init.c 4.2 KB

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  1. #include <u.h>
  2. #include <libc.h>
  3. #include <auth.h>
  4. #include <authsrv.h>
  5. char* readenv(char*);
  6. void setenv(char*, char*);
  7. void cpenv(char*, char*);
  8. void closefds(void);
  9. void fexec(void(*)(void));
  10. void rcexec(void);
  11. void cpustart(void);
  12. void pass(int);
  13. char *service;
  14. char *cmd;
  15. char *cpu;
  16. char *systemname;
  17. int manual;
  18. int iscpu;
  19. void
  20. main(int argc, char *argv[])
  21. {
  22. char *user;
  23. int fd;
  24. char ctl[128];
  25. closefds();
  26. service = "cpu";
  27. manual = 0;
  28. ARGBEGIN{
  29. case 'c':
  30. service = "cpu";
  31. break;
  32. case 'm':
  33. manual = 1;
  34. break;
  35. case 't':
  36. service = "terminal";
  37. break;
  38. }ARGEND
  39. cmd = *argv;
  40. snprint(ctl, sizeof(ctl), "#p/%d/ctl", getpid());
  41. fd = open(ctl, OWRITE);
  42. if(fd < 0)
  43. print("init: warning: can't open %s: %r\n", ctl);
  44. else
  45. if(write(fd, "pri 10", 6) != 6)
  46. print("init: warning: can't set priority: %r\n");
  47. close(fd);
  48. cpu = readenv("#e/cputype");
  49. setenv("#e/objtype", cpu);
  50. setenv("#e/service", service);
  51. cpenv("/adm/timezone/local", "#e/timezone");
  52. user = readenv("#c/user");
  53. systemname = readenv("#c/sysname");
  54. newns(user, 0);
  55. iscpu = strcmp(service, "cpu")==0;
  56. if(iscpu && manual == 0)
  57. fexec(cpustart);
  58. for(;;){
  59. print("\ninit: starting /bin/rc\n");
  60. fexec(rcexec);
  61. manual = 1;
  62. cmd = 0;
  63. sleep(1000);
  64. }
  65. }
  66. void
  67. pass(int fd)
  68. {
  69. char key[DESKEYLEN];
  70. char typed[32];
  71. char crypted[DESKEYLEN];
  72. int i;
  73. for(;;){
  74. print("\n%s password:", systemname);
  75. for(i=0; i<sizeof typed; i++){
  76. if(read(0, typed+i, 1) != 1){
  77. print("init: can't read password; insecure\n");
  78. return;
  79. }
  80. if(typed[i] == '\n'){
  81. typed[i] = 0;
  82. break;
  83. }
  84. }
  85. if(i == sizeof typed)
  86. continue;
  87. if(passtokey(crypted, typed) == 0)
  88. continue;
  89. seek(fd, 0, 0);
  90. if(read(fd, key, DESKEYLEN) != DESKEYLEN){
  91. print("init: can't read key; insecure\n");
  92. return;
  93. }
  94. if(memcmp(crypted, key, sizeof key))
  95. continue;
  96. /* clean up memory */
  97. memset(crypted, 0, sizeof crypted);
  98. memset(key, 0, sizeof key);
  99. return;
  100. }
  101. }
  102. void
  103. fexec(void (*execfn)(void))
  104. {
  105. Waitmsg *w;
  106. int pid;
  107. switch(pid=fork()){
  108. case 0:
  109. rfork(RFNOTEG);
  110. (*execfn)();
  111. print("init: exec error: %r\n");
  112. exits("exec");
  113. case -1:
  114. print("init: fork error: %r\n");
  115. exits("fork");
  116. default:
  117. casedefault:
  118. w = wait();
  119. if(w == nil){
  120. print("init: wait error: %r\n");
  121. break;
  122. }
  123. if(w->pid != pid){
  124. free(w);
  125. goto casedefault;
  126. }
  127. if(strstr(w->msg, "exec error") != 0){
  128. print("init: exit string %s\n", w->msg);
  129. print("init: sleeping because exec failed\n");
  130. free(w);
  131. for(;;)
  132. sleep(1000);
  133. }
  134. if(w->msg[0])
  135. print("init: rc exit status: %s\n", w->msg);
  136. free(w);
  137. break;
  138. }
  139. }
  140. void
  141. rcexec(void)
  142. {
  143. if(cmd)
  144. execl("/bin/rc", "rc", "-c", cmd, 0);
  145. else if(manual || iscpu)
  146. execl("/bin/rc", "rc", 0);
  147. else if(strcmp(service, "terminal") == 0)
  148. execl("/bin/rc", "rc", "-c", ". /rc/bin/termrc; home=/usr/$user; cd; . lib/profile", 0);
  149. else
  150. execl("/bin/rc", "rc", 0);
  151. }
  152. void
  153. cpustart(void)
  154. {
  155. execl("/bin/rc", "rc", "-c", "/rc/bin/cpurc", 0);
  156. }
  157. char*
  158. readenv(char *name)
  159. {
  160. int f, len;
  161. Dir *d;
  162. char *val;
  163. f = open(name, OREAD);
  164. if(f < 0){
  165. print("init: can't open %s: %r\n", name);
  166. return "*unknown*";
  167. }
  168. d = dirfstat(f);
  169. if(d == nil){
  170. print("init: can't stat %s: %r\n", name);
  171. return "*unknown*";
  172. }
  173. len = d->length;
  174. free(d);
  175. if(len == 0) /* device files can be zero length but have contents */
  176. len = 64;
  177. val = malloc(len+1);
  178. if(val == nil){
  179. print("init: can't malloc %s: %r\n", name);
  180. return "*unknown*";
  181. }
  182. len = read(f, val, len);
  183. close(f);
  184. if(len < 0){
  185. print("init: can't read %s: %r\n", name);
  186. return "*unknown*";
  187. }else
  188. val[len] = '\0';
  189. return val;
  190. }
  191. void
  192. setenv(char *var, char *val)
  193. {
  194. int fd;
  195. fd = create(var, OWRITE, 0644);
  196. if(fd < 0)
  197. print("init: can't open %s\n", var);
  198. else{
  199. fprint(fd, val);
  200. close(fd);
  201. }
  202. }
  203. void
  204. cpenv(char *file, char *var)
  205. {
  206. int i, fd;
  207. char buf[8192];
  208. fd = open(file, OREAD);
  209. if(fd < 0)
  210. print("init: can't open %s\n", file);
  211. else{
  212. i = read(fd, buf, sizeof(buf)-1);
  213. if(i <= 0)
  214. print("init: can't read %s: %r\n", file);
  215. else{
  216. close(fd);
  217. buf[i] = 0;
  218. setenv(var, buf);
  219. }
  220. }
  221. }
  222. /*
  223. * clean up after /boot
  224. */
  225. void
  226. closefds(void)
  227. {
  228. int i;
  229. for(i = 3; i < 30; i++)
  230. close(i);
  231. }