1 /*
2  * Copyright © 2017 Intel Corporation
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 shall be included
12  * in all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
15  * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
18  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
19  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
20  * DEALINGS IN THE SOFTWARE.
21  */
22 
23 #include <stdio.h>
24 #include <time.h>
25 #include "pipe/p_defines.h"
26 #include "pipe/p_state.h"
27 #include "util/ralloc.h"
28 #include "util/u_inlines.h"
29 #include "util/format/u_format.h"
30 #include "util/u_upload_mgr.h"
31 #include "drm-uapi/i915_drm.h"
32 #include "crocus_context.h"
33 #include "crocus_resource.h"
34 #include "crocus_screen.h"
35 #include "common/intel_defines.h"
36 #include "common/intel_sample_positions.h"
37 
38 /**
39  * The pipe->set_debug_callback() driver hook.
40  */
41 static void
crocus_set_debug_callback(struct pipe_context * ctx,const struct pipe_debug_callback * cb)42 crocus_set_debug_callback(struct pipe_context *ctx,
43                           const struct pipe_debug_callback *cb)
44 {
45    struct crocus_context *ice = (struct crocus_context *)ctx;
46 
47    if (cb)
48       ice->dbg = *cb;
49    else
50       memset(&ice->dbg, 0, sizeof(ice->dbg));
51 }
52 
53 static bool
crocus_init_identifier_bo(struct crocus_context * ice)54 crocus_init_identifier_bo(struct crocus_context *ice)
55 {
56    void *bo_map;
57 
58    bo_map = crocus_bo_map(NULL, ice->workaround_bo, MAP_READ | MAP_WRITE);
59    if (!bo_map)
60       return false;
61 
62    ice->workaround_bo->kflags |= EXEC_OBJECT_CAPTURE;
63    ice->workaround_offset = ALIGN(
64       intel_debug_write_identifiers(bo_map, 4096, "Crocus") + 8, 8);
65 
66    crocus_bo_unmap(ice->workaround_bo);
67 
68    return true;
69 }
70 
71 /**
72  * Called from the batch module when it detects a GPU hang.
73  *
74  * In this case, we've lost our GEM context, and can't rely on any existing
75  * state on the GPU.  We must mark everything dirty and wipe away any saved
76  * assumptions about the last known state of the GPU.
77  */
78 void
crocus_lost_context_state(struct crocus_batch * batch)79 crocus_lost_context_state(struct crocus_batch *batch)
80 {
81    /* The batch module doesn't have an crocus_context, because we want to
82     * avoid introducing lots of layering violations.  Unfortunately, here
83     * we do need to inform the context of batch catastrophe.  We know the
84     * batch is one of our context's, so hackily claw our way back.
85     */
86    struct crocus_context *ice = batch->ice;
87    struct crocus_screen *screen = batch->screen;
88    if (batch->name == CROCUS_BATCH_RENDER) {
89       screen->vtbl.init_render_context(batch);
90    } else if (batch->name == CROCUS_BATCH_COMPUTE) {
91       screen->vtbl.init_compute_context(batch);
92    } else {
93       unreachable("unhandled batch reset");
94    }
95 
96    ice->state.dirty = ~0ull;
97    memset(ice->state.last_grid, 0, sizeof(ice->state.last_grid));
98    batch->state_base_address_emitted = false;
99    screen->vtbl.lost_genx_state(ice, batch);
100 }
101 
102 static enum pipe_reset_status
crocus_get_device_reset_status(struct pipe_context * ctx)103 crocus_get_device_reset_status(struct pipe_context *ctx)
104 {
105    struct crocus_context *ice = (struct crocus_context *)ctx;
106 
107    enum pipe_reset_status worst_reset = PIPE_NO_RESET;
108 
109    /* Check the reset status of each batch's hardware context, and take the
110     * worst status (if one was guilty, proclaim guilt).
111     */
112    for (int i = 0; i < ice->batch_count; i++) {
113       /* This will also recreate the hardware contexts as necessary, so any
114        * future queries will show no resets.  We only want to report once.
115        */
116       enum pipe_reset_status batch_reset =
117          crocus_batch_check_for_reset(&ice->batches[i]);
118 
119       if (batch_reset == PIPE_NO_RESET)
120          continue;
121 
122       if (worst_reset == PIPE_NO_RESET) {
123          worst_reset = batch_reset;
124       } else {
125          /* GUILTY < INNOCENT < UNKNOWN */
126          worst_reset = MIN2(worst_reset, batch_reset);
127       }
128    }
129 
130    if (worst_reset != PIPE_NO_RESET && ice->reset.reset)
131       ice->reset.reset(ice->reset.data, worst_reset);
132 
133    return worst_reset;
134 }
135 
136 static void
crocus_set_device_reset_callback(struct pipe_context * ctx,const struct pipe_device_reset_callback * cb)137 crocus_set_device_reset_callback(struct pipe_context *ctx,
138                                  const struct pipe_device_reset_callback *cb)
139 {
140    struct crocus_context *ice = (struct crocus_context *)ctx;
141 
142    if (cb)
143       ice->reset = *cb;
144    else
145       memset(&ice->reset, 0, sizeof(ice->reset));
146 }
147 
148 static void
crocus_get_sample_position(struct pipe_context * ctx,unsigned sample_count,unsigned sample_index,float * out_value)149 crocus_get_sample_position(struct pipe_context *ctx,
150                            unsigned sample_count,
151                            unsigned sample_index,
152                            float *out_value)
153 {
154    union {
155       struct {
156          float x[16];
157          float y[16];
158       } a;
159       struct {
160          float  _0XOffset,  _1XOffset,  _2XOffset,  _3XOffset,
161                 _4XOffset,  _5XOffset,  _6XOffset,  _7XOffset,
162                 _8XOffset,  _9XOffset, _10XOffset, _11XOffset,
163                _12XOffset, _13XOffset, _14XOffset, _15XOffset;
164          float  _0YOffset,  _1YOffset,  _2YOffset,  _3YOffset,
165                 _4YOffset,  _5YOffset,  _6YOffset,  _7YOffset,
166                 _8YOffset,  _9YOffset, _10YOffset, _11YOffset,
167                _12YOffset, _13YOffset, _14YOffset, _15YOffset;
168       } v;
169    } u;
170    switch (sample_count) {
171    case 1:  INTEL_SAMPLE_POS_1X(u.v._);  break;
172    case 2:  INTEL_SAMPLE_POS_2X(u.v._);  break;
173    case 4:  INTEL_SAMPLE_POS_4X(u.v._);  break;
174    case 8:  INTEL_SAMPLE_POS_8X(u.v._);  break;
175    case 16: INTEL_SAMPLE_POS_16X(u.v._); break;
176    default: unreachable("invalid sample count");
177    }
178 
179    out_value[0] = u.a.x[sample_index];
180    out_value[1] = u.a.y[sample_index];
181 }
182 
183 /**
184  * Destroy a context, freeing any associated memory.
185  */
186 static void
crocus_destroy_context(struct pipe_context * ctx)187 crocus_destroy_context(struct pipe_context *ctx)
188 {
189    struct crocus_context *ice = (struct crocus_context *)ctx;
190    struct crocus_screen *screen = (struct crocus_screen *)ctx->screen;
191    if (ctx->stream_uploader)
192       u_upload_destroy(ctx->stream_uploader);
193 
194    if (ice->blitter)
195       util_blitter_destroy(ice->blitter);
196    screen->vtbl.destroy_state(ice);
197    crocus_destroy_program_cache(ice);
198    u_upload_destroy(ice->query_buffer_uploader);
199 
200    crocus_bo_unreference(ice->workaround_bo);
201 
202    slab_destroy_child(&ice->transfer_pool);
203    slab_destroy_child(&ice->transfer_pool_unsync);
204 
205    crocus_batch_free(&ice->batches[CROCUS_BATCH_RENDER]);
206    if (ice->batches[CROCUS_BATCH_COMPUTE].ice)
207       crocus_batch_free(&ice->batches[CROCUS_BATCH_COMPUTE]);
208 
209    ralloc_free(ice);
210 }
211 
212 #define genX_call(devinfo, func, ...)                   \
213    switch ((devinfo)->verx10) {                         \
214    case 80:                                             \
215       gfx8_##func(__VA_ARGS__);                         \
216       break;                                            \
217    case 75:                                             \
218       gfx75_##func(__VA_ARGS__);                        \
219       break;                                            \
220    case 70:                                             \
221       gfx7_##func(__VA_ARGS__);                         \
222       break;                                            \
223    case 60:                                             \
224       gfx6_##func(__VA_ARGS__);                         \
225       break;                                            \
226    case 50:                                             \
227       gfx5_##func(__VA_ARGS__);                         \
228       break;                                            \
229    case 45:                                             \
230       gfx45_##func(__VA_ARGS__);                        \
231       break;                                            \
232    case 40:                                             \
233       gfx4_##func(__VA_ARGS__);                         \
234       break;                                            \
235    default:                                             \
236       unreachable("Unknown hardware generation");       \
237    }
238 
239 /**
240  * Create a context.
241  *
242  * This is where each context begins.
243  */
244 struct pipe_context *
crocus_create_context(struct pipe_screen * pscreen,void * priv,unsigned flags)245 crocus_create_context(struct pipe_screen *pscreen, void *priv, unsigned flags)
246 {
247    struct crocus_screen *screen = (struct crocus_screen*)pscreen;
248    const struct intel_device_info *devinfo = &screen->devinfo;
249    struct crocus_context *ice = rzalloc(NULL, struct crocus_context);
250 
251    if (!ice)
252       return NULL;
253 
254    struct pipe_context *ctx = &ice->ctx;
255 
256    ctx->screen = pscreen;
257    ctx->priv = priv;
258 
259    ctx->stream_uploader = u_upload_create_default(ctx);
260    if (!ctx->stream_uploader) {
261       free(ctx);
262       return NULL;
263    }
264    ctx->const_uploader = ctx->stream_uploader;
265 
266    ctx->destroy = crocus_destroy_context;
267    ctx->set_debug_callback = crocus_set_debug_callback;
268    ctx->set_device_reset_callback = crocus_set_device_reset_callback;
269    ctx->get_device_reset_status = crocus_get_device_reset_status;
270    ctx->get_sample_position = crocus_get_sample_position;
271 
272    ice->shaders.urb_size = devinfo->urb.size;
273 
274    crocus_init_context_fence_functions(ctx);
275    crocus_init_blit_functions(ctx);
276    crocus_init_clear_functions(ctx);
277    crocus_init_program_functions(ctx);
278    crocus_init_resource_functions(ctx);
279    crocus_init_flush_functions(ctx);
280 
281    crocus_init_program_cache(ice);
282 
283    slab_create_child(&ice->transfer_pool, &screen->transfer_pool);
284    slab_create_child(&ice->transfer_pool_unsync, &screen->transfer_pool);
285 
286    ice->query_buffer_uploader =
287       u_upload_create(ctx, 4096, PIPE_BIND_CUSTOM, PIPE_USAGE_STAGING,
288                       0);
289 
290    ice->workaround_bo =
291       crocus_bo_alloc(screen->bufmgr, "workaround", 4096);
292    if (!ice->workaround_bo)
293       return NULL;
294 
295    if (!crocus_init_identifier_bo(ice))
296       return NULL;
297 
298    genX_call(devinfo, crocus_init_state, ice);
299    genX_call(devinfo, crocus_init_blorp, ice);
300    genX_call(devinfo, crocus_init_query, ice);
301 
302    ice->blitter = util_blitter_create(&ice->ctx);
303    if (ice->blitter == NULL)
304       return NULL;
305    int priority = 0;
306    if (flags & PIPE_CONTEXT_HIGH_PRIORITY)
307       priority = INTEL_CONTEXT_HIGH_PRIORITY;
308    if (flags & PIPE_CONTEXT_LOW_PRIORITY)
309       priority = INTEL_CONTEXT_LOW_PRIORITY;
310 
311    ice->batch_count = devinfo->ver >= 7 ? CROCUS_BATCH_COUNT : 1;
312    for (int i = 0; i < ice->batch_count; i++) {
313       crocus_init_batch(ice, (enum crocus_batch_name) i,
314                         priority);
315    }
316 
317    ice->urb.size = devinfo->urb.size;
318    screen->vtbl.init_render_context(&ice->batches[CROCUS_BATCH_RENDER]);
319    if (ice->batch_count > 1)
320       screen->vtbl.init_compute_context(&ice->batches[CROCUS_BATCH_COMPUTE]);
321 
322    if (!(flags & PIPE_CONTEXT_PREFER_THREADED))
323      return ctx;
324 
325    return threaded_context_create(ctx, &screen->transfer_pool,
326                                   crocus_replace_buffer_storage,
327                                   NULL, /* TODO: asynchronous flushes? */
328                                   &ice->thrctx);
329 }
330 
331 bool
crocus_sw_check_cond_render(struct crocus_context * ice)332 crocus_sw_check_cond_render(struct crocus_context *ice)
333 {
334    struct crocus_query *q = ice->condition.query;
335    union pipe_query_result result;
336 
337    bool wait = ice->condition.mode == PIPE_RENDER_COND_WAIT ||
338       ice->condition.mode == PIPE_RENDER_COND_BY_REGION_WAIT;
339    if (!q)
340       return true;
341 
342    bool ret = ice->ctx.get_query_result(&ice->ctx, (void *)q, wait, &result);
343    if (!ret)
344       return true;
345 
346    return ice->condition.condition ? result.u64 == 0 : result.u64 != 0;
347 }
348