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120681c1a3
Several static analyzers (clang's one, Facebook Infer, etc.) warn about NULL pointer dereferences after a call to CU_ASSERT_PTR_NOT_NULL_FATAL() in the test code written using CUnit framework. This is because this CUnit macro is too complex for them to understand that the pointer cannot be NULL: it is translated to a call to CU_assertImplementation() with an argument as TRUE in order to mean that the call is fatal if the asserted condition failed (cf. http://cunit.sourceforge.net/doxdocs/group__Framework.html). A possible solution could consist in replacing the CU_ASSERT_..._FATAL() calls by assert() ones, as most static analyzers know about assert(). Nevertheless this seems to go against CUnit's API. An alternative solution consists in overriding CU_ASSERT_..._FATAL() macros in order to expand to assert() after a call to the matching CU_ASSERT_...() non-fatal macro. This appears to work fine and to remove many false-positive warnings from various static analyzers. As this substitution should only occur when using static analyzer, put it under #ifdef __CHECKER__, which is the macro used by sparse when analyzing the Linux kernel. Signed-off-by: Nicolas Iooss <nicolas.iooss@m4x.org>
307 lines
10 KiB
C
307 lines
10 KiB
C
/*
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* Author: Karl MacMillan <kmacmillan@tresys.com>
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*
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* Copyright (C) 2006 Tresys Technology, LLC
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "test-deps.h"
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#include "parse_util.h"
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#include "helpers.h"
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#include <sepol/policydb/policydb.h>
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#include <sepol/policydb/link.h>
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#include <stdlib.h>
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/* Tests for dependency checking / handling, specifically:
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*
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* 1 type in module global.
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* 2 attribute in module global.
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* 3 object class / perm in module global.
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* 4 boolean in module global.
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* 5 role in module global.
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*
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* 6 type in module optional.
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* 7 attribute in module optional.
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* 8 object class / perm in module optional.
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* 9 boolean in module optional.
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* 10 role in module optional.
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*
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* 11 type in base optional.
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* 12 attribute in base optional.
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* 13 object class / perm in base optional.
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* 14 boolean in base optional.
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* 15 role in base optional.
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*
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* Each of these tests are done with the dependency met and not
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* met. Additionally, each of the required symbols is used in the
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* scope it is required.
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*
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* In addition to the simple tests, we have test with more complex
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* modules that test:
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*
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* 17 mutual dependencies between two modules.
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* 18 circular dependency between three modules.
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* 19 large number of dependencies in a module with a more complex base.
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* 20 nested optionals with requires.
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*
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* Again, each of these tests is done with the requirements met and not
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* met.
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*/
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#include <sepol/debug.h>
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#include <sepol/handle.h>
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#include "helpers.h"
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#define BASE_MODREQ_TYPE_GLOBAL 0
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#define BASE_MODREQ_ATTR_GLOBAL 1
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#define BASE_MODREQ_OBJ_GLOBAL 2
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#define BASE_MODREQ_BOOL_GLOBAL 3
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#define BASE_MODREQ_ROLE_GLOBAL 4
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#define BASE_MODREQ_PERM_GLOBAL 5
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#define BASE_MODREQ_TYPE_OPT 6
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#define BASE_MODREQ_ATTR_OPT 7
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#define BASE_MODREQ_OBJ_OPT 8
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#define BASE_MODREQ_BOOL_OPT 9
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#define BASE_MODREQ_ROLE_OPT 10
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#define BASE_MODREQ_PERM_OPT 11
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#define NUM_BASES 12
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static policydb_t bases_met[NUM_BASES];
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static policydb_t bases_notmet[NUM_BASES];
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extern int mls;
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int deps_test_init(void)
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{
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int i;
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/* To test linking we need 1 base per link test and in
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* order to load them in the init function we have
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* to keep them all around. Not ideal, but it shouldn't
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* matter too much.
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*/
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for (i = 0; i < NUM_BASES; i++) {
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if (test_load_policy(&bases_met[i], POLICY_BASE, mls, "test-deps", "base-metreq.conf"))
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return -1;
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}
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for (i = 0; i < NUM_BASES; i++) {
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if (test_load_policy(&bases_notmet[i], POLICY_BASE, mls, "test-deps", "base-notmetreq.conf"))
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return -1;
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}
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return 0;
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}
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int deps_test_cleanup(void)
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{
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int i;
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for (i = 0; i < NUM_BASES; i++) {
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policydb_destroy(&bases_met[i]);
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}
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for (i = 0; i < NUM_BASES; i++) {
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policydb_destroy(&bases_notmet[i]);
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}
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return 0;
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}
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/* This function performs testing of the dependency handles for module global
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* symbols. It is capable of testing 2 scenarios - the dependencies are met
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* and the dependencies are not met.
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*
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* Parameters:
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* req_met boolean indicating whether the base policy meets the
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* requirements for the modules global block.
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* b index of the base policy in the global bases_met array.
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*
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* policy name of the policy module to load for this test.
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* decl_type name of the unique type found in the module's global
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* section is to find that avrule_decl.
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*/
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static void do_deps_modreq_global(int req_met, int b, const char *policy, const char *decl_type)
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{
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policydb_t *base;
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policydb_t mod;
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policydb_t *mods[] = { &mod };
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avrule_decl_t *decl;
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int ret, link_ret;
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sepol_handle_t *h;
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/* suppress error reporting - this is because we know that we
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* are going to get errors and don't want libsepol complaining
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* about it constantly. */
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h = sepol_handle_create();
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CU_ASSERT_FATAL(h != NULL);
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sepol_msg_set_callback(h, NULL, NULL);
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if (req_met) {
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base = &bases_met[b];
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link_ret = 0;
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} else {
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base = &bases_notmet[b];
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link_ret = -3;
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}
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CU_ASSERT_FATAL(test_load_policy(&mod, POLICY_MOD, mls, "test-deps", policy) == 0);
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/* link the modules and check for the correct return value.
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*/
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ret = link_modules(h, base, mods, 1, 0);
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CU_ASSERT_FATAL(ret == link_ret);
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policydb_destroy(&mod);
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sepol_handle_destroy(h);
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if (!req_met)
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return;
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decl = test_find_decl_by_sym(base, SYM_TYPES, decl_type);
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CU_ASSERT_FATAL(decl != NULL);
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CU_ASSERT(decl->enabled == 1);
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}
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/* Test that symbol require statements in the global scope of a module
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* work correctly. This will cover tests 1 - 5 (described above).
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*
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* Each of these policies will require as few symbols as possible to
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* use the required symbol in addition requiring (for example, the type
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* test also requires an object class for an allow rule).
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*/
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static void deps_modreq_global(void)
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{
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/* object classes */
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do_deps_modreq_global(1, BASE_MODREQ_OBJ_GLOBAL, "modreq-obj-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_OBJ_GLOBAL, "modreq-obj-global.conf", "mod_global_t");
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/* types */
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do_deps_modreq_global(1, BASE_MODREQ_TYPE_GLOBAL, "modreq-type-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_TYPE_GLOBAL, "modreq-type-global.conf", "mod_global_t");
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/* attributes */
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do_deps_modreq_global(1, BASE_MODREQ_ATTR_GLOBAL, "modreq-attr-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_ATTR_GLOBAL, "modreq-attr-global.conf", "mod_global_t");
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/* booleans */
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do_deps_modreq_global(1, BASE_MODREQ_BOOL_GLOBAL, "modreq-bool-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_BOOL_GLOBAL, "modreq-bool-global.conf", "mod_global_t");
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/* roles */
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do_deps_modreq_global(1, BASE_MODREQ_ROLE_GLOBAL, "modreq-role-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_ROLE_GLOBAL, "modreq-role-global.conf", "mod_global_t");
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do_deps_modreq_global(1, BASE_MODREQ_PERM_GLOBAL, "modreq-perm-global.conf", "mod_global_t");
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do_deps_modreq_global(0, BASE_MODREQ_PERM_GLOBAL, "modreq-perm-global.conf", "mod_global_t");
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}
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/* This function performs testing of the dependency handles for module optional
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* symbols. It is capable of testing 2 scenarios - the dependencies are met
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* and the dependencies are not met.
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*
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* Parameters:
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* req_met boolean indicating whether the base policy meets the
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* requirements for the modules global block.
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* b index of the base policy in the global bases_met array.
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*
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* policy name of the policy module to load for this test.
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* decl_type name of the unique type found in the module's global
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* section is to find that avrule_decl.
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*/
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static void do_deps_modreq_opt(int req_met, int ret_val, int b, const char *policy, const char *decl_type)
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{
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policydb_t *base;
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policydb_t mod;
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policydb_t *mods[] = { &mod };
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avrule_decl_t *decl;
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int ret;
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sepol_handle_t *h;
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/* suppress error reporting - this is because we know that we
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* are going to get errors and don't want libsepol complaining
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* about it constantly. */
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h = sepol_handle_create();
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CU_ASSERT_FATAL(h != NULL);
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sepol_msg_set_callback(h, NULL, NULL);
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if (req_met) {
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base = &bases_met[b];
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} else {
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base = &bases_notmet[b];
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}
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CU_ASSERT_FATAL(test_load_policy(&mod, POLICY_MOD, mls, "test-deps", policy) == 0);
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/* link the modules and check for the correct return value.
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*/
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ret = link_modules(h, base, mods, 1, 0);
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CU_ASSERT_FATAL(ret == ret_val);
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policydb_destroy(&mod);
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sepol_handle_destroy(h);
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if (ret_val < 0)
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return;
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decl = test_find_decl_by_sym(base, SYM_TYPES, decl_type);
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CU_ASSERT_FATAL(decl != NULL);
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if (req_met) {
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CU_ASSERT(decl->enabled == 1);
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} else {
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CU_ASSERT(decl->enabled == 0);
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}
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}
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/* Test that symbol require statements in the global scope of a module
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* work correctly. This will cover tests 6 - 10 (described above).
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*
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* Each of these policies will require as few symbols as possible to
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* use the required symbol in addition requiring (for example, the type
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* test also requires an object class for an allow rule).
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*/
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static void deps_modreq_opt(void)
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{
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/* object classes */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_OBJ_OPT, "modreq-obj-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, 0, BASE_MODREQ_OBJ_OPT, "modreq-obj-opt.conf", "mod_opt_t");
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/* types */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_TYPE_OPT, "modreq-type-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, 0, BASE_MODREQ_TYPE_OPT, "modreq-type-opt.conf", "mod_opt_t");
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/* attributes */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_ATTR_OPT, "modreq-attr-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, 0, BASE_MODREQ_ATTR_OPT, "modreq-attr-opt.conf", "mod_opt_t");
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/* booleans */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_BOOL_OPT, "modreq-bool-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, 0, BASE_MODREQ_BOOL_OPT, "modreq-bool-opt.conf", "mod_opt_t");
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/* roles */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_ROLE_OPT, "modreq-role-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, 0, BASE_MODREQ_ROLE_OPT, "modreq-role-opt.conf", "mod_opt_t");
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/* permissions */
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do_deps_modreq_opt(1, 0, BASE_MODREQ_PERM_OPT, "modreq-perm-opt.conf", "mod_opt_t");
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do_deps_modreq_opt(0, -3, BASE_MODREQ_PERM_OPT, "modreq-perm-opt.conf", "mod_opt_t");
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}
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int deps_add_tests(CU_pSuite suite)
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{
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if (NULL == CU_add_test(suite, "deps_modreq_global", deps_modreq_global)) {
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return CU_get_error();
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}
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if (NULL == CU_add_test(suite, "deps_modreq_opt", deps_modreq_opt)) {
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return CU_get_error();
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}
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return 0;
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}
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