xref: /linux/drivers/gpu/drm/vc4/vc4_drv.h (revision 4686da83154d87be6e754ddc68e4ac89b0027ea9)
1c8b75bcaSEric Anholt /*
2c8b75bcaSEric Anholt  * Copyright (C) 2015 Broadcom
3c8b75bcaSEric Anholt  *
4c8b75bcaSEric Anholt  * This program is free software; you can redistribute it and/or modify
5c8b75bcaSEric Anholt  * it under the terms of the GNU General Public License version 2 as
6c8b75bcaSEric Anholt  * published by the Free Software Foundation.
7c8b75bcaSEric Anholt  */
8c8b75bcaSEric Anholt 
9abd7dbe9SSouptick Joarder #include <linux/mm_types.h>
10b7e8e25bSMasahiro Yamada #include <drm/drmP.h>
11e9eafcb5SSam Ravnborg #include <drm/drm_util.h>
129338203cSLaurent Pinchart #include <drm/drm_encoder.h>
13b7e8e25bSMasahiro Yamada #include <drm/drm_gem_cma_helper.h>
14766cc6b1SStefan Schake #include <drm/drm_atomic.h>
15818f5c8fSStefan Schake #include <drm/drm_syncobj.h>
169338203cSLaurent Pinchart 
1765101d8cSBoris Brezillon #include "uapi/drm/vc4_drm.h"
1865101d8cSBoris Brezillon 
19f3099462SEric Anholt /* Don't forget to update vc4_bo.c: bo_type_names[] when adding to
20f3099462SEric Anholt  * this.
21f3099462SEric Anholt  */
22f3099462SEric Anholt enum vc4_kernel_bo_type {
23f3099462SEric Anholt 	/* Any kernel allocation (gem_create_object hook) before it
24f3099462SEric Anholt 	 * gets another type set.
25f3099462SEric Anholt 	 */
26f3099462SEric Anholt 	VC4_BO_TYPE_KERNEL,
27f3099462SEric Anholt 	VC4_BO_TYPE_V3D,
28f3099462SEric Anholt 	VC4_BO_TYPE_V3D_SHADER,
29f3099462SEric Anholt 	VC4_BO_TYPE_DUMB,
30f3099462SEric Anholt 	VC4_BO_TYPE_BIN,
31f3099462SEric Anholt 	VC4_BO_TYPE_RCL,
32f3099462SEric Anholt 	VC4_BO_TYPE_BCL,
33f3099462SEric Anholt 	VC4_BO_TYPE_KERNEL_CACHE,
34f3099462SEric Anholt 	VC4_BO_TYPE_COUNT
35f3099462SEric Anholt };
36f3099462SEric Anholt 
3765101d8cSBoris Brezillon /* Performance monitor object. The perform lifetime is controlled by userspace
3865101d8cSBoris Brezillon  * using perfmon related ioctls. A perfmon can be attached to a submit_cl
3965101d8cSBoris Brezillon  * request, and when this is the case, HW perf counters will be activated just
4065101d8cSBoris Brezillon  * before the submit_cl is submitted to the GPU and disabled when the job is
4165101d8cSBoris Brezillon  * done. This way, only events related to a specific job will be counted.
4265101d8cSBoris Brezillon  */
4365101d8cSBoris Brezillon struct vc4_perfmon {
4465101d8cSBoris Brezillon 	/* Tracks the number of users of the perfmon, when this counter reaches
4565101d8cSBoris Brezillon 	 * zero the perfmon is destroyed.
4665101d8cSBoris Brezillon 	 */
4765101d8cSBoris Brezillon 	refcount_t refcnt;
4865101d8cSBoris Brezillon 
4965101d8cSBoris Brezillon 	/* Number of counters activated in this perfmon instance
5065101d8cSBoris Brezillon 	 * (should be less than DRM_VC4_MAX_PERF_COUNTERS).
5165101d8cSBoris Brezillon 	 */
5265101d8cSBoris Brezillon 	u8 ncounters;
5365101d8cSBoris Brezillon 
5465101d8cSBoris Brezillon 	/* Events counted by the HW perf counters. */
5565101d8cSBoris Brezillon 	u8 events[DRM_VC4_MAX_PERF_COUNTERS];
5665101d8cSBoris Brezillon 
5765101d8cSBoris Brezillon 	/* Storage for counter values. Counters are incremented by the HW
5865101d8cSBoris Brezillon 	 * perf counter values every time the perfmon is attached to a GPU job.
5965101d8cSBoris Brezillon 	 * This way, perfmon users don't have to retrieve the results after
6065101d8cSBoris Brezillon 	 * each job if they want to track events covering several submissions.
6165101d8cSBoris Brezillon 	 * Note that counter values can't be reset, but you can fake a reset by
6265101d8cSBoris Brezillon 	 * destroying the perfmon and creating a new one.
6365101d8cSBoris Brezillon 	 */
6465101d8cSBoris Brezillon 	u64 counters[0];
6565101d8cSBoris Brezillon };
6665101d8cSBoris Brezillon 
67c8b75bcaSEric Anholt struct vc4_dev {
68c8b75bcaSEric Anholt 	struct drm_device *dev;
69c8b75bcaSEric Anholt 
70c8b75bcaSEric Anholt 	struct vc4_hdmi *hdmi;
71c8b75bcaSEric Anholt 	struct vc4_hvs *hvs;
72d3f5168aSEric Anholt 	struct vc4_v3d *v3d;
7308302c35SEric Anholt 	struct vc4_dpi *dpi;
744078f575SEric Anholt 	struct vc4_dsi *dsi1;
75e4b81f8cSBoris Brezillon 	struct vc4_vec *vec;
76008095e0SBoris Brezillon 	struct vc4_txp *txp;
7748666d56SDerek Foreman 
7821461365SEric Anholt 	struct vc4_hang_state *hang_state;
7921461365SEric Anholt 
80c826a6e1SEric Anholt 	/* The kernel-space BO cache.  Tracks buffers that have been
81c826a6e1SEric Anholt 	 * unreferenced by all other users (refcounts of 0!) but not
82c826a6e1SEric Anholt 	 * yet freed, so we can do cheap allocations.
83c826a6e1SEric Anholt 	 */
84c826a6e1SEric Anholt 	struct vc4_bo_cache {
85c826a6e1SEric Anholt 		/* Array of list heads for entries in the BO cache,
86c826a6e1SEric Anholt 		 * based on number of pages, so we can do O(1) lookups
87c826a6e1SEric Anholt 		 * in the cache when allocating.
88c826a6e1SEric Anholt 		 */
89c826a6e1SEric Anholt 		struct list_head *size_list;
90c826a6e1SEric Anholt 		uint32_t size_list_size;
91c826a6e1SEric Anholt 
92c826a6e1SEric Anholt 		/* List of all BOs in the cache, ordered by age, so we
93c826a6e1SEric Anholt 		 * can do O(1) lookups when trying to free old
94c826a6e1SEric Anholt 		 * buffers.
95c826a6e1SEric Anholt 		 */
96c826a6e1SEric Anholt 		struct list_head time_list;
97c826a6e1SEric Anholt 		struct work_struct time_work;
98c826a6e1SEric Anholt 		struct timer_list time_timer;
99c826a6e1SEric Anholt 	} bo_cache;
100c826a6e1SEric Anholt 
101f3099462SEric Anholt 	u32 num_labels;
102f3099462SEric Anholt 	struct vc4_label {
103f3099462SEric Anholt 		const char *name;
104c826a6e1SEric Anholt 		u32 num_allocated;
105c826a6e1SEric Anholt 		u32 size_allocated;
106f3099462SEric Anholt 	} *bo_labels;
107c826a6e1SEric Anholt 
108f3099462SEric Anholt 	/* Protects bo_cache and bo_labels. */
109c826a6e1SEric Anholt 	struct mutex bo_lock;
110d5b1a78aSEric Anholt 
111b9f19259SBoris Brezillon 	/* Purgeable BO pool. All BOs in this pool can have their memory
112b9f19259SBoris Brezillon 	 * reclaimed if the driver is unable to allocate new BOs. We also
113b9f19259SBoris Brezillon 	 * keep stats related to the purge mechanism here.
114b9f19259SBoris Brezillon 	 */
115b9f19259SBoris Brezillon 	struct {
116b9f19259SBoris Brezillon 		struct list_head list;
117b9f19259SBoris Brezillon 		unsigned int num;
118b9f19259SBoris Brezillon 		size_t size;
119b9f19259SBoris Brezillon 		unsigned int purged_num;
120b9f19259SBoris Brezillon 		size_t purged_size;
121b9f19259SBoris Brezillon 		struct mutex lock;
122b9f19259SBoris Brezillon 	} purgeable;
123b9f19259SBoris Brezillon 
124cdec4d36SEric Anholt 	uint64_t dma_fence_context;
125cdec4d36SEric Anholt 
126ca26d28bSVarad Gautam 	/* Sequence number for the last job queued in bin_job_list.
127d5b1a78aSEric Anholt 	 * Starts at 0 (no jobs emitted).
128d5b1a78aSEric Anholt 	 */
129d5b1a78aSEric Anholt 	uint64_t emit_seqno;
130d5b1a78aSEric Anholt 
131d5b1a78aSEric Anholt 	/* Sequence number for the last completed job on the GPU.
132d5b1a78aSEric Anholt 	 * Starts at 0 (no jobs completed).
133d5b1a78aSEric Anholt 	 */
134d5b1a78aSEric Anholt 	uint64_t finished_seqno;
135d5b1a78aSEric Anholt 
136ca26d28bSVarad Gautam 	/* List of all struct vc4_exec_info for jobs to be executed in
137ca26d28bSVarad Gautam 	 * the binner.  The first job in the list is the one currently
138ca26d28bSVarad Gautam 	 * programmed into ct0ca for execution.
139d5b1a78aSEric Anholt 	 */
140ca26d28bSVarad Gautam 	struct list_head bin_job_list;
141ca26d28bSVarad Gautam 
142ca26d28bSVarad Gautam 	/* List of all struct vc4_exec_info for jobs that have
143ca26d28bSVarad Gautam 	 * completed binning and are ready for rendering.  The first
144ca26d28bSVarad Gautam 	 * job in the list is the one currently programmed into ct1ca
145ca26d28bSVarad Gautam 	 * for execution.
146ca26d28bSVarad Gautam 	 */
147ca26d28bSVarad Gautam 	struct list_head render_job_list;
148ca26d28bSVarad Gautam 
149d5b1a78aSEric Anholt 	/* List of the finished vc4_exec_infos waiting to be freed by
150d5b1a78aSEric Anholt 	 * job_done_work.
151d5b1a78aSEric Anholt 	 */
152d5b1a78aSEric Anholt 	struct list_head job_done_list;
153d5b1a78aSEric Anholt 	/* Spinlock used to synchronize the job_list and seqno
154d5b1a78aSEric Anholt 	 * accesses between the IRQ handler and GEM ioctls.
155d5b1a78aSEric Anholt 	 */
156d5b1a78aSEric Anholt 	spinlock_t job_lock;
157d5b1a78aSEric Anholt 	wait_queue_head_t job_wait_queue;
158d5b1a78aSEric Anholt 	struct work_struct job_done_work;
159d5b1a78aSEric Anholt 
16065101d8cSBoris Brezillon 	/* Used to track the active perfmon if any. Access to this field is
16165101d8cSBoris Brezillon 	 * protected by job_lock.
16265101d8cSBoris Brezillon 	 */
16365101d8cSBoris Brezillon 	struct vc4_perfmon *active_perfmon;
16465101d8cSBoris Brezillon 
165b501baccSEric Anholt 	/* List of struct vc4_seqno_cb for callbacks to be made from a
166b501baccSEric Anholt 	 * workqueue when the given seqno is passed.
167b501baccSEric Anholt 	 */
168b501baccSEric Anholt 	struct list_head seqno_cb_list;
169b501baccSEric Anholt 
170553c942fSEric Anholt 	/* The memory used for storing binner tile alloc, tile state,
171553c942fSEric Anholt 	 * and overflow memory allocations.  This is freed when V3D
172553c942fSEric Anholt 	 * powers down.
173d5b1a78aSEric Anholt 	 */
174553c942fSEric Anholt 	struct vc4_bo *bin_bo;
175553c942fSEric Anholt 
176553c942fSEric Anholt 	/* Size of blocks allocated within bin_bo. */
177553c942fSEric Anholt 	uint32_t bin_alloc_size;
178553c942fSEric Anholt 
179553c942fSEric Anholt 	/* Bitmask of the bin_alloc_size chunks in bin_bo that are
180553c942fSEric Anholt 	 * used.
181553c942fSEric Anholt 	 */
182553c942fSEric Anholt 	uint32_t bin_alloc_used;
183553c942fSEric Anholt 
184553c942fSEric Anholt 	/* Bitmask of the current bin_alloc used for overflow memory. */
185553c942fSEric Anholt 	uint32_t bin_alloc_overflow;
186553c942fSEric Anholt 
187531a1b62SBoris Brezillon 	/* Incremented when an underrun error happened after an atomic commit.
188531a1b62SBoris Brezillon 	 * This is particularly useful to detect when a specific modeset is too
189531a1b62SBoris Brezillon 	 * demanding in term of memory or HVS bandwidth which is hard to guess
190531a1b62SBoris Brezillon 	 * at atomic check time.
191531a1b62SBoris Brezillon 	 */
192531a1b62SBoris Brezillon 	atomic_t underrun;
193531a1b62SBoris Brezillon 
194d5b1a78aSEric Anholt 	struct work_struct overflow_mem_work;
195d5b1a78aSEric Anholt 
19636cb6253SEric Anholt 	int power_refcount;
19736cb6253SEric Anholt 
19836cb6253SEric Anholt 	/* Mutex controlling the power refcount. */
19936cb6253SEric Anholt 	struct mutex power_lock;
20036cb6253SEric Anholt 
201d5b1a78aSEric Anholt 	struct {
202d5b1a78aSEric Anholt 		struct timer_list timer;
203d5b1a78aSEric Anholt 		struct work_struct reset_work;
204d5b1a78aSEric Anholt 	} hangcheck;
205d5b1a78aSEric Anholt 
206d5b1a78aSEric Anholt 	struct semaphore async_modeset;
207766cc6b1SStefan Schake 
208766cc6b1SStefan Schake 	struct drm_modeset_lock ctm_state_lock;
209766cc6b1SStefan Schake 	struct drm_private_obj ctm_manager;
210*4686da83SBoris Brezillon 	struct drm_private_obj load_tracker;
211c8b75bcaSEric Anholt };
212c8b75bcaSEric Anholt 
213c8b75bcaSEric Anholt static inline struct vc4_dev *
214c8b75bcaSEric Anholt to_vc4_dev(struct drm_device *dev)
215c8b75bcaSEric Anholt {
216c8b75bcaSEric Anholt 	return (struct vc4_dev *)dev->dev_private;
217c8b75bcaSEric Anholt }
218c8b75bcaSEric Anholt 
219c8b75bcaSEric Anholt struct vc4_bo {
220c8b75bcaSEric Anholt 	struct drm_gem_cma_object base;
221c826a6e1SEric Anholt 
2227edabee0SEric Anholt 	/* seqno of the last job to render using this BO. */
223d5b1a78aSEric Anholt 	uint64_t seqno;
224d5b1a78aSEric Anholt 
2257edabee0SEric Anholt 	/* seqno of the last job to use the RCL to write to this BO.
2267edabee0SEric Anholt 	 *
2277edabee0SEric Anholt 	 * Note that this doesn't include binner overflow memory
2287edabee0SEric Anholt 	 * writes.
2297edabee0SEric Anholt 	 */
2307edabee0SEric Anholt 	uint64_t write_seqno;
2317edabee0SEric Anholt 
23283753117SEric Anholt 	bool t_format;
23383753117SEric Anholt 
234c826a6e1SEric Anholt 	/* List entry for the BO's position in either
235c826a6e1SEric Anholt 	 * vc4_exec_info->unref_list or vc4_dev->bo_cache.time_list
236c826a6e1SEric Anholt 	 */
237c826a6e1SEric Anholt 	struct list_head unref_head;
238c826a6e1SEric Anholt 
239c826a6e1SEric Anholt 	/* Time in jiffies when the BO was put in vc4->bo_cache. */
240c826a6e1SEric Anholt 	unsigned long free_time;
241c826a6e1SEric Anholt 
242c826a6e1SEric Anholt 	/* List entry for the BO's position in vc4_dev->bo_cache.size_list */
243c826a6e1SEric Anholt 	struct list_head size_head;
244463873d5SEric Anholt 
245463873d5SEric Anholt 	/* Struct for shader validation state, if created by
246463873d5SEric Anholt 	 * DRM_IOCTL_VC4_CREATE_SHADER_BO.
247463873d5SEric Anholt 	 */
248463873d5SEric Anholt 	struct vc4_validated_shader_info *validated_shader;
249cdec4d36SEric Anholt 
250f3099462SEric Anholt 	/* One of enum vc4_kernel_bo_type, or VC4_BO_TYPE_COUNT + i
251f3099462SEric Anholt 	 * for user-allocated labels.
252f3099462SEric Anholt 	 */
253f3099462SEric Anholt 	int label;
254b9f19259SBoris Brezillon 
255b9f19259SBoris Brezillon 	/* Count the number of active users. This is needed to determine
256b9f19259SBoris Brezillon 	 * whether we can move the BO to the purgeable list or not (when the BO
257b9f19259SBoris Brezillon 	 * is used by the GPU or the display engine we can't purge it).
258b9f19259SBoris Brezillon 	 */
259b9f19259SBoris Brezillon 	refcount_t usecnt;
260b9f19259SBoris Brezillon 
261b9f19259SBoris Brezillon 	/* Store purgeable/purged state here */
262b9f19259SBoris Brezillon 	u32 madv;
263b9f19259SBoris Brezillon 	struct mutex madv_lock;
264c8b75bcaSEric Anholt };
265c8b75bcaSEric Anholt 
266c8b75bcaSEric Anholt static inline struct vc4_bo *
267c8b75bcaSEric Anholt to_vc4_bo(struct drm_gem_object *bo)
268c8b75bcaSEric Anholt {
269c8b75bcaSEric Anholt 	return (struct vc4_bo *)bo;
270c8b75bcaSEric Anholt }
271c8b75bcaSEric Anholt 
272cdec4d36SEric Anholt struct vc4_fence {
273cdec4d36SEric Anholt 	struct dma_fence base;
274cdec4d36SEric Anholt 	struct drm_device *dev;
275cdec4d36SEric Anholt 	/* vc4 seqno for signaled() test */
276cdec4d36SEric Anholt 	uint64_t seqno;
277cdec4d36SEric Anholt };
278cdec4d36SEric Anholt 
279cdec4d36SEric Anholt static inline struct vc4_fence *
280cdec4d36SEric Anholt to_vc4_fence(struct dma_fence *fence)
281cdec4d36SEric Anholt {
282cdec4d36SEric Anholt 	return (struct vc4_fence *)fence;
283cdec4d36SEric Anholt }
284cdec4d36SEric Anholt 
285b501baccSEric Anholt struct vc4_seqno_cb {
286b501baccSEric Anholt 	struct work_struct work;
287b501baccSEric Anholt 	uint64_t seqno;
288b501baccSEric Anholt 	void (*func)(struct vc4_seqno_cb *cb);
289b501baccSEric Anholt };
290b501baccSEric Anholt 
291d3f5168aSEric Anholt struct vc4_v3d {
292001bdb55SEric Anholt 	struct vc4_dev *vc4;
293d3f5168aSEric Anholt 	struct platform_device *pdev;
294d3f5168aSEric Anholt 	void __iomem *regs;
295b72a2816SEric Anholt 	struct clk *clk;
296d3f5168aSEric Anholt };
297d3f5168aSEric Anholt 
298c8b75bcaSEric Anholt struct vc4_hvs {
299c8b75bcaSEric Anholt 	struct platform_device *pdev;
300c8b75bcaSEric Anholt 	void __iomem *regs;
301d8dbf44fSEric Anholt 	u32 __iomem *dlist;
302d8dbf44fSEric Anholt 
303d8dbf44fSEric Anholt 	/* Memory manager for CRTCs to allocate space in the display
304d8dbf44fSEric Anholt 	 * list.  Units are dwords.
305d8dbf44fSEric Anholt 	 */
306d8dbf44fSEric Anholt 	struct drm_mm dlist_mm;
30721af94cfSEric Anholt 	/* Memory manager for the LBM memory used by HVS scaling. */
30821af94cfSEric Anholt 	struct drm_mm lbm_mm;
309d8dbf44fSEric Anholt 	spinlock_t mm_lock;
31021af94cfSEric Anholt 
31121af94cfSEric Anholt 	struct drm_mm_node mitchell_netravali_filter;
312c8b75bcaSEric Anholt };
313c8b75bcaSEric Anholt 
314c8b75bcaSEric Anholt struct vc4_plane {
315c8b75bcaSEric Anholt 	struct drm_plane base;
316c8b75bcaSEric Anholt };
317c8b75bcaSEric Anholt 
318c8b75bcaSEric Anholt static inline struct vc4_plane *
319c8b75bcaSEric Anholt to_vc4_plane(struct drm_plane *plane)
320c8b75bcaSEric Anholt {
321c8b75bcaSEric Anholt 	return (struct vc4_plane *)plane;
322c8b75bcaSEric Anholt }
323c8b75bcaSEric Anholt 
32482364698SStefan Schake enum vc4_scaling_mode {
32582364698SStefan Schake 	VC4_SCALING_NONE,
32682364698SStefan Schake 	VC4_SCALING_TPZ,
32782364698SStefan Schake 	VC4_SCALING_PPF,
32882364698SStefan Schake };
32982364698SStefan Schake 
33082364698SStefan Schake struct vc4_plane_state {
33182364698SStefan Schake 	struct drm_plane_state base;
33282364698SStefan Schake 	/* System memory copy of the display list for this element, computed
33382364698SStefan Schake 	 * at atomic_check time.
33482364698SStefan Schake 	 */
33582364698SStefan Schake 	u32 *dlist;
33682364698SStefan Schake 	u32 dlist_size; /* Number of dwords allocated for the display list */
33782364698SStefan Schake 	u32 dlist_count; /* Number of used dwords in the display list. */
33882364698SStefan Schake 
33982364698SStefan Schake 	/* Offset in the dlist to various words, for pageflip or
34082364698SStefan Schake 	 * cursor updates.
34182364698SStefan Schake 	 */
34282364698SStefan Schake 	u32 pos0_offset;
34382364698SStefan Schake 	u32 pos2_offset;
34482364698SStefan Schake 	u32 ptr0_offset;
3450a038c1cSBoris Brezillon 	u32 lbm_offset;
34682364698SStefan Schake 
34782364698SStefan Schake 	/* Offset where the plane's dlist was last stored in the
34882364698SStefan Schake 	 * hardware at vc4_crtc_atomic_flush() time.
34982364698SStefan Schake 	 */
35082364698SStefan Schake 	u32 __iomem *hw_dlist;
35182364698SStefan Schake 
35282364698SStefan Schake 	/* Clipped coordinates of the plane on the display. */
35382364698SStefan Schake 	int crtc_x, crtc_y, crtc_w, crtc_h;
35482364698SStefan Schake 	/* Clipped area being scanned from in the FB. */
35582364698SStefan Schake 	u32 src_x, src_y;
35682364698SStefan Schake 
35782364698SStefan Schake 	u32 src_w[2], src_h[2];
35882364698SStefan Schake 
35982364698SStefan Schake 	/* Scaling selection for the RGB/Y plane and the Cb/Cr planes. */
36082364698SStefan Schake 	enum vc4_scaling_mode x_scaling[2], y_scaling[2];
36182364698SStefan Schake 	bool is_unity;
36282364698SStefan Schake 	bool is_yuv;
36382364698SStefan Schake 
36482364698SStefan Schake 	/* Offset to start scanning out from the start of the plane's
36582364698SStefan Schake 	 * BO.
36682364698SStefan Schake 	 */
36782364698SStefan Schake 	u32 offsets[3];
36882364698SStefan Schake 
36982364698SStefan Schake 	/* Our allocation in LBM for temporary storage during scaling. */
37082364698SStefan Schake 	struct drm_mm_node lbm;
37182364698SStefan Schake 
37282364698SStefan Schake 	/* Set when the plane has per-pixel alpha content or does not cover
37382364698SStefan Schake 	 * the entire screen. This is a hint to the CRTC that it might need
37482364698SStefan Schake 	 * to enable background color fill.
37582364698SStefan Schake 	 */
37682364698SStefan Schake 	bool needs_bg_fill;
3778d938449SBoris Brezillon 
3788d938449SBoris Brezillon 	/* Mark the dlist as initialized. Useful to avoid initializing it twice
3798d938449SBoris Brezillon 	 * when async update is not possible.
3808d938449SBoris Brezillon 	 */
3818d938449SBoris Brezillon 	bool dlist_initialized;
382*4686da83SBoris Brezillon 
383*4686da83SBoris Brezillon 	/* Load of this plane on the HVS block. The load is expressed in HVS
384*4686da83SBoris Brezillon 	 * cycles/sec.
385*4686da83SBoris Brezillon 	 */
386*4686da83SBoris Brezillon 	u64 hvs_load;
387*4686da83SBoris Brezillon 
388*4686da83SBoris Brezillon 	/* Memory bandwidth needed for this plane. This is expressed in
389*4686da83SBoris Brezillon 	 * bytes/sec.
390*4686da83SBoris Brezillon 	 */
391*4686da83SBoris Brezillon 	u64 membus_load;
39282364698SStefan Schake };
39382364698SStefan Schake 
39482364698SStefan Schake static inline struct vc4_plane_state *
39582364698SStefan Schake to_vc4_plane_state(struct drm_plane_state *state)
39682364698SStefan Schake {
39782364698SStefan Schake 	return (struct vc4_plane_state *)state;
39882364698SStefan Schake }
39982364698SStefan Schake 
400c8b75bcaSEric Anholt enum vc4_encoder_type {
401ab8df60eSBoris Brezillon 	VC4_ENCODER_TYPE_NONE,
402c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_HDMI,
403c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_VEC,
404c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_DSI0,
405c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_DSI1,
406c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_SMI,
407c8b75bcaSEric Anholt 	VC4_ENCODER_TYPE_DPI,
408c8b75bcaSEric Anholt };
409c8b75bcaSEric Anholt 
410c8b75bcaSEric Anholt struct vc4_encoder {
411c8b75bcaSEric Anholt 	struct drm_encoder base;
412c8b75bcaSEric Anholt 	enum vc4_encoder_type type;
413c8b75bcaSEric Anholt 	u32 clock_select;
414c8b75bcaSEric Anholt };
415c8b75bcaSEric Anholt 
416c8b75bcaSEric Anholt static inline struct vc4_encoder *
417c8b75bcaSEric Anholt to_vc4_encoder(struct drm_encoder *encoder)
418c8b75bcaSEric Anholt {
419c8b75bcaSEric Anholt 	return container_of(encoder, struct vc4_encoder, base);
420c8b75bcaSEric Anholt }
421c8b75bcaSEric Anholt 
42279271807SStefan Schake struct vc4_crtc_data {
42379271807SStefan Schake 	/* Which channel of the HVS this pixelvalve sources from. */
42479271807SStefan Schake 	int hvs_channel;
42579271807SStefan Schake 
42679271807SStefan Schake 	enum vc4_encoder_type encoder_types[4];
42779271807SStefan Schake };
42879271807SStefan Schake 
42979271807SStefan Schake struct vc4_crtc {
43079271807SStefan Schake 	struct drm_crtc base;
43179271807SStefan Schake 	const struct vc4_crtc_data *data;
43279271807SStefan Schake 	void __iomem *regs;
43379271807SStefan Schake 
43479271807SStefan Schake 	/* Timestamp at start of vblank irq - unaffected by lock delays. */
43579271807SStefan Schake 	ktime_t t_vblank;
43679271807SStefan Schake 
43779271807SStefan Schake 	/* Which HVS channel we're using for our CRTC. */
43879271807SStefan Schake 	int channel;
43979271807SStefan Schake 
44079271807SStefan Schake 	u8 lut_r[256];
44179271807SStefan Schake 	u8 lut_g[256];
44279271807SStefan Schake 	u8 lut_b[256];
44379271807SStefan Schake 	/* Size in pixels of the COB memory allocated to this CRTC. */
44479271807SStefan Schake 	u32 cob_size;
44579271807SStefan Schake 
44679271807SStefan Schake 	struct drm_pending_vblank_event *event;
44779271807SStefan Schake };
44879271807SStefan Schake 
44979271807SStefan Schake static inline struct vc4_crtc *
45079271807SStefan Schake to_vc4_crtc(struct drm_crtc *crtc)
45179271807SStefan Schake {
45279271807SStefan Schake 	return (struct vc4_crtc *)crtc;
45379271807SStefan Schake }
45479271807SStefan Schake 
455d3f5168aSEric Anholt #define V3D_READ(offset) readl(vc4->v3d->regs + offset)
456d3f5168aSEric Anholt #define V3D_WRITE(offset, val) writel(val, vc4->v3d->regs + offset)
457c8b75bcaSEric Anholt #define HVS_READ(offset) readl(vc4->hvs->regs + offset)
458c8b75bcaSEric Anholt #define HVS_WRITE(offset, val) writel(val, vc4->hvs->regs + offset)
459c8b75bcaSEric Anholt 
460d5b1a78aSEric Anholt struct vc4_exec_info {
461d5b1a78aSEric Anholt 	/* Sequence number for this bin/render job. */
462d5b1a78aSEric Anholt 	uint64_t seqno;
463d5b1a78aSEric Anholt 
4647edabee0SEric Anholt 	/* Latest write_seqno of any BO that binning depends on. */
4657edabee0SEric Anholt 	uint64_t bin_dep_seqno;
4667edabee0SEric Anholt 
467cdec4d36SEric Anholt 	struct dma_fence *fence;
468cdec4d36SEric Anholt 
469c4ce60dcSEric Anholt 	/* Last current addresses the hardware was processing when the
470c4ce60dcSEric Anholt 	 * hangcheck timer checked on us.
471c4ce60dcSEric Anholt 	 */
472c4ce60dcSEric Anholt 	uint32_t last_ct0ca, last_ct1ca;
473c4ce60dcSEric Anholt 
474d5b1a78aSEric Anholt 	/* Kernel-space copy of the ioctl arguments */
475d5b1a78aSEric Anholt 	struct drm_vc4_submit_cl *args;
476d5b1a78aSEric Anholt 
477d5b1a78aSEric Anholt 	/* This is the array of BOs that were looked up at the start of exec.
478d5b1a78aSEric Anholt 	 * Command validation will use indices into this array.
479d5b1a78aSEric Anholt 	 */
480d5b1a78aSEric Anholt 	struct drm_gem_cma_object **bo;
481d5b1a78aSEric Anholt 	uint32_t bo_count;
482d5b1a78aSEric Anholt 
4837edabee0SEric Anholt 	/* List of BOs that are being written by the RCL.  Other than
4847edabee0SEric Anholt 	 * the binner temporary storage, this is all the BOs written
4857edabee0SEric Anholt 	 * by the job.
4867edabee0SEric Anholt 	 */
4877edabee0SEric Anholt 	struct drm_gem_cma_object *rcl_write_bo[4];
4887edabee0SEric Anholt 	uint32_t rcl_write_bo_count;
4897edabee0SEric Anholt 
490d5b1a78aSEric Anholt 	/* Pointers for our position in vc4->job_list */
491d5b1a78aSEric Anholt 	struct list_head head;
492d5b1a78aSEric Anholt 
493d5b1a78aSEric Anholt 	/* List of other BOs used in the job that need to be released
494d5b1a78aSEric Anholt 	 * once the job is complete.
495d5b1a78aSEric Anholt 	 */
496d5b1a78aSEric Anholt 	struct list_head unref_list;
497d5b1a78aSEric Anholt 
498d5b1a78aSEric Anholt 	/* Current unvalidated indices into @bo loaded by the non-hardware
499d5b1a78aSEric Anholt 	 * VC4_PACKET_GEM_HANDLES.
500d5b1a78aSEric Anholt 	 */
501d5b1a78aSEric Anholt 	uint32_t bo_index[2];
502d5b1a78aSEric Anholt 
503d5b1a78aSEric Anholt 	/* This is the BO where we store the validated command lists, shader
504d5b1a78aSEric Anholt 	 * records, and uniforms.
505d5b1a78aSEric Anholt 	 */
506d5b1a78aSEric Anholt 	struct drm_gem_cma_object *exec_bo;
507d5b1a78aSEric Anholt 
508d5b1a78aSEric Anholt 	/**
509d5b1a78aSEric Anholt 	 * This tracks the per-shader-record state (packet 64) that
510d5b1a78aSEric Anholt 	 * determines the length of the shader record and the offset
511d5b1a78aSEric Anholt 	 * it's expected to be found at.  It gets read in from the
512d5b1a78aSEric Anholt 	 * command lists.
513d5b1a78aSEric Anholt 	 */
514d5b1a78aSEric Anholt 	struct vc4_shader_state {
515d5b1a78aSEric Anholt 		uint32_t addr;
516d5b1a78aSEric Anholt 		/* Maximum vertex index referenced by any primitive using this
517d5b1a78aSEric Anholt 		 * shader state.
518d5b1a78aSEric Anholt 		 */
519d5b1a78aSEric Anholt 		uint32_t max_index;
520d5b1a78aSEric Anholt 	} *shader_state;
521d5b1a78aSEric Anholt 
522d5b1a78aSEric Anholt 	/** How many shader states the user declared they were using. */
523d5b1a78aSEric Anholt 	uint32_t shader_state_size;
524d5b1a78aSEric Anholt 	/** How many shader state records the validator has seen. */
525d5b1a78aSEric Anholt 	uint32_t shader_state_count;
526d5b1a78aSEric Anholt 
527d5b1a78aSEric Anholt 	bool found_tile_binning_mode_config_packet;
528d5b1a78aSEric Anholt 	bool found_start_tile_binning_packet;
529d5b1a78aSEric Anholt 	bool found_increment_semaphore_packet;
530d5b1a78aSEric Anholt 	bool found_flush;
531d5b1a78aSEric Anholt 	uint8_t bin_tiles_x, bin_tiles_y;
532553c942fSEric Anholt 	/* Physical address of the start of the tile alloc array
533553c942fSEric Anholt 	 * (where each tile's binned CL will start)
534553c942fSEric Anholt 	 */
535d5b1a78aSEric Anholt 	uint32_t tile_alloc_offset;
536553c942fSEric Anholt 	/* Bitmask of which binner slots are freed when this job completes. */
537553c942fSEric Anholt 	uint32_t bin_slots;
538d5b1a78aSEric Anholt 
539d5b1a78aSEric Anholt 	/**
540d5b1a78aSEric Anholt 	 * Computed addresses pointing into exec_bo where we start the
541d5b1a78aSEric Anholt 	 * bin thread (ct0) and render thread (ct1).
542d5b1a78aSEric Anholt 	 */
543d5b1a78aSEric Anholt 	uint32_t ct0ca, ct0ea;
544d5b1a78aSEric Anholt 	uint32_t ct1ca, ct1ea;
545d5b1a78aSEric Anholt 
546d5b1a78aSEric Anholt 	/* Pointer to the unvalidated bin CL (if present). */
547d5b1a78aSEric Anholt 	void *bin_u;
548d5b1a78aSEric Anholt 
549d5b1a78aSEric Anholt 	/* Pointers to the shader recs.  These paddr gets incremented as CL
550d5b1a78aSEric Anholt 	 * packets are relocated in validate_gl_shader_state, and the vaddrs
551d5b1a78aSEric Anholt 	 * (u and v) get incremented and size decremented as the shader recs
552d5b1a78aSEric Anholt 	 * themselves are validated.
553d5b1a78aSEric Anholt 	 */
554d5b1a78aSEric Anholt 	void *shader_rec_u;
555d5b1a78aSEric Anholt 	void *shader_rec_v;
556d5b1a78aSEric Anholt 	uint32_t shader_rec_p;
557d5b1a78aSEric Anholt 	uint32_t shader_rec_size;
558d5b1a78aSEric Anholt 
559d5b1a78aSEric Anholt 	/* Pointers to the uniform data.  These pointers are incremented, and
560d5b1a78aSEric Anholt 	 * size decremented, as each batch of uniforms is uploaded.
561d5b1a78aSEric Anholt 	 */
562d5b1a78aSEric Anholt 	void *uniforms_u;
563d5b1a78aSEric Anholt 	void *uniforms_v;
564d5b1a78aSEric Anholt 	uint32_t uniforms_p;
565d5b1a78aSEric Anholt 	uint32_t uniforms_size;
56665101d8cSBoris Brezillon 
56765101d8cSBoris Brezillon 	/* Pointer to a performance monitor object if the user requested it,
56865101d8cSBoris Brezillon 	 * NULL otherwise.
56965101d8cSBoris Brezillon 	 */
57065101d8cSBoris Brezillon 	struct vc4_perfmon *perfmon;
57165101d8cSBoris Brezillon };
57265101d8cSBoris Brezillon 
57365101d8cSBoris Brezillon /* Per-open file private data. Any driver-specific resource that has to be
57465101d8cSBoris Brezillon  * released when the DRM file is closed should be placed here.
57565101d8cSBoris Brezillon  */
57665101d8cSBoris Brezillon struct vc4_file {
57765101d8cSBoris Brezillon 	struct {
57865101d8cSBoris Brezillon 		struct idr idr;
57965101d8cSBoris Brezillon 		struct mutex lock;
58065101d8cSBoris Brezillon 	} perfmon;
581d5b1a78aSEric Anholt };
582d5b1a78aSEric Anholt 
583d5b1a78aSEric Anholt static inline struct vc4_exec_info *
584ca26d28bSVarad Gautam vc4_first_bin_job(struct vc4_dev *vc4)
585d5b1a78aSEric Anholt {
58657b9f569SMasahiro Yamada 	return list_first_entry_or_null(&vc4->bin_job_list,
58757b9f569SMasahiro Yamada 					struct vc4_exec_info, head);
588ca26d28bSVarad Gautam }
589ca26d28bSVarad Gautam 
590ca26d28bSVarad Gautam static inline struct vc4_exec_info *
591ca26d28bSVarad Gautam vc4_first_render_job(struct vc4_dev *vc4)
592ca26d28bSVarad Gautam {
59357b9f569SMasahiro Yamada 	return list_first_entry_or_null(&vc4->render_job_list,
594ca26d28bSVarad Gautam 					struct vc4_exec_info, head);
595d5b1a78aSEric Anholt }
596d5b1a78aSEric Anholt 
5979326e6f2SEric Anholt static inline struct vc4_exec_info *
5989326e6f2SEric Anholt vc4_last_render_job(struct vc4_dev *vc4)
5999326e6f2SEric Anholt {
6009326e6f2SEric Anholt 	if (list_empty(&vc4->render_job_list))
6019326e6f2SEric Anholt 		return NULL;
6029326e6f2SEric Anholt 	return list_last_entry(&vc4->render_job_list,
6039326e6f2SEric Anholt 			       struct vc4_exec_info, head);
6049326e6f2SEric Anholt }
6059326e6f2SEric Anholt 
606c8b75bcaSEric Anholt /**
607463873d5SEric Anholt  * struct vc4_texture_sample_info - saves the offsets into the UBO for texture
608463873d5SEric Anholt  * setup parameters.
609463873d5SEric Anholt  *
610463873d5SEric Anholt  * This will be used at draw time to relocate the reference to the texture
611463873d5SEric Anholt  * contents in p0, and validate that the offset combined with
612463873d5SEric Anholt  * width/height/stride/etc. from p1 and p2/p3 doesn't sample outside the BO.
613463873d5SEric Anholt  * Note that the hardware treats unprovided config parameters as 0, so not all
614463873d5SEric Anholt  * of them need to be set up for every texure sample, and we'll store ~0 as
615463873d5SEric Anholt  * the offset to mark the unused ones.
616463873d5SEric Anholt  *
617463873d5SEric Anholt  * See the VC4 3D architecture guide page 41 ("Texture and Memory Lookup Unit
618463873d5SEric Anholt  * Setup") for definitions of the texture parameters.
619463873d5SEric Anholt  */
620463873d5SEric Anholt struct vc4_texture_sample_info {
621463873d5SEric Anholt 	bool is_direct;
622463873d5SEric Anholt 	uint32_t p_offset[4];
623463873d5SEric Anholt };
624463873d5SEric Anholt 
625463873d5SEric Anholt /**
626463873d5SEric Anholt  * struct vc4_validated_shader_info - information about validated shaders that
627463873d5SEric Anholt  * needs to be used from command list validation.
628463873d5SEric Anholt  *
629463873d5SEric Anholt  * For a given shader, each time a shader state record references it, we need
630463873d5SEric Anholt  * to verify that the shader doesn't read more uniforms than the shader state
631463873d5SEric Anholt  * record's uniform BO pointer can provide, and we need to apply relocations
632463873d5SEric Anholt  * and validate the shader state record's uniforms that define the texture
633463873d5SEric Anholt  * samples.
634463873d5SEric Anholt  */
635463873d5SEric Anholt struct vc4_validated_shader_info {
636463873d5SEric Anholt 	uint32_t uniforms_size;
637463873d5SEric Anholt 	uint32_t uniforms_src_size;
638463873d5SEric Anholt 	uint32_t num_texture_samples;
639463873d5SEric Anholt 	struct vc4_texture_sample_info *texture_samples;
6406d45c81dSEric Anholt 
6416d45c81dSEric Anholt 	uint32_t num_uniform_addr_offsets;
6426d45c81dSEric Anholt 	uint32_t *uniform_addr_offsets;
643c778cc5dSJonas Pfeil 
644c778cc5dSJonas Pfeil 	bool is_threaded;
645463873d5SEric Anholt };
646463873d5SEric Anholt 
647463873d5SEric Anholt /**
648c8b75bcaSEric Anholt  * _wait_for - magic (register) wait macro
649c8b75bcaSEric Anholt  *
650c8b75bcaSEric Anholt  * Does the right thing for modeset paths when run under kdgb or similar atomic
651c8b75bcaSEric Anholt  * contexts. Note that it's important that we check the condition again after
652c8b75bcaSEric Anholt  * having timed out, since the timeout could be due to preemption or similar and
653c8b75bcaSEric Anholt  * we've never had a chance to check the condition before the timeout.
654c8b75bcaSEric Anholt  */
655c8b75bcaSEric Anholt #define _wait_for(COND, MS, W) ({ \
656c8b75bcaSEric Anholt 	unsigned long timeout__ = jiffies + msecs_to_jiffies(MS) + 1;	\
657c8b75bcaSEric Anholt 	int ret__ = 0;							\
658c8b75bcaSEric Anholt 	while (!(COND)) {						\
659c8b75bcaSEric Anholt 		if (time_after(jiffies, timeout__)) {			\
660c8b75bcaSEric Anholt 			if (!(COND))					\
661c8b75bcaSEric Anholt 				ret__ = -ETIMEDOUT;			\
662c8b75bcaSEric Anholt 			break;						\
663c8b75bcaSEric Anholt 		}							\
664c8b75bcaSEric Anholt 		if (W && drm_can_sleep())  {				\
665c8b75bcaSEric Anholt 			msleep(W);					\
666c8b75bcaSEric Anholt 		} else {						\
667c8b75bcaSEric Anholt 			cpu_relax();					\
668c8b75bcaSEric Anholt 		}							\
669c8b75bcaSEric Anholt 	}								\
670c8b75bcaSEric Anholt 	ret__;								\
671c8b75bcaSEric Anholt })
672c8b75bcaSEric Anholt 
673c8b75bcaSEric Anholt #define wait_for(COND, MS) _wait_for(COND, MS, 1)
674c8b75bcaSEric Anholt 
675c8b75bcaSEric Anholt /* vc4_bo.c */
676c826a6e1SEric Anholt struct drm_gem_object *vc4_create_object(struct drm_device *dev, size_t size);
677c8b75bcaSEric Anholt void vc4_free_object(struct drm_gem_object *gem_obj);
678c826a6e1SEric Anholt struct vc4_bo *vc4_bo_create(struct drm_device *dev, size_t size,
679f3099462SEric Anholt 			     bool from_cache, enum vc4_kernel_bo_type type);
680c8b75bcaSEric Anholt int vc4_dumb_create(struct drm_file *file_priv,
681c8b75bcaSEric Anholt 		    struct drm_device *dev,
682c8b75bcaSEric Anholt 		    struct drm_mode_create_dumb *args);
683c8b75bcaSEric Anholt struct dma_buf *vc4_prime_export(struct drm_device *dev,
684c8b75bcaSEric Anholt 				 struct drm_gem_object *obj, int flags);
685d5bc60f6SEric Anholt int vc4_create_bo_ioctl(struct drm_device *dev, void *data,
686d5bc60f6SEric Anholt 			struct drm_file *file_priv);
687463873d5SEric Anholt int vc4_create_shader_bo_ioctl(struct drm_device *dev, void *data,
688463873d5SEric Anholt 			       struct drm_file *file_priv);
689d5bc60f6SEric Anholt int vc4_mmap_bo_ioctl(struct drm_device *dev, void *data,
690d5bc60f6SEric Anholt 		      struct drm_file *file_priv);
69183753117SEric Anholt int vc4_set_tiling_ioctl(struct drm_device *dev, void *data,
69283753117SEric Anholt 			 struct drm_file *file_priv);
69383753117SEric Anholt int vc4_get_tiling_ioctl(struct drm_device *dev, void *data,
69483753117SEric Anholt 			 struct drm_file *file_priv);
69521461365SEric Anholt int vc4_get_hang_state_ioctl(struct drm_device *dev, void *data,
69621461365SEric Anholt 			     struct drm_file *file_priv);
697f3099462SEric Anholt int vc4_label_bo_ioctl(struct drm_device *dev, void *data,
698f3099462SEric Anholt 		       struct drm_file *file_priv);
699abd7dbe9SSouptick Joarder vm_fault_t vc4_fault(struct vm_fault *vmf);
700463873d5SEric Anholt int vc4_mmap(struct file *filp, struct vm_area_struct *vma);
701463873d5SEric Anholt int vc4_prime_mmap(struct drm_gem_object *obj, struct vm_area_struct *vma);
702cdec4d36SEric Anholt struct drm_gem_object *vc4_prime_import_sg_table(struct drm_device *dev,
703cdec4d36SEric Anholt 						 struct dma_buf_attachment *attach,
704cdec4d36SEric Anholt 						 struct sg_table *sgt);
705463873d5SEric Anholt void *vc4_prime_vmap(struct drm_gem_object *obj);
706f3099462SEric Anholt int vc4_bo_cache_init(struct drm_device *dev);
707c826a6e1SEric Anholt void vc4_bo_cache_destroy(struct drm_device *dev);
708c826a6e1SEric Anholt int vc4_bo_stats_debugfs(struct seq_file *m, void *arg);
709b9f19259SBoris Brezillon int vc4_bo_inc_usecnt(struct vc4_bo *bo);
710b9f19259SBoris Brezillon void vc4_bo_dec_usecnt(struct vc4_bo *bo);
711b9f19259SBoris Brezillon void vc4_bo_add_to_purgeable_pool(struct vc4_bo *bo);
712b9f19259SBoris Brezillon void vc4_bo_remove_from_purgeable_pool(struct vc4_bo *bo);
713c8b75bcaSEric Anholt 
714c8b75bcaSEric Anholt /* vc4_crtc.c */
715c8b75bcaSEric Anholt extern struct platform_driver vc4_crtc_driver;
716c8b75bcaSEric Anholt int vc4_crtc_debugfs_regs(struct seq_file *m, void *arg);
7171bf6ad62SDaniel Vetter bool vc4_crtc_get_scanoutpos(struct drm_device *dev, unsigned int crtc_id,
7181bf6ad62SDaniel Vetter 			     bool in_vblank_irq, int *vpos, int *hpos,
7191bf59f1dSMario Kleiner 			     ktime_t *stime, ktime_t *etime,
7201bf59f1dSMario Kleiner 			     const struct drm_display_mode *mode);
721008095e0SBoris Brezillon void vc4_crtc_handle_vblank(struct vc4_crtc *crtc);
722008095e0SBoris Brezillon void vc4_crtc_txp_armed(struct drm_crtc_state *state);
723666e7358SBoris Brezillon void vc4_crtc_get_margins(struct drm_crtc_state *state,
724666e7358SBoris Brezillon 			  unsigned int *right, unsigned int *left,
725666e7358SBoris Brezillon 			  unsigned int *top, unsigned int *bottom);
726c8b75bcaSEric Anholt 
727c8b75bcaSEric Anholt /* vc4_debugfs.c */
728c8b75bcaSEric Anholt int vc4_debugfs_init(struct drm_minor *minor);
729c8b75bcaSEric Anholt 
730c8b75bcaSEric Anholt /* vc4_drv.c */
731c8b75bcaSEric Anholt void __iomem *vc4_ioremap_regs(struct platform_device *dev, int index);
732c8b75bcaSEric Anholt 
73308302c35SEric Anholt /* vc4_dpi.c */
73408302c35SEric Anholt extern struct platform_driver vc4_dpi_driver;
73508302c35SEric Anholt int vc4_dpi_debugfs_regs(struct seq_file *m, void *unused);
73608302c35SEric Anholt 
7374078f575SEric Anholt /* vc4_dsi.c */
7384078f575SEric Anholt extern struct platform_driver vc4_dsi_driver;
7394078f575SEric Anholt int vc4_dsi_debugfs_regs(struct seq_file *m, void *unused);
7404078f575SEric Anholt 
741cdec4d36SEric Anholt /* vc4_fence.c */
742cdec4d36SEric Anholt extern const struct dma_fence_ops vc4_fence_ops;
743cdec4d36SEric Anholt 
744d5b1a78aSEric Anholt /* vc4_gem.c */
745d5b1a78aSEric Anholt void vc4_gem_init(struct drm_device *dev);
746d5b1a78aSEric Anholt void vc4_gem_destroy(struct drm_device *dev);
747d5b1a78aSEric Anholt int vc4_submit_cl_ioctl(struct drm_device *dev, void *data,
748d5b1a78aSEric Anholt 			struct drm_file *file_priv);
749d5b1a78aSEric Anholt int vc4_wait_seqno_ioctl(struct drm_device *dev, void *data,
750d5b1a78aSEric Anholt 			 struct drm_file *file_priv);
751d5b1a78aSEric Anholt int vc4_wait_bo_ioctl(struct drm_device *dev, void *data,
752d5b1a78aSEric Anholt 		      struct drm_file *file_priv);
753ca26d28bSVarad Gautam void vc4_submit_next_bin_job(struct drm_device *dev);
754ca26d28bSVarad Gautam void vc4_submit_next_render_job(struct drm_device *dev);
755ca26d28bSVarad Gautam void vc4_move_job_to_render(struct drm_device *dev, struct vc4_exec_info *exec);
756d5b1a78aSEric Anholt int vc4_wait_for_seqno(struct drm_device *dev, uint64_t seqno,
757d5b1a78aSEric Anholt 		       uint64_t timeout_ns, bool interruptible);
758d5b1a78aSEric Anholt void vc4_job_handle_completed(struct vc4_dev *vc4);
759b501baccSEric Anholt int vc4_queue_seqno_cb(struct drm_device *dev,
760b501baccSEric Anholt 		       struct vc4_seqno_cb *cb, uint64_t seqno,
761b501baccSEric Anholt 		       void (*func)(struct vc4_seqno_cb *cb));
762b9f19259SBoris Brezillon int vc4_gem_madvise_ioctl(struct drm_device *dev, void *data,
763b9f19259SBoris Brezillon 			  struct drm_file *file_priv);
764d5b1a78aSEric Anholt 
765c8b75bcaSEric Anholt /* vc4_hdmi.c */
766c8b75bcaSEric Anholt extern struct platform_driver vc4_hdmi_driver;
767c8b75bcaSEric Anholt int vc4_hdmi_debugfs_regs(struct seq_file *m, void *unused);
768c8b75bcaSEric Anholt 
7699a8d5e4aSBoris Brezillon /* vc4_vec.c */
770e4b81f8cSBoris Brezillon extern struct platform_driver vc4_vec_driver;
771e4b81f8cSBoris Brezillon int vc4_vec_debugfs_regs(struct seq_file *m, void *unused);
772e4b81f8cSBoris Brezillon 
773008095e0SBoris Brezillon /* vc4_txp.c */
774008095e0SBoris Brezillon extern struct platform_driver vc4_txp_driver;
775008095e0SBoris Brezillon int vc4_txp_debugfs_regs(struct seq_file *m, void *unused);
776008095e0SBoris Brezillon 
777d5b1a78aSEric Anholt /* vc4_irq.c */
778d5b1a78aSEric Anholt irqreturn_t vc4_irq(int irq, void *arg);
779d5b1a78aSEric Anholt void vc4_irq_preinstall(struct drm_device *dev);
780d5b1a78aSEric Anholt int vc4_irq_postinstall(struct drm_device *dev);
781d5b1a78aSEric Anholt void vc4_irq_uninstall(struct drm_device *dev);
782d5b1a78aSEric Anholt void vc4_irq_reset(struct drm_device *dev);
783d5b1a78aSEric Anholt 
784c8b75bcaSEric Anholt /* vc4_hvs.c */
785c8b75bcaSEric Anholt extern struct platform_driver vc4_hvs_driver;
786c8b75bcaSEric Anholt void vc4_hvs_dump_state(struct drm_device *dev);
787c8b75bcaSEric Anholt int vc4_hvs_debugfs_regs(struct seq_file *m, void *unused);
788531a1b62SBoris Brezillon int vc4_hvs_debugfs_underrun(struct seq_file *m, void *unused);
789531a1b62SBoris Brezillon void vc4_hvs_unmask_underrun(struct drm_device *dev, int channel);
790531a1b62SBoris Brezillon void vc4_hvs_mask_underrun(struct drm_device *dev, int channel);
791c8b75bcaSEric Anholt 
792c8b75bcaSEric Anholt /* vc4_kms.c */
793c8b75bcaSEric Anholt int vc4_kms_load(struct drm_device *dev);
794c8b75bcaSEric Anholt 
795c8b75bcaSEric Anholt /* vc4_plane.c */
796c8b75bcaSEric Anholt struct drm_plane *vc4_plane_init(struct drm_device *dev,
797c8b75bcaSEric Anholt 				 enum drm_plane_type type);
798c8b75bcaSEric Anholt u32 vc4_plane_write_dlist(struct drm_plane *plane, u32 __iomem *dlist);
7992f196b7cSDaniel Vetter u32 vc4_plane_dlist_size(const struct drm_plane_state *state);
800b501baccSEric Anholt void vc4_plane_async_set_fb(struct drm_plane *plane,
801b501baccSEric Anholt 			    struct drm_framebuffer *fb);
802463873d5SEric Anholt 
803d3f5168aSEric Anholt /* vc4_v3d.c */
804d3f5168aSEric Anholt extern struct platform_driver vc4_v3d_driver;
805d3f5168aSEric Anholt int vc4_v3d_debugfs_ident(struct seq_file *m, void *unused);
806d3f5168aSEric Anholt int vc4_v3d_debugfs_regs(struct seq_file *m, void *unused);
807553c942fSEric Anholt int vc4_v3d_get_bin_slot(struct vc4_dev *vc4);
808d5b1a78aSEric Anholt 
809d5b1a78aSEric Anholt /* vc4_validate.c */
810d5b1a78aSEric Anholt int
811d5b1a78aSEric Anholt vc4_validate_bin_cl(struct drm_device *dev,
812d5b1a78aSEric Anholt 		    void *validated,
813d5b1a78aSEric Anholt 		    void *unvalidated,
814d5b1a78aSEric Anholt 		    struct vc4_exec_info *exec);
815d5b1a78aSEric Anholt 
816d5b1a78aSEric Anholt int
817d5b1a78aSEric Anholt vc4_validate_shader_recs(struct drm_device *dev, struct vc4_exec_info *exec);
818d5b1a78aSEric Anholt 
819d5b1a78aSEric Anholt struct drm_gem_cma_object *vc4_use_bo(struct vc4_exec_info *exec,
820d5b1a78aSEric Anholt 				      uint32_t hindex);
821d5b1a78aSEric Anholt 
822d5b1a78aSEric Anholt int vc4_get_rcl(struct drm_device *dev, struct vc4_exec_info *exec);
823d5b1a78aSEric Anholt 
824d5b1a78aSEric Anholt bool vc4_check_tex_size(struct vc4_exec_info *exec,
825d5b1a78aSEric Anholt 			struct drm_gem_cma_object *fbo,
826d5b1a78aSEric Anholt 			uint32_t offset, uint8_t tiling_format,
827d5b1a78aSEric Anholt 			uint32_t width, uint32_t height, uint8_t cpp);
828d3f5168aSEric Anholt 
829463873d5SEric Anholt /* vc4_validate_shader.c */
830463873d5SEric Anholt struct vc4_validated_shader_info *
831463873d5SEric Anholt vc4_validate_shader(struct drm_gem_cma_object *shader_obj);
83265101d8cSBoris Brezillon 
83365101d8cSBoris Brezillon /* vc4_perfmon.c */
83465101d8cSBoris Brezillon void vc4_perfmon_get(struct vc4_perfmon *perfmon);
83565101d8cSBoris Brezillon void vc4_perfmon_put(struct vc4_perfmon *perfmon);
83665101d8cSBoris Brezillon void vc4_perfmon_start(struct vc4_dev *vc4, struct vc4_perfmon *perfmon);
83765101d8cSBoris Brezillon void vc4_perfmon_stop(struct vc4_dev *vc4, struct vc4_perfmon *perfmon,
83865101d8cSBoris Brezillon 		      bool capture);
83965101d8cSBoris Brezillon struct vc4_perfmon *vc4_perfmon_find(struct vc4_file *vc4file, int id);
84065101d8cSBoris Brezillon void vc4_perfmon_open_file(struct vc4_file *vc4file);
84165101d8cSBoris Brezillon void vc4_perfmon_close_file(struct vc4_file *vc4file);
84265101d8cSBoris Brezillon int vc4_perfmon_create_ioctl(struct drm_device *dev, void *data,
84365101d8cSBoris Brezillon 			     struct drm_file *file_priv);
84465101d8cSBoris Brezillon int vc4_perfmon_destroy_ioctl(struct drm_device *dev, void *data,
84565101d8cSBoris Brezillon 			      struct drm_file *file_priv);
84665101d8cSBoris Brezillon int vc4_perfmon_get_values_ioctl(struct drm_device *dev, void *data,
84765101d8cSBoris Brezillon 				 struct drm_file *file_priv);
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