mirror of
https://github.com/matrix-construct/construct
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162 lines
5.8 KiB
C++
162 lines
5.8 KiB
C++
// The Construct
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//
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// Copyright (C) The Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2020 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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/////////////////////////////////////////////////////////////////////////////////
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//
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// This unit exists to mitigate instances of bugs in RocksDB and its builds.
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// It requires a complete copy of the rocksdb sourcecode to operate; though
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// said source does not have to be built.
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//
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#define ROCKSDB_PLATFORM_POSIX
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#define ZSTD_VERSION_NUMBER 0
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#if \
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__has_include("table/block_fetcher.h") && \
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__has_include("util/delete_scheduler.h") && \
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__has_include("util/file_util.h") && \
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__has_include("db/write_thread.h") && \
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__has_include("table/block_fetcher.h")
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#include "table/block_fetcher.h"
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#include "util/delete_scheduler.h"
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#include "util/file_util.h"
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#include "db/write_thread.h"
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#define IRCD_DB_FIXES_ROCKSDB
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#else
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#warning "RocksDB source is not available. Cannot interpose bugfixes."
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#endif
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///////////////////////////////////////////////////////////////////////////////
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//
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// https://github.com/facebook/rocksdb/issues/4654. In summary, some RocksDB
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// code makes direct use of std::mutex and std::condition_variable unlike the
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// rest of RocksDB code which uses the rocksdb::port and rocksdb::Env wrapper
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// interfaces. We have adapted the latter to work with ircd::ctx userspace
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// threading (see: db_port.cc and db_env.cc), but the former is a direct
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// interface to kernel pthreads which are incompatible in this context.
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//
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// Our mitigation is made possible by dynamic linking. It is a legitimate use
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// of runtime interposition as stated in official documentation for this exact
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// purpose: overriding buggy functions in library dependencies.
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// This section overrides a class member function in rocksdb::WriteThread which
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// originally made use of pthread primitives to handle two threads contending
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// for write access in RocksDB's single-writer design. This function is entered
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// by additional threads after a first thread is an established "write leader."
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// These additional threads wait until a state bitmask satisfies them so they
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// can continue. This waiting is accomplished with an std::condition_variable
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// which tells the kernel to stop the thread until satisfied. Since we are not
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// using kernel-driven threads, this is a deadlock.
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//
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#if defined(IRCD_DB_FIXES_ROCKSDB)
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uint8_t
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rocksdb::WriteThread::BlockingAwaitState(Writer *const w,
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uint8_t goal_mask)
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{
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// Create the class member mutex and cv where it's expected by
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// rocksdb callers
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w->CreateMutex();
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auto state(w->state.load(std::memory_order_acquire));
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assert(state != STATE_LOCKED_WAITING);
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if((state & goal_mask) == 0 && w->state.compare_exchange_strong(state, STATE_LOCKED_WAITING))
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{
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size_t yields(0);
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while((state = w->state.load(std::memory_order_relaxed)) == STATE_LOCKED_WAITING)
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{
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ircd::ctx::yield();
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++yields;
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}
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// Since we're using a coarse ctx::yield() it's theoretically possible
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// that our loop can spin out of control. That is highly unlikely,
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// and there is usually not even more than one iteration. Nevertheless
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// we assert to be sure this is working within reason.
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assert(yields < 32);
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}
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assert((state & goal_mask) != 0);
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return state;
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}
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#endif
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///////////////////////////////////////////////////////////////////////////////
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//
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// DeleteScheduler unconditionally starts an std::thread (pthread_create)
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// rather than using the rocksdb::Env system. We override this function to
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// simply not start that thread.
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//
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#if defined(IRCD_DB_FIXES_ROCKSDB)
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rocksdb::DeleteScheduler::DeleteScheduler(Env* env,
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int64_t rate_bytes_per_sec,
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Logger* info_log,
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SstFileManagerImpl* sst_file_manager,
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double max_trash_db_ratio,
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uint64_t bytes_max_delete_chunk)
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:env_(env),
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total_trash_size_(0),
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rate_bytes_per_sec_(rate_bytes_per_sec),
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pending_files_(0),
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bytes_max_delete_chunk_(bytes_max_delete_chunk),
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closing_(false),
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cv_(&mu_),
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info_log_(info_log),
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sst_file_manager_(sst_file_manager),
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max_trash_db_ratio_(max_trash_db_ratio)
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{
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assert(sst_file_manager != nullptr);
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assert(max_trash_db_ratio >= 0);
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// bg_thread_.reset(
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// new port::Thread(&DeleteScheduler::BackgroundEmptyTrash, this));
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}
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#endif
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#if defined(IRCD_DB_FIXES_ROCKSDB)
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rocksdb::DeleteScheduler::~DeleteScheduler()
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{
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}
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#endif
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//
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// To effectively employ the DeleteScheduler bypass we also interpose the
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// function which dispatches deletions to the scheduler to remove the branch
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// and directly conduct the deletion.
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//
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#if defined(IRCD_DB_FIXES_ROCKSDB)
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rocksdb::Status
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rocksdb::DeleteSSTFile(const ImmutableDBOptions *db_options,
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const std::string& fname,
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const std::string& dir_to_sync)
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{
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assert(db_options);
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assert(db_options->env);
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return db_options->env->DeleteFile(fname);
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}
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#endif
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///////////////////////////////////////////////////////////////////////////////
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//
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// On platforms where hardware crc32 acceleration is not available and for
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// use with valgrind, the crc32 checks over the data can be cumbersome. While
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// rocksdb offers options in several places to disable checksum checking, these
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// options are not honored in several places internally within rocksdb. Thus
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// in case a developer wants to manually bypass the checksumming this stub is
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// available.
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//
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#if defined(IRCD_DB_FIXES_ROCKSDB) && defined(IRCD_DB_BYPASS_CHECKSUM)
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void
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rocksdb::BlockFetcher::CheckBlockChecksum()
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{
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//assert(false);
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}
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#endif
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