mirror of
https://github.com/fish-shell/fish-shell
synced 2024-12-26 12:53:13 +00:00
b0e09303a6
This re-introduces 3fe1069219
with some associated fixes to address #1768.
602 lines
14 KiB
C++
602 lines
14 KiB
C++
/** \file proc.h
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Prototypes for utilities for keeping track of jobs, processes and subshells, as
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well as signal handling functions for tracking children. These
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functions do not themselves launch new processes, the exec library
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will call proc to create representations of the running jobs as
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needed.
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*/
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#ifndef FISH_PROC_H
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#define FISH_PROC_H
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#include <wchar.h>
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#include <signal.h>
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#include <unistd.h>
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#include <sys/time.h>
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#include <list>
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#include "util.h"
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#include "io.h"
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#include "common.h"
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#include "parse_tree.h"
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/**
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The status code use when a command was not found
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*/
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#define STATUS_UNKNOWN_COMMAND 127
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/**
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The status code use when an unknown error occured during execution of a command
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*/
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#define STATUS_NOT_EXECUTABLE 126
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/**
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The status code use when an unknown error occured during execution of a command
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*/
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#define STATUS_EXEC_FAIL 125
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/**
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The status code use when a wildcard had no matches
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*/
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#define STATUS_UNMATCHED_WILDCARD 124
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/**
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The status code used for normal exit in a builtin
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*/
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#define STATUS_BUILTIN_OK 0
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/**
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The status code used for erroneous argument combinations in a builtin
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*/
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#define STATUS_BUILTIN_ERROR 1
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/**
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Types of processes
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*/
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enum process_type_t
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{
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/**
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A regular external command
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*/
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EXTERNAL,
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/**
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A builtin command
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*/
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INTERNAL_BUILTIN,
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/**
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A shellscript function
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*/
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INTERNAL_FUNCTION,
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/** A block of commands, represented as a node */
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INTERNAL_BLOCK_NODE,
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/**
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The exec builtin
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*/
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INTERNAL_EXEC
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};
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enum
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{
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JOB_CONTROL_ALL,
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JOB_CONTROL_INTERACTIVE,
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JOB_CONTROL_NONE,
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}
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;
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/**
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A structure representing a single fish process. Contains variables
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for tracking process state and the process argument
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list. Actually, a fish process can be either a regular external
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process, an internal builtin which may or may not spawn a fake IO
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process during execution, a shellscript function or a block of
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commands to be evaluated by calling eval. Lastly, this process can
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be the result of an exec command. The role of this process_t is
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determined by the type field, which can be one of EXTERNAL,
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INTERNAL_BUILTIN, INTERNAL_FUNCTION, INTERNAL_EXEC.
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The process_t contains information on how the process should be
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started, such as command name and arguments, as well as runtime
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information on the status of the actual physical process which
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represents it. Shellscript functions, builtins and blocks of code
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may all need to spawn an external process that handles the piping
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and redirecting of IO for them.
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If the process is of type EXTERNAL or INTERNAL_EXEC, argv is the
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argument array and actual_cmd is the absolute path of the command
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to execute.
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If the process is of type INTERNAL_BUILTIN, argv is the argument
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vector, and argv[0] is the name of the builtin command.
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If the process is of type INTERNAL_FUNCTION, argv is the argument
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vector, and argv[0] is the name of the shellscript function.
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*/
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class process_t
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{
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private:
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null_terminated_array_t<wchar_t> argv_array;
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/* narrow copy of argv0 so we don't have to convert after fork */
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narrow_string_rep_t argv0_narrow;
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io_chain_t process_io_chain;
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/* No copying */
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process_t(const process_t &rhs);
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void operator=(const process_t &rhs);
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public:
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process_t();
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~process_t();
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/**
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Type of process. Can be one of \c EXTERNAL, \c
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INTERNAL_BUILTIN, \c INTERNAL_FUNCTION, \c INTERNAL_EXEC
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*/
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enum process_type_t type;
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/* For internal block processes only, the node offset of the block */
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node_offset_t internal_block_node;
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/** Sets argv */
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void set_argv(const wcstring_list_t &argv)
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{
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argv_array.set(argv);
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argv0_narrow.set(argv.empty() ? L"" : argv[0]);
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}
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/** Returns argv */
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const wchar_t * const *get_argv(void) const
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{
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return argv_array.get();
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}
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const null_terminated_array_t<wchar_t> &get_argv_array(void) const
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{
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return argv_array;
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}
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/** Returns argv[idx] */
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const wchar_t *argv(size_t idx) const
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{
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const wchar_t * const *argv = argv_array.get();
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assert(argv != NULL);
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return argv[idx];
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}
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/** Returns argv[0], or NULL */
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const wchar_t *argv0(void) const
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{
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const wchar_t * const *argv = argv_array.get();
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return argv ? argv[0] : NULL;
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}
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/** Returns argv[0] as a char * */
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const char *argv0_cstr(void) const
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{
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return argv0_narrow.get();
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}
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/* IO chain getter and setter */
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const io_chain_t &io_chain() const
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{
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return process_io_chain;
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}
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void set_io_chain(const io_chain_t &chain)
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{
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this->process_io_chain = chain;
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}
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/** actual command to pass to exec in case of EXTERNAL or INTERNAL_EXEC. */
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wcstring actual_cmd;
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/** process ID */
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pid_t pid;
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/** File descriptor that pipe output should bind to */
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int pipe_write_fd;
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/** File descriptor that the _next_ process pipe input should bind to */
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int pipe_read_fd;
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/** true if process has completed */
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volatile int completed;
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/** true if process has stopped */
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volatile int stopped;
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/** reported status value */
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volatile int status;
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/** Special flag to tell the evaluation function for count to print the help information */
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int count_help_magic;
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/** Next process in pipeline. We own this and we are responsible for deleting it. */
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process_t *next;
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#ifdef HAVE__PROC_SELF_STAT
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/** Last time of cpu time check */
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struct timeval last_time;
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/** Number of jiffies spent in process at last cpu time check */
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unsigned long last_jiffies;
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#endif
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};
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/**
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Constants for the flag variable in the job struct
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*/
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enum
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{
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/** Whether the user has been told about stopped job */
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JOB_NOTIFIED = 1 << 0,
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/** Whether this job is in the foreground */
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JOB_FOREGROUND = 1 << 1,
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/**
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Whether the specified job is completely constructed,
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i.e. completely parsed, and every process in the job has been
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forked, etc.
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*/
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JOB_CONSTRUCTED = 1 << 2,
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/** Whether the specified job is a part of a subshell, event handler or some other form of special job that should not be reported */
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JOB_SKIP_NOTIFICATION = 1 << 3,
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/** Whether the exit status should be negated. This flag can only be set by the not builtin. */
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JOB_NEGATE = 1 << 4,
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/** Whether the job is under job control */
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JOB_CONTROL = 1 << 5,
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/** Whether the job wants to own the terminal when in the foreground */
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JOB_TERMINAL = 1 << 6
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};
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typedef int job_id_t;
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job_id_t acquire_job_id(void);
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void release_job_id(job_id_t jobid);
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/**
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A struct represeting a job. A job is basically a pipeline of one
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or more processes and a couple of flags.
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*/
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class parser_t;
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class job_t
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{
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/**
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The original command which led to the creation of this
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job. It is used for displaying messages about job status
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on the terminal.
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*/
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wcstring command_str;
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/* narrow copy so we don't have to convert after fork */
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narrow_string_rep_t command_narrow;
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/* The IO chain associated with the block */
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const io_chain_t block_io;
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/* No copying */
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job_t(const job_t &rhs);
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void operator=(const job_t &);
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public:
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job_t(job_id_t jobid, const io_chain_t &bio);
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~job_t();
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/** Returns whether the command is empty. */
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bool command_is_empty() const
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{
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return command_str.empty();
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}
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/** Returns the command as a wchar_t *. */
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const wchar_t *command_wcstr() const
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{
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return command_str.c_str();
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}
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/** Returns the command */
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const wcstring &command() const
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{
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return command_str;
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}
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/** Returns the command as a char *. */
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const char *command_cstr() const
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{
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return command_narrow.get();
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}
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/** Sets the command */
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void set_command(const wcstring &cmd)
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{
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command_str = cmd;
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command_narrow.set(cmd);
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}
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/**
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A linked list of all the processes in this job. We are responsible for deleting this when we are deallocated.
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*/
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process_t *first_process;
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/**
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process group ID for the process group that this job is
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running in.
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*/
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pid_t pgid;
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/**
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The saved terminal modes of this job. This needs to be
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saved so that we can restore the terminal to the same
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state after temporarily taking control over the terminal
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when a job stops.
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*/
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struct termios tmodes;
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/**
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The job id of the job. This is a small integer that is a
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unique identifier of the job within this shell, and is
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used e.g. in process expansion.
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*/
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const job_id_t job_id;
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/**
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Bitset containing information about the job. A combination of the JOB_* constants.
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*/
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unsigned int flags;
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/* Returns the block IO redirections associated with the job. These are things like the IO redirections associated with the begin...end statement. */
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const io_chain_t &block_io_chain() const
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{
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return this->block_io;
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}
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/* Fetch all the IO redirections associated with the job */
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io_chain_t all_io_redirections() const;
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};
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/**
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Whether we are running a subshell command
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*/
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extern int is_subshell;
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/**
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Whether we are running a block of commands
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*/
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extern int is_block;
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/**
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Whether we are reading from the keyboard right now
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*/
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int get_is_interactive(void);
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/**
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Whether this shell is attached to the keyboard at all
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*/
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extern int is_interactive_session;
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/**
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Whether we are a login shell
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*/
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extern int is_login;
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/**
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Whether we are running an event handler
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*/
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extern int is_event;
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typedef std::list<job_t *> job_list_t;
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bool job_list_is_empty(void);
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/** A class to aid iteration over jobs list.
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Note this is used from a signal handler, so it must be careful to not allocate memory.
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*/
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class job_iterator_t
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{
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job_list_t * const job_list;
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job_list_t::iterator current, end;
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public:
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void reset(void);
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job_t *next()
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{
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job_t *job = NULL;
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if (current != end)
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{
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job = *current;
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++current;
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}
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return job;
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}
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job_iterator_t(job_list_t &jobs);
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job_iterator_t();
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};
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/**
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Whether a universal variable barrier roundtrip has already been
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made for the currently executing command. Such a roundtrip only
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needs to be done once on a given command, unless a universal
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variable value is changed. Once this has been done, this variable
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is set to 1, so that no more roundtrips need to be done.
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Both setting it to one when it should be zero and the opposite may
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cause concurrency bugs.
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*/
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bool get_proc_had_barrier();
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void set_proc_had_barrier(bool flag);
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/**
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Pid of last process started in the background
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*/
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extern pid_t proc_last_bg_pid;
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/**
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The current job control mode.
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Must be one of JOB_CONTROL_ALL, JOB_CONTROL_INTERACTIVE and JOB_CONTROL_NONE
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*/
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extern int job_control_mode;
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/**
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If this flag is set, fish will never fork or run execve. It is used
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to put fish into a syntax verifier mode where fish tries to validate
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the syntax of a file but doesn't actually do anything.
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*/
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extern int no_exec;
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/**
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Add the specified flag to the bitset of flags for the specified job
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*/
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void job_set_flag(job_t *j, unsigned int flag, int set);
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/**
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Returns one if the specified flag is set in the specified job, 0 otherwise.
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*/
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int job_get_flag(const job_t *j, unsigned int flag);
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/**
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Sets the status of the last process to exit
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*/
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void proc_set_last_status(int s);
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/**
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Returns the status of the last process to exit
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*/
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int proc_get_last_status();
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/**
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Remove the specified job
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*/
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void job_free(job_t* j);
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/**
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Promotes a job to the front of the job list.
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*/
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void job_promote(job_t *job);
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/**
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Return the job with the specified job id.
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If id is 0 or less, return the last job used.
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*/
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job_t *job_get(job_id_t id);
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/**
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Return the job with the specified pid.
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*/
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job_t *job_get_from_pid(int pid);
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/**
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Tests if the job is stopped
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*/
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int job_is_stopped(const job_t *j);
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/**
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Tests if the job has completed, i.e. if the last process of the pipeline has ended.
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*/
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bool job_is_completed(const job_t *j);
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/**
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Reassume a (possibly) stopped job. Put job j in the foreground. If
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cont is true, restore the saved terminal modes and send the
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process group a SIGCONT signal to wake it up before we block.
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\param j The job
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\param cont Whether the function should wait for the job to complete before returning
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*/
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void job_continue(job_t *j, bool cont);
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/**
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Notify the user about stopped or terminated jobs. Delete terminated
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jobs from the job list.
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\param interactive whether interactive jobs should be reaped as well
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*/
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int job_reap(bool interactive);
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/**
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Signal handler for SIGCHLD. Mark any processes with relevant
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information.
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*/
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void job_handle_signal(int signal, siginfo_t *info, void *con);
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/**
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Send the specified signal to all processes in the specified job.
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*/
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int job_signal(job_t *j, int signal);
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/**
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Mark a process as failed to execute (and therefore completed)
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*/
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void job_mark_process_as_failed(const job_t *job, process_t *p);
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#ifdef HAVE__PROC_SELF_STAT
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/**
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Use the procfs filesystem to look up how many jiffies of cpu time
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was used by this process. This function is only available on
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systems with the procfs file entry 'stat', i.e. Linux.
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*/
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unsigned long proc_get_jiffies(process_t *p);
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/**
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Update process time usage for all processes by calling the
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proc_get_jiffies function for every process of every job.
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*/
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void proc_update_jiffies();
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#endif
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/**
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Perform a set of simple sanity checks on the job list. This
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includes making sure that only one job is in the foreground, that
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every process is in a valid state, etc.
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*/
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void proc_sanity_check();
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/**
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Send a process/job exit event notification. This function is a
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convenience wrapper around event_fire().
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*/
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void proc_fire_event(const wchar_t *msg, int type, pid_t pid, int status);
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/**
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Initializations
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*/
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void proc_init();
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/**
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Clean up before exiting
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*/
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void proc_destroy();
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/**
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Set new value for is_interactive flag, saving previous value. If
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needed, update signal handlers.
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*/
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void proc_push_interactive(int value);
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/**
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Set is_interactive flag to the previous value. If needed, update
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signal handlers.
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*/
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void proc_pop_interactive();
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/**
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Format an exit status code as returned by e.g. wait into a fish exit code number as accepted by proc_set_last_status.
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*/
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int proc_format_status(int status);
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#endif
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