i915_drv.h 58.1 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/dma-resv.h>
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#include <linux/shmem_fs.h>
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#include <linux/stackdepot.h>
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#include <linux/xarray.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_atomic.h>
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#include <drm/drm_connector.h>
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#include <drm/i915_mei_hdcp_interface.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 "display/intel_bios.h"
#include "display/intel_display.h"
#include "display/intel_display_power.h"
#include "display/intel_dpll_mgr.h"
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#include "display/intel_dsb.h"
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#include "display/intel_frontbuffer.h"
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#include "display/intel_global_state.h"
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#include "display/intel_gmbus.h"
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#include "display/intel_opregion.h"

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#include "gem/i915_gem_context_types.h"
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#include "gem/i915_gem_shrinker.h"
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#include "gem/i915_gem_stolen.h"

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#include "gt/intel_lrc.h"
#include "gt/intel_engine.h"
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#include "gt/intel_gt_types.h"
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#include "gt/intel_workarounds.h"
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#include "gt/uc/intel_uc.h"
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#include "intel_device_info.h"
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#include "intel_pch.h"
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#include "intel_runtime_pm.h"
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#include "intel_memory_region.h"
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#include "intel_uncore.h"
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#include "intel_wakeref.h"
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#include "intel_wopcm.h"
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#include "i915_gem.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_perf_types.h"
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#include "i915_request.h"
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#include "i915_scheduler.h"
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#include "gt/intel_timeline.h"
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#include "i915_vma.h"
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#include "i915_irq.h"
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#include "intel_region_lmem.h"

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/* General customization:
 */

#define DRIVER_NAME		"i915"
#define DRIVER_DESC		"Intel Graphics"
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#define DRIVER_DATE		"20200824"
#define DRIVER_TIMESTAMP	1598293597
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struct drm_i915_gem_object;

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/*
 * The code assumes that the hpd_pins below have consecutive values and
 * starting with HPD_PORT_A, the HPD pin associated with any port can be
 * retrieved by adding the corresponding port (or phy) enum value to
 * HPD_PORT_A in most cases. For example:
 * HPD_PORT_C = HPD_PORT_A + PHY_C - PHY_A
 */
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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_PORT_G,
	HPD_PORT_H,
	HPD_PORT_I,

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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 {
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	struct delayed_work hotplug_work;
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	const u32 *hpd, *pch_hpd;

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	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;
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	u32 retry_bits;
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	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;
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	union {
		struct drm_file *file;
		struct rcu_head rcu;
	};
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	struct xarray context_xa;
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	struct xarray vm_xa;
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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_cdclk_config;
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struct intel_cdclk_state;
struct intel_cdclk_vals;
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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 drm_i915_display_funcs {
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	void (*get_cdclk)(struct drm_i915_private *dev_priv,
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			  struct intel_cdclk_config *cdclk_config);
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	void (*set_cdclk)(struct drm_i915_private *dev_priv,
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			  const struct intel_cdclk_config *cdclk_config,
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			  enum pipe pipe);
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	int (*bw_calc_min_cdclk)(struct intel_atomic_state *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 *crtc_state);
	int (*compute_intermediate_wm)(struct intel_crtc_state *crtc_state);
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	void (*initial_watermarks)(struct intel_atomic_state *state,
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				   struct intel_crtc *crtc);
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	void (*atomic_update_watermarks)(struct intel_atomic_state *state,
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					 struct intel_crtc *crtc);
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	void (*optimize_watermarks)(struct intel_atomic_state *state,
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				    struct intel_crtc *crtc);
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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 intel_cdclk_state *state);
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	u8 (*calc_voltage_level)(int cdclk);
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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_atomic_state *state,
			    struct intel_crtc *crtc);
	void (*crtc_disable)(struct intel_atomic_state *state,
			     struct intel_crtc *crtc);
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	void (*commit_modeset_enables)(struct intel_atomic_state *state);
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	void (*commit_modeset_disables)(struct intel_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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	int (*color_check)(struct intel_crtc_state *crtc_state);
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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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	void (*read_luts)(struct intel_crtc_state *crtc_state);
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};

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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[20];
	u32 mmiodata[20];
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	u32 dc_state;
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	u32 target_dc_state;
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	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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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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	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 active;
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	bool activated;
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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 {
		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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			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;
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			u64 modifier;
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		} fb;
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		unsigned int fence_y_offset;
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		u16 gen9_wa_cfb_stride;
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		u16 interval;
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		s8 fence_id;
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	} 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 {
		struct {
			enum pipe pipe;
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			enum i9xx_plane_id i9xx_plane;
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		} crtc;

		struct {
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			const struct drm_format_info *format;
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			unsigned int stride;
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			u64 modifier;
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		} fb;

		int cfb_size;
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		unsigned int fence_y_offset;
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		u16 gen9_wa_cfb_stride;
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		u16 interval;
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		s8 fence_id;
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		bool plane_visible;
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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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	enum transcoder transcoder;
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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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	bool psr2_sel_fetch_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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	bool dc3co_enabled;
	u32 dc3co_exit_delay;
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	struct delayed_work dc3co_work;
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	bool force_mode_changed;
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	struct drm_dp_vsc_sdp vsc;
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};
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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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	u32 savePCH_PORT_HOTPLUG;
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	u16 saveGCDGMBUS;
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};
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struct vlv_s0ix_state;
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#define MAX_L3_SLICES 2
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struct intel_l3_parity {
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	u32 *remap_info[MAX_L3_SLICES];
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	struct work_struct error_work;
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	int which_slice;
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};

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

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

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	/**
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	 * List of objects which are purgeable.
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	 */
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	struct list_head purge_list;

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	/**
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	 * List of objects which have allocated pages and are shrinkable.
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	 */
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	struct list_head shrink_list;
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	/**
	 * List of objects which are pending destruction.
	 */
	struct llist_head free_list;
	struct work_struct free_work;
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	/**
	 * 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;
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	/**
	 * tmpfs instance used for shmem backed objects
	 */
	struct vfsmount *gemfs;

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	struct intel_memory_region *regions[INTEL_REGION_UNKNOWN];

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	struct notifier_block oom_notifier;
598
	struct notifier_block vmap_notifier;
599
	struct shrinker shrinker;
600

601 602 603 604 605 606 607
	/**
	 * 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;

608 609 610
	/* shrinker accounting, also useful for userland debugging */
	u64 shrink_memory;
	u32 shrink_count;
611 612
};

613 614
#define I915_IDLE_ENGINES_TIMEOUT (200) /* in ms */

615 616 617 618 619 620 621 622 623
unsigned long i915_fence_context_timeout(const struct drm_i915_private *i915,
					 u64 context);

static inline unsigned long
i915_fence_timeout(const struct drm_i915_private *i915)
{
	return i915_fence_context_timeout(i915, U64_MAX);
}

624 625 626
/* Amount of SAGV/QGV points, BSpec precisely defines this */
#define I915_NUM_QGV_POINTS 8

627
struct ddi_vbt_port_info {
628 629 630
	/* Non-NULL if port present. */
	const struct child_device_config *child;

631 632
	int max_tmds_clock;

633
	/* This is an index in the HDMI/DVI DDI buffer translation table. */
634
	u8 hdmi_level_shift;
635
	u8 hdmi_level_shift_set:1;
636

637 638 639 640 641 642
	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;
643

644 645
	u8 alternate_aux_channel;
	u8 alternate_ddc_pin;
646

647 648
	u8 dp_boost_level;
	u8 hdmi_boost_level;
649
	int dp_max_link_rate;		/* 0 for not limited by VBT */
650 651
};

R
Rodrigo Vivi 已提交
652 653 654 655 656
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
657 658
};

659 660 661 662 663 664 665 666 667
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;
668
	unsigned int int_lvds_support:1;
669 670
	unsigned int display_clock_mode:1;
	unsigned int fdi_rx_polarity_inverted:1;
671
	unsigned int panel_type:4;
672 673
	int lvds_ssc_freq;
	unsigned int bios_lvds_val; /* initial [PCH_]LVDS reg val in VBIOS */
674
	enum drm_panel_orientation orientation;
675

676 677
	enum drrs_support_type drrs_type;

678 679 680 681 682
	struct {
		int rate;
		int lanes;
		int preemphasis;
		int vswing;
683
		bool low_vswing;
684 685 686
		bool initialized;
		int bpp;
		struct edp_power_seq pps;
687
		bool hobl;
688
	} edp;
689

R
Rodrigo Vivi 已提交
690
	struct {
691
		bool enable;
R
Rodrigo Vivi 已提交
692 693 694 695
		bool full_link;
		bool require_aux_wakeup;
		int idle_frames;
		enum psr_lines_to_wait lines_to_wait;
696 697
		int tp1_wakeup_time_us;
		int tp2_tp3_wakeup_time_us;
698
		int psr2_tp2_tp3_wakeup_time_us;
R
Rodrigo Vivi 已提交
699 700
	} psr;

701 702
	struct {
		u16 pwm_freq_hz;
703
		bool present;
704
		bool active_low_pwm;
705
		u8 min_brightness;	/* min_brightness/255 of max */
706
		u8 controller;		/* brightness controller number */
707
		enum intel_backlight_type type;
708 709
	} backlight;

710 711 712
	/* MIPI DSI */
	struct {
		u16 panel_id;
713 714
		struct mipi_config *config;
		struct mipi_pps_data *pps;
715 716
		u16 bl_ports;
		u16 cabc_ports;
717 718 719
		u8 seq_version;
		u32 size;
		u8 *data;
720
		const u8 *sequence[MIPI_SEQ_MAX];
721
		u8 *deassert_seq; /* Used by fixup_mipi_sequences() */
722
		enum drm_panel_orientation orientation;
723 724
	} dsi;

725 726
	int crt_ddc_pin;

727
	struct list_head display_devices;
728 729

	struct ddi_vbt_port_info ddi_port_info[I915_MAX_PORTS];
730
	struct sdvo_device_mapping sdvo_mappings[2];
731 732
};

733 734 735 736 737
enum intel_ddb_partitioning {
	INTEL_DDB_PART_1_2,
	INTEL_DDB_PART_5_6, /* IVB+ */
};

738
struct ilk_wm_values {
739 740 741
	u32 wm_pipe[3];
	u32 wm_lp[3];
	u32 wm_lp_spr[3];
742 743 744 745
	bool enable_fbc_wm;
	enum intel_ddb_partitioning partitioning;
};

746
struct g4x_pipe_wm {
747 748
	u16 plane[I915_MAX_PLANES];
	u16 fbc;
749
};
750

751
struct g4x_sr_wm {
752 753 754
	u16 plane;
	u16 cursor;
	u16 fbc;
755 756 757
};

struct vlv_wm_ddl_values {
758
	u8 plane[I915_MAX_PLANES];
759
};
760

761
struct vlv_wm_values {
762 763
	struct g4x_pipe_wm pipe[3];
	struct g4x_sr_wm sr;
764
	struct vlv_wm_ddl_values ddl[3];
765
	u8 level;
766
	bool cxsr;
767 768
};

769 770 771 772 773 774 775 776 777
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;
};

778
struct skl_ddb_entry {
779
	u16 start, end;	/* in number of blocks, 'end' is exclusive */
780 781
};

782
static inline u16 skl_ddb_entry_size(const struct skl_ddb_entry *entry)
783
{
784
	return entry->end - entry->start;
785 786
}

787 788 789 790 791 792 793 794 795
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;
}

796
struct i915_frontbuffer_tracking {
797
	spinlock_t lock;
798 799 800 801 802 803 804 805 806

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

807
struct i915_virtual_gpu {
808
	struct mutex lock; /* serialises sending of g2v_notify command pkts */
809
	bool active;
810
	u32 caps;
811 812
};

813
struct intel_cdclk_config {
814
	unsigned int cdclk, vco, ref, bypass;
815
	u8 voltage_level;
816 817
};

818 819 820 821
struct i915_selftest_stash {
	atomic_t counter;
};

822
struct drm_i915_private {
823 824
	struct drm_device drm;

825 826 827
	/* FIXME: Device release actions should all be moved to drmm_ */
	bool do_release;

828 829 830
	/* i915 device parameters */
	struct i915_params params;

831
	const struct intel_device_info __info; /* Use INTEL_INFO() to access. */
832
	struct intel_runtime_info __runtime; /* Use RUNTIME_INFO() to access. */
833
	struct intel_driver_caps caps;
834

835 836 837
	/**
	 * Data Stolen Memory - aka "i915 stolen memory" gives us the start and
	 * end of stolen which we can optionally use to create GEM objects
838
	 * backed by stolen memory. Note that stolen_usable_size tells us
839 840 841 842
	 * 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;
843 844 845 846
	/**
	 * Reseved portion of Data Stolen Memory
	 */
	struct resource dsm_reserved;
847

848 849 850 851 852 853 854 855 856
	/*
	 * 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.
	 */
857
	resource_size_t stolen_usable_size;	/* Total size minus reserved ranges */
858

859
	struct intel_uncore uncore;
860
	struct intel_uncore_mmio_debug mmio_debug;
861

862 863
	struct i915_virtual_gpu vgpu;

864
	struct intel_gvt *gvt;
865

866 867
	struct intel_wopcm wopcm;

868 869
	struct intel_csr csr;

870
	struct intel_gmbus gmbus[GMBUS_NUM_PINS];
871

872 873 874 875 876
	/** gmbus_mutex protects against concurrent usage of the single hw gmbus
	 * controller on different i2c buses. */
	struct mutex gmbus_mutex;

	/**
877 878
	 * Base address of where the gmbus and gpio blocks are located (either
	 * on PCH or on SoC for platforms without PCH).
879
	 */
880
	u32 gpio_mmio_base;
881

882 883
	u32 hsw_psr_mmio_adjust;

884
	/* MMIO base address for MIPI regs */
885
	u32 mipi_mmio_base;
886

887
	u32 pps_mmio_base;
888

889 890
	wait_queue_head_t gmbus_wait_queue;

891
	struct pci_dev *bridge_dev;
892 893

	struct rb_root uabi_engines;
894 895 896 897 898 899

	struct resource mch_res;

	/* protects the irq masks */
	spinlock_t irq_lock;

900 901
	bool display_irqs_enabled;

902 903 904
	/* To control wakeup latency, e.g. for irq-driven dp aux transfers. */
	struct pm_qos_request pm_qos;

V
Ville Syrjälä 已提交
905 906
	/* Sideband mailbox protection */
	struct mutex sb_lock;
907
	struct pm_qos_request sb_qos;
908 909

	/** Cached value of IMR to avoid reads in updating the bitfield */
910 911 912 913
	union {
		u32 irq_mask;
		u32 de_irq_mask[I915_MAX_PIPES];
	};
914
	u32 pipestat_irq_mask[I915_MAX_PIPES];
915

916
	struct i915_hotplug hotplug;
917
	struct intel_fbc fbc;
918
	struct i915_drrs drrs;
919
	struct intel_opregion opregion;
920
	struct intel_vbt_data vbt;
921

922 923
	bool preserve_bios_swizzle;

924 925 926
	/* overlay */
	struct intel_overlay *overlay;

927
	/* backlight registers and fields in struct intel_panel */
928
	struct mutex backlight_lock;
929

V
Ville Syrjälä 已提交
930 931 932
	/* protects panel power sequencer state */
	struct mutex pps_mutex;

933
	unsigned int fsb_freq, mem_freq, is_ddr3;
934
	unsigned int skl_preferred_vco_freq;
935
	unsigned int max_cdclk_freq;
936

M
Mika Kahola 已提交
937
	unsigned int max_dotclk_freq;
938
	unsigned int hpll_freq;
939
	unsigned int fdi_pll_freq;
940
	unsigned int czclk_freq;
941

942
	struct {
943 944
		/* The current hardware cdclk configuration */
		struct intel_cdclk_config hw;
945

946 947
		/* cdclk, divider, and ratio table from bspec */
		const struct intel_cdclk_vals *table;
948 949

		struct intel_global_obj obj;
950
	} cdclk;
951

952 953 954 955 956 957 958
	struct {
		/* The current hardware dbuf configuration */
		u8 enabled_slices;

		struct intel_global_obj obj;
	} dbuf;

959 960 961 962 963 964 965
	/**
	 * 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.
	 */
966 967
	struct workqueue_struct *wq;

968 969
	/* ordered wq for modesets */
	struct workqueue_struct *modeset_wq;
970 971
	/* unbound hipri wq for page flips/plane updates */
	struct workqueue_struct *flip_wq;
972

973 974 975 976 977
	/* Display functions */
	struct drm_i915_display_funcs display;

	/* PCH chipset type */
	enum intel_pch pch_type;
978
	unsigned short pch_id;
979 980 981

	unsigned long quirks;

982
	struct drm_atomic_state *modeset_restore_state;
983
	struct drm_modeset_acquire_ctx reset_ctx;
984

985
	struct i915_ggtt ggtt; /* VM representing the global address space */
B
Ben Widawsky 已提交
986

987
	struct i915_gem_mm mm;
988
	DECLARE_HASHTABLE(mm_structs, 7);
989
	spinlock_t mm_lock;
990 991 992

	/* Kernel Modesetting */

993 994
	struct intel_crtc *plane_to_crtc_mapping[I915_MAX_PIPES];
	struct intel_crtc *pipe_to_crtc_mapping[I915_MAX_PIPES];
995

996 997 998 999 1000
	/**
	 * dpll and cdclk state is protected by connection_mutex
	 * dpll.lock serializes intel_{prepare,enable,disable}_shared_dpll.
	 * Must be global rather than per dpll, because on some platforms plls
	 * share registers.
1001
	 */
1002 1003 1004 1005 1006 1007
	struct {
		struct mutex lock;

		int num_shared_dpll;
		struct intel_shared_dpll shared_dplls[I915_NUM_PLLS];
		const struct intel_dpll_mgr *mgr;
1008 1009 1010 1011 1012

		struct {
			int nssc;
			int ssc;
		} ref_clks;
1013
	} dpll;
1014

1015 1016
	struct list_head global_obj_list;

1017
	/*
1018 1019
	 * For reading active_pipes holding any crtc lock is
	 * sufficient, for writing must hold all of them.
1020
	 */
1021
	u8 active_pipes;
1022

1023
	int dpio_phy_iosf_port[I915_NUM_PHYS_VLV];
1024

1025
	struct i915_wa_list gt_wa_list;
1026

1027 1028
	struct i915_frontbuffer_tracking fb_tracking;

1029 1030 1031 1032 1033
	struct intel_atomic_helper {
		struct llist_head free_list;
		struct work_struct free_work;
	} atomic_helper;

1034
	bool mchbar_need_disable;
1035

1036 1037
	struct intel_l3_parity l3_parity;

M
Matt Roper 已提交
1038 1039 1040 1041 1042 1043 1044 1045
	/*
	 * HTI (aka HDPORT) state read during initial hw readout.  Most
	 * platforms don't have HTI, so this will just stay 0.  Those that do
	 * will use this later to figure out which PLLs and PHYs are unavailable
	 * for driver usage.
	 */
	u32 hti_state;

1046 1047 1048 1049 1050
	/*
	 * edram size in MB.
	 * Cannot be determined by PCIID. You must always read a register.
	 */
	u32 edram_size_mb;
B
Ben Widawsky 已提交
1051

1052
	struct i915_power_domains power_domains;
1053

R
Rodrigo Vivi 已提交
1054
	struct i915_psr psr;
1055

1056
	struct i915_gpu_error gpu_error;
1057

1058 1059
	struct drm_i915_gem_object *vlv_pctx;

1060 1061
	/* list of fbdev register on this device */
	struct intel_fbdev *fbdev;
1062
	struct work_struct fbdev_suspend_work;
1063 1064

	struct drm_property *broadcast_rgb_property;
1065
	struct drm_property *force_audio_property;
1066

I
Imre Deak 已提交
1067
	/* hda/i915 audio component */
1068
	struct i915_audio_component *audio_component;
I
Imre Deak 已提交
1069
	bool audio_component_registered;
1070 1071 1072 1073 1074
	/**
	 * av_mutex - mutex for audio/video sync
	 *
	 */
	struct mutex av_mutex;
1075
	int audio_power_refcount;
1076
	u32 audio_freq_cntrl;
I
Imre Deak 已提交
1077

1078
	u32 fdi_rx_config;
1079

1080
	/* Shadow for DISPLAY_PHY_CONTROL which can't be safely read */
1081
	u32 chv_phy_control;
1082 1083 1084 1085 1086 1087
	/*
	 * 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];
1088
	u32 bxt_phy_grc;
1089

1090
	u32 suspend_count;
1091
	bool power_domains_suspended;
1092
	struct i915_suspend_saved_registers regfile;
1093
	struct vlv_s0ix_state *vlv_s0ix_state;
1094

1095
	enum {
1096 1097 1098 1099 1100
		I915_SAGV_UNKNOWN = 0,
		I915_SAGV_DISABLED,
		I915_SAGV_ENABLED,
		I915_SAGV_NOT_CONTROLLED
	} sagv_status;
1101

1102 1103
	u32 sagv_block_time_us;

1104 1105 1106 1107 1108 1109 1110
	struct {
		/*
		 * Raw watermark latency values:
		 * in 0.1us units for WM0,
		 * in 0.5us units for WM1+.
		 */
		/* primary */
1111
		u16 pri_latency[5];
1112
		/* sprite */
1113
		u16 spr_latency[5];
1114
		/* cursor */
1115
		u16 cur_latency[5];
1116 1117 1118 1119 1120
		/*
		 * Raw watermark memory latency values
		 * for SKL for all 8 levels
		 * in 1us units.
		 */
1121
		u16 skl_latency[8];
1122 1123

		/* current hardware state */
1124 1125
		union {
			struct ilk_wm_values hw;
1126
			struct vlv_wm_values vlv;
1127
			struct g4x_wm_values g4x;
1128
		};
1129

1130
		u8 max_level;
1131 1132 1133 1134

		/*
		 * Should be held around atomic WM register writing; also
		 * protects * intel_crtc->wm.active and
1135
		 * crtc_state->wm.need_postvbl_update.
1136 1137
		 */
		struct mutex wm_mutex;
1138 1139 1140 1141 1142

		/*
		 * 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).
1143 1144
		 *
		 * FIXME get rid of this.
1145 1146
		 */
		bool distrust_bios_wm;
1147 1148
	} wm;

1149 1150
	struct dram_info {
		bool valid;
1151
		bool is_16gb_dimm;
1152
		u8 num_channels;
1153
		u8 ranks;
1154
		u32 bandwidth_kbps;
1155
		bool symmetric_memory;
V
Ville Syrjälä 已提交
1156 1157 1158 1159 1160 1161 1162
		enum intel_dram_type {
			INTEL_DRAM_UNKNOWN,
			INTEL_DRAM_DDR3,
			INTEL_DRAM_DDR4,
			INTEL_DRAM_LPDDR3,
			INTEL_DRAM_LPDDR4
		} type;
1163 1164
	} dram_info;

1165
	struct intel_bw_info {
1166 1167
		/* for each QGV point */
		unsigned int deratedbw[I915_NUM_QGV_POINTS];
1168 1169
		u8 num_qgv_points;
		u8 num_planes;
1170 1171
	} max_bw[6];

1172
	struct intel_global_obj bw_obj;
1173

1174
	struct intel_runtime_pm runtime_pm;
1175

1176
	struct i915_perf perf;
1177

1178
	/* Abstract the submission mechanism (legacy ringbuffer or execlists) away */
1179
	struct intel_gt gt;
1180 1181

	struct {
1182 1183 1184 1185 1186 1187 1188
		struct i915_gem_contexts {
			spinlock_t lock; /* locks list */
			struct list_head list;

			struct llist_head free_list;
			struct work_struct free_work;
		} contexts;
1189 1190 1191 1192 1193 1194 1195 1196 1197 1198

		/*
		 * We replace the local file with a global mappings as the
		 * backing storage for the mmap is on the device and not
		 * on the struct file, and we do not want to prolong the
		 * lifetime of the local fd. To minimise the number of
		 * anonymous inodes we create, we use a global singleton to
		 * share the global mapping.
		 */
		struct file *mmap_singleton;
1199
	} gem;
1200

1201 1202
	u8 pch_ssc_use;

1203 1204
	/* For i915gm/i945gm vblank irq workaround */
	u8 vblank_enabled;
1205

1206 1207 1208
	/* perform PHY state sanity checks? */
	bool chv_phy_assert[2];

M
Mahesh Kumar 已提交
1209 1210
	bool ipc_enabled;

1211 1212
	/* Used to save the pipe-to-encoder mapping for audio */
	struct intel_encoder *av_enc_map[I915_MAX_PIPES];
1213

1214 1215 1216 1217 1218 1219
	/* necessary resource sharing with HDMI LPE audio driver. */
	struct {
		struct platform_device *platdev;
		int	irq;
	} lpe_audio;

1220 1221
	struct i915_pmu pmu;

1222 1223 1224 1225 1226 1227
	struct i915_hdcp_comp_master *hdcp_master;
	bool hdcp_comp_added;

	/* Mutex to protect the above hdcp component related values. */
	struct mutex hdcp_comp_mutex;

1228 1229
	I915_SELFTEST_DECLARE(struct i915_selftest_stash selftest;)

1230 1231 1232 1233
	/*
	 * NOTE: This is the dri1/ums dungeon, don't add stuff here. Your patch
	 * will be rejected. Instead look for a better place.
	 */
1234
};
L
Linus Torvalds 已提交
1235

1236 1237
static inline struct drm_i915_private *to_i915(const struct drm_device *dev)
{
1238
	return container_of(dev, struct drm_i915_private, drm);
1239 1240
}

1241
static inline struct drm_i915_private *kdev_to_i915(struct device *kdev)
I
Imre Deak 已提交
1242
{
1243 1244 1245 1246 1247 1248
	return dev_get_drvdata(kdev);
}

static inline struct drm_i915_private *pdev_to_i915(struct pci_dev *pdev)
{
	return pci_get_drvdata(pdev);
I
Imre Deak 已提交
1249 1250
}

1251
/* Simple iterator over all initialised engines */
1252 1253 1254 1255 1256
#define for_each_engine(engine__, dev_priv__, id__) \
	for ((id__) = 0; \
	     (id__) < I915_NUM_ENGINES; \
	     (id__)++) \
		for_each_if ((engine__) = (dev_priv__)->engine[(id__)])
1257 1258

/* Iterator over subset of engines selected by mask */
1259
#define for_each_engine_masked(engine__, gt__, mask__, tmp__) \
1260
	for ((tmp__) = (mask__) & (gt__)->info.engine_mask; \
1261
	     (tmp__) ? \
1262
	     ((engine__) = (gt__)->engine[__mask_next_bit(tmp__)]), 1 : \
1263
	     0;)
1264

1265 1266 1267 1268 1269 1270 1271 1272
#define rb_to_uabi_engine(rb) \
	rb_entry_safe(rb, struct intel_engine_cs, uabi_node)

#define for_each_uabi_engine(engine__, i915__) \
	for ((engine__) = rb_to_uabi_engine(rb_first(&(i915__)->uabi_engines));\
	     (engine__); \
	     (engine__) = rb_to_uabi_engine(rb_next(&(engine__)->uabi_node)))

1273 1274 1275 1276 1277
#define for_each_uabi_class_engine(engine__, class__, i915__) \
	for ((engine__) = intel_engine_lookup_user((i915__), (class__), 0); \
	     (engine__) && (engine__)->uabi_class == (class__); \
	     (engine__) = rb_to_uabi_engine(rb_next(&(engine__)->uabi_node)))

1278
#define I915_GTT_OFFSET_NONE ((u32)-1)
1279

1280 1281
/*
 * Frontbuffer tracking bits. Set in obj->frontbuffer_bits while a gem bo is
1282
 * considered to be the frontbuffer for the given plane interface-wise. This
1283 1284 1285 1286 1287
 * 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.
 */
1288
#define INTEL_FRONTBUFFER_BITS_PER_PIPE 8
1289 1290 1291 1292 1293
#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)); \
})
1294
#define INTEL_FRONTBUFFER_OVERLAY(pipe) \
1295
	BIT(INTEL_FRONTBUFFER_BITS_PER_PIPE - 1 + INTEL_FRONTBUFFER_BITS_PER_PIPE * (pipe))
1296
#define INTEL_FRONTBUFFER_ALL_MASK(pipe) \
1297 1298
	GENMASK(INTEL_FRONTBUFFER_BITS_PER_PIPE * ((pipe) + 1) - 1, \
		INTEL_FRONTBUFFER_BITS_PER_PIPE * (pipe))
1299

1300
#define INTEL_INFO(dev_priv)	(&(dev_priv)->__info)
1301
#define RUNTIME_INFO(dev_priv)	(&(dev_priv)->__runtime)
1302
#define DRIVER_CAPS(dev_priv)	(&(dev_priv)->caps)
1303

1304
#define INTEL_GEN(dev_priv)	(INTEL_INFO(dev_priv)->gen)
1305
#define INTEL_DEVID(dev_priv)	(RUNTIME_INFO(dev_priv)->device_id)
1306

1307
#define REVID_FOREVER		0xff
1308
#define INTEL_REVID(dev_priv)	((dev_priv)->drm.pdev->revision)
1309

1310 1311 1312
#define INTEL_GEN_MASK(s, e) ( \
	BUILD_BUG_ON_ZERO(!__builtin_constant_p(s)) + \
	BUILD_BUG_ON_ZERO(!__builtin_constant_p(e)) + \
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	GENMASK((e) - 1, (s) - 1))
1314

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1315
/* Returns true if Gen is in inclusive range [Start, End] */
1316
#define IS_GEN_RANGE(dev_priv, s, e) \
1317
	(!!(INTEL_INFO(dev_priv)->gen_mask & INTEL_GEN_MASK((s), (e))))
1318

1319 1320
#define IS_GEN(dev_priv, n) \
	(BUILD_BUG_ON_ZERO(!__builtin_constant_p(n)) + \
1321
	 INTEL_INFO(dev_priv)->gen == (n))
1322

1323 1324
#define HAS_DSB(dev_priv)	(INTEL_INFO(dev_priv)->display.has_dsb)

1325 1326 1327 1328 1329 1330 1331 1332
/*
 * 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))

1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393
static __always_inline unsigned int
__platform_mask_index(const struct intel_runtime_info *info,
		      enum intel_platform p)
{
	const unsigned int pbits =
		BITS_PER_TYPE(info->platform_mask[0]) - INTEL_SUBPLATFORM_BITS;

	/* Expand the platform_mask array if this fails. */
	BUILD_BUG_ON(INTEL_MAX_PLATFORMS >
		     pbits * ARRAY_SIZE(info->platform_mask));

	return p / pbits;
}

static __always_inline unsigned int
__platform_mask_bit(const struct intel_runtime_info *info,
		    enum intel_platform p)
{
	const unsigned int pbits =
		BITS_PER_TYPE(info->platform_mask[0]) - INTEL_SUBPLATFORM_BITS;

	return p % pbits + INTEL_SUBPLATFORM_BITS;
}

static inline u32
intel_subplatform(const struct intel_runtime_info *info, enum intel_platform p)
{
	const unsigned int pi = __platform_mask_index(info, p);

	return info->platform_mask[pi] & INTEL_SUBPLATFORM_BITS;
}

static __always_inline bool
IS_PLATFORM(const struct drm_i915_private *i915, enum intel_platform p)
{
	const struct intel_runtime_info *info = RUNTIME_INFO(i915);
	const unsigned int pi = __platform_mask_index(info, p);
	const unsigned int pb = __platform_mask_bit(info, p);

	BUILD_BUG_ON(!__builtin_constant_p(p));

	return info->platform_mask[pi] & BIT(pb);
}

static __always_inline bool
IS_SUBPLATFORM(const struct drm_i915_private *i915,
	       enum intel_platform p, unsigned int s)
{
	const struct intel_runtime_info *info = RUNTIME_INFO(i915);
	const unsigned int pi = __platform_mask_index(info, p);
	const unsigned int pb = __platform_mask_bit(info, p);
	const unsigned int msb = BITS_PER_TYPE(info->platform_mask[0]) - 1;
	const u32 mask = info->platform_mask[pi];

	BUILD_BUG_ON(!__builtin_constant_p(p));
	BUILD_BUG_ON(!__builtin_constant_p(s));
	BUILD_BUG_ON((s) >= INTEL_SUBPLATFORM_BITS);

	/* Shift and test on the MSB position so sign flag can be used. */
	return ((mask << (msb - pb)) & (mask << (msb - s))) & BIT(msb);
}
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1394

1395
#define IS_MOBILE(dev_priv)	(INTEL_INFO(dev_priv)->is_mobile)
1396
#define IS_DGFX(dev_priv)   (INTEL_INFO(dev_priv)->is_dgfx)
1397

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1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409
#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)
1410
#define IS_G4X(dev_priv)	(IS_G45(dev_priv) || IS_GM45(dev_priv))
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1411 1412
#define IS_PINEVIEW(dev_priv)	IS_PLATFORM(dev_priv, INTEL_PINEVIEW)
#define IS_G33(dev_priv)	IS_PLATFORM(dev_priv, INTEL_G33)
1413 1414 1415
#define IS_IRONLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_IRONLAKE)
#define IS_IRONLAKE_M(dev_priv) \
	(IS_PLATFORM(dev_priv, INTEL_IRONLAKE) && IS_MOBILE(dev_priv))
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1416
#define IS_IVYBRIDGE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_IVYBRIDGE)
1417
#define IS_IVB_GT1(dev_priv)	(IS_IVYBRIDGE(dev_priv) && \
1418
				 INTEL_INFO(dev_priv)->gt == 1)
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1419 1420 1421 1422 1423 1424 1425 1426 1427
#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)
1428
#define IS_COMETLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_COMETLAKE)
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1429
#define IS_CANNONLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_CANNONLAKE)
1430
#define IS_ICELAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_ICELAKE)
1431
#define IS_ELKHARTLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_ELKHARTLAKE)
1432
#define IS_TIGERLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_TIGERLAKE)
1433
#define IS_ROCKETLAKE(dev_priv)	IS_PLATFORM(dev_priv, INTEL_ROCKETLAKE)
1434
#define IS_DG1(dev_priv)        IS_PLATFORM(dev_priv, INTEL_DG1)
1435 1436
#define IS_HSW_EARLY_SDV(dev_priv) (IS_HASWELL(dev_priv) && \
				    (INTEL_DEVID(dev_priv) & 0xFF00) == 0x0C00)
1437 1438 1439 1440
#define IS_BDW_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_BROADWELL, INTEL_SUBPLATFORM_ULT)
#define IS_BDW_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_BROADWELL, INTEL_SUBPLATFORM_ULX)
1441
#define IS_BDW_GT3(dev_priv)	(IS_BROADWELL(dev_priv) && \
1442
				 INTEL_INFO(dev_priv)->gt == 3)
1443 1444
#define IS_HSW_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_HASWELL, INTEL_SUBPLATFORM_ULT)
1445
#define IS_HSW_GT3(dev_priv)	(IS_HASWELL(dev_priv) && \
1446
				 INTEL_INFO(dev_priv)->gt == 3)
1447
#define IS_HSW_GT1(dev_priv)	(IS_HASWELL(dev_priv) && \
1448
				 INTEL_INFO(dev_priv)->gt == 1)
1449
/* ULX machines are also considered ULT. */
1450 1451 1452 1453 1454 1455 1456 1457 1458 1459
#define IS_HSW_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_HASWELL, INTEL_SUBPLATFORM_ULX)
#define IS_SKL_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_SKYLAKE, INTEL_SUBPLATFORM_ULT)
#define IS_SKL_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_SKYLAKE, INTEL_SUBPLATFORM_ULX)
#define IS_KBL_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_KABYLAKE, INTEL_SUBPLATFORM_ULT)
#define IS_KBL_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_KABYLAKE, INTEL_SUBPLATFORM_ULX)
1460
#define IS_SKL_GT2(dev_priv)	(IS_SKYLAKE(dev_priv) && \
1461
				 INTEL_INFO(dev_priv)->gt == 2)
1462
#define IS_SKL_GT3(dev_priv)	(IS_SKYLAKE(dev_priv) && \
1463
				 INTEL_INFO(dev_priv)->gt == 3)
1464
#define IS_SKL_GT4(dev_priv)	(IS_SKYLAKE(dev_priv) && \
1465
				 INTEL_INFO(dev_priv)->gt == 4)
1466
#define IS_KBL_GT2(dev_priv)	(IS_KABYLAKE(dev_priv) && \
1467
				 INTEL_INFO(dev_priv)->gt == 2)
1468
#define IS_KBL_GT3(dev_priv)	(IS_KABYLAKE(dev_priv) && \
1469
				 INTEL_INFO(dev_priv)->gt == 3)
1470 1471
#define IS_CFL_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_COFFEELAKE, INTEL_SUBPLATFORM_ULT)
1472 1473
#define IS_CFL_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_COFFEELAKE, INTEL_SUBPLATFORM_ULX)
1474
#define IS_CFL_GT2(dev_priv)	(IS_COFFEELAKE(dev_priv) && \
1475
				 INTEL_INFO(dev_priv)->gt == 2)
1476
#define IS_CFL_GT3(dev_priv)	(IS_COFFEELAKE(dev_priv) && \
1477
				 INTEL_INFO(dev_priv)->gt == 3)
1478 1479 1480 1481 1482 1483 1484 1485

#define IS_CML_ULT(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_COMETLAKE, INTEL_SUBPLATFORM_ULT)
#define IS_CML_ULX(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_COMETLAKE, INTEL_SUBPLATFORM_ULX)
#define IS_CML_GT2(dev_priv)	(IS_COMETLAKE(dev_priv) && \
				 INTEL_INFO(dev_priv)->gt == 2)

1486 1487 1488 1489
#define IS_CNL_WITH_PORT_F(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_CANNONLAKE, INTEL_SUBPLATFORM_PORTF)
#define IS_ICL_WITH_PORT_F(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_ICELAKE, INTEL_SUBPLATFORM_PORTF)
1490

1491 1492 1493 1494 1495 1496
#define IS_TGL_U(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_TIGERLAKE, INTEL_SUBPLATFORM_ULT)

#define IS_TGL_Y(dev_priv) \
	IS_SUBPLATFORM(dev_priv, INTEL_TIGERLAKE, INTEL_SUBPLATFORM_ULX)

1497 1498 1499 1500 1501 1502
#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
1503 1504
#define SKL_REVID_G0		0x6
#define SKL_REVID_H0		0x7
1505

1506 1507
#define IS_SKL_REVID(p, since, until) (IS_SKYLAKE(p) && IS_REVID(p, since, until))

1508
#define BXT_REVID_A0		0x0
1509
#define BXT_REVID_A1		0x1
1510
#define BXT_REVID_B0		0x3
1511
#define BXT_REVID_B_LAST	0x8
1512
#define BXT_REVID_C0		0x9
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1513

1514 1515
#define IS_BXT_REVID(dev_priv, since, until) \
	(IS_BROXTON(dev_priv) && IS_REVID(dev_priv, since, until))
1516

1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544
enum {
	KBL_REVID_A0,
	KBL_REVID_B0,
	KBL_REVID_B1,
	KBL_REVID_C0,
	KBL_REVID_D0,
	KBL_REVID_D1,
	KBL_REVID_E0,
	KBL_REVID_F0,
	KBL_REVID_G0,
};

struct i915_rev_steppings {
	u8 gt_stepping;
	u8 disp_stepping;
};

/* Defined in intel_workarounds.c */
extern const struct i915_rev_steppings kbl_revids[];

#define IS_KBL_GT_REVID(dev_priv, since, until) \
	(IS_KABYLAKE(dev_priv) && \
	 kbl_revids[INTEL_REVID(dev_priv)].gt_stepping >= since && \
	 kbl_revids[INTEL_REVID(dev_priv)].gt_stepping <= until)
#define IS_KBL_DISP_REVID(dev_priv, since, until) \
	(IS_KABYLAKE(dev_priv) && \
	 kbl_revids[INTEL_REVID(dev_priv)].disp_stepping >= since && \
	 kbl_revids[INTEL_REVID(dev_priv)].disp_stepping <= until)
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1546 1547
#define GLK_REVID_A0		0x0
#define GLK_REVID_A1		0x1
1548 1549
#define GLK_REVID_A2		0x2
#define GLK_REVID_B0		0x3
1550 1551 1552 1553

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

1554 1555
#define CNL_REVID_A0		0x0
#define CNL_REVID_B0		0x1
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1556
#define CNL_REVID_C0		0x2
1557 1558 1559 1560

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

1561 1562 1563 1564 1565 1566 1567 1568 1569
#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))

1570 1571 1572 1573 1574
#define EHL_REVID_A0            0x0

#define IS_EHL_REVID(p, since, until) \
	(IS_ELKHARTLAKE(p) && IS_REVID(p, since, until))

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1575
#define TGL_REVID_A0		0x0
1576 1577
#define TGL_REVID_B0		0x1
#define TGL_REVID_C0		0x2
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#define IS_TGL_REVID(p, since, until) \
	(IS_TIGERLAKE(p) && IS_REVID(p, since, until))

1582 1583 1584 1585 1586 1587 1588
#define RKL_REVID_A0		0x0
#define RKL_REVID_B0		0x1
#define RKL_REVID_C0		0x4

#define IS_RKL_REVID(p, since, until) \
	(IS_ROCKETLAKE(p) && IS_REVID(p, since, until))

1589 1590 1591 1592 1593 1594
#define DG1_REVID_A0		0x0
#define DG1_REVID_B0		0x1

#define IS_DG1_REVID(p, since, until) \
	(IS_DG1(p) && IS_REVID(p, since, until))

1595
#define IS_LP(dev_priv)	(INTEL_INFO(dev_priv)->is_lp)
1596 1597
#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))
1598

1599
#define __HAS_ENGINE(engine_mask, id) ((engine_mask) & BIT(id))
1600
#define HAS_ENGINE(gt, id) __HAS_ENGINE((gt)->info.engine_mask, id)
1601

1602
#define ENGINE_INSTANCES_MASK(gt, first, count) ({		\
1603 1604
	unsigned int first__ = (first);					\
	unsigned int count__ = (count);					\
1605
	((gt)->info.engine_mask &						\
1606
	 GENMASK(first__ + count__ - 1, first__)) >> first__;		\
1607
})
1608 1609 1610 1611
#define VDBOX_MASK(gt) \
	ENGINE_INSTANCES_MASK(gt, VCS0, I915_MAX_VCS)
#define VEBOX_MASK(gt) \
	ENGINE_INSTANCES_MASK(gt, VECS0, I915_MAX_VECS)
1612

1613 1614 1615 1616 1617 1618
/*
 * The Gen7 cmdparser copies the scanned buffer to the ggtt for execution
 * All later gens can run the final buffer from the ppgtt
 */
#define CMDPARSER_USES_GGTT(dev_priv) IS_GEN(dev_priv, 7)

1619 1620
#define HAS_LLC(dev_priv)	(INTEL_INFO(dev_priv)->has_llc)
#define HAS_SNOOP(dev_priv)	(INTEL_INFO(dev_priv)->has_snoop)
1621
#define HAS_EDRAM(dev_priv)	((dev_priv)->edram_size_mb)
1622
#define HAS_SECURE_BATCHES(dev_priv) (INTEL_GEN(dev_priv) < 6)
1623 1624
#define HAS_WT(dev_priv)	((IS_HASWELL(dev_priv) || \
				 IS_BROADWELL(dev_priv)) && HAS_EDRAM(dev_priv))
1625

1626
#define HWS_NEEDS_PHYSICAL(dev_priv)	(INTEL_INFO(dev_priv)->hws_needs_physical)
1627

1628
#define HAS_LOGICAL_RING_CONTEXTS(dev_priv) \
1629
		(INTEL_INFO(dev_priv)->has_logical_ring_contexts)
1630
#define HAS_LOGICAL_RING_ELSQ(dev_priv) \
1631
		(INTEL_INFO(dev_priv)->has_logical_ring_elsq)
1632
#define HAS_LOGICAL_RING_PREEMPTION(dev_priv) \
1633
		(INTEL_INFO(dev_priv)->has_logical_ring_preemption)
1634

1635 1636
#define HAS_MASTER_UNIT_IRQ(dev_priv) (INTEL_INFO(dev_priv)->has_master_unit_irq)

1637 1638
#define HAS_EXECLISTS(dev_priv) HAS_LOGICAL_RING_CONTEXTS(dev_priv)

1639
#define INTEL_PPGTT(dev_priv) (INTEL_INFO(dev_priv)->ppgtt_type)
1640 1641 1642 1643 1644
#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)

1645 1646
#define HAS_PAGE_SIZES(dev_priv, sizes) ({ \
	GEM_BUG_ON((sizes) == 0); \
1647
	((sizes) & ~INTEL_INFO(dev_priv)->page_sizes) == 0; \
1648
})
1649

1650
#define HAS_OVERLAY(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_overlay)
1651
#define OVERLAY_NEEDS_PHYSICAL(dev_priv) \
1652
		(INTEL_INFO(dev_priv)->display.overlay_needs_physical)
1653

1654
/* Early gen2 have a totally busted CS tlb and require pinned batches. */
1655
#define HAS_BROKEN_CS_TLB(dev_priv)	(IS_I830(dev_priv) || IS_I845G(dev_priv))
1656

1657 1658 1659
#define NEEDS_RC6_CTX_CORRUPTION_WA(dev_priv)	\
	(IS_BROADWELL(dev_priv) || IS_GEN(dev_priv, 9))

1660
/* WaRsDisableCoarsePowerGating:skl,cnl */
1661 1662 1663 1664
#define NEEDS_WaRsDisableCoarsePowerGating(dev_priv)			\
	(IS_CANNONLAKE(dev_priv) ||					\
	 IS_SKL_GT3(dev_priv) ||					\
	 IS_SKL_GT4(dev_priv))
1665

1666
#define HAS_GMBUS_IRQ(dev_priv) (INTEL_GEN(dev_priv) >= 4)
R
Ramalingam C 已提交
1667 1668 1669
#define HAS_GMBUS_BURST_READ(dev_priv) (INTEL_GEN(dev_priv) >= 10 || \
					IS_GEMINILAKE(dev_priv) || \
					IS_KABYLAKE(dev_priv))
1670

1671 1672 1673
/* 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.
 */
1674
#define HAS_128_BYTE_Y_TILING(dev_priv) (!IS_GEN(dev_priv, 2) && \
1675 1676
					 !(IS_I915G(dev_priv) || \
					 IS_I915GM(dev_priv)))
1677 1678
#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)
1679

1680
#define HAS_FW_BLC(dev_priv) 	(INTEL_GEN(dev_priv) > 2)
1681
#define HAS_FBC(dev_priv)	(INTEL_INFO(dev_priv)->display.has_fbc)
R
Rodrigo Vivi 已提交
1682
#define HAS_CUR_FBC(dev_priv)	(!HAS_GMCH(dev_priv) && INTEL_GEN(dev_priv) >= 7)
1683

1684
#define HAS_IPS(dev_priv)	(IS_HSW_ULT(dev_priv) || IS_BROADWELL(dev_priv))
1685

1686
#define HAS_DP_MST(dev_priv)	(INTEL_INFO(dev_priv)->display.has_dp_mst)
1687

1688 1689 1690
#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)
1691 1692
#define HAS_PSR_HW_TRACKING(dev_priv) \
	(INTEL_INFO(dev_priv)->display.has_psr_hw_tracking)
1693
#define HAS_PSR2_SEL_FETCH(dev_priv)	 (INTEL_GEN(dev_priv) >= 12)
1694
#define HAS_TRANSCODER(dev_priv, trans)	 ((INTEL_INFO(dev_priv)->cpu_transcoder_mask & BIT(trans)) != 0)
1695

1696 1697
#define HAS_RC6(dev_priv)		 (INTEL_INFO(dev_priv)->has_rc6)
#define HAS_RC6p(dev_priv)		 (INTEL_INFO(dev_priv)->has_rc6p)
1698
#define HAS_RC6pp(dev_priv)		 (false) /* HW was never validated */
P
Paulo Zanoni 已提交
1699

1700 1701
#define HAS_RPS(dev_priv)	(INTEL_INFO(dev_priv)->has_rps)

1702
#define HAS_CSR(dev_priv)	(INTEL_INFO(dev_priv)->display.has_csr)
1703

1704 1705
#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)
1706

1707
#define HAS_IPC(dev_priv)		 (INTEL_INFO(dev_priv)->display.has_ipc)
1708

1709
#define HAS_REGION(i915, i) (INTEL_INFO(i915)->memory_regions & (i))
1710
#define HAS_LMEM(i915) HAS_REGION(i915, REGION_LMEM)
1711

1712
#define HAS_GT_UC(dev_priv)	(INTEL_INFO(dev_priv)->has_gt_uc)
1713

1714
#define HAS_POOLED_EU(dev_priv)	(INTEL_INFO(dev_priv)->has_pooled_eu)
1715

1716 1717
#define HAS_GLOBAL_MOCS_REGISTERS(dev_priv)	(INTEL_INFO(dev_priv)->has_global_mocs)

1718

R
Rodrigo Vivi 已提交
1719
#define HAS_GMCH(dev_priv) (INTEL_INFO(dev_priv)->display.has_gmch)
1720

1721
#define HAS_LSPCON(dev_priv) (INTEL_GEN(dev_priv) >= 9)
1722

1723
/* DPF == dynamic parity feature */
1724
#define HAS_L3_DPF(dev_priv) (INTEL_INFO(dev_priv)->has_l3_dpf)
1725 1726
#define NUM_L3_SLICES(dev_priv) (IS_HSW_GT3(dev_priv) ? \
				 2 : HAS_L3_DPF(dev_priv))
1727

1728
#define GT_FREQUENCY_MULTIPLIER 50
A
Akash Goel 已提交
1729
#define GEN9_FREQ_SCALER 3
1730

1731
#define INTEL_NUM_PIPES(dev_priv) (hweight8(INTEL_INFO(dev_priv)->pipe_mask))
1732

1733
#define HAS_DISPLAY(dev_priv) (INTEL_INFO(dev_priv)->pipe_mask != 0)
1734

1735
/* Only valid when HAS_DISPLAY() is true */
1736
#define INTEL_DISPLAY_ENABLED(dev_priv) \
1737
	(drm_WARN_ON(&(dev_priv)->drm, !HAS_DISPLAY(dev_priv)), !(dev_priv)->params.disable_display)
1738

1739
static inline bool intel_vtd_active(void)
1740 1741
{
#ifdef CONFIG_INTEL_IOMMU
1742
	if (intel_iommu_gfx_mapped)
1743 1744 1745 1746 1747
		return true;
#endif
	return false;
}

1748 1749 1750 1751 1752
static inline bool intel_scanout_needs_vtd_wa(struct drm_i915_private *dev_priv)
{
	return INTEL_GEN(dev_priv) >= 6 && intel_vtd_active();
}

1753 1754 1755
static inline bool
intel_ggtt_update_needs_vtd_wa(struct drm_i915_private *dev_priv)
{
1756
	return IS_BROXTON(dev_priv) && intel_vtd_active();
1757 1758
}

1759
/* i915_drv.c */
1760 1761
extern const struct dev_pm_ops i915_pm_ops;

1762
int i915_driver_probe(struct pci_dev *pdev, const struct pci_device_id *ent);
1763
void i915_driver_remove(struct drm_i915_private *i915);
1764 1765 1766

int i915_resume_switcheroo(struct drm_i915_private *i915);
int i915_suspend_switcheroo(struct drm_i915_private *i915, pm_message_t state);
1767

1768 1769 1770
int i915_getparam_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file_priv);

1771
/* i915_gem.c */
1772 1773
int i915_gem_init_userptr(struct drm_i915_private *dev_priv);
void i915_gem_cleanup_userptr(struct drm_i915_private *dev_priv);
1774
void i915_gem_init_early(struct drm_i915_private *dev_priv);
1775
void i915_gem_cleanup_early(struct drm_i915_private *dev_priv);
1776
int i915_gem_freeze(struct drm_i915_private *dev_priv);
1777 1778
int i915_gem_freeze_late(struct drm_i915_private *dev_priv);

M
Matthew Auld 已提交
1779 1780
struct intel_memory_region *i915_gem_shmem_setup(struct drm_i915_private *i915);

1781 1782
static inline void i915_gem_drain_freed_objects(struct drm_i915_private *i915)
{
1783 1784
	/*
	 * A single pass should suffice to release all the freed objects (along
1785 1786 1787 1788 1789
	 * 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.
	 */
1790 1791
	while (atomic_read(&i915->mm.free_count)) {
		flush_work(&i915->mm.free_work);
1792
		rcu_barrier();
1793
	}
1794 1795
}

1796 1797 1798 1799 1800 1801 1802 1803 1804 1805
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
1806
	 * than 3 passes to catch all _recursive_ RCU delayed work.
1807 1808
	 *
	 */
1809
	int pass = 3;
1810
	do {
1811
		flush_workqueue(i915->wq);
1812
		rcu_barrier();
1813
		i915_gem_drain_freed_objects(i915);
1814
	} while (--pass);
1815
	drain_workqueue(i915->wq);
1816 1817
}

C
Chris Wilson 已提交
1818
struct i915_vma * __must_check
1819 1820 1821 1822 1823 1824
i915_gem_object_ggtt_pin_ww(struct drm_i915_gem_object *obj,
			    struct i915_gem_ww_ctx *ww,
			    const struct i915_ggtt_view *view,
			    u64 size, u64 alignment, u64 flags);

static inline struct i915_vma * __must_check
1825 1826
i915_gem_object_ggtt_pin(struct drm_i915_gem_object *obj,
			 const struct i915_ggtt_view *view,
1827 1828 1829 1830
			 u64 size, u64 alignment, u64 flags)
{
	return i915_gem_object_ggtt_pin_ww(obj, NULL, view, size, alignment, flags);
}
1831

1832 1833 1834
int i915_gem_object_unbind(struct drm_i915_gem_object *obj,
			   unsigned long flags);
#define I915_GEM_OBJECT_UNBIND_ACTIVE BIT(0)
1835
#define I915_GEM_OBJECT_UNBIND_BARRIER BIT(1)
1836
#define I915_GEM_OBJECT_UNBIND_TEST BIT(2)
1837

1838 1839
void i915_gem_runtime_suspend(struct drm_i915_private *dev_priv);

1840 1841 1842
int i915_gem_dumb_create(struct drm_file *file_priv,
			 struct drm_device *dev,
			 struct drm_mode_create_dumb *args);
1843

1844
int __must_check i915_gem_set_global_seqno(struct drm_device *dev, u32 seqno);
1845

M
Mika Kuoppala 已提交
1846 1847
static inline u32 i915_reset_count(struct i915_gpu_error *error)
{
1848
	return atomic_read(&error->reset_count);
1849
}
1850

1851
static inline u32 i915_reset_engine_count(struct i915_gpu_error *error,
1852
					  const struct intel_engine_cs *engine)
1853
{
1854
	return atomic_read(&error->reset_engine_count[engine->uabi_class]);
1855 1856
}

1857
int __must_check i915_gem_init(struct drm_i915_private *dev_priv);
1858 1859
void i915_gem_driver_register(struct drm_i915_private *i915);
void i915_gem_driver_unregister(struct drm_i915_private *i915);
1860
void i915_gem_driver_remove(struct drm_i915_private *dev_priv);
1861
void i915_gem_driver_release(struct drm_i915_private *dev_priv);
1862
void i915_gem_suspend(struct drm_i915_private *dev_priv);
1863
void i915_gem_suspend_late(struct drm_i915_private *dev_priv);
1864
void i915_gem_resume(struct drm_i915_private *dev_priv);
1865

1866
int i915_gem_open(struct drm_i915_private *i915, struct drm_file *file);
1867

1868 1869 1870
int i915_gem_object_set_cache_level(struct drm_i915_gem_object *obj,
				    enum i915_cache_level cache_level);

1871 1872 1873
struct drm_gem_object *i915_gem_prime_import(struct drm_device *dev,
				struct dma_buf *dma_buf);

1874
struct dma_buf *i915_gem_prime_export(struct drm_gem_object *gem_obj, int flags);
1875

1876 1877 1878
static inline struct i915_gem_context *
__i915_gem_context_lookup_rcu(struct drm_i915_file_private *file_priv, u32 id)
{
1879
	return xa_load(&file_priv->context_xa, id);
1880 1881
}

1882 1883 1884 1885 1886
static inline struct i915_gem_context *
i915_gem_context_lookup(struct drm_i915_file_private *file_priv, u32 id)
{
	struct i915_gem_context *ctx;

1887 1888 1889 1890 1891
	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();
1892 1893 1894 1895

	return ctx;
}

1896
/* i915_gem_evict.c */
1897
int __must_check i915_gem_evict_something(struct i915_address_space *vm,
1898
					  u64 min_size, u64 alignment,
M
Matthew Auld 已提交
1899
					  unsigned long color,
1900
					  u64 start, u64 end,
1901
					  unsigned flags);
1902 1903 1904
int __must_check i915_gem_evict_for_node(struct i915_address_space *vm,
					 struct drm_mm_node *node,
					 unsigned int flags);
1905
int i915_gem_evict_vm(struct i915_address_space *vm);
1906

1907 1908 1909
/* i915_gem_internal.c */
struct drm_i915_gem_object *
i915_gem_object_create_internal(struct drm_i915_private *dev_priv,
1910
				phys_addr_t size);
1911

1912
/* i915_gem_tiling.c */
1913
static inline bool i915_gem_object_needs_bit17_swizzle(struct drm_i915_gem_object *obj)
1914
{
1915
	struct drm_i915_private *i915 = to_i915(obj->base.dev);
1916

1917
	return i915->ggtt.bit_6_swizzle_x == I915_BIT_6_SWIZZLE_9_10_17 &&
1918
		i915_gem_object_is_tiled(obj);
1919 1920
}

1921 1922 1923 1924 1925
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);

1926
const char *i915_cache_level_str(struct drm_i915_private *i915, int type);
1927

1928
/* i915_cmd_parser.c */
1929
int i915_cmd_parser_get_version(struct drm_i915_private *dev_priv);
1930
void intel_engine_init_cmd_parser(struct intel_engine_cs *engine);
1931
void intel_engine_cleanup_cmd_parser(struct intel_engine_cs *engine);
1932
int intel_engine_cmd_parser(struct intel_engine_cs *engine,
1933
			    struct i915_vma *batch,
1934 1935
			    unsigned long batch_offset,
			    unsigned long batch_length,
1936 1937 1938
			    struct i915_vma *shadow,
			    bool trampoline);
#define I915_CMD_PARSER_TRAMPOLINE_SIZE 8
1939

1940 1941 1942 1943
/* intel_device_info.c */
static inline struct intel_device_info *
mkwrite_device_info(struct drm_i915_private *dev_priv)
{
1944
	return (struct intel_device_info *)INTEL_INFO(dev_priv);
1945 1946
}

B
Ben Widawsky 已提交
1947 1948
int i915_reg_read_ioctl(struct drm_device *dev, void *data,
			struct drm_file *file);
1949

1950 1951
#define __I915_REG_OP(op__, dev_priv__, ...) \
	intel_uncore_##op__(&(dev_priv__)->uncore, __VA_ARGS__)
1952

1953 1954
#define I915_READ(reg__)	 __I915_REG_OP(read, dev_priv, (reg__))
#define I915_WRITE(reg__, val__) __I915_REG_OP(write, dev_priv, (reg__), (val__))
1955

1956
#define POSTING_READ(reg__)	__I915_REG_OP(posting_read, dev_priv, (reg__))
1957

1958
/* These are untraced mmio-accessors that are only valid to be used inside
1959
 * critical sections, such as inside IRQ handlers, where forcewake is explicitly
1960
 * controlled.
1961
 *
1962
 * Think twice, and think again, before using these.
1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982
 *
 * 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.
1983
 */
1984 1985
#define I915_READ_FW(reg__) __I915_REG_OP(read_fw, dev_priv, (reg__))
#define I915_WRITE_FW(reg__, val__) __I915_REG_OP(write_fw, dev_priv, (reg__), (val__))
1986

1987 1988 1989 1990
/* 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);
1991 1992 1993
int remap_io_sg(struct vm_area_struct *vma,
		unsigned long addr, unsigned long size,
		struct scatterlist *sgl, resource_size_t iobase);
1994

1995 1996 1997 1998 1999 2000 2001 2002
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;
}

2003 2004 2005 2006 2007 2008
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;
}

2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020
static inline u64 i915_cs_timestamp_ns_to_ticks(struct drm_i915_private *i915, u64 val)
{
	return DIV_ROUND_UP_ULL(val * RUNTIME_INFO(i915)->cs_timestamp_frequency_hz,
				1000000000);
}

static inline u64 i915_cs_timestamp_ticks_to_ns(struct drm_i915_private *i915, u64 val)
{
	return div_u64(val * 1000000000,
		       RUNTIME_INFO(i915)->cs_timestamp_frequency_hz);
}

L
Linus Torvalds 已提交
2021
#endif