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Lev Walkindc06f6b2004-10-20 15:50:55 +00001/*-
Lev Walkin59b176e2005-11-26 11:25:14 +00002 * Copyright (c) 2003, 2004, 2005 Lev Walkin <vlm@lionet.info>.
3 * All rights reserved.
Lev Walkindc06f6b2004-10-20 15:50:55 +00004 * Redistribution and modifications are permitted subject to BSD license.
5 */
6#ifndef _ASN_CODECS_H_
7#define _ASN_CODECS_H_
8
Lev Walkin21b41ac2005-07-24 09:03:44 +00009#ifdef __cplusplus
10extern "C" {
11#endif
12
Lev Walkindc06f6b2004-10-20 15:50:55 +000013struct asn_TYPE_descriptor_s; /* Forward declaration */
14
15/*
Lev Walkin1d9e8dd2005-12-07 05:46:03 +000016 * This structure defines a set of parameters that may be passed
17 * to every ASN.1 encoder or decoder function.
Lev Walkindc06f6b2004-10-20 15:50:55 +000018 * WARNING: if max_stack_size member is set, and you are calling the
Lev Walkin1d9e8dd2005-12-07 05:46:03 +000019 * function pointers of the asn_TYPE_descriptor_t directly,
20 * this structure must be ALLOCATED ON THE STACK!
21 * If you can't always satisfy this requirement, use ber_decode(),
22 * xer_decode() and uper_decode() functions instead.
Lev Walkindc06f6b2004-10-20 15:50:55 +000023 */
24typedef struct asn_codec_ctx_s {
25 /*
26 * Limit the decoder routines to use no (much) more stack than a given
27 * number of bytes. Most of decoders are stack-based, and this
28 * would protect against stack overflows if the number of nested
29 * encodings is high.
30 * The OCTET STRING, BIT STRING and ANY BER decoders are heap-based,
31 * and are safe from this kind of overflow.
32 * A value from getrlimit(RLIMIT_STACK) may be used to initialize
33 * this variable. Be careful in multithreaded environments, as the
34 * stack size is rather limited.
35 */
36 size_t max_stack_size; /* 0 disables stack bounds checking */
37} asn_codec_ctx_t;
38
39/*
40 * Type of the return value of the encoding functions (der_encode, xer_encode).
41 */
42typedef struct asn_enc_rval_s {
43 /*
44 * Number of bytes encoded.
45 * -1 indicates failure to encode the structure.
46 * In this case, the members below this one are meaningful.
47 */
48 ssize_t encoded;
49
50 /*
51 * Members meaningful when (encoded == -1), for post mortem analysis.
52 */
53
54 /* Type which cannot be encoded */
55 struct asn_TYPE_descriptor_s *failed_type;
56
57 /* Pointer to the structure of that type */
58 void *structure_ptr;
59} asn_enc_rval_t;
60#define _ASN_ENCODE_FAILED do { \
Lev Walkin21b41ac2005-07-24 09:03:44 +000061 asn_enc_rval_t tmp_error; \
62 tmp_error.encoded = -1; \
63 tmp_error.failed_type = td; \
64 tmp_error.structure_ptr = sptr; \
Lev Walkin86859bc2004-10-26 09:59:37 +000065 return tmp_error; \
Lev Walkindc06f6b2004-10-20 15:50:55 +000066} while(0)
Lev Walkin59b176e2005-11-26 11:25:14 +000067#define _ASN_ENCODED_OK(rval) do { \
68 rval.structure_ptr = 0; \
69 rval.failed_type = 0; \
70 return rval; \
71} while(0)
Lev Walkindc06f6b2004-10-20 15:50:55 +000072
73/*
74 * Type of the return value of the decoding functions (ber_decode, xer_decode)
75 *
76 * Please note that the number of consumed bytes is ALWAYS meaningful,
77 * even if code==RC_FAIL. This is to indicate the number of successfully
78 * decoded bytes, hence providing a possibility to fail with more diagnostics
79 * (i.e., print the offending remainder of the buffer).
80 */
81enum asn_dec_rval_code_e {
82 RC_OK, /* Decoded successfully */
83 RC_WMORE, /* More data expected, call again */
84 RC_FAIL /* Failure to decode data */
85};
86typedef struct asn_dec_rval_s {
87 enum asn_dec_rval_code_e code; /* Result code */
88 size_t consumed; /* Number of bytes consumed */
89} asn_dec_rval_t;
Lev Walkin59b176e2005-11-26 11:25:14 +000090#define _ASN_DECODE_FAILED do { \
91 asn_dec_rval_t tmp_error; \
92 tmp_error.code = RC_FAIL; \
93 tmp_error.consumed = 0; \
94 return tmp_error; \
95} while(0)
Lev Walkindc06f6b2004-10-20 15:50:55 +000096
Lev Walkin21b41ac2005-07-24 09:03:44 +000097#ifdef __cplusplus
98}
99#endif
100
Lev Walkindc06f6b2004-10-20 15:50:55 +0000101#endif /* _ASN_CODECS_H_ */