63ed8bacf0a76edab5bad7290c0c59bbb2ca7814
[mesa.git] / src / gallium / drivers / etnaviv / etnaviv_resource.c
1 /*
2 * Copyright (c) 2012-2015 Etnaviv Project
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, sub license,
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
12 * next paragraph) shall be included in all copies or substantial portions
13 * of the 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 NON-INFRINGEMENT. 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
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21 * DEALINGS IN THE SOFTWARE.
22 *
23 * Authors:
24 * Wladimir J. van der Laan <laanwj@gmail.com>
25 */
26
27 #include "etnaviv_resource.h"
28
29 #include "hw/common.xml.h"
30
31 #include "etnaviv_context.h"
32 #include "etnaviv_debug.h"
33 #include "etnaviv_screen.h"
34 #include "etnaviv_translate.h"
35
36 #include "util/u_inlines.h"
37 #include "util/u_memory.h"
38
39 #include <drm_fourcc.h>
40
41 #ifndef DRM_FORMAT_MOD_INVALID
42 #define DRM_FORMAT_MOD_INVALID ((1ULL<<56) - 1)
43 #endif
44
45 static enum etna_surface_layout modifier_to_layout(uint64_t modifier)
46 {
47 switch (modifier) {
48 case DRM_FORMAT_MOD_VIVANTE_TILED:
49 return ETNA_LAYOUT_TILED;
50 case DRM_FORMAT_MOD_VIVANTE_SUPER_TILED:
51 return ETNA_LAYOUT_SUPER_TILED;
52 case DRM_FORMAT_MOD_VIVANTE_SPLIT_TILED:
53 return ETNA_LAYOUT_MULTI_TILED;
54 case DRM_FORMAT_MOD_VIVANTE_SPLIT_SUPER_TILED:
55 return ETNA_LAYOUT_MULTI_SUPERTILED;
56 case DRM_FORMAT_MOD_LINEAR:
57 default:
58 return ETNA_LAYOUT_LINEAR;
59 }
60 }
61
62 static uint64_t layout_to_modifier(enum etna_surface_layout layout)
63 {
64 switch (layout) {
65 case ETNA_LAYOUT_TILED:
66 return DRM_FORMAT_MOD_VIVANTE_TILED;
67 case ETNA_LAYOUT_SUPER_TILED:
68 return DRM_FORMAT_MOD_VIVANTE_SUPER_TILED;
69 case ETNA_LAYOUT_MULTI_TILED:
70 return DRM_FORMAT_MOD_VIVANTE_SPLIT_TILED;
71 case ETNA_LAYOUT_MULTI_SUPERTILED:
72 return DRM_FORMAT_MOD_VIVANTE_SPLIT_SUPER_TILED;
73 case ETNA_LAYOUT_LINEAR:
74 return DRM_FORMAT_MOD_LINEAR;
75 default:
76 return DRM_FORMAT_MOD_INVALID;
77 }
78 }
79
80 /* A tile is 4x4 pixels, having 'screen->specs.bits_per_tile' of tile status.
81 * So, in a buffer of N pixels, there are N / (4 * 4) tiles.
82 * We need N * screen->specs.bits_per_tile / (4 * 4) bits of tile status, or
83 * N * screen->specs.bits_per_tile / (4 * 4 * 8) bytes.
84 */
85 bool
86 etna_screen_resource_alloc_ts(struct pipe_screen *pscreen,
87 struct etna_resource *rsc)
88 {
89 struct etna_screen *screen = etna_screen(pscreen);
90 size_t rt_ts_size, ts_layer_stride, pixels;
91
92 assert(!rsc->ts_bo);
93
94 /* TS only for level 0 -- XXX is this formula correct? */
95 pixels = rsc->levels[0].layer_stride / util_format_get_blocksize(rsc->base.format);
96 ts_layer_stride = align(pixels * screen->specs.bits_per_tile / 0x80,
97 0x100 * screen->specs.pixel_pipes);
98 rt_ts_size = ts_layer_stride * rsc->base.array_size;
99 if (rt_ts_size == 0)
100 return true;
101
102 DBG_F(ETNA_DBG_RESOURCE_MSGS, "%p: Allocating tile status of size %zu",
103 rsc, rt_ts_size);
104
105 struct etna_bo *rt_ts;
106 rt_ts = etna_bo_new(screen->dev, rt_ts_size, DRM_ETNA_GEM_CACHE_WC);
107
108 if (unlikely(!rt_ts)) {
109 BUG("Problem allocating tile status for resource");
110 return false;
111 }
112
113 rsc->ts_bo = rt_ts;
114 rsc->levels[0].ts_offset = 0;
115 rsc->levels[0].ts_layer_stride = ts_layer_stride;
116 rsc->levels[0].ts_size = rt_ts_size;
117
118 /* It is important to initialize the TS, as random pattern
119 * can result in crashes. Do this on the CPU as this only happens once
120 * per surface anyway and it's a small area, so it may not be worth
121 * queuing this to the GPU. */
122 void *ts_map = etna_bo_map(rt_ts);
123 memset(ts_map, screen->specs.ts_clear_value, rt_ts_size);
124
125 return true;
126 }
127
128 static boolean
129 etna_screen_can_create_resource(struct pipe_screen *pscreen,
130 const struct pipe_resource *templat)
131 {
132 struct etna_screen *screen = etna_screen(pscreen);
133 if (!translate_samples_to_xyscale(templat->nr_samples, NULL, NULL, NULL))
134 return false;
135
136 /* templat->bind is not set here, so we must use the minimum sizes */
137 uint max_size =
138 MIN2(screen->specs.max_rendertarget_size, screen->specs.max_texture_size);
139
140 if (templat->width0 > max_size || templat->height0 > max_size)
141 return false;
142
143 return true;
144 }
145
146 static unsigned
147 setup_miptree(struct etna_resource *rsc, unsigned paddingX, unsigned paddingY,
148 unsigned msaa_xscale, unsigned msaa_yscale)
149 {
150 struct pipe_resource *prsc = &rsc->base;
151 unsigned level, size = 0;
152 unsigned width = prsc->width0;
153 unsigned height = prsc->height0;
154 unsigned depth = prsc->depth0;
155
156 for (level = 0; level <= prsc->last_level; level++) {
157 struct etna_resource_level *mip = &rsc->levels[level];
158
159 mip->width = width;
160 mip->height = height;
161 mip->padded_width = align(width * msaa_xscale, paddingX);
162 mip->padded_height = align(height * msaa_yscale, paddingY);
163 mip->stride = util_format_get_stride(prsc->format, mip->padded_width);
164 mip->offset = size;
165 mip->layer_stride = mip->stride * util_format_get_nblocksy(prsc->format, mip->padded_height);
166 mip->size = prsc->array_size * mip->layer_stride;
167
168 /* align levels to 64 bytes to be able to render to them */
169 size += align(mip->size, ETNA_PE_ALIGNMENT) * depth;
170
171 width = u_minify(width, 1);
172 height = u_minify(height, 1);
173 depth = u_minify(depth, 1);
174 }
175
176 return size;
177 }
178
179 /* Create a new resource object, using the given template info */
180 struct pipe_resource *
181 etna_resource_alloc(struct pipe_screen *pscreen, unsigned layout,
182 const struct pipe_resource *templat)
183 {
184 struct etna_screen *screen = etna_screen(pscreen);
185 struct etna_resource *rsc;
186 unsigned size;
187
188 DBG_F(ETNA_DBG_RESOURCE_MSGS,
189 "target=%d, format=%s, %ux%ux%u, array_size=%u, "
190 "last_level=%u, nr_samples=%u, usage=%u, bind=%x, flags=%x",
191 templat->target, util_format_name(templat->format), templat->width0,
192 templat->height0, templat->depth0, templat->array_size,
193 templat->last_level, templat->nr_samples, templat->usage,
194 templat->bind, templat->flags);
195
196 /* Determine scaling for antialiasing, allow override using debug flag */
197 int nr_samples = templat->nr_samples;
198 if ((templat->bind & (PIPE_BIND_RENDER_TARGET | PIPE_BIND_DEPTH_STENCIL)) &&
199 !(templat->bind & PIPE_BIND_SAMPLER_VIEW)) {
200 if (DBG_ENABLED(ETNA_DBG_MSAA_2X))
201 nr_samples = 2;
202 if (DBG_ENABLED(ETNA_DBG_MSAA_4X))
203 nr_samples = 4;
204 }
205
206 int msaa_xscale = 1, msaa_yscale = 1;
207 if (!translate_samples_to_xyscale(nr_samples, &msaa_xscale, &msaa_yscale, NULL)) {
208 /* Number of samples not supported */
209 return NULL;
210 }
211
212 /* If we have the TEXTURE_HALIGN feature, we can always align to the
213 * resolve engine's width. If not, we must not align resources used
214 * only for textures. */
215 bool rs_align = VIV_FEATURE(screen, chipMinorFeatures1, TEXTURE_HALIGN) ||
216 !etna_resource_sampler_only(templat);
217
218 /* Determine needed padding (alignment of height/width) */
219 unsigned paddingX = 0, paddingY = 0;
220 unsigned halign = TEXTURE_HALIGN_FOUR;
221 etna_layout_multiple(layout, screen->specs.pixel_pipes, rs_align, &paddingX,
222 &paddingY, &halign);
223 assert(paddingX && paddingY);
224
225 if (templat->target != PIPE_BUFFER)
226 etna_adjust_rs_align(screen->specs.pixel_pipes, NULL, &paddingY);
227
228 if (templat->bind & PIPE_BIND_SCANOUT) {
229 struct pipe_resource scanout_templat = *templat;
230 struct renderonly_scanout *scanout;
231 struct winsys_handle handle;
232
233 /* pad scanout buffer size to be compatible with the RS */
234 etna_adjust_rs_align(screen->specs.pixel_pipes,
235 &scanout_templat.width0, &scanout_templat.height0);
236
237 scanout = renderonly_scanout_for_resource(&scanout_templat,
238 screen->ro, &handle);
239 if (!scanout)
240 return NULL;
241
242 assert(handle.type == DRM_API_HANDLE_TYPE_FD);
243 rsc = etna_resource(pscreen->resource_from_handle(pscreen, templat,
244 &handle,
245 PIPE_HANDLE_USAGE_WRITE));
246 close(handle.handle);
247 if (!rsc)
248 return NULL;
249
250 rsc->scanout = scanout;
251
252 return &rsc->base;
253 }
254
255 rsc = CALLOC_STRUCT(etna_resource);
256 if (!rsc)
257 return NULL;
258
259 rsc->base = *templat;
260 rsc->base.screen = pscreen;
261 rsc->base.nr_samples = nr_samples;
262 rsc->layout = layout;
263 rsc->halign = halign;
264
265 pipe_reference_init(&rsc->base.reference, 1);
266 list_inithead(&rsc->list);
267
268 size = setup_miptree(rsc, paddingX, paddingY, msaa_xscale, msaa_yscale);
269
270 uint32_t flags = DRM_ETNA_GEM_CACHE_WC;
271 if (templat->bind & PIPE_BIND_VERTEX_BUFFER)
272 flags |= DRM_ETNA_GEM_FORCE_MMU;
273 struct etna_bo *bo = etna_bo_new(screen->dev, size, flags);
274 if (unlikely(bo == NULL)) {
275 BUG("Problem allocating video memory for resource");
276 goto free_rsc;
277 }
278
279 rsc->bo = bo;
280 rsc->ts_bo = 0; /* TS is only created when first bound to surface */
281
282 if (DBG_ENABLED(ETNA_DBG_ZERO)) {
283 void *map = etna_bo_map(bo);
284 memset(map, 0, size);
285 }
286
287 return &rsc->base;
288
289 free_rsc:
290 FREE(rsc);
291 return NULL;
292 }
293
294 static struct pipe_resource *
295 etna_resource_create(struct pipe_screen *pscreen,
296 const struct pipe_resource *templat)
297 {
298 struct etna_screen *screen = etna_screen(pscreen);
299
300 /* Figure out what tiling to use -- for now, assume that texture cannot be linear.
301 * there is a capability LINEAR_TEXTURE_SUPPORT (supported on gc880 and
302 * gc2000 at least), but not sure how it works.
303 * Buffers always have LINEAR layout.
304 */
305 unsigned layout = ETNA_LAYOUT_LINEAR;
306 if (etna_resource_sampler_only(templat)) {
307 /* The buffer is only used for texturing, so create something
308 * directly compatible with the sampler. Such a buffer can
309 * never be rendered to. */
310 layout = ETNA_LAYOUT_TILED;
311
312 if (util_format_is_compressed(templat->format))
313 layout = ETNA_LAYOUT_LINEAR;
314 } else if (templat->target != PIPE_BUFFER) {
315 bool want_multitiled = false;
316 bool want_supertiled = screen->specs.can_supertile;
317
318 /* When this GPU supports single-buffer rendering, don't ever enable
319 * multi-tiling. This replicates the blob behavior on GC3000.
320 */
321 if (!screen->specs.single_buffer)
322 want_multitiled = screen->specs.pixel_pipes > 1;
323
324 /* Keep single byte blocksized resources as tiled, since we
325 * are unable to use the RS blit to de-tile them. However,
326 * if they're used as a render target or depth/stencil, they
327 * must be multi-tiled for GPUs with multiple pixel pipes.
328 * Ignore depth/stencil here, but it is an error for a render
329 * target.
330 */
331 if (util_format_get_blocksize(templat->format) == 1 &&
332 !(templat->bind & PIPE_BIND_DEPTH_STENCIL)) {
333 assert(!(templat->bind & PIPE_BIND_RENDER_TARGET && want_multitiled));
334 want_multitiled = want_supertiled = false;
335 }
336
337 layout = ETNA_LAYOUT_BIT_TILE;
338 if (want_multitiled)
339 layout |= ETNA_LAYOUT_BIT_MULTI;
340 if (want_supertiled)
341 layout |= ETNA_LAYOUT_BIT_SUPER;
342 }
343
344 if (templat->target == PIPE_TEXTURE_3D)
345 layout = ETNA_LAYOUT_LINEAR;
346
347 return etna_resource_alloc(pscreen, layout, templat);
348 }
349
350 static void
351 etna_resource_changed(struct pipe_screen *pscreen, struct pipe_resource *prsc)
352 {
353 struct etna_resource *res = etna_resource(prsc);
354
355 if (res->external)
356 etna_resource(res->external)->seqno++;
357 else
358 res->seqno++;
359 }
360
361 static void
362 etna_resource_destroy(struct pipe_screen *pscreen, struct pipe_resource *prsc)
363 {
364 struct etna_resource *rsc = etna_resource(prsc);
365
366 if (rsc->bo)
367 etna_bo_del(rsc->bo);
368
369 if (rsc->ts_bo)
370 etna_bo_del(rsc->ts_bo);
371
372 if (rsc->scanout)
373 renderonly_scanout_destroy(rsc->scanout, etna_screen(pscreen)->ro);
374
375 list_delinit(&rsc->list);
376
377 pipe_resource_reference(&rsc->texture, NULL);
378 pipe_resource_reference(&rsc->external, NULL);
379
380 FREE(rsc);
381 }
382
383 static struct pipe_resource *
384 etna_resource_from_handle(struct pipe_screen *pscreen,
385 const struct pipe_resource *tmpl,
386 struct winsys_handle *handle, unsigned usage)
387 {
388 struct etna_screen *screen = etna_screen(pscreen);
389 struct etna_resource *rsc;
390 struct etna_resource_level *level;
391 struct pipe_resource *prsc;
392 struct pipe_resource *ptiled = NULL;
393
394 DBG("target=%d, format=%s, %ux%ux%u, array_size=%u, last_level=%u, "
395 "nr_samples=%u, usage=%u, bind=%x, flags=%x",
396 tmpl->target, util_format_name(tmpl->format), tmpl->width0,
397 tmpl->height0, tmpl->depth0, tmpl->array_size, tmpl->last_level,
398 tmpl->nr_samples, tmpl->usage, tmpl->bind, tmpl->flags);
399
400 rsc = CALLOC_STRUCT(etna_resource);
401 if (!rsc)
402 return NULL;
403
404 level = &rsc->levels[0];
405 prsc = &rsc->base;
406
407 *prsc = *tmpl;
408
409 pipe_reference_init(&prsc->reference, 1);
410 list_inithead(&rsc->list);
411 prsc->screen = pscreen;
412
413 rsc->bo = etna_screen_bo_from_handle(pscreen, handle, &level->stride);
414 if (!rsc->bo)
415 goto fail;
416
417 rsc->seqno = 1;
418 rsc->layout = modifier_to_layout(handle->modifier);
419 rsc->halign = TEXTURE_HALIGN_FOUR;
420
421
422 level->width = tmpl->width0;
423 level->height = tmpl->height0;
424
425 /* Determine padding of the imported resource. */
426 unsigned paddingX = 0, paddingY = 0;
427 etna_layout_multiple(rsc->layout, screen->specs.pixel_pipes,
428 VIV_FEATURE(screen, chipMinorFeatures1, TEXTURE_HALIGN),
429 &paddingX, &paddingY, &rsc->halign);
430
431 etna_adjust_rs_align(screen->specs.pixel_pipes, NULL, &paddingY);
432 level->padded_width = align(level->width, paddingX);
433 level->padded_height = align(level->height, paddingY);
434
435 level->layer_stride = level->stride * util_format_get_nblocksy(prsc->format,
436 level->padded_height);
437
438 /* The DDX must give us a BO which conforms to our padding size.
439 * The stride of the BO must be greater or equal to our padded
440 * stride. The size of the BO must accomodate the padded height. */
441 if (level->stride < util_format_get_stride(tmpl->format, level->padded_width)) {
442 BUG("BO stride is too small for RS engine width padding");
443 goto fail;
444 }
445 if (etna_bo_size(rsc->bo) < level->stride * level->padded_height) {
446 BUG("BO size is too small for RS engine height padding");
447 goto fail;
448 }
449
450 if (rsc->layout == ETNA_LAYOUT_LINEAR) {
451 /*
452 * Both sampler and pixel pipes can't handle linear, create a compatible
453 * base resource, where we can attach the imported buffer as an external
454 * resource.
455 */
456 struct pipe_resource tiled_templat = *tmpl;
457
458 /*
459 * Remove BIND_SCANOUT to avoid recursion, as etna_resource_create uses
460 * this function to import the scanout buffer and get a tiled resource.
461 */
462 tiled_templat.bind &= ~PIPE_BIND_SCANOUT;
463
464 ptiled = etna_resource_create(pscreen, &tiled_templat);
465 if (!ptiled)
466 goto fail;
467
468 etna_resource(ptiled)->external = prsc;
469
470 return ptiled;
471 }
472
473 return prsc;
474
475 fail:
476 etna_resource_destroy(pscreen, prsc);
477 if (ptiled)
478 etna_resource_destroy(pscreen, ptiled);
479
480 return NULL;
481 }
482
483 static boolean
484 etna_resource_get_handle(struct pipe_screen *pscreen,
485 struct pipe_context *pctx,
486 struct pipe_resource *prsc,
487 struct winsys_handle *handle, unsigned usage)
488 {
489 struct etna_resource *rsc = etna_resource(prsc);
490 /* Scanout is always attached to the base resource */
491 struct renderonly_scanout *scanout = rsc->scanout;
492
493 /*
494 * External resources are preferred, so a import->export chain of
495 * render/sampler incompatible buffers yield the same handle.
496 */
497 if (rsc->external)
498 rsc = etna_resource(rsc->external);
499
500 handle->stride = rsc->levels[0].stride;
501 handle->modifier = layout_to_modifier(rsc->layout);
502
503 if (handle->type == DRM_API_HANDLE_TYPE_SHARED) {
504 return etna_bo_get_name(rsc->bo, &handle->handle) == 0;
505 } else if (handle->type == DRM_API_HANDLE_TYPE_KMS) {
506 if (renderonly_get_handle(scanout, handle)) {
507 return TRUE;
508 } else {
509 handle->handle = etna_bo_handle(rsc->bo);
510 return TRUE;
511 }
512 } else if (handle->type == DRM_API_HANDLE_TYPE_FD) {
513 handle->handle = etna_bo_dmabuf(rsc->bo);
514 return TRUE;
515 } else {
516 return FALSE;
517 }
518 }
519
520 void
521 etna_resource_used(struct etna_context *ctx, struct pipe_resource *prsc,
522 enum etna_resource_status status)
523 {
524 struct etna_resource *rsc;
525
526 if (!prsc)
527 return;
528
529 rsc = etna_resource(prsc);
530 rsc->status |= status;
531
532 /* TODO resources can actually be shared across contexts,
533 * so I'm not sure a single list-head will do the trick? */
534 debug_assert((rsc->pending_ctx == ctx) || !rsc->pending_ctx);
535 list_delinit(&rsc->list);
536 list_addtail(&rsc->list, &ctx->used_resources);
537 rsc->pending_ctx = ctx;
538 }
539
540 void
541 etna_resource_screen_init(struct pipe_screen *pscreen)
542 {
543 pscreen->can_create_resource = etna_screen_can_create_resource;
544 pscreen->resource_create = etna_resource_create;
545 pscreen->resource_from_handle = etna_resource_from_handle;
546 pscreen->resource_get_handle = etna_resource_get_handle;
547 pscreen->resource_changed = etna_resource_changed;
548 pscreen->resource_destroy = etna_resource_destroy;
549 }