File: unit.h

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/* unit.c API unit tests driver
 *
 * Copyright (C) 2006-2025 wolfSSL Inc.
 *
 * This file is part of wolfSSL.
 *
 * wolfSSL is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 3 of the License, or
 * (at your option) any later version.
 *
 * wolfSSL is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1335, USA
 */


#ifndef TESTS_UNIT_H
#define TESTS_UNIT_H

#define WOLFSSL_VIS_FOR_TESTS

#ifdef HAVE_CONFIG_H
    #include <config.h>
#endif

#ifndef WOLFSSL_USER_SETTINGS
    #include <wolfssl/options.h>
#endif
#include <wolfssl/wolfcrypt/settings.h>

#undef TEST_OPENSSL_COEXIST /* can't use this option with unit tests */
#undef OPENSSL_COEXIST /* can't use this option with unit tests */

#include <wolfssl/ssl.h>
#include <wolfssl/test.h>    /* thread and tcp stuff */

#ifdef WOLFSSL_FORCE_MALLOC_FAIL_TEST
#define XABORT() WC_DO_NOTHING
#else
#define XABORT() abort()
#endif

#ifndef WOLFSSL_PASSTHRU_ERR
#define Fail(description, result) do {                                         \
    printf("\nERROR - %s line %d failed with:", __FILE__, __LINE__);           \
    fputs("\n    expected: ", stdout); printf description;                     \
    fputs("\n    result:   ", stdout); printf result; fputs("\n\n", stdout);   \
    fflush(stdout);                                                            \
    XABORT();                                                                  \
} while(0)
#else
#define Fail(description, result) do {                                         \
    printf("\nERROR - %s line %d failed with:", __FILE__, __LINE__);           \
    fputs("\n    expected: ", stdout); printf description;                     \
    fputs("\n    result:   ", stdout); printf result; fputs("\n\n", stdout);   \
    fflush(stdout);                                                            \
} while (0)
#endif

#define Assert(test, description, result) if (!(test)) Fail(description, result)

#define AssertTrue(x)    Assert( (x), ("%s is true",     #x), (#x " => FALSE"))
#define AssertFalse(x)   Assert(!(x), ("%s is false",    #x), (#x " => TRUE"))
#define AssertNotNull(x) Assert( (x), ("%s is not null", #x), (#x " => NULL"))

#define AssertNull(x) do {                                                     \
    PEDANTIC_EXTENSION void* _x = (void*)(x);                                  \
    Assert(!_x, ("%s is null", #x), (#x " => %p", _x));                        \
} while(0)

#define AssertInt(x, y, op, er) do {                                           \
    int _x = (int)(x);                                                         \
    int _y = (int)(y);                                                         \
    Assert(_x op _y, ("%s " #op " %s", #x, #y), ("%d " #er " %d", _x, _y));    \
} while(0)

#define AssertIntEQ(x, y) AssertInt(x, y, ==, !=)
#define AssertIntNE(x, y) AssertInt(x, y, !=, ==)
#define AssertIntGT(x, y) AssertInt(x, y,  >, <=)
#define AssertIntLT(x, y) AssertInt(x, y,  <, >=)
#define AssertIntGE(x, y) AssertInt(x, y, >=,  <)
#define AssertIntLE(x, y) AssertInt(x, y, <=,  >)

#define AssertStr(x, y, op, er) do {                                           \
    const char* _x = (const char*)(x);                                         \
    const char* _y = (const char*)(y);                                         \
    int         _z = (_x && _y) ? strcmp(_x, _y) : -1;                         \
    Assert(_z op 0, ("%s " #op " %s", #x, #y),                                 \
                                            ("\"%s\" " #er " \"%s\"", _x, _y));\
} while(0)

#define AssertStrEQ(x, y) AssertStr(x, y, ==, !=)
#define AssertStrNE(x, y) AssertStr(x, y, !=, ==)
#define AssertStrGT(x, y) AssertStr(x, y,  >, <=)
#define AssertStrLT(x, y) AssertStr(x, y,  <, >=)
#define AssertStrGE(x, y) AssertStr(x, y, >=,  <)
#define AssertStrLE(x, y) AssertStr(x, y, <=,  >)

#ifdef WOLF_C89

#define AssertPtr(x, y, op, er) do {                                           \
    void* _x = (void*)(x);                                                     \
    void* _y = (void*)(y);                                                     \
    Assert(_x op _y, ("%s " #op " %s", #x, #y), ("%p " #er " %p", _x, _y));    \
} while(0)

#else

#define AssertPtr(x, y, op, er) do {                                           \
    PRAGMA_GCC_DIAG_PUSH                                                       \
      /* remarkably, without this inhibition, */                               \
      /* the _Pragma()s make the declarations warn. */                         \
    PRAGMA_GCC("GCC diagnostic ignored \"-Wdeclaration-after-statement\"")     \
      /* inhibit "ISO C forbids conversion of function pointer */              \
      /* to object pointer type [-Werror=pedantic]" */                         \
    PRAGMA_GCC("GCC diagnostic ignored \"-Wpedantic\"")                        \
    void* _x = (void*)(x);                                                     \
    void* _y = (void*)(y);                                                     \
    Assert(_x op _y, ("%s " #op " %s", #x, #y), ("%p " #er " %p", _x, _y));    \
    PRAGMA_GCC_DIAG_POP                                                        \
} while(0)

#endif

#define AssertPtrEq(x, y) AssertPtr(x, y, ==, !=)
#define AssertPtrNE(x, y) AssertPtr(x, y, !=, ==)
#define AssertPtrGT(x, y) AssertPtr(x, y,  >, <=)
#define AssertPtrLT(x, y) AssertPtr(x, y,  <, >=)
#define AssertPtrGE(x, y) AssertPtr(x, y, >=,  <)
#define AssertPtrLE(x, y) AssertPtr(x, y, <=,  >)

#define TEST_FAIL               0
#define TEST_SUCCESS            1
#define TEST_SUCCESS_NO_MSGS    2
#define TEST_SKIPPED            3  /* Test skipped - not run. */
#define TEST_SKIPPED_NO_MSGS    4  /* Test skipped - not run. */

#define EXPECT_DECLS \
    int _ret = TEST_SKIPPED, _fail_codepoint_id = TEST_FAIL
#define EXPECT_SUCCESS_DECLS \
    int _ret = TEST_SUCCESS, _fail_codepoint_id = TEST_SUCCESS
#define EXPECT_DECLS_NO_MSGS(fail_codepoint_offset)     \
    int _ret = TEST_SKIPPED_NO_MSGS,                    \
        _fail_codepoint_id = (fail_codepoint_offset)
#define EXPECT_FAILURE_CODEPOINT_ID _fail_codepoint_id
#define EXPECT_RESULT() \
    ((void)_fail_codepoint_id,                                          \
     _ret == TEST_SUCCESS_NO_MSGS ? TEST_SUCCESS :                      \
     _ret == TEST_SKIPPED_NO_MSGS ? TEST_SKIPPED :                      \
     _ret)
#define EXPECT_SUCCESS() \
    ((_ret == TEST_SUCCESS) ||                                          \
     (_ret == TEST_SKIPPED) ||                                          \
     (_ret == TEST_SUCCESS_NO_MSGS) ||                                  \
     (_ret == TEST_SKIPPED_NO_MSGS))
#define EXPECT_FAIL() \
    (! EXPECT_SUCCESS())

#define EXPECT_TEST(ret) do {                                                  \
    if (EXPECT_SUCCESS()) {                                                    \
        _ret = (ret);                                                          \
    }                                                                          \
} while (0)

#define ExpFail(description, result) do {                                    \
    if ((_ret == TEST_SUCCESS_NO_MSGS) || (_ret == TEST_SKIPPED_NO_MSGS))    \
        _ret = _fail_codepoint_id;                                           \
    else {                                                                   \
        printf("\nERROR - %s line %d failed with:", __FILE__, __LINE__);     \
        fputs("\n    expected: ", stdout); printf description;               \
        fputs("\n    result:   ", stdout); printf result;                    \
        fputs("\n\n", stdout);                                               \
        fflush(stdout);                                                      \
        _ret = TEST_FAIL;                                                    \
    }                                                                        \
} while (0)

#define Expect(test, description, result) do {                               \
    if (EXPECT_SUCCESS()) {                                                  \
        if (!(test))                                                         \
            ExpFail(description, result);                                    \
        else if (_ret == TEST_SKIPPED_NO_MSGS)                               \
            _ret = TEST_SUCCESS_NO_MSGS;                                     \
        else                                                                 \
            _ret = TEST_SUCCESS;                                             \
    }                                                                        \
    if (_ret == TEST_SUCCESS_NO_MSGS)                                        \
        --_fail_codepoint_id;                                                \
} while (0)

#define ExpectTrue(x)    Expect( (x), ("%s is true",     #x), (#x " => FALSE"))
#define ExpectFalse(x)   Expect(!(x), ("%s is false",    #x), (#x " => TRUE"))
#define ExpectNotNull(x) Expect( (x), ("%s is not null", #x), (#x " => NULL"))

#define ExpectNull(x) do {                                                     \
    if (EXPECT_SUCCESS()) {                                                    \
        PEDANTIC_EXTENSION void* _x = (void*)(x);                              \
        Expect(!_x, ("%s is null", #x), (#x " => %p", _x));                    \
    }                                                                          \
} while(0)

#define ExpectInt(x, y, op, er) do {                                           \
    if (EXPECT_SUCCESS()) {                                                    \
        int _x = (int)(x);                                                     \
        int _y = (int)(y);                                                     \
        Expect(_x op _y, ("%s " #op " %s", #x, #y), ("%d " #er " %d", _x, _y));\
    }                                                                          \
} while(0)

#define ExpectIntEQ(x, y) ExpectInt(x, y, ==, !=)
#define ExpectIntNE(x, y) ExpectInt(x, y, !=, ==)
#define ExpectIntGT(x, y) ExpectInt(x, y,  >, <=)
#define ExpectIntLT(x, y) ExpectInt(x, y,  <, >=)
#define ExpectIntGE(x, y) ExpectInt(x, y, >=,  <)
#define ExpectIntLE(x, y) ExpectInt(x, y, <=,  >)

#define ExpectStr(x, y, op, er) do {                                           \
    if (EXPECT_SUCCESS()) {                                                    \
        const char* _x = (const char*)(x);                                     \
        const char* _y = (const char*)(y);                                     \
        int         _z = (_x && _y) ? XSTRCMP(_x, _y) : -1;                    \
        Expect(_z op 0, ("%s " #op " %s", #x, #y),                             \
                                            ("\"%s\" " #er " \"%s\"", _x, _y));\
    }                                                                          \
} while(0)

#define ExpectStrEQ(x, y) ExpectStr(x, y, ==, !=)
#define ExpectStrNE(x, y) ExpectStr(x, y, !=, ==)
#define ExpectStrGT(x, y) ExpectStr(x, y,  >, <=)
#define ExpectStrLT(x, y) ExpectStr(x, y,  <, >=)
#define ExpectStrGE(x, y) ExpectStr(x, y, >=,  <)
#define ExpectStrLE(x, y) ExpectStr(x, y, <=,  >)

#define ExpectPtr(x, y, op, er) do {                                           \
    if (EXPECT_SUCCESS()) {                                                    \
        PRAGMA_DIAG_PUSH                                                       \
          /* remarkably, without this inhibition, */                           \
          /* the _Pragma()s make the declarations warn. */                     \
        PRAGMA("GCC diagnostic ignored \"-Wdeclaration-after-statement\"")     \
          /* inhibit "ISO C forbids conversion of function pointer */          \
          /* to object pointer type [-Werror=pedantic]" */                     \
        PRAGMA("GCC diagnostic ignored \"-Wpedantic\"")                        \
        void* _x = (void*)(x);                                                 \
        void* _y = (void*)(y);                                                 \
        Expect(_x op _y, ("%s " #op " %s", #x, #y), ("%p " #er " %p", _x, _y));\
        PRAGMA_DIAG_POP                                                        \
    }                                                                          \
} while(0)

#define ExpectPtrEq(x, y) ExpectPtr(x, y, ==, !=)
#define ExpectPtrNE(x, y) ExpectPtr(x, y, !=, ==)
#define ExpectPtrGT(x, y) ExpectPtr(x, y,  >, <=)
#define ExpectPtrLT(x, y) ExpectPtr(x, y,  <, >=)
#define ExpectPtrGE(x, y) ExpectPtr(x, y, >=,  <)
#define ExpectPtrLE(x, y) ExpectPtr(x, y, <=,  >)

#define ExpectBuf(x, y, z, op, er) do {                                        \
    if (EXPECT_SUCCESS()) {                                                    \
        const byte* _x = (const byte*)(x);                                     \
        const byte* _y = (const byte*)(y);                                     \
        int         _z = (int)(z);                                             \
        int _w = ((_x) && (_y)) ? XMEMCMP(_x, _y, (unsigned long)_z) : -1;     \
        Expect(_w op 0, ("%s " #op " %s for %s", #x, #y, #z),                  \
                             ("\"%p\" " #er " \"%p\" for \"%d\"",              \
                                (const void *)_x, (const void *)_y, _z));      \
    }                                                                          \
} while(0)

#define ExpectBufEQ(x, y, z) ExpectBuf(x, y, z, ==, !=)
#define ExpectBufNE(x, y, z) ExpectBuf(x, y, z, !=, ==)

#define ExpectFail() ExpectTrue(0)


#define DoExpectNull(x) do {                                                   \
    PEDANTIC_EXTENSION void* _x = (void*)(x);                                  \
    Expect(!_x, ("%s is null", #x), (#x " => %p", _x));                        \
} while(0)

#define DoExpectInt(x, y, op, er) do {                                         \
    int _x = (int)(x);                                                         \
    int _y = (int)(y);                                                         \
    Expect(_x op _y, ("%s " #op " %s", #x, #y), ("%d " #er " %d", _x, _y));    \
} while(0)

#define DoExpectIntEQ(x, y) DoExpectInt(x, y, ==, !=)
#define DoExpectIntNE(x, y) DoExpectInt(x, y, !=, ==)
#define DoExpectIntGT(x, y) DoExpectInt(x, y,  >, <=)
#define DoExpectIntLT(x, y) DoExpectInt(x, y,  <, >=)
#define DoExpectIntGE(x, y) DoExpectInt(x, y, >=,  <)
#define DoExpectIntLE(x, y) DoExpectInt(x, y, <=,  >)

#define DoExpectStr(x, y, op, er) do {                                         \
    const char* _x = (const char*)(x);                                         \
    const char* _y = (const char*)(y);                                         \
    int         _z = (_x && _y) ? strcmp(_x, _y) : -1;                         \
    Expect(_z op 0, ("%s " #op " %s", #x, #y),                                 \
                                            ("\"%s\" " #er " \"%s\"", _x, _y));\
} while(0)

#define DoExpectStrEQ(x, y) DoExpectStr(x, y, ==, !=)
#define DoExpectStrNE(x, y) DoExpectStr(x, y, !=, ==)
#define DoExpectStrGT(x, y) DoExpectStr(x, y,  >, <=)
#define DoExpectStrLT(x, y) DoExpectStr(x, y,  <, >=)
#define DoExpectStrGE(x, y) DoExpectStr(x, y, >=,  <)
#define DoExpectStrLE(x, y) DoExpectStr(x, y, <=,  >)

#define DoExpectPtr(x, y, op, er) do {                                         \
    PRAGMA_DIAG_PUSH                                                           \
      /* remarkably, without this inhibition, */                               \
      /* the _Pragma()s make the declarations warn. */                         \
    PRAGMA("GCC diagnostic ignored \"-Wdeclaration-after-statement\"")         \
      /* inhibit "ISO C forbids conversion of function pointer */              \
      /* to object pointer type [-Werror=pedantic]" */                         \
    PRAGMA("GCC diagnostic ignored \"-Wpedantic\"")                            \
    void* _x = (void*)(x);                                                     \
    void* _y = (void*)(y);                                                     \
    Expect(_x op _y, ("%s " #op " %s", #x, #y), ("%p " #er " %p", _x, _y));    \
    PRAGMA_DIAG_POP                                                            \
} while(0)

#define DoExpectPtrEq(x, y) DoExpectPtr(x, y, ==, !=)
#define DoExpectPtrNE(x, y) DoExpectPtr(x, y, !=, ==)
#define DoExpectPtrGT(x, y) DoExpectPtr(x, y,  >, <=)
#define DoExpectPtrLT(x, y) DoExpectPtr(x, y,  <, >=)
#define DoExpectPtrGE(x, y) DoExpectPtr(x, y, >=,  <)
#define DoExpectPtrLE(x, y) DoExpectPtr(x, y, <=,  >)

#define DoExpectBuf(x, y, z, op, er) do {                                      \
    const byte* _x = (const byte*)(x);                                         \
    const byte* _y = (const byte*)(y);                                         \
    int         _z = (int)(z);                                                 \
    int         _w = ((_x) && (_y)) ? XMEMCMP(_x, _y, _z) : -1;                \
    Expect(_w op 0, ("%s " #op " %s for %s", #x, #y, #z),                      \
                             ("\"%p\" " #er " \"%p\" for \"%d\"", _x, _y, _z));\
} while(0)

#define DoExpectBufEQ(x, y, z) DoExpectBuf(x, y, z, ==, !=)
#define DoExpectBufNE(x, y, z) DoExpectBuf(x, y, z, !=, ==)


#define ApiDumpData(name, data, len) do {                                      \
    int _i;                                                                    \
    fprintf(stderr, "%s: %d bytes\n", name, (int)(len));                       \
    for (_i = 0; _i < (int)(len); _i++) {                                      \
        fprintf(stderr, "0x%02x,", ((byte*)(data))[_i]);                       \
        if ((_i & 7) == 7) fprintf(stderr, "\n");                              \
        else               fprintf(stderr, " ");                               \
    }                                                                          \
    if ((_i & 7) != 0) fprintf(stderr, "\n");                                  \
} while(0)


#if !defined(NO_FILESYSTEM) && !defined(NO_CERTS) && !defined(NO_TLS) && \
    !defined(NO_RSA) && \
    !defined(NO_WOLFSSL_SERVER) && !defined(NO_WOLFSSL_CLIENT) && \
    !defined(WOLFSSL_TIRTOS)
    #define HAVE_SSL_MEMIO_TESTS_DEPENDENCIES
#endif
#ifdef HAVE_SSL_MEMIO_TESTS_DEPENDENCIES

typedef int (*ctx_cb)(WOLFSSL_CTX* ctx);
typedef int (*ssl_cb)(WOLFSSL* ssl);
typedef int (*test_cbType)(WOLFSSL_CTX *ctx, WOLFSSL *ssl);
typedef int (*hs_cb)(WOLFSSL_CTX **ctx, WOLFSSL **ssl);

typedef struct test_ssl_cbf {
    method_provider method;
    ctx_cb ctx_ready;
    ssl_cb ssl_ready;
    ssl_cb on_result;
    ctx_cb on_ctx_cleanup;
    ssl_cb on_cleanup;
    hs_cb  on_handshake;
    WOLFSSL_CTX* ctx;
    const char* caPemFile;
    const char* certPemFile;
    const char* keyPemFile;
    const char* crlPemFile;
#ifdef WOLFSSL_STATIC_MEMORY
    byte*               mem;
    word32              memSz;
    wolfSSL_method_func method_ex;
#endif
    int devId;
    int return_code;
    int last_err;
    unsigned char isSharedCtx:1;
    unsigned char loadToSSL:1;
    unsigned char ticNoInit:1;
    unsigned char doUdp:1;
} test_ssl_cbf;

#define TEST_SSL_MEMIO_BUF_SZ   (64 * 1024)
#define TEST_MEMIO_MAX_MSGS 32

typedef struct test_ssl_memio_ctx {
    WOLFSSL_CTX* s_ctx;
    WOLFSSL_CTX* c_ctx;
    WOLFSSL* s_ssl;
    WOLFSSL* c_ssl;

    const char* c_ciphers;
    const char* s_ciphers;

    char* c_msg;
    int c_msglen;
    char* s_msg;
    int s_msglen;

    test_ssl_cbf s_cb;
    test_ssl_cbf c_cb;

    byte c_buff[TEST_SSL_MEMIO_BUF_SZ];
    int c_len;
    byte s_buff[TEST_SSL_MEMIO_BUF_SZ];
    int s_len;

    int c_msg_sizes[TEST_MEMIO_MAX_MSGS];
    int c_msg_count;
    int c_msg_pos;
    int c_msg_offset;

    int s_msg_sizes[TEST_MEMIO_MAX_MSGS];
    int s_msg_count;
    int s_msg_pos;
    int s_msg_offset;
} test_ssl_memio_ctx;

int test_ssl_memio_setup(test_ssl_memio_ctx *ctx);
int test_ssl_memio_do_handshake(test_ssl_memio_ctx* ctx, int max_rounds,
    int* rounds);
void test_ssl_memio_cleanup(test_ssl_memio_ctx* ctx);
int test_wolfSSL_client_server_nofail_memio(test_ssl_cbf* client_cb,
    test_ssl_cbf* server_cb, test_cbType client_on_handshake);
#endif /* HAVE_SSL_MEMIO_TESTS_DEPENDENCIES */

#if !defined(NO_FILESYSTEM) && !defined(NO_CERTS) && !defined(NO_TLS) && \
    !defined(NO_RSA)        && !defined(SINGLE_THREADED) && \
    !defined(NO_WOLFSSL_SERVER) && !defined(NO_WOLFSSL_CLIENT)
    #define HAVE_IO_TESTS_DEPENDENCIES
#endif

#ifdef HAVE_IO_TESTS_DEPENDENCIES
THREAD_RETURN WOLFSSL_THREAD test_server_nofail(void* args);
int test_client_nofail(void* args, cbType cb);
#endif

#if defined(OPENSSL_EXTRA) && !defined(NO_BIO)
WOLFSSL_BIO_METHOD* wolfSSL_BIO_s_fixed_mem(void);
#endif

#if defined(HAVE_PKCS7) && !defined(NO_FILESYSTEM)
int CreatePKCS7SignedData(unsigned char* output, int outputSz,
                          byte* data, word32 dataSz,
                          int withAttribs, int detachedSig,
                          int useIntermediateCertChain,
                          int pkAlgoType);
#endif

void ApiTest_StopOnFail(void);
void ApiTest_PrintTestCases(void);
void ApiTest_PrintGroups(void);
int ApiTest_RunGroup(char* name);
int ApiTest_RunIdx(int idx);
int ApiTest_RunPartName(char* name);
int ApiTest_RunName(char* name);
int ApiTest(void);

int  SuiteTest(int argc, char** argv);
void SrpTest(void);
int w64wrapper_test(void);
int QuicTest(void);


#endif /* TESTS_UNIT_H */