1 /* i915_drv.c -- i830,i845,i855,i865,i915 driver -*- linux-c -*- 2 */ 3 /* 4 * 5 * Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas. 6 * All Rights Reserved. 7 * 8 * Permission is hereby granted, free of charge, to any person obtaining a 9 * copy of this software and associated documentation files (the 10 * "Software"), to deal in the Software without restriction, including 11 * without limitation the rights to use, copy, modify, merge, publish, 12 * distribute, sub license, and/or sell copies of the Software, and to 13 * permit persons to whom the Software is furnished to do so, subject to 14 * the following conditions: 15 * 16 * The above copyright notice and this permission notice (including the 17 * next paragraph) shall be included in all copies or substantial portions 18 * of the Software. 19 * 20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS 21 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 22 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. 23 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR 24 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, 25 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE 26 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. 27 * 28 */ 29 30 #include <linux/acpi.h> 31 #include <linux/device.h> 32 #include <linux/module.h> 33 #include <linux/oom.h> 34 #include <linux/pci.h> 35 #include <linux/pm.h> 36 #include <linux/pm_runtime.h> 37 #include <linux/pnp.h> 38 #include <linux/slab.h> 39 #include <linux/string_helpers.h> 40 #include <linux/vga_switcheroo.h> 41 #include <linux/vt.h> 42 43 #include <drm/drm_aperture.h> 44 #include <drm/drm_atomic_helper.h> 45 #include <drm/drm_ioctl.h> 46 #include <drm/drm_managed.h> 47 #include <drm/drm_probe_helper.h> 48 49 #include "display/intel_acpi.h" 50 #include "display/intel_bw.h" 51 #include "display/intel_cdclk.h" 52 #include "display/intel_display_types.h" 53 #include "display/intel_dmc.h" 54 #include "display/intel_dp.h" 55 #include "display/intel_dpt.h" 56 #include "display/intel_fbdev.h" 57 #include "display/intel_hotplug.h" 58 #include "display/intel_overlay.h" 59 #include "display/intel_pch_refclk.h" 60 #include "display/intel_pipe_crc.h" 61 #include "display/intel_pps.h" 62 #include "display/intel_sprite.h" 63 #include "display/intel_vga.h" 64 #include "display/skl_watermark.h" 65 66 #include "gem/i915_gem_context.h" 67 #include "gem/i915_gem_create.h" 68 #include "gem/i915_gem_dmabuf.h" 69 #include "gem/i915_gem_ioctls.h" 70 #include "gem/i915_gem_mman.h" 71 #include "gem/i915_gem_pm.h" 72 #include "gt/intel_gt.h" 73 #include "gt/intel_gt_pm.h" 74 #include "gt/intel_rc6.h" 75 76 #include "pxp/intel_pxp_pm.h" 77 78 #include "i915_file_private.h" 79 #include "i915_debugfs.h" 80 #include "i915_driver.h" 81 #include "i915_drm_client.h" 82 #include "i915_drv.h" 83 #include "i915_getparam.h" 84 #include "i915_hwmon.h" 85 #include "i915_ioc32.h" 86 #include "i915_ioctl.h" 87 #include "i915_irq.h" 88 #include "i915_memcpy.h" 89 #include "i915_perf.h" 90 #include "i915_query.h" 91 #include "i915_suspend.h" 92 #include "i915_switcheroo.h" 93 #include "i915_sysfs.h" 94 #include "i915_utils.h" 95 #include "i915_vgpu.h" 96 #include "intel_dram.h" 97 #include "intel_gvt.h" 98 #include "intel_memory_region.h" 99 #include "intel_pci_config.h" 100 #include "intel_pcode.h" 101 #include "intel_pm.h" 102 #include "intel_region_ttm.h" 103 #include "vlv_suspend.h" 104 105 /* Intel Rapid Start Technology ACPI device name */ 106 static const char irst_name[] = "INT3392"; 107 108 static const struct drm_driver i915_drm_driver; 109 110 static void i915_release_bridge_dev(struct drm_device *dev, 111 void *bridge) 112 { 113 pci_dev_put(bridge); 114 } 115 116 static int i915_get_bridge_dev(struct drm_i915_private *dev_priv) 117 { 118 int domain = pci_domain_nr(to_pci_dev(dev_priv->drm.dev)->bus); 119 120 dev_priv->bridge_dev = 121 pci_get_domain_bus_and_slot(domain, 0, PCI_DEVFN(0, 0)); 122 if (!dev_priv->bridge_dev) { 123 drm_err(&dev_priv->drm, "bridge device not found\n"); 124 return -EIO; 125 } 126 127 return drmm_add_action_or_reset(&dev_priv->drm, i915_release_bridge_dev, 128 dev_priv->bridge_dev); 129 } 130 131 /* Allocate space for the MCH regs if needed, return nonzero on error */ 132 static int 133 intel_alloc_mchbar_resource(struct drm_i915_private *dev_priv) 134 { 135 int reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915; 136 u32 temp_lo, temp_hi = 0; 137 u64 mchbar_addr; 138 int ret; 139 140 if (GRAPHICS_VER(dev_priv) >= 4) 141 pci_read_config_dword(dev_priv->bridge_dev, reg + 4, &temp_hi); 142 pci_read_config_dword(dev_priv->bridge_dev, reg, &temp_lo); 143 mchbar_addr = ((u64)temp_hi << 32) | temp_lo; 144 145 /* If ACPI doesn't have it, assume we need to allocate it ourselves */ 146 #ifdef CONFIG_PNP 147 if (mchbar_addr && 148 pnp_range_reserved(mchbar_addr, mchbar_addr + MCHBAR_SIZE)) 149 return 0; 150 #endif 151 152 /* Get some space for it */ 153 dev_priv->mch_res.name = "i915 MCHBAR"; 154 dev_priv->mch_res.flags = IORESOURCE_MEM; 155 ret = pci_bus_alloc_resource(dev_priv->bridge_dev->bus, 156 &dev_priv->mch_res, 157 MCHBAR_SIZE, MCHBAR_SIZE, 158 PCIBIOS_MIN_MEM, 159 0, pcibios_align_resource, 160 dev_priv->bridge_dev); 161 if (ret) { 162 drm_dbg(&dev_priv->drm, "failed bus alloc: %d\n", ret); 163 dev_priv->mch_res.start = 0; 164 return ret; 165 } 166 167 if (GRAPHICS_VER(dev_priv) >= 4) 168 pci_write_config_dword(dev_priv->bridge_dev, reg + 4, 169 upper_32_bits(dev_priv->mch_res.start)); 170 171 pci_write_config_dword(dev_priv->bridge_dev, reg, 172 lower_32_bits(dev_priv->mch_res.start)); 173 return 0; 174 } 175 176 /* Setup MCHBAR if possible, return true if we should disable it again */ 177 static void 178 intel_setup_mchbar(struct drm_i915_private *dev_priv) 179 { 180 int mchbar_reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915; 181 u32 temp; 182 bool enabled; 183 184 if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) 185 return; 186 187 dev_priv->mchbar_need_disable = false; 188 189 if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) { 190 pci_read_config_dword(dev_priv->bridge_dev, DEVEN, &temp); 191 enabled = !!(temp & DEVEN_MCHBAR_EN); 192 } else { 193 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp); 194 enabled = temp & 1; 195 } 196 197 /* If it's already enabled, don't have to do anything */ 198 if (enabled) 199 return; 200 201 if (intel_alloc_mchbar_resource(dev_priv)) 202 return; 203 204 dev_priv->mchbar_need_disable = true; 205 206 /* Space is allocated or reserved, so enable it. */ 207 if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) { 208 pci_write_config_dword(dev_priv->bridge_dev, DEVEN, 209 temp | DEVEN_MCHBAR_EN); 210 } else { 211 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, &temp); 212 pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg, temp | 1); 213 } 214 } 215 216 static void 217 intel_teardown_mchbar(struct drm_i915_private *dev_priv) 218 { 219 int mchbar_reg = GRAPHICS_VER(dev_priv) >= 4 ? MCHBAR_I965 : MCHBAR_I915; 220 221 if (dev_priv->mchbar_need_disable) { 222 if (IS_I915G(dev_priv) || IS_I915GM(dev_priv)) { 223 u32 deven_val; 224 225 pci_read_config_dword(dev_priv->bridge_dev, DEVEN, 226 &deven_val); 227 deven_val &= ~DEVEN_MCHBAR_EN; 228 pci_write_config_dword(dev_priv->bridge_dev, DEVEN, 229 deven_val); 230 } else { 231 u32 mchbar_val; 232 233 pci_read_config_dword(dev_priv->bridge_dev, mchbar_reg, 234 &mchbar_val); 235 mchbar_val &= ~1; 236 pci_write_config_dword(dev_priv->bridge_dev, mchbar_reg, 237 mchbar_val); 238 } 239 } 240 241 if (dev_priv->mch_res.start) 242 release_resource(&dev_priv->mch_res); 243 } 244 245 static int i915_workqueues_init(struct drm_i915_private *dev_priv) 246 { 247 /* 248 * The i915 workqueue is primarily used for batched retirement of 249 * requests (and thus managing bo) once the task has been completed 250 * by the GPU. i915_retire_requests() is called directly when we 251 * need high-priority retirement, such as waiting for an explicit 252 * bo. 253 * 254 * It is also used for periodic low-priority events, such as 255 * idle-timers and recording error state. 256 * 257 * All tasks on the workqueue are expected to acquire the dev mutex 258 * so there is no point in running more than one instance of the 259 * workqueue at any time. Use an ordered one. 260 */ 261 dev_priv->wq = alloc_ordered_workqueue("i915", 0); 262 if (dev_priv->wq == NULL) 263 goto out_err; 264 265 dev_priv->display.hotplug.dp_wq = alloc_ordered_workqueue("i915-dp", 0); 266 if (dev_priv->display.hotplug.dp_wq == NULL) 267 goto out_free_wq; 268 269 return 0; 270 271 out_free_wq: 272 destroy_workqueue(dev_priv->wq); 273 out_err: 274 drm_err(&dev_priv->drm, "Failed to allocate workqueues.\n"); 275 276 return -ENOMEM; 277 } 278 279 static void i915_workqueues_cleanup(struct drm_i915_private *dev_priv) 280 { 281 destroy_workqueue(dev_priv->display.hotplug.dp_wq); 282 destroy_workqueue(dev_priv->wq); 283 } 284 285 /* 286 * We don't keep the workarounds for pre-production hardware, so we expect our 287 * driver to fail on these machines in one way or another. A little warning on 288 * dmesg may help both the user and the bug triagers. 289 * 290 * Our policy for removing pre-production workarounds is to keep the 291 * current gen workarounds as a guide to the bring-up of the next gen 292 * (workarounds have a habit of persisting!). Anything older than that 293 * should be removed along with the complications they introduce. 294 */ 295 static void intel_detect_preproduction_hw(struct drm_i915_private *dev_priv) 296 { 297 bool pre = false; 298 299 pre |= IS_HSW_EARLY_SDV(dev_priv); 300 pre |= IS_SKYLAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x6; 301 pre |= IS_BROXTON(dev_priv) && INTEL_REVID(dev_priv) < 0xA; 302 pre |= IS_KABYLAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x1; 303 pre |= IS_GEMINILAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x3; 304 pre |= IS_ICELAKE(dev_priv) && INTEL_REVID(dev_priv) < 0x7; 305 306 if (pre) { 307 drm_err(&dev_priv->drm, "This is a pre-production stepping. " 308 "It may not be fully functional.\n"); 309 add_taint(TAINT_MACHINE_CHECK, LOCKDEP_STILL_OK); 310 } 311 } 312 313 static void sanitize_gpu(struct drm_i915_private *i915) 314 { 315 if (!INTEL_INFO(i915)->gpu_reset_clobbers_display) { 316 struct intel_gt *gt; 317 unsigned int i; 318 319 for_each_gt(gt, i915, i) 320 __intel_gt_reset(gt, ALL_ENGINES); 321 } 322 } 323 324 /** 325 * i915_driver_early_probe - setup state not requiring device access 326 * @dev_priv: device private 327 * 328 * Initialize everything that is a "SW-only" state, that is state not 329 * requiring accessing the device or exposing the driver via kernel internal 330 * or userspace interfaces. Example steps belonging here: lock initialization, 331 * system memory allocation, setting up device specific attributes and 332 * function hooks not requiring accessing the device. 333 */ 334 static int i915_driver_early_probe(struct drm_i915_private *dev_priv) 335 { 336 int ret = 0; 337 338 if (i915_inject_probe_failure(dev_priv)) 339 return -ENODEV; 340 341 intel_device_info_subplatform_init(dev_priv); 342 intel_step_init(dev_priv); 343 344 intel_uncore_mmio_debug_init_early(dev_priv); 345 346 spin_lock_init(&dev_priv->irq_lock); 347 spin_lock_init(&dev_priv->gpu_error.lock); 348 mutex_init(&dev_priv->display.backlight.lock); 349 350 mutex_init(&dev_priv->sb_lock); 351 cpu_latency_qos_add_request(&dev_priv->sb_qos, PM_QOS_DEFAULT_VALUE); 352 353 mutex_init(&dev_priv->display.audio.mutex); 354 mutex_init(&dev_priv->display.wm.wm_mutex); 355 mutex_init(&dev_priv->display.pps.mutex); 356 mutex_init(&dev_priv->display.hdcp.comp_mutex); 357 358 i915_memcpy_init_early(dev_priv); 359 intel_runtime_pm_init_early(&dev_priv->runtime_pm); 360 361 ret = i915_workqueues_init(dev_priv); 362 if (ret < 0) 363 return ret; 364 365 ret = vlv_suspend_init(dev_priv); 366 if (ret < 0) 367 goto err_workqueues; 368 369 ret = intel_region_ttm_device_init(dev_priv); 370 if (ret) 371 goto err_ttm; 372 373 intel_wopcm_init_early(&dev_priv->wopcm); 374 375 ret = intel_root_gt_init_early(dev_priv); 376 if (ret < 0) 377 goto err_rootgt; 378 379 i915_drm_clients_init(&dev_priv->clients, dev_priv); 380 381 i915_gem_init_early(dev_priv); 382 383 /* This must be called before any calls to HAS_PCH_* */ 384 intel_detect_pch(dev_priv); 385 386 intel_pm_setup(dev_priv); 387 ret = intel_power_domains_init(dev_priv); 388 if (ret < 0) 389 goto err_gem; 390 intel_irq_init(dev_priv); 391 intel_init_display_hooks(dev_priv); 392 intel_init_clock_gating_hooks(dev_priv); 393 394 intel_detect_preproduction_hw(dev_priv); 395 396 return 0; 397 398 err_gem: 399 i915_gem_cleanup_early(dev_priv); 400 intel_gt_driver_late_release_all(dev_priv); 401 i915_drm_clients_fini(&dev_priv->clients); 402 err_rootgt: 403 intel_region_ttm_device_fini(dev_priv); 404 err_ttm: 405 vlv_suspend_cleanup(dev_priv); 406 err_workqueues: 407 i915_workqueues_cleanup(dev_priv); 408 return ret; 409 } 410 411 /** 412 * i915_driver_late_release - cleanup the setup done in 413 * i915_driver_early_probe() 414 * @dev_priv: device private 415 */ 416 static void i915_driver_late_release(struct drm_i915_private *dev_priv) 417 { 418 intel_irq_fini(dev_priv); 419 intel_power_domains_cleanup(dev_priv); 420 i915_gem_cleanup_early(dev_priv); 421 intel_gt_driver_late_release_all(dev_priv); 422 i915_drm_clients_fini(&dev_priv->clients); 423 intel_region_ttm_device_fini(dev_priv); 424 vlv_suspend_cleanup(dev_priv); 425 i915_workqueues_cleanup(dev_priv); 426 427 cpu_latency_qos_remove_request(&dev_priv->sb_qos); 428 mutex_destroy(&dev_priv->sb_lock); 429 430 i915_params_free(&dev_priv->params); 431 } 432 433 /** 434 * i915_driver_mmio_probe - setup device MMIO 435 * @dev_priv: device private 436 * 437 * Setup minimal device state necessary for MMIO accesses later in the 438 * initialization sequence. The setup here should avoid any other device-wide 439 * side effects or exposing the driver via kernel internal or user space 440 * interfaces. 441 */ 442 static int i915_driver_mmio_probe(struct drm_i915_private *dev_priv) 443 { 444 struct intel_gt *gt; 445 int ret, i; 446 447 if (i915_inject_probe_failure(dev_priv)) 448 return -ENODEV; 449 450 ret = i915_get_bridge_dev(dev_priv); 451 if (ret < 0) 452 return ret; 453 454 for_each_gt(gt, dev_priv, i) { 455 ret = intel_uncore_init_mmio(gt->uncore); 456 if (ret) 457 return ret; 458 459 ret = drmm_add_action_or_reset(&dev_priv->drm, 460 intel_uncore_fini_mmio, 461 gt->uncore); 462 if (ret) 463 return ret; 464 } 465 466 /* Try to make sure MCHBAR is enabled before poking at it */ 467 intel_setup_mchbar(dev_priv); 468 intel_device_info_runtime_init(dev_priv); 469 470 for_each_gt(gt, dev_priv, i) { 471 ret = intel_gt_init_mmio(gt); 472 if (ret) 473 goto err_uncore; 474 } 475 476 /* As early as possible, scrub existing GPU state before clobbering */ 477 sanitize_gpu(dev_priv); 478 479 return 0; 480 481 err_uncore: 482 intel_teardown_mchbar(dev_priv); 483 484 return ret; 485 } 486 487 /** 488 * i915_driver_mmio_release - cleanup the setup done in i915_driver_mmio_probe() 489 * @dev_priv: device private 490 */ 491 static void i915_driver_mmio_release(struct drm_i915_private *dev_priv) 492 { 493 intel_teardown_mchbar(dev_priv); 494 } 495 496 /** 497 * i915_set_dma_info - set all relevant PCI dma info as configured for the 498 * platform 499 * @i915: valid i915 instance 500 * 501 * Set the dma max segment size, device and coherent masks. The dma mask set 502 * needs to occur before i915_ggtt_probe_hw. 503 * 504 * A couple of platforms have special needs. Address them as well. 505 * 506 */ 507 static int i915_set_dma_info(struct drm_i915_private *i915) 508 { 509 unsigned int mask_size = INTEL_INFO(i915)->dma_mask_size; 510 int ret; 511 512 GEM_BUG_ON(!mask_size); 513 514 /* 515 * We don't have a max segment size, so set it to the max so sg's 516 * debugging layer doesn't complain 517 */ 518 dma_set_max_seg_size(i915->drm.dev, UINT_MAX); 519 520 ret = dma_set_mask(i915->drm.dev, DMA_BIT_MASK(mask_size)); 521 if (ret) 522 goto mask_err; 523 524 /* overlay on gen2 is broken and can't address above 1G */ 525 if (GRAPHICS_VER(i915) == 2) 526 mask_size = 30; 527 528 /* 529 * 965GM sometimes incorrectly writes to hardware status page (HWS) 530 * using 32bit addressing, overwriting memory if HWS is located 531 * above 4GB. 532 * 533 * The documentation also mentions an issue with undefined 534 * behaviour if any general state is accessed within a page above 4GB, 535 * which also needs to be handled carefully. 536 */ 537 if (IS_I965G(i915) || IS_I965GM(i915)) 538 mask_size = 32; 539 540 ret = dma_set_coherent_mask(i915->drm.dev, DMA_BIT_MASK(mask_size)); 541 if (ret) 542 goto mask_err; 543 544 return 0; 545 546 mask_err: 547 drm_err(&i915->drm, "Can't set DMA mask/consistent mask (%d)\n", ret); 548 return ret; 549 } 550 551 static int i915_pcode_init(struct drm_i915_private *i915) 552 { 553 struct intel_gt *gt; 554 int id, ret; 555 556 for_each_gt(gt, i915, id) { 557 ret = intel_pcode_init(gt->uncore); 558 if (ret) { 559 drm_err(>->i915->drm, "gt%d: intel_pcode_init failed %d\n", id, ret); 560 return ret; 561 } 562 } 563 564 return 0; 565 } 566 567 /** 568 * i915_driver_hw_probe - setup state requiring device access 569 * @dev_priv: device private 570 * 571 * Setup state that requires accessing the device, but doesn't require 572 * exposing the driver via kernel internal or userspace interfaces. 573 */ 574 static int i915_driver_hw_probe(struct drm_i915_private *dev_priv) 575 { 576 struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev); 577 struct pci_dev *root_pdev; 578 int ret; 579 580 if (i915_inject_probe_failure(dev_priv)) 581 return -ENODEV; 582 583 if (HAS_PPGTT(dev_priv)) { 584 if (intel_vgpu_active(dev_priv) && 585 !intel_vgpu_has_full_ppgtt(dev_priv)) { 586 i915_report_error(dev_priv, 587 "incompatible vGPU found, support for isolated ppGTT required\n"); 588 return -ENXIO; 589 } 590 } 591 592 if (HAS_EXECLISTS(dev_priv)) { 593 /* 594 * Older GVT emulation depends upon intercepting CSB mmio, 595 * which we no longer use, preferring to use the HWSP cache 596 * instead. 597 */ 598 if (intel_vgpu_active(dev_priv) && 599 !intel_vgpu_has_hwsp_emulation(dev_priv)) { 600 i915_report_error(dev_priv, 601 "old vGPU host found, support for HWSP emulation required\n"); 602 return -ENXIO; 603 } 604 } 605 606 /* needs to be done before ggtt probe */ 607 intel_dram_edram_detect(dev_priv); 608 609 ret = i915_set_dma_info(dev_priv); 610 if (ret) 611 return ret; 612 613 i915_perf_init(dev_priv); 614 615 ret = intel_gt_assign_ggtt(to_gt(dev_priv)); 616 if (ret) 617 goto err_perf; 618 619 ret = i915_ggtt_probe_hw(dev_priv); 620 if (ret) 621 goto err_perf; 622 623 ret = drm_aperture_remove_conflicting_pci_framebuffers(pdev, dev_priv->drm.driver); 624 if (ret) 625 goto err_ggtt; 626 627 ret = i915_ggtt_init_hw(dev_priv); 628 if (ret) 629 goto err_ggtt; 630 631 ret = intel_memory_regions_hw_probe(dev_priv); 632 if (ret) 633 goto err_ggtt; 634 635 ret = intel_gt_tiles_init(dev_priv); 636 if (ret) 637 goto err_mem_regions; 638 639 ret = i915_ggtt_enable_hw(dev_priv); 640 if (ret) { 641 drm_err(&dev_priv->drm, "failed to enable GGTT\n"); 642 goto err_mem_regions; 643 } 644 645 pci_set_master(pdev); 646 647 /* On the 945G/GM, the chipset reports the MSI capability on the 648 * integrated graphics even though the support isn't actually there 649 * according to the published specs. It doesn't appear to function 650 * correctly in testing on 945G. 651 * This may be a side effect of MSI having been made available for PEG 652 * and the registers being closely associated. 653 * 654 * According to chipset errata, on the 965GM, MSI interrupts may 655 * be lost or delayed, and was defeatured. MSI interrupts seem to 656 * get lost on g4x as well, and interrupt delivery seems to stay 657 * properly dead afterwards. So we'll just disable them for all 658 * pre-gen5 chipsets. 659 * 660 * dp aux and gmbus irq on gen4 seems to be able to generate legacy 661 * interrupts even when in MSI mode. This results in spurious 662 * interrupt warnings if the legacy irq no. is shared with another 663 * device. The kernel then disables that interrupt source and so 664 * prevents the other device from working properly. 665 */ 666 if (GRAPHICS_VER(dev_priv) >= 5) { 667 if (pci_enable_msi(pdev) < 0) 668 drm_dbg(&dev_priv->drm, "can't enable MSI"); 669 } 670 671 ret = intel_gvt_init(dev_priv); 672 if (ret) 673 goto err_msi; 674 675 intel_opregion_setup(dev_priv); 676 677 ret = i915_pcode_init(dev_priv); 678 if (ret) 679 goto err_msi; 680 681 /* 682 * Fill the dram structure to get the system dram info. This will be 683 * used for memory latency calculation. 684 */ 685 intel_dram_detect(dev_priv); 686 687 intel_bw_init_hw(dev_priv); 688 689 /* 690 * FIXME: Temporary hammer to avoid freezing the machine on our DGFX 691 * This should be totally removed when we handle the pci states properly 692 * on runtime PM and on s2idle cases. 693 */ 694 root_pdev = pcie_find_root_port(pdev); 695 if (root_pdev) 696 pci_d3cold_disable(root_pdev); 697 698 return 0; 699 700 err_msi: 701 if (pdev->msi_enabled) 702 pci_disable_msi(pdev); 703 err_mem_regions: 704 intel_memory_regions_driver_release(dev_priv); 705 err_ggtt: 706 i915_ggtt_driver_release(dev_priv); 707 i915_gem_drain_freed_objects(dev_priv); 708 i915_ggtt_driver_late_release(dev_priv); 709 err_perf: 710 i915_perf_fini(dev_priv); 711 return ret; 712 } 713 714 /** 715 * i915_driver_hw_remove - cleanup the setup done in i915_driver_hw_probe() 716 * @dev_priv: device private 717 */ 718 static void i915_driver_hw_remove(struct drm_i915_private *dev_priv) 719 { 720 struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev); 721 struct pci_dev *root_pdev; 722 723 i915_perf_fini(dev_priv); 724 725 if (pdev->msi_enabled) 726 pci_disable_msi(pdev); 727 728 root_pdev = pcie_find_root_port(pdev); 729 if (root_pdev) 730 pci_d3cold_enable(root_pdev); 731 } 732 733 /** 734 * i915_driver_register - register the driver with the rest of the system 735 * @dev_priv: device private 736 * 737 * Perform any steps necessary to make the driver available via kernel 738 * internal or userspace interfaces. 739 */ 740 static void i915_driver_register(struct drm_i915_private *dev_priv) 741 { 742 struct drm_device *dev = &dev_priv->drm; 743 struct intel_gt *gt; 744 unsigned int i; 745 746 i915_gem_driver_register(dev_priv); 747 i915_pmu_register(dev_priv); 748 749 intel_vgpu_register(dev_priv); 750 751 /* Reveal our presence to userspace */ 752 if (drm_dev_register(dev, 0)) { 753 drm_err(&dev_priv->drm, 754 "Failed to register driver for userspace access!\n"); 755 return; 756 } 757 758 i915_debugfs_register(dev_priv); 759 i915_setup_sysfs(dev_priv); 760 761 /* Depends on sysfs having been initialized */ 762 i915_perf_register(dev_priv); 763 764 for_each_gt(gt, dev_priv, i) 765 intel_gt_driver_register(gt); 766 767 i915_hwmon_register(dev_priv); 768 769 intel_display_driver_register(dev_priv); 770 771 intel_power_domains_enable(dev_priv); 772 intel_runtime_pm_enable(&dev_priv->runtime_pm); 773 774 intel_register_dsm_handler(); 775 776 if (i915_switcheroo_register(dev_priv)) 777 drm_err(&dev_priv->drm, "Failed to register vga switcheroo!\n"); 778 } 779 780 /** 781 * i915_driver_unregister - cleanup the registration done in i915_driver_regiser() 782 * @dev_priv: device private 783 */ 784 static void i915_driver_unregister(struct drm_i915_private *dev_priv) 785 { 786 struct intel_gt *gt; 787 unsigned int i; 788 789 i915_switcheroo_unregister(dev_priv); 790 791 intel_unregister_dsm_handler(); 792 793 intel_runtime_pm_disable(&dev_priv->runtime_pm); 794 intel_power_domains_disable(dev_priv); 795 796 intel_display_driver_unregister(dev_priv); 797 798 for_each_gt(gt, dev_priv, i) 799 intel_gt_driver_unregister(gt); 800 801 i915_hwmon_unregister(dev_priv); 802 803 i915_perf_unregister(dev_priv); 804 i915_pmu_unregister(dev_priv); 805 806 i915_teardown_sysfs(dev_priv); 807 drm_dev_unplug(&dev_priv->drm); 808 809 i915_gem_driver_unregister(dev_priv); 810 } 811 812 void 813 i915_print_iommu_status(struct drm_i915_private *i915, struct drm_printer *p) 814 { 815 drm_printf(p, "iommu: %s\n", 816 str_enabled_disabled(i915_vtd_active(i915))); 817 } 818 819 static void i915_welcome_messages(struct drm_i915_private *dev_priv) 820 { 821 if (drm_debug_enabled(DRM_UT_DRIVER)) { 822 struct drm_printer p = drm_debug_printer("i915 device info:"); 823 struct intel_gt *gt; 824 unsigned int i; 825 826 drm_printf(&p, "pciid=0x%04x rev=0x%02x platform=%s (subplatform=0x%x) gen=%i\n", 827 INTEL_DEVID(dev_priv), 828 INTEL_REVID(dev_priv), 829 intel_platform_name(INTEL_INFO(dev_priv)->platform), 830 intel_subplatform(RUNTIME_INFO(dev_priv), 831 INTEL_INFO(dev_priv)->platform), 832 GRAPHICS_VER(dev_priv)); 833 834 intel_device_info_print(INTEL_INFO(dev_priv), 835 RUNTIME_INFO(dev_priv), &p); 836 i915_print_iommu_status(dev_priv, &p); 837 for_each_gt(gt, dev_priv, i) 838 intel_gt_info_print(>->info, &p); 839 } 840 841 if (IS_ENABLED(CONFIG_DRM_I915_DEBUG)) 842 drm_info(&dev_priv->drm, "DRM_I915_DEBUG enabled\n"); 843 if (IS_ENABLED(CONFIG_DRM_I915_DEBUG_GEM)) 844 drm_info(&dev_priv->drm, "DRM_I915_DEBUG_GEM enabled\n"); 845 if (IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)) 846 drm_info(&dev_priv->drm, 847 "DRM_I915_DEBUG_RUNTIME_PM enabled\n"); 848 } 849 850 static struct drm_i915_private * 851 i915_driver_create(struct pci_dev *pdev, const struct pci_device_id *ent) 852 { 853 const struct intel_device_info *match_info = 854 (struct intel_device_info *)ent->driver_data; 855 struct intel_device_info *device_info; 856 struct intel_runtime_info *runtime; 857 struct drm_i915_private *i915; 858 859 i915 = devm_drm_dev_alloc(&pdev->dev, &i915_drm_driver, 860 struct drm_i915_private, drm); 861 if (IS_ERR(i915)) 862 return i915; 863 864 pci_set_drvdata(pdev, i915); 865 866 /* Device parameters start as a copy of module parameters. */ 867 i915_params_copy(&i915->params, &i915_modparams); 868 869 /* Setup the write-once "constant" device info */ 870 device_info = mkwrite_device_info(i915); 871 memcpy(device_info, match_info, sizeof(*device_info)); 872 873 /* Initialize initial runtime info from static const data and pdev. */ 874 runtime = RUNTIME_INFO(i915); 875 memcpy(runtime, &INTEL_INFO(i915)->__runtime, sizeof(*runtime)); 876 runtime->device_id = pdev->device; 877 878 return i915; 879 } 880 881 /** 882 * i915_driver_probe - setup chip and create an initial config 883 * @pdev: PCI device 884 * @ent: matching PCI ID entry 885 * 886 * The driver probe routine has to do several things: 887 * - drive output discovery via intel_modeset_init() 888 * - initialize the memory manager 889 * - allocate initial config memory 890 * - setup the DRM framebuffer with the allocated memory 891 */ 892 int i915_driver_probe(struct pci_dev *pdev, const struct pci_device_id *ent) 893 { 894 struct drm_i915_private *i915; 895 int ret; 896 897 i915 = i915_driver_create(pdev, ent); 898 if (IS_ERR(i915)) 899 return PTR_ERR(i915); 900 901 /* Disable nuclear pageflip by default on pre-ILK */ 902 if (!i915->params.nuclear_pageflip && DISPLAY_VER(i915) < 5) 903 i915->drm.driver_features &= ~DRIVER_ATOMIC; 904 905 ret = pci_enable_device(pdev); 906 if (ret) 907 goto out_fini; 908 909 ret = i915_driver_early_probe(i915); 910 if (ret < 0) 911 goto out_pci_disable; 912 913 disable_rpm_wakeref_asserts(&i915->runtime_pm); 914 915 intel_vgpu_detect(i915); 916 917 ret = intel_gt_probe_all(i915); 918 if (ret < 0) 919 goto out_runtime_pm_put; 920 921 ret = i915_driver_mmio_probe(i915); 922 if (ret < 0) 923 goto out_tiles_cleanup; 924 925 ret = i915_driver_hw_probe(i915); 926 if (ret < 0) 927 goto out_cleanup_mmio; 928 929 ret = intel_modeset_init_noirq(i915); 930 if (ret < 0) 931 goto out_cleanup_hw; 932 933 ret = intel_irq_install(i915); 934 if (ret) 935 goto out_cleanup_modeset; 936 937 ret = intel_modeset_init_nogem(i915); 938 if (ret) 939 goto out_cleanup_irq; 940 941 ret = i915_gem_init(i915); 942 if (ret) 943 goto out_cleanup_modeset2; 944 945 ret = intel_modeset_init(i915); 946 if (ret) 947 goto out_cleanup_gem; 948 949 i915_driver_register(i915); 950 951 enable_rpm_wakeref_asserts(&i915->runtime_pm); 952 953 i915_welcome_messages(i915); 954 955 i915->do_release = true; 956 957 return 0; 958 959 out_cleanup_gem: 960 i915_gem_suspend(i915); 961 i915_gem_driver_remove(i915); 962 i915_gem_driver_release(i915); 963 out_cleanup_modeset2: 964 /* FIXME clean up the error path */ 965 intel_modeset_driver_remove(i915); 966 intel_irq_uninstall(i915); 967 intel_modeset_driver_remove_noirq(i915); 968 goto out_cleanup_modeset; 969 out_cleanup_irq: 970 intel_irq_uninstall(i915); 971 out_cleanup_modeset: 972 intel_modeset_driver_remove_nogem(i915); 973 out_cleanup_hw: 974 i915_driver_hw_remove(i915); 975 intel_memory_regions_driver_release(i915); 976 i915_ggtt_driver_release(i915); 977 i915_gem_drain_freed_objects(i915); 978 i915_ggtt_driver_late_release(i915); 979 out_cleanup_mmio: 980 i915_driver_mmio_release(i915); 981 out_tiles_cleanup: 982 intel_gt_release_all(i915); 983 out_runtime_pm_put: 984 enable_rpm_wakeref_asserts(&i915->runtime_pm); 985 i915_driver_late_release(i915); 986 out_pci_disable: 987 pci_disable_device(pdev); 988 out_fini: 989 i915_probe_error(i915, "Device initialization failed (%d)\n", ret); 990 return ret; 991 } 992 993 void i915_driver_remove(struct drm_i915_private *i915) 994 { 995 intel_wakeref_t wakeref; 996 997 wakeref = intel_runtime_pm_get(&i915->runtime_pm); 998 999 i915_driver_unregister(i915); 1000 1001 /* Flush any external code that still may be under the RCU lock */ 1002 synchronize_rcu(); 1003 1004 i915_gem_suspend(i915); 1005 1006 intel_gvt_driver_remove(i915); 1007 1008 intel_modeset_driver_remove(i915); 1009 1010 intel_irq_uninstall(i915); 1011 1012 intel_modeset_driver_remove_noirq(i915); 1013 1014 i915_reset_error_state(i915); 1015 i915_gem_driver_remove(i915); 1016 1017 intel_modeset_driver_remove_nogem(i915); 1018 1019 i915_driver_hw_remove(i915); 1020 1021 intel_runtime_pm_put(&i915->runtime_pm, wakeref); 1022 } 1023 1024 static void i915_driver_release(struct drm_device *dev) 1025 { 1026 struct drm_i915_private *dev_priv = to_i915(dev); 1027 struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; 1028 intel_wakeref_t wakeref; 1029 1030 if (!dev_priv->do_release) 1031 return; 1032 1033 wakeref = intel_runtime_pm_get(rpm); 1034 1035 i915_gem_driver_release(dev_priv); 1036 1037 intel_memory_regions_driver_release(dev_priv); 1038 i915_ggtt_driver_release(dev_priv); 1039 i915_gem_drain_freed_objects(dev_priv); 1040 i915_ggtt_driver_late_release(dev_priv); 1041 1042 i915_driver_mmio_release(dev_priv); 1043 1044 intel_runtime_pm_put(rpm, wakeref); 1045 1046 intel_runtime_pm_driver_release(rpm); 1047 1048 i915_driver_late_release(dev_priv); 1049 } 1050 1051 static int i915_driver_open(struct drm_device *dev, struct drm_file *file) 1052 { 1053 struct drm_i915_private *i915 = to_i915(dev); 1054 int ret; 1055 1056 ret = i915_gem_open(i915, file); 1057 if (ret) 1058 return ret; 1059 1060 return 0; 1061 } 1062 1063 /** 1064 * i915_driver_lastclose - clean up after all DRM clients have exited 1065 * @dev: DRM device 1066 * 1067 * Take care of cleaning up after all DRM clients have exited. In the 1068 * mode setting case, we want to restore the kernel's initial mode (just 1069 * in case the last client left us in a bad state). 1070 * 1071 * Additionally, in the non-mode setting case, we'll tear down the GTT 1072 * and DMA structures, since the kernel won't be using them, and clea 1073 * up any GEM state. 1074 */ 1075 static void i915_driver_lastclose(struct drm_device *dev) 1076 { 1077 struct drm_i915_private *i915 = to_i915(dev); 1078 1079 intel_fbdev_restore_mode(dev); 1080 1081 if (HAS_DISPLAY(i915)) 1082 vga_switcheroo_process_delayed_switch(); 1083 } 1084 1085 static void i915_driver_postclose(struct drm_device *dev, struct drm_file *file) 1086 { 1087 struct drm_i915_file_private *file_priv = file->driver_priv; 1088 1089 i915_gem_context_close(file); 1090 i915_drm_client_put(file_priv->client); 1091 1092 kfree_rcu(file_priv, rcu); 1093 1094 /* Catch up with all the deferred frees from "this" client */ 1095 i915_gem_flush_free_objects(to_i915(dev)); 1096 } 1097 1098 static void intel_suspend_encoders(struct drm_i915_private *dev_priv) 1099 { 1100 struct drm_device *dev = &dev_priv->drm; 1101 struct intel_encoder *encoder; 1102 1103 if (!HAS_DISPLAY(dev_priv)) 1104 return; 1105 1106 drm_modeset_lock_all(dev); 1107 for_each_intel_encoder(dev, encoder) 1108 if (encoder->suspend) 1109 encoder->suspend(encoder); 1110 drm_modeset_unlock_all(dev); 1111 } 1112 1113 static void intel_shutdown_encoders(struct drm_i915_private *dev_priv) 1114 { 1115 struct drm_device *dev = &dev_priv->drm; 1116 struct intel_encoder *encoder; 1117 1118 if (!HAS_DISPLAY(dev_priv)) 1119 return; 1120 1121 drm_modeset_lock_all(dev); 1122 for_each_intel_encoder(dev, encoder) 1123 if (encoder->shutdown) 1124 encoder->shutdown(encoder); 1125 drm_modeset_unlock_all(dev); 1126 } 1127 1128 void i915_driver_shutdown(struct drm_i915_private *i915) 1129 { 1130 disable_rpm_wakeref_asserts(&i915->runtime_pm); 1131 intel_runtime_pm_disable(&i915->runtime_pm); 1132 intel_power_domains_disable(i915); 1133 1134 if (HAS_DISPLAY(i915)) { 1135 drm_kms_helper_poll_disable(&i915->drm); 1136 1137 drm_atomic_helper_shutdown(&i915->drm); 1138 } 1139 1140 intel_dp_mst_suspend(i915); 1141 1142 intel_runtime_pm_disable_interrupts(i915); 1143 intel_hpd_cancel_work(i915); 1144 1145 intel_suspend_encoders(i915); 1146 intel_shutdown_encoders(i915); 1147 1148 intel_dmc_ucode_suspend(i915); 1149 1150 i915_gem_suspend(i915); 1151 1152 /* 1153 * The only requirement is to reboot with display DC states disabled, 1154 * for now leaving all display power wells in the INIT power domain 1155 * enabled. 1156 * 1157 * TODO: 1158 * - unify the pci_driver::shutdown sequence here with the 1159 * pci_driver.driver.pm.poweroff,poweroff_late sequence. 1160 * - unify the driver remove and system/runtime suspend sequences with 1161 * the above unified shutdown/poweroff sequence. 1162 */ 1163 intel_power_domains_driver_remove(i915); 1164 enable_rpm_wakeref_asserts(&i915->runtime_pm); 1165 1166 intel_runtime_pm_driver_release(&i915->runtime_pm); 1167 } 1168 1169 static bool suspend_to_idle(struct drm_i915_private *dev_priv) 1170 { 1171 #if IS_ENABLED(CONFIG_ACPI_SLEEP) 1172 if (acpi_target_system_state() < ACPI_STATE_S3) 1173 return true; 1174 #endif 1175 return false; 1176 } 1177 1178 static int i915_drm_prepare(struct drm_device *dev) 1179 { 1180 struct drm_i915_private *i915 = to_i915(dev); 1181 1182 /* 1183 * NB intel_display_suspend() may issue new requests after we've 1184 * ostensibly marked the GPU as ready-to-sleep here. We need to 1185 * split out that work and pull it forward so that after point, 1186 * the GPU is not woken again. 1187 */ 1188 return i915_gem_backup_suspend(i915); 1189 } 1190 1191 static int i915_drm_suspend(struct drm_device *dev) 1192 { 1193 struct drm_i915_private *dev_priv = to_i915(dev); 1194 struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev); 1195 pci_power_t opregion_target_state; 1196 1197 disable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1198 1199 /* We do a lot of poking in a lot of registers, make sure they work 1200 * properly. */ 1201 intel_power_domains_disable(dev_priv); 1202 if (HAS_DISPLAY(dev_priv)) 1203 drm_kms_helper_poll_disable(dev); 1204 1205 pci_save_state(pdev); 1206 1207 intel_display_suspend(dev); 1208 1209 intel_dp_mst_suspend(dev_priv); 1210 1211 intel_runtime_pm_disable_interrupts(dev_priv); 1212 intel_hpd_cancel_work(dev_priv); 1213 1214 intel_suspend_encoders(dev_priv); 1215 1216 intel_suspend_hw(dev_priv); 1217 1218 /* Must be called before GGTT is suspended. */ 1219 intel_dpt_suspend(dev_priv); 1220 i915_ggtt_suspend(to_gt(dev_priv)->ggtt); 1221 1222 i915_save_display(dev_priv); 1223 1224 opregion_target_state = suspend_to_idle(dev_priv) ? PCI_D1 : PCI_D3cold; 1225 intel_opregion_suspend(dev_priv, opregion_target_state); 1226 1227 intel_fbdev_set_suspend(dev, FBINFO_STATE_SUSPENDED, true); 1228 1229 dev_priv->suspend_count++; 1230 1231 intel_dmc_ucode_suspend(dev_priv); 1232 1233 enable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1234 1235 i915_gem_drain_freed_objects(dev_priv); 1236 1237 return 0; 1238 } 1239 1240 static enum i915_drm_suspend_mode 1241 get_suspend_mode(struct drm_i915_private *dev_priv, bool hibernate) 1242 { 1243 if (hibernate) 1244 return I915_DRM_SUSPEND_HIBERNATE; 1245 1246 if (suspend_to_idle(dev_priv)) 1247 return I915_DRM_SUSPEND_IDLE; 1248 1249 return I915_DRM_SUSPEND_MEM; 1250 } 1251 1252 static int i915_drm_suspend_late(struct drm_device *dev, bool hibernation) 1253 { 1254 struct drm_i915_private *dev_priv = to_i915(dev); 1255 struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev); 1256 struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; 1257 struct intel_gt *gt; 1258 int ret, i; 1259 1260 disable_rpm_wakeref_asserts(rpm); 1261 1262 i915_gem_suspend_late(dev_priv); 1263 1264 for_each_gt(gt, dev_priv, i) 1265 intel_uncore_suspend(gt->uncore); 1266 1267 intel_power_domains_suspend(dev_priv, 1268 get_suspend_mode(dev_priv, hibernation)); 1269 1270 intel_display_power_suspend_late(dev_priv); 1271 1272 ret = vlv_suspend_complete(dev_priv); 1273 if (ret) { 1274 drm_err(&dev_priv->drm, "Suspend complete failed: %d\n", ret); 1275 intel_power_domains_resume(dev_priv); 1276 1277 goto out; 1278 } 1279 1280 pci_disable_device(pdev); 1281 /* 1282 * During hibernation on some platforms the BIOS may try to access 1283 * the device even though it's already in D3 and hang the machine. So 1284 * leave the device in D0 on those platforms and hope the BIOS will 1285 * power down the device properly. The issue was seen on multiple old 1286 * GENs with different BIOS vendors, so having an explicit blacklist 1287 * is inpractical; apply the workaround on everything pre GEN6. The 1288 * platforms where the issue was seen: 1289 * Lenovo Thinkpad X301, X61s, X60, T60, X41 1290 * Fujitsu FSC S7110 1291 * Acer Aspire 1830T 1292 */ 1293 if (!(hibernation && GRAPHICS_VER(dev_priv) < 6)) 1294 pci_set_power_state(pdev, PCI_D3hot); 1295 1296 out: 1297 enable_rpm_wakeref_asserts(rpm); 1298 if (!dev_priv->uncore.user_forcewake_count) 1299 intel_runtime_pm_driver_release(rpm); 1300 1301 return ret; 1302 } 1303 1304 int i915_driver_suspend_switcheroo(struct drm_i915_private *i915, 1305 pm_message_t state) 1306 { 1307 int error; 1308 1309 if (drm_WARN_ON_ONCE(&i915->drm, state.event != PM_EVENT_SUSPEND && 1310 state.event != PM_EVENT_FREEZE)) 1311 return -EINVAL; 1312 1313 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1314 return 0; 1315 1316 error = i915_drm_suspend(&i915->drm); 1317 if (error) 1318 return error; 1319 1320 return i915_drm_suspend_late(&i915->drm, false); 1321 } 1322 1323 static int i915_drm_resume(struct drm_device *dev) 1324 { 1325 struct drm_i915_private *dev_priv = to_i915(dev); 1326 int ret; 1327 1328 disable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1329 1330 ret = i915_pcode_init(dev_priv); 1331 if (ret) 1332 return ret; 1333 1334 sanitize_gpu(dev_priv); 1335 1336 ret = i915_ggtt_enable_hw(dev_priv); 1337 if (ret) 1338 drm_err(&dev_priv->drm, "failed to re-enable GGTT\n"); 1339 1340 i915_ggtt_resume(to_gt(dev_priv)->ggtt); 1341 /* Must be called after GGTT is resumed. */ 1342 intel_dpt_resume(dev_priv); 1343 1344 intel_dmc_ucode_resume(dev_priv); 1345 1346 i915_restore_display(dev_priv); 1347 intel_pps_unlock_regs_wa(dev_priv); 1348 1349 intel_init_pch_refclk(dev_priv); 1350 1351 /* 1352 * Interrupts have to be enabled before any batches are run. If not the 1353 * GPU will hang. i915_gem_init_hw() will initiate batches to 1354 * update/restore the context. 1355 * 1356 * drm_mode_config_reset() needs AUX interrupts. 1357 * 1358 * Modeset enabling in intel_modeset_init_hw() also needs working 1359 * interrupts. 1360 */ 1361 intel_runtime_pm_enable_interrupts(dev_priv); 1362 1363 if (HAS_DISPLAY(dev_priv)) 1364 drm_mode_config_reset(dev); 1365 1366 i915_gem_resume(dev_priv); 1367 1368 intel_modeset_init_hw(dev_priv); 1369 intel_init_clock_gating(dev_priv); 1370 intel_hpd_init(dev_priv); 1371 1372 /* MST sideband requires HPD interrupts enabled */ 1373 intel_dp_mst_resume(dev_priv); 1374 intel_display_resume(dev); 1375 1376 intel_hpd_poll_disable(dev_priv); 1377 if (HAS_DISPLAY(dev_priv)) 1378 drm_kms_helper_poll_enable(dev); 1379 1380 intel_opregion_resume(dev_priv); 1381 1382 intel_fbdev_set_suspend(dev, FBINFO_STATE_RUNNING, false); 1383 1384 intel_power_domains_enable(dev_priv); 1385 1386 intel_gvt_resume(dev_priv); 1387 1388 enable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1389 1390 return 0; 1391 } 1392 1393 static int i915_drm_resume_early(struct drm_device *dev) 1394 { 1395 struct drm_i915_private *dev_priv = to_i915(dev); 1396 struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev); 1397 struct intel_gt *gt; 1398 int ret, i; 1399 1400 /* 1401 * We have a resume ordering issue with the snd-hda driver also 1402 * requiring our device to be power up. Due to the lack of a 1403 * parent/child relationship we currently solve this with an early 1404 * resume hook. 1405 * 1406 * FIXME: This should be solved with a special hdmi sink device or 1407 * similar so that power domains can be employed. 1408 */ 1409 1410 /* 1411 * Note that we need to set the power state explicitly, since we 1412 * powered off the device during freeze and the PCI core won't power 1413 * it back up for us during thaw. Powering off the device during 1414 * freeze is not a hard requirement though, and during the 1415 * suspend/resume phases the PCI core makes sure we get here with the 1416 * device powered on. So in case we change our freeze logic and keep 1417 * the device powered we can also remove the following set power state 1418 * call. 1419 */ 1420 ret = pci_set_power_state(pdev, PCI_D0); 1421 if (ret) { 1422 drm_err(&dev_priv->drm, 1423 "failed to set PCI D0 power state (%d)\n", ret); 1424 return ret; 1425 } 1426 1427 /* 1428 * Note that pci_enable_device() first enables any parent bridge 1429 * device and only then sets the power state for this device. The 1430 * bridge enabling is a nop though, since bridge devices are resumed 1431 * first. The order of enabling power and enabling the device is 1432 * imposed by the PCI core as described above, so here we preserve the 1433 * same order for the freeze/thaw phases. 1434 * 1435 * TODO: eventually we should remove pci_disable_device() / 1436 * pci_enable_enable_device() from suspend/resume. Due to how they 1437 * depend on the device enable refcount we can't anyway depend on them 1438 * disabling/enabling the device. 1439 */ 1440 if (pci_enable_device(pdev)) 1441 return -EIO; 1442 1443 pci_set_master(pdev); 1444 1445 disable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1446 1447 ret = vlv_resume_prepare(dev_priv, false); 1448 if (ret) 1449 drm_err(&dev_priv->drm, 1450 "Resume prepare failed: %d, continuing anyway\n", ret); 1451 1452 for_each_gt(gt, dev_priv, i) { 1453 intel_uncore_resume_early(gt->uncore); 1454 intel_gt_check_and_clear_faults(gt); 1455 } 1456 1457 intel_display_power_resume_early(dev_priv); 1458 1459 intel_power_domains_resume(dev_priv); 1460 1461 enable_rpm_wakeref_asserts(&dev_priv->runtime_pm); 1462 1463 return ret; 1464 } 1465 1466 int i915_driver_resume_switcheroo(struct drm_i915_private *i915) 1467 { 1468 int ret; 1469 1470 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1471 return 0; 1472 1473 ret = i915_drm_resume_early(&i915->drm); 1474 if (ret) 1475 return ret; 1476 1477 return i915_drm_resume(&i915->drm); 1478 } 1479 1480 static int i915_pm_prepare(struct device *kdev) 1481 { 1482 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1483 1484 if (!i915) { 1485 dev_err(kdev, "DRM not initialized, aborting suspend.\n"); 1486 return -ENODEV; 1487 } 1488 1489 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1490 return 0; 1491 1492 return i915_drm_prepare(&i915->drm); 1493 } 1494 1495 static int i915_pm_suspend(struct device *kdev) 1496 { 1497 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1498 1499 if (!i915) { 1500 dev_err(kdev, "DRM not initialized, aborting suspend.\n"); 1501 return -ENODEV; 1502 } 1503 1504 i915_ggtt_mark_pte_lost(i915, false); 1505 1506 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1507 return 0; 1508 1509 return i915_drm_suspend(&i915->drm); 1510 } 1511 1512 static int i915_pm_suspend_late(struct device *kdev) 1513 { 1514 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1515 1516 /* 1517 * We have a suspend ordering issue with the snd-hda driver also 1518 * requiring our device to be power up. Due to the lack of a 1519 * parent/child relationship we currently solve this with an late 1520 * suspend hook. 1521 * 1522 * FIXME: This should be solved with a special hdmi sink device or 1523 * similar so that power domains can be employed. 1524 */ 1525 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1526 return 0; 1527 1528 return i915_drm_suspend_late(&i915->drm, false); 1529 } 1530 1531 static int i915_pm_poweroff_late(struct device *kdev) 1532 { 1533 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1534 1535 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1536 return 0; 1537 1538 return i915_drm_suspend_late(&i915->drm, true); 1539 } 1540 1541 static int i915_pm_resume_early(struct device *kdev) 1542 { 1543 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1544 1545 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1546 return 0; 1547 1548 return i915_drm_resume_early(&i915->drm); 1549 } 1550 1551 static int i915_pm_resume(struct device *kdev) 1552 { 1553 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1554 1555 if (i915->drm.switch_power_state == DRM_SWITCH_POWER_OFF) 1556 return 0; 1557 1558 /* 1559 * If IRST is enabled, or if we can't detect whether it's enabled, 1560 * then we must assume we lost the GGTT page table entries, since 1561 * they are not retained if IRST decided to enter S4. 1562 */ 1563 if (!IS_ENABLED(CONFIG_ACPI) || acpi_dev_present(irst_name, NULL, -1)) 1564 i915_ggtt_mark_pte_lost(i915, true); 1565 1566 return i915_drm_resume(&i915->drm); 1567 } 1568 1569 /* freeze: before creating the hibernation_image */ 1570 static int i915_pm_freeze(struct device *kdev) 1571 { 1572 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1573 int ret; 1574 1575 if (i915->drm.switch_power_state != DRM_SWITCH_POWER_OFF) { 1576 ret = i915_drm_suspend(&i915->drm); 1577 if (ret) 1578 return ret; 1579 } 1580 1581 ret = i915_gem_freeze(i915); 1582 if (ret) 1583 return ret; 1584 1585 return 0; 1586 } 1587 1588 static int i915_pm_freeze_late(struct device *kdev) 1589 { 1590 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1591 int ret; 1592 1593 if (i915->drm.switch_power_state != DRM_SWITCH_POWER_OFF) { 1594 ret = i915_drm_suspend_late(&i915->drm, true); 1595 if (ret) 1596 return ret; 1597 } 1598 1599 ret = i915_gem_freeze_late(i915); 1600 if (ret) 1601 return ret; 1602 1603 return 0; 1604 } 1605 1606 /* thaw: called after creating the hibernation image, but before turning off. */ 1607 static int i915_pm_thaw_early(struct device *kdev) 1608 { 1609 return i915_pm_resume_early(kdev); 1610 } 1611 1612 static int i915_pm_thaw(struct device *kdev) 1613 { 1614 return i915_pm_resume(kdev); 1615 } 1616 1617 /* restore: called after loading the hibernation image. */ 1618 static int i915_pm_restore_early(struct device *kdev) 1619 { 1620 return i915_pm_resume_early(kdev); 1621 } 1622 1623 static int i915_pm_restore(struct device *kdev) 1624 { 1625 struct drm_i915_private *i915 = kdev_to_i915(kdev); 1626 1627 i915_ggtt_mark_pte_lost(i915, true); 1628 return i915_pm_resume(kdev); 1629 } 1630 1631 static int intel_runtime_suspend(struct device *kdev) 1632 { 1633 struct drm_i915_private *dev_priv = kdev_to_i915(kdev); 1634 struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; 1635 struct intel_gt *gt; 1636 int ret, i; 1637 1638 if (drm_WARN_ON_ONCE(&dev_priv->drm, !HAS_RUNTIME_PM(dev_priv))) 1639 return -ENODEV; 1640 1641 drm_dbg(&dev_priv->drm, "Suspending device\n"); 1642 1643 disable_rpm_wakeref_asserts(rpm); 1644 1645 /* 1646 * We are safe here against re-faults, since the fault handler takes 1647 * an RPM reference. 1648 */ 1649 i915_gem_runtime_suspend(dev_priv); 1650 1651 for_each_gt(gt, dev_priv, i) 1652 intel_gt_runtime_suspend(gt); 1653 1654 intel_runtime_pm_disable_interrupts(dev_priv); 1655 1656 for_each_gt(gt, dev_priv, i) 1657 intel_uncore_suspend(gt->uncore); 1658 1659 intel_display_power_suspend(dev_priv); 1660 1661 ret = vlv_suspend_complete(dev_priv); 1662 if (ret) { 1663 drm_err(&dev_priv->drm, 1664 "Runtime suspend failed, disabling it (%d)\n", ret); 1665 intel_uncore_runtime_resume(&dev_priv->uncore); 1666 1667 intel_runtime_pm_enable_interrupts(dev_priv); 1668 1669 for_each_gt(gt, dev_priv, i) 1670 intel_gt_runtime_resume(gt); 1671 1672 enable_rpm_wakeref_asserts(rpm); 1673 1674 return ret; 1675 } 1676 1677 enable_rpm_wakeref_asserts(rpm); 1678 intel_runtime_pm_driver_release(rpm); 1679 1680 if (intel_uncore_arm_unclaimed_mmio_detection(&dev_priv->uncore)) 1681 drm_err(&dev_priv->drm, 1682 "Unclaimed access detected prior to suspending\n"); 1683 1684 rpm->suspended = true; 1685 1686 /* 1687 * FIXME: We really should find a document that references the arguments 1688 * used below! 1689 */ 1690 if (IS_BROADWELL(dev_priv)) { 1691 /* 1692 * On Broadwell, if we use PCI_D1 the PCH DDI ports will stop 1693 * being detected, and the call we do at intel_runtime_resume() 1694 * won't be able to restore them. Since PCI_D3hot matches the 1695 * actual specification and appears to be working, use it. 1696 */ 1697 intel_opregion_notify_adapter(dev_priv, PCI_D3hot); 1698 } else { 1699 /* 1700 * current versions of firmware which depend on this opregion 1701 * notification have repurposed the D1 definition to mean 1702 * "runtime suspended" vs. what you would normally expect (D3) 1703 * to distinguish it from notifications that might be sent via 1704 * the suspend path. 1705 */ 1706 intel_opregion_notify_adapter(dev_priv, PCI_D1); 1707 } 1708 1709 assert_forcewakes_inactive(&dev_priv->uncore); 1710 1711 if (!IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv)) 1712 intel_hpd_poll_enable(dev_priv); 1713 1714 drm_dbg(&dev_priv->drm, "Device suspended\n"); 1715 return 0; 1716 } 1717 1718 static int intel_runtime_resume(struct device *kdev) 1719 { 1720 struct drm_i915_private *dev_priv = kdev_to_i915(kdev); 1721 struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; 1722 struct intel_gt *gt; 1723 int ret, i; 1724 1725 if (drm_WARN_ON_ONCE(&dev_priv->drm, !HAS_RUNTIME_PM(dev_priv))) 1726 return -ENODEV; 1727 1728 drm_dbg(&dev_priv->drm, "Resuming device\n"); 1729 1730 drm_WARN_ON_ONCE(&dev_priv->drm, atomic_read(&rpm->wakeref_count)); 1731 disable_rpm_wakeref_asserts(rpm); 1732 1733 intel_opregion_notify_adapter(dev_priv, PCI_D0); 1734 rpm->suspended = false; 1735 if (intel_uncore_unclaimed_mmio(&dev_priv->uncore)) 1736 drm_dbg(&dev_priv->drm, 1737 "Unclaimed access during suspend, bios?\n"); 1738 1739 intel_display_power_resume(dev_priv); 1740 1741 ret = vlv_resume_prepare(dev_priv, true); 1742 1743 for_each_gt(gt, dev_priv, i) 1744 intel_uncore_runtime_resume(gt->uncore); 1745 1746 intel_runtime_pm_enable_interrupts(dev_priv); 1747 1748 /* 1749 * No point of rolling back things in case of an error, as the best 1750 * we can do is to hope that things will still work (and disable RPM). 1751 */ 1752 for_each_gt(gt, dev_priv, i) 1753 intel_gt_runtime_resume(gt); 1754 1755 /* 1756 * On VLV/CHV display interrupts are part of the display 1757 * power well, so hpd is reinitialized from there. For 1758 * everyone else do it here. 1759 */ 1760 if (!IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv)) { 1761 intel_hpd_init(dev_priv); 1762 intel_hpd_poll_disable(dev_priv); 1763 } 1764 1765 skl_watermark_ipc_update(dev_priv); 1766 1767 enable_rpm_wakeref_asserts(rpm); 1768 1769 if (ret) 1770 drm_err(&dev_priv->drm, 1771 "Runtime resume failed, disabling it (%d)\n", ret); 1772 else 1773 drm_dbg(&dev_priv->drm, "Device resumed\n"); 1774 1775 return ret; 1776 } 1777 1778 const struct dev_pm_ops i915_pm_ops = { 1779 /* 1780 * S0ix (via system suspend) and S3 event handlers [PMSG_SUSPEND, 1781 * PMSG_RESUME] 1782 */ 1783 .prepare = i915_pm_prepare, 1784 .suspend = i915_pm_suspend, 1785 .suspend_late = i915_pm_suspend_late, 1786 .resume_early = i915_pm_resume_early, 1787 .resume = i915_pm_resume, 1788 1789 /* 1790 * S4 event handlers 1791 * @freeze, @freeze_late : called (1) before creating the 1792 * hibernation image [PMSG_FREEZE] and 1793 * (2) after rebooting, before restoring 1794 * the image [PMSG_QUIESCE] 1795 * @thaw, @thaw_early : called (1) after creating the hibernation 1796 * image, before writing it [PMSG_THAW] 1797 * and (2) after failing to create or 1798 * restore the image [PMSG_RECOVER] 1799 * @poweroff, @poweroff_late: called after writing the hibernation 1800 * image, before rebooting [PMSG_HIBERNATE] 1801 * @restore, @restore_early : called after rebooting and restoring the 1802 * hibernation image [PMSG_RESTORE] 1803 */ 1804 .freeze = i915_pm_freeze, 1805 .freeze_late = i915_pm_freeze_late, 1806 .thaw_early = i915_pm_thaw_early, 1807 .thaw = i915_pm_thaw, 1808 .poweroff = i915_pm_suspend, 1809 .poweroff_late = i915_pm_poweroff_late, 1810 .restore_early = i915_pm_restore_early, 1811 .restore = i915_pm_restore, 1812 1813 /* S0ix (via runtime suspend) event handlers */ 1814 .runtime_suspend = intel_runtime_suspend, 1815 .runtime_resume = intel_runtime_resume, 1816 }; 1817 1818 static const struct file_operations i915_driver_fops = { 1819 .owner = THIS_MODULE, 1820 .open = drm_open, 1821 .release = drm_release_noglobal, 1822 .unlocked_ioctl = drm_ioctl, 1823 .mmap = i915_gem_mmap, 1824 .poll = drm_poll, 1825 .read = drm_read, 1826 .compat_ioctl = i915_ioc32_compat_ioctl, 1827 .llseek = noop_llseek, 1828 #ifdef CONFIG_PROC_FS 1829 .show_fdinfo = i915_drm_client_fdinfo, 1830 #endif 1831 }; 1832 1833 static int 1834 i915_gem_reject_pin_ioctl(struct drm_device *dev, void *data, 1835 struct drm_file *file) 1836 { 1837 return -ENODEV; 1838 } 1839 1840 static const struct drm_ioctl_desc i915_ioctls[] = { 1841 DRM_IOCTL_DEF_DRV(I915_INIT, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1842 DRM_IOCTL_DEF_DRV(I915_FLUSH, drm_noop, DRM_AUTH), 1843 DRM_IOCTL_DEF_DRV(I915_FLIP, drm_noop, DRM_AUTH), 1844 DRM_IOCTL_DEF_DRV(I915_BATCHBUFFER, drm_noop, DRM_AUTH), 1845 DRM_IOCTL_DEF_DRV(I915_IRQ_EMIT, drm_noop, DRM_AUTH), 1846 DRM_IOCTL_DEF_DRV(I915_IRQ_WAIT, drm_noop, DRM_AUTH), 1847 DRM_IOCTL_DEF_DRV(I915_GETPARAM, i915_getparam_ioctl, DRM_RENDER_ALLOW), 1848 DRM_IOCTL_DEF_DRV(I915_SETPARAM, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1849 DRM_IOCTL_DEF_DRV(I915_ALLOC, drm_noop, DRM_AUTH), 1850 DRM_IOCTL_DEF_DRV(I915_FREE, drm_noop, DRM_AUTH), 1851 DRM_IOCTL_DEF_DRV(I915_INIT_HEAP, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1852 DRM_IOCTL_DEF_DRV(I915_CMDBUFFER, drm_noop, DRM_AUTH), 1853 DRM_IOCTL_DEF_DRV(I915_DESTROY_HEAP, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1854 DRM_IOCTL_DEF_DRV(I915_SET_VBLANK_PIPE, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1855 DRM_IOCTL_DEF_DRV(I915_GET_VBLANK_PIPE, drm_noop, DRM_AUTH), 1856 DRM_IOCTL_DEF_DRV(I915_VBLANK_SWAP, drm_noop, DRM_AUTH), 1857 DRM_IOCTL_DEF_DRV(I915_HWS_ADDR, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1858 DRM_IOCTL_DEF_DRV(I915_GEM_INIT, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1859 DRM_IOCTL_DEF_DRV(I915_GEM_EXECBUFFER, drm_invalid_op, DRM_AUTH), 1860 DRM_IOCTL_DEF_DRV(I915_GEM_EXECBUFFER2_WR, i915_gem_execbuffer2_ioctl, DRM_RENDER_ALLOW), 1861 DRM_IOCTL_DEF_DRV(I915_GEM_PIN, i915_gem_reject_pin_ioctl, DRM_AUTH|DRM_ROOT_ONLY), 1862 DRM_IOCTL_DEF_DRV(I915_GEM_UNPIN, i915_gem_reject_pin_ioctl, DRM_AUTH|DRM_ROOT_ONLY), 1863 DRM_IOCTL_DEF_DRV(I915_GEM_BUSY, i915_gem_busy_ioctl, DRM_RENDER_ALLOW), 1864 DRM_IOCTL_DEF_DRV(I915_GEM_SET_CACHING, i915_gem_set_caching_ioctl, DRM_RENDER_ALLOW), 1865 DRM_IOCTL_DEF_DRV(I915_GEM_GET_CACHING, i915_gem_get_caching_ioctl, DRM_RENDER_ALLOW), 1866 DRM_IOCTL_DEF_DRV(I915_GEM_THROTTLE, i915_gem_throttle_ioctl, DRM_RENDER_ALLOW), 1867 DRM_IOCTL_DEF_DRV(I915_GEM_ENTERVT, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1868 DRM_IOCTL_DEF_DRV(I915_GEM_LEAVEVT, drm_noop, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY), 1869 DRM_IOCTL_DEF_DRV(I915_GEM_CREATE, i915_gem_create_ioctl, DRM_RENDER_ALLOW), 1870 DRM_IOCTL_DEF_DRV(I915_GEM_CREATE_EXT, i915_gem_create_ext_ioctl, DRM_RENDER_ALLOW), 1871 DRM_IOCTL_DEF_DRV(I915_GEM_PREAD, i915_gem_pread_ioctl, DRM_RENDER_ALLOW), 1872 DRM_IOCTL_DEF_DRV(I915_GEM_PWRITE, i915_gem_pwrite_ioctl, DRM_RENDER_ALLOW), 1873 DRM_IOCTL_DEF_DRV(I915_GEM_MMAP, i915_gem_mmap_ioctl, DRM_RENDER_ALLOW), 1874 DRM_IOCTL_DEF_DRV(I915_GEM_MMAP_OFFSET, i915_gem_mmap_offset_ioctl, DRM_RENDER_ALLOW), 1875 DRM_IOCTL_DEF_DRV(I915_GEM_SET_DOMAIN, i915_gem_set_domain_ioctl, DRM_RENDER_ALLOW), 1876 DRM_IOCTL_DEF_DRV(I915_GEM_SW_FINISH, i915_gem_sw_finish_ioctl, DRM_RENDER_ALLOW), 1877 DRM_IOCTL_DEF_DRV(I915_GEM_SET_TILING, i915_gem_set_tiling_ioctl, DRM_RENDER_ALLOW), 1878 DRM_IOCTL_DEF_DRV(I915_GEM_GET_TILING, i915_gem_get_tiling_ioctl, DRM_RENDER_ALLOW), 1879 DRM_IOCTL_DEF_DRV(I915_GEM_GET_APERTURE, i915_gem_get_aperture_ioctl, DRM_RENDER_ALLOW), 1880 DRM_IOCTL_DEF_DRV(I915_GET_PIPE_FROM_CRTC_ID, intel_get_pipe_from_crtc_id_ioctl, 0), 1881 DRM_IOCTL_DEF_DRV(I915_GEM_MADVISE, i915_gem_madvise_ioctl, DRM_RENDER_ALLOW), 1882 DRM_IOCTL_DEF_DRV(I915_OVERLAY_PUT_IMAGE, intel_overlay_put_image_ioctl, DRM_MASTER), 1883 DRM_IOCTL_DEF_DRV(I915_OVERLAY_ATTRS, intel_overlay_attrs_ioctl, DRM_MASTER), 1884 DRM_IOCTL_DEF_DRV(I915_SET_SPRITE_COLORKEY, intel_sprite_set_colorkey_ioctl, DRM_MASTER), 1885 DRM_IOCTL_DEF_DRV(I915_GET_SPRITE_COLORKEY, drm_noop, DRM_MASTER), 1886 DRM_IOCTL_DEF_DRV(I915_GEM_WAIT, i915_gem_wait_ioctl, DRM_RENDER_ALLOW), 1887 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_CREATE_EXT, i915_gem_context_create_ioctl, DRM_RENDER_ALLOW), 1888 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_DESTROY, i915_gem_context_destroy_ioctl, DRM_RENDER_ALLOW), 1889 DRM_IOCTL_DEF_DRV(I915_REG_READ, i915_reg_read_ioctl, DRM_RENDER_ALLOW), 1890 DRM_IOCTL_DEF_DRV(I915_GET_RESET_STATS, i915_gem_context_reset_stats_ioctl, DRM_RENDER_ALLOW), 1891 DRM_IOCTL_DEF_DRV(I915_GEM_USERPTR, i915_gem_userptr_ioctl, DRM_RENDER_ALLOW), 1892 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_GETPARAM, i915_gem_context_getparam_ioctl, DRM_RENDER_ALLOW), 1893 DRM_IOCTL_DEF_DRV(I915_GEM_CONTEXT_SETPARAM, i915_gem_context_setparam_ioctl, DRM_RENDER_ALLOW), 1894 DRM_IOCTL_DEF_DRV(I915_PERF_OPEN, i915_perf_open_ioctl, DRM_RENDER_ALLOW), 1895 DRM_IOCTL_DEF_DRV(I915_PERF_ADD_CONFIG, i915_perf_add_config_ioctl, DRM_RENDER_ALLOW), 1896 DRM_IOCTL_DEF_DRV(I915_PERF_REMOVE_CONFIG, i915_perf_remove_config_ioctl, DRM_RENDER_ALLOW), 1897 DRM_IOCTL_DEF_DRV(I915_QUERY, i915_query_ioctl, DRM_RENDER_ALLOW), 1898 DRM_IOCTL_DEF_DRV(I915_GEM_VM_CREATE, i915_gem_vm_create_ioctl, DRM_RENDER_ALLOW), 1899 DRM_IOCTL_DEF_DRV(I915_GEM_VM_DESTROY, i915_gem_vm_destroy_ioctl, DRM_RENDER_ALLOW), 1900 }; 1901 1902 /* 1903 * Interface history: 1904 * 1905 * 1.1: Original. 1906 * 1.2: Add Power Management 1907 * 1.3: Add vblank support 1908 * 1.4: Fix cmdbuffer path, add heap destroy 1909 * 1.5: Add vblank pipe configuration 1910 * 1.6: - New ioctl for scheduling buffer swaps on vertical blank 1911 * - Support vertical blank on secondary display pipe 1912 */ 1913 #define DRIVER_MAJOR 1 1914 #define DRIVER_MINOR 6 1915 #define DRIVER_PATCHLEVEL 0 1916 1917 static const struct drm_driver i915_drm_driver = { 1918 /* Don't use MTRRs here; the Xserver or userspace app should 1919 * deal with them for Intel hardware. 1920 */ 1921 .driver_features = 1922 DRIVER_GEM | 1923 DRIVER_RENDER | DRIVER_MODESET | DRIVER_ATOMIC | DRIVER_SYNCOBJ | 1924 DRIVER_SYNCOBJ_TIMELINE, 1925 .release = i915_driver_release, 1926 .open = i915_driver_open, 1927 .lastclose = i915_driver_lastclose, 1928 .postclose = i915_driver_postclose, 1929 1930 .prime_handle_to_fd = drm_gem_prime_handle_to_fd, 1931 .prime_fd_to_handle = drm_gem_prime_fd_to_handle, 1932 .gem_prime_import = i915_gem_prime_import, 1933 1934 .dumb_create = i915_gem_dumb_create, 1935 .dumb_map_offset = i915_gem_dumb_mmap_offset, 1936 1937 .ioctls = i915_ioctls, 1938 .num_ioctls = ARRAY_SIZE(i915_ioctls), 1939 .fops = &i915_driver_fops, 1940 .name = DRIVER_NAME, 1941 .desc = DRIVER_DESC, 1942 .date = DRIVER_DATE, 1943 .major = DRIVER_MAJOR, 1944 .minor = DRIVER_MINOR, 1945 .patchlevel = DRIVER_PATCHLEVEL, 1946 }; 1947