forked from Green-Sky/tomato
Green Sky
b2ae9530a4
f1df709b87 feat: add ngc events 1b6c907235 refactor: Make event dispatch ordered by receive time. b7f9367f6f test: Upgrade cppcheck, fix some warnings. 766e62bc89 chore: Use `pkg_search_module` directly in cmake. 00ff078f91 cleanup: Use target_link_libraries directly in cmake. c58928cc89 chore: Add `IMPORTED_TARGET` to pkg-config packages. 895a6af122 cleanup: Remove NaCl support. 41dfb1c1c0 fix: unpack enum function names in event impl generator 447666d1a1 chore: Disable targets for cross-compilation. 572924e924 chore: Build a docker image with coverage info in it. 415cb78f5e cleanup: Some portability/warning fixes for Windows builds. 425216d9ec fix: Correct a use-after-free and fix some memory leaks. 4b1cfa3e08 refactor: Change all enum-like `#define` sequences into enums. d3c2704fa9 chore: Fix make_single_file to support core-only. 0ce46b644e refactor: Change the `TCP_PACKET_*` defines into an enum. 22cd38ad50 adopt event impl generation tool to #2392 f31ea1088a add the event impl generation tool 4e603bb613 refactor: Use `enum-from-int` rule from tokstyle. 19d8f180d6 chore: Update github actions `uses`. 6a895be0c7 test: Make esp32 build actually try to instantiate tox. 65d09c9bfb cleanup: Remove test net support. REVERT: e29e185c03 feat: add ngc events git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: f1df709b8792da4c0e946d826b11df77d565064d
234 lines
11 KiB
C
234 lines
11 KiB
C
#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sodium.h>
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#include "../testing/misc_tools.h"
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#include "../toxcore/ccompat.h"
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#include "../toxcore/crypto_core.h"
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#include "../toxcore/tox.h"
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#include "../toxencryptsave/toxencryptsave.h"
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#include "auto_test_support.h"
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#include "check_compat.h"
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static unsigned char test_salt[TOX_PASS_SALT_LENGTH] = {0xB1, 0xC2, 0x09, 0xEE, 0x50, 0x6C, 0xF0, 0x20, 0xC4, 0xD6, 0xEB, 0xC0, 0x44, 0x51, 0x3B, 0x60, 0x4B, 0x39, 0x4A, 0xCF, 0x09, 0x53, 0x4F, 0xEA, 0x08, 0x41, 0xFA, 0xCA, 0x66, 0xD2, 0x68, 0x7F};
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static unsigned char known_key[TOX_PASS_KEY_LENGTH] = {0x29, 0x36, 0x1c, 0x9e, 0x65, 0xbb, 0x46, 0x8b, 0xde, 0xa1, 0xac, 0xf, 0xd5, 0x11, 0x81, 0xc8, 0x29, 0x28, 0x17, 0x23, 0xa6, 0xc3, 0x6b, 0x77, 0x2e, 0xd7, 0xd3, 0x10, 0xeb, 0xd2, 0xf7, 0xc8};
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static const char *pw = "hunter2";
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static unsigned int pwlen = 7;
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static unsigned char known_key2[CRYPTO_SHARED_KEY_SIZE] = {0x7a, 0xfa, 0x95, 0x45, 0x36, 0x8a, 0xa2, 0x5c, 0x40, 0xfd, 0xc0, 0xe2, 0x35, 0x8, 0x7, 0x88, 0xfa, 0xf9, 0x37, 0x86, 0xeb, 0xff, 0x50, 0x4f, 0x3, 0xe2, 0xf6, 0xd9, 0xef, 0x9, 0x17, 0x1};
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// same as above, except standard opslimit instead of extra ops limit for test_known_kdf, and hash pw before kdf for compat
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/* cause I'm shameless */
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static void accept_friend_request(Tox *m, const uint8_t *public_key, const uint8_t *data, size_t length, void *userdata)
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{
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if (*((uint32_t *)userdata) != 974536) {
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return;
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}
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if (length == 7 && memcmp("Gentoo", data, 7) == 0) {
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tox_friend_add_norequest(m, public_key, nullptr);
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}
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}
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static void test_known_kdf(void)
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{
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unsigned char out[CRYPTO_SHARED_KEY_SIZE];
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int16_t res = crypto_pwhash_scryptsalsa208sha256(out,
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CRYPTO_SHARED_KEY_SIZE,
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pw,
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pwlen,
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test_salt,
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crypto_pwhash_scryptsalsa208sha256_OPSLIMIT_INTERACTIVE * 8,
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crypto_pwhash_scryptsalsa208sha256_MEMLIMIT_INTERACTIVE);
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ck_assert_msg(res != -1, "crypto function failed");
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ck_assert_msg(memcmp(out, known_key, CRYPTO_SHARED_KEY_SIZE) == 0, "derived key is wrong");
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}
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static void test_save_friend(void)
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{
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Tox *tox1 = tox_new_log(nullptr, nullptr, nullptr);
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Tox *tox2 = tox_new_log(nullptr, nullptr, nullptr);
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ck_assert_msg(tox1 || tox2, "Failed to create 2 tox instances");
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tox_callback_friend_request(tox2, accept_friend_request);
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uint8_t address[TOX_ADDRESS_SIZE];
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tox_self_get_address(tox2, address);
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uint32_t test = tox_friend_add(tox1, address, (const uint8_t *)"Gentoo", 7, nullptr);
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ck_assert_msg(test != UINT32_MAX, "Failed to add friend");
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size_t size = tox_get_savedata_size(tox1);
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uint8_t *data = (uint8_t *)malloc(size);
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ck_assert(data != nullptr);
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tox_get_savedata(tox1, data);
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size_t size2 = size + TOX_PASS_ENCRYPTION_EXTRA_LENGTH;
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uint8_t *enc_data = (uint8_t *)malloc(size2);
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ck_assert(enc_data != nullptr);
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Tox_Err_Encryption error1;
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bool ret = tox_pass_encrypt(data, size, (const uint8_t *)"correcthorsebatterystaple", 25, enc_data, &error1);
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ck_assert_msg(ret, "failed to encrypted save: %d", error1);
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ck_assert_msg(tox_is_data_encrypted(enc_data), "magic number missing");
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struct Tox_Options *options = tox_options_new(nullptr);
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ck_assert(options != nullptr);
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tox_options_set_savedata_type(options, TOX_SAVEDATA_TYPE_TOX_SAVE);
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tox_options_set_savedata_data(options, enc_data, size2);
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Tox_Err_New err2;
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Tox *tox3 = tox_new_log(options, &err2, nullptr);
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ck_assert_msg(err2 == TOX_ERR_NEW_LOAD_ENCRYPTED, "wrong error! %d. should fail with %d", err2,
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TOX_ERR_NEW_LOAD_ENCRYPTED);
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ck_assert_msg(tox3 == nullptr, "tox_new with error should return NULL");
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uint8_t *dec_data = (uint8_t *)malloc(size);
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ck_assert(dec_data != nullptr);
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Tox_Err_Decryption err3;
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ret = tox_pass_decrypt(enc_data, size2, (const uint8_t *)"correcthorsebatterystaple", 25, dec_data, &err3);
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ck_assert_msg(ret, "failed to decrypt save: %d", err3);
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tox_options_set_savedata_data(options, dec_data, size);
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tox3 = tox_new_log(options, &err2, nullptr);
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ck_assert_msg(err2 == TOX_ERR_NEW_OK, "failed to load from decrypted data: %d", err2);
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uint8_t address2[TOX_PUBLIC_KEY_SIZE];
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ret = tox_friend_get_public_key(tox3, 0, address2, nullptr);
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ck_assert_msg(ret, "no friends!");
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ck_assert_msg(memcmp(address, address2, TOX_PUBLIC_KEY_SIZE) == 0, "addresses don't match!");
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size = tox_get_savedata_size(tox3);
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uint8_t *data2 = (uint8_t *)malloc(size);
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ck_assert(data2 != nullptr);
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tox_get_savedata(tox3, data2);
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Tox_Err_Key_Derivation keyerr;
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Tox_Pass_Key *key = tox_pass_key_derive((const uint8_t *)"123qweasdzxc", 12, &keyerr);
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ck_assert_msg(key != nullptr, "pass key allocation failure");
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memcpy((uint8_t *)key, test_salt, TOX_PASS_SALT_LENGTH);
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memcpy((uint8_t *)key + TOX_PASS_SALT_LENGTH, known_key2, TOX_PASS_KEY_LENGTH);
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size2 = size + TOX_PASS_ENCRYPTION_EXTRA_LENGTH;
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uint8_t *encdata2 = (uint8_t *)malloc(size2);
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ck_assert(encdata2 != nullptr);
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ret = tox_pass_key_encrypt(key, data2, size, encdata2, &error1);
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ck_assert_msg(ret, "failed to key encrypt %d", error1);
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ck_assert_msg(tox_is_data_encrypted(encdata2), "magic number the second missing");
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uint8_t *out1 = (uint8_t *)malloc(size);
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ck_assert(out1 != nullptr);
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uint8_t *out2 = (uint8_t *)malloc(size);
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ck_assert(out2 != nullptr);
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ret = tox_pass_decrypt(encdata2, size2, (const uint8_t *)pw, pwlen, out1, &err3);
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ck_assert_msg(ret, "failed to pw decrypt %d", err3);
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ret = tox_pass_key_decrypt(key, encdata2, size2, out2, &err3);
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ck_assert_msg(ret, "failed to key decrypt %d", err3);
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ck_assert_msg(memcmp(out1, out2, size) == 0, "differing output data");
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// and now with the code in use (I only bothered with manually to debug this, and it seems a waste
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// to remove the manual check now that it's there)
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tox_options_set_savedata_data(options, out1, size);
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Tox *tox4 = tox_new_log(options, &err2, nullptr);
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ck_assert_msg(err2 == TOX_ERR_NEW_OK, "failed to new the third");
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uint8_t address5[TOX_PUBLIC_KEY_SIZE];
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ret = tox_friend_get_public_key(tox4, 0, address5, nullptr);
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ck_assert_msg(ret, "no friends! the third");
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ck_assert_msg(memcmp(address, address2, TOX_PUBLIC_KEY_SIZE) == 0, "addresses don't match! the third");
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tox_pass_key_free(key);
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tox_options_free(options);
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tox_kill(tox1);
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tox_kill(tox2);
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tox_kill(tox3);
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tox_kill(tox4);
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free(out2);
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free(out1);
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free(encdata2);
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free(data2);
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free(dec_data);
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free(enc_data);
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free(data);
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}
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static void test_keys(void)
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{
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Tox_Err_Encryption encerr;
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Tox_Err_Decryption decerr;
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Tox_Err_Key_Derivation keyerr;
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const uint8_t *key_char = (const uint8_t *)"123qweasdzxc";
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Tox_Pass_Key *key = tox_pass_key_derive(key_char, 12, &keyerr);
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ck_assert_msg(key != nullptr, "generic failure 1: %d", keyerr);
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const uint8_t *string = (const uint8_t *)"No Patrick, mayonnaise is not an instrument."; // 44
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uint8_t encrypted[44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH];
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bool ret = tox_pass_key_encrypt(key, string, 44, encrypted, &encerr);
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ck_assert_msg(ret, "generic failure 2: %d", encerr);
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// Testing how tox handles encryption of large messages.
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int size_large = 30 * 1024 * 1024;
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int ciphertext_length2a = size_large + TOX_PASS_ENCRYPTION_EXTRA_LENGTH;
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int plaintext_length2a = size_large;
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uint8_t *encrypted2a = (uint8_t *)malloc(ciphertext_length2a);
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ck_assert(encrypted2a != nullptr);
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uint8_t *in_plaintext2a = (uint8_t *)malloc(plaintext_length2a);
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ck_assert(in_plaintext2a != nullptr);
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const Random *rng = system_random();
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ck_assert(rng != nullptr);
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random_bytes(rng, in_plaintext2a, plaintext_length2a);
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ret = tox_pass_encrypt(in_plaintext2a, plaintext_length2a, key_char, 12, encrypted2a, &encerr);
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ck_assert_msg(ret, "tox_pass_encrypt failure 2a: %d", encerr);
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// Decryption of same message.
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uint8_t *out_plaintext2a = (uint8_t *)malloc(plaintext_length2a);
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ck_assert(out_plaintext2a != nullptr);
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ret = tox_pass_decrypt(encrypted2a, ciphertext_length2a, key_char, 12, out_plaintext2a, &decerr);
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ck_assert_msg(ret, "tox_pass_decrypt failure 2a: %d", decerr);
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ck_assert_msg(memcmp(in_plaintext2a, out_plaintext2a, plaintext_length2a) == 0, "Large message decryption failed");
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free(encrypted2a);
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free(in_plaintext2a);
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free(out_plaintext2a);
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uint8_t encrypted2[44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH];
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ret = tox_pass_encrypt(string, 44, key_char, 12, encrypted2, &encerr);
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ck_assert_msg(ret, "generic failure 3: %d", encerr);
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uint8_t out1[44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH];
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uint8_t out2[44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH];
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ret = tox_pass_key_decrypt(key, encrypted, 44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH, out1, &decerr);
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ck_assert_msg(ret, "generic failure 4: %d", decerr);
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ck_assert_msg(memcmp(out1, string, 44) == 0, "decryption 1 failed");
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ret = tox_pass_decrypt(encrypted2, 44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH, (const uint8_t *)"123qweasdzxc", 12, out2,
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&decerr);
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ck_assert_msg(ret, "generic failure 5: %d", decerr);
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ck_assert_msg(memcmp(out2, string, 44) == 0, "decryption 2 failed");
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ret = tox_pass_decrypt(encrypted2, 44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH, nullptr, 0, out2, &decerr);
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ck_assert_msg(!ret, "Decrypt succeeded with wrong pass");
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ck_assert_msg(decerr != TOX_ERR_DECRYPTION_FAILED, "Bad error code %d", decerr);
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// test that pass_decrypt can decrypt things from pass_key_encrypt
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ret = tox_pass_decrypt(encrypted, 44 + TOX_PASS_ENCRYPTION_EXTRA_LENGTH, (const uint8_t *)"123qweasdzxc", 12, out1,
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&decerr);
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ck_assert_msg(ret, "generic failure 6: %d", decerr);
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ck_assert_msg(memcmp(out1, string, 44) == 0, "decryption 3 failed");
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uint8_t salt[TOX_PASS_SALT_LENGTH];
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Tox_Err_Get_Salt salt_err;
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ck_assert_msg(tox_get_salt(encrypted, salt, &salt_err), "couldn't get salt");
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ck_assert_msg(salt_err == TOX_ERR_GET_SALT_OK, "get_salt returned an error");
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Tox_Pass_Key *key2 = tox_pass_key_derive_with_salt((const uint8_t *)"123qweasdzxc", 12, salt, &keyerr);
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ck_assert_msg(key2 != nullptr, "generic failure 7: %d", keyerr);
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ck_assert_msg(0 == memcmp(key, key2, TOX_PASS_KEY_LENGTH + TOX_PASS_SALT_LENGTH), "salt comparison failed");
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tox_pass_key_free(key2);
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tox_pass_key_free(key);
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}
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int main(void)
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{
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setvbuf(stdout, nullptr, _IONBF, 0);
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test_known_kdf();
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test_save_friend();
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test_keys();
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return 0;
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}
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