Files
RedBear-OS/local/recipes/dev/libclc/source/bolt/lib/Utils/CommandLineOpts.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

289 lines
9.8 KiB
C++

//===- bolt/Utils/CommandLineOpts.cpp - BOLT CLI options ------------------===//
//
// 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
//
//===----------------------------------------------------------------------===//
//
// BOLT CLI options
//
//===----------------------------------------------------------------------===//
#include "bolt/Utils/CommandLineOpts.h"
#include "VCSVersion.inc"
#include "llvm/Support/Regex.h"
using namespace llvm;
namespace llvm {
namespace bolt {
const char *BoltRevision =
#ifdef BOLT_REVISION
BOLT_REVISION;
#else
"<unknown>";
#endif
}
}
namespace opts {
HeatmapModeKind HeatmapMode = HM_None;
bool BinaryAnalysisMode = false;
cl::OptionCategory BoltCategory("BOLT generic options");
cl::OptionCategory BoltDiffCategory("BOLTDIFF generic options");
cl::OptionCategory BoltOptCategory("BOLT optimization options");
cl::OptionCategory BoltRelocCategory("BOLT options in relocation mode");
cl::OptionCategory BoltOutputCategory("Output options");
cl::OptionCategory AggregatorCategory("Data aggregation options");
cl::OptionCategory BoltInstrCategory("BOLT instrumentation options");
cl::OptionCategory HeatmapCategory("Heatmap options");
cl::OptionCategory BinaryAnalysisCategory("BinaryAnalysis options");
cl::opt<unsigned> AlignText("align-text",
cl::desc("alignment of .text section"), cl::Hidden,
cl::cat(BoltCategory));
cl::opt<unsigned> AlignFunctions(
"align-functions",
cl::desc("align functions at a given value (relocation mode)"),
cl::init(64), cl::cat(BoltOptCategory));
cl::opt<bool>
AggregateOnly("aggregate-only",
cl::desc("exit after writing aggregated data file"),
cl::Hidden,
cl::cat(AggregatorCategory));
cl::opt<unsigned>
BucketsPerLine("line-size",
cl::desc("number of entries per line (default 256)"),
cl::init(256), cl::Optional, cl::cat(HeatmapCategory));
cl::opt<bool>
CompactCodeModel("compact-code-model",
cl::desc("generate code for binaries <128MB on AArch64"),
cl::init(false), cl::cat(BoltCategory));
cl::opt<bool>
DiffOnly("diff-only",
cl::desc("stop processing once we have enough to compare two binaries"),
cl::Hidden,
cl::cat(BoltDiffCategory));
cl::opt<bool>
EnableBAT("enable-bat",
cl::desc("write BOLT Address Translation tables"),
cl::init(false),
cl::ZeroOrMore,
cl::cat(BoltCategory));
cl::opt<bool> EqualizeBBCounts(
"equalize-bb-counts",
cl::desc("use same count for BBs that should have equivalent count (used "
"in non-LBR and shrink wrapping)"),
cl::ZeroOrMore, cl::init(false), cl::Hidden, cl::cat(BoltOptCategory));
llvm::cl::opt<bool> ForcePatch(
"force-patch",
llvm::cl::desc("force patching of original entry points to ensure "
"execution follows only the new/optimized code."),
llvm::cl::Hidden, llvm::cl::cat(BoltCategory));
cl::opt<bool> RemoveSymtab("remove-symtab", cl::desc("Remove .symtab section"),
cl::cat(BoltCategory));
cl::opt<unsigned>
ExecutionCountThreshold("execution-count-threshold",
cl::desc("perform profiling accuracy-sensitive optimizations only if "
"function execution count >= the threshold (default: 0)"),
cl::init(0),
cl::ZeroOrMore,
cl::Hidden,
cl::cat(BoltOptCategory));
bool HeatmapBlockSpecParser::parse(cl::Option &O, StringRef ArgName,
StringRef Arg, HeatmapBlockSizes &Val) {
// Parses a human-readable suffix into a shift amount or nullopt on error.
auto parseSuffix = [](StringRef Suffix) -> std::optional<unsigned> {
if (Suffix.empty())
return 0;
if (!Regex{"^[kKmMgG]i?[bB]?$"}.match(Suffix))
return std::nullopt;
// clang-format off
switch (Suffix.front()) {
case 'k': case 'K': return 10;
case 'm': case 'M': return 20;
case 'g': case 'G': return 30;
}
// clang-format on
llvm_unreachable("Unexpected suffix");
};
SmallVector<StringRef> Sizes;
Arg.split(Sizes, ',');
unsigned PreviousSize = 0;
for (StringRef Size : Sizes) {
StringRef OrigSize = Size;
unsigned &SizeVal = Val.emplace_back(0);
if (Size.consumeInteger(10, SizeVal)) {
O.error("'" + OrigSize + "' value can't be parsed as an integer");
return true;
}
if (std::optional<unsigned> ShiftAmt = parseSuffix(Size)) {
SizeVal <<= *ShiftAmt;
} else {
O.error("'" + Size + "' value can't be parsed as a suffix");
return true;
}
if (SizeVal <= PreviousSize || (PreviousSize && SizeVal % PreviousSize)) {
O.error("'" + OrigSize + "' must be a multiple of previous value");
return true;
}
PreviousSize = SizeVal;
}
return false;
}
cl::opt<opts::HeatmapBlockSizes, false, opts::HeatmapBlockSpecParser>
HeatmapBlock(
"block-size", cl::value_desc("initial_size{,zoom-out_size,...}"),
cl::desc("heatmap bucket size, optionally followed by zoom-out sizes "
"for coarse-grained heatmaps (default 64B, 4K, 256K)."),
cl::init(HeatmapBlockSizes{/*Initial*/ 64, /*Zoom-out*/ 4096, 262144}),
cl::cat(HeatmapCategory));
cl::opt<unsigned long long> HeatmapMaxAddress(
"max-address", cl::init(0xffffffff),
cl::desc("maximum address considered valid for heatmap (default 4GB)"),
cl::Optional, cl::cat(HeatmapCategory));
cl::opt<unsigned long long> HeatmapMinAddress(
"min-address", cl::init(0x0),
cl::desc("minimum address considered valid for heatmap (default 0)"),
cl::Optional, cl::cat(HeatmapCategory));
cl::opt<bool> HeatmapPrintMappings(
"print-mappings", cl::init(false),
cl::desc("print mappings in the legend, between characters/blocks and text "
"sections (default false)"),
cl::Optional, cl::cat(HeatmapCategory));
cl::opt<std::string> HeatmapOutput("heatmap",
cl::desc("print heatmap to a given file"),
cl::Optional, cl::cat(HeatmapCategory));
cl::opt<bool> HotData("hot-data",
cl::desc("hot data symbols support (relocation mode)"),
cl::cat(BoltCategory));
cl::opt<bool> HotFunctionsAtEnd(
"hot-functions-at-end",
cl::desc(
"if reorder-functions is used, order functions putting hottest last"),
cl::cat(BoltCategory));
cl::opt<bool> HotText(
"hot-text",
cl::desc(
"Generate hot text symbols. Apply this option to a precompiled binary "
"that manually calls into hugify, such that at runtime hugify call "
"will put hot code into 2M pages. This requires relocation."),
cl::ZeroOrMore, cl::cat(BoltCategory));
cl::opt<bool>
Instrument("instrument",
cl::desc("instrument code to generate accurate profile data"),
cl::cat(BoltOptCategory));
cl::opt<bool> Lite("lite", cl::desc("skip processing of cold functions"),
cl::cat(BoltCategory));
cl::opt<std::string>
OutputFilename("o",
cl::desc("<output file>"),
cl::Optional,
cl::cat(BoltOutputCategory));
cl::opt<std::string> PerfData("perfdata", cl::desc("<data file>"), cl::Optional,
cl::cat(AggregatorCategory),
cl::sub(cl::SubCommand::getAll()));
static cl::alias
PerfDataA("p",
cl::desc("alias for -perfdata"),
cl::aliasopt(PerfData),
cl::cat(AggregatorCategory));
cl::opt<bool> PrintCacheMetrics(
"print-cache-metrics",
cl::desc("calculate and print various metrics for instruction cache"),
cl::cat(BoltOptCategory));
cl::opt<bool> PrintSections("print-sections",
cl::desc("print all registered sections"),
cl::Hidden, cl::cat(BoltCategory));
cl::opt<ProfileFormatKind> ProfileFormat(
"profile-format",
cl::desc(
"format to dump profile output in aggregation mode, default is fdata"),
cl::init(PF_Fdata),
cl::values(clEnumValN(PF_Fdata, "fdata", "offset-based plaintext format"),
clEnumValN(PF_YAML, "yaml", "dense YAML representation")),
cl::ZeroOrMore, cl::Hidden, cl::cat(BoltCategory));
cl::opt<std::string> SaveProfile("w",
cl::desc("save recorded profile to a file"),
cl::cat(BoltOutputCategory));
cl::opt<bool> ShowDensity("show-density",
cl::desc("show profile density details"),
cl::Optional, cl::cat(AggregatorCategory));
cl::opt<bool> SplitEH("split-eh", cl::desc("split C++ exception handling code"),
cl::Hidden, cl::cat(BoltOptCategory));
cl::opt<bool>
StrictMode("strict",
cl::desc("trust the input to be from a well-formed source"),
cl::cat(BoltCategory));
cl::opt<bool> TimeOpts("time-opts",
cl::desc("print time spent in each optimization"),
cl::cat(BoltOptCategory));
cl::opt<bool> TimeRewrite("time-rewrite",
cl::desc("print time spent in rewriting passes"),
cl::Hidden, cl::cat(BoltCategory));
cl::opt<bool> UseOldText(
"use-old-text",
cl::desc("re-use space in old .text if possible (relocation mode)"),
cl::cat(BoltCategory));
cl::opt<bool> UpdateDebugSections(
"update-debug-sections",
cl::desc("update DWARF debug sections of the executable"),
cl::cat(BoltCategory));
cl::opt<unsigned>
Verbosity("v", cl::desc("set verbosity level for diagnostic output"),
cl::init(0), cl::ZeroOrMore, cl::cat(BoltCategory),
cl::sub(cl::SubCommand::getAll()));
bool processAllFunctions() {
if (opts::AggregateOnly)
return false;
if (UseOldText || StrictMode)
return true;
return false;
}
} // namespace opts