309 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			309 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /* SPDX-License-Identifier: GPL-2.0 */
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| #ifndef __LINUX_SWIOTLB_H
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| #define __LINUX_SWIOTLB_H
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| 
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| #include <linux/device.h>
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| #include <linux/dma-direction.h>
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| #include <linux/init.h>
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| #include <linux/types.h>
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| #include <linux/limits.h>
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| #include <linux/spinlock.h>
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| #include <linux/workqueue.h>
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| 
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| struct device;
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| struct page;
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| struct scatterlist;
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| 
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| #define SWIOTLB_VERBOSE	(1 << 0) /* verbose initialization */
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| #define SWIOTLB_FORCE	(1 << 1) /* force bounce buffering */
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| #define SWIOTLB_ANY	(1 << 2) /* allow any memory for the buffer */
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| 
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| /*
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|  * Maximum allowable number of contiguous slabs to map,
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|  * must be a power of 2.  What is the appropriate value ?
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|  * The complexity of {map,unmap}_single is linearly dependent on this value.
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|  */
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| #define IO_TLB_SEGSIZE	128
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| 
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| /*
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|  * log of the size of each IO TLB slab.  The number of slabs is command line
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|  * controllable.
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|  */
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| #define IO_TLB_SHIFT 11
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| #define IO_TLB_SIZE (1 << IO_TLB_SHIFT)
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| 
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| /* default to 64MB */
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| #define IO_TLB_DEFAULT_SIZE (64UL<<20)
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| 
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| unsigned long swiotlb_size_or_default(void);
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| void __init swiotlb_init_remap(bool addressing_limit, unsigned int flags,
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| 	int (*remap)(void *tlb, unsigned long nslabs));
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| int swiotlb_init_late(size_t size, gfp_t gfp_mask,
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| 	int (*remap)(void *tlb, unsigned long nslabs));
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| extern void __init swiotlb_update_mem_attributes(void);
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| 
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| #ifdef CONFIG_SWIOTLB
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| 
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| /**
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|  * struct io_tlb_pool - IO TLB memory pool descriptor
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|  * @start:	The start address of the swiotlb memory pool. Used to do a quick
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|  *		range check to see if the memory was in fact allocated by this
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|  *		API.
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|  * @end:	The end address of the swiotlb memory pool. Used to do a quick
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|  *		range check to see if the memory was in fact allocated by this
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|  *		API.
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|  * @vaddr:	The vaddr of the swiotlb memory pool. The swiotlb memory pool
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|  *		may be remapped in the memory encrypted case and store virtual
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|  *		address for bounce buffer operation.
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|  * @nslabs:	The number of IO TLB slots between @start and @end. For the
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|  *		default swiotlb, this can be adjusted with a boot parameter,
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|  *		see setup_io_tlb_npages().
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|  * @late_alloc:	%true if allocated using the page allocator.
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|  * @nareas:	Number of areas in the pool.
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|  * @area_nslabs: Number of slots in each area.
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|  * @areas:	Array of memory area descriptors.
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|  * @slots:	Array of slot descriptors.
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|  * @node:	Member of the IO TLB memory pool list.
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|  * @rcu:	RCU head for swiotlb_dyn_free().
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|  * @transient:  %true if transient memory pool.
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|  */
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| struct io_tlb_pool {
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| 	phys_addr_t start;
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| 	phys_addr_t end;
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| 	void *vaddr;
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| 	unsigned long nslabs;
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| 	bool late_alloc;
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| 	unsigned int nareas;
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| 	unsigned int area_nslabs;
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| 	struct io_tlb_area *areas;
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| 	struct io_tlb_slot *slots;
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| #ifdef CONFIG_SWIOTLB_DYNAMIC
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| 	struct list_head node;
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| 	struct rcu_head rcu;
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| 	bool transient;
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| #endif
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| };
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| 
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| /**
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|  * struct io_tlb_mem - Software IO TLB allocator
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|  * @defpool:	Default (initial) IO TLB memory pool descriptor.
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|  * @pool:	IO TLB memory pool descriptor (if not dynamic).
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|  * @nslabs:	Total number of IO TLB slabs in all pools.
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|  * @debugfs:	The dentry to debugfs.
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|  * @force_bounce: %true if swiotlb bouncing is forced
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|  * @for_alloc:  %true if the pool is used for memory allocation
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|  * @can_grow:	%true if more pools can be allocated dynamically.
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|  * @phys_limit:	Maximum allowed physical address.
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|  * @lock:	Lock to synchronize changes to the list.
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|  * @pools:	List of IO TLB memory pool descriptors (if dynamic).
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|  * @dyn_alloc:	Dynamic IO TLB pool allocation work.
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|  * @total_used:	The total number of slots in the pool that are currently used
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|  *		across all areas. Used only for calculating used_hiwater in
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|  *		debugfs.
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|  * @used_hiwater: The high water mark for total_used.  Used only for reporting
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|  *		in debugfs.
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|  * @transient_nslabs: The total number of slots in all transient pools that
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|  *		are currently used across all areas.
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|  */
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| struct io_tlb_mem {
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| 	struct io_tlb_pool defpool;
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| 	unsigned long nslabs;
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| 	struct dentry *debugfs;
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| 	bool force_bounce;
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| 	bool for_alloc;
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| #ifdef CONFIG_SWIOTLB_DYNAMIC
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| 	bool can_grow;
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| 	u64 phys_limit;
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| 	spinlock_t lock;
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| 	struct list_head pools;
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| 	struct work_struct dyn_alloc;
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| #endif
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| #ifdef CONFIG_DEBUG_FS
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| 	atomic_long_t total_used;
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| 	atomic_long_t used_hiwater;
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| 	atomic_long_t transient_nslabs;
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| #endif
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| };
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| 
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| struct io_tlb_pool *__swiotlb_find_pool(struct device *dev, phys_addr_t paddr);
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| 
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| /**
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|  * swiotlb_find_pool() - find swiotlb pool to which a physical address belongs
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|  * @dev:        Device which has mapped the buffer.
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|  * @paddr:      Physical address within the DMA buffer.
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|  *
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|  * Find the swiotlb pool that @paddr points into.
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|  *
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|  * Return:
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|  * * pool address if @paddr points into a bounce buffer
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|  * * NULL if @paddr does not point into a bounce buffer. As such, this function
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|  *   can be used to determine if @paddr denotes a swiotlb bounce buffer.
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|  */
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| static inline struct io_tlb_pool *swiotlb_find_pool(struct device *dev,
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| 		phys_addr_t paddr)
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| {
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| 	struct io_tlb_mem *mem = dev->dma_io_tlb_mem;
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| 
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| 	if (!mem)
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| 		return NULL;
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| 
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| #ifdef CONFIG_SWIOTLB_DYNAMIC
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| 	/*
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| 	 * All SWIOTLB buffer addresses must have been returned by
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| 	 * swiotlb_tbl_map_single() and passed to a device driver.
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| 	 * If a SWIOTLB address is checked on another CPU, then it was
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| 	 * presumably loaded by the device driver from an unspecified private
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| 	 * data structure. Make sure that this load is ordered before reading
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| 	 * dev->dma_uses_io_tlb here and mem->pools in __swiotlb_find_pool().
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| 	 *
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| 	 * This barrier pairs with smp_mb() in swiotlb_find_slots().
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| 	 */
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| 	smp_rmb();
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| 	if (READ_ONCE(dev->dma_uses_io_tlb))
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| 		return __swiotlb_find_pool(dev, paddr);
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| #else
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| 	if (paddr >= mem->defpool.start && paddr < mem->defpool.end)
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| 		return &mem->defpool;
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| #endif
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| 
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| 	return NULL;
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| }
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| 
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| static inline bool is_swiotlb_force_bounce(struct device *dev)
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| {
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| 	struct io_tlb_mem *mem = dev->dma_io_tlb_mem;
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| 
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| 	return mem && mem->force_bounce;
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| }
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| 
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| void swiotlb_init(bool addressing_limited, unsigned int flags);
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| void __init swiotlb_exit(void);
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| void swiotlb_dev_init(struct device *dev);
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| size_t swiotlb_max_mapping_size(struct device *dev);
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| bool is_swiotlb_allocated(void);
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| bool is_swiotlb_active(struct device *dev);
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| void __init swiotlb_adjust_size(unsigned long size);
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| phys_addr_t default_swiotlb_base(void);
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| phys_addr_t default_swiotlb_limit(void);
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| #else
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| static inline void swiotlb_init(bool addressing_limited, unsigned int flags)
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| {
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| }
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| 
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| static inline void swiotlb_dev_init(struct device *dev)
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| {
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| }
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| 
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| static inline struct io_tlb_pool *swiotlb_find_pool(struct device *dev,
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| 		phys_addr_t paddr)
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| {
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| 	return NULL;
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| }
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| static inline bool is_swiotlb_force_bounce(struct device *dev)
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| {
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| 	return false;
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| }
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| static inline void swiotlb_exit(void)
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| {
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| }
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| static inline size_t swiotlb_max_mapping_size(struct device *dev)
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| {
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| 	return SIZE_MAX;
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| }
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| 
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| static inline bool is_swiotlb_allocated(void)
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| {
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| 	return false;
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| }
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| 
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| static inline bool is_swiotlb_active(struct device *dev)
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| {
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| 	return false;
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| }
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| 
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| static inline void swiotlb_adjust_size(unsigned long size)
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| {
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| }
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| 
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| static inline phys_addr_t default_swiotlb_base(void)
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| {
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| 	return 0;
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| }
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| 
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| static inline phys_addr_t default_swiotlb_limit(void)
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| {
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| 	return 0;
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| }
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| #endif /* CONFIG_SWIOTLB */
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| 
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| phys_addr_t swiotlb_tbl_map_single(struct device *hwdev, phys_addr_t phys,
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| 		size_t mapping_size, unsigned int alloc_aligned_mask,
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| 		enum dma_data_direction dir, unsigned long attrs);
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| dma_addr_t swiotlb_map(struct device *dev, phys_addr_t phys,
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| 		size_t size, enum dma_data_direction dir, unsigned long attrs);
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| 
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| void __swiotlb_tbl_unmap_single(struct device *hwdev, phys_addr_t tlb_addr,
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| 		size_t mapping_size, enum dma_data_direction dir,
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| 		unsigned long attrs, struct io_tlb_pool *pool);
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| static inline void swiotlb_tbl_unmap_single(struct device *dev,
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| 		phys_addr_t addr, size_t size, enum dma_data_direction dir,
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| 		unsigned long attrs)
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| {
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| 	struct io_tlb_pool *pool = swiotlb_find_pool(dev, addr);
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| 
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| 	if (unlikely(pool))
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| 		__swiotlb_tbl_unmap_single(dev, addr, size, dir, attrs, pool);
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| }
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| 
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| void __swiotlb_sync_single_for_device(struct device *dev, phys_addr_t tlb_addr,
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| 		size_t size, enum dma_data_direction dir,
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| 		struct io_tlb_pool *pool);
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| static inline void swiotlb_sync_single_for_device(struct device *dev,
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| 		phys_addr_t addr, size_t size, enum dma_data_direction dir)
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| {
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| 	struct io_tlb_pool *pool = swiotlb_find_pool(dev, addr);
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| 
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| 	if (unlikely(pool))
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| 		__swiotlb_sync_single_for_device(dev, addr, size, dir, pool);
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| }
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| 
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| void __swiotlb_sync_single_for_cpu(struct device *dev, phys_addr_t tlb_addr,
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| 		size_t size, enum dma_data_direction dir,
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| 		struct io_tlb_pool *pool);
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| static inline void swiotlb_sync_single_for_cpu(struct device *dev,
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| 		phys_addr_t addr, size_t size, enum dma_data_direction dir)
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| {
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| 	struct io_tlb_pool *pool = swiotlb_find_pool(dev, addr);
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| 
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| 	if (unlikely(pool))
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| 		__swiotlb_sync_single_for_cpu(dev, addr, size, dir, pool);
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| }
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| 
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| extern void swiotlb_print_info(void);
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| 
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| #ifdef CONFIG_DMA_RESTRICTED_POOL
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| struct page *swiotlb_alloc(struct device *dev, size_t size);
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| bool swiotlb_free(struct device *dev, struct page *page, size_t size);
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| 
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| static inline bool is_swiotlb_for_alloc(struct device *dev)
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| {
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| 	return dev->dma_io_tlb_mem->for_alloc;
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| }
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| #else
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| static inline struct page *swiotlb_alloc(struct device *dev, size_t size)
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| {
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| 	return NULL;
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| }
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| static inline bool swiotlb_free(struct device *dev, struct page *page,
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| 				size_t size)
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| {
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| 	return false;
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| }
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| static inline bool is_swiotlb_for_alloc(struct device *dev)
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| {
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| 	return false;
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| }
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| #endif /* CONFIG_DMA_RESTRICTED_POOL */
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| 
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| #endif /* __LINUX_SWIOTLB_H */
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