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884122775e
Establish the rule that header files are always included in sorted (POSIX local) order. Standard and private headers are separated by a blank line. Similarly, sort all forward-declarations for structures. Signed-off-by: Alex Elder <elder@linaro.org> Signed-off-by: Paolo Abeni <pabeni@redhat.com>
168 lines
5.6 KiB
C
168 lines
5.6 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/* Copyright (c) 2012-2018, The Linux Foundation. All rights reserved.
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* Copyright (C) 2018-2024 Linaro Ltd.
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*/
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#ifndef _IPA_H_
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#define _IPA_H_
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#include <linux/notifier.h>
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#include <linux/types.h>
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#include "gsi.h"
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#include "ipa_endpoint.h"
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#include "ipa_mem.h"
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#include "ipa_qmi.h"
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#include "ipa_version.h"
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struct net_device;
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struct ipa_interrupt;
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struct ipa_power;
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struct ipa_smp2p;
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/**
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* struct ipa - IPA information
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* @gsi: Embedded GSI structure
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* @version: IPA hardware version
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* @dev: IPA device pointer
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* @completion: Used to signal pipeline clear transfer complete
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* @nb: Notifier block used for remoteproc SSR
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* @notifier: Remoteproc SSR notifier
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* @smp2p: SMP2P information
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* @power: IPA power information
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* @table_addr: DMA address of filter/route table content
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* @table_virt: Virtual address of filter/route table content
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* @route_count: Total number of entries in a routing table
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* @modem_route_count: Number of modem entries in a routing table
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* @filter_count: Maximum number of entries in a filter table
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* @interrupt: IPA Interrupt information
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* @uc_powered: true if power is active by proxy for microcontroller
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* @uc_loaded: true after microcontroller has reported it's ready
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* @reg_virt: Virtual address used for IPA register access
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* @regs: IPA register definitions
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* @mem_addr: DMA address of IPA-local memory space
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* @mem_virt: Virtual address of IPA-local memory space
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* @mem_offset: Offset from @mem_virt used for access to IPA memory
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* @mem_size: Total size (bytes) of memory at @mem_virt
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* @mem_count: Number of entries in the mem array
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* @mem: Array of IPA-local memory region descriptors
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* @imem_iova: I/O virtual address of IPA region in IMEM
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* @imem_size: Size of IMEM region
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* @smem_iova: I/O virtual address of IPA region in SMEM
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* @smem_size: Size of SMEM region
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* @zero_addr: DMA address of preallocated zero-filled memory
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* @zero_virt: Virtual address of preallocated zero-filled memory
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* @zero_size: Size (bytes) of preallocated zero-filled memory
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* @endpoint_count: Number of defined bits in most bitmaps below
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* @available_count: Number of defined bits in the available bitmap
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* @defined: Bitmap of endpoints defined in config data
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* @available: Bitmap of endpoints supported by hardware
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* @filtered: Bitmap of endpoints that support filtering
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* @set_up: Bitmap of endpoints that are set up for use
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* @enabled: Bitmap of currently enabled endpoints
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* @modem_tx_count: Number of defined modem TX endoints
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* @endpoint: Array of endpoint information
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* @channel_map: Mapping of GSI channel to IPA endpoint
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* @name_map: Mapping of IPA endpoint name to IPA endpoint
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* @setup_complete: Flag indicating whether setup stage has completed
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* @modem_state: State of modem (stopped, running)
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* @modem_netdev: Network device structure used for modem
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* @qmi: QMI information
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*/
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struct ipa {
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struct gsi gsi;
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enum ipa_version version;
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struct device *dev;
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struct completion completion;
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struct notifier_block nb;
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void *notifier;
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struct ipa_smp2p *smp2p;
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struct ipa_power *power;
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dma_addr_t table_addr;
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__le64 *table_virt;
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u32 route_count;
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u32 modem_route_count;
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u32 filter_count;
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struct ipa_interrupt *interrupt;
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bool uc_powered;
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bool uc_loaded;
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void __iomem *reg_virt;
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const struct regs *regs;
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dma_addr_t mem_addr;
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void *mem_virt;
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u32 mem_offset;
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u32 mem_size;
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u32 mem_count;
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const struct ipa_mem *mem;
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unsigned long imem_iova;
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size_t imem_size;
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unsigned long smem_iova;
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size_t smem_size;
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dma_addr_t zero_addr;
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void *zero_virt;
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size_t zero_size;
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/* Bitmaps indicating endpoint state */
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u32 endpoint_count;
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u32 available_count;
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unsigned long *defined; /* Defined in configuration data */
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unsigned long *available; /* Supported by hardware */
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u64 filtered; /* Support filtering (AP and modem) */
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unsigned long *set_up;
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unsigned long *enabled;
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u32 modem_tx_count;
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struct ipa_endpoint endpoint[IPA_ENDPOINT_MAX];
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struct ipa_endpoint *channel_map[GSI_CHANNEL_COUNT_MAX];
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struct ipa_endpoint *name_map[IPA_ENDPOINT_COUNT];
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bool setup_complete;
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atomic_t modem_state; /* enum ipa_modem_state */
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struct net_device *modem_netdev;
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struct ipa_qmi qmi;
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};
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/**
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* ipa_setup() - Perform IPA setup
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* @ipa: IPA pointer
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*
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* IPA initialization is broken into stages: init; config; and setup.
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* (These have inverses exit, deconfig, and teardown.)
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*
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* Activities performed at the init stage can be done without requiring
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* any access to IPA hardware. Activities performed at the config stage
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* require IPA power, because they involve access to IPA registers.
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* The setup stage is performed only after the GSI hardware is ready
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* (more on this below). The setup stage allows the AP to perform
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* more complex initialization by issuing "immediate commands" using
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* a special interface to the IPA.
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*
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* This function, @ipa_setup(), starts the setup stage.
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*
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* In order for the GSI hardware to be functional it needs firmware to be
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* loaded (in addition to some other low-level initialization). This early
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* GSI initialization can be done either by Trust Zone on the AP or by the
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* modem.
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*
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* If it's done by Trust Zone, the AP loads the GSI firmware and supplies
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* it to Trust Zone to verify and install. When this completes, if
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* verification was successful, the GSI layer is ready and ipa_setup()
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* implements the setup phase of initialization.
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*
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* If the modem performs early GSI initialization, the AP needs to know
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* when this has occurred. An SMP2P interrupt is used for this purpose,
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* and receipt of that interrupt triggers the call to ipa_setup().
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*/
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int ipa_setup(struct ipa *ipa);
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#endif /* _IPA_H_ */
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