mirror of
https://github.com/debauchee/barrier.git
synced 2024-12-18 16:31:44 +03:00
307 lines
6.8 KiB
C++
307 lines
6.8 KiB
C++
/*
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* synergy -- mouse and keyboard sharing utility
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* Copyright (C) 2002 Chris Schoeneman
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*
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* This package is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* found in the file COPYING that should have accompanied this file.
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*
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* This package is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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#include "CLog.h"
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#include "CString.h"
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#include "CStringUtil.h"
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#include "LogOutputters.h"
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#include "CArch.h"
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#include "Version.h"
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#include <cstdio>
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#include <cstring>
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// names of priorities
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static const char* g_priority[] = {
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"FATAL",
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"ERROR",
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"WARNING",
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"NOTE",
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"INFO",
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"DEBUG",
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"DEBUG1",
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"DEBUG2"
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};
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// number of priorities
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static const int g_numPriority = (int)(sizeof(g_priority) /
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sizeof(g_priority[0]));
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// the default priority
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#if defined(NDEBUG)
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static const int g_defaultMaxPriority = 4;
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#else
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static const int g_defaultMaxPriority = 5;
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#endif
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// length of longest string in g_priority
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static const int g_maxPriorityLength = 7;
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// length of suffix string (": ")
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static const int g_prioritySuffixLength = 2;
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// amount of padded required to fill in the priority prefix
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static const int g_priorityPad = g_maxPriorityLength +
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g_prioritySuffixLength;
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//
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// CLog
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//
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CLog* CLog::s_log = NULL;
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CLog::CLog()
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{
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assert(s_log == NULL);
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// create mutex for multithread safe operation
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m_mutex = ARCH->newMutex();
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// other initalization
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m_maxPriority = g_defaultMaxPriority;
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m_maxNewlineLength = 0;
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insert(new CConsoleLogOutputter);
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}
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CLog::~CLog()
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{
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// clean up
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for (COutputterList::iterator index = m_outputters.begin();
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index != m_outputters.end(); ++index) {
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delete *index;
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}
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for (COutputterList::iterator index = m_alwaysOutputters.begin();
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index != m_alwaysOutputters.end(); ++index) {
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delete *index;
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}
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ARCH->closeMutex(m_mutex);
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s_log = NULL;
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}
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CLog*
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CLog::getInstance()
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{
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// note -- not thread safe; client must initialize log safely
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if (s_log == NULL) {
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s_log = new CLog;
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}
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return s_log;
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}
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void
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CLog::print(const char* fmt, ...) const
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{
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// check if fmt begins with a priority argument
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int priority = 4;
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if (fmt[0] == '%' && fmt[1] == 'z') {
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priority = fmt[2] - '\060';
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fmt += 3;
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}
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// done if below priority threshold
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if (priority > getFilter()) {
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return;
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}
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// compute prefix padding length
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int pad = g_priorityPad;
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// print to buffer
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char stack[1024];
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va_list args;
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va_start(args, fmt);
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char* buffer = CStringUtil::vsprint(stack,
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sizeof(stack) / sizeof(stack[0]),
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pad, m_maxNewlineLength, fmt, args);
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va_end(args);
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// output buffer
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output(priority, buffer);
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// clean up
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if (buffer != stack)
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delete[] buffer;
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}
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void
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CLog::printt(const char* file, int line, const char* fmt, ...) const
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{
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// check if fmt begins with a priority argument
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int priority = 4;
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if (fmt[0] == '%' && fmt[1] == 'z') {
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priority = fmt[2] - '\060';
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fmt += 3;
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}
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// done if below priority threshold
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if (priority > getFilter()) {
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return;
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}
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// compute prefix padding length
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char stack[1024];
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sprintf(stack, "%d", line);
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int pad = strlen(file) + 1 /* comma */ +
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strlen(stack) + 1 /* colon */ + 1 /* space */ +
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g_priorityPad;
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// print to buffer, leaving space for a newline at the end
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va_list args;
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va_start(args, fmt);
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char* buffer = CStringUtil::vsprint(stack,
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sizeof(stack) / sizeof(stack[0]),
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pad, m_maxNewlineLength, fmt, args);
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va_end(args);
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// print the prefix to the buffer. leave space for priority label.
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sprintf(buffer + g_priorityPad, "%s,%d:", file, line);
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buffer[pad - 1] = ' ';
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// discard file and line if priority < 0
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char* message = buffer;
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if (priority < 0) {
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message += pad - g_priorityPad;
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}
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// output buffer
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output(priority, message);
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// clean up
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if (buffer != stack)
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delete[] buffer;
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}
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void
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CLog::insert(ILogOutputter* outputter, bool alwaysAtHead)
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{
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assert(outputter != NULL);
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assert(outputter->getNewline() != NULL);
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CArchMutexLock lock(m_mutex);
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if (alwaysAtHead) {
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m_alwaysOutputters.push_front(outputter);
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}
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else {
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m_outputters.push_front(outputter);
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}
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int newlineLength = strlen(outputter->getNewline());
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if (newlineLength > m_maxNewlineLength) {
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m_maxNewlineLength = newlineLength;
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}
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}
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void
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CLog::remove(ILogOutputter* outputter)
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{
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CArchMutexLock lock(m_mutex);
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m_outputters.remove(outputter);
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m_alwaysOutputters.remove(outputter);
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}
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void
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CLog::pop_front(bool alwaysAtHead)
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{
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CArchMutexLock lock(m_mutex);
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COutputterList* list = alwaysAtHead ? &m_alwaysOutputters : &m_outputters;
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if (!list->empty()) {
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delete list->front();
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list->pop_front();
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}
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}
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bool
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CLog::setFilter(const char* maxPriority)
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{
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if (maxPriority != NULL) {
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for (int i = 0; i < g_numPriority; ++i) {
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if (strcmp(maxPriority, g_priority[i]) == 0) {
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setFilter(i);
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return true;
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}
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}
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return false;
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}
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return true;
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}
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void
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CLog::setFilter(int maxPriority)
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{
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CArchMutexLock lock(m_mutex);
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m_maxPriority = maxPriority;
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}
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int
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CLog::getFilter() const
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{
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CArchMutexLock lock(m_mutex);
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return m_maxPriority;
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}
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void
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CLog::output(int priority, char* msg) const
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{
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assert(priority >= -1 && priority < g_numPriority);
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assert(msg != NULL);
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// insert priority label
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int n = -g_prioritySuffixLength;
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if (priority >= 0) {
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n = strlen(g_priority[priority]);
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strcpy(msg + g_maxPriorityLength - n, g_priority[priority]);
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msg[g_maxPriorityLength + 0] = ':';
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msg[g_maxPriorityLength + 1] = ' ';
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msg[g_maxPriorityLength + 1] = ' ';
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}
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// find end of message
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char* end = msg + g_priorityPad + strlen(msg + g_priorityPad);
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// write to each outputter
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CArchMutexLock lock(m_mutex);
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for (COutputterList::const_iterator index = m_alwaysOutputters.begin();
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index != m_alwaysOutputters.end();
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++index) {
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// get outputter
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ILogOutputter* outputter = *index;
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// put an appropriate newline at the end
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strcpy(end, outputter->getNewline());
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// open the outputter
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outputter->open(kApplication);
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// write message
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outputter->write(static_cast<ILogOutputter::ELevel>(priority),
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msg + g_maxPriorityLength - n);
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}
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for (COutputterList::const_iterator index = m_outputters.begin();
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index != m_outputters.end(); ++index) {
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// get outputter
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ILogOutputter* outputter = *index;
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// put an appropriate newline at the end
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strcpy(end, outputter->getNewline());
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// open the outputter
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outputter->open(kApplication);
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// write message and break out of loop if it returns false
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if (!outputter->write(static_cast<ILogOutputter::ELevel>(priority),
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msg + g_maxPriorityLength - n)) {
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break;
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}
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}
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}
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