/* Copyright 2007-2011 David Robillard Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted, provided that the above copyright notice and this permission notice appear in all copies. THIS SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #define _XOPEN_SOURCE 500 #include #include #include #include #include "lilv_internal.h" static void lilv_node_set_numerics_from_string(LilvNode* val) { char* locale; char* endptr; switch (val->type) { case LILV_VALUE_URI: case LILV_VALUE_BLANK: case LILV_VALUE_STRING: break; case LILV_VALUE_INT: // FIXME: locale kludge, need a locale independent strtol locale = lilv_strdup(setlocale(LC_NUMERIC, NULL)); setlocale(LC_NUMERIC, "POSIX"); val->val.int_val = strtol(val->str_val, &endptr, 10); setlocale(LC_NUMERIC, locale); free(locale); break; case LILV_VALUE_FLOAT: // FIXME: locale kludge, need a locale independent strtod locale = lilv_strdup(setlocale(LC_NUMERIC, NULL)); setlocale(LC_NUMERIC, "POSIX"); val->val.float_val = strtod(val->str_val, &endptr); setlocale(LC_NUMERIC, locale); free(locale); break; case LILV_VALUE_BOOL: val->val.bool_val = (!strcmp(val->str_val, "true")); break; } } /** Note that if @a type is numeric or boolean, the returned value is corrupt * until lilv_node_set_numerics_from_string is called. It is not * automatically called from here to avoid overhead and imprecision when the * exact string value is known. */ LilvNode* lilv_node_new(LilvWorld* world, LilvNodeType type, const char* str) { LilvNode* val = malloc(sizeof(struct LilvNodeImpl)); val->world = world; val->type = type; switch (type) { case LILV_VALUE_URI: val->val.uri_val = sord_new_uri(world->world, (const uint8_t*)str); val->str_val = (char*)sord_node_get_string(val->val.uri_val); break; case LILV_VALUE_BLANK: val->val.uri_val = sord_new_blank(world->world, (const uint8_t*)str); val->str_val = (char*)sord_node_get_string(val->val.uri_val); case LILV_VALUE_STRING: case LILV_VALUE_INT: case LILV_VALUE_FLOAT: case LILV_VALUE_BOOL: val->str_val = lilv_strdup(str); break; } return val; } /** Create a new LilvNode from @a node, or return NULL if impossible */ LilvNode* lilv_node_new_from_node(LilvWorld* world, const SordNode* node) { LilvNode* result = NULL; SordNode* datatype_uri = NULL; LilvNodeType type = LILV_VALUE_STRING; switch (sord_node_get_type(node)) { case SORD_URI: result = malloc(sizeof(struct LilvNodeImpl)); result->world = (LilvWorld*)world; result->type = LILV_VALUE_URI; result->val.uri_val = sord_node_copy(node); result->str_val = (char*)sord_node_get_string(result->val.uri_val); break; case SORD_BLANK: result = malloc(sizeof(struct LilvNodeImpl)); result->world = (LilvWorld*)world; result->type = LILV_VALUE_BLANK; result->val.uri_val = sord_node_copy(node); result->str_val = (char*)sord_node_get_string(result->val.uri_val); break; case SORD_LITERAL: datatype_uri = sord_node_get_datatype(node); if (datatype_uri) { if (sord_node_equals(datatype_uri, world->xsd_boolean_node)) type = LILV_VALUE_BOOL; else if (sord_node_equals(datatype_uri, world->xsd_decimal_node) || sord_node_equals(datatype_uri, world->xsd_double_node)) type = LILV_VALUE_FLOAT; else if (sord_node_equals(datatype_uri, world->xsd_integer_node)) type = LILV_VALUE_INT; else LILV_ERRORF("Unknown datatype `%s'\n", sord_node_get_string(datatype_uri)); } result = lilv_node_new(world, type, (const char*)sord_node_get_string(node)); switch (result->type) { case LILV_VALUE_INT: case LILV_VALUE_FLOAT: case LILV_VALUE_BOOL: lilv_node_set_numerics_from_string(result); default: break; } break; default: assert(false); } return result; } LILV_API LilvNode* lilv_new_uri(LilvWorld* world, const char* uri) { return lilv_node_new(world, LILV_VALUE_URI, uri); } LILV_API LilvNode* lilv_new_string(LilvWorld* world, const char* str) { return lilv_node_new(world, LILV_VALUE_STRING, str); } LILV_API LilvNode* lilv_new_int(LilvWorld* world, int val) { char str[32]; snprintf(str, sizeof(str), "%d", val); LilvNode* ret = lilv_node_new(world, LILV_VALUE_INT, str); ret->val.int_val = val; return ret; } LILV_API LilvNode* lilv_new_float(LilvWorld* world, float val) { char str[32]; snprintf(str, sizeof(str), "%f", val); LilvNode* ret = lilv_node_new(world, LILV_VALUE_FLOAT, str); ret->val.float_val = val; return ret; } LILV_API LilvNode* lilv_new_bool(LilvWorld* world, bool val) { LilvNode* ret = lilv_node_new(world, LILV_VALUE_BOOL, val ? "true" : "false"); ret->val.bool_val = val; return ret; } LILV_API LilvNode* lilv_node_duplicate(const LilvNode* val) { if (val == NULL) return NULL; LilvNode* result = malloc(sizeof(struct LilvNodeImpl)); result->world = val->world; result->type = val->type; switch (val->type) { case LILV_VALUE_URI: case LILV_VALUE_BLANK: result->val.uri_val = sord_node_copy(val->val.uri_val); result->str_val = (char*)sord_node_get_string(result->val.uri_val); break; default: result->str_val = lilv_strdup(val->str_val); result->val = val->val; } return result; } LILV_API void lilv_node_free(LilvNode* val) { if (val) { switch (val->type) { case LILV_VALUE_URI: case LILV_VALUE_BLANK: sord_node_free(val->world->world, val->val.uri_val); break; default: free(val->str_val); } free(val); } } LILV_API bool lilv_node_equals(const LilvNode* value, const LilvNode* other) { if (value == NULL && other == NULL) return true; else if (value == NULL || other == NULL) return false; else if (value->type != other->type) return false; switch (value->type) { case LILV_VALUE_URI: return sord_node_equals(value->val.uri_val, other->val.uri_val); case LILV_VALUE_BLANK: case LILV_VALUE_STRING: return !strcmp(value->str_val, other->str_val); case LILV_VALUE_INT: return (value->val.int_val == other->val.int_val); case LILV_VALUE_FLOAT: return (value->val.float_val == other->val.float_val); case LILV_VALUE_BOOL: return (value->val.bool_val == other->val.bool_val); } return false; /* shouldn't get here */ } LILV_API char* lilv_node_get_turtle_token(const LilvNode* value) { size_t len = 0; char* result = NULL; char* locale = NULL; switch (value->type) { case LILV_VALUE_URI: len = strlen(value->str_val) + 3; result = calloc(len, 1); snprintf(result, len, "<%s>", value->str_val); break; case LILV_VALUE_BLANK: len = strlen(value->str_val) + 3; result = calloc(len, 1); snprintf(result, len, "_:%s", value->str_val); break; case LILV_VALUE_STRING: case LILV_VALUE_BOOL: result = lilv_strdup(value->str_val); break; case LILV_VALUE_INT: // INT64_MAX is 9223372036854775807 (19 digits) + 1 for sign // FIXME: locale kludge, need a locale independent snprintf locale = lilv_strdup(setlocale(LC_NUMERIC, NULL)); len = 20; result = calloc(len, 1); setlocale(LC_NUMERIC, "POSIX"); snprintf(result, len, "%d", value->val.int_val); setlocale(LC_NUMERIC, locale); break; case LILV_VALUE_FLOAT: // FIXME: locale kludge, need a locale independent snprintf locale = lilv_strdup(setlocale(LC_NUMERIC, NULL)); len = 20; // FIXME: proper maximum value? result = calloc(len, 1); setlocale(LC_NUMERIC, "POSIX"); snprintf(result, len, "%f", value->val.float_val); setlocale(LC_NUMERIC, locale); break; } free(locale); return result; } LILV_API bool lilv_node_is_uri(const LilvNode* value) { return (value && value->type == LILV_VALUE_URI); } LILV_API const char* lilv_node_as_uri(const LilvNode* value) { assert(lilv_node_is_uri(value)); return value->str_val; } const SordNode* lilv_node_as_node(const LilvNode* value) { assert(lilv_node_is_uri(value)); return value->val.uri_val; } LILV_API bool lilv_node_is_blank(const LilvNode* value) { return (value && value->type == LILV_VALUE_BLANK); } LILV_API const char* lilv_node_as_blank(const LilvNode* value) { assert(lilv_node_is_blank(value)); return value->str_val; } LILV_API bool lilv_node_is_literal(const LilvNode* value) { if (!value) return false; switch (value->type) { case LILV_VALUE_STRING: case LILV_VALUE_INT: case LILV_VALUE_FLOAT: return true; default: return false; } } LILV_API bool lilv_node_is_string(const LilvNode* value) { return (value && value->type == LILV_VALUE_STRING); } LILV_API const char* lilv_node_as_string(const LilvNode* value) { return value->str_val; } LILV_API bool lilv_node_is_int(const LilvNode* value) { return (value && value->type == LILV_VALUE_INT); } LILV_API int lilv_node_as_int(const LilvNode* value) { assert(value); assert(lilv_node_is_int(value)); return value->val.int_val; } LILV_API bool lilv_node_is_float(const LilvNode* value) { return (value && value->type == LILV_VALUE_FLOAT); } LILV_API float lilv_node_as_float(const LilvNode* value) { assert(lilv_node_is_float(value) || lilv_node_is_int(value)); if (lilv_node_is_float(value)) return value->val.float_val; else // lilv_node_is_int(value) return (float)value->val.int_val; } LILV_API bool lilv_node_is_bool(const LilvNode* value) { return (value && value->type == LILV_VALUE_BOOL); } LILV_API bool lilv_node_as_bool(const LilvNode* value) { assert(value); assert(lilv_node_is_bool(value)); return value->val.bool_val; }