mirror of https://gitee.com/openkylin/qemu.git
276 lines
8.4 KiB
C
276 lines
8.4 KiB
C
#ifndef QEMU_CHAR_H
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#define QEMU_CHAR_H
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#include "qapi/qapi-types-char.h"
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#include "qemu/main-loop.h"
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#include "qemu/bitmap.h"
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#include "qom/object.h"
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#define IAC_EOR 239
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#define IAC_SE 240
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#define IAC_NOP 241
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#define IAC_BREAK 243
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#define IAC_IP 244
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#define IAC_SB 250
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#define IAC 255
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/* character device */
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typedef struct CharBackend CharBackend;
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typedef enum {
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CHR_EVENT_BREAK, /* serial break char */
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CHR_EVENT_OPENED, /* new connection established */
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CHR_EVENT_MUX_IN, /* mux-focus was set to this terminal */
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CHR_EVENT_MUX_OUT, /* mux-focus will move on */
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CHR_EVENT_CLOSED /* connection closed. NOTE: currently this event
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* is only bound to the read port of the chardev.
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* Normally the read port and write port of a
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* chardev should be the same, but it can be
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* different, e.g., for fd chardevs, when the two
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* fds are different. So when we received the
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* CLOSED event it's still possible that the out
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* port is still open. TODO: we should only send
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* the CLOSED event when both ports are closed.
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*/
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} QEMUChrEvent;
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#define CHR_READ_BUF_LEN 4096
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typedef enum {
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/* Whether the chardev peer is able to close and
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* reopen the data channel, thus requiring support
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* for qemu_chr_wait_connected() to wait for a
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* valid connection */
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QEMU_CHAR_FEATURE_RECONNECTABLE,
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/* Whether it is possible to send/recv file descriptors
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* over the data channel */
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QEMU_CHAR_FEATURE_FD_PASS,
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/* Whether replay or record mode is enabled */
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QEMU_CHAR_FEATURE_REPLAY,
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QEMU_CHAR_FEATURE_LAST,
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} ChardevFeature;
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#define qemu_chr_replay(chr) qemu_chr_has_feature(chr, QEMU_CHAR_FEATURE_REPLAY)
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struct Chardev {
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Object parent_obj;
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QemuMutex chr_write_lock;
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CharBackend *be;
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char *label;
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char *filename;
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int logfd;
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int be_open;
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GSource *gsource;
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GMainContext *gcontext;
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DECLARE_BITMAP(features, QEMU_CHAR_FEATURE_LAST);
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};
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/**
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* @qemu_chr_new_from_opts:
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*
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* Create a new character backend from a QemuOpts list.
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*
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* @opts see qemu-config.c for a list of valid options
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*
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* Returns: on success: a new character backend
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* otherwise: NULL; @errp specifies the error
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* or left untouched in case of help option
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*/
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Chardev *qemu_chr_new_from_opts(QemuOpts *opts,
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Error **errp);
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/**
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* @qemu_chr_parse_common:
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*
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* Parse the common options available to all character backends.
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*
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* @opts the options that still need parsing
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* @backend a new backend
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*/
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void qemu_chr_parse_common(QemuOpts *opts, ChardevCommon *backend);
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/**
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* @qemu_chr_parse_opts:
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*
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* Parse the options to the ChardevBackend struct.
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*
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* Returns: a new backend or NULL on error
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*/
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ChardevBackend *qemu_chr_parse_opts(QemuOpts *opts,
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Error **errp);
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/**
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* @qemu_chr_new:
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*
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* Create a new character backend from a URI.
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*
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* @label the name of the backend
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* @filename the URI
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*
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* Returns: a new character backend
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*/
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Chardev *qemu_chr_new(const char *label, const char *filename);
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/**
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* @qemu_chr_change:
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*
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* Change an existing character backend
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*
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* @opts the new backend options
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*/
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void qemu_chr_change(QemuOpts *opts, Error **errp);
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/**
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* @qemu_chr_cleanup:
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*
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* Delete all chardevs (when leaving qemu)
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*/
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void qemu_chr_cleanup(void);
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/**
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* @qemu_chr_new_noreplay:
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*
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* Create a new character backend from a URI.
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* Character device communications are not written
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* into the replay log.
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*
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* @label the name of the backend
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* @filename the URI
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*
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* Returns: a new character backend
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*/
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Chardev *qemu_chr_new_noreplay(const char *label, const char *filename);
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/**
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* @qemu_chr_be_can_write:
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*
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* Determine how much data the front end can currently accept. This function
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* returns the number of bytes the front end can accept. If it returns 0, the
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* front end cannot receive data at the moment. The function must be polled
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* to determine when data can be received.
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*
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* Returns: the number of bytes the front end can receive via @qemu_chr_be_write
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*/
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int qemu_chr_be_can_write(Chardev *s);
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/**
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* @qemu_chr_be_write:
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*
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* Write data from the back end to the front end. Before issuing this call,
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* the caller should call @qemu_chr_be_can_write to determine how much data
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* the front end can currently accept.
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*
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* @buf a buffer to receive data from the front end
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* @len the number of bytes to receive from the front end
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*/
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void qemu_chr_be_write(Chardev *s, uint8_t *buf, int len);
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/**
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* @qemu_chr_be_write_impl:
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*
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* Implementation of back end writing. Used by replay module.
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*
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* @buf a buffer to receive data from the front end
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* @len the number of bytes to receive from the front end
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*/
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void qemu_chr_be_write_impl(Chardev *s, uint8_t *buf, int len);
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/**
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* @qemu_chr_be_update_read_handlers:
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*
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* Invoked when frontend read handlers are setup
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*
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* @context the gcontext that will be used to attach the watch sources
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*/
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void qemu_chr_be_update_read_handlers(Chardev *s,
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GMainContext *context);
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/**
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* @qemu_chr_be_event:
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*
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* Send an event from the back end to the front end.
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*
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* @event the event to send
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*/
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void qemu_chr_be_event(Chardev *s, int event);
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int qemu_chr_add_client(Chardev *s, int fd);
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Chardev *qemu_chr_find(const char *name);
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bool qemu_chr_has_feature(Chardev *chr,
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ChardevFeature feature);
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void qemu_chr_set_feature(Chardev *chr,
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ChardevFeature feature);
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QemuOpts *qemu_chr_parse_compat(const char *label, const char *filename);
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int qemu_chr_write(Chardev *s, const uint8_t *buf, int len, bool write_all);
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#define qemu_chr_write_all(s, buf, len) qemu_chr_write(s, buf, len, true)
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int qemu_chr_wait_connected(Chardev *chr, Error **errp);
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#define TYPE_CHARDEV "chardev"
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#define CHARDEV(obj) OBJECT_CHECK(Chardev, (obj), TYPE_CHARDEV)
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#define CHARDEV_CLASS(klass) \
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OBJECT_CLASS_CHECK(ChardevClass, (klass), TYPE_CHARDEV)
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#define CHARDEV_GET_CLASS(obj) \
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OBJECT_GET_CLASS(ChardevClass, (obj), TYPE_CHARDEV)
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#define TYPE_CHARDEV_NULL "chardev-null"
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#define TYPE_CHARDEV_MUX "chardev-mux"
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#define TYPE_CHARDEV_RINGBUF "chardev-ringbuf"
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#define TYPE_CHARDEV_PTY "chardev-pty"
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#define TYPE_CHARDEV_CONSOLE "chardev-console"
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#define TYPE_CHARDEV_STDIO "chardev-stdio"
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#define TYPE_CHARDEV_PIPE "chardev-pipe"
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#define TYPE_CHARDEV_MEMORY "chardev-memory"
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#define TYPE_CHARDEV_PARALLEL "chardev-parallel"
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#define TYPE_CHARDEV_FILE "chardev-file"
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#define TYPE_CHARDEV_SERIAL "chardev-serial"
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#define TYPE_CHARDEV_SOCKET "chardev-socket"
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#define TYPE_CHARDEV_UDP "chardev-udp"
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#define CHARDEV_IS_RINGBUF(chr) \
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object_dynamic_cast(OBJECT(chr), TYPE_CHARDEV_RINGBUF)
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#define CHARDEV_IS_PTY(chr) \
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object_dynamic_cast(OBJECT(chr), TYPE_CHARDEV_PTY)
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typedef struct ChardevClass {
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ObjectClass parent_class;
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bool internal; /* TODO: eventually use TYPE_USER_CREATABLE */
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void (*parse)(QemuOpts *opts, ChardevBackend *backend, Error **errp);
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void (*open)(Chardev *chr, ChardevBackend *backend,
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bool *be_opened, Error **errp);
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int (*chr_write)(Chardev *s, const uint8_t *buf, int len);
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int (*chr_sync_read)(Chardev *s, const uint8_t *buf, int len);
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GSource *(*chr_add_watch)(Chardev *s, GIOCondition cond);
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void (*chr_update_read_handler)(Chardev *s);
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int (*chr_ioctl)(Chardev *s, int cmd, void *arg);
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int (*get_msgfds)(Chardev *s, int* fds, int num);
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int (*set_msgfds)(Chardev *s, int *fds, int num);
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int (*chr_add_client)(Chardev *chr, int fd);
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int (*chr_wait_connected)(Chardev *chr, Error **errp);
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void (*chr_disconnect)(Chardev *chr);
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void (*chr_accept_input)(Chardev *chr);
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void (*chr_set_echo)(Chardev *chr, bool echo);
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void (*chr_set_fe_open)(Chardev *chr, int fe_open);
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void (*chr_be_event)(Chardev *s, int event);
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/* Return 0 if succeeded, 1 if failed */
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int (*chr_machine_done)(Chardev *chr);
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} ChardevClass;
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Chardev *qemu_chardev_new(const char *id, const char *typename,
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ChardevBackend *backend, Error **errp);
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extern int term_escape_char;
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GSource *qemu_chr_timeout_add_ms(Chardev *chr, guint ms,
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GSourceFunc func, void *private);
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/* console.c */
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void qemu_chr_parse_vc(QemuOpts *opts, ChardevBackend *backend, Error **errp);
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#endif
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