1 1.1 abs /*- 2 1.1 abs * Copyright (c) 1992, 1993 3 1.1 abs * The Regents of the University of California. All rights reserved. 4 1.1 abs * 5 1.1 abs * Redistribution and use in source and binary forms, with or without 6 1.1 abs * modification, are permitted provided that the following conditions 7 1.1 abs * are met: 8 1.1 abs * 1. Redistributions of source code must retain the above copyright 9 1.1 abs * notice, this list of conditions and the following disclaimer. 10 1.1 abs * 2. Redistributions in binary form must reproduce the above copyright 11 1.1 abs * notice, this list of conditions and the following disclaimer in the 12 1.1 abs * documentation and/or other materials provided with the distribution. 13 1.1 abs * 3. All advertising materials mentioning features or use of this software 14 1.1 abs * must display the following acknowledgement: 15 1.1 abs * This product includes software developed by the University of 16 1.1 abs * California, Berkeley and its contributors. 17 1.1 abs * 4. Neither the name of the University nor the names of its contributors 18 1.1 abs * may be used to endorse or promote products derived from this software 19 1.1 abs * without specific prior written permission. 20 1.1 abs * 21 1.1 abs * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 22 1.1 abs * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 23 1.1 abs * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 24 1.1 abs * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 25 1.1 abs * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 26 1.1 abs * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 27 1.1 abs * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 28 1.1 abs * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 29 1.1 abs * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 30 1.1 abs * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 31 1.1 abs * SUCH DAMAGE. 32 1.1 abs * 33 1.1 abs * $FreeBSD: src/sys/libkern/qsort.c,v 1.12 2002/11/09 12:55:06 alfred Exp $ 34 1.5 christos * $NetBSD: qsort.c,v 1.5 2019/03/31 20:08:45 christos Exp $ 35 1.1 abs */ 36 1.1 abs 37 1.1 abs #include <sys/cdefs.h> 38 1.1 abs #include <sys/types.h> 39 1.1 abs 40 1.1 abs typedef int cmp_t(const void *, const void *); 41 1.3 perry static inline char *med3(char *, char *, char *, cmp_t *); 42 1.3 perry static inline void swapfunc(char *, char *, int, int); 43 1.1 abs 44 1.5 christos #define min(a, b) (int)(a) < (int)(b) ? (int)(a) : (int)(b) 45 1.1 abs 46 1.1 abs void qsort(void *a, size_t n, size_t es, cmp_t *cmp); 47 1.1 abs 48 1.1 abs /* 49 1.1 abs * Qsort routine from Bentley & McIlroy's "Engineering a Sort Function". 50 1.1 abs */ 51 1.1 abs #define swapcode(TYPE, parmi, parmj, n) { \ 52 1.1 abs long i = (n) / sizeof (TYPE); \ 53 1.4 isaki register TYPE *pi = (TYPE *)(parmi); \ 54 1.4 isaki register TYPE *pj = (TYPE *)(parmj); \ 55 1.1 abs do { \ 56 1.1 abs register TYPE t = *pi; \ 57 1.1 abs *pi++ = *pj; \ 58 1.1 abs *pj++ = t; \ 59 1.4 isaki } while (--i > 0); \ 60 1.1 abs } 61 1.1 abs 62 1.1 abs #define SWAPINIT(a, es) swaptype = ((char *)a - (char *)0) % sizeof(long) || \ 63 1.1 abs es % sizeof(long) ? 2 : es == sizeof(long)? 0 : 1; 64 1.1 abs 65 1.3 perry static inline void 66 1.4 isaki swapfunc(char *a, char *b, int n, int swaptype) 67 1.1 abs { 68 1.1 abs if(swaptype <= 1) 69 1.1 abs swapcode(long, a, b, n) 70 1.1 abs else 71 1.1 abs swapcode(char, a, b, n) 72 1.1 abs } 73 1.1 abs 74 1.1 abs #define swap(a, b) \ 75 1.1 abs if (swaptype == 0) { \ 76 1.1 abs long t = *(long *)(a); \ 77 1.1 abs *(long *)(a) = *(long *)(b); \ 78 1.1 abs *(long *)(b) = t; \ 79 1.1 abs } else \ 80 1.1 abs swapfunc(a, b, es, swaptype) 81 1.1 abs 82 1.1 abs #define vecswap(a, b, n) if ((n) > 0) swapfunc(a, b, n, swaptype) 83 1.1 abs 84 1.3 perry static inline char * 85 1.4 isaki med3(char *a, char *b, char *c, cmp_t *cmp) 86 1.1 abs { 87 1.1 abs return cmp(a, b) < 0 ? 88 1.1 abs (cmp(b, c) < 0 ? b : (cmp(a, c) < 0 ? c : a )) 89 1.4 isaki :(cmp(b, c) > 0 ? b : (cmp(a, c) < 0 ? a : c )); 90 1.1 abs } 91 1.1 abs 92 1.1 abs void 93 1.1 abs qsort(void *a, size_t n, size_t es, cmp_t *cmp) 94 1.1 abs { 95 1.1 abs char *pa, *pb, *pc, *pd, *pl, *pm, *pn; 96 1.1 abs int d, r, swaptype, swap_cnt; 97 1.1 abs 98 1.4 isaki loop: 99 1.4 isaki SWAPINIT(a, es); 100 1.1 abs swap_cnt = 0; 101 1.1 abs if (n < 7) { 102 1.1 abs for (pm = (char *)a + es; pm < (char *)a + n * es; pm += es) 103 1.1 abs for (pl = pm; pl > (char *)a && cmp(pl - es, pl) > 0; 104 1.1 abs pl -= es) 105 1.1 abs swap(pl, pl - es); 106 1.1 abs return; 107 1.1 abs } 108 1.1 abs pm = (char *)a + (n / 2) * es; 109 1.1 abs if (n > 7) { 110 1.1 abs pl = a; 111 1.1 abs pn = (char *)a + (n - 1) * es; 112 1.1 abs if (n > 40) { 113 1.1 abs d = (n / 8) * es; 114 1.1 abs pl = med3(pl, pl + d, pl + 2 * d, cmp); 115 1.1 abs pm = med3(pm - d, pm, pm + d, cmp); 116 1.1 abs pn = med3(pn - 2 * d, pn - d, pn, cmp); 117 1.1 abs } 118 1.1 abs pm = med3(pl, pm, pn, cmp); 119 1.1 abs } 120 1.1 abs swap(a, pm); 121 1.1 abs pa = pb = (char *)a + es; 122 1.1 abs 123 1.1 abs pc = pd = (char *)a + (n - 1) * es; 124 1.1 abs for (;;) { 125 1.1 abs while (pb <= pc && (r = cmp(pb, a)) <= 0) { 126 1.1 abs if (r == 0) { 127 1.1 abs swap_cnt = 1; 128 1.1 abs swap(pa, pb); 129 1.1 abs pa += es; 130 1.1 abs } 131 1.1 abs pb += es; 132 1.1 abs } 133 1.1 abs while (pb <= pc && (r = cmp(pc, a)) >= 0) { 134 1.1 abs if (r == 0) { 135 1.1 abs swap_cnt = 1; 136 1.1 abs swap(pc, pd); 137 1.1 abs pd -= es; 138 1.1 abs } 139 1.1 abs pc -= es; 140 1.1 abs } 141 1.1 abs if (pb > pc) 142 1.1 abs break; 143 1.1 abs swap(pb, pc); 144 1.1 abs swap_cnt = 1; 145 1.1 abs pb += es; 146 1.1 abs pc -= es; 147 1.1 abs } 148 1.1 abs if (swap_cnt == 0) { /* Switch to insertion sort */ 149 1.1 abs for (pm = (char *)a + es; pm < (char *)a + n * es; pm += es) 150 1.1 abs for (pl = pm; pl > (char *)a && cmp(pl - es, pl) > 0; 151 1.1 abs pl -= es) 152 1.1 abs swap(pl, pl - es); 153 1.1 abs return; 154 1.1 abs } 155 1.1 abs 156 1.1 abs pn = (char *)a + n * es; 157 1.1 abs r = min(pa - (char *)a, pb - pa); 158 1.1 abs vecswap(a, pb - r, r); 159 1.1 abs r = min(pd - pc, pn - pd - es); 160 1.1 abs vecswap(pb, pn - r, r); 161 1.5 christos if ((size_t)(r = pb - pa) > es) 162 1.1 abs qsort(a, r / es, es, cmp); 163 1.5 christos if ((size_t)(r = pd - pc) > es) { 164 1.1 abs /* Iterate rather than recurse to save stack space */ 165 1.1 abs a = pn - r; 166 1.1 abs n = r / es; 167 1.1 abs goto loop; 168 1.1 abs } 169 1.1 abs /* qsort(pn - r, r / es, es, cmp);*/ 170 1.1 abs } 171