from stl import mesh import numpy as np import requests import math import time import json # Coordonnées GPS (latitude, longitude) du point dont vous souhaitez obtenir l'altitude latitudeStart = 44.903360 longitudeStart = 5.356751 deplacement_metres = 100 facteur = deplacement_metres lenX=10 lenY=10 import math test=[1430.0, 1369.85, 1298.29, 1229.3, 1175.09, 1138.52, 1124.26, 1105.4, 1095.02, 1082.01, 1422.49, 1349.6, 1284.16, 1210.23, 1150.72, 1114.83, 1097.72, 1091.05, 1078.23, 1069.26, 1414.12, 1336.12, 1270.67, 1190.59, 1125.19, 1096.12, 1082.26, 1073.76, 1063.9, 1058.02, 1402.96, 1340.04, 1267.52, 1164.27, 1101.05, 1080.91, 1072.28, 1064.41, 1056.36, 1051.67, 1381.24, 1321.08, 1247.24, 1137.52, 1083.51, 1074.58, 1067.2, 1054.67, 1048.43, 1047.06, 1355.6, 1297.31, 1215.26, 1115.71, 1084.07, 1077.54, 1059.52, 1047.86, 1044.04, 1043.31, 1326.47, 1265.13, 1183.72, 1107.97, 1083.95, 1067.03, 1054.31, 1044.21, 1041.29, 1041.12, 1296.84, 1233.47, 1162.75, 1111.98, 1088.34, 1069.63, 1055.8, 1045.91, 1042.01, 1040.87, 1272.49, 1214.92, 1160.39, 1117.79, 1086.36, 1067.9, 1057.78, 1048.49, 1043.65, 1041.59, 1261.53, 1207.49, 1164.9, 1121.47, 1088.72, 1073.59, 1062.01, 1057.08, 1055.04, 1056.71] """ latitude=latitudeStart for j in range (0,lenX): longitude=longitudeStart print(j,"/",lenX) for i in range (0,lenY): altitude = alt(latitude,longitude) # print(latitude,",",longitude) # print(altitude) longitude=longitudePlus(longitude,deplacement_metres) test.append(altitude) # time.sleep(0.1) latitude=latitudePlus(latitude,deplacement_metres) print(latitude,",",longitude) print(test) """ test = [nombre / facteur for nombre in test] mini=min(test)-1 test = [nombre - mini for nombre in test] vertices = np.zeros((lenX*lenY * 2,3) , dtype=float) y=0 for i in range (0,lenX): for j in range (0,lenY): vertices[y]= [i,j,0] vertices[y+1]= [i,j,test[i*lenY+j]] y=y+2 nb=(lenX*2-2) faces1 = np.zeros((nb, 3), dtype=int) y=0 for i in range(0,lenX*2-2,2): faces1[y] = [i,i+1 ,i+2] faces1[y+1] = [i+1 ,i+3,i+2] y=y+2 nb=lenY*2-2 faces2 = np.zeros((nb, 3), dtype=int) y=0 for i in range(0,lenX*2*lenY-lenY*2 ,lenX*2): faces2[y] = [i,i+1,i+lenX*2] faces2[y+1] = [i+1,i+lenX*2+1,i+lenX*2] y=y+2 nb=(lenX*2-2) Start3 = (lenX*2*lenY)-lenX*2 faces3 = np.zeros((nb, 3), dtype=int) y=0 for i in range(Start3,lenX*2-2+Start3,2): print(i) faces3[y] = [i,i+1 ,i+2] faces3[y+1] = [i+1,i+3 ,i+2] y=y+2 nb = lenY*2-2 Start4 = lenX*2-2 faces4 = np.zeros((nb, 3), dtype=int) y=0 for i in range(Start4,lenX*2*lenY-lenY*2+Start4,lenX*2): faces4[y] = [i,i+1,i+lenX*2] faces4[y+1] = [i+1,i+lenX*2+1,i+lenX*2] y=y+2 nb = 2 faces5 = np.zeros((nb,3), dtype=int) faces5[0] =[0,lenX*2-2,(lenX*2*lenY)-lenX*2] faces5[1] =[lenX*2-2,lenX*lenY*2-2,(lenX*2*lenY)-lenX*2] nb=lenX*lenY*2 faces6 = np.zeros((nb,3), dtype=int) y=0 for j in range(0,lenY-1): for i in range(lenX*2*j+1,lenX*2*j+lenX*2-1,2): faces6[y]=[i,i+2,lenX*2+i] faces6[y+1]=[i+2,lenX*2+i+2,lenX*2+i] y=y+2 faces=np.concatenate((faces1, faces2,faces3,faces4,faces5,faces6), axis=0) # Créez le maillage STL cube = mesh.Mesh(np.zeros(faces.shape[0], dtype=mesh.Mesh.dtype)) for i, f in enumerate(faces): for j in range(3): cube.vectors[i][j] = vertices[f[j], :] #Sauvegardez le cube au format STL cube.save('IGN.stl') #"""