Fix .deb unpack and experimental TAR support
The previous ar.c fialed to recognise one record in .debs Experimental tar support, this is currently *very* cheap because ar and tar are functionally similar. It will need lots of testing so by default tar support code is defined out. To test uncomment the line "#define BB_AR_EXPERIMENTAL_UNTAR"
This commit is contained in:
parent
ac19b7e032
commit
fca8050f0f
273
ar.c
273
ar.c
@ -51,6 +51,30 @@
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//#define bb_need_io_error
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//#include "messages.c"
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//#define BB_AR_EXPERIMENTAL_UNTAR
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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typedef struct rawTarHeader {
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char name[100]; /* 0-99 */
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char mode[8]; /* 100-107 */
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char uid[8]; /* 108-115 */
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char gid[8]; /* 116-123 */
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char size[12]; /* 124-135 */
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char mtime[12]; /* 136-147 */
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char chksum[8]; /* 148-155 */
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char typeflag; /* 156-156 */
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char linkname[100]; /* 157-256 */
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char magic[6]; /* 257-262 */
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char version[2]; /* 263-264 */
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char uname[32]; /* 265-296 */
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char gname[32]; /* 297-328 */
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char devmajor[8]; /* 329-336 */
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char devminor[8]; /* 337-344 */
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char prefix[155]; /* 345-499 */
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char padding[12]; /* 500-512 */
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} rawTarHeader_t;
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#endif
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typedef struct rawArHeader { /* Byte Offset */
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char name[16]; /* 0-15 */
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char date[12]; /* 16-27 */
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@ -71,92 +95,136 @@ typedef struct headerL {
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struct headerL *next;
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} headerL_t;
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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/*
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* identify Ar header (magic) and set srcFd to first header entry
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* identify Tar header (magic field) and reset srcFd to entry position
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*/
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static int checkTarMagic(int srcFd)
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{
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off_t headerStart;
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char magic[6];
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headerStart = lseek(srcFd, 0, SEEK_CUR);
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lseek(srcFd, (off_t) 257, SEEK_CUR);
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fullRead(srcFd, magic, 6);
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lseek(srcFd, headerStart, SEEK_SET);
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if (strncmp(magic, "ustar", 5)!=0)
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return(FALSE);
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return(TRUE);
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}
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static int readTarHeader(int srcFd, headerL_t *current)
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{
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rawTarHeader_t rawTarHeader;
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unsigned char *temp = (unsigned char *) &rawTarHeader;
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long sum = 0;
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int i;
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off_t initialOffset;
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initialOffset = lseek(srcFd, 0, SEEK_CUR);
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if (fullRead(srcFd, (char *) &rawTarHeader, 512) != 512) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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for (i = 0; i < 148 ; i++)
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sum += temp[i];
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sum += ' ' * 8;
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for (i = 156; i < 512 ; i++)
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sum += temp[i];
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if (sum!= strtol(rawTarHeader.chksum, NULL, 8))
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return(FALSE);
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sscanf(rawTarHeader.name, "%s", current->name);
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current->size = strtol(rawTarHeader.size, NULL, 8);
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current->uid = strtol(rawTarHeader.uid, NULL, 8);
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current->gid = strtol(rawTarHeader.gid, NULL, 8);
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current->mode = strtol(rawTarHeader.mode, NULL, 8);
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current->mtime = strtol(rawTarHeader.mtime, NULL, 8);
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current->offset = lseek(srcFd, 0 , SEEK_CUR);
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current->next = (headerL_t *) xmalloc(sizeof(headerL_t));
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current = current->next;
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return(TRUE);
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}
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#endif
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/*
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* identify Ar header (magic) and reset srcFd to entry position
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*/
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static int checkArMagic(int srcFd)
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{
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off_t headerStart;
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char arMagic[8];
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if (fullRead(srcFd, arMagic, 8) != 8)
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headerStart = lseek(srcFd, 0, SEEK_CUR);
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if (fullRead(srcFd, arMagic, 8) != 8) {
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printf("fatal error/n");
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return (FALSE);
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if (strncmp(arMagic,"!<arch>",7) != 0)
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}
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lseek(srcFd, headerStart, SEEK_SET);
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if (strncmp(arMagic,"!<arch>",7) != 0)
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return(FALSE);
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return(TRUE);
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}
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/*
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* read, convert and check the raw ar header
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* srcFd should be pointing to the start of header prior to entry
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* srcFd will be pointing at the start of data after successful exit
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* if returns FALSE srcFd is reset to initial position
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*/
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static int readRawArHeader(int srcFd, headerL_t *header)
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{
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rawArHeader_t rawArHeader;
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off_t initialOffset;
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size_t nameLength;
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initialOffset = lseek(srcFd, 0, SEEK_CUR);
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if (fullRead(srcFd, (char *) &rawArHeader, 60) != 60) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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if ((rawArHeader.fmag[0]!='`') || (rawArHeader.fmag[1]!='\n')) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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strncpy(header->name, rawArHeader.name, 16);
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nameLength=strcspn(header->name, " \\");
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header->name[nameLength]='\0';
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parse_mode(rawArHeader.mode, &header->mode);
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header->mtime = atoi(rawArHeader.date);
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header->uid = atoi(rawArHeader.uid);
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header->gid = atoi(rawArHeader.gid);
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header->size = (size_t) atoi(rawArHeader.size);
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header->offset = initialOffset + (off_t) 60;
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return(TRUE);
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return(TRUE);
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}
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/*
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* get, check and correct the converted header
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*/
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static int readArEntry(int srcFd, headerL_t *newEntry)
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static int readArEntry(int srcFd, headerL_t *entry)
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{
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size_t nameLength;
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rawArHeader_t rawArHeader;
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off_t initialOffset;
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if(readRawArHeader(srcFd, newEntry)==FALSE)
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return(FALSE);
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nameLength = strcspn(newEntry->name, "/");
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initialOffset = lseek(srcFd, 0, SEEK_CUR);
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if (fullRead(srcFd, (char *) &rawArHeader, 60) != 60) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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if ((rawArHeader.fmag[0]!='`') || (rawArHeader.fmag[1]!='\n')) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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strncpy(entry->name, rawArHeader.name, 16);
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nameLength=strcspn(entry->name, " \\");
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entry->name[nameLength]='\0';
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parse_mode(rawArHeader.mode, &entry->mode);
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entry->mtime = atoi(rawArHeader.date);
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entry->uid = atoi(rawArHeader.uid);
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entry->gid = atoi(rawArHeader.gid);
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entry->size = (size_t) atoi(rawArHeader.size);
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entry->offset = initialOffset + (off_t) 60;
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nameLength = strcspn(entry->name, "/");
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/* handle GNU style short filenames, strip trailing '/' */
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if (nameLength > 0)
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newEntry->name[nameLength]='\0';
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entry->name[nameLength]='\0';
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/* handle GNU style long filenames */
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if (nameLength == 0) {
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/* escape from recursive call */
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if (newEntry->name[1]=='0')
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if (entry->name[1]=='0')
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return(TRUE);
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/* the data section contains the real filename */
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if (newEntry->name[1]=='/') {
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if (entry->name[1]=='/') {
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char tempName[MAX_NAME_LENGTH];
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if (newEntry->size > MAX_NAME_LENGTH)
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newEntry->size = MAX_NAME_LENGTH;
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fullRead(srcFd, tempName, newEntry->size);
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tempName[newEntry->size-3]='\0';
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if (entry->size > MAX_NAME_LENGTH)
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entry->size = MAX_NAME_LENGTH;
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fullRead(srcFd, tempName, entry->size);
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tempName[entry->size-3]='\0';
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/* read the second header for this entry */
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/* be carefull, this is recursive */
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if (readArEntry(srcFd, newEntry)==FALSE)
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if (readArEntry(srcFd, entry)==FALSE)
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return(FALSE);
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if ((newEntry->name[0]='/') && (newEntry->name[1]='0'))
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strcpy(newEntry->name, tempName);
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if ((entry->name[0]='/') && (entry->name[1]='0'))
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strcpy(entry->name, tempName);
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else {
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errorMsg("Invalid long filename\n");
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return(FALSE);
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@ -171,17 +239,54 @@ static int readArEntry(int srcFd, headerL_t *newEntry)
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*/
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static headerL_t *getHeaders(int srcFd, headerL_t *head, int funct)
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{
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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int tar=FALSE;
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#endif
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int ar=FALSE;
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headerL_t *list;
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list = (headerL_t *) malloc(sizeof(headerL_t));
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off_t initialOffset;
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if (checkArMagic(srcFd)==TRUE) {
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while(readArEntry(srcFd, list) == TRUE) {
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list = (headerL_t *) malloc(sizeof(headerL_t));
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initialOffset=lseek(srcFd, 0, SEEK_CUR);
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if (checkArMagic(srcFd)==TRUE)
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ar=TRUE;
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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if (checkTarMagic(srcFd)==TRUE)
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tar=TRUE;
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if (tar==TRUE) {
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while(readTarHeader(srcFd, list)==TRUE) {
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off_t tarOffset;
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list->next = (headerL_t *) malloc(sizeof(headerL_t));
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*list->next = *head;
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*head = *list;
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/* recursive check for sub-archives */
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if ((funct & RECURSIVE) == RECURSIVE)
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head = getHeaders(srcFd, head, funct);
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tarOffset = (off_t) head->size/512;
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if ( head->size % 512 > 0)
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tarOffset++;
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tarOffset=tarOffset*512;
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lseek(srcFd, head->offset + tarOffset, SEEK_SET);
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}
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}
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#endif
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if (ar==TRUE) {
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lseek(srcFd, 8, SEEK_CUR);
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while(1) {
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if (readArEntry(srcFd, list) == FALSE) {
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lseek(srcFd, ++initialOffset, SEEK_CUR);
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if (readArEntry(srcFd, list) == FALSE)
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return(head);
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}
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list->next = (headerL_t *) malloc(sizeof(headerL_t));
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*list->next = *head;
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*head = *list;
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/* recursive check for sub-archives */
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if ( funct & RECURSIVE )
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if (funct & RECURSIVE)
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head = getHeaders(srcFd, head, funct);
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lseek(srcFd, head->offset + head->size, SEEK_SET);
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}
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@ -202,27 +307,6 @@ static headerL_t *findEntry(headerL_t *head, const char *filename)
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return(NULL);
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}
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/*
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* populate linked list with all ar file entries and offset
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*/
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static int displayEntry(headerL_t *head, int funct)
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{
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if ( funct & VERBOSE ) {
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printf("%s %d/%d %8d %s ", modeString(head->mode), head->uid, head->gid, head->size, timeString(head->mtime));
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}
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printf("%s\n", head->name);
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head = head->next;
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return(TRUE);
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}
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static int extractAr(int srcFd, int dstFd, headerL_t *file)
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{
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lseek(srcFd, file->offset, SEEK_SET);
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if (copySubFile(srcFd, dstFd, (size_t) file->size) == TRUE)
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return(TRUE);
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return(FALSE);
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}
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extern int ar_main(int argc, char **argv)
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{
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int funct = 0, opt=0;
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@ -270,7 +354,6 @@ extern int ar_main(int argc, char **argv)
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extractList = (headerL_t *) malloc(sizeof(headerL_t));
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header = getHeaders(srcFd, header, funct);
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/* find files to extract or display */
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if (optind<argc) {
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/* only handle specified files */
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@ -283,20 +366,28 @@ extern int ar_main(int argc, char **argv)
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optind++;
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}
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}
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else
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/* extract everything */
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else
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extractList = header;
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while(extractList->next != NULL) {
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if ( funct & EXT_TO_FILE ) {
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while(extractList->next != NULL) {
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if (funct & EXT_TO_FILE) {
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if (isDirectory(extractList->name, TRUE, NULL)==FALSE)
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createPath(extractList->name, 0666);
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dstFd = open(extractList->name, O_WRONLY | O_CREAT, extractList->mode);
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extractAr(srcFd, dstFd, extractList);
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lseek(srcFd, extractList->offset, SEEK_SET);
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copySubFile(srcFd, dstFd, (size_t) extractList->size);
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}
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if (funct & EXT_TO_STDOUT) {
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lseek(srcFd, extractList->offset, SEEK_SET);
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copySubFile(srcFd, fileno(stdout), (size_t) extractList->size);
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}
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if ( (funct & DISPLAY) || (funct & VERBOSE)) {
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if (funct & VERBOSE)
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printf("%s %d/%d %8d %s ", modeString(extractList->mode),
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extractList->uid, extractList->gid,
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extractList->size, timeString(extractList->mtime));
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printf("%s\n", extractList->name);
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}
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if ( funct & EXT_TO_STDOUT )
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extractAr(srcFd, fileno(stdout), extractList);
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if ( (funct & DISPLAY) || (funct & VERBOSE))
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displayEntry(extractList, funct);
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extractList=extractList->next;
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}
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return (TRUE);
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273
archival/ar.c
273
archival/ar.c
@ -51,6 +51,30 @@
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//#define bb_need_io_error
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//#include "messages.c"
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//#define BB_AR_EXPERIMENTAL_UNTAR
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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typedef struct rawTarHeader {
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char name[100]; /* 0-99 */
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char mode[8]; /* 100-107 */
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char uid[8]; /* 108-115 */
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char gid[8]; /* 116-123 */
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char size[12]; /* 124-135 */
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char mtime[12]; /* 136-147 */
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char chksum[8]; /* 148-155 */
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char typeflag; /* 156-156 */
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char linkname[100]; /* 157-256 */
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char magic[6]; /* 257-262 */
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char version[2]; /* 263-264 */
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char uname[32]; /* 265-296 */
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char gname[32]; /* 297-328 */
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char devmajor[8]; /* 329-336 */
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char devminor[8]; /* 337-344 */
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char prefix[155]; /* 345-499 */
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char padding[12]; /* 500-512 */
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} rawTarHeader_t;
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#endif
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typedef struct rawArHeader { /* Byte Offset */
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char name[16]; /* 0-15 */
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char date[12]; /* 16-27 */
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@ -71,92 +95,136 @@ typedef struct headerL {
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struct headerL *next;
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} headerL_t;
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#if defined BB_AR_EXPERIMENTAL_UNTAR
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/*
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* identify Ar header (magic) and set srcFd to first header entry
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* identify Tar header (magic field) and reset srcFd to entry position
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*/
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static int checkTarMagic(int srcFd)
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{
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off_t headerStart;
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char magic[6];
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headerStart = lseek(srcFd, 0, SEEK_CUR);
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lseek(srcFd, (off_t) 257, SEEK_CUR);
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fullRead(srcFd, magic, 6);
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lseek(srcFd, headerStart, SEEK_SET);
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if (strncmp(magic, "ustar", 5)!=0)
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return(FALSE);
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return(TRUE);
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}
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static int readTarHeader(int srcFd, headerL_t *current)
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{
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rawTarHeader_t rawTarHeader;
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unsigned char *temp = (unsigned char *) &rawTarHeader;
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long sum = 0;
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int i;
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off_t initialOffset;
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initialOffset = lseek(srcFd, 0, SEEK_CUR);
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if (fullRead(srcFd, (char *) &rawTarHeader, 512) != 512) {
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lseek(srcFd, initialOffset, SEEK_SET);
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return(FALSE);
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}
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for (i = 0; i < 148 ; i++)
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sum += temp[i];
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sum += ' ' * 8;
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for (i = 156; i < 512 ; i++)
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sum += temp[i];
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if (sum!= strtol(rawTarHeader.chksum, NULL, 8))
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return(FALSE);
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sscanf(rawTarHeader.name, "%s", current->name);
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current->size = strtol(rawTarHeader.size, NULL, 8);
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current->uid = strtol(rawTarHeader.uid, NULL, 8);
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current->gid = strtol(rawTarHeader.gid, NULL, 8);
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current->mode = strtol(rawTarHeader.mode, NULL, 8);
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current->mtime = strtol(rawTarHeader.mtime, NULL, 8);
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current->offset = lseek(srcFd, 0 , SEEK_CUR);
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current->next = (headerL_t *) xmalloc(sizeof(headerL_t));
|
||||
current = current->next;
|
||||
return(TRUE);
|
||||
}
|
||||
#endif
|
||||
|
||||
/*
|
||||
* identify Ar header (magic) and reset srcFd to entry position
|
||||
*/
|
||||
static int checkArMagic(int srcFd)
|
||||
{
|
||||
off_t headerStart;
|
||||
char arMagic[8];
|
||||
if (fullRead(srcFd, arMagic, 8) != 8)
|
||||
|
||||
headerStart = lseek(srcFd, 0, SEEK_CUR);
|
||||
if (fullRead(srcFd, arMagic, 8) != 8) {
|
||||
printf("fatal error/n");
|
||||
return (FALSE);
|
||||
|
||||
if (strncmp(arMagic,"!<arch>",7) != 0)
|
||||
}
|
||||
lseek(srcFd, headerStart, SEEK_SET);
|
||||
|
||||
if (strncmp(arMagic,"!<arch>",7) != 0)
|
||||
return(FALSE);
|
||||
return(TRUE);
|
||||
}
|
||||
|
||||
/*
|
||||
* read, convert and check the raw ar header
|
||||
* srcFd should be pointing to the start of header prior to entry
|
||||
* srcFd will be pointing at the start of data after successful exit
|
||||
* if returns FALSE srcFd is reset to initial position
|
||||
*/
|
||||
static int readRawArHeader(int srcFd, headerL_t *header)
|
||||
{
|
||||
rawArHeader_t rawArHeader;
|
||||
off_t initialOffset;
|
||||
size_t nameLength;
|
||||
|
||||
initialOffset = lseek(srcFd, 0, SEEK_CUR);
|
||||
if (fullRead(srcFd, (char *) &rawArHeader, 60) != 60) {
|
||||
lseek(srcFd, initialOffset, SEEK_SET);
|
||||
return(FALSE);
|
||||
}
|
||||
if ((rawArHeader.fmag[0]!='`') || (rawArHeader.fmag[1]!='\n')) {
|
||||
lseek(srcFd, initialOffset, SEEK_SET);
|
||||
return(FALSE);
|
||||
}
|
||||
|
||||
strncpy(header->name, rawArHeader.name, 16);
|
||||
nameLength=strcspn(header->name, " \\");
|
||||
header->name[nameLength]='\0';
|
||||
parse_mode(rawArHeader.mode, &header->mode);
|
||||
header->mtime = atoi(rawArHeader.date);
|
||||
header->uid = atoi(rawArHeader.uid);
|
||||
header->gid = atoi(rawArHeader.gid);
|
||||
header->size = (size_t) atoi(rawArHeader.size);
|
||||
header->offset = initialOffset + (off_t) 60;
|
||||
return(TRUE);
|
||||
return(TRUE);
|
||||
}
|
||||
|
||||
/*
|
||||
* get, check and correct the converted header
|
||||
*/
|
||||
static int readArEntry(int srcFd, headerL_t *newEntry)
|
||||
static int readArEntry(int srcFd, headerL_t *entry)
|
||||
{
|
||||
size_t nameLength;
|
||||
rawArHeader_t rawArHeader;
|
||||
off_t initialOffset;
|
||||
|
||||
if(readRawArHeader(srcFd, newEntry)==FALSE)
|
||||
return(FALSE);
|
||||
|
||||
nameLength = strcspn(newEntry->name, "/");
|
||||
initialOffset = lseek(srcFd, 0, SEEK_CUR);
|
||||
if (fullRead(srcFd, (char *) &rawArHeader, 60) != 60) {
|
||||
lseek(srcFd, initialOffset, SEEK_SET);
|
||||
return(FALSE);
|
||||
}
|
||||
if ((rawArHeader.fmag[0]!='`') || (rawArHeader.fmag[1]!='\n')) {
|
||||
lseek(srcFd, initialOffset, SEEK_SET);
|
||||
return(FALSE);
|
||||
}
|
||||
|
||||
strncpy(entry->name, rawArHeader.name, 16);
|
||||
nameLength=strcspn(entry->name, " \\");
|
||||
entry->name[nameLength]='\0';
|
||||
parse_mode(rawArHeader.mode, &entry->mode);
|
||||
entry->mtime = atoi(rawArHeader.date);
|
||||
entry->uid = atoi(rawArHeader.uid);
|
||||
entry->gid = atoi(rawArHeader.gid);
|
||||
entry->size = (size_t) atoi(rawArHeader.size);
|
||||
entry->offset = initialOffset + (off_t) 60;
|
||||
|
||||
nameLength = strcspn(entry->name, "/");
|
||||
|
||||
/* handle GNU style short filenames, strip trailing '/' */
|
||||
if (nameLength > 0)
|
||||
newEntry->name[nameLength]='\0';
|
||||
entry->name[nameLength]='\0';
|
||||
|
||||
/* handle GNU style long filenames */
|
||||
if (nameLength == 0) {
|
||||
/* escape from recursive call */
|
||||
if (newEntry->name[1]=='0')
|
||||
if (entry->name[1]=='0')
|
||||
return(TRUE);
|
||||
|
||||
/* the data section contains the real filename */
|
||||
if (newEntry->name[1]=='/') {
|
||||
if (entry->name[1]=='/') {
|
||||
char tempName[MAX_NAME_LENGTH];
|
||||
|
||||
if (newEntry->size > MAX_NAME_LENGTH)
|
||||
newEntry->size = MAX_NAME_LENGTH;
|
||||
fullRead(srcFd, tempName, newEntry->size);
|
||||
tempName[newEntry->size-3]='\0';
|
||||
if (entry->size > MAX_NAME_LENGTH)
|
||||
entry->size = MAX_NAME_LENGTH;
|
||||
fullRead(srcFd, tempName, entry->size);
|
||||
tempName[entry->size-3]='\0';
|
||||
|
||||
/* read the second header for this entry */
|
||||
/* be carefull, this is recursive */
|
||||
if (readArEntry(srcFd, newEntry)==FALSE)
|
||||
if (readArEntry(srcFd, entry)==FALSE)
|
||||
return(FALSE);
|
||||
|
||||
if ((newEntry->name[0]='/') && (newEntry->name[1]='0'))
|
||||
strcpy(newEntry->name, tempName);
|
||||
if ((entry->name[0]='/') && (entry->name[1]='0'))
|
||||
strcpy(entry->name, tempName);
|
||||
else {
|
||||
errorMsg("Invalid long filename\n");
|
||||
return(FALSE);
|
||||
@ -171,17 +239,54 @@ static int readArEntry(int srcFd, headerL_t *newEntry)
|
||||
*/
|
||||
static headerL_t *getHeaders(int srcFd, headerL_t *head, int funct)
|
||||
{
|
||||
#if defined BB_AR_EXPERIMENTAL_UNTAR
|
||||
int tar=FALSE;
|
||||
#endif
|
||||
int ar=FALSE;
|
||||
headerL_t *list;
|
||||
list = (headerL_t *) malloc(sizeof(headerL_t));
|
||||
off_t initialOffset;
|
||||
|
||||
if (checkArMagic(srcFd)==TRUE) {
|
||||
while(readArEntry(srcFd, list) == TRUE) {
|
||||
list = (headerL_t *) malloc(sizeof(headerL_t));
|
||||
initialOffset=lseek(srcFd, 0, SEEK_CUR);
|
||||
if (checkArMagic(srcFd)==TRUE)
|
||||
ar=TRUE;
|
||||
|
||||
#if defined BB_AR_EXPERIMENTAL_UNTAR
|
||||
if (checkTarMagic(srcFd)==TRUE)
|
||||
tar=TRUE;
|
||||
|
||||
if (tar==TRUE) {
|
||||
while(readTarHeader(srcFd, list)==TRUE) {
|
||||
off_t tarOffset;
|
||||
list->next = (headerL_t *) malloc(sizeof(headerL_t));
|
||||
*list->next = *head;
|
||||
*head = *list;
|
||||
|
||||
/* recursive check for sub-archives */
|
||||
if ((funct & RECURSIVE) == RECURSIVE)
|
||||
head = getHeaders(srcFd, head, funct);
|
||||
tarOffset = (off_t) head->size/512;
|
||||
if ( head->size % 512 > 0)
|
||||
tarOffset++;
|
||||
tarOffset=tarOffset*512;
|
||||
lseek(srcFd, head->offset + tarOffset, SEEK_SET);
|
||||
}
|
||||
}
|
||||
#endif
|
||||
|
||||
if (ar==TRUE) {
|
||||
lseek(srcFd, 8, SEEK_CUR);
|
||||
while(1) {
|
||||
if (readArEntry(srcFd, list) == FALSE) {
|
||||
lseek(srcFd, ++initialOffset, SEEK_CUR);
|
||||
if (readArEntry(srcFd, list) == FALSE)
|
||||
return(head);
|
||||
}
|
||||
list->next = (headerL_t *) malloc(sizeof(headerL_t));
|
||||
*list->next = *head;
|
||||
*head = *list;
|
||||
|
||||
/* recursive check for sub-archives */
|
||||
if ( funct & RECURSIVE )
|
||||
if (funct & RECURSIVE)
|
||||
head = getHeaders(srcFd, head, funct);
|
||||
lseek(srcFd, head->offset + head->size, SEEK_SET);
|
||||
}
|
||||
@ -202,27 +307,6 @@ static headerL_t *findEntry(headerL_t *head, const char *filename)
|
||||
return(NULL);
|
||||
}
|
||||
|
||||
/*
|
||||
* populate linked list with all ar file entries and offset
|
||||
*/
|
||||
static int displayEntry(headerL_t *head, int funct)
|
||||
{
|
||||
if ( funct & VERBOSE ) {
|
||||
printf("%s %d/%d %8d %s ", modeString(head->mode), head->uid, head->gid, head->size, timeString(head->mtime));
|
||||
}
|
||||
printf("%s\n", head->name);
|
||||
head = head->next;
|
||||
return(TRUE);
|
||||
}
|
||||
|
||||
static int extractAr(int srcFd, int dstFd, headerL_t *file)
|
||||
{
|
||||
lseek(srcFd, file->offset, SEEK_SET);
|
||||
if (copySubFile(srcFd, dstFd, (size_t) file->size) == TRUE)
|
||||
return(TRUE);
|
||||
return(FALSE);
|
||||
}
|
||||
|
||||
extern int ar_main(int argc, char **argv)
|
||||
{
|
||||
int funct = 0, opt=0;
|
||||
@ -270,7 +354,6 @@ extern int ar_main(int argc, char **argv)
|
||||
extractList = (headerL_t *) malloc(sizeof(headerL_t));
|
||||
|
||||
header = getHeaders(srcFd, header, funct);
|
||||
|
||||
/* find files to extract or display */
|
||||
if (optind<argc) {
|
||||
/* only handle specified files */
|
||||
@ -283,20 +366,28 @@ extern int ar_main(int argc, char **argv)
|
||||
optind++;
|
||||
}
|
||||
}
|
||||
else
|
||||
/* extract everything */
|
||||
else
|
||||
extractList = header;
|
||||
|
||||
while(extractList->next != NULL) {
|
||||
if ( funct & EXT_TO_FILE ) {
|
||||
while(extractList->next != NULL) {
|
||||
if (funct & EXT_TO_FILE) {
|
||||
if (isDirectory(extractList->name, TRUE, NULL)==FALSE)
|
||||
createPath(extractList->name, 0666);
|
||||
dstFd = open(extractList->name, O_WRONLY | O_CREAT, extractList->mode);
|
||||
|
||||
extractAr(srcFd, dstFd, extractList);
|
||||
lseek(srcFd, extractList->offset, SEEK_SET);
|
||||
copySubFile(srcFd, dstFd, (size_t) extractList->size);
|
||||
}
|
||||
if (funct & EXT_TO_STDOUT) {
|
||||
lseek(srcFd, extractList->offset, SEEK_SET);
|
||||
copySubFile(srcFd, fileno(stdout), (size_t) extractList->size);
|
||||
}
|
||||
if ( (funct & DISPLAY) || (funct & VERBOSE)) {
|
||||
if (funct & VERBOSE)
|
||||
printf("%s %d/%d %8d %s ", modeString(extractList->mode),
|
||||
extractList->uid, extractList->gid,
|
||||
extractList->size, timeString(extractList->mtime));
|
||||
printf("%s\n", extractList->name);
|
||||
}
|
||||
if ( funct & EXT_TO_STDOUT )
|
||||
extractAr(srcFd, fileno(stdout), extractList);
|
||||
if ( (funct & DISPLAY) || (funct & VERBOSE))
|
||||
displayEntry(extractList, funct);
|
||||
extractList=extractList->next;
|
||||
}
|
||||
return (TRUE);
|
||||
|
Loading…
Reference in New Issue
Block a user