clar.c 16.7 KB
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/*
 * Copyright (c) Vicent Marti. All rights reserved.
 *
 * This file is part of clar, distributed under the ISC license.
 * For full terms see the included COPYING file.
 */
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#include <assert.h>
#include <setjmp.h>
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
#include <math.h>
#include <stdarg.h>
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#include <wchar.h>
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/* required for sandboxing */
#include <sys/types.h>
#include <sys/stat.h>

#ifdef _WIN32
#	include <windows.h>
#	include <io.h>
#	include <shellapi.h>
#	include <direct.h>

#	define _MAIN_CC __cdecl

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#	ifndef stat
#		define stat(path, st) _stat(path, st)
#	endif
#	ifndef mkdir
#		define mkdir(path, mode) _mkdir(path)
#	endif
#	ifndef chdir
#		define chdir(path) _chdir(path)
#	endif
#	ifndef access
#		define access(path, mode) _access(path, mode)
#	endif
#	ifndef strdup
#		define strdup(str) _strdup(str)
#	endif
#	ifndef strcasecmp
#		define strcasecmp(a,b) _stricmp(a,b)
#	endif
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#	ifndef __MINGW32__
#		pragma comment(lib, "shell32")
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#		ifndef strncpy
#			define strncpy(to, from, to_size) strncpy_s(to, to_size, from, _TRUNCATE)
#		endif
#		ifndef W_OK
#			define W_OK 02
#		endif
#		ifndef S_ISDIR
#			define S_ISDIR(x) ((x & _S_IFDIR) != 0)
#		endif
#		define p_snprintf(buf,sz,fmt,...) _snprintf_s(buf,sz,_TRUNCATE,fmt,__VA_ARGS__)
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#	else
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#		define p_snprintf snprintf
#	endif

#	ifndef PRIuZ
#		define PRIuZ "Iu"
#	endif
#	ifndef PRIxZ
#		define PRIxZ "Ix"
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#	endif
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#	ifdef _MSC_VER
	typedef struct stat STAT_T;
#	else
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	typedef struct _stat STAT_T;
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#	endif
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#else
#	include <sys/wait.h> /* waitpid(2) */
#	include <unistd.h>
#	define _MAIN_CC
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#	define p_snprintf snprintf
#	ifndef PRIuZ
#		define PRIuZ "zu"
#	endif
#	ifndef PRIxZ
#		define PRIxZ "zx"
#	endif
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	typedef struct stat STAT_T;
#endif

#include "clar.h"

static void fs_rm(const char *_source);
static void fs_copy(const char *_source, const char *dest);

static const char *
fixture_path(const char *base, const char *fixture_name);

struct clar_error {
	const char *file;
	int line_number;
	const char *error_msg;
	char *description;

	struct clar_error *next;
};

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struct clar_explicit {
	size_t suite_idx;
	const char *filter;

	struct clar_explicit *next;
};
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struct clar_report {
	const char *test;
	int test_number;
	const char *suite;

	enum cl_test_status status;

	struct clar_error *errors;
	struct clar_error *last_error;

	struct clar_report *next;
};

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struct clar_summary {
	const char *filename;
	FILE *fp;
};

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static struct {
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	enum cl_test_status test_status;
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	const char *active_test;
	const char *active_suite;

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	int total_skipped;
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	int total_errors;

	int tests_ran;
	int suites_ran;

	int report_errors_only;
	int exit_on_error;
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	int report_suite_names;
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	int write_summary;
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	const char *summary_filename;
	struct clar_summary *summary;
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	struct clar_explicit *explicit;
	struct clar_explicit *last_explicit;

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	struct clar_report *reports;
	struct clar_report *last_report;
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	void (*local_cleanup)(void *);
	void *local_cleanup_payload;

	jmp_buf trampoline;
	int trampoline_enabled;
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	cl_trace_cb *pfn_trace_cb;
	void *trace_payload;

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} _clar;

struct clar_func {
	const char *name;
	void (*ptr)(void);
};

struct clar_suite {
	const char *name;
	struct clar_func initialize;
	struct clar_func cleanup;
	const struct clar_func *tests;
	size_t test_count;
	int enabled;
};

/* From clar_print_*.c */
static void clar_print_init(int test_count, int suite_count, const char *suite_names);
static void clar_print_shutdown(int test_count, int suite_count, int error_count);
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static void clar_print_error(int num, const struct clar_report *report, const struct clar_error *error);
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static void clar_print_ontest(const char *test_name, int test_number, enum cl_test_status failed);
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static void clar_print_onsuite(const char *suite_name, int suite_index);
static void clar_print_onabort(const char *msg, ...);

/* From clar_sandbox.c */
static void clar_unsandbox(void);
static int clar_sandbox(void);

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/* From summary.h */
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static struct clar_summary *clar_summary_init(const char *filename);
static int clar_summary_shutdown(struct clar_summary *fp);
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/* Load the declarations for the test suite */
#include "clar.suite"

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#define CL_TRACE(ev)													\
	do {																\
		if (_clar.pfn_trace_cb)											\
			_clar.pfn_trace_cb(ev,										\
							   _clar.active_suite,						\
							   _clar.active_test,						\
							   _clar.trace_payload);					\
	} while (0)

void cl_trace_register(cl_trace_cb *cb, void *payload)
{
	_clar.pfn_trace_cb = cb;
	_clar.trace_payload = payload;
}


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/* Core test functions */
static void
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clar_report_errors(struct clar_report *report)
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{
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	struct clar_error *error;
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	int i = 1;
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	for (error = report->errors; error; error = error->next)
		clar_print_error(i++, _clar.last_report, error);
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}

static void
clar_report_all(void)
{
	struct clar_report *report;
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	struct clar_error *error;
	int i = 1;

	for (report = _clar.reports; report; report = report->next) {
		if (report->status != CL_TEST_FAILURE)
			continue;
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		for (error = report->errors; error; error = error->next)
			clar_print_error(i++, report, error);
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	}
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}

static void
clar_run_test(
	const struct clar_func *test,
	const struct clar_func *initialize,
	const struct clar_func *cleanup)
{
	_clar.trampoline_enabled = 1;

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	CL_TRACE(CL_TRACE__TEST__BEGIN);

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	if (setjmp(_clar.trampoline) == 0) {
		if (initialize->ptr != NULL)
			initialize->ptr();

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		CL_TRACE(CL_TRACE__TEST__RUN_BEGIN);
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		test->ptr();
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		CL_TRACE(CL_TRACE__TEST__RUN_END);
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	}

	_clar.trampoline_enabled = 0;

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	if (_clar.last_report->status == CL_TEST_NOTRUN)
		_clar.last_report->status = CL_TEST_OK;

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	if (_clar.local_cleanup != NULL)
		_clar.local_cleanup(_clar.local_cleanup_payload);

	if (cleanup->ptr != NULL)
		cleanup->ptr();

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	CL_TRACE(CL_TRACE__TEST__END);

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	_clar.tests_ran++;

	/* remove any local-set cleanup methods */
	_clar.local_cleanup = NULL;
	_clar.local_cleanup_payload = NULL;

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	if (_clar.report_errors_only) {
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		clar_report_errors(_clar.last_report);
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	} else {
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		clar_print_ontest(test->name, _clar.tests_ran, _clar.last_report->status);
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	}
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}

static void
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clar_run_suite(const struct clar_suite *suite, const char *filter)
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{
	const struct clar_func *test = suite->tests;
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	size_t i, matchlen;
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	struct clar_report *report;
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	if (!suite->enabled)
		return;

	if (_clar.exit_on_error && _clar.total_errors)
		return;

	if (!_clar.report_errors_only)
		clar_print_onsuite(suite->name, ++_clar.suites_ran);

	_clar.active_suite = suite->name;
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	_clar.active_test = NULL;
	CL_TRACE(CL_TRACE__SUITE_BEGIN);
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	if (filter) {
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		size_t suitelen = strlen(suite->name);
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		matchlen = strlen(filter);
		if (matchlen <= suitelen) {
			filter = NULL;
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		} else {
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			filter += suitelen;
			while (*filter == ':')
				++filter;
			matchlen = strlen(filter);
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		}
	}

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	for (i = 0; i < suite->test_count; ++i) {
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		if (filter && strncmp(test[i].name, filter, matchlen))
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			continue;

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		_clar.active_test = test[i].name;
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		report = calloc(1, sizeof(struct clar_report));
		report->suite = _clar.active_suite;
		report->test = _clar.active_test;
		report->test_number = _clar.tests_ran;
		report->status = CL_TEST_NOTRUN;

		if (_clar.reports == NULL)
			_clar.reports = report;

		if (_clar.last_report != NULL)
			_clar.last_report->next = report;

		_clar.last_report = report;

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		clar_run_test(&test[i], &suite->initialize, &suite->cleanup);

		if (_clar.exit_on_error && _clar.total_errors)
			return;
	}
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	_clar.active_test = NULL;
	CL_TRACE(CL_TRACE__SUITE_END);
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}

static void
clar_usage(const char *arg)
{
	printf("Usage: %s [options]\n\n", arg);
	printf("Options:\n");
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	printf("  -sname        Run only the suite with `name` (can go to individual test name)\n");
	printf("  -iname        Include the suite with `name`\n");
	printf("  -xname        Exclude the suite with `name`\n");
	printf("  -v            Increase verbosity (show suite names)\n");
	printf("  -q            Only report tests that had an error\n");
	printf("  -Q            Quit as soon as a test fails\n");
	printf("  -l            Print suite names\n");
	printf("  -r[filename]  Write summary file (to the optional filename)\n");
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	exit(-1);
}

static void
clar_parse_args(int argc, char **argv)
{
	int i;

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	/* Verify options before execute */
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	for (i = 1; i < argc; ++i) {
		char *argument = argv[i];

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		if (argument[0] != '-' || argument[1] == '\0'
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		    || strchr("sixvqQlr", argument[1]) == NULL) {
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			clar_usage(argv[0]);
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		}
	}

	for (i = 1; i < argc; ++i) {
		char *argument = argv[i];
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		switch (argument[1]) {
		case 's':
		case 'i':
		case 'x': { /* given suite name */
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			int offset = (argument[2] == '=') ? 3 : 2, found = 0;
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			char action = argument[1];
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			size_t j, arglen, suitelen, cmplen;
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			argument += offset;
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			arglen = strlen(argument);
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			if (arglen == 0)
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				clar_usage(argv[0]);

			for (j = 0; j < _clar_suite_count; ++j) {
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				suitelen = strlen(_clar_suites[j].name);
				cmplen = (arglen < suitelen) ? arglen : suitelen;
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				if (strncmp(argument, _clar_suites[j].name, cmplen) == 0) {
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					int exact = (arglen >= suitelen);
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					/* Do we have a real suite prefix separated by a
					 * trailing '::' or just a matching substring? */
					if (arglen > suitelen && (argument[suitelen] != ':'
						    || argument[suitelen + 1] != ':'))
					    continue;

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					++found;

					if (!exact)
						_clar.report_suite_names = 1;

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					switch (action) {
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					case 's': {
						struct clar_explicit *explicit =
							calloc(1, sizeof(struct clar_explicit));
						assert(explicit);

						explicit->suite_idx = j;
						explicit->filter = argument;

						if (_clar.explicit == NULL)
							_clar.explicit = explicit;

						if (_clar.last_explicit != NULL)
							_clar.last_explicit->next = explicit;

						_clar_suites[j].enabled = 1;
						_clar.last_explicit = explicit;
						break;
					}
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					case 'i': _clar_suites[j].enabled = 1; break;
					case 'x': _clar_suites[j].enabled = 0; break;
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					}
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					if (exact)
						break;
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				}
			}

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			if (!found) {
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				clar_print_onabort("No suite matching '%s' found.\n", argument);
				exit(-1);
			}
			break;
		}

		case 'q':
			_clar.report_errors_only = 1;
			break;

		case 'Q':
			_clar.exit_on_error = 1;
			break;

		case 'l': {
			size_t j;
			printf("Test suites (use -s<name> to run just one):\n");
			for (j = 0; j < _clar_suite_count; ++j)
				printf(" %3d: %s\n", (int)j, _clar_suites[j].name);

			exit(0);
		}

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		case 'v':
			_clar.report_suite_names = 1;
			break;

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		case 'r':
			_clar.write_summary = 1;
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			_clar.summary_filename = *(argument + 2) ? (argument + 2) :
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			    "summary.xml";
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			break;

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		default:
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			assert(!"Unexpected commandline argument!");
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		}
	}
}

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void
clar_test_init(int argc, char **argv)
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{
	clar_print_init(
		(int)_clar_callback_count,
		(int)_clar_suite_count,
		""
	);

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	if (argc > 1)
		clar_parse_args(argc, argv);

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	if (_clar.write_summary &&
	    !(_clar.summary = clar_summary_init(_clar.summary_filename))) {
		clar_print_onabort("Failed to open the summary file\n");
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		exit(-1);
	}

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	if (clar_sandbox() < 0) {
		clar_print_onabort("Failed to sandbox the test runner.\n");
		exit(-1);
	}
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}
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int
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clar_test_run(void)
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{
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	size_t i;
	struct clar_explicit *explicit;
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	if (_clar.explicit) {
		for (explicit = _clar.explicit; explicit; explicit = explicit->next)
			clar_run_suite(&_clar_suites[explicit->suite_idx], explicit->filter);
	} else {
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		for (i = 0; i < _clar_suite_count; ++i)
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			clar_run_suite(&_clar_suites[i], NULL);
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	}

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	return _clar.total_errors;
}

void
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clar_test_shutdown(void)
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{
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	struct clar_explicit *explicit, *explicit_next;
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	struct clar_report *report, *report_next;
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	clar_print_shutdown(
		_clar.tests_ran,
		(int)_clar_suite_count,
		_clar.total_errors
	);

	clar_unsandbox();
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	if (_clar.write_summary && clar_summary_shutdown(_clar.summary) < 0) {
		clar_print_onabort("Failed to write the summary file\n");
		exit(-1);
	}
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	for (explicit = _clar.explicit; explicit; explicit = explicit_next) {
		explicit_next = explicit->next;
		free(explicit);
	}
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	for (report = _clar.reports; report; report = report_next) {
		report_next = report->next;
		free(report);
	}
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}

int
clar_test(int argc, char **argv)
{
	int errors;

	clar_test_init(argc, argv);
	errors = clar_test_run();
	clar_test_shutdown();

	return errors;
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}

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static void abort_test(void)
{
	if (!_clar.trampoline_enabled) {
		clar_print_onabort(
				"Fatal error: a cleanup method raised an exception.");
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		clar_report_errors(_clar.last_report);
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		exit(-1);
	}

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	CL_TRACE(CL_TRACE__TEST__LONGJMP);
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	longjmp(_clar.trampoline, -1);
}

void clar__skip(void)
{
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	_clar.last_report->status = CL_TEST_SKIP;
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	_clar.total_skipped++;
	abort_test();
}

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void clar__fail(
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	const char *file,
	int line,
	const char *error_msg,
	const char *description,
	int should_abort)
{
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	struct clar_error *error = calloc(1, sizeof(struct clar_error));
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	if (_clar.last_report->errors == NULL)
		_clar.last_report->errors = error;
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	if (_clar.last_report->last_error != NULL)
		_clar.last_report->last_error->next = error;
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	_clar.last_report->last_error = error;
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	error->file = file;
	error->line_number = line;
	error->error_msg = error_msg;

	if (description != NULL)
		error->description = strdup(description);

	_clar.total_errors++;
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	_clar.last_report->status = CL_TEST_FAILURE;
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	if (should_abort)
		abort_test();
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}

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void clar__assert(
	int condition,
	const char *file,
	int line,
	const char *error_msg,
	const char *description,
	int should_abort)
{
	if (condition)
		return;

	clar__fail(file, line, error_msg, description, should_abort);
}

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void clar__assert_equal(
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	const char *file,
	int line,
	const char *err,
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	int should_abort,
	const char *fmt,
	...)
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{
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	va_list args;
	char buf[4096];
	int is_equal = 1;

	va_start(args, fmt);

	if (!strcmp("%s", fmt)) {
		const char *s1 = va_arg(args, const char *);
		const char *s2 = va_arg(args, const char *);
		is_equal = (!s1 || !s2) ? (s1 == s2) : !strcmp(s1, s2);

		if (!is_equal) {
			if (s1 && s2) {
				int pos;
				for (pos = 0; s1[pos] == s2[pos] && s1[pos] && s2[pos]; ++pos)
					/* find differing byte offset */;
				p_snprintf(buf, sizeof(buf), "'%s' != '%s' (at byte %d)",
					s1, s2, pos);
			} else {
				p_snprintf(buf, sizeof(buf), "'%s' != '%s'", s1, s2);
			}
		}
	}
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	else if(!strcmp("%.*s", fmt)) {
		const char *s1 = va_arg(args, const char *);
		const char *s2 = va_arg(args, const char *);
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		int len = va_arg(args, int);
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		is_equal = (!s1 || !s2) ? (s1 == s2) : !strncmp(s1, s2, len);

		if (!is_equal) {
			if (s1 && s2) {
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				int pos;
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				for (pos = 0; s1[pos] == s2[pos] && pos < len; ++pos)
					/* find differing byte offset */;
				p_snprintf(buf, sizeof(buf), "'%.*s' != '%.*s' (at byte %d)",
					len, s1, len, s2, pos);
			} else {
				p_snprintf(buf, sizeof(buf), "'%.*s' != '%.*s'", len, s1, len, s2);
			}
		}
	}
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	else if (!strcmp("%ls", fmt)) {
		const wchar_t *wcs1 = va_arg(args, const wchar_t *);
		const wchar_t *wcs2 = va_arg(args, const wchar_t *);
		is_equal = (!wcs1 || !wcs2) ? (wcs1 == wcs2) : !wcscmp(wcs1, wcs2);

		if (!is_equal) {
			if (wcs1 && wcs2) {
				int pos;
				for (pos = 0; wcs1[pos] == wcs2[pos] && wcs1[pos] && wcs2[pos]; ++pos)
					/* find differing byte offset */;
				p_snprintf(buf, sizeof(buf), "'%ls' != '%ls' (at byte %d)",
					wcs1, wcs2, pos);
			} else {
				p_snprintf(buf, sizeof(buf), "'%ls' != '%ls'", wcs1, wcs2);
			}
		}
	}
	else if(!strcmp("%.*ls", fmt)) {
		const wchar_t *wcs1 = va_arg(args, const wchar_t *);
		const wchar_t *wcs2 = va_arg(args, const wchar_t *);
		int len = va_arg(args, int);
		is_equal = (!wcs1 || !wcs2) ? (wcs1 == wcs2) : !wcsncmp(wcs1, wcs2, len);

		if (!is_equal) {
			if (wcs1 && wcs2) {
				int pos;
				for (pos = 0; wcs1[pos] == wcs2[pos] && pos < len; ++pos)
					/* find differing byte offset */;
				p_snprintf(buf, sizeof(buf), "'%.*ls' != '%.*ls' (at byte %d)",
					len, wcs1, len, wcs2, pos);
			} else {
				p_snprintf(buf, sizeof(buf), "'%.*ls' != '%.*ls'", len, wcs1, len, wcs2);
			}
		}
	}
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	else if (!strcmp("%"PRIuZ, fmt) || !strcmp("%"PRIxZ, fmt)) {
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		size_t sz1 = va_arg(args, size_t), sz2 = va_arg(args, size_t);
		is_equal = (sz1 == sz2);
		if (!is_equal) {
			int offset = p_snprintf(buf, sizeof(buf), fmt, sz1);
			strncat(buf, " != ", sizeof(buf) - offset);
			p_snprintf(buf + offset + 4, sizeof(buf) - offset - 4, fmt, sz2);
		}
	}
	else if (!strcmp("%p", fmt)) {
		void *p1 = va_arg(args, void *), *p2 = va_arg(args, void *);
		is_equal = (p1 == p2);
		if (!is_equal)
			p_snprintf(buf, sizeof(buf), "%p != %p", p1, p2);
	}
	else {
		int i1 = va_arg(args, int), i2 = va_arg(args, int);
		is_equal = (i1 == i2);
		if (!is_equal) {
			int offset = p_snprintf(buf, sizeof(buf), fmt, i1);
			strncat(buf, " != ", sizeof(buf) - offset);
			p_snprintf(buf + offset + 4, sizeof(buf) - offset - 4, fmt, i2);
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		}
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	}

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	va_end(args);

	if (!is_equal)
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		clar__fail(file, line, err, buf, should_abort);
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}

void cl_set_cleanup(void (*cleanup)(void *), void *opaque)
{
	_clar.local_cleanup = cleanup;
	_clar.local_cleanup_payload = opaque;
}

#include "clar/sandbox.h"
#include "clar/fixtures.h"
#include "clar/fs.h"
#include "clar/print.h"
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#include "clar/summary.h"