compiler: Change shader_info->tes.vertex_order into a ccw boolean.
[mesa.git] / src / mesa / drivers / dri / i965 / brw_tes.c
1 /*
2 * Copyright © 2014 Intel Corporation
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 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * 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 NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21 * DEALINGS IN THE SOFTWARE.
22 */
23
24 /**
25 * \file brw_tes.c
26 *
27 * Tessellation evaluation shader state upload code.
28 */
29
30 #include "brw_context.h"
31 #include "brw_nir.h"
32 #include "brw_program.h"
33 #include "brw_shader.h"
34 #include "brw_state.h"
35 #include "program/prog_parameter.h"
36
37 static void
38 brw_tes_debug_recompile(struct brw_context *brw, struct gl_program *prog,
39 const struct brw_tes_prog_key *key)
40 {
41 struct brw_cache_item *c = NULL;
42 const struct brw_tes_prog_key *old_key = NULL;
43 bool found = false;
44
45 perf_debug("Recompiling tessellation evaluation shader for program %d\n",
46 prog->Id);
47
48 for (unsigned int i = 0; i < brw->cache.size; i++) {
49 for (c = brw->cache.items[i]; c; c = c->next) {
50 if (c->cache_id == BRW_CACHE_TES_PROG) {
51 old_key = c->key;
52
53 if (old_key->program_string_id == key->program_string_id)
54 break;
55 }
56 }
57 if (c)
58 break;
59 }
60
61 if (!c) {
62 perf_debug(" Didn't find previous compile in the shader cache for "
63 "debug\n");
64 return;
65 }
66
67 found |= brw_debug_recompile_sampler_key(brw, &old_key->tex, &key->tex);
68 found |= key_debug(brw, "inputs read", old_key->inputs_read,
69 key->inputs_read);
70 found |= key_debug(brw, "patch inputs read", old_key->patch_inputs_read,
71 key->patch_inputs_read);
72
73 if (!found) {
74 perf_debug(" Something else\n");
75 }
76 }
77
78 static bool
79 brw_codegen_tes_prog(struct brw_context *brw,
80 struct brw_program *tep,
81 struct brw_tes_prog_key *key)
82 {
83 const struct brw_compiler *compiler = brw->screen->compiler;
84 const struct gen_device_info *devinfo = &brw->screen->devinfo;
85 struct brw_stage_state *stage_state = &brw->tes.base;
86 nir_shader *nir = tep->program.nir;
87 struct brw_tes_prog_data prog_data;
88 bool start_busy = false;
89 double start_time = 0;
90
91 memset(&prog_data, 0, sizeof(prog_data));
92
93 brw_assign_common_binding_table_offsets(devinfo, &tep->program,
94 &prog_data.base.base, 0);
95
96 switch (tep->program.info.tes.spacing) {
97 case GL_EQUAL:
98 prog_data.partitioning = BRW_TESS_PARTITIONING_INTEGER;
99 break;
100 case GL_FRACTIONAL_ODD:
101 prog_data.partitioning = BRW_TESS_PARTITIONING_ODD_FRACTIONAL;
102 break;
103 case GL_FRACTIONAL_EVEN:
104 prog_data.partitioning = BRW_TESS_PARTITIONING_EVEN_FRACTIONAL;
105 break;
106 default:
107 unreachable("invalid domain shader spacing");
108 }
109
110 switch (tep->program.info.tes.primitive_mode) {
111 case GL_QUADS:
112 prog_data.domain = BRW_TESS_DOMAIN_QUAD;
113 break;
114 case GL_TRIANGLES:
115 prog_data.domain = BRW_TESS_DOMAIN_TRI;
116 break;
117 case GL_ISOLINES:
118 prog_data.domain = BRW_TESS_DOMAIN_ISOLINE;
119 break;
120 default:
121 unreachable("invalid domain shader primitive mode");
122 }
123
124 if (tep->program.info.tes.point_mode) {
125 prog_data.output_topology = BRW_TESS_OUTPUT_TOPOLOGY_POINT;
126 } else if (tep->program.info.tes.primitive_mode == GL_ISOLINES) {
127 prog_data.output_topology = BRW_TESS_OUTPUT_TOPOLOGY_LINE;
128 } else {
129 /* Hardware winding order is backwards from OpenGL */
130 prog_data.output_topology =
131 tep->program.info.tes.ccw ? BRW_TESS_OUTPUT_TOPOLOGY_TRI_CW
132 : BRW_TESS_OUTPUT_TOPOLOGY_TRI_CCW;
133 }
134
135 /* Allocate the references to the uniforms that will end up in the
136 * prog_data associated with the compiled program, and which will be freed
137 * by the state cache.
138 *
139 * Note: param_count needs to be num_uniform_components * 4, since we add
140 * padding around uniform values below vec4 size, so the worst case is that
141 * every uniform is a float which gets padded to the size of a vec4.
142 */
143 int param_count = nir->num_uniforms / 4;
144
145 prog_data.base.base.param =
146 rzalloc_array(NULL, const gl_constant_value *, param_count);
147 prog_data.base.base.pull_param =
148 rzalloc_array(NULL, const gl_constant_value *, param_count);
149 prog_data.base.base.image_param =
150 rzalloc_array(NULL, struct brw_image_param,
151 tep->program.info.num_images);
152 prog_data.base.base.nr_params = param_count;
153 prog_data.base.base.nr_image_params = tep->program.info.num_images;
154
155 brw_nir_setup_glsl_uniforms(nir, &tep->program, &prog_data.base.base,
156 compiler->scalar_stage[MESA_SHADER_TESS_EVAL]);
157
158 int st_index = -1;
159 if (unlikely(INTEL_DEBUG & DEBUG_SHADER_TIME))
160 st_index = brw_get_shader_time_index(brw, &tep->program, ST_TES, true);
161
162 if (unlikely(brw->perf_debug)) {
163 start_busy = brw->batch.last_bo && drm_intel_bo_busy(brw->batch.last_bo);
164 start_time = get_time();
165 }
166
167 void *mem_ctx = ralloc_context(NULL);
168 unsigned program_size;
169 char *error_str;
170 const unsigned *program =
171 brw_compile_tes(compiler, brw, mem_ctx, key, &prog_data, nir,
172 &tep->program, st_index, &program_size, &error_str);
173 if (program == NULL) {
174 tep->program.sh.data->LinkStatus = false;
175 ralloc_strcat(&tep->program.sh.data->InfoLog, error_str);
176
177 _mesa_problem(NULL, "Failed to compile tessellation evaluation shader: "
178 "%s\n", error_str);
179
180 ralloc_free(mem_ctx);
181 return false;
182 }
183
184 if (unlikely(brw->perf_debug)) {
185 if (tep->compiled_once) {
186 brw_tes_debug_recompile(brw, &tep->program, key);
187 }
188 if (start_busy && !drm_intel_bo_busy(brw->batch.last_bo)) {
189 perf_debug("TES compile took %.03f ms and stalled the GPU\n",
190 (get_time() - start_time) * 1000);
191 }
192 tep->compiled_once = true;
193 }
194
195 /* Scratch space is used for register spilling */
196 brw_alloc_stage_scratch(brw, stage_state,
197 prog_data.base.base.total_scratch,
198 devinfo->max_tes_threads);
199
200 brw_upload_cache(&brw->cache, BRW_CACHE_TES_PROG,
201 key, sizeof(*key),
202 program, program_size,
203 &prog_data, sizeof(prog_data),
204 &stage_state->prog_offset, &brw->tes.base.prog_data);
205 ralloc_free(mem_ctx);
206
207 return true;
208 }
209
210 void
211 brw_tes_populate_key(struct brw_context *brw,
212 struct brw_tes_prog_key *key)
213 {
214 struct brw_program *tcp = (struct brw_program *) brw->tess_ctrl_program;
215 struct brw_program *tep = (struct brw_program *) brw->tess_eval_program;
216 struct gl_program *prog = &tep->program;
217
218 uint64_t per_vertex_slots = prog->info.inputs_read;
219 uint32_t per_patch_slots = prog->info.patch_inputs_read;
220
221 memset(key, 0, sizeof(*key));
222
223 key->program_string_id = tep->id;
224
225 /* The TCS may have additional outputs which aren't read by the
226 * TES (possibly for cross-thread communication). These need to
227 * be stored in the Patch URB Entry as well.
228 */
229 if (tcp) {
230 struct gl_program *tcp_prog = &tcp->program;
231 per_vertex_slots |= tcp_prog->info.outputs_written &
232 ~(VARYING_BIT_TESS_LEVEL_INNER | VARYING_BIT_TESS_LEVEL_OUTER);
233 per_patch_slots |= tcp_prog->info.patch_outputs_written;
234 }
235
236 key->inputs_read = per_vertex_slots;
237 key->patch_inputs_read = per_patch_slots;
238
239 /* _NEW_TEXTURE */
240 brw_populate_sampler_prog_key_data(&brw->ctx, prog, &key->tex);
241 }
242
243 void
244 brw_upload_tes_prog(struct brw_context *brw)
245 {
246 struct brw_stage_state *stage_state = &brw->tes.base;
247 struct brw_tes_prog_key key;
248 /* BRW_NEW_TESS_PROGRAMS */
249 struct brw_program *tep = (struct brw_program *) brw->tess_eval_program;
250
251 if (!brw_state_dirty(brw,
252 _NEW_TEXTURE,
253 BRW_NEW_TESS_PROGRAMS))
254 return;
255
256 brw_tes_populate_key(brw, &key);
257
258 if (!brw_search_cache(&brw->cache, BRW_CACHE_TES_PROG,
259 &key, sizeof(key),
260 &stage_state->prog_offset,
261 &brw->tes.base.prog_data)) {
262 bool success = brw_codegen_tes_prog(brw, tep, &key);
263 assert(success);
264 (void)success;
265 }
266 }
267
268
269 bool
270 brw_tes_precompile(struct gl_context *ctx,
271 struct gl_shader_program *shader_prog,
272 struct gl_program *prog)
273 {
274 struct brw_context *brw = brw_context(ctx);
275 struct brw_tes_prog_key key;
276 uint32_t old_prog_offset = brw->tes.base.prog_offset;
277 struct brw_stage_prog_data *old_prog_data = brw->tes.base.prog_data;
278 bool success;
279
280 struct brw_program *btep = brw_program(prog);
281
282 memset(&key, 0, sizeof(key));
283
284 key.program_string_id = btep->id;
285 key.inputs_read = prog->nir->info->inputs_read;
286 key.patch_inputs_read = prog->nir->info->patch_inputs_read;
287
288 if (shader_prog->_LinkedShaders[MESA_SHADER_TESS_CTRL]) {
289 struct gl_program *tcp =
290 shader_prog->_LinkedShaders[MESA_SHADER_TESS_CTRL]->Program;
291 key.inputs_read |= tcp->nir->info->outputs_written &
292 ~(VARYING_BIT_TESS_LEVEL_INNER | VARYING_BIT_TESS_LEVEL_OUTER);
293 key.patch_inputs_read |= tcp->nir->info->patch_outputs_written;
294 }
295
296 brw_setup_tex_for_precompile(brw, &key.tex, prog);
297
298 success = brw_codegen_tes_prog(brw, btep, &key);
299
300 brw->tes.base.prog_offset = old_prog_offset;
301 brw->tes.base.prog_data = old_prog_data;
302
303 return success;
304 }