468 lines
14 KiB
C
468 lines
14 KiB
C
/* Copyright (c) 2002,2007-2013, 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_DEVICE_H
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#define __KGSL_DEVICE_H
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#include <linux/idr.h>
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#include <linux/pm_qos.h>
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#include "kgsl.h"
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#include "kgsl_mmu.h"
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#include "kgsl_pwrctrl.h"
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#include "kgsl_log.h"
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#include "kgsl_pwrscale.h"
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#include <linux/sync.h>
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#define KGSL_TIMEOUT_NONE 0
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#define KGSL_TIMEOUT_DEFAULT 0xFFFFFFFF
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#define KGSL_TIMEOUT_PART 50 /* 50 msec */
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#define KGSL_TIMEOUT_LONG_IB_DETECTION 2000 /* 2 sec*/
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#define FIRST_TIMEOUT (HZ / 2)
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/* KGSL device state is initialized to INIT when platform_probe *
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* sucessfully initialized the device. Once a device has been opened *
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* (started) it becomes active. NAP implies that only low latency *
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* resources (for now clocks on some platforms) are off. SLEEP implies *
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* that the KGSL module believes a device is idle (has been inactive *
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* past its timer) and all system resources are released. SUSPEND is *
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* requested by the kernel and will be enforced upon all open devices. */
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#define KGSL_STATE_NONE 0x00000000
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#define KGSL_STATE_INIT 0x00000001
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#define KGSL_STATE_ACTIVE 0x00000002
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#define KGSL_STATE_NAP 0x00000004
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#define KGSL_STATE_SLEEP 0x00000008
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#define KGSL_STATE_SUSPEND 0x00000010
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#define KGSL_STATE_HUNG 0x00000020
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#define KGSL_STATE_DUMP_AND_FT 0x00000040
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#define KGSL_STATE_SLUMBER 0x00000080
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#define KGSL_GRAPHICS_MEMORY_LOW_WATERMARK 0x1000000
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#define KGSL_IS_PAGE_ALIGNED(addr) (!((addr) & (~PAGE_MASK)))
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struct kgsl_device;
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struct platform_device;
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struct kgsl_device_private;
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struct kgsl_context;
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struct kgsl_power_stats;
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struct kgsl_event;
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struct kgsl_functable {
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/* Mandatory functions - these functions must be implemented
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by the client device. The driver will not check for a NULL
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pointer before calling the hook.
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*/
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void (*regread) (struct kgsl_device *device,
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unsigned int offsetwords, unsigned int *value);
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void (*regwrite) (struct kgsl_device *device,
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unsigned int offsetwords, unsigned int value);
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int (*idle) (struct kgsl_device *device);
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unsigned int (*isidle) (struct kgsl_device *device);
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int (*suspend_context) (struct kgsl_device *device);
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int (*init) (struct kgsl_device *device);
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int (*start) (struct kgsl_device *device);
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int (*stop) (struct kgsl_device *device);
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int (*getproperty) (struct kgsl_device *device,
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enum kgsl_property_type type, void *value,
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unsigned int sizebytes);
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int (*waittimestamp) (struct kgsl_device *device,
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struct kgsl_context *context, unsigned int timestamp,
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unsigned int msecs);
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unsigned int (*readtimestamp) (struct kgsl_device *device,
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struct kgsl_context *context, enum kgsl_timestamp_type type);
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int (*issueibcmds) (struct kgsl_device_private *dev_priv,
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struct kgsl_context *context, struct kgsl_ibdesc *ibdesc,
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unsigned int sizedwords, uint32_t *timestamp,
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unsigned int flags);
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int (*setup_pt)(struct kgsl_device *device,
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struct kgsl_pagetable *pagetable);
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void (*cleanup_pt)(struct kgsl_device *device,
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struct kgsl_pagetable *pagetable);
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void (*power_stats)(struct kgsl_device *device,
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struct kgsl_power_stats *stats);
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void (*irqctrl)(struct kgsl_device *device, int state);
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unsigned int (*gpuid)(struct kgsl_device *device, unsigned int *chipid);
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void * (*snapshot)(struct kgsl_device *device, void *snapshot,
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int *remain, int hang);
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irqreturn_t (*irq_handler)(struct kgsl_device *device);
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/* Optional functions - these functions are not mandatory. The
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driver will check that the function pointer is not NULL before
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calling the hook */
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void (*setstate) (struct kgsl_device *device, unsigned int context_id,
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uint32_t flags);
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int (*drawctxt_create) (struct kgsl_device *device,
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struct kgsl_pagetable *pagetable, struct kgsl_context *context,
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uint32_t *flags);
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void (*drawctxt_destroy) (struct kgsl_device *device,
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struct kgsl_context *context);
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long (*ioctl) (struct kgsl_device_private *dev_priv,
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unsigned int cmd, void *data);
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int (*setproperty) (struct kgsl_device *device,
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enum kgsl_property_type type, void *value,
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unsigned int sizebytes);
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int (*postmortem_dump) (struct kgsl_device *device, int manual);
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int (*next_event)(struct kgsl_device *device,
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struct kgsl_event *event);
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};
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/* MH register values */
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struct kgsl_mh {
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unsigned int mharb;
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unsigned int mh_intf_cfg1;
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unsigned int mh_intf_cfg2;
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uint32_t mpu_base;
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int mpu_range;
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};
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struct kgsl_event {
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struct kgsl_context *context;
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uint32_t timestamp;
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void (*func)(struct kgsl_device *, void *, u32, u32);
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void *priv;
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struct list_head list;
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void *owner;
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unsigned int created;
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};
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struct kgsl_device {
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struct device *dev;
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const char *name;
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unsigned int ver_major;
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unsigned int ver_minor;
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uint32_t flags;
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enum kgsl_deviceid id;
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/* Starting physical address for GPU registers */
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unsigned long reg_phys;
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/* Starting Kernel virtual address for GPU registers */
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void *reg_virt;
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/* Total memory size for all GPU registers */
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unsigned int reg_len;
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/* Kernel virtual address for GPU shader memory */
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void *shader_mem_virt;
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/* Starting physical address for GPU shader memory */
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unsigned long shader_mem_phys;
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/* GPU shader memory size */
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unsigned int shader_mem_len;
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struct kgsl_memdesc memstore;
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const char *iomemname;
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const char *shadermemname;
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struct kgsl_mh mh;
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struct kgsl_mmu mmu;
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struct completion hwaccess_gate;
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const struct kgsl_functable *ftbl;
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struct work_struct idle_check_ws;
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struct work_struct hang_check_ws;
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struct timer_list idle_timer;
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struct timer_list hang_timer;
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struct kgsl_pwrctrl pwrctrl;
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int open_count;
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struct mutex mutex;
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uint32_t state;
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uint32_t requested_state;
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unsigned int active_cnt;
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struct completion suspend_gate;
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wait_queue_head_t wait_queue;
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struct workqueue_struct *work_queue;
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struct device *parentdev;
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struct completion ft_gate;
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struct dentry *d_debugfs;
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struct idr context_idr;
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void *snapshot; /* Pointer to the snapshot memory region */
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int snapshot_maxsize; /* Max size of the snapshot region */
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int snapshot_size; /* Current size of the snapshot region */
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u32 snapshot_timestamp; /* Timestamp of the last valid snapshot */
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u32 snapshot_faultcount; /* Total number of faults since boot */
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int snapshot_frozen; /* 1 if the snapshot output is frozen until
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it gets read by the user. This avoids
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losing the output on multiple hangs */
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struct kobject snapshot_kobj;
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/*
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* List of GPU buffers that have been frozen in memory until they can be
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* dumped
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*/
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struct list_head snapshot_obj_list;
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/* Logging levels */
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int cmd_log;
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int ctxt_log;
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int drv_log;
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int mem_log;
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int pwr_log;
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int ft_log;
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int pm_dump_enable;
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struct kgsl_pwrscale pwrscale;
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struct kobject pwrscale_kobj;
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struct work_struct ts_expired_ws;
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struct list_head events;
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struct list_head events_pending_list;
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s64 on_time;
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/* Postmortem Control switches */
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int pm_regs_enabled;
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int pm_ib_enabled;
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int reset_counter; /* Track how many GPU core resets have occured */
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int cff_dump_enable;
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};
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void kgsl_process_events(struct work_struct *work);
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#define KGSL_DEVICE_COMMON_INIT(_dev) \
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.hwaccess_gate = COMPLETION_INITIALIZER((_dev).hwaccess_gate),\
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.suspend_gate = COMPLETION_INITIALIZER((_dev).suspend_gate),\
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.ft_gate = COMPLETION_INITIALIZER((_dev).ft_gate),\
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.idle_check_ws = __WORK_INITIALIZER((_dev).idle_check_ws,\
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kgsl_idle_check),\
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.hang_check_ws = __WORK_INITIALIZER((_dev).hang_check_ws,\
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kgsl_hang_check),\
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.ts_expired_ws = __WORK_INITIALIZER((_dev).ts_expired_ws,\
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kgsl_process_events),\
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.context_idr = IDR_INIT((_dev).context_idr),\
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.events = LIST_HEAD_INIT((_dev).events),\
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.events_pending_list = LIST_HEAD_INIT((_dev).events_pending_list), \
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.wait_queue = __WAIT_QUEUE_HEAD_INITIALIZER((_dev).wait_queue),\
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.mutex = __MUTEX_INITIALIZER((_dev).mutex),\
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.state = KGSL_STATE_INIT,\
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.ver_major = DRIVER_VERSION_MAJOR,\
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.ver_minor = DRIVER_VERSION_MINOR
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/**
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* struct kgsl_context - Master structure for a KGSL context object
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* @refcount - kref object for reference counting the context
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* @id - integer identifier for the context
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* @dev_priv - pointer to the owning device instance
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* @devctxt - pointer to the device specific context information
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* @reset_status - status indication whether a gpu reset occured and whether
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* this context was responsible for causing it
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* @wait_on_invalid_ts - flag indicating if this context has tried to wait on a
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* bad timestamp
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* @timeline - sync timeline used to create fences that can be signaled when a
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* sync_pt timestamp expires
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* @events - list head of pending events for this context
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* @events_list - list node for the list of all contexts that have pending events
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*/
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struct kgsl_context {
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struct kref refcount;
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uint32_t id;
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struct kgsl_device_private *dev_priv;
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void *devctxt;
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unsigned int reset_status;
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bool wait_on_invalid_ts;
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struct sync_timeline *timeline;
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struct list_head events;
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struct list_head events_list;
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};
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struct kgsl_process_private {
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unsigned int refcnt;
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pid_t pid;
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spinlock_t mem_lock;
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/* General refcount for process private struct obj */
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struct kref refcount;
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/* Mutex to synchronize access to each process_private struct obj */
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struct mutex process_private_mutex;
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struct rb_root mem_rb;
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struct idr mem_idr;
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struct kgsl_pagetable *pagetable;
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struct list_head list;
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struct kobject kobj;
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struct dentry *debug_root;
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struct {
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unsigned int cur;
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unsigned int max;
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} stats[KGSL_MEM_ENTRY_MAX];
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};
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struct kgsl_device_private {
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struct kgsl_device *device;
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struct kgsl_process_private *process_priv;
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};
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struct kgsl_power_stats {
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s64 total_time;
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s64 busy_time;
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};
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struct kgsl_device *kgsl_get_device(int dev_idx);
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static inline void kgsl_process_add_stats(struct kgsl_process_private *priv,
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unsigned int type, size_t size)
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{
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priv->stats[type].cur += size;
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if (priv->stats[type].max < priv->stats[type].cur)
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priv->stats[type].max = priv->stats[type].cur;
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}
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static inline void kgsl_regread(struct kgsl_device *device,
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unsigned int offsetwords,
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unsigned int *value)
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{
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device->ftbl->regread(device, offsetwords, value);
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}
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static inline void kgsl_regwrite(struct kgsl_device *device,
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unsigned int offsetwords,
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unsigned int value)
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{
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device->ftbl->regwrite(device, offsetwords, value);
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}
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static inline int kgsl_idle(struct kgsl_device *device)
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{
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return device->ftbl->idle(device);
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}
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static inline unsigned int kgsl_gpuid(struct kgsl_device *device,
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unsigned int *chipid)
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{
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return device->ftbl->gpuid(device, chipid);
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}
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static inline unsigned int kgsl_readtimestamp(struct kgsl_device *device,
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struct kgsl_context *context,
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enum kgsl_timestamp_type type)
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{
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return device->ftbl->readtimestamp(device, context, type);
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}
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static inline int kgsl_create_device_sysfs_files(struct device *root,
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const struct device_attribute **list)
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{
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int ret = 0, i;
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for (i = 0; list[i] != NULL; i++)
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ret |= device_create_file(root, list[i]);
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return ret;
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}
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static inline void kgsl_remove_device_sysfs_files(struct device *root,
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const struct device_attribute **list)
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{
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int i;
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for (i = 0; list[i] != NULL; i++)
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device_remove_file(root, list[i]);
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}
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static inline struct kgsl_mmu *
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kgsl_get_mmu(struct kgsl_device *device)
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{
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return (struct kgsl_mmu *) (device ? &device->mmu : NULL);
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}
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static inline struct kgsl_device *kgsl_device_from_dev(struct device *dev)
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{
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int i;
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for (i = 0; i < KGSL_DEVICE_MAX; i++) {
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if (kgsl_driver.devp[i] && kgsl_driver.devp[i]->dev == dev)
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return kgsl_driver.devp[i];
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}
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return NULL;
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}
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static inline int kgsl_create_device_workqueue(struct kgsl_device *device)
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{
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device->work_queue = create_singlethread_workqueue(device->name);
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if (!device->work_queue) {
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KGSL_DRV_ERR(device,
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"create_singlethread_workqueue(%s) failed\n",
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device->name);
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return -EINVAL;
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}
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return 0;
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}
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static inline struct kgsl_context *
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kgsl_find_context(struct kgsl_device_private *dev_priv, uint32_t id)
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{
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struct kgsl_context *ctxt =
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idr_find(&dev_priv->device->context_idr, id);
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/* Make sure that the context belongs to the current instance so
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that other processes can't guess context IDs and mess things up */
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return (ctxt && ctxt->dev_priv == dev_priv) ? ctxt : NULL;
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}
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int kgsl_check_timestamp(struct kgsl_device *device,
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struct kgsl_context *context, unsigned int timestamp);
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int kgsl_device_platform_probe(struct kgsl_device *device);
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void kgsl_device_platform_remove(struct kgsl_device *device);
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const char *kgsl_pwrstate_to_str(unsigned int state);
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int kgsl_device_snapshot_init(struct kgsl_device *device);
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int kgsl_device_snapshot(struct kgsl_device *device, int hang);
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void kgsl_device_snapshot_close(struct kgsl_device *device);
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static inline struct kgsl_device_platform_data *
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kgsl_device_get_drvdata(struct kgsl_device *dev)
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{
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struct platform_device *pdev =
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container_of(dev->parentdev, struct platform_device, dev);
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return pdev->dev.platform_data;
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}
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/**
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* kgsl_context_get - Get context reference count
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* @context
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*
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* Asynchronous code that holds a pointer to a context
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* must hold a reference count on it. The kgsl device
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* mutex must be held while the context reference count
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* is changed.
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*/
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static inline void
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kgsl_context_get(struct kgsl_context *context)
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{
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kref_get(&context->refcount);
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}
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void kgsl_context_destroy(struct kref *kref);
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/**
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* kgsl_context_put - Release context reference count
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* @context
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*
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*/
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static inline void
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kgsl_context_put(struct kgsl_context *context)
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{
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kref_put(&context->refcount, kgsl_context_destroy);
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}
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#endif /* __KGSL_DEVICE_H */
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