/* vi: set sw=4 ts=4: */ /* * Copyright 2003, Glenn McGrath * * Licensed under GPLv2 or later, see file LICENSE in this tarball for details. * * Based on specification from * http://www.opengroup.org/onlinepubs/007904975/utilities/uuencode.html * * Bugs: the spec doesn't mention anything about "`\n`\n" prior to the * "end" line */ #include "libbb.h" static void read_stduu(FILE *src_stream, FILE *dst_stream) { char *line; while ((line = xmalloc_getline(src_stream)) != NULL) { int length; char *line_ptr = line; if (strcmp(line, "end") == 0) { return; } length = ((*line_ptr - 0x20) & 0x3f)* 4 / 3; if (length <= 0) { /* Ignore the "`\n" line, why is it even in the encode file ? */ continue; } if (length > 60) { bb_error_msg_and_die("line too long"); } line_ptr++; /* Tolerate an overly long line to accomodate a possible exta '`' */ if (strlen(line_ptr) < (size_t)length) { bb_error_msg_and_die("short file"); } while (length > 0) { /* Merge four 6 bit chars to three 8 bit chars */ fputc(((line_ptr[0] - 0x20) & 077) << 2 | ((line_ptr[1] - 0x20) & 077) >> 4, dst_stream); line_ptr++; length--; if (length == 0) { break; } fputc(((line_ptr[0] - 0x20) & 077) << 4 | ((line_ptr[1] - 0x20) & 077) >> 2, dst_stream); line_ptr++; length--; if (length == 0) { break; } fputc(((line_ptr[0] - 0x20) & 077) << 6 | ((line_ptr[1] - 0x20) & 077), dst_stream); line_ptr += 2; length -= 2; } free(line); } bb_error_msg_and_die("short file"); } static void read_base64(FILE *src_stream, FILE *dst_stream) { int term_count = 1; while (1) { char translated[4]; int count = 0; while (count < 4) { char *table_ptr; int ch; /* Get next _valid_ character. * global vector bb_uuenc_tbl_base64[] contains this string: * "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=\n" */ do { ch = fgetc(src_stream); if (ch == EOF) { bb_error_msg_and_die("short file"); } table_ptr = strchr(bb_uuenc_tbl_base64, ch); } while (table_ptr == NULL); /* Convert encoded character to decimal */ ch = table_ptr - bb_uuenc_tbl_base64; if (*table_ptr == '=') { if (term_count == 0) { translated[count] = '\0'; break; } term_count++; } else if (*table_ptr == '\n') { /* Check for terminating line */ if (term_count == 5) { return; } term_count = 1; continue; } else { translated[count] = ch; count++; term_count = 0; } } /* Merge 6 bit chars to 8 bit */ if (count > 1) { fputc(translated[0] << 2 | translated[1] >> 4, dst_stream); } if (count > 2) { fputc(translated[1] << 4 | translated[2] >> 2, dst_stream); } if (count > 3) { fputc(translated[2] << 6 | translated[3], dst_stream); } } } int uudecode_main(int argc, char **argv); int uudecode_main(int argc, char **argv) { FILE *src_stream = stdin; char *outname = NULL; char *line; opt_complementary = "?1"; /* 1 argument max */ getopt32(argv, "o:", &outname); argv += optind; if (argv[0]) src_stream = xfopen(argv[0], "r"); /* Search for the start of the encoding */ while ((line = xmalloc_getline(src_stream)) != NULL) { void (*decode_fn_ptr)(FILE * src, FILE * dst); char *line_ptr; FILE *dst_stream; int mode; if (strncmp(line, "begin-base64 ", 13) == 0) { line_ptr = line + 13; decode_fn_ptr = read_base64; } else if (strncmp(line, "begin ", 6) == 0) { line_ptr = line + 6; decode_fn_ptr = read_stduu; } else { free(line); continue; } /* begin line found. decode and exit */ mode = strtoul(line_ptr, NULL, 8); if (outname == NULL) { outname = strchr(line_ptr, ' '); if ((outname == NULL) || (*outname == '\0')) { break; } outname++; } dst_stream = stdout; if (NOT_LONE_DASH(outname)) { dst_stream = xfopen(outname, "w"); chmod(outname, mode & (S_IRWXU | S_IRWXG | S_IRWXO)); } free(line); decode_fn_ptr(src_stream, dst_stream); /* fclose_if_not_stdin(src_stream); - redundant */ return EXIT_SUCCESS; } bb_error_msg_and_die("no 'begin' line"); } /* Test script. Put this into an empty dir with busybox binary, an run. #!/bin/sh test -x busybox || { echo "No ./busybox?"; exit; } ln -sf busybox uudecode ln -sf busybox uuencode >A_null echo -n A >A echo -n AB >AB echo -n ABC >ABC echo -n ABCD >ABCD echo -n ABCDE >ABCDE echo -n ABCDEF >ABCDEF cat busybox >A_bbox for f in A*; do echo uuencode $f ./uuencode $f <$f >u_$f ./uuencode -m $f <$f >m_$f done mkdir unpk_u unpk_m 2>/dev/null for f in u_*; do ./uudecode <$f -o unpk_u/${f:2} diff -a ${f:2} unpk_u/${f:2} >/dev/null 2>&1 echo uudecode $f: $? done for f in m_*; do ./uudecode <$f -o unpk_m/${f:2} diff -a ${f:2} unpk_m/${f:2} >/dev/null 2>&1 echo uudecode $f: $? done */