• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /**************************************************************************
2  *
3  * Copyright 2009-2010 VMware, Inc.
4  * All Rights Reserved.
5  *
6  * Permission is hereby granted, free of charge, to any person obtaining a
7  * copy of this software and associated documentation files (the
8  * "Software"), to deal in the Software without restriction, including
9  * without limitation the rights to use, copy, modify, merge, publish,
10  * distribute, sub license, and/or sell copies of the Software, and to
11  * permit persons to whom the Software is furnished to do so, subject to
12  * the following conditions:
13  *
14  * The above copyright notice and this permission notice (including the
15  * next paragraph) shall be included in all copies or substantial portions
16  * of the Software.
17  *
18  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
19  * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
20  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
21  * IN NO EVENT SHALL VMWARE, INC AND/OR ITS SUPPLIERS BE LIABLE FOR
22  * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
23  * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
24  * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
25  *
26  **************************************************************************/
27 
28 
29 #include "pipe/p_context.h"
30 #include "pipe/p_state.h"
31 #include "tgsi/tgsi_ureg.h"
32 #include "tgsi/tgsi_build.h"
33 #include "tgsi/tgsi_info.h"
34 #include "tgsi/tgsi_dump.h"
35 #include "tgsi/tgsi_sanity.h"
36 #include "util/u_debug.h"
37 #include "util/u_memory.h"
38 #include "util/u_math.h"
39 #include "util/u_bitmask.h"
40 
41 union tgsi_any_token {
42    struct tgsi_header header;
43    struct tgsi_processor processor;
44    struct tgsi_token token;
45    struct tgsi_property prop;
46    struct tgsi_property_data prop_data;
47    struct tgsi_declaration decl;
48    struct tgsi_declaration_range decl_range;
49    struct tgsi_declaration_dimension decl_dim;
50    struct tgsi_declaration_interp decl_interp;
51    struct tgsi_declaration_semantic decl_semantic;
52    struct tgsi_declaration_sampler_view decl_sampler_view;
53    struct tgsi_declaration_array array;
54    struct tgsi_immediate imm;
55    union  tgsi_immediate_data imm_data;
56    struct tgsi_instruction insn;
57    struct tgsi_instruction_label insn_label;
58    struct tgsi_instruction_texture insn_texture;
59    struct tgsi_texture_offset insn_texture_offset;
60    struct tgsi_src_register src;
61    struct tgsi_ind_register ind;
62    struct tgsi_dimension dim;
63    struct tgsi_dst_register dst;
64    unsigned value;
65 };
66 
67 
68 struct ureg_tokens {
69    union tgsi_any_token *tokens;
70    unsigned size;
71    unsigned order;
72    unsigned count;
73 };
74 
75 #define UREG_MAX_INPUT PIPE_MAX_ATTRIBS
76 #define UREG_MAX_SYSTEM_VALUE PIPE_MAX_ATTRIBS
77 #define UREG_MAX_OUTPUT PIPE_MAX_SHADER_OUTPUTS
78 #define UREG_MAX_CONSTANT_RANGE 32
79 #define UREG_MAX_IMMEDIATE 4096
80 #define UREG_MAX_ADDR 3
81 #define UREG_MAX_PRED 1
82 #define UREG_MAX_ARRAY_TEMPS 256
83 
84 struct const_decl {
85    struct {
86       unsigned first;
87       unsigned last;
88    } constant_range[UREG_MAX_CONSTANT_RANGE];
89    unsigned nr_constant_ranges;
90 };
91 
92 #define DOMAIN_DECL 0
93 #define DOMAIN_INSN 1
94 
95 struct ureg_program
96 {
97    unsigned processor;
98    struct pipe_context *pipe;
99 
100    struct {
101       unsigned semantic_name;
102       unsigned semantic_index;
103       unsigned interp;
104       unsigned char cylindrical_wrap;
105       unsigned interp_location;
106    } fs_input[UREG_MAX_INPUT];
107    unsigned nr_fs_inputs;
108 
109    unsigned vs_inputs[UREG_MAX_INPUT/32];
110 
111    struct {
112       unsigned index;
113       unsigned semantic_name;
114       unsigned semantic_index;
115    } gs_input[UREG_MAX_INPUT];
116    unsigned nr_gs_inputs;
117 
118    struct {
119       unsigned index;
120       unsigned semantic_name;
121       unsigned semantic_index;
122    } system_value[UREG_MAX_SYSTEM_VALUE];
123    unsigned nr_system_values;
124 
125    struct {
126       unsigned semantic_name;
127       unsigned semantic_index;
128       unsigned usage_mask; /* = TGSI_WRITEMASK_* */
129    } output[UREG_MAX_OUTPUT];
130    unsigned nr_outputs;
131 
132    struct {
133       union {
134          float f[4];
135          unsigned u[4];
136          int i[4];
137       } value;
138       unsigned nr;
139       unsigned type;
140    } immediate[UREG_MAX_IMMEDIATE];
141    unsigned nr_immediates;
142 
143    struct ureg_src sampler[PIPE_MAX_SAMPLERS];
144    unsigned nr_samplers;
145 
146    struct {
147       unsigned index;
148       unsigned target;
149       unsigned return_type_x;
150       unsigned return_type_y;
151       unsigned return_type_z;
152       unsigned return_type_w;
153    } sampler_view[PIPE_MAX_SHADER_SAMPLER_VIEWS];
154    unsigned nr_sampler_views;
155 
156    struct util_bitmask *free_temps;
157    struct util_bitmask *local_temps;
158    struct util_bitmask *decl_temps;
159    unsigned nr_temps;
160 
161    unsigned array_temps[UREG_MAX_ARRAY_TEMPS];
162    unsigned nr_array_temps;
163 
164    struct const_decl const_decls;
165    struct const_decl const_decls2D[PIPE_MAX_CONSTANT_BUFFERS];
166 
167    unsigned properties[TGSI_PROPERTY_COUNT];
168 
169    unsigned nr_addrs;
170    unsigned nr_preds;
171    unsigned nr_instructions;
172 
173    struct ureg_tokens domain[2];
174 };
175 
176 static union tgsi_any_token error_tokens[32];
177 
tokens_error(struct ureg_tokens * tokens)178 static void tokens_error( struct ureg_tokens *tokens )
179 {
180    if (tokens->tokens && tokens->tokens != error_tokens)
181       FREE(tokens->tokens);
182 
183    tokens->tokens = error_tokens;
184    tokens->size = ARRAY_SIZE(error_tokens);
185    tokens->count = 0;
186 }
187 
188 
tokens_expand(struct ureg_tokens * tokens,unsigned count)189 static void tokens_expand( struct ureg_tokens *tokens,
190                            unsigned count )
191 {
192    unsigned old_size = tokens->size * sizeof(unsigned);
193 
194    if (tokens->tokens == error_tokens) {
195       return;
196    }
197 
198    while (tokens->count + count > tokens->size) {
199       tokens->size = (1 << ++tokens->order);
200    }
201 
202    tokens->tokens = REALLOC(tokens->tokens,
203                             old_size,
204                             tokens->size * sizeof(unsigned));
205    if (tokens->tokens == NULL) {
206       tokens_error(tokens);
207    }
208 }
209 
set_bad(struct ureg_program * ureg)210 static void set_bad( struct ureg_program *ureg )
211 {
212    tokens_error(&ureg->domain[0]);
213 }
214 
215 
216 
get_tokens(struct ureg_program * ureg,unsigned domain,unsigned count)217 static union tgsi_any_token *get_tokens( struct ureg_program *ureg,
218                                          unsigned domain,
219                                          unsigned count )
220 {
221    struct ureg_tokens *tokens = &ureg->domain[domain];
222    union tgsi_any_token *result;
223 
224    if (tokens->count + count > tokens->size)
225       tokens_expand(tokens, count);
226 
227    result = &tokens->tokens[tokens->count];
228    tokens->count += count;
229    return result;
230 }
231 
232 
retrieve_token(struct ureg_program * ureg,unsigned domain,unsigned nr)233 static union tgsi_any_token *retrieve_token( struct ureg_program *ureg,
234                                             unsigned domain,
235                                             unsigned nr )
236 {
237    if (ureg->domain[domain].tokens == error_tokens)
238       return &error_tokens[0];
239 
240    return &ureg->domain[domain].tokens[nr];
241 }
242 
243 
244 
245 static inline struct ureg_dst
ureg_dst_register(unsigned file,unsigned index)246 ureg_dst_register( unsigned file,
247                    unsigned index )
248 {
249    struct ureg_dst dst;
250 
251    dst.File      = file;
252    dst.WriteMask = TGSI_WRITEMASK_XYZW;
253    dst.Indirect  = 0;
254    dst.IndirectFile = TGSI_FILE_NULL;
255    dst.IndirectIndex = 0;
256    dst.IndirectSwizzle = 0;
257    dst.Saturate  = 0;
258    dst.PredNegate = 0;
259    dst.PredSwizzleX = TGSI_SWIZZLE_X;
260    dst.PredSwizzleY = TGSI_SWIZZLE_Y;
261    dst.PredSwizzleZ = TGSI_SWIZZLE_Z;
262    dst.PredSwizzleW = TGSI_SWIZZLE_W;
263    dst.Index     = index;
264    dst.ArrayID = 0;
265 
266    return dst;
267 }
268 
269 
270 void
ureg_property(struct ureg_program * ureg,unsigned name,unsigned value)271 ureg_property(struct ureg_program *ureg, unsigned name, unsigned value)
272 {
273    assert(name < ARRAY_SIZE(ureg->properties));
274    ureg->properties[name] = value;
275 }
276 
277 struct ureg_src
ureg_DECL_fs_input_cyl_centroid(struct ureg_program * ureg,unsigned semantic_name,unsigned semantic_index,unsigned interp_mode,unsigned cylindrical_wrap,unsigned interp_location)278 ureg_DECL_fs_input_cyl_centroid(struct ureg_program *ureg,
279                        unsigned semantic_name,
280                        unsigned semantic_index,
281                        unsigned interp_mode,
282                        unsigned cylindrical_wrap,
283                        unsigned interp_location)
284 {
285    unsigned i;
286 
287    for (i = 0; i < ureg->nr_fs_inputs; i++) {
288       if (ureg->fs_input[i].semantic_name == semantic_name &&
289           ureg->fs_input[i].semantic_index == semantic_index) {
290          goto out;
291       }
292    }
293 
294    if (ureg->nr_fs_inputs < UREG_MAX_INPUT) {
295       ureg->fs_input[i].semantic_name = semantic_name;
296       ureg->fs_input[i].semantic_index = semantic_index;
297       ureg->fs_input[i].interp = interp_mode;
298       ureg->fs_input[i].cylindrical_wrap = cylindrical_wrap;
299       ureg->fs_input[i].interp_location = interp_location;
300       ureg->nr_fs_inputs++;
301    } else {
302       set_bad(ureg);
303    }
304 
305 out:
306    return ureg_src_register(TGSI_FILE_INPUT, i);
307 }
308 
309 
310 struct ureg_src
ureg_DECL_vs_input(struct ureg_program * ureg,unsigned index)311 ureg_DECL_vs_input( struct ureg_program *ureg,
312                     unsigned index )
313 {
314    assert(ureg->processor == TGSI_PROCESSOR_VERTEX);
315 
316    ureg->vs_inputs[index/32] |= 1 << (index % 32);
317    return ureg_src_register( TGSI_FILE_INPUT, index );
318 }
319 
320 
321 struct ureg_src
ureg_DECL_gs_input(struct ureg_program * ureg,unsigned index,unsigned semantic_name,unsigned semantic_index)322 ureg_DECL_gs_input(struct ureg_program *ureg,
323                    unsigned index,
324                    unsigned semantic_name,
325                    unsigned semantic_index)
326 {
327    if (ureg->nr_gs_inputs < UREG_MAX_INPUT) {
328       ureg->gs_input[ureg->nr_gs_inputs].index = index;
329       ureg->gs_input[ureg->nr_gs_inputs].semantic_name = semantic_name;
330       ureg->gs_input[ureg->nr_gs_inputs].semantic_index = semantic_index;
331       ureg->nr_gs_inputs++;
332    } else {
333       set_bad(ureg);
334    }
335 
336    /* XXX: Add suport for true 2D input registers. */
337    return ureg_src_register(TGSI_FILE_INPUT, index);
338 }
339 
340 
341 struct ureg_src
ureg_DECL_system_value(struct ureg_program * ureg,unsigned index,unsigned semantic_name,unsigned semantic_index)342 ureg_DECL_system_value(struct ureg_program *ureg,
343                        unsigned index,
344                        unsigned semantic_name,
345                        unsigned semantic_index)
346 {
347    if (ureg->nr_system_values < UREG_MAX_SYSTEM_VALUE) {
348       ureg->system_value[ureg->nr_system_values].index = index;
349       ureg->system_value[ureg->nr_system_values].semantic_name = semantic_name;
350       ureg->system_value[ureg->nr_system_values].semantic_index = semantic_index;
351       ureg->nr_system_values++;
352    } else {
353       set_bad(ureg);
354    }
355 
356    return ureg_src_register(TGSI_FILE_SYSTEM_VALUE, index);
357 }
358 
359 
360 struct ureg_dst
ureg_DECL_output_masked(struct ureg_program * ureg,unsigned name,unsigned index,unsigned usage_mask)361 ureg_DECL_output_masked( struct ureg_program *ureg,
362                          unsigned name,
363                          unsigned index,
364                          unsigned usage_mask )
365 {
366    unsigned i;
367 
368    assert(usage_mask != 0);
369 
370    for (i = 0; i < ureg->nr_outputs; i++) {
371       if (ureg->output[i].semantic_name == name &&
372           ureg->output[i].semantic_index == index) {
373          ureg->output[i].usage_mask |= usage_mask;
374          goto out;
375       }
376    }
377 
378    if (ureg->nr_outputs < UREG_MAX_OUTPUT) {
379       ureg->output[i].semantic_name = name;
380       ureg->output[i].semantic_index = index;
381       ureg->output[i].usage_mask = usage_mask;
382       ureg->nr_outputs++;
383    }
384    else {
385       set_bad( ureg );
386    }
387 
388 out:
389    return ureg_dst_register( TGSI_FILE_OUTPUT, i );
390 }
391 
392 
393 struct ureg_dst
ureg_DECL_output(struct ureg_program * ureg,unsigned name,unsigned index)394 ureg_DECL_output( struct ureg_program *ureg,
395                   unsigned name,
396                   unsigned index )
397 {
398    return ureg_DECL_output_masked(ureg, name, index, TGSI_WRITEMASK_XYZW);
399 }
400 
401 
402 /* Returns a new constant register.  Keep track of which have been
403  * referred to so that we can emit decls later.
404  *
405  * Constant operands declared with this function must be addressed
406  * with a two-dimensional index.
407  *
408  * There is nothing in this code to bind this constant to any tracked
409  * value or manage any constant_buffer contents -- that's the
410  * resposibility of the calling code.
411  */
412 void
ureg_DECL_constant2D(struct ureg_program * ureg,unsigned first,unsigned last,unsigned index2D)413 ureg_DECL_constant2D(struct ureg_program *ureg,
414                      unsigned first,
415                      unsigned last,
416                      unsigned index2D)
417 {
418    struct const_decl *decl = &ureg->const_decls2D[index2D];
419 
420    assert(index2D < PIPE_MAX_CONSTANT_BUFFERS);
421 
422    if (decl->nr_constant_ranges < UREG_MAX_CONSTANT_RANGE) {
423       uint i = decl->nr_constant_ranges++;
424 
425       decl->constant_range[i].first = first;
426       decl->constant_range[i].last = last;
427    }
428 }
429 
430 
431 /* A one-dimensional, depricated version of ureg_DECL_constant2D().
432  *
433  * Constant operands declared with this function must be addressed
434  * with a one-dimensional index.
435  */
436 struct ureg_src
ureg_DECL_constant(struct ureg_program * ureg,unsigned index)437 ureg_DECL_constant(struct ureg_program *ureg,
438                    unsigned index)
439 {
440    struct const_decl *decl = &ureg->const_decls;
441    unsigned minconst = index, maxconst = index;
442    unsigned i;
443 
444    /* Inside existing range?
445     */
446    for (i = 0; i < decl->nr_constant_ranges; i++) {
447       if (decl->constant_range[i].first <= index &&
448           decl->constant_range[i].last >= index) {
449          goto out;
450       }
451    }
452 
453    /* Extend existing range?
454     */
455    for (i = 0; i < decl->nr_constant_ranges; i++) {
456       if (decl->constant_range[i].last == index - 1) {
457          decl->constant_range[i].last = index;
458          goto out;
459       }
460 
461       if (decl->constant_range[i].first == index + 1) {
462          decl->constant_range[i].first = index;
463          goto out;
464       }
465 
466       minconst = MIN2(minconst, decl->constant_range[i].first);
467       maxconst = MAX2(maxconst, decl->constant_range[i].last);
468    }
469 
470    /* Create new range?
471     */
472    if (decl->nr_constant_ranges < UREG_MAX_CONSTANT_RANGE) {
473       i = decl->nr_constant_ranges++;
474       decl->constant_range[i].first = index;
475       decl->constant_range[i].last = index;
476       goto out;
477    }
478 
479    /* Collapse all ranges down to one:
480     */
481    i = 0;
482    decl->constant_range[0].first = minconst;
483    decl->constant_range[0].last = maxconst;
484    decl->nr_constant_ranges = 1;
485 
486 out:
487    assert(i < decl->nr_constant_ranges);
488    assert(decl->constant_range[i].first <= index);
489    assert(decl->constant_range[i].last >= index);
490    return ureg_src_register(TGSI_FILE_CONSTANT, index);
491 }
492 
alloc_temporary(struct ureg_program * ureg,boolean local)493 static struct ureg_dst alloc_temporary( struct ureg_program *ureg,
494                                         boolean local )
495 {
496    unsigned i;
497 
498    /* Look for a released temporary.
499     */
500    for (i = util_bitmask_get_first_index(ureg->free_temps);
501         i != UTIL_BITMASK_INVALID_INDEX;
502         i = util_bitmask_get_next_index(ureg->free_temps, i + 1)) {
503       if (util_bitmask_get(ureg->local_temps, i) == local)
504          break;
505    }
506 
507    /* Or allocate a new one.
508     */
509    if (i == UTIL_BITMASK_INVALID_INDEX) {
510       i = ureg->nr_temps++;
511 
512       if (local)
513          util_bitmask_set(ureg->local_temps, i);
514 
515       /* Start a new declaration when the local flag changes */
516       if (!i || util_bitmask_get(ureg->local_temps, i - 1) != local)
517          util_bitmask_set(ureg->decl_temps, i);
518    }
519 
520    util_bitmask_clear(ureg->free_temps, i);
521 
522    return ureg_dst_register( TGSI_FILE_TEMPORARY, i );
523 }
524 
ureg_DECL_temporary(struct ureg_program * ureg)525 struct ureg_dst ureg_DECL_temporary( struct ureg_program *ureg )
526 {
527    return alloc_temporary(ureg, FALSE);
528 }
529 
ureg_DECL_local_temporary(struct ureg_program * ureg)530 struct ureg_dst ureg_DECL_local_temporary( struct ureg_program *ureg )
531 {
532    return alloc_temporary(ureg, TRUE);
533 }
534 
ureg_DECL_array_temporary(struct ureg_program * ureg,unsigned size,boolean local)535 struct ureg_dst ureg_DECL_array_temporary( struct ureg_program *ureg,
536                                            unsigned size,
537                                            boolean local )
538 {
539    unsigned i = ureg->nr_temps;
540    struct ureg_dst dst = ureg_dst_register( TGSI_FILE_TEMPORARY, i );
541 
542    if (local)
543       util_bitmask_set(ureg->local_temps, i);
544 
545    /* Always start a new declaration at the start */
546    util_bitmask_set(ureg->decl_temps, i);
547 
548    ureg->nr_temps += size;
549 
550    /* and also at the end of the array */
551    util_bitmask_set(ureg->decl_temps, ureg->nr_temps);
552 
553    if (ureg->nr_array_temps < UREG_MAX_ARRAY_TEMPS) {
554       ureg->array_temps[ureg->nr_array_temps++] = i;
555       dst.ArrayID = ureg->nr_array_temps;
556    }
557 
558    return dst;
559 }
560 
ureg_release_temporary(struct ureg_program * ureg,struct ureg_dst tmp)561 void ureg_release_temporary( struct ureg_program *ureg,
562                              struct ureg_dst tmp )
563 {
564    if(tmp.File == TGSI_FILE_TEMPORARY)
565       util_bitmask_set(ureg->free_temps, tmp.Index);
566 }
567 
568 
569 /* Allocate a new address register.
570  */
ureg_DECL_address(struct ureg_program * ureg)571 struct ureg_dst ureg_DECL_address( struct ureg_program *ureg )
572 {
573    if (ureg->nr_addrs < UREG_MAX_ADDR)
574       return ureg_dst_register( TGSI_FILE_ADDRESS, ureg->nr_addrs++ );
575 
576    assert( 0 );
577    return ureg_dst_register( TGSI_FILE_ADDRESS, 0 );
578 }
579 
580 /* Allocate a new predicate register.
581  */
582 struct ureg_dst
ureg_DECL_predicate(struct ureg_program * ureg)583 ureg_DECL_predicate(struct ureg_program *ureg)
584 {
585    if (ureg->nr_preds < UREG_MAX_PRED) {
586       return ureg_dst_register(TGSI_FILE_PREDICATE, ureg->nr_preds++);
587    }
588 
589    assert(0);
590    return ureg_dst_register(TGSI_FILE_PREDICATE, 0);
591 }
592 
593 /* Allocate a new sampler.
594  */
ureg_DECL_sampler(struct ureg_program * ureg,int nr)595 struct ureg_src ureg_DECL_sampler( struct ureg_program *ureg,
596                                    int nr )
597 {
598    unsigned i;
599 
600    for (i = 0; i < ureg->nr_samplers; i++)
601       if (ureg->sampler[i].Index == nr)
602          return ureg->sampler[i];
603 
604    if (i < PIPE_MAX_SAMPLERS) {
605       ureg->sampler[i] = ureg_src_register( TGSI_FILE_SAMPLER, nr );
606       ureg->nr_samplers++;
607       return ureg->sampler[i];
608    }
609 
610    assert( 0 );
611    return ureg->sampler[0];
612 }
613 
614 /*
615  * Allocate a new shader sampler view.
616  */
617 struct ureg_src
ureg_DECL_sampler_view(struct ureg_program * ureg,unsigned index,unsigned target,unsigned return_type_x,unsigned return_type_y,unsigned return_type_z,unsigned return_type_w)618 ureg_DECL_sampler_view(struct ureg_program *ureg,
619                        unsigned index,
620                        unsigned target,
621                        unsigned return_type_x,
622                        unsigned return_type_y,
623                        unsigned return_type_z,
624                        unsigned return_type_w)
625 {
626    struct ureg_src reg = ureg_src_register(TGSI_FILE_SAMPLER_VIEW, index);
627    uint i;
628 
629    for (i = 0; i < ureg->nr_sampler_views; i++) {
630       if (ureg->sampler_view[i].index == index) {
631          return reg;
632       }
633    }
634 
635    if (i < PIPE_MAX_SHADER_SAMPLER_VIEWS) {
636       ureg->sampler_view[i].index = index;
637       ureg->sampler_view[i].target = target;
638       ureg->sampler_view[i].return_type_x = return_type_x;
639       ureg->sampler_view[i].return_type_y = return_type_y;
640       ureg->sampler_view[i].return_type_z = return_type_z;
641       ureg->sampler_view[i].return_type_w = return_type_w;
642       ureg->nr_sampler_views++;
643       return reg;
644    }
645 
646    assert(0);
647    return reg;
648 }
649 
650 static int
match_or_expand_immediate(const unsigned * v,unsigned nr,unsigned * v2,unsigned * pnr2,unsigned * swizzle)651 match_or_expand_immediate( const unsigned *v,
652                            unsigned nr,
653                            unsigned *v2,
654                            unsigned *pnr2,
655                            unsigned *swizzle )
656 {
657    unsigned nr2 = *pnr2;
658    unsigned i, j;
659 
660    *swizzle = 0;
661 
662    for (i = 0; i < nr; i++) {
663       boolean found = FALSE;
664 
665       for (j = 0; j < nr2 && !found; j++) {
666          if (v[i] == v2[j]) {
667             *swizzle |= j << (i * 2);
668             found = TRUE;
669          }
670       }
671 
672       if (!found) {
673          if (nr2 >= 4) {
674             return FALSE;
675          }
676 
677          v2[nr2] = v[i];
678          *swizzle |= nr2 << (i * 2);
679          nr2++;
680       }
681    }
682 
683    /* Actually expand immediate only when fully succeeded.
684     */
685    *pnr2 = nr2;
686    return TRUE;
687 }
688 
689 
690 static struct ureg_src
decl_immediate(struct ureg_program * ureg,const unsigned * v,unsigned nr,unsigned type)691 decl_immediate( struct ureg_program *ureg,
692                 const unsigned *v,
693                 unsigned nr,
694                 unsigned type )
695 {
696    unsigned i, j;
697    unsigned swizzle = 0;
698 
699    /* Could do a first pass where we examine all existing immediates
700     * without expanding.
701     */
702 
703    for (i = 0; i < ureg->nr_immediates; i++) {
704       if (ureg->immediate[i].type != type) {
705          continue;
706       }
707       if (match_or_expand_immediate(v,
708                                     nr,
709                                     ureg->immediate[i].value.u,
710                                     &ureg->immediate[i].nr,
711                                     &swizzle)) {
712          goto out;
713       }
714    }
715 
716    if (ureg->nr_immediates < UREG_MAX_IMMEDIATE) {
717       i = ureg->nr_immediates++;
718       ureg->immediate[i].type = type;
719       if (match_or_expand_immediate(v,
720                                     nr,
721                                     ureg->immediate[i].value.u,
722                                     &ureg->immediate[i].nr,
723                                     &swizzle)) {
724          goto out;
725       }
726    }
727 
728    set_bad(ureg);
729 
730 out:
731    /* Make sure that all referenced elements are from this immediate.
732     * Has the effect of making size-one immediates into scalars.
733     */
734    for (j = nr; j < 4; j++) {
735       swizzle |= (swizzle & 0x3) << (j * 2);
736    }
737 
738    return ureg_swizzle(ureg_src_register(TGSI_FILE_IMMEDIATE, i),
739                        (swizzle >> 0) & 0x3,
740                        (swizzle >> 2) & 0x3,
741                        (swizzle >> 4) & 0x3,
742                        (swizzle >> 6) & 0x3);
743 }
744 
745 
746 struct ureg_src
ureg_DECL_immediate(struct ureg_program * ureg,const float * v,unsigned nr)747 ureg_DECL_immediate( struct ureg_program *ureg,
748                      const float *v,
749                      unsigned nr )
750 {
751    union {
752       float f[4];
753       unsigned u[4];
754    } fu;
755    unsigned int i;
756 
757    for (i = 0; i < nr; i++) {
758       fu.f[i] = v[i];
759    }
760 
761    return decl_immediate(ureg, fu.u, nr, TGSI_IMM_FLOAT32);
762 }
763 
764 
765 struct ureg_src
ureg_DECL_immediate_uint(struct ureg_program * ureg,const unsigned * v,unsigned nr)766 ureg_DECL_immediate_uint( struct ureg_program *ureg,
767                           const unsigned *v,
768                           unsigned nr )
769 {
770    return decl_immediate(ureg, v, nr, TGSI_IMM_UINT32);
771 }
772 
773 
774 struct ureg_src
ureg_DECL_immediate_block_uint(struct ureg_program * ureg,const unsigned * v,unsigned nr)775 ureg_DECL_immediate_block_uint( struct ureg_program *ureg,
776                                 const unsigned *v,
777                                 unsigned nr )
778 {
779    uint index;
780    uint i;
781 
782    if (ureg->nr_immediates + (nr + 3) / 4 > UREG_MAX_IMMEDIATE) {
783       set_bad(ureg);
784       return ureg_src_register(TGSI_FILE_IMMEDIATE, 0);
785    }
786 
787    index = ureg->nr_immediates;
788    ureg->nr_immediates += (nr + 3) / 4;
789 
790    for (i = index; i < ureg->nr_immediates; i++) {
791       ureg->immediate[i].type = TGSI_IMM_UINT32;
792       ureg->immediate[i].nr = nr > 4 ? 4 : nr;
793       memcpy(ureg->immediate[i].value.u,
794              &v[(i - index) * 4],
795              ureg->immediate[i].nr * sizeof(uint));
796       nr -= 4;
797    }
798 
799    return ureg_src_register(TGSI_FILE_IMMEDIATE, index);
800 }
801 
802 
803 struct ureg_src
ureg_DECL_immediate_int(struct ureg_program * ureg,const int * v,unsigned nr)804 ureg_DECL_immediate_int( struct ureg_program *ureg,
805                          const int *v,
806                          unsigned nr )
807 {
808    return decl_immediate(ureg, (const unsigned *)v, nr, TGSI_IMM_INT32);
809 }
810 
811 
812 void
ureg_emit_src(struct ureg_program * ureg,struct ureg_src src)813 ureg_emit_src( struct ureg_program *ureg,
814                struct ureg_src src )
815 {
816    unsigned size = 1 + (src.Indirect ? 1 : 0) +
817                    (src.Dimension ? (src.DimIndirect ? 2 : 1) : 0);
818 
819    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_INSN, size );
820    unsigned n = 0;
821 
822    assert(src.File != TGSI_FILE_NULL);
823    assert(src.File < TGSI_FILE_COUNT);
824 
825    out[n].value = 0;
826    out[n].src.File = src.File;
827    out[n].src.SwizzleX = src.SwizzleX;
828    out[n].src.SwizzleY = src.SwizzleY;
829    out[n].src.SwizzleZ = src.SwizzleZ;
830    out[n].src.SwizzleW = src.SwizzleW;
831    out[n].src.Index = src.Index;
832    out[n].src.Negate = src.Negate;
833    out[0].src.Absolute = src.Absolute;
834    n++;
835 
836    if (src.Indirect) {
837       out[0].src.Indirect = 1;
838       out[n].value = 0;
839       out[n].ind.File = src.IndirectFile;
840       out[n].ind.Swizzle = src.IndirectSwizzle;
841       out[n].ind.Index = src.IndirectIndex;
842       out[n].ind.ArrayID = src.ArrayID;
843       n++;
844    }
845 
846    if (src.Dimension) {
847       out[0].src.Dimension = 1;
848       out[n].dim.Dimension = 0;
849       out[n].dim.Padding = 0;
850       if (src.DimIndirect) {
851          out[n].dim.Indirect = 1;
852          out[n].dim.Index = src.DimensionIndex;
853          n++;
854          out[n].value = 0;
855          out[n].ind.File = src.DimIndFile;
856          out[n].ind.Swizzle = src.DimIndSwizzle;
857          out[n].ind.Index = src.DimIndIndex;
858          out[n].ind.ArrayID = src.ArrayID;
859       } else {
860          out[n].dim.Indirect = 0;
861          out[n].dim.Index = src.DimensionIndex;
862       }
863       n++;
864    }
865 
866    assert(n == size);
867 }
868 
869 
870 void
ureg_emit_dst(struct ureg_program * ureg,struct ureg_dst dst)871 ureg_emit_dst( struct ureg_program *ureg,
872                struct ureg_dst dst )
873 {
874    unsigned size = (1 +
875                     (dst.Indirect ? 1 : 0));
876 
877    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_INSN, size );
878    unsigned n = 0;
879 
880    assert(dst.File != TGSI_FILE_NULL);
881    assert(dst.File != TGSI_FILE_CONSTANT);
882    assert(dst.File != TGSI_FILE_INPUT);
883    assert(dst.File != TGSI_FILE_SAMPLER);
884    assert(dst.File != TGSI_FILE_SAMPLER_VIEW);
885    assert(dst.File != TGSI_FILE_IMMEDIATE);
886    assert(dst.File < TGSI_FILE_COUNT);
887 
888    out[n].value = 0;
889    out[n].dst.File = dst.File;
890    out[n].dst.WriteMask = dst.WriteMask;
891    out[n].dst.Indirect = dst.Indirect;
892    out[n].dst.Index = dst.Index;
893    n++;
894 
895    if (dst.Indirect) {
896       out[n].value = 0;
897       out[n].ind.File = dst.IndirectFile;
898       out[n].ind.Swizzle = dst.IndirectSwizzle;
899       out[n].ind.Index = dst.IndirectIndex;
900       out[n].ind.ArrayID = dst.ArrayID;
901       n++;
902    }
903 
904    assert(n == size);
905 }
906 
907 
validate(unsigned opcode,unsigned nr_dst,unsigned nr_src)908 static void validate( unsigned opcode,
909                       unsigned nr_dst,
910                       unsigned nr_src )
911 {
912 #ifdef DEBUG
913    const struct tgsi_opcode_info *info = tgsi_get_opcode_info( opcode );
914    assert(info);
915    if(info) {
916       assert(nr_dst == info->num_dst);
917       assert(nr_src == info->num_src);
918    }
919 #else
920    (void)opcode;
921    (void)nr_dst;
922    (void)nr_src;
923 #endif
924 }
925 
926 struct ureg_emit_insn_result
ureg_emit_insn(struct ureg_program * ureg,unsigned opcode,boolean saturate,unsigned precise,unsigned num_dst,unsigned num_src)927 ureg_emit_insn(struct ureg_program *ureg,
928                unsigned opcode,
929                boolean saturate,
930                unsigned precise,
931                unsigned num_dst,
932                unsigned num_src )
933 {
934    union tgsi_any_token *out;
935    uint count = 1;
936    struct ureg_emit_insn_result result;
937 
938    validate( opcode, num_dst, num_src );
939 
940    out = get_tokens( ureg, DOMAIN_INSN, count );
941    out[0].insn = tgsi_default_instruction();
942    out[0].insn.Opcode = opcode;
943    out[0].insn.Saturate = saturate;
944    out[0].insn.Precise = precise;
945    out[0].insn.NumDstRegs = num_dst;
946    out[0].insn.NumSrcRegs = num_src;
947 
948    result.insn_token = ureg->domain[DOMAIN_INSN].count - count;
949    result.extended_token = result.insn_token;
950 
951    ureg->nr_instructions++;
952 
953    return result;
954 }
955 
956 
957 void
ureg_emit_label(struct ureg_program * ureg,unsigned extended_token,unsigned * label_token)958 ureg_emit_label(struct ureg_program *ureg,
959                 unsigned extended_token,
960                 unsigned *label_token )
961 {
962    union tgsi_any_token *out, *insn;
963 
964    if(!label_token)
965       return;
966 
967    out = get_tokens( ureg, DOMAIN_INSN, 1 );
968    out[0].value = 0;
969 
970    insn = retrieve_token( ureg, DOMAIN_INSN, extended_token );
971    insn->insn.Label = 1;
972 
973    *label_token = ureg->domain[DOMAIN_INSN].count - 1;
974 }
975 
976 /* Will return a number which can be used in a label to point to the
977  * next instruction to be emitted.
978  */
979 unsigned
ureg_get_instruction_number(struct ureg_program * ureg)980 ureg_get_instruction_number( struct ureg_program *ureg )
981 {
982    return ureg->nr_instructions;
983 }
984 
985 /* Patch a given label (expressed as a token number) to point to a
986  * given instruction (expressed as an instruction number).
987  */
988 void
ureg_fixup_label(struct ureg_program * ureg,unsigned label_token,unsigned instruction_number)989 ureg_fixup_label(struct ureg_program *ureg,
990                  unsigned label_token,
991                  unsigned instruction_number )
992 {
993    union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_INSN, label_token );
994 
995    out->insn_label.Label = instruction_number;
996 }
997 
998 
999 void
ureg_emit_texture(struct ureg_program * ureg,unsigned extended_token,unsigned target,unsigned num_offsets)1000 ureg_emit_texture(struct ureg_program *ureg,
1001                   unsigned extended_token,
1002                   unsigned target, unsigned num_offsets)
1003 {
1004    union tgsi_any_token *out, *insn;
1005 
1006    out = get_tokens( ureg, DOMAIN_INSN, 1 );
1007    insn = retrieve_token( ureg, DOMAIN_INSN, extended_token );
1008 
1009    insn->insn.Texture = 1;
1010 
1011    out[0].value = 0;
1012    out[0].insn_texture.Texture = target;
1013    out[0].insn_texture.NumOffsets = num_offsets;
1014 }
1015 
1016 void
ureg_emit_texture_offset(struct ureg_program * ureg,const struct tgsi_texture_offset * offset)1017 ureg_emit_texture_offset(struct ureg_program *ureg,
1018                          const struct tgsi_texture_offset *offset)
1019 {
1020    union tgsi_any_token *out;
1021 
1022    out = get_tokens( ureg, DOMAIN_INSN, 1);
1023 
1024    out[0].value = 0;
1025    out[0].insn_texture_offset = *offset;
1026 
1027 }
1028 
1029 
1030 void
ureg_fixup_insn_size(struct ureg_program * ureg,unsigned insn)1031 ureg_fixup_insn_size(struct ureg_program *ureg,
1032                      unsigned insn )
1033 {
1034    union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_INSN, insn );
1035 
1036    assert(out->insn.Type == TGSI_TOKEN_TYPE_INSTRUCTION);
1037    out->insn.NrTokens = ureg->domain[DOMAIN_INSN].count - insn - 1;
1038 }
1039 
1040 
1041 void
ureg_insn(struct ureg_program * ureg,unsigned opcode,const struct ureg_dst * dst,unsigned nr_dst,const struct ureg_src * src,unsigned nr_src,unsigned precise)1042 ureg_insn(struct ureg_program *ureg,
1043           unsigned opcode,
1044           const struct ureg_dst *dst,
1045           unsigned nr_dst,
1046           const struct ureg_src *src,
1047           unsigned nr_src,
1048           unsigned precise )
1049 {
1050    struct ureg_emit_insn_result insn;
1051    unsigned i;
1052    boolean saturate;
1053 
1054    if (nr_dst && ureg_dst_is_empty(dst[0])) {
1055       return;
1056    }
1057 
1058    saturate = nr_dst ? dst[0].Saturate : FALSE;
1059 
1060    insn = ureg_emit_insn(ureg,
1061                          opcode,
1062                          saturate,
1063                          precise,
1064                          nr_dst,
1065                          nr_src);
1066 
1067    for (i = 0; i < nr_dst; i++)
1068       ureg_emit_dst( ureg, dst[i] );
1069 
1070    for (i = 0; i < nr_src; i++)
1071       ureg_emit_src( ureg, src[i] );
1072 
1073    ureg_fixup_insn_size( ureg, insn.insn_token );
1074 }
1075 
1076 void
ureg_tex_insn(struct ureg_program * ureg,unsigned opcode,const struct ureg_dst * dst,unsigned nr_dst,unsigned target,const struct tgsi_texture_offset * texoffsets,unsigned nr_offset,const struct ureg_src * src,unsigned nr_src)1077 ureg_tex_insn(struct ureg_program *ureg,
1078               unsigned opcode,
1079               const struct ureg_dst *dst,
1080               unsigned nr_dst,
1081               unsigned target,
1082               const struct tgsi_texture_offset *texoffsets,
1083               unsigned nr_offset,
1084               const struct ureg_src *src,
1085               unsigned nr_src )
1086 {
1087    struct ureg_emit_insn_result insn;
1088    unsigned i;
1089    boolean saturate;
1090 
1091    if (nr_dst && ureg_dst_is_empty(dst[0])) {
1092       return;
1093    }
1094 
1095    saturate = nr_dst ? dst[0].Saturate : FALSE;
1096 
1097    insn = ureg_emit_insn(ureg,
1098                          opcode,
1099                          saturate,
1100                          0,
1101                          nr_dst,
1102                          nr_src);
1103 
1104    ureg_emit_texture( ureg, insn.extended_token, target, nr_offset );
1105 
1106    for (i = 0; i < nr_offset; i++)
1107       ureg_emit_texture_offset( ureg, &texoffsets[i]);
1108 
1109    for (i = 0; i < nr_dst; i++)
1110       ureg_emit_dst( ureg, dst[i] );
1111 
1112    for (i = 0; i < nr_src; i++)
1113       ureg_emit_src( ureg, src[i] );
1114 
1115    ureg_fixup_insn_size( ureg, insn.insn_token );
1116 }
1117 
1118 
1119 void
ureg_label_insn(struct ureg_program * ureg,unsigned opcode,const struct ureg_src * src,unsigned nr_src,unsigned * label_token)1120 ureg_label_insn(struct ureg_program *ureg,
1121                 unsigned opcode,
1122                 const struct ureg_src *src,
1123                 unsigned nr_src,
1124                 unsigned *label_token )
1125 {
1126    struct ureg_emit_insn_result insn;
1127    unsigned i;
1128 
1129    insn = ureg_emit_insn(ureg,
1130                          opcode,
1131                          FALSE,
1132                          0,
1133                          0,
1134                          nr_src);
1135 
1136    ureg_emit_label( ureg, insn.extended_token, label_token );
1137 
1138    for (i = 0; i < nr_src; i++)
1139       ureg_emit_src( ureg, src[i] );
1140 
1141    ureg_fixup_insn_size( ureg, insn.insn_token );
1142 }
1143 
1144 
1145 static void
emit_decl_semantic(struct ureg_program * ureg,unsigned file,unsigned index,unsigned semantic_name,unsigned semantic_index,unsigned usage_mask)1146 emit_decl_semantic(struct ureg_program *ureg,
1147                    unsigned file,
1148                    unsigned index,
1149                    unsigned semantic_name,
1150                    unsigned semantic_index,
1151                    unsigned usage_mask)
1152 {
1153    union tgsi_any_token *out = get_tokens(ureg, DOMAIN_DECL, 3);
1154 
1155    out[0].value = 0;
1156    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1157    out[0].decl.NrTokens = 3;
1158    out[0].decl.File = file;
1159    out[0].decl.UsageMask = usage_mask;
1160    out[0].decl.Semantic = 1;
1161 
1162    out[1].value = 0;
1163    out[1].decl_range.First = index;
1164    out[1].decl_range.Last = index;
1165 
1166    out[2].value = 0;
1167    out[2].decl_semantic.Name = semantic_name;
1168    out[2].decl_semantic.Index = semantic_index;
1169 }
1170 
1171 
1172 static void
emit_decl_fs(struct ureg_program * ureg,unsigned file,unsigned index,unsigned semantic_name,unsigned semantic_index,unsigned interpolate,unsigned cylindrical_wrap,unsigned interpolate_location)1173 emit_decl_fs(struct ureg_program *ureg,
1174              unsigned file,
1175              unsigned index,
1176              unsigned semantic_name,
1177              unsigned semantic_index,
1178              unsigned interpolate,
1179              unsigned cylindrical_wrap,
1180              unsigned interpolate_location)
1181 {
1182    union tgsi_any_token *out = get_tokens(ureg, DOMAIN_DECL, 4);
1183 
1184    out[0].value = 0;
1185    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1186    out[0].decl.NrTokens = 4;
1187    out[0].decl.File = file;
1188    out[0].decl.UsageMask = TGSI_WRITEMASK_XYZW; /* FIXME! */
1189    out[0].decl.Interpolate = 1;
1190    out[0].decl.Semantic = 1;
1191 
1192    out[1].value = 0;
1193    out[1].decl_range.First = index;
1194    out[1].decl_range.Last = index;
1195 
1196    out[2].value = 0;
1197    out[2].decl_interp.Interpolate = interpolate;
1198    out[2].decl_interp.CylindricalWrap = cylindrical_wrap;
1199    out[2].decl_interp.Location = interpolate_location;
1200 
1201    out[3].value = 0;
1202    out[3].decl_semantic.Name = semantic_name;
1203    out[3].decl_semantic.Index = semantic_index;
1204 }
1205 
1206 static void
emit_decl_temps(struct ureg_program * ureg,unsigned first,unsigned last,boolean local,unsigned arrayid)1207 emit_decl_temps( struct ureg_program *ureg,
1208                  unsigned first, unsigned last,
1209                  boolean local,
1210                  unsigned arrayid )
1211 {
1212    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL,
1213                                            arrayid ? 3 : 2 );
1214 
1215    out[0].value = 0;
1216    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1217    out[0].decl.NrTokens = 2;
1218    out[0].decl.File = TGSI_FILE_TEMPORARY;
1219    out[0].decl.UsageMask = TGSI_WRITEMASK_XYZW;
1220    out[0].decl.Local = local;
1221 
1222    out[1].value = 0;
1223    out[1].decl_range.First = first;
1224    out[1].decl_range.Last = last;
1225 
1226    if (arrayid) {
1227       out[0].decl.Array = 1;
1228       out[2].value = 0;
1229       out[2].array.ArrayID = arrayid;
1230    }
1231 }
1232 
emit_decl_range(struct ureg_program * ureg,unsigned file,unsigned first,unsigned count)1233 static void emit_decl_range( struct ureg_program *ureg,
1234                              unsigned file,
1235                              unsigned first,
1236                              unsigned count )
1237 {
1238    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 2 );
1239 
1240    out[0].value = 0;
1241    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1242    out[0].decl.NrTokens = 2;
1243    out[0].decl.File = file;
1244    out[0].decl.UsageMask = TGSI_WRITEMASK_XYZW;
1245    out[0].decl.Semantic = 0;
1246 
1247    out[1].value = 0;
1248    out[1].decl_range.First = first;
1249    out[1].decl_range.Last = first + count - 1;
1250 }
1251 
1252 static void
emit_decl_range2D(struct ureg_program * ureg,unsigned file,unsigned first,unsigned last,unsigned index2D)1253 emit_decl_range2D(struct ureg_program *ureg,
1254                   unsigned file,
1255                   unsigned first,
1256                   unsigned last,
1257                   unsigned index2D)
1258 {
1259    union tgsi_any_token *out = get_tokens(ureg, DOMAIN_DECL, 3);
1260 
1261    out[0].value = 0;
1262    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1263    out[0].decl.NrTokens = 3;
1264    out[0].decl.File = file;
1265    out[0].decl.UsageMask = TGSI_WRITEMASK_XYZW;
1266    out[0].decl.Dimension = 1;
1267 
1268    out[1].value = 0;
1269    out[1].decl_range.First = first;
1270    out[1].decl_range.Last = last;
1271 
1272    out[2].value = 0;
1273    out[2].decl_dim.Index2D = index2D;
1274 }
1275 
1276 static void
emit_decl_sampler_view(struct ureg_program * ureg,unsigned index,unsigned target,unsigned return_type_x,unsigned return_type_y,unsigned return_type_z,unsigned return_type_w)1277 emit_decl_sampler_view(struct ureg_program *ureg,
1278                        unsigned index,
1279                        unsigned target,
1280                        unsigned return_type_x,
1281                        unsigned return_type_y,
1282                        unsigned return_type_z,
1283                        unsigned return_type_w )
1284 {
1285    union tgsi_any_token *out = get_tokens(ureg, DOMAIN_DECL, 3);
1286 
1287    out[0].value = 0;
1288    out[0].decl.Type = TGSI_TOKEN_TYPE_DECLARATION;
1289    out[0].decl.NrTokens = 3;
1290    out[0].decl.File = TGSI_FILE_SAMPLER_VIEW;
1291    out[0].decl.UsageMask = 0xf;
1292 
1293    out[1].value = 0;
1294    out[1].decl_range.First = index;
1295    out[1].decl_range.Last = index;
1296 
1297    out[2].value = 0;
1298    out[2].decl_sampler_view.Resource    = target;
1299    out[2].decl_sampler_view.ReturnTypeX = return_type_x;
1300    out[2].decl_sampler_view.ReturnTypeY = return_type_y;
1301    out[2].decl_sampler_view.ReturnTypeZ = return_type_z;
1302    out[2].decl_sampler_view.ReturnTypeW = return_type_w;
1303 }
1304 
1305 static void
emit_immediate(struct ureg_program * ureg,const unsigned * v,unsigned type)1306 emit_immediate( struct ureg_program *ureg,
1307                 const unsigned *v,
1308                 unsigned type )
1309 {
1310    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 5 );
1311 
1312    out[0].value = 0;
1313    out[0].imm.Type = TGSI_TOKEN_TYPE_IMMEDIATE;
1314    out[0].imm.NrTokens = 5;
1315    out[0].imm.DataType = type;
1316    out[0].imm.Padding = 0;
1317 
1318    out[1].imm_data.Uint = v[0];
1319    out[2].imm_data.Uint = v[1];
1320    out[3].imm_data.Uint = v[2];
1321    out[4].imm_data.Uint = v[3];
1322 }
1323 
1324 static void
emit_property(struct ureg_program * ureg,unsigned name,unsigned data)1325 emit_property(struct ureg_program *ureg,
1326               unsigned name,
1327               unsigned data)
1328 {
1329    union tgsi_any_token *out = get_tokens(ureg, DOMAIN_DECL, 2);
1330 
1331    out[0].value = 0;
1332    out[0].prop.Type = TGSI_TOKEN_TYPE_PROPERTY;
1333    out[0].prop.NrTokens = 2;
1334    out[0].prop.PropertyName = name;
1335 
1336    out[1].prop_data.Data = data;
1337 }
1338 
1339 
emit_decls(struct ureg_program * ureg)1340 static void emit_decls( struct ureg_program *ureg )
1341 {
1342    unsigned i;
1343 
1344    for (i = 0; i < ARRAY_SIZE(ureg->properties); i++)
1345       if (ureg->properties[i] != ~0u)
1346          emit_property(ureg, i, ureg->properties[i]);
1347 
1348    if (ureg->processor == TGSI_PROCESSOR_VERTEX) {
1349       for (i = 0; i < UREG_MAX_INPUT; i++) {
1350          if (ureg->vs_inputs[i/32] & (1 << (i%32))) {
1351             emit_decl_range( ureg, TGSI_FILE_INPUT, i, 1 );
1352          }
1353       }
1354    } else if (ureg->processor == TGSI_PROCESSOR_FRAGMENT) {
1355       for (i = 0; i < ureg->nr_fs_inputs; i++) {
1356          emit_decl_fs(ureg,
1357                       TGSI_FILE_INPUT,
1358                       i,
1359                       ureg->fs_input[i].semantic_name,
1360                       ureg->fs_input[i].semantic_index,
1361                       ureg->fs_input[i].interp,
1362                       ureg->fs_input[i].cylindrical_wrap,
1363                       ureg->fs_input[i].interp_location);
1364       }
1365    } else {
1366       for (i = 0; i < ureg->nr_gs_inputs; i++) {
1367          emit_decl_semantic(ureg,
1368                             TGSI_FILE_INPUT,
1369                             ureg->gs_input[i].index,
1370                             ureg->gs_input[i].semantic_name,
1371                             ureg->gs_input[i].semantic_index,
1372                             TGSI_WRITEMASK_XYZW);
1373       }
1374    }
1375 
1376    for (i = 0; i < ureg->nr_system_values; i++) {
1377       emit_decl_semantic(ureg,
1378                          TGSI_FILE_SYSTEM_VALUE,
1379                          ureg->system_value[i].index,
1380                          ureg->system_value[i].semantic_name,
1381                          ureg->system_value[i].semantic_index,
1382                          TGSI_WRITEMASK_XYZW);
1383    }
1384 
1385    for (i = 0; i < ureg->nr_outputs; i++) {
1386       emit_decl_semantic(ureg,
1387                          TGSI_FILE_OUTPUT,
1388                          i,
1389                          ureg->output[i].semantic_name,
1390                          ureg->output[i].semantic_index,
1391                          ureg->output[i].usage_mask);
1392    }
1393 
1394    for (i = 0; i < ureg->nr_samplers; i++) {
1395       emit_decl_range( ureg,
1396                        TGSI_FILE_SAMPLER,
1397                        ureg->sampler[i].Index, 1 );
1398    }
1399 
1400    for (i = 0; i < ureg->nr_sampler_views; i++) {
1401       emit_decl_sampler_view(ureg,
1402                              ureg->sampler_view[i].index,
1403                              ureg->sampler_view[i].target,
1404                              ureg->sampler_view[i].return_type_x,
1405                              ureg->sampler_view[i].return_type_y,
1406                              ureg->sampler_view[i].return_type_z,
1407                              ureg->sampler_view[i].return_type_w);
1408    }
1409 
1410    if (ureg->const_decls.nr_constant_ranges) {
1411       for (i = 0; i < ureg->const_decls.nr_constant_ranges; i++) {
1412          emit_decl_range(ureg,
1413                          TGSI_FILE_CONSTANT,
1414                          ureg->const_decls.constant_range[i].first,
1415                          ureg->const_decls.constant_range[i].last - ureg->const_decls.constant_range[i].first + 1);
1416       }
1417    }
1418 
1419    for (i = 0; i < PIPE_MAX_CONSTANT_BUFFERS; i++) {
1420       struct const_decl *decl = &ureg->const_decls2D[i];
1421 
1422       if (decl->nr_constant_ranges) {
1423          uint j;
1424 
1425          for (j = 0; j < decl->nr_constant_ranges; j++) {
1426             emit_decl_range2D(ureg,
1427                               TGSI_FILE_CONSTANT,
1428                               decl->constant_range[j].first,
1429                               decl->constant_range[j].last,
1430                               i);
1431          }
1432       }
1433    }
1434 
1435    if (ureg->nr_temps) {
1436       unsigned array = 0;
1437       for (i = 0; i < ureg->nr_temps;) {
1438          boolean local = util_bitmask_get(ureg->local_temps, i);
1439          unsigned first = i;
1440          i = util_bitmask_get_next_index(ureg->decl_temps, i + 1);
1441          if (i == UTIL_BITMASK_INVALID_INDEX)
1442             i = ureg->nr_temps;
1443 
1444          if (array < ureg->nr_array_temps && ureg->array_temps[array] == first)
1445             emit_decl_temps( ureg, first, i - 1, local, ++array );
1446          else
1447             emit_decl_temps( ureg, first, i - 1, local, 0 );
1448       }
1449    }
1450 
1451    if (ureg->nr_addrs) {
1452       emit_decl_range( ureg,
1453                        TGSI_FILE_ADDRESS,
1454                        0, ureg->nr_addrs );
1455    }
1456 
1457    if (ureg->nr_preds) {
1458       emit_decl_range(ureg,
1459                       TGSI_FILE_PREDICATE,
1460                       0,
1461                       ureg->nr_preds);
1462    }
1463 
1464    for (i = 0; i < ureg->nr_immediates; i++) {
1465       emit_immediate( ureg,
1466                       ureg->immediate[i].value.u,
1467                       ureg->immediate[i].type );
1468    }
1469 }
1470 
1471 /* Append the instruction tokens onto the declarations to build a
1472  * contiguous stream suitable to send to the driver.
1473  */
copy_instructions(struct ureg_program * ureg)1474 static void copy_instructions( struct ureg_program *ureg )
1475 {
1476    unsigned nr_tokens = ureg->domain[DOMAIN_INSN].count;
1477    union tgsi_any_token *out = get_tokens( ureg,
1478                                            DOMAIN_DECL,
1479                                            nr_tokens );
1480 
1481    memcpy(out,
1482           ureg->domain[DOMAIN_INSN].tokens,
1483           nr_tokens * sizeof out[0] );
1484 }
1485 
1486 
1487 static void
fixup_header_size(struct ureg_program * ureg)1488 fixup_header_size(struct ureg_program *ureg)
1489 {
1490    union tgsi_any_token *out = retrieve_token( ureg, DOMAIN_DECL, 0 );
1491 
1492    out->header.BodySize = ureg->domain[DOMAIN_DECL].count - 2;
1493 }
1494 
1495 
1496 static void
emit_header(struct ureg_program * ureg)1497 emit_header( struct ureg_program *ureg )
1498 {
1499    union tgsi_any_token *out = get_tokens( ureg, DOMAIN_DECL, 2 );
1500 
1501    out[0].header.HeaderSize = 2;
1502    out[0].header.BodySize = 0;
1503 
1504    out[1].processor.Processor = ureg->processor;
1505    out[1].processor.Padding = 0;
1506 }
1507 
1508 
ureg_finalize(struct ureg_program * ureg)1509 const struct tgsi_token *ureg_finalize( struct ureg_program *ureg )
1510 {
1511    const struct tgsi_token *tokens;
1512 
1513    emit_header( ureg );
1514    emit_decls( ureg );
1515    copy_instructions( ureg );
1516    fixup_header_size( ureg );
1517 
1518    if (ureg->domain[0].tokens == error_tokens ||
1519        ureg->domain[1].tokens == error_tokens) {
1520       debug_printf("%s: error in generated shader\n", __FUNCTION__);
1521       assert(0);
1522       return NULL;
1523    }
1524 
1525    tokens = &ureg->domain[DOMAIN_DECL].tokens[0].token;
1526 
1527    if (0) {
1528       debug_printf("%s: emitted shader %d tokens:\n", __FUNCTION__,
1529                    ureg->domain[DOMAIN_DECL].count);
1530       tgsi_dump( tokens, 0 );
1531    }
1532 
1533 #if DEBUG
1534    if (tokens && !tgsi_sanity_check(tokens)) {
1535       debug_printf("tgsi_ureg.c, sanity check failed on generated tokens:\n");
1536       tgsi_dump(tokens, 0);
1537       assert(0);
1538    }
1539 #endif
1540 
1541 
1542    return tokens;
1543 }
1544 
1545 
ureg_create_shader(struct ureg_program * ureg,struct pipe_context * pipe,const struct pipe_stream_output_info * so)1546 void *ureg_create_shader( struct ureg_program *ureg,
1547                           struct pipe_context *pipe,
1548                           const struct pipe_stream_output_info *so )
1549 {
1550    struct pipe_shader_state state;
1551 
1552    state.tokens = ureg_finalize(ureg);
1553    if(!state.tokens)
1554       return NULL;
1555 
1556    if (so)
1557       state.stream_output = *so;
1558    else
1559       memset(&state.stream_output, 0, sizeof(state.stream_output));
1560 
1561    if (ureg->processor == TGSI_PROCESSOR_VERTEX)
1562       return pipe->create_vs_state( pipe, &state );
1563    else
1564       return pipe->create_fs_state( pipe, &state );
1565 }
1566 
1567 
ureg_get_tokens(struct ureg_program * ureg,unsigned * nr_tokens)1568 const struct tgsi_token *ureg_get_tokens( struct ureg_program *ureg,
1569                                           unsigned *nr_tokens )
1570 {
1571    const struct tgsi_token *tokens;
1572 
1573    ureg_finalize(ureg);
1574 
1575    tokens = &ureg->domain[DOMAIN_DECL].tokens[0].token;
1576 
1577    if (nr_tokens)
1578       *nr_tokens = ureg->domain[DOMAIN_DECL].size;
1579 
1580    ureg->domain[DOMAIN_DECL].tokens = 0;
1581    ureg->domain[DOMAIN_DECL].size = 0;
1582    ureg->domain[DOMAIN_DECL].order = 0;
1583    ureg->domain[DOMAIN_DECL].count = 0;
1584 
1585    return tokens;
1586 }
1587 
1588 
ureg_free_tokens(const struct tgsi_token * tokens)1589 void ureg_free_tokens( const struct tgsi_token *tokens )
1590 {
1591    FREE((struct tgsi_token *)tokens);
1592 }
1593 
1594 
ureg_create(unsigned processor)1595 struct ureg_program *ureg_create( unsigned processor )
1596 {
1597    unsigned i;
1598    struct ureg_program *ureg = CALLOC_STRUCT( ureg_program );
1599    if (ureg == NULL)
1600       goto no_ureg;
1601 
1602    ureg->processor = processor;
1603 
1604    for (i = 0; i < ARRAY_SIZE(ureg->properties); i++)
1605       ureg->properties[i] = ~0;
1606 
1607    ureg->free_temps = util_bitmask_create();
1608    if (ureg->free_temps == NULL)
1609       goto no_free_temps;
1610 
1611    ureg->local_temps = util_bitmask_create();
1612    if (ureg->local_temps == NULL)
1613       goto no_local_temps;
1614 
1615    ureg->decl_temps = util_bitmask_create();
1616    if (ureg->decl_temps == NULL)
1617       goto no_decl_temps;
1618 
1619    return ureg;
1620 
1621 no_decl_temps:
1622    util_bitmask_destroy(ureg->local_temps);
1623 no_local_temps:
1624    util_bitmask_destroy(ureg->free_temps);
1625 no_free_temps:
1626    FREE(ureg);
1627 no_ureg:
1628    return NULL;
1629 }
1630 
1631 
1632 unsigned
ureg_get_nr_outputs(const struct ureg_program * ureg)1633 ureg_get_nr_outputs( const struct ureg_program *ureg )
1634 {
1635    if (!ureg)
1636       return 0;
1637    return ureg->nr_outputs;
1638 }
1639 
1640 
ureg_destroy(struct ureg_program * ureg)1641 void ureg_destroy( struct ureg_program *ureg )
1642 {
1643    unsigned i;
1644 
1645    for (i = 0; i < ARRAY_SIZE(ureg->domain); i++) {
1646       if (ureg->domain[i].tokens &&
1647           ureg->domain[i].tokens != error_tokens)
1648          FREE(ureg->domain[i].tokens);
1649    }
1650 
1651    util_bitmask_destroy(ureg->free_temps);
1652    util_bitmask_destroy(ureg->local_temps);
1653    util_bitmask_destroy(ureg->decl_temps);
1654 
1655    FREE(ureg);
1656 }
1657