1 | // RUN: %clang_analyze_cc1 -triple i386-apple-darwin10 -analyzer-checker=core.builtin,debug.ExprInspection,unix.cstring -verify %s |
2 | |
3 | typedef unsigned long size_t; |
4 | |
5 | struct S { |
6 | struct S3 { |
7 | int y[10]; |
8 | }; |
9 | struct S2 : S3 { |
10 | int *x; |
11 | } s2[10]; |
12 | int z; |
13 | }; |
14 | |
15 | |
16 | void clang_analyzer_explain(int); |
17 | void clang_analyzer_explain(void *); |
18 | void clang_analyzer_explain(S); |
19 | |
20 | size_t clang_analyzer_getExtent(void *); |
21 | |
22 | size_t strlen(const char *); |
23 | |
24 | int conjure(); |
25 | S conjure_S(); |
26 | |
27 | int glob; |
28 | static int stat_glob; |
29 | void *glob_ptr; |
30 | |
31 | // Test strings are regex'ed because we need to match exact string |
32 | // rather than a substring. |
33 | |
34 | void test_1(int param, void *ptr) { |
35 | clang_analyzer_explain(&glob); // expected-warning-re{{{{^pointer to global variable 'glob'$}}}} |
36 | clang_analyzer_explain(param); // expected-warning-re{{{{^argument 'param'$}}}} |
37 | clang_analyzer_explain(ptr); // expected-warning-re{{{{^argument 'ptr'$}}}} |
38 | if (param == 42) |
39 | clang_analyzer_explain(param); // expected-warning-re{{{{^signed 32-bit integer '42'$}}}} |
40 | } |
41 | |
42 | void test_2(char *ptr, int ext) { |
43 | clang_analyzer_explain((void *) "asdf"); // expected-warning-re{{{{^pointer to element of type 'char' with index 0 of string literal "asdf"$}}}} |
44 | clang_analyzer_explain(strlen(ptr)); // expected-warning-re{{{{^metadata of type 'unsigned long' tied to pointee of argument 'ptr'$}}}} |
45 | clang_analyzer_explain(conjure()); // expected-warning-re{{{{^symbol of type 'int' conjured at statement 'conjure\(\)'$}}}} |
46 | clang_analyzer_explain(glob); // expected-warning-re{{{{^value derived from \(symbol of type 'int' conjured at statement 'conjure\(\)'\) for global variable 'glob'$}}}} |
47 | clang_analyzer_explain(glob_ptr); // expected-warning-re{{{{^value derived from \(symbol of type 'int' conjured at statement 'conjure\(\)'\) for global variable 'glob_ptr'$}}}} |
48 | clang_analyzer_explain(clang_analyzer_getExtent(ptr)); // expected-warning-re{{{{^extent of pointee of argument 'ptr'$}}}} |
49 | int *x = new int[ext]; |
50 | clang_analyzer_explain(x); // expected-warning-re{{{{^pointer to element of type 'int' with index 0 of heap segment that starts at symbol of type 'int \*' conjured at statement 'new int \[ext\]'$}}}} |
51 | // Sic! What gets computed is the extent of the element-region. |
52 | clang_analyzer_explain(clang_analyzer_getExtent(x)); // expected-warning-re{{{{^signed 32-bit integer '4'$}}}} |
53 | delete[] x; |
54 | } |
55 | |
56 | void test_3(S s) { |
57 | clang_analyzer_explain(&s); // expected-warning-re{{{{^pointer to parameter 's'$}}}} |
58 | clang_analyzer_explain(s.z); // expected-warning-re{{{{^initial value of field 'z' of parameter 's'$}}}} |
59 | clang_analyzer_explain(&s.s2[5].y[3]); // expected-warning-re{{{{^pointer to element of type 'int' with index 3 of field 'y' of base object 'S::S3' inside element of type 'struct S::S2' with index 5 of field 's2' of parameter 's'$}}}} |
60 | if (!s.s2[7].x) { |
61 | clang_analyzer_explain(s.s2[7].x); // expected-warning-re{{{{^concrete memory address '0'$}}}} |
62 | // FIXME: we need to be explaining '1' rather than '0' here; not explainer bug. |
63 | clang_analyzer_explain(s.s2[7].x + 1); // expected-warning-re{{{{^concrete memory address '0'$}}}} |
64 | } |
65 | } |
66 | |
67 | void test_4(int x, int y) { |
68 | int z; |
69 | static int stat; |
70 | clang_analyzer_explain(x + 1); // expected-warning-re{{{{^\(argument 'x'\) \+ 1$}}}} |
71 | clang_analyzer_explain(1 + y); // expected-warning-re{{{{^\(argument 'y'\) \+ 1$}}}} |
72 | clang_analyzer_explain(x + y); // expected-warning-re{{{{^\(argument 'x'\) \+ \(argument 'y'\)$}}}} |
73 | clang_analyzer_explain(z); // expected-warning-re{{{{^undefined value$}}}} |
74 | clang_analyzer_explain(&z); // expected-warning-re{{{{^pointer to local variable 'z'$}}}} |
75 | clang_analyzer_explain(stat); // expected-warning-re{{{{^signed 32-bit integer '0'$}}}} |
76 | clang_analyzer_explain(&stat); // expected-warning-re{{{{^pointer to static local variable 'stat'$}}}} |
77 | clang_analyzer_explain(stat_glob); // expected-warning-re{{{{^initial value of global variable 'stat_glob'$}}}} |
78 | clang_analyzer_explain(&stat_glob); // expected-warning-re{{{{^pointer to global variable 'stat_glob'$}}}} |
79 | clang_analyzer_explain((int[]){1, 2, 3}); // expected-warning-re{{{{^pointer to element of type 'int' with index 0 of temporary object constructed at statement '\(int \[3\]\)\{1, 2, 3\}'$}}}} |
80 | } |
81 | |
82 | namespace { |
83 | class C { |
84 | int x[10]; |
85 | |
86 | public: |
87 | void test_5(int i) { |
88 | clang_analyzer_explain(this); // expected-warning-re{{{{^pointer to 'this' object$}}}} |
89 | clang_analyzer_explain(&x[i]); // expected-warning-re{{{{^pointer to element of type 'int' with index 'argument 'i'' of field 'x' of 'this' object$}}}} |
90 | clang_analyzer_explain(__builtin_alloca(i)); // expected-warning-re{{{{^pointer to region allocated by '__builtin_alloca\(i\)'$}}}} |
91 | } |
92 | }; |
93 | } // end of anonymous namespace |
94 | |
95 | void test_6() { |
96 | clang_analyzer_explain(conjure_S()); // expected-warning-re{{{{^lazily frozen compound value of temporary object constructed at statement 'conjure_S\(\)'$}}}} |
97 | clang_analyzer_explain(conjure_S().z); // expected-warning-re{{{{^value derived from \(symbol of type 'int' conjured at statement 'conjure_S\(\)'\) for field 'z' of temporary object constructed at statement 'conjure_S\(\)'$}}}} |
98 | } |
99 | |