#include #include #include #include #include #include #include "aes/aes.h" #include "utils.h" #include "sqlite.h" #include "gif.h" #include "image.h" jint JNI_OnLoad(JavaVM *vm, void *reserved) { JNIEnv *env = 0; srand(time(NULL)); if ((*vm)->GetEnv(vm, (void **) &env, JNI_VERSION_1_6) != JNI_OK) { return -1; } if (sqliteOnJNILoad(vm, reserved, env) == -1) { return -1; } if (imageOnJNILoad(vm, reserved, env) == -1) { return -1; } gifOnJNILoad(vm, reserved, env); return JNI_VERSION_1_6; } void JNI_OnUnload(JavaVM *vm, void *reserved) { gifOnJNIUnload(vm, reserved); } JNIEXPORT void Java_org_telegram_messenger_Utilities_aesIgeEncryption(JNIEnv *env, jclass class, jobject buffer, jbyteArray key, jbyteArray iv, jboolean encrypt, int offset, int length) { jbyte *what = (*env)->GetDirectBufferAddress(env, buffer) + offset; unsigned char *keyBuff = (unsigned char *)(*env)->GetByteArrayElements(env, key, NULL); unsigned char *ivBuff = (unsigned char *)(*env)->GetByteArrayElements(env, iv, NULL); AES_KEY akey; if (!encrypt) { AES_set_decrypt_key(keyBuff, 32 * 8, &akey); AES_ige_encrypt(what, what, length, &akey, ivBuff, AES_DECRYPT); } else { AES_set_encrypt_key(keyBuff, 32 * 8, &akey); AES_ige_encrypt(what, what, length, &akey, ivBuff, AES_ENCRYPT); } (*env)->ReleaseByteArrayElements(env, key, keyBuff, JNI_ABORT); (*env)->ReleaseByteArrayElements(env, iv, ivBuff, 0); } uint64_t gcd(uint64_t a, uint64_t b){ while(a != 0 && b != 0) { while((b & 1) == 0) b >>= 1; while((a & 1) == 0) a >>= 1; if(a > b) a -= b; else b -= a; } return b == 0 ? a : b; } JNIEXPORT jlong Java_org_telegram_messenger_Utilities_doPQNative(JNIEnv* env, jclass class, jlong _what) { uint64_t what = _what; int it = 0, i, j; uint64_t g = 0; for (i = 0; i < 3 || it < 1000; i++){ int q = ((lrand48() & 15) + 17) % what; uint64_t x = (long long)lrand48() % (what - 1) + 1, y = x; int lim = 1 << (i + 18), j; for(j = 1; j < lim; j++){ ++it; uint64_t a = x, b = x, c = q; while(b){ if(b & 1){ c += a; if(c >= what) c -= what; } a += a; if(a >= what) a -= what; b >>= 1; } x = c; uint64_t z = x < y ? what + x - y : x - y; g = gcd(z, what); if(g != 1) break; if(!(j & (j - 1))) y = x; } if(g > 1 && g < what) break; } return g; }