mirror of https://github.com/OpenRCT2/OpenRCT2.git
Copy new struct methods to TestPaint compat
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3eaea47689
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@ -184,16 +184,62 @@ int16_t get_height_marker_offset()
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return 0;
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}
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bool track_element_is_lift_hill(const rct_tile_element* trackElement)
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{
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return trackElement->type & 0x80;
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}
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bool is_csg_loaded()
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{
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return false;
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}
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uint8_t TrackElement::GetSeatRotation() const
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{
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return colour >> 4;
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}
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void TrackElement::SetSeatRotation(uint8_t newSeatRotation)
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{
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colour &= 0x0F;
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colour |= (newSeatRotation << 4);
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}
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bool TrackElement::IsTakingPhoto() const
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{
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return (sequence & MAP_ELEM_TRACK_SEQUENCE_TAKING_PHOTO_MASK) != 0;
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}
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void TrackElement::SetPhotoTimeout()
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{
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sequence &= MAP_ELEM_TRACK_SEQUENCE_SEQUENCE_MASK;
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sequence |= (3 << 4);
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}
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void TrackElement::DecrementPhotoTimeout()
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{
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// We should only touch the upper 4 bits, avoid underflow into the lower 4.
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if (sequence & MAP_ELEM_TRACK_SEQUENCE_TAKING_PHOTO_MASK)
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{
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sequence -= (1 << 4);
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}
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}
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uint16_t TrackElement::GetMazeEntry() const
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{
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return mazeEntry;
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}
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void TrackElement::SetMazeEntry(uint16_t newMazeEntry)
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{
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mazeEntry = newMazeEntry;
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}
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void TrackElement::MazeEntryAdd(uint16_t addVal)
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{
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mazeEntry |= addVal;
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}
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void TrackElement::MazeEntrySubtract(uint16_t subVal)
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{
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mazeEntry &= ~subVal;
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}
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uint8_t TrackElement::GetTrackType() const
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{
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return trackType;
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@ -215,6 +261,121 @@ void TrackElement::SetSequenceIndex(uint8_t newSequenceIndex)
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sequence |= (newSequenceIndex & MAP_ELEM_TRACK_SEQUENCE_SEQUENCE_MASK);
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}
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uint8_t TrackElement::GetStationIndex() const
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{
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return (sequence & MAP_ELEM_TRACK_SEQUENCE_STATION_INDEX_MASK) >> 4;
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}
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void TrackElement::SetStationIndex(uint8_t newStationIndex)
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{
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sequence &= ~MAP_ELEM_TRACK_SEQUENCE_STATION_INDEX_MASK;
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sequence |= (newStationIndex << 4);
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}
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uint8_t TrackElement::GetDoorAState() const
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{
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return (colour & TRACK_ELEMENT_DOOR_A_MASK) >> 2;
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}
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uint8_t TrackElement::GetDoorBState() const
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{
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return (colour & TRACK_ELEMENT_DOOR_B_MASK) >> 5;
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}
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uint8_t TrackElement::GetRideIndex() const
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{
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return rideIndex;
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}
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void TrackElement::SetRideIndex(uint8_t newRideIndex)
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{
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rideIndex = newRideIndex;
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}
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uint8_t TrackElement::GetColourScheme() const
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{
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return colour & 0x3;
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}
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void TrackElement::SetColourScheme(uint8_t newColourScheme)
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{
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colour &= ~0x3;
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colour |= (newColourScheme & 0x3);
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}
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bool TrackElement::HasCableLift() const
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{
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return colour & TRACK_ELEMENT_COLOUR_FLAG_CABLE_LIFT;
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}
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void TrackElement::SetHasCableLift(bool on)
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{
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colour &= ~TRACK_ELEMENT_COLOUR_FLAG_CABLE_LIFT;
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if (on)
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colour |= TRACK_ELEMENT_COLOUR_FLAG_CABLE_LIFT;
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}
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bool TrackElement::IsInverted() const
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{
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return colour & TRACK_ELEMENT_COLOUR_FLAG_INVERTED;
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}
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void TrackElement::SetInverted(bool inverted)
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{
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if (inverted)
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{
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colour |= TRACK_ELEMENT_COLOUR_FLAG_INVERTED;
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}
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else
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{
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colour &= ~TRACK_ELEMENT_COLOUR_FLAG_INVERTED;
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}
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}
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uint8_t TrackElement::GetBrakeBoosterSpeed() const
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{
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return (sequence >> 4) << 1;
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}
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void TrackElement::SetBrakeBoosterSpeed(uint8_t speed)
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{
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sequence &= ~0b11110000;
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sequence |= ((speed >> 1) << 4);
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}
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uint8_t TrackElement::HasGreenLight() const
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{
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return (sequence & MAP_ELEM_TRACK_SEQUENCE_GREEN_LIGHT) != 0;
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}
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void TrackElement::SetHasGreenLight(uint8_t greenLight)
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{
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sequence &= ~MAP_ELEM_TRACK_SEQUENCE_GREEN_LIGHT;
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if (greenLight)
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{
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sequence |= MAP_ELEM_TRACK_SEQUENCE_GREEN_LIGHT;
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}
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}
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bool TrackElement::HasChain() const
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{
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return type & TRACK_ELEMENT_TYPE_FLAG_CHAIN_LIFT;
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}
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void TrackElement::SetHasChain(bool on)
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{
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if (on)
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{
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type |= TRACK_ELEMENT_TYPE_FLAG_CHAIN_LIFT;
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}
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else
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{
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type &= ~TRACK_ELEMENT_TYPE_FLAG_CHAIN_LIFT;
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}
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}
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TileCoordsXYZD ride_get_entrance_location(const Ride* ride, const int32_t stationIndex)
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{
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return ride->entrances[stationIndex];
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