st/glsl_to_nir: call gl_nir_lower_buffers() a little later
[mesa.git] / src / mesa / state_tracker / st_glsl_to_nir.cpp
1 /*
2 * Copyright © 2015 Red Hat
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 FROM,
20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21 * SOFTWARE.
22 */
23
24 #include "st_nir.h"
25
26 #include "pipe/p_defines.h"
27 #include "pipe/p_screen.h"
28 #include "pipe/p_context.h"
29
30 #include "program/program.h"
31 #include "program/prog_statevars.h"
32 #include "program/prog_parameter.h"
33 #include "program/ir_to_mesa.h"
34 #include "main/mtypes.h"
35 #include "main/errors.h"
36 #include "main/glspirv.h"
37 #include "main/shaderapi.h"
38 #include "main/uniforms.h"
39
40 #include "main/shaderobj.h"
41 #include "st_context.h"
42 #include "st_glsl_types.h"
43 #include "st_program.h"
44 #include "st_shader_cache.h"
45
46 #include "compiler/nir/nir.h"
47 #include "compiler/glsl_types.h"
48 #include "compiler/glsl/glsl_to_nir.h"
49 #include "compiler/glsl/gl_nir.h"
50 #include "compiler/glsl/gl_nir_linker.h"
51 #include "compiler/glsl/ir.h"
52 #include "compiler/glsl/ir_optimization.h"
53 #include "compiler/glsl/string_to_uint_map.h"
54
55 static int
56 type_size(const struct glsl_type *type)
57 {
58 return type->count_attribute_slots(false);
59 }
60
61 /* Depending on PIPE_CAP_TGSI_TEXCOORD (st->needs_texcoord_semantic) we
62 * may need to fix up varying slots so the glsl->nir path is aligned
63 * with the anything->tgsi->nir path.
64 */
65 static void
66 st_nir_fixup_varying_slots(struct st_context *st, struct exec_list *var_list)
67 {
68 if (st->needs_texcoord_semantic)
69 return;
70
71 nir_foreach_variable(var, var_list) {
72 if (var->data.location >= VARYING_SLOT_VAR0) {
73 var->data.location += 9;
74 } else if ((var->data.location >= VARYING_SLOT_TEX0) &&
75 (var->data.location <= VARYING_SLOT_TEX7)) {
76 var->data.location += VARYING_SLOT_VAR0 - VARYING_SLOT_TEX0;
77 }
78 }
79 }
80
81 /* input location assignment for VS inputs must be handled specially, so
82 * that it is aligned w/ st's vbo state.
83 * (This isn't the case with, for ex, FS inputs, which only need to agree
84 * on varying-slot w/ the VS outputs)
85 */
86 void
87 st_nir_assign_vs_in_locations(struct nir_shader *nir)
88 {
89 if (nir->info.stage != MESA_SHADER_VERTEX)
90 return;
91
92 bool removed_inputs = false;
93
94 nir->num_inputs = util_bitcount64(nir->info.inputs_read);
95 nir_foreach_variable_safe(var, &nir->inputs) {
96 /* NIR already assigns dual-slot inputs to two locations so all we have
97 * to do is compact everything down.
98 */
99 if (nir->info.inputs_read & BITFIELD64_BIT(var->data.location)) {
100 var->data.driver_location =
101 util_bitcount64(nir->info.inputs_read &
102 BITFIELD64_MASK(var->data.location));
103 } else {
104 /* Move unused input variables to the globals list (with no
105 * initialization), to avoid confusing drivers looking through the
106 * inputs array and expecting to find inputs with a driver_location
107 * set.
108 */
109 exec_node_remove(&var->node);
110 var->data.mode = nir_var_shader_temp;
111 exec_list_push_tail(&nir->globals, &var->node);
112 removed_inputs = true;
113 }
114 }
115
116 /* Re-lower global vars, to deal with any dead VS inputs. */
117 if (removed_inputs)
118 NIR_PASS_V(nir, nir_lower_global_vars_to_local);
119 }
120
121 static int
122 st_nir_lookup_parameter_index(struct gl_program *prog, nir_variable *var)
123 {
124 struct gl_program_parameter_list *params = prog->Parameters;
125
126 /* Lookup the first parameter that the uniform storage that match the
127 * variable location.
128 */
129 for (unsigned i = 0; i < params->NumParameters; i++) {
130 int index = params->Parameters[i].MainUniformStorageIndex;
131 if (index == var->data.location)
132 return i;
133 }
134
135 /* TODO: Handle this fallback for SPIR-V. We need this for GLSL e.g. in
136 * dEQP-GLES2.functional.uniform_api.random.3
137 */
138
139 /* is there a better way to do this? If we have something like:
140 *
141 * struct S {
142 * float f;
143 * vec4 v;
144 * };
145 * uniform S color;
146 *
147 * Then what we get in prog->Parameters looks like:
148 *
149 * 0: Name=color.f, Type=6, DataType=1406, Size=1
150 * 1: Name=color.v, Type=6, DataType=8b52, Size=4
151 *
152 * So the name doesn't match up and _mesa_lookup_parameter_index()
153 * fails. In this case just find the first matching "color.*"..
154 *
155 * Note for arrays you could end up w/ color[n].f, for example.
156 *
157 * glsl_to_tgsi works slightly differently in this regard. It is
158 * emitting something more low level, so it just translates the
159 * params list 1:1 to CONST[] regs. Going from GLSL IR to TGSI,
160 * it just calculates the additional offset of struct field members
161 * in glsl_to_tgsi_visitor::visit(ir_dereference_record *ir) or
162 * glsl_to_tgsi_visitor::visit(ir_dereference_array *ir). It never
163 * needs to work backwards to get base var loc from the param-list
164 * which already has them separated out.
165 */
166 if (!prog->sh.data->spirv) {
167 int namelen = strlen(var->name);
168 for (unsigned i = 0; i < params->NumParameters; i++) {
169 struct gl_program_parameter *p = &params->Parameters[i];
170 if ((strncmp(p->Name, var->name, namelen) == 0) &&
171 ((p->Name[namelen] == '.') || (p->Name[namelen] == '['))) {
172 return i;
173 }
174 }
175 }
176
177 return -1;
178 }
179
180 static void
181 st_nir_assign_uniform_locations(struct gl_context *ctx,
182 struct gl_program *prog,
183 struct exec_list *uniform_list)
184 {
185 int shaderidx = 0;
186 int imageidx = 0;
187
188 nir_foreach_variable(uniform, uniform_list) {
189 int loc;
190
191 /*
192 * UBO's have their own address spaces, so don't count them towards the
193 * number of global uniforms
194 */
195 if (uniform->data.mode == nir_var_mem_ubo || uniform->data.mode == nir_var_mem_ssbo)
196 continue;
197
198 const struct glsl_type *type = glsl_without_array(uniform->type);
199 if (!uniform->data.bindless && (type->is_sampler() || type->is_image())) {
200 if (type->is_sampler()) {
201 loc = shaderidx;
202 shaderidx += type_size(uniform->type);
203 } else {
204 loc = imageidx;
205 imageidx += type_size(uniform->type);
206 }
207 } else if (uniform->state_slots) {
208 const gl_state_index16 *const stateTokens = uniform->state_slots[0].tokens;
209 /* This state reference has already been setup by ir_to_mesa, but we'll
210 * get the same index back here.
211 */
212
213 unsigned comps;
214 if (glsl_type_is_struct_or_ifc(type)) {
215 comps = 4;
216 } else {
217 comps = glsl_get_vector_elements(type);
218 }
219
220 if (ctx->Const.PackedDriverUniformStorage) {
221 loc = _mesa_add_sized_state_reference(prog->Parameters,
222 stateTokens, comps, false);
223 loc = prog->Parameters->ParameterValueOffset[loc];
224 } else {
225 loc = _mesa_add_state_reference(prog->Parameters, stateTokens);
226 }
227 } else {
228 loc = st_nir_lookup_parameter_index(prog, uniform);
229
230 /* We need to check that loc is not -1 here before accessing the
231 * array. It can be negative for example when we have a struct that
232 * only contains opaque types.
233 */
234 if (loc >= 0 && ctx->Const.PackedDriverUniformStorage) {
235 loc = prog->Parameters->ParameterValueOffset[loc];
236 }
237 }
238
239 uniform->data.driver_location = loc;
240 }
241 }
242
243 void
244 st_nir_opts(nir_shader *nir)
245 {
246 bool progress;
247
248 do {
249 progress = false;
250
251 NIR_PASS_V(nir, nir_lower_vars_to_ssa);
252
253 /* Linking deals with unused inputs/outputs, but here we can remove
254 * things local to the shader in the hopes that we can cleanup other
255 * things. This pass will also remove variables with only stores, so we
256 * might be able to make progress after it.
257 */
258 NIR_PASS(progress, nir, nir_remove_dead_variables,
259 (nir_variable_mode)(nir_var_function_temp |
260 nir_var_shader_temp |
261 nir_var_mem_shared));
262
263 NIR_PASS(progress, nir, nir_opt_copy_prop_vars);
264 NIR_PASS(progress, nir, nir_opt_dead_write_vars);
265
266 if (nir->options->lower_to_scalar) {
267 NIR_PASS_V(nir, nir_lower_alu_to_scalar, NULL, NULL);
268 NIR_PASS_V(nir, nir_lower_phis_to_scalar);
269 }
270
271 NIR_PASS_V(nir, nir_lower_alu);
272 NIR_PASS_V(nir, nir_lower_pack);
273 NIR_PASS(progress, nir, nir_copy_prop);
274 NIR_PASS(progress, nir, nir_opt_remove_phis);
275 NIR_PASS(progress, nir, nir_opt_dce);
276 if (nir_opt_trivial_continues(nir)) {
277 progress = true;
278 NIR_PASS(progress, nir, nir_copy_prop);
279 NIR_PASS(progress, nir, nir_opt_dce);
280 }
281 NIR_PASS(progress, nir, nir_opt_if, false);
282 NIR_PASS(progress, nir, nir_opt_dead_cf);
283 NIR_PASS(progress, nir, nir_opt_cse);
284 NIR_PASS(progress, nir, nir_opt_peephole_select, 8, true, true);
285
286 NIR_PASS(progress, nir, nir_opt_algebraic);
287 NIR_PASS(progress, nir, nir_opt_constant_folding);
288
289 if (!nir->info.flrp_lowered) {
290 unsigned lower_flrp =
291 (nir->options->lower_flrp16 ? 16 : 0) |
292 (nir->options->lower_flrp32 ? 32 : 0) |
293 (nir->options->lower_flrp64 ? 64 : 0);
294
295 if (lower_flrp) {
296 bool lower_flrp_progress = false;
297
298 NIR_PASS(lower_flrp_progress, nir, nir_lower_flrp,
299 lower_flrp,
300 false /* always_precise */,
301 nir->options->lower_ffma);
302 if (lower_flrp_progress) {
303 NIR_PASS(progress, nir,
304 nir_opt_constant_folding);
305 progress = true;
306 }
307 }
308
309 /* Nothing should rematerialize any flrps, so we only need to do this
310 * lowering once.
311 */
312 nir->info.flrp_lowered = true;
313 }
314
315 NIR_PASS(progress, nir, nir_opt_undef);
316 NIR_PASS(progress, nir, nir_opt_conditional_discard);
317 if (nir->options->max_unroll_iterations) {
318 NIR_PASS(progress, nir, nir_opt_loop_unroll, (nir_variable_mode)0);
319 }
320 } while (progress);
321 }
322
323 static void
324 shared_type_info(const struct glsl_type *type, unsigned *size, unsigned *align)
325 {
326 assert(glsl_type_is_vector_or_scalar(type));
327
328 uint32_t comp_size = glsl_type_is_boolean(type)
329 ? 4 : glsl_get_bit_size(type) / 8;
330 unsigned length = glsl_get_vector_elements(type);
331 *size = comp_size * length,
332 *align = comp_size * (length == 3 ? 4 : length);
333 }
334
335 /* First third of converting glsl_to_nir.. this leaves things in a pre-
336 * nir_lower_io state, so that shader variants can more easily insert/
337 * replace variables, etc.
338 */
339 static void
340 st_nir_preprocess(struct st_context *st, struct gl_program *prog,
341 struct gl_shader_program *shader_program,
342 gl_shader_stage stage)
343 {
344 struct pipe_screen *screen = st->pipe->screen;
345 const nir_shader_compiler_options *options =
346 st->ctx->Const.ShaderCompilerOptions[prog->info.stage].NirOptions;
347 assert(options);
348 nir_shader *nir = prog->nir;
349
350 /* Set the next shader stage hint for VS and TES. */
351 if (!nir->info.separate_shader &&
352 (nir->info.stage == MESA_SHADER_VERTEX ||
353 nir->info.stage == MESA_SHADER_TESS_EVAL)) {
354
355 unsigned prev_stages = (1 << (prog->info.stage + 1)) - 1;
356 unsigned stages_mask =
357 ~prev_stages & shader_program->data->linked_stages;
358
359 nir->info.next_stage = stages_mask ?
360 (gl_shader_stage) u_bit_scan(&stages_mask) : MESA_SHADER_FRAGMENT;
361 } else {
362 nir->info.next_stage = MESA_SHADER_FRAGMENT;
363 }
364
365 nir_shader_gather_info(nir, nir_shader_get_entrypoint(nir));
366 if (!st->ctx->SoftFP64 && nir->info.uses_64bit &&
367 (options->lower_doubles_options & nir_lower_fp64_full_software) != 0) {
368 st->ctx->SoftFP64 = glsl_float64_funcs_to_nir(st->ctx, options);
369 }
370
371 nir_variable_mode mask =
372 (nir_variable_mode) (nir_var_shader_in | nir_var_shader_out);
373 nir_remove_dead_variables(nir, mask);
374
375 if (options->lower_all_io_to_temps ||
376 nir->info.stage == MESA_SHADER_VERTEX ||
377 nir->info.stage == MESA_SHADER_GEOMETRY) {
378 NIR_PASS_V(nir, nir_lower_io_to_temporaries,
379 nir_shader_get_entrypoint(nir),
380 true, true);
381 } else if (nir->info.stage == MESA_SHADER_FRAGMENT ||
382 !screen->get_param(screen, PIPE_CAP_TGSI_CAN_READ_OUTPUTS)) {
383 NIR_PASS_V(nir, nir_lower_io_to_temporaries,
384 nir_shader_get_entrypoint(nir),
385 true, false);
386 }
387
388 NIR_PASS_V(nir, nir_lower_global_vars_to_local);
389 NIR_PASS_V(nir, nir_split_var_copies);
390 NIR_PASS_V(nir, nir_lower_var_copies);
391
392 if (options->lower_to_scalar) {
393 NIR_PASS_V(nir, nir_lower_alu_to_scalar, NULL, NULL);
394 }
395
396 /* before buffers and vars_to_ssa */
397 NIR_PASS_V(nir, gl_nir_lower_bindless_images);
398
399 /* TODO: Change GLSL to not lower shared memory. */
400 if (prog->nir->info.stage == MESA_SHADER_COMPUTE &&
401 shader_program->data->spirv) {
402 NIR_PASS_V(prog->nir, nir_lower_vars_to_explicit_types,
403 nir_var_mem_shared, shared_type_info);
404 NIR_PASS_V(prog->nir, nir_lower_explicit_io,
405 nir_var_mem_shared, nir_address_format_32bit_offset);
406 }
407
408 /* Do a round of constant folding to clean up address calculations */
409 NIR_PASS_V(nir, nir_opt_constant_folding);
410 }
411
412 /* Second third of converting glsl_to_nir. This creates uniforms, gathers
413 * info on varyings, etc after NIR link time opts have been applied.
414 */
415 static void
416 st_glsl_to_nir_post_opts(struct st_context *st, struct gl_program *prog,
417 struct gl_shader_program *shader_program)
418 {
419 nir_shader *nir = prog->nir;
420
421 /* Make a pass over the IR to add state references for any built-in
422 * uniforms that are used. This has to be done now (during linking).
423 * Code generation doesn't happen until the first time this shader is
424 * used for rendering. Waiting until then to generate the parameters is
425 * too late. At that point, the values for the built-in uniforms won't
426 * get sent to the shader.
427 */
428 nir_foreach_variable(var, &nir->uniforms) {
429 const nir_state_slot *const slots = var->state_slots;
430 if (slots != NULL) {
431 const struct glsl_type *type = glsl_without_array(var->type);
432 for (unsigned int i = 0; i < var->num_state_slots; i++) {
433 unsigned comps;
434 if (glsl_type_is_struct_or_ifc(type)) {
435 /* Builtin struct require specical handling for now we just
436 * make all members vec4. See st_nir_lower_builtin.
437 */
438 comps = 4;
439 } else {
440 comps = glsl_get_vector_elements(type);
441 }
442
443 if (st->ctx->Const.PackedDriverUniformStorage) {
444 _mesa_add_sized_state_reference(prog->Parameters,
445 slots[i].tokens,
446 comps, false);
447 } else {
448 _mesa_add_state_reference(prog->Parameters,
449 slots[i].tokens);
450 }
451 }
452 }
453 }
454
455 /* Avoid reallocation of the program parameter list, because the uniform
456 * storage is only associated with the original parameter list.
457 * This should be enough for Bitmap and DrawPixels constants.
458 */
459 _mesa_reserve_parameter_storage(prog->Parameters, 8);
460
461 /* This has to be done last. Any operation the can cause
462 * prog->ParameterValues to get reallocated (e.g., anything that adds a
463 * program constant) has to happen before creating this linkage.
464 */
465 _mesa_associate_uniform_storage(st->ctx, shader_program, prog);
466
467 st_set_prog_affected_state_flags(prog);
468
469 /* None of the builtins being lowered here can be produced by SPIR-V. See
470 * _mesa_builtin_uniform_desc.
471 */
472 if (!shader_program->data->spirv)
473 NIR_PASS_V(nir, st_nir_lower_builtin);
474
475 NIR_PASS_V(nir, gl_nir_lower_atomics, shader_program, true);
476 NIR_PASS_V(nir, nir_opt_intrinsics);
477
478 /* Lower 64-bit ops. */
479 if (nir->options->lower_int64_options ||
480 nir->options->lower_doubles_options) {
481 bool lowered_64bit_ops = false;
482 if (nir->options->lower_doubles_options) {
483 NIR_PASS(lowered_64bit_ops, nir, nir_lower_doubles,
484 st->ctx->SoftFP64, nir->options->lower_doubles_options);
485 }
486 if (nir->options->lower_int64_options) {
487 NIR_PASS(lowered_64bit_ops, nir, nir_lower_int64,
488 nir->options->lower_int64_options);
489 }
490
491 if (lowered_64bit_ops)
492 st_nir_opts(nir);
493 }
494
495 nir_variable_mode mask = (nir_variable_mode)
496 (nir_var_shader_in | nir_var_shader_out | nir_var_function_temp );
497 nir_remove_dead_variables(nir, mask);
498
499 NIR_PASS_V(nir, nir_lower_atomics_to_ssbo,
500 st->ctx->Const.Program[nir->info.stage].MaxAtomicBuffers);
501
502 st_finalize_nir_before_variants(nir);
503
504 if (st->allow_st_finalize_nir_twice)
505 st_finalize_nir(st, prog, shader_program, nir, true);
506
507 if (st->ctx->_Shader->Flags & GLSL_DUMP) {
508 _mesa_log("\n");
509 _mesa_log("NIR IR for linked %s program %d:\n",
510 _mesa_shader_stage_to_string(prog->info.stage),
511 shader_program->Name);
512 nir_print_shader(nir, _mesa_get_log_file());
513 _mesa_log("\n\n");
514 }
515 }
516
517 static void
518 st_nir_vectorize_io(nir_shader *producer, nir_shader *consumer)
519 {
520 NIR_PASS_V(producer, nir_lower_io_to_vector, nir_var_shader_out);
521 NIR_PASS_V(producer, nir_opt_combine_stores, nir_var_shader_out);
522 NIR_PASS_V(consumer, nir_lower_io_to_vector, nir_var_shader_in);
523
524 if ((producer)->info.stage != MESA_SHADER_TESS_CTRL) {
525 /* Calling lower_io_to_vector creates output variable writes with
526 * write-masks. We only support these for TCS outputs, so for other
527 * stages, we need to call nir_lower_io_to_temporaries to get rid of
528 * them. This, in turn, creates temporary variables and extra
529 * copy_deref intrinsics that we need to clean up.
530 */
531 NIR_PASS_V(producer, nir_lower_io_to_temporaries,
532 nir_shader_get_entrypoint(producer), true, false);
533 NIR_PASS_V(producer, nir_lower_global_vars_to_local);
534 NIR_PASS_V(producer, nir_split_var_copies);
535 NIR_PASS_V(producer, nir_lower_var_copies);
536 }
537 }
538
539 static void
540 st_nir_link_shaders(nir_shader *producer, nir_shader *consumer)
541 {
542 if (producer->options->lower_to_scalar) {
543 NIR_PASS_V(producer, nir_lower_io_to_scalar_early, nir_var_shader_out);
544 NIR_PASS_V(consumer, nir_lower_io_to_scalar_early, nir_var_shader_in);
545 }
546
547 nir_lower_io_arrays_to_elements(producer, consumer);
548
549 st_nir_opts(producer);
550 st_nir_opts(consumer);
551
552 if (nir_link_opt_varyings(producer, consumer))
553 st_nir_opts(consumer);
554
555 NIR_PASS_V(producer, nir_remove_dead_variables, nir_var_shader_out);
556 NIR_PASS_V(consumer, nir_remove_dead_variables, nir_var_shader_in);
557
558 if (nir_remove_unused_varyings(producer, consumer)) {
559 NIR_PASS_V(producer, nir_lower_global_vars_to_local);
560 NIR_PASS_V(consumer, nir_lower_global_vars_to_local);
561
562 st_nir_opts(producer);
563 st_nir_opts(consumer);
564
565 /* Optimizations can cause varyings to become unused.
566 * nir_compact_varyings() depends on all dead varyings being removed so
567 * we need to call nir_remove_dead_variables() again here.
568 */
569 NIR_PASS_V(producer, nir_remove_dead_variables, nir_var_shader_out);
570 NIR_PASS_V(consumer, nir_remove_dead_variables, nir_var_shader_in);
571 }
572 }
573
574 static void
575 st_lower_patch_vertices_in(struct gl_shader_program *shader_prog)
576 {
577 struct gl_linked_shader *linked_tcs =
578 shader_prog->_LinkedShaders[MESA_SHADER_TESS_CTRL];
579 struct gl_linked_shader *linked_tes =
580 shader_prog->_LinkedShaders[MESA_SHADER_TESS_EVAL];
581
582 /* If we have a TCS and TES linked together, lower TES patch vertices. */
583 if (linked_tcs && linked_tes) {
584 nir_shader *tcs_nir = linked_tcs->Program->nir;
585 nir_shader *tes_nir = linked_tes->Program->nir;
586
587 /* The TES input vertex count is the TCS output vertex count,
588 * lower TES gl_PatchVerticesIn to a constant.
589 */
590 uint32_t tes_patch_verts = tcs_nir->info.tess.tcs_vertices_out;
591 NIR_PASS_V(tes_nir, nir_lower_patch_vertices, tes_patch_verts, NULL);
592 }
593 }
594
595 extern "C" {
596
597 void
598 st_nir_lower_wpos_ytransform(struct nir_shader *nir,
599 struct gl_program *prog,
600 struct pipe_screen *pscreen)
601 {
602 if (nir->info.stage != MESA_SHADER_FRAGMENT)
603 return;
604
605 static const gl_state_index16 wposTransformState[STATE_LENGTH] = {
606 STATE_INTERNAL, STATE_FB_WPOS_Y_TRANSFORM
607 };
608 nir_lower_wpos_ytransform_options wpos_options = { { 0 } };
609
610 memcpy(wpos_options.state_tokens, wposTransformState,
611 sizeof(wpos_options.state_tokens));
612 wpos_options.fs_coord_origin_upper_left =
613 pscreen->get_param(pscreen,
614 PIPE_CAP_TGSI_FS_COORD_ORIGIN_UPPER_LEFT);
615 wpos_options.fs_coord_origin_lower_left =
616 pscreen->get_param(pscreen,
617 PIPE_CAP_TGSI_FS_COORD_ORIGIN_LOWER_LEFT);
618 wpos_options.fs_coord_pixel_center_integer =
619 pscreen->get_param(pscreen,
620 PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_INTEGER);
621 wpos_options.fs_coord_pixel_center_half_integer =
622 pscreen->get_param(pscreen,
623 PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_HALF_INTEGER);
624
625 if (nir_lower_wpos_ytransform(nir, &wpos_options)) {
626 nir_validate_shader(nir, "after nir_lower_wpos_ytransform");
627 _mesa_add_state_reference(prog->Parameters, wposTransformState);
628 }
629 }
630
631 bool
632 st_link_nir(struct gl_context *ctx,
633 struct gl_shader_program *shader_program)
634 {
635 struct st_context *st = st_context(ctx);
636 struct gl_linked_shader *linked_shader[MESA_SHADER_STAGES];
637 unsigned num_shaders = 0;
638
639 for (unsigned i = 0; i < MESA_SHADER_STAGES; i++) {
640 if (shader_program->_LinkedShaders[i])
641 linked_shader[num_shaders++] = shader_program->_LinkedShaders[i];
642 }
643
644 for (unsigned i = 0; i < num_shaders; i++) {
645 struct gl_linked_shader *shader = linked_shader[i];
646 const nir_shader_compiler_options *options =
647 st->ctx->Const.ShaderCompilerOptions[shader->Stage].NirOptions;
648 struct gl_program *prog = shader->Program;
649 struct st_program *stp = (struct st_program *)prog;
650
651 _mesa_copy_linked_program_data(shader_program, shader);
652
653 assert(!prog->nir);
654 stp->shader_program = shader_program;
655 stp->state.type = PIPE_SHADER_IR_NIR;
656
657 if (shader_program->data->spirv) {
658 prog->Parameters = _mesa_new_parameter_list();
659 /* Parameters will be filled during NIR linking. */
660
661 prog->nir = _mesa_spirv_to_nir(ctx, shader_program, shader->Stage, options);
662 } else {
663 validate_ir_tree(shader->ir);
664
665 prog->Parameters = _mesa_new_parameter_list();
666 _mesa_generate_parameters_list_for_uniforms(ctx, shader_program, shader,
667 prog->Parameters);
668
669 if (ctx->_Shader->Flags & GLSL_DUMP) {
670 _mesa_log("\n");
671 _mesa_log("GLSL IR for linked %s program %d:\n",
672 _mesa_shader_stage_to_string(shader->Stage),
673 shader_program->Name);
674 _mesa_print_ir(_mesa_get_log_file(), shader->ir, NULL);
675 _mesa_log("\n\n");
676 }
677
678 prog->ExternalSamplersUsed = gl_external_samplers(prog);
679 _mesa_update_shader_textures_used(shader_program, prog);
680
681 prog->nir = glsl_to_nir(st->ctx, shader_program, shader->Stage, options);
682 st_nir_preprocess(st, prog, shader_program, shader->Stage);
683 }
684
685 if (options->lower_to_scalar) {
686 NIR_PASS_V(shader->Program->nir, nir_lower_load_const_to_scalar);
687 }
688 }
689
690 st_lower_patch_vertices_in(shader_program);
691
692 /* For SPIR-V, we have to perform the NIR linking before applying
693 * st_nir_preprocess.
694 */
695 if (shader_program->data->spirv) {
696 static const gl_nir_linker_options opts = {
697 true /*fill_parameters */
698 };
699 if (!gl_nir_link(ctx, shader_program, &opts))
700 return GL_FALSE;
701
702 nir_build_program_resource_list(ctx, shader_program);
703
704 for (unsigned i = 0; i < num_shaders; i++) {
705 struct gl_linked_shader *shader = linked_shader[i];
706 struct gl_program *prog = shader->Program;
707
708 prog->ExternalSamplersUsed = gl_external_samplers(prog);
709 _mesa_update_shader_textures_used(shader_program, prog);
710 st_nir_preprocess(st, prog, shader_program, shader->Stage);
711 }
712 }
713
714 /* Linking the stages in the opposite order (from fragment to vertex)
715 * ensures that inter-shader outputs written to in an earlier stage
716 * are eliminated if they are (transitively) not used in a later
717 * stage.
718 */
719 for (int i = num_shaders - 2; i >= 0; i--) {
720 st_nir_link_shaders(linked_shader[i]->Program->nir,
721 linked_shader[i + 1]->Program->nir);
722 }
723
724 for (unsigned i = 0; i < num_shaders; i++) {
725 struct gl_linked_shader *shader = linked_shader[i];
726 nir_shader *nir = shader->Program->nir;
727
728 NIR_PASS_V(nir, gl_nir_lower_buffers, shader_program);
729
730 /* Linked shaders are optimized in st_nir_link_shaders. Separate shaders
731 * and shaders with a fixed-func VS or FS are optimized here.
732 */
733 if (num_shaders == 1)
734 st_nir_opts(nir);
735
736 /* Remap the locations to slots so those requiring two slots will occupy
737 * two locations. For instance, if we have in the IR code a dvec3 attr0 in
738 * location 0 and vec4 attr1 in location 1, in NIR attr0 will use
739 * locations/slots 0 and 1, and attr1 will use location/slot 2
740 */
741 if (nir->info.stage == MESA_SHADER_VERTEX && !shader_program->data->spirv)
742 nir_remap_dual_slot_attributes(nir, &shader->Program->DualSlotInputs);
743
744 NIR_PASS_V(nir, st_nir_lower_wpos_ytransform, shader->Program,
745 st->pipe->screen);
746
747 NIR_PASS_V(nir, nir_lower_system_values);
748 NIR_PASS_V(nir, nir_lower_clip_cull_distance_arrays);
749
750 nir_shader_gather_info(nir, nir_shader_get_entrypoint(nir));
751 shader->Program->info = nir->info;
752 if (shader->Stage == MESA_SHADER_VERTEX) {
753 /* NIR expands dual-slot inputs out to two locations. We need to
754 * compact things back down GL-style single-slot inputs to avoid
755 * confusing the state tracker.
756 */
757 shader->Program->info.inputs_read =
758 nir_get_single_slot_attribs_mask(nir->info.inputs_read,
759 shader->Program->DualSlotInputs);
760 }
761
762 if (i >= 1) {
763 struct gl_program *prev_shader = linked_shader[i - 1]->Program;
764
765 /* We can't use nir_compact_varyings with transform feedback, since
766 * the pipe_stream_output->output_register field is based on the
767 * pre-compacted driver_locations.
768 */
769 if (!(prev_shader->sh.LinkedTransformFeedback &&
770 prev_shader->sh.LinkedTransformFeedback->NumVarying > 0))
771 nir_compact_varyings(prev_shader->nir,
772 nir, ctx->API != API_OPENGL_COMPAT);
773
774 if (ctx->Const.ShaderCompilerOptions[shader->Stage].NirOptions->vectorize_io)
775 st_nir_vectorize_io(prev_shader->nir, nir);
776 }
777 }
778
779 for (unsigned i = 0; i < num_shaders; i++) {
780 struct gl_linked_shader *shader = linked_shader[i];
781 struct gl_program *prog = shader->Program;
782 struct st_program *stp = st_program(prog);
783 st_glsl_to_nir_post_opts(st, prog, shader_program);
784
785 /* Initialize st_vertex_program members. */
786 if (shader->Stage == MESA_SHADER_VERTEX)
787 st_prepare_vertex_program(stp);
788
789 /* Get pipe_stream_output_info. */
790 if (shader->Stage == MESA_SHADER_VERTEX ||
791 shader->Stage == MESA_SHADER_TESS_EVAL ||
792 shader->Stage == MESA_SHADER_GEOMETRY)
793 st_translate_stream_output_info(prog);
794
795 st_store_ir_in_disk_cache(st, prog, true);
796
797 st_release_variants(st, stp);
798 st_finalize_program(st, prog);
799
800 /* The GLSL IR won't be needed anymore. */
801 ralloc_free(shader->ir);
802 shader->ir = NULL;
803 }
804
805 return true;
806 }
807
808 void
809 st_nir_assign_varying_locations(struct st_context *st, nir_shader *nir)
810 {
811 if (nir->info.stage == MESA_SHADER_VERTEX) {
812 nir_assign_io_var_locations(&nir->outputs,
813 &nir->num_outputs,
814 nir->info.stage);
815 st_nir_fixup_varying_slots(st, &nir->outputs);
816 } else if (nir->info.stage == MESA_SHADER_GEOMETRY ||
817 nir->info.stage == MESA_SHADER_TESS_CTRL ||
818 nir->info.stage == MESA_SHADER_TESS_EVAL) {
819 nir_assign_io_var_locations(&nir->inputs,
820 &nir->num_inputs,
821 nir->info.stage);
822 st_nir_fixup_varying_slots(st, &nir->inputs);
823
824 nir_assign_io_var_locations(&nir->outputs,
825 &nir->num_outputs,
826 nir->info.stage);
827 st_nir_fixup_varying_slots(st, &nir->outputs);
828 } else if (nir->info.stage == MESA_SHADER_FRAGMENT) {
829 nir_assign_io_var_locations(&nir->inputs,
830 &nir->num_inputs,
831 nir->info.stage);
832 st_nir_fixup_varying_slots(st, &nir->inputs);
833 nir_assign_io_var_locations(&nir->outputs,
834 &nir->num_outputs,
835 nir->info.stage);
836 } else if (nir->info.stage == MESA_SHADER_COMPUTE) {
837 /* TODO? */
838 } else {
839 unreachable("invalid shader type");
840 }
841 }
842
843 void
844 st_nir_lower_samplers(struct pipe_screen *screen, nir_shader *nir,
845 struct gl_shader_program *shader_program,
846 struct gl_program *prog)
847 {
848 if (screen->get_param(screen, PIPE_CAP_NIR_SAMPLERS_AS_DEREF))
849 NIR_PASS_V(nir, gl_nir_lower_samplers_as_deref, shader_program);
850 else
851 NIR_PASS_V(nir, gl_nir_lower_samplers, shader_program);
852
853 if (prog) {
854 prog->info.textures_used = nir->info.textures_used;
855 prog->info.textures_used_by_txf = nir->info.textures_used_by_txf;
856 }
857 }
858
859 /* Last third of preparing nir from glsl, which happens after shader
860 * variant lowering.
861 */
862 void
863 st_finalize_nir(struct st_context *st, struct gl_program *prog,
864 struct gl_shader_program *shader_program,
865 nir_shader *nir, bool finalize_by_driver)
866 {
867 struct pipe_screen *screen = st->pipe->screen;
868
869 NIR_PASS_V(nir, nir_split_var_copies);
870 NIR_PASS_V(nir, nir_lower_var_copies);
871
872 st_nir_assign_varying_locations(st, nir);
873 st_nir_assign_uniform_locations(st->ctx, prog,
874 &nir->uniforms);
875
876 /* Set num_uniforms in number of attribute slots (vec4s) */
877 nir->num_uniforms = DIV_ROUND_UP(prog->Parameters->NumParameterValues, 4);
878
879 if (st->ctx->Const.PackedDriverUniformStorage) {
880 NIR_PASS_V(nir, nir_lower_io, nir_var_uniform, st_glsl_type_dword_size,
881 (nir_lower_io_options)0);
882 NIR_PASS_V(nir, nir_lower_uniforms_to_ubo, 4);
883 } else {
884 NIR_PASS_V(nir, nir_lower_io, nir_var_uniform, st_glsl_uniforms_type_size,
885 (nir_lower_io_options)0);
886 }
887
888 st_nir_lower_samplers(screen, nir, shader_program, prog);
889
890 if (finalize_by_driver && screen->finalize_nir)
891 screen->finalize_nir(screen, nir, false);
892 }
893
894 } /* extern "C" */