Files
RedBear-OS/local/recipes/dev/libclc/source/clang/test/CodeGenCXX/code-seg2.cpp
T
vasilito cb424d7448 build: static patch-sanity linter (shift-left the malformed-patch class)
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).
2026-08-01 05:13:02 +03:00

112 lines
2.3 KiB
C++

// RUN: %clang_cc1 -emit-llvm -triple i686-pc-win32 -std=c++11 -fms-extensions -verify -o - %s | FileCheck %s
// expected-no-diagnostics
// Class member templates
#pragma code_seg(push, "something")
template <typename T>
struct __declspec(code_seg("foo_one")) ClassOne {
int bar1(T t) { return int(t); }
int bar2(T t);
int bar3(T t);
};
template <typename T>
int ClassOne<T>::bar2(T t) {
return int(t);
}
int caller1() {
ClassOne<int> coi;
return coi.bar1(6) + coi.bar2(3);
}
//CHECK: define {{.*}}bar1@?$ClassOne{{.*}} section "foo_one"
//CHECK: define {{.*}}bar2@?$ClassOne{{.*}} section "foo_one"
template <typename T>
struct ClassTwo {
int bar11(T t) { return int(t); }
int bar22(T t);
int bar33(T t);
};
#pragma code_seg("newone")
template <typename T>
int ClassTwo<T>::bar22(T t) {
return int(t);
}
#pragma code_seg("someother")
template <typename T>
int ClassTwo<T>::bar33(T t) {
return int(t);
}
#pragma code_seg("yetanother")
int caller2() {
ClassTwo<int> coi;
return coi.bar11(6) + coi.bar22(3) + coi.bar33(44);
}
//CHECK: define {{.*}}bar11@?$ClassTwo{{.*}} section "something"
//CHECK: define {{.*}}bar22@?$ClassTwo{{.*}} section "newone"
//CHECK: define {{.*}}bar33@?$ClassTwo{{.*}} section "someother"
template<>
struct ClassOne<double>
{
int bar44(double d) { return 1; }
};
template<>
struct __declspec(code_seg("foo_three")) ClassOne<long>
{
int bar55(long d) { return 1; }
};
#pragma code_seg("onemore")
int caller3() {
ClassOne<double> d;
ClassOne<long> l;
return d.bar44(1.0)+l.bar55(1);
}
//CHECK: define {{.*}}bar44{{.*}} section "yetanother"
//CHECK: define {{.*}}bar55{{.*}} section "foo_three"
// Function templates
template <typename T>
int __declspec(code_seg("foo_four")) bar66(T t) { return int(t); }
// specializations do not take the segment from primary
template<>
int bar66(int i) { return 0; }
#pragma code_seg(pop)
template<>
int bar66(char c) { return 0; }
struct A1 {int i;};
template<>
int __declspec(code_seg("foo_five")) bar66(A1 a) { return a.i; }
int caller4()
{
// but instantiations do use the section from the primary
return bar66(0) + bar66(1.0) + bar66('c');
}
//CHECK: define {{.*}}bar66@H{{.*}} section "onemore"
//CHECK-NOT: define {{.*}}bar66@D{{.*}} section
//CHECK: define {{.*}}bar66@UA1{{.*}} section "foo_five"
//CHECK: define {{.*}}bar66@N{{.*}} section "foo_four"