mirror of
https://github.com/SELinuxProject/selinux
synced 2024-12-19 20:50:08 +00:00
c33fd02db5
Since fd9e5ef7b7
("libsepol: use constant keys in hashtab functions")
it is possible to call hashtab_search() with a const char* key value.
Doing so fixes compiler warnings about non-const char* string literals
(-Wwrite-strings flag).
Signed-off-by: Nicolas Iooss <nicolas.iooss@m4x.org>
160 lines
5.1 KiB
C
160 lines
5.1 KiB
C
/*
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* Author: Joshua Brindle <jbrindle@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 "parse_util.h"
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#include "helpers.h"
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#include "test-common.h"
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#include <sepol/policydb/policydb.h>
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#include <sepol/policydb/link.h>
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#include <sepol/policydb/conditional.h>
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#include <CUnit/Basic.h>
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#include <stdlib.h>
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/* Tests for conditionals
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* Test each cond/bool for these
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* - boolean copied correctly (state is correct)
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* - conditional expression is correct
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* Tests:
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* - single boolean in base
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* - single boolean in module
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* - single boolean in base optional
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* - single boolean in module optional
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* - 2 booleans in base
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* - 2 booleans in module
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* - 2 booleans in base optional
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* - 2 booleans in module optional
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* - 2 booleans, base and module
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* - 2 booleans, base optional and module
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* - 2 booleans, base optional and module optional
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* - 3 booleans, base, base optional, module
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* - 4 boolean, base, base optional, module, module optional
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*/
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typedef struct test_cond_expr {
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const char *bool;
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uint32_t expr_type;
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} test_cond_expr_t;
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void test_cond_expr_mapping(policydb_t * p, avrule_decl_t * d, test_cond_expr_t * bools, int len)
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{
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int i;
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cond_expr_t *expr;
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CU_ASSERT_FATAL(d->cond_list != NULL);
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CU_ASSERT_FATAL(d->cond_list->expr != NULL);
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expr = d->cond_list->expr;
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for (i = 0; i < len; i++) {
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CU_ASSERT_FATAL(expr != NULL);
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CU_ASSERT(expr->expr_type == bools[i].expr_type);
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if (bools[i].bool) {
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CU_ASSERT(strcmp(p->sym_val_to_name[SYM_BOOLS][expr->bool - 1], bools[i].bool) == 0);
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}
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expr = expr->next;
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}
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}
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void test_bool_state(policydb_t * p, const char *bool, int state)
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{
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cond_bool_datum_t *b;
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b = hashtab_search(p->p_bools.table, bool);
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CU_ASSERT_FATAL(b != NULL);
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CU_ASSERT(b->state == state);
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}
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void base_cond_tests(policydb_t * base)
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{
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avrule_decl_t *d;
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unsigned int decls[1];
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test_cond_expr_t bools[2];
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/* these tests look at booleans and conditionals in the base only
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* to ensure that they aren't altered or removed during the link process */
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/* bool existance and state, global scope */
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d = test_find_decl_by_sym(base, SYM_TYPES, "tag_g_b");
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decls[0] = d->decl_id;
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test_sym_presence(base, "g_b_bool_1", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_bool_state(base, "g_b_bool_1", 0);
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/* conditional expression mapped correctly */
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bools[0].bool = "g_b_bool_1";
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bools[0].expr_type = COND_BOOL;
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test_cond_expr_mapping(base, d, bools, 1);
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/* bool existance and state, optional scope */
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d = test_find_decl_by_sym(base, SYM_TYPES, "tag_o1_b");
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decls[0] = d->decl_id;
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test_sym_presence(base, "o1_b_bool_1", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_bool_state(base, "o1_b_bool_1", 1);
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/* conditional expression mapped correctly */
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bools[0].bool = "o1_b_bool_1";
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bools[0].expr_type = COND_BOOL;
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test_cond_expr_mapping(base, d, bools, 1);
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}
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void module_cond_tests(policydb_t * base)
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{
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avrule_decl_t *d;
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unsigned int decls[1];
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test_cond_expr_t bools[3];
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/* bool existance and state, module 1 global scope */
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d = test_find_decl_by_sym(base, SYM_TYPES, "tag_g_m1");
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decls[0] = d->decl_id;
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test_sym_presence(base, "g_m1_bool_1", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_bool_state(base, "g_m1_bool_1", 1);
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/* conditional expression mapped correctly */
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bools[0].bool = "g_m1_bool_1";
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bools[0].expr_type = COND_BOOL;
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test_cond_expr_mapping(base, d, bools, 1);
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/* bool existance and state, module 1 optional scope */
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d = test_find_decl_by_sym(base, SYM_TYPES, "tag_o1_m1");
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decls[0] = d->decl_id;
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test_sym_presence(base, "o1_m1_bool_1", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_bool_state(base, "o1_m1_bool_1", 0);
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/* conditional expression mapped correctly */
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bools[0].bool = "o1_m1_bool_1";
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bools[0].expr_type = COND_BOOL;
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test_cond_expr_mapping(base, d, bools, 1);
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/* bool existance and state, module 2 global scope */
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d = test_find_decl_by_sym(base, SYM_TYPES, "tag_g_m2");
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decls[0] = d->decl_id;
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test_sym_presence(base, "g_m2_bool_1", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_sym_presence(base, "g_m2_bool_2", SYM_BOOLS, SCOPE_DECL, decls, 1);
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test_bool_state(base, "g_m2_bool_1", 1);
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test_bool_state(base, "g_m2_bool_2", 0);
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/* conditional expression mapped correctly */
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bools[0].bool = "g_m2_bool_1";
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bools[0].expr_type = COND_BOOL;
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bools[1].bool = "g_m2_bool_2";
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bools[1].expr_type = COND_BOOL;
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bools[2].bool = NULL;
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bools[2].expr_type = COND_AND;
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test_cond_expr_mapping(base, d, bools, 3);
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}
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