xref: /titanic_50/usr/src/common/iscsi/base64.c (revision a6d42e7d71324c5193c3b94d57d96ba2925d52e1)
1*a6d42e7dSPeter Dunlap /*
2*a6d42e7dSPeter Dunlap  * CDDL HEADER START
3*a6d42e7dSPeter Dunlap  *
4*a6d42e7dSPeter Dunlap  * The contents of this file are subject to the terms of the
5*a6d42e7dSPeter Dunlap  * Common Development and Distribution License (the "License").
6*a6d42e7dSPeter Dunlap  * You may not use this file except in compliance with the License.
7*a6d42e7dSPeter Dunlap  *
8*a6d42e7dSPeter Dunlap  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9*a6d42e7dSPeter Dunlap  * or http://www.opensolaris.org/os/licensing.
10*a6d42e7dSPeter Dunlap  * See the License for the specific language governing permissions
11*a6d42e7dSPeter Dunlap  * and limitations under the License.
12*a6d42e7dSPeter Dunlap  *
13*a6d42e7dSPeter Dunlap  * When distributing Covered Code, include this CDDL HEADER in each
14*a6d42e7dSPeter Dunlap  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15*a6d42e7dSPeter Dunlap  * If applicable, add the following below this CDDL HEADER, with the
16*a6d42e7dSPeter Dunlap  * fields enclosed by brackets "[]" replaced with your own identifying
17*a6d42e7dSPeter Dunlap  * information: Portions Copyright [yyyy] [name of copyright owner]
18*a6d42e7dSPeter Dunlap  *
19*a6d42e7dSPeter Dunlap  * CDDL HEADER END
20*a6d42e7dSPeter Dunlap  */
21*a6d42e7dSPeter Dunlap /*
22*a6d42e7dSPeter Dunlap  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
23*a6d42e7dSPeter Dunlap  * Use is subject to license terms.
24*a6d42e7dSPeter Dunlap  */
25*a6d42e7dSPeter Dunlap 
26*a6d42e7dSPeter Dunlap #include <sys/types.h>
27*a6d42e7dSPeter Dunlap #ifdef _KERNEL
28*a6d42e7dSPeter Dunlap #include <sys/sunddi.h>
29*a6d42e7dSPeter Dunlap #include <sys/errno.h>
30*a6d42e7dSPeter Dunlap #else
31*a6d42e7dSPeter Dunlap #include <string.h>
32*a6d42e7dSPeter Dunlap #include <errno.h>
33*a6d42e7dSPeter Dunlap #endif	/* _KERNEL */
34*a6d42e7dSPeter Dunlap 
35*a6d42e7dSPeter Dunlap /*
36*a6d42e7dSPeter Dunlap  * base64 decoding table (from uudecode.c)
37*a6d42e7dSPeter Dunlap  */
38*a6d42e7dSPeter Dunlap /* BEGIN CSTYLED */
39*a6d42e7dSPeter Dunlap  static char base64_decode_tab[] = {
40*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377', '\377', '\377', '\377', '\377', '\377',
41*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377', '\377', '\377', '\377', '\377', '\377',
42*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377', '\377', '\377', '\377', '\377', '\377',
43*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377', '\377', '\377', '\377', '\377', '\377',
44*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377', '\377', '\377', '\377', '\377', '\377',
45*a6d42e7dSPeter Dunlap 	'\377', '\377', '\377',     62, '\377', '\377', '\377',     63,
46*a6d42e7dSPeter Dunlap 	    52,     53,     54,     55,     56,     57,     58,     59,
47*a6d42e7dSPeter Dunlap 	    60,     61, '\377', '\377', '\377', '\377', '\377', '\377',
48*a6d42e7dSPeter Dunlap 	'\377',      0,      1,      2,      3,      4,      5,      6,
49*a6d42e7dSPeter Dunlap 	     7,      8,      9,     10,     11,     12,     13,     14,
50*a6d42e7dSPeter Dunlap 	    15,     16,     17,     18,     19,     20,     21,     22,
51*a6d42e7dSPeter Dunlap 	    23,     24,     25, '\377', '\377', '\377', '\377', '\377',
52*a6d42e7dSPeter Dunlap 	'\377',     26,     27,     28,     29,     30,     31,     32,
53*a6d42e7dSPeter Dunlap 	    33,     34,     35,     36,     37,     38,     39,     40,
54*a6d42e7dSPeter Dunlap 	    41,     42,     43,     44,     45,     46,     47,     48,
55*a6d42e7dSPeter Dunlap 	    49,     50,     51, '\377', '\377', '\377', '\377', '\377'
56*a6d42e7dSPeter Dunlap };
57*a6d42e7dSPeter Dunlap /* END CSTYLED */
58*a6d42e7dSPeter Dunlap 
59*a6d42e7dSPeter Dunlap /* true if the character is in the base64 encoding table */
60*a6d42e7dSPeter Dunlap #define	validbase64(c) (('A' <= (c) && (c) <= 'Z') || \
61*a6d42e7dSPeter Dunlap 		('a' <= (c) && (c) <= 'z') || \
62*a6d42e7dSPeter Dunlap 		('0' <= (c) && (c) <= '9') || \
63*a6d42e7dSPeter Dunlap 		(c) == '+' || (c) == '/')
64*a6d42e7dSPeter Dunlap 
65*a6d42e7dSPeter Dunlap static int
outdec64(unsigned char * out,unsigned char * chr,int num)66*a6d42e7dSPeter Dunlap outdec64(unsigned char *out, unsigned char *chr, int num)
67*a6d42e7dSPeter Dunlap {
68*a6d42e7dSPeter Dunlap 
69*a6d42e7dSPeter Dunlap 	unsigned char char1, char2, char3, char4;
70*a6d42e7dSPeter Dunlap 	unsigned char *outptr = out;
71*a6d42e7dSPeter Dunlap 	int rc = 0;
72*a6d42e7dSPeter Dunlap 
73*a6d42e7dSPeter Dunlap 	switch (num) {
74*a6d42e7dSPeter Dunlap 	case 0:
75*a6d42e7dSPeter Dunlap 	case 1: 	/* these are impossible */
76*a6d42e7dSPeter Dunlap 	default:
77*a6d42e7dSPeter Dunlap 		break;
78*a6d42e7dSPeter Dunlap 	case 2:		/* 2 base64 bytes == 1 decoded byte */
79*a6d42e7dSPeter Dunlap 		char1 = base64_decode_tab[chr[0]] & 0xFF;
80*a6d42e7dSPeter Dunlap 		char2 = base64_decode_tab[chr[1]] & 0xFF;
81*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char1 << 2) & 0xFC) |
82*a6d42e7dSPeter Dunlap 		    ((char2 >> 4) & 0x03);
83*a6d42e7dSPeter Dunlap 		rc = 1;
84*a6d42e7dSPeter Dunlap 		break;
85*a6d42e7dSPeter Dunlap 	case 3:		/* 3 base64 bytes == 2 decoded bytes */
86*a6d42e7dSPeter Dunlap 		char1 = base64_decode_tab[chr[0]] & 0xFF;
87*a6d42e7dSPeter Dunlap 		char2 = base64_decode_tab[chr[1]] & 0xFF;
88*a6d42e7dSPeter Dunlap 		char3 = base64_decode_tab[chr[2]] & 0xFF;
89*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char1 << 2) & 0xFC) |
90*a6d42e7dSPeter Dunlap 		    ((char2 >> 4) & 0x03);
91*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char2 << 4) & 0xF0) |
92*a6d42e7dSPeter Dunlap 		    ((char3 >> 2) & 0x0F);
93*a6d42e7dSPeter Dunlap 		rc = 2;
94*a6d42e7dSPeter Dunlap 		break;
95*a6d42e7dSPeter Dunlap 	case 4:		/* 4 base64 bytes == 3 decoded bytes */
96*a6d42e7dSPeter Dunlap 		char1 = base64_decode_tab[chr[0]] & 0xFF;
97*a6d42e7dSPeter Dunlap 		char2 = base64_decode_tab[chr[1]] & 0xFF;
98*a6d42e7dSPeter Dunlap 		char3 = base64_decode_tab[chr[2]] & 0xFF;
99*a6d42e7dSPeter Dunlap 		char4 = base64_decode_tab[chr[3]] & 0xFF;
100*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char1 << 2) & 0xFC) |
101*a6d42e7dSPeter Dunlap 		    ((char2 >> 4) & 0x03);
102*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char2 << 4) & 0xF0) |
103*a6d42e7dSPeter Dunlap 		    ((char3 >> 2) & 0x0F);
104*a6d42e7dSPeter Dunlap 		*(outptr++) = ((char3 << 6) & 0xC0) |
105*a6d42e7dSPeter Dunlap 		    (char4 & 0x3F);
106*a6d42e7dSPeter Dunlap 		rc = 3;
107*a6d42e7dSPeter Dunlap 		break;
108*a6d42e7dSPeter Dunlap 	}
109*a6d42e7dSPeter Dunlap 	return (rc);
110*a6d42e7dSPeter Dunlap }
111*a6d42e7dSPeter Dunlap 
112*a6d42e7dSPeter Dunlap #define	BUFSIZE	12
113*a6d42e7dSPeter Dunlap 
114*a6d42e7dSPeter Dunlap int
iscsi_base64_str_to_binary(char * hstr,int hstr_len,uint8_t * binary,int binary_buf_len,int * out_len)115*a6d42e7dSPeter Dunlap iscsi_base64_str_to_binary(char *hstr, int hstr_len,
116*a6d42e7dSPeter Dunlap     uint8_t *binary, int binary_buf_len, int *out_len)
117*a6d42e7dSPeter Dunlap {
118*a6d42e7dSPeter Dunlap 	char	*iptr;
119*a6d42e7dSPeter Dunlap 	uint8_t	tmp_out[BUFSIZE];
120*a6d42e7dSPeter Dunlap 	int	octets, endseen, numbase64chars;
121*a6d42e7dSPeter Dunlap 	unsigned char chr[4], curchr;
122*a6d42e7dSPeter Dunlap 
123*a6d42e7dSPeter Dunlap 	/*
124*a6d42e7dSPeter Dunlap 	 * base64 decode algorith, adapted from uudecode.c
125*a6d42e7dSPeter Dunlap 	 *
126*a6d42e7dSPeter Dunlap 	 * A valid base64 string is a multiple of 4 bytes in length
127*a6d42e7dSPeter Dunlap 	 */
128*a6d42e7dSPeter Dunlap 	if ((hstr_len % 4) != 0)
129*a6d42e7dSPeter Dunlap 		return (EINVAL);
130*a6d42e7dSPeter Dunlap 
131*a6d42e7dSPeter Dunlap 	endseen = numbase64chars = 0;
132*a6d42e7dSPeter Dunlap 	*out_len = 0;
133*a6d42e7dSPeter Dunlap 	iptr = hstr;
134*a6d42e7dSPeter Dunlap 
135*a6d42e7dSPeter Dunlap 	while (((curchr = *(iptr++)) != NULL) &&
136*a6d42e7dSPeter Dunlap 	    (((uintptr_t)iptr - (uintptr_t)hstr) <= hstr_len)) {
137*a6d42e7dSPeter Dunlap 		/* decode chars */
138*a6d42e7dSPeter Dunlap 		if (curchr == '=') /* if end */
139*a6d42e7dSPeter Dunlap 			endseen++;
140*a6d42e7dSPeter Dunlap 
141*a6d42e7dSPeter Dunlap 		if (validbase64(curchr))
142*a6d42e7dSPeter Dunlap 			chr[numbase64chars++] = curchr;
143*a6d42e7dSPeter Dunlap 		/*
144*a6d42e7dSPeter Dunlap 		 * if we've gathered 4 base64 octets
145*a6d42e7dSPeter Dunlap 		 * we need to decode and output them
146*a6d42e7dSPeter Dunlap 		 */
147*a6d42e7dSPeter Dunlap 		if (numbase64chars == 4) {
148*a6d42e7dSPeter Dunlap 			octets = outdec64(tmp_out, chr, 4);
149*a6d42e7dSPeter Dunlap 			numbase64chars = 0;
150*a6d42e7dSPeter Dunlap 
151*a6d42e7dSPeter Dunlap 			if (*out_len + octets > binary_buf_len)
152*a6d42e7dSPeter Dunlap 				return (E2BIG);
153*a6d42e7dSPeter Dunlap 
154*a6d42e7dSPeter Dunlap 			(void) memcpy(binary + *out_len, tmp_out, octets);
155*a6d42e7dSPeter Dunlap 			*out_len += octets;
156*a6d42e7dSPeter Dunlap 		}
157*a6d42e7dSPeter Dunlap 
158*a6d42e7dSPeter Dunlap 		/*
159*a6d42e7dSPeter Dunlap 		 * handle any remaining base64 octets at end
160*a6d42e7dSPeter Dunlap 		 */
161*a6d42e7dSPeter Dunlap 		if (endseen && numbase64chars > 0) {
162*a6d42e7dSPeter Dunlap 			octets = outdec64(tmp_out, chr, numbase64chars);
163*a6d42e7dSPeter Dunlap 			numbase64chars = 0;
164*a6d42e7dSPeter Dunlap 			if (*out_len + octets > binary_buf_len)
165*a6d42e7dSPeter Dunlap 				return (E2BIG);
166*a6d42e7dSPeter Dunlap 
167*a6d42e7dSPeter Dunlap 			(void) memcpy(binary + *out_len, tmp_out, octets);
168*a6d42e7dSPeter Dunlap 			*out_len += octets;
169*a6d42e7dSPeter Dunlap 		}
170*a6d42e7dSPeter Dunlap 	}
171*a6d42e7dSPeter Dunlap 
172*a6d42e7dSPeter Dunlap 	return (0);
173*a6d42e7dSPeter Dunlap }
174*a6d42e7dSPeter Dunlap 
175*a6d42e7dSPeter Dunlap 
176*a6d42e7dSPeter Dunlap static char base64_encode_tab[] =
177*a6d42e7dSPeter Dunlap 	"ABCDEFGHIJKLMNOPQRSTUVWXYZ"
178*a6d42e7dSPeter Dunlap 	"abcdefghijklmnopqrstuvwxyz0123456789+/";
179*a6d42e7dSPeter Dunlap 
180*a6d42e7dSPeter Dunlap #define	ENC(c)	base64_encode_tab[(c) & 0x3f]
181*a6d42e7dSPeter Dunlap 
182*a6d42e7dSPeter Dunlap #define	BASE64_BUF_HAS_ROOM(bytes_needed) \
183*a6d42e7dSPeter Dunlap 	((optr + (bytes_needed)) <= base64_str_buf + base64_buf_len)
184*a6d42e7dSPeter Dunlap 
185*a6d42e7dSPeter Dunlap int
iscsi_binary_to_base64_str(uint8_t * in_buf,int in_buf_len,char * base64_str_buf,int base64_buf_len)186*a6d42e7dSPeter Dunlap iscsi_binary_to_base64_str(uint8_t *in_buf, int in_buf_len,
187*a6d42e7dSPeter Dunlap     char *base64_str_buf, int base64_buf_len)
188*a6d42e7dSPeter Dunlap {
189*a6d42e7dSPeter Dunlap 	uint8_t 	*iptr;
190*a6d42e7dSPeter Dunlap 	char		*optr;
191*a6d42e7dSPeter Dunlap 	int		in_bytes_remaining;
192*a6d42e7dSPeter Dunlap 
193*a6d42e7dSPeter Dunlap 	/* base64 encode algorith, adapted from uuencode.c */
194*a6d42e7dSPeter Dunlap 	iptr = in_buf;
195*a6d42e7dSPeter Dunlap 	optr = base64_str_buf;
196*a6d42e7dSPeter Dunlap 
197*a6d42e7dSPeter Dunlap 	/*
198*a6d42e7dSPeter Dunlap 	 * read must be a multiple of 3 bytes for
199*a6d42e7dSPeter Dunlap 	 * this algorithm to work, and also must
200*a6d42e7dSPeter Dunlap 	 * be small enough that read_size * (4/3)
201*a6d42e7dSPeter Dunlap 	 * will always be 76 bytes or less, since
202*a6d42e7dSPeter Dunlap 	 * base64 lines can be no longer than that
203*a6d42e7dSPeter Dunlap 	 */
204*a6d42e7dSPeter Dunlap 	while (iptr + 3 <= in_buf + in_buf_len) {
205*a6d42e7dSPeter Dunlap 		if (!BASE64_BUF_HAS_ROOM(4))
206*a6d42e7dSPeter Dunlap 			return (E2BIG);
207*a6d42e7dSPeter Dunlap 
208*a6d42e7dSPeter Dunlap 		*(optr++) = ENC(*iptr >> 2);
209*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*iptr << 4) & 060 |
210*a6d42e7dSPeter Dunlap 		    (*(iptr + 1) >> 4) & 017);
211*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*(iptr + 1) << 2)
212*a6d42e7dSPeter Dunlap 		    & 074 | (*(iptr + 2) >> 6) & 03);
213*a6d42e7dSPeter Dunlap 		*(optr++) = ENC(*(iptr + 2) & 077);
214*a6d42e7dSPeter Dunlap 
215*a6d42e7dSPeter Dunlap 		iptr += 3;
216*a6d42e7dSPeter Dunlap 	}
217*a6d42e7dSPeter Dunlap 
218*a6d42e7dSPeter Dunlap 	/* need output padding ? */
219*a6d42e7dSPeter Dunlap 	in_bytes_remaining = ((uintptr_t)in_buf + in_buf_len) - (uintptr_t)iptr;
220*a6d42e7dSPeter Dunlap 	/* ASSERT(in_bytes_remaining < 3); */
221*a6d42e7dSPeter Dunlap 	switch (in_bytes_remaining) {
222*a6d42e7dSPeter Dunlap 	case 0:
223*a6d42e7dSPeter Dunlap 		/* no-op  - 24 bits of data encoded */
224*a6d42e7dSPeter Dunlap 		if (!BASE64_BUF_HAS_ROOM(1))
225*a6d42e7dSPeter Dunlap 			return (E2BIG);
226*a6d42e7dSPeter Dunlap 		*(optr++) = '\0';
227*a6d42e7dSPeter Dunlap 		break;
228*a6d42e7dSPeter Dunlap 	case 1:
229*a6d42e7dSPeter Dunlap 		/* 8 bits encoded - pad with 2 '=' */
230*a6d42e7dSPeter Dunlap 		if (!BASE64_BUF_HAS_ROOM(5))
231*a6d42e7dSPeter Dunlap 			return (E2BIG);
232*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*iptr & 0xFC) >> 2);
233*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*iptr & 0x03) << 4);
234*a6d42e7dSPeter Dunlap 		*(optr++) = '=';
235*a6d42e7dSPeter Dunlap 		*(optr++) = '=';
236*a6d42e7dSPeter Dunlap 		*(optr++) = '\0';
237*a6d42e7dSPeter Dunlap 		break;
238*a6d42e7dSPeter Dunlap 	case 2:
239*a6d42e7dSPeter Dunlap 		/* 16 bits encoded - pad with 1 '=' */
240*a6d42e7dSPeter Dunlap 		if (!BASE64_BUF_HAS_ROOM(5))
241*a6d42e7dSPeter Dunlap 			return (E2BIG);
242*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*iptr & 0xFC) >> 2);
243*a6d42e7dSPeter Dunlap 		*(optr++) = ENC(((*iptr & 0x03) << 4) |
244*a6d42e7dSPeter Dunlap 		    ((*(iptr + 1) & 0xF0) >> 4));
245*a6d42e7dSPeter Dunlap 		*(optr++) = ENC((*(iptr + 1) & 0x0F) << 2);
246*a6d42e7dSPeter Dunlap 		*(optr++) = '=';
247*a6d42e7dSPeter Dunlap 		*(optr++) = '\0';
248*a6d42e7dSPeter Dunlap 		break;
249*a6d42e7dSPeter Dunlap 	default:
250*a6d42e7dSPeter Dunlap 		/* impossible */
251*a6d42e7dSPeter Dunlap 		break;
252*a6d42e7dSPeter Dunlap 	}
253*a6d42e7dSPeter Dunlap 
254*a6d42e7dSPeter Dunlap 	return (0);
255*a6d42e7dSPeter Dunlap }
256