442 lines
12 KiB
C
442 lines
12 KiB
C
/***********************************************************************/
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/* */
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/* OCaml */
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/* */
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/* Xavier Leroy, projet Cristal, INRIA Rocquencourt */
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/* */
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/* Copyright 1996 Institut National de Recherche en Informatique et */
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/* en Automatique. All rights reserved. This file is distributed */
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/* under the terms of the GNU Library General Public License, with */
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/* the special exception on linking described in file ../LICENSE. */
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/* */
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/***********************************************************************/
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/* Interface with the byte-code debugger */
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#ifdef _WIN32
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#include <io.h>
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#endif /* _WIN32 */
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#include <string.h>
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#include "alloc.h"
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#include "config.h"
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#include "debugger.h"
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#include "misc.h"
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int caml_debugger_in_use = 0;
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uintnat caml_event_count;
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int caml_debugger_fork_mode = 1; /* parent by default */
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value marshal_flags = Val_emptylist;
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#if !defined(HAS_SOCKETS) || defined(NATIVE_CODE)
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void caml_debugger_init(void)
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{
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}
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void caml_debugger(enum event_kind event)
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{
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}
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void caml_debugger_cleanup_fork(void)
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{
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}
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#else
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#ifdef HAS_UNISTD
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#include <unistd.h>
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#endif
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#include <errno.h>
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#include <sys/types.h>
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#ifndef _WIN32
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#include <sys/wait.h>
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#include <sys/socket.h>
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#include <sys/un.h>
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#include <netinet/in.h>
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#include <arpa/inet.h>
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#include <netdb.h>
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#else
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#define ATOM ATOM_WS
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#include <winsock.h>
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#undef ATOM
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#include <process.h>
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#endif
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#include "fail.h"
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#include "fix_code.h"
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#include "instruct.h"
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#include "intext.h"
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#include "io.h"
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#include "mlvalues.h"
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#include "stacks.h"
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#include "sys.h"
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static int sock_domain; /* Socket domain for the debugger */
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static union { /* Socket address for the debugger */
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struct sockaddr s_gen;
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#ifndef _WIN32
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struct sockaddr_un s_unix;
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#endif
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struct sockaddr_in s_inet;
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} sock_addr;
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static int sock_addr_len; /* Length of sock_addr */
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static int dbg_socket = -1; /* The socket connected to the debugger */
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static struct channel * dbg_in; /* Input channel on the socket */
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static struct channel * dbg_out;/* Output channel on the socket */
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static char *dbg_addr = "(none)";
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static void open_connection(void)
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{
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#ifdef _WIN32
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/* Set socket to synchronous mode so that file descriptor-oriented
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functions (read()/write() etc.) can be used */
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int oldvalue, oldvaluelen, newvalue, retcode;
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oldvaluelen = sizeof(oldvalue);
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retcode = getsockopt(INVALID_SOCKET, SOL_SOCKET, SO_OPENTYPE,
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(char *) &oldvalue, &oldvaluelen);
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if (retcode == 0) {
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newvalue = SO_SYNCHRONOUS_NONALERT;
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setsockopt(INVALID_SOCKET, SOL_SOCKET, SO_OPENTYPE,
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(char *) &newvalue, sizeof(newvalue));
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}
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#endif
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dbg_socket = socket(sock_domain, SOCK_STREAM, 0);
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#ifdef _WIN32
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if (retcode == 0) {
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/* Restore initial mode */
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setsockopt(INVALID_SOCKET, SOL_SOCKET, SO_OPENTYPE,
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(char *) &oldvalue, oldvaluelen);
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}
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#endif
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if (dbg_socket == -1 ||
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connect(dbg_socket, &sock_addr.s_gen, sock_addr_len) == -1){
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caml_fatal_error_arg2 ("cannot connect to debugger at %s\n", dbg_addr,
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"error: %s\n", strerror (errno));
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}
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#ifdef _WIN32
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dbg_socket = _open_osfhandle(dbg_socket, 0);
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if (dbg_socket == -1)
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caml_fatal_error("_open_osfhandle failed");
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#endif
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dbg_in = caml_open_descriptor_in(dbg_socket);
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dbg_out = caml_open_descriptor_out(dbg_socket);
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if (!caml_debugger_in_use) caml_putword(dbg_out, -1); /* first connection */
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#ifdef _WIN32
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caml_putword(dbg_out, _getpid());
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#else
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caml_putword(dbg_out, getpid());
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#endif
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caml_flush(dbg_out);
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}
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static void close_connection(void)
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{
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caml_close_channel(dbg_in);
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caml_close_channel(dbg_out);
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dbg_socket = -1; /* was closed by caml_close_channel */
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}
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#ifdef _WIN32
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static void winsock_startup(void)
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{
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WSADATA wsaData;
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int err = WSAStartup(MAKEWORD(2, 0), &wsaData);
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if (err) caml_fatal_error("WSAStartup failed");
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}
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static void winsock_cleanup(void)
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{
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WSACleanup();
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}
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#endif
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void caml_debugger_init(void)
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{
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char * address;
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char * port, * p;
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struct hostent * host;
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int n;
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caml_register_global_root(&marshal_flags);
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marshal_flags = caml_alloc(2, Tag_cons);
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Store_field(marshal_flags, 0, Val_int(1)); /* Marshal.Closures */
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Store_field(marshal_flags, 1, Val_emptylist);
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address = getenv("CAML_DEBUG_SOCKET");
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if (address == NULL) return;
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dbg_addr = address;
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#ifdef _WIN32
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winsock_startup();
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(void)atexit(winsock_cleanup);
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#endif
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/* Parse the address */
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port = NULL;
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for (p = address; *p != 0; p++) {
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if (*p == ':') { *p = 0; port = p+1; break; }
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}
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if (port == NULL) {
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#ifndef _WIN32
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/* Unix domain */
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sock_domain = PF_UNIX;
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sock_addr.s_unix.sun_family = AF_UNIX;
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strncpy(sock_addr.s_unix.sun_path, address,
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sizeof(sock_addr.s_unix.sun_path));
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sock_addr_len =
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((char *)&(sock_addr.s_unix.sun_path) - (char *)&(sock_addr.s_unix))
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+ strlen(address);
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#else
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caml_fatal_error("Unix sockets not supported");
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#endif
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} else {
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/* Internet domain */
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sock_domain = PF_INET;
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for (p = (char *) &sock_addr.s_inet, n = sizeof(sock_addr.s_inet);
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n > 0; n--) *p++ = 0;
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sock_addr.s_inet.sin_family = AF_INET;
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sock_addr.s_inet.sin_addr.s_addr = inet_addr(address);
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if (sock_addr.s_inet.sin_addr.s_addr == -1) {
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host = gethostbyname(address);
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if (host == NULL)
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caml_fatal_error_arg("Unknown debugging host %s\n", address);
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memmove(&sock_addr.s_inet.sin_addr, host->h_addr, host->h_length);
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}
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sock_addr.s_inet.sin_port = htons(atoi(port));
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sock_addr_len = sizeof(sock_addr.s_inet);
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}
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open_connection();
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caml_debugger_in_use = 1;
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caml_trap_barrier = caml_stack_high;
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}
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static value getval(struct channel *chan)
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{
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value res;
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if (caml_really_getblock(chan, (char *) &res, sizeof(res)) == 0)
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caml_raise_end_of_file(); /* Bad, but consistent with caml_getword */
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return res;
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}
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static void putval(struct channel *chan, value val)
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{
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caml_really_putblock(chan, (char *) &val, sizeof(val));
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}
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static void safe_output_value(struct channel *chan, value val)
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{
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struct longjmp_buffer raise_buf, * saved_external_raise;
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/* Catch exceptions raised by [caml_output_val] */
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saved_external_raise = caml_external_raise;
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if (sigsetjmp(raise_buf.buf, 0) == 0) {
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caml_external_raise = &raise_buf;
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caml_output_val(chan, val, marshal_flags);
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} else {
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/* Send wrong magic number, will cause [caml_input_value] to fail */
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caml_really_putblock(chan, "\000\000\000\000", 4);
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}
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caml_external_raise = saved_external_raise;
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}
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#define Pc(sp) ((code_t)((sp)[0]))
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#define Env(sp) ((sp)[1])
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#define Extra_args(sp) (Long_val(((sp)[2])))
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#define Locals(sp) ((sp) + 3)
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void caml_debugger(enum event_kind event)
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{
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int frame_number;
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value * frame;
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intnat i, pos;
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value val;
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if (dbg_socket == -1) return; /* Not connected to a debugger. */
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/* Reset current frame */
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frame_number = 0;
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frame = caml_extern_sp + 1;
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/* Report the event to the debugger */
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switch(event) {
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case PROGRAM_START: /* Nothing to report */
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goto command_loop;
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case EVENT_COUNT:
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putch(dbg_out, REP_EVENT);
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break;
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case BREAKPOINT:
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putch(dbg_out, REP_BREAKPOINT);
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break;
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case PROGRAM_EXIT:
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putch(dbg_out, REP_EXITED);
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break;
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case TRAP_BARRIER:
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putch(dbg_out, REP_TRAP);
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break;
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case UNCAUGHT_EXC:
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putch(dbg_out, REP_UNCAUGHT_EXC);
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break;
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}
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caml_putword(dbg_out, caml_event_count);
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if (event == EVENT_COUNT || event == BREAKPOINT) {
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caml_putword(dbg_out, caml_stack_high - frame);
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caml_putword(dbg_out, (Pc(frame) - caml_start_code) * sizeof(opcode_t));
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} else {
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/* No PC and no stack frame associated with other events */
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caml_putword(dbg_out, 0);
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caml_putword(dbg_out, 0);
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}
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caml_flush(dbg_out);
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command_loop:
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/* Read and execute the commands sent by the debugger */
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while(1) {
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switch(getch(dbg_in)) {
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case REQ_SET_EVENT:
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pos = caml_getword(dbg_in);
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Assert (pos >= 0);
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Assert (pos < caml_code_size);
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caml_set_instruction(caml_start_code + pos / sizeof(opcode_t), EVENT);
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break;
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case REQ_SET_BREAKPOINT:
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pos = caml_getword(dbg_in);
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Assert (pos >= 0);
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Assert (pos < caml_code_size);
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caml_set_instruction(caml_start_code + pos / sizeof(opcode_t), BREAK);
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break;
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case REQ_RESET_INSTR:
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pos = caml_getword(dbg_in);
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Assert (pos >= 0);
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Assert (pos < caml_code_size);
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pos = pos / sizeof(opcode_t);
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caml_set_instruction(caml_start_code + pos, caml_saved_code[pos]);
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break;
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case REQ_CHECKPOINT:
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#ifndef _WIN32
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i = fork();
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if (i == 0) {
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close_connection(); /* Close parent connection. */
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open_connection(); /* Open new connection with debugger */
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} else {
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caml_putword(dbg_out, i);
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caml_flush(dbg_out);
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}
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#else
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caml_fatal_error("error: REQ_CHECKPOINT command");
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exit(-1);
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#endif
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break;
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case REQ_GO:
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caml_event_count = caml_getword(dbg_in);
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return;
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case REQ_STOP:
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exit(0);
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break;
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case REQ_WAIT:
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#ifndef _WIN32
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wait(NULL);
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#else
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caml_fatal_error("Fatal error: REQ_WAIT command");
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exit(-1);
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#endif
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break;
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case REQ_INITIAL_FRAME:
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frame = caml_extern_sp + 1;
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/* Fall through */
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case REQ_GET_FRAME:
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caml_putword(dbg_out, caml_stack_high - frame);
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if (frame < caml_stack_high){
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caml_putword(dbg_out, (Pc(frame) - caml_start_code) * sizeof(opcode_t));
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}else{
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caml_putword (dbg_out, 0);
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}
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caml_flush(dbg_out);
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break;
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case REQ_SET_FRAME:
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i = caml_getword(dbg_in);
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frame = caml_stack_high - i;
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break;
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case REQ_UP_FRAME:
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i = caml_getword(dbg_in);
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if (frame + Extra_args(frame) + i + 3 >= caml_stack_high) {
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caml_putword(dbg_out, -1);
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} else {
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frame += Extra_args(frame) + i + 3;
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caml_putword(dbg_out, caml_stack_high - frame);
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caml_putword(dbg_out, (Pc(frame) - caml_start_code) * sizeof(opcode_t));
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}
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caml_flush(dbg_out);
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break;
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case REQ_SET_TRAP_BARRIER:
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i = caml_getword(dbg_in);
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caml_trap_barrier = caml_stack_high - i;
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break;
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case REQ_GET_LOCAL:
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i = caml_getword(dbg_in);
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putval(dbg_out, Locals(frame)[i]);
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caml_flush(dbg_out);
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break;
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case REQ_GET_ENVIRONMENT:
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i = caml_getword(dbg_in);
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putval(dbg_out, Field(Env(frame), i));
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caml_flush(dbg_out);
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break;
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case REQ_GET_GLOBAL:
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i = caml_getword(dbg_in);
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putval(dbg_out, Field(caml_global_data, i));
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caml_flush(dbg_out);
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break;
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case REQ_GET_ACCU:
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putval(dbg_out, *caml_extern_sp);
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caml_flush(dbg_out);
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break;
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case REQ_GET_HEADER:
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val = getval(dbg_in);
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caml_putword(dbg_out, Hd_val(val));
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caml_flush(dbg_out);
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break;
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case REQ_GET_FIELD:
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val = getval(dbg_in);
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i = caml_getword(dbg_in);
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if (Tag_val(val) != Double_array_tag) {
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putch(dbg_out, 0);
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putval(dbg_out, Field(val, i));
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} else {
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double d = Double_field(val, i);
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putch(dbg_out, 1);
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caml_really_putblock(dbg_out, (char *) &d, 8);
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}
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caml_flush(dbg_out);
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break;
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case REQ_MARSHAL_OBJ:
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val = getval(dbg_in);
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safe_output_value(dbg_out, val);
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caml_flush(dbg_out);
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break;
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case REQ_GET_CLOSURE_CODE:
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val = getval(dbg_in);
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caml_putword(dbg_out, (Code_val(val)-caml_start_code) * sizeof(opcode_t));
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caml_flush(dbg_out);
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break;
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case REQ_SET_FORK_MODE:
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caml_debugger_fork_mode = caml_getword(dbg_in);
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break;
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}
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}
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}
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void caml_debugger_cleanup_fork(void)
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{
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/* We could remove all of the breakpoints, but closing the connection
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* means that they'll just be skipped anyway. */
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close_connection();
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caml_debugger_in_use = 0;
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}
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#endif
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