Files
RedBear-OS/local/recipes/dev/libclc/source/llvm/lib/TargetParser/ARMTargetParserCommon.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

192 lines
5.5 KiB
C++

//===---------------- ARMTargetParserCommon ---------------------*- C++ -*-===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
//
// Code that is common to ARMTargetParser and AArch64TargetParser.
//
//===----------------------------------------------------------------------===//
#include "llvm/TargetParser/ARMTargetParserCommon.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/ADT/StringSwitch.h"
using namespace llvm;
StringRef ARM::getArchSynonym(StringRef Arch) {
return StringSwitch<StringRef>(Arch)
.Case("v5", "v5t")
.Case("v5e", "v5te")
.Case("v6j", "v6")
.Case("v6hl", "v6k")
.Cases("v6m", "v6sm", "v6s-m", "v6-m")
.Cases("v6z", "v6zk", "v6kz")
.Cases("v7", "v7a", "v7hl", "v7l", "v7-a")
.Case("v7r", "v7-r")
.Case("v7m", "v7-m")
.Case("v7em", "v7e-m")
.Cases("v8", "v8a", "v8l", "aarch64", "arm64", "v8-a")
.Case("v8.1a", "v8.1-a")
.Case("v8.2a", "v8.2-a")
.Case("v8.3a", "v8.3-a")
.Case("v8.4a", "v8.4-a")
.Case("v8.5a", "v8.5-a")
.Case("v8.6a", "v8.6-a")
.Case("v8.7a", "v8.7-a")
.Case("v8.8a", "v8.8-a")
.Case("v8.9a", "v8.9-a")
.Case("v8r", "v8-r")
.Cases("v9", "v9a", "v9-a")
.Case("v9.1a", "v9.1-a")
.Case("v9.2a", "v9.2-a")
.Case("v9.3a", "v9.3-a")
.Case("v9.4a", "v9.4-a")
.Case("v9.5a", "v9.5-a")
.Case("v9.6a", "v9.6-a")
.Case("v8m.base", "v8-m.base")
.Case("v8m.main", "v8-m.main")
.Case("v8.1m.main", "v8.1-m.main")
.Default(Arch);
}
StringRef ARM::getCanonicalArchName(StringRef Arch) {
size_t offset = StringRef::npos;
StringRef A = Arch;
StringRef Error = "";
// Begins with "arm" / "thumb", move past it.
if (A.starts_with("arm64_32"))
offset = 8;
else if (A.starts_with("arm64e"))
offset = 6;
else if (A.starts_with("arm64"))
offset = 5;
else if (A.starts_with("aarch64_32"))
offset = 10;
else if (A.starts_with("arm"))
offset = 3;
else if (A.starts_with("thumb"))
offset = 5;
else if (A.starts_with("aarch64")) {
offset = 7;
// AArch64 uses "_be", not "eb" suffix.
if (A.contains("eb"))
return Error;
if (A.substr(offset, 3) == "_be")
offset += 3;
}
// Ex. "armebv7", move past the "eb".
if (offset != StringRef::npos && A.substr(offset, 2) == "eb")
offset += 2;
else
// Or, if it ends with eb ("armv7eb"), chop it off.
A.consume_back("eb");
// Trim the head
if (offset != StringRef::npos)
A = A.substr(offset);
// Empty string means offset reached the end, which means it's valid.
if (A.empty())
return Arch;
// Only match non-marketing names
if (offset != StringRef::npos) {
// Must start with 'vN'.
if (A.size() >= 2 && (A[0] != 'v' || !std::isdigit(A[1])))
return Error;
// Can't have an extra 'eb'.
if (A.contains("eb"))
return Error;
}
// Arch will either be a 'v' name (v7a) or a marketing name (xscale).
return A;
}
ARM::ISAKind ARM::parseArchISA(StringRef Arch) {
return StringSwitch<ISAKind>(Arch)
.StartsWith("aarch64", ISAKind::AARCH64)
.StartsWith("arm64", ISAKind::AARCH64)
.StartsWith("thumb", ISAKind::THUMB)
.StartsWith("arm", ISAKind::ARM)
.Default(ISAKind::INVALID);
}
ARM::EndianKind ARM::parseArchEndian(StringRef Arch) {
if (Arch.starts_with("armeb") || Arch.starts_with("thumbeb") ||
Arch.starts_with("aarch64_be"))
return EndianKind::BIG;
if (Arch.starts_with("arm") || Arch.starts_with("thumb")) {
if (Arch.ends_with("eb"))
return EndianKind::BIG;
else
return EndianKind::LITTLE;
}
if (Arch.starts_with("aarch64") || Arch.starts_with("aarch64_32"))
return EndianKind::LITTLE;
return EndianKind::INVALID;
}
// Parse a branch protection specification, which has the form
// standard | none | [bti,pac-ret[+b-key,+leaf,+pc]*]
// Returns true on success, with individual elements of the specification
// returned in `PBP`. Returns false in error, with `Err` containing
// an erroneous part of the spec.
bool ARM::parseBranchProtection(StringRef Spec, ParsedBranchProtection &PBP,
StringRef &Err, bool EnablePAuthLR) {
PBP = {"none", "a_key", false, false, false};
if (Spec == "none")
return true; // defaults are ok
if (Spec == "standard") {
PBP.Scope = "non-leaf";
PBP.BranchTargetEnforcement = true;
PBP.GuardedControlStack = true;
PBP.BranchProtectionPAuthLR = EnablePAuthLR;
return true;
}
SmallVector<StringRef, 4> Opts;
Spec.split(Opts, "+");
for (int I = 0, E = Opts.size(); I != E; ++I) {
StringRef Opt = Opts[I].trim();
if (Opt == "bti") {
PBP.BranchTargetEnforcement = true;
continue;
}
if (Opt == "pac-ret") {
PBP.Scope = "non-leaf";
for (; I + 1 != E; ++I) {
StringRef PACOpt = Opts[I + 1].trim();
if (PACOpt == "leaf")
PBP.Scope = "all";
else if (PACOpt == "b-key")
PBP.Key = "b_key";
else if (PACOpt == "pc")
PBP.BranchProtectionPAuthLR = true;
else
break;
}
continue;
}
if (Opt == "gcs") {
PBP.GuardedControlStack = true;
continue;
}
if (Opt == "")
Err = "<empty>";
else
Err = Opt;
return false;
}
return true;
}