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469 lines
9.5 KiB
469 lines
9.5 KiB
#ifndef _WORKERREQUEST_HXX_
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#define _WORKERREQUEST_HXX_
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#include "asynccontext.hxx"
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#include <reftrace.h>
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#include <acache.hxx>
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//
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// We are either reading a new request, or are processing the request
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//
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enum NREQ_STATE
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{
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NREQ_STATE_START = 0,
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NREQ_STATE_READ,
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NREQ_STATE_PROCESS,
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NREQ_STATE_ERROR,
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NREQ_STATE_CLIENT_CERT
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};
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enum NREQ_STATUS
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{
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NSTATUS_NEXT = 0,
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NSTATUS_PENDING
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};
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#define INLINE_REQUEST_BUFFER_LEN (sizeof(HTTP_REQUEST)+2048)
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#ifdef _WIN64
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#define INLINE_ALLOCATION_BUFFER_LEN (8192)
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#else
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#define INLINE_ALLOCATION_BUFFER_LEN (5120)
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#endif
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#define UL_NATIVE_REQUEST_CS_SPINS (200)
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#define DESIRED_PENDING_REQUESTS (20)
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#define DEFAULT_MAX_FREE_REQUESTS (250)
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//
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// When we're getting a client cert, the initialize buffer size we'll use
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//
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#define INITIAL_CERT_INFO_SIZE (1500)
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//
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// UL_NATIVE_REQUEST. Each object represents the context of handling a
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// single HTTP_REQUEST
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//
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#define UL_NATIVE_REQUEST_SIGNATURE CREATE_SIGNATURE( 'NREQ')
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#define UL_NATIVE_REQUEST_SIGNATURE_FREE CREATE_SIGNATURE( 'nreq')
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class UL_NATIVE_REQUEST : public ASYNC_CONTEXT
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{
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public:
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UL_NATIVE_REQUEST(
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VOID
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);
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~UL_NATIVE_REQUEST(
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VOID
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);
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VOID *
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operator new(
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size_t size
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)
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{
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if ( size != sizeof( UL_NATIVE_REQUEST ) )
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{
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DBG_ASSERT( size == sizeof( UL_NATIVE_REQUEST ) );
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return NULL;
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}
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DBG_ASSERT( sm_pachNativeRequests != NULL );
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return sm_pachNativeRequests->Alloc();
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}
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VOID
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operator delete(
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VOID * pNativeRequest
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)
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{
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DBG_ASSERT( pNativeRequest != NULL );
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DBG_ASSERT( sm_pachNativeRequests != NULL );
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DBG_REQUIRE( sm_pachNativeRequests->Free( pNativeRequest ) );
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}
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//
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// The state machine advancer
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//
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VOID
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DoWork(
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DWORD cbData,
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DWORD dwError,
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LPOVERLAPPED lpo
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);
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//
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// Global list of worker requests
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//
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VOID
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RemoveFromRequestList(
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VOID
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);
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VOID
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AddToRequestList(
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VOID
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);
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//
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// Reference counting
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//
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VOID
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ReferenceWorkerRequest(
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VOID
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);
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VOID
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DereferenceWorkerRequest(
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VOID
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);
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//
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// Configure # of requests to serve
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//
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static
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VOID
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SetRestartCount(
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ULONG cRequests
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)
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{
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sm_cRestart = cRequests;
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}
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HTTP_REQUEST *
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QueryHttpRequest(
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VOID
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) const
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{
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return (HTTP_REQUEST *) _pbBuffer;
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}
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VOID
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ResetContext(
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VOID
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);
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VOID
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SetContext(
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PVOID pvContext
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)
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{
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_pvContext = pvContext;
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}
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HRESULT
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SendResponse(
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BOOL fAsync,
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DWORD dwFlags,
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HTTP_RESPONSE *pResponse,
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HTTP_CACHE_POLICY *pCachePolicy,
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DWORD *pcbSent,
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HTTP_LOG_FIELDS_DATA *pUlLogData
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);
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HRESULT
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SendEntity(
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BOOL fAsync,
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DWORD dwFlags,
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USHORT cChunks,
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HTTP_DATA_CHUNK * pChunks,
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DWORD *pcbSent,
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HTTP_LOG_FIELDS_DATA *pUlLogData
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);
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HRESULT
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ReceiveEntity(
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BOOL fAsync,
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DWORD dwFlags,
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VOID * pBuffer,
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DWORD cbBuffer,
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DWORD * pBytesReceived
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);
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HRESULT
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ReceiveClientCertificate(
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BOOL fAsync,
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BOOL fDoCertMap,
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HTTP_SSL_CLIENT_CERT_INFO **ppClientCertInfo
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);
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BOOL
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CheckSignature(
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VOID
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) const
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{
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return _dwSignature == UL_NATIVE_REQUEST_SIGNATURE;
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}
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//
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// Allocate some per-request memory
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//
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VOID *
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AllocateMemory(
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DWORD cbSize
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);
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//
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// Global UL_NATIVE_REQUEST methods
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//
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static
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HRESULT
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Initialize(
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VOID
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);
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static
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VOID
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StopListening(
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VOID
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);
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static
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VOID
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Terminate(
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VOID
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);
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static
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HRESULT
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AddPendingRequests(
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DWORD cItems
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);
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static
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HRESULT
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ReleaseAllWorkerRequests(
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VOID
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);
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static
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HRESULT
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StartPendingRequestsMonitor(
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VOID
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);
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static
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VOID
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StopPendingRequestsMonitor(
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VOID
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);
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static
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VOID
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WINAPI
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PendingRequestsMonitorHandler(
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PVOID,
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BOOLEAN
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);
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static
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DWORD
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QueryCurrentRequests(
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VOID
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)
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{
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return sm_cRequests - sm_cRequestsPending;
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}
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static
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VOID
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FreeWorkerRequest(
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UL_NATIVE_REQUEST * pWorkerRequest
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);
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static
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UL_NATIVE_REQUEST *
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AllocateWorkerRequest(
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VOID
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);
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static
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VOID
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PushFreeList(
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UL_NATIVE_REQUEST * pWorkerRequest
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)
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{
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#ifdef _WIN64
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sm_FreeListLock.WriteLock();
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PushEntryList( &sm_FreeList, &pWorkerRequest->_FreeListEntry );
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sm_FreeListLock.WriteUnlock();
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#else
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RtlInterlockedPushEntrySList( &sm_FreeList, &pWorkerRequest->_FreeListEntry );
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#endif
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}
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static
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UL_NATIVE_REQUEST *
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PopFreeList(
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VOID
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)
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{
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SINGLE_LIST_ENTRY * pListEntry;
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UL_NATIVE_REQUEST * pRequest = NULL;
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#ifdef _WIN64
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sm_FreeListLock.WriteLock();
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pListEntry = PopEntryList( &sm_FreeList );
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sm_FreeListLock.WriteUnlock();
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#else
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pListEntry = RtlInterlockedPopEntrySList( &sm_FreeList );
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#endif
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if ( pListEntry != NULL )
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{
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pRequest = CONTAINING_RECORD( pListEntry,
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UL_NATIVE_REQUEST,
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_FreeListEntry );
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}
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return pRequest;
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}
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private:
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HTTP_CONNECTION_ID
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QueryConnectionId(
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VOID
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) const
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{
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return QueryHttpRequest()->ConnectionId;
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}
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HTTP_REQUEST_ID
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QueryRequestId(
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VOID
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) const
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{
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return QueryHttpRequest()->RequestId;
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}
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//
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// private helper for destructor and Reset()
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//
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VOID
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Cleanup(
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VOID
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);
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//
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// Reset the worker process to its pristine state
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//
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VOID
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Reset(
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VOID
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);
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//
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// State implementors
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//
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NREQ_STATUS
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DoStateStart(
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VOID
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);
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NREQ_STATUS
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DoStateRead(
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VOID
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);
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NREQ_STATUS
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DoStateProcess(
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VOID
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);
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NREQ_STATUS
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DoStateClientCertificate(
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VOID
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);
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//
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// Determine if we need to send a "restart count reached" message to
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// the admin process. Note that we want to send this once, thus the
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// use of InterlockedExchange() on the static member. Note also that
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// we first test the flag with non-interlocked access to avoid bus
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// thrash.
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//
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static
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BOOL
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NeedToSendRestartMsg(
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VOID
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)
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{
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if( sm_RestartMsgSent == 1 )
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{
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return FALSE;
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}
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return InterlockedExchange( &sm_RestartMsgSent, 1 ) == 0;
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}
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DWORD _dwSignature;
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LONG _cRefs;
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SINGLE_LIST_ENTRY _FreeListEntry;
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NREQ_STATE _ExecState;
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LIST_ENTRY _ListEntry;
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PVOID _pvContext;
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DWORD _cbAsyncIOData; // Data transferred in the last Async IO
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DWORD _dwAsyncIOError; // Error code from the last Async IO
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UCHAR _achBuffer[ INLINE_REQUEST_BUFFER_LEN ];
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UCHAR * _pbBuffer;
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DWORD _cbBuffer;
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BUFFER _buffClientCertInfo;
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DWORD _dwClientCertFlags;
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HTTP_SSL_CLIENT_CERT_INFO * _pClientCertInfo;
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BYTE _abAllocateMemory[ INLINE_ALLOCATION_BUFFER_LEN ];
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DWORD _cbAllocateMemoryOffset;
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//
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// static members
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//
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static ULONG sm_cRequestsServed;
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static ULONG sm_cRestart;
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static LONG sm_RestartMsgSent;
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static LIST_ENTRY sm_RequestListHead;
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static CRITICAL_SECTION sm_csRequestList;
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static DWORD sm_cRequests;
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static PTRACE_LOG sm_pTraceLog;
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#ifdef _WIN64
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static SINGLE_LIST_ENTRY sm_FreeList;
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static CSpinLock sm_FreeListLock;
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#else
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static SLIST_HEADER sm_FreeList;
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#endif
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static DWORD sm_cFreeRequests;
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static DWORD sm_cMaxFreeRequests;
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static DWORD sm_cRequestsPending;
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static DWORD sm_cDesiredPendingRequests;
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static BOOL sm_fAddingRequests;
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static ALLOC_CACHE_HANDLER * sm_pachNativeRequests;
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// timer for the pending requests monitor
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static HANDLE sm_hPendingRequestsTimer;
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};
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#endif
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