- BORLAND/: Borland C++ 4.52 (chosen over 4.5 by byte-match: CODE/RP/CW32.LIB
is identical to 4.52's install lib). BCC32/TLINK32/TLIB/MAKE run natively on
Win11; CODE/BT/OPT.MAK is the shipped BTL4OPT.EXE's exact flag recipe
(extender = Borland PowerPack DPMI32, not Phar Lap TNT).
- restoration/source410/: the literal 1995-form reconstruction of the missing
BT game source (never mixed into CODE/). Round 1-3 state:
* 6 of 10 surviving original TUs COMPILE CLEAN under the period toolchain
(BTMSSN, BTCNSL, BTSCNRL, BTTEAM, BTL4MODE, BTL4ARND) - first builds
since 1996.
* BT_L4/BTL4APP.CPP pilot reconstruction: 12/12 functions, Fail() lands on
its binary-recorded line 400 exactly.
* BT/BTCNSL.HPP: console wire IDs recovered from the binary's ctors
(Killed=9, Damaged=10, ScoreUpdate=13, DeathWithoutHonor=15 [T1];
TeamScore=12 flagged [T4]).
* MUNGA/: 8 engine-header backfills back-dated from the BT412 WinTesla tree
(VDATA numbering decomp-verified; AUDREND's OpenAL-era virtual removed -
the period compiler is the drift detector).
* Tooling: backdate.py (WinTesla->1995 header transform), compile410.sh
(per-TU verification sweep under authentic OPT.MAK flags).
* README: corrected roadmap - MECH.HPP is the capstone grown with the mech
TU reconstructions; BTREG.CPP green = the header-family milestone.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
283 lines
11 KiB
C++
283 lines
11 KiB
C++
// BDE - (C) Copyright 1995 by Borland International
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// FiltCont.c
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#include "snipit.h"
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static const char szTblName[] = "customer";
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static const char szTblType[] = szPARADOX;
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//===============================================================
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// Function:
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// FiltCont();
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//
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// Description:
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// This example shows how to use filters to limit the
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// result set of a table.
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//
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// This example shows the use of a canContinue node. A
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// Continue node is used to stop evaluating when a certain
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// condition is false for the first time.
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//
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// This filter will limit the result set to those
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// customers living in Hawaii, you are listed in the
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// table before the customer with ID 1624.
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//
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// Picture of this filter expression:
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//
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// AND
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// / \
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// / \
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// / \
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// / \
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// EQ Continue
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// / \ |
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// / \ |
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// / \ |
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// Field 2 szConst NE
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// (STATE/PROV) (HI) / \
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// / \
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// / \
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// Field1 fConst
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// (CUSTOMER NO)(1624.0)
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//
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//==============================================================
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void
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FiltCont (void)
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{
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hDBIDb hDb; // Handle to the database.
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hDBICur hCur; // Handle to the table.
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pBYTE pcanExpr; // Structure containing
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// filter info.
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hDBIFilter hFilter; // Filter handle.
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UINT16 uSizeNodes; // Size of the nodes in the
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// tree.
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UINT16 uSizeCanExpr; // Size of the header
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// information.
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UINT16 uSizeLiterals; // Size of the literals.
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UINT16 uTotalSize; // Total size of the filter
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// expression.
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UINT32 uNumRecs = 10; // Number of records to
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// display.
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CANExpr canExp; // Contains the header
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// information.
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UINT16 Nodes[] = // Nodes of the filter tree.
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{
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// Offset 0. Node 1.
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nodeBINARY, // canBinary.nodeClass
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canAND, // canBinary.canOp
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8, // canBinary.iOperand1 - node 2
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34, // canBinary.iOperand2 - node 5
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// Offsets in the Nodes array
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// Offset 8. Node 2.
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nodeBINARY, // canBinary.nodeClass
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canEQ , // canBinary.canOp
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16, // canBinary.iOperand1 - node 3
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24, // canBinary.iOperand2 - node 4
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// Offsets in the Nodes array
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// Offset 16. Node 3.
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nodeFIELD, // canField.nodeClass
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canFIELD, // canField.canOp
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5, // canField.iFieldNum
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11, // canField.iNameOffset: szField2
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// is the literal at offset
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// strlen(szField1) + 1
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// Offset 24. Node 4.
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nodeCONST, // canConst.nodeClass
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canCONST, // canConst.canOp
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fldZSTRING, // canConst.iType
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3, // canConst.iSize
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31, // canConst.iOffset: fconst is
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// the literal at offset
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// strlen(szField1) + 1 +
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// sizeof(fConst) +
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// strlen(szField2) + 1
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// Offset 34. Node 5.
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nodeUNARY, // canBinary.nodeClass
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canCONTINUE, // canBinary.canOp
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40, // canBinary.iOperand1 - node 6
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// Offsets in the Nodes array
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// Offset 40. Node 6.
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nodeBINARY, // canBinary.nodeClass
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canNE , // canBinary.canOp
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48, // canBinary.iOperand1 - node 7
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56, // canBinary.iOperand2 - node 8
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// Offsets in the Nodes array
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// Offset 48. Node 7.
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nodeFIELD, // canField.nodeClass
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canFIELD, // canField.canOp
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1, // canField.iFieldNum
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0, // canField.iNameOffset:
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// szField1 is the literal at
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// offset 0.
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// Offset 56. Node 1.
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nodeCONST, // canConst.nodeClass
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canCONST, // canConst.canOp
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fldFLOAT, // canConst.iType
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8, // canConst.iSize
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23, // canConst.iOffset: fconst is
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// the literal at offset
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// strlen(szField1) + 1 +
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// strlen(szField2) + 1
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};
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// Name of the field for the third node of the tree.
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CHAR szField1[] = "CUSTOMER NO";
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// Name of the field for the third node of the tree.
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CHAR szField2[] = "STATE/PROV";
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// Value of the constant for the second node of the tree.
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FLOAT fConst = 1624.0;
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// Value of the constant for the second node of the tree.
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// Field #7
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CHAR szConst[] = "HI";
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DBIResult rslt; // Return value from IDAPI functions.
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Screen("*** Continue Filter Example ***\r\n");
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BREAK_IN_DEBUGGER();
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Screen(" Initializing IDAPI...");
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if (InitAndConnect(&hDb) != DBIERR_NONE)
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{
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Screen("\r\n*** End of Example ***");
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return;
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}
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Screen(" Setting the database directory...");
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rslt = DbiSetDirectory(hDb, (pCHAR) szTblDirectory);
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ChkRslt(rslt, "SetDirectory");
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Screen(" Open the %s table...", szTblName);
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rslt = DbiOpenTable(hDb, (pCHAR) szTblName,
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(pCHAR) szTblType,
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NULL, NULL, 0, dbiREADWRITE,
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dbiOPENSHARED, xltFIELD, FALSE, NULL,
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&hCur);
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if (ChkRslt(rslt, "OpenTable") != DBIERR_NONE)
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{
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CloseDbAndExit(&hDb);
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Screen("\r\n*** End of Example ***");
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return;
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}
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// Go to the beginning of the table
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rslt = DbiSetToBegin(hCur);
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ChkRslt(rslt, "SetToBegin");
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Screen("\r\n Display the %s table...", szTblName);
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DisplayTable(hCur, uNumRecs);
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// Size of the nodes.
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uSizeNodes = sizeof(Nodes);
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// Size of the literals.
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uSizeLiterals = strlen(szField1) + 1 + sizeof(fConst) +
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strlen(szField2) + 1 + strlen(szConst)
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+ 1;
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// Size of the header information.
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uSizeCanExpr = sizeof(CANExpr);
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// Total size of the filter.
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uTotalSize = uSizeCanExpr + uSizeNodes + uSizeLiterals;
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// Initialize the header information
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canExp.iVer = 1; // Version.
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canExp.iTotalSize = uTotalSize; // Total size of the filter.
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canExp.iNodes = 8; // Number of nodes.
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canExp.iNodeStart = uSizeCanExpr; // The offset in the
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// buffer where the
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// expression nodes
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// start.
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// The offset in the buffer where the literals start.
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canExp.iLiteralStart = uSizeCanExpr + uSizeNodes;
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// Allocate space for the filter expression.
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pcanExpr = (pBYTE)malloc(uTotalSize * sizeof(BYTE));
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if (pcanExpr == NULL)
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{
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Screen(" Could not allocate memory...");
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DbiCloseCursor(&hCur);
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CloseDbAndExit(&hDb);
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Screen("\r\n*** End of Example ***");
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return;
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}
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// Initialize the filter expression.
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memmove(pcanExpr, &canExp, uSizeCanExpr);
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memmove(&pcanExpr[uSizeCanExpr], Nodes, uSizeNodes);
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memmove(&pcanExpr[uSizeCanExpr + uSizeNodes],
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szField1, strlen(szField1) + 1); // First litteral
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memmove(&pcanExpr[(uSizeCanExpr + uSizeNodes +
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strlen(szField1) + 1)],
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szField2, strlen(szField2) + 1); // First litteral
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memmove(&pcanExpr[(uSizeCanExpr + uSizeNodes +
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strlen(szField1) + 1 +
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strlen(szField2) + 1)],
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&fConst, sizeof(fConst)); // Second litteral
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memmove(&pcanExpr[(uSizeCanExpr + uSizeNodes +
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strlen(szField1) + 1 +
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strlen(szField2) + 1 + sizeof(fConst))],
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szConst, strlen(szConst) + 1); // First litteral
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rslt = DbiSetToBegin(hCur);
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ChkRslt(rslt, "SetToBegin");
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Screen("\r\n Add a filter to the %s table which will"
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" limit the records\r\n in the result set"
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" to those whose %s field is equal to '%s', until\r\n"
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" the first record where the %s field is equal to %.1lf...",
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szTblName, szField2, szConst, szField1, fConst);
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rslt = DbiAddFilter(hCur, 0L, 1, FALSE, (pCANExpr)pcanExpr,
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NULL, &hFilter);
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if (ChkRslt(rslt, "AddFilter") != DBIERR_NONE)
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{
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rslt = DbiCloseCursor(&hCur);
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ChkRslt(rslt, "CloseCursor");
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free(pcanExpr);
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CloseDbAndExit(&hDb);
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Screen("\r\n*** End of Example ***");
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return;
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}
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// Activate the filter.
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Screen(" Activate the filter on the %s table...",
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szTblName);
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rslt = DbiActivateFilter(hCur, hFilter);
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ChkRslt(rslt, "ActivateFilter");
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rslt = DbiSetToBegin(hCur);
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ChkRslt(rslt, "SetToBegin");
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Screen("\r\n Display the %s table with the filter"
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" set...", szTblName);
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DisplayTable(hCur, uNumRecs);
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Screen("\r\n Deactivate the filter...");
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rslt = DbiDeactivateFilter(hCur, hFilter);
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ChkRslt(rslt, "DeactivateFilter");
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Screen("\r\n Drop the filter...");
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rslt = DbiDropFilter(hCur, hFilter);
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ChkRslt(rslt, "DropFilter");
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rslt = DbiCloseCursor(&hCur);
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ChkRslt(rslt, "CloseCursor");
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free(pcanExpr);
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Screen(" Close the database and exit IDAPI...");
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CloseDbAndExit(&hDb);
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Screen("\r\n*** End of Example ***");
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}
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