| import galois | |
| import numpy as np | |
| MOD = 7514777789 | |
| points = [] | |
| for line in open('/mnt/user/myang/LLaVA-2/my_code/encoded.txt', 'r').read().strip().split('\n'): | |
| x, y = line.split(' ') | |
| points.append((int(x), int(y))) | |
| GF = galois.GF(MOD) | |
| print(len(points)) | |
| matrix = [] | |
| solution = [] | |
| count = 0 | |
| for point in points: | |
| x, y = point | |
| solution.append(GF(y % MOD)) | |
| #print("appended") | |
| row = [] | |
| for i in range(3): | |
| row.append(GF((x ** i) % MOD)) | |
| for i in range(3, len(points)): | |
| row.append(GF(0)) | |
| matrix.append(GF(row)) | |
| open('/mnt/user/myang/LLaVA-2/my_code/output.bmp', 'wb').write(bytearray(np.linalg.solve(GF(matrix), GF(solution)).tolist()[:-1])) | |