);
557 value = LLVMBuildLShr(gallivm->builder, value,
558 lp_build_const_int32(gallivm, 8), "");
559 value = LLVMBuildAnd(gallivm->builder, value,
560 lp_build_const_int32(gallivm, 0xf), "");
561 return value;
562}
563
Marek Olšákd7876082014-09-26 23:06:32 +0200564/**
565 * Load a dword from a constant buffer.
566 */
567static LLVMValueRef buffer_load_const(LLVMBuilderRef builder, LLVMValueRef resource,
568 LLVMValueRef offset, LLVMTypeRef return_type)
Marek Olšák250aa932014-05-06 14:10:47 +0200569{
570 LLVMValueRef args[2] = {resource, offset};
571
572 return build_intrinsic(builder, "llvm.SI.load.const", return_type, args, 2,
573 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
574}
575
Christian Könige4ed5872013-03-21 18:02:52 +0100576static void declare_system_value(
577 struct radeon_llvm_context * radeon_bld,
578 unsigned index,
579 const struct tgsi_full_declaration *decl)
580{
Marek Olšák8d03d922013-09-01 23:59:06 +0200581 struct si_shader_context *si_shader_ctx =
582 si_shader_context(&radeon_bld->soa.bld_base);
Marek Olšák99d9d7c2014-05-06 18:20:58 +0200583 struct lp_build_context *uint_bld = &radeon_bld->soa.bld_base.uint_bld;
584 struct gallivm_state *gallivm = &radeon_bld->gallivm;
Christian Könige4ed5872013-03-21 18:02:52 +0100585 LLVMValueRef value = 0;
586
587 switch (decl->Semantic.Name) {
588 case TGSI_SEMANTIC_INSTANCEID:
Marek Olšákf317ce52013-09-05 15:39:57 +0200589 value = LLVMGetParam(radeon_bld->main_fn,
590 si_shader_ctx->param_instance_id);
Christian Könige4ed5872013-03-21 18:02:52 +0100591 break;
592
593 case TGSI_SEMANTIC_VERTEXID:
Marek Olšákd7c6f392015-01-04 14:41:49 +0100594 value = LLVMBuildAdd(gallivm->builder,
595 LLVMGetParam(radeon_bld->main_fn,
596 si_shader_ctx->param_vertex_id),
597 LLVMGetParam(radeon_bld->main_fn,
598 SI_PARAM_BASE_VERTEX), "");
Christian Könige4ed5872013-03-21 18:02:52 +0100599 break;
600
Marek Olšáke3d4bdd2015-01-04 14:51:01 +0100601 case TGSI_SEMANTIC_VERTEXID_NOBASE:
602 value = LLVMGetParam(radeon_bld->main_fn,
603 si_shader_ctx->param_vertex_id);
604 break;
605
606 case TGSI_SEMANTIC_BASEVERTEX:
607 value = LLVMGetParam(radeon_bld->main_fn,
608 SI_PARAM_BASE_VERTEX);
609 break;
610
Marek Olšák5b06fc32014-05-06 18:12:40 +0200611 case TGSI_SEMANTIC_SAMPLEID:
612 value = get_sample_id(radeon_bld);
613 break;
614
Marek Olšák99d9d7c2014-05-06 18:20:58 +0200615 case TGSI_SEMANTIC_SAMPLEPOS:
616 {
617 LLVMBuilderRef builder = gallivm->builder;
618 LLVMValueRef desc = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_CONST);
Marek Olšákee2a8182014-07-07 23:27:19 +0200619 LLVMValueRef buf_index = lp_build_const_int32(gallivm, SI_DRIVER_STATE_CONST_BUF);
Marek Olšákd7876082014-09-26 23:06:32 +0200620 LLVMValueRef resource = build_indexed_load_const(si_shader_ctx, desc, buf_index);
Marek Olšák99d9d7c2014-05-06 18:20:58 +0200621
622 /* offset = sample_id * 8 (8 = 2 floats containing samplepos.xy) */
623 LLVMValueRef offset0 = lp_build_mul_imm(uint_bld, get_sample_id(radeon_bld), 8);
624 LLVMValueRef offset1 = LLVMBuildAdd(builder, offset0, lp_build_const_int32(gallivm, 4), "");
625
626 LLVMValueRef pos[4] = {
Marek Olšákd7876082014-09-26 23:06:32 +0200627 buffer_load_const(builder, resource, offset0, radeon_bld->soa.bld_base.base.elem_type),
628 buffer_load_const(builder, resource, offset1, radeon_bld->soa.bld_base.base.elem_type),
Marek Olšák99d9d7c2014-05-06 18:20:58 +0200629 lp_build_const_float(gallivm, 0),
630 lp_build_const_float(gallivm, 0)
631 };
632 value = lp_build_gather_values(gallivm, pos, 4);
633 break;
634 }
635
Christian Könige4ed5872013-03-21 18:02:52 +0100636 default:
637 assert(!"unknown system value");
638 return;
639 }
640
641 radeon_bld->system_values[index] = value;
642}
643
Tom Stellarda75c6162012-01-06 17:38:37 -0500644static LLVMValueRef fetch_constant(
645 struct lp_build_tgsi_context * bld_base,
646 const struct tgsi_full_src_register *reg,
647 enum tgsi_opcode_type type,
648 unsigned swizzle)
649{
Christian König55fe5cc2013-03-04 16:30:06 +0100650 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
Tom Stellarda75c6162012-01-06 17:38:37 -0500651 struct lp_build_context * base = &bld_base->base;
Christian König0f6cf2b2013-03-15 15:53:25 +0100652 const struct tgsi_ind_register *ireg = &reg->Indirect;
Marek Olšák2fd42002013-10-25 11:45:47 +0200653 unsigned buf, idx;
Tom Stellarda75c6162012-01-06 17:38:37 -0500654
Christian König0f6cf2b2013-03-15 15:53:25 +0100655 LLVMValueRef addr;
Christian Königf5298b02013-02-28 14:50:07 +0100656 LLVMValueRef result;
Tom Stellarda75c6162012-01-06 17:38:37 -0500657
Christian König8514f5a2013-02-04 17:46:42 +0100658 if (swizzle == LP_CHAN_ALL) {
659 unsigned chan;
660 LLVMValueRef values[4];
661 for (chan = 0; chan < TGSI_NUM_CHANNELS; ++chan)
662 values[chan] = fetch_constant(bld_base, reg, type, chan);
663
664 return lp_build_gather_values(bld_base->base.gallivm, values, 4);
665 }
666
Marek Olšák2fd42002013-10-25 11:45:47 +0200667 buf = reg->Register.Dimension ? reg->Dimension.Index : 0;
Christian König0f6cf2b2013-03-15 15:53:25 +0100668 idx = reg->Register.Index * 4 + swizzle;
Christian Königf5298b02013-02-28 14:50:07 +0100669
Marek Olšák2fd42002013-10-25 11:45:47 +0200670 if (!reg->Register.Indirect)
671 return bitcast(bld_base, type, si_shader_ctx->constants[buf][idx]);
672
Christian König0f6cf2b2013-03-15 15:53:25 +0100673 addr = si_shader_ctx->radeon_bld.soa.addr[ireg->Index][ireg->Swizzle];
674 addr = LLVMBuildLoad(base->gallivm->builder, addr, "load addr reg");
675 addr = lp_build_mul_imm(&bld_base->uint_bld, addr, 16);
Marek Olšák250aa932014-05-06 14:10:47 +0200676 addr = lp_build_add(&bld_base->uint_bld, addr,
677 lp_build_const_int32(base->gallivm, idx * 4));
Christian Könige7723b52012-08-24 12:55:34 +0200678
Marek Olšákd7876082014-09-26 23:06:32 +0200679 result = buffer_load_const(base->gallivm->builder, si_shader_ctx->const_resource[buf],
Marek Olšák250aa932014-05-06 14:10:47 +0200680 addr, base->elem_type);
Tom Stellarda75c6162012-01-06 17:38:37 -0500681
Christian Königf5298b02013-02-28 14:50:07 +0100682 return bitcast(bld_base, type, result);
Tom Stellarda75c6162012-01-06 17:38:37 -0500683}
684
Michel Dänzer26c71392012-08-24 12:03:11 +0200685/* Initialize arguments for the shader export intrinsic */
686static void si_llvm_init_export_args(struct lp_build_tgsi_context *bld_base,
Michel Dänzer404b29d2013-11-21 16:45:28 +0900687 LLVMValueRef *values,
Michel Dänzer26c71392012-08-24 12:03:11 +0200688 unsigned target,
689 LLVMValueRef *args)
690{
691 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
692 struct lp_build_context *uint =
693 &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
694 struct lp_build_context *base = &bld_base->base;
695 unsigned compressed = 0;
696 unsigned chan;
697
Michel Dänzerf402acd2012-08-22 18:15:36 +0200698 if (si_shader_ctx->type == TGSI_PROCESSOR_FRAGMENT) {
699 int cbuf = target - V_008DFC_SQ_EXP_MRT;
700
701 if (cbuf >= 0 && cbuf < 8) {
Christian Königa0dca442013-03-22 15:59:22 +0100702 compressed = (si_shader_ctx->shader->key.ps.export_16bpc >> cbuf) & 0x1;
Michel Dänzer1ace2002012-12-21 15:39:26 +0100703
704 if (compressed)
705 si_shader_ctx->shader->spi_shader_col_format |=
706 V_028714_SPI_SHADER_FP16_ABGR << (4 * cbuf);
707 else
708 si_shader_ctx->shader->spi_shader_col_format |=
709 V_028714_SPI_SHADER_32_ABGR << (4 * cbuf);
Michel Dänzere369f402013-04-30 16:34:10 +0200710
711 si_shader_ctx->shader->cb_shader_mask |= 0xf << (4 * cbuf);
Michel Dänzerf402acd2012-08-22 18:15:36 +0200712 }
713 }
714
715 if (compressed) {
716 /* Pixel shader needs to pack output values before export */
717 for (chan = 0; chan < 2; chan++ ) {
Michel Dänzer404b29d2013-11-21 16:45:28 +0900718 args[0] = values[2 * chan];
719 args[1] = values[2 * chan + 1];
Michel Dänzerf402acd2012-08-22 18:15:36 +0200720 args[chan + 5] =
721 build_intrinsic(base->gallivm->builder,
722 "llvm.SI.packf16",
723 LLVMInt32TypeInContext(base->gallivm->context),
724 args, 2,
Christian Könige4188ee2013-02-27 22:39:26 +0100725 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
Michel Dänzer8b6aec62012-11-27 19:53:58 +0100726 args[chan + 7] = args[chan + 5] =
727 LLVMBuildBitCast(base->gallivm->builder,
728 args[chan + 5],
729 LLVMFloatTypeInContext(base->gallivm->context),
730 "");
Michel Dänzerf402acd2012-08-22 18:15:36 +0200731 }
732
733 /* Set COMPR flag */
734 args[4] = uint->one;
735 } else {
Michel Dänzer404b29d2013-11-21 16:45:28 +0900736 for (chan = 0; chan < 4; chan++ )
Michel Dänzerf402acd2012-08-22 18:15:36 +0200737 /* +5 because the first output value will be
738 * the 6th argument to the intrinsic. */
Michel Dänzer404b29d2013-11-21 16:45:28 +0900739 args[chan + 5] = values[chan];
Michel Dänzerf402acd2012-08-22 18:15:36 +0200740
741 /* Clear COMPR flag */
742 args[4] = uint->zero;
Michel Dänzer26c71392012-08-24 12:03:11 +0200743 }
744
745 /* XXX: This controls which components of the output
746 * registers actually get exported. (e.g bit 0 means export
747 * X component, bit 1 means export Y component, etc.) I'm
748 * hard coding this to 0xf for now. In the future, we might
749 * want to do something else. */
750 args[0] = lp_build_const_int32(base->gallivm, 0xf);
751
752 /* Specify whether the EXEC mask represents the valid mask */
753 args[1] = uint->zero;
754
755 /* Specify whether this is the last export */
756 args[2] = uint->zero;
757
758 /* Specify the target we are exporting */
759 args[3] = lp_build_const_int32(base->gallivm, target);
760
Michel Dänzer26c71392012-08-24 12:03:11 +0200761 /* XXX: We probably need to keep track of the output
762 * values, so we know what we are passing to the next
763 * stage. */
764}
765
Michel Dänzer404b29d2013-11-21 16:45:28 +0900766/* Load from output pointers and initialize arguments for the shader export intrinsic */
767static void si_llvm_init_export_args_load(struct lp_build_tgsi_context *bld_base,
768 LLVMValueRef *out_ptr,
769 unsigned target,
770 LLVMValueRef *args)
771{
772 struct gallivm_state *gallivm = bld_base->base.gallivm;
773 LLVMValueRef values[4];
774 int i;
775
776 for (i = 0; i < 4; i++)
777 values[i] = LLVMBuildLoad(gallivm->builder, out_ptr[i], "");
778
779 si_llvm_init_export_args(bld_base, values, target, args);
780}
781
Michel Dänzer7708a862012-11-02 15:57:30 +0100782static void si_alpha_test(struct lp_build_tgsi_context *bld_base,
Michel Dänzer404b29d2013-11-21 16:45:28 +0900783 LLVMValueRef *out_ptr)
Michel Dänzer7708a862012-11-02 15:57:30 +0100784{
785 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
786 struct gallivm_state *gallivm = bld_base->base.gallivm;
787
Christian Königa0dca442013-03-22 15:59:22 +0100788 if (si_shader_ctx->shader->key.ps.alpha_func != PIPE_FUNC_NEVER) {
Vadim Girlin453ea2d2013-10-13 19:53:54 +0400789 LLVMValueRef alpha_ref = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
790 SI_PARAM_ALPHA_REF);
791
Michel Dänzer7708a862012-11-02 15:57:30 +0100792 LLVMValueRef alpha_pass =
793 lp_build_cmp(&bld_base->base,
Christian Königa0dca442013-03-22 15:59:22 +0100794 si_shader_ctx->shader->key.ps.alpha_func,
Michel Dänzer404b29d2013-11-21 16:45:28 +0900795 LLVMBuildLoad(gallivm->builder, out_ptr[3], ""),
Vadim Girlin453ea2d2013-10-13 19:53:54 +0400796 alpha_ref);
Michel Dänzer7708a862012-11-02 15:57:30 +0100797 LLVMValueRef arg =
798 lp_build_select(&bld_base->base,
799 alpha_pass,
800 lp_build_const_float(gallivm, 1.0f),
801 lp_build_const_float(gallivm, -1.0f));
802
803 build_intrinsic(gallivm->builder,
804 "llvm.AMDGPU.kill",
805 LLVMVoidTypeInContext(gallivm->context),
806 &arg, 1, 0);
807 } else {
808 build_intrinsic(gallivm->builder,
809 "llvm.AMDGPU.kilp",
810 LLVMVoidTypeInContext(gallivm->context),
811 NULL, 0, 0);
812 }
Marek Olšákadc57972014-09-19 17:07:07 +0200813
814 si_shader_ctx->shader->db_shader_control |= S_02880C_KILL_ENABLE(1);
Michel Dänzer7708a862012-11-02 15:57:30 +0100815}
816
Michel Dänzere3befbc2013-05-15 18:09:50 +0200817static void si_llvm_emit_clipvertex(struct lp_build_tgsi_context * bld_base,
Michel Dänzer404b29d2013-11-21 16:45:28 +0900818 LLVMValueRef (*pos)[9], LLVMValueRef *out_elts)
Michel Dänzere3befbc2013-05-15 18:09:50 +0200819{
820 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
821 struct lp_build_context *base = &bld_base->base;
822 struct lp_build_context *uint = &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
Michel Dänzere3befbc2013-05-15 18:09:50 +0200823 unsigned reg_index;
824 unsigned chan;
825 unsigned const_chan;
Michel Dänzere3befbc2013-05-15 18:09:50 +0200826 LLVMValueRef base_elt;
827 LLVMValueRef ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_CONST);
Marek Olšákee2a8182014-07-07 23:27:19 +0200828 LLVMValueRef constbuf_index = lp_build_const_int32(base->gallivm, SI_DRIVER_STATE_CONST_BUF);
Marek Olšákd7876082014-09-26 23:06:32 +0200829 LLVMValueRef const_resource = build_indexed_load_const(si_shader_ctx, ptr, constbuf_index);
Michel Dänzere3befbc2013-05-15 18:09:50 +0200830
Michel Dänzere3befbc2013-05-15 18:09:50 +0200831 for (reg_index = 0; reg_index < 2; reg_index ++) {
Michel Dänzerb00269a2013-08-07 18:14:16 +0200832 LLVMValueRef *args = pos[2 + reg_index];
833
Michel Dänzere3befbc2013-05-15 18:09:50 +0200834 args[5] =
835 args[6] =
836 args[7] =
837 args[8] = lp_build_const_float(base->gallivm, 0.0f);
838
839 /* Compute dot products of position and user clip plane vectors */
840 for (chan = 0; chan < TGSI_NUM_CHANNELS; chan++) {
841 for (const_chan = 0; const_chan < TGSI_NUM_CHANNELS; const_chan++) {
Michel Dänzere3befbc2013-05-15 18:09:50 +0200842 args[1] = lp_build_const_int32(base->gallivm,
843 ((reg_index * 4 + chan) * 4 +
844 const_chan) * 4);
Marek Olšákd7876082014-09-26 23:06:32 +0200845 base_elt = buffer_load_const(base->gallivm->builder, const_resource,
Marek Olšák250aa932014-05-06 14:10:47 +0200846 args[1], base->elem_type);
Michel Dänzere3befbc2013-05-15 18:09:50 +0200847 args[5 + chan] =
848 lp_build_add(base, args[5 + chan],
849 lp_build_mul(base, base_elt,
850 out_elts[const_chan]));
851 }
852 }
853
854 args[0] = lp_build_const_int32(base->gallivm, 0xf);
855 args[1] = uint->zero;
856 args[2] = uint->zero;
857 args[3] = lp_build_const_int32(base->gallivm,
858 V_008DFC_SQ_EXP_POS + 2 + reg_index);
859 args[4] = uint->zero;
Michel Dänzere3befbc2013-05-15 18:09:50 +0200860 }
861}
862
Marek Olšák8d03d922013-09-01 23:59:06 +0200863static void si_dump_streamout(struct pipe_stream_output_info *so)
864{
865 unsigned i;
866
867 if (so->num_outputs)
868 fprintf(stderr, "STREAMOUT\n");
869
870 for (i = 0; i < so->num_outputs; i++) {
871 unsigned mask = ((1 << so->output[i].num_components) - 1) <<
872 so->output[i].start_component;
873 fprintf(stderr, " %i: BUF%i[%i..%i] <- OUT[%i].%s%s%s%s\n",
874 i, so->output[i].output_buffer,
875 so->output[i].dst_offset, so->output[i].dst_offset + so->output[i].num_components - 1,
876 so->output[i].register_index,
877 mask & 1 ? "x" : "",
878 mask & 2 ? "y" : "",
879 mask & 4 ? "z" : "",
880 mask & 8 ? "w" : "");
881 }
882}
883
884/* TBUFFER_STORE_FORMAT_{X,XY,XYZ,XYZW} <- the suffix is selected by num_channels=1..4.
885 * The type of vdata must be one of i32 (num_channels=1), v2i32 (num_channels=2),
886 * or v4i32 (num_channels=3,4). */
887static void build_tbuffer_store(struct si_shader_context *shader,
888 LLVMValueRef rsrc,
889 LLVMValueRef vdata,
890 unsigned num_channels,
891 LLVMValueRef vaddr,
892 LLVMValueRef soffset,
893 unsigned inst_offset,
894 unsigned dfmt,
895 unsigned nfmt,
896 unsigned offen,
897 unsigned idxen,
898 unsigned glc,
899 unsigned slc,
900 unsigned tfe)
901{
902 struct gallivm_state *gallivm = &shader->radeon_bld.gallivm;
903 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
904 LLVMValueRef args[] = {
905 rsrc,
906 vdata,
907 LLVMConstInt(i32, num_channels, 0),
908 vaddr,
909 soffset,
910 LLVMConstInt(i32, inst_offset, 0),
911 LLVMConstInt(i32, dfmt, 0),
912 LLVMConstInt(i32, nfmt, 0),
913 LLVMConstInt(i32, offen, 0),
914 LLVMConstInt(i32, idxen, 0),
915 LLVMConstInt(i32, glc, 0),
916 LLVMConstInt(i32, slc, 0),
917 LLVMConstInt(i32, tfe, 0)
918 };
919
Michel Dänzerdb9d6af2014-01-24 16:46:27 +0900920 /* The instruction offset field has 12 bits */
921 assert(offen || inst_offset < (1 << 12));
922
Marek Olšák8d03d922013-09-01 23:59:06 +0200923 /* The intrinsic is overloaded, we need to add a type suffix for overloading to work. */
924 unsigned func = CLAMP(num_channels, 1, 3) - 1;
925 const char *types[] = {"i32", "v2i32", "v4i32"};
926 char name[256];
927 snprintf(name, sizeof(name), "llvm.SI.tbuffer.store.%s", types[func]);
928
929 lp_build_intrinsic(gallivm->builder, name,
930 LLVMVoidTypeInContext(gallivm->context),
931 args, Elements(args));
932}
933
934static void build_streamout_store(struct si_shader_context *shader,
935 LLVMValueRef rsrc,
936 LLVMValueRef vdata,
937 unsigned num_channels,
938 LLVMValueRef vaddr,
939 LLVMValueRef soffset,
940 unsigned inst_offset)
941{
942 static unsigned dfmt[] = {
943 V_008F0C_BUF_DATA_FORMAT_32,
944 V_008F0C_BUF_DATA_FORMAT_32_32,
945 V_008F0C_BUF_DATA_FORMAT_32_32_32,
946 V_008F0C_BUF_DATA_FORMAT_32_32_32_32
947 };
948 assert(num_channels >= 1 && num_channels <= 4);
949
950 build_tbuffer_store(shader, rsrc, vdata, num_channels, vaddr, soffset,
951 inst_offset, dfmt[num_channels-1],
952 V_008F0C_BUF_NUM_FORMAT_UINT, 1, 0, 1, 1, 0);
953}
954
955/* On SI, the vertex shader is responsible for writing streamout data
956 * to buffers. */
Michel Dänzer67e385b2014-01-08 17:48:21 +0900957static void si_llvm_emit_streamout(struct si_shader_context *shader,
958 struct si_shader_output_values *outputs,
959 unsigned noutput)
Marek Olšák8d03d922013-09-01 23:59:06 +0200960{
961 struct pipe_stream_output_info *so = &shader->shader->selector->so;
962 struct gallivm_state *gallivm = &shader->radeon_bld.gallivm;
963 LLVMBuilderRef builder = gallivm->builder;
964 int i, j;
965 struct lp_build_if_state if_ctx;
966
967 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
968
969 LLVMValueRef so_param =
970 LLVMGetParam(shader->radeon_bld.main_fn,
971 shader->param_streamout_config);
972
973 /* Get bits [22:16], i.e. (so_param >> 16) & 127; */
974 LLVMValueRef so_vtx_count =
975 LLVMBuildAnd(builder,
976 LLVMBuildLShr(builder, so_param,
977 LLVMConstInt(i32, 16, 0), ""),
978 LLVMConstInt(i32, 127, 0), "");
979
980 LLVMValueRef tid = build_intrinsic(builder, "llvm.SI.tid", i32,
981 NULL, 0, LLVMReadNoneAttribute);
982
983 /* can_emit = tid < so_vtx_count; */
984 LLVMValueRef can_emit =
985 LLVMBuildICmp(builder, LLVMIntULT, tid, so_vtx_count, "");
986
987 /* Emit the streamout code conditionally. This actually avoids
988 * out-of-bounds buffer access. The hw tells us via the SGPR
989 * (so_vtx_count) which threads are allowed to emit streamout data. */
990 lp_build_if(&if_ctx, gallivm, can_emit);
991 {
992 /* The buffer offset is computed as follows:
993 * ByteOffset = streamout_offset[buffer_id]*4 +
994 * (streamout_write_index + thread_id)*stride[buffer_id] +
995 * attrib_offset
996 */
997
998 LLVMValueRef so_write_index =
999 LLVMGetParam(shader->radeon_bld.main_fn,
1000 shader->param_streamout_write_index);
1001
1002 /* Compute (streamout_write_index + thread_id). */
1003 so_write_index = LLVMBuildAdd(builder, so_write_index, tid, "");
1004
1005 /* Compute the write offset for each enabled buffer. */
1006 LLVMValueRef so_write_offset[4] = {};
1007 for (i = 0; i < 4; i++) {
1008 if (!so->stride[i])
1009 continue;
1010
1011 LLVMValueRef so_offset = LLVMGetParam(shader->radeon_bld.main_fn,
1012 shader->param_streamout_offset[i]);
1013 so_offset = LLVMBuildMul(builder, so_offset, LLVMConstInt(i32, 4, 0), "");
1014
1015 so_write_offset[i] = LLVMBuildMul(builder, so_write_index,
1016 LLVMConstInt(i32, so->stride[i]*4, 0), "");
1017 so_write_offset[i] = LLVMBuildAdd(builder, so_write_offset[i], so_offset, "");
1018 }
1019
Marek Olšák8d03d922013-09-01 23:59:06 +02001020 /* Write streamout data. */
1021 for (i = 0; i < so->num_outputs; i++) {
1022 unsigned buf_idx = so->output[i].output_buffer;
1023 unsigned reg = so->output[i].register_index;
1024 unsigned start = so->output[i].start_component;
1025 unsigned num_comps = so->output[i].num_components;
1026 LLVMValueRef out[4];
1027
1028 assert(num_comps && num_comps <= 4);
1029 if (!num_comps || num_comps > 4)
1030 continue;
1031
Marek Olšák558f7772014-10-04 22:37:23 +02001032 if (reg >= noutput)
1033 continue;
1034
Marek Olšák8d03d922013-09-01 23:59:06 +02001035 /* Load the output as int. */
1036 for (j = 0; j < num_comps; j++) {
Marek Olšák558f7772014-10-04 22:37:23 +02001037 out[j] = LLVMBuildBitCast(builder,
1038 outputs[reg].values[start+j],
1039 i32, "");
Marek Olšák8d03d922013-09-01 23:59:06 +02001040 }
1041
1042 /* Pack the output. */
1043 LLVMValueRef vdata = NULL;
1044
1045 switch (num_comps) {
1046 case 1: /* as i32 */
1047 vdata = out[0];
1048 break;
1049 case 2: /* as v2i32 */
1050 case 3: /* as v4i32 (aligned to 4) */
1051 case 4: /* as v4i32 */
1052 vdata = LLVMGetUndef(LLVMVectorType(i32, util_next_power_of_two(num_comps)));
1053 for (j = 0; j < num_comps; j++) {
1054 vdata = LLVMBuildInsertElement(builder, vdata, out[j],
1055 LLVMConstInt(i32, j, 0), "");
1056 }
1057 break;
1058 }
1059
1060 build_streamout_store(shader, shader->so_buffers[buf_idx],
1061 vdata, num_comps,
1062 so_write_offset[buf_idx],
1063 LLVMConstInt(i32, 0, 0),
1064 so->output[i].dst_offset*4);
1065 }
1066 }
1067 lp_build_endif(&if_ctx);
1068}
1069
Michel Dänzer7435d9f2013-12-04 13:37:07 +09001070
Michel Dänzer404b29d2013-11-21 16:45:28 +09001071/* Generate export instructions for hardware VS shader stage */
1072static void si_llvm_export_vs(struct lp_build_tgsi_context *bld_base,
1073 struct si_shader_output_values *outputs,
1074 unsigned noutput)
Tom Stellarda75c6162012-01-06 17:38:37 -05001075{
1076 struct si_shader_context * si_shader_ctx = si_shader_context(bld_base);
Marek Olšák8c37c162014-09-16 18:40:07 +02001077 struct si_shader * shader = si_shader_ctx->shader;
Tom Stellarda75c6162012-01-06 17:38:37 -05001078 struct lp_build_context * base = &bld_base->base;
1079 struct lp_build_context * uint =
1080 &si_shader_ctx->radeon_bld.soa.bld_base.uint_bld;
Michel Dänzer1a616c12012-11-13 17:35:09 +01001081 LLVMValueRef args[9];
Michel Dänzerb00269a2013-08-07 18:14:16 +02001082 LLVMValueRef pos_args[4][9] = { { 0 } };
Michel Dänzer404b29d2013-11-21 16:45:28 +09001083 LLVMValueRef psize_value = NULL, edgeflag_value = NULL, layer_value = NULL;
Marek Olšáka9592cd2014-10-04 19:09:09 +02001084 unsigned semantic_name, semantic_index;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001085 unsigned target;
Christian König35088152012-08-01 22:35:24 +02001086 unsigned param_count = 0;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001087 unsigned pos_idx;
Michel Dänzerb00269a2013-08-07 18:14:16 +02001088 int i;
Tom Stellarda75c6162012-01-06 17:38:37 -05001089
Michel Dänzer67e385b2014-01-08 17:48:21 +09001090 if (outputs && si_shader_ctx->shader->selector->so.num_outputs) {
1091 si_llvm_emit_streamout(si_shader_ctx, outputs, noutput);
Marek Olšák8d03d922013-09-01 23:59:06 +02001092 }
1093
Michel Dänzer404b29d2013-11-21 16:45:28 +09001094 for (i = 0; i < noutput; i++) {
1095 semantic_name = outputs[i].name;
Michel Dänzer67e385b2014-01-08 17:48:21 +09001096 semantic_index = outputs[i].sid;
Tom Stellarda75c6162012-01-06 17:38:37 -05001097
Michel Dänzer0afeea52013-05-02 14:53:17 +02001098handle_semantic:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001099 /* Select the correct target */
1100 switch(semantic_name) {
1101 case TGSI_SEMANTIC_PSIZE:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001102 psize_value = outputs[i].values[0];
1103 continue;
1104 case TGSI_SEMANTIC_EDGEFLAG:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001105 edgeflag_value = outputs[i].values[0];
1106 continue;
1107 case TGSI_SEMANTIC_LAYER:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001108 layer_value = outputs[i].values[0];
1109 continue;
1110 case TGSI_SEMANTIC_POSITION:
1111 target = V_008DFC_SQ_EXP_POS;
1112 break;
1113 case TGSI_SEMANTIC_COLOR:
1114 case TGSI_SEMANTIC_BCOLOR:
1115 target = V_008DFC_SQ_EXP_PARAM + param_count;
Marek Olšák8b057dd2014-10-04 22:15:07 +02001116 shader->vs_output_param_offset[i] = param_count;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001117 param_count++;
1118 break;
1119 case TGSI_SEMANTIC_CLIPDIST:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001120 target = V_008DFC_SQ_EXP_POS + 2 + semantic_index;
1121 break;
1122 case TGSI_SEMANTIC_CLIPVERTEX:
1123 si_llvm_emit_clipvertex(bld_base, pos_args, outputs[i].values);
1124 continue;
Michel Dänzerd8b3d802014-01-09 12:55:26 +09001125 case TGSI_SEMANTIC_PRIMID:
Michel Dänzer404b29d2013-11-21 16:45:28 +09001126 case TGSI_SEMANTIC_FOG:
1127 case TGSI_SEMANTIC_GENERIC:
1128 target = V_008DFC_SQ_EXP_PARAM + param_count;
Marek Olšák8b057dd2014-10-04 22:15:07 +02001129 shader->vs_output_param_offset[i] = param_count;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001130 param_count++;
1131 break;
1132 default:
1133 target = 0;
1134 fprintf(stderr,
1135 "Warning: SI unhandled vs output type:%d\n",
1136 semantic_name);
1137 }
Tom Stellarda75c6162012-01-06 17:38:37 -05001138
Michel Dänzer404b29d2013-11-21 16:45:28 +09001139 si_llvm_init_export_args(bld_base, outputs[i].values, target, args);
Tom Stellarda75c6162012-01-06 17:38:37 -05001140
Michel Dänzer404b29d2013-11-21 16:45:28 +09001141 if (target >= V_008DFC_SQ_EXP_POS &&
1142 target <= (V_008DFC_SQ_EXP_POS + 3)) {
1143 memcpy(pos_args[target - V_008DFC_SQ_EXP_POS],
1144 args, sizeof(args));
1145 } else {
1146 lp_build_intrinsic(base->gallivm->builder,
1147 "llvm.SI.export",
1148 LLVMVoidTypeInContext(base->gallivm->context),
1149 args, 9);
Michel Dänzer51f89a02013-12-09 15:33:53 +09001150 }
1151
1152 if (semantic_name == TGSI_SEMANTIC_CLIPDIST) {
1153 semantic_name = TGSI_SEMANTIC_GENERIC;
1154 goto handle_semantic;
1155 }
1156 }
1157
1158 /* We need to add the position output manually if it's missing. */
1159 if (!pos_args[0][0]) {
1160 pos_args[0][0] = lp_build_const_int32(base->gallivm, 0xf); /* writemask */
1161 pos_args[0][1] = uint->zero; /* EXEC mask */
1162 pos_args[0][2] = uint->zero; /* last export? */
1163 pos_args[0][3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_POS);
1164 pos_args[0][4] = uint->zero; /* COMPR flag */
1165 pos_args[0][5] = base->zero; /* X */
1166 pos_args[0][6] = base->zero; /* Y */
1167 pos_args[0][7] = base->zero; /* Z */
1168 pos_args[0][8] = base->one; /* W */
1169 }
1170
1171 /* Write the misc vector (point size, edgeflag, layer, viewport). */
Marek Olšák16153472014-12-07 19:30:08 +01001172 if (shader->selector->info.writes_psize ||
1173 shader->selector->info.writes_edgeflag ||
1174 shader->selector->info.writes_layer) {
Michel Dänzer51f89a02013-12-09 15:33:53 +09001175 pos_args[1][0] = lp_build_const_int32(base->gallivm, /* writemask */
Marek Olšák16153472014-12-07 19:30:08 +01001176 shader->selector->info.writes_psize |
1177 (shader->selector->info.writes_edgeflag << 1) |
1178 (shader->selector->info.writes_layer << 2));
Michel Dänzer51f89a02013-12-09 15:33:53 +09001179 pos_args[1][1] = uint->zero; /* EXEC mask */
1180 pos_args[1][2] = uint->zero; /* last export? */
1181 pos_args[1][3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_POS + 1);
1182 pos_args[1][4] = uint->zero; /* COMPR flag */
1183 pos_args[1][5] = base->zero; /* X */
1184 pos_args[1][6] = base->zero; /* Y */
1185 pos_args[1][7] = base->zero; /* Z */
1186 pos_args[1][8] = base->zero; /* W */
1187
Marek Olšák16153472014-12-07 19:30:08 +01001188 if (shader->selector->info.writes_psize)
Michel Dänzer404b29d2013-11-21 16:45:28 +09001189 pos_args[1][5] = psize_value;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001190
Marek Olšák16153472014-12-07 19:30:08 +01001191 if (shader->selector->info.writes_edgeflag) {
Michel Dänzer51f89a02013-12-09 15:33:53 +09001192 /* The output is a float, but the hw expects an integer
1193 * with the first bit containing the edge flag. */
Michel Dänzer404b29d2013-11-21 16:45:28 +09001194 edgeflag_value = LLVMBuildFPToUI(base->gallivm->builder,
1195 edgeflag_value,
1196 bld_base->uint_bld.elem_type, "");
1197 edgeflag_value = lp_build_min(&bld_base->int_bld,
1198 edgeflag_value,
1199 bld_base->int_bld.one);
Michel Dänzer51f89a02013-12-09 15:33:53 +09001200
1201 /* The LLVM intrinsic expects a float. */
Michel Dänzer404b29d2013-11-21 16:45:28 +09001202 pos_args[1][6] = LLVMBuildBitCast(base->gallivm->builder,
1203 edgeflag_value,
Michel Dänzer51f89a02013-12-09 15:33:53 +09001204 base->elem_type, "");
1205 }
1206
Marek Olšák16153472014-12-07 19:30:08 +01001207 if (shader->selector->info.writes_layer)
Michel Dänzer404b29d2013-11-21 16:45:28 +09001208 pos_args[1][7] = layer_value;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001209 }
1210
1211 for (i = 0; i < 4; i++)
1212 if (pos_args[i][0])
1213 shader->nr_pos_exports++;
1214
1215 pos_idx = 0;
1216 for (i = 0; i < 4; i++) {
1217 if (!pos_args[i][0])
1218 continue;
1219
1220 /* Specify the target we are exporting */
1221 pos_args[i][3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_POS + pos_idx++);
1222
1223 if (pos_idx == shader->nr_pos_exports)
1224 /* Specify that this is the last export */
1225 pos_args[i][2] = uint->one;
1226
1227 lp_build_intrinsic(base->gallivm->builder,
1228 "llvm.SI.export",
1229 LLVMVoidTypeInContext(base->gallivm->context),
1230 pos_args[i], 9);
1231 }
1232}
1233
Michel Dänzer404b29d2013-11-21 16:45:28 +09001234static void si_llvm_emit_es_epilogue(struct lp_build_tgsi_context * bld_base)
1235{
1236 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
1237 struct gallivm_state *gallivm = bld_base->base.gallivm;
Marek Olšák8c37c162014-09-16 18:40:07 +02001238 struct si_shader *es = si_shader_ctx->shader;
Marek Olšák216cf862014-10-04 17:04:05 +02001239 struct tgsi_shader_info *info = &es->selector->info;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001240 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
Michel Dänzerdb9d6af2014-01-24 16:46:27 +09001241 LLVMValueRef soffset = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
1242 SI_PARAM_ES2GS_OFFSET);
Michel Dänzer404b29d2013-11-21 16:45:28 +09001243 unsigned chan;
1244 int i;
1245
Marek Olšák216cf862014-10-04 17:04:05 +02001246 for (i = 0; i < info->num_outputs; i++) {
Michel Dänzer404b29d2013-11-21 16:45:28 +09001247 LLVMValueRef *out_ptr =
Marek Olšák216cf862014-10-04 17:04:05 +02001248 si_shader_ctx->radeon_bld.soa.outputs[i];
1249 int param_index = get_param_index(info->output_semantic_name[i],
1250 info->output_semantic_index[i],
Marek Olšáke29353f2014-09-17 22:17:02 +02001251 es->key.vs.gs_used_inputs);
Michel Dänzere884c562014-01-15 15:24:14 +09001252
Marek Olšáke29353f2014-09-17 22:17:02 +02001253 if (param_index < 0)
Michel Dänzere884c562014-01-15 15:24:14 +09001254 continue;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001255
1256 for (chan = 0; chan < 4; chan++) {
1257 LLVMValueRef out_val = LLVMBuildLoad(gallivm->builder, out_ptr[chan], "");
Michel Dänzer404b29d2013-11-21 16:45:28 +09001258 out_val = LLVMBuildBitCast(gallivm->builder, out_val, i32, "");
1259
Marek Olšákfc3b3352014-10-05 13:33:40 +02001260 build_tbuffer_store(si_shader_ctx,
1261 si_shader_ctx->esgs_ring,
1262 out_val, 1,
Michel Dänzerdb9d6af2014-01-24 16:46:27 +09001263 LLVMGetUndef(i32), soffset,
Marek Olšáke29353f2014-09-17 22:17:02 +02001264 (4 * param_index + chan) * 4,
Michel Dänzer404b29d2013-11-21 16:45:28 +09001265 V_008F0C_BUF_DATA_FORMAT_32,
1266 V_008F0C_BUF_NUM_FORMAT_UINT,
Michel Dänzerdb9d6af2014-01-24 16:46:27 +09001267 0, 0, 1, 1, 0);
Michel Dänzer404b29d2013-11-21 16:45:28 +09001268 }
1269 }
1270}
1271
1272static void si_llvm_emit_gs_epilogue(struct lp_build_tgsi_context *bld_base)
1273{
1274 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
1275 struct gallivm_state *gallivm = bld_base->base.gallivm;
1276 LLVMValueRef args[2];
1277
1278 args[0] = lp_build_const_int32(gallivm, SENDMSG_GS_OP_NOP | SENDMSG_GS_DONE);
1279 args[1] = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_GS_WAVE_ID);
1280 build_intrinsic(gallivm->builder, "llvm.SI.sendmsg",
1281 LLVMVoidTypeInContext(gallivm->context), args, 2,
1282 LLVMNoUnwindAttribute);
1283}
1284
1285static void si_llvm_emit_vs_epilogue(struct lp_build_tgsi_context * bld_base)
1286{
1287 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
1288 struct gallivm_state *gallivm = bld_base->base.gallivm;
Marek Olšákec0d1682014-10-04 22:33:36 +02001289 struct tgsi_shader_info *info = &si_shader_ctx->shader->selector->info;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001290 struct si_shader_output_values *outputs = NULL;
Marek Olšákec0d1682014-10-04 22:33:36 +02001291 int i,j;
Michel Dänzer404b29d2013-11-21 16:45:28 +09001292
Marek Olšákec0d1682014-10-04 22:33:36 +02001293 outputs = MALLOC(info->num_outputs * sizeof(outputs[0]));
Michel Dänzer404b29d2013-11-21 16:45:28 +09001294
Marek Olšákec0d1682014-10-04 22:33:36 +02001295 for (i = 0; i < info->num_outputs; i++) {
1296 outputs[i].name = info->output_semantic_name[i];
1297 outputs[i].sid = info->output_semantic_index[i];
Michel Dänzer404b29d2013-11-21 16:45:28 +09001298
Marek Olšákec0d1682014-10-04 22:33:36 +02001299 for (j = 0; j < 4; j++)
1300 outputs[i].values[j] =
1301 LLVMBuildLoad(gallivm->builder,
1302 si_shader_ctx->radeon_bld.soa.outputs[i][j],
1303 "");
Michel Dänzer404b29d2013-11-21 16:45:28 +09001304 }
1305
Marek Olšákec0d1682014-10-04 22:33:36 +02001306 si_llvm_export_vs(bld_base, outputs, info->num_outputs);
Michel Dänzer404b29d2013-11-21 16:45:28 +09001307 FREE(outputs);
1308}
1309
Michel Dänzer51f89a02013-12-09 15:33:53 +09001310static void si_llvm_emit_fs_epilogue(struct lp_build_tgsi_context * bld_base)
1311{
1312 struct si_shader_context * si_shader_ctx = si_shader_context(bld_base);
Marek Olšák8c37c162014-09-16 18:40:07 +02001313 struct si_shader * shader = si_shader_ctx->shader;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001314 struct lp_build_context * base = &bld_base->base;
Marek Olšák75e97e22014-10-04 23:13:50 +02001315 struct lp_build_context * uint = &bld_base->uint_bld;
1316 struct tgsi_shader_info *info = &shader->selector->info;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001317 LLVMValueRef args[9];
1318 LLVMValueRef last_args[9] = { 0 };
Marek Olšákd0e8b652014-05-06 20:04:31 +02001319 int depth_index = -1, stencil_index = -1, samplemask_index = -1;
Marek Olšák75e97e22014-10-04 23:13:50 +02001320 int i;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001321
Marek Olšák75e97e22014-10-04 23:13:50 +02001322 for (i = 0; i < info->num_outputs; i++) {
1323 unsigned semantic_name = info->output_semantic_name[i];
1324 unsigned semantic_index = info->output_semantic_index[i];
Michel Dänzer51f89a02013-12-09 15:33:53 +09001325 unsigned target;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001326
Marek Olšák75e97e22014-10-04 23:13:50 +02001327 /* Select the correct target */
1328 switch (semantic_name) {
1329 case TGSI_SEMANTIC_POSITION:
1330 depth_index = i;
Michel Dänzer51f89a02013-12-09 15:33:53 +09001331 continue;
Marek Olšák75e97e22014-10-04 23:13:50 +02001332 case TGSI_SEMANTIC_STENCIL:
1333 stencil_index = i;
1334 continue;
1335 case TGSI_SEMANTIC_SAMPLEMASK:
1336 samplemask_index = i;
1337 continue;
1338 case TGSI_SEMANTIC_COLOR:
1339 target = V_008DFC_SQ_EXP_MRT + semantic_index;
1340 if (si_shader_ctx->shader->key.ps.alpha_to_one)
1341 LLVMBuildStore(bld_base->base.gallivm->builder,
1342 bld_base->base.one,
1343 si_shader_ctx->radeon_bld.soa.outputs[i][3]);
Michel Dänzer51f89a02013-12-09 15:33:53 +09001344
Marek Olšák75e97e22014-10-04 23:13:50 +02001345 if (semantic_index == 0 &&
1346 si_shader_ctx->shader->key.ps.alpha_func != PIPE_FUNC_ALWAYS)
1347 si_alpha_test(bld_base,
1348 si_shader_ctx->radeon_bld.soa.outputs[i]);
1349 break;
1350 default:
1351 target = 0;
1352 fprintf(stderr,
1353 "Warning: SI unhandled fs output type:%d\n",
1354 semantic_name);
1355 }
Michel Dänzer404b29d2013-11-21 16:45:28 +09001356
Marek Olšák75e97e22014-10-04 23:13:50 +02001357 si_llvm_init_export_args_load(bld_base,
1358 si_shader_ctx->radeon_bld.soa.outputs[i],
1359 target, args);
Michel Dänzer51f89a02013-12-09 15:33:53 +09001360
Marek Olšák75e97e22014-10-04 23:13:50 +02001361 if (semantic_name == TGSI_SEMANTIC_COLOR) {
1362 /* If there is an export instruction waiting to be emitted, do so now. */
1363 if (last_args[0]) {
Tom Stellarda75c6162012-01-06 17:38:37 -05001364 lp_build_intrinsic(base->gallivm->builder,
1365 "llvm.SI.export",
1366 LLVMVoidTypeInContext(base->gallivm->context),
Marek Olšák75e97e22014-10-04 23:13:50 +02001367 last_args, 9);
Tom Stellarda75c6162012-01-06 17:38:37 -05001368 }
Marek Olšák75e97e22014-10-04 23:13:50 +02001369
1370 /* This instruction will be emitted at the end of the shader. */
1371 memcpy(last_args, args, sizeof(args));
1372
1373 /* Handle FS_COLOR0_WRITES_ALL_CBUFS. */
1374 if (shader->selector->info.properties[TGSI_PROPERTY_FS_COLOR0_WRITES_ALL_CBUFS] &&
1375 semantic_index == 0 &&
1376 si_shader_ctx->shader->key.ps.last_cbuf > 0) {
1377 for (int c = 1; c <= si_shader_ctx->shader->key.ps.last_cbuf; c++) {
1378 si_llvm_init_export_args_load(bld_base,
1379 si_shader_ctx->radeon_bld.soa.outputs[i],
1380 V_008DFC_SQ_EXP_MRT + c, args);
1381 lp_build_intrinsic(base->gallivm->builder,
1382 "llvm.SI.export",
1383 LLVMVoidTypeInContext(base->gallivm->context),
1384 args, 9);
1385 }
1386 }
1387 } else {
1388 lp_build_intrinsic(base->gallivm->builder,
1389 "llvm.SI.export",
1390 LLVMVoidTypeInContext(base->gallivm->context),
1391 args, 9);
Tom Stellarda75c6162012-01-06 17:38:37 -05001392 }
1393 }
1394
Marek Olšákd0e8b652014-05-06 20:04:31 +02001395 if (depth_index >= 0 || stencil_index >= 0 || samplemask_index >= 0) {
Michel Dänzer1a616c12012-11-13 17:35:09 +01001396 LLVMValueRef out_ptr;
1397 unsigned mask = 0;
1398
1399 /* Specify the target we are exporting */
1400 args[3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_MRTZ);
1401
Marek Olšák9baaa5d2014-05-06 19:55:48 +02001402 args[5] = base->zero; /* R, depth */
1403 args[6] = base->zero; /* G, stencil test value[0:7], stencil op value[8:15] */
1404 args[7] = base->zero; /* B, sample mask */
1405 args[8] = base->zero; /* A, alpha to mask */
1406
Michel Dänzer1a616c12012-11-13 17:35:09 +01001407 if (depth_index >= 0) {
1408 out_ptr = si_shader_ctx->radeon_bld.soa.outputs[depth_index][2];
1409 args[5] = LLVMBuildLoad(base->gallivm->builder, out_ptr, "");
1410 mask |= 0x1;
Marek Olšákd9e102b2014-05-06 19:59:53 +02001411 si_shader_ctx->shader->db_shader_control |= S_02880C_Z_EXPORT_ENABLE(1);
Michel Dänzer1a616c12012-11-13 17:35:09 +01001412 }
1413
1414 if (stencil_index >= 0) {
1415 out_ptr = si_shader_ctx->radeon_bld.soa.outputs[stencil_index][1];
Michel Dänzer1a616c12012-11-13 17:35:09 +01001416 args[6] = LLVMBuildLoad(base->gallivm->builder, out_ptr, "");
Marek Olšák368b0a72014-12-28 21:51:35 +01001417 mask |= 0x2;
Marek Olšákd9e102b2014-05-06 19:59:53 +02001418 si_shader_ctx->shader->db_shader_control |=
1419 S_02880C_STENCIL_TEST_VAL_EXPORT_ENABLE(1);
Michel Dänzer1a616c12012-11-13 17:35:09 +01001420 }
1421
Marek Olšákd0e8b652014-05-06 20:04:31 +02001422 if (samplemask_index >= 0) {
1423 out_ptr = si_shader_ctx->radeon_bld.soa.outputs[samplemask_index][0];
1424 args[7] = LLVMBuildLoad(base->gallivm->builder, out_ptr, "");
Marek Olšák368b0a72014-12-28 21:51:35 +01001425 mask |= 0x4;
Marek Olšákd0e8b652014-05-06 20:04:31 +02001426 si_shader_ctx->shader->db_shader_control |= S_02880C_MASK_EXPORT_ENABLE(1);
1427 }
1428
Marek Olšák368b0a72014-12-28 21:51:35 +01001429 /* SI (except OLAND) has a bug that it only looks
1430 * at the X writemask component. */
1431 if (si_shader_ctx->screen->b.chip_class == SI &&
1432 si_shader_ctx->screen->b.family != CHIP_OLAND)
1433 mask |= 0x1;
1434
Marek Olšákd0e8b652014-05-06 20:04:31 +02001435 if (samplemask_index >= 0)
1436 si_shader_ctx->shader->spi_shader_z_format = V_028710_SPI_SHADER_32_ABGR;
1437 else if (stencil_index >= 0)
Marek Olšákd9e102b2014-05-06 19:59:53 +02001438 si_shader_ctx->shader->spi_shader_z_format = V_028710_SPI_SHADER_32_GR;
1439 else
1440 si_shader_ctx->shader->spi_shader_z_format = V_028710_SPI_SHADER_32_R;
1441
Michel Dänzer1a616c12012-11-13 17:35:09 +01001442 /* Specify which components to enable */
1443 args[0] = lp_build_const_int32(base->gallivm, mask);
1444
1445 args[1] =
1446 args[2] =
1447 args[4] = uint->zero;
1448
1449 if (last_args[0])
1450 lp_build_intrinsic(base->gallivm->builder,
1451 "llvm.SI.export",
1452 LLVMVoidTypeInContext(base->gallivm->context),
1453 args, 9);
1454 else
1455 memcpy(last_args, args, sizeof(args));
1456 }
1457
Michel Dänzer51f89a02013-12-09 15:33:53 +09001458 if (!last_args[0]) {
1459 /* Specify which components to enable */
1460 last_args[0] = lp_build_const_int32(base->gallivm, 0x0);
Christian Königf18fd252012-07-25 21:58:46 +02001461
Michel Dänzer51f89a02013-12-09 15:33:53 +09001462 /* Specify the target we are exporting */
1463 last_args[3] = lp_build_const_int32(base->gallivm, V_008DFC_SQ_EXP_MRT);
Marek Olšák48784f32013-10-23 16:10:38 +02001464
Michel Dänzer51f89a02013-12-09 15:33:53 +09001465 /* Set COMPR flag to zero to export data as 32-bit */
1466 last_args[4] = uint->zero;
Marek Olšák053606d2013-11-19 22:07:30 +01001467
Michel Dänzer51f89a02013-12-09 15:33:53 +09001468 /* dummy bits */
1469 last_args[5]= uint->zero;
1470 last_args[6]= uint->zero;
1471 last_args[7]= uint->zero;
1472 last_args[8]= uint->zero;
Michel Dänzerc8402702013-02-12 18:37:22 +01001473 }
Michel Dänzer51f89a02013-12-09 15:33:53 +09001474
1475 /* Specify whether the EXEC mask represents the valid mask */
1476 last_args[1] = uint->one;
1477
1478 /* Specify that this is the last export */
1479 last_args[2] = lp_build_const_int32(base->gallivm, 1);
1480
1481 lp_build_intrinsic(base->gallivm->builder,
1482 "llvm.SI.export",
1483 LLVMVoidTypeInContext(base->gallivm->context),
1484 last_args, 9);
Tom Stellarda75c6162012-01-06 17:38:37 -05001485}
1486
Marek Olšák4855acd2013-08-06 15:08:54 +02001487static void build_tex_intrinsic(const struct lp_build_tgsi_action * action,
1488 struct lp_build_tgsi_context * bld_base,
1489 struct lp_build_emit_data * emit_data);
1490
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001491static bool tgsi_is_shadow_sampler(unsigned target)
1492{
1493 return target == TGSI_TEXTURE_SHADOW1D ||
1494 target == TGSI_TEXTURE_SHADOW1D_ARRAY ||
1495 target == TGSI_TEXTURE_SHADOW2D ||
1496 target == TGSI_TEXTURE_SHADOW2D_ARRAY ||
1497 target == TGSI_TEXTURE_SHADOWCUBE ||
1498 target == TGSI_TEXTURE_SHADOWCUBE_ARRAY ||
1499 target == TGSI_TEXTURE_SHADOWRECT;
1500}
1501
Marek Olšák877bb522014-06-25 03:12:46 +02001502static const struct lp_build_tgsi_action tex_action;
1503
Tom Stellarda75c6162012-01-06 17:38:37 -05001504static void tex_fetch_args(
1505 struct lp_build_tgsi_context * bld_base,
1506 struct lp_build_emit_data * emit_data)
1507{
Christian König55fe5cc2013-03-04 16:30:06 +01001508 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
Michel Dänzere5fb7342013-01-24 18:54:51 +01001509 struct gallivm_state *gallivm = bld_base->base.gallivm;
Michel Dänzerc2bae6b2012-08-02 17:19:22 +02001510 const struct tgsi_full_instruction * inst = emit_data->inst;
Michel Dänzer120efee2013-01-25 12:10:11 +01001511 unsigned opcode = inst->Instruction.Opcode;
1512 unsigned target = inst->Texture.Texture;
Michel Dänzer120efee2013-01-25 12:10:11 +01001513 LLVMValueRef coords[4];
1514 LLVMValueRef address[16];
Michel Dänzerbeaa5eb2013-05-24 13:23:26 +01001515 int ref_pos;
1516 unsigned num_coords = tgsi_util_get_texture_coord_dim(target, &ref_pos);
Michel Dänzer120efee2013-01-25 12:10:11 +01001517 unsigned count = 0;
Michel Dänzere5fb7342013-01-24 18:54:51 +01001518 unsigned chan;
Marek Olšákdbeedbb2013-10-31 15:08:49 +01001519 unsigned sampler_src = emit_data->inst->Instruction.NumSrcRegs - 1;
1520 unsigned sampler_index = emit_data->inst->Src[sampler_src].Register.Index;
Marek Olšák877bb522014-06-25 03:12:46 +02001521 bool has_offset = HAVE_LLVM >= 0x0305 ? inst->Texture.NumOffsets > 0 : false;
Marek Olšákdbeedbb2013-10-31 15:08:49 +01001522
1523 if (target == TGSI_TEXTURE_BUFFER) {
1524 LLVMTypeRef i128 = LLVMIntTypeInContext(gallivm->context, 128);
1525 LLVMTypeRef v2i128 = LLVMVectorType(i128, 2);
1526 LLVMTypeRef i8 = LLVMInt8TypeInContext(gallivm->context);
1527 LLVMTypeRef v16i8 = LLVMVectorType(i8, 16);
1528
Marek Olšák4f3f0432014-07-07 22:49:15 +02001529 /* Bitcast and truncate v8i32 to v16i8. */
Marek Olšákdbeedbb2013-10-31 15:08:49 +01001530 LLVMValueRef res = si_shader_ctx->resources[sampler_index];
1531 res = LLVMBuildBitCast(gallivm->builder, res, v2i128, "");
1532 res = LLVMBuildExtractElement(gallivm->builder, res, bld_base->uint_bld.zero, "");
1533 res = LLVMBuildBitCast(gallivm->builder, res, v16i8, "");
1534
1535 emit_data->dst_type = LLVMVectorType(bld_base->base.elem_type, 4);
1536 emit_data->args[0] = res;
1537 emit_data->args[1] = bld_base->uint_bld.zero;
1538 emit_data->args[2] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, 0);
1539 emit_data->arg_count = 3;
1540 return;
1541 }
Tom Stellard467f5162012-05-16 15:15:35 -04001542
Michel Dänzer120efee2013-01-25 12:10:11 +01001543 /* Fetch and project texture coordinates */
1544 coords[3] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, TGSI_CHAN_W);
Michel Dänzere5fb7342013-01-24 18:54:51 +01001545 for (chan = 0; chan < 3; chan++ ) {
1546 coords[chan] = lp_build_emit_fetch(bld_base,
1547 emit_data->inst, 0,
1548 chan);
Michel Dänzer120efee2013-01-25 12:10:11 +01001549 if (opcode == TGSI_OPCODE_TXP)
Michel Dänzerc2bae6b2012-08-02 17:19:22 +02001550 coords[chan] = lp_build_emit_llvm_binary(bld_base,
1551 TGSI_OPCODE_DIV,
Michel Dänzere5fb7342013-01-24 18:54:51 +01001552 coords[chan],
1553 coords[3]);
1554 }
1555
Michel Dänzer120efee2013-01-25 12:10:11 +01001556 if (opcode == TGSI_OPCODE_TXP)
1557 coords[3] = bld_base->base.one;
Tom Stellarda75c6162012-01-06 17:38:37 -05001558
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001559 /* Pack offsets. */
Marek Olšák877bb522014-06-25 03:12:46 +02001560 if (has_offset && opcode != TGSI_OPCODE_TXF) {
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001561 /* The offsets are six-bit signed integers packed like this:
1562 * X=[5:0], Y=[13:8], and Z=[21:16].
1563 */
1564 LLVMValueRef offset[3], pack;
1565
1566 assert(inst->Texture.NumOffsets == 1);
1567
1568 for (chan = 0; chan < 3; chan++) {
1569 offset[chan] = lp_build_emit_fetch_texoffset(bld_base,
1570 emit_data->inst, 0, chan);
1571 offset[chan] = LLVMBuildAnd(gallivm->builder, offset[chan],
1572 lp_build_const_int32(gallivm, 0x3f), "");
1573 if (chan)
1574 offset[chan] = LLVMBuildShl(gallivm->builder, offset[chan],
1575 lp_build_const_int32(gallivm, chan*8), "");
1576 }
1577
1578 pack = LLVMBuildOr(gallivm->builder, offset[0], offset[1], "");
1579 pack = LLVMBuildOr(gallivm->builder, pack, offset[2], "");
1580 address[count++] = pack;
1581 }
1582
Michel Dänzer120efee2013-01-25 12:10:11 +01001583 /* Pack LOD bias value */
1584 if (opcode == TGSI_OPCODE_TXB)
1585 address[count++] = coords[3];
Marek Olšák2484daa2014-04-22 21:23:29 +02001586 if (opcode == TGSI_OPCODE_TXB2)
1587 address[count++] = lp_build_emit_fetch(bld_base, inst, 1, 0);
Vadim Girlin8cf552b2012-12-18 17:39:19 +04001588
Michel Dänzer120efee2013-01-25 12:10:11 +01001589 /* Pack depth comparison value */
Marek Olšák57f3da92014-06-16 16:53:42 +02001590 if (tgsi_is_shadow_sampler(target) && opcode != TGSI_OPCODE_LODQ) {
Marek Olšák6818e112014-06-06 03:04:21 +02001591 if (target == TGSI_TEXTURE_SHADOWCUBE_ARRAY) {
1592 address[count++] = lp_build_emit_fetch(bld_base, inst, 1, 0);
1593 } else {
1594 assert(ref_pos >= 0);
1595 address[count++] = coords[ref_pos];
1596 }
Michel Dänzere0f2ffc2012-12-03 12:46:30 +01001597 }
1598
Marek Olšákb279f0142014-07-04 03:19:58 +02001599 if (target == TGSI_TEXTURE_CUBE ||
1600 target == TGSI_TEXTURE_CUBE_ARRAY ||
1601 target == TGSI_TEXTURE_SHADOWCUBE ||
1602 target == TGSI_TEXTURE_SHADOWCUBE_ARRAY)
1603 radeon_llvm_emit_prepare_cube_coords(bld_base, emit_data, coords);
1604
Michel Dänzera6b83c02013-02-21 16:10:55 +01001605 /* Pack user derivatives */
1606 if (opcode == TGSI_OPCODE_TXD) {
Marek Olšák04aa2bd2014-07-02 03:55:47 +02001607 int num_deriv_channels, param;
1608
1609 switch (target) {
1610 case TGSI_TEXTURE_3D:
1611 num_deriv_channels = 3;
1612 break;
1613 case TGSI_TEXTURE_2D:
1614 case TGSI_TEXTURE_SHADOW2D:
1615 case TGSI_TEXTURE_RECT:
1616 case TGSI_TEXTURE_SHADOWRECT:
1617 case TGSI_TEXTURE_2D_ARRAY:
1618 case TGSI_TEXTURE_SHADOW2D_ARRAY:
1619 case TGSI_TEXTURE_CUBE:
1620 case TGSI_TEXTURE_SHADOWCUBE:
1621 case TGSI_TEXTURE_CUBE_ARRAY:
1622 case TGSI_TEXTURE_SHADOWCUBE_ARRAY:
1623 num_deriv_channels = 2;
1624 break;
1625 case TGSI_TEXTURE_1D:
1626 case TGSI_TEXTURE_SHADOW1D:
1627 case TGSI_TEXTURE_1D_ARRAY:
1628 case TGSI_TEXTURE_SHADOW1D_ARRAY:
1629 num_deriv_channels = 1;
1630 break;
1631 default:
1632 assert(0); /* no other targets are valid here */
Michel Dänzera6b83c02013-02-21 16:10:55 +01001633 }
Marek Olšák04aa2bd2014-07-02 03:55:47 +02001634
1635 for (param = 1; param <= 2; param++)
1636 for (chan = 0; chan < num_deriv_channels; chan++)
1637 address[count++] = lp_build_emit_fetch(bld_base, inst, param, chan);
Michel Dänzera6b83c02013-02-21 16:10:55 +01001638 }
1639
Michel Dänzer120efee2013-01-25 12:10:11 +01001640 /* Pack texture coordinates */
1641 address[count++] = coords[0];
Michel Dänzerbeaa5eb2013-05-24 13:23:26 +01001642 if (num_coords > 1)
Michel Dänzer120efee2013-01-25 12:10:11 +01001643 address[count++] = coords[1];
Michel Dänzerbeaa5eb2013-05-24 13:23:26 +01001644 if (num_coords > 2)
Michel Dänzer120efee2013-01-25 12:10:11 +01001645 address[count++] = coords[2];
Michel Dänzere5fb7342013-01-24 18:54:51 +01001646
Marek Olšákd2bd6342013-09-18 15:40:21 +02001647 /* Pack LOD or sample index */
Michel Dänzer36231112013-05-02 09:44:45 +02001648 if (opcode == TGSI_OPCODE_TXL || opcode == TGSI_OPCODE_TXF)
Michel Dänzer120efee2013-01-25 12:10:11 +01001649 address[count++] = coords[3];
Marek Olšák6818e112014-06-06 03:04:21 +02001650 else if (opcode == TGSI_OPCODE_TXL2)
Marek Olšák2484daa2014-04-22 21:23:29 +02001651 address[count++] = lp_build_emit_fetch(bld_base, inst, 1, 0);
Michel Dänzer120efee2013-01-25 12:10:11 +01001652
1653 if (count > 16) {
1654 assert(!"Cannot handle more than 16 texture address parameters");
1655 count = 16;
1656 }
1657
1658 for (chan = 0; chan < count; chan++ ) {
1659 address[chan] = LLVMBuildBitCast(gallivm->builder,
1660 address[chan],
1661 LLVMInt32TypeInContext(gallivm->context),
1662 "");
1663 }
1664
Marek Olšák4855acd2013-08-06 15:08:54 +02001665 /* Adjust the sample index according to FMASK.
1666 *
1667 * For uncompressed MSAA surfaces, FMASK should return 0x76543210,
1668 * which is the identity mapping. Each nibble says which physical sample
1669 * should be fetched to get that sample.
1670 *
1671 * For example, 0x11111100 means there are only 2 samples stored and
1672 * the second sample covers 3/4 of the pixel. When reading samples 0
1673 * and 1, return physical sample 0 (determined by the first two 0s
1674 * in FMASK), otherwise return physical sample 1.
1675 *
1676 * The sample index should be adjusted as follows:
1677 * sample_index = (fmask >> (sample_index * 4)) & 0xF;
1678 */
1679 if (target == TGSI_TEXTURE_2D_MSAA ||
1680 target == TGSI_TEXTURE_2D_ARRAY_MSAA) {
1681 struct lp_build_context *uint_bld = &bld_base->uint_bld;
1682 struct lp_build_emit_data txf_emit_data = *emit_data;
Marek Olšákd2bd6342013-09-18 15:40:21 +02001683 LLVMValueRef txf_address[4];
Marek Olšák4855acd2013-08-06 15:08:54 +02001684 unsigned txf_count = count;
Marek Olšák877bb522014-06-25 03:12:46 +02001685 struct tgsi_full_instruction inst = {};
Marek Olšák4855acd2013-08-06 15:08:54 +02001686
Marek Olšákd2bd6342013-09-18 15:40:21 +02001687 memcpy(txf_address, address, sizeof(txf_address));
1688
1689 if (target == TGSI_TEXTURE_2D_MSAA) {
1690 txf_address[2] = bld_base->uint_bld.zero;
1691 }
1692 txf_address[3] = bld_base->uint_bld.zero;
Marek Olšák4855acd2013-08-06 15:08:54 +02001693
1694 /* Pad to a power-of-two size. */
1695 while (txf_count < util_next_power_of_two(txf_count))
1696 txf_address[txf_count++] = LLVMGetUndef(LLVMInt32TypeInContext(gallivm->context));
1697
1698 /* Read FMASK using TXF. */
Marek Olšák877bb522014-06-25 03:12:46 +02001699 inst.Instruction.Opcode = TGSI_OPCODE_TXF;
1700 inst.Texture.Texture = target == TGSI_TEXTURE_2D_MSAA ? TGSI_TEXTURE_2D : TGSI_TEXTURE_2D_ARRAY;
1701 txf_emit_data.inst = &inst;
Marek Olšák4855acd2013-08-06 15:08:54 +02001702 txf_emit_data.chan = 0;
1703 txf_emit_data.dst_type = LLVMVectorType(
Marek Olšák6818e112014-06-06 03:04:21 +02001704 LLVMInt32TypeInContext(gallivm->context), 4);
Marek Olšák4855acd2013-08-06 15:08:54 +02001705 txf_emit_data.args[0] = lp_build_gather_values(gallivm, txf_address, txf_count);
Marek Olšákee2a8182014-07-07 23:27:19 +02001706 txf_emit_data.args[1] = si_shader_ctx->resources[SI_FMASK_TEX_OFFSET + sampler_index];
Marek Olšák877bb522014-06-25 03:12:46 +02001707 txf_emit_data.args[2] = lp_build_const_int32(gallivm, inst.Texture.Texture);
Marek Olšák4855acd2013-08-06 15:08:54 +02001708 txf_emit_data.arg_count = 3;
1709
Marek Olšák877bb522014-06-25 03:12:46 +02001710 build_tex_intrinsic(&tex_action, bld_base, &txf_emit_data);
Marek Olšák4855acd2013-08-06 15:08:54 +02001711
1712 /* Initialize some constants. */
Marek Olšák4855acd2013-08-06 15:08:54 +02001713 LLVMValueRef four = LLVMConstInt(uint_bld->elem_type, 4, 0);
1714 LLVMValueRef F = LLVMConstInt(uint_bld->elem_type, 0xF, 0);
1715
1716 /* Apply the formula. */
1717 LLVMValueRef fmask =
1718 LLVMBuildExtractElement(gallivm->builder,
1719 txf_emit_data.output[0],
1720 uint_bld->zero, "");
1721
Marek Olšákd2bd6342013-09-18 15:40:21 +02001722 unsigned sample_chan = target == TGSI_TEXTURE_2D_MSAA ? 2 : 3;
Marek Olšák4855acd2013-08-06 15:08:54 +02001723
1724 LLVMValueRef sample_index4 =
Marek Olšákd2bd6342013-09-18 15:40:21 +02001725 LLVMBuildMul(gallivm->builder, address[sample_chan], four, "");
Marek Olšák4855acd2013-08-06 15:08:54 +02001726
1727 LLVMValueRef shifted_fmask =
1728 LLVMBuildLShr(gallivm->builder, fmask, sample_index4, "");
1729
1730 LLVMValueRef final_sample =
1731 LLVMBuildAnd(gallivm->builder, shifted_fmask, F, "");
1732
1733 /* Don't rewrite the sample index if WORD1.DATA_FORMAT of the FMASK
1734 * resource descriptor is 0 (invalid),
1735 */
1736 LLVMValueRef fmask_desc =
1737 LLVMBuildBitCast(gallivm->builder,
Marek Olšákee2a8182014-07-07 23:27:19 +02001738 si_shader_ctx->resources[SI_FMASK_TEX_OFFSET + sampler_index],
Marek Olšák4855acd2013-08-06 15:08:54 +02001739 LLVMVectorType(uint_bld->elem_type, 8), "");
1740
1741 LLVMValueRef fmask_word1 =
1742 LLVMBuildExtractElement(gallivm->builder, fmask_desc,
1743 uint_bld->one, "");
1744
1745 LLVMValueRef word1_is_nonzero =
1746 LLVMBuildICmp(gallivm->builder, LLVMIntNE,
1747 fmask_word1, uint_bld->zero, "");
1748
Marek Olšákd2bd6342013-09-18 15:40:21 +02001749 /* Replace the MSAA sample index. */
1750 address[sample_chan] =
Marek Olšák4855acd2013-08-06 15:08:54 +02001751 LLVMBuildSelect(gallivm->builder, word1_is_nonzero,
Marek Olšákd2bd6342013-09-18 15:40:21 +02001752 final_sample, address[sample_chan], "");
Marek Olšák4855acd2013-08-06 15:08:54 +02001753 }
Michel Dänzera6b83c02013-02-21 16:10:55 +01001754
Michel Dänzer36231112013-05-02 09:44:45 +02001755 /* Resource */
Marek Olšák4855acd2013-08-06 15:08:54 +02001756 emit_data->args[1] = si_shader_ctx->resources[sampler_index];
Michel Dänzer36231112013-05-02 09:44:45 +02001757
1758 if (opcode == TGSI_OPCODE_TXF) {
1759 /* add tex offsets */
1760 if (inst->Texture.NumOffsets) {
1761 struct lp_build_context *uint_bld = &bld_base->uint_bld;
1762 struct lp_build_tgsi_soa_context *bld = lp_soa_context(bld_base);
1763 const struct tgsi_texture_offset * off = inst->TexOffsets;
1764
1765 assert(inst->Texture.NumOffsets == 1);
1766
Marek Olšákdefedc02013-09-18 15:36:38 +02001767 switch (target) {
1768 case TGSI_TEXTURE_3D:
1769 address[2] = lp_build_add(uint_bld, address[2],
1770 bld->immediates[off->Index][off->SwizzleZ]);
1771 /* fall through */
1772 case TGSI_TEXTURE_2D:
1773 case TGSI_TEXTURE_SHADOW2D:
1774 case TGSI_TEXTURE_RECT:
1775 case TGSI_TEXTURE_SHADOWRECT:
1776 case TGSI_TEXTURE_2D_ARRAY:
1777 case TGSI_TEXTURE_SHADOW2D_ARRAY:
Michel Dänzer36231112013-05-02 09:44:45 +02001778 address[1] =
1779 lp_build_add(uint_bld, address[1],
Marek Olšákdefedc02013-09-18 15:36:38 +02001780 bld->immediates[off->Index][off->SwizzleY]);
1781 /* fall through */
1782 case TGSI_TEXTURE_1D:
1783 case TGSI_TEXTURE_SHADOW1D:
1784 case TGSI_TEXTURE_1D_ARRAY:
1785 case TGSI_TEXTURE_SHADOW1D_ARRAY:
1786 address[0] =
1787 lp_build_add(uint_bld, address[0],
1788 bld->immediates[off->Index][off->SwizzleX]);
1789 break;
1790 /* texture offsets do not apply to other texture targets */
1791 }
Michel Dänzer36231112013-05-02 09:44:45 +02001792 }
1793
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001794 emit_data->args[2] = lp_build_const_int32(gallivm, target);
1795 emit_data->arg_count = 3;
1796
Michel Dänzer36231112013-05-02 09:44:45 +02001797 emit_data->dst_type = LLVMVectorType(
Marek Olšák6818e112014-06-06 03:04:21 +02001798 LLVMInt32TypeInContext(gallivm->context),
Michel Dänzer36231112013-05-02 09:44:45 +02001799 4);
Marek Olšák57f3da92014-06-16 16:53:42 +02001800 } else if (opcode == TGSI_OPCODE_TG4 ||
Marek Olšák877bb522014-06-25 03:12:46 +02001801 opcode == TGSI_OPCODE_LODQ ||
1802 has_offset) {
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001803 unsigned is_array = target == TGSI_TEXTURE_1D_ARRAY ||
1804 target == TGSI_TEXTURE_SHADOW1D_ARRAY ||
1805 target == TGSI_TEXTURE_2D_ARRAY ||
1806 target == TGSI_TEXTURE_SHADOW2D_ARRAY ||
1807 target == TGSI_TEXTURE_CUBE_ARRAY ||
1808 target == TGSI_TEXTURE_SHADOWCUBE_ARRAY;
1809 unsigned is_rect = target == TGSI_TEXTURE_RECT;
Marek Olšák57f3da92014-06-16 16:53:42 +02001810 unsigned dmask = 0xf;
Michel Dänzer36231112013-05-02 09:44:45 +02001811
Marek Olšák57f3da92014-06-16 16:53:42 +02001812 if (opcode == TGSI_OPCODE_TG4) {
1813 unsigned gather_comp = 0;
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001814
Marek Olšák57f3da92014-06-16 16:53:42 +02001815 /* DMASK was repurposed for GATHER4. 4 components are always
1816 * returned and DMASK works like a swizzle - it selects
1817 * the component to fetch. The only valid DMASK values are
1818 * 1=red, 2=green, 4=blue, 8=alpha. (e.g. 1 returns
1819 * (red,red,red,red) etc.) The ISA document doesn't mention
1820 * this.
1821 */
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001822
Marek Olšák57f3da92014-06-16 16:53:42 +02001823 /* Get the component index from src1.x for Gather4. */
1824 if (!tgsi_is_shadow_sampler(target)) {
1825 LLVMValueRef (*imms)[4] = lp_soa_context(bld_base)->immediates;
1826 LLVMValueRef comp_imm;
1827 struct tgsi_src_register src1 = inst->Src[1].Register;
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001828
Marek Olšák57f3da92014-06-16 16:53:42 +02001829 assert(src1.File == TGSI_FILE_IMMEDIATE);
1830
1831 comp_imm = imms[src1.Index][src1.SwizzleX];
1832 gather_comp = LLVMConstIntGetZExtValue(comp_imm);
1833 gather_comp = CLAMP(gather_comp, 0, 3);
1834 }
1835
1836 dmask = 1 << gather_comp;
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001837 }
1838
Marek Olšák4855acd2013-08-06 15:08:54 +02001839 emit_data->args[2] = si_shader_ctx->samplers[sampler_index];
Marek Olšák57f3da92014-06-16 16:53:42 +02001840 emit_data->args[3] = lp_build_const_int32(gallivm, dmask);
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001841 emit_data->args[4] = lp_build_const_int32(gallivm, is_rect); /* unorm */
1842 emit_data->args[5] = lp_build_const_int32(gallivm, 0); /* r128 */
1843 emit_data->args[6] = lp_build_const_int32(gallivm, is_array); /* da */
1844 emit_data->args[7] = lp_build_const_int32(gallivm, 0); /* glc */
1845 emit_data->args[8] = lp_build_const_int32(gallivm, 0); /* slc */
1846 emit_data->args[9] = lp_build_const_int32(gallivm, 0); /* tfe */
1847 emit_data->args[10] = lp_build_const_int32(gallivm, 0); /* lwe */
1848
1849 emit_data->arg_count = 11;
Michel Dänzer36231112013-05-02 09:44:45 +02001850
1851 emit_data->dst_type = LLVMVectorType(
Marek Olšák6818e112014-06-06 03:04:21 +02001852 LLVMFloatTypeInContext(gallivm->context),
Michel Dänzer36231112013-05-02 09:44:45 +02001853 4);
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001854 } else {
1855 emit_data->args[2] = si_shader_ctx->samplers[sampler_index];
1856 emit_data->args[3] = lp_build_const_int32(gallivm, target);
Michel Dänzer36231112013-05-02 09:44:45 +02001857 emit_data->arg_count = 4;
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001858
1859 emit_data->dst_type = LLVMVectorType(
1860 LLVMFloatTypeInContext(gallivm->context),
1861 4);
Michel Dänzer36231112013-05-02 09:44:45 +02001862 }
1863
Marek Olšák2484daa2014-04-22 21:23:29 +02001864 /* The fetch opcode has been converted to a 2D array fetch.
1865 * This simplifies the LLVM backend. */
1866 if (target == TGSI_TEXTURE_CUBE_ARRAY)
1867 target = TGSI_TEXTURE_2D_ARRAY;
1868 else if (target == TGSI_TEXTURE_SHADOWCUBE_ARRAY)
1869 target = TGSI_TEXTURE_SHADOW2D_ARRAY;
1870
Michel Dänzer120efee2013-01-25 12:10:11 +01001871 /* Pad to power of two vector */
1872 while (count < util_next_power_of_two(count))
1873 address[count++] = LLVMGetUndef(LLVMInt32TypeInContext(gallivm->context));
1874
Christian Königccf3e8f2013-03-26 15:09:27 +01001875 emit_data->args[0] = lp_build_gather_values(gallivm, address, count);
Tom Stellarda75c6162012-01-06 17:38:37 -05001876}
1877
Michel Dänzer07eddc42013-02-06 15:43:10 +01001878static void build_tex_intrinsic(const struct lp_build_tgsi_action * action,
1879 struct lp_build_tgsi_context * bld_base,
1880 struct lp_build_emit_data * emit_data)
1881{
1882 struct lp_build_context * base = &bld_base->base;
Marek Olšák877bb522014-06-25 03:12:46 +02001883 unsigned opcode = emit_data->inst->Instruction.Opcode;
1884 unsigned target = emit_data->inst->Texture.Texture;
Kai Wasserbächbbb77fc2013-10-27 19:36:07 +01001885 char intr_name[127];
Marek Olšák877bb522014-06-25 03:12:46 +02001886 bool has_offset = HAVE_LLVM >= 0x0305 ?
1887 emit_data->inst->Texture.NumOffsets > 0 : false;
Michel Dänzer07eddc42013-02-06 15:43:10 +01001888
Marek Olšák877bb522014-06-25 03:12:46 +02001889 if (target == TGSI_TEXTURE_BUFFER) {
Marek Olšákdbeedbb2013-10-31 15:08:49 +01001890 emit_data->output[emit_data->chan] = build_intrinsic(
1891 base->gallivm->builder,
1892 "llvm.SI.vs.load.input", emit_data->dst_type,
1893 emit_data->args, emit_data->arg_count,
1894 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
1895 return;
1896 }
1897
Marek Olšák877bb522014-06-25 03:12:46 +02001898 if (opcode == TGSI_OPCODE_TG4 ||
1899 opcode == TGSI_OPCODE_LODQ ||
1900 (opcode != TGSI_OPCODE_TXF && has_offset)) {
1901 bool is_shadow = tgsi_is_shadow_sampler(target);
1902 const char *name = "llvm.SI.image.sample";
1903 const char *infix = "";
Michel Dänzer07eddc42013-02-06 15:43:10 +01001904
Marek Olšák877bb522014-06-25 03:12:46 +02001905 switch (opcode) {
1906 case TGSI_OPCODE_TEX:
1907 case TGSI_OPCODE_TEX2:
1908 case TGSI_OPCODE_TXP:
1909 break;
1910 case TGSI_OPCODE_TXB:
1911 case TGSI_OPCODE_TXB2:
1912 infix = ".b";
1913 break;
1914 case TGSI_OPCODE_TXL:
1915 case TGSI_OPCODE_TXL2:
1916 infix = ".l";
1917 break;
1918 case TGSI_OPCODE_TXD:
1919 infix = ".d";
1920 break;
1921 case TGSI_OPCODE_TG4:
1922 name = "llvm.SI.gather4";
1923 break;
1924 case TGSI_OPCODE_LODQ:
1925 name = "llvm.SI.getlod";
1926 is_shadow = false;
1927 has_offset = false;
1928 break;
1929 default:
1930 assert(0);
1931 return;
1932 }
Michel Dänzer07eddc42013-02-06 15:43:10 +01001933
Marek Olšák877bb522014-06-25 03:12:46 +02001934 /* Add the type and suffixes .c, .o if needed. */
1935 sprintf(intr_name, "%s%s%s%s.v%ui32", name,
1936 is_shadow ? ".c" : "", infix, has_offset ? ".o" : "",
1937 LLVMGetVectorSize(LLVMTypeOf(emit_data->args[0])));
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001938
Marek Olšák877bb522014-06-25 03:12:46 +02001939 emit_data->output[emit_data->chan] = build_intrinsic(
1940 base->gallivm->builder, intr_name, emit_data->dst_type,
1941 emit_data->args, emit_data->arg_count,
1942 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
1943 } else {
Marek Olšákd859bdb2014-07-14 19:40:14 +02001944 LLVMTypeRef i8, v16i8, v32i8;
Marek Olšák877bb522014-06-25 03:12:46 +02001945 const char *name;
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001946
Marek Olšák877bb522014-06-25 03:12:46 +02001947 switch (opcode) {
1948 case TGSI_OPCODE_TEX:
1949 case TGSI_OPCODE_TEX2:
1950 case TGSI_OPCODE_TXP:
1951 name = "llvm.SI.sample";
1952 break;
1953 case TGSI_OPCODE_TXB:
1954 case TGSI_OPCODE_TXB2:
1955 name = "llvm.SI.sampleb";
1956 break;
1957 case TGSI_OPCODE_TXD:
1958 name = "llvm.SI.sampled";
1959 break;
1960 case TGSI_OPCODE_TXF:
1961 name = "llvm.SI.imageload";
1962 break;
1963 case TGSI_OPCODE_TXL:
1964 case TGSI_OPCODE_TXL2:
1965 name = "llvm.SI.samplel";
1966 break;
1967 default:
1968 assert(0);
1969 return;
1970 }
1971
Marek Olšákd859bdb2014-07-14 19:40:14 +02001972 i8 = LLVMInt8TypeInContext(base->gallivm->context);
1973 v16i8 = LLVMVectorType(i8, 16);
1974 v32i8 = LLVMVectorType(i8, 32);
1975
1976 emit_data->args[1] = LLVMBuildBitCast(base->gallivm->builder,
1977 emit_data->args[1], v32i8, "");
1978 if (opcode != TGSI_OPCODE_TXF) {
1979 emit_data->args[2] = LLVMBuildBitCast(base->gallivm->builder,
1980 emit_data->args[2], v16i8, "");
1981 }
1982
Marek Olšák877bb522014-06-25 03:12:46 +02001983 sprintf(intr_name, "%s.v%ui32", name,
1984 LLVMGetVectorSize(LLVMTypeOf(emit_data->args[0])));
1985
1986 emit_data->output[emit_data->chan] = build_intrinsic(
1987 base->gallivm->builder, intr_name, emit_data->dst_type,
1988 emit_data->args, emit_data->arg_count,
1989 LLVMReadNoneAttribute | LLVMNoUnwindAttribute);
1990 }
Marek Olšákc7b5a5c2014-06-06 03:00:18 +02001991}
1992
Michel Dänzer0495adb2013-05-06 12:45:14 +02001993static void txq_fetch_args(
1994 struct lp_build_tgsi_context * bld_base,
1995 struct lp_build_emit_data * emit_data)
1996{
1997 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
1998 const struct tgsi_full_instruction *inst = emit_data->inst;
Marek Olšákdbeedbb2013-10-31 15:08:49 +01001999 struct gallivm_state *gallivm = bld_base->base.gallivm;
Marek Olšák2484daa2014-04-22 21:23:29 +02002000 unsigned target = inst->Texture.Texture;
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002001
Marek Olšák2484daa2014-04-22 21:23:29 +02002002 if (target == TGSI_TEXTURE_BUFFER) {
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002003 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
2004 LLVMTypeRef v8i32 = LLVMVectorType(i32, 8);
2005
2006 /* Read the size from the buffer descriptor directly. */
2007 LLVMValueRef size = si_shader_ctx->resources[inst->Src[1].Register.Index];
2008 size = LLVMBuildBitCast(gallivm->builder, size, v8i32, "");
2009 size = LLVMBuildExtractElement(gallivm->builder, size,
2010 lp_build_const_int32(gallivm, 2), "");
2011 emit_data->args[0] = size;
2012 return;
2013 }
Michel Dänzer0495adb2013-05-06 12:45:14 +02002014
2015 /* Mip level */
2016 emit_data->args[0] = lp_build_emit_fetch(bld_base, inst, 0, TGSI_CHAN_X);
2017
2018 /* Resource */
2019 emit_data->args[1] = si_shader_ctx->resources[inst->Src[1].Register.Index];
2020
Marek Olšák2484daa2014-04-22 21:23:29 +02002021 /* Texture target */
2022 if (target == TGSI_TEXTURE_CUBE_ARRAY ||
2023 target == TGSI_TEXTURE_SHADOWCUBE_ARRAY)
2024 target = TGSI_TEXTURE_2D_ARRAY;
2025
Michel Dänzer0495adb2013-05-06 12:45:14 +02002026 emit_data->args[2] = lp_build_const_int32(bld_base->base.gallivm,
Marek Olšák6818e112014-06-06 03:04:21 +02002027 target);
Michel Dänzer0495adb2013-05-06 12:45:14 +02002028
2029 emit_data->arg_count = 3;
2030
2031 emit_data->dst_type = LLVMVectorType(
2032 LLVMInt32TypeInContext(bld_base->base.gallivm->context),
2033 4);
2034}
2035
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002036static void build_txq_intrinsic(const struct lp_build_tgsi_action * action,
2037 struct lp_build_tgsi_context * bld_base,
2038 struct lp_build_emit_data * emit_data)
2039{
Marek Olšák2484daa2014-04-22 21:23:29 +02002040 unsigned target = emit_data->inst->Texture.Texture;
2041
2042 if (target == TGSI_TEXTURE_BUFFER) {
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002043 /* Just return the buffer size. */
2044 emit_data->output[emit_data->chan] = emit_data->args[0];
2045 return;
2046 }
2047
2048 build_tgsi_intrinsic_nomem(action, bld_base, emit_data);
Marek Olšák2484daa2014-04-22 21:23:29 +02002049
2050 /* Divide the number of layers by 6 to get the number of cubes. */
2051 if (target == TGSI_TEXTURE_CUBE_ARRAY ||
2052 target == TGSI_TEXTURE_SHADOWCUBE_ARRAY) {
2053 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
2054 LLVMValueRef two = lp_build_const_int32(bld_base->base.gallivm, 2);
2055 LLVMValueRef six = lp_build_const_int32(bld_base->base.gallivm, 6);
2056
2057 LLVMValueRef v4 = emit_data->output[emit_data->chan];
2058 LLVMValueRef z = LLVMBuildExtractElement(builder, v4, two, "");
2059 z = LLVMBuildSDiv(builder, z, six, "");
2060
2061 emit_data->output[emit_data->chan] =
2062 LLVMBuildInsertElement(builder, v4, z, two, "");
2063 }
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002064}
2065
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002066static void si_llvm_emit_ddxy(
2067 const struct lp_build_tgsi_action * action,
2068 struct lp_build_tgsi_context * bld_base,
2069 struct lp_build_emit_data * emit_data)
2070{
2071 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
2072 struct gallivm_state *gallivm = bld_base->base.gallivm;
2073 struct lp_build_context * base = &bld_base->base;
2074 const struct tgsi_full_instruction *inst = emit_data->inst;
2075 unsigned opcode = inst->Instruction.Opcode;
2076 LLVMValueRef indices[2];
2077 LLVMValueRef store_ptr, load_ptr0, load_ptr1;
2078 LLVMValueRef tl, trbl, result[4];
2079 LLVMTypeRef i32;
2080 unsigned swizzle[4];
2081 unsigned c;
2082
2083 i32 = LLVMInt32TypeInContext(gallivm->context);
2084
2085 indices[0] = bld_base->uint_bld.zero;
2086 indices[1] = build_intrinsic(gallivm->builder, "llvm.SI.tid", i32,
2087 NULL, 0, LLVMReadNoneAttribute);
2088 store_ptr = LLVMBuildGEP(gallivm->builder, si_shader_ctx->ddxy_lds,
2089 indices, 2, "");
2090
2091 indices[1] = LLVMBuildAnd(gallivm->builder, indices[1],
2092 lp_build_const_int32(gallivm, 0xfffffffc), "");
2093 load_ptr0 = LLVMBuildGEP(gallivm->builder, si_shader_ctx->ddxy_lds,
2094 indices, 2, "");
2095
2096 indices[1] = LLVMBuildAdd(gallivm->builder, indices[1],
2097 lp_build_const_int32(gallivm,
2098 opcode == TGSI_OPCODE_DDX ? 1 : 2),
2099 "");
2100 load_ptr1 = LLVMBuildGEP(gallivm->builder, si_shader_ctx->ddxy_lds,
2101 indices, 2, "");
2102
2103 for (c = 0; c < 4; ++c) {
2104 unsigned i;
2105
2106 swizzle[c] = tgsi_util_get_full_src_register_swizzle(&inst->Src[0], c);
2107 for (i = 0; i < c; ++i) {
2108 if (swizzle[i] == swizzle[c]) {
2109 result[c] = result[i];
2110 break;
2111 }
2112 }
2113 if (i != c)
2114 continue;
2115
2116 LLVMBuildStore(gallivm->builder,
2117 LLVMBuildBitCast(gallivm->builder,
2118 lp_build_emit_fetch(bld_base, inst, 0, c),
2119 i32, ""),
2120 store_ptr);
2121
2122 tl = LLVMBuildLoad(gallivm->builder, load_ptr0, "");
2123 tl = LLVMBuildBitCast(gallivm->builder, tl, base->elem_type, "");
2124
2125 trbl = LLVMBuildLoad(gallivm->builder, load_ptr1, "");
2126 trbl = LLVMBuildBitCast(gallivm->builder, trbl, base->elem_type, "");
2127
2128 result[c] = LLVMBuildFSub(gallivm->builder, trbl, tl, "");
2129 }
2130
2131 emit_data->output[0] = lp_build_gather_values(gallivm, result, 4);
2132}
2133
Michel Dänzer404b29d2013-11-21 16:45:28 +09002134/* Emit one vertex from the geometry shader */
2135static void si_llvm_emit_vertex(
2136 const struct lp_build_tgsi_action *action,
2137 struct lp_build_tgsi_context *bld_base,
2138 struct lp_build_emit_data *emit_data)
2139{
2140 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002141 struct lp_build_context *uint = &bld_base->uint_bld;
Marek Olšák8c37c162014-09-16 18:40:07 +02002142 struct si_shader *shader = si_shader_ctx->shader;
Marek Olšák02134cf2014-10-04 22:07:50 +02002143 struct tgsi_shader_info *info = &shader->selector->info;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002144 struct gallivm_state *gallivm = bld_base->base.gallivm;
2145 LLVMTypeRef i32 = LLVMInt32TypeInContext(gallivm->context);
Michel Dänzerdb9d6af2014-01-24 16:46:27 +09002146 LLVMValueRef soffset = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
2147 SI_PARAM_GS2VS_OFFSET);
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002148 LLVMValueRef gs_next_vertex;
Michel Daenzer59936a42014-02-13 15:37:11 +09002149 LLVMValueRef can_emit, kill;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002150 LLVMValueRef args[2];
2151 unsigned chan;
2152 int i;
2153
Michel Dänzer404b29d2013-11-21 16:45:28 +09002154 /* Write vertex attribute values to GSVS ring */
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002155 gs_next_vertex = LLVMBuildLoad(gallivm->builder, si_shader_ctx->gs_next_vertex, "");
Michel Daenzer59936a42014-02-13 15:37:11 +09002156
2157 /* If this thread has already emitted the declared maximum number of
2158 * vertices, kill it: excessive vertex emissions are not supposed to
2159 * have any effect, and GS threads have no externally observable
2160 * effects other than emitting vertices.
2161 */
2162 can_emit = LLVMBuildICmp(gallivm->builder, LLVMIntULE, gs_next_vertex,
2163 lp_build_const_int32(gallivm,
Marek Olšák0a2d6f02014-09-30 16:55:36 +02002164 shader->selector->gs_max_out_vertices), "");
Michel Daenzer59936a42014-02-13 15:37:11 +09002165 kill = lp_build_select(&bld_base->base, can_emit,
2166 lp_build_const_float(gallivm, 1.0f),
2167 lp_build_const_float(gallivm, -1.0f));
2168 build_intrinsic(gallivm->builder, "llvm.AMDGPU.kill",
2169 LLVMVoidTypeInContext(gallivm->context), &kill, 1, 0);
2170
Marek Olšák02134cf2014-10-04 22:07:50 +02002171 for (i = 0; i < info->num_outputs; i++) {
Michel Dänzer404b29d2013-11-21 16:45:28 +09002172 LLVMValueRef *out_ptr =
Marek Olšák02134cf2014-10-04 22:07:50 +02002173 si_shader_ctx->radeon_bld.soa.outputs[i];
Michel Dänzer404b29d2013-11-21 16:45:28 +09002174
2175 for (chan = 0; chan < 4; chan++) {
2176 LLVMValueRef out_val = LLVMBuildLoad(gallivm->builder, out_ptr[chan], "");
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002177 LLVMValueRef voffset =
2178 lp_build_const_int32(gallivm, (i * 4 + chan) *
Marek Olšák0a2d6f02014-09-30 16:55:36 +02002179 shader->selector->gs_max_out_vertices);
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002180
2181 voffset = lp_build_add(uint, voffset, gs_next_vertex);
2182 voffset = lp_build_mul_imm(uint, voffset, 4);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002183
2184 out_val = LLVMBuildBitCast(gallivm->builder, out_val, i32, "");
2185
Marek Olšákfc3b3352014-10-05 13:33:40 +02002186 build_tbuffer_store(si_shader_ctx,
2187 si_shader_ctx->gsvs_ring,
2188 out_val, 1,
Michel Dänzer404b29d2013-11-21 16:45:28 +09002189 voffset, soffset, 0,
2190 V_008F0C_BUF_DATA_FORMAT_32,
2191 V_008F0C_BUF_NUM_FORMAT_UINT,
2192 1, 0, 1, 1, 0);
2193 }
2194 }
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002195 gs_next_vertex = lp_build_add(uint, gs_next_vertex,
2196 lp_build_const_int32(gallivm, 1));
2197 LLVMBuildStore(gallivm->builder, gs_next_vertex, si_shader_ctx->gs_next_vertex);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002198
2199 /* Signal vertex emission */
2200 args[0] = lp_build_const_int32(gallivm, SENDMSG_GS_OP_EMIT | SENDMSG_GS);
2201 args[1] = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_GS_WAVE_ID);
2202 build_intrinsic(gallivm->builder, "llvm.SI.sendmsg",
2203 LLVMVoidTypeInContext(gallivm->context), args, 2,
2204 LLVMNoUnwindAttribute);
2205}
2206
2207/* Cut one primitive from the geometry shader */
2208static void si_llvm_emit_primitive(
2209 const struct lp_build_tgsi_action *action,
2210 struct lp_build_tgsi_context *bld_base,
2211 struct lp_build_emit_data *emit_data)
2212{
2213 struct si_shader_context *si_shader_ctx = si_shader_context(bld_base);
2214 struct gallivm_state *gallivm = bld_base->base.gallivm;
2215 LLVMValueRef args[2];
2216
2217 /* Signal primitive cut */
2218 args[0] = lp_build_const_int32(gallivm, SENDMSG_GS_OP_CUT | SENDMSG_GS);
2219 args[1] = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_GS_WAVE_ID);
2220 build_intrinsic(gallivm->builder, "llvm.SI.sendmsg",
2221 LLVMVoidTypeInContext(gallivm->context), args, 2,
2222 LLVMNoUnwindAttribute);
2223}
2224
Tom Stellarda75c6162012-01-06 17:38:37 -05002225static const struct lp_build_tgsi_action tex_action = {
2226 .fetch_args = tex_fetch_args,
Michel Dänzer07eddc42013-02-06 15:43:10 +01002227 .emit = build_tex_intrinsic,
Michel Dänzer56ae9be2012-11-06 17:41:50 +01002228};
2229
Michel Dänzer0495adb2013-05-06 12:45:14 +02002230static const struct lp_build_tgsi_action txq_action = {
2231 .fetch_args = txq_fetch_args,
Marek Olšákdbeedbb2013-10-31 15:08:49 +01002232 .emit = build_txq_intrinsic,
Michel Dänzer0495adb2013-05-06 12:45:14 +02002233 .intr_name = "llvm.SI.resinfo"
2234};
2235
Christian König206f0592013-03-20 14:37:21 +01002236static void create_meta_data(struct si_shader_context *si_shader_ctx)
2237{
2238 struct gallivm_state *gallivm = si_shader_ctx->radeon_bld.soa.bld_base.base.gallivm;
2239 LLVMValueRef args[3];
2240
2241 args[0] = LLVMMDStringInContext(gallivm->context, "const", 5);
2242 args[1] = 0;
2243 args[2] = lp_build_const_int32(gallivm, 1);
2244
2245 si_shader_ctx->const_md = LLVMMDNodeInContext(gallivm->context, args, 3);
2246}
2247
Marek Olšák4f3f0432014-07-07 22:49:15 +02002248static LLVMTypeRef const_array(LLVMTypeRef elem_type, int num_elements)
2249{
2250 return LLVMPointerType(LLVMArrayType(elem_type, num_elements),
2251 CONST_ADDR_SPACE);
2252}
2253
Christian König55fe5cc2013-03-04 16:30:06 +01002254static void create_function(struct si_shader_context *si_shader_ctx)
2255{
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002256 struct lp_build_tgsi_context *bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
2257 struct gallivm_state *gallivm = bld_base->base.gallivm;
Marek Olšák8c37c162014-09-16 18:40:07 +02002258 struct si_shader *shader = si_shader_ctx->shader;
Marek Olšák4f3f0432014-07-07 22:49:15 +02002259 LLVMTypeRef params[SI_NUM_PARAMS], f32, i8, i32, v2i32, v3i32, v16i8, v4i32, v8i32;
Marek Olšákaeb05f02014-09-30 18:13:06 +02002260 unsigned i, last_array_pointer, last_sgpr, num_params;
Christian König55fe5cc2013-03-04 16:30:06 +01002261
Christian König55fe5cc2013-03-04 16:30:06 +01002262 i8 = LLVMInt8TypeInContext(gallivm->context);
Christian Königc4973212013-03-05 12:14:02 +01002263 i32 = LLVMInt32TypeInContext(gallivm->context);
Christian König0666ffd2013-03-05 15:07:39 +01002264 f32 = LLVMFloatTypeInContext(gallivm->context);
2265 v2i32 = LLVMVectorType(i32, 2);
2266 v3i32 = LLVMVectorType(i32, 3);
Marek Olšák4f3f0432014-07-07 22:49:15 +02002267 v4i32 = LLVMVectorType(i32, 4);
2268 v8i32 = LLVMVectorType(i32, 8);
2269 v16i8 = LLVMVectorType(i8, 16);
Christian Königc4973212013-03-05 12:14:02 +01002270
Marek Olšákee2a8182014-07-07 23:27:19 +02002271 params[SI_PARAM_RW_BUFFERS] = const_array(v16i8, SI_NUM_RW_BUFFERS);
Marek Olšák1f6c0b52014-09-23 19:42:28 +02002272 params[SI_PARAM_CONST] = const_array(v16i8, SI_NUM_CONST_BUFFERS);
Marek Olšákee2a8182014-07-07 23:27:19 +02002273 params[SI_PARAM_SAMPLER] = const_array(v4i32, SI_NUM_SAMPLER_STATES);
2274 params[SI_PARAM_RESOURCE] = const_array(v8i32, SI_NUM_SAMPLER_VIEWS);
Marek Olšákaeb05f02014-09-30 18:13:06 +02002275 last_array_pointer = SI_PARAM_RESOURCE;
Christian König55fe5cc2013-03-04 16:30:06 +01002276
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002277 switch (si_shader_ctx->type) {
2278 case TGSI_PROCESSOR_VERTEX:
Marek Olšákee2a8182014-07-07 23:27:19 +02002279 params[SI_PARAM_VERTEX_BUFFER] = const_array(v16i8, SI_NUM_VERTEX_BUFFERS);
Marek Olšákaeb05f02014-09-30 18:13:06 +02002280 last_array_pointer = SI_PARAM_VERTEX_BUFFER;
Marek Olšák09056b32014-04-23 16:15:36 +02002281 params[SI_PARAM_BASE_VERTEX] = i32;
Christian Königcf9b31f2013-03-21 18:30:23 +01002282 params[SI_PARAM_START_INSTANCE] = i32;
Marek Olšák8d03d922013-09-01 23:59:06 +02002283 num_params = SI_PARAM_START_INSTANCE+1;
Marek Olšák1f6c0b52014-09-23 19:42:28 +02002284
Michel Dänzer404b29d2013-11-21 16:45:28 +09002285 if (shader->key.vs.as_es) {
2286 params[SI_PARAM_ES2GS_OFFSET] = i32;
2287 num_params++;
2288 } else {
Marek Olšák1f6c0b52014-09-23 19:42:28 +02002289 if (shader->is_gs_copy_shader) {
2290 last_array_pointer = SI_PARAM_CONST;
2291 num_params = SI_PARAM_CONST+1;
2292 }
2293
Michel Dänzer404b29d2013-11-21 16:45:28 +09002294 /* The locations of the other parameters are assigned dynamically. */
Marek Olšák8d03d922013-09-01 23:59:06 +02002295
Michel Dänzer404b29d2013-11-21 16:45:28 +09002296 /* Streamout SGPRs. */
2297 if (shader->selector->so.num_outputs) {
2298 params[si_shader_ctx->param_streamout_config = num_params++] = i32;
2299 params[si_shader_ctx->param_streamout_write_index = num_params++] = i32;
2300 }
2301 /* A streamout buffer offset is loaded if the stride is non-zero. */
2302 for (i = 0; i < 4; i++) {
2303 if (!shader->selector->so.stride[i])
2304 continue;
Marek Olšák8d03d922013-09-01 23:59:06 +02002305
Michel Dänzer404b29d2013-11-21 16:45:28 +09002306 params[si_shader_ctx->param_streamout_offset[i] = num_params++] = i32;
2307 }
Marek Olšák8d03d922013-09-01 23:59:06 +02002308 }
2309
2310 last_sgpr = num_params-1;
2311
2312 /* VGPRs */
2313 params[si_shader_ctx->param_vertex_id = num_params++] = i32;
2314 params[num_params++] = i32; /* unused*/
2315 params[num_params++] = i32; /* unused */
2316 params[si_shader_ctx->param_instance_id = num_params++] = i32;
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002317 break;
Christian König0666ffd2013-03-05 15:07:39 +01002318
Michel Dänzer404b29d2013-11-21 16:45:28 +09002319 case TGSI_PROCESSOR_GEOMETRY:
2320 params[SI_PARAM_GS2VS_OFFSET] = i32;
2321 params[SI_PARAM_GS_WAVE_ID] = i32;
2322 last_sgpr = SI_PARAM_GS_WAVE_ID;
2323
2324 /* VGPRs */
2325 params[SI_PARAM_VTX0_OFFSET] = i32;
2326 params[SI_PARAM_VTX1_OFFSET] = i32;
2327 params[SI_PARAM_PRIMITIVE_ID] = i32;
2328 params[SI_PARAM_VTX2_OFFSET] = i32;
2329 params[SI_PARAM_VTX3_OFFSET] = i32;
2330 params[SI_PARAM_VTX4_OFFSET] = i32;
2331 params[SI_PARAM_VTX5_OFFSET] = i32;
2332 params[SI_PARAM_GS_INSTANCE_ID] = i32;
2333 num_params = SI_PARAM_GS_INSTANCE_ID+1;
2334 break;
2335
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002336 case TGSI_PROCESSOR_FRAGMENT:
Vadim Girlin453ea2d2013-10-13 19:53:54 +04002337 params[SI_PARAM_ALPHA_REF] = f32;
Christian König0666ffd2013-03-05 15:07:39 +01002338 params[SI_PARAM_PRIM_MASK] = i32;
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002339 last_sgpr = SI_PARAM_PRIM_MASK;
Christian König0666ffd2013-03-05 15:07:39 +01002340 params[SI_PARAM_PERSP_SAMPLE] = v2i32;
2341 params[SI_PARAM_PERSP_CENTER] = v2i32;
2342 params[SI_PARAM_PERSP_CENTROID] = v2i32;
2343 params[SI_PARAM_PERSP_PULL_MODEL] = v3i32;
2344 params[SI_PARAM_LINEAR_SAMPLE] = v2i32;
2345 params[SI_PARAM_LINEAR_CENTER] = v2i32;
2346 params[SI_PARAM_LINEAR_CENTROID] = v2i32;
2347 params[SI_PARAM_LINE_STIPPLE_TEX] = f32;
2348 params[SI_PARAM_POS_X_FLOAT] = f32;
2349 params[SI_PARAM_POS_Y_FLOAT] = f32;
2350 params[SI_PARAM_POS_Z_FLOAT] = f32;
2351 params[SI_PARAM_POS_W_FLOAT] = f32;
2352 params[SI_PARAM_FRONT_FACE] = f32;
Marek Olšák5b06fc32014-05-06 18:12:40 +02002353 params[SI_PARAM_ANCILLARY] = i32;
Christian König0666ffd2013-03-05 15:07:39 +01002354 params[SI_PARAM_SAMPLE_COVERAGE] = f32;
2355 params[SI_PARAM_POS_FIXED_PT] = f32;
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002356 num_params = SI_PARAM_POS_FIXED_PT+1;
2357 break;
2358
2359 default:
2360 assert(0 && "unimplemented shader");
2361 return;
Christian Königc4973212013-03-05 12:14:02 +01002362 }
Christian König55fe5cc2013-03-04 16:30:06 +01002363
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002364 assert(num_params <= Elements(params));
2365 radeon_llvm_create_func(&si_shader_ctx->radeon_bld, params, num_params);
Christian König55fe5cc2013-03-04 16:30:06 +01002366 radeon_llvm_shader_type(si_shader_ctx->radeon_bld.main_fn, si_shader_ctx->type);
Christian Königcf9b31f2013-03-21 18:30:23 +01002367
Marek Olšák13a1a8b2013-08-18 01:57:40 +02002368 for (i = 0; i <= last_sgpr; ++i) {
2369 LLVMValueRef P = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, i);
Marek Olšákaeb05f02014-09-30 18:13:06 +02002370
Vincent Lejeune6e51c2a2013-10-05 16:04:48 +02002371 /* We tell llvm that array inputs are passed by value to allow Sinking pass
2372 * to move load. Inputs are constant so this is fine. */
Marek Olšákaeb05f02014-09-30 18:13:06 +02002373 if (i <= last_array_pointer)
Vincent Lejeune6e51c2a2013-10-05 16:04:48 +02002374 LLVMAddAttribute(P, LLVMByValAttribute);
Marek Olšákaeb05f02014-09-30 18:13:06 +02002375 else
2376 LLVMAddAttribute(P, LLVMInRegAttribute);
Christian Königcf9b31f2013-03-21 18:30:23 +01002377 }
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002378
Michel Dänzer404b29d2013-11-21 16:45:28 +09002379 if (bld_base->info &&
2380 (bld_base->info->opcode_count[TGSI_OPCODE_DDX] > 0 ||
2381 bld_base->info->opcode_count[TGSI_OPCODE_DDY] > 0))
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002382 si_shader_ctx->ddxy_lds =
2383 LLVMAddGlobalInAddressSpace(gallivm->module,
2384 LLVMArrayType(i32, 64),
2385 "ddxy_lds",
2386 LOCAL_ADDR_SPACE);
Christian König55fe5cc2013-03-04 16:30:06 +01002387}
Tom Stellarda75c6162012-01-06 17:38:37 -05002388
Christian König0f6cf2b2013-03-15 15:53:25 +01002389static void preload_constants(struct si_shader_context *si_shader_ctx)
2390{
2391 struct lp_build_tgsi_context * bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
2392 struct gallivm_state * gallivm = bld_base->base.gallivm;
2393 const struct tgsi_shader_info * info = bld_base->info;
Marek Olšák2fd42002013-10-25 11:45:47 +02002394 unsigned buf;
2395 LLVMValueRef ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_CONST);
Christian König0f6cf2b2013-03-15 15:53:25 +01002396
Marek Olšákee2a8182014-07-07 23:27:19 +02002397 for (buf = 0; buf < SI_NUM_CONST_BUFFERS; buf++) {
Marek Olšák2fd42002013-10-25 11:45:47 +02002398 unsigned i, num_const = info->const_file_max[buf] + 1;
Christian König0f6cf2b2013-03-15 15:53:25 +01002399
Marek Olšák2fd42002013-10-25 11:45:47 +02002400 if (num_const == 0)
2401 continue;
Christian König0f6cf2b2013-03-15 15:53:25 +01002402
Marek Olšák2fd42002013-10-25 11:45:47 +02002403 /* Allocate space for the constant values */
2404 si_shader_ctx->constants[buf] = CALLOC(num_const * 4, sizeof(LLVMValueRef));
Christian König0f6cf2b2013-03-15 15:53:25 +01002405
Marek Olšák2fd42002013-10-25 11:45:47 +02002406 /* Load the resource descriptor */
2407 si_shader_ctx->const_resource[buf] =
Marek Olšákd7876082014-09-26 23:06:32 +02002408 build_indexed_load_const(si_shader_ctx, ptr, lp_build_const_int32(gallivm, buf));
Christian König0f6cf2b2013-03-15 15:53:25 +01002409
Marek Olšák2fd42002013-10-25 11:45:47 +02002410 /* Load the constants, we rely on the code sinking to do the rest */
2411 for (i = 0; i < num_const * 4; ++i) {
Marek Olšák2fd42002013-10-25 11:45:47 +02002412 si_shader_ctx->constants[buf][i] =
Marek Olšákd7876082014-09-26 23:06:32 +02002413 buffer_load_const(gallivm->builder,
Marek Olšák250aa932014-05-06 14:10:47 +02002414 si_shader_ctx->const_resource[buf],
2415 lp_build_const_int32(gallivm, i * 4),
2416 bld_base->base.elem_type);
Marek Olšák2fd42002013-10-25 11:45:47 +02002417 }
Christian König0f6cf2b2013-03-15 15:53:25 +01002418 }
2419}
2420
Christian König1c100182013-03-17 16:02:42 +01002421static void preload_samplers(struct si_shader_context *si_shader_ctx)
2422{
2423 struct lp_build_tgsi_context * bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
2424 struct gallivm_state * gallivm = bld_base->base.gallivm;
2425 const struct tgsi_shader_info * info = bld_base->info;
2426
2427 unsigned i, num_samplers = info->file_max[TGSI_FILE_SAMPLER] + 1;
2428
2429 LLVMValueRef res_ptr, samp_ptr;
2430 LLVMValueRef offset;
2431
2432 if (num_samplers == 0)
2433 return;
2434
Christian König1c100182013-03-17 16:02:42 +01002435 res_ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_RESOURCE);
2436 samp_ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn, SI_PARAM_SAMPLER);
2437
2438 /* Load the resources and samplers, we rely on the code sinking to do the rest */
2439 for (i = 0; i < num_samplers; ++i) {
Christian König1c100182013-03-17 16:02:42 +01002440 /* Resource */
2441 offset = lp_build_const_int32(gallivm, i);
Marek Olšákd7876082014-09-26 23:06:32 +02002442 si_shader_ctx->resources[i] = build_indexed_load_const(si_shader_ctx, res_ptr, offset);
Christian König1c100182013-03-17 16:02:42 +01002443
2444 /* Sampler */
2445 offset = lp_build_const_int32(gallivm, i);
Marek Olšákd7876082014-09-26 23:06:32 +02002446 si_shader_ctx->samplers[i] = build_indexed_load_const(si_shader_ctx, samp_ptr, offset);
Marek Olšák4855acd2013-08-06 15:08:54 +02002447
2448 /* FMASK resource */
2449 if (info->is_msaa_sampler[i]) {
Marek Olšákee2a8182014-07-07 23:27:19 +02002450 offset = lp_build_const_int32(gallivm, SI_FMASK_TEX_OFFSET + i);
2451 si_shader_ctx->resources[SI_FMASK_TEX_OFFSET + i] =
Marek Olšákd7876082014-09-26 23:06:32 +02002452 build_indexed_load_const(si_shader_ctx, res_ptr, offset);
Marek Olšák4855acd2013-08-06 15:08:54 +02002453 }
Christian König1c100182013-03-17 16:02:42 +01002454 }
2455}
2456
Marek Olšák8d03d922013-09-01 23:59:06 +02002457static void preload_streamout_buffers(struct si_shader_context *si_shader_ctx)
2458{
2459 struct lp_build_tgsi_context * bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
2460 struct gallivm_state * gallivm = bld_base->base.gallivm;
2461 unsigned i;
2462
Michel Dänzer67e385b2014-01-08 17:48:21 +09002463 if (si_shader_ctx->type != TGSI_PROCESSOR_VERTEX ||
2464 si_shader_ctx->shader->key.vs.as_es ||
2465 !si_shader_ctx->shader->selector->so.num_outputs)
Marek Olšák8d03d922013-09-01 23:59:06 +02002466 return;
2467
2468 LLVMValueRef buf_ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
Michel Dänzerf8e16012014-01-28 15:39:30 +09002469 SI_PARAM_RW_BUFFERS);
Marek Olšák8d03d922013-09-01 23:59:06 +02002470
2471 /* Load the resources, we rely on the code sinking to do the rest */
2472 for (i = 0; i < 4; ++i) {
2473 if (si_shader_ctx->shader->selector->so.stride[i]) {
Michel Dänzerf8e16012014-01-28 15:39:30 +09002474 LLVMValueRef offset = lp_build_const_int32(gallivm,
Marek Olšákee2a8182014-07-07 23:27:19 +02002475 SI_SO_BUF_OFFSET + i);
Marek Olšák8d03d922013-09-01 23:59:06 +02002476
Marek Olšákd7876082014-09-26 23:06:32 +02002477 si_shader_ctx->so_buffers[i] = build_indexed_load_const(si_shader_ctx, buf_ptr, offset);
Marek Olšák8d03d922013-09-01 23:59:06 +02002478 }
2479 }
2480}
2481
Marek Olšákfc3b3352014-10-05 13:33:40 +02002482/**
2483 * Load ESGS and GSVS ring buffer resource descriptors and save the variables
2484 * for later use.
2485 */
2486static void preload_ring_buffers(struct si_shader_context *si_shader_ctx)
2487{
2488 struct gallivm_state *gallivm =
2489 si_shader_ctx->radeon_bld.soa.bld_base.base.gallivm;
2490
2491 LLVMValueRef buf_ptr = LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
2492 SI_PARAM_RW_BUFFERS);
2493
2494 if ((si_shader_ctx->type == TGSI_PROCESSOR_VERTEX &&
2495 si_shader_ctx->shader->key.vs.as_es) ||
2496 si_shader_ctx->type == TGSI_PROCESSOR_GEOMETRY) {
2497 LLVMValueRef offset = lp_build_const_int32(gallivm, SI_RING_ESGS);
2498
2499 si_shader_ctx->esgs_ring =
2500 build_indexed_load_const(si_shader_ctx, buf_ptr, offset);
2501 }
2502
2503 if (si_shader_ctx->type == TGSI_PROCESSOR_GEOMETRY ||
2504 si_shader_ctx->shader->is_gs_copy_shader) {
2505 LLVMValueRef offset = lp_build_const_int32(gallivm, SI_RING_GSVS);
2506
2507 si_shader_ctx->gsvs_ring =
2508 build_indexed_load_const(si_shader_ctx, buf_ptr, offset);
2509 }
2510}
2511
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002512void si_shader_binary_read_config(const struct radeon_shader_binary *binary,
2513 struct si_shader *shader,
2514 unsigned symbol_offset)
Tom Stellard302f53d2012-10-25 13:50:10 -04002515{
Tom Stellard302f53d2012-10-25 13:50:10 -04002516 unsigned i;
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002517 const unsigned char *config =
2518 radeon_shader_binary_config_start(binary, symbol_offset);
Tom Stellard302f53d2012-10-25 13:50:10 -04002519
Tom Stellardd50343d2013-04-04 16:21:06 -04002520 /* XXX: We may be able to emit some of these values directly rather than
2521 * extracting fields to be emitted later.
2522 */
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002523
2524 for (i = 0; i < binary->config_size_per_symbol; i+= 8) {
2525 unsigned reg = util_le32_to_cpu(*(uint32_t*)(config + i));
2526 unsigned value = util_le32_to_cpu(*(uint32_t*)(config + i + 4));
Tom Stellardd50343d2013-04-04 16:21:06 -04002527 switch (reg) {
2528 case R_00B028_SPI_SHADER_PGM_RSRC1_PS:
2529 case R_00B128_SPI_SHADER_PGM_RSRC1_VS:
2530 case R_00B228_SPI_SHADER_PGM_RSRC1_GS:
2531 case R_00B848_COMPUTE_PGM_RSRC1:
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002532 shader->num_sgprs = MAX2(shader->num_sgprs, (G_00B028_SGPRS(value) + 1) * 8);
2533 shader->num_vgprs = MAX2(shader->num_vgprs, (G_00B028_VGPRS(value) + 1) * 4);
Tom Stellardd50343d2013-04-04 16:21:06 -04002534 break;
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002535 case R_00B02C_SPI_SHADER_PGM_RSRC2_PS:
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002536 shader->lds_size = MAX2(shader->lds_size, G_00B02C_EXTRA_LDS_SIZE(value));
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002537 break;
2538 case R_00B84C_COMPUTE_PGM_RSRC2:
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002539 shader->lds_size = MAX2(shader->lds_size, G_00B84C_LDS_SIZE(value));
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002540 break;
Tom Stellardd50343d2013-04-04 16:21:06 -04002541 case R_0286CC_SPI_PS_INPUT_ENA:
2542 shader->spi_ps_input_ena = value;
2543 break;
Tom Stellardb0f78032014-07-18 14:45:18 -04002544 case R_00B860_COMPUTE_TMPRING_SIZE:
2545 /* WAVESIZE is in units of 256 dwords. */
2546 shader->scratch_bytes_per_wave =
2547 G_00B860_WAVESIZE(value) * 256 * 4 * 1;
2548 break;
Tom Stellardd50343d2013-04-04 16:21:06 -04002549 default:
2550 fprintf(stderr, "Warning: Compiler emitted unknown "
2551 "config register: 0x%x\n", reg);
2552 break;
2553 }
2554 }
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002555}
2556
2557int si_shader_binary_read(struct si_screen *sscreen,
2558 struct si_shader *shader,
2559 const struct radeon_shader_binary *binary)
2560{
2561
2562 unsigned i;
2563 unsigned code_size;
2564 unsigned char *ptr;
2565 bool dump = r600_can_dump_shader(&sscreen->b,
2566 shader->selector ? shader->selector->tokens : NULL);
2567
2568 if (dump && !binary->disassembled) {
2569 fprintf(stderr, "SI CODE:\n");
2570 for (i = 0; i < binary->code_size; i+=4 ) {
2571 fprintf(stderr, "@0x%x: %02x%02x%02x%02x\n", i, binary->code[i + 3],
2572 binary->code[i + 2], binary->code[i + 1],
2573 binary->code[i]);
2574 }
2575 }
2576
2577 si_shader_binary_read_config(binary, shader, 0);
Tom Stellard302f53d2012-10-25 13:50:10 -04002578
2579 /* copy new shader */
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002580 code_size = binary->code_size + binary->rodata_size;
Marek Olšáka81c3e02013-08-14 01:04:39 +02002581 r600_resource_reference(&shader->bo, NULL);
Marek Olšák1abb1a92014-09-17 22:44:22 +02002582 shader->bo = si_resource_create_custom(&sscreen->b.b, PIPE_USAGE_IMMUTABLE,
Tom Stellard9ba31052014-07-14 16:49:08 -04002583 code_size);
Tom Stellard302f53d2012-10-25 13:50:10 -04002584 if (shader->bo == NULL) {
2585 return -ENOMEM;
2586 }
2587
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002588
2589 ptr = sscreen->b.ws->buffer_map(shader->bo->cs_buf, NULL, PIPE_TRANSFER_READ_WRITE);
2590 util_memcpy_cpu_to_le32(ptr, binary->code, binary->code_size);
2591 if (binary->rodata_size > 0) {
2592 ptr += binary->code_size;
2593 util_memcpy_cpu_to_le32(ptr, binary->rodata, binary->rodata_size);
Tom Stellard302f53d2012-10-25 13:50:10 -04002594 }
Tom Stellard6f0c1f22014-07-18 15:10:52 -04002595
Marek Olšák1abb1a92014-09-17 22:44:22 +02002596 sscreen->b.ws->buffer_unmap(shader->bo->cs_buf);
Tom Stellard302f53d2012-10-25 13:50:10 -04002597
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002598 return 0;
2599}
Tom Stellard302f53d2012-10-25 13:50:10 -04002600
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002601int si_compile_llvm(struct si_screen *sscreen, struct si_shader *shader,
2602 LLVMModuleRef mod)
2603{
2604 int r = 0;
2605 struct radeon_shader_binary binary;
2606 bool dump = r600_can_dump_shader(&sscreen->b,
2607 shader->selector ? shader->selector->tokens : NULL);
2608 memset(&binary, 0, sizeof(binary));
2609 r = radeon_llvm_compile(mod, &binary,
Tom Stellard761e36b2014-10-15 12:24:30 -04002610 r600_get_llvm_processor_name(sscreen->b.family), dump, sscreen->tm);
Tom Stellard1f4e48d2014-09-25 18:11:24 -07002611
2612 if (r) {
2613 return r;
2614 }
2615 r = si_shader_binary_read(sscreen, shader, &binary);
2616 FREE(binary.code);
2617 FREE(binary.config);
2618 FREE(binary.rodata);
Darren Powellbc866902014-03-31 18:00:28 -04002619 return r;
Tom Stellard302f53d2012-10-25 13:50:10 -04002620}
2621
Michel Dänzer404b29d2013-11-21 16:45:28 +09002622/* Generate code for the hardware VS shader stage to go with a geometry shader */
Marek Olšák1abb1a92014-09-17 22:44:22 +02002623static int si_generate_gs_copy_shader(struct si_screen *sscreen,
Michel Dänzer404b29d2013-11-21 16:45:28 +09002624 struct si_shader_context *si_shader_ctx,
Marek Olšák68d36c02014-09-30 18:15:17 +02002625 struct si_shader *gs, bool dump)
Michel Dänzer404b29d2013-11-21 16:45:28 +09002626{
2627 struct gallivm_state *gallivm = &si_shader_ctx->radeon_bld.gallivm;
2628 struct lp_build_tgsi_context *bld_base = &si_shader_ctx->radeon_bld.soa.bld_base;
2629 struct lp_build_context *base = &bld_base->base;
2630 struct lp_build_context *uint = &bld_base->uint_bld;
Marek Olšák8c37c162014-09-16 18:40:07 +02002631 struct si_shader *shader = si_shader_ctx->shader;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002632 struct si_shader_output_values *outputs;
Marek Olšák02134cf2014-10-04 22:07:50 +02002633 struct tgsi_shader_info *gsinfo = &gs->selector->info;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002634 LLVMValueRef args[9];
2635 int i, r;
2636
Marek Olšák02134cf2014-10-04 22:07:50 +02002637 outputs = MALLOC(gsinfo->num_outputs * sizeof(outputs[0]));
Michel Dänzer404b29d2013-11-21 16:45:28 +09002638
2639 si_shader_ctx->type = TGSI_PROCESSOR_VERTEX;
Marek Olšák1f6c0b52014-09-23 19:42:28 +02002640 shader->is_gs_copy_shader = true;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002641
2642 radeon_llvm_context_init(&si_shader_ctx->radeon_bld);
2643
2644 create_meta_data(si_shader_ctx);
2645 create_function(si_shader_ctx);
2646 preload_streamout_buffers(si_shader_ctx);
Marek Olšákfc3b3352014-10-05 13:33:40 +02002647 preload_ring_buffers(si_shader_ctx);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002648
Marek Olšákfc3b3352014-10-05 13:33:40 +02002649 args[0] = si_shader_ctx->gsvs_ring;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002650 args[1] = lp_build_mul_imm(uint,
2651 LLVMGetParam(si_shader_ctx->radeon_bld.main_fn,
2652 si_shader_ctx->param_vertex_id),
2653 4);
2654 args[3] = uint->zero;
2655 args[4] = uint->one; /* OFFEN */
2656 args[5] = uint->zero; /* IDXEN */
2657 args[6] = uint->one; /* GLC */
2658 args[7] = uint->one; /* SLC */
2659 args[8] = uint->zero; /* TFE */
2660
2661 /* Fetch vertex data from GSVS ring */
Marek Olšák02134cf2014-10-04 22:07:50 +02002662 for (i = 0; i < gsinfo->num_outputs; ++i) {
Michel Dänzer404b29d2013-11-21 16:45:28 +09002663 unsigned chan;
2664
Marek Olšák02134cf2014-10-04 22:07:50 +02002665 outputs[i].name = gsinfo->output_semantic_name[i];
Marek Olšák02134cf2014-10-04 22:07:50 +02002666 outputs[i].sid = gsinfo->output_semantic_index[i];
Michel Dänzer404b29d2013-11-21 16:45:28 +09002667
2668 for (chan = 0; chan < 4; chan++) {
2669 args[2] = lp_build_const_int32(gallivm,
2670 (i * 4 + chan) *
Marek Olšák0a2d6f02014-09-30 16:55:36 +02002671 gs->selector->gs_max_out_vertices * 16 * 4);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002672
2673 outputs[i].values[chan] =
2674 LLVMBuildBitCast(gallivm->builder,
2675 build_intrinsic(gallivm->builder,
2676 "llvm.SI.buffer.load.dword.i32.i32",
2677 LLVMInt32TypeInContext(gallivm->context),
2678 args, 9,
2679 LLVMReadOnlyAttribute | LLVMNoUnwindAttribute),
2680 base->elem_type, "");
2681 }
2682 }
2683
Marek Olšák02134cf2014-10-04 22:07:50 +02002684 si_llvm_export_vs(bld_base, outputs, gsinfo->num_outputs);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002685
2686 radeon_llvm_finalize_module(&si_shader_ctx->radeon_bld);
2687
2688 if (dump)
2689 fprintf(stderr, "Copy Vertex Shader for Geometry Shader:\n\n");
2690
Marek Olšák1abb1a92014-09-17 22:44:22 +02002691 r = si_compile_llvm(sscreen, si_shader_ctx->shader,
Michel Dänzer404b29d2013-11-21 16:45:28 +09002692 bld_base->base.gallivm->module);
2693
2694 radeon_llvm_dispose(&si_shader_ctx->radeon_bld);
2695
2696 FREE(outputs);
2697 return r;
2698}
2699
Marek Olšák1abb1a92014-09-17 22:44:22 +02002700int si_shader_create(struct si_screen *sscreen, struct si_shader *shader)
Tom Stellarda75c6162012-01-06 17:38:37 -05002701{
Marek Olšák2774abd2014-09-16 18:45:33 +02002702 struct si_shader_selector *sel = shader->selector;
Tom Stellarda75c6162012-01-06 17:38:37 -05002703 struct si_shader_context si_shader_ctx;
Tom Stellarda75c6162012-01-06 17:38:37 -05002704 struct lp_build_tgsi_context * bld_base;
2705 LLVMModuleRef mod;
Tom Stellard302f53d2012-10-25 13:50:10 -04002706 int r = 0;
Marek Olšák1abb1a92014-09-17 22:44:22 +02002707 bool dump = r600_can_dump_shader(&sscreen->b, sel->tokens);
Michel Dänzere1df0d42014-01-15 12:31:07 +09002708
2709 /* Dump TGSI code before doing TGSI->LLVM conversion in case the
2710 * conversion fails. */
2711 if (dump) {
2712 tgsi_dump(sel->tokens, 0);
2713 si_dump_streamout(&sel->so);
2714 }
Tom Stellarda75c6162012-01-06 17:38:37 -05002715
Marek Olšák8c37c162014-09-16 18:40:07 +02002716 assert(shader->nparam == 0);
Michel Dänzer82e38ac2012-09-27 16:39:26 +02002717
Michel Dänzercfebaf92012-08-31 19:04:08 +02002718 memset(&si_shader_ctx, 0, sizeof(si_shader_ctx));
Tom Stellarda75c6162012-01-06 17:38:37 -05002719 radeon_llvm_context_init(&si_shader_ctx.radeon_bld);
2720 bld_base = &si_shader_ctx.radeon_bld.soa.bld_base;
2721
Marek Olšák52335682014-09-30 15:12:09 +02002722 if (sel->info.uses_kill)
Marek Olšákadc57972014-09-19 17:07:07 +02002723 shader->db_shader_control |= S_02880C_KILL_ENABLE(1);
2724
Marek Olšák52335682014-09-30 15:12:09 +02002725 shader->uses_instanceid = sel->info.uses_instanceid;
2726 bld_base->info = &sel->info;
Tom Stellarda75c6162012-01-06 17:38:37 -05002727 bld_base->emit_fetch_funcs[TGSI_FILE_CONSTANT] = fetch_constant;
Tom Stellarda75c6162012-01-06 17:38:37 -05002728
2729 bld_base->op_actions[TGSI_OPCODE_TEX] = tex_action;
Marek Olšák2484daa2014-04-22 21:23:29 +02002730 bld_base->op_actions[TGSI_OPCODE_TEX2] = tex_action;
Marek Olšák877bb522014-06-25 03:12:46 +02002731 bld_base->op_actions[TGSI_OPCODE_TXB] = tex_action;
2732 bld_base->op_actions[TGSI_OPCODE_TXB2] = tex_action;
Marek Olšák877bb522014-06-25 03:12:46 +02002733 bld_base->op_actions[TGSI_OPCODE_TXD] = tex_action;
Marek Olšák877bb522014-06-25 03:12:46 +02002734 bld_base->op_actions[TGSI_OPCODE_TXF] = tex_action;
2735 bld_base->op_actions[TGSI_OPCODE_TXL] = tex_action;
2736 bld_base->op_actions[TGSI_OPCODE_TXL2] = tex_action;
Michel Dänzerc2bae6b2012-08-02 17:19:22 +02002737 bld_base->op_actions[TGSI_OPCODE_TXP] = tex_action;
Michel Dänzer0495adb2013-05-06 12:45:14 +02002738 bld_base->op_actions[TGSI_OPCODE_TXQ] = txq_action;
Marek Olšák877bb522014-06-25 03:12:46 +02002739 bld_base->op_actions[TGSI_OPCODE_TG4] = tex_action;
2740 bld_base->op_actions[TGSI_OPCODE_LODQ] = tex_action;
Tom Stellarda75c6162012-01-06 17:38:37 -05002741
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002742 bld_base->op_actions[TGSI_OPCODE_DDX].emit = si_llvm_emit_ddxy;
2743 bld_base->op_actions[TGSI_OPCODE_DDY].emit = si_llvm_emit_ddxy;
Michel Dänzera06ee5a2013-06-19 18:14:01 +02002744
Michel Dänzer404b29d2013-11-21 16:45:28 +09002745 bld_base->op_actions[TGSI_OPCODE_EMIT].emit = si_llvm_emit_vertex;
2746 bld_base->op_actions[TGSI_OPCODE_ENDPRIM].emit = si_llvm_emit_primitive;
2747
Marek Olšák645b4712014-11-20 22:16:09 +01002748 if (HAVE_LLVM >= 0x0306) {
2749 bld_base->op_actions[TGSI_OPCODE_MAX].emit = build_tgsi_intrinsic_nomem;
2750 bld_base->op_actions[TGSI_OPCODE_MAX].intr_name = "llvm.maxnum.f32";
2751 bld_base->op_actions[TGSI_OPCODE_MIN].emit = build_tgsi_intrinsic_nomem;
2752 bld_base->op_actions[TGSI_OPCODE_MIN].intr_name = "llvm.minnum.f32";
2753 }
2754
Christian Könige4ed5872013-03-21 18:02:52 +01002755 si_shader_ctx.radeon_bld.load_system_value = declare_system_value;
Michel Dänzerd1e40b32012-08-23 17:10:37 +02002756 si_shader_ctx.tokens = sel->tokens;
Tom Stellarda75c6162012-01-06 17:38:37 -05002757 tgsi_parse_init(&si_shader_ctx.parse, si_shader_ctx.tokens);
2758 si_shader_ctx.shader = shader;
2759 si_shader_ctx.type = si_shader_ctx.parse.FullHeader.Processor.Processor;
Marek Olšák368b0a72014-12-28 21:51:35 +01002760 si_shader_ctx.screen = sscreen;
Tom Stellarda75c6162012-01-06 17:38:37 -05002761
Michel Dänzer51f89a02013-12-09 15:33:53 +09002762 switch (si_shader_ctx.type) {
2763 case TGSI_PROCESSOR_VERTEX:
2764 si_shader_ctx.radeon_bld.load_input = declare_input_vs;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002765 if (shader->key.vs.as_es) {
Michel Dänzer404b29d2013-11-21 16:45:28 +09002766 bld_base->emit_epilogue = si_llvm_emit_es_epilogue;
2767 } else {
2768 bld_base->emit_epilogue = si_llvm_emit_vs_epilogue;
2769 }
Michel Dänzer51f89a02013-12-09 15:33:53 +09002770 break;
Marek Olšák8908fae2014-09-30 15:48:22 +02002771 case TGSI_PROCESSOR_GEOMETRY:
Michel Dänzer404b29d2013-11-21 16:45:28 +09002772 bld_base->emit_fetch_funcs[TGSI_FILE_INPUT] = fetch_input_gs;
2773 bld_base->emit_epilogue = si_llvm_emit_gs_epilogue;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002774 break;
Marek Olšák8908fae2014-09-30 15:48:22 +02002775 case TGSI_PROCESSOR_FRAGMENT:
Michel Dänzer51f89a02013-12-09 15:33:53 +09002776 si_shader_ctx.radeon_bld.load_input = declare_input_fs;
2777 bld_base->emit_epilogue = si_llvm_emit_fs_epilogue;
Marek Olšák6a2b3832014-06-14 17:58:30 +02002778
Marek Olšák0c4bc1e2014-10-02 16:36:51 +02002779 switch (sel->info.properties[TGSI_PROPERTY_FS_DEPTH_LAYOUT]) {
Marek Olšák8908fae2014-09-30 15:48:22 +02002780 case TGSI_FS_DEPTH_LAYOUT_GREATER:
2781 shader->db_shader_control |=
2782 S_02880C_CONSERVATIVE_Z_EXPORT(V_02880C_EXPORT_GREATER_THAN_Z);
2783 break;
2784 case TGSI_FS_DEPTH_LAYOUT_LESS:
2785 shader->db_shader_control |=
2786 S_02880C_CONSERVATIVE_Z_EXPORT(V_02880C_EXPORT_LESS_THAN_Z);
2787 break;
Marek Olšák6a2b3832014-06-14 17:58:30 +02002788 }
Michel Dänzer51f89a02013-12-09 15:33:53 +09002789 break;
2790 default:
2791 assert(!"Unsupported shader type");
2792 return -1;
2793 }
2794
Christian König206f0592013-03-20 14:37:21 +01002795 create_meta_data(&si_shader_ctx);
Christian König55fe5cc2013-03-04 16:30:06 +01002796 create_function(&si_shader_ctx);
Christian König0f6cf2b2013-03-15 15:53:25 +01002797 preload_constants(&si_shader_ctx);
Christian König1c100182013-03-17 16:02:42 +01002798 preload_samplers(&si_shader_ctx);
Marek Olšák8d03d922013-09-01 23:59:06 +02002799 preload_streamout_buffers(&si_shader_ctx);
Marek Olšákfc3b3352014-10-05 13:33:40 +02002800 preload_ring_buffers(&si_shader_ctx);
Christian Königb8f4ca32013-03-04 15:35:30 +01002801
Michel Dänzerf07a96d2014-01-08 18:45:10 +09002802 if (si_shader_ctx.type == TGSI_PROCESSOR_GEOMETRY) {
2803 si_shader_ctx.gs_next_vertex =
2804 lp_build_alloca(bld_base->base.gallivm,
2805 bld_base->uint_bld.elem_type, "");
2806 }
2807
Michel Dänzerd1e40b32012-08-23 17:10:37 +02002808 if (!lp_build_tgsi_llvm(bld_base, sel->tokens)) {
Michel Dänzer82cd9c02012-08-08 15:35:42 +02002809 fprintf(stderr, "Failed to translate shader from TGSI to LLVM\n");
Michel Dänzer404b29d2013-11-21 16:45:28 +09002810 goto out;
Michel Dänzer82cd9c02012-08-08 15:35:42 +02002811 }
Tom Stellarda75c6162012-01-06 17:38:37 -05002812
2813 radeon_llvm_finalize_module(&si_shader_ctx.radeon_bld);
2814
2815 mod = bld_base->base.gallivm->module;
Marek Olšák1abb1a92014-09-17 22:44:22 +02002816 r = si_compile_llvm(sscreen, shader, mod);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002817 if (r) {
2818 fprintf(stderr, "LLVM failed to compile shader\n");
2819 goto out;
2820 }
Tom Stellarda75c6162012-01-06 17:38:37 -05002821
Michel Dänzer4b64fa22012-08-15 18:22:46 +02002822 radeon_llvm_dispose(&si_shader_ctx.radeon_bld);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002823
2824 if (si_shader_ctx.type == TGSI_PROCESSOR_GEOMETRY) {
Marek Olšák8c37c162014-09-16 18:40:07 +02002825 shader->gs_copy_shader = CALLOC_STRUCT(si_shader);
Michel Dänzer404b29d2013-11-21 16:45:28 +09002826 shader->gs_copy_shader->selector = shader->selector;
Michel Dänzer7b19c392014-01-09 18:18:26 +09002827 shader->gs_copy_shader->key = shader->key;
Michel Dänzer404b29d2013-11-21 16:45:28 +09002828 si_shader_ctx.shader = shader->gs_copy_shader;
Marek Olšák68d36c02014-09-30 18:15:17 +02002829 if ((r = si_generate_gs_copy_shader(sscreen, &si_shader_ctx,
2830 shader, dump))) {
Michel Dänzer404b29d2013-11-21 16:45:28 +09002831 free(shader->gs_copy_shader);
2832 shader->gs_copy_shader = NULL;
2833 goto out;
2834 }
2835 }
2836
Tom Stellarda75c6162012-01-06 17:38:37 -05002837 tgsi_parse_free(&si_shader_ctx.parse);
2838
Michel Dänzer404b29d2013-11-21 16:45:28 +09002839out:
Marek Olšákee2a8182014-07-07 23:27:19 +02002840 for (int i = 0; i < SI_NUM_CONST_BUFFERS; i++)
Marek Olšák2fd42002013-10-25 11:45:47 +02002841 FREE(si_shader_ctx.constants[i]);
Tom Stellarda75c6162012-01-06 17:38:37 -05002842
Tom Stellard302f53d2012-10-25 13:50:10 -04002843 return r;
Tom Stellarda75c6162012-01-06 17:38:37 -05002844}
2845
Marek Olšák2774abd2014-09-16 18:45:33 +02002846void si_shader_destroy(struct pipe_context *ctx, struct si_shader *shader)
Tom Stellarda75c6162012-01-06 17:38:37 -05002847{
Marek Olšákdc05a9e2014-09-18 23:48:04 +02002848 if (shader->gs_copy_shader)
2849 si_shader_destroy(ctx, shader->gs_copy_shader);
2850
Marek Olšáka81c3e02013-08-14 01:04:39 +02002851 r600_resource_reference(&shader->bo, NULL);
Marek Olšákdc05a9e2014-09-18 23:48:04 +02002852 r600_resource_reference(&shader->scratch_bo, NULL);
Tom Stellarda75c6162012-01-06 17:38:37 -05002853}