forked from Minki/linux
41f93af900
The QMSS (Queue Manager Sub System) found on Keystone SOCs is one of the main hardware sub system which forms the backbone of the Keystone Multi-core Navigator. QMSS consist of queue managers, packed-data structure processors(PDSP), linking RAM, descriptor pools and infrastructure Packet DMA. The Queue Manager is a hardware module that is responsible for accelerating management of the packet queues. Packets are queued/de-queued by writing or reading descriptor address to a particular memory mapped location. The PDSPs perform QMSS related functions like accumulation, QoS, or event management. Linking RAM registers are used to link the descriptors which are stored in descriptor RAM. Descriptor RAM is configurable as internal or external memory. The QMSS driver manages the PDSP setups, linking RAM regions, queue pool management (allocation, push, pop and notify) and descriptor pool management. The specifics on the device tree bindings for QMSS can be found in: Documentation/devicetree/bindings/soc/keystone-navigator-qmss.txt Cc: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Cc: Kumar Gala <galak@codeaurora.org> Cc: Olof Johansson <olof@lixom.net> Cc: Arnd Bergmann <arnd@arndb.de> Cc: Grant Likely <grant.likely@linaro.org> Cc: Rob Herring <robh+dt@kernel.org> Cc: Mark Rutland <mark.rutland@arm.com> Signed-off-by: Sandeep Nair <sandeep_n@ti.com> Signed-off-by: Santosh Shilimkar <santosh.shilimkar@ti.com>
387 lines
9.5 KiB
C
387 lines
9.5 KiB
C
/*
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* Keystone Navigator QMSS driver internal header
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*
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* Copyright (C) 2014 Texas Instruments Incorporated - http://www.ti.com
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* Author: Sandeep Nair <sandeep_n@ti.com>
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* Cyril Chemparathy <cyril@ti.com>
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* Santosh Shilimkar <santosh.shilimkar@ti.com>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* 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, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*/
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#ifndef __KNAV_QMSS_H__
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#define __KNAV_QMSS_H__
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#define THRESH_GTE BIT(7)
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#define THRESH_LT 0
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#define PDSP_CTRL_PC_MASK 0xffff0000
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#define PDSP_CTRL_SOFT_RESET BIT(0)
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#define PDSP_CTRL_ENABLE BIT(1)
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#define PDSP_CTRL_RUNNING BIT(15)
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#define ACC_MAX_CHANNEL 48
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#define ACC_DEFAULT_PERIOD 25 /* usecs */
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#define ACC_CHANNEL_INT_BASE 2
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#define ACC_LIST_ENTRY_TYPE 1
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#define ACC_LIST_ENTRY_WORDS (1 << ACC_LIST_ENTRY_TYPE)
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#define ACC_LIST_ENTRY_QUEUE_IDX 0
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#define ACC_LIST_ENTRY_DESC_IDX (ACC_LIST_ENTRY_WORDS - 1)
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#define ACC_CMD_DISABLE_CHANNEL 0x80
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#define ACC_CMD_ENABLE_CHANNEL 0x81
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#define ACC_CFG_MULTI_QUEUE BIT(21)
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#define ACC_INTD_OFFSET_EOI (0x0010)
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#define ACC_INTD_OFFSET_COUNT(ch) (0x0300 + 4 * (ch))
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#define ACC_INTD_OFFSET_STATUS(ch) (0x0200 + 4 * ((ch) / 32))
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#define RANGE_MAX_IRQS 64
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#define ACC_DESCS_MAX SZ_1K
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#define ACC_DESCS_MASK (ACC_DESCS_MAX - 1)
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#define DESC_SIZE_MASK 0xful
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#define DESC_PTR_MASK (~DESC_SIZE_MASK)
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#define KNAV_NAME_SIZE 32
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enum knav_acc_result {
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ACC_RET_IDLE,
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ACC_RET_SUCCESS,
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ACC_RET_INVALID_COMMAND,
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ACC_RET_INVALID_CHANNEL,
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ACC_RET_INACTIVE_CHANNEL,
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ACC_RET_ACTIVE_CHANNEL,
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ACC_RET_INVALID_QUEUE,
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ACC_RET_INVALID_RET,
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};
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struct knav_reg_config {
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u32 revision;
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u32 __pad1;
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u32 divert;
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u32 link_ram_base0;
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u32 link_ram_size0;
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u32 link_ram_base1;
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u32 __pad2[2];
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u32 starvation[0];
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};
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struct knav_reg_region {
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u32 base;
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u32 start_index;
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u32 size_count;
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u32 __pad;
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};
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struct knav_reg_pdsp_regs {
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u32 control;
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u32 status;
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u32 cycle_count;
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u32 stall_count;
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};
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struct knav_reg_acc_command {
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u32 command;
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u32 queue_mask;
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u32 list_phys;
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u32 queue_num;
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u32 timer_config;
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};
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struct knav_link_ram_block {
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dma_addr_t phys;
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void *virt;
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size_t size;
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};
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struct knav_acc_info {
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u32 pdsp_id;
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u32 start_channel;
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u32 list_entries;
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u32 pacing_mode;
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u32 timer_count;
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int mem_size;
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int list_size;
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struct knav_pdsp_info *pdsp;
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};
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struct knav_acc_channel {
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u32 channel;
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u32 list_index;
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u32 open_mask;
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u32 *list_cpu[2];
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dma_addr_t list_dma[2];
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char name[KNAV_NAME_SIZE];
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atomic_t retrigger_count;
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};
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struct knav_pdsp_info {
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const char *name;
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struct knav_reg_pdsp_regs __iomem *regs;
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union {
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void __iomem *command;
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struct knav_reg_acc_command __iomem *acc_command;
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u32 __iomem *qos_command;
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};
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void __iomem *intd;
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u32 __iomem *iram;
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const char *firmware;
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u32 id;
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struct list_head list;
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};
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struct knav_qmgr_info {
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unsigned start_queue;
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unsigned num_queues;
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struct knav_reg_config __iomem *reg_config;
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struct knav_reg_region __iomem *reg_region;
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struct knav_reg_queue __iomem *reg_push, *reg_pop, *reg_peek;
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void __iomem *reg_status;
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struct list_head list;
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};
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#define KNAV_NUM_LINKRAM 2
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/**
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* struct knav_queue_stats: queue statistics
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* pushes: number of push operations
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* pops: number of pop operations
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* push_errors: number of push errors
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* pop_errors: number of pop errors
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* notifies: notifier counts
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*/
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struct knav_queue_stats {
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atomic_t pushes;
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atomic_t pops;
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atomic_t push_errors;
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atomic_t pop_errors;
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atomic_t notifies;
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};
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/**
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* struct knav_reg_queue: queue registers
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* @entry_count: valid entries in the queue
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* @byte_count: total byte count in thhe queue
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* @packet_size: packet size for the queue
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* @ptr_size_thresh: packet pointer size threshold
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*/
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struct knav_reg_queue {
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u32 entry_count;
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u32 byte_count;
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u32 packet_size;
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u32 ptr_size_thresh;
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};
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/**
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* struct knav_region: qmss region info
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* @dma_start, dma_end: start and end dma address
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* @virt_start, virt_end: start and end virtual address
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* @desc_size: descriptor size
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* @used_desc: consumed descriptors
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* @id: region number
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* @num_desc: total descriptors
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* @link_index: index of the first descriptor
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* @name: region name
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* @list: instance in the device's region list
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* @pools: list of descriptor pools in the region
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*/
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struct knav_region {
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dma_addr_t dma_start, dma_end;
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void *virt_start, *virt_end;
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unsigned desc_size;
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unsigned used_desc;
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unsigned id;
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unsigned num_desc;
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unsigned link_index;
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const char *name;
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struct list_head list;
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struct list_head pools;
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};
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/**
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* struct knav_pool: qmss pools
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* @dev: device pointer
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* @region: qmss region info
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* @queue: queue registers
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* @kdev: qmss device pointer
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* @region_offset: offset from the base
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* @num_desc: total descriptors
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* @desc_size: descriptor size
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* @region_id: region number
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* @name: pool name
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* @list: list head
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* @region_inst: instance in the region's pool list
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*/
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struct knav_pool {
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struct device *dev;
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struct knav_region *region;
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struct knav_queue *queue;
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struct knav_device *kdev;
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int region_offset;
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int num_desc;
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int desc_size;
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int region_id;
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const char *name;
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struct list_head list;
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struct list_head region_inst;
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};
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/**
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* struct knav_queue_inst: qmss queue instace properties
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* @descs: descriptor pointer
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* @desc_head, desc_tail, desc_count: descriptor counters
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* @acc: accumulator channel pointer
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* @kdev: qmss device pointer
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* @range: range info
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* @qmgr: queue manager info
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* @id: queue instace id
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* @irq_num: irq line number
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* @notify_needed: notifier needed based on queue type
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* @num_notifiers: total notifiers
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* @handles: list head
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* @name: queue instance name
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* @irq_name: irq line name
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*/
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struct knav_queue_inst {
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u32 *descs;
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atomic_t desc_head, desc_tail, desc_count;
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struct knav_acc_channel *acc;
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struct knav_device *kdev;
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struct knav_range_info *range;
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struct knav_qmgr_info *qmgr;
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u32 id;
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int irq_num;
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int notify_needed;
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atomic_t num_notifiers;
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struct list_head handles;
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const char *name;
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const char *irq_name;
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};
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/**
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* struct knav_queue: qmss queue properties
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* @reg_push, reg_pop, reg_peek: push, pop queue registers
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* @inst: qmss queue instace properties
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* @notifier_fn: notifier function
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* @notifier_fn_arg: notifier function argument
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* @notifier_enabled: notier enabled for a give queue
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* @rcu: rcu head
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* @flags: queue flags
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* @list: list head
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*/
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struct knav_queue {
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struct knav_reg_queue __iomem *reg_push, *reg_pop, *reg_peek;
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struct knav_queue_inst *inst;
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struct knav_queue_stats stats;
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knav_queue_notify_fn notifier_fn;
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void *notifier_fn_arg;
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atomic_t notifier_enabled;
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struct rcu_head rcu;
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unsigned flags;
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struct list_head list;
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};
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struct knav_device {
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struct device *dev;
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unsigned base_id;
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unsigned num_queues;
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unsigned num_queues_in_use;
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unsigned inst_shift;
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struct knav_link_ram_block link_rams[KNAV_NUM_LINKRAM];
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void *instances;
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struct list_head regions;
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struct list_head queue_ranges;
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struct list_head pools;
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struct list_head pdsps;
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struct list_head qmgrs;
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};
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struct knav_range_ops {
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int (*init_range)(struct knav_range_info *range);
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int (*free_range)(struct knav_range_info *range);
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int (*init_queue)(struct knav_range_info *range,
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struct knav_queue_inst *inst);
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int (*open_queue)(struct knav_range_info *range,
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struct knav_queue_inst *inst, unsigned flags);
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int (*close_queue)(struct knav_range_info *range,
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struct knav_queue_inst *inst);
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int (*set_notify)(struct knav_range_info *range,
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struct knav_queue_inst *inst, bool enabled);
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};
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struct knav_irq_info {
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int irq;
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u32 cpu_map;
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};
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struct knav_range_info {
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const char *name;
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struct knav_device *kdev;
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unsigned queue_base;
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unsigned num_queues;
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void *queue_base_inst;
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unsigned flags;
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struct list_head list;
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struct knav_range_ops *ops;
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struct knav_acc_info acc_info;
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struct knav_acc_channel *acc;
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unsigned num_irqs;
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struct knav_irq_info irqs[RANGE_MAX_IRQS];
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};
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#define RANGE_RESERVED BIT(0)
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#define RANGE_HAS_IRQ BIT(1)
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#define RANGE_HAS_ACCUMULATOR BIT(2)
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#define RANGE_MULTI_QUEUE BIT(3)
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#define for_each_region(kdev, region) \
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list_for_each_entry(region, &kdev->regions, list)
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#define first_region(kdev) \
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list_first_entry(&kdev->regions, \
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struct knav_region, list)
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#define for_each_queue_range(kdev, range) \
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list_for_each_entry(range, &kdev->queue_ranges, list)
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#define first_queue_range(kdev) \
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list_first_entry(&kdev->queue_ranges, \
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struct knav_range_info, list)
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#define for_each_pool(kdev, pool) \
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list_for_each_entry(pool, &kdev->pools, list)
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#define for_each_pdsp(kdev, pdsp) \
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list_for_each_entry(pdsp, &kdev->pdsps, list)
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#define for_each_qmgr(kdev, qmgr) \
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list_for_each_entry(qmgr, &kdev->qmgrs, list)
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static inline struct knav_pdsp_info *
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knav_find_pdsp(struct knav_device *kdev, unsigned pdsp_id)
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{
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struct knav_pdsp_info *pdsp;
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for_each_pdsp(kdev, pdsp)
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if (pdsp_id == pdsp->id)
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return pdsp;
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return NULL;
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}
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extern int knav_init_acc_range(struct knav_device *kdev,
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struct device_node *node,
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struct knav_range_info *range);
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extern void knav_queue_notify(struct knav_queue_inst *inst);
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#endif /* __KNAV_QMSS_H__ */
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