i915_drv.h 111.0 KB
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/* i915_drv.h -- Private header for the I915 driver -*- linux-c -*-
 */
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/*
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 *
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 * Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas.
 * All Rights Reserved.
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 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the
 * "Software"), to deal in the Software without restriction, including
 * without limitation the rights to use, copy, modify, merge, publish,
 * distribute, sub license, and/or sell copies of the Software, and to
 * permit persons to whom the Software is furnished to do so, subject to
 * the following conditions:
 *
 * The above copyright notice and this permission notice (including the
 * next paragraph) shall be included in all copies or substantial portions
 * of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
 *
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 */
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#ifndef _I915_DRV_H_
#define _I915_DRV_H_

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#include <uapi/drm/i915_drm.h>
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#include <uapi/drm/drm_fourcc.h>
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#include <linux/io-mapping.h>
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#include <linux/i2c.h>
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#include <linux/i2c-algo-bit.h>
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#include <linux/backlight.h>
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#include <linux/hash.h>
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#include <linux/intel-iommu.h>
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#include <linux/kref.h>
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#include <linux/mm_types.h>
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#include <linux/perf_event.h>
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#include <linux/pm_qos.h>
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#include <linux/reservation.h>
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#include <linux/shmem_fs.h>
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#include <linux/stackdepot.h>
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#include <drm/intel-gtt.h>
#include <drm/drm_legacy.h> /* for struct drm_dma_handle */
#include <drm/drm_gem.h>
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#include <drm/drm_auth.h>
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#include <drm/drm_cache.h>
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#include <drm/drm_util.h>
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#include <drm/drm_dsc.h>
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#include <drm/drm_connector.h>
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#include "i915_fixed.h"
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#include "i915_params.h"
#include "i915_reg.h"
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#include "i915_utils.h"
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#include "intel_bios.h"
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#include "intel_device_info.h"
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#include "intel_display.h"
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#include "intel_dpll_mgr.h"
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#include "intel_lrc.h"
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#include "intel_opregion.h"
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#include "intel_ringbuffer.h"
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#include "intel_uncore.h"
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#include "intel_wopcm.h"
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#include "intel_workarounds.h"
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#include "intel_uc.h"
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#include "i915_gem.h"
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#include "i915_gem_context.h"
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#include "i915_gem_fence_reg.h"
#include "i915_gem_object.h"
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#include "i915_gem_gtt.h"
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#include "i915_gpu_error.h"
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#include "i915_request.h"
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#include "i915_scheduler.h"
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#include "i915_timeline.h"
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#include "i915_vma.h"

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#include "intel_gvt.h"

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/* General customization:
 */

#define DRIVER_NAME		"i915"
#define DRIVER_DESC		"Intel Graphics"
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#define DRIVER_DATE		"20190207"
#define DRIVER_TIMESTAMP	1549572331
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/* Use I915_STATE_WARN(x) and I915_STATE_WARN_ON() (rather than WARN() and
 * WARN_ON()) for hw state sanity checks to check for unexpected conditions
 * which may not necessarily be a user visible problem.  This will either
 * WARN() or DRM_ERROR() depending on the verbose_checks moduleparam, to
 * enable distros and users to tailor their preferred amount of i915 abrt
 * spam.
 */
#define I915_STATE_WARN(condition, format...) ({			\
	int __ret_warn_on = !!(condition);				\
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	if (unlikely(__ret_warn_on))					\
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		if (!WARN(i915_modparams.verbose_state_checks, format))	\
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			DRM_ERROR(format);				\
	unlikely(__ret_warn_on);					\
})

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#define I915_STATE_WARN_ON(x)						\
	I915_STATE_WARN((x), "%s", "WARN_ON(" __stringify(x) ")")
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#if IS_ENABLED(CONFIG_DRM_I915_DEBUG)
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bool __i915_inject_load_failure(const char *func, int line);
#define i915_inject_load_failure() \
	__i915_inject_load_failure(__func__, __LINE__)
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bool i915_error_injected(void);

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#else
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#define i915_inject_load_failure() false
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#define i915_error_injected() false

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#endif
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#define i915_load_error(i915, fmt, ...)					 \
	__i915_printk(i915, i915_error_injected() ? KERN_DEBUG : KERN_ERR, \
		      fmt, ##__VA_ARGS__)

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typedef depot_stack_handle_t intel_wakeref_t;

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enum hpd_pin {
	HPD_NONE = 0,
	HPD_TV = HPD_NONE,     /* TV is known to be unreliable */
	HPD_CRT,
	HPD_SDVO_B,
	HPD_SDVO_C,
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	HPD_PORT_A,
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	HPD_PORT_B,
	HPD_PORT_C,
	HPD_PORT_D,
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	HPD_PORT_E,
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	HPD_PORT_F,
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	HPD_NUM_PINS
};

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#define for_each_hpd_pin(__pin) \
	for ((__pin) = (HPD_NONE + 1); (__pin) < HPD_NUM_PINS; (__pin)++)

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/* Threshold == 5 for long IRQs, 50 for short */
#define HPD_STORM_DEFAULT_THRESHOLD 50
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struct i915_hotplug {
	struct work_struct hotplug_work;

	struct {
		unsigned long last_jiffies;
		int count;
		enum {
			HPD_ENABLED = 0,
			HPD_DISABLED = 1,
			HPD_MARK_DISABLED = 2
		} state;
	} stats[HPD_NUM_PINS];
	u32 event_bits;
	struct delayed_work reenable_work;

	u32 long_port_mask;
	u32 short_port_mask;
	struct work_struct dig_port_work;

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	struct work_struct poll_init_work;
	bool poll_enabled;

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	unsigned int hpd_storm_threshold;
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	/* Whether or not to count short HPD IRQs in HPD storms */
	u8 hpd_short_storm_enabled;
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	/*
	 * if we get a HPD irq from DP and a HPD irq from non-DP
	 * the non-DP HPD could block the workqueue on a mode config
	 * mutex getting, that userspace may have taken. However
	 * userspace is waiting on the DP workqueue to run which is
	 * blocked behind the non-DP one.
	 */
	struct workqueue_struct *dp_wq;
};

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#define I915_GEM_GPU_DOMAINS \
	(I915_GEM_DOMAIN_RENDER | \
	 I915_GEM_DOMAIN_SAMPLER | \
	 I915_GEM_DOMAIN_COMMAND | \
	 I915_GEM_DOMAIN_INSTRUCTION | \
	 I915_GEM_DOMAIN_VERTEX)
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struct drm_i915_private;
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struct i915_mm_struct;
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struct i915_mmu_object;
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struct drm_i915_file_private {
	struct drm_i915_private *dev_priv;
	struct drm_file *file;

	struct {
		spinlock_t lock;
		struct list_head request_list;
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/* 20ms is a fairly arbitrary limit (greater than the average frame time)
 * chosen to prevent the CPU getting more than a frame ahead of the GPU
 * (when using lax throttling for the frontbuffer). We also use it to
 * offer free GPU waitboosts for severely congested workloads.
 */
#define DRM_I915_THROTTLE_JIFFIES msecs_to_jiffies(20)
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	} mm;
	struct idr context_idr;

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	struct intel_rps_client {
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		atomic_t boosts;
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	} rps_client;
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	unsigned int bsd_engine;
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/*
 * Every context ban increments per client ban score. Also
 * hangs in short succession increments ban score. If ban threshold
 * is reached, client is considered banned and submitting more work
 * will fail. This is a stop gap measure to limit the badly behaving
 * clients access to gpu. Note that unbannable contexts never increment
 * the client ban score.
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 */
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#define I915_CLIENT_SCORE_HANG_FAST	1
#define   I915_CLIENT_FAST_HANG_JIFFIES (60 * HZ)
#define I915_CLIENT_SCORE_CONTEXT_BAN   3
#define I915_CLIENT_SCORE_BANNED	9
	/** ban_score: Accumulated score of all ctx bans and fast hangs. */
	atomic_t ban_score;
	unsigned long hang_timestamp;
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};

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/* Interface history:
 *
 * 1.1: Original.
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 * 1.2: Add Power Management
 * 1.3: Add vblank support
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 * 1.4: Fix cmdbuffer path, add heap destroy
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 * 1.5: Add vblank pipe configuration
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 * 1.6: - New ioctl for scheduling buffer swaps on vertical blank
 *      - Support vertical blank on secondary display pipe
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 */
#define DRIVER_MAJOR		1
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#define DRIVER_MINOR		6
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#define DRIVER_PATCHLEVEL	0

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struct intel_overlay;
struct intel_overlay_error_state;

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struct sdvo_device_mapping {
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	u8 initialized;
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	u8 dvo_port;
	u8 slave_addr;
	u8 dvo_wiring;
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	u8 i2c_pin;
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	u8 ddc_pin;
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};

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struct intel_connector;
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struct intel_encoder;
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struct intel_atomic_state;
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struct intel_crtc_state;
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struct intel_initial_plane_config;
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struct intel_crtc;
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struct intel_limit;
struct dpll;
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struct intel_cdclk_state;
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struct drm_i915_display_funcs {
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	void (*get_cdclk)(struct drm_i915_private *dev_priv,
			  struct intel_cdclk_state *cdclk_state);
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	void (*set_cdclk)(struct drm_i915_private *dev_priv,
			  const struct intel_cdclk_state *cdclk_state);
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	int (*get_fifo_size)(struct drm_i915_private *dev_priv,
			     enum i9xx_plane_id i9xx_plane);
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	int (*compute_pipe_wm)(struct intel_crtc_state *cstate);
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	int (*compute_intermediate_wm)(struct intel_crtc_state *newstate);
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	void (*initial_watermarks)(struct intel_atomic_state *state,
				   struct intel_crtc_state *cstate);
	void (*atomic_update_watermarks)(struct intel_atomic_state *state,
					 struct intel_crtc_state *cstate);
	void (*optimize_watermarks)(struct intel_atomic_state *state,
				    struct intel_crtc_state *cstate);
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	int (*compute_global_watermarks)(struct intel_atomic_state *state);
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	void (*update_wm)(struct intel_crtc *crtc);
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	int (*modeset_calc_cdclk)(struct drm_atomic_state *state);
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	/* Returns the active state of the crtc, and if the crtc is active,
	 * fills out the pipe-config with the hw state. */
	bool (*get_pipe_config)(struct intel_crtc *,
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				struct intel_crtc_state *);
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	void (*get_initial_plane_config)(struct intel_crtc *,
					 struct intel_initial_plane_config *);
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	int (*crtc_compute_clock)(struct intel_crtc *crtc,
				  struct intel_crtc_state *crtc_state);
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	void (*crtc_enable)(struct intel_crtc_state *pipe_config,
			    struct drm_atomic_state *old_state);
	void (*crtc_disable)(struct intel_crtc_state *old_crtc_state,
			     struct drm_atomic_state *old_state);
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	void (*update_crtcs)(struct drm_atomic_state *state);
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	void (*audio_codec_enable)(struct intel_encoder *encoder,
				   const struct intel_crtc_state *crtc_state,
				   const struct drm_connector_state *conn_state);
	void (*audio_codec_disable)(struct intel_encoder *encoder,
				    const struct intel_crtc_state *old_crtc_state,
				    const struct drm_connector_state *old_conn_state);
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	void (*fdi_link_train)(struct intel_crtc *crtc,
			       const struct intel_crtc_state *crtc_state);
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	void (*init_clock_gating)(struct drm_i915_private *dev_priv);
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	void (*hpd_irq_setup)(struct drm_i915_private *dev_priv);
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	/* clock updates for mode set */
	/* cursor updates */
	/* render clock increase/decrease */
	/* display clock increase/decrease */
	/* pll clock increase/decrease */
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	/*
	 * Program double buffered color management registers during
	 * vblank evasion. The registers should then latch during the
	 * next vblank start, alongside any other double buffered registers
	 * involved with the same commit.
	 */
	void (*color_commit)(const struct intel_crtc_state *crtc_state);
	/*
	 * Load LUTs (and other single buffered color management
	 * registers). Will (hopefully) be called during the vblank
	 * following the latching of any double buffered registers
	 * involved with the same commit.
	 */
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	void (*load_luts)(const struct intel_crtc_state *crtc_state);
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};

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#define CSR_VERSION(major, minor)	((major) << 16 | (minor))
#define CSR_VERSION_MAJOR(version)	((version) >> 16)
#define CSR_VERSION_MINOR(version)	((version) & 0xffff)

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struct intel_csr {
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	struct work_struct work;
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	const char *fw_path;
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	u32 required_version;
	u32 max_fw_size; /* bytes */
	u32 *dmc_payload;
	u32 dmc_fw_size; /* dwords */
	u32 version;
	u32 mmio_count;
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	i915_reg_t mmioaddr[8];
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	u32 mmiodata[8];
	u32 dc_state;
	u32 allowed_dc_mask;
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	intel_wakeref_t wakeref;
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};

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enum i915_cache_level {
	I915_CACHE_NONE = 0,
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	I915_CACHE_LLC, /* also used for snoopable memory on non-LLC */
	I915_CACHE_L3_LLC, /* gen7+, L3 sits between the domain specifc
			      caches, eg sampler/render caches, and the
			      large Last-Level-Cache. LLC is coherent with
			      the CPU, but L3 is only visible to the GPU. */
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	I915_CACHE_WT, /* hsw:gt3e WriteThrough for scanouts */
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};

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#define I915_COLOR_UNEVICTABLE (-1) /* a non-vma sharing the address space */

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enum fb_op_origin {
	ORIGIN_GTT,
	ORIGIN_CPU,
	ORIGIN_CS,
	ORIGIN_FLIP,
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	ORIGIN_DIRTYFB,
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};

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struct intel_fbc {
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	/* This is always the inner lock when overlapping with struct_mutex and
	 * it's the outer lock when overlapping with stolen_lock. */
	struct mutex lock;
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	unsigned threshold;
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	unsigned int possible_framebuffer_bits;
	unsigned int busy_bits;
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	unsigned int visible_pipes_mask;
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	struct intel_crtc *crtc;
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	struct drm_mm_node compressed_fb;
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	struct drm_mm_node *compressed_llb;

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	bool false_color;

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	bool enabled;
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	bool active;
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	bool flip_pending;
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	bool underrun_detected;
	struct work_struct underrun_work;

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	/*
	 * Due to the atomic rules we can't access some structures without the
	 * appropriate locking, so we cache information here in order to avoid
	 * these problems.
	 */
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	struct intel_fbc_state_cache {
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		struct i915_vma *vma;
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		unsigned long flags;
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		struct {
			unsigned int mode_flags;
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			u32 hsw_bdw_pixel_rate;
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		} crtc;

		struct {
			unsigned int rotation;
			int src_w;
			int src_h;
			bool visible;
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			/*
			 * Display surface base address adjustement for
			 * pageflips. Note that on gen4+ this only adjusts up
			 * to a tile, offsets within a tile are handled in
			 * the hw itself (with the TILEOFF register).
			 */
			int adjusted_x;
			int adjusted_y;
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			int y;
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			u16 pixel_blend_mode;
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		} plane;

		struct {
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			const struct drm_format_info *format;
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			unsigned int stride;
		} fb;
	} state_cache;

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	/*
	 * This structure contains everything that's relevant to program the
	 * hardware registers. When we want to figure out if we need to disable
	 * and re-enable FBC for a new configuration we just check if there's
	 * something different in the struct. The genx_fbc_activate functions
	 * are supposed to read from it in order to program the registers.
	 */
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	struct intel_fbc_reg_params {
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		struct i915_vma *vma;
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		unsigned long flags;
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		struct {
			enum pipe pipe;
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			enum i9xx_plane_id i9xx_plane;
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			unsigned int fence_y_offset;
		} crtc;

		struct {
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			const struct drm_format_info *format;
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			unsigned int stride;
		} fb;

		int cfb_size;
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		unsigned int gen9_wa_cfb_stride;
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	} params;

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	const char *no_fbc_reason;
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};

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/*
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 * HIGH_RR is the highest eDP panel refresh rate read from EDID
 * LOW_RR is the lowest eDP panel refresh rate found from EDID
 * parsing for same resolution.
 */
enum drrs_refresh_rate_type {
	DRRS_HIGH_RR,
	DRRS_LOW_RR,
	DRRS_MAX_RR, /* RR count */
};

enum drrs_support_type {
	DRRS_NOT_SUPPORTED = 0,
	STATIC_DRRS_SUPPORT = 1,
	SEAMLESS_DRRS_SUPPORT = 2
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};

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struct intel_dp;
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struct i915_drrs {
	struct mutex mutex;
	struct delayed_work work;
	struct intel_dp *dp;
	unsigned busy_frontbuffer_bits;
	enum drrs_refresh_rate_type refresh_rate_type;
	enum drrs_support_type type;
};

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struct i915_psr {
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	struct mutex lock;
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#define I915_PSR_DEBUG_MODE_MASK	0x0f
#define I915_PSR_DEBUG_DEFAULT		0x00
#define I915_PSR_DEBUG_DISABLE		0x01
#define I915_PSR_DEBUG_ENABLE		0x02
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#define I915_PSR_DEBUG_FORCE_PSR1	0x03
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#define I915_PSR_DEBUG_IRQ		0x10

	u32 debug;
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	bool sink_support;
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	bool enabled;
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	struct intel_dp *dp;
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	enum pipe pipe;
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	bool active;
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	struct work_struct work;
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	unsigned busy_frontbuffer_bits;
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	bool sink_psr2_support;
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	bool link_standby;
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	bool colorimetry_support;
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	bool psr2_enabled;
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	u8 sink_sync_latency;
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	ktime_t last_entry_attempt;
	ktime_t last_exit;
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	bool sink_not_reliable;
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	bool irq_aux_error;
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	u16 su_x_granularity;
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};
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enum intel_pch {
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	PCH_NONE = 0,	/* No PCH present */
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	PCH_IBX,	/* Ibexpeak PCH */
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	PCH_CPT,	/* Cougarpoint/Pantherpoint PCH */
	PCH_LPT,	/* Lynxpoint/Wildcatpoint PCH */
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	PCH_SPT,        /* Sunrisepoint PCH */
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	PCH_KBP,        /* Kaby Lake PCH */
	PCH_CNP,        /* Cannon Lake PCH */
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	PCH_ICP,	/* Ice Lake PCH */
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	PCH_NOP,	/* PCH without south display */
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};

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enum intel_sbi_destination {
	SBI_ICLK,
	SBI_MPHY,
};

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#define QUIRK_LVDS_SSC_DISABLE (1<<1)
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#define QUIRK_INVERT_BRIGHTNESS (1<<2)
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#define QUIRK_BACKLIGHT_PRESENT (1<<3)
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#define QUIRK_PIN_SWIZZLED_PAGES (1<<5)
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#define QUIRK_INCREASE_T12_DELAY (1<<6)
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#define QUIRK_INCREASE_DDI_DISABLED_TIME (1<<7)
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struct intel_fbdev;
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struct intel_fbc_work;
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struct intel_gmbus {
	struct i2c_adapter adapter;
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#define GMBUS_FORCE_BIT_RETRY (1U << 31)
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	u32 force_bit;
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	u32 reg0;
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	i915_reg_t gpio_reg;
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	struct i2c_algo_bit_data bit_algo;
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	struct drm_i915_private *dev_priv;
};

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struct i915_suspend_saved_registers {
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	u32 saveDSPARB;
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	u32 saveFBC_CONTROL;
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	u32 saveCACHE_MODE_0;
	u32 saveMI_ARB_STATE;
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	u32 saveSWF0[16];
	u32 saveSWF1[16];
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	u32 saveSWF3[3];
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	u64 saveFENCE[I915_MAX_NUM_FENCES];
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	u32 savePCH_PORT_HOTPLUG;
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	u16 saveGCDGMBUS;
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};
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struct vlv_s0ix_state {
	/* GAM */
	u32 wr_watermark;
	u32 gfx_prio_ctrl;
	u32 arb_mode;
	u32 gfx_pend_tlb0;
	u32 gfx_pend_tlb1;
	u32 lra_limits[GEN7_LRA_LIMITS_REG_NUM];
	u32 media_max_req_count;
	u32 gfx_max_req_count;
	u32 render_hwsp;
	u32 ecochk;
	u32 bsd_hwsp;
	u32 blt_hwsp;
	u32 tlb_rd_addr;

	/* MBC */
	u32 g3dctl;
	u32 gsckgctl;
	u32 mbctl;

	/* GCP */
	u32 ucgctl1;
	u32 ucgctl3;
	u32 rcgctl1;
	u32 rcgctl2;
	u32 rstctl;
	u32 misccpctl;

	/* GPM */
	u32 gfxpause;
	u32 rpdeuhwtc;
	u32 rpdeuc;
	u32 ecobus;
	u32 pwrdwnupctl;
	u32 rp_down_timeout;
	u32 rp_deucsw;
	u32 rcubmabdtmr;
	u32 rcedata;
	u32 spare2gh;

	/* Display 1 CZ domain */
	u32 gt_imr;
	u32 gt_ier;
	u32 pm_imr;
	u32 pm_ier;
	u32 gt_scratch[GEN7_GT_SCRATCH_REG_NUM];

	/* GT SA CZ domain */
	u32 tilectl;
	u32 gt_fifoctl;
	u32 gtlc_wake_ctrl;
	u32 gtlc_survive;
	u32 pmwgicz;

	/* Display 2 CZ domain */
	u32 gu_ctl0;
	u32 gu_ctl1;
637
	u32 pcbr;
638 639 640
	u32 clock_gate_dis2;
};

641
struct intel_rps_ei {
642
	ktime_t ktime;
643 644
	u32 render_c0;
	u32 media_c0;
645 646
};

647
struct intel_rps {
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Imre Deak 已提交
648 649 650 651
	/*
	 * work, interrupts_enabled and pm_iir are protected by
	 * dev_priv->irq_lock
	 */
652
	struct work_struct work;
I
Imre Deak 已提交
653
	bool interrupts_enabled;
654
	u32 pm_iir;
655

656
	/* PM interrupt bits that should never be masked */
657
	u32 pm_intrmsk_mbz;
658

659 660 661 662 663 664 665 666 667 668 669 670 671 672 673
	/* Frequencies are stored in potentially platform dependent multiples.
	 * In other words, *_freq needs to be multiplied by X to be interesting.
	 * Soft limits are those which are used for the dynamic reclocking done
	 * by the driver (raise frequencies under heavy loads, and lower for
	 * lighter loads). Hard limits are those imposed by the hardware.
	 *
	 * A distinction is made for overclocking, which is never enabled by
	 * default, and is considered to be above the hard limit if it's
	 * possible at all.
	 */
	u8 cur_freq;		/* Current frequency (cached, may not == HW) */
	u8 min_freq_softlimit;	/* Minimum frequency permitted by the driver */
	u8 max_freq_softlimit;	/* Max frequency permitted by the driver */
	u8 max_freq;		/* Maximum frequency, RP0 if not overclocking */
	u8 min_freq;		/* AKA RPn. Minimum frequency */
674
	u8 boost_freq;		/* Frequency to request when wait boosting */
675
	u8 idle_freq;		/* Frequency to request when we are idle */
676 677 678
	u8 efficient_freq;	/* AKA RPe. Pre-determined balanced frequency */
	u8 rp1_freq;		/* "less than" RP0 power/freqency */
	u8 rp0_freq;		/* Non-overclocked max frequency. */
679
	u16 gpll_ref_freq;	/* vlv/chv GPLL reference frequency */
680

681
	int last_adj;
C
Chris Wilson 已提交
682 683 684 685 686 687 688 689 690 691

	struct {
		struct mutex mutex;

		enum { LOW_POWER, BETWEEN, HIGH_POWER } mode;
		unsigned int interactive;

		u8 up_threshold; /* Current %busy required to uplock */
		u8 down_threshold; /* Current %busy required to downclock */
	} power;
692

693
	bool enabled;
694 695
	atomic_t num_waiters;
	atomic_t boosts;
696

697
	/* manual wa residency calculations */
698
	struct intel_rps_ei ei;
699 700
};

701 702
struct intel_rc6 {
	bool enabled;
703 704
	u64 prev_hw_residency[4];
	u64 cur_residency[4];
705 706 707 708 709 710
};

struct intel_llc_pstate {
	bool enabled;
};

711 712
struct intel_gen6_power_mgmt {
	struct intel_rps rps;
713 714
	struct intel_rc6 rc6;
	struct intel_llc_pstate llc_pstate;
715 716
};

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Daniel Vetter 已提交
717 718 719
/* defined intel_pm.c */
extern spinlock_t mchdev_lock;

720 721 722 723 724 725 726 727 728 729 730
struct intel_ilk_power_mgmt {
	u8 cur_delay;
	u8 min_delay;
	u8 max_delay;
	u8 fmax;
	u8 fstart;

	u64 last_count1;
	unsigned long last_time1;
	unsigned long chipset_power;
	u64 last_count2;
731
	u64 last_time2;
732 733 734 735 736 737 738
	unsigned long gfx_power;
	u8 corr;

	int c_m;
	int r_t;
};

739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
struct drm_i915_private;
struct i915_power_well;

struct i915_power_well_ops {
	/*
	 * Synchronize the well's hw state to match the current sw state, for
	 * example enable/disable it based on the current refcount. Called
	 * during driver init and resume time, possibly after first calling
	 * the enable/disable handlers.
	 */
	void (*sync_hw)(struct drm_i915_private *dev_priv,
			struct i915_power_well *power_well);
	/*
	 * Enable the well and resources that depend on it (for example
	 * interrupts located on the well). Called after the 0->1 refcount
	 * transition.
	 */
	void (*enable)(struct drm_i915_private *dev_priv,
		       struct i915_power_well *power_well);
	/*
	 * Disable the well and resources that depend on it. Called after
	 * the 1->0 refcount transition.
	 */
	void (*disable)(struct drm_i915_private *dev_priv,
			struct i915_power_well *power_well);
	/* Returns the hw enabled state. */
	bool (*is_enabled)(struct drm_i915_private *dev_priv,
			   struct i915_power_well *power_well);
};

769 770 771 772 773 774 775
struct i915_power_well_regs {
	i915_reg_t bios;
	i915_reg_t driver;
	i915_reg_t kvmr;
	i915_reg_t debug;
};

776
/* Power well structure for haswell */
777
struct i915_power_well_desc {
778
	const char *name;
779
	bool always_on;
780
	u64 domains;
781
	/* unique identifier for this power well */
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Imre Deak 已提交
782
	enum i915_power_well_id id;
783 784 785 786
	/*
	 * Arbitraty data associated with this power well. Platform and power
	 * well specific.
	 */
787
	union {
788 789 790 791 792 793 794
		struct {
			/*
			 * request/status flag index in the PUNIT power well
			 * control/status registers.
			 */
			u8 idx;
		} vlv;
795 796 797
		struct {
			enum dpio_phy phy;
		} bxt;
798
		struct {
799 800 801 802 803 804
			const struct i915_power_well_regs *regs;
			/*
			 * request/status flag index in the power well
			 * constrol/status registers.
			 */
			u8 idx;
805 806 807 808
			/* Mask of pipes whose IRQ logic is backed by the pw */
			u8 irq_pipe_mask;
			/* The pw is backing the VGA functionality */
			bool has_vga:1;
809
			bool has_fuses:1;
810 811 812 813 814
			/*
			 * The pw is for an ICL+ TypeC PHY port in
			 * Thunderbolt mode.
			 */
			bool is_tc_tbt:1;
815
		} hsw;
816
	};
817
	const struct i915_power_well_ops *ops;
818 819
};

820 821 822 823 824 825 826 827
struct i915_power_well {
	const struct i915_power_well_desc *desc;
	/* power well enable/disable usage count */
	int count;
	/* cached hw enabled state */
	bool hw_enabled;
};

828
struct i915_power_domains {
829 830 831 832
	/*
	 * Power wells needed for initialization at driver init and suspend
	 * time are on. They are kept on until after the first modeset.
	 */
833
	bool initializing;
834
	bool display_core_suspended;
835
	int power_well_count;
836

837 838
	intel_wakeref_t wakeref;

839
	struct mutex lock;
840
	int domain_use_count[POWER_DOMAIN_NUM];
841
	struct i915_power_well *power_wells;
842 843
};

844
#define MAX_L3_SLICES 2
845
struct intel_l3_parity {
846
	u32 *remap_info[MAX_L3_SLICES];
847
	struct work_struct error_work;
848
	int which_slice;
849 850
};

851 852 853
struct i915_gem_mm {
	/** Memory allocator for GTT stolen memory */
	struct drm_mm stolen;
854 855 856 857
	/** Protects the usage of the GTT stolen memory allocator. This is
	 * always the inner lock when overlapping with struct_mutex. */
	struct mutex stolen_lock;

858 859 860
	/* Protects bound_list/unbound_list and #drm_i915_gem_object.mm.link */
	spinlock_t obj_lock;

861 862 863 864 865
	/** List of all objects in gtt_space. Used to restore gtt
	 * mappings on resume */
	struct list_head bound_list;
	/**
	 * List of objects which are not bound to the GTT (thus
866 867
	 * are idle and not used by the GPU). These objects may or may
	 * not actually have any pages attached.
868 869 870
	 */
	struct list_head unbound_list;

871 872 873 874 875
	/** List of all objects in gtt_space, currently mmaped by userspace.
	 * All objects within this list must also be on bound_list.
	 */
	struct list_head userfault_list;

876 877 878 879 880
	/**
	 * List of objects which are pending destruction.
	 */
	struct llist_head free_list;
	struct work_struct free_work;
881
	spinlock_t free_lock;
882 883 884 885 886
	/**
	 * Count of objects pending destructions. Used to skip needlessly
	 * waiting on an RCU barrier if no objects are waiting to be freed.
	 */
	atomic_t free_count;
887

888 889 890
	/**
	 * Small stash of WC pages
	 */
891
	struct pagestash wc_stash;
892

M
Matthew Auld 已提交
893 894 895 896 897
	/**
	 * tmpfs instance used for shmem backed objects
	 */
	struct vfsmount *gemfs;

898 899 900
	/** PPGTT used for aliasing the PPGTT with the GTT */
	struct i915_hw_ppgtt *aliasing_ppgtt;

901
	struct notifier_block oom_notifier;
902
	struct notifier_block vmap_notifier;
903
	struct shrinker shrinker;
904 905 906 907

	/** LRU list of objects with fence regs on them. */
	struct list_head fence_list;

908 909 910 911 912 913 914
	/**
	 * Workqueue to fault in userptr pages, flushed by the execbuf
	 * when required but otherwise left to userspace to try again
	 * on EAGAIN.
	 */
	struct workqueue_struct *userptr_wq;

915 916
	u64 unordered_timeline;

917
	/* the indicator for dispatch video commands on two BSD rings */
918
	atomic_t bsd_engine_dispatch_index;
919

920
	/** Bit 6 swizzling required for X tiling */
921
	u32 bit_6_swizzle_x;
922
	/** Bit 6 swizzling required for Y tiling */
923
	u32 bit_6_swizzle_y;
924 925

	/* accounting, useful for userland debugging */
926
	spinlock_t object_stat_lock;
927
	u64 object_memory;
928 929 930
	u32 object_count;
};

931 932
#define I915_IDLE_ENGINES_TIMEOUT (200) /* in ms */

933 934 935
#define I915_RESET_TIMEOUT (10 * HZ) /* 10s */
#define I915_FENCE_TIMEOUT (10 * HZ) /* 10s */

936 937 938
#define I915_ENGINE_DEAD_TIMEOUT  (4 * HZ)  /* Seqno, head and subunits dead */
#define I915_SEQNO_DEAD_TIMEOUT   (12 * HZ) /* Seqno dead with active head */

939 940
#define I915_ENGINE_WEDGED_TIMEOUT  (60 * HZ)  /* Reset but no recovery? */

941
struct ddi_vbt_port_info {
942 943
	int max_tmds_clock;

944 945 946 947 948 949
	/*
	 * This is an index in the HDMI/DVI DDI buffer translation table.
	 * The special value HDMI_LEVEL_SHIFT_UNKNOWN means the VBT didn't
	 * populate this field.
	 */
#define HDMI_LEVEL_SHIFT_UNKNOWN	0xff
950
	u8 hdmi_level_shift;
951

952 953 954 955 956 957
	u8 supports_dvi:1;
	u8 supports_hdmi:1;
	u8 supports_dp:1;
	u8 supports_edp:1;
	u8 supports_typec_usb:1;
	u8 supports_tbt:1;
958

959 960
	u8 alternate_aux_channel;
	u8 alternate_ddc_pin;
961

962 963
	u8 dp_boost_level;
	u8 hdmi_boost_level;
964
	int dp_max_link_rate;		/* 0 for not limited by VBT */
965 966
};

R
Rodrigo Vivi 已提交
967 968 969 970 971
enum psr_lines_to_wait {
	PSR_0_LINES_TO_WAIT = 0,
	PSR_1_LINE_TO_WAIT,
	PSR_4_LINES_TO_WAIT,
	PSR_8_LINES_TO_WAIT
972 973
};

974 975 976 977 978 979 980 981 982
struct intel_vbt_data {
	struct drm_display_mode *lfp_lvds_vbt_mode; /* if any */
	struct drm_display_mode *sdvo_lvds_vbt_mode; /* if any */

	/* Feature bits */
	unsigned int int_tv_support:1;
	unsigned int lvds_dither:1;
	unsigned int int_crt_support:1;
	unsigned int lvds_use_ssc:1;
983
	unsigned int int_lvds_support:1;
984 985
	unsigned int display_clock_mode:1;
	unsigned int fdi_rx_polarity_inverted:1;
986
	unsigned int panel_type:4;
987 988
	int lvds_ssc_freq;
	unsigned int bios_lvds_val; /* initial [PCH_]LVDS reg val in VBIOS */
989
	enum drm_panel_orientation orientation;
990

991 992
	enum drrs_support_type drrs_type;

993 994 995 996 997
	struct {
		int rate;
		int lanes;
		int preemphasis;
		int vswing;
998
		bool low_vswing;
999 1000 1001 1002
		bool initialized;
		int bpp;
		struct edp_power_seq pps;
	} edp;
1003

R
Rodrigo Vivi 已提交
1004
	struct {
1005
		bool enable;
R
Rodrigo Vivi 已提交
1006 1007 1008 1009
		bool full_link;
		bool require_aux_wakeup;
		int idle_frames;
		enum psr_lines_to_wait lines_to_wait;
1010 1011
		int tp1_wakeup_time_us;
		int tp2_tp3_wakeup_time_us;
R
Rodrigo Vivi 已提交
1012 1013
	} psr;

1014 1015
	struct {
		u16 pwm_freq_hz;
1016
		bool present;
1017
		bool active_low_pwm;
1018
		u8 min_brightness;	/* min_brightness/255 of max */
1019
		u8 controller;		/* brightness controller number */
1020
		enum intel_backlight_type type;
1021 1022
	} backlight;

1023 1024 1025
	/* MIPI DSI */
	struct {
		u16 panel_id;
1026 1027
		struct mipi_config *config;
		struct mipi_pps_data *pps;
1028 1029
		u16 bl_ports;
		u16 cabc_ports;
1030 1031 1032
		u8 seq_version;
		u32 size;
		u8 *data;
1033
		const u8 *sequence[MIPI_SEQ_MAX];
1034
		u8 *deassert_seq; /* Used by fixup_mipi_sequences() */
1035
		enum drm_panel_orientation orientation;
1036 1037
	} dsi;

1038 1039 1040
	int crt_ddc_pin;

	int child_dev_num;
1041
	struct child_device_config *child_dev;
1042 1043

	struct ddi_vbt_port_info ddi_port_info[I915_MAX_PORTS];
1044
	struct sdvo_device_mapping sdvo_mappings[2];
1045 1046
};

1047 1048 1049 1050 1051
enum intel_ddb_partitioning {
	INTEL_DDB_PART_1_2,
	INTEL_DDB_PART_5_6, /* IVB+ */
};

1052 1053
struct intel_wm_level {
	bool enable;
1054 1055 1056 1057
	u32 pri_val;
	u32 spr_val;
	u32 cur_val;
	u32 fbc_val;
1058 1059
};

1060
struct ilk_wm_values {
1061 1062 1063 1064
	u32 wm_pipe[3];
	u32 wm_lp[3];
	u32 wm_lp_spr[3];
	u32 wm_linetime[3];
1065 1066 1067 1068
	bool enable_fbc_wm;
	enum intel_ddb_partitioning partitioning;
};

1069
struct g4x_pipe_wm {
1070 1071
	u16 plane[I915_MAX_PLANES];
	u16 fbc;
1072
};
1073

1074
struct g4x_sr_wm {
1075 1076 1077
	u16 plane;
	u16 cursor;
	u16 fbc;
1078 1079 1080
};

struct vlv_wm_ddl_values {
1081
	u8 plane[I915_MAX_PLANES];
1082
};
1083

1084
struct vlv_wm_values {
1085 1086
	struct g4x_pipe_wm pipe[3];
	struct g4x_sr_wm sr;
1087
	struct vlv_wm_ddl_values ddl[3];
1088
	u8 level;
1089
	bool cxsr;
1090 1091
};

1092 1093 1094 1095 1096 1097 1098 1099 1100
struct g4x_wm_values {
	struct g4x_pipe_wm pipe[2];
	struct g4x_sr_wm sr;
	struct g4x_sr_wm hpll;
	bool cxsr;
	bool hpll_en;
	bool fbc_en;
};

1101
struct skl_ddb_entry {
1102
	u16 start, end;	/* in number of blocks, 'end' is exclusive */
1103 1104
};

1105
static inline u16 skl_ddb_entry_size(const struct skl_ddb_entry *entry)
1106
{
1107
	return entry->end - entry->start;
1108 1109
}

1110 1111 1112 1113 1114 1115 1116 1117 1118
static inline bool skl_ddb_entry_equal(const struct skl_ddb_entry *e1,
				       const struct skl_ddb_entry *e2)
{
	if (e1->start == e2->start && e1->end == e2->end)
		return true;

	return false;
}

1119
struct skl_ddb_allocation {
1120
	u8 enabled_slices; /* GEN11 has configurable 2 slices */
1121 1122
};

1123
struct skl_ddb_values {
1124
	unsigned dirty_pipes;
1125
	struct skl_ddb_allocation ddb;
1126 1127 1128
};

struct skl_wm_level {
1129
	u16 min_ddb_alloc;
1130 1131
	u16 plane_res_b;
	u8 plane_res_l;
1132
	bool plane_en;
1133 1134
};

1135 1136 1137 1138
/* Stores plane specific WM parameters */
struct skl_wm_params {
	bool x_tiled, y_tiled;
	bool rc_surface;
1139
	bool is_planar;
1140 1141 1142 1143 1144
	u32 width;
	u8 cpp;
	u32 plane_pixel_rate;
	u32 y_min_scanlines;
	u32 plane_bytes_per_line;
1145 1146
	uint_fixed_16_16_t plane_blocks_per_line;
	uint_fixed_16_16_t y_tile_minimum;
1147 1148
	u32 linetime_us;
	u32 dbuf_block_size;
1149 1150
};

1151
/*
1152 1153 1154 1155
 * This struct helps tracking the state needed for runtime PM, which puts the
 * device in PCI D3 state. Notice that when this happens, nothing on the
 * graphics device works, even register access, so we don't get interrupts nor
 * anything else.
1156
 *
1157 1158 1159
 * Every piece of our code that needs to actually touch the hardware needs to
 * either call intel_runtime_pm_get or call intel_display_power_get with the
 * appropriate power domain.
1160
 *
1161 1162
 * Our driver uses the autosuspend delay feature, which means we'll only really
 * suspend if we stay with zero refcount for a certain amount of time. The
1163
 * default value is currently very conservative (see intel_runtime_pm_enable), but
1164
 * it can be changed with the standard runtime PM files from sysfs.
1165 1166 1167 1168 1169
 *
 * The irqs_disabled variable becomes true exactly after we disable the IRQs and
 * goes back to false exactly before we reenable the IRQs. We use this variable
 * to check if someone is trying to enable/disable IRQs while they're supposed
 * to be disabled. This shouldn't happen and we'll print some error messages in
1170
 * case it happens.
1171
 *
1172
 * For more, read the Documentation/power/runtime_pm.txt.
1173
 */
1174
struct i915_runtime_pm {
1175
	atomic_t wakeref_count;
1176
	bool suspended;
1177
	bool irqs_enabled;
1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196

#if IS_ENABLED(CONFIG_DRM_I915_DEBUG_RUNTIME_PM)
	/*
	 * To aide detection of wakeref leaks and general misuse, we
	 * track all wakeref holders. With manual markup (i.e. returning
	 * a cookie to each rpm_get caller which they then supply to their
	 * paired rpm_put) we can remove corresponding pairs of and keep
	 * the array trimmed to active wakerefs.
	 */
	struct intel_runtime_pm_debug {
		spinlock_t lock;

		depot_stack_handle_t last_acquire;
		depot_stack_handle_t last_release;

		depot_stack_handle_t *owners;
		unsigned long count;
	} debug;
#endif
1197 1198
};

1199 1200 1201 1202 1203
enum intel_pipe_crc_source {
	INTEL_PIPE_CRC_SOURCE_NONE,
	INTEL_PIPE_CRC_SOURCE_PLANE1,
	INTEL_PIPE_CRC_SOURCE_PLANE2,
	INTEL_PIPE_CRC_SOURCE_PF,
1204
	INTEL_PIPE_CRC_SOURCE_PIPE,
D
Daniel Vetter 已提交
1205 1206 1207 1208 1209
	/* TV/DP on pre-gen5/vlv can't use the pipe source. */
	INTEL_PIPE_CRC_SOURCE_TV,
	INTEL_PIPE_CRC_SOURCE_DP_B,
	INTEL_PIPE_CRC_SOURCE_DP_C,
	INTEL_PIPE_CRC_SOURCE_DP_D,
1210
	INTEL_PIPE_CRC_SOURCE_AUTO,
1211 1212 1213
	INTEL_PIPE_CRC_SOURCE_MAX,
};

1214
#define INTEL_PIPE_CRC_ENTRIES_NR	128
1215
struct intel_pipe_crc {
1216
	spinlock_t lock;
T
Tomeu Vizoso 已提交
1217
	int skipped;
1218
	enum intel_pipe_crc_source source;
1219 1220
};

1221
struct i915_frontbuffer_tracking {
1222
	spinlock_t lock;
1223 1224 1225 1226 1227 1228 1229 1230 1231

	/*
	 * Tracking bits for delayed frontbuffer flushing du to gpu activity or
	 * scheduled flips.
	 */
	unsigned busy_bits;
	unsigned flip_bits;
};

1232 1233
struct i915_virtual_gpu {
	bool active;
1234
	u32 caps;
1235 1236
};

1237 1238 1239 1240 1241 1242 1243
/* used in computing the new watermarks state */
struct intel_wm_config {
	unsigned int num_pipes_active;
	bool sprites_enabled;
	bool sprites_scaled;
};

1244 1245 1246 1247 1248
struct i915_oa_format {
	u32 format;
	int size;
};

1249 1250 1251 1252 1253
struct i915_oa_reg {
	i915_reg_t addr;
	u32 value;
};

1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267
struct i915_oa_config {
	char uuid[UUID_STRING_LEN + 1];
	int id;

	const struct i915_oa_reg *mux_regs;
	u32 mux_regs_len;
	const struct i915_oa_reg *b_counter_regs;
	u32 b_counter_regs_len;
	const struct i915_oa_reg *flex_regs;
	u32 flex_regs_len;

	struct attribute_group sysfs_metric;
	struct attribute *attrs[2];
	struct device_attribute sysfs_metric_id;
1268 1269

	atomic_t ref_count;
1270 1271
};

1272 1273
struct i915_perf_stream;

1274 1275 1276
/**
 * struct i915_perf_stream_ops - the OPs to support a specific stream type
 */
1277
struct i915_perf_stream_ops {
1278 1279 1280 1281
	/**
	 * @enable: Enables the collection of HW samples, either in response to
	 * `I915_PERF_IOCTL_ENABLE` or implicitly called when stream is opened
	 * without `I915_PERF_FLAG_DISABLED`.
1282 1283 1284
	 */
	void (*enable)(struct i915_perf_stream *stream);

1285 1286 1287 1288
	/**
	 * @disable: Disables the collection of HW samples, either in response
	 * to `I915_PERF_IOCTL_DISABLE` or implicitly called before destroying
	 * the stream.
1289 1290 1291
	 */
	void (*disable)(struct i915_perf_stream *stream);

1292 1293
	/**
	 * @poll_wait: Call poll_wait, passing a wait queue that will be woken
1294 1295 1296 1297 1298 1299
	 * once there is something ready to read() for the stream
	 */
	void (*poll_wait)(struct i915_perf_stream *stream,
			  struct file *file,
			  poll_table *wait);

1300 1301 1302
	/**
	 * @wait_unlocked: For handling a blocking read, wait until there is
	 * something to ready to read() for the stream. E.g. wait on the same
1303
	 * wait queue that would be passed to poll_wait().
1304 1305 1306
	 */
	int (*wait_unlocked)(struct i915_perf_stream *stream);

1307 1308 1309 1310 1311 1312 1313
	/**
	 * @read: Copy buffered metrics as records to userspace
	 * **buf**: the userspace, destination buffer
	 * **count**: the number of bytes to copy, requested by userspace
	 * **offset**: zero at the start of the read, updated as the read
	 * proceeds, it represents how many bytes have been copied so far and
	 * the buffer offset for copying the next record.
1314
	 *
1315 1316
	 * Copy as many buffered i915 perf samples and records for this stream
	 * to userspace as will fit in the given buffer.
1317
	 *
1318 1319
	 * Only write complete records; returning -%ENOSPC if there isn't room
	 * for a complete record.
1320
	 *
1321 1322 1323
	 * Return any error condition that results in a short read such as
	 * -%ENOSPC or -%EFAULT, even though these may be squashed before
	 * returning to userspace.
1324 1325 1326 1327 1328 1329
	 */
	int (*read)(struct i915_perf_stream *stream,
		    char __user *buf,
		    size_t count,
		    size_t *offset);

1330 1331
	/**
	 * @destroy: Cleanup any stream specific resources.
1332 1333 1334 1335 1336 1337
	 *
	 * The stream will always be disabled before this is called.
	 */
	void (*destroy)(struct i915_perf_stream *stream);
};

1338 1339 1340
/**
 * struct i915_perf_stream - state for a single open stream FD
 */
1341
struct i915_perf_stream {
1342 1343 1344
	/**
	 * @dev_priv: i915 drm device
	 */
1345 1346
	struct drm_i915_private *dev_priv;

1347 1348 1349
	/**
	 * @link: Links the stream into ``&drm_i915_private->streams``
	 */
1350 1351
	struct list_head link;

1352 1353 1354 1355
	/**
	 * @wakeref: As we keep the device awake while the perf stream is
	 * active, we track our runtime pm reference for later release.
	 */
1356 1357
	intel_wakeref_t wakeref;

1358 1359 1360 1361 1362
	/**
	 * @sample_flags: Flags representing the `DRM_I915_PERF_PROP_SAMPLE_*`
	 * properties given when opening a stream, representing the contents
	 * of a single sample as read() by userspace.
	 */
1363
	u32 sample_flags;
1364 1365 1366 1367 1368 1369

	/**
	 * @sample_size: Considering the configured contents of a sample
	 * combined with the required header size, this is the total size
	 * of a single sample record.
	 */
1370
	int sample_size;
1371

1372 1373 1374 1375
	/**
	 * @ctx: %NULL if measuring system-wide across all contexts or a
	 * specific context that is being monitored.
	 */
1376
	struct i915_gem_context *ctx;
1377 1378 1379 1380 1381 1382

	/**
	 * @enabled: Whether the stream is currently enabled, considering
	 * whether the stream was opened in a disabled state and based
	 * on `I915_PERF_IOCTL_ENABLE` and `I915_PERF_IOCTL_DISABLE` calls.
	 */
1383 1384
	bool enabled;

1385 1386 1387 1388
	/**
	 * @ops: The callbacks providing the implementation of this specific
	 * type of configured stream.
	 */
1389
	const struct i915_perf_stream_ops *ops;
1390 1391 1392 1393 1394

	/**
	 * @oa_config: The OA configuration used by the stream.
	 */
	struct i915_oa_config *oa_config;
1395 1396
};

1397 1398 1399
/**
 * struct i915_oa_ops - Gen specific implementation of an OA unit stream
 */
1400
struct i915_oa_ops {
1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419
	/**
	 * @is_valid_b_counter_reg: Validates register's address for
	 * programming boolean counters for a particular platform.
	 */
	bool (*is_valid_b_counter_reg)(struct drm_i915_private *dev_priv,
				       u32 addr);

	/**
	 * @is_valid_mux_reg: Validates register's address for programming mux
	 * for a particular platform.
	 */
	bool (*is_valid_mux_reg)(struct drm_i915_private *dev_priv, u32 addr);

	/**
	 * @is_valid_flex_reg: Validates register's address for programming
	 * flex EU filtering for a particular platform.
	 */
	bool (*is_valid_flex_reg)(struct drm_i915_private *dev_priv, u32 addr);

1420 1421 1422 1423
	/**
	 * @enable_metric_set: Selects and applies any MUX configuration to set
	 * up the Boolean and Custom (B/C) counters that are part of the
	 * counter reports being sampled. May apply system constraints such as
1424 1425
	 * disabling EU clock gating as required.
	 */
1426
	int (*enable_metric_set)(struct i915_perf_stream *stream);
1427 1428 1429 1430 1431

	/**
	 * @disable_metric_set: Remove system constraints associated with using
	 * the OA unit.
	 */
1432
	void (*disable_metric_set)(struct drm_i915_private *dev_priv);
1433 1434 1435 1436

	/**
	 * @oa_enable: Enable periodic sampling
	 */
1437
	void (*oa_enable)(struct i915_perf_stream *stream);
1438 1439 1440 1441

	/**
	 * @oa_disable: Disable periodic sampling
	 */
1442
	void (*oa_disable)(struct i915_perf_stream *stream);
1443 1444 1445 1446 1447

	/**
	 * @read: Copy data from the circular OA buffer into a given userspace
	 * buffer.
	 */
1448 1449 1450 1451
	int (*read)(struct i915_perf_stream *stream,
		    char __user *buf,
		    size_t count,
		    size_t *offset);
1452 1453

	/**
1454
	 * @oa_hw_tail_read: read the OA tail pointer register
1455
	 *
1456 1457 1458
	 * In particular this enables us to share all the fiddly code for
	 * handling the OA unit tail pointer race that affects multiple
	 * generations.
1459
	 */
1460
	u32 (*oa_hw_tail_read)(struct drm_i915_private *dev_priv);
1461 1462
};

1463
struct intel_cdclk_state {
1464
	unsigned int cdclk, vco, ref, bypass;
1465
	u8 voltage_level;
1466 1467
};

1468
struct drm_i915_private {
1469 1470
	struct drm_device drm;

1471
	struct kmem_cache *objects;
1472
	struct kmem_cache *vmas;
1473
	struct kmem_cache *luts;
1474
	struct kmem_cache *requests;
1475
	struct kmem_cache *dependencies;
1476
	struct kmem_cache *priorities;
1477

1478
	const struct intel_device_info __info; /* Use INTEL_INFO() to access. */
1479
	struct intel_runtime_info __runtime; /* Use RUNTIME_INFO() to access. */
1480
	struct intel_driver_caps caps;
1481

1482 1483 1484
	/**
	 * Data Stolen Memory - aka "i915 stolen memory" gives us the start and
	 * end of stolen which we can optionally use to create GEM objects
1485
	 * backed by stolen memory. Note that stolen_usable_size tells us
1486 1487 1488 1489
	 * exactly how much of this we are actually allowed to use, given that
	 * some portion of it is in fact reserved for use by hardware functions.
	 */
	struct resource dsm;
1490 1491 1492 1493
	/**
	 * Reseved portion of Data Stolen Memory
	 */
	struct resource dsm_reserved;
1494

1495 1496 1497 1498 1499 1500 1501 1502 1503
	/*
	 * Stolen memory is segmented in hardware with different portions
	 * offlimits to certain functions.
	 *
	 * The drm_mm is initialised to the total accessible range, as found
	 * from the PCI config. On Broadwell+, this is further restricted to
	 * avoid the first page! The upper end of stolen memory is reserved for
	 * hardware functions and similarly removed from the accessible range.
	 */
1504
	resource_size_t stolen_usable_size;	/* Total size minus reserved ranges */
1505

1506 1507
	void __iomem *regs;

1508
	struct intel_uncore uncore;
1509

1510 1511
	struct i915_virtual_gpu vgpu;

1512
	struct intel_gvt *gvt;
1513

1514 1515
	struct intel_wopcm wopcm;

1516
	struct intel_huc huc;
1517 1518
	struct intel_guc guc;

1519 1520
	struct intel_csr csr;

1521
	struct intel_gmbus gmbus[GMBUS_NUM_PINS];
1522

1523 1524 1525 1526 1527
	/** gmbus_mutex protects against concurrent usage of the single hw gmbus
	 * controller on different i2c buses. */
	struct mutex gmbus_mutex;

	/**
1528 1529
	 * Base address of where the gmbus and gpio blocks are located (either
	 * on PCH or on SoC for platforms without PCH).
1530
	 */
1531
	u32 gpio_mmio_base;
1532

1533
	/* MMIO base address for MIPI regs */
1534
	u32 mipi_mmio_base;
1535

1536
	u32 psr_mmio_base;
1537

1538
	u32 pps_mmio_base;
1539

1540 1541
	wait_queue_head_t gmbus_wait_queue;

1542
	struct pci_dev *bridge_dev;
1543
	struct intel_engine_cs *engine[I915_NUM_ENGINES];
1544 1545 1546 1547
	/* Context used internally to idle the GPU and setup initial state */
	struct i915_gem_context *kernel_context;
	/* Context only to be used for injecting preemption commands */
	struct i915_gem_context *preempt_context;
1548 1549
	struct intel_engine_cs *engine_class[MAX_ENGINE_CLASS + 1]
					    [MAX_ENGINE_INSTANCE + 1];
1550 1551 1552 1553 1554 1555

	struct resource mch_res;

	/* protects the irq masks */
	spinlock_t irq_lock;

1556 1557
	bool display_irqs_enabled;

1558 1559 1560
	/* To control wakeup latency, e.g. for irq-driven dp aux transfers. */
	struct pm_qos_request pm_qos;

V
Ville Syrjälä 已提交
1561 1562
	/* Sideband mailbox protection */
	struct mutex sb_lock;
1563 1564

	/** Cached value of IMR to avoid reads in updating the bitfield */
1565 1566 1567 1568
	union {
		u32 irq_mask;
		u32 de_irq_mask[I915_MAX_PIPES];
	};
1569
	u32 gt_irq_mask;
1570 1571
	u32 pm_imr;
	u32 pm_ier;
1572
	u32 pm_rps_events;
1573
	u32 pm_guc_events;
1574
	u32 pipestat_irq_mask[I915_MAX_PIPES];
1575

1576
	struct i915_hotplug hotplug;
1577
	struct intel_fbc fbc;
1578
	struct i915_drrs drrs;
1579
	struct intel_opregion opregion;
1580
	struct intel_vbt_data vbt;
1581

1582 1583
	bool preserve_bios_swizzle;

1584 1585 1586
	/* overlay */
	struct intel_overlay *overlay;

1587
	/* backlight registers and fields in struct intel_panel */
1588
	struct mutex backlight_lock;
1589

1590 1591 1592
	/* LVDS info */
	bool no_aux_handshake;

V
Ville Syrjälä 已提交
1593 1594 1595
	/* protects panel power sequencer state */
	struct mutex pps_mutex;

1596 1597 1598 1599
	struct drm_i915_fence_reg fence_regs[I915_MAX_NUM_FENCES]; /* assume 965 */
	int num_fence_regs; /* 8 on pre-965, 16 otherwise */

	unsigned int fsb_freq, mem_freq, is_ddr3;
1600
	unsigned int skl_preferred_vco_freq;
1601
	unsigned int max_cdclk_freq;
1602

M
Mika Kahola 已提交
1603
	unsigned int max_dotclk_freq;
1604
	unsigned int rawclk_freq;
1605
	unsigned int hpll_freq;
1606
	unsigned int fdi_pll_freq;
1607
	unsigned int czclk_freq;
1608

1609
	struct {
1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623
		/*
		 * The current logical cdclk state.
		 * See intel_atomic_state.cdclk.logical
		 *
		 * For reading holding any crtc lock is sufficient,
		 * for writing must hold all of them.
		 */
		struct intel_cdclk_state logical;
		/*
		 * The current actual cdclk state.
		 * See intel_atomic_state.cdclk.actual
		 */
		struct intel_cdclk_state actual;
		/* The current hardware cdclk state */
1624 1625
		struct intel_cdclk_state hw;
	} cdclk;
1626

1627 1628 1629 1630 1631 1632 1633
	/**
	 * wq - Driver workqueue for GEM.
	 *
	 * NOTE: Work items scheduled here are not allowed to grab any modeset
	 * locks, for otherwise the flushing done in the pageflip code will
	 * result in deadlocks.
	 */
1634 1635
	struct workqueue_struct *wq;

1636 1637 1638
	/* ordered wq for modesets */
	struct workqueue_struct *modeset_wq;

1639 1640 1641 1642 1643
	/* Display functions */
	struct drm_i915_display_funcs display;

	/* PCH chipset type */
	enum intel_pch pch_type;
1644
	unsigned short pch_id;
1645 1646 1647

	unsigned long quirks;

1648
	struct drm_atomic_state *modeset_restore_state;
1649
	struct drm_modeset_acquire_ctx reset_ctx;
1650

1651
	struct i915_ggtt ggtt; /* VM representing the global address space */
B
Ben Widawsky 已提交
1652

1653
	struct i915_gem_mm mm;
1654 1655
	DECLARE_HASHTABLE(mm_structs, 7);
	struct mutex mm_lock;
1656

1657 1658
	struct intel_ppat ppat;

1659 1660
	/* Kernel Modesetting */

1661 1662
	struct intel_crtc *plane_to_crtc_mapping[I915_MAX_PIPES];
	struct intel_crtc *pipe_to_crtc_mapping[I915_MAX_PIPES];
1663

1664 1665 1666 1667
#ifdef CONFIG_DEBUG_FS
	struct intel_pipe_crc pipe_crc[I915_MAX_PIPES];
#endif

1668
	/* dpll and cdclk state is protected by connection_mutex */
D
Daniel Vetter 已提交
1669 1670
	int num_shared_dpll;
	struct intel_shared_dpll shared_dplls[I915_NUM_PLLS];
1671
	const struct intel_dpll_mgr *dpll_mgr;
1672

1673 1674 1675 1676 1677 1678 1679
	/*
	 * dpll_lock serializes intel_{prepare,enable,disable}_shared_dpll.
	 * Must be global rather than per dpll, because on some platforms
	 * plls share registers.
	 */
	struct mutex dpll_lock;

1680
	unsigned int active_crtcs;
1681 1682
	/* minimum acceptable cdclk for each pipe */
	int min_cdclk[I915_MAX_PIPES];
1683 1684
	/* minimum acceptable voltage level for each pipe */
	u8 min_voltage_level[I915_MAX_PIPES];
1685

1686
	int dpio_phy_iosf_port[I915_NUM_PHYS_VLV];
1687

1688
	struct i915_wa_list gt_wa_list;
1689

1690 1691
	struct i915_frontbuffer_tracking fb_tracking;

1692 1693 1694 1695 1696
	struct intel_atomic_helper {
		struct llist_head free_list;
		struct work_struct free_work;
	} atomic_helper;

1697
	u16 orig_clock;
1698

1699
	bool mchbar_need_disable;
1700

1701 1702
	struct intel_l3_parity l3_parity;

B
Ben Widawsky 已提交
1703
	/* Cannot be determined by PCIID. You must always read a register. */
1704
	u32 edram_cap;
B
Ben Widawsky 已提交
1705

1706 1707 1708 1709 1710 1711 1712 1713
	/*
	 * Protects RPS/RC6 register access and PCU communication.
	 * Must be taken after struct_mutex if nested. Note that
	 * this lock may be held for long periods of time when
	 * talking to hw - so only take it when talking to hw!
	 */
	struct mutex pcu_lock;

1714 1715
	/* gen6+ GT PM state */
	struct intel_gen6_power_mgmt gt_pm;
1716

1717 1718
	/* ilk-only ips/rps state. Everything in here is protected by the global
	 * mchdev_lock in intel_pm.c */
1719
	struct intel_ilk_power_mgmt ips;
1720

1721
	struct i915_power_domains power_domains;
1722

R
Rodrigo Vivi 已提交
1723
	struct i915_psr psr;
1724

1725
	struct i915_gpu_error gpu_error;
1726

1727 1728
	struct drm_i915_gem_object *vlv_pctx;

1729 1730
	/* list of fbdev register on this device */
	struct intel_fbdev *fbdev;
1731
	struct work_struct fbdev_suspend_work;
1732 1733

	struct drm_property *broadcast_rgb_property;
1734
	struct drm_property *force_audio_property;
1735

I
Imre Deak 已提交
1736
	/* hda/i915 audio component */
1737
	struct i915_audio_component *audio_component;
I
Imre Deak 已提交
1738
	bool audio_component_registered;
1739 1740 1741 1742 1743
	/**
	 * av_mutex - mutex for audio/video sync
	 *
	 */
	struct mutex av_mutex;
I
Imre Deak 已提交
1744

1745
	struct {
1746
		struct mutex mutex;
1747
		struct list_head list;
1748 1749
		struct llist_head free_list;
		struct work_struct free_work;
1750 1751 1752 1753 1754 1755 1756

		/* The hw wants to have a stable context identifier for the
		 * lifetime of the context (for OA, PASID, faults, etc).
		 * This is limited in execlists to 21 bits.
		 */
		struct ida hw_ida;
#define MAX_CONTEXT_HW_ID (1<<21) /* exclusive */
1757
#define MAX_GUC_CONTEXT_HW_ID (1 << 20) /* exclusive */
1758
#define GEN11_MAX_CONTEXT_HW_ID (1<<11) /* exclusive */
1759
		struct list_head hw_id_list;
1760
	} contexts;
1761

1762
	u32 fdi_rx_config;
1763

1764
	/* Shadow for DISPLAY_PHY_CONTROL which can't be safely read */
1765
	u32 chv_phy_control;
1766 1767 1768 1769 1770 1771
	/*
	 * Shadows for CHV DPLL_MD regs to keep the state
	 * checker somewhat working in the presence hardware
	 * crappiness (can't read out DPLL_MD for pipes B & C).
	 */
	u32 chv_dpll_md[I915_MAX_PIPES];
1772
	u32 bxt_phy_grc;
1773

1774
	u32 suspend_count;
1775
	bool power_domains_suspended;
1776
	struct i915_suspend_saved_registers regfile;
1777
	struct vlv_s0ix_state vlv_s0ix_state;
1778

1779
	enum {
1780 1781 1782 1783 1784
		I915_SAGV_UNKNOWN = 0,
		I915_SAGV_DISABLED,
		I915_SAGV_ENABLED,
		I915_SAGV_NOT_CONTROLLED
	} sagv_status;
1785

1786 1787 1788 1789 1790 1791 1792
	struct {
		/*
		 * Raw watermark latency values:
		 * in 0.1us units for WM0,
		 * in 0.5us units for WM1+.
		 */
		/* primary */
1793
		u16 pri_latency[5];
1794
		/* sprite */
1795
		u16 spr_latency[5];
1796
		/* cursor */
1797
		u16 cur_latency[5];
1798 1799 1800 1801 1802
		/*
		 * Raw watermark memory latency values
		 * for SKL for all 8 levels
		 * in 1us units.
		 */
1803
		u16 skl_latency[8];
1804 1805

		/* current hardware state */
1806 1807
		union {
			struct ilk_wm_values hw;
1808
			struct skl_ddb_values skl_hw;
1809
			struct vlv_wm_values vlv;
1810
			struct g4x_wm_values g4x;
1811
		};
1812

1813
		u8 max_level;
1814 1815 1816 1817 1818 1819 1820

		/*
		 * Should be held around atomic WM register writing; also
		 * protects * intel_crtc->wm.active and
		 * cstate->wm.need_postvbl_update.
		 */
		struct mutex wm_mutex;
1821 1822 1823 1824 1825 1826 1827

		/*
		 * Set during HW readout of watermarks/DDB.  Some platforms
		 * need to know when we're still using BIOS-provided values
		 * (which we don't fully trust).
		 */
		bool distrust_bios_wm;
1828 1829
	} wm;

1830 1831
	struct dram_info {
		bool valid;
1832
		bool is_16gb_dimm;
1833 1834 1835 1836 1837 1838 1839
		u8 num_channels;
		enum dram_rank {
			I915_DRAM_RANK_INVALID = 0,
			I915_DRAM_RANK_SINGLE,
			I915_DRAM_RANK_DUAL
		} rank;
		u32 bandwidth_kbps;
1840
		bool symmetric_memory;
1841 1842
	} dram_info;

1843
	struct i915_runtime_pm runtime_pm;
1844

1845 1846
	struct {
		bool initialized;
1847

1848
		struct kobject *metrics_kobj;
1849
		struct ctl_table_header *sysctl_header;
1850

1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866
		/*
		 * Lock associated with adding/modifying/removing OA configs
		 * in dev_priv->perf.metrics_idr.
		 */
		struct mutex metrics_lock;

		/*
		 * List of dynamic configurations, you need to hold
		 * dev_priv->perf.metrics_lock to access it.
		 */
		struct idr metrics_idr;

		/*
		 * Lock associated with anything below within this structure
		 * except exclusive_stream.
		 */
1867 1868
		struct mutex lock;
		struct list_head streams;
1869 1870

		struct {
1871 1872 1873 1874 1875 1876
			/*
			 * The stream currently using the OA unit. If accessed
			 * outside a syscall associated to its file
			 * descriptor, you need to hold
			 * dev_priv->drm.struct_mutex.
			 */
1877 1878
			struct i915_perf_stream *exclusive_stream;

1879
			struct intel_context *pinned_ctx;
1880
			u32 specific_ctx_id;
1881
			u32 specific_ctx_id_mask;
1882 1883 1884 1885 1886

			struct hrtimer poll_check_timer;
			wait_queue_head_t poll_wq;
			bool pollin;

1887 1888 1889 1890 1891 1892
			/**
			 * For rate limiting any notifications of spurious
			 * invalid OA reports
			 */
			struct ratelimit_state spurious_report_rs;

1893 1894 1895
			bool periodic;
			int period_exponent;

1896
			struct i915_oa_config test_config;
1897 1898 1899 1900

			struct {
				struct i915_vma *vma;
				u8 *vaddr;
1901
				u32 last_ctx_id;
1902 1903
				int format;
				int format_size;
1904

1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957
				/**
				 * Locks reads and writes to all head/tail state
				 *
				 * Consider: the head and tail pointer state
				 * needs to be read consistently from a hrtimer
				 * callback (atomic context) and read() fop
				 * (user context) with tail pointer updates
				 * happening in atomic context and head updates
				 * in user context and the (unlikely)
				 * possibility of read() errors needing to
				 * reset all head/tail state.
				 *
				 * Note: Contention or performance aren't
				 * currently a significant concern here
				 * considering the relatively low frequency of
				 * hrtimer callbacks (5ms period) and that
				 * reads typically only happen in response to a
				 * hrtimer event and likely complete before the
				 * next callback.
				 *
				 * Note: This lock is not held *while* reading
				 * and copying data to userspace so the value
				 * of head observed in htrimer callbacks won't
				 * represent any partial consumption of data.
				 */
				spinlock_t ptr_lock;

				/**
				 * One 'aging' tail pointer and one 'aged'
				 * tail pointer ready to used for reading.
				 *
				 * Initial values of 0xffffffff are invalid
				 * and imply that an update is required
				 * (and should be ignored by an attempted
				 * read)
				 */
				struct {
					u32 offset;
				} tails[2];

				/**
				 * Index for the aged tail ready to read()
				 * data up to.
				 */
				unsigned int aged_tail_idx;

				/**
				 * A monotonic timestamp for when the current
				 * aging tail pointer was read; used to
				 * determine when it is old enough to trust.
				 */
				u64 aging_timestamp;

1958 1959 1960 1961 1962 1963 1964 1965 1966 1967
				/**
				 * Although we can always read back the head
				 * pointer register, we prefer to avoid
				 * trusting the HW state, just to avoid any
				 * risk that some hardware condition could
				 * somehow bump the head pointer unpredictably
				 * and cause us to forward the wrong OA buffer
				 * data to userspace.
				 */
				u32 head;
1968 1969 1970
			} oa_buffer;

			u32 gen7_latched_oastatus1;
1971 1972 1973 1974 1975 1976 1977 1978 1979
			u32 ctx_oactxctrl_offset;
			u32 ctx_flexeu0_offset;

			/**
			 * The RPT_ID/reason field for Gen8+ includes a bit
			 * to determine if the CTX ID in the report is valid
			 * but the specific bit differs between Gen 8 and 9
			 */
			u32 gen8_valid_ctx_bit;
1980 1981 1982

			struct i915_oa_ops ops;
			const struct i915_oa_format *oa_formats;
1983
		} oa;
1984 1985
	} perf;

1986 1987
	/* Abstract the submission mechanism (legacy ringbuffer or execlists) away */
	struct {
1988
		void (*resume)(struct drm_i915_private *);
1989
		void (*cleanup_engine)(struct intel_engine_cs *engine);
1990

1991 1992
		struct i915_gt_timelines {
			struct mutex mutex; /* protects list, tainted by GPU */
C
Chris Wilson 已提交
1993
			struct list_head active_list;
1994 1995 1996 1997

			/* Pack multiple timelines' seqnos into the same page */
			spinlock_t hwsp_lock;
			struct list_head hwsp_free_list;
1998
		} timelines;
1999 2000

		struct list_head active_rings;
2001
		struct list_head closed_vma;
2002
		u32 active_requests;
2003

2004 2005 2006 2007 2008 2009 2010
		/**
		 * Is the GPU currently considered idle, or busy executing
		 * userspace requests? Whilst idle, we allow runtime power
		 * management to power down the hardware and display clocks.
		 * In order to reduce the effect on performance, there
		 * is a slight delay before we do so.
		 */
C
Chris Wilson 已提交
2011
		intel_wakeref_t awake;
2012

2013 2014 2015 2016 2017 2018
		/**
		 * The number of times we have woken up.
		 */
		unsigned int epoch;
#define I915_EPOCH_INVALID 0

2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035
		/**
		 * We leave the user IRQ off as much as possible,
		 * but this means that requests will finish and never
		 * be retired once the system goes idle. Set a timer to
		 * fire periodically while the ring is running. When it
		 * fires, go retire requests.
		 */
		struct delayed_work retire_work;

		/**
		 * When we detect an idle GPU, we want to turn on
		 * powersaving features. So once we see that there
		 * are no more requests outstanding and no more
		 * arrive within a small period of time, we fire
		 * off the idle_work.
		 */
		struct delayed_work idle_work;
2036 2037

		ktime_t last_init_time;
2038 2039

		struct i915_vma *scratch;
2040 2041
	} gt;

2042 2043 2044
	/* perform PHY state sanity checks? */
	bool chv_phy_assert[2];

M
Mahesh Kumar 已提交
2045 2046
	bool ipc_enabled;

2047 2048
	/* Used to save the pipe-to-encoder mapping for audio */
	struct intel_encoder *av_enc_map[I915_MAX_PIPES];
2049

2050 2051 2052 2053 2054 2055
	/* necessary resource sharing with HDMI LPE audio driver. */
	struct {
		struct platform_device *platdev;
		int	irq;
	} lpe_audio;

2056 2057
	struct i915_pmu pmu;

2058 2059 2060 2061
	/*
	 * NOTE: This is the dri1/ums dungeon, don't add stuff here. Your patch
	 * will be rejected. Instead look for a better place.
	 */
2062
};
L
Linus Torvalds 已提交
2063

2064 2065 2066 2067 2068 2069
struct dram_channel_info {
	struct info {
		u8 size, width;
		enum dram_rank rank;
	} l_info, s_info;
	enum dram_rank rank;
2070
	bool is_16gb_dimm;
2071 2072
};

2073 2074
static inline struct drm_i915_private *to_i915(const struct drm_device *dev)
{
2075
	return container_of(dev, struct drm_i915_private, drm);
2076 2077
}

2078
static inline struct drm_i915_private *kdev_to_i915(struct device *kdev)
I
Imre Deak 已提交
2079
{
2080
	return to_i915(dev_get_drvdata(kdev));
I
Imre Deak 已提交
2081 2082
}

2083 2084 2085 2086 2087
static inline struct drm_i915_private *wopcm_to_i915(struct intel_wopcm *wopcm)
{
	return container_of(wopcm, struct drm_i915_private, wopcm);
}

2088 2089 2090 2091 2092
static inline struct drm_i915_private *guc_to_i915(struct intel_guc *guc)
{
	return container_of(guc, struct drm_i915_private, guc);
}

A
Arkadiusz Hiler 已提交
2093 2094 2095 2096 2097
static inline struct drm_i915_private *huc_to_i915(struct intel_huc *huc)
{
	return container_of(huc, struct drm_i915_private, huc);
}

2098
/* Simple iterator over all initialised engines */
2099 2100 2101 2102 2103
#define for_each_engine(engine__, dev_priv__, id__) \
	for ((id__) = 0; \
	     (id__) < I915_NUM_ENGINES; \
	     (id__)++) \
		for_each_if ((engine__) = (dev_priv__)->engine[(id__)])
2104 2105

/* Iterator over subset of engines selected by mask */
2106
#define for_each_engine_masked(engine__, dev_priv__, mask__, tmp__) \
2107 2108 2109 2110
	for ((tmp__) = (mask__) & INTEL_INFO(dev_priv__)->ring_mask; \
	     (tmp__) ? \
	     ((engine__) = (dev_priv__)->engine[__mask_next_bit(tmp__)]), 1 : \
	     0;)
2111

2112 2113 2114 2115 2116 2117 2118
enum hdmi_force_audio {
	HDMI_AUDIO_OFF_DVI = -2,	/* no aux data for HDMI-DVI converter */
	HDMI_AUDIO_OFF,			/* force turn off HDMI audio */
	HDMI_AUDIO_AUTO,		/* trust EDID */
	HDMI_AUDIO_ON,			/* force turn on HDMI audio */
};

2119
#define I915_GTT_OFFSET_NONE ((u32)-1)
2120

2121 2122
/*
 * Frontbuffer tracking bits. Set in obj->frontbuffer_bits while a gem bo is
2123
 * considered to be the frontbuffer for the given plane interface-wise. This
2124 2125 2126 2127 2128
 * doesn't mean that the hw necessarily already scans it out, but that any
 * rendering (by the cpu or gpu) will land in the frontbuffer eventually.
 *
 * We have one bit per pipe and per scanout plane type.
 */
2129
#define INTEL_FRONTBUFFER_BITS_PER_PIPE 8
2130 2131 2132 2133 2134
#define INTEL_FRONTBUFFER(pipe, plane_id) ({ \
	BUILD_BUG_ON(INTEL_FRONTBUFFER_BITS_PER_PIPE * I915_MAX_PIPES > 32); \
	BUILD_BUG_ON(I915_MAX_PLANES > INTEL_FRONTBUFFER_BITS_PER_PIPE); \
	BIT((plane_id) + INTEL_FRONTBUFFER_BITS_PER_PIPE * (pipe)); \
})
2135
#define INTEL_FRONTBUFFER_OVERLAY(pipe) \
2136
	BIT(INTEL_FRONTBUFFER_BITS_PER_PIPE - 1 + INTEL_FRONTBUFFER_BITS_PER_PIPE * (pipe))
2137
#define INTEL_FRONTBUFFER_ALL_MASK(pipe) \
2138 2139
	GENMASK(INTEL_FRONTBUFFER_BITS_PER_PIPE * ((pipe) + 1) - 1, \
		INTEL_FRONTBUFFER_BITS_PER_PIPE * (pipe))
2140

2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166
/*
 * Optimised SGL iterator for GEM objects
 */
static __always_inline struct sgt_iter {
	struct scatterlist *sgp;
	union {
		unsigned long pfn;
		dma_addr_t dma;
	};
	unsigned int curr;
	unsigned int max;
} __sgt_iter(struct scatterlist *sgl, bool dma) {
	struct sgt_iter s = { .sgp = sgl };

	if (s.sgp) {
		s.max = s.curr = s.sgp->offset;
		s.max += s.sgp->length;
		if (dma)
			s.dma = sg_dma_address(s.sgp);
		else
			s.pfn = page_to_pfn(sg_page(s.sgp));
	}

	return s;
}

2167 2168 2169 2170 2171 2172 2173 2174
static inline struct scatterlist *____sg_next(struct scatterlist *sg)
{
	++sg;
	if (unlikely(sg_is_chain(sg)))
		sg = sg_chain_ptr(sg);
	return sg;
}

2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185
/**
 * __sg_next - return the next scatterlist entry in a list
 * @sg:		The current sg entry
 *
 * Description:
 *   If the entry is the last, return NULL; otherwise, step to the next
 *   element in the array (@sg@+1). If that's a chain pointer, follow it;
 *   otherwise just return the pointer to the current element.
 **/
static inline struct scatterlist *__sg_next(struct scatterlist *sg)
{
2186
	return sg_is_last(sg) ? NULL : ____sg_next(sg);
2187 2188
}

2189 2190 2191 2192 2193 2194 2195 2196 2197
/**
 * for_each_sgt_dma - iterate over the DMA addresses of the given sg_table
 * @__dmap:	DMA address (output)
 * @__iter:	'struct sgt_iter' (iterator state, internal)
 * @__sgt:	sg_table to iterate over (input)
 */
#define for_each_sgt_dma(__dmap, __iter, __sgt)				\
	for ((__iter) = __sgt_iter((__sgt)->sgl, true);			\
	     ((__dmap) = (__iter).dma + (__iter).curr);			\
2198
	     (((__iter).curr += I915_GTT_PAGE_SIZE) >= (__iter).max) ?	\
2199
	     (__iter) = __sgt_iter(__sg_next((__iter).sgp), true), 0 : 0)
2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210

/**
 * for_each_sgt_page - iterate over the pages of the given sg_table
 * @__pp:	page pointer (output)
 * @__iter:	'struct sgt_iter' (iterator state, internal)
 * @__sgt:	sg_table to iterate over (input)
 */
#define for_each_sgt_page(__pp, __iter, __sgt)				\
	for ((__iter) = __sgt_iter((__sgt)->sgl, false);		\
	     ((__pp) = (__iter).pfn == 0 ? NULL :			\
	      pfn_to_page((__iter).pfn + ((__iter).curr >> PAGE_SHIFT))); \
2211 2212
	     (((__iter).curr += PAGE_SIZE) >= (__iter).max) ?		\
	     (__iter) = __sgt_iter(__sg_next((__iter).sgp), false), 0 : 0)
2213

2214 2215
bool i915_sg_trim(struct sg_table *orig_st);

2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230
static inline unsigned int i915_sg_page_sizes(struct scatterlist *sg)
{
	unsigned int page_sizes;

	page_sizes = 0;
	while (sg) {
		GEM_BUG_ON(sg->offset);
		GEM_BUG_ON(!IS_ALIGNED(sg->length, PAGE_SIZE));
		page_sizes |= sg->length;
		sg = __sg_next(sg);
	}

	return page_sizes;
}

2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245
static inline unsigned int i915_sg_segment_size(void)
{
	unsigned int size = swiotlb_max_segment();

	if (size == 0)
		return SCATTERLIST_MAX_SEGMENT;

	size = rounddown(size, PAGE_SIZE);
	/* swiotlb_max_segment_size can return 1 byte when it means one page. */
	if (size < PAGE_SIZE)
		size = PAGE_SIZE;

	return size;
}

2246
#define INTEL_INFO(dev_priv)	(&(dev_priv)->__info)
2247
#define RUNTIME_INFO(dev_priv)	(&(dev_priv)->__runtime)
2248
#define DRIVER_CAPS(dev_priv)	(&(dev_priv)->caps)
2249

2250
#define INTEL_GEN(dev_priv)	(INTEL_INFO(dev_priv)->gen)
2251
#define INTEL_DEVID(dev_priv)	(RUNTIME_INFO(dev_priv)->device_id)
2252

2253
#define REVID_FOREVER		0xff
2254
#define INTEL_REVID(dev_priv)	((dev_priv)->drm.pdev->revision)
2255

2256 2257 2258
#define INTEL_GEN_MASK(s, e) ( \
	BUILD_BUG_ON_ZERO(!__builtin_constant_p(s)) + \
	BUILD_BUG_ON_ZERO(!__builtin_constant_p(e)) + \
R
Rodrigo Vivi 已提交
2259
	GENMASK((e) - 1, (s) - 1))
2260

R
Rodrigo Vivi 已提交
2261
/* Returns true if Gen is in inclusive range [Start, End] */
2262
#define IS_GEN_RANGE(dev_priv, s, e) \
2263
	(!!(INTEL_INFO(dev_priv)->gen_mask & INTEL_GEN_MASK((s), (e))))
2264

2265 2266
#define IS_GEN(dev_priv, n) \
	(BUILD_BUG_ON_ZERO(!__builtin_constant_p(n)) + \
2267
	 INTEL_INFO(dev_priv)->gen == (n))
2268

2269 2270 2271 2272 2273 2274 2275 2276
/*
 * Return true if revision is in range [since,until] inclusive.
 *
 * Use 0 for open-ended since, and REVID_FOREVER for open-ended until.
 */
#define IS_REVID(p, since, until) \
	(INTEL_REVID(p) >= (since) && INTEL_REVID(p) <= (until))

2277
#define IS_PLATFORM(dev_priv, p) (INTEL_INFO(dev_priv)->platform_mask & BIT(p))
T
Tvrtko Ursulin 已提交
2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290

#define IS_I830(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I830)
#define IS_I845G(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I845G)
#define IS_I85X(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I85X)
#define IS_I865G(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I865G)
#define IS_I915G(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I915G)
#define IS_I915GM(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I915GM)
#define IS_I945G(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I945G)
#define IS_I945GM(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I945GM)
#define IS_I965G(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I965G)
#define IS_I965GM(dev_priv)	IS_PLATFORM(dev_priv, INTEL_I965GM)
#define IS_G45(dev_priv)	IS_PLATFORM(dev_priv, INTEL_G45)
#define IS_GM45(dev_priv)	IS_PLATFORM(dev_priv, INTEL_GM45)
2291
#define IS_G4X(dev_priv)	(IS_G45(dev_priv) || IS_GM45(dev_priv))
2292 2293
#define IS_PINEVIEW_G(dev_priv)	(INTEL_DEVID(dev_priv) == 0xa001)
#define IS_PINEVIEW_M(dev_priv)	(INTEL_DEVID(dev_priv) == 0xa011)
T
Tvrtko Ursulin 已提交
2294 2295
#define IS_PINEVIEW(dev_priv)	IS_PLATFORM(dev_priv, INTEL_PINEVIEW)
#define IS_G33(dev_priv)	IS_PLATFORM(dev_priv, INTEL_G33)
2296
#define IS_IRONLAKE_M(dev_priv)	(INTEL_DEVID(dev_priv) == 0x0046)
T
Tvrtko Ursulin 已提交
2297
#define IS_IVYBRIDGE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_IVYBRIDGE)
2298
#define IS_IVB_GT1(dev_priv)	(IS_IVYBRIDGE(dev_priv) && \
2299
				 INTEL_INFO(dev_priv)->gt == 1)
T
Tvrtko Ursulin 已提交
2300 2301 2302 2303 2304 2305 2306 2307 2308 2309
#define IS_VALLEYVIEW(dev_priv)	IS_PLATFORM(dev_priv, INTEL_VALLEYVIEW)
#define IS_CHERRYVIEW(dev_priv)	IS_PLATFORM(dev_priv, INTEL_CHERRYVIEW)
#define IS_HASWELL(dev_priv)	IS_PLATFORM(dev_priv, INTEL_HASWELL)
#define IS_BROADWELL(dev_priv)	IS_PLATFORM(dev_priv, INTEL_BROADWELL)
#define IS_SKYLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_SKYLAKE)
#define IS_BROXTON(dev_priv)	IS_PLATFORM(dev_priv, INTEL_BROXTON)
#define IS_KABYLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_KABYLAKE)
#define IS_GEMINILAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_GEMINILAKE)
#define IS_COFFEELAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_COFFEELAKE)
#define IS_CANNONLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_CANNONLAKE)
2310
#define IS_ICELAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_ICELAKE)
2311
#define IS_MOBILE(dev_priv)	(INTEL_INFO(dev_priv)->is_mobile)
2312 2313 2314 2315 2316 2317
#define IS_HSW_EARLY_SDV(dev_priv) (IS_HASWELL(dev_priv) && \
				    (INTEL_DEVID(dev_priv) & 0xFF00) == 0x0C00)
#define IS_BDW_ULT(dev_priv)	(IS_BROADWELL(dev_priv) && \
				 ((INTEL_DEVID(dev_priv) & 0xf) == 0x6 ||	\
				 (INTEL_DEVID(dev_priv) & 0xf) == 0xb ||	\
				 (INTEL_DEVID(dev_priv) & 0xf) == 0xe))
V
Ville Syrjälä 已提交
2318
/* ULX machines are also considered ULT. */
2319 2320 2321
#define IS_BDW_ULX(dev_priv)	(IS_BROADWELL(dev_priv) && \
				 (INTEL_DEVID(dev_priv) & 0xf) == 0xe)
#define IS_BDW_GT3(dev_priv)	(IS_BROADWELL(dev_priv) && \
2322
				 INTEL_INFO(dev_priv)->gt == 3)
2323 2324 2325
#define IS_HSW_ULT(dev_priv)	(IS_HASWELL(dev_priv) && \
				 (INTEL_DEVID(dev_priv) & 0xFF00) == 0x0A00)
#define IS_HSW_GT3(dev_priv)	(IS_HASWELL(dev_priv) && \
2326
				 INTEL_INFO(dev_priv)->gt == 3)
2327
#define IS_HSW_GT1(dev_priv)	(IS_HASWELL(dev_priv) && \
2328
				 INTEL_INFO(dev_priv)->gt == 1)
2329
/* ULX machines are also considered ULT. */
2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347
#define IS_HSW_ULX(dev_priv)	(INTEL_DEVID(dev_priv) == 0x0A0E || \
				 INTEL_DEVID(dev_priv) == 0x0A1E)
#define IS_SKL_ULT(dev_priv)	(INTEL_DEVID(dev_priv) == 0x1906 || \
				 INTEL_DEVID(dev_priv) == 0x1913 || \
				 INTEL_DEVID(dev_priv) == 0x1916 || \
				 INTEL_DEVID(dev_priv) == 0x1921 || \
				 INTEL_DEVID(dev_priv) == 0x1926)
#define IS_SKL_ULX(dev_priv)	(INTEL_DEVID(dev_priv) == 0x190E || \
				 INTEL_DEVID(dev_priv) == 0x1915 || \
				 INTEL_DEVID(dev_priv) == 0x191E)
#define IS_KBL_ULT(dev_priv)	(INTEL_DEVID(dev_priv) == 0x5906 || \
				 INTEL_DEVID(dev_priv) == 0x5913 || \
				 INTEL_DEVID(dev_priv) == 0x5916 || \
				 INTEL_DEVID(dev_priv) == 0x5921 || \
				 INTEL_DEVID(dev_priv) == 0x5926)
#define IS_KBL_ULX(dev_priv)	(INTEL_DEVID(dev_priv) == 0x590E || \
				 INTEL_DEVID(dev_priv) == 0x5915 || \
				 INTEL_DEVID(dev_priv) == 0x591E)
2348 2349
#define IS_AML_ULX(dev_priv)	(INTEL_DEVID(dev_priv) == 0x591C || \
				 INTEL_DEVID(dev_priv) == 0x87C0)
2350
#define IS_SKL_GT2(dev_priv)	(IS_SKYLAKE(dev_priv) && \
2351
				 INTEL_INFO(dev_priv)->gt == 2)
2352
#define IS_SKL_GT3(dev_priv)	(IS_SKYLAKE(dev_priv) && \
2353
				 INTEL_INFO(dev_priv)->gt == 3)
2354
#define IS_SKL_GT4(dev_priv)	(IS_SKYLAKE(dev_priv) && \
2355
				 INTEL_INFO(dev_priv)->gt == 4)
2356
#define IS_KBL_GT2(dev_priv)	(IS_KABYLAKE(dev_priv) && \
2357
				 INTEL_INFO(dev_priv)->gt == 2)
2358
#define IS_KBL_GT3(dev_priv)	(IS_KABYLAKE(dev_priv) && \
2359
				 INTEL_INFO(dev_priv)->gt == 3)
2360 2361
#define IS_CFL_ULT(dev_priv)	(IS_COFFEELAKE(dev_priv) && \
				 (INTEL_DEVID(dev_priv) & 0x00F0) == 0x00A0)
2362
#define IS_CFL_GT2(dev_priv)	(IS_COFFEELAKE(dev_priv) && \
2363
				 INTEL_INFO(dev_priv)->gt == 2)
2364
#define IS_CFL_GT3(dev_priv)	(IS_COFFEELAKE(dev_priv) && \
2365
				 INTEL_INFO(dev_priv)->gt == 3)
2366 2367
#define IS_CNL_WITH_PORT_F(dev_priv)   (IS_CANNONLAKE(dev_priv) && \
					(INTEL_DEVID(dev_priv) & 0x0004) == 0x0004)
2368 2369
#define IS_ICL_WITH_PORT_F(dev_priv)   (IS_ICELAKE(dev_priv) && \
					INTEL_DEVID(dev_priv) != 0x8A51)
2370

2371
#define IS_ALPHA_SUPPORT(intel_info) ((intel_info)->is_alpha_support)
2372

2373 2374 2375 2376 2377 2378
#define SKL_REVID_A0		0x0
#define SKL_REVID_B0		0x1
#define SKL_REVID_C0		0x2
#define SKL_REVID_D0		0x3
#define SKL_REVID_E0		0x4
#define SKL_REVID_F0		0x5
2379 2380
#define SKL_REVID_G0		0x6
#define SKL_REVID_H0		0x7
2381

2382 2383
#define IS_SKL_REVID(p, since, until) (IS_SKYLAKE(p) && IS_REVID(p, since, until))

2384
#define BXT_REVID_A0		0x0
2385
#define BXT_REVID_A1		0x1
2386
#define BXT_REVID_B0		0x3
2387
#define BXT_REVID_B_LAST	0x8
2388
#define BXT_REVID_C0		0x9
N
Nick Hoath 已提交
2389

2390 2391
#define IS_BXT_REVID(dev_priv, since, until) \
	(IS_BROXTON(dev_priv) && IS_REVID(dev_priv, since, until))
2392

M
Mika Kuoppala 已提交
2393 2394
#define KBL_REVID_A0		0x0
#define KBL_REVID_B0		0x1
2395 2396 2397
#define KBL_REVID_C0		0x2
#define KBL_REVID_D0		0x3
#define KBL_REVID_E0		0x4
M
Mika Kuoppala 已提交
2398

2399 2400
#define IS_KBL_REVID(dev_priv, since, until) \
	(IS_KABYLAKE(dev_priv) && IS_REVID(dev_priv, since, until))
M
Mika Kuoppala 已提交
2401

2402 2403 2404 2405 2406 2407
#define GLK_REVID_A0		0x0
#define GLK_REVID_A1		0x1

#define IS_GLK_REVID(dev_priv, since, until) \
	(IS_GEMINILAKE(dev_priv) && IS_REVID(dev_priv, since, until))

2408 2409
#define CNL_REVID_A0		0x0
#define CNL_REVID_B0		0x1
R
Rodrigo Vivi 已提交
2410
#define CNL_REVID_C0		0x2
2411 2412 2413 2414

#define IS_CNL_REVID(p, since, until) \
	(IS_CANNONLAKE(p) && IS_REVID(p, since, until))

2415 2416 2417 2418 2419 2420 2421 2422 2423
#define ICL_REVID_A0		0x0
#define ICL_REVID_A2		0x1
#define ICL_REVID_B0		0x3
#define ICL_REVID_B2		0x4
#define ICL_REVID_C0		0x5

#define IS_ICL_REVID(p, since, until) \
	(IS_ICELAKE(p) && IS_REVID(p, since, until))

2424
#define IS_LP(dev_priv)	(INTEL_INFO(dev_priv)->is_lp)
2425 2426
#define IS_GEN9_LP(dev_priv)	(IS_GEN(dev_priv, 9) && IS_LP(dev_priv))
#define IS_GEN9_BC(dev_priv)	(IS_GEN(dev_priv, 9) && !IS_LP(dev_priv))
2427

2428 2429 2430 2431 2432 2433
#define ENGINE_MASK(id)	BIT(id)
#define RENDER_RING	ENGINE_MASK(RCS)
#define BSD_RING	ENGINE_MASK(VCS)
#define BLT_RING	ENGINE_MASK(BCS)
#define VEBOX_RING	ENGINE_MASK(VECS)
#define BSD2_RING	ENGINE_MASK(VCS2)
2434 2435 2436
#define BSD3_RING	ENGINE_MASK(VCS3)
#define BSD4_RING	ENGINE_MASK(VCS4)
#define VEBOX2_RING	ENGINE_MASK(VECS2)
2437 2438 2439
#define ALL_ENGINES	(~0)

#define HAS_ENGINE(dev_priv, id) \
2440
	(!!(INTEL_INFO(dev_priv)->ring_mask & ENGINE_MASK(id)))
2441 2442 2443 2444 2445 2446

#define HAS_BSD(dev_priv)	HAS_ENGINE(dev_priv, VCS)
#define HAS_BSD2(dev_priv)	HAS_ENGINE(dev_priv, VCS2)
#define HAS_BLT(dev_priv)	HAS_ENGINE(dev_priv, BCS)
#define HAS_VEBOX(dev_priv)	HAS_ENGINE(dev_priv, VECS)

2447 2448
#define HAS_LLC(dev_priv)	(INTEL_INFO(dev_priv)->has_llc)
#define HAS_SNOOP(dev_priv)	(INTEL_INFO(dev_priv)->has_snoop)
2449
#define HAS_EDRAM(dev_priv)	(!!((dev_priv)->edram_cap & EDRAM_ENABLED))
2450 2451
#define HAS_WT(dev_priv)	((IS_HASWELL(dev_priv) || \
				 IS_BROADWELL(dev_priv)) && HAS_EDRAM(dev_priv))
2452

2453
#define HWS_NEEDS_PHYSICAL(dev_priv)	(INTEL_INFO(dev_priv)->hws_needs_physical)
2454

2455
#define HAS_LOGICAL_RING_CONTEXTS(dev_priv) \
2456
		(INTEL_INFO(dev_priv)->has_logical_ring_contexts)
2457
#define HAS_LOGICAL_RING_ELSQ(dev_priv) \
2458
		(INTEL_INFO(dev_priv)->has_logical_ring_elsq)
2459
#define HAS_LOGICAL_RING_PREEMPTION(dev_priv) \
2460
		(INTEL_INFO(dev_priv)->has_logical_ring_preemption)
2461 2462 2463

#define HAS_EXECLISTS(dev_priv) HAS_LOGICAL_RING_CONTEXTS(dev_priv)

2464 2465 2466 2467 2468 2469 2470 2471
#define INTEL_PPGTT(dev_priv) (INTEL_INFO(dev_priv)->ppgtt)
#define HAS_PPGTT(dev_priv) \
	(INTEL_PPGTT(dev_priv) != INTEL_PPGTT_NONE)
#define HAS_FULL_PPGTT(dev_priv) \
	(INTEL_PPGTT(dev_priv) >= INTEL_PPGTT_FULL)
#define HAS_FULL_48BIT_PPGTT(dev_priv)	\
	(INTEL_PPGTT(dev_priv) >= INTEL_PPGTT_FULL_4LVL)

2472 2473
#define HAS_PAGE_SIZES(dev_priv, sizes) ({ \
	GEM_BUG_ON((sizes) == 0); \
2474
	((sizes) & ~INTEL_INFO(dev_priv)->page_sizes) == 0; \
2475
})
2476

2477
#define HAS_OVERLAY(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_overlay)
2478
#define OVERLAY_NEEDS_PHYSICAL(dev_priv) \
2479
		(INTEL_INFO(dev_priv)->display.overlay_needs_physical)
2480

2481
/* Early gen2 have a totally busted CS tlb and require pinned batches. */
2482
#define HAS_BROKEN_CS_TLB(dev_priv)	(IS_I830(dev_priv) || IS_I845G(dev_priv))
2483

2484
/* WaRsDisableCoarsePowerGating:skl,cnl */
2485
#define NEEDS_WaRsDisableCoarsePowerGating(dev_priv) \
2486 2487
	(IS_CANNONLAKE(dev_priv) || \
	 IS_SKL_GT3(dev_priv) || IS_SKL_GT4(dev_priv))
2488

2489
#define HAS_GMBUS_IRQ(dev_priv) (INTEL_GEN(dev_priv) >= 4)
R
Ramalingam C 已提交
2490 2491 2492
#define HAS_GMBUS_BURST_READ(dev_priv) (INTEL_GEN(dev_priv) >= 10 || \
					IS_GEMINILAKE(dev_priv) || \
					IS_KABYLAKE(dev_priv))
2493

2494 2495 2496
/* With the 945 and later, Y tiling got adjusted so that it was 32 128-byte
 * rows, which changed the alignment requirements and fence programming.
 */
2497
#define HAS_128_BYTE_Y_TILING(dev_priv) (!IS_GEN(dev_priv, 2) && \
2498 2499
					 !(IS_I915G(dev_priv) || \
					 IS_I915GM(dev_priv)))
2500 2501
#define SUPPORTS_TV(dev_priv)		(INTEL_INFO(dev_priv)->display.supports_tv)
#define I915_HAS_HOTPLUG(dev_priv)	(INTEL_INFO(dev_priv)->display.has_hotplug)
2502

2503
#define HAS_FW_BLC(dev_priv) 	(INTEL_GEN(dev_priv) > 2)
2504
#define HAS_FBC(dev_priv)	(INTEL_INFO(dev_priv)->display.has_fbc)
R
Rodrigo Vivi 已提交
2505
#define HAS_CUR_FBC(dev_priv)	(!HAS_GMCH(dev_priv) && INTEL_GEN(dev_priv) >= 7)
2506

2507
#define HAS_IPS(dev_priv)	(IS_HSW_ULT(dev_priv) || IS_BROADWELL(dev_priv))
2508

2509
#define HAS_DP_MST(dev_priv)	(INTEL_INFO(dev_priv)->display.has_dp_mst)
2510

2511 2512 2513
#define HAS_DDI(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_ddi)
#define HAS_FPGA_DBG_UNCLAIMED(dev_priv) (INTEL_INFO(dev_priv)->has_fpga_dbg)
#define HAS_PSR(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_psr)
2514

2515 2516
#define HAS_RC6(dev_priv)		 (INTEL_INFO(dev_priv)->has_rc6)
#define HAS_RC6p(dev_priv)		 (INTEL_INFO(dev_priv)->has_rc6p)
2517
#define HAS_RC6pp(dev_priv)		 (false) /* HW was never validated */
P
Paulo Zanoni 已提交
2518

2519
#define HAS_CSR(dev_priv)	(INTEL_INFO(dev_priv)->display.has_csr)
2520

2521 2522
#define HAS_RUNTIME_PM(dev_priv) (INTEL_INFO(dev_priv)->has_runtime_pm)
#define HAS_64BIT_RELOC(dev_priv) (INTEL_INFO(dev_priv)->has_64bit_reloc)
2523

2524
#define HAS_IPC(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_ipc)
2525

2526 2527 2528 2529 2530
/*
 * For now, anything with a GuC requires uCode loading, and then supports
 * command submission once loaded. But these are logically independent
 * properties, so we have separate macros to test them.
 */
2531 2532
#define HAS_GUC(dev_priv)	(INTEL_INFO(dev_priv)->has_guc)
#define HAS_GUC_CT(dev_priv)	(INTEL_INFO(dev_priv)->has_guc_ct)
2533 2534
#define HAS_GUC_UCODE(dev_priv)	(HAS_GUC(dev_priv))
#define HAS_GUC_SCHED(dev_priv)	(HAS_GUC(dev_priv))
2535 2536 2537

/* For now, anything with a GuC has also HuC */
#define HAS_HUC(dev_priv)	(HAS_GUC(dev_priv))
2538
#define HAS_HUC_UCODE(dev_priv)	(HAS_GUC(dev_priv))
2539

2540
/* Having a GuC is not the same as using a GuC */
2541 2542 2543
#define USES_GUC(dev_priv)		intel_uc_is_using_guc(dev_priv)
#define USES_GUC_SUBMISSION(dev_priv)	intel_uc_is_using_guc_submission(dev_priv)
#define USES_HUC(dev_priv)		intel_uc_is_using_huc(dev_priv)
2544

2545
#define HAS_POOLED_EU(dev_priv)	(INTEL_INFO(dev_priv)->has_pooled_eu)
2546

2547
#define INTEL_PCH_DEVICE_ID_MASK		0xff80
2548 2549 2550 2551 2552
#define INTEL_PCH_IBX_DEVICE_ID_TYPE		0x3b00
#define INTEL_PCH_CPT_DEVICE_ID_TYPE		0x1c00
#define INTEL_PCH_PPT_DEVICE_ID_TYPE		0x1e00
#define INTEL_PCH_LPT_DEVICE_ID_TYPE		0x8c00
#define INTEL_PCH_LPT_LP_DEVICE_ID_TYPE		0x9c00
2553 2554
#define INTEL_PCH_WPT_DEVICE_ID_TYPE		0x8c80
#define INTEL_PCH_WPT_LP_DEVICE_ID_TYPE		0x9c80
2555 2556
#define INTEL_PCH_SPT_DEVICE_ID_TYPE		0xA100
#define INTEL_PCH_SPT_LP_DEVICE_ID_TYPE		0x9D00
2557
#define INTEL_PCH_KBP_DEVICE_ID_TYPE		0xA280
2558
#define INTEL_PCH_CNP_DEVICE_ID_TYPE		0xA300
2559
#define INTEL_PCH_CNP_LP_DEVICE_ID_TYPE		0x9D80
2560
#define INTEL_PCH_ICP_DEVICE_ID_TYPE		0x3480
2561
#define INTEL_PCH_P2X_DEVICE_ID_TYPE		0x7100
2562
#define INTEL_PCH_P3X_DEVICE_ID_TYPE		0x7000
2563
#define INTEL_PCH_QEMU_DEVICE_ID_TYPE		0x2900 /* qemu q35 has 2918 */
2564

2565
#define INTEL_PCH_TYPE(dev_priv) ((dev_priv)->pch_type)
2566
#define INTEL_PCH_ID(dev_priv) ((dev_priv)->pch_id)
2567
#define HAS_PCH_ICP(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_ICP)
2568
#define HAS_PCH_CNP(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_CNP)
2569
#define HAS_PCH_CNP_LP(dev_priv) \
2570
	(INTEL_PCH_ID(dev_priv) == INTEL_PCH_CNP_LP_DEVICE_ID_TYPE)
2571 2572 2573
#define HAS_PCH_KBP(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_KBP)
#define HAS_PCH_SPT(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_SPT)
#define HAS_PCH_LPT(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_LPT)
2574
#define HAS_PCH_LPT_LP(dev_priv) \
2575 2576
	(INTEL_PCH_ID(dev_priv) == INTEL_PCH_LPT_LP_DEVICE_ID_TYPE || \
	 INTEL_PCH_ID(dev_priv) == INTEL_PCH_WPT_LP_DEVICE_ID_TYPE)
2577
#define HAS_PCH_LPT_H(dev_priv) \
2578 2579
	(INTEL_PCH_ID(dev_priv) == INTEL_PCH_LPT_DEVICE_ID_TYPE || \
	 INTEL_PCH_ID(dev_priv) == INTEL_PCH_WPT_DEVICE_ID_TYPE)
2580 2581 2582 2583
#define HAS_PCH_CPT(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_CPT)
#define HAS_PCH_IBX(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_IBX)
#define HAS_PCH_NOP(dev_priv) (INTEL_PCH_TYPE(dev_priv) == PCH_NOP)
#define HAS_PCH_SPLIT(dev_priv) (INTEL_PCH_TYPE(dev_priv) != PCH_NONE)
2584

R
Rodrigo Vivi 已提交
2585
#define HAS_GMCH(dev_priv) (INTEL_INFO(dev_priv)->display.has_gmch)
2586

2587
#define HAS_LSPCON(dev_priv) (INTEL_GEN(dev_priv) >= 9)
2588

2589
/* DPF == dynamic parity feature */
2590
#define HAS_L3_DPF(dev_priv) (INTEL_INFO(dev_priv)->has_l3_dpf)
2591 2592
#define NUM_L3_SLICES(dev_priv) (IS_HSW_GT3(dev_priv) ? \
				 2 : HAS_L3_DPF(dev_priv))
2593

2594
#define GT_FREQUENCY_MULTIPLIER 50
A
Akash Goel 已提交
2595
#define GEN9_FREQ_SCALER 3
2596

2597 2598
#define HAS_DISPLAY(dev_priv) (INTEL_INFO(dev_priv)->num_pipes > 0)

2599 2600
#include "i915_trace.h"

2601
static inline bool intel_vtd_active(void)
2602 2603
{
#ifdef CONFIG_INTEL_IOMMU
2604
	if (intel_iommu_gfx_mapped)
2605 2606 2607 2608 2609
		return true;
#endif
	return false;
}

2610 2611 2612 2613 2614
static inline bool intel_scanout_needs_vtd_wa(struct drm_i915_private *dev_priv)
{
	return INTEL_GEN(dev_priv) >= 6 && intel_vtd_active();
}

2615 2616 2617
static inline bool
intel_ggtt_update_needs_vtd_wa(struct drm_i915_private *dev_priv)
{
2618
	return IS_BROXTON(dev_priv) && intel_vtd_active();
2619 2620
}

2621
/* i915_drv.c */
2622 2623 2624 2625 2626 2627 2628
void __printf(3, 4)
__i915_printk(struct drm_i915_private *dev_priv, const char *level,
	      const char *fmt, ...);

#define i915_report_error(dev_priv, fmt, ...)				   \
	__i915_printk(dev_priv, KERN_ERR, fmt, ##__VA_ARGS__)

2629
#ifdef CONFIG_COMPAT
D
Dave Airlie 已提交
2630 2631
extern long i915_compat_ioctl(struct file *filp, unsigned int cmd,
			      unsigned long arg);
2632 2633
#else
#define i915_compat_ioctl NULL
2634
#endif
2635 2636 2637 2638 2639
extern const struct dev_pm_ops i915_pm_ops;

extern int i915_driver_load(struct pci_dev *pdev,
			    const struct pci_device_id *ent);
extern void i915_driver_unload(struct drm_device *dev);
2640

2641
extern void intel_engine_init_hangcheck(struct intel_engine_cs *engine);
2642
extern void intel_hangcheck_init(struct drm_i915_private *dev_priv);
2643 2644 2645 2646
extern unsigned long i915_chipset_val(struct drm_i915_private *dev_priv);
extern unsigned long i915_mch_val(struct drm_i915_private *dev_priv);
extern unsigned long i915_gfx_val(struct drm_i915_private *dev_priv);
extern void i915_update_gfx_val(struct drm_i915_private *dev_priv);
2647
int vlv_force_gfx_clock(struct drm_i915_private *dev_priv, bool on);
2648

2649
int intel_engines_init_mmio(struct drm_i915_private *dev_priv);
2650 2651
int intel_engines_init(struct drm_i915_private *dev_priv);

2652 2653
u32 intel_calculate_mcr_s_ss_select(struct drm_i915_private *dev_priv);

2654
/* intel_hotplug.c */
2655 2656
void intel_hpd_irq_handler(struct drm_i915_private *dev_priv,
			   u32 pin_mask, u32 long_mask);
2657 2658 2659
void intel_hpd_init(struct drm_i915_private *dev_priv);
void intel_hpd_init_work(struct drm_i915_private *dev_priv);
void intel_hpd_cancel_work(struct drm_i915_private *dev_priv);
2660 2661
enum hpd_pin intel_hpd_pin_default(struct drm_i915_private *dev_priv,
				   enum port port);
2662 2663
bool intel_hpd_disable(struct drm_i915_private *dev_priv, enum hpd_pin pin);
void intel_hpd_enable(struct drm_i915_private *dev_priv, enum hpd_pin pin);
2664

L
Linus Torvalds 已提交
2665
/* i915_irq.c */
2666 2667 2668 2669
static inline void i915_queue_hangcheck(struct drm_i915_private *dev_priv)
{
	unsigned long delay;

2670
	if (unlikely(!i915_modparams.enable_hangcheck))
2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682
		return;

	/* Don't continually defer the hangcheck so that it is always run at
	 * least once after work has been scheduled on any ring. Otherwise,
	 * we will ignore a hung ring if a second ring is kept busy.
	 */

	delay = round_jiffies_up_relative(DRM_I915_HANGCHECK_JIFFIES);
	queue_delayed_work(system_long_wq,
			   &dev_priv->gpu_error.hangcheck_work, delay);
}

2683
extern void intel_irq_init(struct drm_i915_private *dev_priv);
2684
extern void intel_irq_fini(struct drm_i915_private *dev_priv);
2685 2686
int intel_irq_install(struct drm_i915_private *dev_priv);
void intel_irq_uninstall(struct drm_i915_private *dev_priv);
2687

2688 2689
static inline bool intel_gvt_active(struct drm_i915_private *dev_priv)
{
2690
	return dev_priv->gvt;
2691 2692
}

2693
static inline bool intel_vgpu_active(struct drm_i915_private *dev_priv)
2694
{
2695
	return dev_priv->vgpu.active;
2696
}
2697

2698 2699
u32 i915_pipestat_enable_mask(struct drm_i915_private *dev_priv,
			      enum pipe pipe);
2700
void
2701
i915_enable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
2702
		     u32 status_mask);
2703 2704

void
2705
i915_disable_pipestat(struct drm_i915_private *dev_priv, enum pipe pipe,
2706
		      u32 status_mask);
2707

2708 2709
void valleyview_enable_display_irqs(struct drm_i915_private *dev_priv);
void valleyview_disable_display_irqs(struct drm_i915_private *dev_priv);
2710
void i915_hotplug_interrupt_update(struct drm_i915_private *dev_priv,
2711 2712
				   u32 mask,
				   u32 bits);
2713
void ilk_update_display_irq(struct drm_i915_private *dev_priv,
2714 2715
			    u32 interrupt_mask,
			    u32 enabled_irq_mask);
2716
static inline void
2717
ilk_enable_display_irq(struct drm_i915_private *dev_priv, u32 bits)
2718 2719 2720 2721
{
	ilk_update_display_irq(dev_priv, bits, bits);
}
static inline void
2722
ilk_disable_display_irq(struct drm_i915_private *dev_priv, u32 bits)
2723 2724 2725
{
	ilk_update_display_irq(dev_priv, bits, 0);
}
2726 2727
void bdw_update_pipe_irq(struct drm_i915_private *dev_priv,
			 enum pipe pipe,
2728 2729
			 u32 interrupt_mask,
			 u32 enabled_irq_mask);
2730
static inline void bdw_enable_pipe_irq(struct drm_i915_private *dev_priv,
2731
				       enum pipe pipe, u32 bits)
2732 2733 2734 2735
{
	bdw_update_pipe_irq(dev_priv, pipe, bits, bits);
}
static inline void bdw_disable_pipe_irq(struct drm_i915_private *dev_priv,
2736
					enum pipe pipe, u32 bits)
2737 2738 2739
{
	bdw_update_pipe_irq(dev_priv, pipe, bits, 0);
}
2740
void ibx_display_interrupt_update(struct drm_i915_private *dev_priv,
2741 2742
				  u32 interrupt_mask,
				  u32 enabled_irq_mask);
2743
static inline void
2744
ibx_enable_display_interrupt(struct drm_i915_private *dev_priv, u32 bits)
2745 2746 2747 2748
{
	ibx_display_interrupt_update(dev_priv, bits, bits);
}
static inline void
2749
ibx_disable_display_interrupt(struct drm_i915_private *dev_priv, u32 bits)
2750 2751 2752 2753
{
	ibx_display_interrupt_update(dev_priv, bits, 0);
}

2754 2755 2756 2757 2758 2759 2760 2761 2762
/* i915_gem.c */
int i915_gem_create_ioctl(struct drm_device *dev, void *data,
			  struct drm_file *file_priv);
int i915_gem_pread_ioctl(struct drm_device *dev, void *data,
			 struct drm_file *file_priv);
int i915_gem_pwrite_ioctl(struct drm_device *dev, void *data,
			  struct drm_file *file_priv);
int i915_gem_mmap_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file_priv);
2763 2764
int i915_gem_mmap_gtt_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file_priv);
2765 2766 2767 2768
int i915_gem_set_domain_ioctl(struct drm_device *dev, void *data,
			      struct drm_file *file_priv);
int i915_gem_sw_finish_ioctl(struct drm_device *dev, void *data,
			     struct drm_file *file_priv);
2769 2770 2771 2772
int i915_gem_execbuffer_ioctl(struct drm_device *dev, void *data,
			      struct drm_file *file_priv);
int i915_gem_execbuffer2_ioctl(struct drm_device *dev, void *data,
			       struct drm_file *file_priv);
2773 2774
int i915_gem_busy_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file_priv);
B
Ben Widawsky 已提交
2775 2776 2777 2778
int i915_gem_get_caching_ioctl(struct drm_device *dev, void *data,
			       struct drm_file *file);
int i915_gem_set_caching_ioctl(struct drm_device *dev, void *data,
			       struct drm_file *file);
2779 2780
int i915_gem_throttle_ioctl(struct drm_device *dev, void *data,
			    struct drm_file *file_priv);
2781 2782
int i915_gem_madvise_ioctl(struct drm_device *dev, void *data,
			   struct drm_file *file_priv);
2783 2784 2785 2786
int i915_gem_set_tiling_ioctl(struct drm_device *dev, void *data,
			      struct drm_file *file_priv);
int i915_gem_get_tiling_ioctl(struct drm_device *dev, void *data,
			      struct drm_file *file_priv);
2787 2788
int i915_gem_init_userptr(struct drm_i915_private *dev_priv);
void i915_gem_cleanup_userptr(struct drm_i915_private *dev_priv);
2789 2790
int i915_gem_userptr_ioctl(struct drm_device *dev, void *data,
			   struct drm_file *file);
2791 2792
int i915_gem_get_aperture_ioctl(struct drm_device *dev, void *data,
				struct drm_file *file_priv);
2793 2794
int i915_gem_wait_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file_priv);
2795
void i915_gem_sanitize(struct drm_i915_private *i915);
2796 2797
int i915_gem_init_early(struct drm_i915_private *dev_priv);
void i915_gem_cleanup_early(struct drm_i915_private *dev_priv);
2798
void i915_gem_load_init_fences(struct drm_i915_private *dev_priv);
2799
int i915_gem_freeze(struct drm_i915_private *dev_priv);
2800 2801
int i915_gem_freeze_late(struct drm_i915_private *dev_priv);

2802
void *i915_gem_object_alloc(struct drm_i915_private *dev_priv);
2803
void i915_gem_object_free(struct drm_i915_gem_object *obj);
2804 2805
void i915_gem_object_init(struct drm_i915_gem_object *obj,
			 const struct drm_i915_gem_object_ops *ops);
2806 2807 2808 2809 2810
struct drm_i915_gem_object *
i915_gem_object_create(struct drm_i915_private *dev_priv, u64 size);
struct drm_i915_gem_object *
i915_gem_object_create_from_data(struct drm_i915_private *dev_priv,
				 const void *data, size_t size);
2811
void i915_gem_close_object(struct drm_gem_object *gem, struct drm_file *file);
2812
void i915_gem_free_object(struct drm_gem_object *obj);
2813

2814 2815
static inline void i915_gem_drain_freed_objects(struct drm_i915_private *i915)
{
2816 2817 2818
	if (!atomic_read(&i915->mm.free_count))
		return;

2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829
	/* A single pass should suffice to release all the freed objects (along
	 * most call paths) , but be a little more paranoid in that freeing
	 * the objects does take a little amount of time, during which the rcu
	 * callbacks could have added new objects into the freed list, and
	 * armed the work again.
	 */
	do {
		rcu_barrier();
	} while (flush_work(&i915->mm.free_work));
}

2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849
static inline void i915_gem_drain_workqueue(struct drm_i915_private *i915)
{
	/*
	 * Similar to objects above (see i915_gem_drain_freed-objects), in
	 * general we have workers that are armed by RCU and then rearm
	 * themselves in their callbacks. To be paranoid, we need to
	 * drain the workqueue a second time after waiting for the RCU
	 * grace period so that we catch work queued via RCU from the first
	 * pass. As neither drain_workqueue() nor flush_workqueue() report
	 * a result, we make an assumption that we only don't require more
	 * than 2 passes to catch all recursive RCU delayed work.
	 *
	 */
	int pass = 2;
	do {
		rcu_barrier();
		drain_workqueue(i915->wq);
	} while (--pass);
}

C
Chris Wilson 已提交
2850
struct i915_vma * __must_check
2851 2852
i915_gem_object_ggtt_pin(struct drm_i915_gem_object *obj,
			 const struct i915_ggtt_view *view,
2853
			 u64 size,
2854 2855
			 u64 alignment,
			 u64 flags);
2856

2857
int i915_gem_object_unbind(struct drm_i915_gem_object *obj);
2858
void i915_gem_release_mmap(struct drm_i915_gem_object *obj);
2859

2860 2861
void i915_gem_runtime_suspend(struct drm_i915_private *dev_priv);

C
Chris Wilson 已提交
2862
static inline int __sg_page_count(const struct scatterlist *sg)
2863
{
2864 2865
	return sg->length >> PAGE_SHIFT;
}
2866

2867 2868 2869
struct scatterlist *
i915_gem_object_get_sg(struct drm_i915_gem_object *obj,
		       unsigned int n, unsigned int *offset);
2870

2871 2872 2873
struct page *
i915_gem_object_get_page(struct drm_i915_gem_object *obj,
			 unsigned int n);
2874

2875 2876 2877
struct page *
i915_gem_object_get_dirty_page(struct drm_i915_gem_object *obj,
			       unsigned int n);
2878

2879 2880 2881
dma_addr_t
i915_gem_object_get_dma_address(struct drm_i915_gem_object *obj,
				unsigned long n);
2882

2883
void __i915_gem_object_set_pages(struct drm_i915_gem_object *obj,
2884
				 struct sg_table *pages,
M
Matthew Auld 已提交
2885
				 unsigned int sg_page_sizes);
C
Chris Wilson 已提交
2886 2887 2888 2889 2890
int __i915_gem_object_get_pages(struct drm_i915_gem_object *obj);

static inline int __must_check
i915_gem_object_pin_pages(struct drm_i915_gem_object *obj)
{
2891
	might_lock(&obj->mm.lock);
C
Chris Wilson 已提交
2892

2893
	if (atomic_inc_not_zero(&obj->mm.pages_pin_count))
C
Chris Wilson 已提交
2894 2895 2896 2897 2898
		return 0;

	return __i915_gem_object_get_pages(obj);
}

2899 2900 2901 2902 2903 2904
static inline bool
i915_gem_object_has_pages(struct drm_i915_gem_object *obj)
{
	return !IS_ERR_OR_NULL(READ_ONCE(obj->mm.pages));
}

C
Chris Wilson 已提交
2905 2906
static inline void
__i915_gem_object_pin_pages(struct drm_i915_gem_object *obj)
2907
{
2908
	GEM_BUG_ON(!i915_gem_object_has_pages(obj));
C
Chris Wilson 已提交
2909

2910
	atomic_inc(&obj->mm.pages_pin_count);
C
Chris Wilson 已提交
2911 2912 2913 2914 2915
}

static inline bool
i915_gem_object_has_pinned_pages(struct drm_i915_gem_object *obj)
{
2916
	return atomic_read(&obj->mm.pages_pin_count);
C
Chris Wilson 已提交
2917 2918 2919 2920 2921
}

static inline void
__i915_gem_object_unpin_pages(struct drm_i915_gem_object *obj)
{
2922
	GEM_BUG_ON(!i915_gem_object_has_pages(obj));
C
Chris Wilson 已提交
2923 2924
	GEM_BUG_ON(!i915_gem_object_has_pinned_pages(obj));

2925
	atomic_dec(&obj->mm.pages_pin_count);
2926
}
2927

2928 2929
static inline void
i915_gem_object_unpin_pages(struct drm_i915_gem_object *obj)
2930
{
C
Chris Wilson 已提交
2931
	__i915_gem_object_unpin_pages(obj);
2932 2933
}

2934
enum i915_mm_subclass { /* lockdep subclass for obj->mm.lock/struct_mutex */
2935
	I915_MM_NORMAL = 0,
2936
	I915_MM_SHRINKER /* called "recursively" from direct-reclaim-esque */
2937 2938
};

2939 2940
int __i915_gem_object_put_pages(struct drm_i915_gem_object *obj,
				enum i915_mm_subclass subclass);
2941
void __i915_gem_object_invalidate(struct drm_i915_gem_object *obj);
C
Chris Wilson 已提交
2942

2943 2944 2945
enum i915_map_type {
	I915_MAP_WB = 0,
	I915_MAP_WC,
2946 2947 2948
#define I915_MAP_OVERRIDE BIT(31)
	I915_MAP_FORCE_WB = I915_MAP_WB | I915_MAP_OVERRIDE,
	I915_MAP_FORCE_WC = I915_MAP_WC | I915_MAP_OVERRIDE,
2949 2950
};

2951 2952 2953 2954 2955 2956
static inline enum i915_map_type
i915_coherent_map_type(struct drm_i915_private *i915)
{
	return HAS_LLC(i915) ? I915_MAP_WB : I915_MAP_WC;
}

2957 2958
/**
 * i915_gem_object_pin_map - return a contiguous mapping of the entire object
2959 2960
 * @obj: the object to map into kernel address space
 * @type: the type of mapping, used to select pgprot_t
2961 2962 2963
 *
 * Calls i915_gem_object_pin_pages() to prevent reaping of the object's
 * pages and then returns a contiguous mapping of the backing storage into
2964 2965
 * the kernel address space. Based on the @type of mapping, the PTE will be
 * set to either WriteBack or WriteCombine (via pgprot_t).
2966
 *
2967 2968
 * The caller is responsible for calling i915_gem_object_unpin_map() when the
 * mapping is no longer required.
2969
 *
2970 2971
 * Returns the pointer through which to access the mapped object, or an
 * ERR_PTR() on error.
2972
 */
2973 2974
void *__must_check i915_gem_object_pin_map(struct drm_i915_gem_object *obj,
					   enum i915_map_type type);
2975 2976 2977

/**
 * i915_gem_object_unpin_map - releases an earlier mapping
2978
 * @obj: the object to unmap
2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989
 *
 * After pinning the object and mapping its pages, once you are finished
 * with your access, call i915_gem_object_unpin_map() to release the pin
 * upon the mapping. Once the pin count reaches zero, that mapping may be
 * removed.
 */
static inline void i915_gem_object_unpin_map(struct drm_i915_gem_object *obj)
{
	i915_gem_object_unpin_pages(obj);
}

2990 2991 2992 2993
int i915_gem_obj_prepare_shmem_read(struct drm_i915_gem_object *obj,
				    unsigned int *needs_clflush);
int i915_gem_obj_prepare_shmem_write(struct drm_i915_gem_object *obj,
				     unsigned int *needs_clflush);
2994 2995 2996
#define CLFLUSH_BEFORE	BIT(0)
#define CLFLUSH_AFTER	BIT(1)
#define CLFLUSH_FLAGS	(CLFLUSH_BEFORE | CLFLUSH_AFTER)
2997 2998 2999 3000 3001 3002 3003

static inline void
i915_gem_obj_finish_shmem_access(struct drm_i915_gem_object *obj)
{
	i915_gem_object_unpin_pages(obj);
}

3004
int __must_check i915_mutex_lock_interruptible(struct drm_device *dev);
3005 3006 3007
int i915_gem_dumb_create(struct drm_file *file_priv,
			 struct drm_device *dev,
			 struct drm_mode_create_dumb *args);
3008
int i915_gem_mmap_gtt(struct drm_file *file_priv, struct drm_device *dev,
3009
		      u32 handle, u64 *offset);
3010
int i915_gem_mmap_gtt_version(void);
3011 3012 3013 3014 3015

void i915_gem_track_fb(struct drm_i915_gem_object *old,
		       struct drm_i915_gem_object *new,
		       unsigned frontbuffer_bits);

3016
int __must_check i915_gem_set_global_seqno(struct drm_device *dev, u32 seqno);
3017

3018
struct i915_request *
3019
i915_gem_find_active_request(struct intel_engine_cs *engine);
3020

3021 3022 3023 3024 3025
static inline bool i915_reset_backoff(struct i915_gpu_error *error)
{
	return unlikely(test_bit(I915_RESET_BACKOFF, &error->flags));
}

3026
static inline bool i915_terminally_wedged(struct i915_gpu_error *error)
3027
{
3028
	return unlikely(test_bit(I915_WEDGED, &error->flags));
3029 3030
}

3031
static inline bool i915_reset_backoff_or_wedged(struct i915_gpu_error *error)
3032
{
3033
	return i915_reset_backoff(error) | i915_terminally_wedged(error);
M
Mika Kuoppala 已提交
3034 3035 3036 3037
}

static inline u32 i915_reset_count(struct i915_gpu_error *error)
{
3038
	return READ_ONCE(error->reset_count);
3039
}
3040

3041 3042 3043 3044 3045 3046
static inline u32 i915_reset_engine_count(struct i915_gpu_error *error,
					  struct intel_engine_cs *engine)
{
	return READ_ONCE(error->reset_engine_count[engine->id]);
}

3047
void i915_gem_set_wedged(struct drm_i915_private *dev_priv);
3048
bool i915_gem_unset_wedged(struct drm_i915_private *dev_priv);
3049

3050
void i915_gem_init_mmio(struct drm_i915_private *i915);
3051 3052
int __must_check i915_gem_init(struct drm_i915_private *dev_priv);
int __must_check i915_gem_init_hw(struct drm_i915_private *dev_priv);
3053
void i915_gem_init_swizzling(struct drm_i915_private *dev_priv);
3054
void i915_gem_fini(struct drm_i915_private *dev_priv);
3055
void i915_gem_cleanup_engines(struct drm_i915_private *dev_priv);
3056
int i915_gem_wait_for_idle(struct drm_i915_private *dev_priv,
3057
			   unsigned int flags, long timeout);
3058
int __must_check i915_gem_suspend(struct drm_i915_private *dev_priv);
3059
void i915_gem_suspend_late(struct drm_i915_private *dev_priv);
3060
void i915_gem_resume(struct drm_i915_private *dev_priv);
3061
vm_fault_t i915_gem_fault(struct vm_fault *vmf);
3062 3063 3064 3065
int i915_gem_object_wait(struct drm_i915_gem_object *obj,
			 unsigned int flags,
			 long timeout,
			 struct intel_rps_client *rps);
3066 3067
int i915_gem_object_wait_priority(struct drm_i915_gem_object *obj,
				  unsigned int flags,
3068
				  const struct i915_sched_attr *attr);
3069
#define I915_PRIORITY_DISPLAY I915_USER_PRIORITY(I915_PRIORITY_MAX)
3070

3071
int __must_check
3072 3073 3074
i915_gem_object_set_to_wc_domain(struct drm_i915_gem_object *obj, bool write);
int __must_check
i915_gem_object_set_to_gtt_domain(struct drm_i915_gem_object *obj, bool write);
3075
int __must_check
3076
i915_gem_object_set_to_cpu_domain(struct drm_i915_gem_object *obj, bool write);
C
Chris Wilson 已提交
3077
struct i915_vma * __must_check
3078 3079
i915_gem_object_pin_to_display_plane(struct drm_i915_gem_object *obj,
				     u32 alignment,
3080 3081
				     const struct i915_ggtt_view *view,
				     unsigned int flags);
C
Chris Wilson 已提交
3082
void i915_gem_object_unpin_from_display_plane(struct i915_vma *vma);
3083
int i915_gem_object_attach_phys(struct drm_i915_gem_object *obj,
3084
				int align);
3085
int i915_gem_open(struct drm_i915_private *i915, struct drm_file *file);
3086
void i915_gem_release(struct drm_device *dev, struct drm_file *file);
3087

3088 3089 3090
int i915_gem_object_set_cache_level(struct drm_i915_gem_object *obj,
				    enum i915_cache_level cache_level);

3091 3092 3093 3094 3095 3096
struct drm_gem_object *i915_gem_prime_import(struct drm_device *dev,
				struct dma_buf *dma_buf);

struct dma_buf *i915_gem_prime_export(struct drm_device *dev,
				struct drm_gem_object *gem_obj, int flags);

3097 3098 3099
static inline struct i915_hw_ppgtt *
i915_vm_to_ppgtt(struct i915_address_space *vm)
{
3100
	return container_of(vm, struct i915_hw_ppgtt, vm);
3101 3102
}

J
Joonas Lahtinen 已提交
3103
/* i915_gem_fence_reg.c */
3104 3105 3106
struct drm_i915_fence_reg *
i915_reserve_fence(struct drm_i915_private *dev_priv);
void i915_unreserve_fence(struct drm_i915_fence_reg *fence);
3107

3108
void i915_gem_revoke_fences(struct drm_i915_private *dev_priv);
3109
void i915_gem_restore_fences(struct drm_i915_private *dev_priv);
3110

3111
void i915_gem_detect_bit_6_swizzle(struct drm_i915_private *dev_priv);
3112 3113 3114 3115
void i915_gem_object_do_bit_17_swizzle(struct drm_i915_gem_object *obj,
				       struct sg_table *pages);
void i915_gem_object_save_bit_17_swizzle(struct drm_i915_gem_object *obj,
					 struct sg_table *pages);
3116

3117 3118 3119 3120 3121 3122
static inline struct i915_gem_context *
__i915_gem_context_lookup_rcu(struct drm_i915_file_private *file_priv, u32 id)
{
	return idr_find(&file_priv->context_idr, id);
}

3123 3124 3125 3126 3127
static inline struct i915_gem_context *
i915_gem_context_lookup(struct drm_i915_file_private *file_priv, u32 id)
{
	struct i915_gem_context *ctx;

3128 3129 3130 3131 3132
	rcu_read_lock();
	ctx = __i915_gem_context_lookup_rcu(file_priv, id);
	if (ctx && !kref_get_unless_zero(&ctx->ref))
		ctx = NULL;
	rcu_read_unlock();
3133 3134 3135 3136

	return ctx;
}

3137 3138
int i915_perf_open_ioctl(struct drm_device *dev, void *data,
			 struct drm_file *file);
3139 3140 3141 3142
int i915_perf_add_config_ioctl(struct drm_device *dev, void *data,
			       struct drm_file *file);
int i915_perf_remove_config_ioctl(struct drm_device *dev, void *data,
				  struct drm_file *file);
3143 3144
void i915_oa_init_reg_state(struct intel_engine_cs *engine,
			    struct i915_gem_context *ctx,
3145
			    u32 *reg_state);
3146

3147
/* i915_gem_evict.c */
3148
int __must_check i915_gem_evict_something(struct i915_address_space *vm,
3149
					  u64 min_size, u64 alignment,
3150
					  unsigned cache_level,
3151
					  u64 start, u64 end,
3152
					  unsigned flags);
3153 3154 3155
int __must_check i915_gem_evict_for_node(struct i915_address_space *vm,
					 struct drm_mm_node *node,
					 unsigned int flags);
3156
int i915_gem_evict_vm(struct i915_address_space *vm);
3157

3158 3159
void i915_gem_flush_ggtt_writes(struct drm_i915_private *dev_priv);

3160
/* belongs in i915_gem_gtt.h */
3161
static inline void i915_gem_chipset_flush(struct drm_i915_private *dev_priv)
3162
{
3163
	wmb();
3164
	if (INTEL_GEN(dev_priv) < 6)
3165 3166
		intel_gtt_chipset_flush();
}
3167

3168
/* i915_gem_stolen.c */
3169 3170 3171
int i915_gem_stolen_insert_node(struct drm_i915_private *dev_priv,
				struct drm_mm_node *node, u64 size,
				unsigned alignment);
3172 3173 3174 3175
int i915_gem_stolen_insert_node_in_range(struct drm_i915_private *dev_priv,
					 struct drm_mm_node *node, u64 size,
					 unsigned alignment, u64 start,
					 u64 end);
3176 3177
void i915_gem_stolen_remove_node(struct drm_i915_private *dev_priv,
				 struct drm_mm_node *node);
3178
int i915_gem_init_stolen(struct drm_i915_private *dev_priv);
3179
void i915_gem_cleanup_stolen(struct drm_i915_private *dev_priv);
3180
struct drm_i915_gem_object *
3181 3182
i915_gem_object_create_stolen(struct drm_i915_private *dev_priv,
			      resource_size_t size);
3183
struct drm_i915_gem_object *
3184
i915_gem_object_create_stolen_for_preallocated(struct drm_i915_private *dev_priv,
3185 3186 3187
					       resource_size_t stolen_offset,
					       resource_size_t gtt_offset,
					       resource_size_t size);
3188

3189 3190 3191
/* i915_gem_internal.c */
struct drm_i915_gem_object *
i915_gem_object_create_internal(struct drm_i915_private *dev_priv,
3192
				phys_addr_t size);
3193

3194
/* i915_gem_shrinker.c */
3195
unsigned long i915_gem_shrink(struct drm_i915_private *i915,
3196
			      unsigned long target,
3197
			      unsigned long *nr_scanned,
3198 3199 3200 3201
			      unsigned flags);
#define I915_SHRINK_PURGEABLE 0x1
#define I915_SHRINK_UNBOUND 0x2
#define I915_SHRINK_BOUND 0x4
3202
#define I915_SHRINK_ACTIVE 0x8
3203
#define I915_SHRINK_VMAPS 0x10
3204 3205 3206
unsigned long i915_gem_shrink_all(struct drm_i915_private *i915);
void i915_gem_shrinker_register(struct drm_i915_private *i915);
void i915_gem_shrinker_unregister(struct drm_i915_private *i915);
3207 3208
void i915_gem_shrinker_taints_mutex(struct drm_i915_private *i915,
				    struct mutex *mutex);
3209

3210
/* i915_gem_tiling.c */
3211
static inline bool i915_gem_object_needs_bit17_swizzle(struct drm_i915_gem_object *obj)
3212
{
3213
	struct drm_i915_private *dev_priv = to_i915(obj->base.dev);
3214 3215

	return dev_priv->mm.bit_6_swizzle_x == I915_BIT_6_SWIZZLE_9_10_17 &&
3216
		i915_gem_object_is_tiled(obj);
3217 3218
}

3219 3220 3221 3222 3223
u32 i915_gem_fence_size(struct drm_i915_private *dev_priv, u32 size,
			unsigned int tiling, unsigned int stride);
u32 i915_gem_fence_alignment(struct drm_i915_private *dev_priv, u32 size,
			     unsigned int tiling, unsigned int stride);

3224
/* i915_debugfs.c */
3225
#ifdef CONFIG_DEBUG_FS
3226
int i915_debugfs_register(struct drm_i915_private *dev_priv);
J
Jani Nikula 已提交
3227
int i915_debugfs_connector_add(struct drm_connector *connector);
3228
void intel_display_crc_init(struct drm_i915_private *dev_priv);
3229
#else
3230
static inline int i915_debugfs_register(struct drm_i915_private *dev_priv) {return 0;}
3231 3232
static inline int i915_debugfs_connector_add(struct drm_connector *connector)
{ return 0; }
3233
static inline void intel_display_crc_init(struct drm_i915_private *dev_priv) {}
3234
#endif
3235

3236
const char *i915_cache_level_str(struct drm_i915_private *i915, int type);
3237

3238
/* i915_cmd_parser.c */
3239
int i915_cmd_parser_get_version(struct drm_i915_private *dev_priv);
3240
void intel_engine_init_cmd_parser(struct intel_engine_cs *engine);
3241 3242 3243 3244 3245 3246 3247
void intel_engine_cleanup_cmd_parser(struct intel_engine_cs *engine);
int intel_engine_cmd_parser(struct intel_engine_cs *engine,
			    struct drm_i915_gem_object *batch_obj,
			    struct drm_i915_gem_object *shadow_batch_obj,
			    u32 batch_start_offset,
			    u32 batch_len,
			    bool is_master);
3248

3249 3250 3251
/* i915_perf.c */
extern void i915_perf_init(struct drm_i915_private *dev_priv);
extern void i915_perf_fini(struct drm_i915_private *dev_priv);
3252 3253
extern void i915_perf_register(struct drm_i915_private *dev_priv);
extern void i915_perf_unregister(struct drm_i915_private *dev_priv);
3254

3255
/* i915_suspend.c */
3256 3257
extern int i915_save_state(struct drm_i915_private *dev_priv);
extern int i915_restore_state(struct drm_i915_private *dev_priv);
3258

B
Ben Widawsky 已提交
3259
/* i915_sysfs.c */
D
David Weinehall 已提交
3260 3261
void i915_setup_sysfs(struct drm_i915_private *dev_priv);
void i915_teardown_sysfs(struct drm_i915_private *dev_priv);
B
Ben Widawsky 已提交
3262

3263 3264 3265 3266
/* intel_lpe_audio.c */
int  intel_lpe_audio_init(struct drm_i915_private *dev_priv);
void intel_lpe_audio_teardown(struct drm_i915_private *dev_priv);
void intel_lpe_audio_irq_handler(struct drm_i915_private *dev_priv);
3267
void intel_lpe_audio_notify(struct drm_i915_private *dev_priv,
3268 3269
			    enum pipe pipe, enum port port,
			    const void *eld, int ls_clock, bool dp_output);
3270

3271
/* intel_i2c.c */
3272 3273
extern int intel_setup_gmbus(struct drm_i915_private *dev_priv);
extern void intel_teardown_gmbus(struct drm_i915_private *dev_priv);
3274 3275
extern bool intel_gmbus_is_valid_pin(struct drm_i915_private *dev_priv,
				     unsigned int pin);
3276
extern int intel_gmbus_output_aksv(struct i2c_adapter *adapter);
3277

3278 3279
extern struct i2c_adapter *
intel_gmbus_get_adapter(struct drm_i915_private *dev_priv, unsigned int pin);
C
Chris Wilson 已提交
3280 3281
extern void intel_gmbus_set_speed(struct i2c_adapter *adapter, int speed);
extern void intel_gmbus_force_bit(struct i2c_adapter *adapter, bool force_bit);
3282
static inline bool intel_gmbus_is_forced_bit(struct i2c_adapter *adapter)
3283 3284 3285
{
	return container_of(adapter, struct intel_gmbus, adapter)->force_bit;
}
3286
extern void intel_i2c_reset(struct drm_i915_private *dev_priv);
3287

3288
/* intel_bios.c */
3289
void intel_bios_init(struct drm_i915_private *dev_priv);
3290
void intel_bios_cleanup(struct drm_i915_private *dev_priv);
J
Jani Nikula 已提交
3291
bool intel_bios_is_valid_vbt(const void *buf, size_t size);
3292
bool intel_bios_is_tv_present(struct drm_i915_private *dev_priv);
3293
bool intel_bios_is_lvds_present(struct drm_i915_private *dev_priv, u8 *i2c_pin);
3294
bool intel_bios_is_port_present(struct drm_i915_private *dev_priv, enum port port);
3295
bool intel_bios_is_port_edp(struct drm_i915_private *dev_priv, enum port port);
3296
bool intel_bios_is_port_dp_dual_mode(struct drm_i915_private *dev_priv, enum port port);
3297
bool intel_bios_is_dsi_present(struct drm_i915_private *dev_priv, enum port *port);
3298 3299
bool intel_bios_is_port_hpd_inverted(struct drm_i915_private *dev_priv,
				     enum port port);
3300 3301
bool intel_bios_is_lspcon_present(struct drm_i915_private *dev_priv,
				enum port port);
3302
enum aux_ch intel_bios_port_aux_ch(struct drm_i915_private *dev_priv, enum port port);
3303

J
Jesse Barnes 已提交
3304 3305 3306 3307 3308 3309 3310 3311 3312
/* intel_acpi.c */
#ifdef CONFIG_ACPI
extern void intel_register_dsm_handler(void);
extern void intel_unregister_dsm_handler(void);
#else
static inline void intel_register_dsm_handler(void) { return; }
static inline void intel_unregister_dsm_handler(void) { return; }
#endif /* CONFIG_ACPI */

3313 3314 3315 3316
/* intel_device_info.c */
static inline struct intel_device_info *
mkwrite_device_info(struct drm_i915_private *dev_priv)
{
3317
	return (struct intel_device_info *)INTEL_INFO(dev_priv);
3318 3319
}

3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333
static inline struct intel_sseu
intel_device_default_sseu(struct drm_i915_private *i915)
{
	const struct sseu_dev_info *sseu = &RUNTIME_INFO(i915)->sseu;
	struct intel_sseu value = {
		.slice_mask = sseu->slice_mask,
		.subslice_mask = sseu->subslice_mask[0],
		.min_eus_per_subslice = sseu->max_eus_per_subslice,
		.max_eus_per_subslice = sseu->max_eus_per_subslice,
	};

	return value;
}

J
Jesse Barnes 已提交
3334
/* modesetting */
3335
extern void intel_modeset_init_hw(struct drm_device *dev);
3336
extern int intel_modeset_init(struct drm_device *dev);
J
Jesse Barnes 已提交
3337
extern void intel_modeset_cleanup(struct drm_device *dev);
3338 3339
extern int intel_modeset_vga_set_state(struct drm_i915_private *dev_priv,
				       bool state);
3340
extern void intel_display_resume(struct drm_device *dev);
3341 3342
extern void i915_redisable_vga(struct drm_i915_private *dev_priv);
extern void i915_redisable_vga_power_on(struct drm_i915_private *dev_priv);
3343
extern bool ironlake_set_drps(struct drm_i915_private *dev_priv, u8 val);
3344
extern void intel_init_pch_refclk(struct drm_i915_private *dev_priv);
3345
extern int intel_set_rps(struct drm_i915_private *dev_priv, u8 val);
C
Chris Wilson 已提交
3346 3347
extern void intel_rps_mark_interactive(struct drm_i915_private *i915,
				       bool interactive);
3348
extern bool intel_set_memory_cxsr(struct drm_i915_private *dev_priv,
3349
				  bool enable);
3350 3351
void intel_dsc_enable(struct intel_encoder *encoder,
		      const struct intel_crtc_state *crtc_state);
3352
void intel_dsc_disable(const struct intel_crtc_state *crtc_state);
3353

B
Ben Widawsky 已提交
3354 3355
int i915_reg_read_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file);
3356

3357
/* overlay */
3358 3359
extern struct intel_overlay_error_state *
intel_overlay_capture_error_state(struct drm_i915_private *dev_priv);
3360 3361
extern void intel_overlay_print_error_state(struct drm_i915_error_state_buf *e,
					    struct intel_overlay_error_state *error);
3362

3363 3364
extern struct intel_display_error_state *
intel_display_capture_error_state(struct drm_i915_private *dev_priv);
3365
extern void intel_display_print_error_state(struct drm_i915_error_state_buf *e,
3366
					    struct intel_display_error_state *error);
3367

3368
int sandybridge_pcode_read(struct drm_i915_private *dev_priv, u32 mbox, u32 *val);
3369
int sandybridge_pcode_write_timeout(struct drm_i915_private *dev_priv, u32 mbox,
3370 3371
				    u32 val, int fast_timeout_us,
				    int slow_timeout_ms);
3372
#define sandybridge_pcode_write(dev_priv, mbox, val)	\
3373
	sandybridge_pcode_write_timeout(dev_priv, mbox, val, 500, 0)
3374

3375 3376
int skl_pcode_request(struct drm_i915_private *dev_priv, u32 mbox, u32 request,
		      u32 reply_mask, u32 reply, int timeout_base_ms);
3377 3378

/* intel_sideband.c */
3379
u32 vlv_punit_read(struct drm_i915_private *dev_priv, u32 addr);
3380
int vlv_punit_write(struct drm_i915_private *dev_priv, u32 addr, u32 val);
3381
u32 vlv_nc_read(struct drm_i915_private *dev_priv, u8 addr);
3382 3383
u32 vlv_iosf_sb_read(struct drm_i915_private *dev_priv, u8 port, u32 reg);
void vlv_iosf_sb_write(struct drm_i915_private *dev_priv, u8 port, u32 reg, u32 val);
3384 3385 3386 3387
u32 vlv_cck_read(struct drm_i915_private *dev_priv, u32 reg);
void vlv_cck_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
u32 vlv_ccu_read(struct drm_i915_private *dev_priv, u32 reg);
void vlv_ccu_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
3388 3389
u32 vlv_bunit_read(struct drm_i915_private *dev_priv, u32 reg);
void vlv_bunit_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
3390 3391
u32 vlv_dpio_read(struct drm_i915_private *dev_priv, enum pipe pipe, int reg);
void vlv_dpio_write(struct drm_i915_private *dev_priv, enum pipe pipe, int reg, u32 val);
3392 3393 3394 3395
u32 intel_sbi_read(struct drm_i915_private *dev_priv, u16 reg,
		   enum intel_sbi_destination destination);
void intel_sbi_write(struct drm_i915_private *dev_priv, u16 reg, u32 value,
		     enum intel_sbi_destination destination);
3396 3397
u32 vlv_flisdsi_read(struct drm_i915_private *dev_priv, u32 reg);
void vlv_flisdsi_write(struct drm_i915_private *dev_priv, u32 reg, u32 val);
3398

3399
/* intel_dpio_phy.c */
3400
void bxt_port_to_phy_channel(struct drm_i915_private *dev_priv, enum port port,
3401
			     enum dpio_phy *phy, enum dpio_channel *ch);
3402 3403 3404
void bxt_ddi_phy_set_signal_level(struct drm_i915_private *dev_priv,
				  enum port port, u32 margin, u32 scale,
				  u32 enable, u32 deemphasis);
3405 3406 3407 3408 3409 3410
void bxt_ddi_phy_init(struct drm_i915_private *dev_priv, enum dpio_phy phy);
void bxt_ddi_phy_uninit(struct drm_i915_private *dev_priv, enum dpio_phy phy);
bool bxt_ddi_phy_is_enabled(struct drm_i915_private *dev_priv,
			    enum dpio_phy phy);
bool bxt_ddi_phy_verify_state(struct drm_i915_private *dev_priv,
			      enum dpio_phy phy);
3411
u8 bxt_ddi_phy_calc_lane_lat_optim_mask(u8 lane_count);
3412
void bxt_ddi_phy_set_lane_optim_mask(struct intel_encoder *encoder,
3413 3414
				     u8 lane_lat_optim_mask);
u8 bxt_ddi_phy_get_lane_lat_optim_mask(struct intel_encoder *encoder);
3415

3416 3417 3418
void chv_set_phy_signal_level(struct intel_encoder *encoder,
			      u32 deemph_reg_value, u32 margin_reg_value,
			      bool uniq_trans_scale);
3419
void chv_data_lane_soft_reset(struct intel_encoder *encoder,
3420
			      const struct intel_crtc_state *crtc_state,
3421
			      bool reset);
3422 3423 3424 3425
void chv_phy_pre_pll_enable(struct intel_encoder *encoder,
			    const struct intel_crtc_state *crtc_state);
void chv_phy_pre_encoder_enable(struct intel_encoder *encoder,
				const struct intel_crtc_state *crtc_state);
3426
void chv_phy_release_cl2_override(struct intel_encoder *encoder);
3427 3428
void chv_phy_post_pll_disable(struct intel_encoder *encoder,
			      const struct intel_crtc_state *old_crtc_state);
3429

3430 3431 3432
void vlv_set_phy_signal_level(struct intel_encoder *encoder,
			      u32 demph_reg_value, u32 preemph_reg_value,
			      u32 uniqtranscale_reg_value, u32 tx3_demph);
3433 3434 3435 3436 3437 3438
void vlv_phy_pre_pll_enable(struct intel_encoder *encoder,
			    const struct intel_crtc_state *crtc_state);
void vlv_phy_pre_encoder_enable(struct intel_encoder *encoder,
				const struct intel_crtc_state *crtc_state);
void vlv_phy_reset_lanes(struct intel_encoder *encoder,
			 const struct intel_crtc_state *old_crtc_state);
3439

3440 3441 3442 3443 3444 3445
/* intel_combo_phy.c */
void icl_combo_phys_init(struct drm_i915_private *dev_priv);
void icl_combo_phys_uninit(struct drm_i915_private *dev_priv);
void cnl_combo_phys_init(struct drm_i915_private *dev_priv);
void cnl_combo_phys_uninit(struct drm_i915_private *dev_priv);

3446 3447
int intel_gpu_freq(struct drm_i915_private *dev_priv, int val);
int intel_freq_opcode(struct drm_i915_private *dev_priv, int val);
3448
u64 intel_rc6_residency_ns(struct drm_i915_private *dev_priv,
3449
			   const i915_reg_t reg);
3450

T
Tvrtko Ursulin 已提交
3451 3452
u32 intel_get_cagf(struct drm_i915_private *dev_priv, u32 rpstat1);

3453 3454 3455 3456 3457 3458
static inline u64 intel_rc6_residency_us(struct drm_i915_private *dev_priv,
					 const i915_reg_t reg)
{
	return DIV_ROUND_UP_ULL(intel_rc6_residency_ns(dev_priv, reg), 1000);
}

3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471
#define I915_READ8(reg)		dev_priv->uncore.funcs.mmio_readb(dev_priv, (reg), true)
#define I915_WRITE8(reg, val)	dev_priv->uncore.funcs.mmio_writeb(dev_priv, (reg), (val), true)

#define I915_READ16(reg)	dev_priv->uncore.funcs.mmio_readw(dev_priv, (reg), true)
#define I915_WRITE16(reg, val)	dev_priv->uncore.funcs.mmio_writew(dev_priv, (reg), (val), true)
#define I915_READ16_NOTRACE(reg)	dev_priv->uncore.funcs.mmio_readw(dev_priv, (reg), false)
#define I915_WRITE16_NOTRACE(reg, val)	dev_priv->uncore.funcs.mmio_writew(dev_priv, (reg), (val), false)

#define I915_READ(reg)		dev_priv->uncore.funcs.mmio_readl(dev_priv, (reg), true)
#define I915_WRITE(reg, val)	dev_priv->uncore.funcs.mmio_writel(dev_priv, (reg), (val), true)
#define I915_READ_NOTRACE(reg)		dev_priv->uncore.funcs.mmio_readl(dev_priv, (reg), false)
#define I915_WRITE_NOTRACE(reg, val)	dev_priv->uncore.funcs.mmio_writel(dev_priv, (reg), (val), false)

3472 3473 3474 3475
/* Be very careful with read/write 64-bit values. On 32-bit machines, they
 * will be implemented using 2 32-bit writes in an arbitrary order with
 * an arbitrary delay between them. This can cause the hardware to
 * act upon the intermediate value, possibly leading to corruption and
3476 3477 3478 3479 3480 3481 3482 3483 3484
 * machine death. For this reason we do not support I915_WRITE64, or
 * dev_priv->uncore.funcs.mmio_writeq.
 *
 * When reading a 64-bit value as two 32-bit values, the delay may cause
 * the two reads to mismatch, e.g. a timestamp overflowing. Also note that
 * occasionally a 64-bit register does not actualy support a full readq
 * and must be read using two 32-bit reads.
 *
 * You have been warned.
3485
 */
3486
#define I915_READ64(reg)	dev_priv->uncore.funcs.mmio_readq(dev_priv, (reg), true)
3487

3488
#define I915_READ64_2x32(lower_reg, upper_reg) ({			\
3489 3490
	u32 upper, lower, old_upper, loop = 0;				\
	upper = I915_READ(upper_reg);					\
3491
	do {								\
3492
		old_upper = upper;					\
3493
		lower = I915_READ(lower_reg);				\
3494 3495
		upper = I915_READ(upper_reg);				\
	} while (upper != old_upper && loop++ < 2);			\
3496
	(u64)upper << 32 | lower; })
3497

3498 3499 3500
#define POSTING_READ(reg)	(void)I915_READ_NOTRACE(reg)
#define POSTING_READ16(reg)	(void)I915_READ16_NOTRACE(reg)

3501
#define __raw_read(x, s) \
3502
static inline uint##x##_t __raw_i915_read##x(const struct drm_i915_private *dev_priv, \
3503
					     i915_reg_t reg) \
3504
{ \
3505
	return read##s(dev_priv->regs + i915_mmio_reg_offset(reg)); \
3506 3507 3508
}

#define __raw_write(x, s) \
3509
static inline void __raw_i915_write##x(const struct drm_i915_private *dev_priv, \
3510
				       i915_reg_t reg, uint##x##_t val) \
3511
{ \
3512
	write##s(val, dev_priv->regs + i915_mmio_reg_offset(reg)); \
3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526
}
__raw_read(8, b)
__raw_read(16, w)
__raw_read(32, l)
__raw_read(64, q)

__raw_write(8, b)
__raw_write(16, w)
__raw_write(32, l)
__raw_write(64, q)

#undef __raw_read
#undef __raw_write

3527
/* These are untraced mmio-accessors that are only valid to be used inside
3528
 * critical sections, such as inside IRQ handlers, where forcewake is explicitly
3529
 * controlled.
3530
 *
3531
 * Think twice, and think again, before using these.
3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551
 *
 * As an example, these accessors can possibly be used between:
 *
 * spin_lock_irq(&dev_priv->uncore.lock);
 * intel_uncore_forcewake_get__locked();
 *
 * and
 *
 * intel_uncore_forcewake_put__locked();
 * spin_unlock_irq(&dev_priv->uncore.lock);
 *
 *
 * Note: some registers may not need forcewake held, so
 * intel_uncore_forcewake_{get,put} can be omitted, see
 * intel_uncore_forcewake_for_reg().
 *
 * Certain architectures will die if the same cacheline is concurrently accessed
 * by different clients (e.g. on Ivybridge). Access to registers should
 * therefore generally be serialised, by either the dev_priv->uncore.lock or
 * a more localised lock guarding all access to that bank of registers.
3552
 */
3553 3554
#define I915_READ_FW(reg__) __raw_i915_read32(dev_priv, (reg__))
#define I915_WRITE_FW(reg__, val__) __raw_i915_write32(dev_priv, (reg__), (val__))
3555
#define I915_WRITE64_FW(reg__, val__) __raw_i915_write64(dev_priv, (reg__), (val__))
3556 3557
#define POSTING_READ_FW(reg__) (void)I915_READ_FW(reg__)

3558 3559 3560 3561
/* "Broadcast RGB" property */
#define INTEL_BROADCAST_RGB_AUTO 0
#define INTEL_BROADCAST_RGB_FULL 1
#define INTEL_BROADCAST_RGB_LIMITED 2
3562

3563
static inline i915_reg_t i915_vgacntrl_reg(struct drm_i915_private *dev_priv)
3564
{
3565
	if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv))
3566
		return VLV_VGACNTRL;
3567
	else if (INTEL_GEN(dev_priv) >= 5)
3568
		return CPU_VGACNTRL;
3569 3570 3571 3572
	else
		return VGACNTRL;
}

3573 3574 3575 3576 3577 3578 3579
static inline unsigned long msecs_to_jiffies_timeout(const unsigned int m)
{
	unsigned long j = msecs_to_jiffies(m);

	return min_t(unsigned long, MAX_JIFFY_OFFSET, j + 1);
}

3580 3581
static inline unsigned long nsecs_to_jiffies_timeout(const u64 n)
{
3582 3583 3584 3585 3586
	/* nsecs_to_jiffies64() does not guard against overflow */
	if (NSEC_PER_SEC % HZ &&
	    div_u64(n, NSEC_PER_SEC) >= MAX_JIFFY_OFFSET / HZ)
		return MAX_JIFFY_OFFSET;

3587 3588 3589
        return min_t(u64, MAX_JIFFY_OFFSET, nsecs_to_jiffies64(n) + 1);
}

3590 3591 3592 3593 3594 3595 3596 3597 3598
/*
 * If you need to wait X milliseconds between events A and B, but event B
 * doesn't happen exactly after event A, you record the timestamp (jiffies) of
 * when event A happened, then just before event B you call this function and
 * pass the timestamp as the first argument, and X as the second argument.
 */
static inline void
wait_remaining_ms_from_jiffies(unsigned long timestamp_jiffies, int to_wait_ms)
{
3599
	unsigned long target_jiffies, tmp_jiffies, remaining_jiffies;
3600 3601 3602 3603 3604 3605 3606 3607 3608 3609

	/*
	 * Don't re-read the value of "jiffies" every time since it may change
	 * behind our back and break the math.
	 */
	tmp_jiffies = jiffies;
	target_jiffies = timestamp_jiffies +
			 msecs_to_jiffies_timeout(to_wait_ms);

	if (time_after(target_jiffies, tmp_jiffies)) {
3610 3611 3612 3613
		remaining_jiffies = target_jiffies - tmp_jiffies;
		while (remaining_jiffies)
			remaining_jiffies =
			    schedule_timeout_uninterruptible(remaining_jiffies);
3614 3615
	}
}
3616

3617 3618 3619
void i915_memcpy_init_early(struct drm_i915_private *dev_priv);
bool i915_memcpy_from_wc(void *dst, const void *src, unsigned long len);

3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632 3633 3634 3635
/* The movntdqa instructions used for memcpy-from-wc require 16-byte alignment,
 * as well as SSE4.1 support. i915_memcpy_from_wc() will report if it cannot
 * perform the operation. To check beforehand, pass in the parameters to
 * to i915_can_memcpy_from_wc() - since we only care about the low 4 bits,
 * you only need to pass in the minor offsets, page-aligned pointers are
 * always valid.
 *
 * For just checking for SSE4.1, in the foreknowledge that the future use
 * will be correctly aligned, just use i915_has_memcpy_from_wc().
 */
#define i915_can_memcpy_from_wc(dst, src, len) \
	i915_memcpy_from_wc((void *)((unsigned long)(dst) | (unsigned long)(src) | (len)), NULL, 0)

#define i915_has_memcpy_from_wc() \
	i915_memcpy_from_wc(NULL, NULL, 0)

3636 3637 3638 3639 3640
/* i915_mm.c */
int remap_io_mapping(struct vm_area_struct *vma,
		     unsigned long addr, unsigned long pfn, unsigned long size,
		     struct io_mapping *iomap);

3641 3642 3643 3644 3645 3646 3647 3648
static inline int intel_hws_csb_write_index(struct drm_i915_private *i915)
{
	if (INTEL_GEN(i915) >= 10)
		return CNL_HWS_CSB_WRITE_INDEX;
	else
		return I915_HWS_CSB_WRITE_INDEX;
}

3649 3650 3651 3652 3653
static inline u32 i915_scratch_offset(const struct drm_i915_private *i915)
{
	return i915_ggtt_offset(i915->gt.scratch);
}

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Linus Torvalds 已提交
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#endif