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@@ -1,340 +1,383 | |||
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1 | 1 | /* |
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2 | 2 | * A fast client for Mercurial command server |
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3 | 3 | * |
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4 | 4 | * Copyright (c) 2011 Yuya Nishihara <yuya@tcha.org> |
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5 | 5 | * |
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6 | 6 | * This software may be used and distributed according to the terms of the |
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7 | 7 | * GNU General Public License version 2 or any later version. |
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8 | 8 | */ |
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9 | 9 | |
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10 | 10 | #include <assert.h> |
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11 | 11 | #include <errno.h> |
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12 | 12 | #include <fcntl.h> |
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13 | 13 | #include <signal.h> |
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14 | 14 | #include <stdio.h> |
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15 | 15 | #include <stdlib.h> |
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16 | 16 | #include <string.h> |
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17 | 17 | #include <sys/stat.h> |
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18 | 18 | #include <sys/types.h> |
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19 | 19 | #include <sys/un.h> |
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20 | 20 | #include <sys/wait.h> |
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21 | 21 | #include <time.h> |
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22 | 22 | #include <unistd.h> |
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23 | 23 | |
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24 | 24 | #include "hgclient.h" |
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25 | 25 | #include "util.h" |
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26 | 26 | |
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27 | 27 | #ifndef UNIX_PATH_MAX |
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28 | 28 | #define UNIX_PATH_MAX (sizeof(((struct sockaddr_un *)NULL)->sun_path)) |
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29 | 29 | #endif |
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30 | 30 | |
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31 | 31 | struct cmdserveropts { |
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32 | 32 | char sockname[UNIX_PATH_MAX]; |
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33 | 33 | char lockfile[UNIX_PATH_MAX]; |
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34 | 34 | char pidfile[UNIX_PATH_MAX]; |
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35 | 35 | }; |
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36 | 36 | |
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37 | 37 | static void preparesockdir(const char *sockdir) |
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38 | 38 | { |
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39 | 39 | int r; |
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40 | 40 | r = mkdir(sockdir, 0700); |
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41 | 41 | if (r < 0 && errno != EEXIST) |
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42 | 42 | abortmsg("cannot create sockdir %s (errno = %d)", |
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43 | 43 | sockdir, errno); |
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44 | 44 | |
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45 | 45 | struct stat st; |
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46 | 46 | r = lstat(sockdir, &st); |
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47 | 47 | if (r < 0) |
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48 | 48 | abortmsg("cannot stat %s (errno = %d)", sockdir, errno); |
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49 | 49 | if (!S_ISDIR(st.st_mode)) |
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50 | 50 | abortmsg("cannot create sockdir %s (file exists)", sockdir); |
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51 | 51 | if (st.st_uid != geteuid() || st.st_mode & 0077) |
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52 | 52 | abortmsg("insecure sockdir %s", sockdir); |
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53 | 53 | } |
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54 | 54 | |
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55 | 55 | static void setcmdserveropts(struct cmdserveropts *opts) |
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56 | 56 | { |
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57 | 57 | int r; |
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58 | 58 | char sockdir[UNIX_PATH_MAX]; |
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59 | 59 | const char *envsockname = getenv("CHGSOCKNAME"); |
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60 | 60 | if (!envsockname) { |
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61 | 61 | /* by default, put socket file in secure directory |
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62 | 62 | * (permission of socket file may be ignored on some Unices) */ |
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63 | 63 | const char *tmpdir = getenv("TMPDIR"); |
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64 | 64 | if (!tmpdir) |
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65 | 65 | tmpdir = "/tmp"; |
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66 | 66 | r = snprintf(sockdir, sizeof(sockdir), "%s/chg%d", |
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67 | 67 | tmpdir, geteuid()); |
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68 | 68 | if (r < 0 || (size_t)r >= sizeof(sockdir)) |
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69 | 69 | abortmsg("too long TMPDIR (r = %d)", r); |
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70 | 70 | preparesockdir(sockdir); |
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71 | 71 | } |
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72 | 72 | |
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73 | 73 | const char *basename = (envsockname) ? envsockname : sockdir; |
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74 | 74 | const char *sockfmt = (envsockname) ? "%s" : "%s/server"; |
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75 | 75 | const char *lockfmt = (envsockname) ? "%s.lock" : "%s/lock"; |
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76 | 76 | const char *pidfmt = (envsockname) ? "%s.pid" : "%s/pid"; |
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77 | 77 | r = snprintf(opts->sockname, sizeof(opts->sockname), sockfmt, basename); |
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78 | 78 | if (r < 0 || (size_t)r >= sizeof(opts->sockname)) |
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79 | 79 | abortmsg("too long TMPDIR or CHGSOCKNAME (r = %d)", r); |
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80 | 80 | r = snprintf(opts->lockfile, sizeof(opts->lockfile), lockfmt, basename); |
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81 | 81 | if (r < 0 || (size_t)r >= sizeof(opts->lockfile)) |
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82 | 82 | abortmsg("too long TMPDIR or CHGSOCKNAME (r = %d)", r); |
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83 | 83 | r = snprintf(opts->pidfile, sizeof(opts->pidfile), pidfmt, basename); |
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84 | 84 | if (r < 0 || (size_t)r >= sizeof(opts->pidfile)) |
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85 | 85 | abortmsg("too long TMPDIR or CHGSOCKNAME (r = %d)", r); |
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86 | 86 | } |
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87 | 87 | |
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88 | 88 | /* |
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89 | 89 | * Make lock file that indicates cmdserver process is about to start. Created |
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90 | 90 | * lock file will be deleted by server. (0: success, -1: lock exists) |
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91 | 91 | */ |
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92 | 92 | static int lockcmdserver(const struct cmdserveropts *opts) |
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93 | 93 | { |
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94 | 94 | int r; |
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95 | 95 | char info[32]; |
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96 | 96 | r = snprintf(info, sizeof(info), "%d", getpid()); |
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97 | 97 | if (r < 0 || (size_t)r >= sizeof(info)) |
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98 | 98 | abortmsg("failed to format lock info"); |
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99 | 99 | r = symlink(info, opts->lockfile); |
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100 | 100 | if (r < 0 && errno != EEXIST) |
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101 | 101 | abortmsg("failed to make lock %s (errno = %d)", |
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102 | 102 | opts->lockfile, errno); |
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103 | 103 | return r; |
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104 | 104 | } |
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105 | 105 | |
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106 | 106 | static void execcmdserver(const struct cmdserveropts *opts) |
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107 | 107 | { |
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108 | 108 | const char *hgcmd = getenv("CHGHG"); |
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109 | 109 | if (!hgcmd || hgcmd[0] == '\0') |
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110 | 110 | hgcmd = getenv("HG"); |
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111 | 111 | if (!hgcmd || hgcmd[0] == '\0') |
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112 | 112 | hgcmd = "hg"; |
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113 | 113 | |
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114 | 114 | const char *argv[] = { |
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115 | 115 | hgcmd, |
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116 | 116 | "serve", |
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117 | 117 | "--cwd", "/", |
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118 | 118 | "--cmdserver", "chgunix", |
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119 | 119 | "--address", opts->sockname, |
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120 | 120 | "--daemon-pipefds", opts->lockfile, |
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121 | 121 | "--pid-file", opts->pidfile, |
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122 | 122 | "--config", "extensions.chgserver=", |
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123 | 123 | /* wrap root ui so that it can be disabled/enabled by config */ |
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124 | 124 | "--config", "progress.assume-tty=1", |
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125 | 125 | NULL, |
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126 | 126 | }; |
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127 | 127 | if (execvp(hgcmd, (char **)argv) < 0) |
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128 | 128 | abortmsg("failed to exec cmdserver (errno = %d)", errno); |
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129 | 129 | } |
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130 | 130 | |
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131 | 131 | /* |
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132 | 132 | * Sleep until lock file is deleted, i.e. cmdserver process starts listening. |
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133 | 133 | * If pid is given, it also checks if the child process fails to start. |
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134 | 134 | */ |
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135 | 135 | static void waitcmdserver(const struct cmdserveropts *opts, pid_t pid) |
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136 | 136 | { |
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137 | 137 | static const struct timespec sleepreq = {0, 10 * 1000000}; |
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138 | 138 | int pst = 0; |
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139 | 139 | |
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140 | 140 | for (unsigned int i = 0; i < 10 * 100; i++) { |
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141 | 141 | int r; |
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142 | 142 | struct stat lst; |
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143 | 143 | |
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144 | 144 | r = lstat(opts->lockfile, &lst); |
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145 | 145 | if (r < 0 && errno == ENOENT) |
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146 | 146 | return; /* lock file deleted by server */ |
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147 | 147 | if (r < 0) |
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148 | 148 | goto cleanup; |
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149 | 149 | |
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150 | 150 | if (pid > 0) { |
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151 | 151 | /* collect zombie if child process fails to start */ |
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152 | 152 | r = waitpid(pid, &pst, WNOHANG); |
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153 | 153 | if (r != 0) |
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154 | 154 | goto cleanup; |
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155 | 155 | } |
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156 | 156 | |
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157 | 157 | nanosleep(&sleepreq, NULL); |
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158 | 158 | } |
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159 | 159 | |
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160 | 160 | abortmsg("timed out waiting for cmdserver %s", opts->lockfile); |
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161 | 161 | return; |
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162 | 162 | |
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163 | 163 | cleanup: |
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164 | 164 | if (pid > 0) |
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165 | 165 | /* lockfile should be made by this process */ |
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166 | 166 | unlink(opts->lockfile); |
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167 | 167 | if (WIFEXITED(pst)) { |
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168 | 168 | abortmsg("cmdserver exited with status %d", WEXITSTATUS(pst)); |
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169 | 169 | } else if (WIFSIGNALED(pst)) { |
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170 | 170 | abortmsg("cmdserver killed by signal %d", WTERMSIG(pst)); |
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171 | 171 | } else { |
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172 | 172 | abortmsg("error white waiting cmdserver"); |
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173 | 173 | } |
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174 | 174 | } |
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175 | 175 | |
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176 | 176 | /* Spawn new background cmdserver */ |
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177 | 177 | static void startcmdserver(const struct cmdserveropts *opts) |
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178 | 178 | { |
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179 | 179 | debugmsg("start cmdserver at %s", opts->sockname); |
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180 | 180 | |
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181 | 181 | if (lockcmdserver(opts) < 0) { |
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182 | 182 | debugmsg("lock file exists, waiting..."); |
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183 | 183 | waitcmdserver(opts, 0); |
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184 | 184 | return; |
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185 | 185 | } |
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186 | 186 | |
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187 | 187 | /* remove dead cmdserver socket if any */ |
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188 | 188 | unlink(opts->sockname); |
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189 | 189 | |
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190 | 190 | pid_t pid = fork(); |
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191 | 191 | if (pid < 0) |
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192 | 192 | abortmsg("failed to fork cmdserver process"); |
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193 | 193 | if (pid == 0) { |
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194 | 194 | /* bypass uisetup() of pager extension */ |
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195 | 195 | int nullfd = open("/dev/null", O_WRONLY); |
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196 | 196 | if (nullfd >= 0) { |
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197 | 197 | dup2(nullfd, fileno(stdout)); |
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198 | 198 | close(nullfd); |
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199 | 199 | } |
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200 | 200 | execcmdserver(opts); |
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201 | 201 | } else { |
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202 | 202 | waitcmdserver(opts, pid); |
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203 | 203 | } |
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204 | 204 | } |
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205 | 205 | |
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206 | 206 | static void killcmdserver(const struct cmdserveropts *opts, int sig) |
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207 | 207 | { |
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208 | 208 | FILE *fp = fopen(opts->pidfile, "r"); |
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209 | 209 | if (!fp) |
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210 | 210 | abortmsg("cannot open %s (errno = %d)", opts->pidfile, errno); |
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211 | 211 | int pid = 0; |
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212 | 212 | int n = fscanf(fp, "%d", &pid); |
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213 | 213 | fclose(fp); |
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214 | 214 | if (n != 1 || pid <= 0) |
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215 | 215 | abortmsg("cannot read pid from %s", opts->pidfile); |
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216 | 216 | |
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217 | 217 | if (kill((pid_t)pid, sig) < 0) { |
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218 | 218 | if (errno == ESRCH) |
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219 | 219 | return; |
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220 | 220 | abortmsg("cannot kill %d (errno = %d)", pid, errno); |
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221 | 221 | } |
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222 | 222 | } |
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223 | 223 | |
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224 | 224 | static pid_t peerpid = 0; |
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225 | 225 | |
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226 | 226 | static void forwardsignal(int sig) |
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227 | 227 | { |
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228 | 228 | assert(peerpid > 0); |
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229 | 229 | if (kill(peerpid, sig) < 0) |
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230 | 230 | abortmsg("cannot kill %d (errno = %d)", peerpid, errno); |
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231 | 231 | debugmsg("forward signal %d", sig); |
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232 | 232 | } |
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233 | 233 | |
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234 | static void handlestopsignal(int sig) | |
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235 | { | |
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236 | sigset_t unblockset, oldset; | |
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237 | struct sigaction sa, oldsa; | |
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238 | if (sigemptyset(&unblockset) < 0) | |
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239 | goto error; | |
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240 | if (sigaddset(&unblockset, sig) < 0) | |
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241 | goto error; | |
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242 | memset(&sa, 0, sizeof(sa)); | |
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243 | sa.sa_handler = SIG_DFL; | |
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244 | sa.sa_flags = SA_RESTART; | |
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245 | if (sigemptyset(&sa.sa_mask) < 0) | |
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246 | goto error; | |
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247 | ||
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248 | forwardsignal(sig); | |
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249 | if (raise(sig) < 0) /* resend to self */ | |
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250 | goto error; | |
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251 | if (sigaction(sig, &sa, &oldsa) < 0) | |
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252 | goto error; | |
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253 | if (sigprocmask(SIG_UNBLOCK, &unblockset, &oldset) < 0) | |
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254 | goto error; | |
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255 | /* resent signal will be handled before sigprocmask() returns */ | |
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256 | if (sigprocmask(SIG_SETMASK, &oldset, NULL) < 0) | |
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257 | goto error; | |
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258 | if (sigaction(sig, &oldsa, NULL) < 0) | |
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259 | goto error; | |
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260 | return; | |
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261 | ||
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262 | error: | |
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263 | abortmsg("failed to handle stop signal (errno = %d)", errno); | |
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264 | } | |
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265 | ||
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234 | 266 | static void setupsignalhandler(pid_t pid) |
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235 | 267 | { |
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236 | 268 | if (pid <= 0) |
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237 | 269 | return; |
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238 | 270 | peerpid = pid; |
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239 | 271 | |
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240 | 272 | struct sigaction sa; |
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241 | 273 | memset(&sa, 0, sizeof(sa)); |
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242 | 274 | sa.sa_handler = forwardsignal; |
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243 | 275 | sa.sa_flags = SA_RESTART; |
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244 | 276 | if (sigemptyset(&sa.sa_mask) < 0) |
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245 | 277 | goto error; |
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246 | 278 | |
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247 | 279 | if (sigaction(SIGHUP, &sa, NULL) < 0) |
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248 | 280 | goto error; |
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249 | 281 | if (sigaction(SIGINT, &sa, NULL) < 0) |
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250 | 282 | goto error; |
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251 | 283 | |
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252 | 284 | /* terminate frontend by double SIGTERM in case of server freeze */ |
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253 | 285 | sa.sa_flags |= SA_RESETHAND; |
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254 | 286 | if (sigaction(SIGTERM, &sa, NULL) < 0) |
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255 | 287 | goto error; |
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288 | ||
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289 | /* propagate job control requests to worker */ | |
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290 | sa.sa_handler = forwardsignal; | |
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291 | sa.sa_flags = SA_RESTART; | |
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292 | if (sigaction(SIGCONT, &sa, NULL) < 0) | |
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293 | goto error; | |
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294 | sa.sa_handler = handlestopsignal; | |
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295 | sa.sa_flags = SA_RESTART; | |
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296 | if (sigaction(SIGTSTP, &sa, NULL) < 0) | |
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297 | goto error; | |
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298 | ||
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256 | 299 | return; |
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257 | 300 | |
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258 | 301 | error: |
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259 | 302 | abortmsg("failed to set up signal handlers (errno = %d)", errno); |
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260 | 303 | } |
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261 | 304 | |
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262 | 305 | /* This implementation is based on hgext/pager.py (pre 369741ef7253) */ |
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263 | 306 | static void setuppager(hgclient_t *hgc, const char *const args[], |
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264 | 307 | size_t argsize) |
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265 | 308 | { |
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266 | 309 | const char *pagercmd = hgc_getpager(hgc, args, argsize); |
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267 | 310 | if (!pagercmd) |
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268 | 311 | return; |
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269 | 312 | |
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270 | 313 | int pipefds[2]; |
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271 | 314 | if (pipe(pipefds) < 0) |
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272 | 315 | return; |
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273 | 316 | pid_t pid = fork(); |
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274 | 317 | if (pid < 0) |
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275 | 318 | goto error; |
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276 | 319 | if (pid == 0) { |
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277 | 320 | close(pipefds[0]); |
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278 | 321 | if (dup2(pipefds[1], fileno(stdout)) < 0) |
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279 | 322 | goto error; |
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280 | 323 | if (isatty(fileno(stderr))) { |
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281 | 324 | if (dup2(pipefds[1], fileno(stderr)) < 0) |
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282 | 325 | goto error; |
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283 | 326 | } |
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284 | 327 | close(pipefds[1]); |
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285 | 328 | hgc_attachio(hgc); /* reattach to pager */ |
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286 | 329 | return; |
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287 | 330 | } else { |
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288 | 331 | dup2(pipefds[0], fileno(stdin)); |
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289 | 332 | close(pipefds[0]); |
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290 | 333 | close(pipefds[1]); |
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291 | 334 | |
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292 | 335 | int r = execlp("/bin/sh", "/bin/sh", "-c", pagercmd, NULL); |
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293 | 336 | if (r < 0) { |
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294 | 337 | abortmsg("cannot start pager '%s' (errno = %d)", |
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295 | 338 | pagercmd, errno); |
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296 | 339 | } |
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297 | 340 | return; |
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298 | 341 | } |
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299 | 342 | |
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300 | 343 | error: |
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301 | 344 | close(pipefds[0]); |
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302 | 345 | close(pipefds[1]); |
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303 | 346 | abortmsg("failed to prepare pager (errno = %d)", errno); |
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304 | 347 | } |
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305 | 348 | |
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306 | 349 | int main(int argc, const char *argv[], const char *envp[]) |
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307 | 350 | { |
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308 | 351 | if (getenv("CHGDEBUG")) |
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309 | 352 | enabledebugmsg(); |
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310 | 353 | |
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311 | 354 | struct cmdserveropts opts; |
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312 | 355 | setcmdserveropts(&opts); |
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313 | 356 | |
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314 | 357 | if (argc == 2) { |
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315 | 358 | int sig = 0; |
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316 | 359 | if (strcmp(argv[1], "--kill-chg-daemon") == 0) |
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317 | 360 | sig = SIGTERM; |
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318 | 361 | if (strcmp(argv[1], "--reload-chg-daemon") == 0) |
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319 | 362 | sig = SIGHUP; |
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320 | 363 | if (sig > 0) { |
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321 | 364 | killcmdserver(&opts, sig); |
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322 | 365 | return 0; |
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323 | 366 | } |
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324 | 367 | } |
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325 | 368 | |
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326 | 369 | hgclient_t *hgc = hgc_open(opts.sockname); |
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327 | 370 | if (!hgc) { |
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328 | 371 | startcmdserver(&opts); |
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329 | 372 | hgc = hgc_open(opts.sockname); |
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330 | 373 | } |
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331 | 374 | if (!hgc) |
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332 | 375 | abortmsg("cannot open hg client"); |
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333 | 376 | |
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334 | 377 | setupsignalhandler(hgc_peerpid(hgc)); |
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335 | 378 | hgc_setenv(hgc, envp); |
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336 | 379 | setuppager(hgc, argv + 1, argc - 1); |
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337 | 380 | int exitcode = hgc_runcommand(hgc, argv + 1, argc - 1); |
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338 | 381 | hgc_close(hgc); |
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339 | 382 | return exitcode; |
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340 | 383 | } |
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