1 /* -*- linux-c -*- ------------------------------------------------------- * 2 * 3 * Copyright 2002 H. Peter Anvin - All Rights Reserved 4 * 5 * This program is free software; you can redistribute it and/or modify 6 * it under the terms of the GNU General Public License as published by 7 * the Free Software Foundation, Inc., 53 Temple Place Ste 330, 8 * Boston MA 02111-1307, USA; either version 2 of the License, or 9 * (at your option) any later version; incorporated herein by reference. 10 * 11 * ----------------------------------------------------------------------- */ 12 13 /* 14 * raid6/algos.c 15 * 16 * Algorithm list and algorithm selection for RAID-6 17 */ 18 19 #include <linux/raid/pq.h> 20 #ifndef __KERNEL__ 21 #include <sys/mman.h> 22 #include <stdio.h> 23 #else 24 #include <linux/module.h> 25 #include <linux/gfp.h> 26 #if !RAID6_USE_EMPTY_ZERO_PAGE 27 /* In .bss so it's zeroed */ 28 const char raid6_empty_zero_page[PAGE_SIZE] __attribute__((aligned(256))); 29 EXPORT_SYMBOL(raid6_empty_zero_page); 30 #endif 31 #endif 32 33 struct raid6_calls raid6_call; 34 EXPORT_SYMBOL_GPL(raid6_call); 35 36 const struct raid6_calls * const raid6_algos[] = { 37 #if defined(__ia64__) 38 &raid6_intx16, 39 &raid6_intx32, 40 #endif 41 #if defined(__i386__) && !defined(__arch_um__) 42 &raid6_mmxx1, 43 &raid6_mmxx2, 44 &raid6_sse1x1, 45 &raid6_sse1x2, 46 &raid6_sse2x1, 47 &raid6_sse2x2, 48 #ifdef CONFIG_AS_AVX2 49 &raid6_avx2x1, 50 &raid6_avx2x2, 51 #endif 52 #endif 53 #if defined(__x86_64__) && !defined(__arch_um__) 54 &raid6_sse2x1, 55 &raid6_sse2x2, 56 &raid6_sse2x4, 57 #ifdef CONFIG_AS_AVX2 58 &raid6_avx2x1, 59 &raid6_avx2x2, 60 &raid6_avx2x4, 61 #endif 62 #endif 63 #ifdef CONFIG_ALTIVEC 64 &raid6_altivec1, 65 &raid6_altivec2, 66 &raid6_altivec4, 67 &raid6_altivec8, 68 #endif 69 #if defined(CONFIG_TILEGX) 70 &raid6_tilegx8, 71 #endif 72 &raid6_intx1, 73 &raid6_intx2, 74 &raid6_intx4, 75 &raid6_intx8, 76 NULL 77 }; 78 79 void (*raid6_2data_recov)(int, size_t, int, int, void **); 80 EXPORT_SYMBOL_GPL(raid6_2data_recov); 81 82 void (*raid6_datap_recov)(int, size_t, int, void **); 83 EXPORT_SYMBOL_GPL(raid6_datap_recov); 84 85 const struct raid6_recov_calls *const raid6_recov_algos[] = { 86 #if (defined(__i386__) || defined(__x86_64__)) && !defined(__arch_um__) 87 #ifdef CONFIG_AS_AVX2 88 &raid6_recov_avx2, 89 #endif 90 &raid6_recov_ssse3, 91 #endif 92 &raid6_recov_intx1, 93 NULL 94 }; 95 96 #ifdef __KERNEL__ 97 #define RAID6_TIME_JIFFIES_LG2 4 98 #else 99 /* Need more time to be stable in userspace */ 100 #define RAID6_TIME_JIFFIES_LG2 9 101 #define time_before(x, y) ((x) < (y)) 102 #endif 103 104 static inline const struct raid6_recov_calls *raid6_choose_recov(void) 105 { 106 const struct raid6_recov_calls *const *algo; 107 const struct raid6_recov_calls *best; 108 109 for (best = NULL, algo = raid6_recov_algos; *algo; algo++) 110 if (!best || (*algo)->priority > best->priority) 111 if (!(*algo)->valid || (*algo)->valid()) 112 best = *algo; 113 114 if (best) { 115 raid6_2data_recov = best->data2; 116 raid6_datap_recov = best->datap; 117 118 printk("raid6: using %s recovery algorithm\n", best->name); 119 } else 120 printk("raid6: Yikes! No recovery algorithm found!\n"); 121 122 return best; 123 } 124 125 static inline const struct raid6_calls *raid6_choose_gen( 126 void *(*const dptrs)[(65536/PAGE_SIZE)+2], const int disks) 127 { 128 unsigned long perf, bestperf, j0, j1; 129 const struct raid6_calls *const *algo; 130 const struct raid6_calls *best; 131 132 for (bestperf = 0, best = NULL, algo = raid6_algos; *algo; algo++) { 133 if (!best || (*algo)->prefer >= best->prefer) { 134 if ((*algo)->valid && !(*algo)->valid()) 135 continue; 136 137 perf = 0; 138 139 preempt_disable(); 140 j0 = jiffies; 141 while ((j1 = jiffies) == j0) 142 cpu_relax(); 143 while (time_before(jiffies, 144 j1 + (1<<RAID6_TIME_JIFFIES_LG2))) { 145 (*algo)->gen_syndrome(disks, PAGE_SIZE, *dptrs); 146 perf++; 147 } 148 preempt_enable(); 149 150 if (perf > bestperf) { 151 bestperf = perf; 152 best = *algo; 153 } 154 printk("raid6: %-8s %5ld MB/s\n", (*algo)->name, 155 (perf*HZ) >> (20-16+RAID6_TIME_JIFFIES_LG2)); 156 } 157 } 158 159 if (best) { 160 printk("raid6: using algorithm %s (%ld MB/s)\n", 161 best->name, 162 (bestperf*HZ) >> (20-16+RAID6_TIME_JIFFIES_LG2)); 163 raid6_call = *best; 164 } else 165 printk("raid6: Yikes! No algorithm found!\n"); 166 167 return best; 168 } 169 170 171 /* Try to pick the best algorithm */ 172 /* This code uses the gfmul table as convenient data set to abuse */ 173 174 int __init raid6_select_algo(void) 175 { 176 const int disks = (65536/PAGE_SIZE)+2; 177 178 const struct raid6_calls *gen_best; 179 const struct raid6_recov_calls *rec_best; 180 char *syndromes; 181 void *dptrs[(65536/PAGE_SIZE)+2]; 182 int i; 183 184 for (i = 0; i < disks-2; i++) 185 dptrs[i] = ((char *)raid6_gfmul) + PAGE_SIZE*i; 186 187 /* Normal code - use a 2-page allocation to avoid D$ conflict */ 188 syndromes = (void *) __get_free_pages(GFP_KERNEL, 1); 189 190 if (!syndromes) { 191 printk("raid6: Yikes! No memory available.\n"); 192 return -ENOMEM; 193 } 194 195 dptrs[disks-2] = syndromes; 196 dptrs[disks-1] = syndromes + PAGE_SIZE; 197 198 /* select raid gen_syndrome function */ 199 gen_best = raid6_choose_gen(&dptrs, disks); 200 201 /* select raid recover functions */ 202 rec_best = raid6_choose_recov(); 203 204 free_pages((unsigned long)syndromes, 1); 205 206 return gen_best && rec_best ? 0 : -EINVAL; 207 } 208 209 static void raid6_exit(void) 210 { 211 do { } while (0); 212 } 213 214 subsys_initcall(raid6_select_algo); 215 module_exit(raid6_exit); 216 MODULE_LICENSE("GPL"); 217 MODULE_DESCRIPTION("RAID6 Q-syndrome calculations"); 218