119 lines
1.9 KiB
C++
119 lines
1.9 KiB
C++
#include "CBufferedInputStream.h"
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#include "CLock.h"
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#include "CMutex.h"
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#include "CThread.h"
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#include "CStopwatch.h"
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#include "IJob.h"
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#include "XIO.h"
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#include <cstring>
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//
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// CBufferedInputStream
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//
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CBufferedInputStream::CBufferedInputStream(
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CMutex* mutex, IJob* adoptedCloseCB) :
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m_mutex(mutex),
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m_empty(mutex, true),
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m_closeCB(adoptedCloseCB),
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m_closed(false),
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m_hungup(false)
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{
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assert(m_mutex != NULL);
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}
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CBufferedInputStream::~CBufferedInputStream()
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{
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delete m_closeCB;
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}
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void
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CBufferedInputStream::write(const void* buffer, UInt32 n)
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{
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if (!m_hungup && n > 0) {
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m_buffer.write(buffer, n);
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m_empty = (m_buffer.getSize() == 0);
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m_empty.broadcast();
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}
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}
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void
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CBufferedInputStream::hangup()
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{
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m_hungup = true;
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m_empty.broadcast();
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}
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UInt32
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CBufferedInputStream::readNoLock(void* buffer, UInt32 n, double timeout)
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{
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if (m_closed) {
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throw XIOClosed();
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}
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// wait for data, hangup, or timeout
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CStopwatch timer(true);
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while (!m_hungup && m_empty == true) {
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if (!m_empty.wait(timer, timeout)) {
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// timed out
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return (UInt32)-1;
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}
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}
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// read data
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const UInt32 count = m_buffer.getSize();
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if (n > count) {
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n = count;
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}
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if (n > 0) {
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if (buffer != NULL) {
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memcpy(buffer, m_buffer.peek(n), n);
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}
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m_buffer.pop(n);
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}
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// update empty state
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if (m_buffer.getSize() == 0) {
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m_empty = true;
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m_empty.broadcast();
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}
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return n;
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}
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UInt32
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CBufferedInputStream::getSizeNoLock() const
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{
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return m_buffer.getSize();
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}
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void
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CBufferedInputStream::close()
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{
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CLock lock(m_mutex);
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if (m_closed) {
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throw XIOClosed();
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}
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m_closed = true;
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m_hungup = true;
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m_buffer.pop(m_buffer.getSize());
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m_empty.broadcast();
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if (m_closeCB != NULL) {
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m_closeCB->run();
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}
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}
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UInt32
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CBufferedInputStream::read(void* buffer, UInt32 n, double timeout)
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{
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CLock lock(m_mutex);
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return readNoLock(buffer, n, timeout);
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}
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UInt32
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CBufferedInputStream::getSize() const
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{
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CLock lock(m_mutex);
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return getSizeNoLock();
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}
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