st/glsl_to_nir: use nir_shader_gather_info()
[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/shaderapi.h"
37 #include "main/uniforms.h"
38
39 #include "st_context.h"
40 #include "st_program.h"
41
42 #include "compiler/nir/nir.h"
43 #include "compiler/glsl_types.h"
44 #include "compiler/glsl/glsl_to_nir.h"
45 #include "compiler/glsl/ir.h"
46 #include "compiler/glsl/string_to_uint_map.h"
47
48
49 static int
50 type_size(const struct glsl_type *type)
51 {
52 return type->count_attribute_slots(false);
53 }
54
55 /* Depending on PIPE_CAP_TGSI_TEXCOORD (st->needs_texcoord_semantic) we
56 * may need to fix up varying slots so the glsl->nir path is aligned
57 * with the anything->tgsi->nir path.
58 */
59 static void
60 st_nir_fixup_varying_slots(struct st_context *st, struct exec_list *var_list)
61 {
62 if (st->needs_texcoord_semantic)
63 return;
64
65 nir_foreach_variable(var, var_list) {
66 if (var->data.location >= VARYING_SLOT_VAR0) {
67 var->data.location += 9;
68 } else if ((var->data.location >= VARYING_SLOT_TEX0) &&
69 (var->data.location <= VARYING_SLOT_TEX7)) {
70 var->data.location += VARYING_SLOT_VAR0 - VARYING_SLOT_TEX0;
71 }
72 }
73 }
74
75 /* input location assignment for VS inputs must be handled specially, so
76 * that it is aligned w/ st's vbo state.
77 * (This isn't the case with, for ex, FS inputs, which only need to agree
78 * on varying-slot w/ the VS outputs)
79 */
80 static void
81 st_nir_assign_vs_in_locations(struct gl_program *prog, nir_shader *nir)
82 {
83 unsigned attr, num_inputs = 0;
84 unsigned input_to_index[VERT_ATTRIB_MAX] = {0};
85
86 /* TODO de-duplicate w/ similar code in st_translate_vertex_program()? */
87 for (attr = 0; attr < VERT_ATTRIB_MAX; attr++) {
88 if ((prog->info.inputs_read & BITFIELD64_BIT(attr)) != 0) {
89 input_to_index[attr] = num_inputs;
90 num_inputs++;
91 if ((prog->info.double_inputs_read & BITFIELD64_BIT(attr)) != 0) {
92 /* add placeholder for second part of a double attribute */
93 num_inputs++;
94 }
95 } else {
96 input_to_index[attr] = ~0;
97 }
98 }
99
100 /* bit of a hack, mirroring st_translate_vertex_program */
101 input_to_index[VERT_ATTRIB_EDGEFLAG] = num_inputs;
102
103 nir->num_inputs = 0;
104 nir_foreach_variable_safe(var, &nir->inputs) {
105 attr = var->data.location;
106 assert(attr < ARRAY_SIZE(input_to_index));
107
108 if (input_to_index[attr] != ~0u) {
109 var->data.driver_location = input_to_index[attr];
110 nir->num_inputs++;
111 } else {
112 /* Move unused input variables to the globals list (with no
113 * initialization), to avoid confusing drivers looking through the
114 * inputs array and expecting to find inputs with a driver_location
115 * set.
116 */
117 exec_node_remove(&var->node);
118 var->data.mode = nir_var_global;
119 exec_list_push_tail(&nir->globals, &var->node);
120 }
121 }
122 }
123
124 static int
125 st_nir_lookup_parameter_index(const struct gl_program_parameter_list *params,
126 const char *name)
127 {
128 int loc = _mesa_lookup_parameter_index(params, name);
129
130 /* is there a better way to do this? If we have something like:
131 *
132 * struct S {
133 * float f;
134 * vec4 v;
135 * };
136 * uniform S color;
137 *
138 * Then what we get in prog->Parameters looks like:
139 *
140 * 0: Name=color.f, Type=6, DataType=1406, Size=1
141 * 1: Name=color.v, Type=6, DataType=8b52, Size=4
142 *
143 * So the name doesn't match up and _mesa_lookup_parameter_index()
144 * fails. In this case just find the first matching "color.*"..
145 *
146 * Note for arrays you could end up w/ color[n].f, for example.
147 *
148 * glsl_to_tgsi works slightly differently in this regard. It is
149 * emitting something more low level, so it just translates the
150 * params list 1:1 to CONST[] regs. Going from GLSL IR to TGSI,
151 * it just calculates the additional offset of struct field members
152 * in glsl_to_tgsi_visitor::visit(ir_dereference_record *ir) or
153 * glsl_to_tgsi_visitor::visit(ir_dereference_array *ir). It never
154 * needs to work backwards to get base var loc from the param-list
155 * which already has them separated out.
156 */
157 if (loc < 0) {
158 int namelen = strlen(name);
159 for (unsigned i = 0; i < params->NumParameters; i++) {
160 struct gl_program_parameter *p = &params->Parameters[i];
161 if ((strncmp(p->Name, name, namelen) == 0) &&
162 ((p->Name[namelen] == '.') || (p->Name[namelen] == '['))) {
163 loc = i;
164 break;
165 }
166 }
167 }
168
169 return loc;
170 }
171
172 static void
173 st_nir_assign_uniform_locations(struct gl_program *prog,
174 struct gl_shader_program *shader_program,
175 struct exec_list *uniform_list, unsigned *size)
176 {
177 int max = 0;
178 int shaderidx = 0;
179
180 nir_foreach_variable(uniform, uniform_list) {
181 int loc;
182
183 /*
184 * UBO's have their own address spaces, so don't count them towards the
185 * number of global uniforms
186 */
187 if ((uniform->data.mode == nir_var_uniform || uniform->data.mode == nir_var_shader_storage) &&
188 uniform->interface_type != NULL)
189 continue;
190
191 if (uniform->type->is_sampler()) {
192 unsigned val = 0;
193 bool found = shader_program->UniformHash->get(val, uniform->name);
194 loc = shaderidx++;
195 assert(found);
196 (void) found; /* silence unused var warning */
197 /* this ensure that nir_lower_samplers looks at the correct
198 * shader_program->UniformStorage[location]:
199 */
200 uniform->data.location = val;
201 } else if (strncmp(uniform->name, "gl_", 3) == 0) {
202 const gl_state_index *const stateTokens = (gl_state_index *)uniform->state_slots[0].tokens;
203 /* This state reference has already been setup by ir_to_mesa, but we'll
204 * get the same index back here.
205 */
206 loc = _mesa_add_state_reference(prog->Parameters, stateTokens);
207 } else {
208 loc = st_nir_lookup_parameter_index(prog->Parameters, uniform->name);
209 }
210
211 uniform->data.driver_location = loc;
212
213 max = MAX2(max, loc + type_size(uniform->type));
214 }
215 *size = max;
216 }
217
218 extern "C" {
219
220 /* First half of converting glsl_to_nir.. this leaves things in a pre-
221 * nir_lower_io state, so that shader variants can more easily insert/
222 * replace variables, etc.
223 */
224 nir_shader *
225 st_glsl_to_nir(struct st_context *st, struct gl_program *prog,
226 struct gl_shader_program *shader_program,
227 gl_shader_stage stage)
228 {
229 struct pipe_screen *pscreen = st->pipe->screen;
230 enum pipe_shader_type ptarget = pipe_shader_type_from_mesa(stage);
231 const nir_shader_compiler_options *options;
232 nir_shader *nir;
233
234 assert(pscreen->get_compiler_options); /* drivers using NIR must implement this */
235
236 options = (const nir_shader_compiler_options *)
237 pscreen->get_compiler_options(pscreen, PIPE_SHADER_IR_NIR, ptarget);
238 assert(options);
239
240 if (prog->nir)
241 return prog->nir;
242
243 nir = glsl_to_nir(shader_program, stage, options);
244
245 /* Make a pass over the IR to add state references for any built-in
246 * uniforms that are used. This has to be done now (during linking).
247 * Code generation doesn't happen until the first time this shader is
248 * used for rendering. Waiting until then to generate the parameters is
249 * too late. At that point, the values for the built-in uniforms won't
250 * get sent to the shader.
251 */
252 nir_foreach_variable(var, &nir->uniforms) {
253 if (strncmp(var->name, "gl_", 3) == 0) {
254 const nir_state_slot *const slots = var->state_slots;
255 assert(var->state_slots != NULL);
256
257 for (unsigned int i = 0; i < var->num_state_slots; i++) {
258 _mesa_add_state_reference(prog->Parameters,
259 (gl_state_index *)slots[i].tokens);
260 }
261 }
262 }
263
264 /* Avoid reallocation of the program parameter list, because the uniform
265 * storage is only associated with the original parameter list.
266 * This should be enough for Bitmap and DrawPixels constants.
267 */
268 _mesa_reserve_parameter_storage(prog->Parameters, 8);
269
270 /* This has to be done last. Any operation the can cause
271 * prog->ParameterValues to get reallocated (e.g., anything that adds a
272 * program constant) has to happen before creating this linkage.
273 */
274 _mesa_associate_uniform_storage(st->ctx, shader_program, prog, true);
275
276 NIR_PASS_V(nir, nir_lower_io_to_temporaries,
277 nir_shader_get_entrypoint(nir),
278 true, true);
279 NIR_PASS_V(nir, nir_lower_global_vars_to_local);
280 NIR_PASS_V(nir, nir_split_var_copies);
281 NIR_PASS_V(nir, nir_lower_var_copies);
282
283 /* fragment shaders may need : */
284 if (stage == MESA_SHADER_FRAGMENT) {
285 static const gl_state_index wposTransformState[STATE_LENGTH] = {
286 STATE_INTERNAL, STATE_FB_WPOS_Y_TRANSFORM
287 };
288 nir_lower_wpos_ytransform_options wpos_options = { { 0 } };
289 struct pipe_screen *pscreen = st->pipe->screen;
290
291 memcpy(wpos_options.state_tokens, wposTransformState,
292 sizeof(wpos_options.state_tokens));
293 wpos_options.fs_coord_origin_upper_left =
294 pscreen->get_param(pscreen, PIPE_CAP_TGSI_FS_COORD_ORIGIN_UPPER_LEFT);
295 wpos_options.fs_coord_origin_lower_left =
296 pscreen->get_param(pscreen, PIPE_CAP_TGSI_FS_COORD_ORIGIN_LOWER_LEFT);
297 wpos_options.fs_coord_pixel_center_integer =
298 pscreen->get_param(pscreen, PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_INTEGER);
299 wpos_options.fs_coord_pixel_center_half_integer =
300 pscreen->get_param(pscreen, PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_HALF_INTEGER);
301
302 if (nir_lower_wpos_ytransform(nir, &wpos_options)) {
303 nir_validate_shader(nir);
304 _mesa_add_state_reference(prog->Parameters, wposTransformState);
305 }
306 }
307
308 NIR_PASS_V(nir, nir_lower_system_values);
309
310 nir_shader_gather_info(nir, nir_shader_get_entrypoint(nir));
311 prog->info = nir->info;
312
313 st_set_prog_affected_state_flags(prog);
314
315 NIR_PASS_V(nir, st_nir_lower_builtin);
316 NIR_PASS_V(nir, nir_lower_atomics, shader_program);
317
318 if (st->ctx->_Shader->Flags & GLSL_DUMP) {
319 _mesa_log("\n");
320 _mesa_log("NIR IR for linked %s program %d:\n",
321 _mesa_shader_stage_to_string(stage),
322 shader_program->Name);
323 nir_print_shader(nir, _mesa_get_log_file());
324 _mesa_log("\n\n");
325 }
326
327 prog->nir = nir;
328
329 return nir;
330 }
331
332 /* TODO any better helper somewhere to sort a list? */
333
334 static void
335 insert_sorted(struct exec_list *var_list, nir_variable *new_var)
336 {
337 nir_foreach_variable(var, var_list) {
338 if (var->data.location > new_var->data.location) {
339 exec_node_insert_node_before(&var->node, &new_var->node);
340 return;
341 }
342 }
343 exec_list_push_tail(var_list, &new_var->node);
344 }
345
346 static void
347 sort_varyings(struct exec_list *var_list)
348 {
349 struct exec_list new_list;
350 exec_list_make_empty(&new_list);
351 nir_foreach_variable_safe(var, var_list) {
352 exec_node_remove(&var->node);
353 insert_sorted(&new_list, var);
354 }
355 exec_list_move_nodes_to(&new_list, var_list);
356 }
357
358 /* Second half of preparing nir from glsl, which happens after shader
359 * variant lowering.
360 */
361 void
362 st_finalize_nir(struct st_context *st, struct gl_program *prog,
363 struct gl_shader_program *shader_program, nir_shader *nir)
364 {
365 struct pipe_screen *screen = st->pipe->screen;
366
367 NIR_PASS_V(nir, nir_split_var_copies);
368 NIR_PASS_V(nir, nir_lower_var_copies);
369 NIR_PASS_V(nir, nir_lower_io_types);
370
371 if (nir->info.stage == MESA_SHADER_VERTEX) {
372 /* Needs special handling so drvloc matches the vbo state: */
373 st_nir_assign_vs_in_locations(prog, nir);
374 /* Re-lower global vars, to deal with any dead VS inputs. */
375 NIR_PASS_V(nir, nir_lower_global_vars_to_local);
376
377 sort_varyings(&nir->outputs);
378 nir_assign_var_locations(&nir->outputs,
379 &nir->num_outputs,
380 type_size);
381 st_nir_fixup_varying_slots(st, &nir->outputs);
382 } else if (nir->info.stage == MESA_SHADER_FRAGMENT) {
383 sort_varyings(&nir->inputs);
384 nir_assign_var_locations(&nir->inputs,
385 &nir->num_inputs,
386 type_size);
387 st_nir_fixup_varying_slots(st, &nir->inputs);
388 nir_assign_var_locations(&nir->outputs,
389 &nir->num_outputs,
390 type_size);
391 } else if (nir->info.stage == MESA_SHADER_COMPUTE) {
392 /* TODO? */
393 } else {
394 unreachable("invalid shader type for tgsi bypass\n");
395 }
396
397 NIR_PASS_V(nir, nir_lower_atomics_to_ssbo,
398 st->ctx->Const.Program[nir->info.stage].MaxAtomicBuffers);
399
400 st_nir_assign_uniform_locations(prog, shader_program,
401 &nir->uniforms, &nir->num_uniforms);
402
403 if (screen->get_param(screen, PIPE_CAP_NIR_SAMPLERS_AS_DEREF))
404 NIR_PASS_V(nir, nir_lower_samplers_as_deref, shader_program);
405 else
406 NIR_PASS_V(nir, nir_lower_samplers, shader_program);
407 }
408
409 struct gl_program *
410 st_nir_get_mesa_program(struct gl_context *ctx,
411 struct gl_shader_program *shader_program,
412 struct gl_linked_shader *shader)
413 {
414 struct st_context *st = st_context(ctx);
415 struct gl_program *prog;
416
417 validate_ir_tree(shader->ir);
418
419 prog = shader->Program;
420
421 prog->Parameters = _mesa_new_parameter_list();
422
423 _mesa_copy_linked_program_data(shader_program, shader);
424 _mesa_generate_parameters_list_for_uniforms(ctx, shader_program, shader,
425 prog->Parameters);
426
427 if (ctx->_Shader->Flags & GLSL_DUMP) {
428 _mesa_log("\n");
429 _mesa_log("GLSL IR for linked %s program %d:\n",
430 _mesa_shader_stage_to_string(shader->Stage),
431 shader_program->Name);
432 _mesa_print_ir(_mesa_get_log_file(), shader->ir, NULL);
433 _mesa_log("\n\n");
434 }
435
436 prog->ExternalSamplersUsed = gl_external_samplers(prog);
437 _mesa_update_shader_textures_used(shader_program, prog);
438
439 struct st_vertex_program *stvp;
440 struct st_common_program *stp;
441 struct st_fragment_program *stfp;
442 struct st_compute_program *stcp;
443
444 switch (shader->Stage) {
445 case MESA_SHADER_VERTEX:
446 stvp = (struct st_vertex_program *)prog;
447 stvp->shader_program = shader_program;
448 break;
449 case MESA_SHADER_GEOMETRY:
450 case MESA_SHADER_TESS_CTRL:
451 case MESA_SHADER_TESS_EVAL:
452 stp = (struct st_common_program *)prog;
453 stp->shader_program = shader_program;
454 break;
455 case MESA_SHADER_FRAGMENT:
456 stfp = (struct st_fragment_program *)prog;
457 stfp->shader_program = shader_program;
458 break;
459 case MESA_SHADER_COMPUTE:
460 stcp = (struct st_compute_program *)prog;
461 stcp->shader_program = shader_program;
462 break;
463 default:
464 assert(!"should not be reached");
465 return NULL;
466 }
467
468 struct st_common_program *st_comm_prog = (struct st_common_program *)prog;
469 nir_shader *nir = st_glsl_to_nir(st, prog, shader_program, shader->Stage);
470 st_comm_prog->tgsi.type = PIPE_SHADER_IR_NIR;
471 st_comm_prog->tgsi.ir.nir = nir;
472
473 return prog;
474 }
475
476 } /* extern "C" */