106b4bf3eSWarner Losh /*- 251369649SPedro F. Giffuni * SPDX-License-Identifier: BSD-3-Clause 351369649SPedro F. Giffuni * 406b4bf3eSWarner Losh * Copyright (c) 1998 Matthew Dillon. All Rights Reserved. 506b4bf3eSWarner Losh * Redistribution and use in source and binary forms, with or without 606b4bf3eSWarner Losh * modification, are permitted provided that the following conditions 706b4bf3eSWarner Losh * are met: 806b4bf3eSWarner Losh * 1. Redistributions of source code must retain the above copyright 906b4bf3eSWarner Losh * notice, this list of conditions and the following disclaimer. 1006b4bf3eSWarner Losh * 2. Redistributions in binary form must reproduce the above copyright 1106b4bf3eSWarner Losh * notice, this list of conditions and the following disclaimer in the 1206b4bf3eSWarner Losh * documentation and/or other materials provided with the distribution. 1369a28758SEd Maste * 3. Neither the name of the University nor the names of its contributors 1406b4bf3eSWarner Losh * may be used to endorse or promote products derived from this software 1506b4bf3eSWarner Losh * without specific prior written permission. 1606b4bf3eSWarner Losh * 1706b4bf3eSWarner Losh * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS 1806b4bf3eSWarner Losh * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 1906b4bf3eSWarner Losh * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 2006b4bf3eSWarner Losh * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY 2106b4bf3eSWarner Losh * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 2206b4bf3eSWarner Losh * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE 2306b4bf3eSWarner Losh * GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 2406b4bf3eSWarner Losh * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 2506b4bf3eSWarner Losh * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING 2606b4bf3eSWarner Losh * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS 2706b4bf3eSWarner Losh * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 2806b4bf3eSWarner Losh */ 297090df5aSMatthew Dillon /* 307090df5aSMatthew Dillon * BLIST.C - Bitmap allocator/deallocator, using a radix tree with hinting 317090df5aSMatthew Dillon * 327090df5aSMatthew Dillon * This module implements a general bitmap allocator/deallocator. The 337090df5aSMatthew Dillon * allocator eats around 2 bits per 'block'. The module does not 34f565f395SEitan Adler * try to interpret the meaning of a 'block' other than to return 357090df5aSMatthew Dillon * SWAPBLK_NONE on an allocation failure. 367090df5aSMatthew Dillon * 37ec371b57SAlan Cox * A radix tree controls access to pieces of the bitmap, and includes 38ec371b57SAlan Cox * auxiliary information at each interior node about the availabilty of 39ec371b57SAlan Cox * contiguous free blocks in the subtree rooted at that node. Two radix 40ec371b57SAlan Cox * constants are involved: one for the size of the bitmaps contained in the 41ec371b57SAlan Cox * leaf nodes (BLIST_BMAP_RADIX), and one for the number of descendents of 42ec371b57SAlan Cox * each of the meta (interior) nodes (BLIST_META_RADIX). Each subtree is 43ec371b57SAlan Cox * associated with a range of blocks. The root of any subtree stores a 44ec371b57SAlan Cox * hint field that defines an upper bound on the size of the largest 45ec371b57SAlan Cox * allocation that can begin in the associated block range. A hint is an 46ec371b57SAlan Cox * upper bound on a potential allocation, but not necessarily a tight upper 47ec371b57SAlan Cox * bound. 487090df5aSMatthew Dillon * 49bb4a27f9SMark Johnston * The bitmap field in each node directs the search for available blocks. 50bb4a27f9SMark Johnston * For a leaf node, a bit is set if the corresponding block is free. For a 51bb4a27f9SMark Johnston * meta node, a bit is set if the corresponding subtree contains a free 52bb4a27f9SMark Johnston * block somewhere within it. The search at a meta node considers only 53bb4a27f9SMark Johnston * children of that node that represent a range that includes a free block. 547090df5aSMatthew Dillon * 557090df5aSMatthew Dillon * The hinting greatly increases code efficiency for allocations while 567090df5aSMatthew Dillon * the general radix structure optimizes both allocations and frees. The 577090df5aSMatthew Dillon * radix tree should be able to operate well no matter how much 587090df5aSMatthew Dillon * fragmentation there is and no matter how large a bitmap is used. 597090df5aSMatthew Dillon * 6051dc4feaSSergey Kandaurov * The blist code wires all necessary memory at creation time. Neither 6151dc4feaSSergey Kandaurov * allocations nor frees require interaction with the memory subsystem. 62bb4a27f9SMark Johnston * The non-blocking nature of allocations and frees is required by swap 63bb4a27f9SMark Johnston * code (vm/swap_pager.c). 647090df5aSMatthew Dillon * 65bb4a27f9SMark Johnston * LAYOUT: The radix tree is laid out recursively using a linear array. 66bb4a27f9SMark Johnston * Each meta node is immediately followed (laid out sequentially in 67bb4a27f9SMark Johnston * memory) by BLIST_META_RADIX lower level nodes. This is a recursive 68bb4a27f9SMark Johnston * structure but one that can be easily scanned through a very simple 69bb4a27f9SMark Johnston * 'skip' calculation. The memory allocation is only large enough to 70bb4a27f9SMark Johnston * cover the number of blocks requested at creation time. Nodes that 71bb4a27f9SMark Johnston * represent blocks beyond that limit, nodes that would never be read 72bb4a27f9SMark Johnston * or written, are not allocated, so that the last of the 73bb4a27f9SMark Johnston * BLIST_META_RADIX lower level nodes of a some nodes may not be 74bb4a27f9SMark Johnston * allocated. 757090df5aSMatthew Dillon * 76f565f395SEitan Adler * NOTE: the allocator cannot currently allocate more than 777090df5aSMatthew Dillon * BLIST_BMAP_RADIX blocks per call. It will panic with 'allocation too 787090df5aSMatthew Dillon * large' if you try. This is an area that could use improvement. The 797090df5aSMatthew Dillon * radix is large enough that this restriction does not effect the swap 80b411efa4SAlan Cox * system, though. Currently only the allocation code is affected by 817090df5aSMatthew Dillon * this algorithmic unfeature. The freeing code can handle arbitrary 827090df5aSMatthew Dillon * ranges. 837090df5aSMatthew Dillon * 847090df5aSMatthew Dillon * This code can be compiled stand-alone for debugging. 857090df5aSMatthew Dillon */ 867090df5aSMatthew Dillon 87677b542eSDavid E. O'Brien #include <sys/cdefs.h> 88677b542eSDavid E. O'Brien __FBSDID("$FreeBSD$"); 89677b542eSDavid E. O'Brien 90c4473420SPeter Wemm #ifdef _KERNEL 917090df5aSMatthew Dillon 927090df5aSMatthew Dillon #include <sys/param.h> 937090df5aSMatthew Dillon #include <sys/systm.h> 947090df5aSMatthew Dillon #include <sys/lock.h> 957090df5aSMatthew Dillon #include <sys/kernel.h> 967090df5aSMatthew Dillon #include <sys/blist.h> 977090df5aSMatthew Dillon #include <sys/malloc.h> 98d027ed2eSAlan Cox #include <sys/sbuf.h> 990cddd8f0SMatthew Dillon #include <sys/proc.h> 10023955314SAlfred Perlstein #include <sys/mutex.h> 1017090df5aSMatthew Dillon 1027090df5aSMatthew Dillon #else 1037090df5aSMatthew Dillon 1047090df5aSMatthew Dillon #ifndef BLIST_NO_DEBUG 1057090df5aSMatthew Dillon #define BLIST_DEBUG 1067090df5aSMatthew Dillon #endif 1077090df5aSMatthew Dillon 108bb4a27f9SMark Johnston #include <sys/errno.h> 1097090df5aSMatthew Dillon #include <sys/types.h> 110d90bf7d8SAlan Cox #include <sys/malloc.h> 111d027ed2eSAlan Cox #include <sys/sbuf.h> 112b1f59c92SDoug Moore #include <assert.h> 1137090df5aSMatthew Dillon #include <stdio.h> 1147090df5aSMatthew Dillon #include <string.h> 1158eefcd40SAlan Cox #include <stddef.h> 1167090df5aSMatthew Dillon #include <stdlib.h> 1177090df5aSMatthew Dillon #include <stdarg.h> 118d3783724SAlan Cox #include <stdbool.h> 1197090df5aSMatthew Dillon 1204be4fd5dSAlan Cox #define bitcount64(x) __bitcount64((uint64_t)(x)) 12192da00bbSMatthew Dillon #define malloc(a,b,c) calloc(a, 1) 1227090df5aSMatthew Dillon #define free(a,b) free(a) 123bb4a27f9SMark Johnston #define ummin(a,b) ((a) < (b) ? (a) : (b)) 124b1f59c92SDoug Moore #define KASSERT(a,b) assert(a) 1257090df5aSMatthew Dillon 1267090df5aSMatthew Dillon #include <sys/blist.h> 1277090df5aSMatthew Dillon 1287090df5aSMatthew Dillon #endif 1297090df5aSMatthew Dillon 1307090df5aSMatthew Dillon /* 1317090df5aSMatthew Dillon * static support functions 1327090df5aSMatthew Dillon */ 133ec371b57SAlan Cox static daddr_t blst_leaf_alloc(blmeta_t *scan, daddr_t blk, int count); 134bee93d3cSAlan Cox static daddr_t blst_meta_alloc(blmeta_t *scan, daddr_t cursor, daddr_t count, 135bee93d3cSAlan Cox u_daddr_t radix); 1367090df5aSMatthew Dillon static void blst_leaf_free(blmeta_t *scan, daddr_t relblk, int count); 1377090df5aSMatthew Dillon static void blst_meta_free(blmeta_t *scan, daddr_t freeBlk, daddr_t count, 138bee93d3cSAlan Cox u_daddr_t radix); 1397090df5aSMatthew Dillon static void blst_copy(blmeta_t *scan, daddr_t blk, daddr_t radix, 1402ac0c7c3SAlan Cox blist_t dest, daddr_t count); 141a7249a6cSAlan Cox static daddr_t blst_leaf_fill(blmeta_t *scan, daddr_t blk, int count); 142a7249a6cSAlan Cox static daddr_t blst_meta_fill(blmeta_t *scan, daddr_t allocBlk, daddr_t count, 143bee93d3cSAlan Cox u_daddr_t radix); 144c4473420SPeter Wemm #ifndef _KERNEL 145d3783724SAlan Cox static void blst_radix_print(blmeta_t *scan, daddr_t blk, daddr_t radix, 1462ac0c7c3SAlan Cox int tab); 1477090df5aSMatthew Dillon #endif 1487090df5aSMatthew Dillon 149c4473420SPeter Wemm #ifdef _KERNEL 1507090df5aSMatthew Dillon static MALLOC_DEFINE(M_SWAP, "SWAP", "Swap space"); 1517090df5aSMatthew Dillon #endif 1527090df5aSMatthew Dillon 153ec371b57SAlan Cox _Static_assert(BLIST_BMAP_RADIX % BLIST_META_RADIX == 0, 154ec371b57SAlan Cox "radix divisibility error"); 155ec371b57SAlan Cox #define BLIST_BMAP_MASK (BLIST_BMAP_RADIX - 1) 156d027ed2eSAlan Cox #define BLIST_META_MASK (BLIST_META_RADIX - 1) 157ba98e6a2SAlan Cox 1587090df5aSMatthew Dillon /* 1592ac0c7c3SAlan Cox * For a subtree that can represent the state of up to 'radix' blocks, the 1602ac0c7c3SAlan Cox * number of leaf nodes of the subtree is L=radix/BLIST_BMAP_RADIX. If 'm' 1612ac0c7c3SAlan Cox * is short for BLIST_META_RADIX, then for a tree of height h with L=m**h 1622ac0c7c3SAlan Cox * leaf nodes, the total number of tree nodes is 1 + m + m**2 + ... + m**h, 1632ac0c7c3SAlan Cox * or, equivalently, (m**(h+1)-1)/(m-1). This quantity is called 'skip' 1642ac0c7c3SAlan Cox * in the 'meta' functions that process subtrees. Since integer division 1652ac0c7c3SAlan Cox * discards remainders, we can express this computation as 1662ac0c7c3SAlan Cox * skip = (m * m**h) / (m - 1) 167ba98e6a2SAlan Cox * skip = (m * (radix / BLIST_BMAP_RADIX)) / (m - 1) 168ba98e6a2SAlan Cox * and since m divides BLIST_BMAP_RADIX, we can simplify further to 169ba98e6a2SAlan Cox * skip = (radix / (BLIST_BMAP_RADIX / m)) / (m - 1) 170ba98e6a2SAlan Cox * skip = radix / ((BLIST_BMAP_RADIX / m) * (m - 1)) 171ba98e6a2SAlan Cox * so that simple integer division by a constant can safely be used for the 172ba98e6a2SAlan Cox * calculation. 1732ac0c7c3SAlan Cox */ 1742ac0c7c3SAlan Cox static inline daddr_t 1752ac0c7c3SAlan Cox radix_to_skip(daddr_t radix) 1762ac0c7c3SAlan Cox { 1772ac0c7c3SAlan Cox 1782ac0c7c3SAlan Cox return (radix / 179d027ed2eSAlan Cox ((BLIST_BMAP_RADIX / BLIST_META_RADIX) * BLIST_META_MASK)); 180d027ed2eSAlan Cox } 181d027ed2eSAlan Cox 182d027ed2eSAlan Cox /* 183bb4a27f9SMark Johnston * Provide a mask with count bits set, starting as position n. 184bb4a27f9SMark Johnston */ 185bb4a27f9SMark Johnston static inline u_daddr_t 186bb4a27f9SMark Johnston bitrange(int n, int count) 187bb4a27f9SMark Johnston { 188bb4a27f9SMark Johnston 189bb4a27f9SMark Johnston return (((u_daddr_t)-1 << n) & 190bb4a27f9SMark Johnston ((u_daddr_t)-1 >> (BLIST_BMAP_RADIX - (n + count)))); 191bb4a27f9SMark Johnston } 192bb4a27f9SMark Johnston 193bb4a27f9SMark Johnston 194bb4a27f9SMark Johnston /* 195d027ed2eSAlan Cox * Use binary search, or a faster method, to find the 1 bit in a u_daddr_t. 196d027ed2eSAlan Cox * Assumes that the argument has only one bit set. 197d027ed2eSAlan Cox */ 198d027ed2eSAlan Cox static inline int 199d027ed2eSAlan Cox bitpos(u_daddr_t mask) 200d027ed2eSAlan Cox { 201d027ed2eSAlan Cox int hi, lo, mid; 202d027ed2eSAlan Cox 203d027ed2eSAlan Cox switch (sizeof(mask)) { 204d027ed2eSAlan Cox #ifdef HAVE_INLINE_FFSLL 205d027ed2eSAlan Cox case sizeof(long long): 206d027ed2eSAlan Cox return (ffsll(mask) - 1); 207d027ed2eSAlan Cox #endif 208d027ed2eSAlan Cox default: 209d027ed2eSAlan Cox lo = 0; 210d027ed2eSAlan Cox hi = BLIST_BMAP_RADIX; 211d027ed2eSAlan Cox while (lo + 1 < hi) { 212d027ed2eSAlan Cox mid = (lo + hi) >> 1; 213d027ed2eSAlan Cox if ((mask >> mid) != 0) 214d027ed2eSAlan Cox lo = mid; 215d027ed2eSAlan Cox else 216d027ed2eSAlan Cox hi = mid; 217d027ed2eSAlan Cox } 218d027ed2eSAlan Cox return (lo); 219d027ed2eSAlan Cox } 2202ac0c7c3SAlan Cox } 2212ac0c7c3SAlan Cox 2222ac0c7c3SAlan Cox /* 2237090df5aSMatthew Dillon * blist_create() - create a blist capable of handling up to the specified 2247090df5aSMatthew Dillon * number of blocks 2257090df5aSMatthew Dillon * 226f565f395SEitan Adler * blocks - must be greater than 0 227c8c7ad92SKip Macy * flags - malloc flags 2287090df5aSMatthew Dillon * 2297090df5aSMatthew Dillon * The smallest blist consists of a single leaf node capable of 2307090df5aSMatthew Dillon * managing BLIST_BMAP_RADIX blocks. 2317090df5aSMatthew Dillon */ 2327090df5aSMatthew Dillon blist_t 233c8c7ad92SKip Macy blist_create(daddr_t blocks, int flags) 2347090df5aSMatthew Dillon { 2357090df5aSMatthew Dillon blist_t bl; 236bb4a27f9SMark Johnston u_daddr_t nodes, radix; 2377090df5aSMatthew Dillon 238b1f59c92SDoug Moore KASSERT(blocks > 0, ("invalid block count")); 239ce9eea64SMark Johnston 2407090df5aSMatthew Dillon /* 241ce9eea64SMark Johnston * Calculate the radix and node count used for scanning. 2427090df5aSMatthew Dillon */ 243bb4a27f9SMark Johnston nodes = 1; 2447090df5aSMatthew Dillon radix = BLIST_BMAP_RADIX; 245bb4a27f9SMark Johnston while (radix <= blocks) { 246bb4a27f9SMark Johnston nodes += 1 + (blocks - 1) / radix; 24757e6d29bSMatthew Dillon radix *= BLIST_META_RADIX; 2487090df5aSMatthew Dillon } 2497090df5aSMatthew Dillon 25003ca2137SAlan Cox bl = malloc(offsetof(struct blist, bl_root[nodes]), M_SWAP, flags | 25103ca2137SAlan Cox M_ZERO); 252015d7db6SAlan Cox if (bl == NULL) 253015d7db6SAlan Cox return (NULL); 2547090df5aSMatthew Dillon 2557090df5aSMatthew Dillon bl->bl_blocks = blocks; 2567090df5aSMatthew Dillon bl->bl_radix = radix; 2577090df5aSMatthew Dillon 2587090df5aSMatthew Dillon #if defined(BLIST_DEBUG) 2597090df5aSMatthew Dillon printf( 26092da00bbSMatthew Dillon "BLIST representing %lld blocks (%lld MB of swap)" 26192da00bbSMatthew Dillon ", requiring %lldK of ram\n", 26292da00bbSMatthew Dillon (long long)bl->bl_blocks, 26392da00bbSMatthew Dillon (long long)bl->bl_blocks * 4 / 1024, 264015d7db6SAlan Cox (long long)(nodes * sizeof(blmeta_t) + 1023) / 1024 2657090df5aSMatthew Dillon ); 26692da00bbSMatthew Dillon printf("BLIST raw radix tree contains %lld records\n", 267015d7db6SAlan Cox (long long)nodes); 2687090df5aSMatthew Dillon #endif 2697090df5aSMatthew Dillon 2707090df5aSMatthew Dillon return (bl); 2717090df5aSMatthew Dillon } 2727090df5aSMatthew Dillon 2737090df5aSMatthew Dillon void 2747090df5aSMatthew Dillon blist_destroy(blist_t bl) 2757090df5aSMatthew Dillon { 2768eefcd40SAlan Cox 2777090df5aSMatthew Dillon free(bl, M_SWAP); 2787090df5aSMatthew Dillon } 2797090df5aSMatthew Dillon 2807090df5aSMatthew Dillon /* 2817090df5aSMatthew Dillon * blist_alloc() - reserve space in the block bitmap. Return the base 2827090df5aSMatthew Dillon * of a contiguous region or SWAPBLK_NONE if space could 2837090df5aSMatthew Dillon * not be allocated. 2847090df5aSMatthew Dillon */ 2857090df5aSMatthew Dillon daddr_t 2867090df5aSMatthew Dillon blist_alloc(blist_t bl, daddr_t count) 2877090df5aSMatthew Dillon { 28827d172bbSDoug Moore daddr_t blk, cursor; 2897090df5aSMatthew Dillon 290b1f59c92SDoug Moore KASSERT(count <= BLIST_MAX_ALLOC, 291b1f59c92SDoug Moore ("allocation too large: %d", (int)count)); 292bb4a27f9SMark Johnston 293d4e3484bSAlan Cox /* 294d4e3484bSAlan Cox * This loop iterates at most twice. An allocation failure in the 295d4e3484bSAlan Cox * first iteration leads to a second iteration only if the cursor was 296d4e3484bSAlan Cox * non-zero. When the cursor is zero, an allocation failure will 297749cdf6fSAlan Cox * stop further iterations. 298d4e3484bSAlan Cox */ 29927d172bbSDoug Moore cursor = bl->bl_cursor; 300749cdf6fSAlan Cox for (;;) { 30127d172bbSDoug Moore blk = blst_meta_alloc(bl->bl_root, cursor, count, 302bee93d3cSAlan Cox bl->bl_radix); 303d4e3484bSAlan Cox if (blk != SWAPBLK_NONE) { 304bb4a27f9SMark Johnston bl->bl_avail -= count; 305d4e3484bSAlan Cox bl->bl_cursor = blk + count; 306a0ae476bSAlan Cox if (bl->bl_cursor == bl->bl_blocks) 307a0ae476bSAlan Cox bl->bl_cursor = 0; 3087090df5aSMatthew Dillon return (blk); 30927d172bbSDoug Moore } else if (cursor == 0) 310749cdf6fSAlan Cox return (SWAPBLK_NONE); 31127d172bbSDoug Moore cursor = 0; 3127090df5aSMatthew Dillon } 3134be4fd5dSAlan Cox } 3144be4fd5dSAlan Cox 3154be4fd5dSAlan Cox /* 3164be4fd5dSAlan Cox * blist_avail() - return the number of free blocks. 3174be4fd5dSAlan Cox */ 3184be4fd5dSAlan Cox daddr_t 3194be4fd5dSAlan Cox blist_avail(blist_t bl) 3204be4fd5dSAlan Cox { 3214be4fd5dSAlan Cox 322bb4a27f9SMark Johnston return (bl->bl_avail); 3234be4fd5dSAlan Cox } 3247090df5aSMatthew Dillon 3257090df5aSMatthew Dillon /* 3267090df5aSMatthew Dillon * blist_free() - free up space in the block bitmap. Return the base 327b1f59c92SDoug Moore * of a contiguous region. 3287090df5aSMatthew Dillon */ 3297090df5aSMatthew Dillon void 3307090df5aSMatthew Dillon blist_free(blist_t bl, daddr_t blkno, daddr_t count) 3317090df5aSMatthew Dillon { 332a396c83aSAlan Cox 333b1f59c92SDoug Moore KASSERT(blkno >= 0 && blkno + count <= bl->bl_blocks, 334b1f59c92SDoug Moore ("freeing invalid range: blkno %jx, count %d, blocks %jd", 335b1f59c92SDoug Moore (uintmax_t)blkno, (int)count, (uintmax_t)bl->bl_blocks)); 336bee93d3cSAlan Cox blst_meta_free(bl->bl_root, blkno, count, bl->bl_radix); 337bb4a27f9SMark Johnston bl->bl_avail += count; 3387090df5aSMatthew Dillon } 3397090df5aSMatthew Dillon 3407090df5aSMatthew Dillon /* 34192da00bbSMatthew Dillon * blist_fill() - mark a region in the block bitmap as off-limits 34292da00bbSMatthew Dillon * to the allocator (i.e. allocate it), ignoring any 34392da00bbSMatthew Dillon * existing allocations. Return the number of blocks 34492da00bbSMatthew Dillon * actually filled that were free before the call. 34592da00bbSMatthew Dillon */ 346a7249a6cSAlan Cox daddr_t 34792da00bbSMatthew Dillon blist_fill(blist_t bl, daddr_t blkno, daddr_t count) 34892da00bbSMatthew Dillon { 349bb4a27f9SMark Johnston daddr_t filled; 35092da00bbSMatthew Dillon 351b1f59c92SDoug Moore KASSERT(blkno >= 0 && blkno + count <= bl->bl_blocks, 352b1f59c92SDoug Moore ("filling invalid range: blkno %jx, count %d, blocks %jd", 353b1f59c92SDoug Moore (uintmax_t)blkno, (int)count, (uintmax_t)bl->bl_blocks)); 354bb4a27f9SMark Johnston filled = blst_meta_fill(bl->bl_root, blkno, count, bl->bl_radix); 355bb4a27f9SMark Johnston bl->bl_avail -= filled; 356bb4a27f9SMark Johnston return (filled); 35792da00bbSMatthew Dillon } 35892da00bbSMatthew Dillon 35992da00bbSMatthew Dillon /* 3607090df5aSMatthew Dillon * blist_resize() - resize an existing radix tree to handle the 3617090df5aSMatthew Dillon * specified number of blocks. This will reallocate 3627090df5aSMatthew Dillon * the tree and transfer the previous bitmap to the new 3637090df5aSMatthew Dillon * one. When extending the tree you can specify whether 3647090df5aSMatthew Dillon * the new blocks are to left allocated or freed. 3657090df5aSMatthew Dillon */ 3667090df5aSMatthew Dillon void 367c8c7ad92SKip Macy blist_resize(blist_t *pbl, daddr_t count, int freenew, int flags) 3687090df5aSMatthew Dillon { 369c8c7ad92SKip Macy blist_t newbl = blist_create(count, flags); 3707090df5aSMatthew Dillon blist_t save = *pbl; 3717090df5aSMatthew Dillon 3727090df5aSMatthew Dillon *pbl = newbl; 3737090df5aSMatthew Dillon if (count > save->bl_blocks) 3747090df5aSMatthew Dillon count = save->bl_blocks; 3752ac0c7c3SAlan Cox blst_copy(save->bl_root, 0, save->bl_radix, newbl, count); 3767090df5aSMatthew Dillon 3777090df5aSMatthew Dillon /* 3787090df5aSMatthew Dillon * If resizing upwards, should we free the new space or not? 3797090df5aSMatthew Dillon */ 3807090df5aSMatthew Dillon if (freenew && count < newbl->bl_blocks) { 3817090df5aSMatthew Dillon blist_free(newbl, count, newbl->bl_blocks - count); 3827090df5aSMatthew Dillon } 3837090df5aSMatthew Dillon blist_destroy(save); 3847090df5aSMatthew Dillon } 3857090df5aSMatthew Dillon 3867090df5aSMatthew Dillon #ifdef BLIST_DEBUG 3877090df5aSMatthew Dillon 3887090df5aSMatthew Dillon /* 3897090df5aSMatthew Dillon * blist_print() - dump radix tree 3907090df5aSMatthew Dillon */ 3917090df5aSMatthew Dillon void 3927090df5aSMatthew Dillon blist_print(blist_t bl) 3937090df5aSMatthew Dillon { 394bb4a27f9SMark Johnston printf("BLIST avail = %jd, cursor = %08jx {\n", 395bb4a27f9SMark Johnston (uintmax_t)bl->bl_avail, (uintmax_t)bl->bl_cursor); 396bb4a27f9SMark Johnston 397bb4a27f9SMark Johnston if (bl->bl_root->bm_bitmap != 0) 3982ac0c7c3SAlan Cox blst_radix_print(bl->bl_root, 0, bl->bl_radix, 4); 3997090df5aSMatthew Dillon printf("}\n"); 4007090df5aSMatthew Dillon } 4017090df5aSMatthew Dillon 4027090df5aSMatthew Dillon #endif 4037090df5aSMatthew Dillon 404d027ed2eSAlan Cox static const u_daddr_t fib[] = { 405d027ed2eSAlan Cox 1, 2, 3, 5, 8, 13, 21, 34, 55, 89, 144, 233, 377, 610, 987, 1597, 2584, 406d027ed2eSAlan Cox 4181, 6765, 10946, 17711, 28657, 46368, 75025, 121393, 196418, 317811, 407d027ed2eSAlan Cox 514229, 832040, 1346269, 2178309, 3524578, 408d027ed2eSAlan Cox }; 409d027ed2eSAlan Cox 410d027ed2eSAlan Cox /* 411d027ed2eSAlan Cox * Use 'gap' to describe a maximal range of unallocated blocks/bits. 412d027ed2eSAlan Cox */ 413d027ed2eSAlan Cox struct gap_stats { 414d027ed2eSAlan Cox daddr_t start; /* current gap start, or SWAPBLK_NONE */ 415d027ed2eSAlan Cox daddr_t num; /* number of gaps observed */ 416d027ed2eSAlan Cox daddr_t max; /* largest gap size */ 417d027ed2eSAlan Cox daddr_t avg; /* average gap size */ 418d027ed2eSAlan Cox daddr_t err; /* sum - num * avg */ 419d027ed2eSAlan Cox daddr_t histo[nitems(fib)]; /* # gaps in each size range */ 420d027ed2eSAlan Cox int max_bucket; /* last histo elt with nonzero val */ 421d027ed2eSAlan Cox }; 422d027ed2eSAlan Cox 423d027ed2eSAlan Cox /* 424d027ed2eSAlan Cox * gap_stats_counting() - is the state 'counting 1 bits'? 425d027ed2eSAlan Cox * or 'skipping 0 bits'? 426d027ed2eSAlan Cox */ 427d027ed2eSAlan Cox static inline bool 428d027ed2eSAlan Cox gap_stats_counting(const struct gap_stats *stats) 429d027ed2eSAlan Cox { 430d027ed2eSAlan Cox 431d027ed2eSAlan Cox return (stats->start != SWAPBLK_NONE); 432d027ed2eSAlan Cox } 433d027ed2eSAlan Cox 434d027ed2eSAlan Cox /* 435d027ed2eSAlan Cox * init_gap_stats() - initialize stats on gap sizes 436d027ed2eSAlan Cox */ 437d027ed2eSAlan Cox static inline void 438d027ed2eSAlan Cox init_gap_stats(struct gap_stats *stats) 439d027ed2eSAlan Cox { 440d027ed2eSAlan Cox 441d027ed2eSAlan Cox bzero(stats, sizeof(*stats)); 442d027ed2eSAlan Cox stats->start = SWAPBLK_NONE; 443d027ed2eSAlan Cox } 444d027ed2eSAlan Cox 445d027ed2eSAlan Cox /* 446d027ed2eSAlan Cox * update_gap_stats() - update stats on gap sizes 447d027ed2eSAlan Cox */ 448d027ed2eSAlan Cox static void 449d027ed2eSAlan Cox update_gap_stats(struct gap_stats *stats, daddr_t posn) 450d027ed2eSAlan Cox { 451d027ed2eSAlan Cox daddr_t size; 452d027ed2eSAlan Cox int hi, lo, mid; 453d027ed2eSAlan Cox 454d027ed2eSAlan Cox if (!gap_stats_counting(stats)) { 455d027ed2eSAlan Cox stats->start = posn; 456d027ed2eSAlan Cox return; 457d027ed2eSAlan Cox } 458d027ed2eSAlan Cox size = posn - stats->start; 459d027ed2eSAlan Cox stats->start = SWAPBLK_NONE; 460d027ed2eSAlan Cox if (size > stats->max) 461d027ed2eSAlan Cox stats->max = size; 462d027ed2eSAlan Cox 463d027ed2eSAlan Cox /* 464d027ed2eSAlan Cox * Find the fibonacci range that contains size, 465d027ed2eSAlan Cox * expecting to find it in an early range. 466d027ed2eSAlan Cox */ 467d027ed2eSAlan Cox lo = 0; 468d027ed2eSAlan Cox hi = 1; 469d027ed2eSAlan Cox while (hi < nitems(fib) && fib[hi] <= size) { 470d027ed2eSAlan Cox lo = hi; 471d027ed2eSAlan Cox hi *= 2; 472d027ed2eSAlan Cox } 473d027ed2eSAlan Cox if (hi >= nitems(fib)) 474d027ed2eSAlan Cox hi = nitems(fib); 475d027ed2eSAlan Cox while (lo + 1 != hi) { 476d027ed2eSAlan Cox mid = (lo + hi) >> 1; 477d027ed2eSAlan Cox if (fib[mid] <= size) 478d027ed2eSAlan Cox lo = mid; 479d027ed2eSAlan Cox else 480d027ed2eSAlan Cox hi = mid; 481d027ed2eSAlan Cox } 482d027ed2eSAlan Cox stats->histo[lo]++; 483d027ed2eSAlan Cox if (lo > stats->max_bucket) 484d027ed2eSAlan Cox stats->max_bucket = lo; 485d027ed2eSAlan Cox stats->err += size - stats->avg; 486d027ed2eSAlan Cox stats->num++; 487d027ed2eSAlan Cox stats->avg += stats->err / stats->num; 488d027ed2eSAlan Cox stats->err %= stats->num; 489d027ed2eSAlan Cox } 490d027ed2eSAlan Cox 491d027ed2eSAlan Cox /* 492d027ed2eSAlan Cox * dump_gap_stats() - print stats on gap sizes 493d027ed2eSAlan Cox */ 494d027ed2eSAlan Cox static inline void 495d027ed2eSAlan Cox dump_gap_stats(const struct gap_stats *stats, struct sbuf *s) 496d027ed2eSAlan Cox { 497d027ed2eSAlan Cox int i; 498d027ed2eSAlan Cox 499d027ed2eSAlan Cox sbuf_printf(s, "number of maximal free ranges: %jd\n", 500d027ed2eSAlan Cox (intmax_t)stats->num); 501d027ed2eSAlan Cox sbuf_printf(s, "largest free range: %jd\n", (intmax_t)stats->max); 502d027ed2eSAlan Cox sbuf_printf(s, "average maximal free range size: %jd\n", 503d027ed2eSAlan Cox (intmax_t)stats->avg); 504d027ed2eSAlan Cox sbuf_printf(s, "number of maximal free ranges of different sizes:\n"); 505d027ed2eSAlan Cox sbuf_printf(s, " count | size range\n"); 506d027ed2eSAlan Cox sbuf_printf(s, " ----- | ----------\n"); 507d027ed2eSAlan Cox for (i = 0; i < stats->max_bucket; i++) { 508d027ed2eSAlan Cox if (stats->histo[i] != 0) { 509d027ed2eSAlan Cox sbuf_printf(s, "%20jd | ", 510d027ed2eSAlan Cox (intmax_t)stats->histo[i]); 511d027ed2eSAlan Cox if (fib[i] != fib[i + 1] - 1) 512d027ed2eSAlan Cox sbuf_printf(s, "%jd to %jd\n", (intmax_t)fib[i], 513d027ed2eSAlan Cox (intmax_t)fib[i + 1] - 1); 514d027ed2eSAlan Cox else 515d027ed2eSAlan Cox sbuf_printf(s, "%jd\n", (intmax_t)fib[i]); 516d027ed2eSAlan Cox } 517d027ed2eSAlan Cox } 518d027ed2eSAlan Cox sbuf_printf(s, "%20jd | ", (intmax_t)stats->histo[i]); 519d027ed2eSAlan Cox if (stats->histo[i] > 1) 520d027ed2eSAlan Cox sbuf_printf(s, "%jd to %jd\n", (intmax_t)fib[i], 521d027ed2eSAlan Cox (intmax_t)stats->max); 522d027ed2eSAlan Cox else 523d027ed2eSAlan Cox sbuf_printf(s, "%jd\n", (intmax_t)stats->max); 524d027ed2eSAlan Cox } 525d027ed2eSAlan Cox 526d027ed2eSAlan Cox /* 527d027ed2eSAlan Cox * blist_stats() - dump radix tree stats 528d027ed2eSAlan Cox */ 529d027ed2eSAlan Cox void 530d027ed2eSAlan Cox blist_stats(blist_t bl, struct sbuf *s) 531d027ed2eSAlan Cox { 532d027ed2eSAlan Cox struct gap_stats gstats; 533d027ed2eSAlan Cox struct gap_stats *stats = &gstats; 534d027ed2eSAlan Cox daddr_t i, nodes, radix; 535d027ed2eSAlan Cox u_daddr_t bit, diff, mask; 536d027ed2eSAlan Cox 537d027ed2eSAlan Cox init_gap_stats(stats); 538d027ed2eSAlan Cox nodes = 0; 539d027ed2eSAlan Cox i = bl->bl_radix; 540d027ed2eSAlan Cox while (i < bl->bl_radix + bl->bl_blocks) { 541d027ed2eSAlan Cox /* 542d027ed2eSAlan Cox * Find max size subtree starting at i. 543d027ed2eSAlan Cox */ 544d027ed2eSAlan Cox radix = BLIST_BMAP_RADIX; 545d027ed2eSAlan Cox while (((i / radix) & BLIST_META_MASK) == 0) 546d027ed2eSAlan Cox radix *= BLIST_META_RADIX; 547d027ed2eSAlan Cox 548d027ed2eSAlan Cox /* 549d027ed2eSAlan Cox * Check for skippable subtrees starting at i. 550d027ed2eSAlan Cox */ 551d027ed2eSAlan Cox while (radix > BLIST_BMAP_RADIX) { 552bb4a27f9SMark Johnston if (bl->bl_root[nodes].bm_bitmap == 0) { 553d027ed2eSAlan Cox if (gap_stats_counting(stats)) 554d027ed2eSAlan Cox update_gap_stats(stats, i); 555d027ed2eSAlan Cox break; 556d027ed2eSAlan Cox } 557d027ed2eSAlan Cox 558d027ed2eSAlan Cox /* 559d027ed2eSAlan Cox * Skip subtree root. 560d027ed2eSAlan Cox */ 561d027ed2eSAlan Cox nodes++; 562d027ed2eSAlan Cox radix /= BLIST_META_RADIX; 563d027ed2eSAlan Cox } 564d027ed2eSAlan Cox if (radix == BLIST_BMAP_RADIX) { 565d027ed2eSAlan Cox /* 566d027ed2eSAlan Cox * Scan leaf. 567d027ed2eSAlan Cox */ 568bb4a27f9SMark Johnston mask = bl->bl_root[nodes].bm_bitmap; 569d027ed2eSAlan Cox diff = mask ^ (mask << 1); 570d027ed2eSAlan Cox if (gap_stats_counting(stats)) 571d027ed2eSAlan Cox diff ^= 1; 572d027ed2eSAlan Cox while (diff != 0) { 573d027ed2eSAlan Cox bit = diff & -diff; 574d027ed2eSAlan Cox update_gap_stats(stats, i + bitpos(bit)); 575d027ed2eSAlan Cox diff ^= bit; 576d027ed2eSAlan Cox } 577d027ed2eSAlan Cox } 578d027ed2eSAlan Cox nodes += radix_to_skip(radix); 579d027ed2eSAlan Cox i += radix; 580d027ed2eSAlan Cox } 581d027ed2eSAlan Cox update_gap_stats(stats, i); 582d027ed2eSAlan Cox dump_gap_stats(stats, s); 583d027ed2eSAlan Cox } 584d027ed2eSAlan Cox 5857090df5aSMatthew Dillon /************************************************************************ 5867090df5aSMatthew Dillon * ALLOCATION SUPPORT FUNCTIONS * 5877090df5aSMatthew Dillon ************************************************************************ 5887090df5aSMatthew Dillon * 5897090df5aSMatthew Dillon * These support functions do all the actual work. They may seem 5907090df5aSMatthew Dillon * rather longish, but that's because I've commented them up. The 5917090df5aSMatthew Dillon * actual code is straight forward. 5927090df5aSMatthew Dillon * 5937090df5aSMatthew Dillon */ 5947090df5aSMatthew Dillon 5957090df5aSMatthew Dillon /* 596bb4a27f9SMark Johnston * BLST_NEXT_LEAF_ALLOC() - allocate the first few blocks in the next leaf. 597bb4a27f9SMark Johnston * 598bb4a27f9SMark Johnston * 'scan' is a leaf node, associated with a block containing 'blk'. 599bb4a27f9SMark Johnston * The next leaf node could be adjacent, or several nodes away if the 600bb4a27f9SMark Johnston * least common ancestor of 'scan' and its neighbor is several levels 601bb4a27f9SMark Johnston * up. Use 'blk' to determine how many meta-nodes lie between the 602bb4a27f9SMark Johnston * leaves. If the next leaf has enough initial bits set, clear them 603bb4a27f9SMark Johnston * and clear the bits in the meta nodes on the path up to the least 604bb4a27f9SMark Johnston * common ancestor to mark any subtrees made completely empty. 605bb4a27f9SMark Johnston */ 606bb4a27f9SMark Johnston static int 607bb4a27f9SMark Johnston blst_next_leaf_alloc(blmeta_t *scan, daddr_t blk, int count) 608bb4a27f9SMark Johnston { 609bb4a27f9SMark Johnston blmeta_t *next; 610bb4a27f9SMark Johnston u_daddr_t radix; 611bb4a27f9SMark Johnston int digit; 612bb4a27f9SMark Johnston 613bb4a27f9SMark Johnston next = scan + 1; 614bb4a27f9SMark Johnston blk += BLIST_BMAP_RADIX; 615bb4a27f9SMark Johnston radix = BLIST_BMAP_RADIX; 616bb4a27f9SMark Johnston while ((digit = ((blk / radix) & BLIST_META_MASK)) == 0 && 617bb4a27f9SMark Johnston (next->bm_bitmap & 1) == 1) { 618bb4a27f9SMark Johnston next++; 619bb4a27f9SMark Johnston radix *= BLIST_META_RADIX; 620bb4a27f9SMark Johnston } 621bb4a27f9SMark Johnston if (((next->bm_bitmap + 1) & ~((u_daddr_t)-1 << count)) != 0) { 622bb4a27f9SMark Johnston /* 623bb4a27f9SMark Johnston * The next leaf doesn't have enough free blocks at the 624bb4a27f9SMark Johnston * beginning to complete the spanning allocation. 625bb4a27f9SMark Johnston */ 626bb4a27f9SMark Johnston return (ENOMEM); 627bb4a27f9SMark Johnston } 628bb4a27f9SMark Johnston /* Clear the first 'count' bits in the next leaf to allocate. */ 629bb4a27f9SMark Johnston next->bm_bitmap &= (u_daddr_t)-1 << count; 630bb4a27f9SMark Johnston 631bb4a27f9SMark Johnston /* 632bb4a27f9SMark Johnston * Update bitmaps of next-ancestors, up to least common ancestor. 633bb4a27f9SMark Johnston */ 634d1c34a6bSDoug Moore while (next->bm_bitmap == 0) { 635d1c34a6bSDoug Moore if (--next == scan) { 636d1c34a6bSDoug Moore scan[-digit * radix_to_skip(radix)].bm_bitmap ^= 637d1c34a6bSDoug Moore (u_daddr_t)1 << digit; 638d1c34a6bSDoug Moore break; 639bb4a27f9SMark Johnston } 640d1c34a6bSDoug Moore next->bm_bitmap ^= 1; 641d1c34a6bSDoug Moore } 642bb4a27f9SMark Johnston return (0); 643bb4a27f9SMark Johnston } 644bb4a27f9SMark Johnston 645bb4a27f9SMark Johnston /* 64609b380a1SDoug Moore * Given a bitmask, flip all the bits from the least-significant 1-bit to the 64709b380a1SDoug Moore * most significant bit. If the result is non-zero, then the least-significant 64809b380a1SDoug Moore * 1-bit of the result is in the same position as the least-signification 0-bit 64909b380a1SDoug Moore * in mask that is followed by a 1-bit. 65009b380a1SDoug Moore */ 65109b380a1SDoug Moore static inline u_daddr_t 65209b380a1SDoug Moore flip_hibits(u_daddr_t mask) 65309b380a1SDoug Moore { 65409b380a1SDoug Moore 65509b380a1SDoug Moore return (-mask & ~mask); 65609b380a1SDoug Moore } 65709b380a1SDoug Moore 65809b380a1SDoug Moore /* 659bb4a27f9SMark Johnston * BLST_LEAF_ALLOC() - allocate at a leaf in the radix tree (a bitmap). 6607090df5aSMatthew Dillon * 6612905d1ceSAlan Cox * This function is the core of the allocator. Its execution time is 6622905d1ceSAlan Cox * proportional to log(count), plus height of the tree if the allocation 6632905d1ceSAlan Cox * crosses a leaf boundary. 6647090df5aSMatthew Dillon */ 6657090df5aSMatthew Dillon static daddr_t 666ec371b57SAlan Cox blst_leaf_alloc(blmeta_t *scan, daddr_t blk, int count) 66754541421SAlan Cox { 6682905d1ceSAlan Cox u_daddr_t cursor_mask, mask; 669ec371b57SAlan Cox int count1, hi, lo, num_shifts, range1, range_ext; 6707090df5aSMatthew Dillon 67154541421SAlan Cox range1 = 0; 67254541421SAlan Cox count1 = count - 1; 67354541421SAlan Cox num_shifts = fls(count1); 674bb4a27f9SMark Johnston mask = scan->bm_bitmap; 67509b380a1SDoug Moore while (flip_hibits(mask) != 0 && num_shifts > 0) { 67654541421SAlan Cox /* 67754541421SAlan Cox * If bit i is set in mask, then bits in [i, i+range1] are set 6782905d1ceSAlan Cox * in scan->bm_bitmap. The value of range1 is equal to count1 6792905d1ceSAlan Cox * >> num_shifts. Grow range1 and reduce num_shifts to 0, 6802905d1ceSAlan Cox * while preserving these invariants. The updates to mask 6812905d1ceSAlan Cox * leave fewer bits set, but each bit that remains set 6822905d1ceSAlan Cox * represents a longer string of consecutive bits set in 6832905d1ceSAlan Cox * scan->bm_bitmap. If more updates to mask cannot clear more 6842905d1ceSAlan Cox * bits, because mask is partitioned with all 0 bits preceding 6852905d1ceSAlan Cox * all 1 bits, the loop terminates immediately. 68654541421SAlan Cox */ 68754541421SAlan Cox num_shifts--; 68854541421SAlan Cox range_ext = range1 + ((count1 >> num_shifts) & 1); 689ec371b57SAlan Cox /* 690ec371b57SAlan Cox * mask is a signed quantity for the shift because when it is 691ec371b57SAlan Cox * shifted right, the sign bit should copied; when the last 692ec371b57SAlan Cox * block of the leaf is free, pretend, for a while, that all the 693ec371b57SAlan Cox * blocks that follow it are also free. 694ec371b57SAlan Cox */ 695ec371b57SAlan Cox mask &= (daddr_t)mask >> range_ext; 69654541421SAlan Cox range1 += range_ext; 69754541421SAlan Cox } 69854541421SAlan Cox if (mask == 0) { 69954541421SAlan Cox /* 70054541421SAlan Cox * Update bighint. There is no allocation bigger than range1 701ec371b57SAlan Cox * starting in this leaf. 70254541421SAlan Cox */ 70354541421SAlan Cox scan->bm_bighint = range1; 7047090df5aSMatthew Dillon return (SWAPBLK_NONE); 7057090df5aSMatthew Dillon } 70654541421SAlan Cox 707ec371b57SAlan Cox /* Discard any candidates that appear before blk. */ 7082905d1ceSAlan Cox if ((blk & BLIST_BMAP_MASK) != 0) { 7092905d1ceSAlan Cox cursor_mask = mask & bitrange(0, blk & BLIST_BMAP_MASK); 7102905d1ceSAlan Cox if (cursor_mask != 0) { 7112905d1ceSAlan Cox mask ^= cursor_mask; 71254541421SAlan Cox if (mask == 0) 71354541421SAlan Cox return (SWAPBLK_NONE); 7147090df5aSMatthew Dillon 7157090df5aSMatthew Dillon /* 7162905d1ceSAlan Cox * Bighint change for last block allocation cannot 7172905d1ceSAlan Cox * assume that any other blocks are allocated, so the 7182905d1ceSAlan Cox * bighint cannot be reduced much. 7192905d1ceSAlan Cox */ 7202905d1ceSAlan Cox range1 = BLIST_MAX_ALLOC - 1; 7212905d1ceSAlan Cox } 7222905d1ceSAlan Cox blk &= ~BLIST_BMAP_MASK; 7232905d1ceSAlan Cox } 7242905d1ceSAlan Cox 7252905d1ceSAlan Cox /* 72654541421SAlan Cox * The least significant set bit in mask marks the start of the first 72754541421SAlan Cox * available range of sufficient size. Clear all the bits but that one, 728d027ed2eSAlan Cox * and then find its position. 7297090df5aSMatthew Dillon */ 73054541421SAlan Cox mask &= -mask; 731d027ed2eSAlan Cox lo = bitpos(mask); 7327090df5aSMatthew Dillon 733ec371b57SAlan Cox hi = lo + count; 734ec371b57SAlan Cox if (hi > BLIST_BMAP_RADIX) { 73554541421SAlan Cox /* 736ec371b57SAlan Cox * An allocation within this leaf is impossible, so a successful 737ec371b57SAlan Cox * allocation depends on the next leaf providing some of the blocks. 73854541421SAlan Cox */ 739bb4a27f9SMark Johnston if (blst_next_leaf_alloc(scan, blk, hi - BLIST_BMAP_RADIX) != 0) 740ec371b57SAlan Cox /* 741bb4a27f9SMark Johnston * The hint cannot be updated, because the same 742bb4a27f9SMark Johnston * allocation request could be satisfied later, by this 743bb4a27f9SMark Johnston * leaf, if the state of the next leaf changes, and 744bb4a27f9SMark Johnston * without any changes to this leaf. 745ec371b57SAlan Cox */ 746ec371b57SAlan Cox return (SWAPBLK_NONE); 747ec371b57SAlan Cox hi = BLIST_BMAP_RADIX; 748ec371b57SAlan Cox } 749ec371b57SAlan Cox 750ec371b57SAlan Cox /* Set the bits of mask at position 'lo' and higher. */ 751ec371b57SAlan Cox mask = -mask; 752ec371b57SAlan Cox if (hi == BLIST_BMAP_RADIX) { 753ec371b57SAlan Cox /* 754ec371b57SAlan Cox * Update bighint. There is no allocation bigger than range1 755ec371b57SAlan Cox * available in this leaf after this allocation completes. 756ec371b57SAlan Cox */ 757ec371b57SAlan Cox scan->bm_bighint = range1; 758ec371b57SAlan Cox } else { 759ec371b57SAlan Cox /* Clear the bits of mask at position 'hi' and higher. */ 760ec371b57SAlan Cox mask &= (u_daddr_t)-1 >> (BLIST_BMAP_RADIX - hi); 761ec371b57SAlan Cox } 762ec371b57SAlan Cox /* Clear the allocated bits from this leaf. */ 763bb4a27f9SMark Johnston scan->bm_bitmap &= ~mask; 7642905d1ceSAlan Cox return (blk + lo); 7657090df5aSMatthew Dillon } 7667090df5aSMatthew Dillon 7677090df5aSMatthew Dillon /* 7687090df5aSMatthew Dillon * blist_meta_alloc() - allocate at a meta in the radix tree. 7697090df5aSMatthew Dillon * 7707090df5aSMatthew Dillon * Attempt to allocate at a meta node. If we can't, we update 7717090df5aSMatthew Dillon * bighint and return a failure. Updating bighint optimize future 7727090df5aSMatthew Dillon * calls that hit this node. We have to check for our collapse cases 7737090df5aSMatthew Dillon * and we have a few optimizations strewn in as well. 7747090df5aSMatthew Dillon */ 7757090df5aSMatthew Dillon static daddr_t 776bee93d3cSAlan Cox blst_meta_alloc(blmeta_t *scan, daddr_t cursor, daddr_t count, u_daddr_t radix) 777d4e3484bSAlan Cox { 778bb4a27f9SMark Johnston daddr_t blk, i, r, skip; 779bb4a27f9SMark Johnston u_daddr_t bit, mask; 780d4e3484bSAlan Cox bool scan_from_start; 781bb4a27f9SMark Johnston int digit; 7827090df5aSMatthew Dillon 783a396c83aSAlan Cox if (radix == BLIST_BMAP_RADIX) 784ec371b57SAlan Cox return (blst_leaf_alloc(scan, cursor, count)); 785ec371b57SAlan Cox blk = cursor & -radix; 786bb4a27f9SMark Johnston scan_from_start = (cursor == blk); 787bb4a27f9SMark Johnston radix /= BLIST_META_RADIX; 7882ac0c7c3SAlan Cox skip = radix_to_skip(radix); 789bb4a27f9SMark Johnston mask = scan->bm_bitmap; 790bb4a27f9SMark Johnston 791bb4a27f9SMark Johnston /* Discard any candidates that appear before cursor. */ 792bb4a27f9SMark Johnston digit = (cursor / radix) & BLIST_META_MASK; 793bb4a27f9SMark Johnston mask &= (u_daddr_t)-1 << digit; 794ee73fef9SAlan Cox if (mask == 0) 795ee73fef9SAlan Cox return (SWAPBLK_NONE); 7967090df5aSMatthew Dillon 7974be4fd5dSAlan Cox /* 798bb4a27f9SMark Johnston * If the first try is for a block that includes the cursor, pre-undo 799bb4a27f9SMark Johnston * the digit * radix offset in the first call; otherwise, ignore the 800bb4a27f9SMark Johnston * cursor entirely. 8014be4fd5dSAlan Cox */ 802bb4a27f9SMark Johnston if (((mask >> digit) & 1) == 1) 803bb4a27f9SMark Johnston cursor -= digit * radix; 804d4e3484bSAlan Cox else 805bb4a27f9SMark Johnston cursor = blk; 8067090df5aSMatthew Dillon 8074be4fd5dSAlan Cox /* 808bb4a27f9SMark Johnston * Examine the nonempty subtree associated with each bit set in mask. 8094be4fd5dSAlan Cox */ 810bb4a27f9SMark Johnston do { 811bb4a27f9SMark Johnston bit = mask & -mask; 812bb4a27f9SMark Johnston digit = bitpos(bit); 813bb4a27f9SMark Johnston i = 1 + digit * skip; 8147090df5aSMatthew Dillon if (count <= scan[i].bm_bighint) { 8157090df5aSMatthew Dillon /* 816ec371b57SAlan Cox * The allocation might fit beginning in the i'th subtree. 8177090df5aSMatthew Dillon */ 818bb4a27f9SMark Johnston r = blst_meta_alloc(&scan[i], cursor + digit * radix, 819bb4a27f9SMark Johnston count, radix); 8207090df5aSMatthew Dillon if (r != SWAPBLK_NONE) { 821bb4a27f9SMark Johnston if (scan[i].bm_bitmap == 0) 822bb4a27f9SMark Johnston scan->bm_bitmap ^= bit; 8237090df5aSMatthew Dillon return (r); 8247090df5aSMatthew Dillon } 8257090df5aSMatthew Dillon } 826bb4a27f9SMark Johnston cursor = blk; 827bb4a27f9SMark Johnston } while ((mask ^= bit) != 0); 8287090df5aSMatthew Dillon 8297090df5aSMatthew Dillon /* 830bb4a27f9SMark Johnston * We couldn't allocate count in this subtree. If the whole tree was 831bb4a27f9SMark Johnston * scanned, and the last tree node is allocated, update bighint. 8327090df5aSMatthew Dillon */ 833bb4a27f9SMark Johnston if (scan_from_start && !(digit == BLIST_META_RADIX - 1 && 834bb4a27f9SMark Johnston scan[i].bm_bighint == BLIST_MAX_ALLOC)) 8357090df5aSMatthew Dillon scan->bm_bighint = count - 1; 836d4e3484bSAlan Cox 8377090df5aSMatthew Dillon return (SWAPBLK_NONE); 8387090df5aSMatthew Dillon } 8397090df5aSMatthew Dillon 8407090df5aSMatthew Dillon /* 8417090df5aSMatthew Dillon * BLST_LEAF_FREE() - free allocated block from leaf bitmap 8427090df5aSMatthew Dillon * 8437090df5aSMatthew Dillon */ 8447090df5aSMatthew Dillon static void 845b411efa4SAlan Cox blst_leaf_free(blmeta_t *scan, daddr_t blk, int count) 846b411efa4SAlan Cox { 847ec371b57SAlan Cox u_daddr_t mask; 848ec371b57SAlan Cox 8497090df5aSMatthew Dillon /* 8507090df5aSMatthew Dillon * free some data in this bitmap 851ec371b57SAlan Cox * mask=0000111111111110000 8527090df5aSMatthew Dillon * \_________/\__/ 853ec371b57SAlan Cox * count n 8547090df5aSMatthew Dillon */ 855bb4a27f9SMark Johnston mask = bitrange(blk & BLIST_BMAP_MASK, count); 856b1f59c92SDoug Moore KASSERT((scan->bm_bitmap & mask) == 0, 857b1f59c92SDoug Moore ("freeing free block: %jx, size %d, mask %jx", 858b1f59c92SDoug Moore (uintmax_t)blk, count, (uintmax_t)scan->bm_bitmap & mask)); 859bb4a27f9SMark Johnston scan->bm_bitmap |= mask; 8607090df5aSMatthew Dillon } 8617090df5aSMatthew Dillon 8627090df5aSMatthew Dillon /* 8637090df5aSMatthew Dillon * BLST_META_FREE() - free allocated blocks from radix tree meta info 8647090df5aSMatthew Dillon * 8657090df5aSMatthew Dillon * This support routine frees a range of blocks from the bitmap. 8667090df5aSMatthew Dillon * The range must be entirely enclosed by this radix node. If a 8677090df5aSMatthew Dillon * meta node, we break the range down recursively to free blocks 8687090df5aSMatthew Dillon * in subnodes (which means that this code can free an arbitrary 8697090df5aSMatthew Dillon * range whereas the allocation code cannot allocate an arbitrary 8707090df5aSMatthew Dillon * range). 8717090df5aSMatthew Dillon */ 8727090df5aSMatthew Dillon static void 873bee93d3cSAlan Cox blst_meta_free(blmeta_t *scan, daddr_t freeBlk, daddr_t count, u_daddr_t radix) 874d3783724SAlan Cox { 875bb4a27f9SMark Johnston daddr_t blk, endBlk, i, skip; 876bb4a27f9SMark Johnston int digit, endDigit; 8777090df5aSMatthew Dillon 878bb4a27f9SMark Johnston /* 879bb4a27f9SMark Johnston * We could probably do a better job here. We are required to make 880bb4a27f9SMark Johnston * bighint at least as large as the biggest allocable block of data. 881bb4a27f9SMark Johnston * If we just shoehorn it, a little extra overhead will be incurred 882bb4a27f9SMark Johnston * on the next allocation (but only that one typically). 883bb4a27f9SMark Johnston */ 884bb4a27f9SMark Johnston scan->bm_bighint = BLIST_MAX_ALLOC; 885bb4a27f9SMark Johnston 886a396c83aSAlan Cox if (radix == BLIST_BMAP_RADIX) 887a396c83aSAlan Cox return (blst_leaf_free(scan, freeBlk, count)); 8887090df5aSMatthew Dillon 889bb4a27f9SMark Johnston endBlk = ummin(freeBlk + count, (freeBlk + radix) & -radix); 89057e6d29bSMatthew Dillon radix /= BLIST_META_RADIX; 891bb4a27f9SMark Johnston skip = radix_to_skip(radix); 892bb4a27f9SMark Johnston blk = freeBlk & -radix; 893bb4a27f9SMark Johnston digit = (blk / radix) & BLIST_META_MASK; 894bb4a27f9SMark Johnston endDigit = 1 + (((endBlk - 1) / radix) & BLIST_META_MASK); 895bb4a27f9SMark Johnston scan->bm_bitmap |= bitrange(digit, endDigit - digit); 896bb4a27f9SMark Johnston for (i = 1 + digit * skip; blk < endBlk; i += skip) { 8977090df5aSMatthew Dillon blk += radix; 898bb4a27f9SMark Johnston count = ummin(blk, endBlk) - freeBlk; 899bb4a27f9SMark Johnston blst_meta_free(&scan[i], freeBlk, count, radix); 900bb4a27f9SMark Johnston freeBlk = blk; 9017090df5aSMatthew Dillon } 9027090df5aSMatthew Dillon } 9037090df5aSMatthew Dillon 9047090df5aSMatthew Dillon /* 905bb4a27f9SMark Johnston * BLST_COPY() - copy one radix tree to another 9067090df5aSMatthew Dillon * 9077090df5aSMatthew Dillon * Locates free space in the source tree and frees it in the destination 9087090df5aSMatthew Dillon * tree. The space may not already be free in the destination. 9097090df5aSMatthew Dillon */ 910b411efa4SAlan Cox static void 9112ac0c7c3SAlan Cox blst_copy(blmeta_t *scan, daddr_t blk, daddr_t radix, blist_t dest, 9122ac0c7c3SAlan Cox daddr_t count) 913b411efa4SAlan Cox { 914bb4a27f9SMark Johnston daddr_t endBlk, i, skip; 9157090df5aSMatthew Dillon 9167090df5aSMatthew Dillon /* 9177090df5aSMatthew Dillon * Leaf node 9187090df5aSMatthew Dillon */ 9197090df5aSMatthew Dillon 9207090df5aSMatthew Dillon if (radix == BLIST_BMAP_RADIX) { 921bb4a27f9SMark Johnston u_daddr_t v = scan->bm_bitmap; 9227090df5aSMatthew Dillon 9237090df5aSMatthew Dillon if (v == (u_daddr_t)-1) { 9247090df5aSMatthew Dillon blist_free(dest, blk, count); 9257090df5aSMatthew Dillon } else if (v != 0) { 9267090df5aSMatthew Dillon int i; 9277090df5aSMatthew Dillon 928bb4a27f9SMark Johnston for (i = 0; i < count; ++i) { 929064650c1SAlan Cox if (v & ((u_daddr_t)1 << i)) 9307090df5aSMatthew Dillon blist_free(dest, blk + i, 1); 9317090df5aSMatthew Dillon } 9327090df5aSMatthew Dillon } 9337090df5aSMatthew Dillon return; 9347090df5aSMatthew Dillon } 9357090df5aSMatthew Dillon 9367090df5aSMatthew Dillon /* 9377090df5aSMatthew Dillon * Meta node 9387090df5aSMatthew Dillon */ 9397090df5aSMatthew Dillon 940bb4a27f9SMark Johnston if (scan->bm_bitmap == 0) { 9417090df5aSMatthew Dillon /* 9427090df5aSMatthew Dillon * Source all allocated, leave dest allocated 9437090df5aSMatthew Dillon */ 9447090df5aSMatthew Dillon return; 9457090df5aSMatthew Dillon } 9467090df5aSMatthew Dillon 947bb4a27f9SMark Johnston endBlk = blk + count; 9482ac0c7c3SAlan Cox radix /= BLIST_META_RADIX; 949bb4a27f9SMark Johnston skip = radix_to_skip(radix); 950bb4a27f9SMark Johnston for (i = 1; blk < endBlk; i += skip) { 9517090df5aSMatthew Dillon blk += radix; 952bb4a27f9SMark Johnston count = radix; 953bb4a27f9SMark Johnston if (blk >= endBlk) 954bb4a27f9SMark Johnston count -= blk - endBlk; 955bb4a27f9SMark Johnston blst_copy(&scan[i], blk - radix, radix, dest, count); 9567090df5aSMatthew Dillon } 9577090df5aSMatthew Dillon } 9587090df5aSMatthew Dillon 9597090df5aSMatthew Dillon /* 96092da00bbSMatthew Dillon * BLST_LEAF_FILL() - allocate specific blocks in leaf bitmap 96192da00bbSMatthew Dillon * 96292da00bbSMatthew Dillon * This routine allocates all blocks in the specified range 96392da00bbSMatthew Dillon * regardless of any existing allocations in that range. Returns 96492da00bbSMatthew Dillon * the number of blocks allocated by the call. 96592da00bbSMatthew Dillon */ 966a7249a6cSAlan Cox static daddr_t 96792da00bbSMatthew Dillon blst_leaf_fill(blmeta_t *scan, daddr_t blk, int count) 96892da00bbSMatthew Dillon { 969a7249a6cSAlan Cox daddr_t nblks; 9704be4fd5dSAlan Cox u_daddr_t mask; 97192da00bbSMatthew Dillon 972bb4a27f9SMark Johnston mask = bitrange(blk & BLIST_BMAP_MASK, count); 97392da00bbSMatthew Dillon 9744be4fd5dSAlan Cox /* Count the number of blocks that we are allocating. */ 975bb4a27f9SMark Johnston nblks = bitcount64(scan->bm_bitmap & mask); 97692da00bbSMatthew Dillon 977bb4a27f9SMark Johnston scan->bm_bitmap &= ~mask; 9784be4fd5dSAlan Cox return (nblks); 97992da00bbSMatthew Dillon } 98092da00bbSMatthew Dillon 98192da00bbSMatthew Dillon /* 98292da00bbSMatthew Dillon * BLIST_META_FILL() - allocate specific blocks at a meta node 98392da00bbSMatthew Dillon * 98492da00bbSMatthew Dillon * This routine allocates the specified range of blocks, 98592da00bbSMatthew Dillon * regardless of any existing allocations in the range. The 98692da00bbSMatthew Dillon * range must be within the extent of this node. Returns the 98792da00bbSMatthew Dillon * number of blocks allocated by the call. 98892da00bbSMatthew Dillon */ 989a7249a6cSAlan Cox static daddr_t 990bee93d3cSAlan Cox blst_meta_fill(blmeta_t *scan, daddr_t allocBlk, daddr_t count, u_daddr_t radix) 991d3783724SAlan Cox { 992bb4a27f9SMark Johnston daddr_t blk, endBlk, i, nblks, skip; 993bb4a27f9SMark Johnston int digit; 99492da00bbSMatthew Dillon 995a396c83aSAlan Cox if (radix == BLIST_BMAP_RADIX) 996a396c83aSAlan Cox return (blst_leaf_fill(scan, allocBlk, count)); 997bb4a27f9SMark Johnston 998bb4a27f9SMark Johnston endBlk = ummin(allocBlk + count, (allocBlk + radix) & -radix); 999bb4a27f9SMark Johnston radix /= BLIST_META_RADIX; 10002ac0c7c3SAlan Cox skip = radix_to_skip(radix); 1001bee93d3cSAlan Cox blk = allocBlk & -radix; 1002d3783724SAlan Cox nblks = 0; 1003bb4a27f9SMark Johnston while (blk < endBlk) { 1004bb4a27f9SMark Johnston digit = (blk / radix) & BLIST_META_MASK; 1005bb4a27f9SMark Johnston i = 1 + digit * skip; 100692da00bbSMatthew Dillon blk += radix; 1007bb4a27f9SMark Johnston count = ummin(blk, endBlk) - allocBlk; 1008bb4a27f9SMark Johnston nblks += blst_meta_fill(&scan[i], allocBlk, count, radix); 1009bb4a27f9SMark Johnston if (scan[i].bm_bitmap == 0) 1010bb4a27f9SMark Johnston scan->bm_bitmap &= ~((u_daddr_t)1 << digit); 1011bb4a27f9SMark Johnston allocBlk = blk; 101292da00bbSMatthew Dillon } 1013a396c83aSAlan Cox return (nblks); 101492da00bbSMatthew Dillon } 101592da00bbSMatthew Dillon 10167090df5aSMatthew Dillon #ifdef BLIST_DEBUG 10177090df5aSMatthew Dillon 10187090df5aSMatthew Dillon static void 10192ac0c7c3SAlan Cox blst_radix_print(blmeta_t *scan, daddr_t blk, daddr_t radix, int tab) 10207090df5aSMatthew Dillon { 1021bb4a27f9SMark Johnston daddr_t skip; 1022bb4a27f9SMark Johnston u_daddr_t bit, mask; 1023bb4a27f9SMark Johnston int digit; 10247090df5aSMatthew Dillon 10257090df5aSMatthew Dillon if (radix == BLIST_BMAP_RADIX) { 10267090df5aSMatthew Dillon printf( 1027bb4a27f9SMark Johnston "%*.*s(%08llx,%lld): bitmap %0*llx big=%lld\n", 10287090df5aSMatthew Dillon tab, tab, "", 102992da00bbSMatthew Dillon (long long)blk, (long long)radix, 1030bb4a27f9SMark Johnston 1 + (BLIST_BMAP_RADIX - 1) / 4, 1031bb4a27f9SMark Johnston (long long)scan->bm_bitmap, 103292da00bbSMatthew Dillon (long long)scan->bm_bighint 10337090df5aSMatthew Dillon ); 10347090df5aSMatthew Dillon return; 10357090df5aSMatthew Dillon } 10367090df5aSMatthew Dillon 10377090df5aSMatthew Dillon printf( 1038bb4a27f9SMark Johnston "%*.*s(%08llx): subtree (%lld/%lld) bitmap %0*llx big=%lld {\n", 10397090df5aSMatthew Dillon tab, tab, "", 104092da00bbSMatthew Dillon (long long)blk, (long long)radix, 104192da00bbSMatthew Dillon (long long)radix, 1042bb4a27f9SMark Johnston 1 + (BLIST_META_RADIX - 1) / 4, 1043bb4a27f9SMark Johnston (long long)scan->bm_bitmap, 104492da00bbSMatthew Dillon (long long)scan->bm_bighint 10457090df5aSMatthew Dillon ); 10467090df5aSMatthew Dillon 10472ac0c7c3SAlan Cox radix /= BLIST_META_RADIX; 1048bb4a27f9SMark Johnston skip = radix_to_skip(radix); 10497090df5aSMatthew Dillon tab += 4; 10507090df5aSMatthew Dillon 1051bb4a27f9SMark Johnston mask = scan->bm_bitmap; 1052bb4a27f9SMark Johnston /* Examine the nonempty subtree associated with each bit set in mask */ 1053bb4a27f9SMark Johnston do { 1054bb4a27f9SMark Johnston bit = mask & -mask; 1055bb4a27f9SMark Johnston digit = bitpos(bit); 1056bb4a27f9SMark Johnston blst_radix_print(&scan[1 + digit * skip], blk + digit * radix, 1057bb4a27f9SMark Johnston radix, tab); 1058bb4a27f9SMark Johnston } while ((mask ^= bit) != 0); 10597090df5aSMatthew Dillon tab -= 4; 10607090df5aSMatthew Dillon 10617090df5aSMatthew Dillon printf( 10627090df5aSMatthew Dillon "%*.*s}\n", 10637090df5aSMatthew Dillon tab, tab, "" 10647090df5aSMatthew Dillon ); 10657090df5aSMatthew Dillon } 10667090df5aSMatthew Dillon 10677090df5aSMatthew Dillon #endif 10687090df5aSMatthew Dillon 10697090df5aSMatthew Dillon #ifdef BLIST_DEBUG 10707090df5aSMatthew Dillon 10717090df5aSMatthew Dillon int 10727090df5aSMatthew Dillon main(int ac, char **av) 10737090df5aSMatthew Dillon { 1074bb4a27f9SMark Johnston int size = BLIST_META_RADIX * BLIST_BMAP_RADIX; 10757090df5aSMatthew Dillon int i; 10767090df5aSMatthew Dillon blist_t bl; 1077d027ed2eSAlan Cox struct sbuf *s; 10787090df5aSMatthew Dillon 10797090df5aSMatthew Dillon for (i = 1; i < ac; ++i) { 10807090df5aSMatthew Dillon const char *ptr = av[i]; 10817090df5aSMatthew Dillon if (*ptr != '-') { 10827090df5aSMatthew Dillon size = strtol(ptr, NULL, 0); 10837090df5aSMatthew Dillon continue; 10847090df5aSMatthew Dillon } 10857090df5aSMatthew Dillon ptr += 2; 10867090df5aSMatthew Dillon fprintf(stderr, "Bad option: %s\n", ptr - 2); 10877090df5aSMatthew Dillon exit(1); 10887090df5aSMatthew Dillon } 1089c8c7ad92SKip Macy bl = blist_create(size, M_WAITOK); 10907090df5aSMatthew Dillon blist_free(bl, 0, size); 10917090df5aSMatthew Dillon 10927090df5aSMatthew Dillon for (;;) { 10937090df5aSMatthew Dillon char buf[1024]; 1094d90bf7d8SAlan Cox long long da = 0; 1095d90bf7d8SAlan Cox long long count = 0; 10967090df5aSMatthew Dillon 10974be4fd5dSAlan Cox printf("%lld/%lld/%lld> ", (long long)blist_avail(bl), 109892da00bbSMatthew Dillon (long long)size, (long long)bl->bl_radix); 10997090df5aSMatthew Dillon fflush(stdout); 11007090df5aSMatthew Dillon if (fgets(buf, sizeof(buf), stdin) == NULL) 11017090df5aSMatthew Dillon break; 11027090df5aSMatthew Dillon switch(buf[0]) { 11037090df5aSMatthew Dillon case 'r': 110492da00bbSMatthew Dillon if (sscanf(buf + 1, "%lld", &count) == 1) { 1105d90bf7d8SAlan Cox blist_resize(&bl, count, 1, M_WAITOK); 11067090df5aSMatthew Dillon } else { 11077090df5aSMatthew Dillon printf("?\n"); 11087090df5aSMatthew Dillon } 11097090df5aSMatthew Dillon case 'p': 11107090df5aSMatthew Dillon blist_print(bl); 11117090df5aSMatthew Dillon break; 1112d027ed2eSAlan Cox case 's': 1113d027ed2eSAlan Cox s = sbuf_new_auto(); 1114d027ed2eSAlan Cox blist_stats(bl, s); 1115d027ed2eSAlan Cox sbuf_finish(s); 1116d027ed2eSAlan Cox printf("%s", sbuf_data(s)); 1117d027ed2eSAlan Cox sbuf_delete(s); 1118d027ed2eSAlan Cox break; 11197090df5aSMatthew Dillon case 'a': 112092da00bbSMatthew Dillon if (sscanf(buf + 1, "%lld", &count) == 1) { 11217090df5aSMatthew Dillon daddr_t blk = blist_alloc(bl, count); 112292da00bbSMatthew Dillon printf(" R=%08llx\n", (long long)blk); 11237090df5aSMatthew Dillon } else { 11247090df5aSMatthew Dillon printf("?\n"); 11257090df5aSMatthew Dillon } 11267090df5aSMatthew Dillon break; 11277090df5aSMatthew Dillon case 'f': 1128d90bf7d8SAlan Cox if (sscanf(buf + 1, "%llx %lld", &da, &count) == 2) { 11297090df5aSMatthew Dillon blist_free(bl, da, count); 11307090df5aSMatthew Dillon } else { 11317090df5aSMatthew Dillon printf("?\n"); 11327090df5aSMatthew Dillon } 11337090df5aSMatthew Dillon break; 113492da00bbSMatthew Dillon case 'l': 1135d90bf7d8SAlan Cox if (sscanf(buf + 1, "%llx %lld", &da, &count) == 2) { 1136a7249a6cSAlan Cox printf(" n=%jd\n", 1137a7249a6cSAlan Cox (intmax_t)blist_fill(bl, da, count)); 113892da00bbSMatthew Dillon } else { 113992da00bbSMatthew Dillon printf("?\n"); 114092da00bbSMatthew Dillon } 114192da00bbSMatthew Dillon break; 11427090df5aSMatthew Dillon case '?': 11437090df5aSMatthew Dillon case 'h': 11447090df5aSMatthew Dillon puts( 11457090df5aSMatthew Dillon "p -print\n" 1146d027ed2eSAlan Cox "s -stats\n" 11477090df5aSMatthew Dillon "a %d -allocate\n" 11487090df5aSMatthew Dillon "f %x %d -free\n" 114992da00bbSMatthew Dillon "l %x %d -fill\n" 11507090df5aSMatthew Dillon "r %d -resize\n" 1151*d4808c44SDoug Moore "h/? -help\n" 1152*d4808c44SDoug Moore "q -quit" 11537090df5aSMatthew Dillon ); 11547090df5aSMatthew Dillon break; 1155*d4808c44SDoug Moore case 'q': 1156*d4808c44SDoug Moore break; 11577090df5aSMatthew Dillon default: 11587090df5aSMatthew Dillon printf("?\n"); 11597090df5aSMatthew Dillon break; 11607090df5aSMatthew Dillon } 1161*d4808c44SDoug Moore if (buf[0] == 'q') 1162*d4808c44SDoug Moore break; 11637090df5aSMatthew Dillon } 11647090df5aSMatthew Dillon return (0); 11657090df5aSMatthew Dillon } 11667090df5aSMatthew Dillon 11677090df5aSMatthew Dillon #endif 1168