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476 lines
15 KiB
476 lines
15 KiB
// RULE.C -- routines that have to do with inference rules
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//
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// Copyright (c) 1988-1991, Microsoft Corporation. All rights reserved.
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//
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// Purpose:
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// Routines that have to do with inference rules
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//
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// Revision History:
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// 04-Feb-2000 BTF Ported to Win64
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// 15-Nov-1993 JdR Major speed improvements
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// 15-Oct-1993 HV Use tchar.h instead of mbstring.h directly, change STR*() to _ftcs*()
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// 10-May-1993 HV Add include file mbstring.h
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// Change the str* functions to STR*
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// 16-May-1991 SB Created using routines from other modules
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#include "precomp.h"
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#pragma hdrstop
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#define PUBLIC
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extern char * QueryFileInfo(char *, void **);
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BOOL removeDuplicateRules(RULELIST*, RULELIST*);
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char * skipPathList(char*);
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// findRule -- finds the implicit rule which can be used to build a target
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//
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// Scope: Global
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//
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// Purpose:
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// Given a target findRule() finds if an implicit rule exists to create this
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// target. It does this by scanning the extensions in the list of rules.
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//
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// Input:
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// name -- the name of the file corresponding to the rule (see Notes)
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// target -- the target to be built
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// ext -- the extension of the target
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// dBuf -- a pointer to the file information about name
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//
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// Output:
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// Returns a pointer to the applicable rule (NULL if none is found)
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// On return dBuf points to the fileInfo of the file corresponding
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// to the applicable inference rule. (see Notes)
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//
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// Assumes:
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// It assumes that name points to a buffer of size MAXNAME of allocated memory
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// and dBuf points to an allocated memory area corr to the size of FILEINFO.
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//
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// Modifies Globals:
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// global -- how/what
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//
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// Uses Globals:
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// rules -- the list of implicit rules
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//
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// Notes:
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// Once NMAKE finds a rule for the extension it looks for the file with the same
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// base name as the target and an extension which is part of the rule. This
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// file is the file corresponding to the rule. Only when this file exists does
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// NMAKE consider the inference rule to be applicable. This file is returned
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// in name and dBuf points to the information about this file.
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// It handles quotes in filenames too.
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RULELIST *
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findRule(
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char *name,
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char *target,
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char *ext,
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void *dBuf
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)
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{
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RULELIST *r; // pointer to rule
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char *s, // name of rule
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*ptrToExt; // extension
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char *endPath, *ptrToTarg, *ptrToName, *temp;
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int n, m;
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MAKEOBJECT *object = NULL;
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for (r = rules; r; r = r->next) {
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s = r->name;
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#ifdef DEBUG_ALL
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printf("* findRule: %s,\n", r->name);
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DumpList(r->buildCommands);
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DumpList(r->buildMacros);
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#endif
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ptrToExt = _tcsrchr(s, '.');
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// Compare ignoring enclosing quotes
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if (!strcmpiquote(ptrToExt, ext)) {
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*name = '\0';
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for (ptrToTarg = (s+1); *ptrToTarg && *ptrToTarg != '{';ptrToTarg = _tcsinc(ptrToTarg))
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if (*ptrToTarg == ESCH)
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ptrToTarg++;
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// If Quotes present skip to end-quote
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else if (*ptrToTarg == '"')
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for (ptrToTarg++; *ptrToTarg != '"'; ptrToTarg++)
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;
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if (*ptrToTarg) {
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for (endPath = ptrToTarg; *endPath && *endPath != '}';endPath = _tcsinc(endPath))
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if (*endPath == ESCH)
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endPath++;
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n = (int) (endPath - (ptrToTarg + 1));
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// ignore leading quote on target
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temp = target;
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if (*temp == '"')
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temp++;
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for (ptrToExt = ptrToTarg+1; n; n -= (int) _tclen(ptrToExt),
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ptrToExt = _tcsinc(ptrToExt),
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temp = _tcsinc(temp)) { // compare paths
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if (*ptrToExt == '\\' || *ptrToExt == '/') {
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if (*temp != '\\' && *temp != '/') {
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n = -1;
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break;
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}
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} else if (_tcsnicmp(ptrToExt, temp, _tclen(ptrToExt))) {
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n = -1;
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break;
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}
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}
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if (n == -1)
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continue; // match failed; do next rule
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ptrToExt = ptrToTarg;
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n = (int) (endPath - (ptrToTarg + 1));
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char *pchLast = _tcsdec(ptrToTarg, endPath);
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ptrToName = target + n + 1; // if more path
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if (((temp = _tcschr(ptrToName, '\\')) // left in target (we
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|| (temp = _tcschr(ptrToName, '/'))) // let separator in
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&& (temp != ptrToName // target path in rule,
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|| *pchLast == '\\' // e.g. .c.{\x}.obj
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|| *pchLast == '/')) // same as .c.{\x\}.obj)
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continue; // use dependent's path,
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} // not target's
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if (*s == '{') {
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for (endPath = ++s; *endPath && *endPath != '}'; endPath = _tcsinc (endPath))
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if (*endPath == ESCH)
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endPath++;
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n = (int) (endPath - s);
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if (n) {
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_tcsncpy(name, s, n);
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s += n + 1; // +1 to go past '}'
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if (*(s-2) != '\\')
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*(name+n++) = '\\';
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} else {
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if (*target == '"')
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_tcsncpy(name, "\".\\", n = 3);
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else
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_tcsncpy(name, ".\\", n = 2);
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s += 1;
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}
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ptrToName = _tcsrchr(target, '\\');
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temp = _tcsrchr(target, '/');
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if (ptrToName = (temp > ptrToName) ? temp : ptrToName) {
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_tcscpy(name+n, ptrToName+1);
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n += (int) (ext - (ptrToName + 1));
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} else {
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char *szTargNoQuote = *target == '"' ? target + 1 : target;
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_tcscpy(name+n, szTargNoQuote);
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n += (int) (ext - szTargNoQuote);
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}
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} else {
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char *t;
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//if rule has path for target then strip off path part
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if (*ptrToTarg) {
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t = _tcsrchr(target, '.');
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while (*t != ':' && *t != '\\' && *t != '/' && t > target)
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t = _tcsdec(target, t);
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if (t) {
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if (*t == ':' || *t == '\\' || *t == '/')
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t++;
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}
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} else
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t = target;
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n = (int) (ext - t);
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// preserve the opening quote on target if stripped off path part
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m = 0;
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if ((t != target) && (*target == '"')) {
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*name = '"';
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m = 1;
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}
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_tcsncpy(name + m, t, n);
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n += m;
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}
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m = (int) (ptrToExt - s);
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if (n + m > MAXNAME) {
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makeError(0, NAME_TOO_LONG);
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}
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_tcsncpy(name+n, s, m); // need to be less
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// If quoted add a quote at the end too
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if (*name == '"' && *(name+n+m-1) != '"') {
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*(name+n+m) = '"';
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m++;
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}
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*(name+n+m) = '\0'; // cryptic w/ error
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// Call QueryFileInfo() instead of DosFindFirst() because we need
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// to circumvent the non-FAPI nature of DosFindFirst()
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if ((object = findTarget(name)) || QueryFileInfo(name, (void **)dBuf)) {
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if (object) {
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putDateTime((_finddata_t*)dBuf, object->dateTime);
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}
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return(r);
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}
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}
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}
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return(NULL);
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}
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// freeRules -- free inference rules
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//
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// Scope: Global
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//
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// Purpose: This function clears the list of inference rules presented to it.
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//
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// Input:
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// r -- The list of rules to be freed.
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// fWarn -- Warn if rules is not in .SUFFIXES
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//
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// Assumes:
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// That the list presented to it is a list of rules which are not needed anymore
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//
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// Uses Globals:
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// gFlags -- The global actions flag, to find if -p option is specified
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void
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freeRules(
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RULELIST *r,
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BOOL fWarn
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)
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{
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RULELIST *q;
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while (q = r) {
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if (fWarn && ON(gFlags, F1_PRINT_INFORMATION)) // if -p option specified
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makeError(0, IGNORING_RULE, r->name);
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FREE(r->name); // free name of rule
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freeStringList(r->buildCommands); // free command list
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freeStringList(r->buildMacros); // free command macros Note: free a Macro List
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r = r->next;
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FREE(q); // free rule
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}
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}
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BOOL
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removeDuplicateRules(
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RULELIST *newRule,
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RULELIST *rules
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)
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{
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RULELIST *r;
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STRINGLIST *p;
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for (r = rules; r; r = r->next) {
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if (!_tcsicmp(r->name, newRule->name)) {
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FREE(newRule->name);
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while (p = newRule->buildCommands) {
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newRule->buildCommands = p->next;
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FREE(p->text);
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FREE_STRINGLIST(p);
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}
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FREE(newRule);
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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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// skipPathList -- skip any path list in string
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//
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// Scope: Local
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//
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// Purpose:
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// This function skips past any path list in an inference rule. A rule can have
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// optionally a path list enclosed in {} before the extensions. skipPathList()
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// checks if any path list is present and if found skips past it.
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//
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// Input: s -- rule under consideration
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//
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// Output: Returns pointer to the extension past the path list
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//
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// Assumes: That the inference rule is syntactically correct & its syntax
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//
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// Notes: The syntax of a rule is -- {toPathList}.to{fromPathList}.from
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char *
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skipPathList(
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char *s
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)
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{
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if (*s == '{') {
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while (*s != '}') {
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if (*s == ESCH)
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s++;
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s = _tcsinc(s);
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}
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s = _tcsinc(s);
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}
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return(s);
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}
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// sortRules -- sorts the list of inference rules on .SUFFIXES order
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//
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// Scope: Global
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//
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// Purpose:
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// This function sorts the inference rules list into an order depending on the
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// order in which the suffixes are listed in '.SUFFIXES'. The inference rules
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// which have their '.toext' part listed earlier in .SUFFIXES are reordered to
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// be earlier in the inference rules list. The inference rules for suffixes that
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// are not in .SUFFIXES are detected here and are ignored.
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//
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// Modifies Globals:
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// rules -- the list of rules which gets sorted
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//
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// Uses Globals:
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// dotSuffixList -- the list of valid suffixes for implicit inference rules.
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//
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// Notes:
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// The syntax of a rule is -- '{toPath}.toExt{fromPath}.fromExt'. This function
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// sorts the rule list into an order. Suffixes are (as of 1.10.016) checked in a
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// case insensitive manner.
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PUBLIC void
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sortRules(
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void
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)
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{
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STRINGLIST *p, // suffix under consideration
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*s,
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*L_macros = NULL;
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RULELIST *oldRules, // inference rule list before sort
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*newRules,
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*r; // rule under consideration in oldRules
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char *suff, *toExt;
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size_t n;
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oldRules = rules;
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rules = NULL;
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for (p = dotSuffixList; p; p = p->next) {
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n = _tcslen(suff = p->text);
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for (r = oldRules; r;) {
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toExt = skipPathList(r->name);
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if (!_tcsnicmp(suff, toExt, n) &&
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(*(toExt+n) == '.' || *(toExt+n) == '{')
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) {
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newRules = r;
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if (r->back)
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r->back->next = r->next;
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else
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oldRules = r->next;
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if (r->next)
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r->next->back = r->back;
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r = r->next;
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newRules->next = NULL;
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if (!removeDuplicateRules(newRules, rules)) {
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for (s = newRules->buildCommands; s; s = s->next) {
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findMacroValuesInRule(newRules, s->text, &L_macros);
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}
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newRules->buildMacros = L_macros;
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L_macros = NULL;
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appendItem((STRINGLIST**)&rules, (STRINGLIST*)newRules);
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}
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} else
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r = r->next;
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}
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}
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// forget about rules whose suffixes not in .SUFFIXES
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if (oldRules)
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freeRules(oldRules, TRUE);
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}
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// useRule -- applies inference rules for a target (if possible)
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//
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// Scope: Local.
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//
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// Purpose:
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// When no explicit commands are available for a target NMAKE tries to use the
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// available inference rules. useRule() checks if an applicable inference rule
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// is present. If such a rule is found then it attempts a build using this rule
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// and if no applicable rule is present it conveys this to the caller.
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//
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// Input:
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// object - object under consideration
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// name - name of target
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// targetTime - time of target
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// qList - QuestionList for target
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// sList - StarStarList for target
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// status - is dependent available
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// maxDepTime - maximum time of dependent
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// pFirstDep - first dependent
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//
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// Output:
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// Returns ... applicable rule
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RULELIST *
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useRule(
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MAKEOBJECT *object,
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char *name,
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time_t targetTime,
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STRINGLIST **qList,
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STRINGLIST **sList,
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int *status,
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time_t *maxDepTime,
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char **pFirstDep
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)
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{
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struct _finddata_t finddata;
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STRINGLIST *temp;
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RULELIST *r;
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time_t tempTime;
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char *t;
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if (!(t = _tcsrchr(object->name, '.')) ||
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(!(r = findRule(name, object->name, t, &finddata)))
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) {
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return(NULL); // there is NO rule applicable
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}
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tempTime = getDateTime(&finddata);
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*pFirstDep = name;
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for (temp = *sList; temp; temp = temp->next) {
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if (!_tcsicmp(temp->text, name)) {
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break;
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}
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}
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if (temp) {
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CLEAR(object->flags2, F2_DISPLAY_FILE_DATES);
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}
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*status += invokeBuild(name, object->flags2, &tempTime, NULL);
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if (ON(object->flags2, F2_FORCE_BUILD) ||
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targetTime < tempTime ||
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(fRebuildOnTie && (targetTime == tempTime))
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) {
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if (!temp) {
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temp = makeNewStrListElement();
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temp->text = makeString(name);
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appendItem(qList, temp);
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if (!*sList) { // if this is the only dep found for
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*sList = *qList; // the target, $** list is updated
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}
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}
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if (ON(object->flags2, F2_DISPLAY_FILE_DATES) &&
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OFF(object->flags2, F2_FORCE_BUILD)
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) {
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makeMessage(UPDATE_INFO, name, object->name);
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}
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}
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*maxDepTime = __max(*maxDepTime, tempTime);
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return(r);
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}
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