Commit b93f2c0e authored by Vicent Marti's avatar Vicent Marti

cc: Add tests for the C API

parent 18ae111f
...@@ -7,3 +7,8 @@ add_executable(test_static test_static.c) ...@@ -7,3 +7,8 @@ add_executable(test_static test_static.c)
target_link_libraries(test_static bcc-static) target_link_libraries(test_static bcc-static)
add_test(NAME c_test_static COMMAND ${TEST_WRAPPER} c_test_static sudo ${CMAKE_CURRENT_BINARY_DIR}/test_static) add_test(NAME c_test_static COMMAND ${TEST_WRAPPER} c_test_static sudo ${CMAKE_CURRENT_BINARY_DIR}/test_static)
add_executable(test_c_api test_c_api.c)
target_link_libraries(test_c_api bcc-shared dl)
add_test(NAME test_c_api COMMAND ${TEST_WRAPPER} c_test_api sudo ${CMAKE_CURRENT_BINARY_DIR}/test_c_api)
/*
* sput - Simple, Portable Unit Testing Framework for C/C++ v1.3.1
*
* http://www.lingua-systems.com/unit-testing/
*
*
* Copyright (c) 2011-2015 Lingua-Systems Software GmbH
*
* All rights reserved.
*
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are
* met:
*
* * Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* * Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#ifndef HAVE_SPUT_H
#define HAVE_SPUT_H
#ifdef __cplusplus
extern "C" {
#endif
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
/* ===================================================================
* definitions
* =================================================================== */
#define SPUT_VERSION_MAJOR 1
#define SPUT_VERSION_MINOR 3
#define SPUT_VERSION_PATCH 1
#define SPUT_VERSION_STRING "1.3.1"
#define SPUT_DEFAULT_SUITE_NAME "Unlabeled Suite"
#define SPUT_DEFAULT_CHECK_NAME "Unlabeled Check"
#define SPUT_INITIALIZED 0x06 /* ACK */
/* ===================================================================
* sput global variable
* =================================================================== */
static struct sput {
FILE *out;
char initialized;
struct sput_overall {
unsigned long checks;
unsigned long suites;
unsigned long ok;
unsigned long nok;
} overall;
struct sput_suite {
const char *name;
unsigned long nr;
unsigned long checks;
unsigned long ok;
unsigned long nok;
} suite;
struct sput_test {
const char *name;
unsigned long nr;
} test;
struct sput_check {
const char *name;
const char *cond;
const char *type;
unsigned long line;
} check;
struct sput_time {
time_t start;
time_t end;
} time;
} __sput;
/* ==================================================================
* sput internal macros
* ================================================================== */
#define _sput_die_unless_initialized() \
if (__sput.initialized != SPUT_INITIALIZED) { \
fputs("sput_start_testing() omitted\n", stderr); \
exit(EXIT_FAILURE); \
}
#define _sput_die_unless_suite_set() \
if (!__sput.suite.name) { \
fputs("sput_enter_suite() omitted\n", __sput.out); \
exit(EXIT_FAILURE); \
}
#define _sput_die_unless_test_set() \
if (!__sput.test.name) { \
fputs("sput_run_test() omitted\n", __sput.out); \
exit(EXIT_FAILURE); \
}
#define _sput_check_failed() \
{ \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
__sput.suite.nok++; \
fprintf(__sput.out, \
"[%lu:%lu] %s:#%lu \"%s\" FAIL\n" \
"! Type: %s\n" \
"! Condition: %s\n" \
"! Line: %lu\n", \
__sput.suite.nr, __sput.suite.checks, __sput.test.name, \
__sput.test.nr, __sput.check.name, __sput.check.type, \
__sput.check.cond, __sput.check.line); \
}
#define _sput_check_succeeded() \
{ \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
__sput.suite.ok++; \
fprintf(__sput.out, "[%lu:%lu] %s:#%lu \"%s\" pass\n", __sput.suite.nr, \
__sput.suite.checks, __sput.test.name, __sput.test.nr, \
__sput.check.name); \
}
/* ==================================================================
* user macros
* ================================================================== */
#define sput_start_testing() \
do { \
memset(&__sput, 0, sizeof(__sput)); \
__sput.out = stdout; \
__sput.time.start = time(NULL); \
__sput.initialized = SPUT_INITIALIZED; \
} while (0)
#define sput_leave_suite() \
do { \
float failpls = 0.0f; \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
failpls = __sput.suite.checks \
? (float)((__sput.suite.nok * 100.0) / __sput.suite.checks) \
: 0.0f; \
fprintf(__sput.out, "\n--> %lu check(s), %lu ok, %lu failed (%.2f%%)\n", \
__sput.suite.checks, __sput.suite.ok, __sput.suite.nok, failpls); \
__sput.overall.checks += __sput.suite.checks; \
__sput.overall.ok += __sput.suite.ok; \
__sput.overall.nok += __sput.suite.nok; \
memset(&__sput.suite, 0, sizeof(__sput.suite)); \
} while (0)
#define sput_get_return_value() \
(__sput.overall.nok > 0 ? EXIT_FAILURE : EXIT_SUCCESS)
#define sput_enter_suite(_name) \
do { \
_sput_die_unless_initialized(); \
if (__sput.suite.name) { \
sput_leave_suite(); \
} \
__sput.suite.name = _name != NULL ? _name : SPUT_DEFAULT_SUITE_NAME; \
__sput.suite.nr = ++__sput.overall.suites; \
fprintf(__sput.out, "\n== Entering suite #%lu, \"%s\" ==\n\n", \
__sput.suite.nr, __sput.suite.name); \
} while (0)
#define sput_finish_testing() \
do { \
float failpft = 0.0f; \
_sput_die_unless_initialized(); \
if (__sput.suite.name) { \
sput_leave_suite(); \
} \
failpft = \
__sput.overall.checks \
? (float)((__sput.overall.nok * 100.0) / __sput.overall.checks) \
: 0.0f; \
__sput.time.end = time(NULL); \
fprintf( \
__sput.out, \
"\n==> %lu check(s) in %lu suite(s) finished after %.2f " \
"second(s),\n" \
" %lu succeeded, %lu failed (%.2f%%)\n" \
"\n[%s]\n", \
__sput.overall.checks, __sput.overall.suites, \
difftime(__sput.time.end, __sput.time.start), __sput.overall.ok, \
__sput.overall.nok, failpft, \
(sput_get_return_value() == EXIT_SUCCESS) ? "SUCCESS" : "FAILURE"); \
} while (0)
#define sput_set_output_stream(_fp) \
do { \
__sput.out = _fp != NULL ? _fp : stdout; \
} while (0)
#define sput_fail_if(_cond, _name) \
do { \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
_sput_die_unless_test_set(); \
__sput.check.name = _name != NULL ? _name : SPUT_DEFAULT_CHECK_NAME; \
__sput.check.line = __LINE__; \
__sput.check.cond = #_cond; \
__sput.check.type = "fail-if"; \
__sput.test.nr++; \
__sput.suite.checks++; \
if ((_cond)) { \
_sput_check_failed(); \
} else { \
_sput_check_succeeded(); \
} \
} while (0)
#define sput_fail_unless(_cond, _name) \
do { \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
_sput_die_unless_test_set(); \
__sput.check.name = _name != NULL ? _name : SPUT_DEFAULT_CHECK_NAME; \
__sput.check.line = __LINE__; \
__sput.check.cond = #_cond; \
__sput.check.type = "fail-unless"; \
__sput.test.nr++; \
__sput.suite.checks++; \
if (!(_cond)) { \
_sput_check_failed(); \
} else { \
_sput_check_succeeded(); \
} \
} while (0)
#define sput_run_test(_func) \
do { \
_sput_die_unless_initialized(); \
_sput_die_unless_suite_set(); \
memset(&__sput.test, 0, sizeof(__sput.test)); \
__sput.test.name = #_func; \
_func(); \
} while (0)
#ifdef __cplusplus
}
#endif
#endif /* HAVE_SPUT_H */
/* vim: set ft=c sts=4 sw=4 ts=4 ai et: */
#include <stdint.h>
#include <unistd.h>
#include <dlfcn.h>
#include "sput.h"
#include "bcc_elf.h"
#include "bcc_proc.h"
#include "bcc_syms.h"
static void test_procutils__which_so(void) {
const char *libm = bcc_procutils_which_so("m");
sput_fail_unless(libm, "find libm");
sput_fail_unless(libm[0] == '/', "resolve libm absolute path");
sput_fail_unless(strstr(libm, "libm.so"), "resolve libm so");
}
static void test_procutils__which(void) {
char *ld = bcc_procutils_which("ld");
sput_fail_unless(ld, "find `ld` binary");
sput_fail_unless(ld[0] == '/', "find `ld` absolute path");
free(ld);
}
static void _test_ksym(const char *sym, uint64_t addr, void *_) {
if (!strcmp(sym, "startup_64")) {
sput_fail_unless(addr == 0xffffffff81000000ull, "ksym `startup_64`");
} else if (!strcmp(sym, "__per_cpu_start"))
sput_fail_unless(addr == 0x0, "ksym `__per_cpu_start`");
}
static void test_procutils__each_ksym(void) {
sput_fail_unless(geteuid() == 0, "ensure we are root");
bcc_procutils_each_ksym(_test_ksym, NULL);
}
static void test_syms__resolve_symname(void) {
struct bcc_symbol sym;
sput_fail_unless(bcc_resolve_symname("c", "malloc", 0x0, &sym) == 0,
"bcc_resolve_symname(c, malloc)");
sput_fail_unless(strstr(sym.module, "libc.so"), "resolve to module");
sput_fail_unless(sym.module[0] == '/', "resolve to abspath");
sput_fail_unless(sym.offset != 0, "resolve sym offset");
}
static void test_syms__resolver_pid(void) {
struct bcc_symbol sym;
void *resolver = bcc_symcache_new(getpid());
sput_fail_unless(resolver, "create a new resolver for PID");
sput_fail_unless(bcc_symcache_resolve(
resolver, (uint64_t)&test_syms__resolver_pid, &sym) == 0,
"resolve the current function address");
char *this_exe = realpath("/proc/self/exe", NULL);
sput_fail_unless(strcmp(this_exe, sym.module) == 0,
"resolve a function to our own binary");
free(this_exe);
sput_fail_unless(strcmp("test_syms__resolver_pid", sym.name) == 0,
"resolve a function to its actual name");
void *libbcc = dlopen("libbcc.so", RTLD_LAZY | RTLD_NOLOAD);
sput_fail_unless(libbcc, "dlopen(libbcc.so)");
void *libbcc_fptr = dlsym(libbcc, "bcc_resolve_symname");
sput_fail_unless(libbcc_fptr, "dlsym(bcc_resolve_symname)");
sput_fail_unless(
bcc_symcache_resolve(resolver, (uint64_t)libbcc_fptr, &sym) == 0,
"resolve a function in libbcc in our current process");
sput_fail_unless(strstr(sym.module, "libbcc.so"),
"resolve a function to the loaded libbcc module");
sput_fail_unless(strcmp("bcc_resolve_symname", sym.name) == 0,
"resolve a function in libbcc to its actual name");
void *libc_fptr = dlsym(NULL, "strtok");
sput_fail_unless(libc_fptr, "dlsym(strtok)");
sput_fail_unless(
bcc_symcache_resolve(resolver, (uint64_t)libc_fptr, &sym) == 0,
"resolve a function in libc in our current process");
sput_fail_unless(
sym.module && sym.module[0] == '/' && strstr(sym.module, "libc"),
"resolve a function to linked libc module");
sput_fail_unless(strcmp("strtok", sym.name) == 0,
"resolve a function in libc to its actual name");
}
int main(int argc, char *argv[]) {
sput_start_testing();
sput_enter_suite("procutils: which_so");
sput_run_test(test_procutils__which_so);
sput_enter_suite("procutils: which");
sput_run_test(test_procutils__which);
sput_enter_suite("procutils: each_ksym");
sput_run_test(test_procutils__each_ksym);
sput_enter_suite("syms: resolve_symname");
sput_run_test(test_syms__resolve_symname);
sput_enter_suite("syms: resolver_pid");
sput_run_test(test_syms__resolver_pid);
sput_finish_testing();
return sput_get_return_value();
}
Markdown is supported
0%
or
You are about to add 0 people to the discussion. Proceed with caution.
Finish editing this message first!
Please register or to comment