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view auth/test/auth_crypto_test.c @ 273:e02e2036ef84 default tip
add Layer 2 JRPG component system
Add reusable content and window modals, an isolated component sandbox, shared cyberpunk scroll areas, production-safe cache freshness, and server-rendered JRPG panel state.
Co-authored-by: Copilot <[email protected]>
| author | MrJuneJune <me@mrjunejune.com> |
|---|---|
| date | Sat, 08 Aug 2026 02:08:08 -0700 |
| parents | 04fee26ecce0 |
| children |
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#include "auth/auth_crypto.h" #include <assert.h> #include <stdio.h> #include <string.h> static boolean is_lowercase_hex(const char *text, size_t length) { for (size_t i = 0; i < length; ++i) { if (!((text[i] >= '0' && text[i] <= '9') || (text[i] >= 'a' && text[i] <= 'f'))) { return FALSE; } } return TRUE; } static boolean is_base64url(const char *text, size_t length) { for (size_t i = 0; i < length; ++i) { if (!((text[i] >= 'A' && text[i] <= 'Z') || (text[i] >= 'a' && text[i] <= 'z') || (text[i] >= '0' && text[i] <= '9') || text[i] == '-' || text[i] == '_')) { return FALSE; } } return TRUE; } static void test_password_hashes(void) { char first[AUTH_CRYPTO_PASSWORD_HASH_ENCODED_SIZE]; char second[AUTH_CRYPTO_PASSWORD_HASH_ENCODED_SIZE]; assert(Auth_Crypto_Password_Hash( "correct horse battery staple", first, sizeof(first)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_Password_Hash( "correct horse battery staple", second, sizeof(second)) == AUTH_CRYPTO_OK); assert(strcmp(first, second) != 0); const char *prefix = "zenbu-scrypt$v=1$N=32768$r=8$p=1$"; assert(strncmp(first, prefix, strlen(prefix)) == 0); assert(memcmp( first + strlen(prefix), second + strlen(prefix), AUTH_CRYPTO_PASSWORD_SALT_BYTES * 2) != 0); assert(Auth_Crypto_Password_Verify( "correct horse battery staple", first) == AUTH_CRYPTO_OK); assert(Auth_Crypto_Password_Verify( "wrong password", first) == AUTH_CRYPTO_AUTHENTICATION_FAILED); char malformed[AUTH_CRYPTO_PASSWORD_HASH_ENCODED_SIZE]; strcpy(malformed, first); malformed[0] = 'x'; assert(Auth_Crypto_Password_Verify( "correct horse battery staple", malformed) == AUTH_CRYPTO_MALFORMED); assert(Auth_Crypto_Password_Verify( "correct horse battery staple", "not-a-password-hash") == AUTH_CRYPTO_MALFORMED); char oversized[AUTH_CRYPTO_PASSWORD_MAX_BYTES + 2]; memset(oversized, 'p', sizeof(oversized)); oversized[sizeof(oversized) - 1] = '\0'; assert(Auth_Crypto_Password_Hash( oversized, first, sizeof(first)) == AUTH_CRYPTO_PASSWORD_TOO_LONG); assert(Auth_Crypto_Password_Verify( oversized, second) == AUTH_CRYPTO_PASSWORD_TOO_LONG); char too_small[8]; assert(Auth_Crypto_Password_Hash( "password", too_small, sizeof(too_small)) == AUTH_CRYPTO_BUFFER_TOO_SMALL); } static void test_tokens(void) { char first[AUTH_CRYPTO_TOKEN_SIZE]; char second[AUTH_CRYPTO_TOKEN_SIZE]; assert(Auth_Crypto_Token_Generate(first, sizeof(first)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_Token_Generate(second, sizeof(second)) == AUTH_CRYPTO_OK); assert(strlen(first) == AUTH_CRYPTO_TOKEN_SIZE - 1); assert(is_base64url(first, strlen(first))); assert(strchr(first, '=') == NULL); assert(strcmp(first, second) != 0); char first_digest[AUTH_CRYPTO_TOKEN_DIGEST_SIZE]; char repeated_digest[AUTH_CRYPTO_TOKEN_DIGEST_SIZE]; char second_digest[AUTH_CRYPTO_TOKEN_DIGEST_SIZE]; assert(Auth_Crypto_Token_Digest( first, first_digest, sizeof(first_digest)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_Token_Digest( first, repeated_digest, sizeof(repeated_digest)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_Token_Digest( second, second_digest, sizeof(second_digest)) == AUTH_CRYPTO_OK); assert(strlen(first_digest) == AUTH_CRYPTO_TOKEN_DIGEST_SIZE - 1); assert(is_lowercase_hex(first_digest, strlen(first_digest))); assert(strcmp(first_digest, repeated_digest) == 0); assert(strcmp(first_digest, second_digest) != 0); const char *digest_vector_token = "AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"; assert(Auth_Crypto_Token_Digest( digest_vector_token, first_digest, sizeof(first_digest)) == AUTH_CRYPTO_OK); assert(strcmp( first_digest, "0f007385b6f9d4b7eeb2748605afe1a984a0a3bfa3f014d09e2a784ce9e5cd1a") == 0); } static void test_ip_binding_and_guest_cookies(void) { uint8 secret[AUTH_CRYPTO_COOKIE_SECRET_MIN_BYTES] = { 0x1f, 0x8c, 0x32, 0x99, 0x50, 0xe7, 0xa6, 0x21, 0x83, 0x44, 0xab, 0xcd, 0x72, 0x91, 0x05, 0xfe, 0x66, 0x3a, 0x10, 0x28, 0xdd, 0xc0, 0x4b, 0x7e, 0x59, 0x92, 0xb1, 0x13, 0xef, 0x70, 0x46, 0x8a, }; const char *peer_ip = "2001:db8::1234"; const char *other_ip = "2001:db8::5678"; char ip_digest[AUTH_CRYPTO_IP_BINDING_DIGEST_SIZE]; char repeated_ip_digest[AUTH_CRYPTO_IP_BINDING_DIGEST_SIZE]; char other_ip_digest[AUTH_CRYPTO_IP_BINDING_DIGEST_SIZE]; assert(Auth_Crypto_IP_Binding_Digest( secret, sizeof(secret), peer_ip, ip_digest, sizeof(ip_digest)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_IP_Binding_Digest( secret, sizeof(secret), peer_ip, repeated_ip_digest, sizeof(repeated_ip_digest)) == AUTH_CRYPTO_OK); assert(Auth_Crypto_IP_Binding_Digest( secret, sizeof(secret), other_ip, other_ip_digest, sizeof(other_ip_digest)) == AUTH_CRYPTO_OK); assert(strlen(ip_digest) == AUTH_CRYPTO_IP_BINDING_DIGEST_SIZE - 1); assert(is_lowercase_hex(ip_digest, strlen(ip_digest))); assert(strcmp(ip_digest, repeated_ip_digest) == 0); assert(strcmp(ip_digest, other_ip_digest) != 0); const char *guest_uuid = "123e4567-e89b-12d3-a456-426614174000"; uint64 expiration = 2000000000; char cookie[AUTH_CRYPTO_GUEST_COOKIE_SIZE]; assert(Auth_Crypto_Guest_Cookie_Create( secret, sizeof(secret), guest_uuid, expiration, ip_digest, cookie, sizeof(cookie)) == AUTH_CRYPTO_OK); assert(strstr(cookie, peer_ip) == NULL); Auth_Crypto_Guest_Cookie verified; assert(Auth_Crypto_Guest_Cookie_Verify( secret, sizeof(secret), cookie, expiration - 1, ip_digest, &verified) == AUTH_CRYPTO_OK); assert(strcmp(verified.guest_uuid, guest_uuid) == 0); assert(verified.expiration_unix == expiration); char tampered[AUTH_CRYPTO_GUEST_COOKIE_SIZE]; strcpy(tampered, cookie); size_t cookie_length = strlen(tampered); tampered[cookie_length - 1] = tampered[cookie_length - 1] == '0' ? '1' : '0'; assert(Auth_Crypto_Guest_Cookie_Verify( secret, sizeof(secret), tampered, expiration - 1, ip_digest, &verified) == AUTH_CRYPTO_AUTHENTICATION_FAILED); assert(Auth_Crypto_Guest_Cookie_Verify( secret, sizeof(secret), cookie, expiration, ip_digest, &verified) == AUTH_CRYPTO_EXPIRED); assert(Auth_Crypto_Guest_Cookie_Verify( secret, sizeof(secret), cookie, expiration - 1, other_ip_digest, &verified) == AUTH_CRYPTO_IP_MISMATCH); assert(Auth_Crypto_Guest_Cookie_Verify( secret, sizeof(secret), "v1.malformed", expiration - 1, ip_digest, &verified) == AUTH_CRYPTO_MALFORMED); } int main(void) { test_password_hashes(); test_tokens(); test_ip_binding_and_guest_cookies(); /* Auth_Crypto_Base64url_Encode */ { /* 32 bytes → 43 unpadded base64url chars */ uint8 bytes32[32] = {0}; char out[AUTH_CRYPTO_TOKEN_SIZE]; size_t n = Auth_Crypto_Base64url_Encode(bytes32, 32, out, sizeof(out)); assert(n == AUTH_CRYPTO_TOKEN_SIZE - 1); assert(strlen(out) == AUTH_CRYPTO_TOKEN_SIZE - 1); /* 3 bytes → 4 chars */ uint8 b3[3] = {0xfb, 0xff, 0xfe}; char o3[8]; assert(Auth_Crypto_Base64url_Encode(b3, 3, o3, sizeof(o3)) == 4); /* 1 byte → 2 chars */ uint8 b1[1] = {0x00}; char o1[4]; assert(Auth_Crypto_Base64url_Encode(b1, 1, o1, sizeof(o1)) == 2); /* 2 bytes → 3 chars */ uint8 b2[2] = {0x00, 0x00}; char o2[4]; assert(Auth_Crypto_Base64url_Encode(b2, 2, o2, sizeof(o2)) == 3); /* Buffer too small → 0 */ char oSmall[3]; assert(Auth_Crypto_Base64url_Encode(bytes32, 32, oSmall, sizeof(oSmall)) == 0); /* Output uses URL-safe alphabet only */ uint8 bRnd[32]; for (int i = 0; i < 32; i++) bRnd[i] = (uint8)i; char oRnd[AUTH_CRYPTO_TOKEN_SIZE]; n = Auth_Crypto_Base64url_Encode(bRnd, 32, oRnd, sizeof(oRnd)); assert(n == 43); for (size_t i = 0; i < n; i++) { char c = oRnd[i]; assert((c >= 'A' && c <= 'Z') || (c >= 'a' && c <= 'z') || (c >= '0' && c <= '9') || c == '-' || c == '_'); } } puts("Auth_Crypto_Base64url_Encode: PASS"); puts("auth_crypto_test: PASS"); return 0; }