1 /* 2 * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas. 3 * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California. 4 * Copyright (c) 2009-2010, Code Aurora Forum. 5 * Copyright 2016 Intel Corp. 6 * 7 * Permission is hereby granted, free of charge, to any person obtaining a 8 * copy of this software and associated documentation files (the "Software"), 9 * to deal in the Software without restriction, including without limitation 10 * the rights to use, copy, modify, merge, publish, distribute, sublicense, 11 * and/or sell copies of the Software, and to permit persons to whom the 12 * Software is furnished to do so, subject to the following conditions: 13 * 14 * The above copyright notice and this permission notice (including the next 15 * paragraph) shall be included in all copies or substantial portions of the 16 * Software. 17 * 18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 19 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 21 * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR 22 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 23 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 24 * OTHER DEALINGS IN THE SOFTWARE. 25 */ 26 27 #ifndef _DRM_DRV_H_ 28 #define _DRM_DRV_H_ 29 30 #include <linux/list.h> 31 #include <linux/irqreturn.h> 32 33 struct drm_device; 34 struct drm_file; 35 struct drm_gem_object; 36 struct drm_master; 37 struct drm_minor; 38 struct dma_buf_attachment; 39 struct drm_display_mode; 40 struct drm_mode_create_dumb; 41 42 /* driver capabilities and requirements mask */ 43 #define DRIVER_USE_AGP 0x1 44 #define DRIVER_LEGACY 0x2 45 #define DRIVER_PCI_DMA 0x8 46 #define DRIVER_SG 0x10 47 #define DRIVER_HAVE_DMA 0x20 48 #define DRIVER_HAVE_IRQ 0x40 49 #define DRIVER_IRQ_SHARED 0x80 50 #define DRIVER_GEM 0x1000 51 #define DRIVER_MODESET 0x2000 52 #define DRIVER_PRIME 0x4000 53 #define DRIVER_RENDER 0x8000 54 #define DRIVER_ATOMIC 0x10000 55 #define DRIVER_KMS_LEGACY_CONTEXT 0x20000 56 #define DRIVER_SYNCOBJ 0x40000 57 58 /** 59 * struct drm_driver - DRM driver structure 60 * 61 * This structure represent the common code for a family of cards. There will 62 * one drm_device for each card present in this family. It contains lots of 63 * vfunc entries, and a pile of those probably should be moved to more 64 * appropriate places like &drm_mode_config_funcs or into a new operations 65 * structure for GEM drivers. 66 */ 67 struct drm_driver { 68 /** 69 * @load: 70 * 71 * Backward-compatible driver callback to complete 72 * initialization steps after the driver is registered. For 73 * this reason, may suffer from race conditions and its use is 74 * deprecated for new drivers. It is therefore only supported 75 * for existing drivers not yet converted to the new scheme. 76 * See drm_dev_init() and drm_dev_register() for proper and 77 * race-free way to set up a &struct drm_device. 78 * 79 * This is deprecated, do not use! 80 * 81 * Returns: 82 * 83 * Zero on success, non-zero value on failure. 84 */ 85 int (*load) (struct drm_device *, unsigned long flags); 86 87 /** 88 * @open: 89 * 90 * Driver callback when a new &struct drm_file is opened. Useful for 91 * setting up driver-private data structures like buffer allocators, 92 * execution contexts or similar things. Such driver-private resources 93 * must be released again in @postclose. 94 * 95 * Since the display/modeset side of DRM can only be owned by exactly 96 * one &struct drm_file (see &drm_file.is_master and &drm_device.master) 97 * there should never be a need to set up any modeset related resources 98 * in this callback. Doing so would be a driver design bug. 99 * 100 * Returns: 101 * 102 * 0 on success, a negative error code on failure, which will be 103 * promoted to userspace as the result of the open() system call. 104 */ 105 int (*open) (struct drm_device *, struct drm_file *); 106 107 /** 108 * @postclose: 109 * 110 * One of the driver callbacks when a new &struct drm_file is closed. 111 * Useful for tearing down driver-private data structures allocated in 112 * @open like buffer allocators, execution contexts or similar things. 113 * 114 * Since the display/modeset side of DRM can only be owned by exactly 115 * one &struct drm_file (see &drm_file.is_master and &drm_device.master) 116 * there should never be a need to tear down any modeset related 117 * resources in this callback. Doing so would be a driver design bug. 118 */ 119 void (*postclose) (struct drm_device *, struct drm_file *); 120 121 /** 122 * @lastclose: 123 * 124 * Called when the last &struct drm_file has been closed and there's 125 * currently no userspace client for the &struct drm_device. 126 * 127 * Modern drivers should only use this to force-restore the fbdev 128 * framebuffer using drm_fb_helper_restore_fbdev_mode_unlocked(). 129 * Anything else would indicate there's something seriously wrong. 130 * Modern drivers can also use this to execute delayed power switching 131 * state changes, e.g. in conjunction with the :ref:`vga_switcheroo` 132 * infrastructure. 133 * 134 * This is called after @postclose hook has been called. 135 * 136 * NOTE: 137 * 138 * All legacy drivers use this callback to de-initialize the hardware. 139 * This is purely because of the shadow-attach model, where the DRM 140 * kernel driver does not really own the hardware. Instead ownershipe is 141 * handled with the help of userspace through an inheritedly racy dance 142 * to set/unset the VT into raw mode. 143 * 144 * Legacy drivers initialize the hardware in the @firstopen callback, 145 * which isn't even called for modern drivers. 146 */ 147 void (*lastclose) (struct drm_device *); 148 149 /** 150 * @unload: 151 * 152 * Reverse the effects of the driver load callback. Ideally, 153 * the clean up performed by the driver should happen in the 154 * reverse order of the initialization. Similarly to the load 155 * hook, this handler is deprecated and its usage should be 156 * dropped in favor of an open-coded teardown function at the 157 * driver layer. See drm_dev_unregister() and drm_dev_unref() 158 * for the proper way to remove a &struct drm_device. 159 * 160 * The unload() hook is called right after unregistering 161 * the device. 162 * 163 */ 164 void (*unload) (struct drm_device *); 165 166 /** 167 * @release: 168 * 169 * Optional callback for destroying device data after the final 170 * reference is released, i.e. the device is being destroyed. Drivers 171 * using this callback are responsible for calling drm_dev_fini() 172 * to finalize the device and then freeing the struct themselves. 173 */ 174 void (*release) (struct drm_device *); 175 176 int (*set_busid)(struct drm_device *dev, struct drm_master *master); 177 178 /** 179 * @get_vblank_counter: 180 * 181 * Driver callback for fetching a raw hardware vblank counter for the 182 * CRTC specified with the pipe argument. If a device doesn't have a 183 * hardware counter, the driver can simply leave the hook as NULL. 184 * The DRM core will account for missed vblank events while interrupts 185 * where disabled based on system timestamps. 186 * 187 * Wraparound handling and loss of events due to modesetting is dealt 188 * with in the DRM core code, as long as drivers call 189 * drm_crtc_vblank_off() and drm_crtc_vblank_on() when disabling or 190 * enabling a CRTC. 191 * 192 * This is deprecated and should not be used by new drivers. 193 * Use &drm_crtc_funcs.get_vblank_counter instead. 194 * 195 * Returns: 196 * 197 * Raw vblank counter value. 198 */ 199 u32 (*get_vblank_counter) (struct drm_device *dev, unsigned int pipe); 200 201 /** 202 * @enable_vblank: 203 * 204 * Enable vblank interrupts for the CRTC specified with the pipe 205 * argument. 206 * 207 * This is deprecated and should not be used by new drivers. 208 * Use &drm_crtc_funcs.enable_vblank instead. 209 * 210 * Returns: 211 * 212 * Zero on success, appropriate errno if the given @crtc's vblank 213 * interrupt cannot be enabled. 214 */ 215 int (*enable_vblank) (struct drm_device *dev, unsigned int pipe); 216 217 /** 218 * @disable_vblank: 219 * 220 * Disable vblank interrupts for the CRTC specified with the pipe 221 * argument. 222 * 223 * This is deprecated and should not be used by new drivers. 224 * Use &drm_crtc_funcs.disable_vblank instead. 225 */ 226 void (*disable_vblank) (struct drm_device *dev, unsigned int pipe); 227 228 /** 229 * @get_scanout_position: 230 * 231 * Called by vblank timestamping code. 232 * 233 * Returns the current display scanout position from a crtc, and an 234 * optional accurate ktime_get() timestamp of when position was 235 * measured. Note that this is a helper callback which is only used if a 236 * driver uses drm_calc_vbltimestamp_from_scanoutpos() for the 237 * @get_vblank_timestamp callback. 238 * 239 * Parameters: 240 * 241 * dev: 242 * DRM device. 243 * pipe: 244 * Id of the crtc to query. 245 * in_vblank_irq: 246 * True when called from drm_crtc_handle_vblank(). Some drivers 247 * need to apply some workarounds for gpu-specific vblank irq quirks 248 * if flag is set. 249 * vpos: 250 * Target location for current vertical scanout position. 251 * hpos: 252 * Target location for current horizontal scanout position. 253 * stime: 254 * Target location for timestamp taken immediately before 255 * scanout position query. Can be NULL to skip timestamp. 256 * etime: 257 * Target location for timestamp taken immediately after 258 * scanout position query. Can be NULL to skip timestamp. 259 * mode: 260 * Current display timings. 261 * 262 * Returns vpos as a positive number while in active scanout area. 263 * Returns vpos as a negative number inside vblank, counting the number 264 * of scanlines to go until end of vblank, e.g., -1 means "one scanline 265 * until start of active scanout / end of vblank." 266 * 267 * Returns: 268 * 269 * True on success, false if a reliable scanout position counter could 270 * not be read out. 271 * 272 * FIXME: 273 * 274 * Since this is a helper to implement @get_vblank_timestamp, we should 275 * move it to &struct drm_crtc_helper_funcs, like all the other 276 * helper-internal hooks. 277 */ 278 bool (*get_scanout_position) (struct drm_device *dev, unsigned int pipe, 279 bool in_vblank_irq, int *vpos, int *hpos, 280 ktime_t *stime, ktime_t *etime, 281 const struct drm_display_mode *mode); 282 283 /** 284 * @get_vblank_timestamp: 285 * 286 * Called by drm_get_last_vbltimestamp(). Should return a precise 287 * timestamp when the most recent VBLANK interval ended or will end. 288 * 289 * Specifically, the timestamp in @vblank_time should correspond as 290 * closely as possible to the time when the first video scanline of 291 * the video frame after the end of VBLANK will start scanning out, 292 * the time immediately after end of the VBLANK interval. If the 293 * @crtc is currently inside VBLANK, this will be a time in the future. 294 * If the @crtc is currently scanning out a frame, this will be the 295 * past start time of the current scanout. This is meant to adhere 296 * to the OpenML OML_sync_control extension specification. 297 * 298 * Paramters: 299 * 300 * dev: 301 * dev DRM device handle. 302 * pipe: 303 * crtc for which timestamp should be returned. 304 * max_error: 305 * Maximum allowable timestamp error in nanoseconds. 306 * Implementation should strive to provide timestamp 307 * with an error of at most max_error nanoseconds. 308 * Returns true upper bound on error for timestamp. 309 * vblank_time: 310 * Target location for returned vblank timestamp. 311 * in_vblank_irq: 312 * True when called from drm_crtc_handle_vblank(). Some drivers 313 * need to apply some workarounds for gpu-specific vblank irq quirks 314 * if flag is set. 315 * 316 * Returns: 317 * 318 * True on success, false on failure, which means the core should 319 * fallback to a simple timestamp taken in drm_crtc_handle_vblank(). 320 * 321 * FIXME: 322 * 323 * We should move this hook to &struct drm_crtc_funcs like all the other 324 * vblank hooks. 325 */ 326 bool (*get_vblank_timestamp) (struct drm_device *dev, unsigned int pipe, 327 int *max_error, 328 struct timeval *vblank_time, 329 bool in_vblank_irq); 330 331 /** 332 * @irq_handler: 333 * 334 * Interrupt handler called when using drm_irq_install(). Not used by 335 * drivers which implement their own interrupt handling. 336 */ 337 irqreturn_t(*irq_handler) (int irq, void *arg); 338 339 /** 340 * @irq_preinstall: 341 * 342 * Optional callback used by drm_irq_install() which is called before 343 * the interrupt handler is registered. This should be used to clear out 344 * any pending interrupts (from e.g. firmware based drives) and reset 345 * the interrupt handling registers. 346 */ 347 void (*irq_preinstall) (struct drm_device *dev); 348 349 /** 350 * @irq_postinstall: 351 * 352 * Optional callback used by drm_irq_install() which is called after 353 * the interrupt handler is registered. This should be used to enable 354 * interrupt generation in the hardware. 355 */ 356 int (*irq_postinstall) (struct drm_device *dev); 357 358 /** 359 * @irq_uninstall: 360 * 361 * Optional callback used by drm_irq_uninstall() which is called before 362 * the interrupt handler is unregistered. This should be used to disable 363 * interrupt generation in the hardware. 364 */ 365 void (*irq_uninstall) (struct drm_device *dev); 366 367 /** 368 * @master_create: 369 * 370 * Called whenever a new master is created. Only used by vmwgfx. 371 */ 372 int (*master_create)(struct drm_device *dev, struct drm_master *master); 373 374 /** 375 * @master_destroy: 376 * 377 * Called whenever a master is destroyed. Only used by vmwgfx. 378 */ 379 void (*master_destroy)(struct drm_device *dev, struct drm_master *master); 380 381 /** 382 * @master_set: 383 * 384 * Called whenever the minor master is set. Only used by vmwgfx. 385 */ 386 int (*master_set)(struct drm_device *dev, struct drm_file *file_priv, 387 bool from_open); 388 /** 389 * @master_drop: 390 * 391 * Called whenever the minor master is dropped. Only used by vmwgfx. 392 */ 393 void (*master_drop)(struct drm_device *dev, struct drm_file *file_priv); 394 395 int (*debugfs_init)(struct drm_minor *minor); 396 397 /** 398 * @gem_free_object: deconstructor for drm_gem_objects 399 * 400 * This is deprecated and should not be used by new drivers. Use 401 * @gem_free_object_unlocked instead. 402 */ 403 void (*gem_free_object) (struct drm_gem_object *obj); 404 405 /** 406 * @gem_free_object_unlocked: deconstructor for drm_gem_objects 407 * 408 * This is for drivers which are not encumbered with &drm_device.struct_mutex 409 * legacy locking schemes. Use this hook instead of @gem_free_object. 410 */ 411 void (*gem_free_object_unlocked) (struct drm_gem_object *obj); 412 413 int (*gem_open_object) (struct drm_gem_object *, struct drm_file *); 414 void (*gem_close_object) (struct drm_gem_object *, struct drm_file *); 415 416 /** 417 * @gem_create_object: constructor for gem objects 418 * 419 * Hook for allocating the GEM object struct, for use by core 420 * helpers. 421 */ 422 struct drm_gem_object *(*gem_create_object)(struct drm_device *dev, 423 size_t size); 424 425 /* prime: */ 426 /* export handle -> fd (see drm_gem_prime_handle_to_fd() helper) */ 427 int (*prime_handle_to_fd)(struct drm_device *dev, struct drm_file *file_priv, 428 uint32_t handle, uint32_t flags, int *prime_fd); 429 /* import fd -> handle (see drm_gem_prime_fd_to_handle() helper) */ 430 int (*prime_fd_to_handle)(struct drm_device *dev, struct drm_file *file_priv, 431 int prime_fd, uint32_t *handle); 432 /* export GEM -> dmabuf */ 433 struct dma_buf * (*gem_prime_export)(struct drm_device *dev, 434 struct drm_gem_object *obj, int flags); 435 /* import dmabuf -> GEM */ 436 struct drm_gem_object * (*gem_prime_import)(struct drm_device *dev, 437 struct dma_buf *dma_buf); 438 /* low-level interface used by drm_gem_prime_{import,export} */ 439 int (*gem_prime_pin)(struct drm_gem_object *obj); 440 void (*gem_prime_unpin)(struct drm_gem_object *obj); 441 struct reservation_object * (*gem_prime_res_obj)( 442 struct drm_gem_object *obj); 443 struct sg_table *(*gem_prime_get_sg_table)(struct drm_gem_object *obj); 444 struct drm_gem_object *(*gem_prime_import_sg_table)( 445 struct drm_device *dev, 446 struct dma_buf_attachment *attach, 447 struct sg_table *sgt); 448 void *(*gem_prime_vmap)(struct drm_gem_object *obj); 449 void (*gem_prime_vunmap)(struct drm_gem_object *obj, void *vaddr); 450 int (*gem_prime_mmap)(struct drm_gem_object *obj, 451 struct vm_area_struct *vma); 452 453 /** 454 * @dumb_create: 455 * 456 * This creates a new dumb buffer in the driver's backing storage manager (GEM, 457 * TTM or something else entirely) and returns the resulting buffer handle. This 458 * handle can then be wrapped up into a framebuffer modeset object. 459 * 460 * Note that userspace is not allowed to use such objects for render 461 * acceleration - drivers must create their own private ioctls for such a use 462 * case. 463 * 464 * Width, height and depth are specified in the &drm_mode_create_dumb 465 * argument. The callback needs to fill the handle, pitch and size for 466 * the created buffer. 467 * 468 * Called by the user via ioctl. 469 * 470 * Returns: 471 * 472 * Zero on success, negative errno on failure. 473 */ 474 int (*dumb_create)(struct drm_file *file_priv, 475 struct drm_device *dev, 476 struct drm_mode_create_dumb *args); 477 /** 478 * @dumb_map_offset: 479 * 480 * Allocate an offset in the drm device node's address space to be able to 481 * memory map a dumb buffer. GEM-based drivers must use 482 * drm_gem_create_mmap_offset() to implement this. 483 * 484 * Called by the user via ioctl. 485 * 486 * Returns: 487 * 488 * Zero on success, negative errno on failure. 489 */ 490 int (*dumb_map_offset)(struct drm_file *file_priv, 491 struct drm_device *dev, uint32_t handle, 492 uint64_t *offset); 493 /** 494 * @dumb_destroy: 495 * 496 * This destroys the userspace handle for the given dumb backing storage buffer. 497 * Since buffer objects must be reference counted in the kernel a buffer object 498 * won't be immediately freed if a framebuffer modeset object still uses it. 499 * 500 * Called by the user via ioctl. 501 * 502 * Returns: 503 * 504 * Zero on success, negative errno on failure. 505 */ 506 int (*dumb_destroy)(struct drm_file *file_priv, 507 struct drm_device *dev, 508 uint32_t handle); 509 510 /* Driver private ops for this object */ 511 const struct vm_operations_struct *gem_vm_ops; 512 513 int major; 514 int minor; 515 int patchlevel; 516 char *name; 517 char *desc; 518 char *date; 519 520 u32 driver_features; 521 const struct drm_ioctl_desc *ioctls; 522 int num_ioctls; 523 const struct file_operations *fops; 524 525 /* Everything below here is for legacy driver, never use! */ 526 /* private: */ 527 528 /* List of devices hanging off this driver with stealth attach. */ 529 struct list_head legacy_dev_list; 530 int (*firstopen) (struct drm_device *); 531 void (*preclose) (struct drm_device *, struct drm_file *file_priv); 532 int (*dma_ioctl) (struct drm_device *dev, void *data, struct drm_file *file_priv); 533 int (*dma_quiescent) (struct drm_device *); 534 int (*context_dtor) (struct drm_device *dev, int context); 535 int dev_priv_size; 536 }; 537 538 __printf(6, 7) 539 void drm_dev_printk(const struct device *dev, const char *level, 540 unsigned int category, const char *function_name, 541 const char *prefix, const char *format, ...); 542 __printf(3, 4) 543 void drm_printk(const char *level, unsigned int category, 544 const char *format, ...); 545 extern unsigned int drm_debug; 546 547 int drm_dev_init(struct drm_device *dev, 548 struct drm_driver *driver, 549 struct device *parent); 550 void drm_dev_fini(struct drm_device *dev); 551 552 struct drm_device *drm_dev_alloc(struct drm_driver *driver, 553 struct device *parent); 554 int drm_dev_register(struct drm_device *dev, unsigned long flags); 555 void drm_dev_unregister(struct drm_device *dev); 556 557 void drm_dev_ref(struct drm_device *dev); 558 void drm_dev_unref(struct drm_device *dev); 559 void drm_put_dev(struct drm_device *dev); 560 void drm_unplug_dev(struct drm_device *dev); 561 562 int drm_dev_set_unique(struct drm_device *dev, const char *name); 563 564 565 #endif 566