2 * Copyright 2009 Corbin Simpson <MostAwesomeDude@gmail.com>
3 * Copyright 2010 Marek Olšák <maraeo@gmail.com>
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:
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
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. */
24 /* r300_render: Vertex and index buffer primitive emission. Contains both
25 * HW TCL fastpath rendering, and SW TCL Draw-assisted rendering. */
27 #include "draw/draw_context.h"
28 #include "draw/draw_vbuf.h"
30 #include "util/u_inlines.h"
32 #include "util/u_format.h"
33 #include "util/u_memory.h"
34 #include "util/u_upload_mgr.h"
35 #include "util/u_prim.h"
39 #include "r300_context.h"
40 #include "r300_screen_buffer.h"
41 #include "r300_emit.h"
43 #include "r300_state_derived.h"
47 #define IMMD_DWORDS 32
49 static uint32_t r300_translate_primitive(unsigned prim
)
52 case PIPE_PRIM_POINTS
:
53 return R300_VAP_VF_CNTL__PRIM_POINTS
;
55 return R300_VAP_VF_CNTL__PRIM_LINES
;
56 case PIPE_PRIM_LINE_LOOP
:
57 return R300_VAP_VF_CNTL__PRIM_LINE_LOOP
;
58 case PIPE_PRIM_LINE_STRIP
:
59 return R300_VAP_VF_CNTL__PRIM_LINE_STRIP
;
60 case PIPE_PRIM_TRIANGLES
:
61 return R300_VAP_VF_CNTL__PRIM_TRIANGLES
;
62 case PIPE_PRIM_TRIANGLE_STRIP
:
63 return R300_VAP_VF_CNTL__PRIM_TRIANGLE_STRIP
;
64 case PIPE_PRIM_TRIANGLE_FAN
:
65 return R300_VAP_VF_CNTL__PRIM_TRIANGLE_FAN
;
67 return R300_VAP_VF_CNTL__PRIM_QUADS
;
68 case PIPE_PRIM_QUAD_STRIP
:
69 return R300_VAP_VF_CNTL__PRIM_QUAD_STRIP
;
70 case PIPE_PRIM_POLYGON
:
71 return R300_VAP_VF_CNTL__PRIM_POLYGON
;
77 static uint32_t r300_provoking_vertex_fixes(struct r300_context
*r300
,
80 struct r300_rs_state
* rs
= (struct r300_rs_state
*)r300
->rs_state
.state
;
81 uint32_t color_control
= rs
->color_control
;
83 /* By default (see r300_state.c:r300_create_rs_state) color_control is
84 * initialized to provoking the first vertex.
86 * Triangle fans must be reduced to the second vertex, not the first, in
87 * Gallium flatshade-first mode, as per the GL spec.
88 * (http://www.opengl.org/registry/specs/ARB/provoking_vertex.txt)
90 * Quads never provoke correctly in flatshade-first mode. The first
91 * vertex is never considered as provoking, so only the second, third,
92 * and fourth vertices can be selected, and both "third" and "last" modes
93 * select the fourth vertex. This is probably due to D3D lacking quads.
95 * Similarly, polygons reduce to the first, not the last, vertex, when in
96 * "last" mode, and all other modes start from the second vertex.
101 if (rs
->rs
.flatshade_first
) {
103 case PIPE_PRIM_TRIANGLE_FAN
:
104 color_control
|= R300_GA_COLOR_CONTROL_PROVOKING_VERTEX_SECOND
;
106 case PIPE_PRIM_QUADS
:
107 case PIPE_PRIM_QUAD_STRIP
:
108 case PIPE_PRIM_POLYGON
:
109 color_control
|= R300_GA_COLOR_CONTROL_PROVOKING_VERTEX_LAST
;
112 color_control
|= R300_GA_COLOR_CONTROL_PROVOKING_VERTEX_FIRST
;
116 color_control
|= R300_GA_COLOR_CONTROL_PROVOKING_VERTEX_LAST
;
119 return color_control
;
122 static boolean
index_bias_supported(struct r300_context
*r300
)
124 return r300
->screen
->caps
.is_r500
&&
125 r300
->rws
->get_value(r300
->rws
, R300_VID_DRM_2_3_0
);
128 static void r500_emit_index_bias(struct r300_context
*r300
, int index_bias
)
133 OUT_CS_REG(R500_VAP_INDEX_OFFSET
,
134 (index_bias
& 0xFFFFFF) | (index_bias
< 0 ? 1<<24 : 0));
138 /* This function splits the index bias value into two parts:
139 * - buffer_offset: the value that can be safely added to buffer offsets
140 * in r300_emit_aos (it must yield a positive offset when added to
141 * a vertex buffer offset)
142 * - index_offset: the value that must be manually subtracted from indices
143 * in an index buffer to achieve negative offsets. */
144 static void r300_split_index_bias(struct r300_context
*r300
, int index_bias
,
145 int *buffer_offset
, int *index_offset
)
147 struct pipe_vertex_buffer
*vb
, *vbufs
= r300
->vertex_buffer
;
148 struct pipe_vertex_element
*velem
= r300
->velems
->velem
;
152 if (index_bias
< 0) {
153 /* See how large index bias we may subtract. We must be careful
154 * here because negative buffer offsets are not allowed
156 max_neg_bias
= INT_MAX
;
157 for (i
= 0; i
< r300
->velems
->count
; i
++) {
158 vb
= &vbufs
[velem
[i
].vertex_buffer_index
];
159 size
= (vb
->buffer_offset
+ velem
[i
].src_offset
) / vb
->stride
;
160 max_neg_bias
= MIN2(max_neg_bias
, size
);
163 /* Now set the minimum allowed value. */
164 *buffer_offset
= MAX2(-max_neg_bias
, index_bias
);
166 /* A positive index bias is OK. */
167 *buffer_offset
= index_bias
;
170 *index_offset
= index_bias
- *buffer_offset
;
173 enum r300_prepare_flags
{
174 PREP_FIRST_DRAW
= (1 << 0), /* call emit_dirty_state and friends? */
175 PREP_VALIDATE_VBOS
= (1 << 1), /* validate VBOs? */
176 PREP_EMIT_AOS
= (1 << 2), /* call emit_aos? */
177 PREP_EMIT_AOS_SWTCL
= (1 << 3), /* call emit_aos_swtcl? */
178 PREP_INDEXED
= (1 << 4) /* is this draw_elements? */
182 * Check if the requested number of dwords is available in the CS and
183 * if not, flush. Then validate buffers and emit dirty state.
184 * \param r300 The context.
185 * \param flags See r300_prepare_flags.
186 * \param index_buffer The index buffer to validate. The parameter may be NULL.
187 * \param cs_dwords The number of dwords to reserve in CS.
188 * \param aos_offset The offset passed to emit_aos.
189 * \param index_bias The index bias to emit.
190 * \param end_cs_dwords The number of free dwords which must be available
191 * at the end of CS after drawing in case the CS space
192 * management is performed by a draw_* function manually.
193 * The parameter may be NULL.
195 static void r300_prepare_for_rendering(struct r300_context
*r300
,
196 enum r300_prepare_flags flags
,
197 struct pipe_resource
*index_buffer
,
201 unsigned *end_cs_dwords
)
203 unsigned end_dwords
= 0;
204 boolean flushed
= FALSE
;
205 boolean first_draw
= flags
& PREP_FIRST_DRAW
;
206 boolean emit_aos
= flags
& PREP_EMIT_AOS
;
207 boolean emit_aos_swtcl
= flags
& PREP_EMIT_AOS_SWTCL
;
208 boolean indexed
= flags
& PREP_INDEXED
;
209 boolean hw_index_bias
= index_bias_supported(r300
);
211 /* Add dirty state, index offset, and AOS. */
213 cs_dwords
+= r300_get_num_dirty_dwords(r300
);
216 cs_dwords
+= 2; /* emit_index_offset */
219 cs_dwords
+= 55; /* emit_aos */
222 cs_dwords
+= 7; /* emit_aos_swtcl */
225 /* Emitted in flush. */
226 end_dwords
+= 26; /* emit_query_end */
228 cs_dwords
+= end_dwords
;
230 /* Reserve requested CS space. */
231 if (!r300_check_cs(r300
, cs_dwords
)) {
232 r300
->context
.flush(&r300
->context
, 0, NULL
);
236 /* Validate buffers and emit dirty state if needed. */
237 if (first_draw
|| flushed
) {
238 r300_emit_buffer_validate(r300
, flags
& PREP_VALIDATE_VBOS
, index_buffer
);
239 r300_emit_dirty_state(r300
);
241 if (r300
->screen
->caps
.has_tcl
)
242 r500_emit_index_bias(r300
, index_bias
);
244 r500_emit_index_bias(r300
, 0);
248 r300_emit_aos(r300
, aos_offset
, indexed
);
251 r300_emit_aos_swtcl(r300
, indexed
);
255 *end_cs_dwords
= end_dwords
;
258 static boolean
immd_is_good_idea(struct r300_context
*r300
,
261 struct pipe_vertex_element
* velem
;
262 struct pipe_vertex_buffer
* vbuf
;
263 boolean checked
[PIPE_MAX_ATTRIBS
] = {0};
264 unsigned vertex_element_count
= r300
->velems
->count
;
267 if (DBG_ON(r300
, DBG_NO_IMMD
)) {
275 if (count
* r300
->velems
->vertex_size_dwords
> IMMD_DWORDS
) {
279 /* We shouldn't map buffers referenced by CS, busy buffers,
280 * and ones placed in VRAM. */
281 /* XXX Check for VRAM buffers. */
282 for (i
= 0; i
< vertex_element_count
; i
++) {
283 velem
= &r300
->velems
->velem
[i
];
284 vbi
= velem
->vertex_buffer_index
;
287 vbuf
= &r300
->vertex_buffer
[vbi
];
289 if (r300_buffer_is_referenced(&r300
->context
,
291 R300_REF_CS
| R300_REF_HW
)) {
292 /* It's a very bad idea to map it... */
301 /*****************************************************************************
302 * The emission of draw packets for r500. Older GPUs may use these functions *
303 * after resolving fallback issues (e.g. stencil ref two-sided). *
304 ****************************************************************************/
306 static void r300_emit_draw_arrays_immediate(struct r300_context
*r300
,
311 struct pipe_vertex_element
* velem
;
312 struct pipe_vertex_buffer
* vbuf
;
313 unsigned vertex_element_count
= r300
->velems
->count
;
314 unsigned i
, v
, vbi
, dwords
;
316 /* Size of the vertex, in dwords. */
317 unsigned vertex_size
= r300
->velems
->vertex_size_dwords
;
319 /* Offsets of the attribute, in dwords, from the start of the vertex. */
320 unsigned offset
[PIPE_MAX_ATTRIBS
];
322 /* Size of the vertex element, in dwords. */
323 unsigned size
[PIPE_MAX_ATTRIBS
];
325 /* Stride to the same attrib in the next vertex in the vertex buffer,
327 unsigned stride
[PIPE_MAX_ATTRIBS
] = {0};
329 /* Mapped vertex buffers. */
330 uint32_t* map
[PIPE_MAX_ATTRIBS
] = {0};
331 struct pipe_transfer
* transfer
[PIPE_MAX_ATTRIBS
] = {NULL
};
335 /* Calculate the vertex size, offsets, strides etc. and map the buffers. */
336 for (i
= 0; i
< vertex_element_count
; i
++) {
337 velem
= &r300
->velems
->velem
[i
];
338 offset
[i
] = velem
->src_offset
/ 4;
339 size
[i
] = r300
->velems
->hw_format_size
[i
] / 4;
340 vbi
= velem
->vertex_buffer_index
;
342 /* Map the buffer. */
344 vbuf
= &r300
->vertex_buffer
[vbi
];
345 map
[vbi
] = (uint32_t*)pipe_buffer_map(&r300
->context
,
349 stride
[vbi
] = vbuf
->stride
/ 4;
350 map
[vbi
] += vbuf
->buffer_offset
/ 4 + stride
[vbi
] * start
;
354 dwords
= 9 + count
* vertex_size
;
356 r300_prepare_for_rendering(r300
, PREP_FIRST_DRAW
, NULL
, dwords
, 0, 0, NULL
);
358 BEGIN_CS_AS_CB(r300
, dwords
);
359 OUT_CB_REG(R300_GA_COLOR_CONTROL
,
360 r300_provoking_vertex_fixes(r300
, mode
));
361 OUT_CB_REG(R300_VAP_VTX_SIZE
, vertex_size
);
362 OUT_CB_REG_SEQ(R300_VAP_VF_MAX_VTX_INDX
, 2);
365 OUT_CB_PKT3(R300_PACKET3_3D_DRAW_IMMD_2
, count
* vertex_size
);
366 OUT_CB(R300_VAP_VF_CNTL__PRIM_WALK_VERTEX_EMBEDDED
| (count
<< 16) |
367 r300_translate_primitive(mode
));
370 for (v
= 0; v
< count
; v
++) {
371 for (i
= 0; i
< vertex_element_count
; i
++) {
372 vbi
= r300
->velems
->velem
[i
].vertex_buffer_index
;
374 OUT_CB_TABLE(&map
[vbi
][offset
[i
] + stride
[vbi
] * v
], size
[i
]);
380 for (i
= 0; i
< vertex_element_count
; i
++) {
381 vbi
= r300
->velems
->velem
[i
].vertex_buffer_index
;
384 vbuf
= &r300
->vertex_buffer
[vbi
];
385 pipe_buffer_unmap(&r300
->context
, vbuf
->buffer
, transfer
[vbi
]);
391 static void r300_emit_draw_arrays(struct r300_context
*r300
,
395 boolean alt_num_verts
= count
> 65535;
398 if (count
>= (1 << 24)) {
399 fprintf(stderr
, "r300: Got a huge number of vertices: %i, "
400 "refusing to render.\n", count
);
404 BEGIN_CS(7 + (alt_num_verts
? 2 : 0));
406 OUT_CS_REG(R500_VAP_ALT_NUM_VERTICES
, count
);
408 OUT_CS_REG(R300_GA_COLOR_CONTROL
,
409 r300_provoking_vertex_fixes(r300
, mode
));
410 OUT_CS_REG_SEQ(R300_VAP_VF_MAX_VTX_INDX
, 2);
413 OUT_CS_PKT3(R300_PACKET3_3D_DRAW_VBUF_2
, 0);
414 OUT_CS(R300_VAP_VF_CNTL__PRIM_WALK_VERTEX_LIST
| (count
<< 16) |
415 r300_translate_primitive(mode
) |
416 (alt_num_verts
? R500_VAP_VF_CNTL__USE_ALT_NUM_VERTS
: 0));
420 static void r300_emit_draw_elements(struct r300_context
*r300
,
421 struct pipe_resource
* indexBuffer
,
429 uint32_t count_dwords
;
430 uint32_t offset_dwords
= indexSize
* start
/ sizeof(uint32_t);
431 boolean alt_num_verts
= count
> 65535;
434 if (count
>= (1 << 24)) {
435 fprintf(stderr
, "r300: Got a huge number of vertices: %i, "
436 "refusing to render.\n", count
);
440 maxIndex
= MIN2(maxIndex
, r300
->vertex_buffer_max_index
);
442 DBG(r300
, DBG_DRAW
, "r300: Indexbuf of %u indices, min %u max %u\n",
443 count
, minIndex
, maxIndex
);
445 BEGIN_CS(13 + (alt_num_verts
? 2 : 0));
447 OUT_CS_REG(R500_VAP_ALT_NUM_VERTICES
, count
);
449 OUT_CS_REG(R300_GA_COLOR_CONTROL
,
450 r300_provoking_vertex_fixes(r300
, mode
));
451 OUT_CS_REG_SEQ(R300_VAP_VF_MAX_VTX_INDX
, 2);
454 OUT_CS_PKT3(R300_PACKET3_3D_DRAW_INDX_2
, 0);
455 if (indexSize
== 4) {
456 count_dwords
= count
;
457 OUT_CS(R300_VAP_VF_CNTL__PRIM_WALK_INDICES
| (count
<< 16) |
458 R300_VAP_VF_CNTL__INDEX_SIZE_32bit
|
459 r300_translate_primitive(mode
) |
460 (alt_num_verts
? R500_VAP_VF_CNTL__USE_ALT_NUM_VERTS
: 0));
462 count_dwords
= (count
+ 1) / 2;
463 OUT_CS(R300_VAP_VF_CNTL__PRIM_WALK_INDICES
| (count
<< 16) |
464 r300_translate_primitive(mode
) |
465 (alt_num_verts
? R500_VAP_VF_CNTL__USE_ALT_NUM_VERTS
: 0));
468 /* INDX_BUFFER is a truly special packet3.
469 * Unlike most other packet3, where the offset is after the count,
470 * the order is reversed, so the relocation ends up carrying the
471 * size of the indexbuf instead of the offset.
473 OUT_CS_PKT3(R300_PACKET3_INDX_BUFFER
, 2);
474 OUT_CS(R300_INDX_BUFFER_ONE_REG_WR
| (R300_VAP_PORT_IDX0
>> 2) |
475 (0 << R300_INDX_BUFFER_SKIP_SHIFT
));
476 OUT_CS(offset_dwords
<< 2);
477 OUT_CS_BUF_RELOC(indexBuffer
, count_dwords
,
478 r300_buffer(indexBuffer
)->domain
, 0, 0);
483 /* This is the fast-path drawing & emission for HW TCL. */
484 static void r300_draw_range_elements(struct pipe_context
* pipe
,
485 struct pipe_resource
* indexBuffer
,
494 struct r300_context
* r300
= r300_context(pipe
);
495 struct pipe_resource
* orgIndexBuffer
= indexBuffer
;
496 boolean alt_num_verts
= r300
->screen
->caps
.is_r500
&&
498 r300
->rws
->get_value(r300
->rws
, R300_VID_DRM_2_3_0
);
499 unsigned short_count
;
500 int buffer_offset
= 0, index_offset
= 0; /* for index bias emulation */
501 boolean translate
= FALSE
;
503 if (r300
->skip_rendering
) {
507 if (!u_trim_pipe_prim(mode
, &count
)) {
511 /* Set up fallback for incompatible vertex layout if needed. */
512 if (r300
->incompatible_vb_layout
|| r300
->velems
->incompatible_layout
) {
513 r300_begin_vertex_translate(r300
);
517 if (indexBias
&& !index_bias_supported(r300
)) {
518 r300_split_index_bias(r300
, indexBias
, &buffer_offset
, &index_offset
);
521 r300_translate_index_buffer(r300
, &indexBuffer
, &indexSize
, index_offset
,
524 r300_update_derived_state(r300
);
525 r300_upload_index_buffer(r300
, &indexBuffer
, indexSize
, start
, count
);
527 /* 15 dwords for emit_draw_elements */
528 r300_prepare_for_rendering(r300
,
529 PREP_FIRST_DRAW
| PREP_VALIDATE_VBOS
| PREP_EMIT_AOS
| PREP_INDEXED
,
530 indexBuffer
, 15, buffer_offset
, indexBias
, NULL
);
532 u_upload_flush(r300
->upload_vb
);
533 u_upload_flush(r300
->upload_ib
);
534 if (alt_num_verts
|| count
<= 65535) {
535 r300_emit_draw_elements(r300
, indexBuffer
, indexSize
,
536 minIndex
, maxIndex
, mode
, start
, count
);
539 short_count
= MIN2(count
, 65534);
540 r300_emit_draw_elements(r300
, indexBuffer
, indexSize
,
542 mode
, start
, short_count
);
544 start
+= short_count
;
545 count
-= short_count
;
547 /* 15 dwords for emit_draw_elements */
549 r300_prepare_for_rendering(r300
,
550 PREP_VALIDATE_VBOS
| PREP_EMIT_AOS
| PREP_INDEXED
,
551 indexBuffer
, 15, buffer_offset
, indexBias
, NULL
);
556 if (indexBuffer
!= orgIndexBuffer
) {
557 pipe_resource_reference( &indexBuffer
, NULL
);
561 r300_end_vertex_translate(r300
);
565 /* Simple helpers for context setup. Should probably be moved to util. */
566 static void r300_draw_elements(struct pipe_context
* pipe
,
567 struct pipe_resource
* indexBuffer
,
568 unsigned indexSize
, int indexBias
, unsigned mode
,
569 unsigned start
, unsigned count
)
571 struct r300_context
*r300
= r300_context(pipe
);
573 pipe
->draw_range_elements(pipe
, indexBuffer
, indexSize
, indexBias
,
574 0, r300
->vertex_buffer_max_index
,
578 static void r300_draw_arrays(struct pipe_context
* pipe
, unsigned mode
,
579 unsigned start
, unsigned count
)
581 struct r300_context
* r300
= r300_context(pipe
);
582 boolean alt_num_verts
= r300
->screen
->caps
.is_r500
&&
584 r300
->rws
->get_value(r300
->rws
, R300_VID_DRM_2_3_0
);
585 unsigned short_count
;
586 boolean translate
= FALSE
;
588 if (r300
->skip_rendering
) {
592 if (!u_trim_pipe_prim(mode
, &count
)) {
596 /* Set up fallback for incompatible vertex layout if needed. */
597 if (r300
->incompatible_vb_layout
|| r300
->velems
->incompatible_layout
) {
598 r300_begin_vertex_translate(r300
);
602 r300_update_derived_state(r300
);
604 if (immd_is_good_idea(r300
, count
)) {
605 r300_emit_draw_arrays_immediate(r300
, mode
, start
, count
);
607 /* 9 spare dwords for emit_draw_arrays. */
608 r300_prepare_for_rendering(r300
, PREP_FIRST_DRAW
| PREP_VALIDATE_VBOS
| PREP_EMIT_AOS
,
609 NULL
, 9, start
, 0, NULL
);
611 if (alt_num_verts
|| count
<= 65535) {
612 r300_emit_draw_arrays(r300
, mode
, count
);
615 short_count
= MIN2(count
, 65535);
616 r300_emit_draw_arrays(r300
, mode
, short_count
);
618 start
+= short_count
;
619 count
-= short_count
;
621 /* 9 spare dwords for emit_draw_arrays. */
623 r300_prepare_for_rendering(r300
,
624 PREP_VALIDATE_VBOS
| PREP_EMIT_AOS
, NULL
, 9,
629 u_upload_flush(r300
->upload_vb
);
633 r300_end_vertex_translate(r300
);
637 /****************************************************************************
638 * The rest of this file is for SW TCL rendering only. Please be polite and *
639 * keep these functions separated so that they are easier to locate. ~C. *
640 ***************************************************************************/
642 /* SW TCL arrays, using Draw. */
643 static void r300_swtcl_draw_arrays(struct pipe_context
* pipe
,
648 struct r300_context
* r300
= r300_context(pipe
);
649 struct pipe_transfer
*vb_transfer
[PIPE_MAX_ATTRIBS
];
652 if (r300
->skip_rendering
) {
656 if (!u_trim_pipe_prim(mode
, &count
)) {
660 r300_update_derived_state(r300
);
662 for (i
= 0; i
< r300
->vertex_buffer_count
; i
++) {
663 void* buf
= pipe_buffer_map(pipe
,
664 r300
->vertex_buffer
[i
].buffer
,
667 draw_set_mapped_vertex_buffer(r300
->draw
, i
, buf
);
670 draw_set_mapped_element_buffer(r300
->draw
, 0, 0, NULL
);
672 draw_arrays(r300
->draw
, mode
, start
, count
);
674 /* XXX Not sure whether this is the best fix.
675 * It prevents CS from being rejected and weird assertion failures. */
676 draw_flush(r300
->draw
);
678 for (i
= 0; i
< r300
->vertex_buffer_count
; i
++) {
679 pipe_buffer_unmap(pipe
, r300
->vertex_buffer
[i
].buffer
,
681 draw_set_mapped_vertex_buffer(r300
->draw
, i
, NULL
);
685 /* SW TCL elements, using Draw. */
686 static void r300_swtcl_draw_range_elements(struct pipe_context
* pipe
,
687 struct pipe_resource
* indexBuffer
,
696 struct r300_context
* r300
= r300_context(pipe
);
697 struct pipe_transfer
*vb_transfer
[PIPE_MAX_ATTRIBS
];
698 struct pipe_transfer
*ib_transfer
;
702 if (r300
->skip_rendering
) {
706 if (!u_trim_pipe_prim(mode
, &count
)) {
710 r300_update_derived_state(r300
);
712 for (i
= 0; i
< r300
->vertex_buffer_count
; i
++) {
713 void* buf
= pipe_buffer_map(pipe
,
714 r300
->vertex_buffer
[i
].buffer
,
717 draw_set_mapped_vertex_buffer(r300
->draw
, i
, buf
);
720 indices
= pipe_buffer_map(pipe
, indexBuffer
,
721 PIPE_TRANSFER_READ
, &ib_transfer
);
722 draw_set_mapped_element_buffer_range(r300
->draw
, indexSize
, indexBias
,
723 minIndex
, maxIndex
, indices
);
725 draw_arrays(r300
->draw
, mode
, start
, count
);
727 /* XXX Not sure whether this is the best fix.
728 * It prevents CS from being rejected and weird assertion failures. */
729 draw_flush(r300
->draw
);
731 for (i
= 0; i
< r300
->vertex_buffer_count
; i
++) {
732 pipe_buffer_unmap(pipe
, r300
->vertex_buffer
[i
].buffer
,
734 draw_set_mapped_vertex_buffer(r300
->draw
, i
, NULL
);
737 pipe_buffer_unmap(pipe
, indexBuffer
,
739 draw_set_mapped_element_buffer_range(r300
->draw
, 0, 0,
740 start
, start
+ count
- 1,
744 /* Object for rendering using Draw. */
747 struct vbuf_render base
;
750 struct r300_context
* r300
;
752 /* Vertex information */
758 struct pipe_resource
* vbo
;
764 struct pipe_transfer
*vbo_transfer
;
767 static INLINE
struct r300_render
*
768 r300_render(struct vbuf_render
* render
)
770 return (struct r300_render
*)render
;
773 static const struct vertex_info
*
774 r300_render_get_vertex_info(struct vbuf_render
* render
)
776 struct r300_render
* r300render
= r300_render(render
);
777 struct r300_context
* r300
= r300render
->r300
;
779 return &r300
->vertex_info
;
782 static boolean
r300_render_allocate_vertices(struct vbuf_render
* render
,
786 struct r300_render
* r300render
= r300_render(render
);
787 struct r300_context
* r300
= r300render
->r300
;
788 struct pipe_screen
* screen
= r300
->context
.screen
;
789 size_t size
= (size_t)vertex_size
* (size_t)count
;
791 if (size
+ r300render
->vbo_offset
> r300render
->vbo_size
)
793 pipe_resource_reference(&r300
->vbo
, NULL
);
794 r300render
->vbo
= pipe_buffer_create(screen
,
795 PIPE_BIND_VERTEX_BUFFER
,
796 R300_MAX_DRAW_VBO_SIZE
);
797 r300render
->vbo_offset
= 0;
798 r300render
->vbo_size
= R300_MAX_DRAW_VBO_SIZE
;
801 r300render
->vertex_size
= vertex_size
;
802 r300
->vbo
= r300render
->vbo
;
803 r300
->vbo_offset
= r300render
->vbo_offset
;
805 return (r300render
->vbo
) ? TRUE
: FALSE
;
808 static void* r300_render_map_vertices(struct vbuf_render
* render
)
810 struct r300_render
* r300render
= r300_render(render
);
812 assert(!r300render
->vbo_transfer
);
814 r300render
->vbo_ptr
= pipe_buffer_map(&r300render
->r300
->context
,
817 &r300render
->vbo_transfer
);
819 return ((uint8_t*)r300render
->vbo_ptr
+ r300render
->vbo_offset
);
822 static void r300_render_unmap_vertices(struct vbuf_render
* render
,
826 struct r300_render
* r300render
= r300_render(render
);
827 struct pipe_context
* context
= &r300render
->r300
->context
;
829 assert(r300render
->vbo_transfer
);
831 r300render
->vbo_max_used
= MAX2(r300render
->vbo_max_used
,
832 r300render
->vertex_size
* (max
+ 1));
833 pipe_buffer_unmap(context
, r300render
->vbo
, r300render
->vbo_transfer
);
835 r300render
->vbo_transfer
= NULL
;
838 static void r300_render_release_vertices(struct vbuf_render
* render
)
840 struct r300_render
* r300render
= r300_render(render
);
842 r300render
->vbo_offset
+= r300render
->vbo_max_used
;
843 r300render
->vbo_max_used
= 0;
846 static boolean
r300_render_set_primitive(struct vbuf_render
* render
,
849 struct r300_render
* r300render
= r300_render(render
);
851 r300render
->prim
= prim
;
852 r300render
->hwprim
= r300_translate_primitive(prim
);
857 static void r300_render_draw_arrays(struct vbuf_render
* render
,
861 struct r300_render
* r300render
= r300_render(render
);
862 struct r300_context
* r300
= r300render
->r300
;
869 (void) i
; (void) ptr
;
871 r300_prepare_for_rendering(r300
, PREP_FIRST_DRAW
| PREP_EMIT_AOS_SWTCL
,
872 NULL
, dwords
, 0, 0, NULL
);
874 DBG(r300
, DBG_DRAW
, "r300: Doing vbuf render, count %d\n", count
);
876 /* Uncomment to dump all VBOs rendered through this interface.
878 ptr = pipe_buffer_map(&r300render->r300->context,
879 r300render->vbo, PIPE_TRANSFER_READ,
880 &r300render->vbo_transfer);
882 for (i = 0; i < count; i++) {
883 printf("r300: Vertex %d\n", i);
884 draw_dump_emitted_vertex(&r300->vertex_info, ptr);
885 ptr += r300->vertex_info.size * 4;
889 pipe_buffer_unmap(&r300render->r300->context, r300render->vbo,
890 r300render->vbo_transfer);
894 OUT_CS_REG(R300_GA_COLOR_CONTROL
,
895 r300_provoking_vertex_fixes(r300
, r300render
->prim
));
896 OUT_CS_REG(R300_VAP_VF_MAX_VTX_INDX
, count
- 1);
897 OUT_CS_PKT3(R300_PACKET3_3D_DRAW_VBUF_2
, 0);
898 OUT_CS(R300_VAP_VF_CNTL__PRIM_WALK_VERTEX_LIST
| (count
<< 16) |
903 static void r300_render_draw_elements(struct vbuf_render
* render
,
904 const ushort
* indices
,
907 struct r300_render
* r300render
= r300_render(render
);
908 struct r300_context
* r300
= r300render
->r300
;
910 unsigned end_cs_dwords
;
911 unsigned max_index
= (r300render
->vbo_size
- r300render
->vbo_offset
) /
912 (r300render
->r300
->vertex_info
.size
* 4) - 1;
913 unsigned short_count
;
914 unsigned free_dwords
;
918 /* Reserve at least 256 dwords.
920 * Below we manage the CS space manually because there may be more
921 * indices than it can fit in CS. */
922 r300_prepare_for_rendering(r300
,
923 PREP_FIRST_DRAW
| PREP_EMIT_AOS_SWTCL
| PREP_INDEXED
,
924 NULL
, 256, 0, 0, &end_cs_dwords
);
927 free_dwords
= r300
->rws
->get_cs_free_dwords(r300
->rws
);
929 short_count
= MIN2(count
, (free_dwords
- end_cs_dwords
- 6) * 2);
931 BEGIN_CS(6 + (short_count
+1)/2);
932 OUT_CS_REG(R300_GA_COLOR_CONTROL
,
933 r300_provoking_vertex_fixes(r300
, r300render
->prim
));
934 OUT_CS_REG(R300_VAP_VF_MAX_VTX_INDX
, max_index
);
935 OUT_CS_PKT3(R300_PACKET3_3D_DRAW_INDX_2
, (short_count
+1)/2);
936 OUT_CS(R300_VAP_VF_CNTL__PRIM_WALK_INDICES
| (short_count
<< 16) |
938 for (i
= 0; i
< short_count
-1; i
+= 2) {
939 OUT_CS(indices
[i
+1] << 16 | indices
[i
]);
941 if (short_count
% 2) {
942 OUT_CS(indices
[short_count
-1]);
946 /* OK now subtract the emitted indices and see if we need to emit
947 * another draw packet. */
948 indices
+= short_count
;
949 count
-= short_count
;
952 r300_prepare_for_rendering(r300
,
953 PREP_EMIT_AOS_SWTCL
| PREP_INDEXED
,
954 NULL
, 256, 0, 0, &end_cs_dwords
);
959 static void r300_render_destroy(struct vbuf_render
* render
)
964 static struct vbuf_render
* r300_render_create(struct r300_context
* r300
)
966 struct r300_render
* r300render
= CALLOC_STRUCT(r300_render
);
968 r300render
->r300
= r300
;
970 /* XXX find real numbers plz */
971 r300render
->base
.max_vertex_buffer_bytes
= 128 * 1024;
972 r300render
->base
.max_indices
= 16 * 1024;
974 r300render
->base
.get_vertex_info
= r300_render_get_vertex_info
;
975 r300render
->base
.allocate_vertices
= r300_render_allocate_vertices
;
976 r300render
->base
.map_vertices
= r300_render_map_vertices
;
977 r300render
->base
.unmap_vertices
= r300_render_unmap_vertices
;
978 r300render
->base
.set_primitive
= r300_render_set_primitive
;
979 r300render
->base
.draw_elements
= r300_render_draw_elements
;
980 r300render
->base
.draw_arrays
= r300_render_draw_arrays
;
981 r300render
->base
.release_vertices
= r300_render_release_vertices
;
982 r300render
->base
.destroy
= r300_render_destroy
;
984 r300render
->vbo
= NULL
;
985 r300render
->vbo_size
= 0;
986 r300render
->vbo_offset
= 0;
988 return &r300render
->base
;
991 struct draw_stage
* r300_draw_stage(struct r300_context
* r300
)
993 struct vbuf_render
* render
;
994 struct draw_stage
* stage
;
996 render
= r300_render_create(r300
);
1002 stage
= draw_vbuf_stage(r300
->draw
, render
);
1005 render
->destroy(render
);
1009 draw_set_render(r300
->draw
, render
);
1014 /****************************************************************************
1015 * End of SW TCL functions *
1016 ***************************************************************************/
1018 static void r300_resource_resolve(struct pipe_context
* pipe
,
1019 struct pipe_resource
* dest
,
1020 struct pipe_subresource subdest
,
1021 struct pipe_resource
* src
,
1022 struct pipe_subresource subsrc
)
1024 struct r300_context
* r300
= r300_context(pipe
);
1025 struct r300_surface
* destsurf
= r300_surface(
1026 dest
->screen
->get_tex_surface(dest
->screen
,
1027 dest
, subdest
.face
, subdest
.level
, 0, 0));
1028 struct pipe_surface
* srcsurf
= src
->screen
->get_tex_surface(src
->screen
,
1029 src
, subsrc
.face
, subsrc
.level
, 0, 0);
1030 float color
[] = {0, 0, 0, 0};
1033 DBG(r300
, DBG_DRAW
, "r300: Resolving resource...\n");
1035 OUT_CS_REG_SEQ(R300_RB3D_AARESOLVE_OFFSET
, 1);
1036 OUT_CS_RELOC(destsurf
->buffer
, destsurf
->offset
, 0, destsurf
->domain
, 0);
1038 OUT_CS_REG_SEQ(R300_RB3D_AARESOLVE_PITCH
, 1);
1039 OUT_CS_RELOC(destsurf
->buffer
, destsurf
->pitch
, 0, destsurf
->domain
, 0);
1041 OUT_CS_REG(R300_RB3D_AARESOLVE_CTL
,
1042 R300_RB3D_AARESOLVE_CTL_AARESOLVE_MODE_RESOLVE
|
1043 R300_RB3D_AARESOLVE_CTL_AARESOLVE_ALPHA_AVERAGE
);
1045 r300
->context
.clear_render_target(pipe
,
1046 srcsurf
, color
, 0, 0, src
->width0
, src
->height0
);
1048 OUT_CS_REG(R300_RB3D_AARESOLVE_CTL
, 0x0);
1050 pipe_surface_reference((struct pipe_surface
**)&srcsurf
, NULL
);
1051 pipe_surface_reference((struct pipe_surface
**)&destsurf
, NULL
);
1054 void r300_init_render_functions(struct r300_context
*r300
)
1056 /* Set generic functions. */
1057 r300
->context
.draw_elements
= r300_draw_elements
;
1059 /* Set draw functions based on presence of HW TCL. */
1060 if (r300
->screen
->caps
.has_tcl
) {
1061 r300
->context
.draw_arrays
= r300_draw_arrays
;
1062 r300
->context
.draw_range_elements
= r300_draw_range_elements
;
1064 r300
->context
.draw_arrays
= r300_swtcl_draw_arrays
;
1065 r300
->context
.draw_range_elements
= r300_swtcl_draw_range_elements
;
1068 r300
->context
.resource_resolve
= r300_resource_resolve
;
1070 /* Plug in the two-sided stencil reference value fallback if needed. */
1071 if (!r300
->screen
->caps
.is_r500
)
1072 r300_plug_in_stencil_ref_fallback(r300
);