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fsort.c revision 1.6
      1  1.6  jdolecek /*	$NetBSD: fsort.c,v 1.6 2000/10/17 15:22:57 jdolecek Exp $	*/
      2  1.2     bjh21 
      3  1.1     bjh21 /*-
      4  1.1     bjh21  * Copyright (c) 1993
      5  1.1     bjh21  *	The Regents of the University of California.  All rights reserved.
      6  1.1     bjh21  *
      7  1.1     bjh21  * This code is derived from software contributed to Berkeley by
      8  1.1     bjh21  * Peter McIlroy.
      9  1.1     bjh21  *
     10  1.1     bjh21  * Redistribution and use in source and binary forms, with or without
     11  1.1     bjh21  * modification, are permitted provided that the following conditions
     12  1.1     bjh21  * are met:
     13  1.1     bjh21  * 1. Redistributions of source code must retain the above copyright
     14  1.1     bjh21  *    notice, this list of conditions and the following disclaimer.
     15  1.1     bjh21  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.1     bjh21  *    notice, this list of conditions and the following disclaimer in the
     17  1.1     bjh21  *    documentation and/or other materials provided with the distribution.
     18  1.1     bjh21  * 3. All advertising materials mentioning features or use of this software
     19  1.1     bjh21  *    must display the following acknowledgement:
     20  1.1     bjh21  *	This product includes software developed by the University of
     21  1.1     bjh21  *	California, Berkeley and its contributors.
     22  1.1     bjh21  * 4. Neither the name of the University nor the names of its contributors
     23  1.1     bjh21  *    may be used to endorse or promote products derived from this software
     24  1.1     bjh21  *    without specific prior written permission.
     25  1.1     bjh21  *
     26  1.1     bjh21  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     27  1.1     bjh21  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     28  1.1     bjh21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     29  1.1     bjh21  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     30  1.1     bjh21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     31  1.1     bjh21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     32  1.1     bjh21  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     33  1.1     bjh21  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     34  1.1     bjh21  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     35  1.1     bjh21  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     36  1.1     bjh21  * SUCH DAMAGE.
     37  1.1     bjh21  */
     38  1.1     bjh21 
     39  1.1     bjh21 /*
     40  1.1     bjh21  * Read in the next bin.  If it fits in one segment sort it;
     41  1.1     bjh21  * otherwise refine it by segment deeper by one character,
     42  1.1     bjh21  * and try again on smaller bins.  Sort the final bin at this level
     43  1.1     bjh21  * of recursion to keep the head of fstack at 0.
     44  1.1     bjh21  * After PANIC passes, abort to merge sort.
     45  1.1     bjh21 */
     46  1.1     bjh21 #include "sort.h"
     47  1.1     bjh21 #include "fsort.h"
     48  1.1     bjh21 
     49  1.2     bjh21 #ifndef lint
     50  1.6  jdolecek __RCSID("$NetBSD: fsort.c,v 1.6 2000/10/17 15:22:57 jdolecek Exp $");
     51  1.2     bjh21 __SCCSID("@(#)fsort.c	8.1 (Berkeley) 6/6/93");
     52  1.2     bjh21 #endif /* not lint */
     53  1.2     bjh21 
     54  1.1     bjh21 #include <stdlib.h>
     55  1.1     bjh21 #include <string.h>
     56  1.1     bjh21 
     57  1.2     bjh21 const u_char **keylist = 0;
     58  1.2     bjh21 u_char *buffer = 0, *linebuf = 0;
     59  1.5  jdolecek size_t bufsize, linebuf_size;
     60  1.1     bjh21 struct tempfile fstack[MAXFCT];
     61  1.1     bjh21 extern char *toutpath;
     62  1.1     bjh21 #define FSORTMAX 4
     63  1.1     bjh21 int PANIC = FSORTMAX;
     64  1.1     bjh21 
     65  1.1     bjh21 void
     66  1.3     bjh21 fsort(binno, depth, infiles, nfiles, outfp, ftbl)
     67  1.4  jdolecek 	int binno, depth, nfiles;
     68  1.4  jdolecek 	union f_handle infiles;
     69  1.3     bjh21 	FILE *outfp;
     70  1.4  jdolecek 	struct field *ftbl;
     71  1.1     bjh21 {
     72  1.4  jdolecek 	const u_char **keypos;
     73  1.4  jdolecek 	u_char *bufend, *tmpbuf;
     74  1.1     bjh21 	u_char *weights;
     75  1.1     bjh21 	int ntfiles, mfct = 0, total, i, maxb, lastb, panic = 0;
     76  1.4  jdolecek 	int c, nelem;
     77  1.1     bjh21 	long sizes [NBINS+1];
     78  1.1     bjh21 	union f_handle tfiles, mstart = {MAXFCT-16};
     79  1.4  jdolecek 	int (*get)(int, union f_handle, int, RECHEADER *,
     80  1.1     bjh21 		u_char *, struct field *);
     81  1.4  jdolecek 	struct recheader *crec;
     82  1.1     bjh21 	struct field tfield[2];
     83  1.3     bjh21 	FILE *prevfp, *tailfp[FSORTMAX+1];
     84  1.1     bjh21 
     85  1.3     bjh21 	memset(tailfp, 0, sizeof(tailfp));
     86  1.3     bjh21 	prevfp = outfp;
     87  1.1     bjh21 	memset(tfield, 0, sizeof(tfield));
     88  1.1     bjh21 	if (ftbl[0].flags & R)
     89  1.1     bjh21 		tfield[0].weights = Rascii;
     90  1.1     bjh21 	else
     91  1.1     bjh21 		tfield[0].weights = ascii;
     92  1.1     bjh21 	tfield[0].icol.num = 1;
     93  1.1     bjh21 	weights = ftbl[0].weights;
     94  1.1     bjh21 	if (!buffer) {
     95  1.5  jdolecek 		bufsize = BUFSIZE;
     96  1.5  jdolecek 		buffer = malloc(bufsize);
     97  1.1     bjh21 		keylist = malloc(MAXNUM * sizeof(u_char *));
     98  1.5  jdolecek 		if (!SINGL_FLD) {
     99  1.5  jdolecek 			linebuf_size = DEFLLEN;
    100  1.5  jdolecek 			linebuf = malloc(linebuf_size);
    101  1.5  jdolecek 		}
    102  1.1     bjh21 	}
    103  1.5  jdolecek 	bufend = buffer + bufsize;
    104  1.1     bjh21 	if (binno >= 0) {
    105  1.1     bjh21 		tfiles.top = infiles.top + nfiles;
    106  1.1     bjh21 		get = getnext;
    107  1.1     bjh21 	} else {
    108  1.1     bjh21 		tfiles.top = 0;
    109  1.1     bjh21 		if (SINGL_FLD)
    110  1.1     bjh21 			get = makeline;
    111  1.1     bjh21 		else
    112  1.1     bjh21 			get = makekey;
    113  1.1     bjh21 	}
    114  1.1     bjh21 	for (;;) {
    115  1.1     bjh21 		memset(sizes, 0, sizeof(sizes));
    116  1.1     bjh21 		c = ntfiles = 0;
    117  1.1     bjh21 		if (binno == weights[REC_D] &&
    118  1.1     bjh21 		    !(SINGL_FLD && ftbl[0].flags & F)) {	/* pop */
    119  1.1     bjh21 			rd_append(weights[REC_D],
    120  1.3     bjh21 			    infiles, nfiles, prevfp, buffer, bufend);
    121  1.1     bjh21 			break;
    122  1.1     bjh21 		} else if (binno == weights[REC_D]) {
    123  1.1     bjh21 			depth = 0;		/* start over on flat weights */
    124  1.1     bjh21 			ftbl = tfield;
    125  1.1     bjh21 			weights = ftbl[0].weights;
    126  1.1     bjh21 		}
    127  1.1     bjh21 		while (c != EOF) {
    128  1.1     bjh21 			keypos = keylist;
    129  1.1     bjh21 			nelem = 0;
    130  1.1     bjh21 			crec = (RECHEADER *) buffer;
    131  1.1     bjh21 			while((c = get(binno, infiles, nfiles, crec, bufend,
    132  1.1     bjh21 			    ftbl)) == 0) {
    133  1.1     bjh21 				*keypos++ = crec->data + depth;
    134  1.1     bjh21 				if (++nelem == MAXNUM) {
    135  1.1     bjh21 					c = BUFFEND;
    136  1.1     bjh21 					break;
    137  1.1     bjh21 				}
    138  1.1     bjh21 				crec =(RECHEADER *)	((char *) crec +
    139  1.1     bjh21 				SALIGN(crec->length) + sizeof(TRECHEADER));
    140  1.1     bjh21 			}
    141  1.5  jdolecek 			if (c == BUFFEND && nelem == 0) {
    142  1.5  jdolecek 				/* buffer was too small for data, allocate
    143  1.5  jdolecek 				 * bigger buffer */
    144  1.5  jdolecek 				bufsize *= 2;
    145  1.5  jdolecek 				buffer = realloc(buffer, bufsize);
    146  1.6  jdolecek 				if (!buffer) {
    147  1.5  jdolecek 					err(2, "failed to realloc buffer to %ld bytes",
    148  1.5  jdolecek 						(unsigned long) bufsize);
    149  1.6  jdolecek 				}
    150  1.6  jdolecek 				bufend = buffer + bufsize;
    151  1.5  jdolecek 				continue;
    152  1.5  jdolecek 			}
    153  1.1     bjh21 			if (c == BUFFEND || ntfiles || mfct) {	/* push */
    154  1.1     bjh21 				if (panic >= PANIC) {
    155  1.3     bjh21 					fstack[MAXFCT-16+mfct].fp = ftmp();
    156  1.1     bjh21 					if (radixsort(keylist, nelem, weights,
    157  1.1     bjh21 					    REC_D))
    158  1.1     bjh21 						err(2, NULL);
    159  1.1     bjh21 					append(keylist, nelem, depth, fstack[
    160  1.3     bjh21 					 MAXFCT-16+mfct].fp, putrec, ftbl);
    161  1.1     bjh21 					mfct++;
    162  1.1     bjh21 					/* reduce number of open files */
    163  1.1     bjh21 					if (mfct == 16 ||(c == EOF && ntfiles)) {
    164  1.1     bjh21 						tmpbuf = malloc(bufend -
    165  1.1     bjh21 						    crec->data);
    166  1.1     bjh21 						memmove(tmpbuf, crec->data,
    167  1.1     bjh21 						    bufend - crec->data);
    168  1.3     bjh21 						fstack[tfiles.top + ntfiles].fp
    169  1.1     bjh21 						    = ftmp();
    170  1.1     bjh21 						fmerge(0, mstart, mfct, geteasy,
    171  1.3     bjh21 						  fstack[tfiles.top+ntfiles].fp,
    172  1.1     bjh21 						  putrec, ftbl);
    173  1.1     bjh21 						++ntfiles;
    174  1.1     bjh21 						mfct = 0;
    175  1.1     bjh21 						memmove(crec->data, tmpbuf,
    176  1.1     bjh21 						    bufend - crec->data);
    177  1.1     bjh21 						free(tmpbuf);
    178  1.1     bjh21 					}
    179  1.1     bjh21 				} else {
    180  1.3     bjh21 					fstack[tfiles.top + ntfiles].fp= ftmp();
    181  1.1     bjh21 					onepass(keylist, depth, nelem, sizes,
    182  1.3     bjh21 					weights, fstack[tfiles.top+ntfiles].fp);
    183  1.1     bjh21 					++ntfiles;
    184  1.1     bjh21 				}
    185  1.1     bjh21 			}
    186  1.1     bjh21 		}
    187  1.1     bjh21 		get = getnext;
    188  1.1     bjh21 		if (!ntfiles && !mfct) {	/* everything in memory--pop */
    189  1.1     bjh21 			if (nelem > 1)
    190  1.1     bjh21 			   if (radixsort(keylist, nelem, weights, REC_D))
    191  1.1     bjh21 				err(2, NULL);
    192  1.3     bjh21 			append(keylist, nelem, depth, outfp, putline, ftbl);
    193  1.1     bjh21 			break;					/* pop */
    194  1.1     bjh21 		}
    195  1.1     bjh21 		if (panic >= PANIC) {
    196  1.1     bjh21 			if (!ntfiles)
    197  1.1     bjh21 				fmerge(0, mstart, mfct, geteasy,
    198  1.3     bjh21 				    outfp, putline, ftbl);
    199  1.1     bjh21 			else
    200  1.1     bjh21 				fmerge(0, tfiles, ntfiles, geteasy,
    201  1.3     bjh21 				    outfp, putline, ftbl);
    202  1.1     bjh21 			break;
    203  1.1     bjh21 
    204  1.1     bjh21 		}
    205  1.1     bjh21 		total = maxb = lastb = 0;	/* find if one bin dominates */
    206  1.1     bjh21 		for (i = 0; i < NBINS; i++)
    207  1.1     bjh21 		  if (sizes[i]) {
    208  1.1     bjh21 			if (sizes[i] > sizes[maxb])
    209  1.1     bjh21 				maxb = i;
    210  1.1     bjh21 			lastb = i;
    211  1.1     bjh21 			total += sizes[i];
    212  1.1     bjh21 		}
    213  1.1     bjh21 		if (sizes[maxb] < max((total / 2) , BUFSIZE))
    214  1.1     bjh21 			maxb = lastb;	/* otherwise pop after last bin */
    215  1.1     bjh21 		fstack[tfiles.top].lastb = lastb;
    216  1.1     bjh21 		fstack[tfiles.top].maxb = maxb;
    217  1.1     bjh21 
    218  1.1     bjh21 			/* start refining next level. */
    219  1.1     bjh21 		get(-1, tfiles, ntfiles, crec, bufend, 0);	/* rewind */
    220  1.1     bjh21 		for (i = 0; i < maxb; i++) {
    221  1.1     bjh21 			if (!sizes[i])	/* bin empty; step ahead file offset */
    222  1.1     bjh21 				get(i, tfiles, ntfiles, crec, bufend, 0);
    223  1.1     bjh21 			else
    224  1.3     bjh21 				fsort(i, depth+1, tfiles, ntfiles, outfp, ftbl);
    225  1.1     bjh21 		}
    226  1.1     bjh21 		if (lastb != maxb) {
    227  1.3     bjh21 			if (prevfp != outfp)
    228  1.3     bjh21 				tailfp[panic] = prevfp;
    229  1.3     bjh21 			prevfp = ftmp();
    230  1.1     bjh21 			for (i = maxb+1; i <= lastb; i++)
    231  1.1     bjh21 				if (!sizes[i])
    232  1.1     bjh21 					get(i, tfiles, ntfiles, crec, bufend,0);
    233  1.1     bjh21 				else
    234  1.1     bjh21 					fsort(i, depth+1, tfiles, ntfiles,
    235  1.3     bjh21 					    prevfp, ftbl);
    236  1.1     bjh21 		}
    237  1.1     bjh21 
    238  1.1     bjh21 		/* sort biggest (or last) bin at this level */
    239  1.1     bjh21 		depth++;
    240  1.1     bjh21 		panic++;
    241  1.1     bjh21 		binno = maxb;
    242  1.1     bjh21 		infiles.top = tfiles.top;	/* getnext will free tfiles, */
    243  1.1     bjh21 		nfiles = ntfiles;		/* so overwrite them */
    244  1.1     bjh21 	}
    245  1.3     bjh21 	if (prevfp != outfp) {
    246  1.3     bjh21 		concat(outfp, prevfp);
    247  1.3     bjh21 		fclose(prevfp);
    248  1.1     bjh21 	}
    249  1.1     bjh21 	for (i = panic; i >= 0; --i)
    250  1.3     bjh21 		if (tailfp[i]) {
    251  1.3     bjh21 			concat(outfp, tailfp[i]);
    252  1.3     bjh21 			fclose(tailfp[i]);
    253  1.1     bjh21 		}
    254  1.1     bjh21 }
    255  1.1     bjh21 
    256  1.1     bjh21 /*
    257  1.1     bjh21  This is one pass of radix exchange, dumping the bins to disk.
    258  1.1     bjh21  */
    259  1.1     bjh21 #define swap(a, b, t) t = a, a = b, b = t
    260  1.1     bjh21 void
    261  1.3     bjh21 onepass(a, depth, n, sizes, tr, fp)
    262  1.2     bjh21 	const u_char **a;
    263  1.1     bjh21 	int depth;
    264  1.1     bjh21 	long n, sizes[];
    265  1.1     bjh21 	u_char *tr;
    266  1.3     bjh21 	FILE *fp;
    267  1.1     bjh21 {
    268  1.6  jdolecek 	size_t tsizes[NBINS+1];
    269  1.2     bjh21 	const u_char **bin[257], ***bp, ***bpmax, **top[256], ***tp;
    270  1.2     bjh21 	static int histo[256];
    271  1.1     bjh21 	int *hp;
    272  1.4  jdolecek 	int c;
    273  1.2     bjh21 	const u_char **an, *t, **aj;
    274  1.4  jdolecek 	const u_char **ak, *r;
    275  1.1     bjh21 
    276  1.1     bjh21 	memset(tsizes, 0, sizeof(tsizes));
    277  1.1     bjh21 	depth += sizeof(TRECHEADER);
    278  1.6  jdolecek 	an = &a[n];
    279  1.1     bjh21 	for (ak = a; ak < an; ak++) {
    280  1.1     bjh21 		histo[c = tr[**ak]]++;
    281  1.5  jdolecek 		tsizes[c] += ((const RECHEADER *) (*ak -= depth))->length;
    282  1.1     bjh21 	}
    283  1.1     bjh21 
    284  1.1     bjh21 	bin[0] = a;
    285  1.1     bjh21 	bpmax = bin + 256;
    286  1.1     bjh21 	tp = top, hp = histo;
    287  1.1     bjh21 	for (bp = bin; bp < bpmax; bp++) {
    288  1.1     bjh21 		*tp++ = *(bp+1) = *bp + (c = *hp);
    289  1.1     bjh21 		*hp++ = 0;
    290  1.1     bjh21 		if (c <= 1)
    291  1.1     bjh21 			continue;
    292  1.1     bjh21 	}
    293  1.1     bjh21 	for(aj = a; aj < an; *aj = r, aj = bin[c+1])
    294  1.1     bjh21 		for(r = *aj; aj < (ak = --top[c = tr[r[depth]]]) ;)
    295  1.1     bjh21 			swap(*ak, r, t);
    296  1.1     bjh21 
    297  1.1     bjh21 	for (ak = a, c = 0; c < 256; c++) {
    298  1.1     bjh21 		an = bin[c+1];
    299  1.1     bjh21 		n = an - ak;
    300  1.1     bjh21 		tsizes[c] += n * sizeof(TRECHEADER);
    301  1.1     bjh21 		/* tell getnext how many elements in this bin, this segment. */
    302  1.6  jdolecek 		EWRITE(&tsizes[c], sizeof(size_t), 1, fp);
    303  1.1     bjh21 		sizes[c] += tsizes[c];
    304  1.1     bjh21 		for (; ak < an; ++ak)
    305  1.5  jdolecek 			putrec((const RECHEADER *) *ak, fp);
    306  1.1     bjh21 	}
    307  1.1     bjh21 }
    308