8f613464b8
Test: unit tests with SimpleLogBuffer Change-Id: If6e29418645b5491df9b8aeef8f95bb786aeba93
337 lines
11 KiB
C++
337 lines
11 KiB
C++
/*
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* Copyright (C) 2020 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "SimpleLogBuffer.h"
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#include "LogBufferElement.h"
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SimpleLogBuffer::SimpleLogBuffer(LogReaderList* reader_list, LogTags* tags, LogStatistics* stats)
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: reader_list_(reader_list), tags_(tags), stats_(stats) {
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Init();
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}
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SimpleLogBuffer::~SimpleLogBuffer() {}
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void SimpleLogBuffer::Init() {
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log_id_for_each(i) {
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if (SetSize(i, __android_logger_get_buffer_size(i))) {
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SetSize(i, LOG_BUFFER_MIN_SIZE);
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}
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}
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// Release any sleeping reader threads to dump their current content.
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auto reader_threads_lock = std::lock_guard{reader_list_->reader_threads_lock()};
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for (const auto& reader_thread : reader_list_->reader_threads()) {
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reader_thread->triggerReader_Locked();
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}
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}
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std::list<LogBufferElement>::iterator SimpleLogBuffer::GetOldest(log_id_t log_id) {
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auto it = logs().begin();
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if (oldest_[log_id]) {
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it = *oldest_[log_id];
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}
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while (it != logs().end() && it->getLogId() != log_id) {
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it++;
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}
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if (it != logs().end()) {
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oldest_[log_id] = it;
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}
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return it;
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}
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bool SimpleLogBuffer::ShouldLog(log_id_t log_id, const char* msg, uint16_t len) {
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if (log_id == LOG_ID_SECURITY) {
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return true;
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}
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int prio = ANDROID_LOG_INFO;
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const char* tag = nullptr;
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size_t tag_len = 0;
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if (log_id == LOG_ID_EVENTS || log_id == LOG_ID_STATS) {
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if (len < sizeof(android_event_header_t)) {
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return false;
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}
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int32_t numeric_tag = reinterpret_cast<const android_event_header_t*>(msg)->tag;
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tag = tags_->tagToName(numeric_tag);
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if (tag) {
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tag_len = strlen(tag);
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}
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} else {
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prio = *msg;
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tag = msg + 1;
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tag_len = strnlen(tag, len - 1);
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}
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return __android_log_is_loggable_len(prio, tag, tag_len, ANDROID_LOG_VERBOSE);
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}
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int SimpleLogBuffer::Log(log_id_t log_id, log_time realtime, uid_t uid, pid_t pid, pid_t tid,
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const char* msg, uint16_t len) {
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if (log_id >= LOG_ID_MAX) {
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return -EINVAL;
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}
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if (!ShouldLog(log_id, msg, len)) {
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// Log traffic received to total
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stats_->AddTotal(log_id, len);
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return -EACCES;
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}
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// Slip the time by 1 nsec if the incoming lands on xxxxxx000 ns.
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// This prevents any chance that an outside source can request an
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// exact entry with time specified in ms or us precision.
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if ((realtime.tv_nsec % 1000) == 0) ++realtime.tv_nsec;
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auto lock = std::lock_guard{lock_};
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auto sequence = sequence_.fetch_add(1, std::memory_order_relaxed);
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LogInternal(LogBufferElement(log_id, realtime, uid, pid, tid, sequence, msg, len));
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return len;
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}
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void SimpleLogBuffer::LogInternal(LogBufferElement&& elem) {
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log_id_t log_id = elem.getLogId();
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logs_.emplace_back(std::move(elem));
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stats_->Add(&logs_.back());
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MaybePrune(log_id);
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reader_list_->NotifyNewLog(1 << log_id);
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}
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uint64_t SimpleLogBuffer::FlushTo(
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LogWriter* writer, uint64_t start, pid_t* last_tid,
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const std::function<FlushToResult(const LogBufferElement* element)>& filter) {
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auto shared_lock = SharedLock{lock_};
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std::list<LogBufferElement>::iterator it;
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if (start <= 1) {
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// client wants to start from the beginning
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it = logs_.begin();
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} else {
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// Client wants to start from some specified time. Chances are
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// we are better off starting from the end of the time sorted list.
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for (it = logs_.end(); it != logs_.begin();
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/* do nothing */) {
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--it;
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if (it->getSequence() <= start) {
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it++;
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break;
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}
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}
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}
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uint64_t curr = start;
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for (; it != logs_.end(); ++it) {
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LogBufferElement& element = *it;
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if (!writer->privileged() && element.getUid() != writer->uid()) {
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continue;
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}
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if (!writer->can_read_security_logs() && element.getLogId() == LOG_ID_SECURITY) {
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continue;
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}
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if (filter) {
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FlushToResult ret = filter(&element);
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if (ret == FlushToResult::kSkip) {
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continue;
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}
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if (ret == FlushToResult::kStop) {
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break;
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}
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}
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bool same_tid = false;
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if (last_tid) {
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same_tid = last_tid[element.getLogId()] == element.getTid();
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// Dropped (chatty) immediately following a valid log from the
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// same source in the same log buffer indicates we have a
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// multiple identical squash. chatty that differs source
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// is due to spam filter. chatty to chatty of different
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// source is also due to spam filter.
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last_tid[element.getLogId()] =
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(element.getDropped() && !same_tid) ? 0 : element.getTid();
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}
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shared_lock.unlock();
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// We never prune logs equal to or newer than any LogReaderThreads' `start` value, so the
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// `element` pointer is safe here without the lock
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curr = element.getSequence();
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if (!element.FlushTo(writer, stats_, same_tid)) {
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return FLUSH_ERROR;
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}
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shared_lock.lock_shared();
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}
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return curr;
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}
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// clear all rows of type "id" from the buffer.
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bool SimpleLogBuffer::Clear(log_id_t id, uid_t uid) {
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bool busy = true;
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// If it takes more than 4 tries (seconds) to clear, then kill reader(s)
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for (int retry = 4;;) {
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if (retry == 1) { // last pass
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// Check if it is still busy after the sleep, we say prune
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// one entry, not another clear run, so we are looking for
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// the quick side effect of the return value to tell us if
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// we have a _blocked_ reader.
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{
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auto lock = std::lock_guard{lock_};
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busy = Prune(id, 1, uid);
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}
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// It is still busy, blocked reader(s), lets kill them all!
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// otherwise, lets be a good citizen and preserve the slow
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// readers and let the clear run (below) deal with determining
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// if we are still blocked and return an error code to caller.
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if (busy) {
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auto reader_threads_lock = std::lock_guard{reader_list_->reader_threads_lock()};
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for (const auto& reader_thread : reader_list_->reader_threads()) {
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if (reader_thread->IsWatching(id)) {
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android::prdebug("Kicking blocked reader, %s, from LogBuffer::clear()\n",
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reader_thread->name().c_str());
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reader_thread->release_Locked();
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}
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}
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}
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}
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{
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auto lock = std::lock_guard{lock_};
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busy = Prune(id, ULONG_MAX, uid);
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}
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if (!busy || !--retry) {
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break;
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}
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sleep(1); // Let reader(s) catch up after notification
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}
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return busy;
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}
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// get the total space allocated to "id"
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unsigned long SimpleLogBuffer::GetSize(log_id_t id) {
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auto lock = SharedLock{lock_};
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size_t retval = max_size_[id];
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return retval;
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}
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// set the total space allocated to "id"
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int SimpleLogBuffer::SetSize(log_id_t id, unsigned long size) {
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// Reasonable limits ...
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if (!__android_logger_valid_buffer_size(size)) {
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return -1;
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}
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auto lock = std::lock_guard{lock_};
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max_size_[id] = size;
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return 0;
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}
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void SimpleLogBuffer::MaybePrune(log_id_t id) {
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unsigned long prune_rows;
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if (stats_->ShouldPrune(id, max_size_[id], &prune_rows)) {
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Prune(id, prune_rows, 0);
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}
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}
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bool SimpleLogBuffer::Prune(log_id_t id, unsigned long prune_rows, uid_t caller_uid) {
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auto reader_threads_lock = std::lock_guard{reader_list_->reader_threads_lock()};
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// Don't prune logs that are newer than the point at which any reader threads are reading from.
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LogReaderThread* oldest = nullptr;
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for (const auto& reader_thread : reader_list_->reader_threads()) {
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if (!reader_thread->IsWatching(id)) {
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continue;
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}
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if (!oldest || oldest->start() > reader_thread->start() ||
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(oldest->start() == reader_thread->start() &&
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reader_thread->deadline().time_since_epoch().count() != 0)) {
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oldest = reader_thread.get();
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}
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}
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auto it = GetOldest(id);
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while (it != logs_.end()) {
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LogBufferElement& element = *it;
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if (element.getLogId() != id) {
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++it;
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continue;
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}
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if (caller_uid != 0 && element.getUid() != caller_uid) {
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++it;
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continue;
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}
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if (oldest && oldest->start() <= element.getSequence()) {
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KickReader(oldest, id, prune_rows);
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return true;
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}
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stats_->Subtract(&element);
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it = Erase(it);
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if (--prune_rows == 0) {
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return false;
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}
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}
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return false;
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}
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std::list<LogBufferElement>::iterator SimpleLogBuffer::Erase(
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std::list<LogBufferElement>::iterator it) {
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bool oldest_is_it[LOG_ID_MAX];
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log_id_for_each(i) { oldest_is_it[i] = oldest_[i] && it == *oldest_[i]; }
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it = logs_.erase(it);
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log_id_for_each(i) {
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if (oldest_is_it[i]) {
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if (__predict_false(it == logs().end())) {
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oldest_[i] = std::nullopt;
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} else {
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oldest_[i] = it; // Store the next iterator even if it does not correspond to
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// the same log_id, as a starting point for GetOldest().
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}
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}
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}
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return it;
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}
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// If the selected reader is blocking our pruning progress, decide on
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// what kind of mitigation is necessary to unblock the situation.
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void SimpleLogBuffer::KickReader(LogReaderThread* reader, log_id_t id, unsigned long prune_rows) {
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if (stats_->Sizes(id) > (2 * max_size_[id])) { // +100%
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// A misbehaving or slow reader has its connection
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// dropped if we hit too much memory pressure.
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android::prdebug("Kicking blocked reader, %s, from LogBuffer::kickMe()\n",
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reader->name().c_str());
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reader->release_Locked();
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} else if (reader->deadline().time_since_epoch().count() != 0) {
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// Allow a blocked WRAP deadline reader to trigger and start reporting the log data.
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reader->triggerReader_Locked();
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} else {
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// tell slow reader to skip entries to catch up
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android::prdebug("Skipping %lu entries from slow reader, %s, from LogBuffer::kickMe()\n",
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prune_rows, reader->name().c_str());
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reader->triggerSkip_Locked(id, prune_rows);
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}
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}
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