/* This file is part of msr. msr is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. msr is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with Foobar. If not, see . */ #include "base64.h" static const char b64padchar = (uint8_t)'='; static const char b64chars[65] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/"; /* ;; Precompute inverse lookup with skippable stuff and padding (insert (apply #'concat (let ((str "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/") (skip " \t\n\r") (skipnum 65) (pad ?=) (padnum 64) (invalidnum 66)) (cl-loop for k from 0 to 255 for j = (let* ((s (char-to-string k)) (v (s-index-of s str)) (w (s-index-of s skip)) (x (char-equal k pad))) (if v (format "%2dU " v) (if w "SKIP" (if x "PADD" "INVD")))) collect (concat ", " j))))) */ #define INVD (uint8_t)66 #define SKIP (uint8_t)65 #define PADD (uint8_t)64 static const uint8_t b64inverse[256] = { INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, SKIP, SKIP, INVD, INVD, SKIP, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, SKIP, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, 62 , INVD, INVD, INVD, 63 , 52 , 53 , 54 , 55 , 56 , 57 , 58 , 59 , 60 , 61 , INVD, INVD, INVD, PADD, INVD, INVD, INVD, 0 , 1 , 2 , 3 , 4 , 5 , 6 , 7 , 8 , 9 , 10 , 11 , 12 , 13 , 14 , 15 , 16 , 17 , 18 , 19 , 20 , 21 , 22 , 23 , 24 , 25 , INVD, INVD, INVD, INVD, INVD, INVD, 26 , 27 , 28 , 29 , 30 , 31 , 32 , 33 , 34 , 35 , 36 , 37 , 38 , 39 , 40 , 41 , 42 , 43 , 44 , 45 , 46 , 47 , 48 , 49 , 50 , 51 , INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD, INVD }; Error bin_to_base64(uint8_t const * const bin, size_t binlen, uint8_t *out, size_t maxoutsize, size_t *outlen) { if ((*outlen = 4*(binlen/3)+4) > maxoutsize) return E_SMALL_BUFF; size_t k, l; uint32_t n = 0; // Look at floor(binlen/3) groups of three bytes for (k=0, l=0; k>18)&63]; out[l++] = b64chars[(n>>12)&63]; out[l++] = b64chars[(n>>6)&63]; out[l++] = b64chars[n&63]; } // What is the actual index in bin? k *= 3; // Now deal with remainders if (k>6)&63]; } else out[l+2] = b64padchar; out[l] = b64chars[(n>>18)&63]; out[l+1] = b64chars[(n>>12)&63]; l+=4; }; out[l]=0; return SUCCESS; } // Note: will read first valid b64 encoded string and stop caring Error base64_to_bin(uint8_t const * const str, size_t strlen, uint8_t *buf, size_t bufmaxsize, size_t *buflen) { if (str == NULL) return E_NULL; *buflen = 0; size_t k = 0; uint8_t c = 0; uint32_t t = 0; while(k 3) { if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)((t>>16)&255); if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)((t>>8)&255); if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)(t&255); c = t = 0; } } } } // This should not happen if (c==1) return E_B64_BAD_STR; // Finish up, c=2 => 1 byte, c=3 => 2 bytes else if (c==2) { if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)((t>>4)&255); } else if (c==3) { if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)((t>>10)&255); if ((*buflen)>=bufmaxsize) return E_SMALL_BUFF; buf[(*buflen)++] = (uint8_t)((t>>2)&255); } // done return SUCCESS; }