122 lines
3.5 KiB
C
122 lines
3.5 KiB
C
/*
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* GraxRabble
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* Demo programs for libsodium.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sodium.h> /* library header */
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#include "demo_utils.h" /* utility functions shared by demos */
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/*
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* Shows how crypto_box works using Bob and Alice with a simple message.
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* Both clients must generate their own key pair and swap public key. The
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* library will perform Diffie-Hellman to generate a shared key for
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* symmetric encryption.
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*
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* Encrypted messages will be 16 bytes longer because a 16 byte
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* authentication token will be prepended to the message.
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*
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* Note the same nonce must not be used; it should be safe to use a counter.
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*/
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static int
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box(void)
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{
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unsigned char bob_pk[crypto_box_PUBLICKEYBYTES]; /* Bob public */
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unsigned char bob_sk[crypto_box_SECRETKEYBYTES]; /* Bob secret */
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unsigned char alice_pk[crypto_box_PUBLICKEYBYTES]; /* Alice public */
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unsigned char alice_sk[crypto_box_SECRETKEYBYTES]; /* Alice secret */
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unsigned char n[crypto_box_NONCEBYTES]; /* message nonce */
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unsigned char m[MAX_INPUT_SIZE]; /* plaintext */
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unsigned char c[MAX_INPUT_SIZE + crypto_box_MACBYTES]; /* ciphertext */
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size_t mlen; /* length */
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int r;
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puts("Example: crypto_box_easy\n");
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puts("Generating keypairs...\n");
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crypto_box_keypair(bob_pk, bob_sk); /* generate Bob's keys */
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crypto_box_keypair(alice_pk, alice_sk); /* generate Alice's keys */
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puts("Bob");
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fputs("Public: ", stdout);
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print_hex(bob_pk, sizeof bob_pk);
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putchar('\n');
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fputs("Secret: ", stdout);
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print_hex(bob_sk, sizeof bob_sk);
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putchar('\n');
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putchar('\n');
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puts("Alice");
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fputs("Public: ", stdout);
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print_hex(alice_pk, sizeof alice_pk);
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putchar('\n');
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fputs("Secret: ", stdout);
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print_hex(alice_sk, sizeof alice_sk);
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putchar('\n');
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putchar('\n');
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/* nonce must be generated per message, safe to send with message */
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puts("Generating nonce...");
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randombytes_buf(n, sizeof n);
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fputs("Nonce: ", stdout);
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print_hex(n, sizeof n);
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putchar('\n');
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putchar('\n');
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/* read input */
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mlen = prompt_input("Input your message > ", (char*)m, sizeof m);
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puts("Notice there is no padding");
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print_hex(m, mlen);
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putchar('\n');
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putchar('\n');
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/* encrypt the message */
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printf("Encrypting with %s\n\n", crypto_box_primitive());
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crypto_box_easy(c, m, mlen, n, alice_pk, bob_sk);
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/* sent message */
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puts("Bob sending message...\n");
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puts("Notice the prepended 16 byte authentication token");
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puts("Format: nonce::message");
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fputs("Ciphertext: ", stdout);
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print_hex(n, sizeof n);
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fputs("::", stdout);
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print_hex(c, mlen + crypto_box_MACBYTES);
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putchar('\n');
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putchar('\n');
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/* decrypt the message */
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puts("Alice opening message...");
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r = crypto_box_open_easy(m, c, mlen + crypto_box_MACBYTES, n, bob_pk,
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alice_sk);
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puts("Notice there is no padding");
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print_hex(m, mlen);
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putchar('\n');
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print_verification(r);
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if (r == 0)
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printf("Plaintext: %s\n\n", m);
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sodium_memzero(bob_sk, sizeof bob_sk); /* wipe sensitive data */
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sodium_memzero(alice_sk, sizeof alice_sk);
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sodium_memzero(m, sizeof m);
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sodium_memzero(c, sizeof c);
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return r;
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}
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int
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main(void)
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{
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sodium_init();
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printf("Using LibSodium %s\n", sodium_version_string());
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return box() != 0;
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}
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