/***************************************************************************** * Copyright (c) 2014-2020 OpenRCT2 developers * * For a complete list of all authors, please refer to contributors.md * Interested in contributing? Visit https://github.com/OpenRCT2/OpenRCT2 * * OpenRCT2 is licensed under the GNU General Public License version 3. *****************************************************************************/ #include "ObjectList.h" #include "../Context.h" #include "../Game.h" #include "../object/Object.h" #include "../util/SawyerCoding.h" #include "../util/Util.h" #include "ObjectManager.h" #include "ObjectRepository.h" #include #include #include // 98DA00 // clang-format off int32_t object_entry_group_counts[] = { MAX_RIDE_OBJECTS, // rides MAX_SMALL_SCENERY_OBJECTS, // small scenery MAX_LARGE_SCENERY_OBJECTS, // large scenery MAX_WALL_SCENERY_OBJECTS, // walls MAX_BANNER_OBJECTS, // banners MAX_PATH_OBJECTS, // paths MAX_PATH_ADDITION_OBJECTS, // path bits MAX_SCENERY_GROUP_OBJECTS, // scenery sets MAX_PARK_ENTRANCE_OBJECTS, // park entrance MAX_WATER_OBJECTS, // water MAX_SCENARIO_TEXT_OBJECTS, // scenario text MAX_TERRAIN_SURFACE_OBJECTS, MAX_TERRAIN_EDGE_OBJECTS, MAX_STATION_OBJECTS, MAX_MUSIC_OBJECTS, MAX_FOOTPATH_SURFACE_OBJECTS, MAX_FOOTPATH_RAILINGS_OBJECTS, }; static_assert(std::size(object_entry_group_counts) == EnumValue(ObjectType::Count)); // 98DA2C int32_t object_entry_group_encoding[] = { CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_RLE, CHUNK_ENCODING_ROTATE }; // clang-format on bool object_entry_is_empty(const rct_object_entry* entry) { uint64_t a, b; std::memcpy(&a, reinterpret_cast(entry), 8); std::memcpy(&b, reinterpret_cast(entry) + 8, 8); if (a == 0xFFFFFFFFFFFFFFFF && b == 0xFFFFFFFFFFFFFFFF) return true; if (a == 0 && b == 0) return true; return false; } /** * * rct2: 0x006AB344 */ void object_create_identifier_name(char* string_buffer, size_t size, const rct_object_entry* object) { snprintf(string_buffer, size, "%.8s/%4X%4X", object->name, object->flags, object->checksum); } /** * * rct2: 0x006A9DA2 * bl = entry_index * ecx = entry_type */ bool find_object_in_entry_group(const rct_object_entry* entry, ObjectType* entry_type, ObjectEntryIndex* entryIndex) { ObjectType objectType = entry->GetType(); if (objectType >= ObjectType::Count) { return false; } auto& objectMgr = OpenRCT2::GetContext()->GetObjectManager(); auto maxObjects = object_entry_group_counts[EnumValue(objectType)]; for (int32_t i = 0; i < maxObjects; i++) { auto loadedObj = objectMgr.GetLoadedObject(objectType, i); if (loadedObj != nullptr) { auto thisEntry = object_entry_get_object(objectType, i)->GetObjectEntry(); if (object_entry_compare(thisEntry, entry)) { *entry_type = objectType; *entryIndex = i; return true; } } } return false; } void get_type_entry_index(size_t index, ObjectType* outObjectType, ObjectEntryIndex* outEntryIndex) { uint8_t objectType = EnumValue(ObjectType::Ride); for (size_t groupCount : object_entry_group_counts) { if (index >= groupCount) { index -= groupCount; objectType++; } else { break; } } if (outObjectType != nullptr) *outObjectType = static_cast(objectType); if (outEntryIndex != nullptr) *outEntryIndex = static_cast(index); } void object_entry_get_name_fixed(utf8* buffer, size_t bufferSize, const rct_object_entry* entry) { bufferSize = std::min(static_cast(DAT_NAME_LENGTH) + 1, bufferSize); std::memcpy(buffer, entry->name, bufferSize - 1); buffer[bufferSize - 1] = 0; } void* object_entry_get_chunk(ObjectType objectType, ObjectEntryIndex index) { auto& objectMgr = OpenRCT2::GetContext()->GetObjectManager(); auto* object = objectMgr.GetLoadedObject(objectType, index); if (object != nullptr) { return object->GetLegacyData(); } return nullptr; } const Object* object_entry_get_object(ObjectType objectType, ObjectEntryIndex index) { auto& objectMgr = OpenRCT2::GetContext()->GetObjectManager(); return objectMgr.GetLoadedObject(objectType, index); }