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7e04792a1c
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378 lines
9.6 KiB
C
378 lines
9.6 KiB
C
/*
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* exec.c
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*
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* execution functions
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*
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* Copyright (c) 2010-2014, PostgreSQL Global Development Group
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* contrib/pg_upgrade/exec.c
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*/
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#include "postgres_fe.h"
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#include "pg_upgrade.h"
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#include <fcntl.h>
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#include <unistd.h>
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#include <sys/types.h>
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static void check_data_dir(const char *pg_data);
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static void check_bin_dir(ClusterInfo *cluster);
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static void validate_exec(const char *dir, const char *cmdName);
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#ifdef WIN32
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static int win32_check_directory_write_permissions(void);
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#endif
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/*
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* exec_prog()
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* Execute an external program with stdout/stderr redirected, and report
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* errors
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*
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* Formats a command from the given argument list, logs it to the log file,
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* and attempts to execute that command. If the command executes
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* successfully, exec_prog() returns true.
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*
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* If the command fails, an error message is saved to the specified log_file.
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* If throw_error is true, this raises a PG_FATAL error and pg_upgrade
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* terminates; otherwise it is just reported as PG_REPORT and exec_prog()
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* returns false.
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*
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* The code requires it be called first from the primary thread on Windows.
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*/
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bool
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exec_prog(const char *log_file, const char *opt_log_file,
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bool throw_error, const char *fmt,...)
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{
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int result = 0;
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int written;
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#define MAXCMDLEN (2 * MAXPGPATH)
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char cmd[MAXCMDLEN];
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FILE *log;
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va_list ap;
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#ifdef WIN32
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static DWORD mainThreadId = 0;
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/* We assume we are called from the primary thread first */
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if (mainThreadId == 0)
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mainThreadId = GetCurrentThreadId();
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#endif
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written = strlcpy(cmd, SYSTEMQUOTE, sizeof(cmd));
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va_start(ap, fmt);
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written += vsnprintf(cmd + written, MAXCMDLEN - written, fmt, ap);
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va_end(ap);
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if (written >= MAXCMDLEN)
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pg_fatal("command too long\n");
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written += snprintf(cmd + written, MAXCMDLEN - written,
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" >> \"%s\" 2>&1" SYSTEMQUOTE, log_file);
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if (written >= MAXCMDLEN)
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pg_fatal("command too long\n");
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pg_log(PG_VERBOSE, "%s\n", cmd);
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#ifdef WIN32
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/*
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* For some reason, Windows issues a file-in-use error if we write data
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* to the log file from a non-primary thread just before we create a
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* subprocess that also writes to the same log file. One fix is to
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* sleep for 100ms. A cleaner fix is to write to the log file _after_
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* the subprocess has completed, so we do this only when writing from
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* a non-primary thread. fflush(), running system() twice, and
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* pre-creating the file do not see to help.
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*/
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if (mainThreadId != GetCurrentThreadId())
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result = system(cmd);
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#endif
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log = fopen(log_file, "a");
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#ifdef WIN32
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{
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/*
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* "pg_ctl -w stop" might have reported that the server has stopped
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* because the postmaster.pid file has been removed, but "pg_ctl -w
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* start" might still be in the process of closing and might still be
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* holding its stdout and -l log file descriptors open. Therefore,
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* try to open the log file a few more times.
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*/
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int iter;
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for (iter = 0; iter < 4 && log == NULL; iter++)
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{
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sleep(1);
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log = fopen(log_file, "a");
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}
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}
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#endif
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if (log == NULL)
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pg_fatal("cannot write to log file %s\n", log_file);
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#ifdef WIN32
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/* Are we printing "command:" before its output? */
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if (mainThreadId == GetCurrentThreadId())
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fprintf(log, "\n\n");
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#endif
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fprintf(log, "command: %s\n", cmd);
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#ifdef WIN32
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/* Are we printing "command:" after its output? */
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if (mainThreadId != GetCurrentThreadId())
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fprintf(log, "\n\n");
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#endif
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/*
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* In Windows, we must close the log file at this point so the file is not
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* open while the command is running, or we get a share violation.
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*/
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fclose(log);
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#ifdef WIN32
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/* see comment above */
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if (mainThreadId == GetCurrentThreadId())
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#endif
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result = system(cmd);
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if (result != 0)
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{
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/* we might be in on a progress status line, so go to the next line */
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report_status(PG_REPORT, "\n*failure*");
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fflush(stdout);
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pg_log(PG_VERBOSE, "There were problems executing \"%s\"\n", cmd);
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if (opt_log_file)
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pg_log(throw_error ? PG_FATAL : PG_REPORT,
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"Consult the last few lines of \"%s\" or \"%s\" for\n"
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"the probable cause of the failure.\n",
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log_file, opt_log_file);
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else
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pg_log(throw_error ? PG_FATAL : PG_REPORT,
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"Consult the last few lines of \"%s\" for\n"
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"the probable cause of the failure.\n",
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log_file);
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}
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#ifndef WIN32
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/*
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* We can't do this on Windows because it will keep the "pg_ctl start"
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* output filename open until the server stops, so we do the \n\n above on
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* that platform. We use a unique filename for "pg_ctl start" that is
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* never reused while the server is running, so it works fine. We could
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* log these commands to a third file, but that just adds complexity.
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*/
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if ((log = fopen(log_file, "a")) == NULL)
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pg_fatal("cannot write to log file %s\n", log_file);
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fprintf(log, "\n\n");
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fclose(log);
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#endif
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return result == 0;
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}
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/*
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* pid_lock_file_exists()
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*
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* Checks whether the postmaster.pid file exists.
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*/
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bool
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pid_lock_file_exists(const char *datadir)
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{
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char path[MAXPGPATH];
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int fd;
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snprintf(path, sizeof(path), "%s/postmaster.pid", datadir);
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if ((fd = open(path, O_RDONLY, 0)) < 0)
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{
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/* ENOTDIR means we will throw a more useful error later */
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if (errno != ENOENT && errno != ENOTDIR)
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pg_fatal("could not open file \"%s\" for reading: %s\n",
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path, getErrorText(errno));
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return false;
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}
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close(fd);
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return true;
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}
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/*
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* verify_directories()
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*
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* does all the hectic work of verifying directories and executables
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* of old and new server.
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*
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* NOTE: May update the values of all parameters
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*/
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void
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verify_directories(void)
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{
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#ifndef WIN32
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if (access(".", R_OK | W_OK | X_OK) != 0)
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#else
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if (win32_check_directory_write_permissions() != 0)
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#endif
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pg_fatal("You must have read and write access in the current directory.\n");
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check_bin_dir(&old_cluster);
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check_data_dir(old_cluster.pgdata);
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check_bin_dir(&new_cluster);
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check_data_dir(new_cluster.pgdata);
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}
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#ifdef WIN32
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/*
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* win32_check_directory_write_permissions()
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*
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* access() on WIN32 can't check directory permissions, so we have to
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* optionally create, then delete a file to check.
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* http://msdn.microsoft.com/en-us/library/1w06ktdy%28v=vs.80%29.aspx
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*/
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static int
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win32_check_directory_write_permissions(void)
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{
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int fd;
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/*
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* We open a file we would normally create anyway. We do this even in
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* 'check' mode, which isn't ideal, but this is the best we can do.
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*/
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if ((fd = open(GLOBALS_DUMP_FILE, O_RDWR | O_CREAT, S_IRUSR | S_IWUSR)) < 0)
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return -1;
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close(fd);
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return unlink(GLOBALS_DUMP_FILE);
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}
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#endif
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/*
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* check_data_dir()
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*
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* This function validates the given cluster directory - we search for a
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* small set of subdirectories that we expect to find in a valid $PGDATA
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* directory. If any of the subdirectories are missing (or secured against
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* us) we display an error message and exit()
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*
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*/
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static void
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check_data_dir(const char *pg_data)
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{
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char subDirName[MAXPGPATH];
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int subdirnum;
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/* start check with top-most directory */
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const char *requiredSubdirs[] = {"", "base", "global", "pg_clog",
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"pg_multixact", "pg_subtrans", "pg_tblspc", "pg_twophase",
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"pg_xlog"};
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for (subdirnum = 0;
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subdirnum < sizeof(requiredSubdirs) / sizeof(requiredSubdirs[0]);
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++subdirnum)
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{
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struct stat statBuf;
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snprintf(subDirName, sizeof(subDirName), "%s%s%s", pg_data,
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/* Win32 can't stat() a directory with a trailing slash. */
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*requiredSubdirs[subdirnum] ? "/" : "",
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requiredSubdirs[subdirnum]);
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if (stat(subDirName, &statBuf) != 0)
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report_status(PG_FATAL, "check for \"%s\" failed: %s\n",
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subDirName, getErrorText(errno));
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else if (!S_ISDIR(statBuf.st_mode))
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report_status(PG_FATAL, "%s is not a directory\n",
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subDirName);
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}
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}
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/*
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* check_bin_dir()
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*
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* This function searches for the executables that we expect to find
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* in the binaries directory. If we find that a required executable
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* is missing (or secured against us), we display an error message and
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* exit().
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*/
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static void
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check_bin_dir(ClusterInfo *cluster)
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{
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struct stat statBuf;
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/* check bindir */
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if (stat(cluster->bindir, &statBuf) != 0)
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report_status(PG_FATAL, "check for \"%s\" failed: %s\n",
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cluster->bindir, getErrorText(errno));
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else if (!S_ISDIR(statBuf.st_mode))
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report_status(PG_FATAL, "%s is not a directory\n",
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cluster->bindir);
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validate_exec(cluster->bindir, "postgres");
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validate_exec(cluster->bindir, "pg_ctl");
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validate_exec(cluster->bindir, "pg_resetxlog");
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if (cluster == &new_cluster)
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{
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/* these are only needed in the new cluster */
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validate_exec(cluster->bindir, "psql");
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validate_exec(cluster->bindir, "pg_dumpall");
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}
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}
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/*
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* validate_exec()
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*
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* validate "path" as an executable file
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*/
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static void
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validate_exec(const char *dir, const char *cmdName)
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{
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char path[MAXPGPATH];
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struct stat buf;
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snprintf(path, sizeof(path), "%s/%s", dir, cmdName);
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#ifdef WIN32
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/* Windows requires a .exe suffix for stat() */
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if (strlen(path) <= strlen(EXE_EXT) ||
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pg_strcasecmp(path + strlen(path) - strlen(EXE_EXT), EXE_EXT) != 0)
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strlcat(path, EXE_EXT, sizeof(path));
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#endif
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/*
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* Ensure that the file exists and is a regular file.
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*/
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if (stat(path, &buf) < 0)
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pg_fatal("check for \"%s\" failed: %s\n",
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path, getErrorText(errno));
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else if (!S_ISREG(buf.st_mode))
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pg_fatal("check for \"%s\" failed: not an executable file\n",
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path);
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/*
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* Ensure that the file is both executable and readable (required for
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* dynamic loading).
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*/
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#ifndef WIN32
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if (access(path, R_OK) != 0)
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#else
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if ((buf.st_mode & S_IRUSR) == 0)
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#endif
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pg_fatal("check for \"%s\" failed: cannot read file (permission denied)\n",
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path);
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#ifndef WIN32
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if (access(path, X_OK) != 0)
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#else
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if ((buf.st_mode & S_IXUSR) == 0)
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#endif
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pg_fatal("check for \"%s\" failed: cannot execute (permission denied)\n",
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path);
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}
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