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gnss-sdr/src/core/libs/supl/asn-supl/AltitudeInfo.c
Carles Fernandez 4d0d263280
Make the software package compliant with the REUSE Specification v3.0 (see https://reuse.software/spec/)
Update license headers to SPDX format (see https://spdx.org/)
Add license to all files
Add CI job in GitHub Actions to ensure compliance
2020-02-08 01:20:02 +01:00

290 lines
10 KiB
C

/*
* SPDX-FileCopyrightText: (c) 2003, 2004 Lev Walkin <vlm@lionet.info>. All rights reserved.
* SPDX-License-Identifier: BSD-1-Clause
* Generated by asn1c-0.9.22 (http://lionet.info/asn1c)
* From ASN.1 module "ULP-Components"
* found in "../supl-common.asn"
*/
#include "AltitudeInfo.h"
static int altitudeDirection_2_constraint(asn_TYPE_descriptor_t *td,
const void *sptr,
asn_app_constraint_failed_f *ctfailcb,
void *app_key)
{
/* Replace with underlying type checker */
td->check_constraints = asn_DEF_ENUMERATED.check_constraints;
return td->check_constraints(td, sptr, ctfailcb, app_key);
}
/*
* This type is implemented using ENUMERATED,
* so here we adjust the DEF accordingly.
*/
static void altitudeDirection_2_inherit_TYPE_descriptor(
asn_TYPE_descriptor_t *td)
{
td->free_struct = asn_DEF_ENUMERATED.free_struct;
td->print_struct = asn_DEF_ENUMERATED.print_struct;
td->ber_decoder = asn_DEF_ENUMERATED.ber_decoder;
td->der_encoder = asn_DEF_ENUMERATED.der_encoder;
td->xer_decoder = asn_DEF_ENUMERATED.xer_decoder;
td->xer_encoder = asn_DEF_ENUMERATED.xer_encoder;
td->uper_decoder = asn_DEF_ENUMERATED.uper_decoder;
td->uper_encoder = asn_DEF_ENUMERATED.uper_encoder;
if (!td->per_constraints)
{
td->per_constraints = asn_DEF_ENUMERATED.per_constraints;
}
td->elements = asn_DEF_ENUMERATED.elements;
td->elements_count = asn_DEF_ENUMERATED.elements_count;
/* td->specifics = asn_DEF_ENUMERATED.specifics; // Defined
* explicitly
*/
}
static void altitudeDirection_2_free(asn_TYPE_descriptor_t *td,
void *struct_ptr, int contents_only)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
td->free_struct(td, struct_ptr, contents_only);
}
static int altitudeDirection_2_print(asn_TYPE_descriptor_t *td,
const void *struct_ptr, int ilevel,
asn_app_consume_bytes_f *cb, void *app_key)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->print_struct(td, struct_ptr, ilevel, cb, app_key);
}
static asn_dec_rval_t altitudeDirection_2_decode_ber(
asn_codec_ctx_t *opt_codec_ctx, asn_TYPE_descriptor_t *td, void **structure,
const void *bufptr, size_t size, int tag_mode)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->ber_decoder(opt_codec_ctx, td, structure, bufptr, size,
tag_mode);
}
static asn_enc_rval_t altitudeDirection_2_encode_der(
asn_TYPE_descriptor_t *td, void *structure, int tag_mode, ber_tlv_tag_t tag,
asn_app_consume_bytes_f *cb, void *app_key)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->der_encoder(td, structure, tag_mode, tag, cb, app_key);
}
static asn_dec_rval_t altitudeDirection_2_decode_xer(
asn_codec_ctx_t *opt_codec_ctx, asn_TYPE_descriptor_t *td, void **structure,
const char *opt_mname, const void *bufptr, size_t size)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->xer_decoder(opt_codec_ctx, td, structure, opt_mname, bufptr,
size);
}
static asn_enc_rval_t altitudeDirection_2_encode_xer(
asn_TYPE_descriptor_t *td, void *structure, int ilevel,
enum xer_encoder_flags_e flags, asn_app_consume_bytes_f *cb, void *app_key)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->xer_encoder(td, structure, ilevel, flags, cb, app_key);
}
static asn_dec_rval_t altitudeDirection_2_decode_uper(
asn_codec_ctx_t *opt_codec_ctx, asn_TYPE_descriptor_t *td,
asn_per_constraints_t *constraints, void **structure,
asn_per_data_t *per_data)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->uper_decoder(opt_codec_ctx, td, constraints, structure,
per_data);
}
static asn_enc_rval_t altitudeDirection_2_encode_uper(
asn_TYPE_descriptor_t *td, asn_per_constraints_t *constraints,
void *structure, asn_per_outp_t *per_out)
{
altitudeDirection_2_inherit_TYPE_descriptor(td);
return td->uper_encoder(td, constraints, structure, per_out);
}
static int memb_altitude_constraint_1(asn_TYPE_descriptor_t *td,
const void *sptr,
asn_app_constraint_failed_f *ctfailcb,
void *app_key)
{
long value;
if (!sptr)
{
_ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)",
td->name, __FILE__, __LINE__);
return -1;
}
value = *(const long *)sptr;
if ((value >= 0 && value <= 32767))
{
/* Constraint check succeeded */
return 0;
}
else
{
_ASN_CTFAIL(app_key, td, sptr, "%s: constraint failed (%s:%d)",
td->name, __FILE__, __LINE__);
return -1;
}
}
static int memb_altUncertainty_constraint_1(
asn_TYPE_descriptor_t *td, const void *sptr,
asn_app_constraint_failed_f *ctfailcb, void *app_key)
{
long value;
if (!sptr)
{
_ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)",
td->name, __FILE__, __LINE__);
return -1;
}
value = *(const long *)sptr;
if ((value >= 0 && value <= 127))
{
/* Constraint check succeeded */
return 0;
}
else
{
_ASN_CTFAIL(app_key, td, sptr, "%s: constraint failed (%s:%d)",
td->name, __FILE__, __LINE__);
return -1;
}
}
static asn_per_constraints_t ASN_PER_TYPE_ALTITUDE_DIRECTION_CONSTR_2 = {
{APC_CONSTRAINED, 1, 1, 0, 1} /* (0..1) */,
{APC_UNCONSTRAINED, -1, -1, 0, 0},
0,
0 /* No PER value map */
};
static asn_per_constraints_t ASN_PER_MEMB_ALTITUDE_CONSTR_5 = {
{APC_CONSTRAINED, 15, 15, 0, 32767} /* (0..32767) */,
{APC_UNCONSTRAINED, -1, -1, 0, 0},
0,
0 /* No PER value map */
};
static asn_per_constraints_t ASN_PER_MEMB_ALT_UNCERTAINTY_CONSTR_6 = {
{APC_CONSTRAINED, 7, 7, 0, 127} /* (0..127) */,
{APC_UNCONSTRAINED, -1, -1, 0, 0},
0,
0 /* No PER value map */
};
static asn_INTEGER_enum_map_t asn_MAP_altitudeDirection_value2enum_2[] = {
{0, 6, "height"}, {1, 5, "depth"}};
static unsigned int asn_MAP_altitudeDirection_enum2value_2[] = {
1, /* depth(1) */
0 /* height(0) */
};
static asn_INTEGER_specifics_t asn_SPC_altitudeDirection_specs_2 = {
asn_MAP_altitudeDirection_value2enum_2, /* "tag" => N; sorted by tag */
asn_MAP_altitudeDirection_enum2value_2, /* N => "tag"; sorted by N */
2, /* Number of elements in the maps */
0, /* Enumeration is not extensible */
1, /* Strict enumeration */
0, /* Native long size */
0};
static ber_tlv_tag_t asn_DEF_altitudeDirection_tags_2[] = {
(ASN_TAG_CLASS_CONTEXT | (0 << 2)), (ASN_TAG_CLASS_UNIVERSAL | (10 << 2))};
static /* Use -fall-defs-global to expose */
asn_TYPE_descriptor_t asn_DEF_altitudeDirection_2 = {
"altitudeDirection",
"altitudeDirection",
altitudeDirection_2_free,
altitudeDirection_2_print,
altitudeDirection_2_constraint,
altitudeDirection_2_decode_ber,
altitudeDirection_2_encode_der,
altitudeDirection_2_decode_xer,
altitudeDirection_2_encode_xer,
altitudeDirection_2_decode_uper,
altitudeDirection_2_encode_uper,
0, /* Use generic outmost tag fetcher */
asn_DEF_altitudeDirection_tags_2,
sizeof(asn_DEF_altitudeDirection_tags_2) /
sizeof(asn_DEF_altitudeDirection_tags_2[0]) -
1, /* 1 */
asn_DEF_altitudeDirection_tags_2, /* Same as above */
sizeof(asn_DEF_altitudeDirection_tags_2) /
sizeof(asn_DEF_altitudeDirection_tags_2[0]), /* 2 */
&ASN_PER_TYPE_ALTITUDE_DIRECTION_CONSTR_2,
0,
0, /* Defined elsewhere */
&asn_SPC_altitudeDirection_specs_2 /* Additional specs */
};
static asn_TYPE_member_t asn_MBR_AltitudeInfo_1[] = {
{ATF_NOFLAGS, 0, offsetof(struct AltitudeInfo, altitudeDirection),
(ASN_TAG_CLASS_CONTEXT | (0 << 2)), -1, /* IMPLICIT tag at current level */
&asn_DEF_altitudeDirection_2,
0, /* Defer constraints checking to the member type */
0, /* No PER visible constraints */
0, "altitudeDirection"},
{ATF_NOFLAGS, 0, offsetof(struct AltitudeInfo, altitude),
(ASN_TAG_CLASS_CONTEXT | (1 << 2)), -1, /* IMPLICIT tag at current level */
&asn_DEF_NativeInteger, memb_altitude_constraint_1,
&ASN_PER_MEMB_ALTITUDE_CONSTR_5, 0, "altitude"},
{ATF_NOFLAGS, 0, offsetof(struct AltitudeInfo, altUncertainty),
(ASN_TAG_CLASS_CONTEXT | (2 << 2)), -1, /* IMPLICIT tag at current level */
&asn_DEF_NativeInteger, memb_altUncertainty_constraint_1,
&ASN_PER_MEMB_ALT_UNCERTAINTY_CONSTR_6, 0, "altUncertainty"},
};
static ber_tlv_tag_t asn_DEF_AltitudeInfo_tags_1[] = {
(ASN_TAG_CLASS_UNIVERSAL | (16 << 2))};
static asn_TYPE_tag2member_t asn_MAP_AltitudeInfo_tag2el_1[] = {
{(ASN_TAG_CLASS_CONTEXT | (0 << 2)), 0, 0, 0}, /* altitudeDirection at 86 */
{(ASN_TAG_CLASS_CONTEXT | (1 << 2)), 1, 0, 0}, /* altitude at 87 */
{(ASN_TAG_CLASS_CONTEXT | (2 << 2)), 2, 0, 0} /* altUncertainty at 88 */
};
static asn_SEQUENCE_specifics_t asn_SPC_AltitudeInfo_specs_1 = {
sizeof(struct AltitudeInfo),
offsetof(struct AltitudeInfo, _asn_ctx),
asn_MAP_AltitudeInfo_tag2el_1,
3, /* Count of tags in the map */
0,
0,
0, /* Optional elements (not needed) */
2, /* Start extensions */
4 /* Stop extensions */
};
asn_TYPE_descriptor_t asn_DEF_AltitudeInfo = {
"AltitudeInfo",
"AltitudeInfo",
SEQUENCE_free,
SEQUENCE_print,
SEQUENCE_constraint,
SEQUENCE_decode_ber,
SEQUENCE_encode_der,
SEQUENCE_decode_xer,
SEQUENCE_encode_xer,
SEQUENCE_decode_uper,
SEQUENCE_encode_uper,
0, /* Use generic outmost tag fetcher */
asn_DEF_AltitudeInfo_tags_1,
sizeof(asn_DEF_AltitudeInfo_tags_1) /
sizeof(asn_DEF_AltitudeInfo_tags_1[0]), /* 1 */
asn_DEF_AltitudeInfo_tags_1, /* Same as above */
sizeof(asn_DEF_AltitudeInfo_tags_1) /
sizeof(asn_DEF_AltitudeInfo_tags_1[0]), /* 1 */
0, /* No PER visible constraints */
asn_MBR_AltitudeInfo_1,
3, /* Elements count */
&asn_SPC_AltitudeInfo_specs_1 /* Additional specs */
};