compiler/nir: Add support for variable initialization from a pointer
[mesa.git] / src / compiler / nir / nir_print.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 DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Connor Abbott (cwabbott0@gmail.com)
25 *
26 */
27
28 #include "nir.h"
29 #include "compiler/shader_enums.h"
30 #include "util/half_float.h"
31 #include "vulkan/vulkan_core.h"
32 #include <stdio.h>
33 #include <stdlib.h>
34 #include <inttypes.h> /* for PRIx64 macro */
35
36 static void
37 print_tabs(unsigned num_tabs, FILE *fp)
38 {
39 for (unsigned i = 0; i < num_tabs; i++)
40 fprintf(fp, "\t");
41 }
42
43 typedef struct {
44 FILE *fp;
45 nir_shader *shader;
46 /** map from nir_variable -> printable name */
47 struct hash_table *ht;
48
49 /** set of names used so far for nir_variables */
50 struct set *syms;
51
52 /* an index used to make new non-conflicting names */
53 unsigned index;
54
55 /**
56 * Optional table of annotations mapping nir object
57 * (such as instr or var) to message to print.
58 */
59 struct hash_table *annotations;
60 } print_state;
61
62 static void
63 print_annotation(print_state *state, void *obj)
64 {
65 FILE *fp = state->fp;
66
67 if (!state->annotations)
68 return;
69
70 struct hash_entry *entry = _mesa_hash_table_search(state->annotations, obj);
71 if (!entry)
72 return;
73
74 const char *note = entry->data;
75 _mesa_hash_table_remove(state->annotations, entry);
76
77 fprintf(fp, "%s\n\n", note);
78 }
79
80 static void
81 print_register(nir_register *reg, print_state *state)
82 {
83 FILE *fp = state->fp;
84 if (reg->name != NULL)
85 fprintf(fp, "/* %s */ ", reg->name);
86 fprintf(fp, "r%u", reg->index);
87 }
88
89 static const char *sizes[] = { "error", "vec1", "vec2", "vec3", "vec4",
90 "error", "error", "error", "vec8",
91 "error", "error", "error", "error",
92 "error", "error", "error", "vec16"};
93
94 static void
95 print_register_decl(nir_register *reg, print_state *state)
96 {
97 FILE *fp = state->fp;
98 fprintf(fp, "decl_reg %s %u ", sizes[reg->num_components], reg->bit_size);
99 print_register(reg, state);
100 if (reg->num_array_elems != 0)
101 fprintf(fp, "[%u]", reg->num_array_elems);
102 fprintf(fp, "\n");
103 }
104
105 static void
106 print_ssa_def(nir_ssa_def *def, print_state *state)
107 {
108 FILE *fp = state->fp;
109 if (def->name != NULL)
110 fprintf(fp, "/* %s */ ", def->name);
111 fprintf(fp, "%s %u ssa_%u", sizes[def->num_components], def->bit_size,
112 def->index);
113 }
114
115 static void
116 print_ssa_use(nir_ssa_def *def, print_state *state)
117 {
118 FILE *fp = state->fp;
119 if (def->name != NULL)
120 fprintf(fp, "/* %s */ ", def->name);
121 fprintf(fp, "ssa_%u", def->index);
122 }
123
124 static void print_src(const nir_src *src, print_state *state);
125
126 static void
127 print_reg_src(const nir_reg_src *src, print_state *state)
128 {
129 FILE *fp = state->fp;
130 print_register(src->reg, state);
131 if (src->reg->num_array_elems != 0) {
132 fprintf(fp, "[%u", src->base_offset);
133 if (src->indirect != NULL) {
134 fprintf(fp, " + ");
135 print_src(src->indirect, state);
136 }
137 fprintf(fp, "]");
138 }
139 }
140
141 static void
142 print_reg_dest(nir_reg_dest *dest, print_state *state)
143 {
144 FILE *fp = state->fp;
145 print_register(dest->reg, state);
146 if (dest->reg->num_array_elems != 0) {
147 fprintf(fp, "[%u", dest->base_offset);
148 if (dest->indirect != NULL) {
149 fprintf(fp, " + ");
150 print_src(dest->indirect, state);
151 }
152 fprintf(fp, "]");
153 }
154 }
155
156 static void
157 print_src(const nir_src *src, print_state *state)
158 {
159 if (src->is_ssa)
160 print_ssa_use(src->ssa, state);
161 else
162 print_reg_src(&src->reg, state);
163 }
164
165 static void
166 print_dest(nir_dest *dest, print_state *state)
167 {
168 if (dest->is_ssa)
169 print_ssa_def(&dest->ssa, state);
170 else
171 print_reg_dest(&dest->reg, state);
172 }
173
174 static const char *
175 comp_mask_string(unsigned num_components)
176 {
177 return (num_components > 4) ? "abcdefghijklmnop" : "xyzw";
178 }
179
180 static void
181 print_alu_src(nir_alu_instr *instr, unsigned src, print_state *state)
182 {
183 FILE *fp = state->fp;
184
185 if (instr->src[src].negate)
186 fprintf(fp, "-");
187 if (instr->src[src].abs)
188 fprintf(fp, "abs(");
189
190 print_src(&instr->src[src].src, state);
191
192 bool print_swizzle = false;
193 nir_component_mask_t used_channels = 0;
194
195 for (unsigned i = 0; i < NIR_MAX_VEC_COMPONENTS; i++) {
196 if (!nir_alu_instr_channel_used(instr, src, i))
197 continue;
198
199 used_channels++;
200
201 if (instr->src[src].swizzle[i] != i) {
202 print_swizzle = true;
203 break;
204 }
205 }
206
207 unsigned live_channels = nir_src_num_components(instr->src[src].src);
208
209 if (print_swizzle || used_channels != live_channels) {
210 fprintf(fp, ".");
211 for (unsigned i = 0; i < NIR_MAX_VEC_COMPONENTS; i++) {
212 if (!nir_alu_instr_channel_used(instr, src, i))
213 continue;
214
215 fprintf(fp, "%c", comp_mask_string(live_channels)[instr->src[src].swizzle[i]]);
216 }
217 }
218
219 if (instr->src[src].abs)
220 fprintf(fp, ")");
221 }
222
223 static void
224 print_alu_dest(nir_alu_dest *dest, print_state *state)
225 {
226 FILE *fp = state->fp;
227 /* we're going to print the saturate modifier later, after the opcode */
228
229 print_dest(&dest->dest, state);
230
231 if (!dest->dest.is_ssa &&
232 dest->write_mask != (1 << dest->dest.reg.reg->num_components) - 1) {
233 unsigned live_channels = dest->dest.reg.reg->num_components;
234 fprintf(fp, ".");
235 for (unsigned i = 0; i < NIR_MAX_VEC_COMPONENTS; i++)
236 if ((dest->write_mask >> i) & 1)
237 fprintf(fp, "%c", comp_mask_string(live_channels)[i]);
238 }
239 }
240
241 static void
242 print_alu_instr(nir_alu_instr *instr, print_state *state)
243 {
244 FILE *fp = state->fp;
245
246 print_alu_dest(&instr->dest, state);
247
248 fprintf(fp, " = %s", nir_op_infos[instr->op].name);
249 if (instr->exact)
250 fprintf(fp, "!");
251 if (instr->dest.saturate)
252 fprintf(fp, ".sat");
253 if (instr->no_signed_wrap)
254 fprintf(fp, ".nsw");
255 if (instr->no_unsigned_wrap)
256 fprintf(fp, ".nuw");
257 fprintf(fp, " ");
258
259 for (unsigned i = 0; i < nir_op_infos[instr->op].num_inputs; i++) {
260 if (i != 0)
261 fprintf(fp, ", ");
262
263 print_alu_src(instr, i, state);
264 }
265 }
266
267 static const char *
268 get_var_name(nir_variable *var, print_state *state)
269 {
270 if (state->ht == NULL)
271 return var->name ? var->name : "unnamed";
272
273 assert(state->syms);
274
275 struct hash_entry *entry = _mesa_hash_table_search(state->ht, var);
276 if (entry)
277 return entry->data;
278
279 char *name;
280 if (var->name == NULL) {
281 name = ralloc_asprintf(state->syms, "@%u", state->index++);
282 } else {
283 struct set_entry *set_entry = _mesa_set_search(state->syms, var->name);
284 if (set_entry != NULL) {
285 /* we have a collision with another name, append an @ + a unique
286 * index */
287 name = ralloc_asprintf(state->syms, "%s@%u", var->name,
288 state->index++);
289 } else {
290 /* Mark this one as seen */
291 _mesa_set_add(state->syms, var->name);
292 name = var->name;
293 }
294 }
295
296 _mesa_hash_table_insert(state->ht, var, name);
297
298 return name;
299 }
300
301 static void
302 print_constant(nir_constant *c, const struct glsl_type *type, print_state *state)
303 {
304 FILE *fp = state->fp;
305 const unsigned rows = glsl_get_vector_elements(type);
306 const unsigned cols = glsl_get_matrix_columns(type);
307 unsigned i;
308
309 switch (glsl_get_base_type(type)) {
310 case GLSL_TYPE_BOOL:
311 /* Only float base types can be matrices. */
312 assert(cols == 1);
313
314 for (i = 0; i < rows; i++) {
315 if (i > 0) fprintf(fp, ", ");
316 fprintf(fp, "%s", c->values[i].b ? "true" : "false");
317 }
318 break;
319
320 case GLSL_TYPE_UINT8:
321 case GLSL_TYPE_INT8:
322 /* Only float base types can be matrices. */
323 assert(cols == 1);
324
325 for (i = 0; i < rows; i++) {
326 if (i > 0) fprintf(fp, ", ");
327 fprintf(fp, "0x%02x", c->values[i].u8);
328 }
329 break;
330
331 case GLSL_TYPE_UINT16:
332 case GLSL_TYPE_INT16:
333 /* Only float base types can be matrices. */
334 assert(cols == 1);
335
336 for (i = 0; i < rows; i++) {
337 if (i > 0) fprintf(fp, ", ");
338 fprintf(fp, "0x%04x", c->values[i].u16);
339 }
340 break;
341
342 case GLSL_TYPE_UINT:
343 case GLSL_TYPE_INT:
344 /* Only float base types can be matrices. */
345 assert(cols == 1);
346
347 for (i = 0; i < rows; i++) {
348 if (i > 0) fprintf(fp, ", ");
349 fprintf(fp, "0x%08x", c->values[i].u32);
350 }
351 break;
352
353 case GLSL_TYPE_FLOAT16:
354 case GLSL_TYPE_FLOAT:
355 case GLSL_TYPE_DOUBLE:
356 if (cols > 1) {
357 for (i = 0; i < cols; i++) {
358 if (i > 0) fprintf(fp, ", ");
359 print_constant(c->elements[i], glsl_get_column_type(type), state);
360 }
361 } else {
362 switch (glsl_get_base_type(type)) {
363 case GLSL_TYPE_FLOAT16:
364 for (i = 0; i < rows; i++) {
365 if (i > 0) fprintf(fp, ", ");
366 fprintf(fp, "%f", _mesa_half_to_float(c->values[i].u16));
367 }
368 break;
369
370 case GLSL_TYPE_FLOAT:
371 for (i = 0; i < rows; i++) {
372 if (i > 0) fprintf(fp, ", ");
373 fprintf(fp, "%f", c->values[i].f32);
374 }
375 break;
376
377 case GLSL_TYPE_DOUBLE:
378 for (i = 0; i < rows; i++) {
379 if (i > 0) fprintf(fp, ", ");
380 fprintf(fp, "%f", c->values[i].f64);
381 }
382 break;
383
384 default:
385 unreachable("Cannot get here from the first level switch");
386 }
387 }
388 break;
389
390 case GLSL_TYPE_UINT64:
391 case GLSL_TYPE_INT64:
392 /* Only float base types can be matrices. */
393 assert(cols == 1);
394
395 for (i = 0; i < cols; i++) {
396 if (i > 0) fprintf(fp, ", ");
397 fprintf(fp, "0x%08" PRIx64, c->values[i].u64);
398 }
399 break;
400
401 case GLSL_TYPE_STRUCT:
402 for (i = 0; i < c->num_elements; i++) {
403 if (i > 0) fprintf(fp, ", ");
404 fprintf(fp, "{ ");
405 print_constant(c->elements[i], glsl_get_struct_field(type, i), state);
406 fprintf(fp, " }");
407 }
408 break;
409
410 case GLSL_TYPE_ARRAY:
411 for (i = 0; i < c->num_elements; i++) {
412 if (i > 0) fprintf(fp, ", ");
413 fprintf(fp, "{ ");
414 print_constant(c->elements[i], glsl_get_array_element(type), state);
415 fprintf(fp, " }");
416 }
417 break;
418
419 default:
420 unreachable("not reached");
421 }
422 }
423
424 static const char *
425 get_variable_mode_str(nir_variable_mode mode, bool want_local_global_mode)
426 {
427 switch (mode) {
428 case nir_var_shader_in:
429 return "shader_in";
430 case nir_var_shader_out:
431 return "shader_out";
432 case nir_var_uniform:
433 return "uniform";
434 case nir_var_mem_ubo:
435 return "ubo";
436 case nir_var_system_value:
437 return "system";
438 case nir_var_mem_ssbo:
439 return "ssbo";
440 case nir_var_mem_shared:
441 return "shared";
442 case nir_var_mem_global:
443 return "global";
444 case nir_var_shader_temp:
445 return want_local_global_mode ? "shader_temp" : "";
446 case nir_var_function_temp:
447 return want_local_global_mode ? "function_temp" : "";
448 default:
449 return "";
450 }
451 }
452
453 static void
454 print_var_decl(nir_variable *var, print_state *state)
455 {
456 FILE *fp = state->fp;
457
458 fprintf(fp, "decl_var ");
459
460 const char *const cent = (var->data.centroid) ? "centroid " : "";
461 const char *const samp = (var->data.sample) ? "sample " : "";
462 const char *const patch = (var->data.patch) ? "patch " : "";
463 const char *const inv = (var->data.invariant) ? "invariant " : "";
464 fprintf(fp, "%s%s%s%s%s %s ",
465 cent, samp, patch, inv, get_variable_mode_str(var->data.mode, false),
466 glsl_interp_mode_name(var->data.interpolation));
467
468 enum gl_access_qualifier access = var->data.access;
469 const char *const coher = (access & ACCESS_COHERENT) ? "coherent " : "";
470 const char *const volat = (access & ACCESS_VOLATILE) ? "volatile " : "";
471 const char *const restr = (access & ACCESS_RESTRICT) ? "restrict " : "";
472 const char *const ronly = (access & ACCESS_NON_WRITEABLE) ? "readonly " : "";
473 const char *const wonly = (access & ACCESS_NON_READABLE) ? "writeonly " : "";
474 const char *const reorder = (access & ACCESS_CAN_REORDER) ? "reorderable " : "";
475 fprintf(fp, "%s%s%s%s%s%s", coher, volat, restr, ronly, wonly, reorder);
476
477 if (glsl_get_base_type(glsl_without_array(var->type)) == GLSL_TYPE_IMAGE) {
478 fprintf(fp, "%s ", util_format_short_name(var->data.image.format));
479 }
480
481 fprintf(fp, "%s %s", glsl_get_type_name(var->type),
482 get_var_name(var, state));
483
484 if (var->data.mode == nir_var_shader_in ||
485 var->data.mode == nir_var_shader_out ||
486 var->data.mode == nir_var_uniform ||
487 var->data.mode == nir_var_mem_ubo ||
488 var->data.mode == nir_var_mem_ssbo) {
489 const char *loc = NULL;
490 char buf[4];
491
492 switch (state->shader->info.stage) {
493 case MESA_SHADER_VERTEX:
494 if (var->data.mode == nir_var_shader_in)
495 loc = gl_vert_attrib_name(var->data.location);
496 else if (var->data.mode == nir_var_shader_out)
497 loc = gl_varying_slot_name(var->data.location);
498 break;
499 case MESA_SHADER_GEOMETRY:
500 if ((var->data.mode == nir_var_shader_in) ||
501 (var->data.mode == nir_var_shader_out))
502 loc = gl_varying_slot_name(var->data.location);
503 break;
504 case MESA_SHADER_FRAGMENT:
505 if (var->data.mode == nir_var_shader_in)
506 loc = gl_varying_slot_name(var->data.location);
507 else if (var->data.mode == nir_var_shader_out)
508 loc = gl_frag_result_name(var->data.location);
509 break;
510 case MESA_SHADER_TESS_CTRL:
511 case MESA_SHADER_TESS_EVAL:
512 case MESA_SHADER_COMPUTE:
513 case MESA_SHADER_KERNEL:
514 default:
515 /* TODO */
516 break;
517 }
518
519 if (!loc) {
520 if (var->data.location == ~0) {
521 loc = "~0";
522 } else {
523 snprintf(buf, sizeof(buf), "%u", var->data.location);
524 loc = buf;
525 }
526 }
527
528 /* For shader I/O vars that have been split to components or packed,
529 * print the fractional location within the input/output.
530 */
531 unsigned int num_components =
532 glsl_get_components(glsl_without_array(var->type));
533 const char *components = NULL;
534 char components_local[18] = {'.' /* the rest is 0-filled */};
535 switch (var->data.mode) {
536 case nir_var_shader_in:
537 case nir_var_shader_out:
538 if (num_components < 16 && num_components != 0) {
539 const char *xyzw = comp_mask_string(num_components);
540 for (int i = 0; i < num_components; i++)
541 components_local[i + 1] = xyzw[i + var->data.location_frac];
542
543 components = components_local;
544 }
545 break;
546 default:
547 break;
548 }
549
550 fprintf(fp, " (%s%s, %u, %u)%s", loc,
551 components ? components : "",
552 var->data.driver_location, var->data.binding,
553 var->data.compact ? " compact" : "");
554 }
555
556 if (var->constant_initializer) {
557 fprintf(fp, " = { ");
558 print_constant(var->constant_initializer, var->type, state);
559 fprintf(fp, " }");
560 }
561 if (var->pointer_initializer)
562 fprintf(fp, " = &%s", get_var_name(var->pointer_initializer, state));
563
564 fprintf(fp, "\n");
565 print_annotation(state, var);
566 }
567
568 static void
569 print_deref_link(const nir_deref_instr *instr, bool whole_chain, print_state *state)
570 {
571 FILE *fp = state->fp;
572
573 if (instr->deref_type == nir_deref_type_var) {
574 fprintf(fp, "%s", get_var_name(instr->var, state));
575 return;
576 } else if (instr->deref_type == nir_deref_type_cast) {
577 fprintf(fp, "(%s *)", glsl_get_type_name(instr->type));
578 print_src(&instr->parent, state);
579 return;
580 }
581
582 assert(instr->parent.is_ssa);
583 nir_deref_instr *parent =
584 nir_instr_as_deref(instr->parent.ssa->parent_instr);
585
586 /* Is the parent we're going to print a bare cast? */
587 const bool is_parent_cast =
588 whole_chain && parent->deref_type == nir_deref_type_cast;
589
590 /* If we're not printing the whole chain, the parent we print will be a SSA
591 * value that represents a pointer. The only deref type that naturally
592 * gives a pointer is a cast.
593 */
594 const bool is_parent_pointer =
595 !whole_chain || parent->deref_type == nir_deref_type_cast;
596
597 /* Struct derefs have a nice syntax that works on pointers, arrays derefs
598 * do not.
599 */
600 const bool need_deref =
601 is_parent_pointer && instr->deref_type != nir_deref_type_struct;
602
603 /* Cast need extra parens and so * dereferences */
604 if (is_parent_cast || need_deref)
605 fprintf(fp, "(");
606
607 if (need_deref)
608 fprintf(fp, "*");
609
610 if (whole_chain) {
611 print_deref_link(parent, whole_chain, state);
612 } else {
613 print_src(&instr->parent, state);
614 }
615
616 if (is_parent_cast || need_deref)
617 fprintf(fp, ")");
618
619 switch (instr->deref_type) {
620 case nir_deref_type_struct:
621 fprintf(fp, "%s%s", is_parent_pointer ? "->" : ".",
622 glsl_get_struct_elem_name(parent->type, instr->strct.index));
623 break;
624
625 case nir_deref_type_array:
626 case nir_deref_type_ptr_as_array: {
627 if (nir_src_is_const(instr->arr.index)) {
628 fprintf(fp, "[%"PRId64"]", nir_src_as_int(instr->arr.index));
629 } else {
630 fprintf(fp, "[");
631 print_src(&instr->arr.index, state);
632 fprintf(fp, "]");
633 }
634 break;
635 }
636
637 case nir_deref_type_array_wildcard:
638 fprintf(fp, "[*]");
639 break;
640
641 default:
642 unreachable("Invalid deref instruction type");
643 }
644 }
645
646 static void
647 print_deref_instr(nir_deref_instr *instr, print_state *state)
648 {
649 FILE *fp = state->fp;
650
651 print_dest(&instr->dest, state);
652
653 switch (instr->deref_type) {
654 case nir_deref_type_var:
655 fprintf(fp, " = deref_var ");
656 break;
657 case nir_deref_type_array:
658 case nir_deref_type_array_wildcard:
659 fprintf(fp, " = deref_array ");
660 break;
661 case nir_deref_type_struct:
662 fprintf(fp, " = deref_struct ");
663 break;
664 case nir_deref_type_cast:
665 fprintf(fp, " = deref_cast ");
666 break;
667 case nir_deref_type_ptr_as_array:
668 fprintf(fp, " = deref_ptr_as_array ");
669 break;
670 default:
671 unreachable("Invalid deref instruction type");
672 }
673
674 /* Only casts naturally return a pointer type */
675 if (instr->deref_type != nir_deref_type_cast)
676 fprintf(fp, "&");
677
678 print_deref_link(instr, false, state);
679
680 fprintf(fp, " (%s %s) ",
681 get_variable_mode_str(instr->mode, true),
682 glsl_get_type_name(instr->type));
683
684 if (instr->deref_type != nir_deref_type_var &&
685 instr->deref_type != nir_deref_type_cast) {
686 /* Print the entire chain as a comment */
687 fprintf(fp, "/* &");
688 print_deref_link(instr, true, state);
689 fprintf(fp, " */");
690 }
691
692 if (instr->deref_type == nir_deref_type_cast) {
693 fprintf(fp, " /* ptr_stride=%u */", instr->cast.ptr_stride);
694 }
695 }
696
697 static const char *
698 vulkan_descriptor_type_name(VkDescriptorType type)
699 {
700 switch (type) {
701 case VK_DESCRIPTOR_TYPE_SAMPLER: return "sampler";
702 case VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER: return "texture+sampler";
703 case VK_DESCRIPTOR_TYPE_SAMPLED_IMAGE: return "texture";
704 case VK_DESCRIPTOR_TYPE_STORAGE_IMAGE: return "image";
705 case VK_DESCRIPTOR_TYPE_UNIFORM_TEXEL_BUFFER: return "texture-buffer";
706 case VK_DESCRIPTOR_TYPE_STORAGE_TEXEL_BUFFER: return "image-buffer";
707 case VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER: return "UBO";
708 case VK_DESCRIPTOR_TYPE_STORAGE_BUFFER: return "SSBO";
709 case VK_DESCRIPTOR_TYPE_UNIFORM_BUFFER_DYNAMIC: return "UBO";
710 case VK_DESCRIPTOR_TYPE_STORAGE_BUFFER_DYNAMIC: return "SSBO";
711 case VK_DESCRIPTOR_TYPE_INPUT_ATTACHMENT: return "input-att";
712 case VK_DESCRIPTOR_TYPE_INLINE_UNIFORM_BLOCK_EXT: return "inline-UBO";
713 default: return "unknown";
714 }
715 }
716
717 static void
718 print_intrinsic_instr(nir_intrinsic_instr *instr, print_state *state)
719 {
720 const nir_intrinsic_info *info = &nir_intrinsic_infos[instr->intrinsic];
721 unsigned num_srcs = info->num_srcs;
722 FILE *fp = state->fp;
723
724 if (info->has_dest) {
725 print_dest(&instr->dest, state);
726 fprintf(fp, " = ");
727 }
728
729 fprintf(fp, "intrinsic %s (", info->name);
730
731 for (unsigned i = 0; i < num_srcs; i++) {
732 if (i != 0)
733 fprintf(fp, ", ");
734
735 print_src(&instr->src[i], state);
736 }
737
738 fprintf(fp, ") (");
739
740 for (unsigned i = 0; i < info->num_indices; i++) {
741 if (i != 0)
742 fprintf(fp, ", ");
743
744 fprintf(fp, "%d", instr->const_index[i]);
745 }
746
747 fprintf(fp, ")");
748
749 static const char *index_name[NIR_INTRINSIC_NUM_INDEX_FLAGS] = {
750 [NIR_INTRINSIC_BASE] = "base",
751 [NIR_INTRINSIC_WRMASK] = "wrmask",
752 [NIR_INTRINSIC_STREAM_ID] = "stream-id",
753 [NIR_INTRINSIC_UCP_ID] = "ucp-id",
754 [NIR_INTRINSIC_RANGE] = "range",
755 [NIR_INTRINSIC_DESC_SET] = "desc-set",
756 [NIR_INTRINSIC_BINDING] = "binding",
757 [NIR_INTRINSIC_COMPONENT] = "component",
758 [NIR_INTRINSIC_INTERP_MODE] = "interp_mode",
759 [NIR_INTRINSIC_REDUCTION_OP] = "reduction_op",
760 [NIR_INTRINSIC_CLUSTER_SIZE] = "cluster_size",
761 [NIR_INTRINSIC_PARAM_IDX] = "param_idx",
762 [NIR_INTRINSIC_IMAGE_DIM] = "image_dim",
763 [NIR_INTRINSIC_IMAGE_ARRAY] = "image_array",
764 [NIR_INTRINSIC_ACCESS] = "access",
765 [NIR_INTRINSIC_SRC_ACCESS] = "src-access",
766 [NIR_INTRINSIC_DST_ACCESS] = "dst-access",
767 [NIR_INTRINSIC_FORMAT] = "format",
768 [NIR_INTRINSIC_ALIGN_MUL] = "align_mul",
769 [NIR_INTRINSIC_ALIGN_OFFSET] = "align_offset",
770 [NIR_INTRINSIC_DESC_TYPE] = "desc_type",
771 [NIR_INTRINSIC_TYPE] = "type",
772 [NIR_INTRINSIC_SWIZZLE_MASK] = "swizzle_mask",
773 [NIR_INTRINSIC_DRIVER_LOCATION] = "driver_location",
774 [NIR_INTRINSIC_MEMORY_SEMANTICS] = "mem_semantics",
775 [NIR_INTRINSIC_MEMORY_MODES] = "mem_modes",
776 [NIR_INTRINSIC_MEMORY_SCOPE] = "mem_scope",
777 };
778 for (unsigned idx = 1; idx < NIR_INTRINSIC_NUM_INDEX_FLAGS; idx++) {
779 if (!info->index_map[idx])
780 continue;
781 fprintf(fp, " /*");
782 switch (idx) {
783 case NIR_INTRINSIC_WRMASK: {
784 /* special case wrmask to show it as a writemask.. */
785 unsigned wrmask = nir_intrinsic_write_mask(instr);
786 fprintf(fp, " wrmask=");
787 for (unsigned i = 0; i < instr->num_components; i++)
788 if ((wrmask >> i) & 1)
789 fprintf(fp, "%c", comp_mask_string(instr->num_components)[i]);
790 break;
791 }
792
793 case NIR_INTRINSIC_REDUCTION_OP: {
794 nir_op reduction_op = nir_intrinsic_reduction_op(instr);
795 fprintf(fp, " reduction_op=%s", nir_op_infos[reduction_op].name);
796 break;
797 }
798
799 case NIR_INTRINSIC_IMAGE_DIM: {
800 static const char *dim_name[] = {
801 [GLSL_SAMPLER_DIM_1D] = "1D",
802 [GLSL_SAMPLER_DIM_2D] = "2D",
803 [GLSL_SAMPLER_DIM_3D] = "3D",
804 [GLSL_SAMPLER_DIM_CUBE] = "Cube",
805 [GLSL_SAMPLER_DIM_RECT] = "Rect",
806 [GLSL_SAMPLER_DIM_BUF] = "Buf",
807 [GLSL_SAMPLER_DIM_MS] = "2D-MSAA",
808 [GLSL_SAMPLER_DIM_SUBPASS] = "Subpass",
809 [GLSL_SAMPLER_DIM_SUBPASS_MS] = "Subpass-MSAA",
810 };
811 enum glsl_sampler_dim dim = nir_intrinsic_image_dim(instr);
812 assert(dim < ARRAY_SIZE(dim_name) && dim_name[dim]);
813 fprintf(fp, " image_dim=%s", dim_name[dim]);
814 break;
815 }
816
817 case NIR_INTRINSIC_IMAGE_ARRAY: {
818 bool array = nir_intrinsic_image_array(instr);
819 fprintf(fp, " image_array=%s", array ? "true" : "false");
820 break;
821 }
822
823 case NIR_INTRINSIC_DESC_TYPE: {
824 VkDescriptorType desc_type = nir_intrinsic_desc_type(instr);
825 fprintf(fp, " desc_type=%s", vulkan_descriptor_type_name(desc_type));
826 break;
827 }
828
829 case NIR_INTRINSIC_TYPE: {
830 nir_alu_type type = nir_intrinsic_type(instr);
831 unsigned size = nir_alu_type_get_type_size(type);
832 const char *name;
833 switch (nir_alu_type_get_base_type(type)) {
834 case nir_type_int: name = "int"; break;
835 case nir_type_uint: name = "uint"; break;
836 case nir_type_bool: name = "bool"; break;
837 case nir_type_float: name = "float"; break;
838 default: name = "invalid";
839 }
840 if (size)
841 fprintf(fp, " type=%s%u", name, size);
842 else
843 fprintf(fp, " type=%s", name);
844 break;
845 }
846
847 case NIR_INTRINSIC_SWIZZLE_MASK: {
848 fprintf(fp, " swizzle_mask=");
849 unsigned mask = nir_intrinsic_swizzle_mask(instr);
850 if (instr->intrinsic == nir_intrinsic_quad_swizzle_amd) {
851 for (unsigned i = 0; i < 4; i++)
852 fprintf(fp, "%d", (mask >> (i * 2) & 3));
853 } else if (instr->intrinsic == nir_intrinsic_masked_swizzle_amd) {
854 fprintf(fp, "((id & %d) | %d) ^ %d", mask & 0x1F,
855 (mask >> 5) & 0x1F,
856 (mask >> 10) & 0x1F);
857 } else {
858 fprintf(fp, "%d", mask);
859 }
860 break;
861 }
862
863 case NIR_INTRINSIC_MEMORY_SEMANTICS: {
864 nir_memory_semantics semantics = nir_intrinsic_memory_semantics(instr);
865 fprintf(fp, " mem_semantics=");
866 switch (semantics & (NIR_MEMORY_ACQUIRE | NIR_MEMORY_RELEASE)) {
867 case 0: fprintf(fp, "NONE"); break;
868 case NIR_MEMORY_ACQUIRE: fprintf(fp, "ACQ"); break;
869 case NIR_MEMORY_RELEASE: fprintf(fp, "REL"); break;
870 default: fprintf(fp, "ACQ|REL"); break;
871 }
872 if (semantics & (NIR_MEMORY_MAKE_AVAILABLE)) fprintf(fp, "|AVAILABLE");
873 if (semantics & (NIR_MEMORY_MAKE_VISIBLE)) fprintf(fp, "|VISIBLE");
874 break;
875 }
876
877 case NIR_INTRINSIC_MEMORY_MODES: {
878 fprintf(fp, " mem_modes=");
879 unsigned int modes = nir_intrinsic_memory_modes(instr);
880 while (modes) {
881 nir_variable_mode m = u_bit_scan(&modes);
882 fprintf(fp, "%s%s", get_variable_mode_str(1 << m, true), modes ? "|" : "");
883 }
884 break;
885 }
886
887 case NIR_INTRINSIC_MEMORY_SCOPE: {
888 fprintf(fp, " mem_scope=");
889 switch (nir_intrinsic_memory_scope(instr)) {
890 case NIR_SCOPE_DEVICE: fprintf(fp, "DEVICE"); break;
891 case NIR_SCOPE_QUEUE_FAMILY: fprintf(fp, "QUEUE_FAMILY"); break;
892 case NIR_SCOPE_WORKGROUP: fprintf(fp, "WORKGROUP"); break;
893 case NIR_SCOPE_SUBGROUP: fprintf(fp, "SUBGROUP"); break;
894 case NIR_SCOPE_INVOCATION: fprintf(fp, "INVOCATION"); break;
895 }
896 break;
897 }
898
899 default: {
900 unsigned off = info->index_map[idx] - 1;
901 assert(index_name[idx]); /* forgot to update index_name table? */
902 fprintf(fp, " %s=%d", index_name[idx], instr->const_index[off]);
903 break;
904 }
905 }
906 fprintf(fp, " */");
907 }
908
909 if (!state->shader)
910 return;
911
912 struct exec_list *var_list = NULL;
913
914 switch (instr->intrinsic) {
915 case nir_intrinsic_load_uniform:
916 var_list = &state->shader->uniforms;
917 break;
918 case nir_intrinsic_load_input:
919 case nir_intrinsic_load_interpolated_input:
920 case nir_intrinsic_load_per_vertex_input:
921 var_list = &state->shader->inputs;
922 break;
923 case nir_intrinsic_load_output:
924 case nir_intrinsic_store_output:
925 case nir_intrinsic_store_per_vertex_output:
926 var_list = &state->shader->outputs;
927 break;
928 default:
929 return;
930 }
931
932 nir_foreach_variable(var, var_list) {
933 if ((var->data.driver_location == nir_intrinsic_base(instr)) &&
934 (instr->intrinsic == nir_intrinsic_load_uniform ||
935 (nir_intrinsic_component(instr) >= var->data.location_frac &&
936 nir_intrinsic_component(instr) <
937 (var->data.location_frac + glsl_get_components(var->type)))) &&
938 var->name) {
939 fprintf(fp, "\t/* %s */", var->name);
940 break;
941 }
942 }
943 }
944
945 static void
946 print_tex_instr(nir_tex_instr *instr, print_state *state)
947 {
948 FILE *fp = state->fp;
949
950 print_dest(&instr->dest, state);
951
952 fprintf(fp, " = ");
953
954 switch (instr->op) {
955 case nir_texop_tex:
956 fprintf(fp, "tex ");
957 break;
958 case nir_texop_txb:
959 fprintf(fp, "txb ");
960 break;
961 case nir_texop_txl:
962 fprintf(fp, "txl ");
963 break;
964 case nir_texop_txd:
965 fprintf(fp, "txd ");
966 break;
967 case nir_texop_txf:
968 fprintf(fp, "txf ");
969 break;
970 case nir_texop_txf_ms:
971 fprintf(fp, "txf_ms ");
972 break;
973 case nir_texop_txf_ms_fb:
974 fprintf(fp, "txf_ms_fb ");
975 break;
976 case nir_texop_txf_ms_mcs:
977 fprintf(fp, "txf_ms_mcs ");
978 break;
979 case nir_texop_txs:
980 fprintf(fp, "txs ");
981 break;
982 case nir_texop_lod:
983 fprintf(fp, "lod ");
984 break;
985 case nir_texop_tg4:
986 fprintf(fp, "tg4 ");
987 break;
988 case nir_texop_query_levels:
989 fprintf(fp, "query_levels ");
990 break;
991 case nir_texop_texture_samples:
992 fprintf(fp, "texture_samples ");
993 break;
994 case nir_texop_samples_identical:
995 fprintf(fp, "samples_identical ");
996 break;
997 case nir_texop_tex_prefetch:
998 fprintf(fp, "tex (pre-dispatchable) ");
999 break;
1000 case nir_texop_fragment_fetch:
1001 fprintf(fp, "fragment_fetch ");
1002 break;
1003 case nir_texop_fragment_mask_fetch:
1004 fprintf(fp, "fragment_mask_fetch ");
1005 break;
1006 default:
1007 unreachable("Invalid texture operation");
1008 break;
1009 }
1010
1011 bool has_texture_deref = false, has_sampler_deref = false;
1012 for (unsigned i = 0; i < instr->num_srcs; i++) {
1013 if (i > 0) {
1014 fprintf(fp, ", ");
1015 }
1016
1017 print_src(&instr->src[i].src, state);
1018 fprintf(fp, " ");
1019
1020 switch(instr->src[i].src_type) {
1021 case nir_tex_src_coord:
1022 fprintf(fp, "(coord)");
1023 break;
1024 case nir_tex_src_projector:
1025 fprintf(fp, "(projector)");
1026 break;
1027 case nir_tex_src_comparator:
1028 fprintf(fp, "(comparator)");
1029 break;
1030 case nir_tex_src_offset:
1031 fprintf(fp, "(offset)");
1032 break;
1033 case nir_tex_src_bias:
1034 fprintf(fp, "(bias)");
1035 break;
1036 case nir_tex_src_lod:
1037 fprintf(fp, "(lod)");
1038 break;
1039 case nir_tex_src_min_lod:
1040 fprintf(fp, "(min_lod)");
1041 break;
1042 case nir_tex_src_ms_index:
1043 fprintf(fp, "(ms_index)");
1044 break;
1045 case nir_tex_src_ms_mcs:
1046 fprintf(fp, "(ms_mcs)");
1047 break;
1048 case nir_tex_src_ddx:
1049 fprintf(fp, "(ddx)");
1050 break;
1051 case nir_tex_src_ddy:
1052 fprintf(fp, "(ddy)");
1053 break;
1054 case nir_tex_src_texture_deref:
1055 has_texture_deref = true;
1056 fprintf(fp, "(texture_deref)");
1057 break;
1058 case nir_tex_src_sampler_deref:
1059 has_sampler_deref = true;
1060 fprintf(fp, "(sampler_deref)");
1061 break;
1062 case nir_tex_src_texture_offset:
1063 fprintf(fp, "(texture_offset)");
1064 break;
1065 case nir_tex_src_sampler_offset:
1066 fprintf(fp, "(sampler_offset)");
1067 break;
1068 case nir_tex_src_texture_handle:
1069 fprintf(fp, "(texture_handle)");
1070 break;
1071 case nir_tex_src_sampler_handle:
1072 fprintf(fp, "(sampler_handle)");
1073 break;
1074 case nir_tex_src_plane:
1075 fprintf(fp, "(plane)");
1076 break;
1077
1078 default:
1079 unreachable("Invalid texture source type");
1080 break;
1081 }
1082 }
1083
1084 if (instr->op == nir_texop_tg4) {
1085 fprintf(fp, ", %u (gather_component)", instr->component);
1086 }
1087
1088 if (nir_tex_instr_has_explicit_tg4_offsets(instr)) {
1089 fprintf(fp, ", { (%i, %i)", instr->tg4_offsets[0][0], instr->tg4_offsets[0][1]);
1090 for (unsigned i = 1; i < 4; ++i)
1091 fprintf(fp, ", (%i, %i)", instr->tg4_offsets[i][0],
1092 instr->tg4_offsets[i][1]);
1093 fprintf(fp, " } (offsets)");
1094 }
1095
1096 if (instr->op != nir_texop_txf_ms_fb) {
1097 if (!has_texture_deref) {
1098 fprintf(fp, ", %u (texture)", instr->texture_index);
1099 }
1100
1101 if (!has_sampler_deref) {
1102 fprintf(fp, ", %u (sampler)", instr->sampler_index);
1103 }
1104 }
1105
1106 if (instr->texture_non_uniform) {
1107 fprintf(fp, ", texture non-uniform");
1108 }
1109
1110 if (instr->sampler_non_uniform) {
1111 fprintf(fp, ", sampler non-uniform");
1112 }
1113 }
1114
1115 static void
1116 print_call_instr(nir_call_instr *instr, print_state *state)
1117 {
1118 FILE *fp = state->fp;
1119
1120 fprintf(fp, "call %s ", instr->callee->name);
1121
1122 for (unsigned i = 0; i < instr->num_params; i++) {
1123 if (i != 0)
1124 fprintf(fp, ", ");
1125
1126 print_src(&instr->params[i], state);
1127 }
1128 }
1129
1130 static void
1131 print_load_const_instr(nir_load_const_instr *instr, print_state *state)
1132 {
1133 FILE *fp = state->fp;
1134
1135 print_ssa_def(&instr->def, state);
1136
1137 fprintf(fp, " = load_const (");
1138
1139 for (unsigned i = 0; i < instr->def.num_components; i++) {
1140 if (i != 0)
1141 fprintf(fp, ", ");
1142
1143 /*
1144 * we don't really know the type of the constant (if it will be used as a
1145 * float or an int), so just print the raw constant in hex for fidelity
1146 * and then print the float in a comment for readability.
1147 */
1148
1149 switch (instr->def.bit_size) {
1150 case 64:
1151 fprintf(fp, "0x%16" PRIx64 " /* %f */", instr->value[i].u64,
1152 instr->value[i].f64);
1153 break;
1154 case 32:
1155 fprintf(fp, "0x%08x /* %f */", instr->value[i].u32, instr->value[i].f32);
1156 break;
1157 case 16:
1158 fprintf(fp, "0x%04x /* %f */", instr->value[i].u16,
1159 _mesa_half_to_float(instr->value[i].u16));
1160 break;
1161 case 8:
1162 fprintf(fp, "0x%02x", instr->value[i].u8);
1163 break;
1164 case 1:
1165 fprintf(fp, "%s", instr->value[i].b ? "true" : "false");
1166 break;
1167 }
1168 }
1169
1170 fprintf(fp, ")");
1171 }
1172
1173 static void
1174 print_jump_instr(nir_jump_instr *instr, print_state *state)
1175 {
1176 FILE *fp = state->fp;
1177
1178 switch (instr->type) {
1179 case nir_jump_break:
1180 fprintf(fp, "break");
1181 break;
1182
1183 case nir_jump_continue:
1184 fprintf(fp, "continue");
1185 break;
1186
1187 case nir_jump_return:
1188 fprintf(fp, "return");
1189 break;
1190 }
1191 }
1192
1193 static void
1194 print_ssa_undef_instr(nir_ssa_undef_instr* instr, print_state *state)
1195 {
1196 FILE *fp = state->fp;
1197 print_ssa_def(&instr->def, state);
1198 fprintf(fp, " = undefined");
1199 }
1200
1201 static void
1202 print_phi_instr(nir_phi_instr *instr, print_state *state)
1203 {
1204 FILE *fp = state->fp;
1205 print_dest(&instr->dest, state);
1206 fprintf(fp, " = phi ");
1207 nir_foreach_phi_src(src, instr) {
1208 if (&src->node != exec_list_get_head(&instr->srcs))
1209 fprintf(fp, ", ");
1210
1211 fprintf(fp, "block_%u: ", src->pred->index);
1212 print_src(&src->src, state);
1213 }
1214 }
1215
1216 static void
1217 print_parallel_copy_instr(nir_parallel_copy_instr *instr, print_state *state)
1218 {
1219 FILE *fp = state->fp;
1220 nir_foreach_parallel_copy_entry(entry, instr) {
1221 if (&entry->node != exec_list_get_head(&instr->entries))
1222 fprintf(fp, "; ");
1223
1224 print_dest(&entry->dest, state);
1225 fprintf(fp, " = ");
1226 print_src(&entry->src, state);
1227 }
1228 }
1229
1230 static void
1231 print_instr(const nir_instr *instr, print_state *state, unsigned tabs)
1232 {
1233 FILE *fp = state->fp;
1234 print_tabs(tabs, fp);
1235
1236 switch (instr->type) {
1237 case nir_instr_type_alu:
1238 print_alu_instr(nir_instr_as_alu(instr), state);
1239 break;
1240
1241 case nir_instr_type_deref:
1242 print_deref_instr(nir_instr_as_deref(instr), state);
1243 break;
1244
1245 case nir_instr_type_call:
1246 print_call_instr(nir_instr_as_call(instr), state);
1247 break;
1248
1249 case nir_instr_type_intrinsic:
1250 print_intrinsic_instr(nir_instr_as_intrinsic(instr), state);
1251 break;
1252
1253 case nir_instr_type_tex:
1254 print_tex_instr(nir_instr_as_tex(instr), state);
1255 break;
1256
1257 case nir_instr_type_load_const:
1258 print_load_const_instr(nir_instr_as_load_const(instr), state);
1259 break;
1260
1261 case nir_instr_type_jump:
1262 print_jump_instr(nir_instr_as_jump(instr), state);
1263 break;
1264
1265 case nir_instr_type_ssa_undef:
1266 print_ssa_undef_instr(nir_instr_as_ssa_undef(instr), state);
1267 break;
1268
1269 case nir_instr_type_phi:
1270 print_phi_instr(nir_instr_as_phi(instr), state);
1271 break;
1272
1273 case nir_instr_type_parallel_copy:
1274 print_parallel_copy_instr(nir_instr_as_parallel_copy(instr), state);
1275 break;
1276
1277 default:
1278 unreachable("Invalid instruction type");
1279 break;
1280 }
1281 }
1282
1283 static int
1284 compare_block_index(const void *p1, const void *p2)
1285 {
1286 const nir_block *block1 = *((const nir_block **) p1);
1287 const nir_block *block2 = *((const nir_block **) p2);
1288
1289 return (int) block1->index - (int) block2->index;
1290 }
1291
1292 static void print_cf_node(nir_cf_node *node, print_state *state,
1293 unsigned tabs);
1294
1295 static void
1296 print_block(nir_block *block, print_state *state, unsigned tabs)
1297 {
1298 FILE *fp = state->fp;
1299
1300 print_tabs(tabs, fp);
1301 fprintf(fp, "block block_%u:\n", block->index);
1302
1303 /* sort the predecessors by index so we consistently print the same thing */
1304
1305 nir_block **preds =
1306 malloc(block->predecessors->entries * sizeof(nir_block *));
1307
1308 unsigned i = 0;
1309 set_foreach(block->predecessors, entry) {
1310 preds[i++] = (nir_block *) entry->key;
1311 }
1312
1313 qsort(preds, block->predecessors->entries, sizeof(nir_block *),
1314 compare_block_index);
1315
1316 print_tabs(tabs, fp);
1317 fprintf(fp, "/* preds: ");
1318 for (unsigned i = 0; i < block->predecessors->entries; i++) {
1319 fprintf(fp, "block_%u ", preds[i]->index);
1320 }
1321 fprintf(fp, "*/\n");
1322
1323 free(preds);
1324
1325 nir_foreach_instr(instr, block) {
1326 print_instr(instr, state, tabs);
1327 fprintf(fp, "\n");
1328 print_annotation(state, instr);
1329 }
1330
1331 print_tabs(tabs, fp);
1332 fprintf(fp, "/* succs: ");
1333 for (unsigned i = 0; i < 2; i++)
1334 if (block->successors[i]) {
1335 fprintf(fp, "block_%u ", block->successors[i]->index);
1336 }
1337 fprintf(fp, "*/\n");
1338 }
1339
1340 static void
1341 print_if(nir_if *if_stmt, print_state *state, unsigned tabs)
1342 {
1343 FILE *fp = state->fp;
1344
1345 print_tabs(tabs, fp);
1346 fprintf(fp, "if ");
1347 print_src(&if_stmt->condition, state);
1348 fprintf(fp, " {\n");
1349 foreach_list_typed(nir_cf_node, node, node, &if_stmt->then_list) {
1350 print_cf_node(node, state, tabs + 1);
1351 }
1352 print_tabs(tabs, fp);
1353 fprintf(fp, "} else {\n");
1354 foreach_list_typed(nir_cf_node, node, node, &if_stmt->else_list) {
1355 print_cf_node(node, state, tabs + 1);
1356 }
1357 print_tabs(tabs, fp);
1358 fprintf(fp, "}\n");
1359 }
1360
1361 static void
1362 print_loop(nir_loop *loop, print_state *state, unsigned tabs)
1363 {
1364 FILE *fp = state->fp;
1365
1366 print_tabs(tabs, fp);
1367 fprintf(fp, "loop {\n");
1368 foreach_list_typed(nir_cf_node, node, node, &loop->body) {
1369 print_cf_node(node, state, tabs + 1);
1370 }
1371 print_tabs(tabs, fp);
1372 fprintf(fp, "}\n");
1373 }
1374
1375 static void
1376 print_cf_node(nir_cf_node *node, print_state *state, unsigned int tabs)
1377 {
1378 switch (node->type) {
1379 case nir_cf_node_block:
1380 print_block(nir_cf_node_as_block(node), state, tabs);
1381 break;
1382
1383 case nir_cf_node_if:
1384 print_if(nir_cf_node_as_if(node), state, tabs);
1385 break;
1386
1387 case nir_cf_node_loop:
1388 print_loop(nir_cf_node_as_loop(node), state, tabs);
1389 break;
1390
1391 default:
1392 unreachable("Invalid CFG node type");
1393 }
1394 }
1395
1396 static void
1397 print_function_impl(nir_function_impl *impl, print_state *state)
1398 {
1399 FILE *fp = state->fp;
1400
1401 fprintf(fp, "\nimpl %s ", impl->function->name);
1402
1403 fprintf(fp, "{\n");
1404
1405 nir_foreach_variable(var, &impl->locals) {
1406 fprintf(fp, "\t");
1407 print_var_decl(var, state);
1408 }
1409
1410 foreach_list_typed(nir_register, reg, node, &impl->registers) {
1411 fprintf(fp, "\t");
1412 print_register_decl(reg, state);
1413 }
1414
1415 nir_index_blocks(impl);
1416
1417 foreach_list_typed(nir_cf_node, node, node, &impl->body) {
1418 print_cf_node(node, state, 1);
1419 }
1420
1421 fprintf(fp, "\tblock block_%u:\n}\n\n", impl->end_block->index);
1422 }
1423
1424 static void
1425 print_function(nir_function *function, print_state *state)
1426 {
1427 FILE *fp = state->fp;
1428
1429 fprintf(fp, "decl_function %s (%d params)", function->name,
1430 function->num_params);
1431
1432 fprintf(fp, "\n");
1433
1434 if (function->impl != NULL) {
1435 print_function_impl(function->impl, state);
1436 return;
1437 }
1438 }
1439
1440 static void
1441 init_print_state(print_state *state, nir_shader *shader, FILE *fp)
1442 {
1443 state->fp = fp;
1444 state->shader = shader;
1445 state->ht = _mesa_pointer_hash_table_create(NULL);
1446 state->syms = _mesa_set_create(NULL, _mesa_hash_string,
1447 _mesa_key_string_equal);
1448 state->index = 0;
1449 }
1450
1451 static void
1452 destroy_print_state(print_state *state)
1453 {
1454 _mesa_hash_table_destroy(state->ht, NULL);
1455 _mesa_set_destroy(state->syms, NULL);
1456 }
1457
1458 void
1459 nir_print_shader_annotated(nir_shader *shader, FILE *fp,
1460 struct hash_table *annotations)
1461 {
1462 print_state state;
1463 init_print_state(&state, shader, fp);
1464
1465 state.annotations = annotations;
1466
1467 fprintf(fp, "shader: %s\n", gl_shader_stage_name(shader->info.stage));
1468
1469 if (shader->info.name)
1470 fprintf(fp, "name: %s\n", shader->info.name);
1471
1472 if (shader->info.label)
1473 fprintf(fp, "label: %s\n", shader->info.label);
1474
1475 if (gl_shader_stage_is_compute(shader->info.stage)) {
1476 fprintf(fp, "local-size: %u, %u, %u%s\n",
1477 shader->info.cs.local_size[0],
1478 shader->info.cs.local_size[1],
1479 shader->info.cs.local_size[2],
1480 shader->info.cs.local_size_variable ? " (variable)" : "");
1481 fprintf(fp, "shared-size: %u\n", shader->info.cs.shared_size);
1482 }
1483
1484 fprintf(fp, "inputs: %u\n", shader->num_inputs);
1485 fprintf(fp, "outputs: %u\n", shader->num_outputs);
1486 fprintf(fp, "uniforms: %u\n", shader->num_uniforms);
1487 fprintf(fp, "shared: %u\n", shader->num_shared);
1488 if (shader->scratch_size)
1489 fprintf(fp, "scratch: %u\n", shader->scratch_size);
1490
1491 nir_foreach_variable(var, &shader->uniforms) {
1492 print_var_decl(var, &state);
1493 }
1494
1495 nir_foreach_variable(var, &shader->inputs) {
1496 print_var_decl(var, &state);
1497 }
1498
1499 nir_foreach_variable(var, &shader->outputs) {
1500 print_var_decl(var, &state);
1501 }
1502
1503 nir_foreach_variable(var, &shader->shared) {
1504 print_var_decl(var, &state);
1505 }
1506
1507 nir_foreach_variable(var, &shader->globals) {
1508 print_var_decl(var, &state);
1509 }
1510
1511 nir_foreach_variable(var, &shader->system_values) {
1512 print_var_decl(var, &state);
1513 }
1514
1515 foreach_list_typed(nir_function, func, node, &shader->functions) {
1516 print_function(func, &state);
1517 }
1518
1519 destroy_print_state(&state);
1520 }
1521
1522 void
1523 nir_print_shader(nir_shader *shader, FILE *fp)
1524 {
1525 nir_print_shader_annotated(shader, fp, NULL);
1526 fflush(fp);
1527 }
1528
1529 void
1530 nir_print_instr(const nir_instr *instr, FILE *fp)
1531 {
1532 print_state state = {
1533 .fp = fp,
1534 };
1535 print_instr(instr, &state, 0);
1536
1537 }
1538
1539 void
1540 nir_print_deref(const nir_deref_instr *deref, FILE *fp)
1541 {
1542 print_state state = {
1543 .fp = fp,
1544 };
1545 print_deref_link(deref, true, &state);
1546 }