radeonsi/gfx10: implement gfx10_shader_ngg
[mesa.git] / src / gallium / drivers / radeonsi / si_shader.h
1 /*
2 * Copyright 2012 Advanced Micro Devices, Inc.
3 * All Rights Reserved.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * on the rights to use, copy, modify, merge, publish, distribute, sub
9 * license, and/or sell copies of the Software, and to permit persons to whom
10 * the Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the next
13 * paragraph) shall be included in all copies or substantial portions of the
14 * Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHOR(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM,
20 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
21 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
22 * USE OR OTHER DEALINGS IN THE SOFTWARE.
23 */
24
25 /* The compiler middle-end architecture: Explaining (non-)monolithic shaders
26 * -------------------------------------------------------------------------
27 *
28 * Typically, there is one-to-one correspondence between API and HW shaders,
29 * that is, for every API shader, there is exactly one shader binary in
30 * the driver.
31 *
32 * The problem with that is that we also have to emulate some API states
33 * (e.g. alpha-test, and many others) in shaders too. The two obvious ways
34 * to deal with it are:
35 * - each shader has multiple variants for each combination of emulated states,
36 * and the variants are compiled on demand, possibly relying on a shader
37 * cache for good performance
38 * - patch shaders at the binary level
39 *
40 * This driver uses something completely different. The emulated states are
41 * usually implemented at the beginning or end of shaders. Therefore, we can
42 * split the shader into 3 parts:
43 * - prolog part (shader code dependent on states)
44 * - main part (the API shader)
45 * - epilog part (shader code dependent on states)
46 *
47 * Each part is compiled as a separate shader and the final binaries are
48 * concatenated. This type of shader is called non-monolithic, because it
49 * consists of multiple independent binaries. Creating a new shader variant
50 * is therefore only a concatenation of shader parts (binaries) and doesn't
51 * involve any compilation. The main shader parts are the only parts that are
52 * compiled when applications create shader objects. The prolog and epilog
53 * parts are compiled on the first use and saved, so that their binaries can
54 * be reused by many other shaders.
55 *
56 * One of the roles of the prolog part is to compute vertex buffer addresses
57 * for vertex shaders. A few of the roles of the epilog part are color buffer
58 * format conversions in pixel shaders that we have to do manually, and write
59 * tessellation factors in tessellation control shaders. The prolog and epilog
60 * have many other important responsibilities in various shader stages.
61 * They don't just "emulate legacy stuff".
62 *
63 * Monolithic shaders are shaders where the parts are combined before LLVM
64 * compilation, and the whole thing is compiled and optimized as one unit with
65 * one binary on the output. The result is the same as the non-monolithic
66 * shader, but the final code can be better, because LLVM can optimize across
67 * all shader parts. Monolithic shaders aren't usually used except for these
68 * special cases:
69 *
70 * 1) Some rarely-used states require modification of the main shader part
71 * itself, and in such cases, only the monolithic shader variant is
72 * compiled, and that's always done on the first use.
73 *
74 * 2) When we do cross-stage optimizations for separate shader objects and
75 * e.g. eliminate unused shader varyings, the resulting optimized shader
76 * variants are always compiled as monolithic shaders, and always
77 * asynchronously (i.e. not stalling ongoing rendering). We call them
78 * "optimized monolithic" shaders. The important property here is that
79 * the non-monolithic unoptimized shader variant is always available for use
80 * when the asynchronous compilation of the optimized shader is not done
81 * yet.
82 *
83 * Starting with GFX9 chips, some shader stages are merged, and the number of
84 * shader parts per shader increased. The complete new list of shader parts is:
85 * - 1st shader: prolog part
86 * - 1st shader: main part
87 * - 2nd shader: prolog part
88 * - 2nd shader: main part
89 * - 2nd shader: epilog part
90 */
91
92 /* How linking shader inputs and outputs between vertex, tessellation, and
93 * geometry shaders works.
94 *
95 * Inputs and outputs between shaders are stored in a buffer. This buffer
96 * lives in LDS (typical case for tessellation), but it can also live
97 * in memory (ESGS). Each input or output has a fixed location within a vertex.
98 * The highest used input or output determines the stride between vertices.
99 *
100 * Since GS and tessellation are only possible in the OpenGL core profile,
101 * only these semantics are valid for per-vertex data:
102 *
103 * Name Location
104 *
105 * POSITION 0
106 * PSIZE 1
107 * CLIPDIST0..1 2..3
108 * CULLDIST0..1 (not implemented)
109 * GENERIC0..31 4..35
110 *
111 * For example, a shader only writing GENERIC0 has the output stride of 5.
112 *
113 * Only these semantics are valid for per-patch data:
114 *
115 * Name Location
116 *
117 * TESSOUTER 0
118 * TESSINNER 1
119 * PATCH0..29 2..31
120 *
121 * That's how independent shaders agree on input and output locations.
122 * The si_shader_io_get_unique_index function assigns the locations.
123 *
124 * For tessellation, other required information for calculating the input and
125 * output addresses like the vertex stride, the patch stride, and the offsets
126 * where per-vertex and per-patch data start, is passed to the shader via
127 * user data SGPRs. The offsets and strides are calculated at draw time and
128 * aren't available at compile time.
129 */
130
131 #ifndef SI_SHADER_H
132 #define SI_SHADER_H
133
134 #include <llvm-c/Core.h> /* LLVMModuleRef */
135 #include <llvm-c/TargetMachine.h>
136 #include "tgsi/tgsi_scan.h"
137 #include "util/u_inlines.h"
138 #include "util/u_queue.h"
139
140 #include "ac_binary.h"
141 #include "ac_llvm_build.h"
142 #include "ac_llvm_util.h"
143
144 #include <stdio.h>
145
146 // Use LDS symbols when supported by LLVM. Can be disabled for testing the old
147 // path on newer LLVM for now. Should be removed in the long term.
148 #define USE_LDS_SYMBOLS (true)
149
150 struct nir_shader;
151 struct si_shader;
152 struct si_context;
153
154 #define SI_MAX_ATTRIBS 16
155 #define SI_MAX_VS_OUTPUTS 40
156
157 /* Shader IO unique indices are supported for TGSI_SEMANTIC_GENERIC with an
158 * index smaller than this.
159 */
160 #define SI_MAX_IO_GENERIC 43
161
162 /* SGPR user data indices */
163 enum {
164 SI_SGPR_RW_BUFFERS, /* rings (& stream-out, VS only) */
165 SI_SGPR_BINDLESS_SAMPLERS_AND_IMAGES,
166 SI_SGPR_CONST_AND_SHADER_BUFFERS, /* or just a constant buffer 0 pointer */
167 SI_SGPR_SAMPLERS_AND_IMAGES,
168 SI_NUM_RESOURCE_SGPRS,
169
170 /* API VS, TES without GS, GS copy shader */
171 SI_SGPR_VS_STATE_BITS = SI_NUM_RESOURCE_SGPRS,
172 SI_NUM_VS_STATE_RESOURCE_SGPRS,
173
174 /* all VS variants */
175 SI_SGPR_BASE_VERTEX = SI_NUM_VS_STATE_RESOURCE_SGPRS,
176 SI_SGPR_START_INSTANCE,
177 SI_SGPR_DRAWID,
178 SI_VS_NUM_USER_SGPR,
179
180 SI_SGPR_VS_BLIT_DATA = SI_SGPR_CONST_AND_SHADER_BUFFERS,
181
182 /* TES */
183 SI_SGPR_TES_OFFCHIP_LAYOUT = SI_NUM_VS_STATE_RESOURCE_SGPRS,
184 SI_SGPR_TES_OFFCHIP_ADDR,
185 SI_TES_NUM_USER_SGPR,
186
187 /* GFX6-8: TCS only */
188 GFX6_SGPR_TCS_OFFCHIP_LAYOUT = SI_NUM_RESOURCE_SGPRS,
189 GFX6_SGPR_TCS_OUT_OFFSETS,
190 GFX6_SGPR_TCS_OUT_LAYOUT,
191 GFX6_SGPR_TCS_IN_LAYOUT,
192 GFX6_TCS_NUM_USER_SGPR,
193
194 /* GFX9: Merged shaders. */
195 /* 2ND_CONST_AND_SHADER_BUFFERS is set in USER_DATA_ADDR_LO (SGPR0). */
196 /* 2ND_SAMPLERS_AND_IMAGES is set in USER_DATA_ADDR_HI (SGPR1). */
197 GFX9_MERGED_NUM_USER_SGPR = SI_VS_NUM_USER_SGPR,
198
199 /* GFX9: Merged LS-HS (VS-TCS) only. */
200 GFX9_SGPR_TCS_OFFCHIP_LAYOUT = GFX9_MERGED_NUM_USER_SGPR,
201 GFX9_SGPR_TCS_OUT_OFFSETS,
202 GFX9_SGPR_TCS_OUT_LAYOUT,
203 GFX9_TCS_NUM_USER_SGPR,
204
205 /* GS limits */
206 GFX6_GS_NUM_USER_SGPR = SI_NUM_RESOURCE_SGPRS,
207 GFX9_VSGS_NUM_USER_SGPR = SI_VS_NUM_USER_SGPR,
208 GFX9_TESGS_NUM_USER_SGPR = SI_TES_NUM_USER_SGPR,
209 SI_GSCOPY_NUM_USER_SGPR = SI_NUM_VS_STATE_RESOURCE_SGPRS,
210
211 /* PS only */
212 SI_SGPR_ALPHA_REF = SI_NUM_RESOURCE_SGPRS,
213 SI_PS_NUM_USER_SGPR,
214 };
215
216 /* LLVM function parameter indices */
217 enum {
218 SI_NUM_RESOURCE_PARAMS = 4,
219
220 /* PS only parameters */
221 SI_PARAM_ALPHA_REF = SI_NUM_RESOURCE_PARAMS,
222 SI_PARAM_PRIM_MASK,
223 SI_PARAM_PERSP_SAMPLE,
224 SI_PARAM_PERSP_CENTER,
225 SI_PARAM_PERSP_CENTROID,
226 SI_PARAM_PERSP_PULL_MODEL,
227 SI_PARAM_LINEAR_SAMPLE,
228 SI_PARAM_LINEAR_CENTER,
229 SI_PARAM_LINEAR_CENTROID,
230 SI_PARAM_LINE_STIPPLE_TEX,
231 SI_PARAM_POS_X_FLOAT,
232 SI_PARAM_POS_Y_FLOAT,
233 SI_PARAM_POS_Z_FLOAT,
234 SI_PARAM_POS_W_FLOAT,
235 SI_PARAM_FRONT_FACE,
236 SI_PARAM_ANCILLARY,
237 SI_PARAM_SAMPLE_COVERAGE,
238 SI_PARAM_POS_FIXED_PT,
239
240 SI_NUM_PARAMS = SI_PARAM_POS_FIXED_PT + 9, /* +8 for COLOR[0..1] */
241 };
242
243 /* Fields of driver-defined VS state SGPR. */
244 /* Clamp vertex color output (only used in VS as VS). */
245 #define S_VS_STATE_CLAMP_VERTEX_COLOR(x) (((unsigned)(x) & 0x1) << 0)
246 #define C_VS_STATE_CLAMP_VERTEX_COLOR 0xFFFFFFFE
247 #define S_VS_STATE_INDEXED(x) (((unsigned)(x) & 0x1) << 1)
248 #define C_VS_STATE_INDEXED 0xFFFFFFFD
249 #define S_VS_STATE_LS_OUT_PATCH_SIZE(x) (((unsigned)(x) & 0x1FFF) << 8)
250 #define C_VS_STATE_LS_OUT_PATCH_SIZE 0xFFE000FF
251 #define S_VS_STATE_LS_OUT_VERTEX_SIZE(x) (((unsigned)(x) & 0xFF) << 24)
252 #define C_VS_STATE_LS_OUT_VERTEX_SIZE 0x00FFFFFF
253
254 /* Driver-specific system values. */
255 enum {
256 /* Values from set_tess_state. */
257 TGSI_SEMANTIC_DEFAULT_TESSOUTER_SI = TGSI_SEMANTIC_COUNT,
258 TGSI_SEMANTIC_DEFAULT_TESSINNER_SI,
259
260 /* Up to 4 dwords in user SGPRs for compute shaders. */
261 TGSI_SEMANTIC_CS_USER_DATA,
262 };
263
264 enum {
265 /* Use a property enum that CS wouldn't use. */
266 TGSI_PROPERTY_CS_LOCAL_SIZE = TGSI_PROPERTY_FS_COORD_ORIGIN,
267
268 /* The number of used user data dwords in the range [1, 4]. */
269 TGSI_PROPERTY_CS_USER_DATA_DWORDS = TGSI_PROPERTY_FS_COORD_PIXEL_CENTER,
270
271 /* Use a property enum that VS wouldn't use. */
272 TGSI_PROPERTY_VS_BLIT_SGPRS = TGSI_PROPERTY_FS_COORD_ORIGIN,
273
274 /* These represent the number of SGPRs the shader uses. */
275 SI_VS_BLIT_SGPRS_POS = 3,
276 SI_VS_BLIT_SGPRS_POS_COLOR = 7,
277 SI_VS_BLIT_SGPRS_POS_TEXCOORD = 9,
278 };
279
280 /**
281 * For VS shader keys, describe any fixups required for vertex fetch.
282 *
283 * \ref log_size, \ref format, and the number of channels are interpreted as
284 * by \ref ac_build_opencoded_load_format.
285 *
286 * Note: all bits 0 (size = 1 byte, num channels = 1, format = float) is an
287 * impossible format and indicates that no fixup is needed (just use
288 * buffer_load_format_xyzw).
289 */
290 union si_vs_fix_fetch {
291 struct {
292 uint8_t log_size : 2; /* 1, 2, 4, 8 or bytes per channel */
293 uint8_t num_channels_m1 : 2; /* number of channels minus 1 */
294 uint8_t format : 3; /* AC_FETCH_FORMAT_xxx */
295 uint8_t reverse : 1; /* reverse XYZ channels */
296 } u;
297 uint8_t bits;
298 };
299
300 struct si_shader;
301
302 /* State of the context creating the shader object. */
303 struct si_compiler_ctx_state {
304 /* Should only be used by si_init_shader_selector_async and
305 * si_build_shader_variant if thread_index == -1 (non-threaded). */
306 struct ac_llvm_compiler *compiler;
307
308 /* Used if thread_index == -1 or if debug.async is true. */
309 struct pipe_debug_callback debug;
310
311 /* Used for creating the log string for gallium/ddebug. */
312 bool is_debug_context;
313 };
314
315 /* A shader selector is a gallium CSO and contains shader variants and
316 * binaries for one TGSI program. This can be shared by multiple contexts.
317 */
318 struct si_shader_selector {
319 struct pipe_reference reference;
320 struct si_screen *screen;
321 struct util_queue_fence ready;
322 struct si_compiler_ctx_state compiler_ctx_state;
323
324 mtx_t mutex;
325 struct si_shader *first_variant; /* immutable after the first variant */
326 struct si_shader *last_variant; /* mutable */
327
328 /* The compiled TGSI shader expecting a prolog and/or epilog (not
329 * uploaded to a buffer).
330 */
331 struct si_shader *main_shader_part;
332 struct si_shader *main_shader_part_ls; /* as_ls is set in the key */
333 struct si_shader *main_shader_part_es; /* as_es is set in the key */
334 struct si_shader *main_shader_part_ngg; /* as_ngg is set in the key */
335
336 struct si_shader *gs_copy_shader;
337
338 struct tgsi_token *tokens;
339 struct nir_shader *nir;
340 struct pipe_stream_output_info so;
341 struct tgsi_shader_info info;
342 struct tgsi_tessctrl_info tcs_info;
343
344 /* PIPE_SHADER_[VERTEX|FRAGMENT|...] */
345 unsigned type;
346 bool vs_needs_prolog;
347 bool force_correct_derivs_after_kill;
348 bool prim_discard_cs_allowed;
349 unsigned pa_cl_vs_out_cntl;
350 ubyte clipdist_mask;
351 ubyte culldist_mask;
352
353 /* ES parameters. */
354 unsigned esgs_itemsize; /* vertex stride */
355 unsigned lshs_vertex_stride;
356
357 /* GS parameters. */
358 unsigned gs_input_verts_per_prim;
359 unsigned gs_output_prim;
360 unsigned gs_max_out_vertices;
361 unsigned gs_num_invocations;
362 unsigned max_gs_stream; /* count - 1 */
363 unsigned gsvs_vertex_size;
364 unsigned max_gsvs_emit_size;
365 unsigned enabled_streamout_buffer_mask;
366
367 /* PS parameters. */
368 unsigned color_attr_index[2];
369 unsigned db_shader_control;
370 /* Set 0xf or 0x0 (4 bits) per each written output.
371 * ANDed with spi_shader_col_format.
372 */
373 unsigned colors_written_4bit;
374
375 uint64_t outputs_written_before_ps; /* "get_unique_index" bits */
376 uint64_t outputs_written; /* "get_unique_index" bits */
377 uint32_t patch_outputs_written; /* "get_unique_index_patch" bits */
378
379 uint64_t inputs_read; /* "get_unique_index" bits */
380
381 /* bitmasks of used descriptor slots */
382 uint32_t active_const_and_shader_buffers;
383 uint64_t active_samplers_and_images;
384 };
385
386 /* Valid shader configurations:
387 *
388 * API shaders VS | TCS | TES | GS |pass| PS
389 * are compiled as: | | | |thru|
390 * | | | | |
391 * Only VS & PS: VS | | | | | PS
392 * GFX6 - with GS: ES | | | GS | VS | PS
393 * - with tess: LS | HS | VS | | | PS
394 * - with both: LS | HS | ES | GS | VS | PS
395 * GFX9 - with GS: -> | | | GS | VS | PS
396 * - with tess: -> | HS | VS | | | PS
397 * - with both: -> | HS | -> | GS | VS | PS
398 * | | | | |
399 * NGG - VS & PS: GS | | | | | PS
400 * (GFX10+) - with GS: -> | | | GS | | PS
401 * - with tess: -> | HS | GS | | | PS
402 * - with both: -> | HS | -> | GS | | PS
403 *
404 * -> = merged with the next stage
405 */
406
407 /* Use the byte alignment for all following structure members for optimal
408 * shader key memory footprint.
409 */
410 #pragma pack(push, 1)
411
412 /* Common VS bits between the shader key and the prolog key. */
413 struct si_vs_prolog_bits {
414 /* - If neither "is_one" nor "is_fetched" has a bit set, the instance
415 * divisor is 0.
416 * - If "is_one" has a bit set, the instance divisor is 1.
417 * - If "is_fetched" has a bit set, the instance divisor will be loaded
418 * from the constant buffer.
419 */
420 uint16_t instance_divisor_is_one; /* bitmask of inputs */
421 uint16_t instance_divisor_is_fetched; /* bitmask of inputs */
422 unsigned ls_vgpr_fix:1;
423 unsigned unpack_instance_id_from_vertex_id:1;
424 };
425
426 /* Common TCS bits between the shader key and the epilog key. */
427 struct si_tcs_epilog_bits {
428 unsigned prim_mode:3;
429 unsigned invoc0_tess_factors_are_def:1;
430 unsigned tes_reads_tess_factors:1;
431 };
432
433 struct si_gs_prolog_bits {
434 unsigned tri_strip_adj_fix:1;
435 unsigned gfx9_prev_is_vs:1;
436 };
437
438 /* Common PS bits between the shader key and the prolog key. */
439 struct si_ps_prolog_bits {
440 unsigned color_two_side:1;
441 unsigned flatshade_colors:1;
442 unsigned poly_stipple:1;
443 unsigned force_persp_sample_interp:1;
444 unsigned force_linear_sample_interp:1;
445 unsigned force_persp_center_interp:1;
446 unsigned force_linear_center_interp:1;
447 unsigned bc_optimize_for_persp:1;
448 unsigned bc_optimize_for_linear:1;
449 unsigned samplemask_log_ps_iter:3;
450 };
451
452 /* Common PS bits between the shader key and the epilog key. */
453 struct si_ps_epilog_bits {
454 unsigned spi_shader_col_format;
455 unsigned color_is_int8:8;
456 unsigned color_is_int10:8;
457 unsigned last_cbuf:3;
458 unsigned alpha_func:3;
459 unsigned alpha_to_one:1;
460 unsigned poly_line_smoothing:1;
461 unsigned clamp_color:1;
462 };
463
464 union si_shader_part_key {
465 struct {
466 struct si_vs_prolog_bits states;
467 unsigned num_input_sgprs:6;
468 /* For merged stages such as LS-HS, HS input VGPRs are first. */
469 unsigned num_merged_next_stage_vgprs:3;
470 unsigned last_input:4;
471 unsigned as_ls:1;
472 unsigned as_es:1;
473 unsigned as_ngg:1;
474 /* Prologs for monolithic shaders shouldn't set EXEC. */
475 unsigned is_monolithic:1;
476 } vs_prolog;
477 struct {
478 struct si_tcs_epilog_bits states;
479 } tcs_epilog;
480 struct {
481 struct si_gs_prolog_bits states;
482 /* Prologs of monolithic shaders shouldn't set EXEC. */
483 unsigned is_monolithic:1;
484 } gs_prolog;
485 struct {
486 struct si_ps_prolog_bits states;
487 unsigned num_input_sgprs:6;
488 unsigned num_input_vgprs:5;
489 /* Color interpolation and two-side color selection. */
490 unsigned colors_read:8; /* color input components read */
491 unsigned num_interp_inputs:5; /* BCOLOR is at this location */
492 unsigned face_vgpr_index:5;
493 unsigned ancillary_vgpr_index:5;
494 unsigned wqm:1;
495 char color_attr_index[2];
496 signed char color_interp_vgpr_index[2]; /* -1 == constant */
497 } ps_prolog;
498 struct {
499 struct si_ps_epilog_bits states;
500 unsigned colors_written:8;
501 unsigned writes_z:1;
502 unsigned writes_stencil:1;
503 unsigned writes_samplemask:1;
504 } ps_epilog;
505 };
506
507 struct si_shader_key {
508 /* Prolog and epilog flags. */
509 union {
510 struct {
511 struct si_vs_prolog_bits prolog;
512 } vs;
513 struct {
514 struct si_vs_prolog_bits ls_prolog; /* for merged LS-HS */
515 struct si_shader_selector *ls; /* for merged LS-HS */
516 struct si_tcs_epilog_bits epilog;
517 } tcs; /* tessellation control shader */
518 struct {
519 struct si_vs_prolog_bits vs_prolog; /* for merged ES-GS */
520 struct si_shader_selector *es; /* for merged ES-GS */
521 struct si_gs_prolog_bits prolog;
522 } gs;
523 struct {
524 struct si_ps_prolog_bits prolog;
525 struct si_ps_epilog_bits epilog;
526 } ps;
527 } part;
528
529 /* These three are initially set according to the NEXT_SHADER property,
530 * or guessed if the property doesn't seem correct.
531 */
532 unsigned as_es:1; /* export shader, which precedes GS */
533 unsigned as_ls:1; /* local shader, which precedes TCS */
534 unsigned as_ngg:1; /* VS, TES, or GS compiled as NGG primitive shader */
535
536 /* Flags for monolithic compilation only. */
537 struct {
538 /* Whether fetch should be opencoded according to vs_fix_fetch.
539 * Otherwise, if vs_fix_fetch is non-zero, buffer_load_format_xyzw
540 * with minimal fixups is used. */
541 uint16_t vs_fetch_opencode;
542 union si_vs_fix_fetch vs_fix_fetch[SI_MAX_ATTRIBS];
543
544 union {
545 uint64_t ff_tcs_inputs_to_copy; /* for fixed-func TCS */
546 /* When PS needs PrimID and GS is disabled. */
547 unsigned vs_export_prim_id:1;
548 struct {
549 unsigned interpolate_at_sample_force_center:1;
550 unsigned fbfetch_msaa;
551 unsigned fbfetch_is_1D;
552 unsigned fbfetch_layered;
553 } ps;
554 } u;
555 } mono;
556
557 /* Optimization flags for asynchronous compilation only. */
558 struct {
559 /* For HW VS (it can be VS, TES, GS) */
560 uint64_t kill_outputs; /* "get_unique_index" bits */
561 unsigned clip_disable:1;
562
563 /* For shaders where monolithic variants have better code.
564 *
565 * This is a flag that has no effect on code generation,
566 * but forces monolithic shaders to be used as soon as
567 * possible, because it's in the "opt" group.
568 */
569 unsigned prefer_mono:1;
570
571 /* Primitive discard compute shader. */
572 unsigned vs_as_prim_discard_cs:1;
573 unsigned cs_prim_type:4;
574 unsigned cs_indexed:1;
575 unsigned cs_instancing:1;
576 unsigned cs_primitive_restart:1;
577 unsigned cs_provoking_vertex_first:1;
578 unsigned cs_need_correct_orientation:1;
579 unsigned cs_cull_front:1;
580 unsigned cs_cull_back:1;
581 unsigned cs_cull_z:1;
582 unsigned cs_halfz_clip_space:1;
583 } opt;
584 };
585
586 /* Restore the pack alignment to default. */
587 #pragma pack(pop)
588
589 /* GCN-specific shader info. */
590 struct si_shader_info {
591 ubyte vs_output_param_offset[SI_MAX_VS_OUTPUTS];
592 ubyte num_input_sgprs;
593 ubyte num_input_vgprs;
594 signed char face_vgpr_index;
595 signed char ancillary_vgpr_index;
596 bool uses_instanceid;
597 ubyte nr_pos_exports;
598 ubyte nr_param_exports;
599 unsigned private_mem_vgprs;
600 unsigned max_simd_waves;
601 };
602
603 struct si_shader_binary {
604 const char *elf_buffer;
605 size_t elf_size;
606
607 char *llvm_ir_string;
608 };
609
610 struct gfx9_gs_info {
611 unsigned es_verts_per_subgroup;
612 unsigned gs_prims_per_subgroup;
613 unsigned gs_inst_prims_in_subgroup;
614 unsigned max_prims_per_subgroup;
615 unsigned esgs_ring_size; /* in bytes */
616 };
617
618 struct si_shader {
619 struct si_compiler_ctx_state compiler_ctx_state;
620
621 struct si_shader_selector *selector;
622 struct si_shader_selector *previous_stage_sel; /* for refcounting */
623 struct si_shader *next_variant;
624
625 struct si_shader_part *prolog;
626 struct si_shader *previous_stage; /* for GFX9 */
627 struct si_shader_part *prolog2;
628 struct si_shader_part *epilog;
629
630 struct si_pm4_state *pm4;
631 struct si_resource *bo;
632 struct si_resource *scratch_bo;
633 struct si_shader_key key;
634 struct util_queue_fence ready;
635 bool compilation_failed;
636 bool is_monolithic;
637 bool is_optimized;
638 bool is_binary_shared;
639 bool is_gs_copy_shader;
640
641 /* The following data is all that's needed for binary shaders. */
642 struct si_shader_binary binary;
643 struct ac_shader_config config;
644 struct si_shader_info info;
645
646 /* Shader key + LLVM IR + disassembly + statistics.
647 * Generated for debug contexts only.
648 */
649 char *shader_log;
650 size_t shader_log_size;
651
652 struct gfx9_gs_info gs_info;
653
654 /* For save precompute context registers values. */
655 union {
656 struct {
657 unsigned vgt_gsvs_ring_offset_1;
658 unsigned vgt_gsvs_ring_offset_2;
659 unsigned vgt_gsvs_ring_offset_3;
660 unsigned vgt_gs_out_prim_type;
661 unsigned vgt_gsvs_ring_itemsize;
662 unsigned vgt_gs_max_vert_out;
663 unsigned vgt_gs_vert_itemsize;
664 unsigned vgt_gs_vert_itemsize_1;
665 unsigned vgt_gs_vert_itemsize_2;
666 unsigned vgt_gs_vert_itemsize_3;
667 unsigned vgt_gs_instance_cnt;
668 unsigned vgt_gs_onchip_cntl;
669 unsigned vgt_gs_max_prims_per_subgroup;
670 unsigned vgt_esgs_ring_itemsize;
671 } gs;
672
673 struct {
674 unsigned ge_max_output_per_subgroup;
675 unsigned ge_ngg_subgrp_cntl;
676 unsigned vgt_primitiveid_en;
677 unsigned vgt_gs_onchip_cntl;
678 unsigned vgt_gs_instance_cnt;
679 unsigned vgt_esgs_ring_itemsize;
680 unsigned vgt_reuse_off;
681 unsigned spi_vs_out_config;
682 unsigned spi_shader_idx_format;
683 unsigned spi_shader_pos_format;
684 unsigned pa_cl_vte_cntl;
685 unsigned vgt_gs_max_vert_out; /* for API GS */
686 } ngg;
687
688 struct {
689 unsigned vgt_gs_mode;
690 unsigned vgt_primitiveid_en;
691 unsigned vgt_reuse_off;
692 unsigned spi_vs_out_config;
693 unsigned spi_shader_pos_format;
694 unsigned pa_cl_vte_cntl;
695 } vs;
696
697 struct {
698 unsigned spi_ps_input_ena;
699 unsigned spi_ps_input_addr;
700 unsigned spi_baryc_cntl;
701 unsigned spi_ps_in_control;
702 unsigned spi_shader_z_format;
703 unsigned spi_shader_col_format;
704 unsigned cb_shader_mask;
705 } ps;
706 } ctx_reg;
707
708 /*For save precompute registers value */
709 unsigned vgt_tf_param; /* VGT_TF_PARAM */
710 unsigned vgt_vertex_reuse_block_cntl; /* VGT_VERTEX_REUSE_BLOCK_CNTL */
711 unsigned ge_cntl;
712 };
713
714 struct si_shader_part {
715 struct si_shader_part *next;
716 union si_shader_part_key key;
717 struct si_shader_binary binary;
718 struct ac_shader_config config;
719 };
720
721 /* si_shader.c */
722 struct si_shader *
723 si_generate_gs_copy_shader(struct si_screen *sscreen,
724 struct ac_llvm_compiler *compiler,
725 struct si_shader_selector *gs_selector,
726 struct pipe_debug_callback *debug);
727 int si_compile_tgsi_shader(struct si_screen *sscreen,
728 struct ac_llvm_compiler *compiler,
729 struct si_shader *shader,
730 struct pipe_debug_callback *debug);
731 bool si_shader_create(struct si_screen *sscreen, struct ac_llvm_compiler *compiler,
732 struct si_shader *shader,
733 struct pipe_debug_callback *debug);
734 void si_shader_destroy(struct si_shader *shader);
735 unsigned si_shader_io_get_unique_index_patch(unsigned semantic_name, unsigned index);
736 unsigned si_shader_io_get_unique_index(unsigned semantic_name, unsigned index,
737 unsigned is_varying);
738 bool si_shader_binary_upload(struct si_screen *sscreen, struct si_shader *shader,
739 uint64_t scratch_va);
740 void si_shader_dump(struct si_screen *sscreen, struct si_shader *shader,
741 struct pipe_debug_callback *debug, unsigned processor,
742 FILE *f, bool check_debug_option);
743 void si_shader_dump_stats_for_shader_db(struct si_screen *screen,
744 struct si_shader *shader,
745 struct pipe_debug_callback *debug);
746 void si_multiwave_lds_size_workaround(struct si_screen *sscreen,
747 unsigned *lds_size);
748 const char *si_get_shader_name(const struct si_shader *shader, unsigned processor);
749 void si_shader_binary_clean(struct si_shader_binary *binary);
750
751 /* si_shader_nir.c */
752 void si_nir_scan_shader(const struct nir_shader *nir,
753 struct tgsi_shader_info *info);
754 void si_nir_scan_tess_ctrl(const struct nir_shader *nir,
755 struct tgsi_tessctrl_info *out);
756 void si_lower_nir(struct si_shader_selector *sel);
757 void si_nir_opts(struct nir_shader *nir);
758
759 /* si_state_shaders.c */
760 void gfx9_get_gs_info(struct si_shader_selector *es,
761 struct si_shader_selector *gs,
762 struct gfx9_gs_info *out);
763
764 /* Inline helpers. */
765
766 /* Return the pointer to the main shader part's pointer. */
767 static inline struct si_shader **
768 si_get_main_shader_part(struct si_shader_selector *sel,
769 struct si_shader_key *key)
770 {
771 if (key->as_ls)
772 return &sel->main_shader_part_ls;
773 if (key->as_es)
774 return &sel->main_shader_part_es;
775 if (key->as_ngg)
776 return &sel->main_shader_part_ngg;
777 return &sel->main_shader_part;
778 }
779
780 static inline bool
781 si_shader_uses_bindless_samplers(struct si_shader_selector *selector)
782 {
783 return selector ? selector->info.uses_bindless_samplers : false;
784 }
785
786 static inline bool
787 si_shader_uses_bindless_images(struct si_shader_selector *selector)
788 {
789 return selector ? selector->info.uses_bindless_images : false;
790 }
791
792 void si_destroy_shader_selector(struct si_context *sctx,
793 struct si_shader_selector *sel);
794
795 static inline void
796 si_shader_selector_reference(struct si_context *sctx,
797 struct si_shader_selector **dst,
798 struct si_shader_selector *src)
799 {
800 if (pipe_reference(&(*dst)->reference, &src->reference))
801 si_destroy_shader_selector(sctx, *dst);
802
803 *dst = src;
804 }
805
806 #endif