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).
258 lines
11 KiB
C
258 lines
11 KiB
C
/*===- InstrProfilingBuffer.c - Write instrumentation to a memory buffer --===*\
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|*
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|* Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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|* See https://llvm.org/LICENSE.txt for license information.
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|* SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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|*
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\*===----------------------------------------------------------------------===*/
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// Note: This is linked into the Darwin kernel, and must remain compatible
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// with freestanding compilation. See `darwin_add_builtin_libraries`.
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#include "InstrProfiling.h"
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#include "InstrProfilingInternal.h"
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#include "InstrProfilingPort.h"
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/* When continuous mode is enabled (%c), this parameter is set to 1.
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*
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* This parameter is defined here in InstrProfilingBuffer.o, instead of in
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* InstrProfilingFile.o, to sequester all libc-dependent code in
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* InstrProfilingFile.o. The test `instrprof-without-libc` will break if this
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* layering is violated. */
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static int ContinuouslySyncProfile = 0;
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/* The system page size. Only valid when non-zero. If 0, the page size is
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* unavailable. */
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static unsigned PageSize = 0;
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COMPILER_RT_VISIBILITY int __llvm_profile_is_continuous_mode_enabled(void) {
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return ContinuouslySyncProfile && PageSize;
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}
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COMPILER_RT_VISIBILITY void __llvm_profile_enable_continuous_mode(void) {
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ContinuouslySyncProfile = 1;
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}
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COMPILER_RT_VISIBILITY void __llvm_profile_disable_continuous_mode(void) {
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ContinuouslySyncProfile = 0;
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}
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COMPILER_RT_VISIBILITY void __llvm_profile_set_page_size(unsigned PS) {
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PageSize = PS;
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_size_for_buffer(void) {
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const __llvm_profile_data *DataBegin = __llvm_profile_begin_data();
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const __llvm_profile_data *DataEnd = __llvm_profile_end_data();
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const char *CountersBegin = __llvm_profile_begin_counters();
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const char *CountersEnd = __llvm_profile_end_counters();
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const char *BitmapBegin = __llvm_profile_begin_bitmap();
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const char *BitmapEnd = __llvm_profile_end_bitmap();
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const char *NamesBegin = __llvm_profile_begin_names();
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const char *NamesEnd = __llvm_profile_end_names();
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const VTableProfData *VTableBegin = __llvm_profile_begin_vtables();
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const VTableProfData *VTableEnd = __llvm_profile_end_vtables();
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const char *VNamesBegin = __llvm_profile_begin_vtabnames();
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const char *VNamesEnd = __llvm_profile_end_vtabnames();
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return __llvm_profile_get_size_for_buffer_internal(
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DataBegin, DataEnd, CountersBegin, CountersEnd, BitmapBegin, BitmapEnd,
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NamesBegin, NamesEnd, VTableBegin, VTableEnd, VNamesBegin, VNamesEnd);
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}
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// NOTE: Caller should guarantee that `Begin` and `End` specifies a half-open
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// interval [Begin, End). Namely, `End` is one-byte past the end of the array.
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_num_data(const __llvm_profile_data *Begin,
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const __llvm_profile_data *End) {
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intptr_t BeginI = (intptr_t)Begin, EndI = (intptr_t)End;
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return ((EndI + sizeof(__llvm_profile_data) - 1) - BeginI) /
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sizeof(__llvm_profile_data);
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_data_size(const __llvm_profile_data *Begin,
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const __llvm_profile_data *End) {
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return __llvm_profile_get_num_data(Begin, End) * sizeof(__llvm_profile_data);
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}
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// Counts the number of `VTableProfData` elements within the range of [Begin,
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// End). Caller should guarantee that End points to one byte past the inclusive
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// range.
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// FIXME: Add a compiler-rt test to make sure the number of vtables in the
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// raw profile is the same as the number of vtable elements in the instrumented
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// binary.
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_num_vtable(const VTableProfData *Begin,
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const VTableProfData *End) {
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// Convert pointers to intptr_t to use integer arithmetic.
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intptr_t EndI = (intptr_t)End, BeginI = (intptr_t)Begin;
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return (EndI - BeginI) / sizeof(VTableProfData);
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_vtable_section_size(const VTableProfData *Begin,
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const VTableProfData *End) {
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return (intptr_t)(End) - (intptr_t)(Begin);
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}
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COMPILER_RT_VISIBILITY size_t __llvm_profile_counter_entry_size(void) {
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if (__llvm_profile_get_version() & VARIANT_MASK_BYTE_COVERAGE)
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return sizeof(uint8_t);
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return sizeof(uint64_t);
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_num_counters(const char *Begin, const char *End) {
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intptr_t BeginI = (intptr_t)Begin, EndI = (intptr_t)End;
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return ((EndI + __llvm_profile_counter_entry_size() - 1) - BeginI) /
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__llvm_profile_counter_entry_size();
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_counters_size(const char *Begin, const char *End) {
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return __llvm_profile_get_num_counters(Begin, End) *
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__llvm_profile_counter_entry_size();
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_num_bitmap_bytes(const char *Begin,
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const char *End) {
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return (End - Begin);
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_name_size(const char *Begin, const char *End) {
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return End - Begin;
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}
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/// Calculate the number of padding bytes needed to add to \p Offset in order
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/// for (\p Offset + Padding) to be page-aligned.
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static uint64_t calculateBytesNeededToPageAlign(uint64_t Offset) {
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uint64_t OffsetModPage = Offset % PageSize;
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if (OffsetModPage > 0)
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return PageSize - OffsetModPage;
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return 0;
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}
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static int needsCounterPadding(void) {
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#if defined(__APPLE__)
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return __llvm_profile_is_continuous_mode_enabled();
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#else
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return 0;
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#endif
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}
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COMPILER_RT_VISIBILITY
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int __llvm_profile_get_padding_sizes_for_counters(
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uint64_t DataSize, uint64_t CountersSize, uint64_t NumBitmapBytes,
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uint64_t NamesSize, uint64_t VTableSize, uint64_t VNameSize,
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uint64_t *PaddingBytesBeforeCounters, uint64_t *PaddingBytesAfterCounters,
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uint64_t *PaddingBytesAfterBitmapBytes, uint64_t *PaddingBytesAfterNames,
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uint64_t *PaddingBytesAfterVTable, uint64_t *PaddingBytesAfterVName) {
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// Counter padding is needed only if continuous mode is enabled.
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if (!needsCounterPadding()) {
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*PaddingBytesBeforeCounters = 0;
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*PaddingBytesAfterCounters =
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__llvm_profile_get_num_padding_bytes(CountersSize);
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*PaddingBytesAfterBitmapBytes =
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__llvm_profile_get_num_padding_bytes(NumBitmapBytes);
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*PaddingBytesAfterNames = __llvm_profile_get_num_padding_bytes(NamesSize);
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if (PaddingBytesAfterVTable != NULL)
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*PaddingBytesAfterVTable =
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__llvm_profile_get_num_padding_bytes(VTableSize);
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if (PaddingBytesAfterVName != NULL)
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*PaddingBytesAfterVName = __llvm_profile_get_num_padding_bytes(VNameSize);
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return 0;
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}
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// Value profiling not supported in continuous mode at profile-write time.
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// Return -1 to alert the incompatibility.
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if (VTableSize != 0 || VNameSize != 0)
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return -1;
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// In continuous mode, the file offsets for headers and for the start of
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// counter sections need to be page-aligned.
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*PaddingBytesBeforeCounters =
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calculateBytesNeededToPageAlign(sizeof(__llvm_profile_header) + DataSize);
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*PaddingBytesAfterCounters = calculateBytesNeededToPageAlign(CountersSize);
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*PaddingBytesAfterBitmapBytes =
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calculateBytesNeededToPageAlign(NumBitmapBytes);
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*PaddingBytesAfterNames = calculateBytesNeededToPageAlign(NamesSize);
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// Set these two variables to zero to avoid uninitialized variables
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// even if VTableSize and VNameSize are known to be zero.
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if (PaddingBytesAfterVTable != NULL)
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*PaddingBytesAfterVTable = 0;
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if (PaddingBytesAfterVName != NULL)
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*PaddingBytesAfterVName = 0;
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return 0;
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}
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COMPILER_RT_VISIBILITY
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uint64_t __llvm_profile_get_size_for_buffer_internal(
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const __llvm_profile_data *DataBegin, const __llvm_profile_data *DataEnd,
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const char *CountersBegin, const char *CountersEnd, const char *BitmapBegin,
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const char *BitmapEnd, const char *NamesBegin, const char *NamesEnd,
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const VTableProfData *VTableBegin, const VTableProfData *VTableEnd,
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const char *VNamesBegin, const char *VNamesEnd) {
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/* Match logic in __llvm_profile_write_buffer(). */
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const uint64_t NamesSize = (NamesEnd - NamesBegin) * sizeof(char);
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uint64_t DataSize = __llvm_profile_get_data_size(DataBegin, DataEnd);
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uint64_t CountersSize =
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__llvm_profile_get_counters_size(CountersBegin, CountersEnd);
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const uint64_t NumBitmapBytes =
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__llvm_profile_get_num_bitmap_bytes(BitmapBegin, BitmapEnd);
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const uint64_t VTableSize =
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__llvm_profile_get_vtable_section_size(VTableBegin, VTableEnd);
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const uint64_t VNameSize =
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__llvm_profile_get_name_size(VNamesBegin, VNamesEnd);
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/* Determine how much padding is needed before/after the counters and after
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* the names. */
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uint64_t PaddingBytesBeforeCounters, PaddingBytesAfterCounters,
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PaddingBytesAfterNames, PaddingBytesAfterBitmapBytes,
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PaddingBytesAfterVTable, PaddingBytesAfterVNames;
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__llvm_profile_get_padding_sizes_for_counters(
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DataSize, CountersSize, NumBitmapBytes, NamesSize, 0 /* VTableSize */,
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0 /* VNameSize */, &PaddingBytesBeforeCounters,
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&PaddingBytesAfterCounters, &PaddingBytesAfterBitmapBytes,
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&PaddingBytesAfterNames, &PaddingBytesAfterVTable,
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&PaddingBytesAfterVNames);
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return sizeof(__llvm_profile_header) + __llvm_write_binary_ids(NULL) +
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DataSize + PaddingBytesBeforeCounters + CountersSize +
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PaddingBytesAfterCounters + NumBitmapBytes +
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PaddingBytesAfterBitmapBytes + NamesSize + PaddingBytesAfterNames +
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VTableSize + PaddingBytesAfterVTable + VNameSize +
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PaddingBytesAfterVNames;
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}
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COMPILER_RT_VISIBILITY
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void initBufferWriter(ProfDataWriter *BufferWriter, char *Buffer) {
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BufferWriter->Write = lprofBufferWriter;
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BufferWriter->WriterCtx = Buffer;
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}
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COMPILER_RT_VISIBILITY int __llvm_profile_write_buffer(char *Buffer) {
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ProfDataWriter BufferWriter;
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initBufferWriter(&BufferWriter, Buffer);
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return lprofWriteData(&BufferWriter, 0, 0);
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}
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COMPILER_RT_VISIBILITY int __llvm_profile_write_buffer_internal(
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char *Buffer, const __llvm_profile_data *DataBegin,
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const __llvm_profile_data *DataEnd, const char *CountersBegin,
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const char *CountersEnd, const char *BitmapBegin, const char *BitmapEnd,
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const char *NamesBegin, const char *NamesEnd) {
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ProfDataWriter BufferWriter;
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initBufferWriter(&BufferWriter, Buffer);
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// Set virtual table arguments to NULL since they are not supported yet.
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return lprofWriteDataImpl(
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&BufferWriter, DataBegin, DataEnd, CountersBegin, CountersEnd,
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BitmapBegin, BitmapEnd, /*VPDataReader=*/0, NamesBegin, NamesEnd,
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/*VTableBegin=*/NULL, /*VTableEnd=*/NULL, /*VNamesBegin=*/NULL,
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/*VNamesEnd=*/NULL, /*SkipNameDataWrite=*/0,
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__llvm_profile_get_version());
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}
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