/*- * main -- * The main function, for obvious reasons. Initializes variables * and a few modules, then parses the arguments give it in the * environment and on the command line. Reads the system makefile * followed by either Makefile, makefile or the file given by the * -f argument. Sets the .MAKEFLAGS PMake variable based on all the * flags it has received by then uses either the Make or the Compat * module to create the initial list of targets. * * Results: * If -q was given, exits -1 if anything was out-of-date. Else it exits * 0. * * Side Effects: * The program exits when done. Targets are created. etc. etc. etc. */ int main(int argc, char **argv) { Lst targs; /* target nodes to create -- passed to Make_Init */ Boolean outOfDate = FALSE; /* FALSE if all targets up to date */ struct stat sb, sa; char *p1, *path; char mdpath[MAXPATHLEN]; #ifdef FORCE_MACHINE const char *machine = FORCE_MACHINE; #else const char *machine = getenv("MACHINE"); #endif const char *machine_arch = getenv("MACHINE_ARCH"); char *syspath = getenv("MAKESYSPATH"); Lst sysMkPath; /* Path of sys.mk */ char *cp = NULL, *start; /* avoid faults on read-only strings */ static char defsyspath[] = _PATH_DEFSYSPATH; char found_path[MAXPATHLEN + 1]; /* for searching for sys.mk */ struct timeval rightnow; /* to initialize random seed */ struct utsname utsname; /* default to writing debug to stderr */ debug_file = stderr; #ifdef SIGINFO (void)bmake_signal(SIGINFO, siginfo); #endif /* * Set the seed to produce a different random sequence * on each program execution. */ gettimeofday(&rightnow, NULL); srandom(rightnow.tv_sec + rightnow.tv_usec); if ((progname = strrchr(argv[0], '/')) != NULL) progname++; else progname = argv[0]; #if defined(MAKE_NATIVE) || (defined(HAVE_SETRLIMIT) && defined(RLIMIT_NOFILE)) /* * get rid of resource limit on file descriptors */ { struct rlimit rl; if (getrlimit(RLIMIT_NOFILE, &rl) != -1 && rl.rlim_cur != rl.rlim_max) { rl.rlim_cur = rl.rlim_max; (void)setrlimit(RLIMIT_NOFILE, &rl); } } #endif if (uname(&utsname) == -1) { (void)fprintf(stderr, "%s: uname failed (%s).\n", progname, strerror(errno)); exit(2); } /* * Get the name of this type of MACHINE from utsname * so we can share an executable for similar machines. * (i.e. m68k: amiga hp300, mac68k, sun3, ...) * * Note that both MACHINE and MACHINE_ARCH are decided at * run-time. */ if (!machine) { #ifdef MAKE_NATIVE machine = utsname.machine; #else #ifdef MAKE_MACHINE machine = MAKE_MACHINE; #else machine = "unknown"; #endif #endif } if (!machine_arch) { #ifndef MACHINE_ARCH #ifdef MAKE_MACHINE_ARCH machine_arch = MAKE_MACHINE_ARCH; #else machine_arch = "unknown"; #endif #else machine_arch = MACHINE_ARCH; #endif } myPid = getpid(); /* remember this for vFork() */ /* * Just in case MAKEOBJDIR wants us to do something tricky. */ Var_Init(); /* Initialize the lists of variables for * parsing arguments */ Var_Set(".MAKE.OS", utsname.sysname, VAR_GLOBAL, 0); Var_Set("MACHINE", machine, VAR_GLOBAL, 0); Var_Set("MACHINE_ARCH", machine_arch, VAR_GLOBAL, 0); #ifdef MAKE_VERSION Var_Set("MAKE_VERSION", MAKE_VERSION, VAR_GLOBAL, 0); #endif Var_Set(".newline", "\n", VAR_GLOBAL, 0); /* handy for :@ loops */ /* * This is the traditional preference for makefiles. */ #ifndef MAKEFILE_PREFERENCE_LIST # define MAKEFILE_PREFERENCE_LIST "makefile Makefile" #endif Var_Set(MAKEFILE_PREFERENCE, MAKEFILE_PREFERENCE_LIST, VAR_GLOBAL, 0); Var_Set(MAKE_DEPENDFILE, ".depend", VAR_GLOBAL, 0); create = Lst_Init(FALSE); makefiles = Lst_Init(FALSE); printVars = FALSE; debugVflag = FALSE; variables = Lst_Init(FALSE); beSilent = FALSE; /* Print commands as executed */ ignoreErrors = FALSE; /* Pay attention to non-zero returns */ noExecute = FALSE; /* Execute all commands */ noRecursiveExecute = FALSE; /* Execute all .MAKE targets */ keepgoing = FALSE; /* Stop on error */ allPrecious = FALSE; /* Remove targets when interrupted */ queryFlag = FALSE; /* This is not just a check-run */ noBuiltins = FALSE; /* Read the built-in rules */ touchFlag = FALSE; /* Actually update targets */ debug = 0; /* No debug verbosity, please. */ jobsRunning = FALSE; maxJobs = DEFMAXLOCAL; /* Set default local max concurrency */ maxJobTokens = maxJobs; compatMake = FALSE; /* No compat mode */ ignorePWD = FALSE; /* * Initialize the parsing, directory and variable modules to prepare * for the reading of inclusion paths and variable settings on the * command line */ /* * Initialize various variables. * MAKE also gets this name, for compatibility * .MAKEFLAGS gets set to the empty string just in case. * MFLAGS also gets initialized empty, for compatibility. */ Parse_Init(); if (argv[0][0] == '/' || strchr(argv[0], '/') == NULL) { /* * Leave alone if it is an absolute path, or if it does * not contain a '/' in which case we need to find it in * the path, like execvp(3) and the shells do. */ p1 = argv[0]; } else { /* * A relative path, canonicalize it. */ p1 = realpath(argv[0], mdpath); if (!p1 || *p1 != '/' || stat(p1, &sb) < 0) { p1 = argv[0]; /* realpath failed */ } } Var_Set("MAKE", p1, VAR_GLOBAL, 0); Var_Set(".MAKE", p1, VAR_GLOBAL, 0); Var_Set(MAKEFLAGS, "", VAR_GLOBAL, 0); Var_Set(MAKEOVERRIDES, "", VAR_GLOBAL, 0); Var_Set("MFLAGS", "", VAR_GLOBAL, 0); Var_Set(".ALLTARGETS", "", VAR_GLOBAL, 0); /* some makefiles need to know this */ Var_Set(MAKE_LEVEL ".ENV", MAKE_LEVEL_ENV, VAR_CMD, 0); /* * Set some other useful macros */ { char tmp[64], *ep; makelevel = ((ep = getenv(MAKE_LEVEL_ENV)) && *ep) ? atoi(ep) : 0; if (makelevel < 0) makelevel = 0; snprintf(tmp, sizeof(tmp), "%d", makelevel); Var_Set(MAKE_LEVEL, tmp, VAR_GLOBAL, 0); snprintf(tmp, sizeof(tmp), "%u", myPid); Var_Set(".MAKE.PID", tmp, VAR_GLOBAL, 0); snprintf(tmp, sizeof(tmp), "%u", getppid()); Var_Set(".MAKE.PPID", tmp, VAR_GLOBAL, 0); } if (makelevel > 0) { char pn[1024]; snprintf(pn, sizeof(pn), "%s[%d]", progname, makelevel); progname = bmake_strdup(pn); } #ifdef USE_META meta_init(); #endif /* * First snag any flags out of the MAKE environment variable. * (Note this is *not* MAKEFLAGS since /bin/make uses that and it's * in a different format). */ #ifdef POSIX p1 = explode(getenv("MAKEFLAGS")); Main_ParseArgLine(p1); free(p1); #else Main_ParseArgLine(getenv("MAKE")); #endif /* * Find where we are (now). * We take care of PWD for the automounter below... */ if (getcwd(curdir, MAXPATHLEN) == NULL) { (void)fprintf(stderr, "%s: getcwd: %s.\n", progname, strerror(errno)); exit(2); } MainParseArgs(argc, argv); if (enterFlag) printf("%s: Entering directory `%s'\n", progname, curdir); /* * Verify that cwd is sane. */ if (stat(curdir, &sa) == -1) { (void)fprintf(stderr, "%s: %s: %s.\n", progname, curdir, strerror(errno)); exit(2); } /* * All this code is so that we know where we are when we start up * on a different machine with pmake. * Overriding getcwd() with $PWD totally breaks MAKEOBJDIRPREFIX * since the value of curdir can vary depending on how we got * here. Ie sitting at a shell prompt (shell that provides $PWD) * or via subdir.mk in which case its likely a shell which does * not provide it. * So, to stop it breaking this case only, we ignore PWD if * MAKEOBJDIRPREFIX is set or MAKEOBJDIR contains a transform. */ #ifndef NO_PWD_OVERRIDE if (!ignorePWD) { char *pwd; if ((pwd = getenv("PWD")) != NULL && getenv("MAKEOBJDIRPREFIX") == NULL) { const char *makeobjdir = getenv("MAKEOBJDIR"); if (makeobjdir == NULL || !strchr(makeobjdir, '$')) { if (stat(pwd, &sb) == 0 && sa.st_ino == sb.st_ino && sa.st_dev == sb.st_dev) (void)strncpy(curdir, pwd, MAXPATHLEN); } } } #endif Var_Set(".CURDIR", curdir, VAR_GLOBAL, 0); /* * Find the .OBJDIR. If MAKEOBJDIRPREFIX, or failing that, * MAKEOBJDIR is set in the environment, try only that value * and fall back to .CURDIR if it does not exist. * * Otherwise, try _PATH_OBJDIR.MACHINE, _PATH_OBJDIR, and * finally _PATH_OBJDIRPREFIX`pwd`, in that order. If none * of these paths exist, just use .CURDIR. */ Dir_Init(curdir); (void)Main_SetObjdir(curdir); if ((path = getenv("MAKEOBJDIRPREFIX")) != NULL) { (void)snprintf(mdpath, MAXPATHLEN, "%s%s", path, curdir); (void)Main_SetObjdir(mdpath); } else if ((path = getenv("MAKEOBJDIR")) != NULL) { (void)Main_SetObjdir(path); } else { (void)snprintf(mdpath, MAXPATHLEN, "%s.%s", _PATH_OBJDIR, machine); if (!Main_SetObjdir(mdpath) && !Main_SetObjdir(_PATH_OBJDIR)) { (void)snprintf(mdpath, MAXPATHLEN, "%s%s", _PATH_OBJDIRPREFIX, curdir); (void)Main_SetObjdir(mdpath); } } /* * Be compatible if user did not specify -j and did not explicitly * turned compatibility on */ if (!compatMake && !forceJobs) { compatMake = TRUE; } /* * Initialize archive, target and suffix modules in preparation for * parsing the makefile(s) */ Arch_Init(); Targ_Init(); Suff_Init(); Trace_Init(tracefile); DEFAULT = NULL; (void)time(&now); Trace_Log(MAKESTART, NULL); /* * Set up the .TARGETS variable to contain the list of targets to be * created. If none specified, make the variable empty -- the parser * will fill the thing in with the default or .MAIN target. */ if (!Lst_IsEmpty(create)) { LstNode ln; for (ln = Lst_First(create); ln != NULL; ln = Lst_Succ(ln)) { char *name = (char *)Lst_Datum(ln); Var_Append(".TARGETS", name, VAR_GLOBAL); } } else Var_Set(".TARGETS", "", VAR_GLOBAL, 0); /* * If no user-supplied system path was given (through the -m option) * add the directories from the DEFSYSPATH (more than one may be given * as dir1:...:dirn) to the system include path. */ if (syspath == NULL || *syspath == '\0') syspath = defsyspath; else syspath = bmake_strdup(syspath); for (start = syspath; *start != '\0'; start = cp) { for (cp = start; *cp != '\0' && *cp != ':'; cp++) continue; if (*cp == ':') { *cp++ = '\0'; } /* look for magic parent directory search string */ if (strncmp(".../", start, 4) != 0) { (void)Dir_AddDir(defIncPath, start); } else { if (Dir_FindHereOrAbove(curdir, start+4, found_path, sizeof(found_path))) { (void)Dir_AddDir(defIncPath, found_path); } } } if (syspath != defsyspath) free(syspath); /* * Read in the built-in rules first, followed by the specified * makefile, if it was (makefile != NULL), or the default * makefile and Makefile, in that order, if it wasn't. */ if (!noBuiltins) { LstNode ln; sysMkPath = Lst_Init(FALSE); Dir_Expand(_PATH_DEFSYSMK, Lst_IsEmpty(sysIncPath) ? defIncPath : sysIncPath, sysMkPath); if (Lst_IsEmpty(sysMkPath)) Fatal("%s: no system rules (%s).", progname, _PATH_DEFSYSMK); ln = Lst_Find(sysMkPath, NULL, ReadMakefile); if (ln == NULL) Fatal("%s: cannot open %s.", progname, (char *)Lst_Datum(ln)); } if (!Lst_IsEmpty(makefiles)) { LstNode ln; ln = Lst_Find(makefiles, NULL, ReadAllMakefiles); if (ln != NULL) Fatal("%s: cannot open %s.", progname, (char *)Lst_Datum(ln)); } else { p1 = Var_Subst(NULL, "${" MAKEFILE_PREFERENCE "}", VAR_CMD, 0); if (p1) { (void)str2Lst_Append(makefiles, p1, NULL); (void)Lst_Find(makefiles, NULL, ReadMakefile); free(p1); } } /* In particular suppress .depend for '-r -V .OBJDIR -f /dev/null' */ if (!noBuiltins || !printVars) { makeDependfile = Var_Subst(NULL, "${.MAKE.DEPENDFILE:T}", VAR_CMD, 0); doing_depend = TRUE; (void)ReadMakefile(makeDependfile, NULL); doing_depend = FALSE; } MakeMode(NULL); Var_Append("MFLAGS", Var_Value(MAKEFLAGS, VAR_GLOBAL, &p1), VAR_GLOBAL); if (p1) free(p1); if (!compatMake) Job_ServerStart(maxJobTokens, jp_0, jp_1); if (DEBUG(JOB)) fprintf(debug_file, "job_pipe %d %d, maxjobs %d, tokens %d, compat %d\n", jp_0, jp_1, maxJobs, maxJobTokens, compatMake); Main_ExportMAKEFLAGS(TRUE); /* initial export */ /* * For compatibility, look at the directories in the VPATH variable * and add them to the search path, if the variable is defined. The * variable's value is in the same format as the PATH envariable, i.e. * <directory>:<directory>:<directory>... */ if (Var_Exists("VPATH", VAR_CMD)) { char *vpath, savec; /* * GCC stores string constants in read-only memory, but * Var_Subst will want to write this thing, so store it * in an array */ static char VPATH[] = "${VPATH}"; vpath = Var_Subst(NULL, VPATH, VAR_CMD, FALSE); path = vpath; do { /* skip to end of directory */ for (cp = path; *cp != ':' && *cp != '\0'; cp++) continue; /* Save terminator character so know when to stop */ savec = *cp; *cp = '\0'; /* Add directory to search path */ (void)Dir_AddDir(dirSearchPath, path); *cp = savec; path = cp + 1; } while (savec == ':'); free(vpath); } /* * Now that all search paths have been read for suffixes et al, it's * time to add the default search path to their lists... */ Suff_DoPaths(); /* * Propagate attributes through :: dependency lists. */ Targ_Propagate(); /* print the initial graph, if the user requested it */ if (DEBUG(GRAPH1)) Targ_PrintGraph(1); /* print the values of any variables requested by the user */ if (printVars) { LstNode ln; Boolean expandVars; if (debugVflag) expandVars = FALSE; else expandVars = getBoolean(".MAKE.EXPAND_VARIABLES", FALSE); for (ln = Lst_First(variables); ln != NULL; ln = Lst_Succ(ln)) { char *var = (char *)Lst_Datum(ln); char *value; if (strchr(var, '$')) { value = p1 = Var_Subst(NULL, var, VAR_GLOBAL, 0); } else if (expandVars) { char tmp[128]; if (snprintf(tmp, sizeof(tmp), "${%s}", var) >= (int)(sizeof(tmp))) Fatal("%s: variable name too big: %s", progname, var); value = p1 = Var_Subst(NULL, tmp, VAR_GLOBAL, 0); } else { value = Var_Value(var, VAR_GLOBAL, &p1); } printf("%s\n", value ? value : ""); if (p1) free(p1); } } else { /* * Have now read the entire graph and need to make a list of * targets to create. If none was given on the command line, * we consult the parsing module to find the main target(s) * to create. */ if (Lst_IsEmpty(create)) targs = Parse_MainName(); else targs = Targ_FindList(create, TARG_CREATE); if (!compatMake) { /* * Initialize job module before traversing the graph * now that any .BEGIN and .END targets have been read. * This is done only if the -q flag wasn't given * (to prevent the .BEGIN from being executed should * it exist). */ if (!queryFlag) { Job_Init(); jobsRunning = TRUE; } /* Traverse the graph, checking on all the targets */ outOfDate = Make_Run(targs); } else { /* * Compat_Init will take care of creating all the * targets as well as initializing the module. */ Compat_Run(targs); } } #ifdef CLEANUP Lst_Destroy(targs, NULL); Lst_Destroy(variables, NULL); Lst_Destroy(makefiles, NULL); Lst_Destroy(create, (FreeProc *)free); #endif /* print the graph now it's been processed if the user requested it */ if (DEBUG(GRAPH2)) Targ_PrintGraph(2); Trace_Log(MAKEEND, 0); if (enterFlag) printf("%s: Leaving directory `%s'\n", progname, curdir); Suff_End(); Targ_End(); Arch_End(); Var_End(); Parse_End(); Dir_End(); Job_End(); Trace_End(); return outOfDate ? 1 : 0; }
Boolean meta_oodate(GNode *gn, Boolean oodate) { static char *tmpdir = NULL; static char cwd[MAXPATHLEN]; char lcwd_vname[64]; char ldir_vname[64]; char lcwd[MAXPATHLEN]; char latestdir[MAXPATHLEN]; char fname[MAXPATHLEN]; char fname1[MAXPATHLEN]; char fname2[MAXPATHLEN]; char fname3[MAXPATHLEN]; const char *dname; const char *tname; char *p; char *cp; char *link_src; char *move_target; static size_t cwdlen = 0; static size_t tmplen = 0; FILE *fp; Boolean needOODATE = FALSE; Lst missingFiles; char *pa[4]; /* >= possible uses */ int i; int have_filemon = FALSE; if (oodate) return oodate; /* we're done */ i = 0; dname = Var_Value(".OBJDIR", gn, &pa[i++]); tname = Var_Value(TARGET, gn, &pa[i++]); /* if this succeeds fname3 is realpath of dname */ if (!meta_needed(gn, dname, tname, fname3, FALSE)) goto oodate_out; dname = fname3; missingFiles = Lst_Init(FALSE); /* * We need to check if the target is out-of-date. This includes * checking if the expanded command has changed. This in turn * requires that all variables are set in the same way that they * would be if the target needs to be re-built. */ Make_DoAllVar(gn); meta_name(gn, fname, sizeof(fname), dname, tname, dname); #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "meta_oodate: %s\n", fname); #endif if ((fp = fopen(fname, "r")) != NULL) { static char *buf = NULL; static size_t bufsz; int lineno = 0; int lastpid = 0; int pid; int x; LstNode ln; struct stat fs; if (!buf) { bufsz = 8 * BUFSIZ; buf = bmake_malloc(bufsz); } if (!cwdlen) { if (getcwd(cwd, sizeof(cwd)) == NULL) err(1, "Could not get current working directory"); cwdlen = strlen(cwd); } strlcpy(lcwd, cwd, sizeof(lcwd)); strlcpy(latestdir, cwd, sizeof(latestdir)); if (!tmpdir) { tmpdir = getTmpdir(); tmplen = strlen(tmpdir); } /* we want to track all the .meta we read */ Var_Append(".MAKE.META.FILES", fname, VAR_GLOBAL); ln = Lst_First(gn->commands); while (!oodate && (x = fgetLine(&buf, &bufsz, 0, fp)) > 0) { lineno++; if (buf[x - 1] == '\n') buf[x - 1] = '\0'; else { warnx("%s: %d: line truncated at %u", fname, lineno, x); oodate = TRUE; break; } link_src = NULL; move_target = NULL; /* Find the start of the build monitor section. */ if (!have_filemon) { if (strncmp(buf, "-- filemon", 10) == 0) { have_filemon = TRUE; continue; } if (strncmp(buf, "# buildmon", 10) == 0) { have_filemon = TRUE; continue; } } /* Delimit the record type. */ p = buf; #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: %s\n", fname, lineno, buf); #endif strsep(&p, " "); if (have_filemon) { /* * We are in the 'filemon' output section. * Each record from filemon follows the general form: * * <key> <pid> <data> * * Where: * <key> is a single letter, denoting the syscall. * <pid> is the process that made the syscall. * <data> is the arguments (of interest). */ switch(buf[0]) { case '#': /* comment */ case 'V': /* version */ break; default: /* * We need to track pathnames per-process. * * Each process run by make, starts off in the 'CWD' * recorded in the .meta file, if it chdirs ('C') * elsewhere we need to track that - but only for * that process. If it forks ('F'), we initialize * the child to have the same cwd as its parent. * * We also need to track the 'latestdir' of * interest. This is usually the same as cwd, but * not if a process is reading directories. * * Each time we spot a different process ('pid') * we save the current value of 'latestdir' in a * variable qualified by 'lastpid', and * re-initialize 'latestdir' to any pre-saved * value for the current 'pid' and 'CWD' if none. */ CHECK_VALID_META(p); pid = atoi(p); if (pid > 0 && pid != lastpid) { char *ldir; char *tp; if (lastpid > 0) { /* We need to remember these. */ Var_Set(lcwd_vname, lcwd, VAR_GLOBAL, 0); Var_Set(ldir_vname, latestdir, VAR_GLOBAL, 0); } snprintf(lcwd_vname, sizeof(lcwd_vname), LCWD_VNAME_FMT, pid); snprintf(ldir_vname, sizeof(ldir_vname), LDIR_VNAME_FMT, pid); lastpid = pid; ldir = Var_Value(ldir_vname, VAR_GLOBAL, &tp); if (ldir) { strlcpy(latestdir, ldir, sizeof(latestdir)); free(tp); } ldir = Var_Value(lcwd_vname, VAR_GLOBAL, &tp); if (ldir) { strlcpy(lcwd, ldir, sizeof(lcwd)); free(tp); } } /* Skip past the pid. */ if (strsep(&p, " ") == NULL) continue; #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: %d: %c: cwd=%s lcwd=%s ldir=%s\n", fname, lineno, pid, buf[0], cwd, lcwd, latestdir); #endif break; } CHECK_VALID_META(p); /* Process according to record type. */ switch (buf[0]) { case 'X': /* eXit */ Var_Delete(lcwd_vname, VAR_GLOBAL); Var_Delete(ldir_vname, VAR_GLOBAL); lastpid = 0; /* no need to save ldir_vname */ break; case 'F': /* [v]Fork */ { char cldir[64]; int child; child = atoi(p); if (child > 0) { snprintf(cldir, sizeof(cldir), LCWD_VNAME_FMT, child); Var_Set(cldir, lcwd, VAR_GLOBAL, 0); snprintf(cldir, sizeof(cldir), LDIR_VNAME_FMT, child); Var_Set(cldir, latestdir, VAR_GLOBAL, 0); #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: %d: cwd=%s lcwd=%s ldir=%s\n", fname, lineno, child, cwd, lcwd, latestdir); #endif } } break; case 'C': /* Chdir */ /* Update lcwd and latest directory. */ strlcpy(latestdir, p, sizeof(latestdir)); strlcpy(lcwd, p, sizeof(lcwd)); Var_Set(lcwd_vname, lcwd, VAR_GLOBAL, 0); Var_Set(ldir_vname, lcwd, VAR_GLOBAL, 0); #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: cwd=%s ldir=%s\n", fname, lineno, cwd, lcwd); #endif break; case 'M': /* renaMe */ /* * For 'M'oves we want to check * the src as for 'R'ead * and the target as for 'W'rite. */ cp = p; /* save this for a second */ /* now get target */ if (strsep(&p, " ") == NULL) continue; CHECK_VALID_META(p); move_target = p; p = cp; /* 'L' and 'M' put single quotes around the args */ DEQUOTE(p); DEQUOTE(move_target); /* FALLTHROUGH */ case 'D': /* unlink */ if (*p == '/' && !Lst_IsEmpty(missingFiles)) { /* remove any missingFiles entries that match p */ if ((ln = Lst_Find(missingFiles, p, path_match)) != NULL) { LstNode nln; char *tp; do { nln = Lst_FindFrom(missingFiles, Lst_Succ(ln), p, path_match); tp = Lst_Datum(ln); Lst_Remove(missingFiles, ln); free(tp); } while ((ln = nln) != NULL); } } if (buf[0] == 'M') { /* the target of the mv is a file 'W'ritten */ #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "meta_oodate: M %s -> %s\n", p, move_target); #endif p = move_target; goto check_write; } break; case 'L': /* Link */ /* * For 'L'inks check * the src as for 'R'ead * and the target as for 'W'rite. */ link_src = p; /* now get target */ if (strsep(&p, " ") == NULL) continue; CHECK_VALID_META(p); /* 'L' and 'M' put single quotes around the args */ DEQUOTE(p); DEQUOTE(link_src); #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "meta_oodate: L %s -> %s\n", link_src, p); #endif /* FALLTHROUGH */ case 'W': /* Write */ check_write: /* * If a file we generated within our bailiwick * but outside of .OBJDIR is missing, * we need to do it again. */ /* ignore non-absolute paths */ if (*p != '/') break; if (Lst_IsEmpty(metaBailiwick)) break; /* ignore cwd - normal dependencies handle those */ if (strncmp(p, cwd, cwdlen) == 0) break; if (!Lst_ForEach(metaBailiwick, prefix_match, p)) break; /* tmpdir might be within */ if (tmplen > 0 && strncmp(p, tmpdir, tmplen) == 0) break; /* ignore anything containing the string "tmp" */ if ((strstr("tmp", p))) break; if ((link_src != NULL && cached_lstat(p, &fs) < 0) || (link_src == NULL && cached_stat(p, &fs) < 0)) { if (!meta_ignore(gn, p)) { if (Lst_Find(missingFiles, p, string_match) == NULL) Lst_AtEnd(missingFiles, bmake_strdup(p)); } } break; check_link_src: p = link_src; link_src = NULL; #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "meta_oodate: L src %s\n", p); #endif /* FALLTHROUGH */ case 'R': /* Read */ case 'E': /* Exec */ /* * Check for runtime files that can't * be part of the dependencies because * they are _expected_ to change. */ if (meta_ignore(gn, p)) break; /* * The rest of the record is the file name. * Check if it's not an absolute path. */ { char *sdirs[4]; char **sdp; int sdx = 0; int found = 0; if (*p == '/') { sdirs[sdx++] = p; /* done */ } else { if (strcmp(".", p) == 0) continue; /* no point */ /* Check vs latestdir */ snprintf(fname1, sizeof(fname1), "%s/%s", latestdir, p); sdirs[sdx++] = fname1; if (strcmp(latestdir, lcwd) != 0) { /* Check vs lcwd */ snprintf(fname2, sizeof(fname2), "%s/%s", lcwd, p); sdirs[sdx++] = fname2; } if (strcmp(lcwd, cwd) != 0) { /* Check vs cwd */ snprintf(fname3, sizeof(fname3), "%s/%s", cwd, p); sdirs[sdx++] = fname3; } } sdirs[sdx++] = NULL; for (sdp = sdirs; *sdp && !found; sdp++) { #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: looking for: %s\n", fname, lineno, *sdp); #endif if (cached_stat(*sdp, &fs) == 0) { found = 1; p = *sdp; } } if (found) { #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: found: %s\n", fname, lineno, p); #endif if (!S_ISDIR(fs.st_mode) && fs.st_mtime > gn->mtime) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: file '%s' is newer than the target...\n", fname, lineno, p); oodate = TRUE; } else if (S_ISDIR(fs.st_mode)) { /* Update the latest directory. */ cached_realpath(p, latestdir); } } else if (errno == ENOENT && *p == '/' && strncmp(p, cwd, cwdlen) != 0) { /* * A referenced file outside of CWD is missing. * We cannot catch every eventuality here... */ if (Lst_Find(missingFiles, p, string_match) == NULL) Lst_AtEnd(missingFiles, bmake_strdup(p)); } } if (buf[0] == 'E') { /* previous latestdir is no longer relevant */ strlcpy(latestdir, lcwd, sizeof(latestdir)); } break; default: break; } if (!oodate && buf[0] == 'L' && link_src != NULL) goto check_link_src; } else if (strcmp(buf, "CMD") == 0) { /* * Compare the current command with the one in the * meta data file. */ if (ln == NULL) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: there were more build commands in the meta data file than there are now...\n", fname, lineno); oodate = TRUE; } else { char *cmd = (char *)Lst_Datum(ln); Boolean hasOODATE = FALSE; if (strstr(cmd, "$?")) hasOODATE = TRUE; else if ((cp = strstr(cmd, ".OODATE"))) { /* check for $[{(].OODATE[:)}] */ if (cp > cmd + 2 && cp[-2] == '$') hasOODATE = TRUE; } if (hasOODATE) { needOODATE = TRUE; if (DEBUG(META)) fprintf(debug_file, "%s: %d: cannot compare command using .OODATE\n", fname, lineno); } cmd = Var_Subst(NULL, cmd, gn, VARF_WANTRES|VARF_UNDEFERR); if ((cp = strchr(cmd, '\n'))) { int n; /* * This command contains newlines, we need to * fetch more from the .meta file before we * attempt a comparison. */ /* first put the newline back at buf[x - 1] */ buf[x - 1] = '\n'; do { /* now fetch the next line */ if ((n = fgetLine(&buf, &bufsz, x, fp)) <= 0) break; x = n; lineno++; if (buf[x - 1] != '\n') { warnx("%s: %d: line truncated at %u", fname, lineno, x); break; } cp = strchr(++cp, '\n'); } while (cp); if (buf[x - 1] == '\n') buf[x - 1] = '\0'; } if (!hasOODATE && !(gn->type & OP_NOMETA_CMP) && strcmp(p, cmd) != 0) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: a build command has changed\n%s\nvs\n%s\n", fname, lineno, p, cmd); if (!metaIgnoreCMDs) oodate = TRUE; } free(cmd); ln = Lst_Succ(ln); } } else if (strcmp(buf, "CWD") == 0) { /* * Check if there are extra commands now * that weren't in the meta data file. */ if (!oodate && ln != NULL) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: there are extra build commands now that weren't in the meta data file\n", fname, lineno); oodate = TRUE; } if (strcmp(p, cwd) != 0) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: the current working directory has changed from '%s' to '%s'\n", fname, lineno, p, curdir); oodate = TRUE; } } } fclose(fp); if (!Lst_IsEmpty(missingFiles)) { if (DEBUG(META)) fprintf(debug_file, "%s: missing files: %s...\n", fname, (char *)Lst_Datum(Lst_First(missingFiles))); oodate = TRUE; } if (!oodate && !have_filemon && filemonMissing) { if (DEBUG(META)) fprintf(debug_file, "%s: missing filemon data\n", fname); oodate = TRUE; } } else { if (writeMeta && metaMissing) { cp = NULL; /* if target is in .CURDIR we do not need a meta file */ if (gn->path && (cp = strrchr(gn->path, '/')) && cp > gn->path) { if (strncmp(curdir, gn->path, (cp - gn->path)) != 0) { cp = NULL; /* not in .CURDIR */ } } if (!cp) { if (DEBUG(META)) fprintf(debug_file, "%s: required but missing\n", fname); oodate = TRUE; needOODATE = TRUE; /* assume the worst */ } } } Lst_Destroy(missingFiles, (FreeProc *)free); if (oodate && needOODATE) { /* * Target uses .OODATE which is empty; or we wouldn't be here. * We have decided it is oodate, so .OODATE needs to be set. * All we can sanely do is set it to .ALLSRC. */ Var_Delete(OODATE, gn); Var_Set(OODATE, Var_Value(ALLSRC, gn, &cp), gn, 0); free(cp); } oodate_out: for (i--; i >= 0; i--) { free(pa[i]); } return oodate; }
Boolean meta_oodate(GNode *gn, Boolean oodate) { static char *tmpdir = NULL; static char cwd[MAXPATHLEN]; char ldir_vname[64]; char latestdir[MAXPATHLEN]; char fname[MAXPATHLEN]; char fname1[MAXPATHLEN]; char fname2[MAXPATHLEN]; char *p; char *cp; static size_t cwdlen = 0; static size_t tmplen = 0; FILE *fp; Boolean ignoreOODATE = FALSE; Lst missingFiles; if (oodate) return oodate; /* we're done */ missingFiles = Lst_Init(FALSE); /* * We need to check if the target is out-of-date. This includes * checking if the expanded command has changed. This in turn * requires that all variables are set in the same way that they * would be if the target needs to be re-built. */ Make_DoAllVar(gn); meta_name(gn, fname, sizeof(fname), NULL, NULL); #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "meta_oodate: %s\n", fname); #endif if ((fp = fopen(fname, "r")) != NULL) { static char *buf = NULL; static size_t bufsz; int lineno = 0; int lastpid = 0; int pid; int f = 0; int x; LstNode ln; struct stat fs; if (!buf) { bufsz = 8 * BUFSIZ; buf = bmake_malloc(bufsz); } if (!cwdlen) { if (getcwd(cwd, sizeof(cwd)) == NULL) err(1, "Could not get current working directory"); cwdlen = strlen(cwd); } if (!tmpdir) { tmpdir = getTmpdir(); tmplen = strlen(tmpdir); } /* we want to track all the .meta we read */ Var_Append(".MAKE.META.FILES", fname, VAR_GLOBAL); ln = Lst_First(gn->commands); while (!oodate && (x = fgetLine(&buf, &bufsz, 0, fp)) > 0) { lineno++; if (buf[x - 1] == '\n') buf[x - 1] = '\0'; else warnx("%s: %d: line truncated at %u", fname, lineno, x); /* Find the start of the build monitor section. */ if (!f) { if (strncmp(buf, "-- filemon", 10) == 0) { f = 1; continue; } if (strncmp(buf, "# buildmon", 10) == 0) { f = 1; continue; } } /* Delimit the record type. */ p = buf; #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: %s\n", fname, lineno, buf); #endif strsep(&p, " "); if (f) { /* * We are in the 'filemon' output section. * Each record from filemon follows the general form: * * <key> <pid> <data> * * Where: * <key> is a single letter, denoting the syscall. * <pid> is the process that made the syscall. * <data> is the arguments (of interest). */ switch(buf[0]) { case '#': /* comment */ case 'V': /* version */ break; default: /* * We need to track pathnames per-process. * * Each process run by make, starts off in the 'CWD' * recorded in the .meta file, if it chdirs ('C') * elsewhere we need to track that - but only for * that process. If it forks ('F'), we initialize * the child to have the same cwd as its parent. * * We also need to track the 'latestdir' of * interest. This is usually the same as cwd, but * not if a process is reading directories. * * Each time we spot a different process ('pid') * we save the current value of 'latestdir' in a * variable qualified by 'lastpid', and * re-initialize 'latestdir' to any pre-saved * value for the current 'pid' and 'CWD' if none. */ pid = atoi(p); if (pid > 0 && pid != lastpid) { char *ldir; char *tp; if (lastpid > 0) { /* We need to remember this. */ Var_Set(ldir_vname, latestdir, VAR_GLOBAL, 0); } snprintf(ldir_vname, sizeof(ldir_vname), LDIR_VNAME_FMT, pid); lastpid = pid; ldir = Var_Value(ldir_vname, VAR_GLOBAL, &tp); if (ldir) { strlcpy(latestdir, ldir, sizeof(latestdir)); if (tp) free(tp); } else strlcpy(latestdir, cwd, sizeof(latestdir)); } /* Skip past the pid. */ if (strsep(&p, " ") == NULL) continue; #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: cwd=%s ldir=%s\n", fname, lineno, cwd, latestdir); #endif break; } /* Process according to record type. */ switch (buf[0]) { case 'X': /* eXit */ Var_Delete(ldir_vname, VAR_GLOBAL); lastpid = 0; /* no need to save ldir_vname */ break; case 'F': /* [v]Fork */ { char cldir[64]; int child; child = atoi(p); if (child > 0) { snprintf(cldir, sizeof(cldir), LDIR_VNAME_FMT, child); Var_Set(cldir, latestdir, VAR_GLOBAL, 0); } } break; case 'C': /* Chdir */ /* Update the latest directory. */ strlcpy(latestdir, p, sizeof(latestdir)); break; case 'M': /* renaMe */ if (Lst_IsEmpty(missingFiles)) break; /* 'L' and 'M' put single quotes around the args */ if (*p == '\'') { char *ep; p++; if ((ep = strchr(p, '\''))) *ep = '\0'; } /* FALLTHROUGH */ case 'D': /* unlink */ if (*p == '/' && !Lst_IsEmpty(missingFiles)) { /* remove p from the missingFiles list if present */ if ((ln = Lst_Find(missingFiles, p, string_match)) != NULL) { char *tp = Lst_Datum(ln); Lst_Remove(missingFiles, ln); free(tp); } } break; case 'L': /* Link */ /* we want the target */ if (strsep(&p, " ") == NULL) continue; /* 'L' and 'M' put single quotes around the args */ if (*p == '\'') { char *ep; p++; if ((ep = strchr(p, '\''))) *ep = '\0'; } /* FALLTHROUGH */ case 'W': /* Write */ /* * If a file we generated within our bailiwick * but outside of .OBJDIR is missing, * we need to do it again. */ /* ignore non-absolute paths */ if (*p != '/') break; if (Lst_IsEmpty(metaBailiwick)) break; /* ignore cwd - normal dependencies handle those */ if (strncmp(p, cwd, cwdlen) == 0) break; if (!Lst_ForEach(metaBailiwick, prefix_match, p)) break; /* tmpdir might be within */ if (tmplen > 0 && strncmp(p, tmpdir, tmplen) == 0) break; /* ignore anything containing the string "tmp" */ if ((strstr("tmp", p))) break; if (stat(p, &fs) < 0) { Lst_AtEnd(missingFiles, bmake_strdup(p)); } break; case 'R': /* Read */ case 'E': /* Exec */ /* * Check for runtime files that can't * be part of the dependencies because * they are _expected_ to change. */ if (strncmp(p, "/tmp/", 5) == 0 || (tmplen > 0 && strncmp(p, tmpdir, tmplen) == 0)) break; if (strncmp(p, "/var/", 5) == 0) break; /* Ignore device files. */ if (strncmp(p, "/dev/", 5) == 0) break; /* Ignore /etc/ files. */ if (strncmp(p, "/etc/", 5) == 0) break; /* * The rest of the record is the file name. * Check if it's not an absolute path. */ { char *sdirs[4]; char **sdp; int sdx = 0; int found = 0; if (*p == '/') { sdirs[sdx++] = p; /* done */ } else { if (strcmp(".", p) == 0) continue; /* no point */ /* Check vs latestdir */ snprintf(fname1, sizeof(fname1), "%s/%s", latestdir, p); sdirs[sdx++] = fname1; if (strcmp(latestdir, cwd) != 0) { /* Check vs cwd */ snprintf(fname2, sizeof(fname2), "%s/%s", cwd, p); sdirs[sdx++] = fname2; } } sdirs[sdx++] = NULL; for (sdp = sdirs; *sdp && !found; sdp++) { #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: looking for: %s\n", fname, lineno, *sdp); #endif if (stat(*sdp, &fs) == 0) { found = 1; p = *sdp; } } if (found) { #ifdef DEBUG_META_MODE if (DEBUG(META)) fprintf(debug_file, "%s: %d: found: %s\n", fname, lineno, p); #endif if (!S_ISDIR(fs.st_mode) && fs.st_mtime > gn->mtime) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: file '%s' is newer than the target...\n", fname, lineno, p); oodate = TRUE; } else if (S_ISDIR(fs.st_mode)) { /* Update the latest directory. */ realpath(p, latestdir); } } else if (errno == ENOENT && *p == '/' && strncmp(p, cwd, cwdlen) != 0) { /* * A referenced file outside of CWD is missing. * We cannot catch every eventuality here... */ if (DEBUG(META)) fprintf(debug_file, "%s: %d: file '%s' may have moved?...\n", fname, lineno, p); oodate = TRUE; } } break; default: break; } } else if (strcmp(buf, "CMD") == 0) { /* * Compare the current command with the one in the * meta data file. */ if (ln == NULL) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: there were more build commands in the meta data file than there are now...\n", fname, lineno); oodate = TRUE; } else { char *cmd = (char *)Lst_Datum(ln); if (!ignoreOODATE) { if (strstr(cmd, "$?")) ignoreOODATE = TRUE; else if ((cp = strstr(cmd, ".OODATE"))) { /* check for $[{(].OODATE[)}] */ if (cp > cmd + 2 && cp[-2] == '$') ignoreOODATE = TRUE; } if (ignoreOODATE && DEBUG(META)) fprintf(debug_file, "%s: %d: cannot compare commands using .OODATE\n", fname, lineno); } cmd = Var_Subst(NULL, cmd, gn, TRUE); if ((cp = strchr(cmd, '\n'))) { int n; /* * This command contains newlines, we need to * fetch more from the .meta file before we * attempt a comparison. */ /* first put the newline back at buf[x - 1] */ buf[x - 1] = '\n'; do { /* now fetch the next line */ if ((n = fgetLine(&buf, &bufsz, x, fp)) <= 0) break; x = n; lineno++; if (buf[x - 1] != '\n') { warnx("%s: %d: line truncated at %u", fname, lineno, x); break; } cp = strchr(++cp, '\n'); } while (cp); if (buf[x - 1] == '\n') buf[x - 1] = '\0'; } if (!ignoreOODATE && !(gn->type & OP_NOMETA_CMP) && strcmp(p, cmd) != 0) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: a build command has changed\n%s\nvs\n%s\n", fname, lineno, p, cmd); if (!metaIgnoreCMDs) oodate = TRUE; } free(cmd); ln = Lst_Succ(ln); } } else if (strcmp(buf, "CWD") == 0) { /* * Check if there are extra commands now * that weren't in the meta data file. */ if (!oodate && ln != NULL) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: there are extra build commands now that weren't in the meta data file\n", fname, lineno); oodate = TRUE; } if (strcmp(p, cwd) != 0) { if (DEBUG(META)) fprintf(debug_file, "%s: %d: the current working directory has changed from '%s' to '%s'\n", fname, lineno, p, curdir); oodate = TRUE; } } } fclose(fp); if (!Lst_IsEmpty(missingFiles)) { if (DEBUG(META)) fprintf(debug_file, "%s: missing files: %s...\n", fname, (char *)Lst_Datum(Lst_First(missingFiles))); oodate = TRUE; Lst_Destroy(missingFiles, (FreeProc *)free); } } if (oodate && ignoreOODATE) { /* * Target uses .OODATE, so we need to re-compute it. * We need to clean up what Make_DoAllVar() did. */ Var_Delete(ALLSRC, gn); Var_Delete(OODATE, gn); gn->flags &= ~DONE_ALLSRC; } return oodate; }
/*- *----------------------------------------------------------------------- * Make_Update -- * Perform update on the parents of a node. Used by JobFinish once * a node has been dealt with and by MakeStartJobs if it finds an * up-to-date node. * * Input: * cgn the child node * * Results: * Always returns 0 * * Side Effects: * The unmade field of pgn is decremented and pgn may be placed on * the toBeMade queue if this field becomes 0. * * If the child was made, the parent's flag CHILDMADE field will be * set true. * * If the child is not up-to-date and still does not exist, * set the FORCE flag on the parents. * * If the child wasn't made, the cmgn field of the parent will be * altered if the child's mtime is big enough. * * Finally, if the child is the implied source for the parent, the * parent's IMPSRC variable is set appropriately. * *----------------------------------------------------------------------- */ void Make_Update(GNode *cgn) { GNode *pgn; /* the parent node */ char *cname; /* the child's name */ LstNode ln; /* Element in parents and iParents lists */ time_t mtime = -1; char *p1; Lst parents; GNode *centurion; /* It is save to re-examine any nodes again */ checked++; cname = Var_Value(TARGET, cgn, &p1); if (p1) free(p1); if (DEBUG(MAKE)) fprintf(debug_file, "Make_Update: %s%s\n", cgn->name, cgn->cohort_num); /* * If the child was actually made, see what its modification time is * now -- some rules won't actually update the file. If the file still * doesn't exist, make its mtime now. */ if (cgn->made != UPTODATE) { mtime = Make_Recheck(cgn); } /* * If this is a `::' node, we must consult its first instance * which is where all parents are linked. */ if ((centurion = cgn->centurion) != NULL) { if (!Lst_IsEmpty(cgn->parents)) Punt("%s%s: cohort has parents", cgn->name, cgn->cohort_num); centurion->unmade_cohorts -= 1; if (centurion->unmade_cohorts < 0) Error("Graph cycles through centurion %s", centurion->name); } else { centurion = cgn; } parents = centurion->parents; /* If this was a .ORDER node, schedule the RHS */ Lst_ForEach(centurion->order_succ, MakeBuildParent, Lst_First(toBeMade)); /* Now mark all the parents as having one less unmade child */ if (Lst_Open(parents) == SUCCESS) { while ((ln = Lst_Next(parents)) != NULL) { pgn = (GNode *)Lst_Datum(ln); if (DEBUG(MAKE)) fprintf(debug_file, "inspect parent %s%s: flags %x, " "type %x, made %d, unmade %d ", pgn->name, pgn->cohort_num, pgn->flags, pgn->type, pgn->made, pgn->unmade-1); if (!(pgn->flags & REMAKE)) { /* This parent isn't needed */ if (DEBUG(MAKE)) fprintf(debug_file, "- not needed\n"); continue; } if (mtime == 0 && !(cgn->type & OP_WAIT)) pgn->flags |= FORCE; /* * If the parent has the .MADE attribute, its timestamp got * updated to that of its newest child, and its unmake * child count got set to zero in Make_ExpandUse(). * However other things might cause us to build one of its * children - and so we mustn't do any processing here when * the child build finishes. */ if (pgn->type & OP_MADE) { if (DEBUG(MAKE)) fprintf(debug_file, "- .MADE\n"); continue; } if ( ! (cgn->type & (OP_EXEC|OP_USE|OP_USEBEFORE))) { if (cgn->made == MADE) pgn->flags |= CHILDMADE; (void)Make_TimeStamp(pgn, cgn); } /* * A parent must wait for the completion of all instances * of a `::' dependency. */ if (centurion->unmade_cohorts != 0 || centurion->made < MADE) { if (DEBUG(MAKE)) fprintf(debug_file, "- centurion made %d, %d unmade cohorts\n", centurion->made, centurion->unmade_cohorts); continue; } /* One more child of this parent is now made */ pgn->unmade -= 1; if (pgn->unmade < 0) { if (DEBUG(MAKE)) { fprintf(debug_file, "Graph cycles through %s%s\n", pgn->name, pgn->cohort_num); Targ_PrintGraph(2); } Error("Graph cycles through %s%s", pgn->name, pgn->cohort_num); } /* We must always rescan the parents of .WAIT and .ORDER nodes. */ if (pgn->unmade != 0 && !(centurion->type & OP_WAIT) && !(centurion->flags & DONE_ORDER)) { if (DEBUG(MAKE)) fprintf(debug_file, "- unmade children\n"); continue; } if (pgn->made != DEFERRED) { /* * Either this parent is on a different branch of the tree, * or it on the RHS of a .WAIT directive * or it is already on the toBeMade list. */ if (DEBUG(MAKE)) fprintf(debug_file, "- not deferred\n"); continue; } if (pgn->order_pred && Lst_ForEach(pgn->order_pred, MakeCheckOrder, 0)) { /* A .ORDER rule stops us building this */ continue; } if (DEBUG(MAKE)) { static int two = 2; fprintf(debug_file, "- %s%s made, schedule %s%s (made %d)\n", cgn->name, cgn->cohort_num, pgn->name, pgn->cohort_num, pgn->made); Targ_PrintNode(pgn, &two); } /* Ok, we can schedule the parent again */ pgn->made = REQUESTED; (void)Lst_EnQueue(toBeMade, pgn); } Lst_Close(parents); } /* * Set the .PREFIX and .IMPSRC variables for all the implied parents * of this node. */ if (Lst_Open(cgn->iParents) == SUCCESS) { char *cpref = Var_Value(PREFIX, cgn, &p1); while ((ln = Lst_Next(cgn->iParents)) != NULL) { pgn = (GNode *)Lst_Datum(ln); if (pgn->flags & REMAKE) { Var_Set(IMPSRC, cname, pgn, 0); if (cpref != NULL) Var_Set(PREFIX, cpref, pgn, 0); } } if (p1) free(p1); Lst_Close(cgn->iParents); } }
/*- *----------------------------------------------------------------------- * ArchStatMember -- * Locate a member of an archive, given the path of the archive and * the path of the desired member. * * Input: * archive Path to the archive * member Name of member. If it is a path, only the last * component is used. * hash TRUE if archive should be hashed if not already so. * * Results: * A pointer to the current struct ar_hdr structure for the member. Note * That no position is returned, so this is not useful for touching * archive members. This is mostly because we have no assurances that * The archive will remain constant after we read all the headers, so * there's not much point in remembering the position... * * Side Effects: * *----------------------------------------------------------------------- */ static struct ar_hdr * ArchStatMember(char *archive, char *member, Boolean hash) { #define AR_MAX_NAME_LEN (sizeof(arh.ar_name)-1) FILE * arch; /* Stream to archive */ int size; /* Size of archive member */ char *cp; /* Useful character pointer */ char magic[SARMAG]; LstNode ln; /* Lst member containing archive descriptor */ Arch *ar; /* Archive descriptor */ Hash_Entry *he; /* Entry containing member's description */ struct ar_hdr arh; /* archive-member header for reading archive */ char memName[MAXPATHLEN+1]; /* Current member name while hashing. */ /* * Because of space constraints and similar things, files are archived * using their final path components, not the entire thing, so we need * to point 'member' to the final component, if there is one, to make * the comparisons easier... */ cp = strrchr(member, '/'); if (cp != NULL) { member = cp + 1; } ln = Lst_Find(archives, archive, ArchFindArchive); if (ln != NULL) { ar = (Arch *)Lst_Datum(ln); he = Hash_FindEntry(&ar->members, member); if (he != NULL) { return ((struct ar_hdr *)Hash_GetValue(he)); } else { /* Try truncated name */ char copy[AR_MAX_NAME_LEN+1]; size_t len = strlen(member); if (len > AR_MAX_NAME_LEN) { len = AR_MAX_NAME_LEN; strncpy(copy, member, AR_MAX_NAME_LEN); copy[AR_MAX_NAME_LEN] = '\0'; } if ((he = Hash_FindEntry(&ar->members, copy)) != NULL) return ((struct ar_hdr *)Hash_GetValue(he)); return NULL; } } if (!hash) { /* * Caller doesn't want the thing hashed, just use ArchFindMember * to read the header for the member out and close down the stream * again. Since the archive is not to be hashed, we assume there's * no need to allocate extra room for the header we're returning, * so just declare it static. */ static struct ar_hdr sarh; arch = ArchFindMember(archive, member, &sarh, "r"); if (arch == NULL) { return NULL; } else { fclose(arch); return (&sarh); } } /* * We don't have this archive on the list yet, so we want to find out * everything that's in it and cache it so we can get at it quickly. */ arch = fopen(archive, "r"); if (arch == NULL) { return NULL; } /* * We use the ARMAG string to make sure this is an archive we * can handle... */ if ((fread(magic, SARMAG, 1, arch) != 1) || (strncmp(magic, ARMAG, SARMAG) != 0)) { fclose(arch); return NULL; } ar = bmake_malloc(sizeof(Arch)); ar->name = bmake_strdup(archive); ar->fnametab = NULL; ar->fnamesize = 0; Hash_InitTable(&ar->members, -1); memName[AR_MAX_NAME_LEN] = '\0'; while (fread((char *)&arh, sizeof(struct ar_hdr), 1, arch) == 1) { if (strncmp( arh.ar_fmag, ARFMAG, sizeof(arh.ar_fmag)) != 0) { /* * The header is bogus, so the archive is bad * and there's no way we can recover... */ goto badarch; } else { /* * We need to advance the stream's pointer to the start of the * next header. Files are padded with newlines to an even-byte * boundary, so we need to extract the size of the file from the * 'size' field of the header and round it up during the seek. */ arh.ar_size[sizeof(arh.ar_size)-1] = '\0'; size = (int)strtol(arh.ar_size, NULL, 10); (void)strncpy(memName, arh.ar_name, sizeof(arh.ar_name)); for (cp = &memName[AR_MAX_NAME_LEN]; *cp == ' '; cp--) { continue; } cp[1] = '\0'; #ifdef SVR4ARCHIVES /* * svr4 names are slash terminated. Also svr4 extended AR format. */ if (memName[0] == '/') { /* * svr4 magic mode; handle it */ switch (ArchSVR4Entry(ar, memName, size, arch)) { case -1: /* Invalid data */ goto badarch; case 0: /* List of files entry */ continue; default: /* Got the entry */ break; } } else { if (cp[0] == '/') cp[0] = '\0'; } #endif #ifdef AR_EFMT1 /* * BSD 4.4 extended AR format: #1/<namelen>, with name as the * first <namelen> bytes of the file */ if (strncmp(memName, AR_EFMT1, sizeof(AR_EFMT1) - 1) == 0 && isdigit((unsigned char)memName[sizeof(AR_EFMT1) - 1])) { unsigned int elen = atoi(&memName[sizeof(AR_EFMT1)-1]); if (elen > MAXPATHLEN) goto badarch; if (fread(memName, elen, 1, arch) != 1) goto badarch; memName[elen] = '\0'; fseek(arch, -elen, SEEK_CUR); if (DEBUG(ARCH) || DEBUG(MAKE)) { fprintf(debug_file, "ArchStat: Extended format entry for %s\n", memName); } } #endif he = Hash_CreateEntry(&ar->members, memName, NULL); Hash_SetValue(he, bmake_malloc(sizeof(struct ar_hdr))); memcpy(Hash_GetValue(he), &arh, sizeof(struct ar_hdr)); } fseek(arch, (size + 1) & ~1, SEEK_CUR); } fclose(arch); (void)Lst_AtEnd(archives, ar); /* * Now that the archive has been read and cached, we can look into * the hash table to find the desired member's header. */ he = Hash_FindEntry(&ar->members, member); if (he != NULL) { return ((struct ar_hdr *)Hash_GetValue(he)); } else { return NULL; } badarch: fclose(arch); Hash_DeleteTable(&ar->members); if (ar->fnametab) free(ar->fnametab); free(ar); return NULL; }
/*- *----------------------------------------------------------------------- * Make_HandleUse -- * Function called by Make_Run and SuffApplyTransform on the downward * pass to handle .USE and transformation nodes. It implements the * .USE and transformation functionality by copying the node's commands, * type flags and children to the parent node. * * A .USE node is much like an explicit transformation rule, except * its commands are always added to the target node, even if the * target already has commands. * * Input: * cgn The .USE node * pgn The target of the .USE node * * Results: * none * * Side Effects: * Children and commands may be added to the parent and the parent's * type may be changed. * *----------------------------------------------------------------------- */ void Make_HandleUse(GNode *cgn, GNode *pgn) { LstNode ln; /* An element in the children list */ #ifdef DEBUG_SRC if ((cgn->type & (OP_USE|OP_USEBEFORE|OP_TRANSFORM)) == 0) { fprintf(debug_file, "Make_HandleUse: called for plain node %s\n", cgn->name); return; } #endif if ((cgn->type & (OP_USE|OP_USEBEFORE)) || Lst_IsEmpty(pgn->commands)) { if (cgn->type & OP_USEBEFORE) { /* * .USEBEFORE -- * prepend the child's commands to the parent. */ Lst cmds = pgn->commands; pgn->commands = Lst_Duplicate(cgn->commands, NULL); (void)Lst_Concat(pgn->commands, cmds, LST_CONCNEW); Lst_Destroy(cmds, NULL); } else { /* * .USE or target has no commands -- * append the child's commands to the parent. */ (void)Lst_Concat(pgn->commands, cgn->commands, LST_CONCNEW); } } if (Lst_Open(cgn->children) == SUCCESS) { while ((ln = Lst_Next(cgn->children)) != NULL) { GNode *tgn, *gn = (GNode *)Lst_Datum(ln); /* * Expand variables in the .USE node's name * and save the unexpanded form. * We don't need to do this for commands. * They get expanded properly when we execute. */ if (gn->uname == NULL) { gn->uname = gn->name; } else { if (gn->name) free(gn->name); } gn->name = Var_Subst(NULL, gn->uname, pgn, FALSE); if (gn->name && gn->uname && strcmp(gn->name, gn->uname) != 0) { /* See if we have a target for this node. */ tgn = Targ_FindNode(gn->name, TARG_NOCREATE); if (tgn != NULL) gn = tgn; } (void)Lst_AtEnd(pgn->children, gn); (void)Lst_AtEnd(gn->parents, pgn); pgn->unmade += 1; } Lst_Close(cgn->children); } pgn->type |= cgn->type & ~(OP_OPMASK|OP_USE|OP_USEBEFORE|OP_TRANSFORM); }
For * For_Eval(const char *line) { const char *ptr = line; const char *wrd; char *sub; const char *endVar; For *arg; unsigned long n; while (ISSPACE(*ptr)) ptr++; /* Parse loop. */ arg = emalloc(sizeof(*arg)); arg->nvars = 0; Lst_Init(&arg->vars); for (;;) { /* Grab the variables. */ for (wrd = ptr; *ptr && !ISSPACE(*ptr); ptr++) continue; if (ptr - wrd == 0) { Parse_Error(PARSE_FATAL, "Syntax error in for"); return 0; } endVar = ptr++; while (ISSPACE(*ptr)) ptr++; /* End of variable list ? */ if (endVar - wrd == 2 && wrd[0] == 'i' && wrd[1] == 'n') break; Lst_AtEnd(&arg->vars, Var_NewLoopVar(wrd, endVar)); arg->nvars++; } if (arg->nvars == 0) { Parse_Error(PARSE_FATAL, "Missing variable in for"); return 0; } /* Make a list with the remaining words. */ sub = Var_Subst(ptr, NULL, false); if (DEBUG(FOR)) { LstNode ln; (void)fprintf(stderr, "For: Iterator "); for (ln = Lst_First(&arg->vars); ln != NULL; ln = Lst_Adv(ln)) (void)fprintf(stderr, "%s ", Var_LoopVarName(Lst_Datum(ln))); (void)fprintf(stderr, "List %s\n", sub); } Lst_Init(&arg->lst); n = build_words_list(&arg->lst, sub); free(sub); if (arg->nvars != 1 && n % arg->nvars != 0) { LstNode ln; Parse_Error(PARSE_FATAL, "Wrong number of items in for loop"); (void)fprintf(stderr, "%lu items for %d variables:", n, arg->nvars); for (ln = Lst_First(&arg->lst); ln != NULL; ln = Lst_Adv(ln)) { char *p = Lst_Datum(ln); (void)fprintf(stderr, " %s", p); } (void)fprintf(stderr, "\n"); return 0; } arg->lineno = Parse_Getlineno(); arg->level = 1; Buf_Init(&arg->buf, 0); return arg; }
/*- * main -- * The main function, for obvious reasons. Initializes variables * and a few modules, then parses the arguments give it in the * environment and on the command line. Reads the system makefile * followed by either Makefile, makefile or the file given by the * -f argument. Sets the .MAKEFLAGS PMake variable based on all the * flags it has received by then uses either the Make or the Compat * module to create the initial list of targets. * * Results: * If -q was given, exits -1 if anything was out-of-date. Else it exits * 0. * * Side Effects: * The program exits when done. Targets are created. etc. etc. etc. */ int main(int argc, char **argv) { Lst targs; /* target nodes to create -- passed to Make_Init */ Boolean outOfDate = TRUE; /* FALSE if all targets up to date */ struct stat sb, sa; char *p1, *path, *pwd; char mdpath[MAXPATHLEN]; #ifdef FORCE_MACHINE char *machine = FORCE_MACHINE; #else char *machine = getenv("MACHINE"); #endif const char *machine_arch = getenv("MACHINE_ARCH"); char *syspath = getenv("MAKESYSPATH"); Lst sysMkPath; /* Path of sys.mk */ char *cp = NULL, *start; /* avoid faults on read-only strings */ static char defsyspath[] = DEFAULT_SYS_PATH; char found_path[MAXPATHLEN + 1]; /* for searching for sys.mk */ struct timeval rightnow; /* to initialize random seed */ /* * Set the seed to produce a different random sequences * on each program execution. */ gettimeofday(&rightnow, NULL); srandom(rightnow.tv_sec + rightnow.tv_usec); if ((progname = strrchr(argv[0], '/')) != NULL) progname++; else progname = argv[0]; #ifdef RLIMIT_NOFILE /* * get rid of resource limit on file descriptors */ { struct rlimit rl; if (getrlimit(RLIMIT_NOFILE, &rl) != -1 && rl.rlim_cur != rl.rlim_max) { rl.rlim_cur = rl.rlim_max; (void)setrlimit(RLIMIT_NOFILE, &rl); } } #endif /* * Find where we are and take care of PWD for the automounter... * All this code is so that we know where we are when we start up * on a different machine with pmake. */ if (getcwd(curdir, MAXPATHLEN) == NULL) { (void)fprintf(stderr, "%s: %s.\n", progname, strerror(errno)); exit(2); } if (stat(curdir, &sa) == -1) { (void)fprintf(stderr, "%s: %s: %s.\n", progname, curdir, strerror(errno)); exit(2); } /* * Overriding getcwd() with $PWD totally breaks MAKEOBJDIRPREFIX * since the value of curdir can very depending on how we got * here. Ie sitting at a shell prompt (shell that provides $PWD) * or via subdir.mk in which case its likely a shell which does * not provide it. * So, to stop it breaking this case only, we ignore PWD if * MAKEOBJDIRPREFIX is set or MAKEOBJDIR contains a transform. */ #ifndef NO_PWD_OVERRIDE if ((pwd = getenv("PWD")) != NULL && getenv("MAKEOBJDIRPREFIX") == NULL) { const char *makeobjdir = getenv("MAKEOBJDIR"); if (makeobjdir == NULL || !strchr(makeobjdir, '$')) { if (stat(pwd, &sb) == 0 && sa.st_ino == sb.st_ino && sa.st_dev == sb.st_dev) (void)strncpy(curdir, pwd, MAXPATHLEN); } } #endif /* * Get the name of this type of MACHINE from utsname * so we can share an executable for similar machines. * (i.e. m68k: amiga hp300, mac68k, sun3, ...) * * Note that both MACHINE and MACHINE_ARCH are decided at * run-time. */ if (!machine) { #ifdef MAKE_NATIVE struct utsname utsname; if (uname(&utsname) == -1) { (void)fprintf(stderr, "%s: uname failed (%s).\n", progname, strerror(errno)); exit(2); } machine = utsname.machine; #else #ifdef MAKE_MACHINE machine = MAKE_MACHINE; #else machine = "unknown"; #endif #endif } if (!machine_arch) { #ifndef MACHINE_ARCH #ifdef MAKE_MACHINE_ARCH machine_arch = MAKE_MACHINE_ARCH; #else machine_arch = "unknown"; #endif #else machine_arch = MACHINE_ARCH; #endif } /* * Just in case MAKEOBJDIR wants us to do something tricky. */ Var_Init(); /* Initialize the lists of variables for * parsing arguments */ Var_Set(".CURDIR", curdir, VAR_GLOBAL, 0); Var_Set("MACHINE", machine, VAR_GLOBAL, 0); Var_Set("MACHINE_ARCH", machine_arch, VAR_GLOBAL, 0); #ifdef MAKE_VERSION Var_Set("MAKE_VERSION", MAKE_VERSION, VAR_GLOBAL, 0); #endif Var_Set(".newline", "\n", VAR_GLOBAL, 0); /* handy for :@ loops */ /* * Find the .OBJDIR. If MAKEOBJDIRPREFIX, or failing that, * MAKEOBJDIR is set in the environment, try only that value * and fall back to .CURDIR if it does not exist. * * Otherwise, try _PATH_OBJDIR.MACHINE, _PATH_OBJDIR, and * finally _PATH_OBJDIRPREFIX`pwd`, in that order. If none * of these paths exist, just use .CURDIR. */ Dir_Init(curdir); (void)Main_SetObjdir(curdir); if ((path = getenv("MAKEOBJDIRPREFIX")) != NULL) { (void)snprintf(mdpath, MAXPATHLEN, "%s%s", path, curdir); (void)Main_SetObjdir(mdpath); } else if ((path = getenv("MAKEOBJDIR")) != NULL) { (void)Main_SetObjdir(path); } else { (void)snprintf(mdpath, MAXPATHLEN, "%s.%s", _PATH_OBJDIR, machine); if (!Main_SetObjdir(mdpath) && !Main_SetObjdir(_PATH_OBJDIR)) { (void)snprintf(mdpath, MAXPATHLEN, "%s%s", _PATH_OBJDIRPREFIX, curdir); (void)Main_SetObjdir(mdpath); } } create = Lst_Init(FALSE); makefiles = Lst_Init(FALSE); printVars = FALSE; variables = Lst_Init(FALSE); beSilent = FALSE; /* Print commands as executed */ ignoreErrors = FALSE; /* Pay attention to non-zero returns */ noExecute = FALSE; /* Execute all commands */ noRecursiveExecute = FALSE; /* Execute all .MAKE targets */ keepgoing = FALSE; /* Stop on error */ allPrecious = FALSE; /* Remove targets when interrupted */ queryFlag = FALSE; /* This is not just a check-run */ noBuiltins = FALSE; /* Read the built-in rules */ touchFlag = FALSE; /* Actually update targets */ usePipes = TRUE; /* Catch child output in pipes */ debug = 0; /* No debug verbosity, please. */ jobsRunning = FALSE; maxLocal = DEFMAXLOCAL; /* Set default local max concurrency */ #ifdef REMOTE maxJobs = DEFMAXJOBS; /* Set default max concurrency */ #else maxJobs = maxLocal; #endif compatMake = FALSE; /* No compat mode */ /* * Initialize the parsing, directory and variable modules to prepare * for the reading of inclusion paths and variable settings on the * command line */ /* * Initialize various variables. * MAKE also gets this name, for compatibility * .MAKEFLAGS gets set to the empty string just in case. * MFLAGS also gets initialized empty, for compatibility. */ Parse_Init(); Var_Set("MAKE", argv[0], VAR_GLOBAL, 0); Var_Set(".MAKE", argv[0], VAR_GLOBAL, 0); Var_Set(MAKEFLAGS, "", VAR_GLOBAL, 0); Var_Set(MAKEOVERRIDES, "", VAR_GLOBAL, 0); Var_Set("MFLAGS", "", VAR_GLOBAL, 0); Var_Set(".ALLTARGETS", "", VAR_GLOBAL, 0); /* * First snag any flags out of the MAKE environment variable. * (Note this is *not* MAKEFLAGS since /bin/make uses that and it's * in a different format). */ #ifdef POSIX Main_ParseArgLine(getenv("MAKEFLAGS")); #else Main_ParseArgLine(getenv("MAKE")); #endif MainParseArgs(argc, argv); /* * Be compatible if user did not specify -j and did not explicitly * turned compatibility on */ if (!compatMake && !forceJobs) { compatMake = TRUE; } /* * Initialize archive, target and suffix modules in preparation for * parsing the makefile(s) */ Arch_Init(); Targ_Init(); Suff_Init(); Trace_Init(tracefile); DEFAULT = NILGNODE; (void)time(&now); Trace_Log(MAKESTART, NULL); /* * Set up the .TARGETS variable to contain the list of targets to be * created. If none specified, make the variable empty -- the parser * will fill the thing in with the default or .MAIN target. */ if (!Lst_IsEmpty(create)) { LstNode ln; for (ln = Lst_First(create); ln != NILLNODE; ln = Lst_Succ(ln)) { char *name = (char *)Lst_Datum(ln); Var_Append(".TARGETS", name, VAR_GLOBAL); } } else Var_Set(".TARGETS", "", VAR_GLOBAL, 0); /* * If no user-supplied system path was given (through the -m option) * add the directories from the DEFSYSPATH (more than one may be given * as dir1:...:dirn) to the system include path. */ if (syspath == NULL || *syspath == '\0') syspath = defsyspath; else syspath = strdup(syspath); for (start = syspath; *start != '\0'; start = cp) { for (cp = start; *cp != '\0' && *cp != ':'; cp++) continue; if (*cp == ':') { *cp++ = '\0'; } /* look for magic parent directory search string */ if (strncmp(".../", start, 4) != 0) { (void)Dir_AddDir(defIncPath, start); } else { if (Dir_FindHereOrAbove(curdir, start+4, found_path, sizeof(found_path))) { (void)Dir_AddDir(defIncPath, found_path); } } } if (syspath != defsyspath) free(syspath); /* * Read in the built-in rules first, followed by the specified * makefile, if it was (makefile != NULL), or the default * makefile and Makefile, in that order, if it wasn't. */ if (!noBuiltins) { LstNode ln; sysMkPath = Lst_Init(FALSE); Dir_Expand(_PATH_DEFSYSMK, Lst_IsEmpty(sysIncPath) ? defIncPath : sysIncPath, sysMkPath); if (Lst_IsEmpty(sysMkPath)) Fatal("%s: no system rules (%s).", progname, _PATH_DEFSYSMK); ln = Lst_Find(sysMkPath, (ClientData)NULL, ReadMakefile); if (ln != NILLNODE) Fatal("%s: cannot open %s.", progname, (char *)Lst_Datum(ln)); } if (!Lst_IsEmpty(makefiles)) { LstNode ln; ln = Lst_Find(makefiles, (ClientData)NULL, ReadMakefile); if (ln != NILLNODE) Fatal("%s: cannot open %s.", progname, (char *)Lst_Datum(ln)); } else if (!ReadMakefile(UNCONST("makefile"), NULL)) (void)ReadMakefile(UNCONST("Makefile"), NULL); (void)ReadMakefile(UNCONST(".depend"), NULL); Var_Append("MFLAGS", Var_Value(MAKEFLAGS, VAR_GLOBAL, &p1), VAR_GLOBAL); if (p1) free(p1); if (!jobServer && !compatMake) Job_ServerStart(maxJobs); if (DEBUG(JOB)) printf("job_pipe %d %d, maxjobs %d maxlocal %d compat %d\n", job_pipe[0], job_pipe[1], maxJobs, maxLocal, compatMake); Main_ExportMAKEFLAGS(TRUE); /* initial export */ #ifndef NO_CHECK_MAKE_CHDIR Check_Cwd_av(0, NULL, 0); /* initialize it */ #endif /* * For compatibility, look at the directories in the VPATH variable * and add them to the search path, if the variable is defined. The * variable's value is in the same format as the PATH envariable, i.e. * <directory>:<directory>:<directory>... */ if (Var_Exists("VPATH", VAR_CMD)) { char *vpath, savec; /* * GCC stores string constants in read-only memory, but * Var_Subst will want to write this thing, so store it * in an array */ static char VPATH[] = "${VPATH}"; vpath = Var_Subst(NULL, VPATH, VAR_CMD, FALSE); path = vpath; do { /* skip to end of directory */ for (cp = path; *cp != ':' && *cp != '\0'; cp++) continue; /* Save terminator character so know when to stop */ savec = *cp; *cp = '\0'; /* Add directory to search path */ (void)Dir_AddDir(dirSearchPath, path); *cp = savec; path = cp + 1; } while (savec == ':'); free(vpath); } /* * Now that all search paths have been read for suffixes et al, it's * time to add the default search path to their lists... */ Suff_DoPaths(); /* * Propagate attributes through :: dependency lists. */ Targ_Propagate(); /* print the initial graph, if the user requested it */ if (DEBUG(GRAPH1)) Targ_PrintGraph(1); /* print the values of any variables requested by the user */ if (printVars) { LstNode ln; for (ln = Lst_First(variables); ln != NILLNODE; ln = Lst_Succ(ln)) { char *var = (char *)Lst_Datum(ln); char *value; if (strchr(var, '$')) { value = p1 = Var_Subst(NULL, var, VAR_GLOBAL, 0); } else { value = Var_Value(var, VAR_GLOBAL, &p1); } printf("%s\n", value ? value : ""); if (p1) free(p1); } } /* * Have now read the entire graph and need to make a list of targets * to create. If none was given on the command line, we consult the * parsing module to find the main target(s) to create. */ if (Lst_IsEmpty(create)) targs = Parse_MainName(); else targs = Targ_FindList(create, TARG_CREATE); if (!compatMake && !printVars) { /* * Initialize job module before traversing the graph, now that * any .BEGIN and .END targets have been read. This is done * only if the -q flag wasn't given (to prevent the .BEGIN from * being executed should it exist). */ if (!queryFlag) { if (maxLocal == -1) maxLocal = maxJobs; Job_Init(maxJobs, maxLocal); jobsRunning = TRUE; } /* Traverse the graph, checking on all the targets */ outOfDate = Make_Run(targs); } else if (!printVars) { /* * Compat_Init will take care of creating all the targets as * well as initializing the module. */ Compat_Run(targs); } #ifdef CLEANUP Lst_Destroy(targs, NOFREE); Lst_Destroy(variables, NOFREE); Lst_Destroy(makefiles, NOFREE); Lst_Destroy(create, (FreeProc *)free); #endif /* print the graph now it's been processed if the user requested it */ if (DEBUG(GRAPH2)) Targ_PrintGraph(2); Trace_Log(MAKEEND, 0); Suff_End(); Targ_End(); Arch_End(); Var_End(); Parse_End(); Dir_End(); Job_End(); Trace_End(); if (queryFlag && outOfDate) return(1); else return(0); }
/*- * main -- * The main function, for obvious reasons. Initializes variables * and a few modules, then parses the arguments give it in the * environment and on the command line. Reads the system makefile * followed by either Makefile, makefile or the file given by the * -f argument. Sets the .MAKEFLAGS PMake variable based on all the * flags it has received by then uses either the Make or the Compat * module to create the initial list of targets. * * Results: * If -q was given, exits -1 if anything was out-of-date. Else it exits * 0. * * Side Effects: * The program exits when done. Targets are created. etc. etc. etc. */ int main(int argc, char **argv) { static LIST targs; /* target nodes to create */ bool outOfDate = true; /* false if all targets up to date */ char *machine = figure_out_MACHINE(); char *machine_arch = figure_out_MACHINE_ARCH(); char *machine_cpu = figure_out_MACHINE_CPU(); const char *syspath = _PATH_DEFSYSPATH; char *p; static struct dirs d; bool read_depend = true;/* false if we don't want to read .depend */ MainParseChdir(argc, argv); setup_CURDIR_OBJDIR(&d, machine); esetenv("PWD", d.object); unsetenv("CDPATH"); Static_Lst_Init(create); Static_Lst_Init(&makefiles); Static_Lst_Init(&varstoprint); Static_Lst_Init(&targs); beSilent = false; /* Print commands as executed */ ignoreErrors = false; /* Pay attention to non-zero returns */ noExecute = false; /* Execute all commands */ keepgoing = false; /* Stop on error */ allPrecious = false; /* Remove targets when interrupted */ queryFlag = false; /* This is not just a check-run */ noBuiltins = false; /* Read the built-in rules */ touchFlag = false; /* Actually update targets */ debug = 0; /* No debug verbosity, please. */ maxJobs = DEFMAXJOBS; compatMake = false; /* No compat mode */ /* * Initialize all external modules. */ Init(); if (d.object != d.current) Dir_AddDir(defaultPath, d.current); Var_Set(".CURDIR", d.current); Var_Set(".OBJDIR", d.object); Parse_setcurdir(d.current); Targ_setdirs(d.current, d.object); /* * Initialize various variables. * MAKE also gets this name, for compatibility * .MAKEFLAGS gets set to the empty string just in case. * MFLAGS also gets initialized empty, for compatibility. */ Var_Set("MAKE", argv[0]); Var_Set(".MAKE", argv[0]); Var_Set(MAKEFLAGS, ""); Var_Set("MFLAGS", ""); Var_Set("MACHINE", machine); Var_Set("MACHINE_ARCH", machine_arch); Var_Set("MACHINE_CPU", machine_cpu); /* * First snag any flags out of the MAKEFLAGS environment variable. */ Main_ParseArgLine(getenv("MAKEFLAGS")); basedirectory = getenv("MAKEBASEDIRECTORY"); if (basedirectory == NULL) setenv("MAKEBASEDIRECTORY", d.current, 0); MainParseArgs(argc, argv); /* * Be compatible if user did not specify -j */ if (!forceJobs) compatMake = true; /* And set up everything for sub-makes */ Var_AddCmdline(MAKEFLAGS); /* * Set up the .TARGETS variable to contain the list of targets to be * created. If none specified, make the variable empty -- the parser * will fill the thing in with the default or .MAIN target. */ if (!Lst_IsEmpty(create)) { LstNode ln; for (ln = Lst_First(create); ln != NULL; ln = Lst_Adv(ln)) { char *name = (char *)Lst_Datum(ln); if (strcmp(name, "depend") == 0) read_depend = false; Var_Append(".TARGETS", name); } } else Var_Set(".TARGETS", ""); /* * If no user-supplied system path was given (through the -m option) * add the directories from the DEFSYSPATH (more than one may be given * as dir1:...:dirn) to the system include path. */ if (Lst_IsEmpty(systemIncludePath)) add_dirpath(systemIncludePath, syspath); read_all_make_rules(noBuiltins, read_depend, &makefiles, &d); Var_Append("MFLAGS", Var_Value(MAKEFLAGS)); /* Install all the flags into the MAKEFLAGS env variable. */ if (((p = Var_Value(MAKEFLAGS)) != NULL) && *p) esetenv("MAKEFLAGS", p); setup_VPATH(); process_suffixes_after_makefile_is_read(); if (dumpData) { dump_data(); exit(0); } /* Print the initial graph, if the user requested it. */ if (DEBUG(GRAPH1)) dump_data(); /* Print the values of any variables requested by the user. */ if (!Lst_IsEmpty(&varstoprint)) { LstNode ln; for (ln = Lst_First(&varstoprint); ln != NULL; ln = Lst_Adv(ln)) { char *value = Var_Value((char *)Lst_Datum(ln)); printf("%s\n", value ? value : ""); } } else { /* Have now read the entire graph and need to make a list * of targets to create. If none was given on the command * line, we consult the parsing module to find the main * target(s) to create. */ if (Lst_IsEmpty(create)) Parse_MainName(&targs); else Targ_FindList(&targs, create); Job_Init(maxJobs); /* If the user has defined a .BEGIN target, execute the commands * attached to it. */ if (!queryFlag) Job_Begin(); if (compatMake) /* Compat_Init will take care of creating all the * targets as well as initializing the module. */ Compat_Run(&targs); else { /* Traverse the graph, checking on all the targets. */ outOfDate = Make_Run(&targs); } } /* print the graph now it's been processed if the user requested it */ if (DEBUG(GRAPH2)) post_mortem(); if (queryFlag && outOfDate) return 1; else return 0; }
/*- *--------------------------------------------------------------------- * ParseDoSrc -- * Given the name of a source, figure out if it is an attribute * and apply it to the targets if it is. Else decide if there is * some attribute which should be applied *to* the source because * of some special target and apply it if so. Otherwise, make the * source be a child of the targets in the list 'targets' * * Side Effects: * Operator bits may be added to the list of targets or to the source. * The targets may have a new source added to their lists of children. *--------------------------------------------------------------------- */ static void ParseDoSrc( struct growableArray *targets, struct growableArray *sources, int tOp, /* operator (if any) from special targets */ const char *src, /* name of the source to handle */ const char *esrc) { GNode *gn = Targ_FindNodei(src, esrc, TARG_CREATE); if ((gn->special & SPECIAL_SOURCE) != 0) { if (gn->special_op) { Array_FindP(targets, ParseDoOp, gn->special_op); return; } else { assert((gn->special & SPECIAL_MASK) == SPECIAL_WAIT); waiting++; return; } } switch (specType) { case SPECIAL_MAIN: /* * If we have noted the existence of a .MAIN, it means we need * to add the sources of said target to the list of things * to create. Note that this will only be invoked if the user * didn't specify a target on the command line. This is to * allow #ifmake's to succeed, or something... */ Lst_AtEnd(create, gn->name); /* * Add the name to the .TARGETS variable as well, so the user * can employ that, if desired. */ Var_Append(".TARGETS", gn->name); return; case SPECIAL_ORDER: /* * Create proper predecessor/successor links between the * previous source and the current one. */ if (predecessor != NULL) { Lst_AtEnd(&predecessor->successors, gn); Lst_AtEnd(&gn->preds, predecessor); } predecessor = gn; break; default: /* * In the case of a source that was the object of a :: operator, * the attribute is applied to all of its instances (as kept in * the 'cohorts' list of the node) or all the cohorts are linked * to all the targets. */ apply_op(targets, tOp, gn); if ((gn->type & OP_OPMASK) == OP_DOUBLEDEP) { LstNode ln; for (ln=Lst_First(&gn->cohorts); ln != NULL; ln = Lst_Adv(ln)){ apply_op(targets, tOp, (GNode *)Lst_Datum(ln)); } } break; } gn->order = waiting; Array_AtEnd(sources, gn); if (waiting) Array_Find(sources, ParseAddDep, gn); }