/* * Generated by asn1c-0.9.22 (http://lionet.info/asn1c) * From ASN.1 module "CHATCLEANER-PROTOCOL" * found in "../../../docs/chatcleaner.asn1" */ #include #include "CleanerChatReplyMessage.h" static int requestId_2_constraint(asn_TYPE_descriptor_t *td, const void *sptr, asn_app_constraint_failed_f *ctfailcb, void *app_key) { unsigned long value; if(!sptr) { _ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)", td->name, __FILE__, __LINE__); return -1; } value = *(const unsigned long *)sptr; if((value >= 1 && value <= 4294967295)) { /* Constraint check succeeded */ return 0; } else { _ASN_CTFAIL(app_key, td, sptr, "%s: constraint failed (%s:%d)", td->name, __FILE__, __LINE__); return -1; } } /* * This type is implemented using NativeInteger, * so here we adjust the DEF accordingly. */ static void requestId_2_inherit_TYPE_descriptor(asn_TYPE_descriptor_t *td) { td->free_struct = asn_DEF_NativeInteger.free_struct; td->print_struct = asn_DEF_NativeInteger.print_struct; td->ber_decoder = asn_DEF_NativeInteger.ber_decoder; td->der_encoder = asn_DEF_NativeInteger.der_encoder; td->xer_decoder = asn_DEF_NativeInteger.xer_decoder; td->xer_encoder = asn_DEF_NativeInteger.xer_encoder; td->uper_decoder = asn_DEF_NativeInteger.uper_decoder; td->uper_encoder = asn_DEF_NativeInteger.uper_encoder; if(!td->per_constraints) td->per_constraints = asn_DEF_NativeInteger.per_constraints; td->elements = asn_DEF_NativeInteger.elements; td->elements_count = asn_DEF_NativeInteger.elements_count; /* td->specifics = asn_DEF_NativeInteger.specifics; // Defined explicitly */ } static void requestId_2_free(asn_TYPE_descriptor_t *td, void *struct_ptr, int contents_only) { requestId_2_inherit_TYPE_descriptor(td); td->free_struct(td, struct_ptr, contents_only); } static int requestId_2_print(asn_TYPE_descriptor_t *td, const void *struct_ptr, int ilevel, asn_app_consume_bytes_f *cb, void *app_key) { requestId_2_inherit_TYPE_descriptor(td); return td->print_struct(td, struct_ptr, ilevel, cb, app_key); } static asn_dec_rval_t requestId_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) { requestId_2_inherit_TYPE_descriptor(td); return td->ber_decoder(opt_codec_ctx, td, structure, bufptr, size, tag_mode); } static asn_enc_rval_t requestId_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) { requestId_2_inherit_TYPE_descriptor(td); return td->der_encoder(td, structure, tag_mode, tag, cb, app_key); } static asn_dec_rval_t requestId_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) { requestId_2_inherit_TYPE_descriptor(td); return td->xer_decoder(opt_codec_ctx, td, structure, opt_mname, bufptr, size); } static asn_enc_rval_t requestId_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) { requestId_2_inherit_TYPE_descriptor(td); return td->xer_encoder(td, structure, ilevel, flags, cb, app_key); } static int playerId_3_constraint(asn_TYPE_descriptor_t *td, const void *sptr, asn_app_constraint_failed_f *ctfailcb, void *app_key) { unsigned long value; if(!sptr) { _ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)", td->name, __FILE__, __LINE__); return -1; } value = *(const unsigned long *)sptr; if((value >= 1 && value <= 4294967295)) { /* Constraint check succeeded */ return 0; } else { _ASN_CTFAIL(app_key, td, sptr, "%s: constraint failed (%s:%d)", td->name, __FILE__, __LINE__); return -1; } } /* * This type is implemented using NativeInteger, * so here we adjust the DEF accordingly. */ static void playerId_3_inherit_TYPE_descriptor(asn_TYPE_descriptor_t *td) { td->free_struct = asn_DEF_NativeInteger.free_struct; td->print_struct = asn_DEF_NativeInteger.print_struct; td->ber_decoder = asn_DEF_NativeInteger.ber_decoder; td->der_encoder = asn_DEF_NativeInteger.der_encoder; td->xer_decoder = asn_DEF_NativeInteger.xer_decoder; td->xer_encoder = asn_DEF_NativeInteger.xer_encoder; td->uper_decoder = asn_DEF_NativeInteger.uper_decoder; td->uper_encoder = asn_DEF_NativeInteger.uper_encoder; if(!td->per_constraints) td->per_constraints = asn_DEF_NativeInteger.per_constraints; td->elements = asn_DEF_NativeInteger.elements; td->elements_count = asn_DEF_NativeInteger.elements_count; /* td->specifics = asn_DEF_NativeInteger.specifics; // Defined explicitly */ } static void playerId_3_free(asn_TYPE_descriptor_t *td, void *struct_ptr, int contents_only) { playerId_3_inherit_TYPE_descriptor(td); td->free_struct(td, struct_ptr, contents_only); } static int playerId_3_print(asn_TYPE_descriptor_t *td, const void *struct_ptr, int ilevel, asn_app_consume_bytes_f *cb, void *app_key) { playerId_3_inherit_TYPE_descriptor(td); return td->print_struct(td, struct_ptr, ilevel, cb, app_key); } static asn_dec_rval_t playerId_3_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) { playerId_3_inherit_TYPE_descriptor(td); return td->ber_decoder(opt_codec_ctx, td, structure, bufptr, size, tag_mode); } static asn_enc_rval_t playerId_3_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) { playerId_3_inherit_TYPE_descriptor(td); return td->der_encoder(td, structure, tag_mode, tag, cb, app_key); } static asn_dec_rval_t playerId_3_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) { playerId_3_inherit_TYPE_descriptor(td); return td->xer_decoder(opt_codec_ctx, td, structure, opt_mname, bufptr, size); } static asn_enc_rval_t playerId_3_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) { playerId_3_inherit_TYPE_descriptor(td); return td->xer_encoder(td, structure, ilevel, flags, cb, app_key); } static int cleanerActionType_4_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_NativeEnumerated.check_constraints; return td->check_constraints(td, sptr, ctfailcb, app_key); } /* * This type is implemented using NativeEnumerated, * so here we adjust the DEF accordingly. */ static void cleanerActionType_4_inherit_TYPE_descriptor(asn_TYPE_descriptor_t *td) { td->free_struct = asn_DEF_NativeEnumerated.free_struct; td->print_struct = asn_DEF_NativeEnumerated.print_struct; td->ber_decoder = asn_DEF_NativeEnumerated.ber_decoder; td->der_encoder = asn_DEF_NativeEnumerated.der_encoder; td->xer_decoder = asn_DEF_NativeEnumerated.xer_decoder; td->xer_encoder = asn_DEF_NativeEnumerated.xer_encoder; td->uper_decoder = asn_DEF_NativeEnumerated.uper_decoder; td->uper_encoder = asn_DEF_NativeEnumerated.uper_encoder; if(!td->per_constraints) td->per_constraints = asn_DEF_NativeEnumerated.per_constraints; td->elements = asn_DEF_NativeEnumerated.elements; td->elements_count = asn_DEF_NativeEnumerated.elements_count; /* td->specifics = asn_DEF_NativeEnumerated.specifics; // Defined explicitly */ } static void cleanerActionType_4_free(asn_TYPE_descriptor_t *td, void *struct_ptr, int contents_only) { cleanerActionType_4_inherit_TYPE_descriptor(td); td->free_struct(td, struct_ptr, contents_only); } static int cleanerActionType_4_print(asn_TYPE_descriptor_t *td, const void *struct_ptr, int ilevel, asn_app_consume_bytes_f *cb, void *app_key) { cleanerActionType_4_inherit_TYPE_descriptor(td); return td->print_struct(td, struct_ptr, ilevel, cb, app_key); } static asn_dec_rval_t cleanerActionType_4_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) { cleanerActionType_4_inherit_TYPE_descriptor(td); return td->ber_decoder(opt_codec_ctx, td, structure, bufptr, size, tag_mode); } static asn_enc_rval_t cleanerActionType_4_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) { cleanerActionType_4_inherit_TYPE_descriptor(td); return td->der_encoder(td, structure, tag_mode, tag, cb, app_key); } static asn_dec_rval_t cleanerActionType_4_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) { cleanerActionType_4_inherit_TYPE_descriptor(td); return td->xer_decoder(opt_codec_ctx, td, structure, opt_mname, bufptr, size); } static asn_enc_rval_t cleanerActionType_4_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) { cleanerActionType_4_inherit_TYPE_descriptor(td); return td->xer_encoder(td, structure, ilevel, flags, cb, app_key); } static int memb_requestId_constraint_1(asn_TYPE_descriptor_t *td, const void *sptr, asn_app_constraint_failed_f *ctfailcb, void *app_key) { unsigned long value; if(!sptr) { _ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)", td->name, __FILE__, __LINE__); return -1; } value = *(const unsigned long *)sptr; if((value >= 1 && value <= 4294967295)) { /* 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_playerId_constraint_1(asn_TYPE_descriptor_t *td, const void *sptr, asn_app_constraint_failed_f *ctfailcb, void *app_key) { unsigned long value; if(!sptr) { _ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)", td->name, __FILE__, __LINE__); return -1; } value = *(const unsigned long *)sptr; if((value >= 1 && value <= 4294967295)) { /* 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_cleanerText_constraint_1(asn_TYPE_descriptor_t *td, const void *sptr, asn_app_constraint_failed_f *ctfailcb, void *app_key) { const UTF8String_t *st = (const UTF8String_t *)sptr; size_t size; if(!sptr) { _ASN_CTFAIL(app_key, td, sptr, "%s: value not given (%s:%d)", td->name, __FILE__, __LINE__); return -1; } size = UTF8String_length(st); if((ssize_t)size < 0) { _ASN_CTFAIL(app_key, td, sptr, "%s: UTF-8: broken encoding (%s:%d)", td->name, __FILE__, __LINE__); return -1; } if((size >= 1 && size <= 128)) { /* 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_INTEGER_specifics_t asn_SPC_requestId_specs_2 = { 0, 0, 0, 0, 0, 0, /* Native long size */ 1 /* Unsigned representation */ }; static ber_tlv_tag_t asn_DEF_requestId_tags_2[] = { (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)) }; static /* Use -fall-defs-global to expose */ asn_TYPE_descriptor_t asn_DEF_requestId_2 = { "requestId", "requestId", requestId_2_free, requestId_2_print, requestId_2_constraint, requestId_2_decode_ber, requestId_2_encode_der, requestId_2_decode_xer, requestId_2_encode_xer, 0, 0, /* No PER support, use "-gen-PER" to enable */ 0, /* Use generic outmost tag fetcher */ asn_DEF_requestId_tags_2, sizeof(asn_DEF_requestId_tags_2) /sizeof(asn_DEF_requestId_tags_2[0]), /* 1 */ asn_DEF_requestId_tags_2, /* Same as above */ sizeof(asn_DEF_requestId_tags_2) /sizeof(asn_DEF_requestId_tags_2[0]), /* 1 */ 0, /* No PER visible constraints */ 0, 0, /* No members */ &asn_SPC_requestId_specs_2 /* Additional specs */ }; static asn_INTEGER_specifics_t asn_SPC_playerId_specs_3 = { 0, 0, 0, 0, 0, 0, /* Native long size */ 1 /* Unsigned representation */ }; static ber_tlv_tag_t asn_DEF_playerId_tags_3[] = { (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)) }; static /* Use -fall-defs-global to expose */ asn_TYPE_descriptor_t asn_DEF_playerId_3 = { "playerId", "playerId", playerId_3_free, playerId_3_print, playerId_3_constraint, playerId_3_decode_ber, playerId_3_encode_der, playerId_3_decode_xer, playerId_3_encode_xer, 0, 0, /* No PER support, use "-gen-PER" to enable */ 0, /* Use generic outmost tag fetcher */ asn_DEF_playerId_tags_3, sizeof(asn_DEF_playerId_tags_3) /sizeof(asn_DEF_playerId_tags_3[0]), /* 1 */ asn_DEF_playerId_tags_3, /* Same as above */ sizeof(asn_DEF_playerId_tags_3) /sizeof(asn_DEF_playerId_tags_3[0]), /* 1 */ 0, /* No PER visible constraints */ 0, 0, /* No members */ &asn_SPC_playerId_specs_3 /* Additional specs */ }; static asn_INTEGER_enum_map_t asn_MAP_cleanerActionType_value2enum_4[] = { { 0, 17, "cleanerActionNone" }, { 1, 20, "cleanerActionWarning" }, { 2, 17, "cleanerActionKick" }, { 3, 16, "cleanerActionBan" } }; static unsigned int asn_MAP_cleanerActionType_enum2value_4[] = { 3, /* cleanerActionBan(3) */ 2, /* cleanerActionKick(2) */ 0, /* cleanerActionNone(0) */ 1 /* cleanerActionWarning(1) */ }; static asn_INTEGER_specifics_t asn_SPC_cleanerActionType_specs_4 = { asn_MAP_cleanerActionType_value2enum_4, /* "tag" => N; sorted by tag */ asn_MAP_cleanerActionType_enum2value_4, /* N => "tag"; sorted by N */ 4, /* 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_cleanerActionType_tags_4[] = { (ASN_TAG_CLASS_UNIVERSAL | (10 << 2)) }; static /* Use -fall-defs-global to expose */ asn_TYPE_descriptor_t asn_DEF_cleanerActionType_4 = { "cleanerActionType", "cleanerActionType", cleanerActionType_4_free, cleanerActionType_4_print, cleanerActionType_4_constraint, cleanerActionType_4_decode_ber, cleanerActionType_4_encode_der, cleanerActionType_4_decode_xer, cleanerActionType_4_encode_xer, 0, 0, /* No PER support, use "-gen-PER" to enable */ 0, /* Use generic outmost tag fetcher */ asn_DEF_cleanerActionType_tags_4, sizeof(asn_DEF_cleanerActionType_tags_4) /sizeof(asn_DEF_cleanerActionType_tags_4[0]), /* 1 */ asn_DEF_cleanerActionType_tags_4, /* Same as above */ sizeof(asn_DEF_cleanerActionType_tags_4) /sizeof(asn_DEF_cleanerActionType_tags_4[0]), /* 1 */ 0, /* No PER visible constraints */ 0, 0, /* Defined elsewhere */ &asn_SPC_cleanerActionType_specs_4 /* Additional specs */ }; static asn_TYPE_member_t asn_MBR_CleanerChatReplyMessage_1[] = { { ATF_NOFLAGS, 0, offsetof(struct CleanerChatReplyMessage, requestId), (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)), 0, &asn_DEF_requestId_2, memb_requestId_constraint_1, 0, /* PER is not compiled, use -gen-PER */ 0, "requestId" }, { ATF_NOFLAGS, 0, offsetof(struct CleanerChatReplyMessage, playerId), (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)), 0, &asn_DEF_playerId_3, memb_playerId_constraint_1, 0, /* PER is not compiled, use -gen-PER */ 0, "playerId" }, { ATF_NOFLAGS, 0, offsetof(struct CleanerChatReplyMessage, cleanerActionType), (ASN_TAG_CLASS_UNIVERSAL | (10 << 2)), 0, &asn_DEF_cleanerActionType_4, 0, /* Defer constraints checking to the member type */ 0, /* PER is not compiled, use -gen-PER */ 0, "cleanerActionType" }, { ATF_POINTER, 1, offsetof(struct CleanerChatReplyMessage, cleanerText), (ASN_TAG_CLASS_UNIVERSAL | (12 << 2)), 0, &asn_DEF_UTF8String, memb_cleanerText_constraint_1, 0, /* PER is not compiled, use -gen-PER */ 0, "cleanerText" }, }; static ber_tlv_tag_t asn_DEF_CleanerChatReplyMessage_tags_1[] = { (ASN_TAG_CLASS_APPLICATION | (3 << 2)), (ASN_TAG_CLASS_UNIVERSAL | (16 << 2)) }; static asn_TYPE_tag2member_t asn_MAP_CleanerChatReplyMessage_tag2el_1[] = { { (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)), 0, 0, 1 }, /* requestId at 51 */ { (ASN_TAG_CLASS_UNIVERSAL | (2 << 2)), 1, -1, 0 }, /* playerId at 52 */ { (ASN_TAG_CLASS_UNIVERSAL | (10 << 2)), 2, 0, 0 }, /* cleanerActionType at 54 */ { (ASN_TAG_CLASS_UNIVERSAL | (12 << 2)), 3, 0, 0 } /* cleanerText at 59 */ }; static asn_SEQUENCE_specifics_t asn_SPC_CleanerChatReplyMessage_specs_1 = { sizeof(struct CleanerChatReplyMessage), offsetof(struct CleanerChatReplyMessage, _asn_ctx), asn_MAP_CleanerChatReplyMessage_tag2el_1, 4, /* Count of tags in the map */ 0, 0, 0, /* Optional elements (not needed) */ 3, /* Start extensions */ 5 /* Stop extensions */ }; asn_TYPE_descriptor_t asn_DEF_CleanerChatReplyMessage = { "CleanerChatReplyMessage", "CleanerChatReplyMessage", SEQUENCE_free, SEQUENCE_print, SEQUENCE_constraint, SEQUENCE_decode_ber, SEQUENCE_encode_der, SEQUENCE_decode_xer, SEQUENCE_encode_xer, 0, 0, /* No PER support, use "-gen-PER" to enable */ 0, /* Use generic outmost tag fetcher */ asn_DEF_CleanerChatReplyMessage_tags_1, sizeof(asn_DEF_CleanerChatReplyMessage_tags_1) /sizeof(asn_DEF_CleanerChatReplyMessage_tags_1[0]) - 1, /* 1 */ asn_DEF_CleanerChatReplyMessage_tags_1, /* Same as above */ sizeof(asn_DEF_CleanerChatReplyMessage_tags_1) /sizeof(asn_DEF_CleanerChatReplyMessage_tags_1[0]), /* 2 */ 0, /* No PER visible constraints */ asn_MBR_CleanerChatReplyMessage_1, 4, /* Elements count */ &asn_SPC_CleanerChatReplyMessage_specs_1 /* Additional specs */ };