528 lines
17 KiB
C
528 lines
17 KiB
C
/* Copyright (c) 2008-2015, The Linux Foundation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 and
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* only version 2 as published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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*/
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#ifndef __KGSL_H
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#define __KGSL_H
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#include <linux/types.h>
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#include <linux/slab.h>
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#include <linux/vmalloc.h>
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#include <linux/msm_kgsl.h>
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#include <linux/platform_device.h>
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#include <linux/clk.h>
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#include <linux/interrupt.h>
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#include <linux/mutex.h>
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#include <linux/cdev.h>
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#include <linux/regulator/consumer.h>
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#include <linux/mm.h>
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#include <linux/dma-attrs.h>
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#include <linux/uaccess.h>
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#include <asm/cacheflush.h>
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/* The number of memstore arrays limits the number of contexts allowed.
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* If more contexts are needed, update multiple for MEMSTORE_SIZE
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*/
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#define KGSL_MEMSTORE_SIZE ((int)(PAGE_SIZE * 2))
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#define KGSL_MEMSTORE_GLOBAL (0)
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#define KGSL_PRIORITY_MAX_RB_LEVELS 4
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#define KGSL_MEMSTORE_MAX (KGSL_MEMSTORE_SIZE / \
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sizeof(struct kgsl_devmemstore) - 1 - KGSL_PRIORITY_MAX_RB_LEVELS)
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/* Timestamp window used to detect rollovers (half of integer range) */
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#define KGSL_TIMESTAMP_WINDOW 0x80000000
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/* A macro for memory statistics - add the new size to the stat and if
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the statisic is greater then _max, set _max
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*/
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static inline void KGSL_STATS_ADD(uint64_t size, atomic_long_t *stat,
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atomic_long_t *max)
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{
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uint64_t ret = atomic_long_add_return(size, stat);
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if (ret > atomic_long_read(max))
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atomic_long_set(max, ret);
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}
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#define KGSL_MAX_NUMIBS 100000
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#define KGSL_MAX_SYNCPOINTS 32
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struct kgsl_device;
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struct kgsl_context;
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/**
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* struct kgsl_driver - main container for global KGSL things
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* @cdev: Character device struct
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* @major: Major ID for the KGSL device
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* @class: Pointer to the class struct for the core KGSL sysfs entries
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* @virtdev: Virtual device for managing the core
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* @ptkobj: kobject for storing the pagetable statistics
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* @prockobj: kobject for storing the process statistics
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* @devp: Array of pointers to the individual KGSL device structs
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* @process_list: List of open processes
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* @pagetable_list: LIst of open pagetables
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* @ptlock: Lock for accessing the pagetable list
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* @process_mutex: Mutex for accessing the process list
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* @devlock: Mutex protecting the device list
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* @stats: Struct containing atomic memory statistics
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* @full_cache_threshold: the threshold that triggers a full cache flush
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* @workqueue: Pointer to a single threaded workqueue
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* @mem_workqueue: Pointer to a workqueue for deferring memory entries
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*/
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struct kgsl_driver {
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struct cdev cdev;
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dev_t major;
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struct class *class;
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struct device virtdev;
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struct kobject *ptkobj;
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struct kobject *prockobj;
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struct kgsl_device *devp[KGSL_DEVICE_MAX];
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struct list_head process_list;
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struct list_head pagetable_list;
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spinlock_t ptlock;
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struct mutex process_mutex;
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struct mutex devlock;
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struct {
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atomic_long_t vmalloc;
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atomic_long_t vmalloc_max;
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atomic_long_t page_alloc;
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atomic_long_t page_alloc_max;
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atomic_long_t coherent;
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atomic_long_t coherent_max;
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atomic_long_t secure;
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atomic_long_t secure_max;
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atomic_long_t mapped;
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atomic_long_t mapped_max;
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} stats;
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unsigned int full_cache_threshold;
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struct workqueue_struct *workqueue;
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struct workqueue_struct *mem_workqueue;
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};
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extern struct kgsl_driver kgsl_driver;
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extern struct mutex kgsl_mmu_sync;
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struct kgsl_pagetable;
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struct kgsl_memdesc;
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struct kgsl_memdesc_ops {
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unsigned int vmflags;
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int (*vmfault)(struct kgsl_memdesc *, struct vm_area_struct *,
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struct vm_fault *);
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void (*free)(struct kgsl_memdesc *memdesc);
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int (*map_kernel)(struct kgsl_memdesc *);
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void (*unmap_kernel)(struct kgsl_memdesc *);
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};
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/* Internal definitions for memdesc->priv */
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#define KGSL_MEMDESC_GUARD_PAGE BIT(0)
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/* Set if the memdesc is mapped into all pagetables */
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#define KGSL_MEMDESC_GLOBAL BIT(1)
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/* The memdesc is frozen during a snapshot */
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#define KGSL_MEMDESC_FROZEN BIT(2)
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/* The memdesc is mapped into a pagetable */
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#define KGSL_MEMDESC_MAPPED BIT(3)
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/* The memdesc is secured for content protection */
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#define KGSL_MEMDESC_SECURE BIT(4)
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/* Memory is accessible in privileged mode */
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#define KGSL_MEMDESC_PRIVILEGED BIT(6)
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/* The memdesc is TZ locked content protection */
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#define KGSL_MEMDESC_TZ_LOCKED BIT(7)
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/**
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* struct kgsl_memdesc - GPU memory object descriptor
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* @pagetable: Pointer to the pagetable that the object is mapped in
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* @hostptr: Kernel virtual address
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* @hostptr_count: Number of threads using hostptr
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* @useraddr: User virtual address (if applicable)
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* @gpuaddr: GPU virtual address
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* @physaddr: Physical address of the memory object
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* @size: Size of the memory object
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* @priv: Internal flags and settings
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* @sgt: Scatter gather table for allocated pages
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* @ops: Function hooks for the memdesc memory type
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* @flags: Flags set from userspace
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* @dev: Pointer to the struct device that owns this memory
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* @memmap: bitmap of pages for mmapsize
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* @memmap_len: Number of bits for memmap
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*/
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struct kgsl_memdesc {
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struct kgsl_pagetable *pagetable;
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void *hostptr;
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unsigned int hostptr_count;
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unsigned long useraddr;
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uint64_t gpuaddr;
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phys_addr_t physaddr;
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uint64_t size;
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unsigned int priv;
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struct sg_table *sgt;
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struct kgsl_memdesc_ops *ops;
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uint64_t flags;
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struct device *dev;
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struct dma_attrs attrs;
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};
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/*
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* List of different memory entry types. The usermem enum
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* starts at 0, which we use for allocated memory, so 1 is
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* added to the enum values.
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*/
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#define KGSL_MEM_ENTRY_KERNEL 0
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#define KGSL_MEM_ENTRY_USER (KGSL_USER_MEM_TYPE_ADDR + 1)
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#define KGSL_MEM_ENTRY_ION (KGSL_USER_MEM_TYPE_ION + 1)
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#define KGSL_MEM_ENTRY_MAX (KGSL_USER_MEM_TYPE_MAX + 1)
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/* symbolic table for trace and debugfs */
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#define KGSL_MEM_TYPES \
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{ KGSL_MEM_ENTRY_KERNEL, "gpumem" }, \
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{ KGSL_MEM_ENTRY_USER, "usermem" }, \
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{ KGSL_MEM_ENTRY_ION, "ion" }
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/*
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* struct kgsl_mem_entry - a userspace memory allocation
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* @refcount: reference count. Currently userspace can only
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* hold a single reference count, but the kernel may hold more.
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* @memdesc: description of the memory
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* @priv_data: type-specific data, such as the dma-buf attachment pointer.
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* @node: rb_node for the gpu address lookup rb tree
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* @id: idr index for this entry, can be used to find memory that does not have
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* a valid GPU address.
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* @priv: back pointer to the process that owns this memory
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* @pending_free: if !0, userspace requested that his memory be freed, but there
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* are still references to it.
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* @dev_priv: back pointer to the device file that created this entry.
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* @metadata: String containing user specified metadata for the entry
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* @work: Work struct used to schedule a kgsl_mem_entry_put in atomic contexts
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*/
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struct kgsl_mem_entry {
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struct kref refcount;
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struct kgsl_memdesc memdesc;
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void *priv_data;
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struct rb_node node;
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unsigned int id;
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struct kgsl_process_private *priv;
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int pending_free;
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char metadata[KGSL_GPUOBJ_ALLOC_METADATA_MAX + 1];
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struct work_struct work;
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};
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struct kgsl_device_private;
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struct kgsl_event_group;
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typedef void (*kgsl_event_func)(struct kgsl_device *, struct kgsl_event_group *,
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void *, int);
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/**
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* struct kgsl_event - KGSL GPU timestamp event
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* @device: Pointer to the KGSL device that owns the event
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* @context: Pointer to the context that owns the event
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* @timestamp: Timestamp for the event to expire
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* @func: Callback function for for the event when it expires
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* @priv: Private data passed to the callback function
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* @node: List node for the kgsl_event_group list
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* @created: Jiffies when the event was created
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* @work: Work struct for dispatching the callback
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* @result: KGSL event result type to pass to the callback
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* group: The event group this event belongs to
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*/
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struct kgsl_event {
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struct kgsl_device *device;
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struct kgsl_context *context;
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unsigned int timestamp;
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kgsl_event_func func;
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void *priv;
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struct list_head node;
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unsigned int created;
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struct work_struct work;
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int result;
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struct kgsl_event_group *group;
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};
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typedef int (*readtimestamp_func)(struct kgsl_device *, void *,
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enum kgsl_timestamp_type, unsigned int *);
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/**
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* struct event_group - A list of GPU events
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* @context: Pointer to the active context for the events
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* @lock: Spinlock for protecting the list
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* @events: List of active GPU events
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* @group: Node for the master group list
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* @processed: Last processed timestamp
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* @name: String name for the group (for the debugfs file)
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* @readtimestamp: Function pointer to read a timestamp
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* @priv: Priv member to pass to the readtimestamp function
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*/
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struct kgsl_event_group {
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struct kgsl_context *context;
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spinlock_t lock;
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struct list_head events;
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struct list_head group;
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unsigned int processed;
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char name[64];
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readtimestamp_func readtimestamp;
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void *priv;
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};
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/**
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* struct kgsl_protected_registers - Protected register range
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* @base: Offset of the range to be protected
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* @range: Range (# of registers = 2 ** range)
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*/
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struct kgsl_protected_registers {
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unsigned int base;
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int range;
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};
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long kgsl_ioctl_device_getproperty(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_device_setproperty(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_device_waittimestamp_ctxtid(struct kgsl_device_private
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*dev_priv, unsigned int cmd, void *data);
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long kgsl_ioctl_rb_issueibcmds(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_submit_commands(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_cmdstream_readtimestamp_ctxtid(struct kgsl_device_private
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*dev_priv, unsigned int cmd,
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void *data);
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long kgsl_ioctl_cmdstream_freememontimestamp_ctxtid(
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struct kgsl_device_private
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*dev_priv, unsigned int cmd,
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void *data);
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long kgsl_ioctl_drawctxt_create(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_drawctxt_destroy(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_sharedmem_free(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_free_id(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_map_user_mem(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_sync_cache(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_sync_cache_bulk(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_sharedmem_flush_cache(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_alloc(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_alloc_id(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpumem_get_info(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_cff_syncmem(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_cff_user_event(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_timestamp_event(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_cff_sync_gpuobj(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_alloc(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_free(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_info(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_import(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_sync(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpu_command(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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long kgsl_ioctl_gpuobj_set_info(struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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void kgsl_mem_entry_destroy(struct kref *kref);
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struct kgsl_mem_entry * __must_check
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kgsl_sharedmem_find(struct kgsl_process_private *private, uint64_t gpuaddr);
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struct kgsl_mem_entry * __must_check
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kgsl_sharedmem_find_id(struct kgsl_process_private *process, unsigned int id);
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extern const struct dev_pm_ops kgsl_pm_ops;
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int kgsl_suspend_driver(struct platform_device *pdev, pm_message_t state);
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int kgsl_resume_driver(struct platform_device *pdev);
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static inline int kgsl_gpuaddr_in_memdesc(const struct kgsl_memdesc *memdesc,
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uint64_t gpuaddr, uint64_t size)
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{
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/* set a minimum size to search for */
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if (!size)
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size = 1;
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/* don't overflow */
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if (size > U64_MAX - gpuaddr)
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return 0;
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if (gpuaddr >= memdesc->gpuaddr &&
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((gpuaddr + size) <= (memdesc->gpuaddr + memdesc->size))) {
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return 1;
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}
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return 0;
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}
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static inline void *kgsl_memdesc_map(struct kgsl_memdesc *memdesc)
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{
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if (memdesc->ops && memdesc->ops->map_kernel)
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memdesc->ops->map_kernel(memdesc);
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return memdesc->hostptr;
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}
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static inline void kgsl_memdesc_unmap(struct kgsl_memdesc *memdesc)
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{
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if (memdesc->ops && memdesc->ops->unmap_kernel)
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memdesc->ops->unmap_kernel(memdesc);
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}
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static inline void *kgsl_gpuaddr_to_vaddr(struct kgsl_memdesc *memdesc,
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uint64_t gpuaddr)
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{
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void *hostptr = NULL;
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if ((gpuaddr >= memdesc->gpuaddr) &&
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(gpuaddr < (memdesc->gpuaddr + memdesc->size)))
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hostptr = kgsl_memdesc_map(memdesc);
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return hostptr != NULL ? hostptr + (gpuaddr - memdesc->gpuaddr) : NULL;
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}
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static inline int timestamp_cmp(unsigned int a, unsigned int b)
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{
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/* check for equal */
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if (a == b)
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return 0;
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/* check for greater-than for non-rollover case */
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if ((a > b) && (a - b < KGSL_TIMESTAMP_WINDOW))
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return 1;
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/* check for greater-than for rollover case
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* note that <= is required to ensure that consistent
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* results are returned for values whose difference is
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* equal to the window size
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*/
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a += KGSL_TIMESTAMP_WINDOW;
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b += KGSL_TIMESTAMP_WINDOW;
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return ((a > b) && (a - b <= KGSL_TIMESTAMP_WINDOW)) ? 1 : -1;
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}
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/**
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* kgsl_schedule_work() - Schedule a work item on the KGSL workqueue
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* @work: work item to schedule
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*/
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static inline void kgsl_schedule_work(struct work_struct *work)
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{
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queue_work(kgsl_driver.workqueue, work);
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}
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static inline int
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kgsl_mem_entry_get(struct kgsl_mem_entry *entry)
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{
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if (entry)
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return kref_get_unless_zero(&entry->refcount);
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return 0;
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}
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static inline void
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kgsl_mem_entry_put(struct kgsl_mem_entry *entry)
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{
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if (entry)
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kref_put(&entry->refcount, kgsl_mem_entry_destroy);
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}
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/**
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* kgsl_mem_entry_put_deferred() - Schedule a task to put the memory entry
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* @entry: Mem entry to put
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*
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* This function is for atomic contexts where a normal kgsl_mem_entry_put()
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* would result in the memory entry getting destroyed and possibly taking
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* mutexes along the way. Schedule the work to happen outside of the atomic
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* context.
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*/
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static inline void kgsl_mem_entry_put_deferred(struct kgsl_mem_entry *entry)
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{
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if (entry != NULL)
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queue_work(kgsl_driver.mem_workqueue, &entry->work);
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}
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/*
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* kgsl_addr_range_overlap() - Checks if 2 ranges overlap
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* @gpuaddr1: Start of first address range
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* @size1: Size of first address range
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* @gpuaddr2: Start of second address range
|
|
* @size2: Size of second address range
|
|
*
|
|
* Function returns true if the 2 given address ranges overlap
|
|
* else false
|
|
*/
|
|
static inline bool kgsl_addr_range_overlap(uint64_t gpuaddr1,
|
|
uint64_t size1, uint64_t gpuaddr2, uint64_t size2)
|
|
{
|
|
if ((size1 > (U64_MAX - gpuaddr1)) || (size2 > (U64_MAX - gpuaddr2)))
|
|
return false;
|
|
return !(((gpuaddr1 + size1) <= gpuaddr2) ||
|
|
(gpuaddr1 >= (gpuaddr2 + size2)));
|
|
}
|
|
|
|
/**
|
|
* kgsl_malloc() - Use either kzalloc or vmalloc to allocate memory
|
|
* @size: Size of the desired allocation
|
|
*
|
|
* Allocate a block of memory for the driver - if it is small try to allocate it
|
|
* from kmalloc (fast!) otherwise we need to go with vmalloc (safe!)
|
|
*/
|
|
static inline void *kgsl_malloc(size_t size)
|
|
{
|
|
if (size <= PAGE_SIZE)
|
|
return kzalloc(size, GFP_KERNEL);
|
|
|
|
return vmalloc(size);
|
|
}
|
|
|
|
/**
|
|
* kgsl_free() - Free memory allocated by kgsl_malloc()
|
|
* @ptr: Pointer to the memory to free
|
|
*
|
|
* Free the memory be it in vmalloc or kmalloc space
|
|
*/
|
|
static inline void kgsl_free(void *ptr)
|
|
{
|
|
if (ptr != NULL && is_vmalloc_addr(ptr))
|
|
return vfree(ptr);
|
|
|
|
kfree(ptr);
|
|
}
|
|
|
|
static inline int _copy_from_user(void *dest, void __user *src,
|
|
unsigned int ksize, unsigned int usize)
|
|
{
|
|
unsigned int copy = ksize < usize ? ksize : usize;
|
|
|
|
if (copy == 0)
|
|
return -EINVAL;
|
|
|
|
return copy_from_user(dest, src, copy) ? -EFAULT : 0;
|
|
}
|
|
|
|
static inline void __user *to_user_ptr(uint64_t address)
|
|
{
|
|
return (void __user *)(uintptr_t)address;
|
|
}
|
|
|
|
#endif /* __KGSL_H */
|