345 lines
12 KiB
C
345 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* Copyright (C) 2010 - 2013 UNISYS CORPORATION
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* All rights reserved.
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*/
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/*
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* This header file is to be included by other kernel mode components that
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* implement a particular kind of visor_device. Each of these other kernel
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* mode components is called a visor device driver. Refer to visortemplate
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* for a minimal sample visor device driver.
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*
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* There should be nothing in this file that is private to the visorbus
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* bus implementation itself.
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*/
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#ifndef __VISORBUS_H__
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#define __VISORBUS_H__
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#include <linux/device.h>
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#define VISOR_CHANNEL_SIGNATURE ('L' << 24 | 'N' << 16 | 'C' << 8 | 'E')
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/*
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* enum channel_serverstate
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* @CHANNELSRV_UNINITIALIZED: Channel is in an undefined state.
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* @CHANNELSRV_READY: Channel has been initialized by server.
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*/
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enum channel_serverstate {
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CHANNELSRV_UNINITIALIZED = 0,
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CHANNELSRV_READY = 1
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};
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/*
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* enum channel_clientstate
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* @CHANNELCLI_DETACHED:
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* @CHANNELCLI_DISABLED: Client can see channel but is NOT allowed to use it
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* unless given TBD* explicit request
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* (should actually be < DETACHED).
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* @CHANNELCLI_ATTACHING: Legacy EFI client request for EFI server to attach.
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* @CHANNELCLI_ATTACHED: Idle, but client may want to use channel any time.
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* @CHANNELCLI_BUSY: Client either wants to use or is using channel.
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* @CHANNELCLI_OWNED: "No worries" state - client can access channel
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* anytime.
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*/
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enum channel_clientstate {
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CHANNELCLI_DETACHED = 0,
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CHANNELCLI_DISABLED = 1,
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CHANNELCLI_ATTACHING = 2,
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CHANNELCLI_ATTACHED = 3,
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CHANNELCLI_BUSY = 4,
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CHANNELCLI_OWNED = 5
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};
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/*
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* Values for VISOR_CHANNEL_PROTOCOL.Features: This define exists so that
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* a guest can look at the FeatureFlags in the io channel, and configure the
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* driver to use interrupts or not based on this setting. All feature bits for
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* all channels should be defined here. The io channel feature bits are defined
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* below.
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*/
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#define VISOR_DRIVER_ENABLES_INTS (0x1ULL << 1)
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#define VISOR_CHANNEL_IS_POLLING (0x1ULL << 3)
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#define VISOR_IOVM_OK_DRIVER_DISABLING_INTS (0x1ULL << 4)
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#define VISOR_DRIVER_DISABLES_INTS (0x1ULL << 5)
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#define VISOR_DRIVER_ENHANCED_RCVBUF_CHECKING (0x1ULL << 6)
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/*
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* struct channel_header - Common Channel Header
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* @signature: Signature.
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* @legacy_state: DEPRECATED - being replaced by.
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* @header_size: sizeof(struct channel_header).
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* @size: Total size of this channel in bytes.
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* @features: Flags to modify behavior.
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* @chtype: Channel type: data, bus, control, etc..
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* @partition_handle: ID of guest partition.
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* @handle: Device number of this channel in client.
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* @ch_space_offset: Offset in bytes to channel specific area.
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* @version_id: Struct channel_header Version ID.
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* @partition_index: Index of guest partition.
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* @zone_uuid: Guid of Channel's zone.
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* @cli_str_offset: Offset from channel header to null-terminated
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* ClientString (0 if ClientString not present).
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* @cli_state_boot: CHANNEL_CLIENTSTATE of pre-boot EFI client of this
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* channel.
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* @cmd_state_cli: CHANNEL_COMMANDSTATE (overloaded in Windows drivers, see
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* ServerStateUp, ServerStateDown, etc).
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* @cli_state_os: CHANNEL_CLIENTSTATE of Guest OS client of this channel.
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* @ch_characteristic: CHANNEL_CHARACTERISTIC_<xxx>.
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* @cmd_state_srv: CHANNEL_COMMANDSTATE (overloaded in Windows drivers, see
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* ServerStateUp, ServerStateDown, etc).
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* @srv_state: CHANNEL_SERVERSTATE.
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* @cli_error_boot: Bits to indicate err states for boot clients, so err
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* messages can be throttled.
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* @cli_error_os: Bits to indicate err states for OS clients, so err
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* messages can be throttled.
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* @filler: Pad out to 128 byte cacheline.
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* @recover_channel: Please add all new single-byte values below here.
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*/
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struct channel_header {
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u64 signature;
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u32 legacy_state;
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/* SrvState, CliStateBoot, and CliStateOS below */
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u32 header_size;
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u64 size;
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u64 features;
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guid_t chtype;
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u64 partition_handle;
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u64 handle;
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u64 ch_space_offset;
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u32 version_id;
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u32 partition_index;
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guid_t zone_guid;
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u32 cli_str_offset;
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u32 cli_state_boot;
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u32 cmd_state_cli;
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u32 cli_state_os;
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u32 ch_characteristic;
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u32 cmd_state_srv;
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u32 srv_state;
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u8 cli_error_boot;
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u8 cli_error_os;
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u8 filler[1];
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u8 recover_channel;
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} __packed;
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#define VISOR_CHANNEL_ENABLE_INTS (0x1ULL << 0)
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/*
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* struct signal_queue_header - Subheader for the Signal Type variation of the
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* Common Channel.
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* @version: SIGNAL_QUEUE_HEADER Version ID.
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* @chtype: Queue type: storage, network.
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* @size: Total size of this queue in bytes.
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* @sig_base_offset: Offset to signal queue area.
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* @features: Flags to modify behavior.
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* @num_sent: Total # of signals placed in this queue.
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* @num_overflows: Total # of inserts failed due to full queue.
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* @signal_size: Total size of a signal for this queue.
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* @max_slots: Max # of slots in queue, 1 slot is always empty.
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* @max_signals: Max # of signals in queue (MaxSignalSlots-1).
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* @head: Queue head signal #.
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* @num_received: Total # of signals removed from this queue.
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* @tail: Queue tail signal.
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* @reserved1: Reserved field.
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* @reserved2: Reserved field.
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* @client_queue:
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* @num_irq_received: Total # of Interrupts received. This is incremented by the
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* ISR in the guest windows driver.
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* @num_empty: Number of times that visor_signal_remove is called and
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* returned Empty Status.
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* @errorflags: Error bits set during SignalReinit to denote trouble with
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* client's fields.
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* @filler: Pad out to 64 byte cacheline.
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*/
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struct signal_queue_header {
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/* 1st cache line */
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u32 version;
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u32 chtype;
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u64 size;
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u64 sig_base_offset;
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u64 features;
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u64 num_sent;
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u64 num_overflows;
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u32 signal_size;
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u32 max_slots;
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u32 max_signals;
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u32 head;
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/* 2nd cache line */
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u64 num_received;
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u32 tail;
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u32 reserved1;
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u64 reserved2;
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u64 client_queue;
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u64 num_irq_received;
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u64 num_empty;
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u32 errorflags;
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u8 filler[12];
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} __packed;
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/* VISORCHANNEL Guids */
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/* {414815ed-c58c-11da-95a9-00e08161165f} */
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#define VISOR_VHBA_CHANNEL_GUID \
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GUID_INIT(0x414815ed, 0xc58c, 0x11da, \
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0x95, 0xa9, 0x0, 0xe0, 0x81, 0x61, 0x16, 0x5f)
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#define VISOR_VHBA_CHANNEL_GUID_STR \
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"414815ed-c58c-11da-95a9-00e08161165f"
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struct visorchipset_state {
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u32 created:1;
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u32 attached:1;
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u32 configured:1;
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u32 running:1;
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/* Remaining bits in this 32-bit word are reserved. */
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};
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/**
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* struct visor_device - A device type for things "plugged" into the visorbus
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* bus
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* @visorchannel: Points to the channel that the device is
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* associated with.
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* @channel_type_guid: Identifies the channel type to the bus driver.
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* @device: Device struct meant for use by the bus driver
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* only.
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* @list_all: Used by the bus driver to enumerate devices.
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* @timer: Timer fired periodically to do interrupt-type
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* activity.
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* @being_removed: Indicates that the device is being removed from
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* the bus. Private bus driver use only.
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* @visordriver_callback_lock: Used by the bus driver to lock when adding and
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* removing devices.
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* @pausing: Indicates that a change towards a paused state.
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* is in progress. Only modified by the bus driver.
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* @resuming: Indicates that a change towards a running state
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* is in progress. Only modified by the bus driver.
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* @chipset_bus_no: Private field used by the bus driver.
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* @chipset_dev_no: Private field used the bus driver.
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* @state: Used to indicate the current state of the
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* device.
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* @inst: Unique GUID for this instance of the device.
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* @name: Name of the device.
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* @pending_msg_hdr: For private use by bus driver to respond to
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* hypervisor requests.
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* @vbus_hdr_info: A pointer to header info. Private use by bus
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* driver.
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* @partition_guid: Indicates client partion id. This should be the
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* same across all visor_devices in the current
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* guest. Private use by bus driver only.
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*/
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struct visor_device {
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struct visorchannel *visorchannel;
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guid_t channel_type_guid;
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/* These fields are for private use by the bus driver only. */
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struct device device;
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struct list_head list_all;
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struct timer_list timer;
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bool timer_active;
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bool being_removed;
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struct mutex visordriver_callback_lock; /* synchronize probe/remove */
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bool pausing;
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bool resuming;
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u32 chipset_bus_no;
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u32 chipset_dev_no;
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struct visorchipset_state state;
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guid_t inst;
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u8 *name;
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struct controlvm_message_header *pending_msg_hdr;
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void *vbus_hdr_info;
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guid_t partition_guid;
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struct dentry *debugfs_dir;
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struct dentry *debugfs_bus_info;
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};
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#define to_visor_device(x) container_of(x, struct visor_device, device)
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typedef void (*visorbus_state_complete_func) (struct visor_device *dev,
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int status);
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/*
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* This struct describes a specific visor channel, by providing its GUID, name,
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* and sizes.
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*/
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struct visor_channeltype_descriptor {
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const guid_t guid;
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const char *name;
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u64 min_bytes;
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u32 version;
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};
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/**
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* struct visor_driver - Information provided by each visor driver when it
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* registers with the visorbus driver
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* @name: Name of the visor driver.
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* @owner: The module owner.
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* @channel_types: Types of channels handled by this driver, ending with
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* a zero GUID. Our specialized BUS.match() method knows
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* about this list, and uses it to determine whether this
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* driver will in fact handle a new device that it has
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* detected.
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* @probe: Called when a new device comes online, by our probe()
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* function specified by driver.probe() (triggered
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* ultimately by some call to driver_register(),
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* bus_add_driver(), or driver_attach()).
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* @remove: Called when a new device is removed, by our remove()
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* function specified by driver.remove() (triggered
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* ultimately by some call to device_release_driver()).
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* @channel_interrupt: Called periodically, whenever there is a possiblity
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* that "something interesting" may have happened to the
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* channel.
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* @pause: Called to initiate a change of the device's state. If
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* the return valu`e is < 0, there was an error and the
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* state transition will NOT occur. If the return value
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* is >= 0, then the state transition was INITIATED
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* successfully, and complete_func() will be called (or
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* was just called) with the final status when either the
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* state transition fails or completes successfully.
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* @resume: Behaves similar to pause.
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* @driver: Private reference to the device driver. For use by bus
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* driver only.
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*/
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struct visor_driver {
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const char *name;
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struct module *owner;
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struct visor_channeltype_descriptor *channel_types;
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int (*probe)(struct visor_device *dev);
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void (*remove)(struct visor_device *dev);
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void (*channel_interrupt)(struct visor_device *dev);
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int (*pause)(struct visor_device *dev,
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visorbus_state_complete_func complete_func);
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int (*resume)(struct visor_device *dev,
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visorbus_state_complete_func complete_func);
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/* These fields are for private use by the bus driver only. */
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struct device_driver driver;
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};
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#define to_visor_driver(x) (container_of(x, struct visor_driver, driver))
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int visor_check_channel(struct channel_header *ch, struct device *dev,
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const guid_t *expected_uuid, char *chname,
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u64 expected_min_bytes, u32 expected_version,
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u64 expected_signature);
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int visorbus_register_visor_driver(struct visor_driver *drv);
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void visorbus_unregister_visor_driver(struct visor_driver *drv);
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int visorbus_read_channel(struct visor_device *dev,
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unsigned long offset, void *dest,
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unsigned long nbytes);
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int visorbus_write_channel(struct visor_device *dev,
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unsigned long offset, void *src,
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unsigned long nbytes);
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int visorbus_enable_channel_interrupts(struct visor_device *dev);
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void visorbus_disable_channel_interrupts(struct visor_device *dev);
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int visorchannel_signalremove(struct visorchannel *channel, u32 queue,
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void *msg);
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int visorchannel_signalinsert(struct visorchannel *channel, u32 queue,
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void *msg);
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bool visorchannel_signalempty(struct visorchannel *channel, u32 queue);
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const guid_t *visorchannel_get_guid(struct visorchannel *channel);
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#define BUS_ROOT_DEVICE UINT_MAX
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struct visor_device *visorbus_get_device_by_id(u32 bus_no, u32 dev_no,
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struct visor_device *from);
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#endif
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