Files
RedBear-OS/local/recipes/dev/libclc/source/llvm/test/TableGen/getsetop.td
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

181 lines
6.6 KiB
TableGen

// RUN: llvm-tblgen %s | FileCheck %s
// RUN: not llvm-tblgen -DERROR1 %s 2>&1 | FileCheck --check-prefix=ERROR1 %s
// RUN: not llvm-tblgen -DERROR2 %s 2>&1 | FileCheck --check-prefix=ERROR2 %s
// RUN: not llvm-tblgen -DERROR3 %s 2>&1 | FileCheck --check-prefix=ERROR3 %s
// RUN: not llvm-tblgen -DERROR4 %s 2>&1 | FileCheck --check-prefix=ERROR4 %s
// RUN: not llvm-tblgen -DERROR5 %s 2>&1 | FileCheck --check-prefix=ERROR5 %s
// RUN: not llvm-tblgen -DERROR6 %s 2>&1 | FileCheck --check-prefix=ERROR6 %s
// RUN: not llvm-tblgen -DERROR7 %s 2>&1 | FileCheck --check-prefix=ERROR7 %s
// RUN: not llvm-tblgen -DERROR8 %s 2>&1 | FileCheck --check-prefix=ERROR8 %s
// RUN: not llvm-tblgen -DERROR9 %s 2>&1 | FileCheck --check-prefix=ERROR9 %s
// RUN: not llvm-tblgen -DERROR10 %s 2>&1 | FileCheck --check-prefix=ERROR10 %s
// !setop and !getop are deprecated in favor of !setdagop and !getdagop.
// Two tests retain the old names just to be sure they are still supported.
class Base;
class OtherBase;
class Super : Base;
def foo: Base;
def bar: Base;
def qux: OtherBase;
def alice : Super;
def bob : Super;
def test {
dag orig = (foo 1, 2:$a, $b);
dag another = (qux "hello", $world);
// CHECK: dag replaceWithBar = (bar 1, 2:$a, ?:$b);
dag replaceWithBar = !setop(orig, bar);
// CHECK: dag replaceWithBaz = (qux 1, 2:$a, ?:$b);
dag replaceWithBaz = !setdagop(orig, qux);
// CHECK: Base getopWithCast = foo;
Base getopWithCast = !getop<Base>(orig);
// CHECK: dag getopToSetop = (foo "hello", ?:$world);
dag getopToSetop = !setdagop(another, !getdagop(orig));
// CHECK: dag getopToBangDag = (foo 1:$a, 2:$b, 3:$c);
dag getopToBangDag = !dag(!getdagop(orig), [1, 2, 3], ["a", "b", "c"]);
// CHECK: dag getopToDagInit = (foo "it worked");
dag getopToDagInit = (!getdagop(orig) "it worked");
#ifdef ERROR1
// !getdagop(...) has a static type of 'any record at all, with no
// required superclasses'. That's too general to use in an
// assignment whose LHS demands an instance of Base, so we expect a
// static (parse-time) type-checking error.
// ERROR1: error: Field 'noCast' of type 'Base' is incompatible with value '!getdagop(orig)' of type '{}'
Base noCast = !getdagop(orig);
#endif
#ifdef ERROR2
// Here, we expect a _dynamic_ type error, when it turns out at
// evaluation time that the operator of 'another' is a record that
// isn't an instance of the specified base class.
// ERROR2: error: Expected type 'Base', got 'OtherBase' in: !getdagop((qux "hello", ?:$world))
Base badCast = !getdagop<Base>(another);
#endif
#ifdef ERROR3
// Obviously, you shouldn't be able to give any type to !getdagop that
// isn't a class type.
// ERROR3: error: type for !getdagop must be a record type
int ridiculousCast = !getdagop<int>(orig);
#endif
dag in1 = (foo 1:$a, 2:$b, 3:$c);
// CHECK: list<string> in1Names = ["a", "b", "c"];
list<string> in1Names = !foreach(i, !range(!size(in1)), !getdagname(in1, i));
// CHECK: list<int> in1Args = [1, 2, 3];
list<int> in1Args = !foreach(i, !range(!size(in1)), !getdagarg<int>(in1, i));
dag in2 = (foo 1:$a, (bar "x":$x, (qux foo:$s1, bar:$s2):$y, 7:$z):$b, 3:$c);
// CHECK: dag in2NestedDag = (qux foo:$s1, bar:$s2);
dag in2NestedDag = !getdagarg<dag>(!getdagarg<dag>(in2, 1), "y");
// CHECK: Base in2NestedArg = foo;
Base in2NestedArg = !getdagarg<Base>(!getdagarg<dag>(!getdagarg<dag>(in2, 1), "y"), "s1");
dag in3 = (foo 1:$a, ?:$b, 3);
// CHECK: list<string> in3Names = ["a", "b", ?];
list<string> in3Names = !foreach(i, !range(!size(in3)), !getdagname(in3, i));
// CHECK: list<int> in3Args = [1, ?, 3];
list<int> in3Args = !foreach(i, !range(!size(in3)), !getdagarg<int>(in3, i));
#ifdef ERROR4
// ERROR4: error: !getdagarg index -1 is negative
int outOfRange = !getdagarg<int>(in1, -1);
#endif
#ifdef ERROR5
// ERROR5: error: !getdagarg index 3 is out of range (dag has 3 arguments)
int outOfRange = !getdagarg<int>(in1, 3);
#endif
#ifdef ERROR6
// ERROR6: error: !getdagarg key 'x' is not found
int notFound = !getdagarg<int>(in1, "x");
#endif
dag in4 = (foo "arg1":$a, "arg2":$b, "arg3":$c);
// CHECK: int misMatchType1 = ?;
int misMatchType1 = !getdagarg<int>(in4, 0);
dag in5 = (foo foo:$a, bar:$b, foo:$c);
// CHECK: OtherBase misMatchType2 = ?;
OtherBase misMatchType2 = !getdagarg<OtherBase>(in5, 1);
dag in6 = (foo alice:$a, bob:$b);
// CHECK: Base base = bob;
Base base = !getdagarg<Base>(in6, 1);
// CHECK: dag orig_set_val = (foo 1, 2:$a, "val":$b);
dag orig_set_val = !setdagarg(orig, 2, "val");
// CHECK: dag orig_set_val_by_name = (foo 1, 2:$a, "aval":$b);
dag orig_set_val_by_name = !setdagarg(orig, "b", "aval");
// CHECK: dag orig_set_dag_val = (foo 1, 2:$a, (bar foo:$p, qux:$q):$b);
dag orig_set_dag_val = !setdagarg(orig, "b", (bar foo:$p, qux:$q));
// CHECK: dag orig_clr_val = (foo 1, ?:$a, ?:$b);
dag orig_clr_val = !setdagarg(orig, "a", ?);
// CHECK: dag orig_set_name = (foo 1:$c, 2:$a, ?:$b);
dag orig_set_name = !setdagname(orig, 0, "c");
// CHECK: dag orig_clr_name = (foo 1, 2, ?:$b);
dag orig_clr_name = !setdagname(orig, 1, ?);
// CHECK: dag orig_rename = (foo 1, 2:$x, ?:$y);
dag orig_rename = !setdagname(!setdagname(orig, "a", "x"), "b", "y");
#ifdef ERROR7
// ERROR7: error: !setdagarg index -1 is negative
dag orig_negative = !setdagarg(orig, -1, "val");
#endif
#ifdef ERROR8
// ERROR8: error: !setdagarg index 3 is out of range (dag has 3 arguments)
dag orig_out_of_range = !setdagarg(orig, 3, "val");
#endif
#ifdef ERROR9
// ERROR9: error: expected integer index or string name, got type 'Base'
dag orig_out_of_range = !setdagarg(orig, foo, (foo qux:$a));
#endif
}
// Copy a list (Predicates) that is a field in a dag operator
// (TestInstruction), which is defined in the same multiclass
// (TestInstructionAndPattern) as the destination of the copy
// (TestPattern::Predicates).
class TestInstruction<list<int> _Predicates> {
list<int> Predicates = _Predicates;
}
#ifdef ERROR10
class OtherTestInstruction<list<int> _Predicates> {
list<int> Predicates = _Predicates;
}
// ERROR10: error: Expected type 'OtherTestInstruction', got 'TestInstruction'
class TestPattern<dag D> {
list<int> Predicates = !getdagop<OtherTestInstruction>(D).Predicates;
}
#else
class TestPattern<dag D> {
list<int> Predicates = !getdagop<TestInstruction>(D).Predicates;
}
#endif
multiclass TestInstructionAndPattern<list<int> Predicates> {
def NAME : TestInstruction<Predicates>;
def : TestPattern<(!cast<TestInstruction>(NAME) foo)>;
}
// CHECK: def testInst0 { // TestInstruction
// CHECK-NEXT: list<int> Predicates = [7];
defm testInst0 : TestInstructionAndPattern<[7]>;