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338 lines
12 KiB
338 lines
12 KiB
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* most.h - API for component and adapter drivers
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*
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* Copyright (C) 2013-2015, Microchip Technology Germany II GmbH & Co. KG
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*/
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#ifndef __MOST_CORE_H__
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#define __MOST_CORE_H__
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#include <linux/types.h>
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#include <linux/device.h>
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struct module;
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struct interface_private;
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/**
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* Interface type
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*/
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enum most_interface_type {
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ITYPE_LOOPBACK = 1,
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ITYPE_I2C,
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ITYPE_I2S,
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ITYPE_TSI,
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ITYPE_HBI,
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ITYPE_MEDIALB_DIM,
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ITYPE_MEDIALB_DIM2,
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ITYPE_USB,
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ITYPE_PCIE
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};
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/**
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* Channel direction.
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*/
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enum most_channel_direction {
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MOST_CH_RX = 1 << 0,
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MOST_CH_TX = 1 << 1,
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};
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/**
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* Channel data type.
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*/
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enum most_channel_data_type {
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MOST_CH_CONTROL = 1 << 0,
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MOST_CH_ASYNC = 1 << 1,
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MOST_CH_ISOC = 1 << 2,
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MOST_CH_SYNC = 1 << 5,
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};
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enum most_status_flags {
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/* MBO was processed successfully (data was send or received )*/
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MBO_SUCCESS = 0,
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/* The MBO contains wrong or missing information. */
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MBO_E_INVAL,
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/* MBO was completed as HDM Channel will be closed */
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MBO_E_CLOSE,
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};
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/**
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* struct most_channel_capability - Channel capability
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* @direction: Supported channel directions.
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* The value is bitwise OR-combination of the values from the
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* enumeration most_channel_direction. Zero is allowed value and means
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* "channel may not be used".
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* @data_type: Supported channel data types.
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* The value is bitwise OR-combination of the values from the
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* enumeration most_channel_data_type. Zero is allowed value and means
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* "channel may not be used".
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* @num_buffers_packet: Maximum number of buffers supported by this channel
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* for packet data types (Async,Control,QoS)
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* @buffer_size_packet: Maximum buffer size supported by this channel
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* for packet data types (Async,Control,QoS)
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* @num_buffers_streaming: Maximum number of buffers supported by this channel
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* for streaming data types (Sync,AV Packetized)
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* @buffer_size_streaming: Maximum buffer size supported by this channel
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* for streaming data types (Sync,AV Packetized)
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* @name_suffix: Optional suffix providean by an HDM that is attached to the
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* regular channel name.
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*
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* Describes the capabilities of a MOST channel like supported Data Types
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* and directions. This information is provided by an HDM for the MostCore.
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*
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* The Core creates read only sysfs attribute files in
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* /sys/devices/most/mdev#/<channel>/ with the
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* following attributes:
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* -available_directions
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* -available_datatypes
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* -number_of_packet_buffers
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* -number_of_stream_buffers
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* -size_of_packet_buffer
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* -size_of_stream_buffer
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* where content of each file is a string with all supported properties of this
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* very channel attribute.
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*/
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struct most_channel_capability {
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u16 direction;
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u16 data_type;
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u16 num_buffers_packet;
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u16 buffer_size_packet;
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u16 num_buffers_streaming;
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u16 buffer_size_streaming;
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const char *name_suffix;
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};
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/**
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* struct most_channel_config - stores channel configuration
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* @direction: direction of the channel
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* @data_type: data type travelling over this channel
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* @num_buffers: number of buffers
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* @buffer_size: size of a buffer for AIM.
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* Buffer size may be cutted down by HDM in a configure callback
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* to match to a given interface and channel type.
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* @extra_len: additional buffer space for internal HDM purposes like padding.
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* May be set by HDM in a configure callback if needed.
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* @subbuffer_size: size of a subbuffer
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* @packets_per_xact: number of MOST frames that are packet inside one USB
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* packet. This is USB specific
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*
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* Describes the configuration for a MOST channel. This information is
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* provided from the MostCore to a HDM (like the Medusa PCIe Interface) as a
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* parameter of the "configure" function call.
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*/
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struct most_channel_config {
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enum most_channel_direction direction;
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enum most_channel_data_type data_type;
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u16 num_buffers;
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u16 buffer_size;
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u16 extra_len;
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u16 subbuffer_size;
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u16 packets_per_xact;
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u16 dbr_size;
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};
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/*
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* struct mbo - MOST Buffer Object.
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* @context: context for core completion handler
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* @priv: private data for HDM
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*
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* public: documented fields that are used for the communications
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* between MostCore and HDMs
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*
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* @list: list head for use by the mbo's current owner
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* @ifp: (in) associated interface instance
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* @num_buffers_ptr: amount of pool buffers
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* @hdm_channel_id: (in) HDM channel instance
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* @virt_address: (in) kernel virtual address of the buffer
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* @bus_address: (in) bus address of the buffer
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* @buffer_length: (in) buffer payload length
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* @processed_length: (out) processed length
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* @status: (out) transfer status
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* @complete: (in) completion routine
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*
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* The core allocates and initializes the MBO.
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*
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* The HDM receives MBO for transfer from the core with the call to enqueue().
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* The HDM copies the data to- or from the buffer depending on configured
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* channel direction, set "processed_length" and "status" and completes
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* the transfer procedure by calling the completion routine.
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*
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* Finally, the MBO is being deallocated or recycled for further
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* transfers of the same or a different HDM.
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*
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* Directions of usage:
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* The core driver should never access any MBO fields (even if marked
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* as "public") while the MBO is owned by an HDM. The ownership starts with
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* the call of enqueue() and ends with the call of its complete() routine.
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*
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* II.
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* Every HDM attached to the core driver _must_ ensure that it returns any MBO
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* it owns (due to a previous call to enqueue() by the core driver) before it
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* de-registers an interface or gets unloaded from the kernel. If this direction
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* is violated memory leaks will occur, since the core driver does _not_ track
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* MBOs it is currently not in control of.
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*
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*/
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struct mbo {
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void *context;
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void *priv;
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struct list_head list;
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struct most_interface *ifp;
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int *num_buffers_ptr;
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u16 hdm_channel_id;
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void *virt_address;
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dma_addr_t bus_address;
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u16 buffer_length;
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u16 processed_length;
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enum most_status_flags status;
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void (*complete)(struct mbo *mbo);
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};
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/**
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* Interface instance description.
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*
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* Describes an interface of a MOST device the core driver is bound to.
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* This structure is allocated and initialized in the HDM. MostCore may not
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* modify this structure.
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*
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* @dev: the actual device
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* @mod: module
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* @interface Interface type. \sa most_interface_type.
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* @description PRELIMINARY.
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* Unique description of the device instance from point of view of the
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* interface in free text form (ASCII).
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* It may be a hexadecimal presentation of the memory address for the MediaLB
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* IP or USB device ID with USB properties for USB interface, etc.
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* @num_channels Number of channels and size of the channel_vector.
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* @channel_vector Properties of the channels.
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* Array index represents channel ID by the driver.
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* @configure Callback to change data type for the channel of the
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* interface instance. May be zero if the instance of the interface is not
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* configurable. Parameter channel_config describes direction and data
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* type for the channel, configured by the higher level. The content of
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* @enqueue Delivers MBO to the HDM for processing.
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* After HDM completes Rx- or Tx- operation the processed MBO shall
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* be returned back to the MostCore using completion routine.
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* The reason to get the MBO delivered from the MostCore after the channel
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* is poisoned is the re-opening of the channel by the application.
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* In this case the HDM shall hold MBOs and service the channel as usual.
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* The HDM must be able to hold at least one MBO for each channel.
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* The callback returns a negative value on error, otherwise 0.
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* @poison_channel Informs HDM about closing the channel. The HDM shall
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* cancel all transfers and synchronously or asynchronously return
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* all enqueued for this channel MBOs using the completion routine.
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* The callback returns a negative value on error, otherwise 0.
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* @request_netinfo: triggers retrieving of network info from the HDM by
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* means of "Message exchange over MDP/MEP"
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* The call of the function request_netinfo with the parameter on_netinfo as
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* NULL prohibits use of the previously obtained function pointer.
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* @priv Private field used by mostcore to store context information.
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*/
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struct most_interface {
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struct device *dev;
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struct device *driver_dev;
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struct module *mod;
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enum most_interface_type interface;
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const char *description;
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unsigned int num_channels;
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struct most_channel_capability *channel_vector;
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void *(*dma_alloc)(struct mbo *mbo, u32 size);
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void (*dma_free)(struct mbo *mbo, u32 size);
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int (*configure)(struct most_interface *iface, int channel_idx,
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struct most_channel_config *channel_config);
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int (*enqueue)(struct most_interface *iface, int channel_idx,
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struct mbo *mbo);
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int (*poison_channel)(struct most_interface *iface, int channel_idx);
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void (*request_netinfo)(struct most_interface *iface, int channel_idx,
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void (*on_netinfo)(struct most_interface *iface,
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unsigned char link_stat,
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unsigned char *mac_addr));
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void *priv;
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struct interface_private *p;
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};
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/**
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* struct most_component - identifies a loadable component for the mostcore
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* @list: list_head
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* @name: component name
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* @probe_channel: function for core to notify driver about channel connection
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* @disconnect_channel: callback function to disconnect a certain channel
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* @rx_completion: completion handler for received packets
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* @tx_completion: completion handler for transmitted packets
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*/
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struct most_component {
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struct list_head list;
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const char *name;
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struct module *mod;
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int (*probe_channel)(struct most_interface *iface, int channel_idx,
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struct most_channel_config *cfg, char *name,
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char *param);
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int (*disconnect_channel)(struct most_interface *iface,
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int channel_idx);
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int (*rx_completion)(struct mbo *mbo);
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int (*tx_completion)(struct most_interface *iface, int channel_idx);
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int (*cfg_complete)(void);
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};
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/**
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* most_register_interface - Registers instance of the interface.
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* @iface: Pointer to the interface instance description.
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*
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* Returns a pointer to the kobject of the generated instance.
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*
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* Note: HDM has to ensure that any reference held on the kobj is
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* released before deregistering the interface.
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*/
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int most_register_interface(struct most_interface *iface);
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/**
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* Deregisters instance of the interface.
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* @intf_instance Pointer to the interface instance description.
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*/
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void most_deregister_interface(struct most_interface *iface);
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void most_submit_mbo(struct mbo *mbo);
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/**
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* most_stop_enqueue - prevents core from enqueing MBOs
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* @iface: pointer to interface
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* @channel_idx: channel index
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*/
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void most_stop_enqueue(struct most_interface *iface, int channel_idx);
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/**
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* most_resume_enqueue - allow core to enqueue MBOs again
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* @iface: pointer to interface
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* @channel_idx: channel index
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*
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* This clears the enqueue halt flag and enqueues all MBOs currently
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* in wait fifo.
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*/
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void most_resume_enqueue(struct most_interface *iface, int channel_idx);
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int most_register_component(struct most_component *comp);
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int most_deregister_component(struct most_component *comp);
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struct mbo *most_get_mbo(struct most_interface *iface, int channel_idx,
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struct most_component *comp);
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void most_put_mbo(struct mbo *mbo);
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int channel_has_mbo(struct most_interface *iface, int channel_idx,
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struct most_component *comp);
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int most_start_channel(struct most_interface *iface, int channel_idx,
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struct most_component *comp);
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int most_stop_channel(struct most_interface *iface, int channel_idx,
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struct most_component *comp);
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int __init configfs_init(void);
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int most_register_configfs_subsys(struct most_component *comp);
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void most_deregister_configfs_subsys(struct most_component *comp);
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int most_add_link(char *mdev, char *mdev_ch, char *comp_name, char *link_name,
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char *comp_param);
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int most_remove_link(char *mdev, char *mdev_ch, char *comp_name);
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int most_set_cfg_buffer_size(char *mdev, char *mdev_ch, u16 val);
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int most_set_cfg_subbuffer_size(char *mdev, char *mdev_ch, u16 val);
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int most_set_cfg_dbr_size(char *mdev, char *mdev_ch, u16 val);
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int most_set_cfg_num_buffers(char *mdev, char *mdev_ch, u16 val);
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int most_set_cfg_datatype(char *mdev, char *mdev_ch, char *buf);
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int most_set_cfg_direction(char *mdev, char *mdev_ch, char *buf);
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int most_set_cfg_packets_xact(char *mdev, char *mdev_ch, u16 val);
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int most_cfg_complete(char *comp_name);
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void most_interface_register_notify(const char *mdev_name);
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#endif /* MOST_CORE_H_ */
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