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We have some modifications downstream to compile the flang runtime for amdgpu using clang OpenMP, some more hacky than others to workaround (hopefully temporary) compiler issues. The additions here are the non-hacky alterations. Main changes: * Create freestanding versions of memcpy, strlen and memmove, and replace std:: references with these so that we can default to std:: when it's available, or our own Flang implementation when it's not. * Wrap more bits and pieces of the library in declare target wrappers (RT_* macros). * Fix some warnings that'll pose issues with werror on, in this case having the namespace infront of variables passed to templates. Another minor issues that'll likely still pop up depending on the program you're linking with is that abort will be undefined, it is perhaps possible to solve it with a freestanding implementation as with memcpy etc. but we end up with multiple definitions in this case. An alternative is to create an empty extern "c" version (which can be empty or forwrd on to the builtin). Co-author: Dan Palermo Dan.Palermo@amd.com
138 lines
3.9 KiB
C++
138 lines
3.9 KiB
C++
//===-- lib/runtime/unit-map.cpp --------------------------------*- C++ -*-===//
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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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#include "unit-map.h"
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#include "flang/Common/optional.h"
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namespace Fortran::runtime::io {
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void UnitMap::Initialize() {
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if (!isInitialized_) {
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freeNewUnits_.InitializeState();
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// Unit number -1 is reserved.
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// The unit numbers are pushed in reverse order so that the first
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// ones to be popped will be small and suitable for use as kind=1
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// integers.
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for (int j{freeNewUnits_.maxValue}; j > 1; --j) {
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freeNewUnits_.Add(j);
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}
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isInitialized_ = true;
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}
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}
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// See 12.5.6.12 in Fortran 2018. NEWUNIT= unit numbers are negative,
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// and not equal to -1 (or ERROR_UNIT, if it were negative, which it isn't.)
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ExternalFileUnit &UnitMap::NewUnit(const Terminator &terminator) {
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CriticalSection critical{lock_};
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Initialize();
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common::optional<int> n{freeNewUnits_.PopValue()};
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if (!n) {
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n = emergencyNewUnit_++;
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}
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return Create(-*n, terminator);
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}
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ExternalFileUnit *UnitMap::LookUpForClose(int n) {
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CriticalSection critical{lock_};
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Chain *previous{nullptr};
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int hash{Hash(n)};
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for (Chain *p{bucket_[hash].get()}; p; previous = p, p = p->next.get()) {
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if (p->unit.unitNumber() == n) {
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if (previous) {
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previous->next.swap(p->next);
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} else {
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bucket_[hash].swap(p->next);
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}
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// p->next.get() == p at this point; the next swap pushes p on closing_
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closing_.swap(p->next);
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return &p->unit;
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}
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}
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return nullptr;
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}
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void UnitMap::DestroyClosed(ExternalFileUnit &unit) {
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Chain *p{nullptr};
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{
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CriticalSection critical{lock_};
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Chain *previous{nullptr};
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for (p = closing_.get(); p; previous = p, p = p->next.get()) {
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if (&p->unit == &unit) {
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int n{unit.unitNumber()};
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if (n <= -2) {
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freeNewUnits_.Add(-n);
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}
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if (previous) {
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previous->next.swap(p->next);
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} else {
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closing_.swap(p->next);
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}
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break;
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}
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}
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}
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if (p) {
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p->unit.~ExternalFileUnit();
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FreeMemory(p);
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}
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}
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void UnitMap::CloseAll(IoErrorHandler &handler) {
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// Extract units from the map so they can be closed
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// without holding lock_.
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OwningPtr<Chain> closeList;
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{
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CriticalSection critical{lock_};
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for (int j{0}; j < buckets_; ++j) {
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while (Chain * p{bucket_[j].get()}) {
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bucket_[j].swap(p->next); // pops p from head of bucket list
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closeList.swap(p->next); // pushes p to closeList
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}
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}
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}
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while (Chain * p{closeList.get()}) {
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closeList.swap(p->next); // pops p from head of closeList
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p->unit.CloseUnit(CloseStatus::Keep, handler);
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p->unit.~ExternalFileUnit();
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FreeMemory(p);
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}
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}
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void UnitMap::FlushAll(IoErrorHandler &handler) {
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CriticalSection critical{lock_};
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for (int j{0}; j < buckets_; ++j) {
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for (Chain *p{bucket_[j].get()}; p; p = p->next.get()) {
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p->unit.FlushOutput(handler);
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}
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}
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}
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ExternalFileUnit *UnitMap::Find(const char *path, std::size_t pathLen) {
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if (path) {
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// TODO: Faster data structure
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for (int j{0}; j < buckets_; ++j) {
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for (Chain *p{bucket_[j].get()}; p; p = p->next.get()) {
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if (p->unit.path() && p->unit.pathLength() == pathLen &&
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runtime::memcmp(p->unit.path(), path, pathLen) == 0) {
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return &p->unit;
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}
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}
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}
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}
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return nullptr;
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}
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ExternalFileUnit &UnitMap::Create(int n, const Terminator &terminator) {
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Chain &chain{*New<Chain>{terminator}(n).release()};
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chain.next.reset(&chain);
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bucket_[Hash(n)].swap(chain.next); // pushes new node as list head
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return chain.unit;
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}
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} // namespace Fortran::runtime::io
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