350 lines
12 KiB
C
350 lines
12 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Copyright(c) 2021-2022 Intel Corporation. All rights reserved.
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*
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* Authors: Cezary Rojewski <cezary.rojewski@intel.com>
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* Amadeusz Slawinski <amadeuszx.slawinski@linux.intel.com>
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*/
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#ifndef __SOUND_SOC_INTEL_AVS_H
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#define __SOUND_SOC_INTEL_AVS_H
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#include <linux/device.h>
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#include <linux/firmware.h>
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#include <linux/kfifo.h>
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#include <sound/hda_codec.h>
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#include <sound/hda_register.h>
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#include <sound/soc-component.h>
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#include "messages.h"
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#include "registers.h"
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struct avs_dev;
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struct avs_tplg;
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struct avs_tplg_library;
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struct avs_soc_component;
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struct avs_ipc_msg;
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/*
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* struct avs_dsp_ops - Platform-specific DSP operations
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*
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* @power: Power on or off DSP cores
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* @reset: Enter or exit reset state on DSP cores
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* @stall: Stall or run DSP cores
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* @irq_handler: Top half of IPC servicing
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* @irq_thread: Bottom half of IPC servicing
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* @int_control: Enable or disable IPC interrupts
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*/
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struct avs_dsp_ops {
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int (* const power)(struct avs_dev *, u32, bool);
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int (* const reset)(struct avs_dev *, u32, bool);
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int (* const stall)(struct avs_dev *, u32, bool);
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irqreturn_t (* const irq_handler)(int, void *);
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irqreturn_t (* const irq_thread)(int, void *);
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void (* const int_control)(struct avs_dev *, bool);
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int (* const load_basefw)(struct avs_dev *, struct firmware *);
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int (* const load_lib)(struct avs_dev *, struct firmware *, u32);
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int (* const transfer_mods)(struct avs_dev *, bool, struct avs_module_entry *, u32);
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int (* const enable_logs)(struct avs_dev *, enum avs_log_enable, u32, u32, unsigned long,
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u32 *);
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int (* const log_buffer_offset)(struct avs_dev *, u32);
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int (* const log_buffer_status)(struct avs_dev *, union avs_notify_msg *);
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int (* const coredump)(struct avs_dev *, union avs_notify_msg *);
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bool (* const d0ix_toggle)(struct avs_dev *, struct avs_ipc_msg *, bool);
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int (* const set_d0ix)(struct avs_dev *, bool);
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};
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#define avs_dsp_op(adev, op, ...) \
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((adev)->spec->dsp_ops->op(adev, ## __VA_ARGS__))
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extern const struct avs_dsp_ops skl_dsp_ops;
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extern const struct avs_dsp_ops apl_dsp_ops;
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#define AVS_PLATATTR_CLDMA BIT_ULL(0)
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#define AVS_PLATATTR_IMR BIT_ULL(1)
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#define avs_platattr_test(adev, attr) \
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((adev)->spec->attributes & AVS_PLATATTR_##attr)
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/* Platform specific descriptor */
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struct avs_spec {
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const char *name;
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const struct avs_dsp_ops *const dsp_ops;
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struct avs_fw_version min_fw_version; /* anything below is rejected */
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const u32 core_init_mask; /* used during DSP boot */
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const u64 attributes; /* bitmask of AVS_PLATATTR_* */
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const u32 sram_base_offset;
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const u32 sram_window_size;
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const u32 rom_status;
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};
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struct avs_fw_entry {
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char *name;
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const struct firmware *fw;
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struct list_head node;
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};
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struct avs_debug {
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struct kfifo trace_fifo;
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spinlock_t fifo_lock; /* serialize I/O for trace_fifo */
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spinlock_t trace_lock; /* serialize debug window I/O between each LOG_BUFFER_STATUS */
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wait_queue_head_t trace_waitq;
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u32 aging_timer_period;
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u32 fifo_full_timer_period;
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u32 logged_resources; /* context dependent: core or library */
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};
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/*
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* struct avs_dev - Intel HD-Audio driver data
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*
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* @dev: PCI device
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* @dsp_ba: DSP bar address
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* @spec: platform-specific descriptor
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* @fw_cfg: Firmware configuration, obtained through FW_CONFIG message
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* @hw_cfg: Hardware configuration, obtained through HW_CONFIG message
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* @mods_info: Available module-types, obtained through MODULES_INFO message
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* @mod_idas: Module instance ID pool, one per module-type
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* @modres_mutex: For synchronizing any @mods_info updates
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* @ppl_ida: Pipeline instance ID pool
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* @fw_list: List of libraries loaded, including base firmware
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*/
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struct avs_dev {
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struct hda_bus base;
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struct device *dev;
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void __iomem *dsp_ba;
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const struct avs_spec *spec;
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struct avs_ipc *ipc;
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struct avs_fw_cfg fw_cfg;
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struct avs_hw_cfg hw_cfg;
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struct avs_mods_info *mods_info;
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struct ida **mod_idas;
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struct mutex modres_mutex;
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struct ida ppl_ida;
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struct list_head fw_list;
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int *core_refs; /* reference count per core */
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char **lib_names;
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struct completion fw_ready;
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struct work_struct probe_work;
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struct nhlt_acpi_table *nhlt;
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struct list_head comp_list;
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struct mutex comp_list_mutex;
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struct list_head path_list;
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spinlock_t path_list_lock;
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struct mutex path_mutex;
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struct avs_debug dbg;
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};
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/* from hda_bus to avs_dev */
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#define hda_to_avs(hda) container_of(hda, struct avs_dev, base)
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/* from hdac_bus to avs_dev */
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#define hdac_to_avs(hdac) hda_to_avs(to_hda_bus(hdac))
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/* from device to avs_dev */
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#define to_avs_dev(dev) \
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({ \
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struct hdac_bus *__bus = dev_get_drvdata(dev); \
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hdac_to_avs(__bus); \
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})
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int avs_dsp_core_power(struct avs_dev *adev, u32 core_mask, bool power);
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int avs_dsp_core_reset(struct avs_dev *adev, u32 core_mask, bool reset);
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int avs_dsp_core_stall(struct avs_dev *adev, u32 core_mask, bool stall);
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int avs_dsp_core_enable(struct avs_dev *adev, u32 core_mask);
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int avs_dsp_core_disable(struct avs_dev *adev, u32 core_mask);
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/* Inter Process Communication */
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struct avs_ipc_msg {
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union {
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u64 header;
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union avs_global_msg glb;
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union avs_reply_msg rsp;
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};
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void *data;
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size_t size;
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};
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/*
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* struct avs_ipc - DSP IPC context
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*
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* @dev: PCI device
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* @rx: Reply message cache
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* @default_timeout_ms: default message timeout in MS
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* @ready: whether firmware is ready and communication is open
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* @rx_completed: whether RX for previously sent TX has been received
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* @rx_lock: for serializing manipulation of rx_* fields
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* @msg_lock: for synchronizing request handling
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* @done_completion: DONE-part of IPC i.e. ROM and ACKs from FW
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* @busy_completion: BUSY-part of IPC i.e. receiving responses from FW
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*/
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struct avs_ipc {
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struct device *dev;
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struct avs_ipc_msg rx;
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u32 default_timeout_ms;
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bool ready;
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atomic_t recovering;
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bool rx_completed;
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spinlock_t rx_lock;
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struct mutex msg_mutex;
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struct completion done_completion;
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struct completion busy_completion;
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struct work_struct recovery_work;
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struct delayed_work d0ix_work;
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atomic_t d0ix_disable_depth;
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bool in_d0ix;
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};
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#define AVS_EIPC EREMOTEIO
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/*
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* IPC handlers may return positive value (firmware error code) what denotes
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* successful HOST <-> DSP communication yet failure to process specific request.
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*
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* Below macro converts returned value to linux kernel error code.
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* All IPC callers MUST use it as soon as firmware error code is consumed.
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*/
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#define AVS_IPC_RET(ret) \
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(((ret) <= 0) ? (ret) : -AVS_EIPC)
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static inline void avs_ipc_err(struct avs_dev *adev, struct avs_ipc_msg *tx,
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const char *name, int error)
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{
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/*
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* If IPC channel is blocked e.g.: due to ongoing recovery,
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* -EPERM error code is expected and thus it's not an actual error.
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*/
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if (error == -EPERM)
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dev_dbg(adev->dev, "%s 0x%08x 0x%08x failed: %d\n", name,
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tx->glb.primary, tx->glb.ext.val, error);
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else
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dev_err(adev->dev, "%s 0x%08x 0x%08x failed: %d\n", name,
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tx->glb.primary, tx->glb.ext.val, error);
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}
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irqreturn_t avs_dsp_irq_handler(int irq, void *dev_id);
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irqreturn_t avs_dsp_irq_thread(int irq, void *dev_id);
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void avs_dsp_process_response(struct avs_dev *adev, u64 header);
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int avs_dsp_send_msg_timeout(struct avs_dev *adev,
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struct avs_ipc_msg *request,
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struct avs_ipc_msg *reply, int timeout);
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int avs_dsp_send_msg(struct avs_dev *adev,
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struct avs_ipc_msg *request, struct avs_ipc_msg *reply);
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/* Two variants below are for messages that control DSP power states. */
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int avs_dsp_send_pm_msg_timeout(struct avs_dev *adev, struct avs_ipc_msg *request,
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struct avs_ipc_msg *reply, int timeout, bool wake_d0i0);
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int avs_dsp_send_pm_msg(struct avs_dev *adev, struct avs_ipc_msg *request,
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struct avs_ipc_msg *reply, bool wake_d0i0);
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int avs_dsp_send_rom_msg_timeout(struct avs_dev *adev,
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struct avs_ipc_msg *request, int timeout);
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int avs_dsp_send_rom_msg(struct avs_dev *adev, struct avs_ipc_msg *request);
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void avs_dsp_interrupt_control(struct avs_dev *adev, bool enable);
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int avs_ipc_init(struct avs_ipc *ipc, struct device *dev);
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void avs_ipc_block(struct avs_ipc *ipc);
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int avs_dsp_disable_d0ix(struct avs_dev *adev);
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int avs_dsp_enable_d0ix(struct avs_dev *adev);
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int skl_log_buffer_offset(struct avs_dev *adev, u32 core);
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/* Firmware resources management */
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int avs_get_module_entry(struct avs_dev *adev, const guid_t *uuid, struct avs_module_entry *entry);
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int avs_get_module_id_entry(struct avs_dev *adev, u32 module_id, struct avs_module_entry *entry);
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int avs_get_module_id(struct avs_dev *adev, const guid_t *uuid);
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bool avs_is_module_ida_empty(struct avs_dev *adev, u32 module_id);
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int avs_module_info_init(struct avs_dev *adev, bool purge);
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void avs_module_info_free(struct avs_dev *adev);
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int avs_module_id_alloc(struct avs_dev *adev, u16 module_id);
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void avs_module_id_free(struct avs_dev *adev, u16 module_id, u8 instance_id);
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int avs_request_firmware(struct avs_dev *adev, const struct firmware **fw_p, const char *name);
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void avs_release_last_firmware(struct avs_dev *adev);
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void avs_release_firmwares(struct avs_dev *adev);
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int avs_dsp_init_module(struct avs_dev *adev, u16 module_id, u8 ppl_instance_id,
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u8 core_id, u8 domain, void *param, u32 param_size,
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u16 *instance_id);
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void avs_dsp_delete_module(struct avs_dev *adev, u16 module_id, u16 instance_id,
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u8 ppl_instance_id, u8 core_id);
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int avs_dsp_create_pipeline(struct avs_dev *adev, u16 req_size, u8 priority,
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bool lp, u16 attributes, u8 *instance_id);
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int avs_dsp_delete_pipeline(struct avs_dev *adev, u8 instance_id);
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/* Firmware loading */
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void avs_hda_clock_gating_enable(struct avs_dev *adev, bool enable);
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void avs_hda_power_gating_enable(struct avs_dev *adev, bool enable);
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void avs_hda_l1sen_enable(struct avs_dev *adev, bool enable);
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int avs_dsp_load_libraries(struct avs_dev *adev, struct avs_tplg_library *libs, u32 num_libs);
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int avs_dsp_boot_firmware(struct avs_dev *adev, bool purge);
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int avs_dsp_first_boot_firmware(struct avs_dev *adev);
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int avs_cldma_load_basefw(struct avs_dev *adev, struct firmware *fw);
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int avs_cldma_load_library(struct avs_dev *adev, struct firmware *lib, u32 id);
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int avs_cldma_transfer_modules(struct avs_dev *adev, bool load,
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struct avs_module_entry *mods, u32 num_mods);
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int avs_hda_load_basefw(struct avs_dev *adev, struct firmware *fw);
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int avs_hda_load_library(struct avs_dev *adev, struct firmware *lib, u32 id);
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int avs_hda_transfer_modules(struct avs_dev *adev, bool load,
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struct avs_module_entry *mods, u32 num_mods);
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/* Soc component members */
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struct avs_soc_component {
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struct snd_soc_component base;
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struct avs_tplg *tplg;
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struct list_head node;
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};
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#define to_avs_soc_component(comp) \
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container_of(comp, struct avs_soc_component, base)
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extern const struct snd_soc_dai_ops avs_dai_fe_ops;
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int avs_dmic_platform_register(struct avs_dev *adev, const char *name);
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int avs_i2s_platform_register(struct avs_dev *adev, const char *name, unsigned long port_mask,
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unsigned long *tdms);
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int avs_hda_platform_register(struct avs_dev *adev, const char *name);
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int avs_register_all_boards(struct avs_dev *adev);
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void avs_unregister_all_boards(struct avs_dev *adev);
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/* Firmware tracing helpers */
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unsigned int __kfifo_fromio_locked(struct kfifo *fifo, const void __iomem *src, unsigned int len,
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spinlock_t *lock);
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#define avs_log_buffer_size(adev) \
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((adev)->fw_cfg.trace_log_bytes / (adev)->hw_cfg.dsp_cores)
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#define avs_log_buffer_addr(adev, core) \
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({ \
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s32 __offset = avs_dsp_op(adev, log_buffer_offset, core); \
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(__offset < 0) ? NULL : \
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(avs_sram_addr(adev, AVS_DEBUG_WINDOW) + __offset); \
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})
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struct apl_log_buffer_layout {
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u32 read_ptr;
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u32 write_ptr;
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u8 buffer[];
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} __packed;
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#define apl_log_payload_size(adev) \
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(avs_log_buffer_size(adev) - sizeof(struct apl_log_buffer_layout))
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#define apl_log_payload_addr(addr) \
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(addr + sizeof(struct apl_log_buffer_layout))
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#endif /* __SOUND_SOC_INTEL_AVS_H */
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