1 1.1 ttoth /*- 2 1.1 ttoth * Copyright (c) 2012 Department of Software Engineering, 3 1.1 ttoth * University of Szeged, Hungary 4 1.1 ttoth * Copyright (c) 2012 Tamas Toth <ttoth (at) inf.u-szeged.hu> 5 1.1 ttoth * All rights reserved. 6 1.1 ttoth * 7 1.1 ttoth * This code is derived from software contributed to The NetBSD Foundation 8 1.1 ttoth * by the Department of Software Engineering, University of Szeged, Hungary 9 1.1 ttoth * 10 1.1 ttoth * Redistribution and use in source and binary forms, with or without 11 1.1 ttoth * modification, are permitted provided that the following conditions 12 1.1 ttoth * are met: 13 1.1 ttoth * 1. Redistributions of source code must retain the above copyright 14 1.1 ttoth * notice, this list of conditions and the following disclaimer. 15 1.1 ttoth * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 ttoth * notice, this list of conditions and the following disclaimer in the 17 1.1 ttoth * documentation and/or other materials provided with the distribution. 18 1.1 ttoth * 19 1.1 ttoth * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 20 1.1 ttoth * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 21 1.1 ttoth * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 22 1.1 ttoth * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 23 1.1 ttoth * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 24 1.1 ttoth * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 25 1.1 ttoth * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 26 1.1 ttoth * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 27 1.1 ttoth * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 1.1 ttoth * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.1 ttoth * SUCH DAMAGE. 30 1.1 ttoth */ 31 1.1 ttoth 32 1.1 ttoth #if HAVE_NBTOOL_CONFIG_H 33 1.1 ttoth #include "nbtool_config.h" 34 1.1 ttoth #endif 35 1.1 ttoth 36 1.1 ttoth #include <sys/param.h> 37 1.1 ttoth #include <sys/stat.h> 38 1.1 ttoth 39 1.1 ttoth #include <assert.h> 40 1.1 ttoth #include <fcntl.h> 41 1.1 ttoth #include <stdio.h> 42 1.1 ttoth #include <stdlib.h> 43 1.1 ttoth #include <string.h> 44 1.1 ttoth #include <zlib.h> 45 1.6 christos #include <util.h> 46 1.8 kamil #include <unistd.h> 47 1.1 ttoth 48 1.1 ttoth #include "makefs.h" 49 1.1 ttoth #include "chfs_makefs.h" 50 1.1 ttoth 51 1.1 ttoth #include "media.h" 52 1.1 ttoth #include "ebh.h" 53 1.1 ttoth 54 1.1 ttoth #include "chfs/chfs_mkfs.h" 55 1.1 ttoth 56 1.1 ttoth static uint32_t img_ofs = 0; 57 1.1 ttoth static uint64_t version = 0; 58 1.1 ttoth static uint64_t max_serial = 0; 59 1.1 ttoth static int lebnumber = 0; 60 1.1 ttoth 61 1.1 ttoth static const unsigned char ffbuf[16] = { 62 1.1 ttoth 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 63 1.1 ttoth 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff 64 1.1 ttoth }; 65 1.1 ttoth 66 1.1 ttoth static void 67 1.1 ttoth buf_write(fsinfo_t *fsopts, const void *buf, size_t len) 68 1.1 ttoth { 69 1.1 ttoth ssize_t retval; 70 1.1 ttoth const char *charbuf = buf; 71 1.1 ttoth 72 1.1 ttoth while (len > 0) { 73 1.1 ttoth retval = write(fsopts->fd, charbuf, len); 74 1.1 ttoth 75 1.1 ttoth if (retval == -1) { 76 1.1 ttoth err(EXIT_FAILURE, "ERROR while writing"); 77 1.1 ttoth } 78 1.1 ttoth 79 1.1 ttoth len -= retval; 80 1.1 ttoth charbuf += retval; 81 1.1 ttoth img_ofs += retval; 82 1.1 ttoth } 83 1.1 ttoth } 84 1.1 ttoth 85 1.1 ttoth void 86 1.1 ttoth padblock(fsinfo_t *fsopts) 87 1.1 ttoth { 88 1.6 christos chfs_opt_t *chfs_opts = fsopts->fs_specific; 89 1.6 christos while (img_ofs % chfs_opts->eraseblock) { 90 1.1 ttoth buf_write(fsopts, ffbuf, MIN(sizeof(ffbuf), 91 1.6 christos chfs_opts->eraseblock - (img_ofs % chfs_opts->eraseblock))); 92 1.1 ttoth } 93 1.1 ttoth } 94 1.1 ttoth 95 1.1 ttoth static void 96 1.1 ttoth padword(fsinfo_t *fsopts) 97 1.1 ttoth { 98 1.1 ttoth if (img_ofs % 4) { 99 1.1 ttoth buf_write(fsopts, ffbuf, 4 - img_ofs % 4); 100 1.1 ttoth } 101 1.1 ttoth } 102 1.1 ttoth 103 1.1 ttoth static void 104 1.1 ttoth pad_block_if_less_than(fsinfo_t *fsopts, int req) 105 1.1 ttoth { 106 1.6 christos chfs_opt_t *chfs_opts = fsopts->fs_specific; 107 1.6 christos if ((img_ofs % chfs_opts->eraseblock) + req > 108 1.6 christos (uint32_t)chfs_opts->eraseblock) { 109 1.1 ttoth padblock(fsopts); 110 1.1 ttoth write_eb_header(fsopts); 111 1.1 ttoth } 112 1.1 ttoth } 113 1.1 ttoth 114 1.1 ttoth void 115 1.1 ttoth write_eb_header(fsinfo_t *fsopts) 116 1.1 ttoth { 117 1.2 christos chfs_opt_t *opts; 118 1.1 ttoth struct chfs_eb_hdr ebhdr; 119 1.2 christos char *buf; 120 1.1 ttoth 121 1.2 christos opts = fsopts->fs_specific; 122 1.1 ttoth 123 1.2 christos #define MINSIZE MAX(MAX(CHFS_EB_EC_HDR_SIZE, CHFS_EB_HDR_NOR_SIZE), \ 124 1.2 christos CHFS_EB_HDR_NAND_SIZE) 125 1.3 christos if ((uint32_t)opts->pagesize < MINSIZE) 126 1.2 christos errx(EXIT_FAILURE, "pagesize cannot be less than %zu", MINSIZE); 127 1.6 christos buf = emalloc(opts->pagesize); 128 1.1 ttoth 129 1.1 ttoth ebhdr.ec_hdr.magic = htole32(CHFS_MAGIC_BITMASK); 130 1.1 ttoth ebhdr.ec_hdr.erase_cnt = htole32(1); 131 1.2 christos ebhdr.ec_hdr.crc_ec = htole32(crc32(0, 132 1.2 christos (uint8_t *)&ebhdr.ec_hdr + 8, 4)); 133 1.1 ttoth 134 1.2 christos memcpy(buf, &ebhdr.ec_hdr, CHFS_EB_EC_HDR_SIZE); 135 1.7 christos memset(buf + CHFS_EB_EC_HDR_SIZE, 0xFF, 136 1.7 christos opts->pagesize - CHFS_EB_EC_HDR_SIZE); 137 1.1 ttoth 138 1.2 christos buf_write(fsopts, buf, opts->pagesize); 139 1.1 ttoth 140 1.2 christos memset(buf, 0xFF, opts->pagesize); 141 1.1 ttoth 142 1.2 christos if (opts->mediatype == TYPE_NAND) { 143 1.1 ttoth ebhdr.u.nand_hdr.lid = htole32(lebnumber++); 144 1.1 ttoth ebhdr.u.nand_hdr.serial = htole64(++(max_serial)); 145 1.1 ttoth ebhdr.u.nand_hdr.crc = htole32(crc32(0, 146 1.2 christos (uint8_t *)&ebhdr.u.nand_hdr + 4, 147 1.2 christos CHFS_EB_HDR_NAND_SIZE - 4)); 148 1.2 christos memcpy(buf, &ebhdr.u.nand_hdr, CHFS_EB_HDR_NAND_SIZE); 149 1.1 ttoth } else { 150 1.1 ttoth ebhdr.u.nor_hdr.lid = htole32(lebnumber++); 151 1.2 christos ebhdr.u.nor_hdr.crc = htole32(crc32(0, 152 1.2 christos (uint8_t *)&ebhdr.u.nor_hdr + 4, 153 1.1 ttoth CHFS_EB_HDR_NOR_SIZE - 4)); 154 1.2 christos memcpy(buf, &ebhdr.u.nor_hdr, CHFS_EB_HDR_NOR_SIZE); 155 1.1 ttoth } 156 1.9 riastrad 157 1.2 christos buf_write(fsopts, buf, opts->pagesize); 158 1.2 christos free(buf); 159 1.1 ttoth } 160 1.1 ttoth 161 1.1 ttoth void 162 1.1 ttoth write_vnode(fsinfo_t *fsopts, fsnode *node) 163 1.1 ttoth { 164 1.1 ttoth struct chfs_flash_vnode fvnode; 165 1.1 ttoth memset(&fvnode, 0, sizeof(fvnode)); 166 1.9 riastrad 167 1.1 ttoth fvnode.magic = htole16(CHFS_FS_MAGIC_BITMASK); 168 1.1 ttoth fvnode.type = htole16(CHFS_NODETYPE_VNODE); 169 1.1 ttoth fvnode.length = htole32(CHFS_PAD(sizeof(fvnode))); 170 1.1 ttoth fvnode.hdr_crc = htole32(crc32(0, (uint8_t *)&fvnode, 171 1.1 ttoth CHFS_NODE_HDR_SIZE - 4)); 172 1.1 ttoth fvnode.vno = htole64(node->inode->ino); 173 1.1 ttoth fvnode.version = htole64(version++); 174 1.1 ttoth fvnode.mode = htole32(node->inode->st.st_mode); 175 1.1 ttoth fvnode.dn_size = htole32(node->inode->st.st_size); 176 1.1 ttoth fvnode.atime = htole32(node->inode->st.st_atime); 177 1.1 ttoth fvnode.ctime = htole32(node->inode->st.st_ctime); 178 1.1 ttoth fvnode.mtime = htole32(node->inode->st.st_mtime); 179 1.1 ttoth fvnode.gid = htole32(node->inode->st.st_uid); 180 1.1 ttoth fvnode.uid = htole32(node->inode->st.st_gid); 181 1.1 ttoth fvnode.node_crc = htole32(crc32(0, (uint8_t *)&fvnode, 182 1.1 ttoth sizeof(fvnode) - 4)); 183 1.1 ttoth 184 1.1 ttoth pad_block_if_less_than(fsopts, sizeof(fvnode)); 185 1.1 ttoth buf_write(fsopts, &fvnode, sizeof(fvnode)); 186 1.1 ttoth padword(fsopts); 187 1.1 ttoth } 188 1.1 ttoth 189 1.1 ttoth void 190 1.1 ttoth write_dirent(fsinfo_t *fsopts, fsnode *node) 191 1.1 ttoth { 192 1.1 ttoth struct chfs_flash_dirent_node fdirent; 193 1.6 christos char *name; 194 1.1 ttoth 195 1.6 christos name = emalloc(strlen(node->name)); 196 1.1 ttoth memcpy(name, node->name, strlen(node->name)); 197 1.1 ttoth 198 1.6 christos memset(&fdirent, 0, sizeof(fdirent)); 199 1.1 ttoth fdirent.magic = htole16(CHFS_FS_MAGIC_BITMASK); 200 1.1 ttoth fdirent.type = htole16(CHFS_NODETYPE_DIRENT); 201 1.1 ttoth fdirent.length = htole32(CHFS_PAD(sizeof(fdirent) + strlen(name))); 202 1.1 ttoth fdirent.hdr_crc = htole32(crc32(0, (uint8_t *)&fdirent, 203 1.1 ttoth CHFS_NODE_HDR_SIZE - 4)); 204 1.1 ttoth fdirent.vno = htole64(node->inode->ino); 205 1.1 ttoth if (node->parent != NULL) { 206 1.1 ttoth fdirent.pvno = htole64(node->parent->inode->ino); 207 1.1 ttoth } else { 208 1.1 ttoth fdirent.pvno = htole64(node->inode->ino); 209 1.1 ttoth } 210 1.1 ttoth 211 1.1 ttoth fdirent.version = htole64(version++); 212 1.5 dogcow fdirent.mctime = 0; 213 1.1 ttoth fdirent.nsize = htole32(strlen(name)); 214 1.1 ttoth fdirent.dtype = htole32(IFTOCHT(node->type & S_IFMT)); 215 1.1 ttoth fdirent.name_crc = htole32(crc32(0, (uint8_t *)name, fdirent.nsize)); 216 1.1 ttoth fdirent.node_crc = htole32(crc32(0, (uint8_t *)&fdirent, 217 1.1 ttoth sizeof(fdirent) - 4)); 218 1.9 riastrad 219 1.1 ttoth pad_block_if_less_than(fsopts, sizeof(fdirent) + fdirent.nsize); 220 1.1 ttoth buf_write(fsopts, &fdirent, sizeof(fdirent)); 221 1.1 ttoth buf_write(fsopts, name, fdirent.nsize); 222 1.1 ttoth padword(fsopts); 223 1.1 ttoth } 224 1.1 ttoth 225 1.1 ttoth void 226 1.1 ttoth write_file(fsinfo_t *fsopts, fsnode *node, const char *dir) 227 1.1 ttoth { 228 1.1 ttoth int fd; 229 1.1 ttoth ssize_t len; 230 1.1 ttoth char *name = node->name; 231 1.2 christos chfs_opt_t *opts; 232 1.1 ttoth unsigned char *buf; 233 1.1 ttoth uint32_t fileofs = 0; 234 1.1 ttoth 235 1.2 christos opts = fsopts->fs_specific; 236 1.6 christos buf = emalloc(opts->pagesize); 237 1.1 ttoth if (node->type == S_IFREG || node->type == S_IFSOCK) { 238 1.1 ttoth char *longname; 239 1.2 christos if (asprintf(&longname, "%s/%s", dir, name) == 1) 240 1.2 christos goto out; 241 1.1 ttoth 242 1.1 ttoth fd = open(longname, O_RDONLY, 0444); 243 1.2 christos if (fd == -1) 244 1.2 christos err(EXIT_FAILURE, "Cannot open `%s'", longname); 245 1.1 ttoth 246 1.2 christos while ((len = read(fd, buf, opts->pagesize))) { 247 1.1 ttoth if (len < 0) { 248 1.1 ttoth warn("ERROR while reading %s", longname); 249 1.2 christos free(longname); 250 1.1 ttoth free(buf); 251 1.1 ttoth close(fd); 252 1.1 ttoth return; 253 1.1 ttoth } 254 1.1 ttoth 255 1.1 ttoth write_data(fsopts, node, buf, len, fileofs); 256 1.1 ttoth fileofs += len; 257 1.1 ttoth } 258 1.2 christos free(longname); 259 1.9 riastrad close(fd); 260 1.1 ttoth } else if (node->type == S_IFLNK) { 261 1.1 ttoth len = strlen(node->symlink); 262 1.1 ttoth memcpy(buf, node->symlink, len); 263 1.1 ttoth write_data(fsopts, node, buf, len, 0); 264 1.1 ttoth } else if (node->type == S_IFCHR || node->type == S_IFBLK || 265 1.1 ttoth node->type == S_IFIFO) { 266 1.1 ttoth len = sizeof(dev_t); 267 1.1 ttoth memcpy(buf, &(node->inode->st.st_rdev), len); 268 1.1 ttoth write_data(fsopts, node, buf, len, 0); 269 1.1 ttoth } 270 1.1 ttoth 271 1.1 ttoth free(buf); 272 1.2 christos return; 273 1.2 christos out: 274 1.2 christos err(EXIT_FAILURE, "Memory allocation failed"); 275 1.1 ttoth } 276 1.1 ttoth 277 1.1 ttoth void 278 1.1 ttoth write_data(fsinfo_t *fsopts, fsnode *node, unsigned char *buf, size_t len, 279 1.1 ttoth uint32_t ofs) 280 1.1 ttoth { 281 1.1 ttoth struct chfs_flash_data_node fdata; 282 1.2 christos 283 1.1 ttoth memset(&fdata, 0, sizeof(fdata)); 284 1.1 ttoth if (len == 0) { 285 1.1 ttoth return; 286 1.1 ttoth } 287 1.9 riastrad 288 1.1 ttoth pad_block_if_less_than(fsopts, sizeof(fdata) + len); 289 1.1 ttoth 290 1.1 ttoth fdata.magic = htole16(CHFS_FS_MAGIC_BITMASK); 291 1.1 ttoth fdata.type = htole16(CHFS_NODETYPE_DATA); 292 1.1 ttoth fdata.length = htole32(CHFS_PAD(sizeof(fdata) + len)); 293 1.1 ttoth fdata.hdr_crc = htole32(crc32(0, (uint8_t *)&fdata, 294 1.1 ttoth CHFS_NODE_HDR_SIZE - 4)); 295 1.1 ttoth fdata.vno = htole64(node->inode->ino); 296 1.1 ttoth fdata.data_length = htole32(len); 297 1.1 ttoth fdata.offset = htole32(ofs); 298 1.1 ttoth fdata.data_crc = htole32(crc32(0, (uint8_t *)buf, len)); 299 1.2 christos fdata.node_crc = htole32(crc32(0, 300 1.2 christos (uint8_t *)&fdata, sizeof(fdata) - 4)); 301 1.1 ttoth 302 1.1 ttoth buf_write(fsopts, &fdata, sizeof(fdata)); 303 1.1 ttoth buf_write(fsopts, buf, len); 304 1.1 ttoth padword(fsopts); 305 1.1 ttoth } 306