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