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Integration with OGSLib
This commit is contained in:
317
lib/asn1c/common/asn_codecs_prim.c
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317
lib/asn1c/common/asn_codecs_prim.c
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/*-
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* Copyright (c) 2003, 2004 Lev Walkin <vlm@lionet.info>. All rights reserved.
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* Redistribution and modifications are permitted subject to BSD license.
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*/
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#include <asn_internal.h>
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#include <asn_codecs_prim.h>
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#include <errno.h>
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/*
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* Decode an always-primitive type.
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*/
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asn_dec_rval_t
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ber_decode_primitive(const asn_codec_ctx_t *opt_codec_ctx,
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const asn_TYPE_descriptor_t *td, void **sptr,
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const void *buf_ptr, size_t size, int tag_mode) {
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ASN__PRIMITIVE_TYPE_t *st = (ASN__PRIMITIVE_TYPE_t *)*sptr;
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asn_dec_rval_t rval;
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ber_tlv_len_t length = 0; /* =0 to avoid [incorrect] warning. */
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/*
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* If the structure is not there, allocate it.
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*/
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if(st == NULL) {
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st = (ASN__PRIMITIVE_TYPE_t *)CALLOC(1, sizeof(*st));
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if(st == NULL) ASN__DECODE_FAILED;
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*sptr = (void *)st;
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}
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ASN_DEBUG("Decoding %s as plain primitive (tm=%d)",
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td->name, tag_mode);
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/*
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* Check tags and extract value length.
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*/
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rval = ber_check_tags(opt_codec_ctx, td, 0, buf_ptr, size,
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tag_mode, 0, &length, 0);
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if(rval.code != RC_OK)
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return rval;
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ASN_DEBUG("%s length is %d bytes", td->name, (int)length);
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/*
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* Make sure we have this length.
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*/
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buf_ptr = ((const char *)buf_ptr) + rval.consumed;
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size -= rval.consumed;
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if(length > (ber_tlv_len_t)size) {
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rval.code = RC_WMORE;
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rval.consumed = 0;
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return rval;
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}
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st->size = (int)length;
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/* The following better be optimized away. */
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if(sizeof(st->size) != sizeof(length)
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&& (ber_tlv_len_t)st->size != length) {
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st->size = 0;
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ASN__DECODE_FAILED;
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}
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st->buf = (uint8_t *)MALLOC(length + 1);
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if(!st->buf) {
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st->size = 0;
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ASN__DECODE_FAILED;
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}
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memcpy(st->buf, buf_ptr, length);
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st->buf[length] = '\0'; /* Just in case */
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rval.code = RC_OK;
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rval.consumed += length;
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ASN_DEBUG("Took %ld/%ld bytes to encode %s",
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(long)rval.consumed,
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(long)length, td->name);
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return rval;
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}
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/*
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* Encode an always-primitive type using DER.
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*/
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asn_enc_rval_t
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der_encode_primitive(const asn_TYPE_descriptor_t *td, const void *sptr,
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int tag_mode, ber_tlv_tag_t tag,
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asn_app_consume_bytes_f *cb, void *app_key) {
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asn_enc_rval_t erval;
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const ASN__PRIMITIVE_TYPE_t *st = (const ASN__PRIMITIVE_TYPE_t *)sptr;
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ASN_DEBUG("%s %s as a primitive type (tm=%d)",
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cb?"Encoding":"Estimating", td->name, tag_mode);
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erval.encoded = der_write_tags(td, st->size, tag_mode, 0, tag,
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cb, app_key);
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ASN_DEBUG("%s wrote tags %d", td->name, (int)erval.encoded);
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if(erval.encoded == -1) {
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erval.failed_type = td;
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erval.structure_ptr = sptr;
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return erval;
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}
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if(cb && st->buf) {
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if(cb(st->buf, st->size, app_key) < 0) {
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erval.encoded = -1;
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erval.failed_type = td;
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erval.structure_ptr = sptr;
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return erval;
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}
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} else {
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assert(st->buf || st->size == 0);
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}
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erval.encoded += st->size;
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ASN__ENCODED_OK(erval);
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}
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void
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ASN__PRIMITIVE_TYPE_free(const asn_TYPE_descriptor_t *td, void *sptr,
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enum asn_struct_free_method method) {
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ASN__PRIMITIVE_TYPE_t *st = (ASN__PRIMITIVE_TYPE_t *)sptr;
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if(!td || !sptr)
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return;
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ASN_DEBUG("Freeing %s as a primitive type", td->name);
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if(st->buf)
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FREEMEM(st->buf);
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switch(method) {
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case ASFM_FREE_EVERYTHING:
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FREEMEM(sptr);
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break;
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case ASFM_FREE_UNDERLYING:
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break;
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case ASFM_FREE_UNDERLYING_AND_RESET:
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memset(sptr, 0, sizeof(ASN__PRIMITIVE_TYPE_t));
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break;
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}
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}
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/*
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* Local internal type passed around as an argument.
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*/
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struct xdp_arg_s {
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const asn_TYPE_descriptor_t *type_descriptor;
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void *struct_key;
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xer_primitive_body_decoder_f *prim_body_decoder;
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int decoded_something;
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int want_more;
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};
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/*
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* Since some kinds of primitive values can be encoded using value-specific
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* tags (<MINUS-INFINITY>, <enum-element>, etc), the primitive decoder must
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* be supplied with such tags to parse them as needed.
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*/
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static int
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xer_decode__unexpected_tag(void *key, const void *chunk_buf, size_t chunk_size) {
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struct xdp_arg_s *arg = (struct xdp_arg_s *)key;
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enum xer_pbd_rval bret;
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/*
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* The chunk_buf is guaranteed to start at '<'.
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*/
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assert(chunk_size && ((const char *)chunk_buf)[0] == 0x3c);
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/*
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* Decoding was performed once already. Prohibit doing it again.
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*/
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if(arg->decoded_something)
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return -1;
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bret = arg->prim_body_decoder(arg->type_descriptor,
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arg->struct_key, chunk_buf, chunk_size);
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switch(bret) {
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case XPBD_SYSTEM_FAILURE:
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case XPBD_DECODER_LIMIT:
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case XPBD_BROKEN_ENCODING:
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break;
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case XPBD_BODY_CONSUMED:
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/* Tag decoded successfully */
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arg->decoded_something = 1;
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/* Fall through */
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case XPBD_NOT_BODY_IGNORE: /* Safe to proceed further */
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return 0;
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}
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return -1;
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}
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static ssize_t
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xer_decode__primitive_body(void *key, const void *chunk_buf, size_t chunk_size, int have_more) {
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struct xdp_arg_s *arg = (struct xdp_arg_s *)key;
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enum xer_pbd_rval bret;
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size_t lead_wsp_size;
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if(arg->decoded_something) {
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if(xer_whitespace_span(chunk_buf, chunk_size) == chunk_size) {
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/*
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* Example:
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* "<INTEGER>123<!--/--> </INTEGER>"
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* ^- chunk_buf position.
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*/
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return chunk_size;
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}
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/*
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* Decoding was done once already. Prohibit doing it again.
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*/
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return -1;
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}
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if(!have_more) {
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/*
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* If we've received something like "1", we can't really
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* tell whether it is really `1` or `123`, until we know
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* that there is no more data coming.
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* The have_more argument will be set to 1 once something
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* like this is available to the caller of this callback:
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* "1<tag_start..."
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*/
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arg->want_more = 1;
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return -1;
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}
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lead_wsp_size = xer_whitespace_span(chunk_buf, chunk_size);
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chunk_buf = (const char *)chunk_buf + lead_wsp_size;
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chunk_size -= lead_wsp_size;
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bret = arg->prim_body_decoder(arg->type_descriptor,
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arg->struct_key, chunk_buf, chunk_size);
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switch(bret) {
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case XPBD_SYSTEM_FAILURE:
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case XPBD_DECODER_LIMIT:
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case XPBD_BROKEN_ENCODING:
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break;
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case XPBD_BODY_CONSUMED:
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/* Tag decoded successfully */
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arg->decoded_something = 1;
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/* Fall through */
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case XPBD_NOT_BODY_IGNORE: /* Safe to proceed further */
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return lead_wsp_size + chunk_size;
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}
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return -1;
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}
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asn_dec_rval_t
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xer_decode_primitive(const asn_codec_ctx_t *opt_codec_ctx,
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const asn_TYPE_descriptor_t *td, void **sptr,
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size_t struct_size, const char *opt_mname,
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const void *buf_ptr, size_t size,
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xer_primitive_body_decoder_f *prim_body_decoder) {
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const char *xml_tag = opt_mname ? opt_mname : td->xml_tag;
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asn_struct_ctx_t s_ctx;
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struct xdp_arg_s s_arg;
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asn_dec_rval_t rc;
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/*
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* Create the structure if does not exist.
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*/
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if(!*sptr) {
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*sptr = CALLOC(1, struct_size);
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if(!*sptr) ASN__DECODE_FAILED;
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}
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memset(&s_ctx, 0, sizeof(s_ctx));
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s_arg.type_descriptor = td;
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s_arg.struct_key = *sptr;
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s_arg.prim_body_decoder = prim_body_decoder;
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s_arg.decoded_something = 0;
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s_arg.want_more = 0;
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rc = xer_decode_general(opt_codec_ctx, &s_ctx, &s_arg,
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xml_tag, buf_ptr, size,
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xer_decode__unexpected_tag, xer_decode__primitive_body);
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switch(rc.code) {
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case RC_OK:
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if(!s_arg.decoded_something) {
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char ch;
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ASN_DEBUG("Primitive body is not recognized, "
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"supplying empty one");
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/*
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* Decoding opportunity has come and gone.
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* Where's the result?
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* Try to feed with empty body, see if it eats it.
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*/
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if(prim_body_decoder(s_arg.type_descriptor,
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s_arg.struct_key, &ch, 0)
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!= XPBD_BODY_CONSUMED) {
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/*
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* This decoder does not like empty stuff.
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*/
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ASN__DECODE_FAILED;
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}
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}
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break;
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case RC_WMORE:
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/*
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* Redo the whole thing later.
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* We don't have a context to save intermediate parsing state.
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*/
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rc.consumed = 0;
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break;
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case RC_FAIL:
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rc.consumed = 0;
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if(s_arg.want_more)
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rc.code = RC_WMORE;
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else
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ASN__DECODE_FAILED;
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break;
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}
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return rc;
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}
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