1099a0e58SBosko Milekic /*- 28a36da99SPedro F. Giffuni * SPDX-License-Identifier: BSD-2-Clause-FreeBSD 38a36da99SPedro F. Giffuni * 48076cb52SBosko Milekic * Copyright (c) 2004, 2005, 58076cb52SBosko Milekic * Bosko Milekic <bmilekic@FreeBSD.org>. All rights reserved. 6099a0e58SBosko Milekic * 7099a0e58SBosko Milekic * Redistribution and use in source and binary forms, with or without 8099a0e58SBosko Milekic * modification, are permitted provided that the following conditions 9099a0e58SBosko Milekic * are met: 10099a0e58SBosko Milekic * 1. Redistributions of source code must retain the above copyright 11099a0e58SBosko Milekic * notice unmodified, this list of conditions and the following 12099a0e58SBosko Milekic * disclaimer. 13099a0e58SBosko Milekic * 2. Redistributions in binary form must reproduce the above copyright 14099a0e58SBosko Milekic * notice, this list of conditions and the following disclaimer in the 15099a0e58SBosko Milekic * documentation and/or other materials provided with the distribution. 16099a0e58SBosko Milekic * 17099a0e58SBosko Milekic * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 18099a0e58SBosko Milekic * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 19099a0e58SBosko Milekic * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 20099a0e58SBosko Milekic * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 21099a0e58SBosko Milekic * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 22099a0e58SBosko Milekic * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 23099a0e58SBosko Milekic * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 24099a0e58SBosko Milekic * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 25099a0e58SBosko Milekic * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 26099a0e58SBosko Milekic * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 27099a0e58SBosko Milekic * SUCH DAMAGE. 28099a0e58SBosko Milekic */ 29099a0e58SBosko Milekic 30099a0e58SBosko Milekic #include <sys/cdefs.h> 31099a0e58SBosko Milekic __FBSDID("$FreeBSD$"); 32099a0e58SBosko Milekic 33099a0e58SBosko Milekic #include "opt_param.h" 34099a0e58SBosko Milekic 35099a0e58SBosko Milekic #include <sys/param.h> 363937ee75SConrad Meyer #include <sys/conf.h> 379978bd99SMark Johnston #include <sys/domainset.h> 38099a0e58SBosko Milekic #include <sys/malloc.h> 39099a0e58SBosko Milekic #include <sys/systm.h> 40099a0e58SBosko Milekic #include <sys/mbuf.h> 41099a0e58SBosko Milekic #include <sys/domain.h> 42099a0e58SBosko Milekic #include <sys/eventhandler.h> 43099a0e58SBosko Milekic #include <sys/kernel.h> 445475ca5aSMark Johnston #include <sys/limits.h> 4554503a13SJonathan T. Looney #include <sys/lock.h> 4654503a13SJonathan T. Looney #include <sys/mutex.h> 47099a0e58SBosko Milekic #include <sys/protosw.h> 4882334850SJohn Baldwin #include <sys/sf_buf.h> 49099a0e58SBosko Milekic #include <sys/smp.h> 50fb3bc596SJohn Baldwin #include <sys/socket.h> 51099a0e58SBosko Milekic #include <sys/sysctl.h> 52099a0e58SBosko Milekic 53fb3bc596SJohn Baldwin #include <net/if.h> 54fb3bc596SJohn Baldwin #include <net/if_var.h> 55fb3bc596SJohn Baldwin 56099a0e58SBosko Milekic #include <vm/vm.h> 57c45c0034SAlan Cox #include <vm/vm_extern.h> 58c45c0034SAlan Cox #include <vm/vm_kern.h> 59099a0e58SBosko Milekic #include <vm/vm_page.h> 6037140716SAndre Oppermann #include <vm/vm_map.h> 61099a0e58SBosko Milekic #include <vm/uma.h> 62121f0509SMike Silbersack #include <vm/uma_dbg.h> 63099a0e58SBosko Milekic 64099a0e58SBosko Milekic /* 65099a0e58SBosko Milekic * In FreeBSD, Mbufs and Mbuf Clusters are allocated from UMA 66099a0e58SBosko Milekic * Zones. 67099a0e58SBosko Milekic * 68099a0e58SBosko Milekic * Mbuf Clusters (2K, contiguous) are allocated from the Cluster 69099a0e58SBosko Milekic * Zone. The Zone can be capped at kern.ipc.nmbclusters, if the 70099a0e58SBosko Milekic * administrator so desires. 71099a0e58SBosko Milekic * 72099a0e58SBosko Milekic * Mbufs are allocated from a UMA Master Zone called the Mbuf 73099a0e58SBosko Milekic * Zone. 74099a0e58SBosko Milekic * 75099a0e58SBosko Milekic * Additionally, FreeBSD provides a Packet Zone, which it 76099a0e58SBosko Milekic * configures as a Secondary Zone to the Mbuf Master Zone, 77099a0e58SBosko Milekic * thus sharing backend Slab kegs with the Mbuf Master Zone. 78099a0e58SBosko Milekic * 79099a0e58SBosko Milekic * Thus common-case allocations and locking are simplified: 80099a0e58SBosko Milekic * 81099a0e58SBosko Milekic * m_clget() m_getcl() 82099a0e58SBosko Milekic * | | 83099a0e58SBosko Milekic * | .------------>[(Packet Cache)] m_get(), m_gethdr() 84099a0e58SBosko Milekic * | | [ Packet ] | 85099a0e58SBosko Milekic * [(Cluster Cache)] [ Secondary ] [ (Mbuf Cache) ] 86099a0e58SBosko Milekic * [ Cluster Zone ] [ Zone ] [ Mbuf Master Zone ] 87099a0e58SBosko Milekic * | \________ | 88099a0e58SBosko Milekic * [ Cluster Keg ] \ / 89099a0e58SBosko Milekic * | [ Mbuf Keg ] 90099a0e58SBosko Milekic * [ Cluster Slabs ] | 91099a0e58SBosko Milekic * | [ Mbuf Slabs ] 92099a0e58SBosko Milekic * \____________(VM)_________________/ 9356a4e45aSAndre Oppermann * 9456a4e45aSAndre Oppermann * 95fcf90618SGleb Smirnoff * Whenever an object is allocated with uma_zalloc() out of 9656a4e45aSAndre Oppermann * one of the Zones its _ctor_ function is executed. The same 97fcf90618SGleb Smirnoff * for any deallocation through uma_zfree() the _dtor_ function 9856a4e45aSAndre Oppermann * is executed. 9956a4e45aSAndre Oppermann * 10056a4e45aSAndre Oppermann * Caches are per-CPU and are filled from the Master Zone. 10156a4e45aSAndre Oppermann * 102fcf90618SGleb Smirnoff * Whenever an object is allocated from the underlying global 10356a4e45aSAndre Oppermann * memory pool it gets pre-initialized with the _zinit_ functions. 104e3043798SPedro F. Giffuni * When the Keg's are overfull objects get decommissioned with 10556a4e45aSAndre Oppermann * _zfini_ functions and free'd back to the global memory pool. 10656a4e45aSAndre Oppermann * 107099a0e58SBosko Milekic */ 108099a0e58SBosko Milekic 109ead46972SAndre Oppermann int nmbufs; /* limits number of mbufs */ 11056a4e45aSAndre Oppermann int nmbclusters; /* limits number of mbuf clusters */ 111ec63cb90SAndre Oppermann int nmbjumbop; /* limits number of page size jumbo clusters */ 11256a4e45aSAndre Oppermann int nmbjumbo9; /* limits number of 9k jumbo clusters */ 11356a4e45aSAndre Oppermann int nmbjumbo16; /* limits number of 16k jumbo clusters */ 114099a0e58SBosko Milekic 115*cec06a3eSJohn Baldwin bool mb_use_ext_pgs; /* use EXT_PGS mbufs for sendfile */ 116*cec06a3eSJohn Baldwin SYSCTL_BOOL(_kern_ipc, OID_AUTO, mb_use_ext_pgs, CTLFLAG_RWTUN, 117*cec06a3eSJohn Baldwin &mb_use_ext_pgs, 0, 118*cec06a3eSJohn Baldwin "Use unmapped mbufs for sendfile(2)"); 119*cec06a3eSJohn Baldwin 120e0c00addSAndre Oppermann static quad_t maxmbufmem; /* overall real memory limit for all mbufs */ 121e0c00addSAndre Oppermann 122af3b2549SHans Petter Selasky SYSCTL_QUAD(_kern_ipc, OID_AUTO, maxmbufmem, CTLFLAG_RDTUN | CTLFLAG_NOFETCH, &maxmbufmem, 0, 123b6f49c23SHiren Panchasara "Maximum real memory allocatable to various mbuf types"); 124e0c00addSAndre Oppermann 125fb3bc596SJohn Baldwin static counter_u64_t snd_tag_count; 126fb3bc596SJohn Baldwin SYSCTL_COUNTER_U64(_kern_ipc, OID_AUTO, num_snd_tags, CTLFLAG_RW, 127fb3bc596SJohn Baldwin &snd_tag_count, "# of active mbuf send tags"); 128fb3bc596SJohn Baldwin 12962938659SBjoern A. Zeeb /* 13037140716SAndre Oppermann * tunable_mbinit() has to be run before any mbuf allocations are done. 13162938659SBjoern A. Zeeb */ 132099a0e58SBosko Milekic static void 133099a0e58SBosko Milekic tunable_mbinit(void *dummy) 134099a0e58SBosko Milekic { 135e0c00addSAndre Oppermann quad_t realmem; 13637140716SAndre Oppermann 13737140716SAndre Oppermann /* 13837140716SAndre Oppermann * The default limit for all mbuf related memory is 1/2 of all 13937140716SAndre Oppermann * available kernel memory (physical or kmem). 14037140716SAndre Oppermann * At most it can be 3/4 of available kernel memory. 14137140716SAndre Oppermann */ 1425df87b21SJeff Roberson realmem = qmin((quad_t)physmem * PAGE_SIZE, vm_kmem_size); 14337140716SAndre Oppermann maxmbufmem = realmem / 2; 144e0c00addSAndre Oppermann TUNABLE_QUAD_FETCH("kern.ipc.maxmbufmem", &maxmbufmem); 14537140716SAndre Oppermann if (maxmbufmem > realmem / 4 * 3) 14637140716SAndre Oppermann maxmbufmem = realmem / 4 * 3; 147099a0e58SBosko Milekic 148812302c3SNavdeep Parhar TUNABLE_INT_FETCH("kern.ipc.nmbclusters", &nmbclusters); 149416a434cSAndre Oppermann if (nmbclusters == 0) 150416a434cSAndre Oppermann nmbclusters = maxmbufmem / MCLBYTES / 4; 151812302c3SNavdeep Parhar 152812302c3SNavdeep Parhar TUNABLE_INT_FETCH("kern.ipc.nmbjumbop", &nmbjumbop); 153812302c3SNavdeep Parhar if (nmbjumbop == 0) 154416a434cSAndre Oppermann nmbjumbop = maxmbufmem / MJUMPAGESIZE / 4; 155812302c3SNavdeep Parhar 156812302c3SNavdeep Parhar TUNABLE_INT_FETCH("kern.ipc.nmbjumbo9", &nmbjumbo9); 157812302c3SNavdeep Parhar if (nmbjumbo9 == 0) 158416a434cSAndre Oppermann nmbjumbo9 = maxmbufmem / MJUM9BYTES / 6; 159812302c3SNavdeep Parhar 160812302c3SNavdeep Parhar TUNABLE_INT_FETCH("kern.ipc.nmbjumbo16", &nmbjumbo16); 161812302c3SNavdeep Parhar if (nmbjumbo16 == 0) 162416a434cSAndre Oppermann nmbjumbo16 = maxmbufmem / MJUM16BYTES / 6; 163416a434cSAndre Oppermann 164416a434cSAndre Oppermann /* 165416a434cSAndre Oppermann * We need at least as many mbufs as we have clusters of 166416a434cSAndre Oppermann * the various types added together. 167416a434cSAndre Oppermann */ 168416a434cSAndre Oppermann TUNABLE_INT_FETCH("kern.ipc.nmbufs", &nmbufs); 169416a434cSAndre Oppermann if (nmbufs < nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16) 170416a434cSAndre Oppermann nmbufs = lmax(maxmbufmem / MSIZE / 5, 171416a434cSAndre Oppermann nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16); 172099a0e58SBosko Milekic } 17337140716SAndre Oppermann SYSINIT(tunable_mbinit, SI_SUB_KMEM, SI_ORDER_MIDDLE, tunable_mbinit, NULL); 174099a0e58SBosko Milekic 1754f590175SPaul Saab static int 1764f590175SPaul Saab sysctl_nmbclusters(SYSCTL_HANDLER_ARGS) 1774f590175SPaul Saab { 1784f590175SPaul Saab int error, newnmbclusters; 1794f590175SPaul Saab 1804f590175SPaul Saab newnmbclusters = nmbclusters; 181041b706bSDavid Malone error = sysctl_handle_int(oidp, &newnmbclusters, 0, req); 182d251e700SJohn Baldwin if (error == 0 && req->newptr && newnmbclusters != nmbclusters) { 183ead46972SAndre Oppermann if (newnmbclusters > nmbclusters && 184ead46972SAndre Oppermann nmbufs >= nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16) { 1854f590175SPaul Saab nmbclusters = newnmbclusters; 186bc4a1b8cSAndre Oppermann nmbclusters = uma_zone_set_max(zone_clust, nmbclusters); 1874f590175SPaul Saab EVENTHANDLER_INVOKE(nmbclusters_change); 1884f590175SPaul Saab } else 1894f590175SPaul Saab error = EINVAL; 1904f590175SPaul Saab } 1914f590175SPaul Saab return (error); 1924f590175SPaul Saab } 1934f590175SPaul Saab SYSCTL_PROC(_kern_ipc, OID_AUTO, nmbclusters, CTLTYPE_INT|CTLFLAG_RW, 1944f590175SPaul Saab &nmbclusters, 0, sysctl_nmbclusters, "IU", 195099a0e58SBosko Milekic "Maximum number of mbuf clusters allowed"); 196cf70a46bSRandall Stewart 197cf70a46bSRandall Stewart static int 198cf70a46bSRandall Stewart sysctl_nmbjumbop(SYSCTL_HANDLER_ARGS) 199cf70a46bSRandall Stewart { 200cf70a46bSRandall Stewart int error, newnmbjumbop; 201cf70a46bSRandall Stewart 202cf70a46bSRandall Stewart newnmbjumbop = nmbjumbop; 203cf70a46bSRandall Stewart error = sysctl_handle_int(oidp, &newnmbjumbop, 0, req); 204d251e700SJohn Baldwin if (error == 0 && req->newptr && newnmbjumbop != nmbjumbop) { 205ead46972SAndre Oppermann if (newnmbjumbop > nmbjumbop && 206ead46972SAndre Oppermann nmbufs >= nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16) { 207cf70a46bSRandall Stewart nmbjumbop = newnmbjumbop; 208bc4a1b8cSAndre Oppermann nmbjumbop = uma_zone_set_max(zone_jumbop, nmbjumbop); 209cf70a46bSRandall Stewart } else 210cf70a46bSRandall Stewart error = EINVAL; 211cf70a46bSRandall Stewart } 212cf70a46bSRandall Stewart return (error); 213cf70a46bSRandall Stewart } 214cf70a46bSRandall Stewart SYSCTL_PROC(_kern_ipc, OID_AUTO, nmbjumbop, CTLTYPE_INT|CTLFLAG_RW, 215cf70a46bSRandall Stewart &nmbjumbop, 0, sysctl_nmbjumbop, "IU", 216ec63cb90SAndre Oppermann "Maximum number of mbuf page size jumbo clusters allowed"); 217cf70a46bSRandall Stewart 218cf70a46bSRandall Stewart static int 219cf70a46bSRandall Stewart sysctl_nmbjumbo9(SYSCTL_HANDLER_ARGS) 220cf70a46bSRandall Stewart { 221cf70a46bSRandall Stewart int error, newnmbjumbo9; 222cf70a46bSRandall Stewart 223cf70a46bSRandall Stewart newnmbjumbo9 = nmbjumbo9; 224cf70a46bSRandall Stewart error = sysctl_handle_int(oidp, &newnmbjumbo9, 0, req); 225d251e700SJohn Baldwin if (error == 0 && req->newptr && newnmbjumbo9 != nmbjumbo9) { 226ead46972SAndre Oppermann if (newnmbjumbo9 > nmbjumbo9 && 227ead46972SAndre Oppermann nmbufs >= nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16) { 228cf70a46bSRandall Stewart nmbjumbo9 = newnmbjumbo9; 229bc4a1b8cSAndre Oppermann nmbjumbo9 = uma_zone_set_max(zone_jumbo9, nmbjumbo9); 230cf70a46bSRandall Stewart } else 231cf70a46bSRandall Stewart error = EINVAL; 232cf70a46bSRandall Stewart } 233cf70a46bSRandall Stewart return (error); 234cf70a46bSRandall Stewart } 235cf70a46bSRandall Stewart SYSCTL_PROC(_kern_ipc, OID_AUTO, nmbjumbo9, CTLTYPE_INT|CTLFLAG_RW, 236cf70a46bSRandall Stewart &nmbjumbo9, 0, sysctl_nmbjumbo9, "IU", 23756a4e45aSAndre Oppermann "Maximum number of mbuf 9k jumbo clusters allowed"); 238cf70a46bSRandall Stewart 239cf70a46bSRandall Stewart static int 240cf70a46bSRandall Stewart sysctl_nmbjumbo16(SYSCTL_HANDLER_ARGS) 241cf70a46bSRandall Stewart { 242cf70a46bSRandall Stewart int error, newnmbjumbo16; 243cf70a46bSRandall Stewart 244cf70a46bSRandall Stewart newnmbjumbo16 = nmbjumbo16; 245cf70a46bSRandall Stewart error = sysctl_handle_int(oidp, &newnmbjumbo16, 0, req); 246d251e700SJohn Baldwin if (error == 0 && req->newptr && newnmbjumbo16 != nmbjumbo16) { 247ead46972SAndre Oppermann if (newnmbjumbo16 > nmbjumbo16 && 248ead46972SAndre Oppermann nmbufs >= nmbclusters + nmbjumbop + nmbjumbo9 + nmbjumbo16) { 249cf70a46bSRandall Stewart nmbjumbo16 = newnmbjumbo16; 250bc4a1b8cSAndre Oppermann nmbjumbo16 = uma_zone_set_max(zone_jumbo16, nmbjumbo16); 251cf70a46bSRandall Stewart } else 252cf70a46bSRandall Stewart error = EINVAL; 253cf70a46bSRandall Stewart } 254cf70a46bSRandall Stewart return (error); 255cf70a46bSRandall Stewart } 256cf70a46bSRandall Stewart SYSCTL_PROC(_kern_ipc, OID_AUTO, nmbjumbo16, CTLTYPE_INT|CTLFLAG_RW, 257cf70a46bSRandall Stewart &nmbjumbo16, 0, sysctl_nmbjumbo16, "IU", 25856a4e45aSAndre Oppermann "Maximum number of mbuf 16k jumbo clusters allowed"); 259cf70a46bSRandall Stewart 260ead46972SAndre Oppermann static int 261ead46972SAndre Oppermann sysctl_nmbufs(SYSCTL_HANDLER_ARGS) 262ead46972SAndre Oppermann { 263ead46972SAndre Oppermann int error, newnmbufs; 264ead46972SAndre Oppermann 265ead46972SAndre Oppermann newnmbufs = nmbufs; 266ead46972SAndre Oppermann error = sysctl_handle_int(oidp, &newnmbufs, 0, req); 267d251e700SJohn Baldwin if (error == 0 && req->newptr && newnmbufs != nmbufs) { 268ead46972SAndre Oppermann if (newnmbufs > nmbufs) { 269ead46972SAndre Oppermann nmbufs = newnmbufs; 270bc4a1b8cSAndre Oppermann nmbufs = uma_zone_set_max(zone_mbuf, nmbufs); 271ead46972SAndre Oppermann EVENTHANDLER_INVOKE(nmbufs_change); 272ead46972SAndre Oppermann } else 273ead46972SAndre Oppermann error = EINVAL; 274ead46972SAndre Oppermann } 275ead46972SAndre Oppermann return (error); 276ead46972SAndre Oppermann } 277e0c00addSAndre Oppermann SYSCTL_PROC(_kern_ipc, OID_AUTO, nmbufs, CTLTYPE_INT|CTLFLAG_RW, 278ead46972SAndre Oppermann &nmbufs, 0, sysctl_nmbufs, "IU", 279ead46972SAndre Oppermann "Maximum number of mbufs allowed"); 280cf70a46bSRandall Stewart 281099a0e58SBosko Milekic /* 282099a0e58SBosko Milekic * Zones from which we allocate. 283099a0e58SBosko Milekic */ 284099a0e58SBosko Milekic uma_zone_t zone_mbuf; 285099a0e58SBosko Milekic uma_zone_t zone_clust; 286099a0e58SBosko Milekic uma_zone_t zone_pack; 287ec63cb90SAndre Oppermann uma_zone_t zone_jumbop; 28856a4e45aSAndre Oppermann uma_zone_t zone_jumbo9; 28956a4e45aSAndre Oppermann uma_zone_t zone_jumbo16; 29082334850SJohn Baldwin uma_zone_t zone_extpgs; 291099a0e58SBosko Milekic 292099a0e58SBosko Milekic /* 293099a0e58SBosko Milekic * Local prototypes. 294099a0e58SBosko Milekic */ 295b23f72e9SBrian Feldman static int mb_ctor_mbuf(void *, int, void *, int); 296b23f72e9SBrian Feldman static int mb_ctor_clust(void *, int, void *, int); 297b23f72e9SBrian Feldman static int mb_ctor_pack(void *, int, void *, int); 298099a0e58SBosko Milekic static void mb_dtor_mbuf(void *, int, void *); 29956a4e45aSAndre Oppermann static void mb_dtor_pack(void *, int, void *); 30056a4e45aSAndre Oppermann static int mb_zinit_pack(void *, int, int); 30156a4e45aSAndre Oppermann static void mb_zfini_pack(void *, int); 302e60b2fcbSGleb Smirnoff static void mb_reclaim(uma_zone_t, int); 303ab3185d1SJeff Roberson static void *mbuf_jumbo_alloc(uma_zone_t, vm_size_t, int, uint8_t *, int); 304099a0e58SBosko Milekic 30537140716SAndre Oppermann /* Ensure that MSIZE is a power of 2. */ 306a04946cfSBrian Somers CTASSERT((((MSIZE - 1) ^ MSIZE) + 1) >> 1 == MSIZE); 307a04946cfSBrian Somers 30882334850SJohn Baldwin _Static_assert(sizeof(struct mbuf_ext_pgs) == 256, 30982334850SJohn Baldwin "mbuf_ext_pgs size mismatch"); 31082334850SJohn Baldwin 311099a0e58SBosko Milekic /* 312099a0e58SBosko Milekic * Initialize FreeBSD Network buffer allocation. 313099a0e58SBosko Milekic */ 314099a0e58SBosko Milekic static void 315099a0e58SBosko Milekic mbuf_init(void *dummy) 316099a0e58SBosko Milekic { 317099a0e58SBosko Milekic 318099a0e58SBosko Milekic /* 319099a0e58SBosko Milekic * Configure UMA zones for Mbufs, Clusters, and Packets. 320099a0e58SBosko Milekic */ 32156a4e45aSAndre Oppermann zone_mbuf = uma_zcreate(MBUF_MEM_NAME, MSIZE, 32256a4e45aSAndre Oppermann mb_ctor_mbuf, mb_dtor_mbuf, 323121f0509SMike Silbersack #ifdef INVARIANTS 32456a4e45aSAndre Oppermann trash_init, trash_fini, 325121f0509SMike Silbersack #else 32656a4e45aSAndre Oppermann NULL, NULL, 327121f0509SMike Silbersack #endif 32856a4e45aSAndre Oppermann MSIZE - 1, UMA_ZONE_MAXBUCKET); 32945fe0bf7SPawel Jakub Dawidek if (nmbufs > 0) 33045fe0bf7SPawel Jakub Dawidek nmbufs = uma_zone_set_max(zone_mbuf, nmbufs); 3316e0b6746SPawel Jakub Dawidek uma_zone_set_warning(zone_mbuf, "kern.ipc.nmbufs limit reached"); 332e60b2fcbSGleb Smirnoff uma_zone_set_maxaction(zone_mbuf, mb_reclaim); 33356a4e45aSAndre Oppermann 33468352adfSRobert Watson zone_clust = uma_zcreate(MBUF_CLUSTER_MEM_NAME, MCLBYTES, 33556a5f52eSGleb Smirnoff mb_ctor_clust, 336121f0509SMike Silbersack #ifdef INVARIANTS 33756a5f52eSGleb Smirnoff trash_dtor, trash_init, trash_fini, 338121f0509SMike Silbersack #else 33956a5f52eSGleb Smirnoff NULL, NULL, NULL, 340121f0509SMike Silbersack #endif 34156a5f52eSGleb Smirnoff UMA_ALIGN_PTR, 0); 34245fe0bf7SPawel Jakub Dawidek if (nmbclusters > 0) 34345fe0bf7SPawel Jakub Dawidek nmbclusters = uma_zone_set_max(zone_clust, nmbclusters); 3446e0b6746SPawel Jakub Dawidek uma_zone_set_warning(zone_clust, "kern.ipc.nmbclusters limit reached"); 345e60b2fcbSGleb Smirnoff uma_zone_set_maxaction(zone_clust, mb_reclaim); 346099a0e58SBosko Milekic 34756a4e45aSAndre Oppermann zone_pack = uma_zsecond_create(MBUF_PACKET_MEM_NAME, mb_ctor_pack, 34856a4e45aSAndre Oppermann mb_dtor_pack, mb_zinit_pack, mb_zfini_pack, zone_mbuf); 34956a4e45aSAndre Oppermann 350fcf90618SGleb Smirnoff /* Make jumbo frame zone too. Page size, 9k and 16k. */ 351ec63cb90SAndre Oppermann zone_jumbop = uma_zcreate(MBUF_JUMBOP_MEM_NAME, MJUMPAGESIZE, 35256a5f52eSGleb Smirnoff mb_ctor_clust, 353d5269a63SAndre Oppermann #ifdef INVARIANTS 35456a5f52eSGleb Smirnoff trash_dtor, trash_init, trash_fini, 355d5269a63SAndre Oppermann #else 35656a5f52eSGleb Smirnoff NULL, NULL, NULL, 357d5269a63SAndre Oppermann #endif 35856a5f52eSGleb Smirnoff UMA_ALIGN_PTR, 0); 35945fe0bf7SPawel Jakub Dawidek if (nmbjumbop > 0) 36045fe0bf7SPawel Jakub Dawidek nmbjumbop = uma_zone_set_max(zone_jumbop, nmbjumbop); 3616e0b6746SPawel Jakub Dawidek uma_zone_set_warning(zone_jumbop, "kern.ipc.nmbjumbop limit reached"); 362e60b2fcbSGleb Smirnoff uma_zone_set_maxaction(zone_jumbop, mb_reclaim); 363d5269a63SAndre Oppermann 36456a4e45aSAndre Oppermann zone_jumbo9 = uma_zcreate(MBUF_JUMBO9_MEM_NAME, MJUM9BYTES, 36556a5f52eSGleb Smirnoff mb_ctor_clust, 36656a4e45aSAndre Oppermann #ifdef INVARIANTS 36756a5f52eSGleb Smirnoff trash_dtor, trash_init, trash_fini, 36856a4e45aSAndre Oppermann #else 36956a5f52eSGleb Smirnoff NULL, NULL, NULL, 37056a4e45aSAndre Oppermann #endif 37156a5f52eSGleb Smirnoff UMA_ALIGN_PTR, 0); 372ba63339aSAlan Cox uma_zone_set_allocf(zone_jumbo9, mbuf_jumbo_alloc); 37345fe0bf7SPawel Jakub Dawidek if (nmbjumbo9 > 0) 37445fe0bf7SPawel Jakub Dawidek nmbjumbo9 = uma_zone_set_max(zone_jumbo9, nmbjumbo9); 3756e0b6746SPawel Jakub Dawidek uma_zone_set_warning(zone_jumbo9, "kern.ipc.nmbjumbo9 limit reached"); 376e60b2fcbSGleb Smirnoff uma_zone_set_maxaction(zone_jumbo9, mb_reclaim); 37756a4e45aSAndre Oppermann 37856a4e45aSAndre Oppermann zone_jumbo16 = uma_zcreate(MBUF_JUMBO16_MEM_NAME, MJUM16BYTES, 37956a5f52eSGleb Smirnoff mb_ctor_clust, 38056a4e45aSAndre Oppermann #ifdef INVARIANTS 38156a5f52eSGleb Smirnoff trash_dtor, trash_init, trash_fini, 38256a4e45aSAndre Oppermann #else 38356a5f52eSGleb Smirnoff NULL, NULL, NULL, 38456a4e45aSAndre Oppermann #endif 38556a5f52eSGleb Smirnoff UMA_ALIGN_PTR, 0); 386ba63339aSAlan Cox uma_zone_set_allocf(zone_jumbo16, mbuf_jumbo_alloc); 38745fe0bf7SPawel Jakub Dawidek if (nmbjumbo16 > 0) 38845fe0bf7SPawel Jakub Dawidek nmbjumbo16 = uma_zone_set_max(zone_jumbo16, nmbjumbo16); 3896e0b6746SPawel Jakub Dawidek uma_zone_set_warning(zone_jumbo16, "kern.ipc.nmbjumbo16 limit reached"); 390e60b2fcbSGleb Smirnoff uma_zone_set_maxaction(zone_jumbo16, mb_reclaim); 39156a4e45aSAndre Oppermann 39282334850SJohn Baldwin zone_extpgs = uma_zcreate(MBUF_EXTPGS_MEM_NAME, 39382334850SJohn Baldwin sizeof(struct mbuf_ext_pgs), 39482334850SJohn Baldwin #ifdef INVARIANTS 39582334850SJohn Baldwin trash_ctor, trash_dtor, trash_init, trash_fini, 39682334850SJohn Baldwin #else 39782334850SJohn Baldwin NULL, NULL, NULL, NULL, 39882334850SJohn Baldwin #endif 39982334850SJohn Baldwin UMA_ALIGN_CACHE, 0); 40082334850SJohn Baldwin 401099a0e58SBosko Milekic /* 402099a0e58SBosko Milekic * Hook event handler for low-memory situation, used to 403099a0e58SBosko Milekic * drain protocols and push data back to the caches (UMA 404099a0e58SBosko Milekic * later pushes it back to VM). 405099a0e58SBosko Milekic */ 406099a0e58SBosko Milekic EVENTHANDLER_REGISTER(vm_lowmem, mb_reclaim, NULL, 407099a0e58SBosko Milekic EVENTHANDLER_PRI_FIRST); 408fb3bc596SJohn Baldwin 409fb3bc596SJohn Baldwin snd_tag_count = counter_u64_alloc(M_WAITOK); 410099a0e58SBosko Milekic } 41137140716SAndre Oppermann SYSINIT(mbuf, SI_SUB_MBUF, SI_ORDER_FIRST, mbuf_init, NULL); 412099a0e58SBosko Milekic 4135475ca5aSMark Johnston #ifdef NETDUMP 4145475ca5aSMark Johnston /* 4155475ca5aSMark Johnston * netdump makes use of a pre-allocated pool of mbufs and clusters. When 4165475ca5aSMark Johnston * netdump is configured, we initialize a set of UMA cache zones which return 4175475ca5aSMark Johnston * items from this pool. At panic-time, the regular UMA zone pointers are 4185475ca5aSMark Johnston * overwritten with those of the cache zones so that drivers may allocate and 4195475ca5aSMark Johnston * free mbufs and clusters without attempting to allocate physical memory. 4205475ca5aSMark Johnston * 4215475ca5aSMark Johnston * We keep mbufs and clusters in a pair of mbuf queues. In particular, for 4225475ca5aSMark Johnston * the purpose of caching clusters, we treat them as mbufs. 4235475ca5aSMark Johnston */ 4245475ca5aSMark Johnston static struct mbufq nd_mbufq = 4255475ca5aSMark Johnston { STAILQ_HEAD_INITIALIZER(nd_mbufq.mq_head), 0, INT_MAX }; 4265475ca5aSMark Johnston static struct mbufq nd_clustq = 4275475ca5aSMark Johnston { STAILQ_HEAD_INITIALIZER(nd_clustq.mq_head), 0, INT_MAX }; 4285475ca5aSMark Johnston 4295475ca5aSMark Johnston static int nd_clsize; 4305475ca5aSMark Johnston static uma_zone_t nd_zone_mbuf; 4315475ca5aSMark Johnston static uma_zone_t nd_zone_clust; 4325475ca5aSMark Johnston static uma_zone_t nd_zone_pack; 4335475ca5aSMark Johnston 4345475ca5aSMark Johnston static int 4355475ca5aSMark Johnston nd_buf_import(void *arg, void **store, int count, int domain __unused, 4365475ca5aSMark Johnston int flags) 4375475ca5aSMark Johnston { 4385475ca5aSMark Johnston struct mbufq *q; 4395475ca5aSMark Johnston struct mbuf *m; 4405475ca5aSMark Johnston int i; 4415475ca5aSMark Johnston 4425475ca5aSMark Johnston q = arg; 4435475ca5aSMark Johnston 4445475ca5aSMark Johnston for (i = 0; i < count; i++) { 4455475ca5aSMark Johnston m = mbufq_dequeue(q); 4465475ca5aSMark Johnston if (m == NULL) 4475475ca5aSMark Johnston break; 4485475ca5aSMark Johnston trash_init(m, q == &nd_mbufq ? MSIZE : nd_clsize, flags); 4495475ca5aSMark Johnston store[i] = m; 4505475ca5aSMark Johnston } 4510d1467b1SConrad Meyer KASSERT((flags & M_WAITOK) == 0 || i == count, 4520d1467b1SConrad Meyer ("%s: ran out of pre-allocated mbufs", __func__)); 4535475ca5aSMark Johnston return (i); 4545475ca5aSMark Johnston } 4555475ca5aSMark Johnston 4565475ca5aSMark Johnston static void 4575475ca5aSMark Johnston nd_buf_release(void *arg, void **store, int count) 4585475ca5aSMark Johnston { 4595475ca5aSMark Johnston struct mbufq *q; 4605475ca5aSMark Johnston struct mbuf *m; 4615475ca5aSMark Johnston int i; 4625475ca5aSMark Johnston 4635475ca5aSMark Johnston q = arg; 4645475ca5aSMark Johnston 4655475ca5aSMark Johnston for (i = 0; i < count; i++) { 4665475ca5aSMark Johnston m = store[i]; 4675475ca5aSMark Johnston (void)mbufq_enqueue(q, m); 4685475ca5aSMark Johnston } 4695475ca5aSMark Johnston } 4705475ca5aSMark Johnston 4715475ca5aSMark Johnston static int 4725475ca5aSMark Johnston nd_pack_import(void *arg __unused, void **store, int count, int domain __unused, 4735475ca5aSMark Johnston int flags __unused) 4745475ca5aSMark Johnston { 4755475ca5aSMark Johnston struct mbuf *m; 4765475ca5aSMark Johnston void *clust; 4775475ca5aSMark Johnston int i; 4785475ca5aSMark Johnston 4795475ca5aSMark Johnston for (i = 0; i < count; i++) { 4805475ca5aSMark Johnston m = m_get(MT_DATA, M_NOWAIT); 4815475ca5aSMark Johnston if (m == NULL) 4825475ca5aSMark Johnston break; 4835475ca5aSMark Johnston clust = uma_zalloc(nd_zone_clust, M_NOWAIT); 4845475ca5aSMark Johnston if (clust == NULL) { 4855475ca5aSMark Johnston m_free(m); 4865475ca5aSMark Johnston break; 4875475ca5aSMark Johnston } 4885475ca5aSMark Johnston mb_ctor_clust(clust, nd_clsize, m, 0); 4895475ca5aSMark Johnston store[i] = m; 4905475ca5aSMark Johnston } 4910d1467b1SConrad Meyer KASSERT((flags & M_WAITOK) == 0 || i == count, 4920d1467b1SConrad Meyer ("%s: ran out of pre-allocated mbufs", __func__)); 4935475ca5aSMark Johnston return (i); 4945475ca5aSMark Johnston } 4955475ca5aSMark Johnston 4965475ca5aSMark Johnston static void 4975475ca5aSMark Johnston nd_pack_release(void *arg __unused, void **store, int count) 4985475ca5aSMark Johnston { 4995475ca5aSMark Johnston struct mbuf *m; 5005475ca5aSMark Johnston void *clust; 5015475ca5aSMark Johnston int i; 5025475ca5aSMark Johnston 5035475ca5aSMark Johnston for (i = 0; i < count; i++) { 5045475ca5aSMark Johnston m = store[i]; 5055475ca5aSMark Johnston clust = m->m_ext.ext_buf; 5065475ca5aSMark Johnston uma_zfree(nd_zone_clust, clust); 5075475ca5aSMark Johnston uma_zfree(nd_zone_mbuf, m); 5085475ca5aSMark Johnston } 5095475ca5aSMark Johnston } 5105475ca5aSMark Johnston 5115475ca5aSMark Johnston /* 5125475ca5aSMark Johnston * Free the pre-allocated mbufs and clusters reserved for netdump, and destroy 5135475ca5aSMark Johnston * the corresponding UMA cache zones. 5145475ca5aSMark Johnston */ 5155475ca5aSMark Johnston void 5165475ca5aSMark Johnston netdump_mbuf_drain(void) 5175475ca5aSMark Johnston { 5185475ca5aSMark Johnston struct mbuf *m; 5195475ca5aSMark Johnston void *item; 5205475ca5aSMark Johnston 5215475ca5aSMark Johnston if (nd_zone_mbuf != NULL) { 5225475ca5aSMark Johnston uma_zdestroy(nd_zone_mbuf); 5235475ca5aSMark Johnston nd_zone_mbuf = NULL; 5245475ca5aSMark Johnston } 5255475ca5aSMark Johnston if (nd_zone_clust != NULL) { 5265475ca5aSMark Johnston uma_zdestroy(nd_zone_clust); 5275475ca5aSMark Johnston nd_zone_clust = NULL; 5285475ca5aSMark Johnston } 5295475ca5aSMark Johnston if (nd_zone_pack != NULL) { 5305475ca5aSMark Johnston uma_zdestroy(nd_zone_pack); 5315475ca5aSMark Johnston nd_zone_pack = NULL; 5325475ca5aSMark Johnston } 5335475ca5aSMark Johnston 5345475ca5aSMark Johnston while ((m = mbufq_dequeue(&nd_mbufq)) != NULL) 5355475ca5aSMark Johnston m_free(m); 5365475ca5aSMark Johnston while ((item = mbufq_dequeue(&nd_clustq)) != NULL) 5375475ca5aSMark Johnston uma_zfree(m_getzone(nd_clsize), item); 5385475ca5aSMark Johnston } 5395475ca5aSMark Johnston 5405475ca5aSMark Johnston /* 5415475ca5aSMark Johnston * Callback invoked immediately prior to starting a netdump. 5425475ca5aSMark Johnston */ 5435475ca5aSMark Johnston void 5445475ca5aSMark Johnston netdump_mbuf_dump(void) 5455475ca5aSMark Johnston { 5465475ca5aSMark Johnston 5475475ca5aSMark Johnston /* 5485475ca5aSMark Johnston * All cluster zones return buffers of the size requested by the 5495475ca5aSMark Johnston * drivers. It's up to the driver to reinitialize the zones if the 5505475ca5aSMark Johnston * MTU of a netdump-enabled interface changes. 5515475ca5aSMark Johnston */ 5525475ca5aSMark Johnston printf("netdump: overwriting mbuf zone pointers\n"); 5535475ca5aSMark Johnston zone_mbuf = nd_zone_mbuf; 5545475ca5aSMark Johnston zone_clust = nd_zone_clust; 5555475ca5aSMark Johnston zone_pack = nd_zone_pack; 5565475ca5aSMark Johnston zone_jumbop = nd_zone_clust; 5575475ca5aSMark Johnston zone_jumbo9 = nd_zone_clust; 5585475ca5aSMark Johnston zone_jumbo16 = nd_zone_clust; 5595475ca5aSMark Johnston } 5605475ca5aSMark Johnston 5615475ca5aSMark Johnston /* 5625475ca5aSMark Johnston * Reinitialize the netdump mbuf+cluster pool and cache zones. 5635475ca5aSMark Johnston */ 5645475ca5aSMark Johnston void 5655475ca5aSMark Johnston netdump_mbuf_reinit(int nmbuf, int nclust, int clsize) 5665475ca5aSMark Johnston { 5675475ca5aSMark Johnston struct mbuf *m; 5685475ca5aSMark Johnston void *item; 5695475ca5aSMark Johnston 5705475ca5aSMark Johnston netdump_mbuf_drain(); 5715475ca5aSMark Johnston 5725475ca5aSMark Johnston nd_clsize = clsize; 5735475ca5aSMark Johnston 5745475ca5aSMark Johnston nd_zone_mbuf = uma_zcache_create("netdump_" MBUF_MEM_NAME, 5755475ca5aSMark Johnston MSIZE, mb_ctor_mbuf, mb_dtor_mbuf, 5765475ca5aSMark Johnston #ifdef INVARIANTS 5775475ca5aSMark Johnston trash_init, trash_fini, 5785475ca5aSMark Johnston #else 5795475ca5aSMark Johnston NULL, NULL, 5805475ca5aSMark Johnston #endif 5815475ca5aSMark Johnston nd_buf_import, nd_buf_release, 5825475ca5aSMark Johnston &nd_mbufq, UMA_ZONE_NOBUCKET); 5835475ca5aSMark Johnston 5845475ca5aSMark Johnston nd_zone_clust = uma_zcache_create("netdump_" MBUF_CLUSTER_MEM_NAME, 5855475ca5aSMark Johnston clsize, mb_ctor_clust, 5865475ca5aSMark Johnston #ifdef INVARIANTS 5875475ca5aSMark Johnston trash_dtor, trash_init, trash_fini, 5885475ca5aSMark Johnston #else 5895475ca5aSMark Johnston NULL, NULL, NULL, 5905475ca5aSMark Johnston #endif 5915475ca5aSMark Johnston nd_buf_import, nd_buf_release, 5925475ca5aSMark Johnston &nd_clustq, UMA_ZONE_NOBUCKET); 5935475ca5aSMark Johnston 5945475ca5aSMark Johnston nd_zone_pack = uma_zcache_create("netdump_" MBUF_PACKET_MEM_NAME, 5955475ca5aSMark Johnston MCLBYTES, mb_ctor_pack, mb_dtor_pack, NULL, NULL, 5965475ca5aSMark Johnston nd_pack_import, nd_pack_release, 5975475ca5aSMark Johnston NULL, UMA_ZONE_NOBUCKET); 5985475ca5aSMark Johnston 5995475ca5aSMark Johnston while (nmbuf-- > 0) { 6005475ca5aSMark Johnston m = m_get(MT_DATA, M_WAITOK); 6015475ca5aSMark Johnston uma_zfree(nd_zone_mbuf, m); 6025475ca5aSMark Johnston } 6035475ca5aSMark Johnston while (nclust-- > 0) { 6045475ca5aSMark Johnston item = uma_zalloc(m_getzone(nd_clsize), M_WAITOK); 6055475ca5aSMark Johnston uma_zfree(nd_zone_clust, item); 6065475ca5aSMark Johnston } 6075475ca5aSMark Johnston } 6085475ca5aSMark Johnston #endif /* NETDUMP */ 6095475ca5aSMark Johnston 610099a0e58SBosko Milekic /* 611ba63339aSAlan Cox * UMA backend page allocator for the jumbo frame zones. 612ba63339aSAlan Cox * 613ba63339aSAlan Cox * Allocates kernel virtual memory that is backed by contiguous physical 614ba63339aSAlan Cox * pages. 615ba63339aSAlan Cox */ 616ba63339aSAlan Cox static void * 617ab3185d1SJeff Roberson mbuf_jumbo_alloc(uma_zone_t zone, vm_size_t bytes, int domain, uint8_t *flags, 618ab3185d1SJeff Roberson int wait) 619ba63339aSAlan Cox { 620ba63339aSAlan Cox 6217630c265SAlan Cox /* Inform UMA that this allocator uses kernel_map/object. */ 6227630c265SAlan Cox *flags = UMA_SLAB_KERNEL; 6239978bd99SMark Johnston return ((void *)kmem_alloc_contig_domainset(DOMAINSET_FIXED(domain), 6249978bd99SMark Johnston bytes, wait, (vm_paddr_t)0, ~(vm_paddr_t)0, 1, 0, 6259978bd99SMark Johnston VM_MEMATTR_DEFAULT)); 626ba63339aSAlan Cox } 627ba63339aSAlan Cox 628ba63339aSAlan Cox /* 629099a0e58SBosko Milekic * Constructor for Mbuf master zone. 630099a0e58SBosko Milekic * 631099a0e58SBosko Milekic * The 'arg' pointer points to a mb_args structure which 632099a0e58SBosko Milekic * contains call-specific information required to support the 63356a4e45aSAndre Oppermann * mbuf allocation API. See mbuf.h. 634099a0e58SBosko Milekic */ 635b23f72e9SBrian Feldman static int 636b23f72e9SBrian Feldman mb_ctor_mbuf(void *mem, int size, void *arg, int how) 637099a0e58SBosko Milekic { 638099a0e58SBosko Milekic struct mbuf *m; 639099a0e58SBosko Milekic struct mb_args *args; 640b23f72e9SBrian Feldman int error; 641099a0e58SBosko Milekic int flags; 642099a0e58SBosko Milekic short type; 643099a0e58SBosko Milekic 644121f0509SMike Silbersack #ifdef INVARIANTS 645121f0509SMike Silbersack trash_ctor(mem, size, arg, how); 646121f0509SMike Silbersack #endif 647099a0e58SBosko Milekic args = (struct mb_args *)arg; 648099a0e58SBosko Milekic type = args->type; 649099a0e58SBosko Milekic 65056a4e45aSAndre Oppermann /* 65156a4e45aSAndre Oppermann * The mbuf is initialized later. The caller has the 652fcf90618SGleb Smirnoff * responsibility to set up any MAC labels too. 65356a4e45aSAndre Oppermann */ 65456a4e45aSAndre Oppermann if (type == MT_NOINIT) 65556a4e45aSAndre Oppermann return (0); 65656a4e45aSAndre Oppermann 657afb295ccSAndre Oppermann m = (struct mbuf *)mem; 658afb295ccSAndre Oppermann flags = args->flags; 659fddd4f62SNavdeep Parhar MPASS((flags & M_NOFREE) == 0); 660afb295ccSAndre Oppermann 661b4b12e52SGleb Smirnoff error = m_init(m, how, type, flags); 662afb295ccSAndre Oppermann 663b23f72e9SBrian Feldman return (error); 664099a0e58SBosko Milekic } 665099a0e58SBosko Milekic 666099a0e58SBosko Milekic /* 66756a4e45aSAndre Oppermann * The Mbuf master zone destructor. 668099a0e58SBosko Milekic */ 669099a0e58SBosko Milekic static void 670099a0e58SBosko Milekic mb_dtor_mbuf(void *mem, int size, void *arg) 671099a0e58SBosko Milekic { 672099a0e58SBosko Milekic struct mbuf *m; 673629b9e08SKip Macy unsigned long flags; 674099a0e58SBosko Milekic 675099a0e58SBosko Milekic m = (struct mbuf *)mem; 676629b9e08SKip Macy flags = (unsigned long)arg; 677629b9e08SKip Macy 678a9fa76f2SNavdeep Parhar KASSERT((m->m_flags & M_NOFREE) == 0, ("%s: M_NOFREE set", __func__)); 6794c7070dbSScott Long if (!(flags & MB_DTOR_SKIP) && (m->m_flags & M_PKTHDR) && !SLIST_EMPTY(&m->m_pkthdr.tags)) 680099a0e58SBosko Milekic m_tag_delete_chain(m, NULL); 681121f0509SMike Silbersack #ifdef INVARIANTS 682121f0509SMike Silbersack trash_dtor(mem, size, arg); 683121f0509SMike Silbersack #endif 684099a0e58SBosko Milekic } 685099a0e58SBosko Milekic 68656a4e45aSAndre Oppermann /* 68756a4e45aSAndre Oppermann * The Mbuf Packet zone destructor. 68856a4e45aSAndre Oppermann */ 689099a0e58SBosko Milekic static void 690099a0e58SBosko Milekic mb_dtor_pack(void *mem, int size, void *arg) 691099a0e58SBosko Milekic { 692099a0e58SBosko Milekic struct mbuf *m; 693099a0e58SBosko Milekic 694099a0e58SBosko Milekic m = (struct mbuf *)mem; 695099a0e58SBosko Milekic if ((m->m_flags & M_PKTHDR) != 0) 696099a0e58SBosko Milekic m_tag_delete_chain(m, NULL); 69756a4e45aSAndre Oppermann 69856a4e45aSAndre Oppermann /* Make sure we've got a clean cluster back. */ 69956a4e45aSAndre Oppermann KASSERT((m->m_flags & M_EXT) == M_EXT, ("%s: M_EXT not set", __func__)); 70056a4e45aSAndre Oppermann KASSERT(m->m_ext.ext_buf != NULL, ("%s: ext_buf == NULL", __func__)); 70156a4e45aSAndre Oppermann KASSERT(m->m_ext.ext_free == NULL, ("%s: ext_free != NULL", __func__)); 702cf827063SPoul-Henning Kamp KASSERT(m->m_ext.ext_arg1 == NULL, ("%s: ext_arg1 != NULL", __func__)); 703cf827063SPoul-Henning Kamp KASSERT(m->m_ext.ext_arg2 == NULL, ("%s: ext_arg2 != NULL", __func__)); 70456a4e45aSAndre Oppermann KASSERT(m->m_ext.ext_size == MCLBYTES, ("%s: ext_size != MCLBYTES", __func__)); 70549d46b61SGleb Smirnoff KASSERT(m->m_ext.ext_type == EXT_PACKET, ("%s: ext_type != EXT_PACKET", __func__)); 706121f0509SMike Silbersack #ifdef INVARIANTS 707121f0509SMike Silbersack trash_dtor(m->m_ext.ext_buf, MCLBYTES, arg); 708121f0509SMike Silbersack #endif 7096c125b8dSMohan Srinivasan /* 710ef44c8d2SDavid E. O'Brien * If there are processes blocked on zone_clust, waiting for pages 711ef44c8d2SDavid E. O'Brien * to be freed up, * cause them to be woken up by draining the 712ef44c8d2SDavid E. O'Brien * packet zone. We are exposed to a race here * (in the check for 713ef44c8d2SDavid E. O'Brien * the UMA_ZFLAG_FULL) where we might miss the flag set, but that 714ef44c8d2SDavid E. O'Brien * is deliberate. We don't want to acquire the zone lock for every 715ef44c8d2SDavid E. O'Brien * mbuf free. 7166c125b8dSMohan Srinivasan */ 7176c125b8dSMohan Srinivasan if (uma_zone_exhausted_nolock(zone_clust)) 7186c125b8dSMohan Srinivasan zone_drain(zone_pack); 719099a0e58SBosko Milekic } 720099a0e58SBosko Milekic 721099a0e58SBosko Milekic /* 722ec63cb90SAndre Oppermann * The Cluster and Jumbo[PAGESIZE|9|16] zone constructor. 723099a0e58SBosko Milekic * 724099a0e58SBosko Milekic * Here the 'arg' pointer points to the Mbuf which we 72556a4e45aSAndre Oppermann * are configuring cluster storage for. If 'arg' is 72656a4e45aSAndre Oppermann * empty we allocate just the cluster without setting 72756a4e45aSAndre Oppermann * the mbuf to it. See mbuf.h. 728099a0e58SBosko Milekic */ 729b23f72e9SBrian Feldman static int 730b23f72e9SBrian Feldman mb_ctor_clust(void *mem, int size, void *arg, int how) 731099a0e58SBosko Milekic { 732099a0e58SBosko Milekic struct mbuf *m; 733099a0e58SBosko Milekic 734121f0509SMike Silbersack #ifdef INVARIANTS 735121f0509SMike Silbersack trash_ctor(mem, size, arg, how); 736121f0509SMike Silbersack #endif 7370f4d9d04SKip Macy m = (struct mbuf *)arg; 7380f4d9d04SKip Macy if (m != NULL) { 739e8fd18f3SGleb Smirnoff m->m_ext.ext_buf = (char *)mem; 740099a0e58SBosko Milekic m->m_data = m->m_ext.ext_buf; 741099a0e58SBosko Milekic m->m_flags |= M_EXT; 742099a0e58SBosko Milekic m->m_ext.ext_free = NULL; 743cf827063SPoul-Henning Kamp m->m_ext.ext_arg1 = NULL; 744cf827063SPoul-Henning Kamp m->m_ext.ext_arg2 = NULL; 74556a4e45aSAndre Oppermann m->m_ext.ext_size = size; 74656a5f52eSGleb Smirnoff m->m_ext.ext_type = m_gettype(size); 74756a5f52eSGleb Smirnoff m->m_ext.ext_flags = EXT_FLAG_EMBREF; 74856a5f52eSGleb Smirnoff m->m_ext.ext_count = 1; 74956a4e45aSAndre Oppermann } 7500f4d9d04SKip Macy 751b23f72e9SBrian Feldman return (0); 752099a0e58SBosko Milekic } 753099a0e58SBosko Milekic 75456a4e45aSAndre Oppermann /* 755099a0e58SBosko Milekic * The Packet secondary zone's init routine, executed on the 75656a4e45aSAndre Oppermann * object's transition from mbuf keg slab to zone cache. 757099a0e58SBosko Milekic */ 758b23f72e9SBrian Feldman static int 75956a4e45aSAndre Oppermann mb_zinit_pack(void *mem, int size, int how) 760099a0e58SBosko Milekic { 761099a0e58SBosko Milekic struct mbuf *m; 762099a0e58SBosko Milekic 76356a4e45aSAndre Oppermann m = (struct mbuf *)mem; /* m is virgin. */ 764a7bd90efSAndre Oppermann if (uma_zalloc_arg(zone_clust, m, how) == NULL || 765a7bd90efSAndre Oppermann m->m_ext.ext_buf == NULL) 766b23f72e9SBrian Feldman return (ENOMEM); 767cd5bb63bSAndre Oppermann m->m_ext.ext_type = EXT_PACKET; /* Override. */ 768121f0509SMike Silbersack #ifdef INVARIANTS 769121f0509SMike Silbersack trash_init(m->m_ext.ext_buf, MCLBYTES, how); 770121f0509SMike Silbersack #endif 771b23f72e9SBrian Feldman return (0); 772099a0e58SBosko Milekic } 773099a0e58SBosko Milekic 774099a0e58SBosko Milekic /* 775099a0e58SBosko Milekic * The Packet secondary zone's fini routine, executed on the 776099a0e58SBosko Milekic * object's transition from zone cache to keg slab. 777099a0e58SBosko Milekic */ 778099a0e58SBosko Milekic static void 77956a4e45aSAndre Oppermann mb_zfini_pack(void *mem, int size) 780099a0e58SBosko Milekic { 781099a0e58SBosko Milekic struct mbuf *m; 782099a0e58SBosko Milekic 783099a0e58SBosko Milekic m = (struct mbuf *)mem; 784121f0509SMike Silbersack #ifdef INVARIANTS 785121f0509SMike Silbersack trash_fini(m->m_ext.ext_buf, MCLBYTES); 786121f0509SMike Silbersack #endif 787099a0e58SBosko Milekic uma_zfree_arg(zone_clust, m->m_ext.ext_buf, NULL); 788a7b844d2SMike Silbersack #ifdef INVARIANTS 789a7b844d2SMike Silbersack trash_dtor(mem, size, NULL); 790a7b844d2SMike Silbersack #endif 791099a0e58SBosko Milekic } 792099a0e58SBosko Milekic 793099a0e58SBosko Milekic /* 794099a0e58SBosko Milekic * The "packet" keg constructor. 795099a0e58SBosko Milekic */ 796b23f72e9SBrian Feldman static int 797b23f72e9SBrian Feldman mb_ctor_pack(void *mem, int size, void *arg, int how) 798099a0e58SBosko Milekic { 799099a0e58SBosko Milekic struct mbuf *m; 800099a0e58SBosko Milekic struct mb_args *args; 801ce28636bSAndre Oppermann int error, flags; 802099a0e58SBosko Milekic short type; 803099a0e58SBosko Milekic 804099a0e58SBosko Milekic m = (struct mbuf *)mem; 805099a0e58SBosko Milekic args = (struct mb_args *)arg; 806099a0e58SBosko Milekic flags = args->flags; 807099a0e58SBosko Milekic type = args->type; 808fddd4f62SNavdeep Parhar MPASS((flags & M_NOFREE) == 0); 809099a0e58SBosko Milekic 810121f0509SMike Silbersack #ifdef INVARIANTS 811121f0509SMike Silbersack trash_ctor(m->m_ext.ext_buf, MCLBYTES, arg, how); 812121f0509SMike Silbersack #endif 813099a0e58SBosko Milekic 814b4b12e52SGleb Smirnoff error = m_init(m, how, type, flags); 815afb295ccSAndre Oppermann 81656a4e45aSAndre Oppermann /* m_ext is already initialized. */ 817afb295ccSAndre Oppermann m->m_data = m->m_ext.ext_buf; 818afb295ccSAndre Oppermann m->m_flags = (flags | M_EXT); 81956a4e45aSAndre Oppermann 820afb295ccSAndre Oppermann return (error); 821099a0e58SBosko Milekic } 822099a0e58SBosko Milekic 823099a0e58SBosko Milekic /* 824e60b2fcbSGleb Smirnoff * This is the protocol drain routine. Called by UMA whenever any of the 825e60b2fcbSGleb Smirnoff * mbuf zones is closed to its limit. 826099a0e58SBosko Milekic * 827099a0e58SBosko Milekic * No locks should be held when this is called. The drain routines have to 828099a0e58SBosko Milekic * presently acquire some locks which raises the possibility of lock order 829099a0e58SBosko Milekic * reversal. 830099a0e58SBosko Milekic */ 831099a0e58SBosko Milekic static void 832e60b2fcbSGleb Smirnoff mb_reclaim(uma_zone_t zone __unused, int pending __unused) 833099a0e58SBosko Milekic { 834099a0e58SBosko Milekic struct domain *dp; 835099a0e58SBosko Milekic struct protosw *pr; 836099a0e58SBosko Milekic 837e60b2fcbSGleb Smirnoff WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK | WARN_PANIC, NULL, __func__); 838099a0e58SBosko Milekic 839099a0e58SBosko Milekic for (dp = domains; dp != NULL; dp = dp->dom_next) 840099a0e58SBosko Milekic for (pr = dp->dom_protosw; pr < dp->dom_protoswNPROTOSW; pr++) 841099a0e58SBosko Milekic if (pr->pr_drain != NULL) 842099a0e58SBosko Milekic (*pr->pr_drain)(); 843099a0e58SBosko Milekic } 8445e4bc63bSGleb Smirnoff 8455e4bc63bSGleb Smirnoff /* 84682334850SJohn Baldwin * Free "count" units of I/O from an mbuf chain. They could be held 84782334850SJohn Baldwin * in EXT_PGS or just as a normal mbuf. This code is intended to be 84882334850SJohn Baldwin * called in an error path (I/O error, closed connection, etc). 84982334850SJohn Baldwin */ 85082334850SJohn Baldwin void 85182334850SJohn Baldwin mb_free_notready(struct mbuf *m, int count) 85282334850SJohn Baldwin { 85382334850SJohn Baldwin int i; 85482334850SJohn Baldwin 85582334850SJohn Baldwin for (i = 0; i < count && m != NULL; i++) { 85682334850SJohn Baldwin if ((m->m_flags & M_EXT) != 0 && 85782334850SJohn Baldwin m->m_ext.ext_type == EXT_PGS) { 85882334850SJohn Baldwin m->m_ext.ext_pgs->nrdy--; 85982334850SJohn Baldwin if (m->m_ext.ext_pgs->nrdy != 0) 86082334850SJohn Baldwin continue; 86182334850SJohn Baldwin } 86282334850SJohn Baldwin m = m_free(m); 86382334850SJohn Baldwin } 86482334850SJohn Baldwin KASSERT(i == count, ("Removed only %d items from %p", i, m)); 86582334850SJohn Baldwin } 86682334850SJohn Baldwin 86782334850SJohn Baldwin /* 86882334850SJohn Baldwin * Compress an unmapped mbuf into a simple mbuf when it holds a small 86982334850SJohn Baldwin * amount of data. This is used as a DOS defense to avoid having 87082334850SJohn Baldwin * small packets tie up wired pages, an ext_pgs structure, and an 87182334850SJohn Baldwin * mbuf. Since this converts the existing mbuf in place, it can only 87282334850SJohn Baldwin * be used if there are no other references to 'm'. 87382334850SJohn Baldwin */ 87482334850SJohn Baldwin int 87582334850SJohn Baldwin mb_unmapped_compress(struct mbuf *m) 87682334850SJohn Baldwin { 87782334850SJohn Baldwin volatile u_int *refcnt; 87882334850SJohn Baldwin struct mbuf m_temp; 87982334850SJohn Baldwin 88082334850SJohn Baldwin /* 88182334850SJohn Baldwin * Assert that 'm' does not have a packet header. If 'm' had 88282334850SJohn Baldwin * a packet header, it would only be able to hold MHLEN bytes 88382334850SJohn Baldwin * and m_data would have to be initialized differently. 88482334850SJohn Baldwin */ 88582334850SJohn Baldwin KASSERT((m->m_flags & M_PKTHDR) == 0 && (m->m_flags & M_EXT) && 88682334850SJohn Baldwin m->m_ext.ext_type == EXT_PGS, 88782334850SJohn Baldwin ("%s: m %p !M_EXT or !EXT_PGS or M_PKTHDR", __func__, m)); 88882334850SJohn Baldwin KASSERT(m->m_len <= MLEN, ("m_len too large %p", m)); 88982334850SJohn Baldwin 89082334850SJohn Baldwin if (m->m_ext.ext_flags & EXT_FLAG_EMBREF) { 89182334850SJohn Baldwin refcnt = &m->m_ext.ext_count; 89282334850SJohn Baldwin } else { 89382334850SJohn Baldwin KASSERT(m->m_ext.ext_cnt != NULL, 89482334850SJohn Baldwin ("%s: no refcounting pointer on %p", __func__, m)); 89582334850SJohn Baldwin refcnt = m->m_ext.ext_cnt; 89682334850SJohn Baldwin } 89782334850SJohn Baldwin 89882334850SJohn Baldwin if (*refcnt != 1) 89982334850SJohn Baldwin return (EBUSY); 90082334850SJohn Baldwin 90182334850SJohn Baldwin /* 90282334850SJohn Baldwin * Copy mbuf header and m_ext portion of 'm' to 'm_temp' to 90382334850SJohn Baldwin * create a "fake" EXT_PGS mbuf that can be used with 90482334850SJohn Baldwin * m_copydata() as well as the ext_free callback. 90582334850SJohn Baldwin */ 90682334850SJohn Baldwin memcpy(&m_temp, m, offsetof(struct mbuf, m_ext) + sizeof (m->m_ext)); 90782334850SJohn Baldwin m_temp.m_next = NULL; 90882334850SJohn Baldwin m_temp.m_nextpkt = NULL; 90982334850SJohn Baldwin 91082334850SJohn Baldwin /* Turn 'm' into a "normal" mbuf. */ 91182334850SJohn Baldwin m->m_flags &= ~(M_EXT | M_RDONLY | M_NOMAP); 91282334850SJohn Baldwin m->m_data = m->m_dat; 91382334850SJohn Baldwin 91482334850SJohn Baldwin /* Copy data from template's ext_pgs. */ 91582334850SJohn Baldwin m_copydata(&m_temp, 0, m_temp.m_len, mtod(m, caddr_t)); 91682334850SJohn Baldwin 91782334850SJohn Baldwin /* Free the backing pages. */ 91882334850SJohn Baldwin m_temp.m_ext.ext_free(&m_temp); 91982334850SJohn Baldwin 92082334850SJohn Baldwin /* Finally, free the ext_pgs struct. */ 92182334850SJohn Baldwin uma_zfree(zone_extpgs, m_temp.m_ext.ext_pgs); 92282334850SJohn Baldwin return (0); 92382334850SJohn Baldwin } 92482334850SJohn Baldwin 92582334850SJohn Baldwin /* 92682334850SJohn Baldwin * These next few routines are used to permit downgrading an unmapped 92782334850SJohn Baldwin * mbuf to a chain of mapped mbufs. This is used when an interface 92882334850SJohn Baldwin * doesn't supported unmapped mbufs or if checksums need to be 92982334850SJohn Baldwin * computed in software. 93082334850SJohn Baldwin * 93182334850SJohn Baldwin * Each unmapped mbuf is converted to a chain of mbufs. First, any 93282334850SJohn Baldwin * TLS header data is stored in a regular mbuf. Second, each page of 93382334850SJohn Baldwin * unmapped data is stored in an mbuf with an EXT_SFBUF external 93482334850SJohn Baldwin * cluster. These mbufs use an sf_buf to provide a valid KVA for the 93582334850SJohn Baldwin * associated physical page. They also hold a reference on the 93682334850SJohn Baldwin * original EXT_PGS mbuf to ensure the physical page doesn't go away. 93782334850SJohn Baldwin * Finally, any TLS trailer data is stored in a regular mbuf. 93882334850SJohn Baldwin * 93982334850SJohn Baldwin * mb_unmapped_free_mext() is the ext_free handler for the EXT_SFBUF 94082334850SJohn Baldwin * mbufs. It frees the associated sf_buf and releases its reference 94182334850SJohn Baldwin * on the original EXT_PGS mbuf. 94282334850SJohn Baldwin * 94382334850SJohn Baldwin * _mb_unmapped_to_ext() is a helper function that converts a single 94482334850SJohn Baldwin * unmapped mbuf into a chain of mbufs. 94582334850SJohn Baldwin * 94682334850SJohn Baldwin * mb_unmapped_to_ext() is the public function that walks an mbuf 94782334850SJohn Baldwin * chain converting any unmapped mbufs to mapped mbufs. It returns 94882334850SJohn Baldwin * the new chain of unmapped mbufs on success. On failure it frees 94982334850SJohn Baldwin * the original mbuf chain and returns NULL. 95082334850SJohn Baldwin */ 95182334850SJohn Baldwin static void 95282334850SJohn Baldwin mb_unmapped_free_mext(struct mbuf *m) 95382334850SJohn Baldwin { 95482334850SJohn Baldwin struct sf_buf *sf; 95582334850SJohn Baldwin struct mbuf *old_m; 95682334850SJohn Baldwin 95782334850SJohn Baldwin sf = m->m_ext.ext_arg1; 95882334850SJohn Baldwin sf_buf_free(sf); 95982334850SJohn Baldwin 96082334850SJohn Baldwin /* Drop the reference on the backing EXT_PGS mbuf. */ 96182334850SJohn Baldwin old_m = m->m_ext.ext_arg2; 96282334850SJohn Baldwin mb_free_ext(old_m); 96382334850SJohn Baldwin } 96482334850SJohn Baldwin 96582334850SJohn Baldwin static struct mbuf * 96682334850SJohn Baldwin _mb_unmapped_to_ext(struct mbuf *m) 96782334850SJohn Baldwin { 96882334850SJohn Baldwin struct mbuf_ext_pgs *ext_pgs; 96982334850SJohn Baldwin struct mbuf *m_new, *top, *prev, *mref; 97082334850SJohn Baldwin struct sf_buf *sf; 97182334850SJohn Baldwin vm_page_t pg; 97282334850SJohn Baldwin int i, len, off, pglen, pgoff, seglen, segoff; 97382334850SJohn Baldwin volatile u_int *refcnt; 97482334850SJohn Baldwin u_int ref_inc = 0; 97582334850SJohn Baldwin 97682334850SJohn Baldwin MBUF_EXT_PGS_ASSERT(m); 97782334850SJohn Baldwin ext_pgs = m->m_ext.ext_pgs; 97882334850SJohn Baldwin len = m->m_len; 97982334850SJohn Baldwin KASSERT(ext_pgs->tls == NULL, ("%s: can't convert TLS mbuf %p", 98082334850SJohn Baldwin __func__, m)); 98182334850SJohn Baldwin 98282334850SJohn Baldwin /* See if this is the mbuf that holds the embedded refcount. */ 98382334850SJohn Baldwin if (m->m_ext.ext_flags & EXT_FLAG_EMBREF) { 98482334850SJohn Baldwin refcnt = &m->m_ext.ext_count; 98582334850SJohn Baldwin mref = m; 98682334850SJohn Baldwin } else { 98782334850SJohn Baldwin KASSERT(m->m_ext.ext_cnt != NULL, 98882334850SJohn Baldwin ("%s: no refcounting pointer on %p", __func__, m)); 98982334850SJohn Baldwin refcnt = m->m_ext.ext_cnt; 99082334850SJohn Baldwin mref = __containerof(refcnt, struct mbuf, m_ext.ext_count); 99182334850SJohn Baldwin } 99282334850SJohn Baldwin 99382334850SJohn Baldwin /* Skip over any data removed from the front. */ 99482334850SJohn Baldwin off = mtod(m, vm_offset_t); 99582334850SJohn Baldwin 99682334850SJohn Baldwin top = NULL; 99782334850SJohn Baldwin if (ext_pgs->hdr_len != 0) { 99882334850SJohn Baldwin if (off >= ext_pgs->hdr_len) { 99982334850SJohn Baldwin off -= ext_pgs->hdr_len; 100082334850SJohn Baldwin } else { 100182334850SJohn Baldwin seglen = ext_pgs->hdr_len - off; 100282334850SJohn Baldwin segoff = off; 100382334850SJohn Baldwin seglen = min(seglen, len); 100482334850SJohn Baldwin off = 0; 100582334850SJohn Baldwin len -= seglen; 100682334850SJohn Baldwin m_new = m_get(M_NOWAIT, MT_DATA); 100782334850SJohn Baldwin if (m_new == NULL) 100882334850SJohn Baldwin goto fail; 100982334850SJohn Baldwin m_new->m_len = seglen; 101082334850SJohn Baldwin prev = top = m_new; 101182334850SJohn Baldwin memcpy(mtod(m_new, void *), &ext_pgs->hdr[segoff], 101282334850SJohn Baldwin seglen); 101382334850SJohn Baldwin } 101482334850SJohn Baldwin } 101582334850SJohn Baldwin pgoff = ext_pgs->first_pg_off; 101682334850SJohn Baldwin for (i = 0; i < ext_pgs->npgs && len > 0; i++) { 101782334850SJohn Baldwin pglen = mbuf_ext_pg_len(ext_pgs, i, pgoff); 101882334850SJohn Baldwin if (off >= pglen) { 101982334850SJohn Baldwin off -= pglen; 102082334850SJohn Baldwin pgoff = 0; 102182334850SJohn Baldwin continue; 102282334850SJohn Baldwin } 102382334850SJohn Baldwin seglen = pglen - off; 102482334850SJohn Baldwin segoff = pgoff + off; 102582334850SJohn Baldwin off = 0; 102682334850SJohn Baldwin seglen = min(seglen, len); 102782334850SJohn Baldwin len -= seglen; 102882334850SJohn Baldwin 102982334850SJohn Baldwin pg = PHYS_TO_VM_PAGE(ext_pgs->pa[i]); 103082334850SJohn Baldwin m_new = m_get(M_NOWAIT, MT_DATA); 103182334850SJohn Baldwin if (m_new == NULL) 103282334850SJohn Baldwin goto fail; 103382334850SJohn Baldwin if (top == NULL) { 103482334850SJohn Baldwin top = prev = m_new; 103582334850SJohn Baldwin } else { 103682334850SJohn Baldwin prev->m_next = m_new; 103782334850SJohn Baldwin prev = m_new; 103882334850SJohn Baldwin } 103982334850SJohn Baldwin sf = sf_buf_alloc(pg, SFB_NOWAIT); 104082334850SJohn Baldwin if (sf == NULL) 104182334850SJohn Baldwin goto fail; 104282334850SJohn Baldwin 104382334850SJohn Baldwin ref_inc++; 104482334850SJohn Baldwin m_extadd(m_new, (char *)sf_buf_kva(sf), PAGE_SIZE, 104582334850SJohn Baldwin mb_unmapped_free_mext, sf, mref, M_RDONLY, EXT_SFBUF); 104682334850SJohn Baldwin m_new->m_data += segoff; 104782334850SJohn Baldwin m_new->m_len = seglen; 104882334850SJohn Baldwin 104982334850SJohn Baldwin pgoff = 0; 105082334850SJohn Baldwin }; 105182334850SJohn Baldwin if (len != 0) { 105282334850SJohn Baldwin KASSERT((off + len) <= ext_pgs->trail_len, 105382334850SJohn Baldwin ("off + len > trail (%d + %d > %d)", off, len, 105482334850SJohn Baldwin ext_pgs->trail_len)); 105582334850SJohn Baldwin m_new = m_get(M_NOWAIT, MT_DATA); 105682334850SJohn Baldwin if (m_new == NULL) 105782334850SJohn Baldwin goto fail; 105882334850SJohn Baldwin if (top == NULL) 105982334850SJohn Baldwin top = m_new; 106082334850SJohn Baldwin else 106182334850SJohn Baldwin prev->m_next = m_new; 106282334850SJohn Baldwin m_new->m_len = len; 106382334850SJohn Baldwin memcpy(mtod(m_new, void *), &ext_pgs->trail[off], len); 106482334850SJohn Baldwin } 106582334850SJohn Baldwin 106682334850SJohn Baldwin if (ref_inc != 0) { 106782334850SJohn Baldwin /* 106882334850SJohn Baldwin * Obtain an additional reference on the old mbuf for 106982334850SJohn Baldwin * each created EXT_SFBUF mbuf. They will be dropped 107082334850SJohn Baldwin * in mb_unmapped_free_mext(). 107182334850SJohn Baldwin */ 107282334850SJohn Baldwin if (*refcnt == 1) 107382334850SJohn Baldwin *refcnt += ref_inc; 107482334850SJohn Baldwin else 107582334850SJohn Baldwin atomic_add_int(refcnt, ref_inc); 107682334850SJohn Baldwin } 107782334850SJohn Baldwin m_free(m); 107882334850SJohn Baldwin return (top); 107982334850SJohn Baldwin 108082334850SJohn Baldwin fail: 108182334850SJohn Baldwin if (ref_inc != 0) { 108282334850SJohn Baldwin /* 108382334850SJohn Baldwin * Obtain an additional reference on the old mbuf for 108482334850SJohn Baldwin * each created EXT_SFBUF mbuf. They will be 108582334850SJohn Baldwin * immediately dropped when these mbufs are freed 108682334850SJohn Baldwin * below. 108782334850SJohn Baldwin */ 108882334850SJohn Baldwin if (*refcnt == 1) 108982334850SJohn Baldwin *refcnt += ref_inc; 109082334850SJohn Baldwin else 109182334850SJohn Baldwin atomic_add_int(refcnt, ref_inc); 109282334850SJohn Baldwin } 109382334850SJohn Baldwin m_free(m); 109482334850SJohn Baldwin m_freem(top); 109582334850SJohn Baldwin return (NULL); 109682334850SJohn Baldwin } 109782334850SJohn Baldwin 109882334850SJohn Baldwin struct mbuf * 109982334850SJohn Baldwin mb_unmapped_to_ext(struct mbuf *top) 110082334850SJohn Baldwin { 110182334850SJohn Baldwin struct mbuf *m, *next, *prev = NULL; 110282334850SJohn Baldwin 110382334850SJohn Baldwin prev = NULL; 110482334850SJohn Baldwin for (m = top; m != NULL; m = next) { 110582334850SJohn Baldwin /* m might be freed, so cache the next pointer. */ 110682334850SJohn Baldwin next = m->m_next; 110782334850SJohn Baldwin if (m->m_flags & M_NOMAP) { 110882334850SJohn Baldwin if (prev != NULL) { 110982334850SJohn Baldwin /* 111082334850SJohn Baldwin * Remove 'm' from the new chain so 111182334850SJohn Baldwin * that the 'top' chain terminates 111282334850SJohn Baldwin * before 'm' in case 'top' is freed 111382334850SJohn Baldwin * due to an error. 111482334850SJohn Baldwin */ 111582334850SJohn Baldwin prev->m_next = NULL; 111682334850SJohn Baldwin } 111782334850SJohn Baldwin m = _mb_unmapped_to_ext(m); 111882334850SJohn Baldwin if (m == NULL) { 111982334850SJohn Baldwin m_freem(top); 112082334850SJohn Baldwin m_freem(next); 112182334850SJohn Baldwin return (NULL); 112282334850SJohn Baldwin } 112382334850SJohn Baldwin if (prev == NULL) { 112482334850SJohn Baldwin top = m; 112582334850SJohn Baldwin } else { 112682334850SJohn Baldwin prev->m_next = m; 112782334850SJohn Baldwin } 112882334850SJohn Baldwin 112982334850SJohn Baldwin /* 113082334850SJohn Baldwin * Replaced one mbuf with a chain, so we must 113182334850SJohn Baldwin * find the end of chain. 113282334850SJohn Baldwin */ 113382334850SJohn Baldwin prev = m_last(m); 113482334850SJohn Baldwin } else { 113582334850SJohn Baldwin if (prev != NULL) { 113682334850SJohn Baldwin prev->m_next = m; 113782334850SJohn Baldwin } 113882334850SJohn Baldwin prev = m; 113982334850SJohn Baldwin } 114082334850SJohn Baldwin } 114182334850SJohn Baldwin return (top); 114282334850SJohn Baldwin } 114382334850SJohn Baldwin 114482334850SJohn Baldwin /* 114582334850SJohn Baldwin * Allocate an empty EXT_PGS mbuf. The ext_free routine is 114682334850SJohn Baldwin * responsible for freeing any pages backing this mbuf when it is 114782334850SJohn Baldwin * freed. 114882334850SJohn Baldwin */ 114982334850SJohn Baldwin struct mbuf * 115082334850SJohn Baldwin mb_alloc_ext_pgs(int how, bool pkthdr, m_ext_free_t ext_free) 115182334850SJohn Baldwin { 115282334850SJohn Baldwin struct mbuf *m; 115382334850SJohn Baldwin struct mbuf_ext_pgs *ext_pgs; 115482334850SJohn Baldwin 115582334850SJohn Baldwin if (pkthdr) 115682334850SJohn Baldwin m = m_gethdr(how, MT_DATA); 115782334850SJohn Baldwin else 115882334850SJohn Baldwin m = m_get(how, MT_DATA); 115982334850SJohn Baldwin if (m == NULL) 116082334850SJohn Baldwin return (NULL); 116182334850SJohn Baldwin 116282334850SJohn Baldwin ext_pgs = uma_zalloc(zone_extpgs, how); 116382334850SJohn Baldwin if (ext_pgs == NULL) { 116482334850SJohn Baldwin m_free(m); 116582334850SJohn Baldwin return (NULL); 116682334850SJohn Baldwin } 116782334850SJohn Baldwin ext_pgs->npgs = 0; 116882334850SJohn Baldwin ext_pgs->nrdy = 0; 116982334850SJohn Baldwin ext_pgs->first_pg_off = 0; 117082334850SJohn Baldwin ext_pgs->last_pg_len = 0; 117182334850SJohn Baldwin ext_pgs->hdr_len = 0; 117282334850SJohn Baldwin ext_pgs->trail_len = 0; 117382334850SJohn Baldwin ext_pgs->tls = NULL; 117482334850SJohn Baldwin ext_pgs->so = NULL; 117582334850SJohn Baldwin m->m_data = NULL; 117682334850SJohn Baldwin m->m_flags |= (M_EXT | M_RDONLY | M_NOMAP); 117782334850SJohn Baldwin m->m_ext.ext_type = EXT_PGS; 117882334850SJohn Baldwin m->m_ext.ext_flags = EXT_FLAG_EMBREF; 117982334850SJohn Baldwin m->m_ext.ext_count = 1; 118082334850SJohn Baldwin m->m_ext.ext_pgs = ext_pgs; 118182334850SJohn Baldwin m->m_ext.ext_size = 0; 118282334850SJohn Baldwin m->m_ext.ext_free = ext_free; 118382334850SJohn Baldwin return (m); 118482334850SJohn Baldwin } 118582334850SJohn Baldwin 118682334850SJohn Baldwin #ifdef INVARIANT_SUPPORT 118782334850SJohn Baldwin void 118882334850SJohn Baldwin mb_ext_pgs_check(struct mbuf_ext_pgs *ext_pgs) 118982334850SJohn Baldwin { 119082334850SJohn Baldwin 119182334850SJohn Baldwin /* 119282334850SJohn Baldwin * NB: This expects a non-empty buffer (npgs > 0 and 119382334850SJohn Baldwin * last_pg_len > 0). 119482334850SJohn Baldwin */ 119582334850SJohn Baldwin KASSERT(ext_pgs->npgs > 0, 119682334850SJohn Baldwin ("ext_pgs with no valid pages: %p", ext_pgs)); 119782334850SJohn Baldwin KASSERT(ext_pgs->npgs <= nitems(ext_pgs->pa), 119882334850SJohn Baldwin ("ext_pgs with too many pages: %p", ext_pgs)); 119982334850SJohn Baldwin KASSERT(ext_pgs->nrdy <= ext_pgs->npgs, 120082334850SJohn Baldwin ("ext_pgs with too many ready pages: %p", ext_pgs)); 120182334850SJohn Baldwin KASSERT(ext_pgs->first_pg_off < PAGE_SIZE, 120282334850SJohn Baldwin ("ext_pgs with too large page offset: %p", ext_pgs)); 120382334850SJohn Baldwin KASSERT(ext_pgs->last_pg_len > 0, 120482334850SJohn Baldwin ("ext_pgs with zero last page length: %p", ext_pgs)); 120582334850SJohn Baldwin KASSERT(ext_pgs->last_pg_len <= PAGE_SIZE, 120682334850SJohn Baldwin ("ext_pgs with too large last page length: %p", ext_pgs)); 120782334850SJohn Baldwin if (ext_pgs->npgs == 1) { 120882334850SJohn Baldwin KASSERT(ext_pgs->first_pg_off + ext_pgs->last_pg_len <= 120982334850SJohn Baldwin PAGE_SIZE, ("ext_pgs with single page too large: %p", 121082334850SJohn Baldwin ext_pgs)); 121182334850SJohn Baldwin } 121282334850SJohn Baldwin KASSERT(ext_pgs->hdr_len <= sizeof(ext_pgs->hdr), 121382334850SJohn Baldwin ("ext_pgs with too large header length: %p", ext_pgs)); 121482334850SJohn Baldwin KASSERT(ext_pgs->trail_len <= sizeof(ext_pgs->trail), 121582334850SJohn Baldwin ("ext_pgs with too large header length: %p", ext_pgs)); 121682334850SJohn Baldwin } 121782334850SJohn Baldwin #endif 121882334850SJohn Baldwin 121982334850SJohn Baldwin /* 12205e4bc63bSGleb Smirnoff * Clean up after mbufs with M_EXT storage attached to them if the 12215e4bc63bSGleb Smirnoff * reference count hits 1. 12225e4bc63bSGleb Smirnoff */ 12235e4bc63bSGleb Smirnoff void 12245e4bc63bSGleb Smirnoff mb_free_ext(struct mbuf *m) 12255e4bc63bSGleb Smirnoff { 122656a5f52eSGleb Smirnoff volatile u_int *refcnt; 122756a5f52eSGleb Smirnoff struct mbuf *mref; 12285e4bc63bSGleb Smirnoff int freembuf; 12295e4bc63bSGleb Smirnoff 12305e4bc63bSGleb Smirnoff KASSERT(m->m_flags & M_EXT, ("%s: M_EXT not set on %p", __func__, m)); 12315e4bc63bSGleb Smirnoff 123256a5f52eSGleb Smirnoff /* See if this is the mbuf that holds the embedded refcount. */ 123356a5f52eSGleb Smirnoff if (m->m_ext.ext_flags & EXT_FLAG_EMBREF) { 123456a5f52eSGleb Smirnoff refcnt = &m->m_ext.ext_count; 123556a5f52eSGleb Smirnoff mref = m; 123656a5f52eSGleb Smirnoff } else { 123756a5f52eSGleb Smirnoff KASSERT(m->m_ext.ext_cnt != NULL, 123856a5f52eSGleb Smirnoff ("%s: no refcounting pointer on %p", __func__, m)); 123956a5f52eSGleb Smirnoff refcnt = m->m_ext.ext_cnt; 124056a5f52eSGleb Smirnoff mref = __containerof(refcnt, struct mbuf, m_ext.ext_count); 124156a5f52eSGleb Smirnoff } 124256a5f52eSGleb Smirnoff 12435e4bc63bSGleb Smirnoff /* 124456a5f52eSGleb Smirnoff * Check if the header is embedded in the cluster. It is 124556a5f52eSGleb Smirnoff * important that we can't touch any of the mbuf fields 124656a5f52eSGleb Smirnoff * after we have freed the external storage, since mbuf 124717cd649fSGleb Smirnoff * could have been embedded in it. For now, the mbufs 124817cd649fSGleb Smirnoff * embedded into the cluster are always of type EXT_EXTREF, 124917cd649fSGleb Smirnoff * and for this type we won't free the mref. 12505e4bc63bSGleb Smirnoff */ 125117cd649fSGleb Smirnoff if (m->m_flags & M_NOFREE) { 125217cd649fSGleb Smirnoff freembuf = 0; 1253eec189c7SGleb Smirnoff KASSERT(m->m_ext.ext_type == EXT_EXTREF || 1254eec189c7SGleb Smirnoff m->m_ext.ext_type == EXT_RXRING, 125517cd649fSGleb Smirnoff ("%s: no-free mbuf %p has wrong type", __func__, m)); 125617cd649fSGleb Smirnoff } else 125717cd649fSGleb Smirnoff freembuf = 1; 12585e4bc63bSGleb Smirnoff 125956a5f52eSGleb Smirnoff /* Free attached storage if this mbuf is the only reference to it. */ 126056a5f52eSGleb Smirnoff if (*refcnt == 1 || atomic_fetchadd_int(refcnt, -1) == 1) { 12615e4bc63bSGleb Smirnoff switch (m->m_ext.ext_type) { 126256a5f52eSGleb Smirnoff case EXT_PACKET: 126356a5f52eSGleb Smirnoff /* The packet zone is special. */ 126456a5f52eSGleb Smirnoff if (*refcnt == 0) 126556a5f52eSGleb Smirnoff *refcnt = 1; 126656a5f52eSGleb Smirnoff uma_zfree(zone_pack, mref); 12675e4bc63bSGleb Smirnoff break; 12685e4bc63bSGleb Smirnoff case EXT_CLUSTER: 12695e4bc63bSGleb Smirnoff uma_zfree(zone_clust, m->m_ext.ext_buf); 127056a5f52eSGleb Smirnoff uma_zfree(zone_mbuf, mref); 12715e4bc63bSGleb Smirnoff break; 12725e4bc63bSGleb Smirnoff case EXT_JUMBOP: 12735e4bc63bSGleb Smirnoff uma_zfree(zone_jumbop, m->m_ext.ext_buf); 127456a5f52eSGleb Smirnoff uma_zfree(zone_mbuf, mref); 12755e4bc63bSGleb Smirnoff break; 12765e4bc63bSGleb Smirnoff case EXT_JUMBO9: 12775e4bc63bSGleb Smirnoff uma_zfree(zone_jumbo9, m->m_ext.ext_buf); 127856a5f52eSGleb Smirnoff uma_zfree(zone_mbuf, mref); 12795e4bc63bSGleb Smirnoff break; 12805e4bc63bSGleb Smirnoff case EXT_JUMBO16: 12815e4bc63bSGleb Smirnoff uma_zfree(zone_jumbo16, m->m_ext.ext_buf); 128256a5f52eSGleb Smirnoff uma_zfree(zone_mbuf, mref); 128356a5f52eSGleb Smirnoff break; 128482334850SJohn Baldwin case EXT_PGS: 128582334850SJohn Baldwin uma_zfree(zone_extpgs, mref->m_ext.ext_pgs); 128682334850SJohn Baldwin uma_zfree(zone_mbuf, mref); 128782334850SJohn Baldwin break; 128856a5f52eSGleb Smirnoff case EXT_SFBUF: 12895e4bc63bSGleb Smirnoff case EXT_NET_DRV: 12905e4bc63bSGleb Smirnoff case EXT_MOD_TYPE: 12915e4bc63bSGleb Smirnoff case EXT_DISPOSABLE: 129207e87a1dSGleb Smirnoff KASSERT(mref->m_ext.ext_free != NULL, 12930ea37a86SGleb Smirnoff ("%s: ext_free not set", __func__)); 129407e87a1dSGleb Smirnoff mref->m_ext.ext_free(mref); 129556a5f52eSGleb Smirnoff uma_zfree(zone_mbuf, mref); 12960ea37a86SGleb Smirnoff break; 12975e4bc63bSGleb Smirnoff case EXT_EXTREF: 12985e4bc63bSGleb Smirnoff KASSERT(m->m_ext.ext_free != NULL, 12995e4bc63bSGleb Smirnoff ("%s: ext_free not set", __func__)); 1300e8fd18f3SGleb Smirnoff m->m_ext.ext_free(m); 13015e4bc63bSGleb Smirnoff break; 1302eec189c7SGleb Smirnoff case EXT_RXRING: 1303eec189c7SGleb Smirnoff KASSERT(m->m_ext.ext_free == NULL, 1304eec189c7SGleb Smirnoff ("%s: ext_free is set", __func__)); 1305eec189c7SGleb Smirnoff break; 13065e4bc63bSGleb Smirnoff default: 13075e4bc63bSGleb Smirnoff KASSERT(m->m_ext.ext_type == 0, 13085e4bc63bSGleb Smirnoff ("%s: unknown ext_type", __func__)); 13095e4bc63bSGleb Smirnoff } 13105e4bc63bSGleb Smirnoff } 13115e4bc63bSGleb Smirnoff 131256a5f52eSGleb Smirnoff if (freembuf && m != mref) 13135e4bc63bSGleb Smirnoff uma_zfree(zone_mbuf, m); 13145e4bc63bSGleb Smirnoff } 13155e4bc63bSGleb Smirnoff 13165e4bc63bSGleb Smirnoff /* 13175e4bc63bSGleb Smirnoff * Official mbuf(9) allocation KPI for stack and drivers: 13185e4bc63bSGleb Smirnoff * 13195e4bc63bSGleb Smirnoff * m_get() - a single mbuf without any attachments, sys/mbuf.h. 13205e4bc63bSGleb Smirnoff * m_gethdr() - a single mbuf initialized as M_PKTHDR, sys/mbuf.h. 13215e4bc63bSGleb Smirnoff * m_getcl() - an mbuf + 2k cluster, sys/mbuf.h. 13225e4bc63bSGleb Smirnoff * m_clget() - attach cluster to already allocated mbuf. 13235e4bc63bSGleb Smirnoff * m_cljget() - attach jumbo cluster to already allocated mbuf. 13245e4bc63bSGleb Smirnoff * m_get2() - allocate minimum mbuf that would fit size argument. 13255e4bc63bSGleb Smirnoff * m_getm2() - allocate a chain of mbufs/clusters. 13265e4bc63bSGleb Smirnoff * m_extadd() - attach external cluster to mbuf. 13275e4bc63bSGleb Smirnoff * 13285e4bc63bSGleb Smirnoff * m_free() - free single mbuf with its tags and ext, sys/mbuf.h. 13295e4bc63bSGleb Smirnoff * m_freem() - free chain of mbufs. 13305e4bc63bSGleb Smirnoff */ 13315e4bc63bSGleb Smirnoff 13325e4bc63bSGleb Smirnoff int 13335e4bc63bSGleb Smirnoff m_clget(struct mbuf *m, int how) 13345e4bc63bSGleb Smirnoff { 13355e4bc63bSGleb Smirnoff 13365e4bc63bSGleb Smirnoff KASSERT((m->m_flags & M_EXT) == 0, ("%s: mbuf %p has M_EXT", 13375e4bc63bSGleb Smirnoff __func__, m)); 13385e4bc63bSGleb Smirnoff m->m_ext.ext_buf = (char *)NULL; 13395e4bc63bSGleb Smirnoff uma_zalloc_arg(zone_clust, m, how); 13405e4bc63bSGleb Smirnoff /* 13415e4bc63bSGleb Smirnoff * On a cluster allocation failure, drain the packet zone and retry, 13425e4bc63bSGleb Smirnoff * we might be able to loosen a few clusters up on the drain. 13435e4bc63bSGleb Smirnoff */ 13445e4bc63bSGleb Smirnoff if ((how & M_NOWAIT) && (m->m_ext.ext_buf == NULL)) { 13455e4bc63bSGleb Smirnoff zone_drain(zone_pack); 13465e4bc63bSGleb Smirnoff uma_zalloc_arg(zone_clust, m, how); 13475e4bc63bSGleb Smirnoff } 1348480f4e94SGeorge V. Neville-Neil MBUF_PROBE2(m__clget, m, how); 13495e4bc63bSGleb Smirnoff return (m->m_flags & M_EXT); 13505e4bc63bSGleb Smirnoff } 13515e4bc63bSGleb Smirnoff 13525e4bc63bSGleb Smirnoff /* 13535e4bc63bSGleb Smirnoff * m_cljget() is different from m_clget() as it can allocate clusters without 13545e4bc63bSGleb Smirnoff * attaching them to an mbuf. In that case the return value is the pointer 13555e4bc63bSGleb Smirnoff * to the cluster of the requested size. If an mbuf was specified, it gets 13565e4bc63bSGleb Smirnoff * the cluster attached to it and the return value can be safely ignored. 13575e4bc63bSGleb Smirnoff * For size it takes MCLBYTES, MJUMPAGESIZE, MJUM9BYTES, MJUM16BYTES. 13585e4bc63bSGleb Smirnoff */ 13595e4bc63bSGleb Smirnoff void * 13605e4bc63bSGleb Smirnoff m_cljget(struct mbuf *m, int how, int size) 13615e4bc63bSGleb Smirnoff { 13625e4bc63bSGleb Smirnoff uma_zone_t zone; 1363480f4e94SGeorge V. Neville-Neil void *retval; 13645e4bc63bSGleb Smirnoff 13655e4bc63bSGleb Smirnoff if (m != NULL) { 13665e4bc63bSGleb Smirnoff KASSERT((m->m_flags & M_EXT) == 0, ("%s: mbuf %p has M_EXT", 13675e4bc63bSGleb Smirnoff __func__, m)); 13685e4bc63bSGleb Smirnoff m->m_ext.ext_buf = NULL; 13695e4bc63bSGleb Smirnoff } 13705e4bc63bSGleb Smirnoff 13715e4bc63bSGleb Smirnoff zone = m_getzone(size); 1372480f4e94SGeorge V. Neville-Neil retval = uma_zalloc_arg(zone, m, how); 1373480f4e94SGeorge V. Neville-Neil 1374480f4e94SGeorge V. Neville-Neil MBUF_PROBE4(m__cljget, m, how, size, retval); 1375480f4e94SGeorge V. Neville-Neil 1376480f4e94SGeorge V. Neville-Neil return (retval); 13775e4bc63bSGleb Smirnoff } 13785e4bc63bSGleb Smirnoff 13795e4bc63bSGleb Smirnoff /* 13805e4bc63bSGleb Smirnoff * m_get2() allocates minimum mbuf that would fit "size" argument. 13815e4bc63bSGleb Smirnoff */ 13825e4bc63bSGleb Smirnoff struct mbuf * 13835e4bc63bSGleb Smirnoff m_get2(int size, int how, short type, int flags) 13845e4bc63bSGleb Smirnoff { 13855e4bc63bSGleb Smirnoff struct mb_args args; 13865e4bc63bSGleb Smirnoff struct mbuf *m, *n; 13875e4bc63bSGleb Smirnoff 13885e4bc63bSGleb Smirnoff args.flags = flags; 13895e4bc63bSGleb Smirnoff args.type = type; 13905e4bc63bSGleb Smirnoff 13915e4bc63bSGleb Smirnoff if (size <= MHLEN || (size <= MLEN && (flags & M_PKTHDR) == 0)) 13925e4bc63bSGleb Smirnoff return (uma_zalloc_arg(zone_mbuf, &args, how)); 13935e4bc63bSGleb Smirnoff if (size <= MCLBYTES) 13945e4bc63bSGleb Smirnoff return (uma_zalloc_arg(zone_pack, &args, how)); 13955e4bc63bSGleb Smirnoff 13965e4bc63bSGleb Smirnoff if (size > MJUMPAGESIZE) 13975e4bc63bSGleb Smirnoff return (NULL); 13985e4bc63bSGleb Smirnoff 13995e4bc63bSGleb Smirnoff m = uma_zalloc_arg(zone_mbuf, &args, how); 14005e4bc63bSGleb Smirnoff if (m == NULL) 14015e4bc63bSGleb Smirnoff return (NULL); 14025e4bc63bSGleb Smirnoff 14035e4bc63bSGleb Smirnoff n = uma_zalloc_arg(zone_jumbop, m, how); 14045e4bc63bSGleb Smirnoff if (n == NULL) { 14055e4bc63bSGleb Smirnoff uma_zfree(zone_mbuf, m); 14065e4bc63bSGleb Smirnoff return (NULL); 14075e4bc63bSGleb Smirnoff } 14085e4bc63bSGleb Smirnoff 14095e4bc63bSGleb Smirnoff return (m); 14105e4bc63bSGleb Smirnoff } 14115e4bc63bSGleb Smirnoff 14125e4bc63bSGleb Smirnoff /* 14135e4bc63bSGleb Smirnoff * m_getjcl() returns an mbuf with a cluster of the specified size attached. 14145e4bc63bSGleb Smirnoff * For size it takes MCLBYTES, MJUMPAGESIZE, MJUM9BYTES, MJUM16BYTES. 14155e4bc63bSGleb Smirnoff */ 14165e4bc63bSGleb Smirnoff struct mbuf * 14175e4bc63bSGleb Smirnoff m_getjcl(int how, short type, int flags, int size) 14185e4bc63bSGleb Smirnoff { 14195e4bc63bSGleb Smirnoff struct mb_args args; 14205e4bc63bSGleb Smirnoff struct mbuf *m, *n; 14215e4bc63bSGleb Smirnoff uma_zone_t zone; 14225e4bc63bSGleb Smirnoff 14235e4bc63bSGleb Smirnoff if (size == MCLBYTES) 14245e4bc63bSGleb Smirnoff return m_getcl(how, type, flags); 14255e4bc63bSGleb Smirnoff 14265e4bc63bSGleb Smirnoff args.flags = flags; 14275e4bc63bSGleb Smirnoff args.type = type; 14285e4bc63bSGleb Smirnoff 14295e4bc63bSGleb Smirnoff m = uma_zalloc_arg(zone_mbuf, &args, how); 14305e4bc63bSGleb Smirnoff if (m == NULL) 14315e4bc63bSGleb Smirnoff return (NULL); 14325e4bc63bSGleb Smirnoff 14335e4bc63bSGleb Smirnoff zone = m_getzone(size); 14345e4bc63bSGleb Smirnoff n = uma_zalloc_arg(zone, m, how); 14355e4bc63bSGleb Smirnoff if (n == NULL) { 14365e4bc63bSGleb Smirnoff uma_zfree(zone_mbuf, m); 14375e4bc63bSGleb Smirnoff return (NULL); 14385e4bc63bSGleb Smirnoff } 14395e4bc63bSGleb Smirnoff return (m); 14405e4bc63bSGleb Smirnoff } 14415e4bc63bSGleb Smirnoff 14425e4bc63bSGleb Smirnoff /* 14435e4bc63bSGleb Smirnoff * Allocate a given length worth of mbufs and/or clusters (whatever fits 14445e4bc63bSGleb Smirnoff * best) and return a pointer to the top of the allocated chain. If an 14455e4bc63bSGleb Smirnoff * existing mbuf chain is provided, then we will append the new chain 144658c43838SAndriy Voskoboinyk * to the existing one and return a pointer to the provided mbuf. 14475e4bc63bSGleb Smirnoff */ 14485e4bc63bSGleb Smirnoff struct mbuf * 14495e4bc63bSGleb Smirnoff m_getm2(struct mbuf *m, int len, int how, short type, int flags) 14505e4bc63bSGleb Smirnoff { 14515e4bc63bSGleb Smirnoff struct mbuf *mb, *nm = NULL, *mtail = NULL; 14525e4bc63bSGleb Smirnoff 14535e4bc63bSGleb Smirnoff KASSERT(len >= 0, ("%s: len is < 0", __func__)); 14545e4bc63bSGleb Smirnoff 14555e4bc63bSGleb Smirnoff /* Validate flags. */ 14565e4bc63bSGleb Smirnoff flags &= (M_PKTHDR | M_EOR); 14575e4bc63bSGleb Smirnoff 14585e4bc63bSGleb Smirnoff /* Packet header mbuf must be first in chain. */ 14595e4bc63bSGleb Smirnoff if ((flags & M_PKTHDR) && m != NULL) 14605e4bc63bSGleb Smirnoff flags &= ~M_PKTHDR; 14615e4bc63bSGleb Smirnoff 14625e4bc63bSGleb Smirnoff /* Loop and append maximum sized mbufs to the chain tail. */ 14635e4bc63bSGleb Smirnoff while (len > 0) { 14645e4bc63bSGleb Smirnoff if (len > MCLBYTES) 14655e4bc63bSGleb Smirnoff mb = m_getjcl(how, type, (flags & M_PKTHDR), 14665e4bc63bSGleb Smirnoff MJUMPAGESIZE); 14675e4bc63bSGleb Smirnoff else if (len >= MINCLSIZE) 14685e4bc63bSGleb Smirnoff mb = m_getcl(how, type, (flags & M_PKTHDR)); 14695e4bc63bSGleb Smirnoff else if (flags & M_PKTHDR) 14705e4bc63bSGleb Smirnoff mb = m_gethdr(how, type); 14715e4bc63bSGleb Smirnoff else 14725e4bc63bSGleb Smirnoff mb = m_get(how, type); 14735e4bc63bSGleb Smirnoff 14745e4bc63bSGleb Smirnoff /* Fail the whole operation if one mbuf can't be allocated. */ 14755e4bc63bSGleb Smirnoff if (mb == NULL) { 14765e4bc63bSGleb Smirnoff if (nm != NULL) 14775e4bc63bSGleb Smirnoff m_freem(nm); 14785e4bc63bSGleb Smirnoff return (NULL); 14795e4bc63bSGleb Smirnoff } 14805e4bc63bSGleb Smirnoff 14815e4bc63bSGleb Smirnoff /* Book keeping. */ 14825e4bc63bSGleb Smirnoff len -= M_SIZE(mb); 14835e4bc63bSGleb Smirnoff if (mtail != NULL) 14845e4bc63bSGleb Smirnoff mtail->m_next = mb; 14855e4bc63bSGleb Smirnoff else 14865e4bc63bSGleb Smirnoff nm = mb; 14875e4bc63bSGleb Smirnoff mtail = mb; 14885e4bc63bSGleb Smirnoff flags &= ~M_PKTHDR; /* Only valid on the first mbuf. */ 14895e4bc63bSGleb Smirnoff } 14905e4bc63bSGleb Smirnoff if (flags & M_EOR) 14915e4bc63bSGleb Smirnoff mtail->m_flags |= M_EOR; /* Only valid on the last mbuf. */ 14925e4bc63bSGleb Smirnoff 14935e4bc63bSGleb Smirnoff /* If mbuf was supplied, append new chain to the end of it. */ 14945e4bc63bSGleb Smirnoff if (m != NULL) { 14955e4bc63bSGleb Smirnoff for (mtail = m; mtail->m_next != NULL; mtail = mtail->m_next) 14965e4bc63bSGleb Smirnoff ; 14975e4bc63bSGleb Smirnoff mtail->m_next = nm; 14985e4bc63bSGleb Smirnoff mtail->m_flags &= ~M_EOR; 14995e4bc63bSGleb Smirnoff } else 15005e4bc63bSGleb Smirnoff m = nm; 15015e4bc63bSGleb Smirnoff 15025e4bc63bSGleb Smirnoff return (m); 15035e4bc63bSGleb Smirnoff } 15045e4bc63bSGleb Smirnoff 15055e4bc63bSGleb Smirnoff /*- 15065e4bc63bSGleb Smirnoff * Configure a provided mbuf to refer to the provided external storage 150756a5f52eSGleb Smirnoff * buffer and setup a reference count for said buffer. 15085e4bc63bSGleb Smirnoff * 15095e4bc63bSGleb Smirnoff * Arguments: 15105e4bc63bSGleb Smirnoff * mb The existing mbuf to which to attach the provided buffer. 15115e4bc63bSGleb Smirnoff * buf The address of the provided external storage buffer. 15125e4bc63bSGleb Smirnoff * size The size of the provided buffer. 15135e4bc63bSGleb Smirnoff * freef A pointer to a routine that is responsible for freeing the 15145e4bc63bSGleb Smirnoff * provided external storage buffer. 15155e4bc63bSGleb Smirnoff * args A pointer to an argument structure (of any type) to be passed 15165e4bc63bSGleb Smirnoff * to the provided freef routine (may be NULL). 15175e4bc63bSGleb Smirnoff * flags Any other flags to be passed to the provided mbuf. 15185e4bc63bSGleb Smirnoff * type The type that the external storage buffer should be 15195e4bc63bSGleb Smirnoff * labeled with. 15205e4bc63bSGleb Smirnoff * 15215e4bc63bSGleb Smirnoff * Returns: 15225e4bc63bSGleb Smirnoff * Nothing. 15235e4bc63bSGleb Smirnoff */ 152456a5f52eSGleb Smirnoff void 1525e8fd18f3SGleb Smirnoff m_extadd(struct mbuf *mb, char *buf, u_int size, m_ext_free_t freef, 1526e8fd18f3SGleb Smirnoff void *arg1, void *arg2, int flags, int type) 15275e4bc63bSGleb Smirnoff { 152856a5f52eSGleb Smirnoff 15295e4bc63bSGleb Smirnoff KASSERT(type != EXT_CLUSTER, ("%s: EXT_CLUSTER not allowed", __func__)); 15305e4bc63bSGleb Smirnoff 15315e4bc63bSGleb Smirnoff mb->m_flags |= (M_EXT | flags); 15325e4bc63bSGleb Smirnoff mb->m_ext.ext_buf = buf; 15335e4bc63bSGleb Smirnoff mb->m_data = mb->m_ext.ext_buf; 15345e4bc63bSGleb Smirnoff mb->m_ext.ext_size = size; 15355e4bc63bSGleb Smirnoff mb->m_ext.ext_free = freef; 15365e4bc63bSGleb Smirnoff mb->m_ext.ext_arg1 = arg1; 15375e4bc63bSGleb Smirnoff mb->m_ext.ext_arg2 = arg2; 15385e4bc63bSGleb Smirnoff mb->m_ext.ext_type = type; 15395e4bc63bSGleb Smirnoff 154056a5f52eSGleb Smirnoff if (type != EXT_EXTREF) { 154156a5f52eSGleb Smirnoff mb->m_ext.ext_count = 1; 154256a5f52eSGleb Smirnoff mb->m_ext.ext_flags = EXT_FLAG_EMBREF; 154356a5f52eSGleb Smirnoff } else 154456a5f52eSGleb Smirnoff mb->m_ext.ext_flags = 0; 15455e4bc63bSGleb Smirnoff } 15465e4bc63bSGleb Smirnoff 15475e4bc63bSGleb Smirnoff /* 15485e4bc63bSGleb Smirnoff * Free an entire chain of mbufs and associated external buffers, if 15495e4bc63bSGleb Smirnoff * applicable. 15505e4bc63bSGleb Smirnoff */ 15515e4bc63bSGleb Smirnoff void 15525e4bc63bSGleb Smirnoff m_freem(struct mbuf *mb) 15535e4bc63bSGleb Smirnoff { 15545e4bc63bSGleb Smirnoff 1555c8f59118SGleb Smirnoff MBUF_PROBE1(m__freem, mb); 15565e4bc63bSGleb Smirnoff while (mb != NULL) 15575e4bc63bSGleb Smirnoff mb = m_free(mb); 15585e4bc63bSGleb Smirnoff } 1559fb3bc596SJohn Baldwin 1560fb3bc596SJohn Baldwin void 1561fb3bc596SJohn Baldwin m_snd_tag_init(struct m_snd_tag *mst, struct ifnet *ifp) 1562fb3bc596SJohn Baldwin { 1563fb3bc596SJohn Baldwin 1564fb3bc596SJohn Baldwin if_ref(ifp); 1565fb3bc596SJohn Baldwin mst->ifp = ifp; 1566fb3bc596SJohn Baldwin refcount_init(&mst->refcount, 1); 1567fb3bc596SJohn Baldwin counter_u64_add(snd_tag_count, 1); 1568fb3bc596SJohn Baldwin } 1569fb3bc596SJohn Baldwin 1570fb3bc596SJohn Baldwin void 1571fb3bc596SJohn Baldwin m_snd_tag_destroy(struct m_snd_tag *mst) 1572fb3bc596SJohn Baldwin { 1573fb3bc596SJohn Baldwin struct ifnet *ifp; 1574fb3bc596SJohn Baldwin 1575fb3bc596SJohn Baldwin ifp = mst->ifp; 1576fb3bc596SJohn Baldwin ifp->if_snd_tag_free(mst); 1577fb3bc596SJohn Baldwin if_rele(ifp); 1578fb3bc596SJohn Baldwin counter_u64_add(snd_tag_count, -1); 1579fb3bc596SJohn Baldwin } 1580