2 * Copyright (C) 2014 Etnaviv Project
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published by
7 * the Free Software Foundation.
9 * This program is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
14 * You should have received a copy of the GNU General Public License along with
15 * this program. If not, see <http://www.gnu.org/licenses/>.
18 #include "etnaviv_cmdbuf.h"
19 #include "etnaviv_gpu.h"
20 #include "etnaviv_gem.h"
21 #include "etnaviv_mmu.h"
23 #include "common.xml.h"
24 #include "state.xml.h"
25 #include "state_hi.xml.h"
26 #include "state_3d.xml.h"
27 #include "cmdstream.xml.h"
30 * Command Buffer helper:
34 static inline void OUT(struct etnaviv_cmdbuf *buffer, u32 data)
36 u32 *vaddr = (u32 *)buffer->vaddr;
38 BUG_ON(buffer->user_size >= buffer->size);
40 vaddr[buffer->user_size / 4] = data;
41 buffer->user_size += 4;
44 static inline void CMD_LOAD_STATE(struct etnaviv_cmdbuf *buffer,
47 u32 index = reg >> VIV_FE_LOAD_STATE_HEADER_OFFSET__SHR;
49 buffer->user_size = ALIGN(buffer->user_size, 8);
51 /* write a register via cmd stream */
52 OUT(buffer, VIV_FE_LOAD_STATE_HEADER_OP_LOAD_STATE |
53 VIV_FE_LOAD_STATE_HEADER_COUNT(1) |
54 VIV_FE_LOAD_STATE_HEADER_OFFSET(index));
58 static inline void CMD_END(struct etnaviv_cmdbuf *buffer)
60 buffer->user_size = ALIGN(buffer->user_size, 8);
62 OUT(buffer, VIV_FE_END_HEADER_OP_END);
65 static inline void CMD_WAIT(struct etnaviv_cmdbuf *buffer)
67 buffer->user_size = ALIGN(buffer->user_size, 8);
69 OUT(buffer, VIV_FE_WAIT_HEADER_OP_WAIT | 200);
72 static inline void CMD_LINK(struct etnaviv_cmdbuf *buffer,
73 u16 prefetch, u32 address)
75 buffer->user_size = ALIGN(buffer->user_size, 8);
77 OUT(buffer, VIV_FE_LINK_HEADER_OP_LINK |
78 VIV_FE_LINK_HEADER_PREFETCH(prefetch));
82 static inline void CMD_STALL(struct etnaviv_cmdbuf *buffer,
85 buffer->user_size = ALIGN(buffer->user_size, 8);
87 OUT(buffer, VIV_FE_STALL_HEADER_OP_STALL);
88 OUT(buffer, VIV_FE_STALL_TOKEN_FROM(from) | VIV_FE_STALL_TOKEN_TO(to));
91 static inline void CMD_SEM(struct etnaviv_cmdbuf *buffer, u32 from, u32 to)
93 CMD_LOAD_STATE(buffer, VIVS_GL_SEMAPHORE_TOKEN,
94 VIVS_GL_SEMAPHORE_TOKEN_FROM(from) |
95 VIVS_GL_SEMAPHORE_TOKEN_TO(to));
98 static void etnaviv_cmd_select_pipe(struct etnaviv_gpu *gpu,
99 struct etnaviv_cmdbuf *buffer, u8 pipe)
104 * This assumes that if we're switching to 2D, we're switching
105 * away from 3D, and vice versa. Hence, if we're switching to
106 * the 2D core, we need to flush the 3D depth and color caches,
107 * otherwise we need to flush the 2D pixel engine cache.
109 if (gpu->exec_state == ETNA_PIPE_2D)
110 flush = VIVS_GL_FLUSH_CACHE_PE2D;
111 else if (gpu->exec_state == ETNA_PIPE_3D)
112 flush = VIVS_GL_FLUSH_CACHE_DEPTH | VIVS_GL_FLUSH_CACHE_COLOR;
114 CMD_LOAD_STATE(buffer, VIVS_GL_FLUSH_CACHE, flush);
115 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
116 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
118 CMD_LOAD_STATE(buffer, VIVS_GL_PIPE_SELECT,
119 VIVS_GL_PIPE_SELECT_PIPE(pipe));
122 static void etnaviv_buffer_dump(struct etnaviv_gpu *gpu,
123 struct etnaviv_cmdbuf *buf, u32 off, u32 len)
125 u32 size = buf->size;
126 u32 *ptr = buf->vaddr + off;
128 dev_info(gpu->dev, "virt %p phys 0x%08x free 0x%08x\n",
129 ptr, etnaviv_cmdbuf_get_va(buf) + off, size - len * 4 - off);
131 print_hex_dump(KERN_INFO, "cmd ", DUMP_PREFIX_OFFSET, 16, 4,
136 * Safely replace the WAIT of a waitlink with a new command and argument.
137 * The GPU may be executing this WAIT while we're modifying it, so we have
138 * to write it in a specific order to avoid the GPU branching to somewhere
139 * else. 'wl_offset' is the offset to the first byte of the WAIT command.
141 static void etnaviv_buffer_replace_wait(struct etnaviv_cmdbuf *buffer,
142 unsigned int wl_offset, u32 cmd, u32 arg)
144 u32 *lw = buffer->vaddr + wl_offset;
153 * Ensure that there is space in the command buffer to contiguously write
154 * 'cmd_dwords' 64-bit words into the buffer, wrapping if necessary.
156 static u32 etnaviv_buffer_reserve(struct etnaviv_gpu *gpu,
157 struct etnaviv_cmdbuf *buffer, unsigned int cmd_dwords)
159 if (buffer->user_size + cmd_dwords * sizeof(u64) > buffer->size)
160 buffer->user_size = 0;
162 return etnaviv_cmdbuf_get_va(buffer) + buffer->user_size;
165 u16 etnaviv_buffer_init(struct etnaviv_gpu *gpu)
167 struct etnaviv_cmdbuf *buffer = gpu->buffer;
169 /* initialize buffer */
170 buffer->user_size = 0;
173 CMD_LINK(buffer, 2, etnaviv_cmdbuf_get_va(buffer) +
174 buffer->user_size - 4);
176 return buffer->user_size / 8;
179 u16 etnaviv_buffer_config_mmuv2(struct etnaviv_gpu *gpu, u32 mtlb_addr, u32 safe_addr)
181 struct etnaviv_cmdbuf *buffer = gpu->buffer;
183 buffer->user_size = 0;
185 if (gpu->identity.features & chipFeatures_PIPE_3D) {
186 CMD_LOAD_STATE(buffer, VIVS_GL_PIPE_SELECT,
187 VIVS_GL_PIPE_SELECT_PIPE(ETNA_PIPE_3D));
188 CMD_LOAD_STATE(buffer, VIVS_MMUv2_CONFIGURATION,
189 mtlb_addr | VIVS_MMUv2_CONFIGURATION_MODE_MODE4_K);
190 CMD_LOAD_STATE(buffer, VIVS_MMUv2_SAFE_ADDRESS, safe_addr);
191 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
192 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
195 if (gpu->identity.features & chipFeatures_PIPE_2D) {
196 CMD_LOAD_STATE(buffer, VIVS_GL_PIPE_SELECT,
197 VIVS_GL_PIPE_SELECT_PIPE(ETNA_PIPE_2D));
198 CMD_LOAD_STATE(buffer, VIVS_MMUv2_CONFIGURATION,
199 mtlb_addr | VIVS_MMUv2_CONFIGURATION_MODE_MODE4_K);
200 CMD_LOAD_STATE(buffer, VIVS_MMUv2_SAFE_ADDRESS, safe_addr);
201 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
202 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
207 buffer->user_size = ALIGN(buffer->user_size, 8);
209 return buffer->user_size / 8;
212 void etnaviv_buffer_end(struct etnaviv_gpu *gpu)
214 struct etnaviv_cmdbuf *buffer = gpu->buffer;
215 unsigned int waitlink_offset = buffer->user_size - 16;
216 u32 link_target, flush = 0;
218 if (gpu->exec_state == ETNA_PIPE_2D)
219 flush = VIVS_GL_FLUSH_CACHE_PE2D;
220 else if (gpu->exec_state == ETNA_PIPE_3D)
221 flush = VIVS_GL_FLUSH_CACHE_DEPTH |
222 VIVS_GL_FLUSH_CACHE_COLOR |
223 VIVS_GL_FLUSH_CACHE_TEXTURE |
224 VIVS_GL_FLUSH_CACHE_TEXTUREVS |
225 VIVS_GL_FLUSH_CACHE_SHADER_L2;
228 unsigned int dwords = 7;
230 link_target = etnaviv_buffer_reserve(gpu, buffer, dwords);
232 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
233 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
234 CMD_LOAD_STATE(buffer, VIVS_GL_FLUSH_CACHE, flush);
235 if (gpu->exec_state == ETNA_PIPE_3D)
236 CMD_LOAD_STATE(buffer, VIVS_TS_FLUSH_CACHE,
237 VIVS_TS_FLUSH_CACHE_FLUSH);
238 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
239 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
242 etnaviv_buffer_replace_wait(buffer, waitlink_offset,
243 VIV_FE_LINK_HEADER_OP_LINK |
244 VIV_FE_LINK_HEADER_PREFETCH(dwords),
247 /* Replace the last link-wait with an "END" command */
248 etnaviv_buffer_replace_wait(buffer, waitlink_offset,
249 VIV_FE_END_HEADER_OP_END, 0);
253 /* Append a 'sync point' to the ring buffer. */
254 void etnaviv_sync_point_queue(struct etnaviv_gpu *gpu, unsigned int event)
256 struct etnaviv_cmdbuf *buffer = gpu->buffer;
257 unsigned int waitlink_offset = buffer->user_size - 16;
261 * We need at most 3 dwords in the return target:
262 * 1 event + 1 end + 1 wait + 1 link.
265 target = etnaviv_buffer_reserve(gpu, buffer, dwords);
267 /* Signal sync point event */
268 CMD_LOAD_STATE(buffer, VIVS_GL_EVENT, VIVS_GL_EVENT_EVENT_ID(event) |
269 VIVS_GL_EVENT_FROM_PE);
271 /* Stop the FE to 'pause' the GPU */
274 /* Append waitlink */
276 CMD_LINK(buffer, 2, etnaviv_cmdbuf_get_va(buffer) +
277 buffer->user_size - 4);
280 * Kick off the 'sync point' command by replacing the previous
281 * WAIT with a link to the address in the ring buffer.
283 etnaviv_buffer_replace_wait(buffer, waitlink_offset,
284 VIV_FE_LINK_HEADER_OP_LINK |
285 VIV_FE_LINK_HEADER_PREFETCH(dwords),
289 /* Append a command buffer to the ring buffer. */
290 void etnaviv_buffer_queue(struct etnaviv_gpu *gpu, unsigned int event,
291 struct etnaviv_cmdbuf *cmdbuf)
293 struct etnaviv_cmdbuf *buffer = gpu->buffer;
294 unsigned int waitlink_offset = buffer->user_size - 16;
295 u32 return_target, return_dwords;
296 u32 link_target, link_dwords;
298 if (drm_debug & DRM_UT_DRIVER)
299 etnaviv_buffer_dump(gpu, buffer, 0, 0x50);
301 link_target = etnaviv_cmdbuf_get_va(cmdbuf);
302 link_dwords = cmdbuf->size / 8;
305 * If we need maintanence prior to submitting this buffer, we will
306 * need to append a mmu flush load state, followed by a new
307 * link to this buffer - a total of four additional words.
309 if (gpu->mmu->need_flush || gpu->switch_context) {
310 u32 target, extra_dwords;
316 if (gpu->mmu->need_flush) {
317 if (gpu->mmu->version == ETNAVIV_IOMMU_V1)
323 /* pipe switch commands */
324 if (gpu->switch_context)
327 target = etnaviv_buffer_reserve(gpu, buffer, extra_dwords);
329 if (gpu->mmu->need_flush) {
330 /* Add the MMU flush */
331 if (gpu->mmu->version == ETNAVIV_IOMMU_V1) {
332 CMD_LOAD_STATE(buffer, VIVS_GL_FLUSH_MMU,
333 VIVS_GL_FLUSH_MMU_FLUSH_FEMMU |
334 VIVS_GL_FLUSH_MMU_FLUSH_UNK1 |
335 VIVS_GL_FLUSH_MMU_FLUSH_UNK2 |
336 VIVS_GL_FLUSH_MMU_FLUSH_PEMMU |
337 VIVS_GL_FLUSH_MMU_FLUSH_UNK4);
339 CMD_LOAD_STATE(buffer, VIVS_MMUv2_CONFIGURATION,
340 VIVS_MMUv2_CONFIGURATION_MODE_MASK |
341 VIVS_MMUv2_CONFIGURATION_ADDRESS_MASK |
342 VIVS_MMUv2_CONFIGURATION_FLUSH_FLUSH);
343 CMD_SEM(buffer, SYNC_RECIPIENT_FE,
345 CMD_STALL(buffer, SYNC_RECIPIENT_FE,
349 gpu->mmu->need_flush = false;
352 if (gpu->switch_context) {
353 etnaviv_cmd_select_pipe(gpu, buffer, cmdbuf->exec_state);
354 gpu->exec_state = cmdbuf->exec_state;
355 gpu->switch_context = false;
358 /* And the link to the submitted buffer */
359 CMD_LINK(buffer, link_dwords, link_target);
361 /* Update the link target to point to above instructions */
362 link_target = target;
363 link_dwords = extra_dwords;
367 * Append a LINK to the submitted command buffer to return to
368 * the ring buffer. return_target is the ring target address.
369 * We need at most 7 dwords in the return target: 2 cache flush +
370 * 2 semaphore stall + 1 event + 1 wait + 1 link.
373 return_target = etnaviv_buffer_reserve(gpu, buffer, return_dwords);
374 CMD_LINK(cmdbuf, return_dwords, return_target);
377 * Append a cache flush, stall, event, wait and link pointing back to
378 * the wait command to the ring buffer.
380 if (gpu->exec_state == ETNA_PIPE_2D) {
381 CMD_LOAD_STATE(buffer, VIVS_GL_FLUSH_CACHE,
382 VIVS_GL_FLUSH_CACHE_PE2D);
384 CMD_LOAD_STATE(buffer, VIVS_GL_FLUSH_CACHE,
385 VIVS_GL_FLUSH_CACHE_DEPTH |
386 VIVS_GL_FLUSH_CACHE_COLOR);
387 CMD_LOAD_STATE(buffer, VIVS_TS_FLUSH_CACHE,
388 VIVS_TS_FLUSH_CACHE_FLUSH);
390 CMD_SEM(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
391 CMD_STALL(buffer, SYNC_RECIPIENT_FE, SYNC_RECIPIENT_PE);
392 CMD_LOAD_STATE(buffer, VIVS_GL_EVENT, VIVS_GL_EVENT_EVENT_ID(event) |
393 VIVS_GL_EVENT_FROM_PE);
395 CMD_LINK(buffer, 2, etnaviv_cmdbuf_get_va(buffer) +
396 buffer->user_size - 4);
398 if (drm_debug & DRM_UT_DRIVER)
399 pr_info("stream link to 0x%08x @ 0x%08x %p\n",
400 return_target, etnaviv_cmdbuf_get_va(cmdbuf),
403 if (drm_debug & DRM_UT_DRIVER) {
404 print_hex_dump(KERN_INFO, "cmd ", DUMP_PREFIX_OFFSET, 16, 4,
405 cmdbuf->vaddr, cmdbuf->size, 0);
407 pr_info("link op: %p\n", buffer->vaddr + waitlink_offset);
408 pr_info("addr: 0x%08x\n", link_target);
409 pr_info("back: 0x%08x\n", return_target);
410 pr_info("event: %d\n", event);
414 * Kick off the submitted command by replacing the previous
415 * WAIT with a link to the address in the ring buffer.
417 etnaviv_buffer_replace_wait(buffer, waitlink_offset,
418 VIV_FE_LINK_HEADER_OP_LINK |
419 VIV_FE_LINK_HEADER_PREFETCH(link_dwords),
422 if (drm_debug & DRM_UT_DRIVER)
423 etnaviv_buffer_dump(gpu, buffer, 0, 0x50);