blob: 2b3d2e2986a458cc44873f1c3c3fae3ed2f2b8ee [file] [log] [blame]
vlm337167e2005-11-26 11:25:14 +00001#include <asn_application.h>
vlm4d2ca122005-12-07 05:46:03 +00002#include <asn_internal.h>
vlm337167e2005-11-26 11:25:14 +00003#include <per_decoder.h>
vlm4d2ca122005-12-07 05:46:03 +00004
vlma472cf22007-06-26 08:24:50 +00005/*
6 * Decode a "Production of a complete encoding", X.691#10.1.
7 * The complete encoding contains at least one byte, and is an integral
8 * multiple of 8 bytes.
9 */
10asn_dec_rval_t
11uper_decode_complete(asn_codec_ctx_t *opt_codec_ctx, asn_TYPE_descriptor_t *td, void **sptr, const void *buffer, size_t size) {
12 asn_dec_rval_t rval;
13
14 rval = uper_decode(opt_codec_ctx, td, sptr, buffer, size, 0, 0);
15 if(rval.consumed) {
16 /*
17 * We've always given 8-aligned data,
18 * so convert bits to integral bytes.
19 */
20 rval.consumed += 7;
21 rval.consumed >>= 3;
22 } else if(rval.code == RC_OK) {
23 if(size) {
24 if(((uint8_t *)buffer)[0] == 0) {
25 rval.consumed = 1; /* 1 byte */
26 } else {
27 ASN_DEBUG("Expecting single zeroed byte");
28 rval.code = RC_FAIL;
29 }
30 } else {
31 /* Must contain at least 8 bits. */
32 rval.code = RC_WMORE;
33 }
34 }
35
36 return rval;
37}
38
vlm4d2ca122005-12-07 05:46:03 +000039asn_dec_rval_t
vlm619448e2006-09-18 20:05:55 +000040uper_decode(asn_codec_ctx_t *opt_codec_ctx, asn_TYPE_descriptor_t *td, void **sptr, const void *buffer, size_t size, int skip_bits, int unused_bits) {
vlm4d2ca122005-12-07 05:46:03 +000041 asn_codec_ctx_t s_codec_ctx;
vlm76a52772006-09-17 11:31:55 +000042 asn_dec_rval_t rval;
vlm4d2ca122005-12-07 05:46:03 +000043 asn_per_data_t pd;
44
vlm619448e2006-09-18 20:05:55 +000045 if(skip_bits < 0 || skip_bits > 7
46 || unused_bits < 0 || unused_bits > 7
47 || (unused_bits > 0 && !size))
vlme7e9bd92006-09-17 11:02:53 +000048 _ASN_DECODE_FAILED;
49
vlm4d2ca122005-12-07 05:46:03 +000050 /*
51 * Stack checker requires that the codec context
52 * must be allocated on the stack.
53 */
54 if(opt_codec_ctx) {
55 if(opt_codec_ctx->max_stack_size) {
56 s_codec_ctx = *opt_codec_ctx;
57 opt_codec_ctx = &s_codec_ctx;
58 }
59 } else {
60 /* If context is not given, be security-conscious anyway */
61 memset(&s_codec_ctx, 0, sizeof(s_codec_ctx));
62 s_codec_ctx.max_stack_size = _ASN_DEFAULT_STACK_MAX;
63 opt_codec_ctx = &s_codec_ctx;
64 }
65
66 /* Fill in the position indicator */
vlm02cd28b2007-06-24 06:26:47 +000067 memset(&pd, 0, sizeof(pd));
vlm4d2ca122005-12-07 05:46:03 +000068 pd.buffer = (const uint8_t *)buffer;
vlme7e9bd92006-09-17 11:02:53 +000069 pd.nboff = skip_bits;
vlm619448e2006-09-18 20:05:55 +000070 pd.nbits = 8 * size - unused_bits; /* 8 is CHAR_BIT from <limits.h> */
71 if(pd.nboff > pd.nbits)
72 _ASN_DECODE_FAILED;
vlm4d2ca122005-12-07 05:46:03 +000073
74 /*
75 * Invoke type-specific decoder.
76 */
77 if(!td->uper_decoder)
78 _ASN_DECODE_FAILED; /* PER is not compiled in */
vlm76a52772006-09-17 11:31:55 +000079 rval = td->uper_decoder(opt_codec_ctx, td, 0, sptr, &pd);
vlm619448e2006-09-18 20:05:55 +000080 if(rval.code == RC_OK) {
vlm76a52772006-09-17 11:31:55 +000081 /* Return the number of consumed bits */
82 rval.consumed = ((pd.buffer - (const uint8_t *)buffer) << 3)
83 + pd.nboff - skip_bits;
vlm8c2c5c42007-06-26 06:46:04 +000084 ASN_DEBUG("PER decoding consumed %d, counted %d",
85 rval.consumed, pd.moved);
vlm26b48ca2007-06-26 02:51:10 +000086 assert(rval.consumed == pd.moved);
vlm619448e2006-09-18 20:05:55 +000087 } else {
88 /* PER codec is not a restartable */
89 rval.consumed = 0;
vlm76a52772006-09-17 11:31:55 +000090 }
91 return rval;
vlm4d2ca122005-12-07 05:46:03 +000092}
93