xref: /openbmc/linux/drivers/gpu/drm/amd/amdkfd/kfd_priv.h (revision 374200b1)
14a488a7aSOded Gabbay /*
24a488a7aSOded Gabbay  * Copyright 2014 Advanced Micro Devices, Inc.
34a488a7aSOded Gabbay  *
44a488a7aSOded Gabbay  * Permission is hereby granted, free of charge, to any person obtaining a
54a488a7aSOded Gabbay  * copy of this software and associated documentation files (the "Software"),
64a488a7aSOded Gabbay  * to deal in the Software without restriction, including without limitation
74a488a7aSOded Gabbay  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
84a488a7aSOded Gabbay  * and/or sell copies of the Software, and to permit persons to whom the
94a488a7aSOded Gabbay  * Software is furnished to do so, subject to the following conditions:
104a488a7aSOded Gabbay  *
114a488a7aSOded Gabbay  * The above copyright notice and this permission notice shall be included in
124a488a7aSOded Gabbay  * all copies or substantial portions of the Software.
134a488a7aSOded Gabbay  *
144a488a7aSOded Gabbay  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
154a488a7aSOded Gabbay  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
164a488a7aSOded Gabbay  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
174a488a7aSOded Gabbay  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
184a488a7aSOded Gabbay  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
194a488a7aSOded Gabbay  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
204a488a7aSOded Gabbay  * OTHER DEALINGS IN THE SOFTWARE.
214a488a7aSOded Gabbay  */
224a488a7aSOded Gabbay 
234a488a7aSOded Gabbay #ifndef KFD_PRIV_H_INCLUDED
244a488a7aSOded Gabbay #define KFD_PRIV_H_INCLUDED
254a488a7aSOded Gabbay 
264a488a7aSOded Gabbay #include <linux/hashtable.h>
274a488a7aSOded Gabbay #include <linux/mmu_notifier.h>
284a488a7aSOded Gabbay #include <linux/mutex.h>
294a488a7aSOded Gabbay #include <linux/types.h>
304a488a7aSOded Gabbay #include <linux/atomic.h>
314a488a7aSOded Gabbay #include <linux/workqueue.h>
324a488a7aSOded Gabbay #include <linux/spinlock.h>
3319f6d2a6SOded Gabbay #include <linux/kfd_ioctl.h>
34482f0777SFelix Kuehling #include <linux/idr.h>
3504ad47bdSAndres Rodriguez #include <linux/kfifo.h>
36851a645eSFelix Kuehling #include <linux/seq_file.h>
375ce10687SFelix Kuehling #include <linux/kref.h>
384a488a7aSOded Gabbay #include <kgd_kfd_interface.h>
394a488a7aSOded Gabbay 
40e596b903SYong Zhao #include "amd_shared.h"
41e596b903SYong Zhao 
425b5c4e40SEvgeny Pinchuk #define KFD_SYSFS_FILE_MODE 0444
435b5c4e40SEvgeny Pinchuk 
44a1235e10SOded Gabbay #define KFD_MMAP_DOORBELL_MASK 0x8000000000000ull
45a1235e10SOded Gabbay #define KFD_MMAP_EVENTS_MASK 0x4000000000000ull
46a1235e10SOded Gabbay #define KFD_MMAP_RESERVED_MEM_MASK 0x2000000000000ull
47f3a39818SAndrew Lewycky 
48ed6e6a34SBen Goz /*
49ed6e6a34SBen Goz  * When working with cp scheduler we should assign the HIQ manually or via
50ed6e6a34SBen Goz  * the radeon driver to a fixed hqd slot, here are the fixed HIQ hqd slot
51ed6e6a34SBen Goz  * definitions for Kaveri. In Kaveri only the first ME queues participates
52ed6e6a34SBen Goz  * in the cp scheduling taking that in mind we set the HIQ slot in the
53ed6e6a34SBen Goz  * second ME.
54ed6e6a34SBen Goz  */
55ed6e6a34SBen Goz #define KFD_CIK_HIQ_PIPE 4
56ed6e6a34SBen Goz #define KFD_CIK_HIQ_QUEUE 0
57ed6e6a34SBen Goz 
585b5c4e40SEvgeny Pinchuk /* GPU ID hash width in bits */
595b5c4e40SEvgeny Pinchuk #define KFD_GPU_ID_HASH_WIDTH 16
605b5c4e40SEvgeny Pinchuk 
615b5c4e40SEvgeny Pinchuk /* Macro for allocating structures */
625b5c4e40SEvgeny Pinchuk #define kfd_alloc_struct(ptr_to_struct)	\
635b5c4e40SEvgeny Pinchuk 	((typeof(ptr_to_struct)) kzalloc(sizeof(*ptr_to_struct), GFP_KERNEL))
645b5c4e40SEvgeny Pinchuk 
6519f6d2a6SOded Gabbay #define KFD_MAX_NUM_OF_PROCESSES 512
66b8cbab04SOded Gabbay #define KFD_MAX_NUM_OF_QUEUES_PER_PROCESS 1024
6719f6d2a6SOded Gabbay 
6819f6d2a6SOded Gabbay /*
69373d7080SFelix Kuehling  * Size of the per-process TBA+TMA buffer: 2 pages
70373d7080SFelix Kuehling  *
71373d7080SFelix Kuehling  * The first page is the TBA used for the CWSR ISA code. The second
72373d7080SFelix Kuehling  * page is used as TMA for daisy changing a user-mode trap handler.
73373d7080SFelix Kuehling  */
74373d7080SFelix Kuehling #define KFD_CWSR_TBA_TMA_SIZE (PAGE_SIZE * 2)
75373d7080SFelix Kuehling #define KFD_CWSR_TMA_OFFSET PAGE_SIZE
76373d7080SFelix Kuehling 
77373d7080SFelix Kuehling /*
78b8cbab04SOded Gabbay  * Kernel module parameter to specify maximum number of supported queues per
79b8cbab04SOded Gabbay  * device
8019f6d2a6SOded Gabbay  */
81b8cbab04SOded Gabbay extern int max_num_of_queues_per_device;
8219f6d2a6SOded Gabbay 
83b8cbab04SOded Gabbay #define KFD_MAX_NUM_OF_QUEUES_PER_DEVICE_DEFAULT 4096
84b8cbab04SOded Gabbay #define KFD_MAX_NUM_OF_QUEUES_PER_DEVICE		\
85b8cbab04SOded Gabbay 	(KFD_MAX_NUM_OF_PROCESSES *			\
86b8cbab04SOded Gabbay 			KFD_MAX_NUM_OF_QUEUES_PER_PROCESS)
8719f6d2a6SOded Gabbay 
88ed6e6a34SBen Goz #define KFD_KERNEL_QUEUE_SIZE 2048
89ed6e6a34SBen Goz 
9031c21fecSBen Goz /* Kernel module parameter to specify the scheduling policy */
9131c21fecSBen Goz extern int sched_policy;
9231c21fecSBen Goz 
93a99c6d4fSFelix Kuehling /*
94a99c6d4fSFelix Kuehling  * Kernel module parameter to specify the maximum process
95a99c6d4fSFelix Kuehling  * number per HW scheduler
96a99c6d4fSFelix Kuehling  */
97a99c6d4fSFelix Kuehling extern int hws_max_conc_proc;
98a99c6d4fSFelix Kuehling 
99373d7080SFelix Kuehling extern int cwsr_enable;
100373d7080SFelix Kuehling 
10181663016SOded Gabbay /*
10281663016SOded Gabbay  * Kernel module parameter to specify whether to send sigterm to HSA process on
10381663016SOded Gabbay  * unhandled exception
10481663016SOded Gabbay  */
10581663016SOded Gabbay extern int send_sigterm;
10681663016SOded Gabbay 
107ebcfd1e2SFelix Kuehling /*
108374200b1SFelix Kuehling  * This kernel module is used to simulate large bar machine on non-large bar
109374200b1SFelix Kuehling  * enabled machines.
110374200b1SFelix Kuehling  */
111374200b1SFelix Kuehling extern int debug_largebar;
112374200b1SFelix Kuehling 
113374200b1SFelix Kuehling /*
114ebcfd1e2SFelix Kuehling  * Ignore CRAT table during KFD initialization, can be used to work around
115ebcfd1e2SFelix Kuehling  * broken CRAT tables on some AMD systems
116ebcfd1e2SFelix Kuehling  */
117ebcfd1e2SFelix Kuehling extern int ignore_crat;
118ebcfd1e2SFelix Kuehling 
11931c21fecSBen Goz /**
12031c21fecSBen Goz  * enum kfd_sched_policy
12131c21fecSBen Goz  *
12231c21fecSBen Goz  * @KFD_SCHED_POLICY_HWS: H/W scheduling policy known as command processor (cp)
12331c21fecSBen Goz  * scheduling. In this scheduling mode we're using the firmware code to
12431c21fecSBen Goz  * schedule the user mode queues and kernel queues such as HIQ and DIQ.
12531c21fecSBen Goz  * the HIQ queue is used as a special queue that dispatches the configuration
12631c21fecSBen Goz  * to the cp and the user mode queues list that are currently running.
12731c21fecSBen Goz  * the DIQ queue is a debugging queue that dispatches debugging commands to the
12831c21fecSBen Goz  * firmware.
12931c21fecSBen Goz  * in this scheduling mode user mode queues over subscription feature is
13031c21fecSBen Goz  * enabled.
13131c21fecSBen Goz  *
13231c21fecSBen Goz  * @KFD_SCHED_POLICY_HWS_NO_OVERSUBSCRIPTION: The same as above but the over
13331c21fecSBen Goz  * subscription feature disabled.
13431c21fecSBen Goz  *
13531c21fecSBen Goz  * @KFD_SCHED_POLICY_NO_HWS: no H/W scheduling policy is a mode which directly
13631c21fecSBen Goz  * set the command processor registers and sets the queues "manually". This
13731c21fecSBen Goz  * mode is used *ONLY* for debugging proposes.
13831c21fecSBen Goz  *
13931c21fecSBen Goz  */
14031c21fecSBen Goz enum kfd_sched_policy {
14131c21fecSBen Goz 	KFD_SCHED_POLICY_HWS = 0,
14231c21fecSBen Goz 	KFD_SCHED_POLICY_HWS_NO_OVERSUBSCRIPTION,
14331c21fecSBen Goz 	KFD_SCHED_POLICY_NO_HWS
14431c21fecSBen Goz };
14531c21fecSBen Goz 
146ed6e6a34SBen Goz enum cache_policy {
147ed6e6a34SBen Goz 	cache_policy_coherent,
148ed6e6a34SBen Goz 	cache_policy_noncoherent
149ed6e6a34SBen Goz };
150ed6e6a34SBen Goz 
151f3a39818SAndrew Lewycky struct kfd_event_interrupt_class {
152f3a39818SAndrew Lewycky 	bool (*interrupt_isr)(struct kfd_dev *dev,
153f3a39818SAndrew Lewycky 				const uint32_t *ih_ring_entry);
154f3a39818SAndrew Lewycky 	void (*interrupt_wq)(struct kfd_dev *dev,
155f3a39818SAndrew Lewycky 				const uint32_t *ih_ring_entry);
156f3a39818SAndrew Lewycky };
157f3a39818SAndrew Lewycky 
1584a488a7aSOded Gabbay struct kfd_device_info {
159e596b903SYong Zhao 	enum amd_asic_type asic_family;
160f3a39818SAndrew Lewycky 	const struct kfd_event_interrupt_class *event_interrupt_class;
1614a488a7aSOded Gabbay 	unsigned int max_pasid_bits;
162992839adSYair Shachar 	unsigned int max_no_of_hqd;
1634a488a7aSOded Gabbay 	size_t ih_ring_entry_size;
164f7c826adSAlexey Skidanov 	uint8_t num_of_watch_points;
16519f6d2a6SOded Gabbay 	uint16_t mqd_size_aligned;
166373d7080SFelix Kuehling 	bool supports_cwsr;
16764d1c3a4SFelix Kuehling 	bool needs_iommu_device;
1683ee2d00cSFelix Kuehling 	bool needs_pci_atomics;
1694a488a7aSOded Gabbay };
1704a488a7aSOded Gabbay 
17136b5c08fSOded Gabbay struct kfd_mem_obj {
17236b5c08fSOded Gabbay 	uint32_t range_start;
17336b5c08fSOded Gabbay 	uint32_t range_end;
17436b5c08fSOded Gabbay 	uint64_t gpu_addr;
17536b5c08fSOded Gabbay 	uint32_t *cpu_ptr;
17636b5c08fSOded Gabbay };
17736b5c08fSOded Gabbay 
17844008d7aSYong Zhao struct kfd_vmid_info {
17944008d7aSYong Zhao 	uint32_t first_vmid_kfd;
18044008d7aSYong Zhao 	uint32_t last_vmid_kfd;
18144008d7aSYong Zhao 	uint32_t vmid_num_kfd;
18244008d7aSYong Zhao };
18344008d7aSYong Zhao 
1844a488a7aSOded Gabbay struct kfd_dev {
1854a488a7aSOded Gabbay 	struct kgd_dev *kgd;
1864a488a7aSOded Gabbay 
1874a488a7aSOded Gabbay 	const struct kfd_device_info *device_info;
1884a488a7aSOded Gabbay 	struct pci_dev *pdev;
1894a488a7aSOded Gabbay 
1904a488a7aSOded Gabbay 	unsigned int id;		/* topology stub index */
1914a488a7aSOded Gabbay 
19219f6d2a6SOded Gabbay 	phys_addr_t doorbell_base;	/* Start of actual doorbells used by
19319f6d2a6SOded Gabbay 					 * KFD. It is aligned for mapping
19419f6d2a6SOded Gabbay 					 * into user mode
19519f6d2a6SOded Gabbay 					 */
19619f6d2a6SOded Gabbay 	size_t doorbell_id_offset;	/* Doorbell offset (from KFD doorbell
19719f6d2a6SOded Gabbay 					 * to HW doorbell, GFX reserved some
19819f6d2a6SOded Gabbay 					 * at the start)
19919f6d2a6SOded Gabbay 					 */
20019f6d2a6SOded Gabbay 	u32 __iomem *doorbell_kernel_ptr; /* This is a pointer for a doorbells
20119f6d2a6SOded Gabbay 					   * page used by kernel queue
20219f6d2a6SOded Gabbay 					   */
20319f6d2a6SOded Gabbay 
2044a488a7aSOded Gabbay 	struct kgd2kfd_shared_resources shared_resources;
20544008d7aSYong Zhao 	struct kfd_vmid_info vm_info;
2064a488a7aSOded Gabbay 
207cea405b1SXihan Zhang 	const struct kfd2kgd_calls *kfd2kgd;
208cea405b1SXihan Zhang 	struct mutex doorbell_mutex;
209f761d8bdSJoe Perches 	DECLARE_BITMAP(doorbell_available_index,
210f761d8bdSJoe Perches 			KFD_MAX_NUM_OF_QUEUES_PER_PROCESS);
211cea405b1SXihan Zhang 
21236b5c08fSOded Gabbay 	void *gtt_mem;
21336b5c08fSOded Gabbay 	uint64_t gtt_start_gpu_addr;
21436b5c08fSOded Gabbay 	void *gtt_start_cpu_ptr;
21536b5c08fSOded Gabbay 	void *gtt_sa_bitmap;
21636b5c08fSOded Gabbay 	struct mutex gtt_sa_lock;
21736b5c08fSOded Gabbay 	unsigned int gtt_sa_chunk_size;
21836b5c08fSOded Gabbay 	unsigned int gtt_sa_num_of_chunks;
21936b5c08fSOded Gabbay 
2202249d558SAndrew Lewycky 	/* Interrupts */
22104ad47bdSAndres Rodriguez 	struct kfifo ih_fifo;
22248e876a2SAndres Rodriguez 	struct workqueue_struct *ih_wq;
2232249d558SAndrew Lewycky 	struct work_struct interrupt_work;
2242249d558SAndrew Lewycky 	spinlock_t interrupt_lock;
2252249d558SAndrew Lewycky 
226ed6e6a34SBen Goz 	/* QCM Device instance */
227ed6e6a34SBen Goz 	struct device_queue_manager *dqm;
2284a488a7aSOded Gabbay 
229ed6e6a34SBen Goz 	bool init_complete;
2302249d558SAndrew Lewycky 	/*
2312249d558SAndrew Lewycky 	 * Interrupts of interest to KFD are copied
2322249d558SAndrew Lewycky 	 * from the HW ring into a SW ring.
2332249d558SAndrew Lewycky 	 */
2342249d558SAndrew Lewycky 	bool interrupts_active;
235fbeb661bSYair Shachar 
236fbeb661bSYair Shachar 	/* Debug manager */
237fbeb661bSYair Shachar 	struct kfd_dbgmgr           *dbgmgr;
238373d7080SFelix Kuehling 
239a99c6d4fSFelix Kuehling 	/* Maximum process number mapped to HW scheduler */
240a99c6d4fSFelix Kuehling 	unsigned int max_proc_per_quantum;
241a99c6d4fSFelix Kuehling 
242373d7080SFelix Kuehling 	/* CWSR */
243373d7080SFelix Kuehling 	bool cwsr_enabled;
244373d7080SFelix Kuehling 	const void *cwsr_isa;
245373d7080SFelix Kuehling 	unsigned int cwsr_isa_size;
2464a488a7aSOded Gabbay };
2474a488a7aSOded Gabbay 
2484a488a7aSOded Gabbay /* KGD2KFD callbacks */
2494a488a7aSOded Gabbay void kgd2kfd_exit(void);
250cea405b1SXihan Zhang struct kfd_dev *kgd2kfd_probe(struct kgd_dev *kgd,
251cea405b1SXihan Zhang 			struct pci_dev *pdev, const struct kfd2kgd_calls *f2g);
2524a488a7aSOded Gabbay bool kgd2kfd_device_init(struct kfd_dev *kfd,
2534a488a7aSOded Gabbay 			const struct kgd2kfd_shared_resources *gpu_resources);
2544a488a7aSOded Gabbay void kgd2kfd_device_exit(struct kfd_dev *kfd);
2554a488a7aSOded Gabbay 
25619f6d2a6SOded Gabbay enum kfd_mempool {
25719f6d2a6SOded Gabbay 	KFD_MEMPOOL_SYSTEM_CACHEABLE = 1,
25819f6d2a6SOded Gabbay 	KFD_MEMPOOL_SYSTEM_WRITECOMBINE = 2,
25919f6d2a6SOded Gabbay 	KFD_MEMPOOL_FRAMEBUFFER = 3,
26019f6d2a6SOded Gabbay };
26119f6d2a6SOded Gabbay 
2624a488a7aSOded Gabbay /* Character device interface */
2634a488a7aSOded Gabbay int kfd_chardev_init(void);
2644a488a7aSOded Gabbay void kfd_chardev_exit(void);
2654a488a7aSOded Gabbay struct device *kfd_chardev(void);
2664a488a7aSOded Gabbay 
267241f24f8SBen Goz /**
2687da2bcf8SYong Zhao  * enum kfd_unmap_queues_filter
269241f24f8SBen Goz  *
2707da2bcf8SYong Zhao  * @KFD_UNMAP_QUEUES_FILTER_SINGLE_QUEUE: Preempts single queue.
271241f24f8SBen Goz  *
2727da2bcf8SYong Zhao  * @KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES: Preempts all queues in the
273241f24f8SBen Goz  *						running queues list.
274241f24f8SBen Goz  *
2757da2bcf8SYong Zhao  * @KFD_UNMAP_QUEUES_FILTER_BY_PASID: Preempts queues that belongs to
276241f24f8SBen Goz  *						specific process.
277241f24f8SBen Goz  *
278241f24f8SBen Goz  */
2797da2bcf8SYong Zhao enum kfd_unmap_queues_filter {
2807da2bcf8SYong Zhao 	KFD_UNMAP_QUEUES_FILTER_SINGLE_QUEUE,
2817da2bcf8SYong Zhao 	KFD_UNMAP_QUEUES_FILTER_ALL_QUEUES,
2827da2bcf8SYong Zhao 	KFD_UNMAP_QUEUES_FILTER_DYNAMIC_QUEUES,
2837da2bcf8SYong Zhao 	KFD_UNMAP_QUEUES_FILTER_BY_PASID
284241f24f8SBen Goz };
28519f6d2a6SOded Gabbay 
286ed8aab45SBen Goz /**
287ed8aab45SBen Goz  * enum kfd_queue_type
288ed8aab45SBen Goz  *
289ed8aab45SBen Goz  * @KFD_QUEUE_TYPE_COMPUTE: Regular user mode queue type.
290ed8aab45SBen Goz  *
291ed8aab45SBen Goz  * @KFD_QUEUE_TYPE_SDMA: Sdma user mode queue type.
292ed8aab45SBen Goz  *
293ed8aab45SBen Goz  * @KFD_QUEUE_TYPE_HIQ: HIQ queue type.
294ed8aab45SBen Goz  *
295ed8aab45SBen Goz  * @KFD_QUEUE_TYPE_DIQ: DIQ queue type.
296ed8aab45SBen Goz  */
297ed8aab45SBen Goz enum kfd_queue_type  {
298ed8aab45SBen Goz 	KFD_QUEUE_TYPE_COMPUTE,
299ed8aab45SBen Goz 	KFD_QUEUE_TYPE_SDMA,
300ed8aab45SBen Goz 	KFD_QUEUE_TYPE_HIQ,
301ed8aab45SBen Goz 	KFD_QUEUE_TYPE_DIQ
302ed8aab45SBen Goz };
303ed8aab45SBen Goz 
3046e99df57SBen Goz enum kfd_queue_format {
3056e99df57SBen Goz 	KFD_QUEUE_FORMAT_PM4,
3066e99df57SBen Goz 	KFD_QUEUE_FORMAT_AQL
3076e99df57SBen Goz };
3086e99df57SBen Goz 
309ed8aab45SBen Goz /**
310ed8aab45SBen Goz  * struct queue_properties
311ed8aab45SBen Goz  *
312ed8aab45SBen Goz  * @type: The queue type.
313ed8aab45SBen Goz  *
314ed8aab45SBen Goz  * @queue_id: Queue identifier.
315ed8aab45SBen Goz  *
316ed8aab45SBen Goz  * @queue_address: Queue ring buffer address.
317ed8aab45SBen Goz  *
318ed8aab45SBen Goz  * @queue_size: Queue ring buffer size.
319ed8aab45SBen Goz  *
320ed8aab45SBen Goz  * @priority: Defines the queue priority relative to other queues in the
321ed8aab45SBen Goz  * process.
322ed8aab45SBen Goz  * This is just an indication and HW scheduling may override the priority as
323ed8aab45SBen Goz  * necessary while keeping the relative prioritization.
324ed8aab45SBen Goz  * the priority granularity is from 0 to f which f is the highest priority.
325ed8aab45SBen Goz  * currently all queues are initialized with the highest priority.
326ed8aab45SBen Goz  *
327ed8aab45SBen Goz  * @queue_percent: This field is partially implemented and currently a zero in
328ed8aab45SBen Goz  * this field defines that the queue is non active.
329ed8aab45SBen Goz  *
330ed8aab45SBen Goz  * @read_ptr: User space address which points to the number of dwords the
331ed8aab45SBen Goz  * cp read from the ring buffer. This field updates automatically by the H/W.
332ed8aab45SBen Goz  *
333ed8aab45SBen Goz  * @write_ptr: Defines the number of dwords written to the ring buffer.
334ed8aab45SBen Goz  *
335ed8aab45SBen Goz  * @doorbell_ptr: This field aim is to notify the H/W of new packet written to
3368eabaf54SKent Russell  * the queue ring buffer. This field should be similar to write_ptr and the
3378eabaf54SKent Russell  * user should update this field after he updated the write_ptr.
338ed8aab45SBen Goz  *
339ed8aab45SBen Goz  * @doorbell_off: The doorbell offset in the doorbell pci-bar.
340ed8aab45SBen Goz  *
3418eabaf54SKent Russell  * @is_interop: Defines if this is a interop queue. Interop queue means that
3428eabaf54SKent Russell  * the queue can access both graphics and compute resources.
343ed8aab45SBen Goz  *
34426103436SFelix Kuehling  * @is_evicted: Defines if the queue is evicted. Only active queues
34526103436SFelix Kuehling  * are evicted, rendering them inactive.
34626103436SFelix Kuehling  *
34726103436SFelix Kuehling  * @is_active: Defines if the queue is active or not. @is_active and
34826103436SFelix Kuehling  * @is_evicted are protected by the DQM lock.
349ed8aab45SBen Goz  *
350ed8aab45SBen Goz  * @vmid: If the scheduling mode is no cp scheduling the field defines the vmid
351ed8aab45SBen Goz  * of the queue.
352ed8aab45SBen Goz  *
353ed8aab45SBen Goz  * This structure represents the queue properties for each queue no matter if
354ed8aab45SBen Goz  * it's user mode or kernel mode queue.
355ed8aab45SBen Goz  *
356ed8aab45SBen Goz  */
357ed8aab45SBen Goz struct queue_properties {
358ed8aab45SBen Goz 	enum kfd_queue_type type;
3596e99df57SBen Goz 	enum kfd_queue_format format;
360ed8aab45SBen Goz 	unsigned int queue_id;
361ed8aab45SBen Goz 	uint64_t queue_address;
362ed8aab45SBen Goz 	uint64_t  queue_size;
363ed8aab45SBen Goz 	uint32_t priority;
364ed8aab45SBen Goz 	uint32_t queue_percent;
365ed8aab45SBen Goz 	uint32_t *read_ptr;
366ed8aab45SBen Goz 	uint32_t *write_ptr;
3675cd78de5SOded Gabbay 	uint32_t __iomem *doorbell_ptr;
368ed8aab45SBen Goz 	uint32_t doorbell_off;
369ed8aab45SBen Goz 	bool is_interop;
37026103436SFelix Kuehling 	bool is_evicted;
371ed8aab45SBen Goz 	bool is_active;
372ed8aab45SBen Goz 	/* Not relevant for user mode queues in cp scheduling */
373ed8aab45SBen Goz 	unsigned int vmid;
37477669eb8SBen Goz 	/* Relevant only for sdma queues*/
37577669eb8SBen Goz 	uint32_t sdma_engine_id;
37677669eb8SBen Goz 	uint32_t sdma_queue_id;
37777669eb8SBen Goz 	uint32_t sdma_vm_addr;
378ff3d04a1SBen Goz 	/* Relevant only for VI */
379ff3d04a1SBen Goz 	uint64_t eop_ring_buffer_address;
380ff3d04a1SBen Goz 	uint32_t eop_ring_buffer_size;
381ff3d04a1SBen Goz 	uint64_t ctx_save_restore_area_address;
382ff3d04a1SBen Goz 	uint32_t ctx_save_restore_area_size;
383373d7080SFelix Kuehling 	uint32_t ctl_stack_size;
384373d7080SFelix Kuehling 	uint64_t tba_addr;
385373d7080SFelix Kuehling 	uint64_t tma_addr;
386ed8aab45SBen Goz };
387ed8aab45SBen Goz 
388ed8aab45SBen Goz /**
389ed8aab45SBen Goz  * struct queue
390ed8aab45SBen Goz  *
391ed8aab45SBen Goz  * @list: Queue linked list.
392ed8aab45SBen Goz  *
393ed8aab45SBen Goz  * @mqd: The queue MQD.
394ed8aab45SBen Goz  *
395ed8aab45SBen Goz  * @mqd_mem_obj: The MQD local gpu memory object.
396ed8aab45SBen Goz  *
397ed8aab45SBen Goz  * @gart_mqd_addr: The MQD gart mc address.
398ed8aab45SBen Goz  *
399ed8aab45SBen Goz  * @properties: The queue properties.
400ed8aab45SBen Goz  *
401ed8aab45SBen Goz  * @mec: Used only in no cp scheduling mode and identifies to micro engine id
402ed8aab45SBen Goz  *	 that the queue should be execute on.
403ed8aab45SBen Goz  *
4048eabaf54SKent Russell  * @pipe: Used only in no cp scheduling mode and identifies the queue's pipe
4058eabaf54SKent Russell  *	  id.
406ed8aab45SBen Goz  *
407ed8aab45SBen Goz  * @queue: Used only in no cp scheduliong mode and identifies the queue's slot.
408ed8aab45SBen Goz  *
409ed8aab45SBen Goz  * @process: The kfd process that created this queue.
410ed8aab45SBen Goz  *
411ed8aab45SBen Goz  * @device: The kfd device that created this queue.
412ed8aab45SBen Goz  *
413ed8aab45SBen Goz  * This structure represents user mode compute queues.
414ed8aab45SBen Goz  * It contains all the necessary data to handle such queues.
415ed8aab45SBen Goz  *
416ed8aab45SBen Goz  */
417ed8aab45SBen Goz 
418ed8aab45SBen Goz struct queue {
419ed8aab45SBen Goz 	struct list_head list;
420ed8aab45SBen Goz 	void *mqd;
421ed8aab45SBen Goz 	struct kfd_mem_obj *mqd_mem_obj;
422ed8aab45SBen Goz 	uint64_t gart_mqd_addr;
423ed8aab45SBen Goz 	struct queue_properties properties;
424ed8aab45SBen Goz 
425ed8aab45SBen Goz 	uint32_t mec;
426ed8aab45SBen Goz 	uint32_t pipe;
427ed8aab45SBen Goz 	uint32_t queue;
428ed8aab45SBen Goz 
42977669eb8SBen Goz 	unsigned int sdma_id;
43077669eb8SBen Goz 
431ed8aab45SBen Goz 	struct kfd_process	*process;
432ed8aab45SBen Goz 	struct kfd_dev		*device;
433ed8aab45SBen Goz };
434ed8aab45SBen Goz 
4356e99df57SBen Goz /*
4366e99df57SBen Goz  * Please read the kfd_mqd_manager.h description.
4376e99df57SBen Goz  */
4386e99df57SBen Goz enum KFD_MQD_TYPE {
43985d258f9SBen Goz 	KFD_MQD_TYPE_COMPUTE = 0,	/* for no cp scheduling */
44085d258f9SBen Goz 	KFD_MQD_TYPE_HIQ,		/* for hiq */
44185d258f9SBen Goz 	KFD_MQD_TYPE_CP,		/* for cp queues and diq */
44285d258f9SBen Goz 	KFD_MQD_TYPE_SDMA,		/* for sdma queues */
4436e99df57SBen Goz 	KFD_MQD_TYPE_MAX
4446e99df57SBen Goz };
4456e99df57SBen Goz 
446241f24f8SBen Goz struct scheduling_resources {
447241f24f8SBen Goz 	unsigned int vmid_mask;
448241f24f8SBen Goz 	enum kfd_queue_type type;
449241f24f8SBen Goz 	uint64_t queue_mask;
450241f24f8SBen Goz 	uint64_t gws_mask;
451241f24f8SBen Goz 	uint32_t oac_mask;
452241f24f8SBen Goz 	uint32_t gds_heap_base;
453241f24f8SBen Goz 	uint32_t gds_heap_size;
454241f24f8SBen Goz };
455241f24f8SBen Goz 
456241f24f8SBen Goz struct process_queue_manager {
457241f24f8SBen Goz 	/* data */
458241f24f8SBen Goz 	struct kfd_process	*process;
459241f24f8SBen Goz 	struct list_head	queues;
460241f24f8SBen Goz 	unsigned long		*queue_slot_bitmap;
461241f24f8SBen Goz };
462241f24f8SBen Goz 
463241f24f8SBen Goz struct qcm_process_device {
464241f24f8SBen Goz 	/* The Device Queue Manager that owns this data */
465241f24f8SBen Goz 	struct device_queue_manager *dqm;
466241f24f8SBen Goz 	struct process_queue_manager *pqm;
467241f24f8SBen Goz 	/* Queues list */
468241f24f8SBen Goz 	struct list_head queues_list;
469241f24f8SBen Goz 	struct list_head priv_queue_list;
470241f24f8SBen Goz 
471241f24f8SBen Goz 	unsigned int queue_count;
472241f24f8SBen Goz 	unsigned int vmid;
473241f24f8SBen Goz 	bool is_debug;
47426103436SFelix Kuehling 	unsigned int evicted; /* eviction counter, 0=active */
4759fd3f1bfSFelix Kuehling 
4769fd3f1bfSFelix Kuehling 	/* This flag tells if we should reset all wavefronts on
4779fd3f1bfSFelix Kuehling 	 * process termination
4789fd3f1bfSFelix Kuehling 	 */
4799fd3f1bfSFelix Kuehling 	bool reset_wavefronts;
4809fd3f1bfSFelix Kuehling 
481241f24f8SBen Goz 	/*
482241f24f8SBen Goz 	 * All the memory management data should be here too
483241f24f8SBen Goz 	 */
484241f24f8SBen Goz 	uint64_t gds_context_area;
485241f24f8SBen Goz 	uint32_t sh_mem_config;
486241f24f8SBen Goz 	uint32_t sh_mem_bases;
487241f24f8SBen Goz 	uint32_t sh_mem_ape1_base;
488241f24f8SBen Goz 	uint32_t sh_mem_ape1_limit;
489241f24f8SBen Goz 	uint32_t page_table_base;
490241f24f8SBen Goz 	uint32_t gds_size;
491241f24f8SBen Goz 	uint32_t num_gws;
492241f24f8SBen Goz 	uint32_t num_oac;
4936a1c9510SMoses Reuben 	uint32_t sh_hidden_private_base;
494373d7080SFelix Kuehling 
495373d7080SFelix Kuehling 	/* CWSR memory */
496373d7080SFelix Kuehling 	void *cwsr_kaddr;
497d01994c2SFelix Kuehling 	uint64_t cwsr_base;
498373d7080SFelix Kuehling 	uint64_t tba_addr;
499373d7080SFelix Kuehling 	uint64_t tma_addr;
500d01994c2SFelix Kuehling 
501d01994c2SFelix Kuehling 	/* IB memory */
502d01994c2SFelix Kuehling 	uint64_t ib_base;
503552764b6SFelix Kuehling 	void *ib_kaddr;
504241f24f8SBen Goz };
505241f24f8SBen Goz 
50626103436SFelix Kuehling /* KFD Memory Eviction */
50726103436SFelix Kuehling 
50826103436SFelix Kuehling /* Approx. wait time before attempting to restore evicted BOs */
50926103436SFelix Kuehling #define PROCESS_RESTORE_TIME_MS 100
51026103436SFelix Kuehling /* Approx. back off time if restore fails due to lack of memory */
51126103436SFelix Kuehling #define PROCESS_BACK_OFF_TIME_MS 100
51226103436SFelix Kuehling /* Approx. time before evicting the process again */
51326103436SFelix Kuehling #define PROCESS_ACTIVE_TIME_MS 10
51426103436SFelix Kuehling 
51526103436SFelix Kuehling int kgd2kfd_schedule_evict_and_restore_process(struct mm_struct *mm,
51626103436SFelix Kuehling 					       struct dma_fence *fence);
517733fa1f7SYong Zhao 
5185ec7e028SFelix Kuehling /* 8 byte handle containing GPU ID in the most significant 4 bytes and
5195ec7e028SFelix Kuehling  * idr_handle in the least significant 4 bytes
5205ec7e028SFelix Kuehling  */
5215ec7e028SFelix Kuehling #define MAKE_HANDLE(gpu_id, idr_handle) \
5225ec7e028SFelix Kuehling 	(((uint64_t)(gpu_id) << 32) + idr_handle)
5235ec7e028SFelix Kuehling #define GET_GPU_ID(handle) (handle >> 32)
5245ec7e028SFelix Kuehling #define GET_IDR_HANDLE(handle) (handle & 0xFFFFFFFF)
5255ec7e028SFelix Kuehling 
526733fa1f7SYong Zhao enum kfd_pdd_bound {
527733fa1f7SYong Zhao 	PDD_UNBOUND = 0,
528733fa1f7SYong Zhao 	PDD_BOUND,
529733fa1f7SYong Zhao 	PDD_BOUND_SUSPENDED,
530733fa1f7SYong Zhao };
531733fa1f7SYong Zhao 
53219f6d2a6SOded Gabbay /* Data that is per-process-per device. */
53319f6d2a6SOded Gabbay struct kfd_process_device {
53419f6d2a6SOded Gabbay 	/*
53519f6d2a6SOded Gabbay 	 * List of all per-device data for a process.
53619f6d2a6SOded Gabbay 	 * Starts from kfd_process.per_device_data.
53719f6d2a6SOded Gabbay 	 */
53819f6d2a6SOded Gabbay 	struct list_head per_device_list;
53919f6d2a6SOded Gabbay 
54019f6d2a6SOded Gabbay 	/* The device that owns this data. */
54119f6d2a6SOded Gabbay 	struct kfd_dev *dev;
54219f6d2a6SOded Gabbay 
5439fd3f1bfSFelix Kuehling 	/* The process that owns this kfd_process_device. */
5449fd3f1bfSFelix Kuehling 	struct kfd_process *process;
54519f6d2a6SOded Gabbay 
54645102048SBen Goz 	/* per-process-per device QCM data structure */
54745102048SBen Goz 	struct qcm_process_device qpd;
54845102048SBen Goz 
54919f6d2a6SOded Gabbay 	/*Apertures*/
55019f6d2a6SOded Gabbay 	uint64_t lds_base;
55119f6d2a6SOded Gabbay 	uint64_t lds_limit;
55219f6d2a6SOded Gabbay 	uint64_t gpuvm_base;
55319f6d2a6SOded Gabbay 	uint64_t gpuvm_limit;
55419f6d2a6SOded Gabbay 	uint64_t scratch_base;
55519f6d2a6SOded Gabbay 	uint64_t scratch_limit;
55619f6d2a6SOded Gabbay 
557403575c4SFelix Kuehling 	/* VM context for GPUVM allocations */
558b84394e2SFelix Kuehling 	struct file *drm_file;
559403575c4SFelix Kuehling 	void *vm;
560403575c4SFelix Kuehling 
56152b29d73SFelix Kuehling 	/* GPUVM allocations storage */
56252b29d73SFelix Kuehling 	struct idr alloc_idr;
56352b29d73SFelix Kuehling 
5649fd3f1bfSFelix Kuehling 	/* Flag used to tell the pdd has dequeued from the dqm.
5659fd3f1bfSFelix Kuehling 	 * This is used to prevent dev->dqm->ops.process_termination() from
5669fd3f1bfSFelix Kuehling 	 * being called twice when it is already called in IOMMU callback
5679fd3f1bfSFelix Kuehling 	 * function.
568a82918f1SBen Goz 	 */
5699fd3f1bfSFelix Kuehling 	bool already_dequeued;
57064d1c3a4SFelix Kuehling 
57164d1c3a4SFelix Kuehling 	/* Is this process/pasid bound to this device? (amd_iommu_bind_pasid) */
57264d1c3a4SFelix Kuehling 	enum kfd_pdd_bound bound;
57319f6d2a6SOded Gabbay };
57419f6d2a6SOded Gabbay 
57552a5fdceSAlexey Skidanov #define qpd_to_pdd(x) container_of(x, struct kfd_process_device, qpd)
57652a5fdceSAlexey Skidanov 
5774a488a7aSOded Gabbay /* Process data */
5784a488a7aSOded Gabbay struct kfd_process {
57919f6d2a6SOded Gabbay 	/*
58019f6d2a6SOded Gabbay 	 * kfd_process are stored in an mm_struct*->kfd_process*
58119f6d2a6SOded Gabbay 	 * hash table (kfd_processes in kfd_process.c)
58219f6d2a6SOded Gabbay 	 */
58319f6d2a6SOded Gabbay 	struct hlist_node kfd_processes;
58419f6d2a6SOded Gabbay 
5859b56bb11SFelix Kuehling 	/*
5869b56bb11SFelix Kuehling 	 * Opaque pointer to mm_struct. We don't hold a reference to
5879b56bb11SFelix Kuehling 	 * it so it should never be dereferenced from here. This is
5889b56bb11SFelix Kuehling 	 * only used for looking up processes by their mm.
5899b56bb11SFelix Kuehling 	 */
5909b56bb11SFelix Kuehling 	void *mm;
59119f6d2a6SOded Gabbay 
5925ce10687SFelix Kuehling 	struct kref ref;
5935ce10687SFelix Kuehling 	struct work_struct release_work;
5945ce10687SFelix Kuehling 
59519f6d2a6SOded Gabbay 	struct mutex mutex;
59619f6d2a6SOded Gabbay 
59719f6d2a6SOded Gabbay 	/*
59819f6d2a6SOded Gabbay 	 * In any process, the thread that started main() is the lead
59919f6d2a6SOded Gabbay 	 * thread and outlives the rest.
60019f6d2a6SOded Gabbay 	 * It is here because amd_iommu_bind_pasid wants a task_struct.
601894a8293SFelix Kuehling 	 * It can also be used for safely getting a reference to the
602894a8293SFelix Kuehling 	 * mm_struct of the process.
60319f6d2a6SOded Gabbay 	 */
60419f6d2a6SOded Gabbay 	struct task_struct *lead_thread;
60519f6d2a6SOded Gabbay 
60619f6d2a6SOded Gabbay 	/* We want to receive a notification when the mm_struct is destroyed */
60719f6d2a6SOded Gabbay 	struct mmu_notifier mmu_notifier;
60819f6d2a6SOded Gabbay 
60919f6d2a6SOded Gabbay 	/* Use for delayed freeing of kfd_process structure */
61019f6d2a6SOded Gabbay 	struct rcu_head	rcu;
61119f6d2a6SOded Gabbay 
61219f6d2a6SOded Gabbay 	unsigned int pasid;
613a91e70e3SFelix Kuehling 	unsigned int doorbell_index;
61419f6d2a6SOded Gabbay 
61519f6d2a6SOded Gabbay 	/*
61619f6d2a6SOded Gabbay 	 * List of kfd_process_device structures,
61719f6d2a6SOded Gabbay 	 * one for each device the process is using.
61819f6d2a6SOded Gabbay 	 */
61919f6d2a6SOded Gabbay 	struct list_head per_device_data;
62019f6d2a6SOded Gabbay 
62145102048SBen Goz 	struct process_queue_manager pqm;
62245102048SBen Goz 
62319f6d2a6SOded Gabbay 	/*Is the user space process 32 bit?*/
62419f6d2a6SOded Gabbay 	bool is_32bit_user_mode;
625f3a39818SAndrew Lewycky 
626f3a39818SAndrew Lewycky 	/* Event-related data */
627f3a39818SAndrew Lewycky 	struct mutex event_mutex;
628482f0777SFelix Kuehling 	/* Event ID allocator and lookup */
629482f0777SFelix Kuehling 	struct idr event_idr;
63050cb7dd9SFelix Kuehling 	/* Event page */
63150cb7dd9SFelix Kuehling 	struct kfd_signal_page *signal_page;
632b9a5d0a5SFelix Kuehling 	size_t signal_mapped_size;
633f3a39818SAndrew Lewycky 	size_t signal_event_count;
634c986169fSFelix Kuehling 	bool signal_event_limit_reached;
635403575c4SFelix Kuehling 
636403575c4SFelix Kuehling 	/* Information used for memory eviction */
637403575c4SFelix Kuehling 	void *kgd_process_info;
638403575c4SFelix Kuehling 	/* Eviction fence that is attached to all the BOs of this process. The
639403575c4SFelix Kuehling 	 * fence will be triggered during eviction and new one will be created
640403575c4SFelix Kuehling 	 * during restore
641403575c4SFelix Kuehling 	 */
642403575c4SFelix Kuehling 	struct dma_fence *ef;
64326103436SFelix Kuehling 
64426103436SFelix Kuehling 	/* Work items for evicting and restoring BOs */
64526103436SFelix Kuehling 	struct delayed_work eviction_work;
64626103436SFelix Kuehling 	struct delayed_work restore_work;
64726103436SFelix Kuehling 	/* seqno of the last scheduled eviction */
64826103436SFelix Kuehling 	unsigned int last_eviction_seqno;
64926103436SFelix Kuehling 	/* Approx. the last timestamp (in jiffies) when the process was
65026103436SFelix Kuehling 	 * restored after an eviction
65126103436SFelix Kuehling 	 */
65226103436SFelix Kuehling 	unsigned long last_restore_timestamp;
6534a488a7aSOded Gabbay };
6544a488a7aSOded Gabbay 
65564d1c3a4SFelix Kuehling #define KFD_PROCESS_TABLE_SIZE 5 /* bits: 32 entries */
65664d1c3a4SFelix Kuehling extern DECLARE_HASHTABLE(kfd_processes_table, KFD_PROCESS_TABLE_SIZE);
65764d1c3a4SFelix Kuehling extern struct srcu_struct kfd_processes_srcu;
65864d1c3a4SFelix Kuehling 
65976baee6cSOded Gabbay /**
66076baee6cSOded Gabbay  * Ioctl function type.
66176baee6cSOded Gabbay  *
66276baee6cSOded Gabbay  * \param filep pointer to file structure.
66376baee6cSOded Gabbay  * \param p amdkfd process pointer.
66476baee6cSOded Gabbay  * \param data pointer to arg that was copied from user.
66576baee6cSOded Gabbay  */
66676baee6cSOded Gabbay typedef int amdkfd_ioctl_t(struct file *filep, struct kfd_process *p,
66776baee6cSOded Gabbay 				void *data);
66876baee6cSOded Gabbay 
66976baee6cSOded Gabbay struct amdkfd_ioctl_desc {
67076baee6cSOded Gabbay 	unsigned int cmd;
67176baee6cSOded Gabbay 	int flags;
67276baee6cSOded Gabbay 	amdkfd_ioctl_t *func;
67376baee6cSOded Gabbay 	unsigned int cmd_drv;
67476baee6cSOded Gabbay 	const char *name;
67576baee6cSOded Gabbay };
67676baee6cSOded Gabbay 
67719f6d2a6SOded Gabbay void kfd_process_create_wq(void);
67819f6d2a6SOded Gabbay void kfd_process_destroy_wq(void);
679373d7080SFelix Kuehling struct kfd_process *kfd_create_process(struct file *filep);
68019f6d2a6SOded Gabbay struct kfd_process *kfd_get_process(const struct task_struct *);
681f3a39818SAndrew Lewycky struct kfd_process *kfd_lookup_process_by_pasid(unsigned int pasid);
68226103436SFelix Kuehling struct kfd_process *kfd_lookup_process_by_mm(const struct mm_struct *mm);
683abb208a8SFelix Kuehling void kfd_unref_process(struct kfd_process *p);
68426103436SFelix Kuehling void kfd_suspend_all_processes(void);
68526103436SFelix Kuehling int kfd_resume_all_processes(void);
68619f6d2a6SOded Gabbay 
687b84394e2SFelix Kuehling int kfd_process_device_init_vm(struct kfd_process_device *pdd,
688b84394e2SFelix Kuehling 			       struct file *drm_file);
68964c7f8cfSBen Goz struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
69064c7f8cfSBen Goz 						struct kfd_process *p);
69119f6d2a6SOded Gabbay struct kfd_process_device *kfd_get_process_device_data(struct kfd_dev *dev,
692093c7d8cSAlexey Skidanov 							struct kfd_process *p);
693093c7d8cSAlexey Skidanov struct kfd_process_device *kfd_create_process_device_data(struct kfd_dev *dev,
694093c7d8cSAlexey Skidanov 							struct kfd_process *p);
69519f6d2a6SOded Gabbay 
696373d7080SFelix Kuehling int kfd_reserved_mem_mmap(struct kfd_process *process,
697373d7080SFelix Kuehling 			  struct vm_area_struct *vma);
698373d7080SFelix Kuehling 
69952b29d73SFelix Kuehling /* KFD process API for creating and translating handles */
70052b29d73SFelix Kuehling int kfd_process_device_create_obj_handle(struct kfd_process_device *pdd,
70152b29d73SFelix Kuehling 					void *mem);
70252b29d73SFelix Kuehling void *kfd_process_device_translate_handle(struct kfd_process_device *p,
70352b29d73SFelix Kuehling 					int handle);
70452b29d73SFelix Kuehling void kfd_process_device_remove_obj_handle(struct kfd_process_device *pdd,
70552b29d73SFelix Kuehling 					int handle);
70652b29d73SFelix Kuehling 
707775921edSAlexey Skidanov /* Process device data iterator */
7088eabaf54SKent Russell struct kfd_process_device *kfd_get_first_process_device_data(
7098eabaf54SKent Russell 							struct kfd_process *p);
7108eabaf54SKent Russell struct kfd_process_device *kfd_get_next_process_device_data(
7118eabaf54SKent Russell 						struct kfd_process *p,
712775921edSAlexey Skidanov 						struct kfd_process_device *pdd);
713775921edSAlexey Skidanov bool kfd_has_process_device_data(struct kfd_process *p);
714775921edSAlexey Skidanov 
71519f6d2a6SOded Gabbay /* PASIDs */
71619f6d2a6SOded Gabbay int kfd_pasid_init(void);
71719f6d2a6SOded Gabbay void kfd_pasid_exit(void);
71819f6d2a6SOded Gabbay bool kfd_set_pasid_limit(unsigned int new_limit);
71919f6d2a6SOded Gabbay unsigned int kfd_get_pasid_limit(void);
72019f6d2a6SOded Gabbay unsigned int kfd_pasid_alloc(void);
72119f6d2a6SOded Gabbay void kfd_pasid_free(unsigned int pasid);
72219f6d2a6SOded Gabbay 
72319f6d2a6SOded Gabbay /* Doorbells */
724735df2baSFelix Kuehling int kfd_doorbell_init(struct kfd_dev *kfd);
725735df2baSFelix Kuehling void kfd_doorbell_fini(struct kfd_dev *kfd);
72619f6d2a6SOded Gabbay int kfd_doorbell_mmap(struct kfd_process *process, struct vm_area_struct *vma);
72719f6d2a6SOded Gabbay u32 __iomem *kfd_get_kernel_doorbell(struct kfd_dev *kfd,
72819f6d2a6SOded Gabbay 					unsigned int *doorbell_off);
72919f6d2a6SOded Gabbay void kfd_release_kernel_doorbell(struct kfd_dev *kfd, u32 __iomem *db_addr);
73019f6d2a6SOded Gabbay u32 read_kernel_doorbell(u32 __iomem *db);
73119f6d2a6SOded Gabbay void write_kernel_doorbell(u32 __iomem *db, u32 value);
73219f6d2a6SOded Gabbay unsigned int kfd_queue_id_to_doorbell(struct kfd_dev *kfd,
73319f6d2a6SOded Gabbay 					struct kfd_process *process,
73419f6d2a6SOded Gabbay 					unsigned int queue_id);
735a91e70e3SFelix Kuehling phys_addr_t kfd_get_process_doorbells(struct kfd_dev *dev,
736a91e70e3SFelix Kuehling 					struct kfd_process *process);
737a91e70e3SFelix Kuehling int kfd_alloc_process_doorbells(struct kfd_process *process);
738a91e70e3SFelix Kuehling void kfd_free_process_doorbells(struct kfd_process *process);
73919f6d2a6SOded Gabbay 
7406e81090bSOded Gabbay /* GTT Sub-Allocator */
7416e81090bSOded Gabbay 
7426e81090bSOded Gabbay int kfd_gtt_sa_allocate(struct kfd_dev *kfd, unsigned int size,
7436e81090bSOded Gabbay 			struct kfd_mem_obj **mem_obj);
7446e81090bSOded Gabbay 
7456e81090bSOded Gabbay int kfd_gtt_sa_free(struct kfd_dev *kfd, struct kfd_mem_obj *mem_obj);
7466e81090bSOded Gabbay 
7474a488a7aSOded Gabbay extern struct device *kfd_device;
7484a488a7aSOded Gabbay 
7495b5c4e40SEvgeny Pinchuk /* Topology */
7505b5c4e40SEvgeny Pinchuk int kfd_topology_init(void);
7515b5c4e40SEvgeny Pinchuk void kfd_topology_shutdown(void);
7525b5c4e40SEvgeny Pinchuk int kfd_topology_add_device(struct kfd_dev *gpu);
7535b5c4e40SEvgeny Pinchuk int kfd_topology_remove_device(struct kfd_dev *gpu);
7543a87177eSHarish Kasiviswanathan struct kfd_topology_device *kfd_topology_device_by_proximity_domain(
7553a87177eSHarish Kasiviswanathan 						uint32_t proximity_domain);
7565b5c4e40SEvgeny Pinchuk struct kfd_dev *kfd_device_by_id(uint32_t gpu_id);
7575b5c4e40SEvgeny Pinchuk struct kfd_dev *kfd_device_by_pci_dev(const struct pci_dev *pdev);
7586d82eb0eSHarish Kasiviswanathan int kfd_topology_enum_kfd_devices(uint8_t idx, struct kfd_dev **kdev);
759520b8fb7SFelix Kuehling int kfd_numa_node_to_apic_id(int numa_node_id);
7605b5c4e40SEvgeny Pinchuk 
7614a488a7aSOded Gabbay /* Interrupts */
7622249d558SAndrew Lewycky int kfd_interrupt_init(struct kfd_dev *dev);
7632249d558SAndrew Lewycky void kfd_interrupt_exit(struct kfd_dev *dev);
764b3f5e6b4SAndrew Lewycky void kgd2kfd_interrupt(struct kfd_dev *kfd, const void *ih_ring_entry);
7652249d558SAndrew Lewycky bool enqueue_ih_ring_entry(struct kfd_dev *kfd,	const void *ih_ring_entry);
7662249d558SAndrew Lewycky bool interrupt_is_wanted(struct kfd_dev *dev, const uint32_t *ih_ring_entry);
7674a488a7aSOded Gabbay 
7684a488a7aSOded Gabbay /* Power Management */
769b3f5e6b4SAndrew Lewycky void kgd2kfd_suspend(struct kfd_dev *kfd);
770b3f5e6b4SAndrew Lewycky int kgd2kfd_resume(struct kfd_dev *kfd);
7714a488a7aSOded Gabbay 
77219f6d2a6SOded Gabbay /* amdkfd Apertures */
77319f6d2a6SOded Gabbay int kfd_init_apertures(struct kfd_process *process);
77419f6d2a6SOded Gabbay 
775ed6e6a34SBen Goz /* Queue Context Management */
776e88a614cSEdward O'Callaghan int init_queue(struct queue **q, const struct queue_properties *properties);
777ed6e6a34SBen Goz void uninit_queue(struct queue *q);
77845102048SBen Goz void print_queue_properties(struct queue_properties *q);
779ed6e6a34SBen Goz void print_queue(struct queue *q);
780ed6e6a34SBen Goz 
78164c7f8cfSBen Goz struct mqd_manager *mqd_manager_init(enum KFD_MQD_TYPE type,
78264c7f8cfSBen Goz 					struct kfd_dev *dev);
7834b8f589bSBen Goz struct mqd_manager *mqd_manager_init_cik(enum KFD_MQD_TYPE type,
7844b8f589bSBen Goz 		struct kfd_dev *dev);
785ee04955aSFelix Kuehling struct mqd_manager *mqd_manager_init_cik_hawaii(enum KFD_MQD_TYPE type,
786ee04955aSFelix Kuehling 		struct kfd_dev *dev);
7874b8f589bSBen Goz struct mqd_manager *mqd_manager_init_vi(enum KFD_MQD_TYPE type,
7884b8f589bSBen Goz 		struct kfd_dev *dev);
789ee04955aSFelix Kuehling struct mqd_manager *mqd_manager_init_vi_tonga(enum KFD_MQD_TYPE type,
790ee04955aSFelix Kuehling 		struct kfd_dev *dev);
79164c7f8cfSBen Goz struct device_queue_manager *device_queue_manager_init(struct kfd_dev *dev);
79264c7f8cfSBen Goz void device_queue_manager_uninit(struct device_queue_manager *dqm);
793241f24f8SBen Goz struct kernel_queue *kernel_queue_init(struct kfd_dev *dev,
794241f24f8SBen Goz 					enum kfd_queue_type type);
795241f24f8SBen Goz void kernel_queue_uninit(struct kernel_queue *kq);
796241f24f8SBen Goz 
79745102048SBen Goz /* Process Queue Manager */
79845102048SBen Goz struct process_queue_node {
79945102048SBen Goz 	struct queue *q;
80045102048SBen Goz 	struct kernel_queue *kq;
80145102048SBen Goz 	struct list_head process_queue_list;
80245102048SBen Goz };
80345102048SBen Goz 
8049fd3f1bfSFelix Kuehling void kfd_process_dequeue_from_device(struct kfd_process_device *pdd);
8059fd3f1bfSFelix Kuehling void kfd_process_dequeue_from_all_devices(struct kfd_process *p);
80645102048SBen Goz int pqm_init(struct process_queue_manager *pqm, struct kfd_process *p);
80745102048SBen Goz void pqm_uninit(struct process_queue_manager *pqm);
80845102048SBen Goz int pqm_create_queue(struct process_queue_manager *pqm,
80945102048SBen Goz 			    struct kfd_dev *dev,
81045102048SBen Goz 			    struct file *f,
81145102048SBen Goz 			    struct queue_properties *properties,
81245102048SBen Goz 			    unsigned int *qid);
81345102048SBen Goz int pqm_destroy_queue(struct process_queue_manager *pqm, unsigned int qid);
81445102048SBen Goz int pqm_update_queue(struct process_queue_manager *pqm, unsigned int qid,
81545102048SBen Goz 			struct queue_properties *p);
816fbeb661bSYair Shachar struct kernel_queue *pqm_get_kernel_queue(struct process_queue_manager *pqm,
817fbeb661bSYair Shachar 						unsigned int qid);
81845102048SBen Goz 
819788bf83dSYair Shachar int amdkfd_fence_wait_timeout(unsigned int *fence_addr,
820788bf83dSYair Shachar 				unsigned int fence_value,
8218c72c3d7SYong Zhao 				unsigned int timeout_ms);
822788bf83dSYair Shachar 
823ed6e6a34SBen Goz /* Packet Manager */
824ed6e6a34SBen Goz 
82564c7f8cfSBen Goz #define KFD_FENCE_COMPLETED (100)
82664c7f8cfSBen Goz #define KFD_FENCE_INIT   (10)
827241f24f8SBen Goz 
828ed6e6a34SBen Goz struct packet_manager {
829ed6e6a34SBen Goz 	struct device_queue_manager *dqm;
830ed6e6a34SBen Goz 	struct kernel_queue *priv_queue;
831ed6e6a34SBen Goz 	struct mutex lock;
832ed6e6a34SBen Goz 	bool allocated;
833ed6e6a34SBen Goz 	struct kfd_mem_obj *ib_buffer_obj;
834851a645eSFelix Kuehling 	unsigned int ib_size_bytes;
835ed6e6a34SBen Goz };
836ed6e6a34SBen Goz 
83764c7f8cfSBen Goz int pm_init(struct packet_manager *pm, struct device_queue_manager *dqm);
83864c7f8cfSBen Goz void pm_uninit(struct packet_manager *pm);
83964c7f8cfSBen Goz int pm_send_set_resources(struct packet_manager *pm,
84064c7f8cfSBen Goz 				struct scheduling_resources *res);
84164c7f8cfSBen Goz int pm_send_runlist(struct packet_manager *pm, struct list_head *dqm_queues);
84264c7f8cfSBen Goz int pm_send_query_status(struct packet_manager *pm, uint64_t fence_address,
84364c7f8cfSBen Goz 				uint32_t fence_value);
84464c7f8cfSBen Goz 
84564c7f8cfSBen Goz int pm_send_unmap_queue(struct packet_manager *pm, enum kfd_queue_type type,
8467da2bcf8SYong Zhao 			enum kfd_unmap_queues_filter mode,
84764c7f8cfSBen Goz 			uint32_t filter_param, bool reset,
84864c7f8cfSBen Goz 			unsigned int sdma_engine);
84964c7f8cfSBen Goz 
850241f24f8SBen Goz void pm_release_ib(struct packet_manager *pm);
851241f24f8SBen Goz 
852552764b6SFelix Kuehling uint32_t pm_create_release_mem(uint64_t gpu_addr, uint32_t *buffer);
853552764b6SFelix Kuehling 
85419f6d2a6SOded Gabbay uint64_t kfd_get_number_elems(struct kfd_dev *kfd);
85519f6d2a6SOded Gabbay 
856f3a39818SAndrew Lewycky /* Events */
857f3a39818SAndrew Lewycky extern const struct kfd_event_interrupt_class event_interrupt_class_cik;
858930c5ff4SAlexey Skidanov extern const struct kfd_device_global_init_class device_global_init_class_cik;
859f3a39818SAndrew Lewycky 
860f3a39818SAndrew Lewycky void kfd_event_init_process(struct kfd_process *p);
861f3a39818SAndrew Lewycky void kfd_event_free_process(struct kfd_process *p);
862f3a39818SAndrew Lewycky int kfd_event_mmap(struct kfd_process *process, struct vm_area_struct *vma);
863f3a39818SAndrew Lewycky int kfd_wait_on_events(struct kfd_process *p,
86459d3e8beSAlexey Skidanov 		       uint32_t num_events, void __user *data,
865f3a39818SAndrew Lewycky 		       bool all, uint32_t user_timeout_ms,
866fdf0c833SFelix Kuehling 		       uint32_t *wait_result);
867f3a39818SAndrew Lewycky void kfd_signal_event_interrupt(unsigned int pasid, uint32_t partial_id,
868f3a39818SAndrew Lewycky 				uint32_t valid_id_bits);
86959d3e8beSAlexey Skidanov void kfd_signal_iommu_event(struct kfd_dev *dev,
87059d3e8beSAlexey Skidanov 		unsigned int pasid, unsigned long address,
87159d3e8beSAlexey Skidanov 		bool is_write_requested, bool is_execute_requested);
872930c5ff4SAlexey Skidanov void kfd_signal_hw_exception_event(unsigned int pasid);
873f3a39818SAndrew Lewycky int kfd_set_event(struct kfd_process *p, uint32_t event_id);
874f3a39818SAndrew Lewycky int kfd_reset_event(struct kfd_process *p, uint32_t event_id);
8750fc8011fSFelix Kuehling int kfd_event_page_set(struct kfd_process *p, void *kernel_address,
8760fc8011fSFelix Kuehling 		       uint64_t size);
877f3a39818SAndrew Lewycky int kfd_event_create(struct file *devkfd, struct kfd_process *p,
878f3a39818SAndrew Lewycky 		     uint32_t event_type, bool auto_reset, uint32_t node_id,
879f3a39818SAndrew Lewycky 		     uint32_t *event_id, uint32_t *event_trigger_data,
880f3a39818SAndrew Lewycky 		     uint64_t *event_page_offset, uint32_t *event_slot_index);
881f3a39818SAndrew Lewycky int kfd_event_destroy(struct kfd_process *p, uint32_t event_id);
882f3a39818SAndrew Lewycky 
883403575c4SFelix Kuehling void kfd_flush_tlb(struct kfd_process_device *pdd);
884403575c4SFelix Kuehling 
885c3447e81SBen Goz int dbgdev_wave_reset_wavefronts(struct kfd_dev *dev, struct kfd_process *p);
886c3447e81SBen Goz 
887851a645eSFelix Kuehling /* Debugfs */
888851a645eSFelix Kuehling #if defined(CONFIG_DEBUG_FS)
889851a645eSFelix Kuehling 
890851a645eSFelix Kuehling void kfd_debugfs_init(void);
891851a645eSFelix Kuehling void kfd_debugfs_fini(void);
892851a645eSFelix Kuehling int kfd_debugfs_mqds_by_process(struct seq_file *m, void *data);
893851a645eSFelix Kuehling int pqm_debugfs_mqds(struct seq_file *m, void *data);
894851a645eSFelix Kuehling int kfd_debugfs_hqds_by_device(struct seq_file *m, void *data);
895851a645eSFelix Kuehling int dqm_debugfs_hqds(struct seq_file *m, void *data);
896851a645eSFelix Kuehling int kfd_debugfs_rls_by_device(struct seq_file *m, void *data);
897851a645eSFelix Kuehling int pm_debugfs_runlist(struct seq_file *m, void *data);
898851a645eSFelix Kuehling 
899851a645eSFelix Kuehling #else
900851a645eSFelix Kuehling 
901851a645eSFelix Kuehling static inline void kfd_debugfs_init(void) {}
902851a645eSFelix Kuehling static inline void kfd_debugfs_fini(void) {}
903851a645eSFelix Kuehling 
904851a645eSFelix Kuehling #endif
905851a645eSFelix Kuehling 
9064a488a7aSOded Gabbay #endif
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