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https://github.com/OpenFusionProject/OpenFusion.git
synced 2024-11-25 22:40:16 +00:00
Move lerp to td init, add variable gap size
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6a78a301c9
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@ -52,11 +52,7 @@ void TableData::init() {
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nlohmann::json pathDataSkyway = pathData["skyway"];
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for (nlohmann::json::iterator skywayPath = pathDataSkyway.begin(); skywayPath != pathDataSkyway.end(); skywayPath++) {
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std::vector<WarpLocation> points;
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nlohmann::json pathPoints = skywayPath.value()["points"];
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for (nlohmann::json::iterator point = pathPoints.begin(); point != pathPoints.end(); point++)
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points.push_back({point.value()["iX"], point.value()["iY"], point.value()["iZ"] });
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TransportManager::SkywayPaths[skywayPath.value()["iRouteID"]] = points;
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constructPath(skywayPath);
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}
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std::cout << "[INFO] Loaded " << TransportManager::SkywayPaths.size() << " skyway paths" << std::endl;
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@ -235,3 +231,29 @@ int TableData::getItemType(int itemSet) {
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}
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return overriden;
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}
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void TableData::constructPath(nlohmann::json::iterator pathData) {
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// Interpolate
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nlohmann::json pathPoints = pathData.value()["points"];
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std::queue<WarpLocation> points;
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nlohmann::json::iterator point = pathPoints.begin();
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WarpLocation last = { point.value()["iX"] , point.value()["iY"] , point.value()["iZ"] }; // start pos
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// use some for loop trickery
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for (point++; point != pathPoints.end(); point++) {
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WarpLocation coords = { point.value()["iX"] , point.value()["iY"] , point.value()["iZ"] };
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// avoiding pow here
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int distanceBetween = sqrt((last.x - coords.x) * (last.x - coords.x) + (last.y - coords.y) * (last.y - coords.y) + (last.z - coords.z) * (last.z - coords.z));
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int lerps = distanceBetween / (int)pathData.value()["iMaxGapSize"]; // integer division to ensure a whole number
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for (int i = 0; i < lerps; i++) {
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WarpLocation lerp;
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float frac = (i + 1) * 1.0f / (lerps + 1);
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lerp.x = (last.x * (1.0f - frac)) + (coords.x * frac);
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lerp.y = (last.y * (1.0f - frac)) + (coords.y * frac);
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lerp.z = (last.z * (1.0f - frac)) + (coords.z * frac);
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points.push(lerp); // add lerp'd point to the queue
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}
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points.push(coords);
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last = coords; // update start pos
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}
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TransportManager::SkywayPaths[pathData.value()["iRouteID"]] = points;
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}
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@ -1,9 +1,12 @@
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#pragma once
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#include <map>
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#include "contrib/JSON.hpp"
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namespace TableData {
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void init();
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void cleanup();
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int getItemType(int);
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void constructPath(nlohmann::json::iterator);
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}
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@ -7,7 +7,7 @@
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std::map<int32_t, TransportRoute> TransportManager::Routes;
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std::map<int32_t, TransportLocation> TransportManager::Locations;
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std::map<int32_t, std::vector<WarpLocation>> TransportManager::SkywayPaths;
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std::map<int32_t, std::queue<WarpLocation>> TransportManager::SkywayPaths;
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std::unordered_map<CNSocket*, std::queue<WarpLocation>> TransportManager::SkywayQueue;
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void TransportManager::init() {
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@ -118,7 +118,7 @@ void TransportManager::transportWarpHandler(CNSocket* sock, CNPacketData* data)
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TransportLocation target;
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PlayerView& plrv = PlayerManager::players[sock];
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std::vector<WarpLocation>* points = nullptr;
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std::queue<WarpLocation>* points = nullptr;
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switch (route.type)
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{
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case 1: // S.C.A.M.P.E.R.
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@ -153,37 +153,13 @@ void TransportManager::transportWarpHandler(CNSocket* sock, CNPacketData* data)
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resp.iZ = plr->z;
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sock->sendPacket((void*)&resp, P_FE2CL_REP_PC_WARP_USE_TRANSPORTATION_SUCC, sizeof(sP_FE2CL_REP_PC_WARP_USE_TRANSPORTATION_SUCC));
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/*
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* Not strictly necessary since there isn't a valid SCAMPER that puts you in the
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* same map tile you were already in, but we might as well force an NPC reload.
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*/
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PlayerView& plrv = PlayerManager::players[sock];
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PlayerManager::removePlayerFromChunks(plrv.currentChunks, sock);
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plrv.currentChunks.clear();
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plrv.chunkPos = std::make_pair<int, int>(0, 0);
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if (points == nullptr) // no skyway path set
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return;
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// Interpolate
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std::queue<WarpLocation> queue;
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WarpLocation last = { plr->x, plr->y, plr->z }; // start pos
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for (std::vector<WarpLocation>::iterator point = points->begin(); point != points->end(); point++) {
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// avoiding pow here
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int distanceBetween = sqrt((last.x - point->x) * (last.x - point->x) + (last.y - point->y) * (last.y - point->y) + (last.z - point->z) * (last.z - point->z));
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int lerps = distanceBetween / (int)LERP_GAP; // integer division to ensure a whole number
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for (int i = 0; i < lerps; i++) {
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WarpLocation lerp;
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float frac = (i + 1) * 1.0f / (lerps + 1);
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lerp.x = (last.x * (1.0f - frac)) + (point->x * frac);
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lerp.y = (last.y * (1.0f - frac)) + (point->y * frac);
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lerp.z = (last.z * (1.0f - frac)) + (point->z * frac);
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queue.push(lerp); // add lerp'd point to the queue
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}
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queue.push(*point);
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last = { point->x, point->y, point->z }; // update start pos
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}
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SkywayQueue[sock] = queue;
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if (points != nullptr) // check if skyway path set
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SkywayQueue[sock] = *points;
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}
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void TransportManager::tickSkywaySystem(CNServer* serv, time_t currTime) {
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@ -5,8 +5,6 @@
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#include <unordered_map>
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#define LERP_GAP 3000
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struct WarpLocation;
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struct TransportRoute {
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@ -20,7 +18,7 @@ struct TransportLocation {
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namespace TransportManager {
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extern std::map<int32_t, TransportRoute> Routes;
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extern std::map<int32_t, TransportLocation> Locations;
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extern std::map<int32_t, std::vector<WarpLocation>> SkywayPaths;
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extern std::map<int32_t, std::queue<WarpLocation>> SkywayPaths;
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extern std::unordered_map<CNSocket*, std::queue<WarpLocation>> SkywayQueue;
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void init();
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