cb72ada4aff2a549a6904676311c5e6154acb1da
[mesa.git] / src / gallium / drivers / radeon / r600_streamout.c
1 /*
2 * Copyright 2013 Advanced Micro Devices, Inc.
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
20 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21 * SOFTWARE.
22 *
23 * Authors: Marek Olšák <maraeo@gmail.com>
24 *
25 */
26
27 #include "r600_pipe_common.h"
28 #include "r600_cs.h"
29
30 #include "util/u_memory.h"
31
32 static void r600_set_streamout_enable(struct r600_common_context *rctx, bool enable);
33
34 static struct pipe_stream_output_target *
35 r600_create_so_target(struct pipe_context *ctx,
36 struct pipe_resource *buffer,
37 unsigned buffer_offset,
38 unsigned buffer_size)
39 {
40 struct r600_common_context *rctx = (struct r600_common_context *)ctx;
41 struct r600_so_target *t;
42 struct r600_resource *rbuffer = (struct r600_resource*)buffer;
43
44 t = CALLOC_STRUCT(r600_so_target);
45 if (!t) {
46 return NULL;
47 }
48
49 u_suballocator_alloc(rctx->allocator_so_filled_size, 4,
50 &t->buf_filled_size_offset,
51 (struct pipe_resource**)&t->buf_filled_size);
52 if (!t->buf_filled_size) {
53 FREE(t);
54 return NULL;
55 }
56
57 t->b.reference.count = 1;
58 t->b.context = ctx;
59 pipe_resource_reference(&t->b.buffer, buffer);
60 t->b.buffer_offset = buffer_offset;
61 t->b.buffer_size = buffer_size;
62
63 util_range_add(&rbuffer->valid_buffer_range, buffer_offset,
64 buffer_offset + buffer_size);
65 return &t->b;
66 }
67
68 static void r600_so_target_destroy(struct pipe_context *ctx,
69 struct pipe_stream_output_target *target)
70 {
71 struct r600_so_target *t = (struct r600_so_target*)target;
72 pipe_resource_reference(&t->b.buffer, NULL);
73 pipe_resource_reference((struct pipe_resource**)&t->buf_filled_size, NULL);
74 FREE(t);
75 }
76
77 void r600_streamout_buffers_dirty(struct r600_common_context *rctx)
78 {
79 struct r600_atom *begin = &rctx->streamout.begin_atom;
80 unsigned num_bufs = util_bitcount(rctx->streamout.enabled_mask);
81 unsigned num_bufs_appended = util_bitcount(rctx->streamout.enabled_mask &
82 rctx->streamout.append_bitmask);
83
84 if (!num_bufs)
85 return;
86
87 rctx->streamout.num_dw_for_end =
88 12 + /* flush_vgt_streamout */
89 num_bufs * 11; /* STRMOUT_BUFFER_UPDATE, BUFFER_SIZE */
90
91 begin->num_dw = 12 + /* flush_vgt_streamout */
92 3; /* VGT_STRMOUT_BUFFER_CONFIG */
93
94 if (rctx->chip_class >= SI) {
95 begin->num_dw += num_bufs * 4; /* SET_CONTEXT_REG */
96 } else {
97 begin->num_dw += num_bufs * 7; /* SET_CONTEXT_REG */
98
99 if (rctx->family >= CHIP_RS780 && rctx->family <= CHIP_RV740)
100 begin->num_dw += num_bufs * 5; /* STRMOUT_BASE_UPDATE */
101 }
102
103 begin->num_dw +=
104 num_bufs_appended * 8 + /* STRMOUT_BUFFER_UPDATE */
105 (num_bufs - num_bufs_appended) * 6 + /* STRMOUT_BUFFER_UPDATE */
106 (rctx->family > CHIP_R600 && rctx->family < CHIP_RS780 ? 2 : 0); /* SURFACE_BASE_UPDATE */
107
108 begin->dirty = true;
109
110 r600_set_streamout_enable(rctx, true);
111 }
112
113 void r600_set_streamout_targets(struct pipe_context *ctx,
114 unsigned num_targets,
115 struct pipe_stream_output_target **targets,
116 const unsigned *offsets)
117 {
118 struct r600_common_context *rctx = (struct r600_common_context *)ctx;
119 unsigned i;
120 unsigned append_bitmask = 0;
121
122 /* Stop streamout. */
123 if (rctx->streamout.num_targets && rctx->streamout.begin_emitted) {
124 r600_emit_streamout_end(rctx);
125 }
126
127 /* Set the new targets. */
128 for (i = 0; i < num_targets; i++) {
129 pipe_so_target_reference((struct pipe_stream_output_target**)&rctx->streamout.targets[i], targets[i]);
130 r600_context_add_resource_size(ctx, targets[i]->buffer);
131 if (offsets[i] == ((unsigned)-1))
132 append_bitmask |= 1 << i;
133 }
134 for (; i < rctx->streamout.num_targets; i++) {
135 pipe_so_target_reference((struct pipe_stream_output_target**)&rctx->streamout.targets[i], NULL);
136 }
137
138 rctx->streamout.enabled_mask = (num_targets >= 1 && targets[0] ? 1 : 0) |
139 (num_targets >= 2 && targets[1] ? 2 : 0) |
140 (num_targets >= 3 && targets[2] ? 4 : 0) |
141 (num_targets >= 4 && targets[3] ? 8 : 0);
142
143 rctx->streamout.num_targets = num_targets;
144 rctx->streamout.append_bitmask = append_bitmask;
145
146 if (num_targets) {
147 r600_streamout_buffers_dirty(rctx);
148 } else {
149 rctx->streamout.begin_atom.dirty = false;
150 r600_set_streamout_enable(rctx, false);
151 }
152 }
153
154 static void r600_flush_vgt_streamout(struct r600_common_context *rctx)
155 {
156 struct radeon_winsys_cs *cs = rctx->rings.gfx.cs;
157 unsigned reg_strmout_cntl;
158
159 /* The register is at different places on different ASICs. */
160 if (rctx->chip_class >= CIK) {
161 reg_strmout_cntl = R_0300FC_CP_STRMOUT_CNTL;
162 } else if (rctx->chip_class >= EVERGREEN) {
163 reg_strmout_cntl = R_0084FC_CP_STRMOUT_CNTL;
164 } else {
165 reg_strmout_cntl = R_008490_CP_STRMOUT_CNTL;
166 }
167
168 if (rctx->chip_class >= CIK) {
169 cik_write_uconfig_reg(cs, reg_strmout_cntl, 0);
170 } else {
171 r600_write_config_reg(cs, reg_strmout_cntl, 0);
172 }
173
174 radeon_emit(cs, PKT3(PKT3_EVENT_WRITE, 0, 0));
175 radeon_emit(cs, EVENT_TYPE(EVENT_TYPE_SO_VGTSTREAMOUT_FLUSH) | EVENT_INDEX(0));
176
177 radeon_emit(cs, PKT3(PKT3_WAIT_REG_MEM, 5, 0));
178 radeon_emit(cs, WAIT_REG_MEM_EQUAL); /* wait until the register is equal to the reference value */
179 radeon_emit(cs, reg_strmout_cntl >> 2); /* register */
180 radeon_emit(cs, 0);
181 radeon_emit(cs, S_008490_OFFSET_UPDATE_DONE(1)); /* reference value */
182 radeon_emit(cs, S_008490_OFFSET_UPDATE_DONE(1)); /* mask */
183 radeon_emit(cs, 4); /* poll interval */
184 }
185
186 static void r600_emit_streamout_begin(struct r600_common_context *rctx, struct r600_atom *atom)
187 {
188 struct radeon_winsys_cs *cs = rctx->rings.gfx.cs;
189 struct r600_so_target **t = rctx->streamout.targets;
190 unsigned *stride_in_dw = rctx->streamout.stride_in_dw;
191 unsigned i, update_flags = 0;
192
193 r600_flush_vgt_streamout(rctx);
194
195 r600_write_context_reg(cs, rctx->chip_class >= EVERGREEN ?
196 R_028B98_VGT_STRMOUT_BUFFER_CONFIG :
197 R_028B20_VGT_STRMOUT_BUFFER_EN,
198 rctx->streamout.enabled_mask);
199
200 for (i = 0; i < rctx->streamout.num_targets; i++) {
201 if (!t[i])
202 continue;
203
204 t[i]->stride_in_dw = stride_in_dw[i];
205
206 if (rctx->chip_class >= SI) {
207 /* SI binds streamout buffers as shader resources.
208 * VGT only counts primitives and tells the shader
209 * through SGPRs what to do. */
210 r600_write_context_reg_seq(cs, R_028AD0_VGT_STRMOUT_BUFFER_SIZE_0 + 16*i, 2);
211 radeon_emit(cs, (t[i]->b.buffer_offset +
212 t[i]->b.buffer_size) >> 2); /* BUFFER_SIZE (in DW) */
213 radeon_emit(cs, stride_in_dw[i]); /* VTX_STRIDE (in DW) */
214 } else {
215 uint64_t va = r600_resource_va(rctx->b.screen,
216 (void*)t[i]->b.buffer);
217
218 update_flags |= SURFACE_BASE_UPDATE_STRMOUT(i);
219
220 r600_write_context_reg_seq(cs, R_028AD0_VGT_STRMOUT_BUFFER_SIZE_0 + 16*i, 3);
221 radeon_emit(cs, (t[i]->b.buffer_offset +
222 t[i]->b.buffer_size) >> 2); /* BUFFER_SIZE (in DW) */
223 radeon_emit(cs, stride_in_dw[i]); /* VTX_STRIDE (in DW) */
224 radeon_emit(cs, va >> 8); /* BUFFER_BASE */
225
226 r600_emit_reloc(rctx, &rctx->rings.gfx, r600_resource(t[i]->b.buffer),
227 RADEON_USAGE_WRITE, RADEON_PRIO_SHADER_RESOURCE_RW);
228
229 /* R7xx requires this packet after updating BUFFER_BASE.
230 * Without this, R7xx locks up. */
231 if (rctx->family >= CHIP_RS780 && rctx->family <= CHIP_RV740) {
232 radeon_emit(cs, PKT3(PKT3_STRMOUT_BASE_UPDATE, 1, 0));
233 radeon_emit(cs, i);
234 radeon_emit(cs, va >> 8);
235
236 r600_emit_reloc(rctx, &rctx->rings.gfx, r600_resource(t[i]->b.buffer),
237 RADEON_USAGE_WRITE, RADEON_PRIO_SHADER_RESOURCE_RW);
238 }
239 }
240
241 if (rctx->streamout.append_bitmask & (1 << i)) {
242 uint64_t va = r600_resource_va(rctx->b.screen,
243 (void*)t[i]->buf_filled_size) +
244 t[i]->buf_filled_size_offset;
245
246 /* Append. */
247 radeon_emit(cs, PKT3(PKT3_STRMOUT_BUFFER_UPDATE, 4, 0));
248 radeon_emit(cs, STRMOUT_SELECT_BUFFER(i) |
249 STRMOUT_OFFSET_SOURCE(STRMOUT_OFFSET_FROM_MEM)); /* control */
250 radeon_emit(cs, 0); /* unused */
251 radeon_emit(cs, 0); /* unused */
252 radeon_emit(cs, va); /* src address lo */
253 radeon_emit(cs, va >> 32); /* src address hi */
254
255 r600_emit_reloc(rctx, &rctx->rings.gfx, t[i]->buf_filled_size,
256 RADEON_USAGE_READ, RADEON_PRIO_MIN);
257 } else {
258 /* Start from the beginning. */
259 radeon_emit(cs, PKT3(PKT3_STRMOUT_BUFFER_UPDATE, 4, 0));
260 radeon_emit(cs, STRMOUT_SELECT_BUFFER(i) |
261 STRMOUT_OFFSET_SOURCE(STRMOUT_OFFSET_FROM_PACKET)); /* control */
262 radeon_emit(cs, 0); /* unused */
263 radeon_emit(cs, 0); /* unused */
264 radeon_emit(cs, t[i]->b.buffer_offset >> 2); /* buffer offset in DW */
265 radeon_emit(cs, 0); /* unused */
266 }
267 }
268
269 if (rctx->family > CHIP_R600 && rctx->family < CHIP_RV770) {
270 radeon_emit(cs, PKT3(PKT3_SURFACE_BASE_UPDATE, 0, 0));
271 radeon_emit(cs, update_flags);
272 }
273 rctx->streamout.begin_emitted = true;
274 }
275
276 void r600_emit_streamout_end(struct r600_common_context *rctx)
277 {
278 struct radeon_winsys_cs *cs = rctx->rings.gfx.cs;
279 struct r600_so_target **t = rctx->streamout.targets;
280 unsigned i;
281 uint64_t va;
282
283 r600_flush_vgt_streamout(rctx);
284
285 for (i = 0; i < rctx->streamout.num_targets; i++) {
286 if (!t[i])
287 continue;
288
289 va = r600_resource_va(rctx->b.screen,
290 (void*)t[i]->buf_filled_size) + t[i]->buf_filled_size_offset;
291 radeon_emit(cs, PKT3(PKT3_STRMOUT_BUFFER_UPDATE, 4, 0));
292 radeon_emit(cs, STRMOUT_SELECT_BUFFER(i) |
293 STRMOUT_OFFSET_SOURCE(STRMOUT_OFFSET_NONE) |
294 STRMOUT_STORE_BUFFER_FILLED_SIZE); /* control */
295 radeon_emit(cs, va); /* dst address lo */
296 radeon_emit(cs, va >> 32); /* dst address hi */
297 radeon_emit(cs, 0); /* unused */
298 radeon_emit(cs, 0); /* unused */
299
300 r600_emit_reloc(rctx, &rctx->rings.gfx, t[i]->buf_filled_size,
301 RADEON_USAGE_WRITE, RADEON_PRIO_MIN);
302
303 /* Zero the buffer size. The counters (primitives generated,
304 * primitives emitted) may be enabled even if there is not
305 * buffer bound. This ensures that the primitives-emitted query
306 * won't increment. */
307 r600_write_context_reg(cs, R_028AD0_VGT_STRMOUT_BUFFER_SIZE_0 + 16*i, 0);
308 }
309
310 rctx->streamout.begin_emitted = false;
311
312 if (rctx->chip_class >= R700) {
313 rctx->flags |= R600_CONTEXT_STREAMOUT_FLUSH;
314 } else {
315 rctx->flags |= R600_CONTEXT_FLUSH_AND_INV;
316 }
317 }
318
319 /* STREAMOUT CONFIG DERIVED STATE
320 *
321 * Streamout must be enabled for the PRIMITIVES_GENERATED query to work.
322 * The buffer mask is an independent state, so no writes occur if there
323 * are no buffers bound.
324 */
325
326 static bool r600_get_strmout_en(struct r600_common_context *rctx)
327 {
328 return rctx->streamout.streamout_enabled ||
329 rctx->streamout.prims_gen_query_enabled;
330 }
331
332 static void r600_emit_streamout_enable(struct r600_common_context *rctx,
333 struct r600_atom *atom)
334 {
335 r600_write_context_reg(rctx->rings.gfx.cs,
336 rctx->chip_class >= EVERGREEN ?
337 R_028B94_VGT_STRMOUT_CONFIG :
338 R_028AB0_VGT_STRMOUT_EN,
339 S_028B94_STREAMOUT_0_EN(r600_get_strmout_en(rctx)));
340 }
341
342 static void r600_set_streamout_enable(struct r600_common_context *rctx, bool enable)
343 {
344 bool old_strmout_en = r600_get_strmout_en(rctx);
345
346 rctx->streamout.streamout_enabled = enable;
347 if (old_strmout_en != r600_get_strmout_en(rctx))
348 rctx->streamout.enable_atom.dirty = true;
349 }
350
351 void r600_update_prims_generated_query_state(struct r600_common_context *rctx,
352 unsigned type, int diff)
353 {
354 if (type == PIPE_QUERY_PRIMITIVES_GENERATED) {
355 bool old_strmout_en = r600_get_strmout_en(rctx);
356
357 rctx->streamout.num_prims_gen_queries += diff;
358 assert(rctx->streamout.num_prims_gen_queries >= 0);
359
360 rctx->streamout.prims_gen_query_enabled =
361 rctx->streamout.num_prims_gen_queries != 0;
362
363 if (old_strmout_en != r600_get_strmout_en(rctx))
364 rctx->streamout.enable_atom.dirty = true;
365 }
366 }
367
368 void r600_streamout_init(struct r600_common_context *rctx)
369 {
370 rctx->b.create_stream_output_target = r600_create_so_target;
371 rctx->b.stream_output_target_destroy = r600_so_target_destroy;
372 rctx->streamout.begin_atom.emit = r600_emit_streamout_begin;
373 rctx->streamout.enable_atom.emit = r600_emit_streamout_enable;
374 rctx->streamout.enable_atom.num_dw = 3;
375 }