forked from Mirrorlandia_minetest/minetest
master #7
@ -3027,6 +3027,9 @@ void Game::handleClientEvent_HudChange(ClientEvent *event, CameraOrientation *ca
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CASE_SET(HUD_STAT_TEXT2, text2, sdata);
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CASE_SET(HUD_STAT_STYLE, style, data);
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case HudElementStat_END:
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break;
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}
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#undef CASE_SET
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@ -70,7 +70,7 @@ enum HudElementType {
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HUD_ELEM_MINIMAP = 7
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};
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enum HudElementStat {
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enum HudElementStat : u8 {
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HUD_STAT_POS = 0,
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HUD_STAT_NAME,
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HUD_STAT_SCALE,
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@ -85,6 +85,7 @@ enum HudElementStat {
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HUD_STAT_Z_INDEX,
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HUD_STAT_TEXT2,
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HUD_STAT_STYLE,
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HudElementStat_END // Dummy for validity check
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};
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enum HudCompassDir {
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@ -198,7 +198,11 @@ void ItemDefinition::deSerialize(std::istream &is, u16 protocol_version)
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if (version < 6)
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throw SerializationError("unsupported ItemDefinition version");
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type = (enum ItemType)readU8(is);
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type = static_cast<ItemType>(readU8(is));
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if (type >= ItemType_END) {
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type = ITEM_NONE;
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}
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name = deSerializeString16(is);
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description = deSerializeString16(is);
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inventory_image = deSerializeString16(is);
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@ -41,12 +41,13 @@ struct ItemStack;
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Base item definition
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*/
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enum ItemType
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enum ItemType : u8
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{
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ITEM_NONE,
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ITEM_NODE,
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ITEM_CRAFT,
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ITEM_TOOL,
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ItemType_END // Dummy for validity check
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};
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struct ItemDefinition
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@ -604,6 +604,8 @@ void ServerMap::transformLiquids(std::map<v3s16, MapBlock*> &modified_blocks,
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floodable_node = n0.getContent();
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liquid_kind = CONTENT_AIR;
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break;
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case LiquidType_END:
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break;
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}
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/*
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@ -696,6 +698,8 @@ void ServerMap::transformLiquids(std::map<v3s16, MapBlock*> &modified_blocks,
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flowing_down = true;
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}
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break;
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case LiquidType_END:
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break;
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}
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}
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@ -848,6 +852,8 @@ void ServerMap::transformLiquids(std::map<v3s16, MapBlock*> &modified_blocks,
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for (u16 i = 0; i < num_flows; i++)
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m_transforming_liquid.push_back(flows[i].p);
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break;
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case LiquidType_END:
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break;
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}
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}
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//infostream<<"Map::transformLiquids(): loopcount="<<loopcount<<std::endl;
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@ -1230,8 +1230,13 @@ void Client::handleCommand_HudChange(NetworkPacket* pkt)
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*pkt >> server_id >> stat;
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// Do nothing if stat is not known
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if (stat >= HudElementStat_END) {
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return;
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}
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// Keep in sync with:server.cpp -> SendHUDChange
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switch ((HudElementStat)stat) {
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switch (static_cast<HudElementStat>(stat)) {
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case HUD_STAT_POS:
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case HUD_STAT_SCALE:
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case HUD_STAT_ALIGN:
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124
src/nodedef.cpp
124
src/nodedef.cpp
@ -126,57 +126,62 @@ void NodeBox::deSerialize(std::istream &is)
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reset();
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type = (enum NodeBoxType)readU8(is);
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if(type == NODEBOX_FIXED || type == NODEBOX_LEVELED)
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{
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u16 fixed_count = readU16(is);
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while(fixed_count--)
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{
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aabb3f box;
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box.MinEdge = readV3F32(is);
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box.MaxEdge = readV3F32(is);
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fixed.push_back(box);
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type = static_cast<NodeBoxType>(readU8(is));
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switch (type) {
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case NODEBOX_REGULAR:
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break;
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case NODEBOX_FIXED:
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case NODEBOX_LEVELED: {
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u16 fixed_count = readU16(is);
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while(fixed_count--) {
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aabb3f box;
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box.MinEdge = readV3F32(is);
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box.MaxEdge = readV3F32(is);
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fixed.push_back(box);
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}
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break;
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}
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}
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else if(type == NODEBOX_WALLMOUNTED)
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{
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wall_top.MinEdge = readV3F32(is);
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wall_top.MaxEdge = readV3F32(is);
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wall_bottom.MinEdge = readV3F32(is);
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wall_bottom.MaxEdge = readV3F32(is);
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wall_side.MinEdge = readV3F32(is);
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wall_side.MaxEdge = readV3F32(is);
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}
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else if (type == NODEBOX_CONNECTED)
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{
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case NODEBOX_WALLMOUNTED:
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wall_top.MinEdge = readV3F32(is);
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wall_top.MaxEdge = readV3F32(is);
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wall_bottom.MinEdge = readV3F32(is);
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wall_bottom.MaxEdge = readV3F32(is);
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wall_side.MinEdge = readV3F32(is);
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wall_side.MaxEdge = readV3F32(is);
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break;
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case NODEBOX_CONNECTED: {
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#define READBOXES(box) { \
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count = readU16(is); \
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(box).reserve(count); \
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while (count--) { \
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v3f min = readV3F32(is); \
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v3f max = readV3F32(is); \
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(box).emplace_back(min, max); }; }
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count = readU16(is); \
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(box).reserve(count); \
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while (count--) { \
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v3f min = readV3F32(is); \
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v3f max = readV3F32(is); \
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(box).emplace_back(min, max); }; }
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u16 count;
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u16 count;
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auto &c = getConnected();
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auto &c = getConnected();
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READBOXES(fixed);
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READBOXES(c.connect_top);
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READBOXES(c.connect_bottom);
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READBOXES(c.connect_front);
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READBOXES(c.connect_left);
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READBOXES(c.connect_back);
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READBOXES(c.connect_right);
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READBOXES(c.disconnected_top);
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READBOXES(c.disconnected_bottom);
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READBOXES(c.disconnected_front);
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READBOXES(c.disconnected_left);
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READBOXES(c.disconnected_back);
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READBOXES(c.disconnected_right);
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READBOXES(c.disconnected);
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READBOXES(c.disconnected_sides);
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READBOXES(fixed);
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READBOXES(c.connect_top);
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READBOXES(c.connect_bottom);
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READBOXES(c.connect_front);
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READBOXES(c.connect_left);
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READBOXES(c.connect_back);
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READBOXES(c.connect_right);
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READBOXES(c.disconnected_top);
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READBOXES(c.disconnected_bottom);
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READBOXES(c.disconnected_front);
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READBOXES(c.disconnected_left);
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READBOXES(c.disconnected_back);
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READBOXES(c.disconnected_right);
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READBOXES(c.disconnected);
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READBOXES(c.disconnected_sides);
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break;
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}
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default:
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type = NODEBOX_REGULAR;
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break;
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}
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}
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@ -266,10 +271,13 @@ void TileDef::deSerialize(std::istream &is, NodeDrawType drawtype, u16 protocol_
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color.setBlue(readU8(is));
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}
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scale = has_scale ? readU8(is) : 0;
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if (has_align_style)
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if (has_align_style) {
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align_style = static_cast<AlignStyle>(readU8(is));
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else
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if (align_style >= AlignStyle_END)
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align_style = ALIGN_STYLE_NODE;
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} else {
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align_style = ALIGN_STYLE_NODE;
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}
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}
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void TextureSettings::readSettings()
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@ -559,11 +567,19 @@ void ContentFeatures::deSerialize(std::istream &is, u16 protocol_version)
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int value = readS16(is);
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groups[name] = value;
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}
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param_type = (enum ContentParamType) readU8(is);
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param_type_2 = (enum ContentParamType2) readU8(is);
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param_type = static_cast<ContentParamType>(readU8(is));
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if (param_type >= ContentParamType_END)
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param_type = CPT_NONE;
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param_type_2 = static_cast<ContentParamType2>(readU8(is));
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if (param_type_2 >= ContentParamType2_END)
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param_type_2 = CPT2_NONE;
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// visual
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drawtype = (enum NodeDrawType) readU8(is);
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drawtype = static_cast<NodeDrawType>(readU8(is));
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if (drawtype >= NodeDrawType_END)
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drawtype = NDT_NORMAL;
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mesh = deSerializeString16(is);
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visual_scale = readF32(is);
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if (readU8(is) != 6)
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@ -609,7 +625,9 @@ void ContentFeatures::deSerialize(std::istream &is, u16 protocol_version)
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damage_per_second = readU32(is);
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// liquid
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liquid_type = (enum LiquidType) readU8(is);
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liquid_type = static_cast<LiquidType>(readU8(is));
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if (liquid_type >= LiquidType_END)
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liquid_type = LIQUID_NONE;
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liquid_move_physics = liquid_type != LIQUID_NONE;
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liquid_alternative_flowing = deSerializeString16(is);
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liquid_alternative_source = deSerializeString16(is);
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@ -646,7 +664,7 @@ void ContentFeatures::deSerialize(std::istream &is, u16 protocol_version)
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if (is.eof())
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throw SerializationError("");
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alpha = static_cast<enum AlphaMode>(tmp);
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if (alpha == ALPHAMODE_LEGACY_COMPAT)
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if (alpha >= AlphaMode_END || alpha == ALPHAMODE_LEGACY_COMPAT)
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alpha = ALPHAMODE_OPAQUE;
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tmp = readU8(is);
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@ -45,13 +45,14 @@ class NodeResolver;
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class TestSchematic;
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#endif
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enum ContentParamType
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enum ContentParamType : u8
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{
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CPT_NONE,
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CPT_LIGHT,
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ContentParamType_END // Dummy for validity check
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};
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enum ContentParamType2
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enum ContentParamType2 : u8
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{
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CPT2_NONE,
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// Need 8-bit param2
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@ -82,16 +83,19 @@ enum ContentParamType2
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CPT2_4DIR,
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// 6 bits of palette index, then 4dir
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CPT2_COLORED_4DIR,
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// Dummy for validity check
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ContentParamType2_END
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};
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enum LiquidType
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enum LiquidType : u8
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{
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LIQUID_NONE,
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LIQUID_FLOWING,
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LIQUID_SOURCE,
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LiquidType_END // Dummy for validity check
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};
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enum NodeBoxType
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enum NodeBoxType : u8
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{
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NODEBOX_REGULAR, // Regular block; allows buildable_to
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NODEBOX_FIXED, // Static separately defined box(es)
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@ -189,7 +193,7 @@ public:
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void readSettings();
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};
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enum NodeDrawType
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enum NodeDrawType : u8
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{
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// A basic solid block
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NDT_NORMAL,
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@ -233,6 +237,8 @@ enum NodeDrawType
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NDT_MESH,
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// Combined plantlike-on-solid
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NDT_PLANTLIKE_ROOTED,
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// Dummy for validity check
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NodeDrawType_END
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};
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// Mesh options for NDT_PLANTLIKE with CPT2_MESHOPTIONS
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@ -252,6 +258,7 @@ enum AlignStyle : u8 {
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ALIGN_STYLE_NODE,
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ALIGN_STYLE_WORLD,
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ALIGN_STYLE_USER_DEFINED,
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AlignStyle_END // Dummy for validity check
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};
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enum AlphaMode : u8 {
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@ -259,6 +266,7 @@ enum AlphaMode : u8 {
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ALPHAMODE_CLIP,
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ALPHAMODE_OPAQUE,
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ALPHAMODE_LEGACY_COMPAT, /* only sent by old servers, equals OPAQUE */
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AlphaMode_END // Dummy for validity check
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};
|
||||
|
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||||
|
@ -84,6 +84,8 @@ T TweenedParameter<T>::blend(float fac) const
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fac *= myrand_range(0.7f, 1.0f);
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}
|
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}
|
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case TweenStyle::TweenStyle_END:
|
||||
break;
|
||||
}
|
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if (fac>1.f)
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fac = 1.f;
|
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@ -110,6 +112,8 @@ template<typename T>
|
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void TweenedParameter<T>::deSerialize(std::istream &is)
|
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{
|
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style = static_cast<TweenStyle>(readU8(is));
|
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if (style >= TweenStyle::TweenStyle_END)
|
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style = TweenStyle::fwd;
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reps = readU16(is);
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beginning = readF32(is);
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start.deSerialize(is);
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|
@ -202,7 +202,8 @@ namespace ParticleParamTypes
|
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}
|
||||
|
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// Animation styles (fwd is normal, linear interpolation)
|
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enum class TweenStyle : u8 { fwd, rev, pulse, flicker };
|
||||
// TweenStyle_END is a dummy value for validity check
|
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enum class TweenStyle : u8 { fwd, rev, pulse, flicker, TweenStyle_END};
|
||||
|
||||
// "Tweened" pretty much means "animated" in this context
|
||||
template <typename T>
|
||||
|
@ -2104,7 +2104,7 @@ bool read_hud_change(lua_State *L, HudElementStat &stat, HudElement *elem, void
|
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return false;
|
||||
}
|
||||
|
||||
stat = (HudElementStat)statint;
|
||||
stat = static_cast<HudElementStat>(statint);
|
||||
}
|
||||
|
||||
switch (stat) {
|
||||
@ -2166,6 +2166,9 @@ bool read_hud_change(lua_State *L, HudElementStat &stat, HudElement *elem, void
|
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elem->style = luaL_checknumber(L, 4);
|
||||
*value = &elem->style;
|
||||
break;
|
||||
case HudElementStat_END:
|
||||
return false;
|
||||
break;
|
||||
}
|
||||
|
||||
return true;
|
||||
|
@ -41,16 +41,23 @@ void TileAnimationParams::serialize(std::ostream &os, u16 protocol_ver) const
|
||||
|
||||
void TileAnimationParams::deSerialize(std::istream &is, u16 protocol_ver)
|
||||
{
|
||||
type = (TileAnimationType) readU8(is);
|
||||
|
||||
if (type == TAT_VERTICAL_FRAMES) {
|
||||
vertical_frames.aspect_w = readU16(is);
|
||||
vertical_frames.aspect_h = readU16(is);
|
||||
vertical_frames.length = readF32(is);
|
||||
} else if (type == TAT_SHEET_2D) {
|
||||
sheet_2d.frames_w = readU8(is);
|
||||
sheet_2d.frames_h = readU8(is);
|
||||
sheet_2d.frame_length = readF32(is);
|
||||
type = static_cast<TileAnimationType>(readU8(is));
|
||||
switch(type) {
|
||||
case TAT_NONE:
|
||||
break;
|
||||
case TAT_VERTICAL_FRAMES:
|
||||
vertical_frames.aspect_w = readU16(is);
|
||||
vertical_frames.aspect_h = readU16(is);
|
||||
vertical_frames.length = readF32(is);
|
||||
break;
|
||||
case TAT_SHEET_2D:
|
||||
sheet_2d.frames_w = readU8(is);
|
||||
sheet_2d.frames_h = readU8(is);
|
||||
sheet_2d.frame_length = readF32(is);
|
||||
break;
|
||||
default:
|
||||
type = TAT_NONE;
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -22,7 +22,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
|
||||
#include <iostream>
|
||||
#include "irrlichttypes_bloated.h"
|
||||
|
||||
enum TileAnimationType
|
||||
enum TileAnimationType : u8
|
||||
{
|
||||
TAT_NONE = 0,
|
||||
TAT_VERTICAL_FRAMES = 1,
|
||||
|
@ -92,7 +92,7 @@ void PointedThing::deSerialize(std::istream &is)
|
||||
int version = readU8(is);
|
||||
if (version != 0) throw SerializationError(
|
||||
"unsupported PointedThing version");
|
||||
type = (PointedThingType) readU8(is);
|
||||
type = static_cast<PointedThingType>(readU8(is));
|
||||
switch (type) {
|
||||
case POINTEDTHING_NOTHING:
|
||||
break;
|
||||
|
@ -24,7 +24,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
|
||||
#include <iostream>
|
||||
#include <string>
|
||||
|
||||
enum PointedThingType
|
||||
enum PointedThingType : u8
|
||||
{
|
||||
POINTEDTHING_NOTHING,
|
||||
POINTEDTHING_NODE,
|
||||
|
Loading…
Reference in New Issue
Block a user