1 /* 2 * Copyright 2014 Advanced Micro Devices, Inc. 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 in 12 * all copies or substantial portions of the Software. 13 * 14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 20 * OTHER DEALINGS IN THE SOFTWARE. 21 * 22 */ 23 #include <linux/firmware.h> 24 #include "drmP.h" 25 #include "amdgpu.h" 26 #include "gmc_v6_0.h" 27 #include "amdgpu_ucode.h" 28 29 #include "bif/bif_3_0_d.h" 30 #include "bif/bif_3_0_sh_mask.h" 31 #include "oss/oss_1_0_d.h" 32 #include "oss/oss_1_0_sh_mask.h" 33 #include "gmc/gmc_6_0_d.h" 34 #include "gmc/gmc_6_0_sh_mask.h" 35 #include "dce/dce_6_0_d.h" 36 #include "dce/dce_6_0_sh_mask.h" 37 #include "si_enums.h" 38 39 static void gmc_v6_0_set_gart_funcs(struct amdgpu_device *adev); 40 static void gmc_v6_0_set_irq_funcs(struct amdgpu_device *adev); 41 static int gmc_v6_0_wait_for_idle(void *handle); 42 43 MODULE_FIRMWARE("radeon/tahiti_mc.bin"); 44 MODULE_FIRMWARE("radeon/pitcairn_mc.bin"); 45 MODULE_FIRMWARE("radeon/verde_mc.bin"); 46 MODULE_FIRMWARE("radeon/oland_mc.bin"); 47 MODULE_FIRMWARE("radeon/si58_mc.bin"); 48 49 #define MC_SEQ_MISC0__MT__MASK 0xf0000000 50 #define MC_SEQ_MISC0__MT__GDDR1 0x10000000 51 #define MC_SEQ_MISC0__MT__DDR2 0x20000000 52 #define MC_SEQ_MISC0__MT__GDDR3 0x30000000 53 #define MC_SEQ_MISC0__MT__GDDR4 0x40000000 54 #define MC_SEQ_MISC0__MT__GDDR5 0x50000000 55 #define MC_SEQ_MISC0__MT__HBM 0x60000000 56 #define MC_SEQ_MISC0__MT__DDR3 0xB0000000 57 58 59 static const u32 crtc_offsets[6] = 60 { 61 SI_CRTC0_REGISTER_OFFSET, 62 SI_CRTC1_REGISTER_OFFSET, 63 SI_CRTC2_REGISTER_OFFSET, 64 SI_CRTC3_REGISTER_OFFSET, 65 SI_CRTC4_REGISTER_OFFSET, 66 SI_CRTC5_REGISTER_OFFSET 67 }; 68 69 static void gmc_v6_0_mc_stop(struct amdgpu_device *adev, 70 struct amdgpu_mode_mc_save *save) 71 { 72 u32 blackout; 73 74 if (adev->mode_info.num_crtc) 75 amdgpu_display_stop_mc_access(adev, save); 76 77 gmc_v6_0_wait_for_idle((void *)adev); 78 79 blackout = RREG32(mmMC_SHARED_BLACKOUT_CNTL); 80 if (REG_GET_FIELD(blackout, MC_SHARED_BLACKOUT_CNTL, BLACKOUT_MODE) != 1) { 81 /* Block CPU access */ 82 WREG32(mmBIF_FB_EN, 0); 83 /* blackout the MC */ 84 blackout = REG_SET_FIELD(blackout, 85 MC_SHARED_BLACKOUT_CNTL, BLACKOUT_MODE, 0); 86 WREG32(mmMC_SHARED_BLACKOUT_CNTL, blackout | 1); 87 } 88 /* wait for the MC to settle */ 89 udelay(100); 90 91 } 92 93 static void gmc_v6_0_mc_resume(struct amdgpu_device *adev, 94 struct amdgpu_mode_mc_save *save) 95 { 96 u32 tmp; 97 98 /* unblackout the MC */ 99 tmp = RREG32(mmMC_SHARED_BLACKOUT_CNTL); 100 tmp = REG_SET_FIELD(tmp, MC_SHARED_BLACKOUT_CNTL, BLACKOUT_MODE, 0); 101 WREG32(mmMC_SHARED_BLACKOUT_CNTL, tmp); 102 /* allow CPU access */ 103 tmp = REG_SET_FIELD(0, BIF_FB_EN, FB_READ_EN, 1); 104 tmp = REG_SET_FIELD(tmp, BIF_FB_EN, FB_WRITE_EN, 1); 105 WREG32(mmBIF_FB_EN, tmp); 106 107 if (adev->mode_info.num_crtc) 108 amdgpu_display_resume_mc_access(adev, save); 109 110 } 111 112 static int gmc_v6_0_init_microcode(struct amdgpu_device *adev) 113 { 114 const char *chip_name; 115 char fw_name[30]; 116 int err; 117 bool is_58_fw = false; 118 119 DRM_DEBUG("\n"); 120 121 switch (adev->asic_type) { 122 case CHIP_TAHITI: 123 chip_name = "tahiti"; 124 break; 125 case CHIP_PITCAIRN: 126 chip_name = "pitcairn"; 127 break; 128 case CHIP_VERDE: 129 chip_name = "verde"; 130 break; 131 case CHIP_OLAND: 132 chip_name = "oland"; 133 break; 134 case CHIP_HAINAN: 135 chip_name = "hainan"; 136 break; 137 default: BUG(); 138 } 139 140 /* this memory configuration requires special firmware */ 141 if (((RREG32(mmMC_SEQ_MISC0) & 0xff000000) >> 24) == 0x58) 142 is_58_fw = true; 143 144 if (is_58_fw) 145 snprintf(fw_name, sizeof(fw_name), "radeon/si58_mc.bin"); 146 else 147 snprintf(fw_name, sizeof(fw_name), "radeon/%s_mc.bin", chip_name); 148 err = request_firmware(&adev->mc.fw, fw_name, adev->dev); 149 if (err) 150 goto out; 151 152 err = amdgpu_ucode_validate(adev->mc.fw); 153 154 out: 155 if (err) { 156 dev_err(adev->dev, 157 "si_mc: Failed to load firmware \"%s\"\n", 158 fw_name); 159 release_firmware(adev->mc.fw); 160 adev->mc.fw = NULL; 161 } 162 return err; 163 } 164 165 static int gmc_v6_0_mc_load_microcode(struct amdgpu_device *adev) 166 { 167 const __le32 *new_fw_data = NULL; 168 u32 running; 169 const __le32 *new_io_mc_regs = NULL; 170 int i, regs_size, ucode_size; 171 const struct mc_firmware_header_v1_0 *hdr; 172 173 if (!adev->mc.fw) 174 return -EINVAL; 175 176 hdr = (const struct mc_firmware_header_v1_0 *)adev->mc.fw->data; 177 178 amdgpu_ucode_print_mc_hdr(&hdr->header); 179 180 adev->mc.fw_version = le32_to_cpu(hdr->header.ucode_version); 181 regs_size = le32_to_cpu(hdr->io_debug_size_bytes) / (4 * 2); 182 new_io_mc_regs = (const __le32 *) 183 (adev->mc.fw->data + le32_to_cpu(hdr->io_debug_array_offset_bytes)); 184 ucode_size = le32_to_cpu(hdr->header.ucode_size_bytes) / 4; 185 new_fw_data = (const __le32 *) 186 (adev->mc.fw->data + le32_to_cpu(hdr->header.ucode_array_offset_bytes)); 187 188 running = RREG32(mmMC_SEQ_SUP_CNTL) & MC_SEQ_SUP_CNTL__RUN_MASK; 189 190 if (running == 0) { 191 192 /* reset the engine and set to writable */ 193 WREG32(mmMC_SEQ_SUP_CNTL, 0x00000008); 194 WREG32(mmMC_SEQ_SUP_CNTL, 0x00000010); 195 196 /* load mc io regs */ 197 for (i = 0; i < regs_size; i++) { 198 WREG32(mmMC_SEQ_IO_DEBUG_INDEX, le32_to_cpup(new_io_mc_regs++)); 199 WREG32(mmMC_SEQ_IO_DEBUG_DATA, le32_to_cpup(new_io_mc_regs++)); 200 } 201 /* load the MC ucode */ 202 for (i = 0; i < ucode_size; i++) { 203 WREG32(mmMC_SEQ_SUP_PGM, le32_to_cpup(new_fw_data++)); 204 } 205 206 /* put the engine back into the active state */ 207 WREG32(mmMC_SEQ_SUP_CNTL, 0x00000008); 208 WREG32(mmMC_SEQ_SUP_CNTL, 0x00000004); 209 WREG32(mmMC_SEQ_SUP_CNTL, 0x00000001); 210 211 /* wait for training to complete */ 212 for (i = 0; i < adev->usec_timeout; i++) { 213 if (RREG32(mmMC_SEQ_TRAIN_WAKEUP_CNTL) & MC_SEQ_TRAIN_WAKEUP_CNTL__TRAIN_DONE_D0_MASK) 214 break; 215 udelay(1); 216 } 217 for (i = 0; i < adev->usec_timeout; i++) { 218 if (RREG32(mmMC_SEQ_TRAIN_WAKEUP_CNTL) & MC_SEQ_TRAIN_WAKEUP_CNTL__TRAIN_DONE_D1_MASK) 219 break; 220 udelay(1); 221 } 222 223 } 224 225 return 0; 226 } 227 228 static void gmc_v6_0_vram_gtt_location(struct amdgpu_device *adev, 229 struct amdgpu_mc *mc) 230 { 231 if (mc->mc_vram_size > 0xFFC0000000ULL) { 232 dev_warn(adev->dev, "limiting VRAM\n"); 233 mc->real_vram_size = 0xFFC0000000ULL; 234 mc->mc_vram_size = 0xFFC0000000ULL; 235 } 236 amdgpu_vram_location(adev, &adev->mc, 0); 237 adev->mc.gtt_base_align = 0; 238 amdgpu_gtt_location(adev, mc); 239 } 240 241 static void gmc_v6_0_mc_program(struct amdgpu_device *adev) 242 { 243 struct amdgpu_mode_mc_save save; 244 u32 tmp; 245 int i, j; 246 247 /* Initialize HDP */ 248 for (i = 0, j = 0; i < 32; i++, j += 0x6) { 249 WREG32((0xb05 + j), 0x00000000); 250 WREG32((0xb06 + j), 0x00000000); 251 WREG32((0xb07 + j), 0x00000000); 252 WREG32((0xb08 + j), 0x00000000); 253 WREG32((0xb09 + j), 0x00000000); 254 } 255 WREG32(mmHDP_REG_COHERENCY_FLUSH_CNTL, 0); 256 257 if (adev->mode_info.num_crtc) 258 amdgpu_display_set_vga_render_state(adev, false); 259 260 gmc_v6_0_mc_stop(adev, &save); 261 262 if (gmc_v6_0_wait_for_idle((void *)adev)) { 263 dev_warn(adev->dev, "Wait for MC idle timedout !\n"); 264 } 265 266 WREG32(mmVGA_HDP_CONTROL, VGA_HDP_CONTROL__VGA_MEMORY_DISABLE_MASK); 267 /* Update configuration */ 268 WREG32(mmMC_VM_SYSTEM_APERTURE_LOW_ADDR, 269 adev->mc.vram_start >> 12); 270 WREG32(mmMC_VM_SYSTEM_APERTURE_HIGH_ADDR, 271 adev->mc.vram_end >> 12); 272 WREG32(mmMC_VM_SYSTEM_APERTURE_DEFAULT_ADDR, 273 adev->vram_scratch.gpu_addr >> 12); 274 tmp = ((adev->mc.vram_end >> 24) & 0xFFFF) << 16; 275 tmp |= ((adev->mc.vram_start >> 24) & 0xFFFF); 276 WREG32(mmMC_VM_FB_LOCATION, tmp); 277 /* XXX double check these! */ 278 WREG32(mmHDP_NONSURFACE_BASE, (adev->mc.vram_start >> 8)); 279 WREG32(mmHDP_NONSURFACE_INFO, (2 << 7) | (1 << 30)); 280 WREG32(mmHDP_NONSURFACE_SIZE, 0x3FFFFFFF); 281 WREG32(mmMC_VM_AGP_BASE, 0); 282 WREG32(mmMC_VM_AGP_TOP, 0x0FFFFFFF); 283 WREG32(mmMC_VM_AGP_BOT, 0x0FFFFFFF); 284 285 if (gmc_v6_0_wait_for_idle((void *)adev)) { 286 dev_warn(adev->dev, "Wait for MC idle timedout !\n"); 287 } 288 gmc_v6_0_mc_resume(adev, &save); 289 } 290 291 static int gmc_v6_0_mc_init(struct amdgpu_device *adev) 292 { 293 294 u32 tmp; 295 int chansize, numchan; 296 297 tmp = RREG32(mmMC_ARB_RAMCFG); 298 if (tmp & (1 << 11)) { 299 chansize = 16; 300 } else if (tmp & MC_ARB_RAMCFG__CHANSIZE_MASK) { 301 chansize = 64; 302 } else { 303 chansize = 32; 304 } 305 tmp = RREG32(mmMC_SHARED_CHMAP); 306 switch ((tmp & MC_SHARED_CHMAP__NOOFCHAN_MASK) >> MC_SHARED_CHMAP__NOOFCHAN__SHIFT) { 307 case 0: 308 default: 309 numchan = 1; 310 break; 311 case 1: 312 numchan = 2; 313 break; 314 case 2: 315 numchan = 4; 316 break; 317 case 3: 318 numchan = 8; 319 break; 320 case 4: 321 numchan = 3; 322 break; 323 case 5: 324 numchan = 6; 325 break; 326 case 6: 327 numchan = 10; 328 break; 329 case 7: 330 numchan = 12; 331 break; 332 case 8: 333 numchan = 16; 334 break; 335 } 336 adev->mc.vram_width = numchan * chansize; 337 /* Could aper size report 0 ? */ 338 adev->mc.aper_base = pci_resource_start(adev->pdev, 0); 339 adev->mc.aper_size = pci_resource_len(adev->pdev, 0); 340 /* size in MB on si */ 341 adev->mc.mc_vram_size = RREG32(mmCONFIG_MEMSIZE) * 1024ULL * 1024ULL; 342 adev->mc.real_vram_size = RREG32(mmCONFIG_MEMSIZE) * 1024ULL * 1024ULL; 343 adev->mc.visible_vram_size = adev->mc.aper_size; 344 345 /* unless the user had overridden it, set the gart 346 * size equal to the 1024 or vram, whichever is larger. 347 */ 348 if (amdgpu_gart_size == -1) 349 adev->mc.gtt_size = max((1024ULL << 20), adev->mc.mc_vram_size); 350 else 351 adev->mc.gtt_size = (uint64_t)amdgpu_gart_size << 20; 352 353 gmc_v6_0_vram_gtt_location(adev, &adev->mc); 354 355 return 0; 356 } 357 358 static void gmc_v6_0_gart_flush_gpu_tlb(struct amdgpu_device *adev, 359 uint32_t vmid) 360 { 361 WREG32(mmHDP_MEM_COHERENCY_FLUSH_CNTL, 0); 362 363 WREG32(mmVM_INVALIDATE_REQUEST, 1 << vmid); 364 } 365 366 static int gmc_v6_0_gart_set_pte_pde(struct amdgpu_device *adev, 367 void *cpu_pt_addr, 368 uint32_t gpu_page_idx, 369 uint64_t addr, 370 uint64_t flags) 371 { 372 void __iomem *ptr = (void *)cpu_pt_addr; 373 uint64_t value; 374 375 value = addr & 0xFFFFFFFFFFFFF000ULL; 376 value |= flags; 377 writeq(value, ptr + (gpu_page_idx * 8)); 378 379 return 0; 380 } 381 382 static uint64_t gmc_v6_0_get_vm_pte_flags(struct amdgpu_device *adev, 383 uint32_t flags) 384 { 385 uint64_t pte_flag = 0; 386 387 if (flags & AMDGPU_VM_PAGE_READABLE) 388 pte_flag |= AMDGPU_PTE_READABLE; 389 if (flags & AMDGPU_VM_PAGE_WRITEABLE) 390 pte_flag |= AMDGPU_PTE_WRITEABLE; 391 if (flags & AMDGPU_VM_PAGE_PRT) 392 pte_flag |= AMDGPU_PTE_PRT; 393 394 return pte_flag; 395 } 396 397 static void gmc_v6_0_set_fault_enable_default(struct amdgpu_device *adev, 398 bool value) 399 { 400 u32 tmp; 401 402 tmp = RREG32(mmVM_CONTEXT1_CNTL); 403 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 404 RANGE_PROTECTION_FAULT_ENABLE_DEFAULT, value); 405 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 406 DUMMY_PAGE_PROTECTION_FAULT_ENABLE_DEFAULT, value); 407 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 408 PDE0_PROTECTION_FAULT_ENABLE_DEFAULT, value); 409 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 410 VALID_PROTECTION_FAULT_ENABLE_DEFAULT, value); 411 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 412 READ_PROTECTION_FAULT_ENABLE_DEFAULT, value); 413 tmp = REG_SET_FIELD(tmp, VM_CONTEXT1_CNTL, 414 WRITE_PROTECTION_FAULT_ENABLE_DEFAULT, value); 415 WREG32(mmVM_CONTEXT1_CNTL, tmp); 416 } 417 418 /** 419 + * gmc_v8_0_set_prt - set PRT VM fault 420 + * 421 + * @adev: amdgpu_device pointer 422 + * @enable: enable/disable VM fault handling for PRT 423 +*/ 424 static void gmc_v6_0_set_prt(struct amdgpu_device *adev, bool enable) 425 { 426 u32 tmp; 427 428 if (enable && !adev->mc.prt_warning) { 429 dev_warn(adev->dev, "Disabling VM faults because of PRT request!\n"); 430 adev->mc.prt_warning = true; 431 } 432 433 tmp = RREG32(mmVM_PRT_CNTL); 434 tmp = REG_SET_FIELD(tmp, VM_PRT_CNTL, 435 CB_DISABLE_FAULT_ON_UNMAPPED_ACCESS, 436 enable); 437 tmp = REG_SET_FIELD(tmp, VM_PRT_CNTL, 438 TC_DISABLE_FAULT_ON_UNMAPPED_ACCESS, 439 enable); 440 tmp = REG_SET_FIELD(tmp, VM_PRT_CNTL, 441 L2_CACHE_STORE_INVALID_ENTRIES, 442 enable); 443 tmp = REG_SET_FIELD(tmp, VM_PRT_CNTL, 444 L1_TLB_STORE_INVALID_ENTRIES, 445 enable); 446 WREG32(mmVM_PRT_CNTL, tmp); 447 448 if (enable) { 449 uint32_t low = AMDGPU_VA_RESERVED_SIZE >> AMDGPU_GPU_PAGE_SHIFT; 450 uint32_t high = adev->vm_manager.max_pfn; 451 452 WREG32(mmVM_PRT_APERTURE0_LOW_ADDR, low); 453 WREG32(mmVM_PRT_APERTURE1_LOW_ADDR, low); 454 WREG32(mmVM_PRT_APERTURE2_LOW_ADDR, low); 455 WREG32(mmVM_PRT_APERTURE3_LOW_ADDR, low); 456 WREG32(mmVM_PRT_APERTURE0_HIGH_ADDR, high); 457 WREG32(mmVM_PRT_APERTURE1_HIGH_ADDR, high); 458 WREG32(mmVM_PRT_APERTURE2_HIGH_ADDR, high); 459 WREG32(mmVM_PRT_APERTURE3_HIGH_ADDR, high); 460 } else { 461 WREG32(mmVM_PRT_APERTURE0_LOW_ADDR, 0xfffffff); 462 WREG32(mmVM_PRT_APERTURE1_LOW_ADDR, 0xfffffff); 463 WREG32(mmVM_PRT_APERTURE2_LOW_ADDR, 0xfffffff); 464 WREG32(mmVM_PRT_APERTURE3_LOW_ADDR, 0xfffffff); 465 WREG32(mmVM_PRT_APERTURE0_HIGH_ADDR, 0x0); 466 WREG32(mmVM_PRT_APERTURE1_HIGH_ADDR, 0x0); 467 WREG32(mmVM_PRT_APERTURE2_HIGH_ADDR, 0x0); 468 WREG32(mmVM_PRT_APERTURE3_HIGH_ADDR, 0x0); 469 } 470 } 471 472 static int gmc_v6_0_gart_enable(struct amdgpu_device *adev) 473 { 474 int r, i; 475 476 if (adev->gart.robj == NULL) { 477 dev_err(adev->dev, "No VRAM object for PCIE GART.\n"); 478 return -EINVAL; 479 } 480 r = amdgpu_gart_table_vram_pin(adev); 481 if (r) 482 return r; 483 /* Setup TLB control */ 484 WREG32(mmMC_VM_MX_L1_TLB_CNTL, 485 (0xA << 7) | 486 MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_TLB_MASK | 487 MC_VM_MX_L1_TLB_CNTL__ENABLE_L1_FRAGMENT_PROCESSING_MASK | 488 MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE_MASK | 489 MC_VM_MX_L1_TLB_CNTL__ENABLE_ADVANCED_DRIVER_MODEL_MASK | 490 (0UL << MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS__SHIFT)); 491 /* Setup L2 cache */ 492 WREG32(mmVM_L2_CNTL, 493 VM_L2_CNTL__ENABLE_L2_CACHE_MASK | 494 VM_L2_CNTL__ENABLE_L2_FRAGMENT_PROCESSING_MASK | 495 VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE_MASK | 496 VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE_MASK | 497 (7UL << VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE__SHIFT) | 498 (1UL << VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE__SHIFT)); 499 WREG32(mmVM_L2_CNTL2, 500 VM_L2_CNTL2__INVALIDATE_ALL_L1_TLBS_MASK | 501 VM_L2_CNTL2__INVALIDATE_L2_CACHE_MASK); 502 WREG32(mmVM_L2_CNTL3, 503 VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY_MASK | 504 (4UL << VM_L2_CNTL3__BANK_SELECT__SHIFT) | 505 (4UL << VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE__SHIFT)); 506 /* setup context0 */ 507 WREG32(mmVM_CONTEXT0_PAGE_TABLE_START_ADDR, adev->mc.gtt_start >> 12); 508 WREG32(mmVM_CONTEXT0_PAGE_TABLE_END_ADDR, adev->mc.gtt_end >> 12); 509 WREG32(mmVM_CONTEXT0_PAGE_TABLE_BASE_ADDR, adev->gart.table_addr >> 12); 510 WREG32(mmVM_CONTEXT0_PROTECTION_FAULT_DEFAULT_ADDR, 511 (u32)(adev->dummy_page.addr >> 12)); 512 WREG32(mmVM_CONTEXT0_CNTL2, 0); 513 WREG32(mmVM_CONTEXT0_CNTL, 514 VM_CONTEXT0_CNTL__ENABLE_CONTEXT_MASK | 515 (0UL << VM_CONTEXT0_CNTL__PAGE_TABLE_DEPTH__SHIFT) | 516 VM_CONTEXT0_CNTL__RANGE_PROTECTION_FAULT_ENABLE_DEFAULT_MASK); 517 518 WREG32(0x575, 0); 519 WREG32(0x576, 0); 520 WREG32(0x577, 0); 521 522 /* empty context1-15 */ 523 /* set vm size, must be a multiple of 4 */ 524 WREG32(mmVM_CONTEXT1_PAGE_TABLE_START_ADDR, 0); 525 WREG32(mmVM_CONTEXT1_PAGE_TABLE_END_ADDR, adev->vm_manager.max_pfn - 1); 526 /* Assign the pt base to something valid for now; the pts used for 527 * the VMs are determined by the application and setup and assigned 528 * on the fly in the vm part of radeon_gart.c 529 */ 530 for (i = 1; i < 16; i++) { 531 if (i < 8) 532 WREG32(mmVM_CONTEXT0_PAGE_TABLE_BASE_ADDR + i, 533 adev->gart.table_addr >> 12); 534 else 535 WREG32(mmVM_CONTEXT8_PAGE_TABLE_BASE_ADDR + i - 8, 536 adev->gart.table_addr >> 12); 537 } 538 539 /* enable context1-15 */ 540 WREG32(mmVM_CONTEXT1_PROTECTION_FAULT_DEFAULT_ADDR, 541 (u32)(adev->dummy_page.addr >> 12)); 542 WREG32(mmVM_CONTEXT1_CNTL2, 4); 543 WREG32(mmVM_CONTEXT1_CNTL, 544 VM_CONTEXT1_CNTL__ENABLE_CONTEXT_MASK | 545 (1UL << VM_CONTEXT1_CNTL__PAGE_TABLE_DEPTH__SHIFT) | 546 ((amdgpu_vm_block_size - 9) << VM_CONTEXT1_CNTL__PAGE_TABLE_BLOCK_SIZE__SHIFT)); 547 if (amdgpu_vm_fault_stop == AMDGPU_VM_FAULT_STOP_ALWAYS) 548 gmc_v6_0_set_fault_enable_default(adev, false); 549 else 550 gmc_v6_0_set_fault_enable_default(adev, true); 551 552 gmc_v6_0_gart_flush_gpu_tlb(adev, 0); 553 dev_info(adev->dev, "PCIE GART of %uM enabled (table at 0x%016llX).\n", 554 (unsigned)(adev->mc.gtt_size >> 20), 555 (unsigned long long)adev->gart.table_addr); 556 adev->gart.ready = true; 557 return 0; 558 } 559 560 static int gmc_v6_0_gart_init(struct amdgpu_device *adev) 561 { 562 int r; 563 564 if (adev->gart.robj) { 565 dev_warn(adev->dev, "gmc_v6_0 PCIE GART already initialized\n"); 566 return 0; 567 } 568 r = amdgpu_gart_init(adev); 569 if (r) 570 return r; 571 adev->gart.table_size = adev->gart.num_gpu_pages * 8; 572 adev->gart.gart_pte_flags = 0; 573 return amdgpu_gart_table_vram_alloc(adev); 574 } 575 576 static void gmc_v6_0_gart_disable(struct amdgpu_device *adev) 577 { 578 /*unsigned i; 579 580 for (i = 1; i < 16; ++i) { 581 uint32_t reg; 582 if (i < 8) 583 reg = VM_CONTEXT0_PAGE_TABLE_BASE_ADDR + i ; 584 else 585 reg = VM_CONTEXT8_PAGE_TABLE_BASE_ADDR + (i - 8); 586 adev->vm_manager.saved_table_addr[i] = RREG32(reg); 587 }*/ 588 589 /* Disable all tables */ 590 WREG32(mmVM_CONTEXT0_CNTL, 0); 591 WREG32(mmVM_CONTEXT1_CNTL, 0); 592 /* Setup TLB control */ 593 WREG32(mmMC_VM_MX_L1_TLB_CNTL, 594 MC_VM_MX_L1_TLB_CNTL__SYSTEM_ACCESS_MODE_MASK | 595 (0UL << MC_VM_MX_L1_TLB_CNTL__SYSTEM_APERTURE_UNMAPPED_ACCESS__SHIFT)); 596 /* Setup L2 cache */ 597 WREG32(mmVM_L2_CNTL, 598 VM_L2_CNTL__ENABLE_L2_PTE_CACHE_LRU_UPDATE_BY_WRITE_MASK | 599 VM_L2_CNTL__ENABLE_L2_PDE0_CACHE_LRU_UPDATE_BY_WRITE_MASK | 600 (7UL << VM_L2_CNTL__EFFECTIVE_L2_QUEUE_SIZE__SHIFT) | 601 (1UL << VM_L2_CNTL__CONTEXT1_IDENTITY_ACCESS_MODE__SHIFT)); 602 WREG32(mmVM_L2_CNTL2, 0); 603 WREG32(mmVM_L2_CNTL3, 604 VM_L2_CNTL3__L2_CACHE_BIGK_ASSOCIATIVITY_MASK | 605 (0UL << VM_L2_CNTL3__L2_CACHE_BIGK_FRAGMENT_SIZE__SHIFT)); 606 amdgpu_gart_table_vram_unpin(adev); 607 } 608 609 static void gmc_v6_0_gart_fini(struct amdgpu_device *adev) 610 { 611 amdgpu_gart_table_vram_free(adev); 612 amdgpu_gart_fini(adev); 613 } 614 615 static int gmc_v6_0_vm_init(struct amdgpu_device *adev) 616 { 617 /* 618 * number of VMs 619 * VMID 0 is reserved for System 620 * amdgpu graphics/compute will use VMIDs 1-7 621 * amdkfd will use VMIDs 8-15 622 */ 623 adev->vm_manager.num_ids = AMDGPU_NUM_OF_VMIDS; 624 adev->vm_manager.num_level = 1; 625 amdgpu_vm_manager_init(adev); 626 627 /* base offset of vram pages */ 628 if (adev->flags & AMD_IS_APU) { 629 u64 tmp = RREG32(mmMC_VM_FB_OFFSET); 630 tmp <<= 22; 631 adev->vm_manager.vram_base_offset = tmp; 632 } else 633 adev->vm_manager.vram_base_offset = 0; 634 635 return 0; 636 } 637 638 static void gmc_v6_0_vm_fini(struct amdgpu_device *adev) 639 { 640 } 641 642 static void gmc_v6_0_vm_decode_fault(struct amdgpu_device *adev, 643 u32 status, u32 addr, u32 mc_client) 644 { 645 u32 mc_id; 646 u32 vmid = REG_GET_FIELD(status, VM_CONTEXT1_PROTECTION_FAULT_STATUS, VMID); 647 u32 protections = REG_GET_FIELD(status, VM_CONTEXT1_PROTECTION_FAULT_STATUS, 648 PROTECTIONS); 649 char block[5] = { mc_client >> 24, (mc_client >> 16) & 0xff, 650 (mc_client >> 8) & 0xff, mc_client & 0xff, 0 }; 651 652 mc_id = REG_GET_FIELD(status, VM_CONTEXT1_PROTECTION_FAULT_STATUS, 653 MEMORY_CLIENT_ID); 654 655 dev_err(adev->dev, "VM fault (0x%02x, vmid %d) at page %u, %s from '%s' (0x%08x) (%d)\n", 656 protections, vmid, addr, 657 REG_GET_FIELD(status, VM_CONTEXT1_PROTECTION_FAULT_STATUS, 658 MEMORY_CLIENT_RW) ? 659 "write" : "read", block, mc_client, mc_id); 660 } 661 662 /* 663 static const u32 mc_cg_registers[] = { 664 MC_HUB_MISC_HUB_CG, 665 MC_HUB_MISC_SIP_CG, 666 MC_HUB_MISC_VM_CG, 667 MC_XPB_CLK_GAT, 668 ATC_MISC_CG, 669 MC_CITF_MISC_WR_CG, 670 MC_CITF_MISC_RD_CG, 671 MC_CITF_MISC_VM_CG, 672 VM_L2_CG, 673 }; 674 675 static const u32 mc_cg_ls_en[] = { 676 MC_HUB_MISC_HUB_CG__MEM_LS_ENABLE_MASK, 677 MC_HUB_MISC_SIP_CG__MEM_LS_ENABLE_MASK, 678 MC_HUB_MISC_VM_CG__MEM_LS_ENABLE_MASK, 679 MC_XPB_CLK_GAT__MEM_LS_ENABLE_MASK, 680 ATC_MISC_CG__MEM_LS_ENABLE_MASK, 681 MC_CITF_MISC_WR_CG__MEM_LS_ENABLE_MASK, 682 MC_CITF_MISC_RD_CG__MEM_LS_ENABLE_MASK, 683 MC_CITF_MISC_VM_CG__MEM_LS_ENABLE_MASK, 684 VM_L2_CG__MEM_LS_ENABLE_MASK, 685 }; 686 687 static const u32 mc_cg_en[] = { 688 MC_HUB_MISC_HUB_CG__ENABLE_MASK, 689 MC_HUB_MISC_SIP_CG__ENABLE_MASK, 690 MC_HUB_MISC_VM_CG__ENABLE_MASK, 691 MC_XPB_CLK_GAT__ENABLE_MASK, 692 ATC_MISC_CG__ENABLE_MASK, 693 MC_CITF_MISC_WR_CG__ENABLE_MASK, 694 MC_CITF_MISC_RD_CG__ENABLE_MASK, 695 MC_CITF_MISC_VM_CG__ENABLE_MASK, 696 VM_L2_CG__ENABLE_MASK, 697 }; 698 699 static void gmc_v6_0_enable_mc_ls(struct amdgpu_device *adev, 700 bool enable) 701 { 702 int i; 703 u32 orig, data; 704 705 for (i = 0; i < ARRAY_SIZE(mc_cg_registers); i++) { 706 orig = data = RREG32(mc_cg_registers[i]); 707 if (enable && (adev->cg_flags & AMDGPU_CG_SUPPORT_MC_LS)) 708 data |= mc_cg_ls_en[i]; 709 else 710 data &= ~mc_cg_ls_en[i]; 711 if (data != orig) 712 WREG32(mc_cg_registers[i], data); 713 } 714 } 715 716 static void gmc_v6_0_enable_mc_mgcg(struct amdgpu_device *adev, 717 bool enable) 718 { 719 int i; 720 u32 orig, data; 721 722 for (i = 0; i < ARRAY_SIZE(mc_cg_registers); i++) { 723 orig = data = RREG32(mc_cg_registers[i]); 724 if (enable && (adev->cg_flags & AMDGPU_CG_SUPPORT_MC_MGCG)) 725 data |= mc_cg_en[i]; 726 else 727 data &= ~mc_cg_en[i]; 728 if (data != orig) 729 WREG32(mc_cg_registers[i], data); 730 } 731 } 732 733 static void gmc_v6_0_enable_bif_mgls(struct amdgpu_device *adev, 734 bool enable) 735 { 736 u32 orig, data; 737 738 orig = data = RREG32_PCIE(ixPCIE_CNTL2); 739 740 if (enable && (adev->cg_flags & AMDGPU_CG_SUPPORT_BIF_LS)) { 741 data = REG_SET_FIELD(data, PCIE_CNTL2, SLV_MEM_LS_EN, 1); 742 data = REG_SET_FIELD(data, PCIE_CNTL2, MST_MEM_LS_EN, 1); 743 data = REG_SET_FIELD(data, PCIE_CNTL2, REPLAY_MEM_LS_EN, 1); 744 data = REG_SET_FIELD(data, PCIE_CNTL2, SLV_MEM_AGGRESSIVE_LS_EN, 1); 745 } else { 746 data = REG_SET_FIELD(data, PCIE_CNTL2, SLV_MEM_LS_EN, 0); 747 data = REG_SET_FIELD(data, PCIE_CNTL2, MST_MEM_LS_EN, 0); 748 data = REG_SET_FIELD(data, PCIE_CNTL2, REPLAY_MEM_LS_EN, 0); 749 data = REG_SET_FIELD(data, PCIE_CNTL2, SLV_MEM_AGGRESSIVE_LS_EN, 0); 750 } 751 752 if (orig != data) 753 WREG32_PCIE(ixPCIE_CNTL2, data); 754 } 755 756 static void gmc_v6_0_enable_hdp_mgcg(struct amdgpu_device *adev, 757 bool enable) 758 { 759 u32 orig, data; 760 761 orig = data = RREG32(mmHDP_HOST_PATH_CNTL); 762 763 if (enable && (adev->cg_flags & AMDGPU_CG_SUPPORT_HDP_MGCG)) 764 data = REG_SET_FIELD(data, HDP_HOST_PATH_CNTL, CLOCK_GATING_DIS, 0); 765 else 766 data = REG_SET_FIELD(data, HDP_HOST_PATH_CNTL, CLOCK_GATING_DIS, 1); 767 768 if (orig != data) 769 WREG32(mmHDP_HOST_PATH_CNTL, data); 770 } 771 772 static void gmc_v6_0_enable_hdp_ls(struct amdgpu_device *adev, 773 bool enable) 774 { 775 u32 orig, data; 776 777 orig = data = RREG32(mmHDP_MEM_POWER_LS); 778 779 if (enable && (adev->cg_flags & AMDGPU_CG_SUPPORT_HDP_LS)) 780 data = REG_SET_FIELD(data, HDP_MEM_POWER_LS, LS_ENABLE, 1); 781 else 782 data = REG_SET_FIELD(data, HDP_MEM_POWER_LS, LS_ENABLE, 0); 783 784 if (orig != data) 785 WREG32(mmHDP_MEM_POWER_LS, data); 786 } 787 */ 788 789 static int gmc_v6_0_convert_vram_type(int mc_seq_vram_type) 790 { 791 switch (mc_seq_vram_type) { 792 case MC_SEQ_MISC0__MT__GDDR1: 793 return AMDGPU_VRAM_TYPE_GDDR1; 794 case MC_SEQ_MISC0__MT__DDR2: 795 return AMDGPU_VRAM_TYPE_DDR2; 796 case MC_SEQ_MISC0__MT__GDDR3: 797 return AMDGPU_VRAM_TYPE_GDDR3; 798 case MC_SEQ_MISC0__MT__GDDR4: 799 return AMDGPU_VRAM_TYPE_GDDR4; 800 case MC_SEQ_MISC0__MT__GDDR5: 801 return AMDGPU_VRAM_TYPE_GDDR5; 802 case MC_SEQ_MISC0__MT__DDR3: 803 return AMDGPU_VRAM_TYPE_DDR3; 804 default: 805 return AMDGPU_VRAM_TYPE_UNKNOWN; 806 } 807 } 808 809 static int gmc_v6_0_early_init(void *handle) 810 { 811 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 812 813 gmc_v6_0_set_gart_funcs(adev); 814 gmc_v6_0_set_irq_funcs(adev); 815 816 if (adev->flags & AMD_IS_APU) { 817 adev->mc.vram_type = AMDGPU_VRAM_TYPE_UNKNOWN; 818 } else { 819 u32 tmp = RREG32(mmMC_SEQ_MISC0); 820 tmp &= MC_SEQ_MISC0__MT__MASK; 821 adev->mc.vram_type = gmc_v6_0_convert_vram_type(tmp); 822 } 823 824 return 0; 825 } 826 827 static int gmc_v6_0_late_init(void *handle) 828 { 829 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 830 831 if (amdgpu_vm_fault_stop != AMDGPU_VM_FAULT_STOP_ALWAYS) 832 return amdgpu_irq_get(adev, &adev->mc.vm_fault, 0); 833 else 834 return 0; 835 } 836 837 static int gmc_v6_0_sw_init(void *handle) 838 { 839 int r; 840 int dma_bits; 841 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 842 843 r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 146, &adev->mc.vm_fault); 844 if (r) 845 return r; 846 847 r = amdgpu_irq_add_id(adev, AMDGPU_IH_CLIENTID_LEGACY, 147, &adev->mc.vm_fault); 848 if (r) 849 return r; 850 851 adev->vm_manager.max_pfn = amdgpu_vm_size << 18; 852 853 adev->mc.mc_mask = 0xffffffffffULL; 854 855 adev->need_dma32 = false; 856 dma_bits = adev->need_dma32 ? 32 : 40; 857 r = pci_set_dma_mask(adev->pdev, DMA_BIT_MASK(dma_bits)); 858 if (r) { 859 adev->need_dma32 = true; 860 dma_bits = 32; 861 dev_warn(adev->dev, "amdgpu: No suitable DMA available.\n"); 862 } 863 r = pci_set_consistent_dma_mask(adev->pdev, DMA_BIT_MASK(dma_bits)); 864 if (r) { 865 pci_set_consistent_dma_mask(adev->pdev, DMA_BIT_MASK(32)); 866 dev_warn(adev->dev, "amdgpu: No coherent DMA available.\n"); 867 } 868 869 r = gmc_v6_0_init_microcode(adev); 870 if (r) { 871 dev_err(adev->dev, "Failed to load mc firmware!\n"); 872 return r; 873 } 874 875 r = gmc_v6_0_mc_init(adev); 876 if (r) 877 return r; 878 879 r = amdgpu_bo_init(adev); 880 if (r) 881 return r; 882 883 r = gmc_v6_0_gart_init(adev); 884 if (r) 885 return r; 886 887 if (!adev->vm_manager.enabled) { 888 r = gmc_v6_0_vm_init(adev); 889 if (r) { 890 dev_err(adev->dev, "vm manager initialization failed (%d).\n", r); 891 return r; 892 } 893 adev->vm_manager.enabled = true; 894 } 895 896 return r; 897 } 898 899 static int gmc_v6_0_sw_fini(void *handle) 900 { 901 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 902 903 if (adev->vm_manager.enabled) { 904 gmc_v6_0_vm_fini(adev); 905 adev->vm_manager.enabled = false; 906 } 907 gmc_v6_0_gart_fini(adev); 908 amdgpu_gem_force_release(adev); 909 amdgpu_bo_fini(adev); 910 911 return 0; 912 } 913 914 static int gmc_v6_0_hw_init(void *handle) 915 { 916 int r; 917 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 918 919 gmc_v6_0_mc_program(adev); 920 921 if (!(adev->flags & AMD_IS_APU)) { 922 r = gmc_v6_0_mc_load_microcode(adev); 923 if (r) { 924 dev_err(adev->dev, "Failed to load MC firmware!\n"); 925 return r; 926 } 927 } 928 929 r = gmc_v6_0_gart_enable(adev); 930 if (r) 931 return r; 932 933 return r; 934 } 935 936 static int gmc_v6_0_hw_fini(void *handle) 937 { 938 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 939 940 amdgpu_irq_put(adev, &adev->mc.vm_fault, 0); 941 gmc_v6_0_gart_disable(adev); 942 943 return 0; 944 } 945 946 static int gmc_v6_0_suspend(void *handle) 947 { 948 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 949 950 if (adev->vm_manager.enabled) { 951 gmc_v6_0_vm_fini(adev); 952 adev->vm_manager.enabled = false; 953 } 954 gmc_v6_0_hw_fini(adev); 955 956 return 0; 957 } 958 959 static int gmc_v6_0_resume(void *handle) 960 { 961 int r; 962 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 963 964 r = gmc_v6_0_hw_init(adev); 965 if (r) 966 return r; 967 968 if (!adev->vm_manager.enabled) { 969 r = gmc_v6_0_vm_init(adev); 970 if (r) { 971 dev_err(adev->dev, "vm manager initialization failed (%d).\n", r); 972 return r; 973 } 974 adev->vm_manager.enabled = true; 975 } 976 977 return r; 978 } 979 980 static bool gmc_v6_0_is_idle(void *handle) 981 { 982 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 983 u32 tmp = RREG32(mmSRBM_STATUS); 984 985 if (tmp & (SRBM_STATUS__MCB_BUSY_MASK | SRBM_STATUS__MCB_NON_DISPLAY_BUSY_MASK | 986 SRBM_STATUS__MCC_BUSY_MASK | SRBM_STATUS__MCD_BUSY_MASK | SRBM_STATUS__VMC_BUSY_MASK)) 987 return false; 988 989 return true; 990 } 991 992 static int gmc_v6_0_wait_for_idle(void *handle) 993 { 994 unsigned i; 995 u32 tmp; 996 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 997 998 for (i = 0; i < adev->usec_timeout; i++) { 999 tmp = RREG32(mmSRBM_STATUS) & (SRBM_STATUS__MCB_BUSY_MASK | 1000 SRBM_STATUS__MCB_NON_DISPLAY_BUSY_MASK | 1001 SRBM_STATUS__MCC_BUSY_MASK | 1002 SRBM_STATUS__MCD_BUSY_MASK | 1003 SRBM_STATUS__VMC_BUSY_MASK); 1004 if (!tmp) 1005 return 0; 1006 udelay(1); 1007 } 1008 return -ETIMEDOUT; 1009 1010 } 1011 1012 static int gmc_v6_0_soft_reset(void *handle) 1013 { 1014 struct amdgpu_device *adev = (struct amdgpu_device *)handle; 1015 struct amdgpu_mode_mc_save save; 1016 u32 srbm_soft_reset = 0; 1017 u32 tmp = RREG32(mmSRBM_STATUS); 1018 1019 if (tmp & SRBM_STATUS__VMC_BUSY_MASK) 1020 srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset, 1021 SRBM_SOFT_RESET, SOFT_RESET_VMC, 1); 1022 1023 if (tmp & (SRBM_STATUS__MCB_BUSY_MASK | SRBM_STATUS__MCB_NON_DISPLAY_BUSY_MASK | 1024 SRBM_STATUS__MCC_BUSY_MASK | SRBM_STATUS__MCD_BUSY_MASK)) { 1025 if (!(adev->flags & AMD_IS_APU)) 1026 srbm_soft_reset = REG_SET_FIELD(srbm_soft_reset, 1027 SRBM_SOFT_RESET, SOFT_RESET_MC, 1); 1028 } 1029 1030 if (srbm_soft_reset) { 1031 gmc_v6_0_mc_stop(adev, &save); 1032 if (gmc_v6_0_wait_for_idle(adev)) { 1033 dev_warn(adev->dev, "Wait for GMC idle timed out !\n"); 1034 } 1035 1036 1037 tmp = RREG32(mmSRBM_SOFT_RESET); 1038 tmp |= srbm_soft_reset; 1039 dev_info(adev->dev, "SRBM_SOFT_RESET=0x%08X\n", tmp); 1040 WREG32(mmSRBM_SOFT_RESET, tmp); 1041 tmp = RREG32(mmSRBM_SOFT_RESET); 1042 1043 udelay(50); 1044 1045 tmp &= ~srbm_soft_reset; 1046 WREG32(mmSRBM_SOFT_RESET, tmp); 1047 tmp = RREG32(mmSRBM_SOFT_RESET); 1048 1049 udelay(50); 1050 1051 gmc_v6_0_mc_resume(adev, &save); 1052 udelay(50); 1053 } 1054 1055 return 0; 1056 } 1057 1058 static int gmc_v6_0_vm_fault_interrupt_state(struct amdgpu_device *adev, 1059 struct amdgpu_irq_src *src, 1060 unsigned type, 1061 enum amdgpu_interrupt_state state) 1062 { 1063 u32 tmp; 1064 u32 bits = (VM_CONTEXT1_CNTL__RANGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK | 1065 VM_CONTEXT1_CNTL__DUMMY_PAGE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK | 1066 VM_CONTEXT1_CNTL__PDE0_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK | 1067 VM_CONTEXT1_CNTL__VALID_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK | 1068 VM_CONTEXT1_CNTL__READ_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK | 1069 VM_CONTEXT1_CNTL__WRITE_PROTECTION_FAULT_ENABLE_INTERRUPT_MASK); 1070 1071 switch (state) { 1072 case AMDGPU_IRQ_STATE_DISABLE: 1073 tmp = RREG32(mmVM_CONTEXT0_CNTL); 1074 tmp &= ~bits; 1075 WREG32(mmVM_CONTEXT0_CNTL, tmp); 1076 tmp = RREG32(mmVM_CONTEXT1_CNTL); 1077 tmp &= ~bits; 1078 WREG32(mmVM_CONTEXT1_CNTL, tmp); 1079 break; 1080 case AMDGPU_IRQ_STATE_ENABLE: 1081 tmp = RREG32(mmVM_CONTEXT0_CNTL); 1082 tmp |= bits; 1083 WREG32(mmVM_CONTEXT0_CNTL, tmp); 1084 tmp = RREG32(mmVM_CONTEXT1_CNTL); 1085 tmp |= bits; 1086 WREG32(mmVM_CONTEXT1_CNTL, tmp); 1087 break; 1088 default: 1089 break; 1090 } 1091 1092 return 0; 1093 } 1094 1095 static int gmc_v6_0_process_interrupt(struct amdgpu_device *adev, 1096 struct amdgpu_irq_src *source, 1097 struct amdgpu_iv_entry *entry) 1098 { 1099 u32 addr, status; 1100 1101 addr = RREG32(mmVM_CONTEXT1_PROTECTION_FAULT_ADDR); 1102 status = RREG32(mmVM_CONTEXT1_PROTECTION_FAULT_STATUS); 1103 WREG32_P(mmVM_CONTEXT1_CNTL2, 1, ~1); 1104 1105 if (!addr && !status) 1106 return 0; 1107 1108 if (amdgpu_vm_fault_stop == AMDGPU_VM_FAULT_STOP_FIRST) 1109 gmc_v6_0_set_fault_enable_default(adev, false); 1110 1111 if (printk_ratelimit()) { 1112 dev_err(adev->dev, "GPU fault detected: %d 0x%08x\n", 1113 entry->src_id, entry->src_data[0]); 1114 dev_err(adev->dev, " VM_CONTEXT1_PROTECTION_FAULT_ADDR 0x%08X\n", 1115 addr); 1116 dev_err(adev->dev, " VM_CONTEXT1_PROTECTION_FAULT_STATUS 0x%08X\n", 1117 status); 1118 gmc_v6_0_vm_decode_fault(adev, status, addr, 0); 1119 } 1120 1121 return 0; 1122 } 1123 1124 static int gmc_v6_0_set_clockgating_state(void *handle, 1125 enum amd_clockgating_state state) 1126 { 1127 return 0; 1128 } 1129 1130 static int gmc_v6_0_set_powergating_state(void *handle, 1131 enum amd_powergating_state state) 1132 { 1133 return 0; 1134 } 1135 1136 static const struct amd_ip_funcs gmc_v6_0_ip_funcs = { 1137 .name = "gmc_v6_0", 1138 .early_init = gmc_v6_0_early_init, 1139 .late_init = gmc_v6_0_late_init, 1140 .sw_init = gmc_v6_0_sw_init, 1141 .sw_fini = gmc_v6_0_sw_fini, 1142 .hw_init = gmc_v6_0_hw_init, 1143 .hw_fini = gmc_v6_0_hw_fini, 1144 .suspend = gmc_v6_0_suspend, 1145 .resume = gmc_v6_0_resume, 1146 .is_idle = gmc_v6_0_is_idle, 1147 .wait_for_idle = gmc_v6_0_wait_for_idle, 1148 .soft_reset = gmc_v6_0_soft_reset, 1149 .set_clockgating_state = gmc_v6_0_set_clockgating_state, 1150 .set_powergating_state = gmc_v6_0_set_powergating_state, 1151 }; 1152 1153 static const struct amdgpu_gart_funcs gmc_v6_0_gart_funcs = { 1154 .flush_gpu_tlb = gmc_v6_0_gart_flush_gpu_tlb, 1155 .set_pte_pde = gmc_v6_0_gart_set_pte_pde, 1156 .set_prt = gmc_v6_0_set_prt, 1157 .get_vm_pte_flags = gmc_v6_0_get_vm_pte_flags 1158 }; 1159 1160 static const struct amdgpu_irq_src_funcs gmc_v6_0_irq_funcs = { 1161 .set = gmc_v6_0_vm_fault_interrupt_state, 1162 .process = gmc_v6_0_process_interrupt, 1163 }; 1164 1165 static void gmc_v6_0_set_gart_funcs(struct amdgpu_device *adev) 1166 { 1167 if (adev->gart.gart_funcs == NULL) 1168 adev->gart.gart_funcs = &gmc_v6_0_gart_funcs; 1169 } 1170 1171 static void gmc_v6_0_set_irq_funcs(struct amdgpu_device *adev) 1172 { 1173 adev->mc.vm_fault.num_types = 1; 1174 adev->mc.vm_fault.funcs = &gmc_v6_0_irq_funcs; 1175 } 1176 1177 const struct amdgpu_ip_block_version gmc_v6_0_ip_block = 1178 { 1179 .type = AMD_IP_BLOCK_TYPE_GMC, 1180 .major = 6, 1181 .minor = 0, 1182 .rev = 0, 1183 .funcs = &gmc_v6_0_ip_funcs, 1184 }; 1185