obu-firmware builds against the vanetza-idf C-ITS library, which until now came from the colleague's microbu-esp32c5 tree beside the repository and was not tracked here, so a clone of this repository could not build the firmware it ships. The library alone is now part of obu-firmware, as obu-firmware/external/vanetza-idf: their external/vanetza-idf at commit cf4b99f, unchanged (9775 files; see its PROVENANCE.md). CMake takes it from there by default; -DVANETZA_IDF_DIR still points the build elsewhere. The rest of the colleague's tree (their own VAM firmware, PKI tooling, station-link Python tools, the V2X2MAP bridge) stays out of this repository and gitignored; nothing is pushed to their repository. NOTES.md, docs/06, TODO.md and the pcap verifier's usage line point at the new location.
94 lines
2.8 KiB
C
94 lines
2.8 KiB
C
/*
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* Copyright (c) 2017 Lev Walkin <vlm@lionet.info>.
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* 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 "BMPString.h"
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#include "UTF8String.h"
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asn_dec_rval_t
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BMPString_decode_xer(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 char *opt_mname, const void *buf_ptr, size_t size) {
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asn_dec_rval_t rc;
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rc = OCTET_STRING_decode_xer_utf8(opt_codec_ctx, td, sptr, opt_mname,
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buf_ptr, size);
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if(rc.code == RC_OK) {
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/*
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* Now we have a whole string in UTF-8 format.
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* Convert it into UCS-2.
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*/
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uint32_t *wcs;
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size_t wcs_len;
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UTF8String_t *st;
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assert(*sptr);
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st = (UTF8String_t *)*sptr;
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assert(st->buf);
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wcs_len = UTF8String_to_wcs(st, 0, 0);
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wcs = (uint32_t *)MALLOC(4 * (wcs_len + 1));
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if(wcs == 0 || UTF8String_to_wcs(st, wcs, wcs_len) != wcs_len) {
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rc.code = RC_FAIL;
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rc.consumed = 0;
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return rc;
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} else {
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wcs[wcs_len] = 0; /* nul-terminate */
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}
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if(1) {
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/* Swap byte order and trim encoding to 2 bytes */
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uint32_t *wc = wcs;
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uint32_t *wc_end = wcs + wcs_len;
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uint16_t *dstwc = (uint16_t *)wcs;
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for(; wc < wc_end; wc++, dstwc++) {
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uint32_t wch = *wc;
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if(wch > 0xffff) {
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FREEMEM(wcs);
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rc.code = RC_FAIL;
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rc.consumed = 0;
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return rc;
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}
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*((uint8_t *)dstwc + 0) = wch >> 8;
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*((uint8_t *)dstwc + 1) = wch;
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}
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dstwc = (uint16_t *)REALLOC(wcs, 2 * (wcs_len + 1));
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if(!dstwc) {
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FREEMEM(wcs);
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rc.code = RC_FAIL;
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rc.consumed = 0;
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return rc;
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} else {
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dstwc[wcs_len] = 0; /* nul-terminate */
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wcs = (uint32_t *)(void *)dstwc; /* Alignment OK */
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}
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}
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FREEMEM(st->buf);
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st->buf = (uint8_t *)wcs;
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st->size = 2 * wcs_len;
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}
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return rc;
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}
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asn_enc_rval_t
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BMPString_encode_xer(const asn_TYPE_descriptor_t *td, const void *sptr,
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int ilevel, enum xer_encoder_flags_e flags,
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asn_app_consume_bytes_f *cb, void *app_key) {
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const BMPString_t *st = (const BMPString_t *)sptr;
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asn_enc_rval_t er = {0,0,0};
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(void)ilevel;
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(void)flags;
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if(!st || !st->buf)
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ASN__ENCODE_FAILED;
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er.encoded = BMPString__dump(st, cb, app_key);
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if(er.encoded < 0) ASN__ENCODE_FAILED;
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ASN__ENCODED_OK(er);
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}
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