434 lines
11 KiB
C++
434 lines
11 KiB
C++
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///////////////////////////////////////////////////////////////////////////////
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/* File: debug.cpp
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Description: Provides debugging macros to support tracing, debugger print
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statements, error message debugger output and assertions.
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I'm sure you're saying "why ANOTHER debugger output implementation".
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There are many around but I haven't found one that is as flexible and
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consistent as I would like. This library suports the concept of
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both functional "masks" and detail "levels" to control the quantity
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of debugger output.
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Masks let you control debugger output based on program function. For
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instance, if you tag a DBGPRINT statement with the mask DM_XYZ, it
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will only be activated if the global variable DebugParams::PrintMask
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has the DM_XYZ bit set.
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Levels let you control debugger output based on a level of desired
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detail. Sometimes you just want to see the basic functions happening
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but other times, you need to see everything that's going on. This
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leveling allows you to specify at which level a macro is enabled.
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The library is designed to be activated with the DBG macro.
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If DBG is not defined as 1, there is no trace of this code in your
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product.
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Revision History:
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Date Description Programmer
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-------- --------------------------------------------------- ----------
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01/19/98 Replaced with version from CSC cache viewer. BrianAu
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*/
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///////////////////////////////////////////////////////////////////////////////
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#include "pch.h"
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#pragma hdrstop
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#if DBG
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//
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// Defaults for the DebugParams members.
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// By default, tracing and printing should be silent (no output).
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// The default mask values of 0 ensure this.
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// Also, printing and tracing are not verbose by default.
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// Note that errors and asserts are always active when DBG is defined as 1.
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// Errors and asserts are also always verbose.
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//
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LPCTSTR DebugParams::m_pszModule = TEXT("");
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UINT DebugParams::TraceLevel = 0;
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UINT DebugParams::PrintLevel = 0;
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bool DebugParams::TraceVerbose = false;
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bool DebugParams::PrintVerbose = false;
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bool DebugParams::TraceOnExit = true;
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ULONGLONG DebugParams::TraceMask = 0;
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ULONGLONG DebugParams::PrintMask = 0;
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//
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// Static default values for DebugPrint and DebugTrace classes.
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//
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const ULONGLONG DebugPrint::DEFMASK = (ULONGLONG)-1;
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const UINT DebugPrint::DEFLEVEL = 0;
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const ULONGLONG DebugTrace::DEFMASK = (ULONGLONG)-1;
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const UINT DebugTrace::DEFLEVEL = 0;
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LPCTSTR
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DebugParams::SetModule(
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LPCTSTR pszModule
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)
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{
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LPCTSTR pszModulePrev = m_pszModule;
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m_pszModule = pszModule;
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return pszModulePrev;
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}
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void
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DebugParams::SetDebugMask(
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ULONGLONG llMask
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)
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{
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TraceMask = PrintMask = llMask;
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}
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void
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DebugParams::SetDebugLevel(
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UINT uLevel
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)
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{
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TraceLevel = PrintLevel = uLevel;
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}
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void
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DebugParams::SetDebugVerbose(
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bool bVerbose
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)
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{
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TraceVerbose = PrintVerbose = bVerbose;
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}
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void
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DebugParams::SetTraceOnExit(
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bool bTrace
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)
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{
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TraceOnExit = bTrace;
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}
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void *
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DebugParams::GetItemPtr(
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DebugParams::Item item,
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DebugParams::Type type
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)
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{
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//
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// Assertions are active for all levels, any program function (mask = -1)
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// and are always verbose.
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//
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static bool bAssertVerbose = true;
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static UINT uAssertLevel = 0;
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static ULONGLONG llAssertMask = DM_ALL;
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//
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// This array just eliminates the need for a lot of code when setting
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// or reading the various global DebugParam members.
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//
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static void *rgpMember[eTypeMax][eItemMax] = { { &TraceMask, &TraceLevel, &TraceVerbose },
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{ &PrintMask, &PrintLevel, &PrintVerbose },
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{ &llAssertMask, &uAssertLevel, &bAssertVerbose }
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};
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return rgpMember[type][item];
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}
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ULONGLONG
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DebugParams::SetMask(
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ULONGLONG llMask,
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DebugParams::Type type
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)
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{
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ULONGLONG *pllMask = (ULONGLONG *)GetItemPtr(DebugParams::eMask, type);
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ULONGLONG llMaskPrev = *pllMask;
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*pllMask = llMask;
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return llMaskPrev;
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}
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UINT
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DebugParams::SetLevel(
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UINT uLevel,
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DebugParams::Type type
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)
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{
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UINT *puLevel = (UINT *)GetItemPtr(DebugParams::eLevel, type);
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UINT uLevelPrev = *puLevel;
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*puLevel = uLevel;
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return uLevelPrev;
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}
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bool
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DebugParams::SetVerbose(
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bool bVerbose,
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DebugParams::Type type
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)
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{
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bool *pbVerbose = (bool *)GetItemPtr(DebugParams::eVerbose, type);
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bool bVerbosePrev = *pbVerbose;
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*pbVerbose = bVerbose;
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return bVerbosePrev;
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}
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DebugTrace::DebugTrace(
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LPCTSTR pszFile,
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INT iLineNo
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) : m_pszFile(pszFile),
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m_iLineNo(iLineNo),
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m_llMask(0),
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m_uLevel(0)
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{
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//
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// Do nothing.
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//
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}
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void
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DebugTrace::Enter(
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ULONGLONG llMask,
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UINT uLevel,
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LPCTSTR pszBlockName
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) const
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{
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DebugPrint(DebugParams::eTrace, m_pszFile, m_iLineNo).Print(m_llMask = llMask, m_uLevel = uLevel, TEXT("++ ENTER %s"), m_pszBlockName = pszBlockName);
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}
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void
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DebugTrace::Enter(
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ULONGLONG llMask,
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UINT uLevel,
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LPCTSTR pszBlockName,
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LPCTSTR pszFmt,
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...
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) const
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{
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va_list args;
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va_start(args, pszFmt);
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TCHAR szMsg[1024];
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wvsprintf(szMsg, pszFmt, args);
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va_end(args);
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DebugPrint(DebugParams::eTrace, m_pszFile, m_iLineNo).Print(m_llMask = llMask, m_uLevel = uLevel, TEXT("++ ENTER %s: %s"), m_pszBlockName = pszBlockName, szMsg);
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}
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void
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DebugTrace::Enter(
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LPCTSTR pszBlockName
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) const
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{
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Enter(DebugTrace::DEFMASK, DebugTrace::DEFLEVEL, pszBlockName);
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}
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void
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DebugTrace::Enter(
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LPCTSTR pszBlockName,
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LPCTSTR pszFmt,
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...
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) const
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{
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va_list args;
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va_start(args, pszFmt);
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TCHAR szMsg[1024];
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wvsprintf(szMsg, pszFmt, args);
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va_end(args);
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DebugPrint(DebugParams::eTrace, m_pszFile, m_iLineNo).Print(m_llMask = DebugTrace::DEFMASK, m_uLevel = DebugTrace::DEFLEVEL, TEXT("++ ENTER %s: %s"), m_pszBlockName = pszBlockName, szMsg);
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}
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DebugTrace::~DebugTrace(void)
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{
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if (DebugParams::TraceOnExit)
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DebugPrint(DebugParams::eTrace, m_pszFile, m_iLineNo).Print(m_llMask, m_uLevel, TEXT("-- LEAVE %s"), m_pszBlockName);
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}
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DebugPrint::DebugPrint(
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DebugParams::Type type,
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LPCTSTR pszFile,
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INT iLineNo
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) : m_pszFile(pszFile),
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m_iLineNo(iLineNo),
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m_type(type)
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{
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//
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// Do nothing.
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//
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}
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void
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DebugPrint::Print(
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LPCTSTR pszFmt,
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...
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) const
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{
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va_list args;
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va_start(args, pszFmt);
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Print(DebugPrint::DEFMASK, DebugPrint::DEFLEVEL, pszFmt, args);
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va_end(args);
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}
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void
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DebugPrint::Print(
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ULONGLONG llMask,
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UINT uLevel,
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LPCTSTR pszFmt,
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...
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) const
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{
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va_list args;
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va_start(args, pszFmt);
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Print(llMask, uLevel, pszFmt, args);
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va_end(args);
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}
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//
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// Determine if there are any corresponding bits set in two ULONGLONG
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// values. Can't just do a simple bitwise AND operation because the compiler
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// truncates the operands to integer size.
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//
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bool
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DebugPrint::AnyBitSet(
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ULONGLONG llMask,
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ULONGLONG llTest
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)
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{
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ULARGE_INTEGER ulMask, ulTest;
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ulMask.QuadPart = llMask;
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ulTest.QuadPart = llTest;
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return (ulMask.LowPart & ulTest.LowPart) || (ulMask.HighPart & ulTest.HighPart);
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}
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//
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// Internal [private] print function.
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// All other print functions end up here.
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//
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void
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DebugPrint::Print(
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ULONGLONG llMask,
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UINT uLevel,
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LPCTSTR pszFmt,
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va_list args
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) const
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{
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//
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// Crude check to make sure we haven't overflowed the text buffer.
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// It's 1K so I don't expect it. But if we do, it needs to be
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// announced somehow so either the buffer can be enlarged or the
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// message text reduced. I can't use DBGASSERT because that will
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// cause recursion.
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//
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#define CHECKOVERFLOW \
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if (pszWrite >= (pszEnd - 3)) {\
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OutputDebugString(TEXT("Buffer overflow in DebugPrint::Print, File:")TEXT(__FILE__)TEXT(" Line:")TEXT("#__LINE__")); \
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DebugBreak(); }
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//
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// Retrieve the global DebugParam members for the "type" being printed.
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// i.e. ePrint, eAssert or eTrace.
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//
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ULONGLONG *pllMask = (ULONGLONG *)DebugParams::GetItemPtr(DebugParams::eMask, m_type);
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UINT *puLevel = (UINT *)DebugParams::GetItemPtr(DebugParams::eLevel, m_type);
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bool *pbVerbose = (bool *)DebugParams::GetItemPtr(DebugParams::eVerbose, m_type);
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if ((uLevel <= *puLevel) && AnyBitSet(llMask, *pllMask))
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{
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//
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// The statement is both "mask" and "level" enabled.
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// Generate debugger output.
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//
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TCHAR szText[1024];
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LPTSTR pszWrite = szText;
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LPCTSTR pszEnd = pszWrite + ARRAYSIZE(szText);
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//
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// Each message has "[<module>:<thread>]" prefix.
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//
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pszWrite += wsprintf(pszWrite,
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TEXT("[%s:%d] "),
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DebugParams::m_pszModule,
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GetCurrentThreadId());
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CHECKOVERFLOW;
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//
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// Append the message text (formatted).
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//
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pszWrite += wvsprintf(pszWrite, pszFmt, args);
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CHECKOVERFLOW;
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if (*pbVerbose)
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{
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//
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// Verbose output is desired. Add the filename/line number pair
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// indented on the next line.
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//
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pszWrite += wsprintf(pszWrite, TEXT("\n\r\t+->File: %s, Line: %d"), m_pszFile, m_iLineNo);
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}
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CHECKOVERFLOW;
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//
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// Append a CRLF.
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//
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lstrcpy(pszWrite, TEXT("\n\r"));
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OutputDebugString(szText);
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}
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}
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DebugError::DebugError(
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LPCTSTR pszFile,
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INT iLineNo
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) : DebugPrint(DebugParams::ePrint, pszFile, iLineNo)
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{
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//
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// Do nothing.
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//
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}
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void
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DebugError::Error(
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LPCTSTR pszFmt,
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...
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) const
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{
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va_list args;
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va_start(args, pszFmt);
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ULONGLONG llMaskSaved = DebugParams::PrintMask;
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UINT uLevelSaved = DebugParams::PrintLevel;
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DebugParams::PrintMask = (ULONGLONG)-1;
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DebugParams::PrintLevel = 99999;
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Print((ULONGLONG)-1, 0, pszFmt, args);
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DebugParams::PrintLevel = uLevelSaved;
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DebugParams::PrintMask = llMaskSaved;
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va_end(args);
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}
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DebugAssert::DebugAssert(
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LPCTSTR pszFile,
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INT iLineNo,
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LPCTSTR pszTest
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)
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{
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DebugPrint PrintThis(DebugParams::eAssert, pszFile, iLineNo);
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ULONGLONG llMaskSaved = DebugParams::PrintMask;
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UINT uLevelSaved = DebugParams::PrintLevel;
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DebugParams::PrintMask = (ULONGLONG)-1;
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DebugParams::PrintLevel = 99999;
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PrintThis.Print((ULONGLONG)-1, 0, pszTest);
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DebugParams::PrintLevel = uLevelSaved;
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DebugParams::PrintMask = llMaskSaved;
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DebugBreak();
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}
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#endif // DBG
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