1f9790aebSLuigi Rizzo /* 217885a7bSLuigi Rizzo * Copyright (C) 2013-2014 Universita` di Pisa. All rights reserved. 3f9790aebSLuigi Rizzo * 4f9790aebSLuigi Rizzo * Redistribution and use in source and binary forms, with or without 5f9790aebSLuigi Rizzo * modification, are permitted provided that the following conditions 6f9790aebSLuigi Rizzo * are met: 7f9790aebSLuigi Rizzo * 1. Redistributions of source code must retain the above copyright 8f9790aebSLuigi Rizzo * notice, this list of conditions and the following disclaimer. 9f9790aebSLuigi Rizzo * 2. Redistributions in binary form must reproduce the above copyright 10f9790aebSLuigi Rizzo * notice, this list of conditions and the following disclaimer in the 11f9790aebSLuigi Rizzo * documentation and/or other materials provided with the distribution. 12f9790aebSLuigi Rizzo * 13f9790aebSLuigi Rizzo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 14f9790aebSLuigi Rizzo * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 15f9790aebSLuigi Rizzo * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 16f9790aebSLuigi Rizzo * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 17f9790aebSLuigi Rizzo * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 18f9790aebSLuigi Rizzo * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 19f9790aebSLuigi Rizzo * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 20f9790aebSLuigi Rizzo * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 21f9790aebSLuigi Rizzo * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 22f9790aebSLuigi Rizzo * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 23f9790aebSLuigi Rizzo * SUCH DAMAGE. 24f9790aebSLuigi Rizzo */ 25f9790aebSLuigi Rizzo 26f9790aebSLuigi Rizzo /* 27f9790aebSLuigi Rizzo * This module implements netmap support on top of standard, 28f9790aebSLuigi Rizzo * unmodified device drivers. 29f9790aebSLuigi Rizzo * 30f9790aebSLuigi Rizzo * A NIOCREGIF request is handled here if the device does not 31f9790aebSLuigi Rizzo * have native support. TX and RX rings are emulated as follows: 32f9790aebSLuigi Rizzo * 33f9790aebSLuigi Rizzo * NIOCREGIF 34f9790aebSLuigi Rizzo * We preallocate a block of TX mbufs (roughly as many as 35f9790aebSLuigi Rizzo * tx descriptors; the number is not critical) to speed up 36f9790aebSLuigi Rizzo * operation during transmissions. The refcount on most of 37f9790aebSLuigi Rizzo * these buffers is artificially bumped up so we can recycle 38f9790aebSLuigi Rizzo * them more easily. Also, the destructor is intercepted 39f9790aebSLuigi Rizzo * so we use it as an interrupt notification to wake up 40f9790aebSLuigi Rizzo * processes blocked on a poll(). 41f9790aebSLuigi Rizzo * 42f9790aebSLuigi Rizzo * For each receive ring we allocate one "struct mbq" 43f9790aebSLuigi Rizzo * (an mbuf tailq plus a spinlock). We intercept packets 44f9790aebSLuigi Rizzo * (through if_input) 45f9790aebSLuigi Rizzo * on the receive path and put them in the mbq from which 46f9790aebSLuigi Rizzo * netmap receive routines can grab them. 47f9790aebSLuigi Rizzo * 48f9790aebSLuigi Rizzo * TX: 49f9790aebSLuigi Rizzo * in the generic_txsync() routine, netmap buffers are copied 50f9790aebSLuigi Rizzo * (or linked, in a future) to the preallocated mbufs 51f9790aebSLuigi Rizzo * and pushed to the transmit queue. Some of these mbufs 52f9790aebSLuigi Rizzo * (those with NS_REPORT, or otherwise every half ring) 53f9790aebSLuigi Rizzo * have the refcount=1, others have refcount=2. 54f9790aebSLuigi Rizzo * When the destructor is invoked, we take that as 55f9790aebSLuigi Rizzo * a notification that all mbufs up to that one in 56f9790aebSLuigi Rizzo * the specific ring have been completed, and generate 57f9790aebSLuigi Rizzo * the equivalent of a transmit interrupt. 58f9790aebSLuigi Rizzo * 59f9790aebSLuigi Rizzo * RX: 60f9790aebSLuigi Rizzo * 61f9790aebSLuigi Rizzo */ 62f9790aebSLuigi Rizzo 63f9790aebSLuigi Rizzo #ifdef __FreeBSD__ 64f9790aebSLuigi Rizzo 65f9790aebSLuigi Rizzo #include <sys/cdefs.h> /* prerequisite */ 66f9790aebSLuigi Rizzo __FBSDID("$FreeBSD$"); 67f9790aebSLuigi Rizzo 68f9790aebSLuigi Rizzo #include <sys/types.h> 69f9790aebSLuigi Rizzo #include <sys/errno.h> 70f9790aebSLuigi Rizzo #include <sys/malloc.h> 71f9790aebSLuigi Rizzo #include <sys/lock.h> /* PROT_EXEC */ 72f9790aebSLuigi Rizzo #include <sys/rwlock.h> 73f9790aebSLuigi Rizzo #include <sys/socket.h> /* sockaddrs */ 74f9790aebSLuigi Rizzo #include <sys/selinfo.h> 75f9790aebSLuigi Rizzo #include <net/if.h> 76f9790aebSLuigi Rizzo #include <net/if_var.h> 77f9790aebSLuigi Rizzo #include <machine/bus.h> /* bus_dmamap_* in netmap_kern.h */ 78f9790aebSLuigi Rizzo 79f9790aebSLuigi Rizzo // XXX temporary - D() defined here 80f9790aebSLuigi Rizzo #include <net/netmap.h> 81f9790aebSLuigi Rizzo #include <dev/netmap/netmap_kern.h> 82f9790aebSLuigi Rizzo #include <dev/netmap/netmap_mem2.h> 83f9790aebSLuigi Rizzo 84*e4166283SLuigi Rizzo #define rtnl_lock() ND("rtnl_lock called") 85*e4166283SLuigi Rizzo #define rtnl_unlock() ND("rtnl_unlock called") 86f9790aebSLuigi Rizzo #define MBUF_TXQ(m) ((m)->m_pkthdr.flowid) 87f0ea3689SLuigi Rizzo #define MBUF_RXQ(m) ((m)->m_pkthdr.flowid) 88f9790aebSLuigi Rizzo #define smp_mb() 89f9790aebSLuigi Rizzo 90f9790aebSLuigi Rizzo /* 915899a007SLuigi Rizzo * FreeBSD mbuf allocator/deallocator in emulation mode: 925899a007SLuigi Rizzo * 935899a007SLuigi Rizzo * We allocate EXT_PACKET mbuf+clusters, but need to set M_NOFREE 945899a007SLuigi Rizzo * so that the destructor, if invoked, will not free the packet. 955899a007SLuigi Rizzo * In principle we should set the destructor only on demand, 965899a007SLuigi Rizzo * but since there might be a race we better do it on allocation. 975899a007SLuigi Rizzo * As a consequence, we also need to set the destructor or we 985899a007SLuigi Rizzo * would leak buffers. 99f9790aebSLuigi Rizzo */ 100f9790aebSLuigi Rizzo 101f9790aebSLuigi Rizzo /* 1025899a007SLuigi Rizzo * mbuf wrappers 103f9790aebSLuigi Rizzo */ 104f9790aebSLuigi Rizzo 105f9790aebSLuigi Rizzo /* mbuf destructor, also need to change the type to EXT_EXTREF, 106f9790aebSLuigi Rizzo * add an M_NOFREE flag, and then clear the flag and 107f9790aebSLuigi Rizzo * chain into uma_zfree(zone_pack, mf) 108f9790aebSLuigi Rizzo * (or reinstall the buffer ?) 109f9790aebSLuigi Rizzo */ 110f9790aebSLuigi Rizzo #define SET_MBUF_DESTRUCTOR(m, fn) do { \ 111f9790aebSLuigi Rizzo (m)->m_ext.ext_free = (void *)fn; \ 112f9790aebSLuigi Rizzo (m)->m_ext.ext_type = EXT_EXTREF; \ 113f9790aebSLuigi Rizzo } while (0) 114f9790aebSLuigi Rizzo 115*e4166283SLuigi Rizzo static void 116*e4166283SLuigi Rizzo netmap_default_mbuf_destructor(struct mbuf *m) 117*e4166283SLuigi Rizzo { 118*e4166283SLuigi Rizzo /* restore original mbuf */ 119*e4166283SLuigi Rizzo m->m_ext.ext_buf = m->m_data = m->m_ext.ext_arg1; 120*e4166283SLuigi Rizzo m->m_ext.ext_arg1 = NULL; 121*e4166283SLuigi Rizzo m->m_ext.ext_type = EXT_PACKET; 122*e4166283SLuigi Rizzo m->m_ext.ext_free = NULL; 123*e4166283SLuigi Rizzo if (*(m->m_ext.ref_cnt) == 0) 124*e4166283SLuigi Rizzo *(m->m_ext.ref_cnt) = 1; 125*e4166283SLuigi Rizzo uma_zfree(zone_pack, m); 126*e4166283SLuigi Rizzo } 127*e4166283SLuigi Rizzo 128*e4166283SLuigi Rizzo static inline struct mbuf * 129*e4166283SLuigi Rizzo netmap_get_mbuf(int len) 130*e4166283SLuigi Rizzo { 131*e4166283SLuigi Rizzo struct mbuf *m; 132*e4166283SLuigi Rizzo m = m_getcl(M_NOWAIT, MT_DATA, M_PKTHDR | M_NOFREE); 133*e4166283SLuigi Rizzo if (m) { 134*e4166283SLuigi Rizzo m->m_ext.ext_arg1 = m->m_ext.ext_buf; // XXX save 135*e4166283SLuigi Rizzo m->m_ext.ext_free = (void *)netmap_default_mbuf_destructor; 136*e4166283SLuigi Rizzo m->m_ext.ext_type = EXT_EXTREF; 137*e4166283SLuigi Rizzo ND(5, "create m %p refcnt %d", m, *m->m_ext.ref_cnt); 138*e4166283SLuigi Rizzo } 139*e4166283SLuigi Rizzo return m; 140*e4166283SLuigi Rizzo } 141f9790aebSLuigi Rizzo 142f9790aebSLuigi Rizzo #define GET_MBUF_REFCNT(m) ((m)->m_ext.ref_cnt ? *(m)->m_ext.ref_cnt : -1) 143f9790aebSLuigi Rizzo 144f9790aebSLuigi Rizzo 145f9790aebSLuigi Rizzo 146f9790aebSLuigi Rizzo #else /* linux */ 147f9790aebSLuigi Rizzo 148f9790aebSLuigi Rizzo #include "bsd_glue.h" 149f9790aebSLuigi Rizzo 150f9790aebSLuigi Rizzo #include <linux/rtnetlink.h> /* rtnl_[un]lock() */ 151f9790aebSLuigi Rizzo #include <linux/ethtool.h> /* struct ethtool_ops, get_ringparam */ 152f9790aebSLuigi Rizzo #include <linux/hrtimer.h> 153f9790aebSLuigi Rizzo 154f9790aebSLuigi Rizzo //#define RATE /* Enables communication statistics. */ 155f9790aebSLuigi Rizzo 156f9790aebSLuigi Rizzo //#define REG_RESET 157f9790aebSLuigi Rizzo 158f9790aebSLuigi Rizzo #endif /* linux */ 159f9790aebSLuigi Rizzo 160f9790aebSLuigi Rizzo 161f9790aebSLuigi Rizzo /* Common headers. */ 162f9790aebSLuigi Rizzo #include <net/netmap.h> 163f9790aebSLuigi Rizzo #include <dev/netmap/netmap_kern.h> 164f9790aebSLuigi Rizzo #include <dev/netmap/netmap_mem2.h> 165f9790aebSLuigi Rizzo 166f9790aebSLuigi Rizzo 167f9790aebSLuigi Rizzo 168f9790aebSLuigi Rizzo /* ======================== usage stats =========================== */ 169f9790aebSLuigi Rizzo 170f9790aebSLuigi Rizzo #ifdef RATE 171f9790aebSLuigi Rizzo #define IFRATE(x) x 172f9790aebSLuigi Rizzo struct rate_stats { 173f9790aebSLuigi Rizzo unsigned long txpkt; 174f9790aebSLuigi Rizzo unsigned long txsync; 175f9790aebSLuigi Rizzo unsigned long txirq; 176f9790aebSLuigi Rizzo unsigned long rxpkt; 177f9790aebSLuigi Rizzo unsigned long rxirq; 178f9790aebSLuigi Rizzo unsigned long rxsync; 179f9790aebSLuigi Rizzo }; 180f9790aebSLuigi Rizzo 181f9790aebSLuigi Rizzo struct rate_context { 182f9790aebSLuigi Rizzo unsigned refcount; 183f9790aebSLuigi Rizzo struct timer_list timer; 184f9790aebSLuigi Rizzo struct rate_stats new; 185f9790aebSLuigi Rizzo struct rate_stats old; 186f9790aebSLuigi Rizzo }; 187f9790aebSLuigi Rizzo 188f9790aebSLuigi Rizzo #define RATE_PRINTK(_NAME_) \ 189f9790aebSLuigi Rizzo printk( #_NAME_ " = %lu Hz\n", (cur._NAME_ - ctx->old._NAME_)/RATE_PERIOD); 190f9790aebSLuigi Rizzo #define RATE_PERIOD 2 191f9790aebSLuigi Rizzo static void rate_callback(unsigned long arg) 192f9790aebSLuigi Rizzo { 193f9790aebSLuigi Rizzo struct rate_context * ctx = (struct rate_context *)arg; 194f9790aebSLuigi Rizzo struct rate_stats cur = ctx->new; 195f9790aebSLuigi Rizzo int r; 196f9790aebSLuigi Rizzo 197f9790aebSLuigi Rizzo RATE_PRINTK(txpkt); 198f9790aebSLuigi Rizzo RATE_PRINTK(txsync); 199f9790aebSLuigi Rizzo RATE_PRINTK(txirq); 200f9790aebSLuigi Rizzo RATE_PRINTK(rxpkt); 201f9790aebSLuigi Rizzo RATE_PRINTK(rxsync); 202f9790aebSLuigi Rizzo RATE_PRINTK(rxirq); 203f9790aebSLuigi Rizzo printk("\n"); 204f9790aebSLuigi Rizzo 205f9790aebSLuigi Rizzo ctx->old = cur; 206f9790aebSLuigi Rizzo r = mod_timer(&ctx->timer, jiffies + 207f9790aebSLuigi Rizzo msecs_to_jiffies(RATE_PERIOD * 1000)); 208f9790aebSLuigi Rizzo if (unlikely(r)) 209f9790aebSLuigi Rizzo D("[v1000] Error: mod_timer()"); 210f9790aebSLuigi Rizzo } 211f9790aebSLuigi Rizzo 212f9790aebSLuigi Rizzo static struct rate_context rate_ctx; 213f9790aebSLuigi Rizzo 214f9790aebSLuigi Rizzo #else /* !RATE */ 215f9790aebSLuigi Rizzo #define IFRATE(x) 216f9790aebSLuigi Rizzo #endif /* !RATE */ 217f9790aebSLuigi Rizzo 218f9790aebSLuigi Rizzo 219f9790aebSLuigi Rizzo /* =============== GENERIC NETMAP ADAPTER SUPPORT ================= */ 220f9790aebSLuigi Rizzo #define GENERIC_BUF_SIZE netmap_buf_size /* Size of the mbufs in the Tx pool. */ 221f9790aebSLuigi Rizzo 222f9790aebSLuigi Rizzo /* 223f9790aebSLuigi Rizzo * Wrapper used by the generic adapter layer to notify 224f9790aebSLuigi Rizzo * the poller threads. Differently from netmap_rx_irq(), we check 225f9790aebSLuigi Rizzo * only IFCAP_NETMAP instead of NAF_NATIVE_ON to enable the irq. 226f9790aebSLuigi Rizzo */ 227f9790aebSLuigi Rizzo static void 228f9790aebSLuigi Rizzo netmap_generic_irq(struct ifnet *ifp, u_int q, u_int *work_done) 229f9790aebSLuigi Rizzo { 230f9790aebSLuigi Rizzo if (unlikely(!(ifp->if_capenable & IFCAP_NETMAP))) 231f9790aebSLuigi Rizzo return; 232f9790aebSLuigi Rizzo 233f9790aebSLuigi Rizzo netmap_common_irq(ifp, q, work_done); 234f9790aebSLuigi Rizzo } 235f9790aebSLuigi Rizzo 236f9790aebSLuigi Rizzo 237f9790aebSLuigi Rizzo /* Enable/disable netmap mode for a generic network interface. */ 23817885a7bSLuigi Rizzo static int 23917885a7bSLuigi Rizzo generic_netmap_register(struct netmap_adapter *na, int enable) 240f9790aebSLuigi Rizzo { 241f9790aebSLuigi Rizzo struct ifnet *ifp = na->ifp; 242f9790aebSLuigi Rizzo struct netmap_generic_adapter *gna = (struct netmap_generic_adapter *)na; 243f9790aebSLuigi Rizzo struct mbuf *m; 244f9790aebSLuigi Rizzo int error; 245f9790aebSLuigi Rizzo int i, r; 246f9790aebSLuigi Rizzo 247f9790aebSLuigi Rizzo if (!na) 248f9790aebSLuigi Rizzo return EINVAL; 249f9790aebSLuigi Rizzo 250f9790aebSLuigi Rizzo #ifdef REG_RESET 251f9790aebSLuigi Rizzo error = ifp->netdev_ops->ndo_stop(ifp); 252f9790aebSLuigi Rizzo if (error) { 253f9790aebSLuigi Rizzo return error; 254f9790aebSLuigi Rizzo } 255f9790aebSLuigi Rizzo #endif /* REG_RESET */ 256f9790aebSLuigi Rizzo 257f9790aebSLuigi Rizzo if (enable) { /* Enable netmap mode. */ 258*e4166283SLuigi Rizzo /* Init the mitigation support on all the rx queues. */ 259f0ea3689SLuigi Rizzo gna->mit = malloc(na->num_rx_rings * sizeof(struct nm_generic_mit), 260f0ea3689SLuigi Rizzo M_DEVBUF, M_NOWAIT | M_ZERO); 261f0ea3689SLuigi Rizzo if (!gna->mit) { 262f0ea3689SLuigi Rizzo D("mitigation allocation failed"); 263f0ea3689SLuigi Rizzo error = ENOMEM; 264f0ea3689SLuigi Rizzo goto out; 265f0ea3689SLuigi Rizzo } 266f0ea3689SLuigi Rizzo for (r=0; r<na->num_rx_rings; r++) 267f0ea3689SLuigi Rizzo netmap_mitigation_init(&gna->mit[r], na); 268f0ea3689SLuigi Rizzo 269f9790aebSLuigi Rizzo /* Initialize the rx queue, as generic_rx_handler() can 270f9790aebSLuigi Rizzo * be called as soon as netmap_catch_rx() returns. 271f9790aebSLuigi Rizzo */ 272f9790aebSLuigi Rizzo for (r=0; r<na->num_rx_rings; r++) { 273f9790aebSLuigi Rizzo mbq_safe_init(&na->rx_rings[r].rx_queue); 274f9790aebSLuigi Rizzo } 275f9790aebSLuigi Rizzo 276f9790aebSLuigi Rizzo /* 277f9790aebSLuigi Rizzo * Preallocate packet buffers for the tx rings. 278f9790aebSLuigi Rizzo */ 27917885a7bSLuigi Rizzo for (r=0; r<na->num_tx_rings; r++) 28017885a7bSLuigi Rizzo na->tx_rings[r].tx_pool = NULL; 281f9790aebSLuigi Rizzo for (r=0; r<na->num_tx_rings; r++) { 282f9790aebSLuigi Rizzo na->tx_rings[r].tx_pool = malloc(na->num_tx_desc * sizeof(struct mbuf *), 283f9790aebSLuigi Rizzo M_DEVBUF, M_NOWAIT | M_ZERO); 284f9790aebSLuigi Rizzo if (!na->tx_rings[r].tx_pool) { 285f9790aebSLuigi Rizzo D("tx_pool allocation failed"); 286f9790aebSLuigi Rizzo error = ENOMEM; 28717885a7bSLuigi Rizzo goto free_tx_pools; 288f9790aebSLuigi Rizzo } 28917885a7bSLuigi Rizzo for (i=0; i<na->num_tx_desc; i++) 29017885a7bSLuigi Rizzo na->tx_rings[r].tx_pool[i] = NULL; 291f9790aebSLuigi Rizzo for (i=0; i<na->num_tx_desc; i++) { 292f9790aebSLuigi Rizzo m = netmap_get_mbuf(GENERIC_BUF_SIZE); 293f9790aebSLuigi Rizzo if (!m) { 294f9790aebSLuigi Rizzo D("tx_pool[%d] allocation failed", i); 295f9790aebSLuigi Rizzo error = ENOMEM; 29617885a7bSLuigi Rizzo goto free_tx_pools; 297f9790aebSLuigi Rizzo } 298f9790aebSLuigi Rizzo na->tx_rings[r].tx_pool[i] = m; 299f9790aebSLuigi Rizzo } 300f9790aebSLuigi Rizzo } 301f9790aebSLuigi Rizzo rtnl_lock(); 302f9790aebSLuigi Rizzo /* Prepare to intercept incoming traffic. */ 303f9790aebSLuigi Rizzo error = netmap_catch_rx(na, 1); 304f9790aebSLuigi Rizzo if (error) { 305f2637526SLuigi Rizzo D("netdev_rx_handler_register() failed (%d)", error); 306f9790aebSLuigi Rizzo goto register_handler; 307f9790aebSLuigi Rizzo } 308f9790aebSLuigi Rizzo ifp->if_capenable |= IFCAP_NETMAP; 309f9790aebSLuigi Rizzo 310f9790aebSLuigi Rizzo /* Make netmap control the packet steering. */ 31117885a7bSLuigi Rizzo netmap_catch_tx(gna, 1); 312f9790aebSLuigi Rizzo 313f9790aebSLuigi Rizzo rtnl_unlock(); 314f9790aebSLuigi Rizzo 315f9790aebSLuigi Rizzo #ifdef RATE 316f9790aebSLuigi Rizzo if (rate_ctx.refcount == 0) { 317f9790aebSLuigi Rizzo D("setup_timer()"); 318f9790aebSLuigi Rizzo memset(&rate_ctx, 0, sizeof(rate_ctx)); 319f9790aebSLuigi Rizzo setup_timer(&rate_ctx.timer, &rate_callback, (unsigned long)&rate_ctx); 320f9790aebSLuigi Rizzo if (mod_timer(&rate_ctx.timer, jiffies + msecs_to_jiffies(1500))) { 321f9790aebSLuigi Rizzo D("Error: mod_timer()"); 322f9790aebSLuigi Rizzo } 323f9790aebSLuigi Rizzo } 324f9790aebSLuigi Rizzo rate_ctx.refcount++; 325f9790aebSLuigi Rizzo #endif /* RATE */ 326f9790aebSLuigi Rizzo 327f2637526SLuigi Rizzo } else if (na->tx_rings[0].tx_pool) { 328f2637526SLuigi Rizzo /* Disable netmap mode. We enter here only if the previous 329f2637526SLuigi Rizzo generic_netmap_register(na, 1) was successfull. 330f2637526SLuigi Rizzo If it was not, na->tx_rings[0].tx_pool was set to NULL by the 331f2637526SLuigi Rizzo error handling code below. */ 332f9790aebSLuigi Rizzo rtnl_lock(); 333f9790aebSLuigi Rizzo 334f9790aebSLuigi Rizzo ifp->if_capenable &= ~IFCAP_NETMAP; 335f9790aebSLuigi Rizzo 336f9790aebSLuigi Rizzo /* Release packet steering control. */ 33717885a7bSLuigi Rizzo netmap_catch_tx(gna, 0); 338f9790aebSLuigi Rizzo 339f9790aebSLuigi Rizzo /* Do not intercept packets on the rx path. */ 340f9790aebSLuigi Rizzo netmap_catch_rx(na, 0); 341f9790aebSLuigi Rizzo 342f9790aebSLuigi Rizzo rtnl_unlock(); 343f9790aebSLuigi Rizzo 344f9790aebSLuigi Rizzo /* Free the mbufs going to the netmap rings */ 345f9790aebSLuigi Rizzo for (r=0; r<na->num_rx_rings; r++) { 346f9790aebSLuigi Rizzo mbq_safe_purge(&na->rx_rings[r].rx_queue); 347f9790aebSLuigi Rizzo mbq_safe_destroy(&na->rx_rings[r].rx_queue); 348f9790aebSLuigi Rizzo } 349f9790aebSLuigi Rizzo 350f0ea3689SLuigi Rizzo for (r=0; r<na->num_rx_rings; r++) 351f0ea3689SLuigi Rizzo netmap_mitigation_cleanup(&gna->mit[r]); 352f0ea3689SLuigi Rizzo free(gna->mit, M_DEVBUF); 353f9790aebSLuigi Rizzo 354f9790aebSLuigi Rizzo for (r=0; r<na->num_tx_rings; r++) { 355f9790aebSLuigi Rizzo for (i=0; i<na->num_tx_desc; i++) { 356f9790aebSLuigi Rizzo m_freem(na->tx_rings[r].tx_pool[i]); 357f9790aebSLuigi Rizzo } 358f9790aebSLuigi Rizzo free(na->tx_rings[r].tx_pool, M_DEVBUF); 359f9790aebSLuigi Rizzo } 360f9790aebSLuigi Rizzo 361f9790aebSLuigi Rizzo #ifdef RATE 362f9790aebSLuigi Rizzo if (--rate_ctx.refcount == 0) { 363f9790aebSLuigi Rizzo D("del_timer()"); 364f9790aebSLuigi Rizzo del_timer(&rate_ctx.timer); 365f9790aebSLuigi Rizzo } 366f9790aebSLuigi Rizzo #endif 367f9790aebSLuigi Rizzo } 368f9790aebSLuigi Rizzo 369f9790aebSLuigi Rizzo #ifdef REG_RESET 370f9790aebSLuigi Rizzo error = ifp->netdev_ops->ndo_open(ifp); 371f9790aebSLuigi Rizzo if (error) { 372f2637526SLuigi Rizzo goto free_tx_pools; 373f9790aebSLuigi Rizzo } 374f9790aebSLuigi Rizzo #endif 375f9790aebSLuigi Rizzo 376f9790aebSLuigi Rizzo return 0; 377f9790aebSLuigi Rizzo 378f9790aebSLuigi Rizzo register_handler: 379f9790aebSLuigi Rizzo rtnl_unlock(); 38017885a7bSLuigi Rizzo free_tx_pools: 38117885a7bSLuigi Rizzo for (r=0; r<na->num_tx_rings; r++) { 38217885a7bSLuigi Rizzo if (na->tx_rings[r].tx_pool == NULL) 38317885a7bSLuigi Rizzo continue; 38417885a7bSLuigi Rizzo for (i=0; i<na->num_tx_desc; i++) 38517885a7bSLuigi Rizzo if (na->tx_rings[r].tx_pool[i]) 386f9790aebSLuigi Rizzo m_freem(na->tx_rings[r].tx_pool[i]); 387f9790aebSLuigi Rizzo free(na->tx_rings[r].tx_pool, M_DEVBUF); 388f2637526SLuigi Rizzo na->tx_rings[r].tx_pool = NULL; 389f2637526SLuigi Rizzo } 390f2637526SLuigi Rizzo for (r=0; r<na->num_rx_rings; r++) { 391f0ea3689SLuigi Rizzo netmap_mitigation_cleanup(&gna->mit[r]); 392f2637526SLuigi Rizzo mbq_safe_destroy(&na->rx_rings[r].rx_queue); 393f9790aebSLuigi Rizzo } 394f0ea3689SLuigi Rizzo free(gna->mit, M_DEVBUF); 395f0ea3689SLuigi Rizzo out: 396f9790aebSLuigi Rizzo 397f9790aebSLuigi Rizzo return error; 398f9790aebSLuigi Rizzo } 399f9790aebSLuigi Rizzo 400f9790aebSLuigi Rizzo /* 401f9790aebSLuigi Rizzo * Callback invoked when the device driver frees an mbuf used 402f9790aebSLuigi Rizzo * by netmap to transmit a packet. This usually happens when 403f9790aebSLuigi Rizzo * the NIC notifies the driver that transmission is completed. 404f9790aebSLuigi Rizzo */ 405f9790aebSLuigi Rizzo static void 406f9790aebSLuigi Rizzo generic_mbuf_destructor(struct mbuf *m) 407f9790aebSLuigi Rizzo { 408f9790aebSLuigi Rizzo netmap_generic_irq(MBUF_IFP(m), MBUF_TXQ(m), NULL); 409f9790aebSLuigi Rizzo #ifdef __FreeBSD__ 410*e4166283SLuigi Rizzo if (netmap_verbose) 411*e4166283SLuigi Rizzo RD(5, "Tx irq (%p) queue %d index %d" , m, MBUF_TXQ(m), (int)(uintptr_t)m->m_ext.ext_arg1); 412*e4166283SLuigi Rizzo netmap_default_mbuf_destructor(m); 413f9790aebSLuigi Rizzo #endif /* __FreeBSD__ */ 414f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.txirq++); 415f9790aebSLuigi Rizzo } 416f9790aebSLuigi Rizzo 41717885a7bSLuigi Rizzo /* Record completed transmissions and update hwtail. 418f9790aebSLuigi Rizzo * 41917885a7bSLuigi Rizzo * The oldest tx buffer not yet completed is at nr_hwtail + 1, 420f9790aebSLuigi Rizzo * nr_hwcur is the first unsent buffer. 421f9790aebSLuigi Rizzo */ 42217885a7bSLuigi Rizzo static u_int 423f9790aebSLuigi Rizzo generic_netmap_tx_clean(struct netmap_kring *kring) 424f9790aebSLuigi Rizzo { 42517885a7bSLuigi Rizzo u_int const lim = kring->nkr_num_slots - 1; 42617885a7bSLuigi Rizzo u_int nm_i = nm_next(kring->nr_hwtail, lim); 427f9790aebSLuigi Rizzo u_int hwcur = kring->nr_hwcur; 428f9790aebSLuigi Rizzo u_int n = 0; 429f9790aebSLuigi Rizzo struct mbuf **tx_pool = kring->tx_pool; 430f9790aebSLuigi Rizzo 43117885a7bSLuigi Rizzo while (nm_i != hwcur) { /* buffers not completed */ 43217885a7bSLuigi Rizzo struct mbuf *m = tx_pool[nm_i]; 433f9790aebSLuigi Rizzo 434f9790aebSLuigi Rizzo if (unlikely(m == NULL)) { 43517885a7bSLuigi Rizzo /* this is done, try to replenish the entry */ 43617885a7bSLuigi Rizzo tx_pool[nm_i] = m = netmap_get_mbuf(GENERIC_BUF_SIZE); 437f9790aebSLuigi Rizzo if (unlikely(m == NULL)) { 438f9790aebSLuigi Rizzo D("mbuf allocation failed, XXX error"); 439f9790aebSLuigi Rizzo // XXX how do we proceed ? break ? 440f9790aebSLuigi Rizzo return -ENOMEM; 441f9790aebSLuigi Rizzo } 442f9790aebSLuigi Rizzo } else if (GET_MBUF_REFCNT(m) != 1) { 443f9790aebSLuigi Rizzo break; /* This mbuf is still busy: its refcnt is 2. */ 444f9790aebSLuigi Rizzo } 445f9790aebSLuigi Rizzo n++; 44617885a7bSLuigi Rizzo nm_i = nm_next(nm_i, lim); 447f9790aebSLuigi Rizzo } 44817885a7bSLuigi Rizzo kring->nr_hwtail = nm_prev(nm_i, lim); 44917885a7bSLuigi Rizzo ND("tx completed [%d] -> hwtail %d", n, kring->nr_hwtail); 450f9790aebSLuigi Rizzo 451f9790aebSLuigi Rizzo return n; 452f9790aebSLuigi Rizzo } 453f9790aebSLuigi Rizzo 454f9790aebSLuigi Rizzo 455f9790aebSLuigi Rizzo /* 45617885a7bSLuigi Rizzo * We have pending packets in the driver between nr_hwtail +1 and hwcur. 457f9790aebSLuigi Rizzo * Compute a position in the middle, to be used to generate 458f9790aebSLuigi Rizzo * a notification. 459f9790aebSLuigi Rizzo */ 460f9790aebSLuigi Rizzo static inline u_int 461f9790aebSLuigi Rizzo generic_tx_event_middle(struct netmap_kring *kring, u_int hwcur) 462f9790aebSLuigi Rizzo { 463f9790aebSLuigi Rizzo u_int n = kring->nkr_num_slots; 46417885a7bSLuigi Rizzo u_int ntc = nm_next(kring->nr_hwtail, n-1); 465f9790aebSLuigi Rizzo u_int e; 466f9790aebSLuigi Rizzo 467f9790aebSLuigi Rizzo if (hwcur >= ntc) { 468f9790aebSLuigi Rizzo e = (hwcur + ntc) / 2; 469f9790aebSLuigi Rizzo } else { /* wrap around */ 470f9790aebSLuigi Rizzo e = (hwcur + n + ntc) / 2; 471f9790aebSLuigi Rizzo if (e >= n) { 472f9790aebSLuigi Rizzo e -= n; 473f9790aebSLuigi Rizzo } 474f9790aebSLuigi Rizzo } 475f9790aebSLuigi Rizzo 476f9790aebSLuigi Rizzo if (unlikely(e >= n)) { 477f9790aebSLuigi Rizzo D("This cannot happen"); 478f9790aebSLuigi Rizzo e = 0; 479f9790aebSLuigi Rizzo } 480f9790aebSLuigi Rizzo 481f9790aebSLuigi Rizzo return e; 482f9790aebSLuigi Rizzo } 483f9790aebSLuigi Rizzo 484f9790aebSLuigi Rizzo /* 48517885a7bSLuigi Rizzo * We have pending packets in the driver between nr_hwtail+1 and hwcur. 486f9790aebSLuigi Rizzo * Schedule a notification approximately in the middle of the two. 487f9790aebSLuigi Rizzo * There is a race but this is only called within txsync which does 488f9790aebSLuigi Rizzo * a double check. 489f9790aebSLuigi Rizzo */ 490f9790aebSLuigi Rizzo static void 491f9790aebSLuigi Rizzo generic_set_tx_event(struct netmap_kring *kring, u_int hwcur) 492f9790aebSLuigi Rizzo { 493f9790aebSLuigi Rizzo struct mbuf *m; 494f9790aebSLuigi Rizzo u_int e; 495f9790aebSLuigi Rizzo 49617885a7bSLuigi Rizzo if (nm_next(kring->nr_hwtail, kring->nkr_num_slots -1) == hwcur) { 49717885a7bSLuigi Rizzo return; /* all buffers are free */ 498f9790aebSLuigi Rizzo } 499f9790aebSLuigi Rizzo e = generic_tx_event_middle(kring, hwcur); 500f9790aebSLuigi Rizzo 501f9790aebSLuigi Rizzo m = kring->tx_pool[e]; 502*e4166283SLuigi Rizzo ND(5, "Request Event at %d mbuf %p refcnt %d", e, m, m ? GET_MBUF_REFCNT(m) : -2 ); 503f9790aebSLuigi Rizzo if (m == NULL) { 504f9790aebSLuigi Rizzo /* This can happen if there is already an event on the netmap 505f9790aebSLuigi Rizzo slot 'e': There is nothing to do. */ 506f9790aebSLuigi Rizzo return; 507f9790aebSLuigi Rizzo } 508f9790aebSLuigi Rizzo kring->tx_pool[e] = NULL; 509f9790aebSLuigi Rizzo SET_MBUF_DESTRUCTOR(m, generic_mbuf_destructor); 510f9790aebSLuigi Rizzo 511f9790aebSLuigi Rizzo // XXX wmb() ? 512f9790aebSLuigi Rizzo /* Decrement the refcount an free it if we have the last one. */ 513f9790aebSLuigi Rizzo m_freem(m); 514f9790aebSLuigi Rizzo smp_mb(); 515f9790aebSLuigi Rizzo } 516f9790aebSLuigi Rizzo 517f9790aebSLuigi Rizzo 518f9790aebSLuigi Rizzo /* 519f9790aebSLuigi Rizzo * generic_netmap_txsync() transforms netmap buffers into mbufs 520f9790aebSLuigi Rizzo * and passes them to the standard device driver 521f9790aebSLuigi Rizzo * (ndo_start_xmit() or ifp->if_transmit() ). 522f9790aebSLuigi Rizzo * On linux this is not done directly, but using dev_queue_xmit(), 523f9790aebSLuigi Rizzo * since it implements the TX flow control (and takes some locks). 524f9790aebSLuigi Rizzo */ 525f9790aebSLuigi Rizzo static int 526f9790aebSLuigi Rizzo generic_netmap_txsync(struct netmap_adapter *na, u_int ring_nr, int flags) 527f9790aebSLuigi Rizzo { 528f9790aebSLuigi Rizzo struct ifnet *ifp = na->ifp; 529f9790aebSLuigi Rizzo struct netmap_kring *kring = &na->tx_rings[ring_nr]; 530f9790aebSLuigi Rizzo struct netmap_ring *ring = kring->ring; 53117885a7bSLuigi Rizzo u_int nm_i; /* index into the netmap ring */ // j 53217885a7bSLuigi Rizzo u_int const lim = kring->nkr_num_slots - 1; 53317885a7bSLuigi Rizzo u_int const head = kring->rhead; 534f9790aebSLuigi Rizzo 535f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.txsync++); 536f9790aebSLuigi Rizzo 537f9790aebSLuigi Rizzo // TODO: handle the case of mbuf allocation failure 538f9790aebSLuigi Rizzo 539f9790aebSLuigi Rizzo rmb(); 54017885a7bSLuigi Rizzo 541f9790aebSLuigi Rizzo /* 54217885a7bSLuigi Rizzo * First part: process new packets to send. 543f9790aebSLuigi Rizzo */ 54417885a7bSLuigi Rizzo nm_i = kring->nr_hwcur; 54517885a7bSLuigi Rizzo if (nm_i != head) { /* we have new packets to send */ 54617885a7bSLuigi Rizzo while (nm_i != head) { 54717885a7bSLuigi Rizzo struct netmap_slot *slot = &ring->slot[nm_i]; 548f9790aebSLuigi Rizzo u_int len = slot->len; 54917885a7bSLuigi Rizzo void *addr = NMB(slot); 55017885a7bSLuigi Rizzo 55117885a7bSLuigi Rizzo /* device-specific */ 552f9790aebSLuigi Rizzo struct mbuf *m; 553f9790aebSLuigi Rizzo int tx_ret; 554f9790aebSLuigi Rizzo 55517885a7bSLuigi Rizzo NM_CHECK_ADDR_LEN(addr, len); 55617885a7bSLuigi Rizzo 557f9790aebSLuigi Rizzo /* Tale a mbuf from the tx pool and copy in the user packet. */ 55817885a7bSLuigi Rizzo m = kring->tx_pool[nm_i]; 559f9790aebSLuigi Rizzo if (unlikely(!m)) { 560f9790aebSLuigi Rizzo RD(5, "This should never happen"); 56117885a7bSLuigi Rizzo kring->tx_pool[nm_i] = m = netmap_get_mbuf(GENERIC_BUF_SIZE); 562f9790aebSLuigi Rizzo if (unlikely(m == NULL)) { 563f9790aebSLuigi Rizzo D("mbuf allocation failed"); 564f9790aebSLuigi Rizzo break; 565f9790aebSLuigi Rizzo } 566f9790aebSLuigi Rizzo } 567f9790aebSLuigi Rizzo /* XXX we should ask notifications when NS_REPORT is set, 568f9790aebSLuigi Rizzo * or roughly every half frame. We can optimize this 569f9790aebSLuigi Rizzo * by lazily requesting notifications only when a 570f9790aebSLuigi Rizzo * transmission fails. Probably the best way is to 571f9790aebSLuigi Rizzo * break on failures and set notifications when 57217885a7bSLuigi Rizzo * ring->cur == ring->tail || nm_i != cur 573f9790aebSLuigi Rizzo */ 574f9790aebSLuigi Rizzo tx_ret = generic_xmit_frame(ifp, m, addr, len, ring_nr); 575f9790aebSLuigi Rizzo if (unlikely(tx_ret)) { 57617885a7bSLuigi Rizzo RD(5, "start_xmit failed: err %d [nm_i %u, head %u, hwtail %u]", 57717885a7bSLuigi Rizzo tx_ret, nm_i, head, kring->nr_hwtail); 578f9790aebSLuigi Rizzo /* 579f9790aebSLuigi Rizzo * No room for this mbuf in the device driver. 580f9790aebSLuigi Rizzo * Request a notification FOR A PREVIOUS MBUF, 581f9790aebSLuigi Rizzo * then call generic_netmap_tx_clean(kring) to do the 582f9790aebSLuigi Rizzo * double check and see if we can free more buffers. 583f9790aebSLuigi Rizzo * If there is space continue, else break; 584f9790aebSLuigi Rizzo * NOTE: the double check is necessary if the problem 585f9790aebSLuigi Rizzo * occurs in the txsync call after selrecord(). 586f9790aebSLuigi Rizzo * Also, we need some way to tell the caller that not 587f9790aebSLuigi Rizzo * all buffers were queued onto the device (this was 588f9790aebSLuigi Rizzo * not a problem with native netmap driver where space 589f9790aebSLuigi Rizzo * is preallocated). The bridge has a similar problem 590f9790aebSLuigi Rizzo * and we solve it there by dropping the excess packets. 591f9790aebSLuigi Rizzo */ 59217885a7bSLuigi Rizzo generic_set_tx_event(kring, nm_i); 593f9790aebSLuigi Rizzo if (generic_netmap_tx_clean(kring)) { /* space now available */ 594f9790aebSLuigi Rizzo continue; 595f9790aebSLuigi Rizzo } else { 596f9790aebSLuigi Rizzo break; 597f9790aebSLuigi Rizzo } 598f9790aebSLuigi Rizzo } 599f9790aebSLuigi Rizzo slot->flags &= ~(NS_REPORT | NS_BUF_CHANGED); 60017885a7bSLuigi Rizzo nm_i = nm_next(nm_i, lim); 601f0ea3689SLuigi Rizzo IFRATE(rate_ctx.new.txpkt ++); 602f9790aebSLuigi Rizzo } 603f9790aebSLuigi Rizzo 604f9790aebSLuigi Rizzo /* Update hwcur to the next slot to transmit. */ 60517885a7bSLuigi Rizzo kring->nr_hwcur = nm_i; /* not head, we could break early */ 60617885a7bSLuigi Rizzo } 607f9790aebSLuigi Rizzo 60817885a7bSLuigi Rizzo /* 60917885a7bSLuigi Rizzo * Second, reclaim completed buffers 61017885a7bSLuigi Rizzo */ 61117885a7bSLuigi Rizzo if (flags & NAF_FORCE_RECLAIM || nm_kr_txempty(kring)) { 612f9790aebSLuigi Rizzo /* No more available slots? Set a notification event 613f9790aebSLuigi Rizzo * on a netmap slot that will be cleaned in the future. 614f9790aebSLuigi Rizzo * No doublecheck is performed, since txsync() will be 615f9790aebSLuigi Rizzo * called twice by netmap_poll(). 616f9790aebSLuigi Rizzo */ 61717885a7bSLuigi Rizzo generic_set_tx_event(kring, nm_i); 618f9790aebSLuigi Rizzo } 61917885a7bSLuigi Rizzo ND("tx #%d, hwtail = %d", n, kring->nr_hwtail); 620f9790aebSLuigi Rizzo 62117885a7bSLuigi Rizzo generic_netmap_tx_clean(kring); 62217885a7bSLuigi Rizzo 62317885a7bSLuigi Rizzo nm_txsync_finalize(kring); 624f9790aebSLuigi Rizzo 625f9790aebSLuigi Rizzo return 0; 626f9790aebSLuigi Rizzo } 627f9790aebSLuigi Rizzo 62817885a7bSLuigi Rizzo 629f9790aebSLuigi Rizzo /* 630f9790aebSLuigi Rizzo * This handler is registered (through netmap_catch_rx()) 631f9790aebSLuigi Rizzo * within the attached network interface 632f9790aebSLuigi Rizzo * in the RX subsystem, so that every mbuf passed up by 633f9790aebSLuigi Rizzo * the driver can be stolen to the network stack. 634f9790aebSLuigi Rizzo * Stolen packets are put in a queue where the 635f9790aebSLuigi Rizzo * generic_netmap_rxsync() callback can extract them. 636f9790aebSLuigi Rizzo */ 63717885a7bSLuigi Rizzo void 63817885a7bSLuigi Rizzo generic_rx_handler(struct ifnet *ifp, struct mbuf *m) 639f9790aebSLuigi Rizzo { 640f9790aebSLuigi Rizzo struct netmap_adapter *na = NA(ifp); 641f9790aebSLuigi Rizzo struct netmap_generic_adapter *gna = (struct netmap_generic_adapter *)na; 642f9790aebSLuigi Rizzo u_int work_done; 643f0ea3689SLuigi Rizzo u_int rr = MBUF_RXQ(m); // receive ring number 644f0ea3689SLuigi Rizzo 645f0ea3689SLuigi Rizzo if (rr >= na->num_rx_rings) { 646f0ea3689SLuigi Rizzo rr = rr % na->num_rx_rings; // XXX expensive... 647f0ea3689SLuigi Rizzo } 648f9790aebSLuigi Rizzo 649f9790aebSLuigi Rizzo /* limit the size of the queue */ 650f9790aebSLuigi Rizzo if (unlikely(mbq_len(&na->rx_rings[rr].rx_queue) > 1024)) { 651f9790aebSLuigi Rizzo m_freem(m); 652f9790aebSLuigi Rizzo } else { 653f9790aebSLuigi Rizzo mbq_safe_enqueue(&na->rx_rings[rr].rx_queue, m); 654f9790aebSLuigi Rizzo } 655f9790aebSLuigi Rizzo 656f9790aebSLuigi Rizzo if (netmap_generic_mit < 32768) { 657f9790aebSLuigi Rizzo /* no rx mitigation, pass notification up */ 658f9790aebSLuigi Rizzo netmap_generic_irq(na->ifp, rr, &work_done); 659f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.rxirq++); 660f9790aebSLuigi Rizzo } else { 661f9790aebSLuigi Rizzo /* same as send combining, filter notification if there is a 662f9790aebSLuigi Rizzo * pending timer, otherwise pass it up and start a timer. 663f9790aebSLuigi Rizzo */ 664f0ea3689SLuigi Rizzo if (likely(netmap_mitigation_active(&gna->mit[rr]))) { 665f9790aebSLuigi Rizzo /* Record that there is some pending work. */ 666f0ea3689SLuigi Rizzo gna->mit[rr].mit_pending = 1; 667f9790aebSLuigi Rizzo } else { 668f9790aebSLuigi Rizzo netmap_generic_irq(na->ifp, rr, &work_done); 669f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.rxirq++); 670f0ea3689SLuigi Rizzo netmap_mitigation_start(&gna->mit[rr]); 671f9790aebSLuigi Rizzo } 672f9790aebSLuigi Rizzo } 673f9790aebSLuigi Rizzo } 674f9790aebSLuigi Rizzo 675f9790aebSLuigi Rizzo /* 676f9790aebSLuigi Rizzo * generic_netmap_rxsync() extracts mbufs from the queue filled by 677f9790aebSLuigi Rizzo * generic_netmap_rx_handler() and puts their content in the netmap 678f9790aebSLuigi Rizzo * receive ring. 679f9790aebSLuigi Rizzo * Access must be protected because the rx handler is asynchronous, 680f9790aebSLuigi Rizzo */ 681f9790aebSLuigi Rizzo static int 682f9790aebSLuigi Rizzo generic_netmap_rxsync(struct netmap_adapter *na, u_int ring_nr, int flags) 683f9790aebSLuigi Rizzo { 684f9790aebSLuigi Rizzo struct netmap_kring *kring = &na->rx_rings[ring_nr]; 685f9790aebSLuigi Rizzo struct netmap_ring *ring = kring->ring; 68617885a7bSLuigi Rizzo u_int nm_i; /* index into the netmap ring */ //j, 68717885a7bSLuigi Rizzo u_int n; 68817885a7bSLuigi Rizzo u_int const lim = kring->nkr_num_slots - 1; 68917885a7bSLuigi Rizzo u_int const head = nm_rxsync_prologue(kring); 690f9790aebSLuigi Rizzo int force_update = (flags & NAF_FORCE_READ) || kring->nr_kflags & NKR_PENDINTR; 691f9790aebSLuigi Rizzo 69217885a7bSLuigi Rizzo if (head > lim) 693f9790aebSLuigi Rizzo return netmap_ring_reinit(kring); 694f9790aebSLuigi Rizzo 69517885a7bSLuigi Rizzo /* 69617885a7bSLuigi Rizzo * First part: import newly received packets. 69717885a7bSLuigi Rizzo */ 698f9790aebSLuigi Rizzo if (netmap_no_pendintr || force_update) { 69917885a7bSLuigi Rizzo /* extract buffers from the rx queue, stop at most one 70017885a7bSLuigi Rizzo * slot before nr_hwcur (stop_i) 70117885a7bSLuigi Rizzo */ 702f9790aebSLuigi Rizzo uint16_t slot_flags = kring->nkr_slot_flags; 70317885a7bSLuigi Rizzo u_int stop_i = nm_prev(kring->nr_hwcur, lim); 70417885a7bSLuigi Rizzo 70517885a7bSLuigi Rizzo nm_i = kring->nr_hwtail; /* first empty slot in the receive ring */ 70617885a7bSLuigi Rizzo for (n = 0; nm_i != stop_i; n++) { 70717885a7bSLuigi Rizzo int len; 70817885a7bSLuigi Rizzo void *addr = NMB(&ring->slot[nm_i]); 709f9790aebSLuigi Rizzo struct mbuf *m; 710f9790aebSLuigi Rizzo 71117885a7bSLuigi Rizzo /* we only check the address here on generic rx rings */ 712f9790aebSLuigi Rizzo if (addr == netmap_buffer_base) { /* Bad buffer */ 713f9790aebSLuigi Rizzo return netmap_ring_reinit(kring); 714f9790aebSLuigi Rizzo } 715f9790aebSLuigi Rizzo /* 716f9790aebSLuigi Rizzo * Call the locked version of the function. 71717885a7bSLuigi Rizzo * XXX Ideally we could grab a batch of mbufs at once 71817885a7bSLuigi Rizzo * and save some locking overhead. 719f9790aebSLuigi Rizzo */ 720f9790aebSLuigi Rizzo m = mbq_safe_dequeue(&kring->rx_queue); 72117885a7bSLuigi Rizzo if (!m) /* no more data */ 722f9790aebSLuigi Rizzo break; 723f9790aebSLuigi Rizzo len = MBUF_LEN(m); 724f9790aebSLuigi Rizzo m_copydata(m, 0, len, addr); 72517885a7bSLuigi Rizzo ring->slot[nm_i].len = len; 72617885a7bSLuigi Rizzo ring->slot[nm_i].flags = slot_flags; 727f9790aebSLuigi Rizzo m_freem(m); 72817885a7bSLuigi Rizzo nm_i = nm_next(nm_i, lim); 729f9790aebSLuigi Rizzo } 730f9790aebSLuigi Rizzo if (n) { 73117885a7bSLuigi Rizzo kring->nr_hwtail = nm_i; 732f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.rxpkt += n); 733f9790aebSLuigi Rizzo } 734f9790aebSLuigi Rizzo kring->nr_kflags &= ~NKR_PENDINTR; 735f9790aebSLuigi Rizzo } 736f9790aebSLuigi Rizzo 737f9790aebSLuigi Rizzo // XXX should we invert the order ? 73817885a7bSLuigi Rizzo /* 73917885a7bSLuigi Rizzo * Second part: skip past packets that userspace has released. 74017885a7bSLuigi Rizzo */ 74117885a7bSLuigi Rizzo nm_i = kring->nr_hwcur; 74217885a7bSLuigi Rizzo if (nm_i != head) { 743f9790aebSLuigi Rizzo /* Userspace has released some packets. */ 74417885a7bSLuigi Rizzo for (n = 0; nm_i != head; n++) { 74517885a7bSLuigi Rizzo struct netmap_slot *slot = &ring->slot[nm_i]; 746f9790aebSLuigi Rizzo 747f9790aebSLuigi Rizzo slot->flags &= ~NS_BUF_CHANGED; 74817885a7bSLuigi Rizzo nm_i = nm_next(nm_i, lim); 749f9790aebSLuigi Rizzo } 75017885a7bSLuigi Rizzo kring->nr_hwcur = head; 751f9790aebSLuigi Rizzo } 75217885a7bSLuigi Rizzo /* tell userspace that there might be new packets. */ 75317885a7bSLuigi Rizzo nm_rxsync_finalize(kring); 754f9790aebSLuigi Rizzo IFRATE(rate_ctx.new.rxsync++); 755f9790aebSLuigi Rizzo 756f9790aebSLuigi Rizzo return 0; 757f9790aebSLuigi Rizzo } 758f9790aebSLuigi Rizzo 759f9790aebSLuigi Rizzo static void 760f9790aebSLuigi Rizzo generic_netmap_dtor(struct netmap_adapter *na) 761f9790aebSLuigi Rizzo { 762f9790aebSLuigi Rizzo struct ifnet *ifp = na->ifp; 763f9790aebSLuigi Rizzo struct netmap_generic_adapter *gna = (struct netmap_generic_adapter*)na; 764f9790aebSLuigi Rizzo struct netmap_adapter *prev_na = gna->prev; 765f9790aebSLuigi Rizzo 766f9790aebSLuigi Rizzo if (prev_na != NULL) { 767f9790aebSLuigi Rizzo D("Released generic NA %p", gna); 768f9790aebSLuigi Rizzo if_rele(na->ifp); 769f9790aebSLuigi Rizzo netmap_adapter_put(prev_na); 770f9790aebSLuigi Rizzo } 771f9790aebSLuigi Rizzo if (ifp != NULL) { 772f9790aebSLuigi Rizzo WNA(ifp) = prev_na; 773f9790aebSLuigi Rizzo D("Restored native NA %p", prev_na); 774f9790aebSLuigi Rizzo na->ifp = NULL; 775f9790aebSLuigi Rizzo } 776f9790aebSLuigi Rizzo } 777f9790aebSLuigi Rizzo 778f9790aebSLuigi Rizzo /* 779f9790aebSLuigi Rizzo * generic_netmap_attach() makes it possible to use netmap on 780f9790aebSLuigi Rizzo * a device without native netmap support. 781f9790aebSLuigi Rizzo * This is less performant than native support but potentially 782f9790aebSLuigi Rizzo * faster than raw sockets or similar schemes. 783f9790aebSLuigi Rizzo * 784f9790aebSLuigi Rizzo * In this "emulated" mode, netmap rings do not necessarily 785f9790aebSLuigi Rizzo * have the same size as those in the NIC. We use a default 786f9790aebSLuigi Rizzo * value and possibly override it if the OS has ways to fetch the 787f9790aebSLuigi Rizzo * actual configuration. 788f9790aebSLuigi Rizzo */ 789f9790aebSLuigi Rizzo int 790f9790aebSLuigi Rizzo generic_netmap_attach(struct ifnet *ifp) 791f9790aebSLuigi Rizzo { 792f9790aebSLuigi Rizzo struct netmap_adapter *na; 793f9790aebSLuigi Rizzo struct netmap_generic_adapter *gna; 794f9790aebSLuigi Rizzo int retval; 795f9790aebSLuigi Rizzo u_int num_tx_desc, num_rx_desc; 796f9790aebSLuigi Rizzo 797f9790aebSLuigi Rizzo num_tx_desc = num_rx_desc = netmap_generic_ringsize; /* starting point */ 798f9790aebSLuigi Rizzo 799f9790aebSLuigi Rizzo generic_find_num_desc(ifp, &num_tx_desc, &num_rx_desc); 800f9790aebSLuigi Rizzo ND("Netmap ring size: TX = %d, RX = %d", num_tx_desc, num_rx_desc); 801*e4166283SLuigi Rizzo if (num_tx_desc == 0 || num_rx_desc == 0) { 802*e4166283SLuigi Rizzo D("Device has no hw slots (tx %u, rx %u)", num_tx_desc, num_rx_desc); 803*e4166283SLuigi Rizzo return EINVAL; 804*e4166283SLuigi Rizzo } 805f9790aebSLuigi Rizzo 806f9790aebSLuigi Rizzo gna = malloc(sizeof(*gna), M_DEVBUF, M_NOWAIT | M_ZERO); 807f9790aebSLuigi Rizzo if (gna == NULL) { 808f9790aebSLuigi Rizzo D("no memory on attach, give up"); 809f9790aebSLuigi Rizzo return ENOMEM; 810f9790aebSLuigi Rizzo } 811f9790aebSLuigi Rizzo na = (struct netmap_adapter *)gna; 812f9790aebSLuigi Rizzo na->ifp = ifp; 813f9790aebSLuigi Rizzo na->num_tx_desc = num_tx_desc; 814f9790aebSLuigi Rizzo na->num_rx_desc = num_rx_desc; 815f9790aebSLuigi Rizzo na->nm_register = &generic_netmap_register; 816f9790aebSLuigi Rizzo na->nm_txsync = &generic_netmap_txsync; 817f9790aebSLuigi Rizzo na->nm_rxsync = &generic_netmap_rxsync; 818f9790aebSLuigi Rizzo na->nm_dtor = &generic_netmap_dtor; 819f9790aebSLuigi Rizzo /* when using generic, IFCAP_NETMAP is set so we force 820f9790aebSLuigi Rizzo * NAF_SKIP_INTR to use the regular interrupt handler 821f9790aebSLuigi Rizzo */ 822f0ea3689SLuigi Rizzo na->na_flags = NAF_SKIP_INTR | NAF_HOST_RINGS; 823f9790aebSLuigi Rizzo 824f9790aebSLuigi Rizzo ND("[GNA] num_tx_queues(%d), real_num_tx_queues(%d), len(%lu)", 825f9790aebSLuigi Rizzo ifp->num_tx_queues, ifp->real_num_tx_queues, 826f9790aebSLuigi Rizzo ifp->tx_queue_len); 827f9790aebSLuigi Rizzo ND("[GNA] num_rx_queues(%d), real_num_rx_queues(%d)", 828f9790aebSLuigi Rizzo ifp->num_rx_queues, ifp->real_num_rx_queues); 829f9790aebSLuigi Rizzo 830f9790aebSLuigi Rizzo generic_find_num_queues(ifp, &na->num_tx_rings, &na->num_rx_rings); 831f9790aebSLuigi Rizzo 832f9790aebSLuigi Rizzo retval = netmap_attach_common(na); 833f9790aebSLuigi Rizzo if (retval) { 834f9790aebSLuigi Rizzo free(gna, M_DEVBUF); 835f9790aebSLuigi Rizzo } 836f9790aebSLuigi Rizzo 837f9790aebSLuigi Rizzo return retval; 838f9790aebSLuigi Rizzo } 839