585 lines
18 KiB
C
585 lines
18 KiB
C
/*
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* Server-side process management
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*
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* Copyright (C) 1998 Alexandre Julliard
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*/
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#include <assert.h>
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#include <errno.h>
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#include <limits.h>
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#include <signal.h>
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#include <string.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/time.h>
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#include <unistd.h>
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#include "winerror.h"
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#include "winbase.h"
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#include "winnt.h"
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#include "handle.h"
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#include "process.h"
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#include "thread.h"
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#include "request.h"
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/* process structure */
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static struct process *first_process;
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static int running_processes;
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/* process operations */
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static void process_dump( struct object *obj, int verbose );
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static int process_signaled( struct object *obj, struct thread *thread );
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static void process_destroy( struct object *obj );
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static const struct object_ops process_ops =
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{
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sizeof(struct process), /* size */
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process_dump, /* dump */
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add_queue, /* add_queue */
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remove_queue, /* remove_queue */
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process_signaled, /* signaled */
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no_satisfied, /* satisfied */
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NULL, /* get_poll_events */
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NULL, /* poll_event */
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no_read_fd, /* get_read_fd */
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no_write_fd, /* get_write_fd */
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no_flush, /* flush */
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no_get_file_info, /* get_file_info */
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process_destroy /* destroy */
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};
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/* create a new process */
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static struct process *create_process( struct process *parent, struct new_process_request *req,
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const char *cmd_line, size_t len )
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{
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struct process *process;
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if (!(process = alloc_object( &process_ops, -1 ))) return NULL;
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process->next = NULL;
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process->prev = NULL;
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process->thread_list = NULL;
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process->debugger = NULL;
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process->handles = NULL;
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process->exit_code = 0x103; /* STILL_ACTIVE */
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process->running_threads = 0;
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process->priority = NORMAL_PRIORITY_CLASS;
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process->affinity = 1;
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process->suspend = 0;
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process->create_flags = 0;
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process->console_in = NULL;
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process->console_out = NULL;
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process->init_event = NULL;
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process->info = NULL;
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gettimeofday( &process->start_time, NULL );
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/* copy the request structure */
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if (!(process->info = mem_alloc( sizeof(*process->info) + len ))) goto error;
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memcpy( process->info, req, sizeof(*req) );
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memcpy( process->info->cmdline, cmd_line, len );
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process->info->cmdline[len] = 0;
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req = process->info; /* use the copy now */
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process->create_flags = req->create_flags;
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if (req->inherit_all)
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process->handles = copy_handle_table( process, parent );
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else
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process->handles = alloc_handle_table( process, 0 );
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if (!process->handles) goto error;
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/* alloc a handle for the process itself */
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alloc_handle( process, process, PROCESS_ALL_ACCESS, 0 );
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/* get the init done event */
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if (req->event != -1)
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{
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if (!(process->init_event = get_event_obj( parent, req->event, EVENT_MODIFY_STATE )))
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goto error;
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}
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/* set the process console */
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if (process->create_flags & CREATE_NEW_CONSOLE)
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{
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if (!alloc_console( process )) goto error;
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}
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else if (!(process->create_flags & DETACHED_PROCESS))
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{
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if (parent->console_in) process->console_in = grab_object( parent->console_in );
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if (parent->console_out) process->console_out = grab_object( parent->console_out );
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}
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if (!req->inherit_all && !(req->start_flags & STARTF_USESTDHANDLES))
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{
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process->info->hstdin = duplicate_handle( parent, req->hstdin, process,
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0, TRUE, DUPLICATE_SAME_ACCESS );
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process->info->hstdout = duplicate_handle( parent, req->hstdout, process,
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0, TRUE, DUPLICATE_SAME_ACCESS );
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process->info->hstderr = duplicate_handle( parent, req->hstderr, process,
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0, TRUE, DUPLICATE_SAME_ACCESS );
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}
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/* attach to the debugger if requested */
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if (process->create_flags & (DEBUG_PROCESS | DEBUG_ONLY_THIS_PROCESS))
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debugger_attach( process, current );
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else if (parent && parent->debugger && !(parent->create_flags & DEBUG_ONLY_THIS_PROCESS))
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debugger_attach( process, parent->debugger );
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if ((process->next = first_process) != NULL) process->next->prev = process;
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first_process = process;
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return process;
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error:
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free_console( process );
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if (process->handles) release_object( process->handles );
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release_object( process );
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return NULL;
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}
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/* create the initial process */
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struct process *create_initial_process(void)
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{
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struct process *process;
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struct new_process_request req;
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req.inherit = 0;
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req.inherit_all = 0;
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req.create_flags = CREATE_NEW_CONSOLE;
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req.start_flags = STARTF_USESTDHANDLES;
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req.hstdin = -1;
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req.hstdout = -1;
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req.hstderr = -1;
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req.event = -1;
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req.cmd_show = 0;
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req.env_ptr = NULL;
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if ((process = create_process( NULL, &req, "", 1 )))
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{
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process->info->hstdin = alloc_handle( process, process->console_in,
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GENERIC_READ | GENERIC_WRITE | SYNCHRONIZE, 1 );
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process->info->hstdout = alloc_handle( process, process->console_out,
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GENERIC_READ | GENERIC_WRITE | SYNCHRONIZE, 1 );
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process->info->hstderr = alloc_handle( process, process->console_out,
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GENERIC_READ | GENERIC_WRITE | SYNCHRONIZE, 1 );
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}
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return process;
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}
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/* destroy a process when its refcount is 0 */
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static void process_destroy( struct object *obj )
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{
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struct process *process = (struct process *)obj;
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assert( obj->ops == &process_ops );
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/* we can't have a thread remaining */
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assert( !process->thread_list );
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if (process->next) process->next->prev = process->prev;
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if (process->prev) process->prev->next = process->next;
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else first_process = process->next;
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if (process->info) free( process->info );
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if (process->init_event) release_object( process->init_event );
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}
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/* dump a process on stdout for debugging purposes */
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static void process_dump( struct object *obj, int verbose )
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{
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struct process *process = (struct process *)obj;
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assert( obj->ops == &process_ops );
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fprintf( stderr, "Process next=%p prev=%p console=%p/%p handles=%p\n",
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process->next, process->prev, process->console_in, process->console_out,
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process->handles );
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}
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static int process_signaled( struct object *obj, struct thread *thread )
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{
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struct process *process = (struct process *)obj;
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return !process->running_threads;
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}
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/* get a process from an id (and increment the refcount) */
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struct process *get_process_from_id( void *id )
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{
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struct process *p = first_process;
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while (p && (p != id)) p = p->next;
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if (p) grab_object( p );
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else set_error( ERROR_INVALID_PARAMETER );
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return p;
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}
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/* get a process from a handle (and increment the refcount) */
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struct process *get_process_from_handle( int handle, unsigned int access )
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{
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return (struct process *)get_handle_obj( current->process, handle,
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access, &process_ops );
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}
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/* a process has been killed (i.e. its last thread died) */
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static void process_killed( struct process *process, int exit_code )
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{
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assert( !process->thread_list );
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process->exit_code = exit_code;
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gettimeofday( &process->end_time, NULL );
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release_object( process->handles );
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process->handles = NULL;
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free_console( process );
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wake_up( &process->obj, 0 );
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if (!--running_processes)
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{
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/* last process died, close global handles */
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close_global_handles();
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}
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}
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/* add a thread to a process running threads list */
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void add_process_thread( struct process *process, struct thread *thread )
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{
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thread->proc_next = process->thread_list;
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thread->proc_prev = NULL;
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if (thread->proc_next) thread->proc_next->proc_prev = thread;
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process->thread_list = thread;
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if (!process->running_threads++) running_processes++;
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grab_object( thread );
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}
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/* remove a thread from a process running threads list */
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void remove_process_thread( struct process *process, struct thread *thread )
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{
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assert( process->running_threads > 0 );
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assert( process->thread_list );
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if (thread->proc_next) thread->proc_next->proc_prev = thread->proc_prev;
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if (thread->proc_prev) thread->proc_prev->proc_next = thread->proc_next;
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else process->thread_list = thread->proc_next;
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if (!--process->running_threads)
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{
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/* we have removed the last running thread, exit the process */
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process_killed( process, thread->exit_code );
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}
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release_object( thread );
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}
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/* suspend all the threads of a process */
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void suspend_process( struct process *process )
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{
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if (!process->suspend++)
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{
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struct thread *thread = process->thread_list;
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for (; thread; thread = thread->proc_next)
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{
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if (!thread->suspend) stop_thread( thread );
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}
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}
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}
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/* resume all the threads of a process */
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void resume_process( struct process *process )
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{
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assert (process->suspend > 0);
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if (!--process->suspend)
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{
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struct thread *thread = process->thread_list;
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for (; thread; thread = thread->proc_next)
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{
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if (!thread->suspend) continue_thread( thread );
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}
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}
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}
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/* kill a process on the spot */
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void kill_process( struct process *process, int exit_code )
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{
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while (process->thread_list)
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kill_thread( process->thread_list, exit_code );
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}
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/* kill all processes being debugged by a given thread */
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void kill_debugged_processes( struct thread *debugger, int exit_code )
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{
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for (;;) /* restart from the beginning of the list every time */
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{
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struct process *process = first_process;
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/* find the first process being debugged by 'debugger' and still running */
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while (process && (process->debugger != debugger || !process->running_threads))
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process = process->next;
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if (!process) return;
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process->debugger = NULL;
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kill_process( process, exit_code );
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}
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}
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/* get all information about a process */
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static void get_process_info( struct process *process, struct get_process_info_request *req )
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{
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req->pid = process;
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req->exit_code = process->exit_code;
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req->priority = process->priority;
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req->process_affinity = process->affinity;
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req->system_affinity = 1;
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}
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/* set all information about a process */
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static void set_process_info( struct process *process,
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struct set_process_info_request *req )
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{
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if (req->mask & SET_PROCESS_INFO_PRIORITY)
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process->priority = req->priority;
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if (req->mask & SET_PROCESS_INFO_AFFINITY)
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{
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if (req->affinity != 1) set_error( ERROR_INVALID_PARAMETER );
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else process->affinity = req->affinity;
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}
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}
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/* read data from a process memory space */
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/* len is the total size (in ints), max is the size we can actually store in the output buffer */
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/* we read the total size in all cases to check for permissions */
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static void read_process_memory( struct process *process, const int *addr,
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size_t len, size_t max, int *dest )
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{
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struct thread *thread = process->thread_list;
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if ((unsigned int)addr % sizeof(int)) /* address must be aligned */
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{
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set_error( ERROR_INVALID_PARAMETER );
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return;
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}
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suspend_thread( thread, 0 );
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if (thread->attached)
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{
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while (len > 0 && max)
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{
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if (read_thread_int( thread, addr++, dest++ ) == -1) goto done;
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max--;
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len--;
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}
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/* check the rest for read permission */
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if (len > 0)
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{
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int dummy, page = get_page_size() / sizeof(int);
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while (len >= page)
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{
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addr += page;
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len -= page;
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if (read_thread_int( thread, addr - 1, &dummy ) == -1) goto done;
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}
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if (len && (read_thread_int( thread, addr + len - 1, &dummy ) == -1)) goto done;
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}
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}
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else set_error( ERROR_ACCESS_DENIED );
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done:
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resume_thread( thread );
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}
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/* write data to a process memory space */
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/* len is the total size (in ints), max is the size we can actually read from the input buffer */
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/* we check the total size for write permissions */
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static void write_process_memory( struct process *process, int *addr, size_t len,
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size_t max, unsigned int first_mask,
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unsigned int last_mask, const int *src )
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{
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struct thread *thread = process->thread_list;
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if (!len || ((unsigned int)addr % sizeof(int))) /* address must be aligned */
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{
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set_error( ERROR_INVALID_PARAMETER );
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return;
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}
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suspend_thread( thread, 0 );
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if (thread->attached)
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{
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/* first word is special */
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if (len > 1)
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{
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if (write_thread_int( thread, addr++, *src++, first_mask ) == -1) goto done;
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len--;
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max--;
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}
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else last_mask &= first_mask;
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while (len > 1 && max)
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{
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if (write_thread_int( thread, addr++, *src++, ~0 ) == -1) goto done;
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max--;
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len--;
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}
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if (max)
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{
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/* last word is special too */
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if (write_thread_int( thread, addr, *src, last_mask ) == -1) goto done;
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}
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else
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{
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/* check the rest for write permission */
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int page = get_page_size() / sizeof(int);
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while (len >= page)
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{
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addr += page;
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len -= page;
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if (write_thread_int( thread, addr - 1, 0, 0 ) == -1) goto done;
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}
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if (len && (write_thread_int( thread, addr + len - 1, 0, 0 ) == -1)) goto done;
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}
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}
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else set_error( ERROR_ACCESS_DENIED );
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done:
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resume_thread( thread );
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}
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/* take a snapshot of currently running processes */
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struct process_snapshot *process_snap( int *count )
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{
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struct process_snapshot *snapshot, *ptr;
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struct process *process;
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if (!running_processes) return NULL;
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if (!(snapshot = mem_alloc( sizeof(*snapshot) * running_processes )))
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return NULL;
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ptr = snapshot;
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for (process = first_process; process; process = process->next)
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{
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if (!process->running_threads) continue;
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ptr->process = process;
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ptr->threads = process->running_threads;
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ptr->priority = process->priority;
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grab_object( process );
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ptr++;
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}
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*count = running_processes;
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return snapshot;
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}
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/* create a new process */
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DECL_HANDLER(new_process)
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{
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size_t len = get_req_strlen( req->cmdline );
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struct process *process;
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req->handle = -1;
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req->pid = NULL;
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if ((process = create_process( current->process, req, req->cmdline, len )))
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{
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req->handle = alloc_handle( current->process, process, PROCESS_ALL_ACCESS, req->inherit );
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req->pid = process;
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release_object( process );
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}
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}
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/* initialize a new process */
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DECL_HANDLER(init_process)
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{
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struct new_process_request *info;
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if (!current->unix_pid)
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{
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fatal_protocol_error( current, "init_process: init_thread not called yet\n" );
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return;
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}
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if (!(info = current->process->info))
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{
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fatal_protocol_error( current, "init_process: called twice\n" );
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return;
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}
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current->process->info = NULL;
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req->start_flags = info->start_flags;
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req->hstdin = info->hstdin;
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req->hstdout = info->hstdout;
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req->hstderr = info->hstderr;
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req->cmd_show = info->cmd_show;
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req->env_ptr = info->env_ptr;
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strcpy( req->cmdline, info->cmdline );
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free( info );
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}
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/* signal the end of the process initialization */
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DECL_HANDLER(init_process_done)
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{
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struct process *process = current->process;
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if (!process->init_event)
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{
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fatal_protocol_error( current, "init_process_done: no event\n" );
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return;
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}
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set_event( process->init_event );
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release_object( process->init_event );
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process->init_event = NULL;
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if (current->suspend + current->process->suspend > 0) stop_thread( current );
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}
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/* open a handle to a process */
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DECL_HANDLER(open_process)
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{
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struct process *process = get_process_from_id( req->pid );
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req->handle = -1;
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if (process)
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{
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req->handle = alloc_handle( current->process, process, req->access, req->inherit );
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release_object( process );
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}
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}
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/* terminate a process */
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DECL_HANDLER(terminate_process)
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{
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struct process *process;
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|
|
|
if ((process = get_process_from_handle( req->handle, PROCESS_TERMINATE )))
|
|
{
|
|
kill_process( process, req->exit_code );
|
|
release_object( process );
|
|
}
|
|
}
|
|
|
|
/* fetch information about a process */
|
|
DECL_HANDLER(get_process_info)
|
|
{
|
|
struct process *process;
|
|
|
|
if ((process = get_process_from_handle( req->handle, PROCESS_QUERY_INFORMATION )))
|
|
{
|
|
get_process_info( process, req );
|
|
release_object( process );
|
|
}
|
|
}
|
|
|
|
/* set information about a process */
|
|
DECL_HANDLER(set_process_info)
|
|
{
|
|
struct process *process;
|
|
|
|
if ((process = get_process_from_handle( req->handle, PROCESS_SET_INFORMATION )))
|
|
{
|
|
set_process_info( process, req );
|
|
release_object( process );
|
|
}
|
|
}
|
|
|
|
/* read data from a process address space */
|
|
DECL_HANDLER(read_process_memory)
|
|
{
|
|
struct process *process;
|
|
|
|
if ((process = get_process_from_handle( req->handle, PROCESS_VM_READ )))
|
|
{
|
|
read_process_memory( process, req->addr, req->len,
|
|
get_req_size( req->data, sizeof(int) ), req->data );
|
|
release_object( process );
|
|
}
|
|
}
|
|
|
|
/* write data to a process address space */
|
|
DECL_HANDLER(write_process_memory)
|
|
{
|
|
struct process *process;
|
|
|
|
if ((process = get_process_from_handle( req->handle, PROCESS_VM_WRITE )))
|
|
{
|
|
write_process_memory( process, req->addr, req->len, get_req_size( req->data, sizeof(int) ),
|
|
req->first_mask, req->last_mask, req->data );
|
|
release_object( process );
|
|
}
|
|
}
|