cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
259 lines
6.9 KiB
C
259 lines
6.9 KiB
C
// RUN: %clang_cc1 -fsyntax-only -verify -fblocks -std=gnu99 %s -Wno-unreachable-code
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int test1(int x) {
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goto L; // expected-error{{cannot jump from this goto statement to its label}}
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int a[x]; // expected-note {{jump bypasses initialization of variable length array}}
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int b[x]; // expected-note {{jump bypasses initialization of variable length array}}
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L:
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return sizeof a;
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}
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int test2(int x) {
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goto L; // expected-error{{cannot jump from this goto statement to its label}}
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typedef int a[x]; // expected-note {{jump bypasses initialization of VLA typedef}}
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L:
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return sizeof(a);
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}
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void test3clean(int*);
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int test3(void) {
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goto L; // expected-error{{cannot jump from this goto statement to its label}}
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int a __attribute((cleanup(test3clean))); // expected-note {{jump bypasses initialization of variable with __attribute__((cleanup))}}
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L:
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return a;
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}
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int test4(int x) {
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goto L; // expected-error{{cannot jump from this goto statement to its label}}
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int a[x]; // expected-note {{jump bypasses initialization of variable length array}}
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test4(x);
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L:
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return sizeof a;
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}
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int test5(int x) {
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int a[x];
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test5(x);
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goto L; // Ok.
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L:
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goto L; // Ok.
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return sizeof a;
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}
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int test6(void) {
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// just plain invalid.
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goto x; // expected-error {{use of undeclared label 'x'}}
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}
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void test7(int x) {
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switch (x) {
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case 1: ;
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int a[x]; // expected-note {{jump bypasses initialization of variable length array}}
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case 2: // expected-error {{cannot jump from switch statement to this case label}}
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a[1] = 2;
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break;
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}
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}
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int test8(int x) {
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// For statement.
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goto L2; // expected-error {{cannot jump from this goto statement to its label}}
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for (int arr[x]; // expected-note {{jump bypasses initialization of variable length array}}
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; ++x)
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L2:;
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// Statement expressions.
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goto L3; // expected-error {{cannot jump from this goto statement to its label}}
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int Y = ({ int a[x]; // expected-note {{jump bypasses initialization of variable length array}} \
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// expected-note {{jump enters a statement expression}}
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L3: 4; });
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goto L4; // expected-error {{cannot jump from this goto statement to its label}}
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{
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int A[x], // expected-note {{jump bypasses initialization of variable length array}}
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B[x]; // expected-note {{jump bypasses initialization of variable length array}}
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L4: ;
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}
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{
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L5: ;// ok
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int A[x], B = ({ if (x)
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goto L5;
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else
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goto L6;
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4; });
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L6:; // ok.
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if (x) goto L6; // ok
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}
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{
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L7: ;// ok
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int A[x], B = ({ if (x)
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goto L7;
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else
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goto L8; // expected-error {{cannot jump from this goto statement to its label}}
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4; }),
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C[x]; // expected-note {{jump bypasses initialization of variable length array}}
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L8:; // bad
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}
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{
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L9: ;// ok
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int A[({ if (x)
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goto L9;
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else
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// FIXME:
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goto L10; // fixme-error {{cannot jump from this goto statement to its label}}
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4; })];
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L10:; // bad
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}
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{
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// FIXME: Crashes goto checker.
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//goto L11;// ok
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//int A[({ L11: 4; })];
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}
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{
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goto L12;
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int y = 4; // fixme-warn: skips initializer.
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L12:
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;
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}
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// Statement expressions 2.
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goto L1; // expected-error {{cannot jump from this goto statement to its label}}
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return x == ({ // expected-note {{jump enters a statement expression}}
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int a[x]; // expected-note {{jump bypasses initialization of variable length array}}
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L1:
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42; });
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}
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void test9(int n, void *P) {
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int Y;
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int Z = 4;
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goto *P; // expected-error {{cannot jump from this indirect goto statement to one of its possible targets}}
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L2: ;
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int a[n]; // expected-note {{jump bypasses initialization of variable length array}}
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L3: // expected-note {{possible target of indirect goto}}
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L4:
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goto *P;
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goto L3; // ok
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goto L4; // ok
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void *Ptrs[] = {
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&&L2,
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&&L3
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};
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}
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void test10(int n, void *P) {
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goto L0; // expected-error {{cannot jump from this goto statement to its label}}
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typedef int A[n]; // expected-note {{jump bypasses initialization of VLA typedef}}
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L0:
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goto L1; // expected-error {{cannot jump from this goto statement to its label}}
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A b, c[10]; // expected-note 2 {{jump bypasses initialization of variable length array}}
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L1:
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goto L2; // expected-error {{cannot jump from this goto statement to its label}}
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A d[n]; // expected-note {{jump bypasses initialization of variable length array}}
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L2:
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return;
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}
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void test11(int n) {
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void *P = ^{
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switch (n) {
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case 1:;
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case 2:
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case 3:;
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int Arr[n]; // expected-note {{jump bypasses initialization of variable length array}}
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case 4: // expected-error {{cannot jump from switch statement to this case label}}
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return;
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}
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};
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}
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// TODO: When and if gotos are allowed in blocks, this should work.
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void test12(int n) {
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void *P = ^{
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goto L1;
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L1:
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goto L2;
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L2:
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goto L3; // expected-error {{cannot jump from this goto statement to its label}}
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int Arr[n]; // expected-note {{jump bypasses initialization of variable length array}}
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L3:
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goto L4;
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L4: return;
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};
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}
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void test13(int n, void *p) {
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int vla[n];
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goto *p;
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a0: ;
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static void *ps[] = { &&a0 };
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}
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int test14(int n) {
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static void *ps[] = { &&a0, &&a1 };
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if (n < 0)
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goto *&&a0;
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if (n > 0) {
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int vla[n];
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a1:
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vla[n-1] = 0;
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}
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a0:
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return 0;
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}
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// PR8473: IR gen can't deal with indirect gotos past VLA
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// initialization, so that really needs to be a hard error.
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void test15(int n, void *pc) {
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static const void *addrs[] = { &&L1, &&L2 };
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goto *pc; // expected-error {{cannot jump from this indirect goto statement to one of its possible targets}}
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L1:
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{
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char vla[n]; // expected-note {{jump bypasses initialization}}
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L2: // expected-note {{possible target}}
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vla[0] = 'a';
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}
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}
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int test16(int [sizeof &&z]); // expected-error {{use of address-of-label extension outside of a function body}}
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void GH63682() {
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{
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goto L; // expected-error {{cannot jump from this goto statement to its label}}
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(void)sizeof (int){({ L:; 1; })}; // expected-note {{jump enters a statement expression}}
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}
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{
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goto M; // expected-error {{cannot jump from this goto statement to its label}}
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(void)({ M:; 1; }); // expected-note {{jump enters a statement expression}}
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}
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{
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(void)({ goto N; 1; }); // ok
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N: ;
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}
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{
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(void)sizeof (int){({ goto O; 1; })}; // ok (not evaluated)
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O: ;
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}
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{
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(void)sizeof(({goto P;}), 0); // expected-error {{cannot jump from this goto statement to its label}}
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return;
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(void)({P:1;}); // expected-note {{jump enters a statement expression}}
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}
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}
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