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dnix-traverse.cpp 12 KB

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  1. /*
  2. compile using : c++ dnix-traverse.cpp -o dnix-traverse
  3. Program to list and extract files from a DNIX FS. Should also be able to write to a DNIX file system. Possibly even add boot code and other things.
  4. */
  5. #include <stdio.h>
  6. #include <unistd.h>
  7. #include <stdlib.h>
  8. #include <stdio.h>
  9. #include <time.h>
  10. #include <string.h>
  11. #include <limits.h> /* PATH_MAX */
  12. #include <errno.h>
  13. typedef unsigned int daddr_t;
  14. typedef int dnix_time_t;
  15. typedef int dnix_ino_t;
  16. #pragma pack(1)
  17. //#define daddr_t dnix_daddr_t
  18. #define time_t dnix_time_t
  19. #define ino_t dnix_ino_t
  20. #include "../dnix-headers/diskpar.h"
  21. #include "../dnix-headers/inode.h"
  22. #include "../dnix-headers/sysfile.h"
  23. #include "../dnix-headers/dir.h"
  24. #undef ino_t
  25. //#undef daddr_t
  26. #undef time_t
  27. //#define daddr_t daddr_t
  28. #define time_t time_t
  29. #include <sys/stat.h> /* mkdir(2) */
  30. //#include <sys/types.h>
  31. #include <utime.h>
  32. #define swap32(num) (((num>>24)&0xff) | ((num<<8)&0xff0000) | ((num>>8)&0xff00) | ((num<<24)&0xff000000))
  33. #define swap16(num) (((num >> 8) & 0xff) | ((num << 8) & 0xff00))
  34. class DnixFs {
  35. struct sysfptr dnixPartitionInfo;
  36. struct sysfile sysfile;
  37. FILE * image;
  38. public:
  39. DnixFs();
  40. void init( FILE * image );
  41. bool readInode (int inumber, struct dinode * inode);
  42. };
  43. bool DnixFs:: readInode (int inumber, struct dinode * inode) {
  44. struct dinode dinode;
  45. char buffer[26];
  46. struct tm * tm_info;
  47. time_t tim;
  48. int i;
  49. //printf ("inumber %04X\n", inumber);
  50. //printf ("insiz %04X\n", sysfile.s_insiz);
  51. //printf ("inadr %04X\n", sysfile.s_inadr);
  52. //printf ("Address to read inode from %04lX\n", (inumber-1) * (sizeof dinode) + sysfile.s_inadr);
  53. if (((inumber-1) * (sizeof dinode) + sysfile.s_inadr) > sysfile.s_insiz) {
  54. //printf ("******************* invalid inode address. Refusing. It is outide valid range.\n");
  55. return false;
  56. }
  57. fseek (image, (inumber-1) * (sizeof dinode) + sysfile.s_inadr, SEEK_SET);
  58. fread ( (void * ) &dinode, sizeof dinode, 1, image);
  59. inode->di_mode = swap16(dinode.di_mode);
  60. inode->di_nlink = swap16(dinode.di_nlink);
  61. inode->di_uid = swap16(dinode.di_uid);
  62. inode->di_gid = swap16(dinode.di_gid);
  63. inode->di_size = swap32(dinode.di_size);
  64. inode->di_atime = swap32(dinode.di_atime);
  65. inode->di_mtime = swap32(dinode.di_mtime);
  66. inode->di_ctime = swap32(dinode.di_ctime);
  67. memcpy((void *) inode->di_addr, (void *) dinode.di_addr, 40);
  68. //for (i=0; i<40; i++) {
  69. // printf ("di_addr[%d] = %02X %02X\n", i, inode->di_addr[i], dinode.di_addr[i]);
  70. //}
  71. //printf("mode and type of file %04X\n", inode->di_mode);
  72. //printf("number of links to file %d\n", inode->di_nlink);
  73. //printf("owner's user id %d\n", inode->di_uid);
  74. //printf("owner's group id %d\n", inode->di_gid);
  75. //printf("number of bytes in file %d\n", inode->di_size);
  76. tim = inode->di_atime;
  77. tm_info = localtime((time_t *) ( &tim));
  78. strftime(buffer, 26, "%Y-%m-%d %H:%M:%S", tm_info);
  79. //printf("time last accessed %s\n", buffer);
  80. tim = inode->di_mtime;
  81. tm_info = localtime((time_t *) ( &tim));
  82. strftime(buffer, 26, "%Y-%m-%d %H:%M:%S", tm_info);
  83. //printf("time last modified %s\n", buffer);
  84. tim = inode->di_ctime;
  85. tm_info = localtime((time_t *) ( &tim));
  86. strftime(buffer, 26, "%Y-%m-%d %H:%M:%S", tm_info);
  87. //printf("time inode last modified %s\n", buffer);
  88. return true;
  89. }
  90. void DnixFs::init(FILE * img) {
  91. char buffer[26];
  92. struct tm * tm_info;
  93. daddr_t superblock_address;
  94. struct sysfile s;
  95. time_t tim;
  96. image = img;
  97. // Read the partition info
  98. fseek (image, SYSFPTR, SEEK_SET);
  99. fread ( (void * ) &dnixPartitionInfo, 512, 1, image);
  100. tim = swap32(dnixPartitionInfo.timestamp);
  101. tm_info = localtime((time_t *) ( &tim));
  102. strftime(buffer, 26, "%Y-%m-%d %H:%M:%S", tm_info);
  103. superblock_address = swap32(dnixPartitionInfo.vdsp);
  104. //printf ("Pointer to volume descriptor block: %08X\n", superblock_address);
  105. //printf ("1:s complement of previous item: %08X\n", swap32(dnixPartitionInfo.vdspn));
  106. //printf ("Volume clean flag: %08X\n", swap32(dnixPartitionInfo.cleanfl));
  107. //printf ("Timestamp %s\n", buffer);
  108. fseek (image, superblock_address, SEEK_SET);
  109. fread ( (void *) &s, sizeof sysfile, 1, image);
  110. memcpy ( (void *) &sysfile, (void *) &s, sizeof sysfile);
  111. sysfile.s_bmadr = swap32(s.s_bmadr);
  112. sysfile.s_inadr = swap32(s.s_inadr);
  113. sysfile.s_rtadr = swap32(s.s_rtadr);
  114. sysfile.s_swadr = swap32(s.s_swadr);
  115. sysfile.s_vlsiz = swap32(s.s_vlsiz);
  116. sysfile.s_bmsiz = swap32(s.s_bmsiz);
  117. sysfile.s_swsiz = swap32(s.s_swsiz);
  118. sysfile.s_bksiz = swap32(s.s_bksiz);
  119. sysfile.s_disiz = swap32(s.s_disiz);
  120. sysfile.s_insiz = swap32(s.s_insiz);
  121. sysfile.s_time = swap32(s.s_time);
  122. //printf ("Bitmap pointer: %08X\n", sysfile.s_bmadr);
  123. //printf ("Inode list pointer: %08X\n", sysfile.s_inadr);
  124. //printf ("Root file pointer: %08X\n", sysfile.s_rtadr);
  125. //printf ("Swap area: %08X\n", sysfile.s_swadr);
  126. //printf ("Volume size: %d\n", sysfile.s_vlsiz);
  127. //printf ("Bitmap size: %d\n", sysfile.s_bmsiz);
  128. //printf ("Swap area size: %d\n", sysfile.s_swsiz);
  129. //printf ("Block size: %d\n", sysfile.s_bksiz);
  130. //printf ("Size of a directory entry: %d\n", sysfile.s_disiz);
  131. //printf ("Default size of inode list: %08X\n", sysfile.s_insiz);
  132. tim = sysfile.s_time;
  133. tm_info = localtime((time_t *) ( &tim));
  134. strftime(buffer, 26, "%Y-%m-%d %H:%M:%S", tm_info);
  135. //printf ("Time initiated: %s\n", buffer);
  136. }
  137. // Read a file - block number as specified - store in buf
  138. class DnixFile {
  139. struct dinode ino;
  140. FILE * image;
  141. char indir_level_one [2048];
  142. int indir_level_one_block_no;
  143. char indir_level_two [2048];
  144. int indir_level_two_block_no;
  145. char indir_level_three [2048];
  146. int indir_level_three_block_no;
  147. public:
  148. void init( FILE * image, struct dinode * inode );
  149. void readFileBlock( int block_no, void * buf );
  150. };
  151. void DnixFile::init(FILE * img, struct dinode * inode) {
  152. memcpy (&ino, inode, sizeof (struct dinode));
  153. image = img;
  154. }
  155. void DnixFile::readFileBlock ( int block_no, void * buf ) {
  156. long disk_address;
  157. int ret;
  158. int level2blockno;
  159. int level1blockno;
  160. //printf("block_no=%d\n",block_no );
  161. if (block_no<11) {
  162. // direct blocks
  163. disk_address = ((((long)(0xff& ino.di_addr[block_no*3])) <<16 ) | (((long)(0xff & ino.di_addr[block_no*3 + 1])) <<8 ) | (ino.di_addr[block_no*3 + 2] & 0xff))<<8;
  164. //printf ("diskaddress=%08lX\n", disk_address);
  165. } else if ((block_no > 10) && (block_no < 692)) {
  166. // address of first indirect block is in block 11.
  167. disk_address = ((((long)(0xff& ino.di_addr[30])) <<16 ) | (((long)(0xff & ino.di_addr[31])) <<8 ) | (ino.di_addr[32] & 0xff))<<8;
  168. if (disk_address != indir_level_one_block_no) {
  169. fseek (image, disk_address, SEEK_SET);
  170. fread (indir_level_one, 2048, 1, image);
  171. }
  172. disk_address = ((((long)(0xff& indir_level_one[(block_no-10)*3])) <<16 ) | (((long)(0xff & indir_level_one[(block_no-10)*3 + 1])) <<8 ) | (indir_level_one[(block_no-10)*3 + 2] & 0xff))<<8;
  173. // First level of indirect block
  174. } else if ((block_no >= 692) && (block_no < 465816)) {
  175. printf("VERY LONG FILE!!! block_no=%d\n", block_no);
  176. // Second level of indirect block
  177. disk_address = ((((long)(0xff& ino.di_addr[33])) <<16 ) | (((long)(0xff & ino.di_addr[34])) <<8 ) | (ino.di_addr[35] & 0xff))<<8;
  178. if (disk_address != indir_level_two_block_no) {
  179. fseek (image, disk_address, SEEK_SET);
  180. fread (indir_level_two, 2048, 1, image);
  181. indir_level_two_block_no = disk_address;
  182. }
  183. level2blockno = ((block_no-692)/682)*3;
  184. printf ("Indirect block level 2 = %d\n", level2blockno);
  185. disk_address = ((((long)(0xff& indir_level_two[level2blockno])) <<16 ) | (((long)(0xff & indir_level_two[level2blockno+1])) <<8 ) | (indir_level_two[level2blockno + 2] & 0xff))<<8;
  186. //disk_address = indir_level_two[((block_no-692)/682)*3] * 65536 + indir_level_two[((block_no-692)/682)*3 + 1]*256 + indir_level_two[((block_no-692)/682)*3 + 2];
  187. if (disk_address != indir_level_one_block_no) {
  188. fseek (image, disk_address, SEEK_SET);
  189. fread (indir_level_one, 2048, 1, image);
  190. indir_level_one_block_no = disk_address;
  191. }
  192. level1blockno = ((block_no-692) % 682) * 3;
  193. printf ("Indirect block level 1 = %d\n", level1blockno);
  194. disk_address = ((0xff&indir_level_one[level1blockno]) << 16) | ((0xff&indir_level_one[level1blockno + 1]) << 8) | (0xff & indir_level_one[level1blockno + 2]);
  195. } else {
  196. // Third level of indirect block
  197. disk_address = ino.di_addr[36] * 65536 + ino.di_addr[37]*256 + ino.di_addr[38];
  198. if (disk_address != indir_level_one_block_no) {
  199. fseek (image, disk_address, SEEK_SET);
  200. fread (indir_level_one, 2048, 1, image);
  201. }
  202. disk_address = ino.di_addr[(block_no-10)*3] * 65536 + ino.di_addr[(block_no-10)*3 + 1]*256 + ino.di_addr[(block_no-10)*3 + 2];
  203. }
  204. //printf ("before fseek\n");
  205. ret = fseek (image, disk_address, SEEK_SET);
  206. //printf ("fseek ret=%d\n", ret);
  207. ret = fread (buf, 2048, 1, image);
  208. //printf ("fread ret=%d\n", ret);
  209. }
  210. DnixFs::DnixFs() {
  211. }
  212. int mkdir_p(const char *path)
  213. {
  214. /* Adapted from http://stackoverflow.com/a/2336245/119527 */
  215. const size_t len = strlen(path);
  216. char _path[PATH_MAX];
  217. char *p;
  218. errno = 0;
  219. /* Copy string so its mutable */
  220. if (len > sizeof(_path)-1) {
  221. errno = ENAMETOOLONG;
  222. return -1;
  223. }
  224. strcpy(_path, path);
  225. /* Iterate the string */
  226. for (p = _path + 1; *p; p++) {
  227. if (*p == '/') {
  228. /* Temporarily truncate */
  229. *p = '\0';
  230. if (mkdir(_path, S_IRWXU) != 0) {
  231. if (errno != EEXIST)
  232. return -1;
  233. }
  234. *p = '/';
  235. }
  236. }
  237. if (mkdir(_path, S_IRWXU) != 0) {
  238. if (errno != EEXIST)
  239. return -1;
  240. }
  241. return 0;
  242. }
  243. void readDir(int inumber, FILE * image_file, class DnixFs * dnixFs, char * path) {
  244. char p [1024];
  245. const char * slash = "/";
  246. struct direct * dir;
  247. class DnixFile * file = new class DnixFile;
  248. int size;
  249. FILE *output;
  250. int block_no;
  251. int dir_cnt;
  252. bool ret;
  253. struct utimbuf timebuf;
  254. struct dinode inode;
  255. //printf("Processing path=%s\n", path);
  256. ret = dnixFs->readInode(inumber, &inode);
  257. if (!ret) return;
  258. dir = (struct direct *) malloc (2048);
  259. file->init(image_file, &inode);
  260. size = inode.di_size;
  261. //printf ("size=%d\n", size);
  262. if (inode.di_mode & 0x4000) {
  263. mkdir_p(path);
  264. // Directory
  265. // Allocate memory
  266. block_no = 0;
  267. do {
  268. file->readFileBlock(block_no, (void * ) dir);
  269. // process all the entries in the directory
  270. dir_cnt=0;
  271. do {
  272. //printf ("inode: %d name: %s \n", swap16(dir[dir_cnt].d_ino), dir[dir_cnt].d_name);
  273. if (((strncmp(dir[dir_cnt].d_name,".",1)!=0) && (strncmp(dir[dir_cnt].d_name,"..",2)!=0)) || (strlen(dir[dir_cnt].d_name) > 2)) {
  274. memset(p,0,sizeof p);
  275. strcpy(p, path);
  276. strcat(p, slash);
  277. strncat(p, dir[dir_cnt].d_name,14);
  278. readDir(swap16(dir[dir_cnt].d_ino), image_file, dnixFs, p);
  279. }
  280. dir_cnt++;
  281. // printf("dir_cnt=%d\n", dir_cnt);
  282. } while ((dir_cnt < 128) && (swap16(dir[dir_cnt].d_ino) != 0));
  283. size -= 2048;
  284. block_no ++;
  285. } while (size > 0 && swap16(dir[255].d_ino) !=0 );
  286. } else {
  287. // Ordinary file
  288. output = fopen (path, "w");
  289. chmod (path, inode.di_mode & 07777);
  290. chown (path, inode.di_gid, inode.di_uid);
  291. timebuf.actime = inode.di_atime;
  292. timebuf.modtime = inode.di_mtime;
  293. utime(path, &timebuf);
  294. do {
  295. file->readFileBlock(block_no, (void * ) dir);
  296. if (size >= 2048) {
  297. fwrite(dir, 1, 2048, output);
  298. } else {
  299. fwrite(dir, 1, size, output);
  300. }
  301. size -= 2048;
  302. block_no ++;
  303. } while (size > 0);
  304. fclose(output);
  305. }
  306. }
  307. int main (int argc, char ** argv) {
  308. FILE * image_file;
  309. int opt;
  310. class DnixFs dnixFs;
  311. while ((opt = getopt(argc, argv, "d:")) != -1) {
  312. switch (opt) {
  313. case 'd':
  314. image_file = fopen (optarg, "r");
  315. if (image_file == NULL) {
  316. perror ("Failure opening file.");
  317. exit(EXIT_FAILURE);
  318. }
  319. break;
  320. default: /* '?' */
  321. fprintf(stderr, "Usage: %s [-d disk-image-file]\n", argv[0]);
  322. exit(EXIT_FAILURE);
  323. }
  324. }
  325. dnixFs.init(image_file);
  326. readDir(INOROOT, image_file, &dnixFs, (char *) ".");
  327. }