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Debug file/line numbers Local rules not implicitly imported Craig McPheeters' dependency graph output as -d+12 Grammar cleanup Factored parse evaluation into parse_evaluate() Modified Files: compile.c frames.h jam.h jamgram.c jamgram.y jamgram.yy make.c parse.c parse.h rules.c rules.h scan.c scan.h [SVN r11759]
567 lines
14 KiB
C
567 lines
14 KiB
C
/*
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* Copyright 1993, 1995 Christopher Seiwald.
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*
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* This file is part of Jam - see jam.c for Copyright information.
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*/
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/* This file is ALSO:
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* (C) Copyright David Abrahams 2001. Permission to copy, use,
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* modify, sell and distribute this software is granted provided this
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* copyright notice appears in all copies. This software is provided
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* "as is" without express or implied warranty, and with no claim as
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* to its suitability for any purpose.
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*/
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/*
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* make.c - bring a target up to date, once rules are in place
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*
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* This modules controls the execution of rules to bring a target and
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* its dependencies up to date. It is invoked after the targets, rules,
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* et. al. described in rules.h are created by the interpreting of the
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* jam files.
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*
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* This file contains the main make() entry point and the first pass
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* make0(). The second pass, make1(), which actually does the command
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* execution, is in make1.c.
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*
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* External routines:
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* make() - make a target, given its name
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*
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* Internal routines:
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* make0() - bind and scan everything to make a TARGET
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*
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* 12/26/93 (seiwald) - allow NOTIME targets to be expanded via $(<), $(>)
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* 01/04/94 (seiwald) - print all targets, bounded, when tracing commands
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* 04/08/94 (seiwald) - progress report now reflects only targets with actions
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* 04/11/94 (seiwald) - Combined deps & headers into deps[2] in TARGET.
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* 12/20/94 (seiwald) - NOTIME renamed NOTFILE.
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* 12/20/94 (seiwald) - make0() headers after determining fate of target, so
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* that headers aren't seen as dependents on themselves.
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* 01/19/95 (seiwald) - distinguish between CANTFIND/CANTMAKE targets.
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* 02/02/95 (seiwald) - propagate leaf source time for new LEAVES rule.
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* 02/14/95 (seiwald) - NOUPDATE rule means don't update existing target.
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* 08/22/95 (seiwald) - NOUPDATE targets immune to anyhow (-a) flag.
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* 09/06/00 (seiwald) - NOCARE affects targets with sources/actions.
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* 03/02/01 (seiwald) - reverse NOCARE change.
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*/
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# include "jam.h"
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# include "lists.h"
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# include "parse.h"
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# include "variable.h"
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# include "rules.h"
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# include "search.h"
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# include "newstr.h"
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# include "make.h"
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# include "headers.h"
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# include "command.h"
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# ifndef max
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# define max( a,b ) ((a)>(b)?(a):(b))
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# endif
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typedef struct {
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int temp;
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int updating;
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int cantfind;
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int cantmake;
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int targets;
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int made;
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} COUNTS ;
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static void make0( TARGET *t, int pbinding, time_t ptime,
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int depth, COUNTS *counts, int anyhow );
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#define OPT_GRAPH_DEBUG_EXT
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#ifdef OPT_GRAPH_DEBUG_EXT
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static void dependGraphOutput( TARGET *t, int depth );
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#endif
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static char *target_fate[] =
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{
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"init", /* T_FATE_INIT */
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"making", /* T_FATE_MAKING */
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"stable", /* T_FATE_STABLE */
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"newer", /* T_FATE_NEWER */
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"temp", /* T_FATE_ISTMP */
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"touched", /* T_FATE_TOUCHED */
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"missing", /* T_FATE_MISSING */
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"old", /* T_FATE_OUTDATED */
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"update", /* T_FATE_UPDATE */
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"nofind", /* T_FATE_CANTFIND */
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"nomake" /* T_FATE_CANTMAKE */
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} ;
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static char *target_bind[] =
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{
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"unbound",
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"missing",
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"parents",
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"exists",
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} ;
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# define spaces(x) ( " " + ( x > 20 ? 0 : 20-x ) )
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/*
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* make() - make a target, given its name
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*/
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int
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make(
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int n_targets,
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char **targets,
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int anyhow )
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{
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int i;
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COUNTS counts[1];
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int status = 0; /* 1 if anything fails */
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memset( (char *)counts, 0, sizeof( *counts ) );
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for( i = 0; i < n_targets; i++ )
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{
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TARGET *t = bindtarget( targets[i] );
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make0( t, T_BIND_UNBOUND, (time_t)0, 0, counts, anyhow );
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}
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#ifdef OPT_GRAPH_DEBUG_EXT
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if( DEBUG_GRAPH )
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{
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for( i = 0; i < n_targets; i++ )
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{
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TARGET *t = bindtarget( targets[i] );
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dependGraphOutput( t, 0 );
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}
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}
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#endif
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if( DEBUG_MAKE )
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{
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if( counts->targets )
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printf( "...found %d target%s...\n", counts->targets,
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counts->targets > 1 ? "s" : "" );
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if( counts->temp )
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printf( "...using %d temp target%s...\n", counts->temp,
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counts->temp > 1 ? "s" : "" );
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if( counts->updating )
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printf( "...updating %d target%s...\n", counts->updating,
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counts->updating > 1 ? "s" : "" );
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if( counts->cantfind )
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printf( "...can't find %d target%s...\n", counts->cantfind,
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counts->cantfind > 1 ? "s" : "" );
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if( counts->cantmake )
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printf( "...can't make %d target%s...\n", counts->cantmake,
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counts->cantmake > 1 ? "s" : "" );
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}
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status = counts->cantfind || counts->cantmake;
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for( i = 0; i < n_targets; i++ )
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status |= make1( bindtarget( targets[i] ) );
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return status;
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}
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/*
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* make0() - bind and scan everything to make a TARGET
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*
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* Make0() recursively binds a target, searches for #included headers,
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* calls itself on those headers, and calls itself on any dependents.
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*/
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static void
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make0(
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TARGET *t,
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int pbinding, /* parent target's binding */
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time_t ptime, /* parent target's timestamp */
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int depth, /* for display purposes */
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COUNTS *counts, /* for reporting */
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int anyhow ) /* forcibly touch all (real) targets */
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{
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TARGETS *c;
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int fate, hfate;
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time_t last, leaf, hlast, hleaf;
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char *flag = "";
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if( DEBUG_MAKEPROG )
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printf( "make\t--\t%s%s\n", spaces( depth ), t->name );
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/*
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* Step 1: don't remake if already trying or tried
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*/
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switch( t->fate )
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{
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case T_FATE_MAKING:
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printf( "warning: %s depends on itself\n", t->name );
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return;
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/* Deal with TEMPORARY targets with multiple parents. When a missing
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* TEMPORARY target is determined to be stable, it inherits the
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* timestamp of the parent being checked, and is given a binding of
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* T_BIND_PARENTS. To avoid outdating parents with earlier modification
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* times, we set the target's time to the minimum time of all parents.
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*/
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case T_FATE_STABLE:
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if ( t->binding == T_BIND_PARENTS && t->time > ptime && t->flags & T_FLAG_TEMP )
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t->time = ptime;
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return;
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default:
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return;
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case T_FATE_INIT:
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break;
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}
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t->fate = T_FATE_MAKING;
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/*
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* Step 2: under the influence of "on target" variables,
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* bind the target and search for headers.
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*/
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/* Step 2a: set "on target" variables. */
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pushsettings( t->settings );
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/* Step 2b: find and timestamp the target file (if it's a file). */
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if( t->binding == T_BIND_UNBOUND && !( t->flags & T_FLAG_NOTFILE ) )
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{
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t->boundname = search( t->name, &t->time );
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t->binding = t->time ? T_BIND_EXISTS : T_BIND_MISSING;
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}
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/* If temp file doesn't exist, use parent */
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if( t->binding == T_BIND_MISSING && t->flags & T_FLAG_TEMP && ptime )
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{
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t->time = ptime;
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t->binding = t->time ? T_BIND_PARENTS : T_BIND_MISSING;
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}
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/* Step 2c: If its a file, search for headers. */
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if( t->binding == T_BIND_EXISTS )
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headers( t );
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/* Step 2d: reset "on target" variables */
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popsettings( t->settings );
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/*
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* Pause for a little progress reporting
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*/
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if( DEBUG_BIND )
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{
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if( strcmp( t->name, t->boundname ) )
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{
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printf( "bind\t--\t%s%s: %s\n",
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spaces( depth ), t->name, t->boundname );
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}
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switch( t->binding )
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{
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case T_BIND_UNBOUND:
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case T_BIND_MISSING:
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case T_BIND_PARENTS:
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printf( "time\t--\t%s%s: %s\n",
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spaces( depth ), t->name, target_bind[ t->binding ] );
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break;
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case T_BIND_EXISTS:
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printf( "time\t--\t%s%s: %s",
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spaces( depth ), t->name, ctime( &t->time ) );
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break;
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}
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}
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/*
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* Step 3: recursively make0() dependents
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*/
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last = 0;
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leaf = 0;
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fate = T_FATE_STABLE;
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for( c = t->deps[ T_DEPS_DEPENDS ]; c; c = c->next )
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{
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make0( c->target, t->binding, t->time, depth + 1, counts, anyhow );
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leaf = max( leaf, c->target->leaf );
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leaf = max( leaf, c->target->hleaf );
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/* If LEAVES has been applied, we only heed the timestamps of */
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/* the leaf source nodes. */
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if( t->flags & T_FLAG_LEAVES )
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{
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last = leaf;
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continue;
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}
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last = max( last, c->target->time );
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last = max( last, c->target->htime );
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fate = max( fate, c->target->fate );
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fate = max( fate, c->target->hfate );
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}
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/* If a NOUPDATE file exists, make dependents eternally old. */
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if( t->flags & T_FLAG_NOUPDATE )
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{
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last = 0;
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t->time = 0;
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/*
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* Don't inherit our fate from our dependents. Decide fate
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* based only upon other flags and our binding (done later).
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*/
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fate = T_FATE_STABLE;
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}
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/* Step 3b: determine fate: rebuild target or what? */
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/*
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In English:
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If can't find or make child, can't make target.
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If children changed, make target.
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If target missing, make it.
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If children newer, make target.
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If temp's children newer, make temp.
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If deliberately touched, make it.
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If up-to-date temp file present, use it.
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If target exists but parent not, mark target newer.
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If target newer than parent, mark target newer.
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Don't propagate child's "newer" status.
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*/
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if( fate >= T_FATE_BROKEN )
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{
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fate = T_FATE_CANTMAKE;
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}
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else if( fate >= T_FATE_SPOIL )
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{
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fate = T_FATE_UPDATE;
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}
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else if( t->binding == T_BIND_MISSING )
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{
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fate = T_FATE_MISSING;
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}
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else if( t->binding == T_BIND_EXISTS && last > t->time )
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{
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fate = T_FATE_OUTDATED;
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}
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else if( t->binding == T_BIND_PARENTS && last > t->time )
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{
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fate = T_FATE_OUTDATED;
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}
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else if( t->flags & T_FLAG_TOUCHED )
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{
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fate = T_FATE_TOUCHED;
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}
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else if( anyhow && !( t->flags & T_FLAG_NOUPDATE ) )
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{
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fate = T_FATE_TOUCHED;
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}
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else if( t->binding == T_BIND_EXISTS && t->flags & T_FLAG_TEMP )
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{
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fate = T_FATE_ISTMP;
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}
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else if( t->binding == T_BIND_EXISTS && pbinding == T_BIND_MISSING )
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{
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fate = T_FATE_NEWER;
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}
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else if( t->binding == T_BIND_EXISTS && ptime && t->time > ptime )
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{
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fate = T_FATE_NEWER;
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}
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else if( fate == T_FATE_NEWER )
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{
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fate = T_FATE_STABLE;
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}
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/* Step 3c: handle missing files */
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/* If it's missing and there are no actions to create it, boom. */
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/* If we can't make a target we don't care about, 'sokay */
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/* We could insist that there are updating actions for all missing */
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/* files, but if they have dependents we just pretend it's NOTFILE. */
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if( fate == T_FATE_MISSING &&
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!t->actions &&
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!t->deps[ T_DEPS_DEPENDS ] )
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{
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if( t->flags & T_FLAG_NOCARE )
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{
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fate = T_FATE_STABLE;
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}
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else
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{
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printf( "don't know how to make %s\n", t->name );
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fate = T_FATE_CANTFIND;
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}
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}
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/* Step 3d: propagate dependents' time & fate. */
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/* Set leaf time to be our time only if this is a leaf. */
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t->time = max( t->time, last );
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t->leaf = leaf ? leaf : t->time ;
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t->fate = fate;
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/*
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* Step 4: Recursively make0() headers.
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*/
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/* Step 4a: recursively make0() headers */
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hlast = 0;
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hleaf = 0;
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hfate = T_FATE_STABLE;
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for( c = t->deps[ T_DEPS_INCLUDES ]; c; c = c->next )
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{
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make0( c->target, pbinding, ptime, depth + 1, counts, anyhow );
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hlast = max( hlast, c->target->time );
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hlast = max( hlast, c->target->htime );
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hleaf = max( hleaf, c->target->leaf );
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hleaf = max( hleaf, c->target->hleaf );
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hfate = max( hfate, c->target->fate );
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hfate = max( hfate, c->target->hfate );
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}
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/* Step 4b: propagate dependents' time & fate. */
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t->htime = hlast;
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t->hleaf = hleaf ? hleaf : t->htime;
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t->hfate = hfate;
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/*
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* Step 5: a little harmless tabulating for tracing purposes
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*/
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if( !( ++counts->targets % 1000 ) && DEBUG_MAKE )
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printf( "...patience...\n" );
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if( fate == T_FATE_ISTMP )
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counts->temp++;
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else if( fate == T_FATE_CANTFIND )
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counts->cantfind++;
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else if( fate == T_FATE_CANTMAKE && t->actions )
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counts->cantmake++;
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else if( fate >= T_FATE_BUILD && fate < T_FATE_BROKEN && t->actions )
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counts->updating++;
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if( !( t->flags & T_FLAG_NOTFILE ) && fate >= T_FATE_SPOIL )
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flag = "+";
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else if( t->binding == T_BIND_EXISTS && ptime && t->time > ptime )
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flag = "*";
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if( DEBUG_MAKEPROG )
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printf( "made%s\t%s\t%s%s\n",
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flag, target_fate[ t->fate ],
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spaces( depth ), t->name );
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}
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#ifdef OPT_GRAPH_DEBUG_EXT
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/*
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* dependGraphOutput() - output the DG after make0 has run
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*/
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static void
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dependGraphOutput( TARGET *t, int depth )
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{
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TARGETS *c;
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if ( (t->flags & T_FLAG_VISITED) != 0
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|| !t->name
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|| !t->boundname)
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return;
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t->flags |= T_FLAG_VISITED;
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switch (t->fate)
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{
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case T_FATE_TOUCHED:
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case T_FATE_MISSING:
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case T_FATE_OUTDATED:
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case T_FATE_UPDATE:
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printf( "->%s%2d Name: %s\n", spaces(depth), depth, t->name );
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break;
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default:
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printf( " %s%2d Name: %s\n", spaces(depth), depth, t->name );
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break;
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}
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if( strcmp (t->name, t->boundname) )
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{
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printf( " %s Loc: %s\n", spaces(depth), t->boundname );
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}
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switch (t->fate) {
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case T_FATE_STABLE:
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printf( " %s : Stable\n", spaces(depth) );
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break;
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case T_FATE_NEWER:
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printf( " %s : Newer\n", spaces(depth) );
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break;
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case T_FATE_ISTMP:
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printf( " %s : Up to date temp file\n", spaces(depth) );
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break;
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case T_FATE_TOUCHED:
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printf( " %s : Been touched, updating it\n",
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spaces(depth) );
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break;
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case T_FATE_MISSING:
|
|
printf( " %s : Missing, creating it\n", spaces(depth) );
|
|
break;
|
|
case T_FATE_OUTDATED:
|
|
printf( " %s : Outdated, updating it\n", spaces(depth) );
|
|
break;
|
|
case T_FATE_UPDATE:
|
|
printf( " %s : Updating it\n", spaces(depth) );
|
|
break;
|
|
case T_FATE_CANTFIND:
|
|
printf( " %s : Can't find it\n", spaces(depth) );
|
|
break;
|
|
case T_FATE_CANTMAKE:
|
|
printf( " %s : Can't make it\n", spaces(depth) );
|
|
break;
|
|
}
|
|
|
|
for( c = t->deps[ T_DEPS_DEPENDS ]; c; c = c->next )
|
|
{
|
|
printf( " %s : Depends on %s (%s)\n", spaces(depth),
|
|
c->target->name, target_fate[ c->target->fate ] );
|
|
}
|
|
|
|
for( c = t->deps[ T_DEPS_INCLUDES ]; c; c = c->next )
|
|
{
|
|
printf( " %s : Includes %s (%s)\n", spaces(depth),
|
|
c->target->name, target_fate[ c->target->fate ] );
|
|
}
|
|
|
|
for( c = t->deps[ T_DEPS_DEPENDS ]; c; c = c->next )
|
|
{
|
|
dependGraphOutput( c->target, depth + 1 );
|
|
}
|
|
|
|
for( c = t->deps[ T_DEPS_INCLUDES ]; c; c = c->next )
|
|
{
|
|
dependGraphOutput( c->target, depth + 1 );
|
|
}
|
|
|
|
}
|
|
|
|
#endif
|