fsort.c revision 1.8 1 1.8 jdolecek /* $NetBSD: fsort.c,v 1.8 2001/01/11 14:05:24 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 1.8 jdolecek __RCSID("$NetBSD: fsort.c,v 1.8 2001/01/11 14:05:24 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 1.8 jdolecek #define MSTART (MAXFCT - 16)
66 1.8 jdolecek
67 1.1 bjh21 void
68 1.8 jdolecek fsort(binno, depth, top, filelist, nfiles, outfp, ftbl)
69 1.8 jdolecek int binno, depth, top;
70 1.8 jdolecek struct filelist *filelist;
71 1.8 jdolecek int nfiles;
72 1.3 bjh21 FILE *outfp;
73 1.4 jdolecek struct field *ftbl;
74 1.1 bjh21 {
75 1.4 jdolecek const u_char **keypos;
76 1.4 jdolecek u_char *bufend, *tmpbuf;
77 1.1 bjh21 u_char *weights;
78 1.1 bjh21 int ntfiles, mfct = 0, total, i, maxb, lastb, panic = 0;
79 1.8 jdolecek int c, nelem, base;
80 1.1 bjh21 long sizes [NBINS+1];
81 1.8 jdolecek get_func_t get;
82 1.4 jdolecek struct recheader *crec;
83 1.1 bjh21 struct field tfield[2];
84 1.3 bjh21 FILE *prevfp, *tailfp[FSORTMAX+1];
85 1.1 bjh21
86 1.3 bjh21 memset(tailfp, 0, sizeof(tailfp));
87 1.3 bjh21 prevfp = outfp;
88 1.1 bjh21 memset(tfield, 0, sizeof(tfield));
89 1.1 bjh21 if (ftbl[0].flags & R)
90 1.1 bjh21 tfield[0].weights = Rascii;
91 1.1 bjh21 else
92 1.1 bjh21 tfield[0].weights = ascii;
93 1.1 bjh21 tfield[0].icol.num = 1;
94 1.1 bjh21 weights = ftbl[0].weights;
95 1.1 bjh21 if (!buffer) {
96 1.5 jdolecek bufsize = BUFSIZE;
97 1.5 jdolecek buffer = malloc(bufsize);
98 1.1 bjh21 keylist = malloc(MAXNUM * sizeof(u_char *));
99 1.5 jdolecek if (!SINGL_FLD) {
100 1.5 jdolecek linebuf_size = DEFLLEN;
101 1.5 jdolecek linebuf = malloc(linebuf_size);
102 1.5 jdolecek }
103 1.1 bjh21 }
104 1.5 jdolecek bufend = buffer + bufsize;
105 1.1 bjh21 if (binno >= 0) {
106 1.8 jdolecek base = top + nfiles;
107 1.1 bjh21 get = getnext;
108 1.1 bjh21 } else {
109 1.8 jdolecek base = 0;
110 1.1 bjh21 if (SINGL_FLD)
111 1.1 bjh21 get = makeline;
112 1.1 bjh21 else
113 1.1 bjh21 get = makekey;
114 1.1 bjh21 }
115 1.1 bjh21 for (;;) {
116 1.1 bjh21 memset(sizes, 0, sizeof(sizes));
117 1.1 bjh21 c = ntfiles = 0;
118 1.1 bjh21 if (binno == weights[REC_D] &&
119 1.1 bjh21 !(SINGL_FLD && ftbl[0].flags & F)) { /* pop */
120 1.8 jdolecek rd_append(weights[REC_D], top,
121 1.8 jdolecek nfiles, prevfp, buffer, bufend);
122 1.1 bjh21 break;
123 1.1 bjh21 } else if (binno == weights[REC_D]) {
124 1.1 bjh21 depth = 0; /* start over on flat weights */
125 1.1 bjh21 ftbl = tfield;
126 1.1 bjh21 weights = ftbl[0].weights;
127 1.1 bjh21 }
128 1.1 bjh21 while (c != EOF) {
129 1.1 bjh21 keypos = keylist;
130 1.1 bjh21 nelem = 0;
131 1.1 bjh21 crec = (RECHEADER *) buffer;
132 1.8 jdolecek while((c = get(binno, top, filelist, nfiles, crec,
133 1.8 jdolecek bufend, ftbl)) == 0) {
134 1.1 bjh21 *keypos++ = crec->data + depth;
135 1.1 bjh21 if (++nelem == MAXNUM) {
136 1.1 bjh21 c = BUFFEND;
137 1.1 bjh21 break;
138 1.1 bjh21 }
139 1.1 bjh21 crec =(RECHEADER *) ((char *) crec +
140 1.1 bjh21 SALIGN(crec->length) + sizeof(TRECHEADER));
141 1.1 bjh21 }
142 1.5 jdolecek if (c == BUFFEND && nelem == 0) {
143 1.5 jdolecek /* buffer was too small for data, allocate
144 1.5 jdolecek * bigger buffer */
145 1.5 jdolecek bufsize *= 2;
146 1.5 jdolecek buffer = realloc(buffer, bufsize);
147 1.6 jdolecek if (!buffer) {
148 1.5 jdolecek err(2, "failed to realloc buffer to %ld bytes",
149 1.5 jdolecek (unsigned long) bufsize);
150 1.6 jdolecek }
151 1.6 jdolecek bufend = buffer + bufsize;
152 1.5 jdolecek continue;
153 1.5 jdolecek }
154 1.1 bjh21 if (c == BUFFEND || ntfiles || mfct) { /* push */
155 1.1 bjh21 if (panic >= PANIC) {
156 1.3 bjh21 fstack[MAXFCT-16+mfct].fp = ftmp();
157 1.7 jdolecek if ((stable_sort)
158 1.7 jdolecek ? sradixsort(keylist, nelem,
159 1.7 jdolecek weights, REC_D)
160 1.7 jdolecek : radixsort(keylist, nelem,
161 1.7 jdolecek weights, REC_D) )
162 1.1 bjh21 err(2, NULL);
163 1.1 bjh21 append(keylist, nelem, depth, fstack[
164 1.3 bjh21 MAXFCT-16+mfct].fp, putrec, ftbl);
165 1.1 bjh21 mfct++;
166 1.1 bjh21 /* reduce number of open files */
167 1.1 bjh21 if (mfct == 16 ||(c == EOF && ntfiles)) {
168 1.1 bjh21 tmpbuf = malloc(bufend -
169 1.1 bjh21 crec->data);
170 1.1 bjh21 memmove(tmpbuf, crec->data,
171 1.1 bjh21 bufend - crec->data);
172 1.8 jdolecek fstack[base + ntfiles].fp
173 1.1 bjh21 = ftmp();
174 1.8 jdolecek fmerge(0, MSTART, filelist,
175 1.8 jdolecek mfct, geteasy,
176 1.8 jdolecek fstack[base].fp,
177 1.1 bjh21 putrec, ftbl);
178 1.1 bjh21 ++ntfiles;
179 1.1 bjh21 mfct = 0;
180 1.1 bjh21 memmove(crec->data, tmpbuf,
181 1.1 bjh21 bufend - crec->data);
182 1.1 bjh21 free(tmpbuf);
183 1.1 bjh21 }
184 1.1 bjh21 } else {
185 1.8 jdolecek fstack[base + ntfiles].fp= ftmp();
186 1.1 bjh21 onepass(keylist, depth, nelem, sizes,
187 1.8 jdolecek weights, fstack[base + ntfiles].fp);
188 1.1 bjh21 ++ntfiles;
189 1.1 bjh21 }
190 1.1 bjh21 }
191 1.1 bjh21 }
192 1.1 bjh21 if (!ntfiles && !mfct) { /* everything in memory--pop */
193 1.7 jdolecek if (nelem > 1) {
194 1.7 jdolecek if ((stable_sort)
195 1.7 jdolecek ? sradixsort(keylist, nelem, weights, REC_D)
196 1.7 jdolecek : radixsort(keylist, nelem, weights, REC_D) )
197 1.1 bjh21 err(2, NULL);
198 1.7 jdolecek }
199 1.3 bjh21 append(keylist, nelem, depth, outfp, putline, ftbl);
200 1.1 bjh21 break; /* pop */
201 1.1 bjh21 }
202 1.1 bjh21 if (panic >= PANIC) {
203 1.1 bjh21 if (!ntfiles)
204 1.8 jdolecek fmerge(0, MSTART, filelist, mfct, geteasy,
205 1.3 bjh21 outfp, putline, ftbl);
206 1.1 bjh21 else
207 1.8 jdolecek fmerge(0, base, filelist, ntfiles, geteasy,
208 1.3 bjh21 outfp, putline, ftbl);
209 1.1 bjh21 break;
210 1.1 bjh21
211 1.1 bjh21 }
212 1.1 bjh21 total = maxb = lastb = 0; /* find if one bin dominates */
213 1.1 bjh21 for (i = 0; i < NBINS; i++)
214 1.1 bjh21 if (sizes[i]) {
215 1.1 bjh21 if (sizes[i] > sizes[maxb])
216 1.1 bjh21 maxb = i;
217 1.1 bjh21 lastb = i;
218 1.1 bjh21 total += sizes[i];
219 1.1 bjh21 }
220 1.1 bjh21 if (sizes[maxb] < max((total / 2) , BUFSIZE))
221 1.1 bjh21 maxb = lastb; /* otherwise pop after last bin */
222 1.8 jdolecek fstack[base].lastb = lastb;
223 1.8 jdolecek fstack[base].maxb = maxb;
224 1.1 bjh21
225 1.8 jdolecek /* start refining next level. */
226 1.8 jdolecek getnext(-1, base, NULL, ntfiles, crec, bufend, 0); /* rewind */
227 1.1 bjh21 for (i = 0; i < maxb; i++) {
228 1.1 bjh21 if (!sizes[i]) /* bin empty; step ahead file offset */
229 1.8 jdolecek getnext(i, base, NULL,ntfiles, crec, bufend, 0);
230 1.8 jdolecek else {
231 1.8 jdolecek fsort(i, depth+1, base, filelist, ntfiles,
232 1.8 jdolecek outfp, ftbl);
233 1.8 jdolecek }
234 1.1 bjh21 }
235 1.8 jdolecek
236 1.8 jdolecek get = getnext;
237 1.8 jdolecek
238 1.1 bjh21 if (lastb != maxb) {
239 1.3 bjh21 if (prevfp != outfp)
240 1.3 bjh21 tailfp[panic] = prevfp;
241 1.3 bjh21 prevfp = ftmp();
242 1.1 bjh21 for (i = maxb+1; i <= lastb; i++)
243 1.8 jdolecek if (!sizes[i]) {
244 1.8 jdolecek getnext(i, base, NULL, ntfiles, crec,
245 1.8 jdolecek bufend,0);
246 1.8 jdolecek } else {
247 1.8 jdolecek fsort(i, depth+1, base, filelist,
248 1.8 jdolecek ntfiles, prevfp, ftbl);
249 1.8 jdolecek }
250 1.1 bjh21 }
251 1.1 bjh21
252 1.1 bjh21 /* sort biggest (or last) bin at this level */
253 1.1 bjh21 depth++;
254 1.1 bjh21 panic++;
255 1.1 bjh21 binno = maxb;
256 1.8 jdolecek top = base;
257 1.1 bjh21 nfiles = ntfiles; /* so overwrite them */
258 1.1 bjh21 }
259 1.3 bjh21 if (prevfp != outfp) {
260 1.3 bjh21 concat(outfp, prevfp);
261 1.3 bjh21 fclose(prevfp);
262 1.1 bjh21 }
263 1.1 bjh21 for (i = panic; i >= 0; --i)
264 1.3 bjh21 if (tailfp[i]) {
265 1.3 bjh21 concat(outfp, tailfp[i]);
266 1.3 bjh21 fclose(tailfp[i]);
267 1.1 bjh21 }
268 1.1 bjh21 }
269 1.1 bjh21
270 1.1 bjh21 /*
271 1.1 bjh21 This is one pass of radix exchange, dumping the bins to disk.
272 1.1 bjh21 */
273 1.1 bjh21 #define swap(a, b, t) t = a, a = b, b = t
274 1.1 bjh21 void
275 1.3 bjh21 onepass(a, depth, n, sizes, tr, fp)
276 1.2 bjh21 const u_char **a;
277 1.1 bjh21 int depth;
278 1.1 bjh21 long n, sizes[];
279 1.1 bjh21 u_char *tr;
280 1.3 bjh21 FILE *fp;
281 1.1 bjh21 {
282 1.6 jdolecek size_t tsizes[NBINS+1];
283 1.2 bjh21 const u_char **bin[257], ***bp, ***bpmax, **top[256], ***tp;
284 1.2 bjh21 static int histo[256];
285 1.1 bjh21 int *hp;
286 1.4 jdolecek int c;
287 1.2 bjh21 const u_char **an, *t, **aj;
288 1.4 jdolecek const u_char **ak, *r;
289 1.1 bjh21
290 1.1 bjh21 memset(tsizes, 0, sizeof(tsizes));
291 1.1 bjh21 depth += sizeof(TRECHEADER);
292 1.6 jdolecek an = &a[n];
293 1.1 bjh21 for (ak = a; ak < an; ak++) {
294 1.1 bjh21 histo[c = tr[**ak]]++;
295 1.5 jdolecek tsizes[c] += ((const RECHEADER *) (*ak -= depth))->length;
296 1.1 bjh21 }
297 1.1 bjh21
298 1.1 bjh21 bin[0] = a;
299 1.1 bjh21 bpmax = bin + 256;
300 1.1 bjh21 tp = top, hp = histo;
301 1.1 bjh21 for (bp = bin; bp < bpmax; bp++) {
302 1.1 bjh21 *tp++ = *(bp+1) = *bp + (c = *hp);
303 1.1 bjh21 *hp++ = 0;
304 1.1 bjh21 if (c <= 1)
305 1.1 bjh21 continue;
306 1.1 bjh21 }
307 1.1 bjh21 for(aj = a; aj < an; *aj = r, aj = bin[c+1])
308 1.1 bjh21 for(r = *aj; aj < (ak = --top[c = tr[r[depth]]]) ;)
309 1.1 bjh21 swap(*ak, r, t);
310 1.1 bjh21
311 1.1 bjh21 for (ak = a, c = 0; c < 256; c++) {
312 1.1 bjh21 an = bin[c+1];
313 1.1 bjh21 n = an - ak;
314 1.1 bjh21 tsizes[c] += n * sizeof(TRECHEADER);
315 1.1 bjh21 /* tell getnext how many elements in this bin, this segment. */
316 1.6 jdolecek EWRITE(&tsizes[c], sizeof(size_t), 1, fp);
317 1.1 bjh21 sizes[c] += tsizes[c];
318 1.1 bjh21 for (; ak < an; ++ak)
319 1.5 jdolecek putrec((const RECHEADER *) *ak, fp);
320 1.1 bjh21 }
321 1.1 bjh21 }
322