radeon_cs_space.c revision e88f27b3
1/*
2 * Copyright © 2009 Red Hat Inc.
3 * All Rights Reserved.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining
6 * a copy of this software and associated documentation files (the
7 * "Software"), to deal in the Software without restriction, including
8 * without limitation the rights to use, copy, modify, merge, publish,
9 * distribute, sub license, and/or sell copies of the Software, and to
10 * permit persons to whom the Software is furnished to do so, subject to
11 * the following conditions:
12 *
13 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
14 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
15 * OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
16 * NON-INFRINGEMENT. IN NO EVENT SHALL THE COPYRIGHT HOLDERS, AUTHORS
17 * AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
18 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
20 * USE OR OTHER DEALINGS IN THE SOFTWARE.
21 *
22 * The above copyright notice and this permission notice (including the
23 * next paragraph) shall be included in all copies or substantial portions
24 * of the Software.
25 */
26/*
27 */
28#include <assert.h>
29#include <errno.h>
30#include <stdlib.h>
31#include "radeon_cs.h"
32#include "radeon_bo_int.h"
33#include "radeon_cs_int.h"
34
35struct rad_sizes {
36    int32_t op_read;
37    int32_t op_gart_write;
38    int32_t op_vram_write;
39};
40
41static inline int radeon_cs_setup_bo(struct radeon_cs_space_check *sc, struct rad_sizes *sizes)
42{
43    uint32_t read_domains, write_domain;
44    struct radeon_bo_int *bo;
45
46    bo = sc->bo;
47    sc->new_accounted = 0;
48    read_domains = sc->read_domains;
49    write_domain = sc->write_domain;
50
51    /* legacy needs a static check */
52    if (radeon_bo_is_static((struct radeon_bo *)sc->bo)) {
53        bo->space_accounted = sc->new_accounted = (read_domains << 16) | write_domain;
54        return 0;
55    }
56
57    /* already accounted this bo */
58    if (write_domain && (write_domain == bo->space_accounted)) {
59        sc->new_accounted = bo->space_accounted;
60        return 0;
61    }
62    if (read_domains && ((read_domains << 16) == bo->space_accounted)) {
63        sc->new_accounted = bo->space_accounted;
64        return 0;
65    }
66
67    if (bo->space_accounted == 0) {
68        if (write_domain) {
69            if (write_domain == RADEON_GEM_DOMAIN_VRAM)
70                sizes->op_vram_write += bo->size;
71            else if (write_domain == RADEON_GEM_DOMAIN_GTT)
72                sizes->op_gart_write += bo->size;
73            sc->new_accounted = write_domain;
74        } else {
75            sizes->op_read += bo->size;
76            sc->new_accounted = read_domains << 16;
77        }
78    } else {
79        uint16_t old_read, old_write;
80
81        old_read = bo->space_accounted >> 16;
82        old_write = bo->space_accounted & 0xffff;
83
84        if (write_domain && (old_read & write_domain)) {
85            sc->new_accounted = write_domain;
86            /* moving from read to a write domain */
87            if (write_domain == RADEON_GEM_DOMAIN_VRAM) {
88                sizes->op_read -= bo->size;
89                sizes->op_vram_write += bo->size;
90            } else if (write_domain == RADEON_GEM_DOMAIN_GTT) {
91                sizes->op_read -= bo->size;
92                sizes->op_gart_write += bo->size;
93            }
94        } else if (read_domains & old_write) {
95            sc->new_accounted = bo->space_accounted & 0xffff;
96        } else {
97            /* rewrite the domains */
98            if (write_domain != old_write)
99                fprintf(stderr,"WRITE DOMAIN RELOC FAILURE 0x%x %d %d\n", bo->handle, write_domain, old_write);
100            if (read_domains != old_read)
101               fprintf(stderr,"READ DOMAIN RELOC FAILURE 0x%x %d %d\n", bo->handle, read_domains, old_read);
102            return RADEON_CS_SPACE_FLUSH;
103        }
104    }
105    return 0;
106}
107
108static int radeon_cs_do_space_check(struct radeon_cs_int *cs, struct radeon_cs_space_check *new_tmp)
109{
110    struct radeon_cs_manager *csm = cs->csm;
111    int i;
112    struct radeon_bo_int *bo;
113    struct rad_sizes sizes;
114    int ret;
115
116    /* check the totals for this operation */
117
118    if (cs->bo_count == 0 && !new_tmp)
119        return 0;
120
121    memset(&sizes, 0, sizeof(struct rad_sizes));
122
123    /* prepare */
124    for (i = 0; i < cs->bo_count; i++) {
125        ret = radeon_cs_setup_bo(&cs->bos[i], &sizes);
126        if (ret)
127            return ret;
128    }
129
130    if (new_tmp) {
131        ret = radeon_cs_setup_bo(new_tmp, &sizes);
132        if (ret)
133            return ret;
134    }
135
136    if (sizes.op_read < 0)
137        sizes.op_read = 0;
138
139    /* check sizes - operation first */
140    if ((sizes.op_read + sizes.op_gart_write > csm->gart_limit) ||
141        (sizes.op_vram_write > csm->vram_limit)) {
142        return RADEON_CS_SPACE_OP_TO_BIG;
143    }
144
145    if (((csm->vram_write_used + sizes.op_vram_write) > csm->vram_limit) ||
146        ((csm->read_used + csm->gart_write_used + sizes.op_gart_write + sizes.op_read) > csm->gart_limit)) {
147        return RADEON_CS_SPACE_FLUSH;
148    }
149
150    csm->gart_write_used += sizes.op_gart_write;
151    csm->vram_write_used += sizes.op_vram_write;
152    csm->read_used += sizes.op_read;
153    /* commit */
154    for (i = 0; i < cs->bo_count; i++) {
155        bo = cs->bos[i].bo;
156        bo->space_accounted = cs->bos[i].new_accounted;
157    }
158    if (new_tmp)
159        new_tmp->bo->space_accounted = new_tmp->new_accounted;
160
161    return RADEON_CS_SPACE_OK;
162}
163
164void radeon_cs_space_add_persistent_bo(struct radeon_cs *cs, struct radeon_bo *bo, uint32_t read_domains, uint32_t write_domain)
165{
166    struct radeon_cs_int *csi = (struct radeon_cs_int *)cs;
167    struct radeon_bo_int *boi = (struct radeon_bo_int *)bo;
168    int i;
169    for (i = 0; i < csi->bo_count; i++) {
170        if (csi->bos[i].bo == boi &&
171            csi->bos[i].read_domains == read_domains &&
172            csi->bos[i].write_domain == write_domain)
173            return;
174    }
175    radeon_bo_ref(bo);
176    i = csi->bo_count;
177    csi->bos[i].bo = boi;
178    csi->bos[i].read_domains = read_domains;
179    csi->bos[i].write_domain = write_domain;
180    csi->bos[i].new_accounted = 0;
181    csi->bo_count++;
182
183    assert(csi->bo_count < MAX_SPACE_BOS);
184}
185
186static int radeon_cs_check_space_internal(struct radeon_cs_int *cs,
187                      struct radeon_cs_space_check *tmp_bo)
188{
189    int ret;
190    int flushed = 0;
191
192again:
193    ret = radeon_cs_do_space_check(cs, tmp_bo);
194    if (ret == RADEON_CS_SPACE_OP_TO_BIG)
195        return -1;
196    if (ret == RADEON_CS_SPACE_FLUSH) {
197        (*cs->space_flush_fn)(cs->space_flush_data);
198        if (flushed)
199            return -1;
200        flushed = 1;
201        goto again;
202    }
203    return 0;
204}
205
206int radeon_cs_space_check_with_bo(struct radeon_cs *cs,
207                  struct radeon_bo *bo,
208                  uint32_t read_domains, uint32_t write_domain)
209{
210    struct radeon_cs_int *csi = (struct radeon_cs_int *)cs;
211    struct radeon_bo_int *boi = (struct radeon_bo_int *)bo;
212    struct radeon_cs_space_check temp_bo;
213
214    int ret = 0;
215
216    if (bo) {
217        temp_bo.bo = boi;
218        temp_bo.read_domains = read_domains;
219        temp_bo.write_domain = write_domain;
220        temp_bo.new_accounted = 0;
221    }
222
223    ret = radeon_cs_check_space_internal(csi, bo ? &temp_bo : NULL);
224    return ret;
225}
226
227int radeon_cs_space_check(struct radeon_cs *cs)
228{
229    struct radeon_cs_int *csi = (struct radeon_cs_int *)cs;
230    return radeon_cs_check_space_internal(csi, NULL);
231}
232
233void radeon_cs_space_reset_bos(struct radeon_cs *cs)
234{
235    struct radeon_cs_int *csi = (struct radeon_cs_int *)cs;
236    int i;
237    for (i = 0; i < csi->bo_count; i++) {
238        radeon_bo_unref((struct radeon_bo *)csi->bos[i].bo);
239        csi->bos[i].bo = NULL;
240        csi->bos[i].read_domains = 0;
241        csi->bos[i].write_domain = 0;
242        csi->bos[i].new_accounted = 0;
243    }
244    csi->bo_count = 0;
245}
246