Contributors: 9
	  
        
          | Author | 
          Tokens | 
          Token Proportion | 
          Commits | 
          Commit Proportion | 
        
	  
	  
        
        
          | Jiri Olsa | 
          150 | 
          35.55% | 
          2 | 
          18.18% | 
        
        
          | Alexei Starovoitov | 
          129 | 
          30.57% | 
          2 | 
          18.18% | 
        
        
          | Menglong Dong | 
          88 | 
          20.85% | 
          1 | 
          9.09% | 
        
        
          | Andrii Nakryiko | 
          26 | 
          6.16% | 
          1 | 
          9.09% | 
        
        
          | Delyan Kratunov | 
          11 | 
          2.61% | 
          1 | 
          9.09% | 
        
        
          | Kumar Kartikeya Dwivedi | 
          7 | 
          1.66% | 
          1 | 
          9.09% | 
        
        
          | KP Singh | 
          6 | 
          1.42% | 
          1 | 
          9.09% | 
        
        
          | Yonghong Song | 
          4 | 
          0.95% | 
          1 | 
          9.09% | 
        
        
          | Xu Kuohai | 
          1 | 
          0.24% | 
          1 | 
          9.09% | 
        
	  
	  
        
          | Total | 
          422 | 
           | 
          11 | 
           | 
	    
	  
    
 
// SPDX-License-Identifier: GPL-2.0
/* Copyright (c) 2019 Facebook */
#include <test_progs.h>
#include "fentry_test.lskel.h"
#include "fentry_many_args.skel.h"
static int fentry_test_common(struct fentry_test_lskel *fentry_skel)
{
	int err, prog_fd, i;
	int link_fd;
	__u64 *result;
	LIBBPF_OPTS(bpf_test_run_opts, topts);
	err = fentry_test_lskel__attach(fentry_skel);
	if (!ASSERT_OK(err, "fentry_attach"))
		return err;
	/* Check that already linked program can't be attached again. */
	link_fd = fentry_test_lskel__test1__attach(fentry_skel);
	if (!ASSERT_LT(link_fd, 0, "fentry_attach_link"))
		return -1;
	prog_fd = fentry_skel->progs.test1.prog_fd;
	err = bpf_prog_test_run_opts(prog_fd, &topts);
	ASSERT_OK(err, "test_run");
	ASSERT_EQ(topts.retval, 0, "test_run");
	result = (__u64 *)fentry_skel->bss;
	for (i = 0; i < sizeof(*fentry_skel->bss) / sizeof(__u64); i++) {
		if (!ASSERT_EQ(result[i], 1, "fentry_result"))
			return -1;
	}
	fentry_test_lskel__detach(fentry_skel);
	/* zero results for re-attach test */
	memset(fentry_skel->bss, 0, sizeof(*fentry_skel->bss));
	return 0;
}
static void fentry_test(void)
{
	struct fentry_test_lskel *fentry_skel = NULL;
	int err;
	fentry_skel = fentry_test_lskel__open_and_load();
	if (!ASSERT_OK_PTR(fentry_skel, "fentry_skel_load"))
		goto cleanup;
	err = fentry_test_common(fentry_skel);
	if (!ASSERT_OK(err, "fentry_first_attach"))
		goto cleanup;
	err = fentry_test_common(fentry_skel);
	ASSERT_OK(err, "fentry_second_attach");
cleanup:
	fentry_test_lskel__destroy(fentry_skel);
}
static void fentry_many_args(void)
{
	struct fentry_many_args *fentry_skel = NULL;
	int err;
	fentry_skel = fentry_many_args__open_and_load();
	if (!ASSERT_OK_PTR(fentry_skel, "fentry_many_args_skel_load"))
		goto cleanup;
	err = fentry_many_args__attach(fentry_skel);
	if (!ASSERT_OK(err, "fentry_many_args_attach"))
		goto cleanup;
	ASSERT_OK(trigger_module_test_read(1), "trigger_read");
	ASSERT_EQ(fentry_skel->bss->test1_result, 1,
		  "fentry_many_args_result1");
	ASSERT_EQ(fentry_skel->bss->test2_result, 1,
		  "fentry_many_args_result2");
	ASSERT_EQ(fentry_skel->bss->test3_result, 1,
		  "fentry_many_args_result3");
cleanup:
	fentry_many_args__destroy(fentry_skel);
}
void test_fentry_test(void)
{
	if (test__start_subtest("fentry"))
		fentry_test();
	if (test__start_subtest("fentry_many_args"))
		fentry_many_args();
}