1f7788e8eSJonathan Lemon /*- 2a17c678eSDavid Greenman * Copyright (c) 1995, David Greenman 33bd07cfdSJonathan Lemon * Copyright (c) 2001 Jonathan Lemon <jlemon@freebsd.org> 4a17c678eSDavid Greenman * All rights reserved. 5a17c678eSDavid Greenman * 6a17c678eSDavid Greenman * Redistribution and use in source and binary forms, with or without 7a17c678eSDavid Greenman * modification, are permitted provided that the following conditions 8a17c678eSDavid Greenman * are met: 9a17c678eSDavid Greenman * 1. Redistributions of source code must retain the above copyright 10a17c678eSDavid Greenman * notice unmodified, this list of conditions, and the following 11a17c678eSDavid Greenman * disclaimer. 12a17c678eSDavid Greenman * 2. Redistributions in binary form must reproduce the above copyright 13a17c678eSDavid Greenman * notice, this list of conditions and the following disclaimer in the 14a17c678eSDavid Greenman * documentation and/or other materials provided with the distribution. 15a17c678eSDavid Greenman * 16a17c678eSDavid Greenman * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 17a17c678eSDavid Greenman * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 18a17c678eSDavid Greenman * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 19a17c678eSDavid Greenman * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 20a17c678eSDavid Greenman * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 21a17c678eSDavid Greenman * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 22a17c678eSDavid Greenman * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 23a17c678eSDavid Greenman * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 24a17c678eSDavid Greenman * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 25a17c678eSDavid Greenman * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 26a17c678eSDavid Greenman * SUCH DAMAGE. 27a17c678eSDavid Greenman * 28a17c678eSDavid Greenman */ 29a17c678eSDavid Greenman 30aad970f1SDavid E. O'Brien #include <sys/cdefs.h> 31aad970f1SDavid E. O'Brien __FBSDID("$FreeBSD$"); 32aad970f1SDavid E. O'Brien 33a17c678eSDavid Greenman /* 34ae12cddaSDavid Greenman * Intel EtherExpress Pro/100B PCI Fast Ethernet driver 35a17c678eSDavid Greenman */ 36a17c678eSDavid Greenman 37f0796cd2SGleb Smirnoff #ifdef HAVE_KERNEL_OPTION_HEADERS 38f0796cd2SGleb Smirnoff #include "opt_device_polling.h" 39f0796cd2SGleb Smirnoff #endif 40f0796cd2SGleb Smirnoff 41a17c678eSDavid Greenman #include <sys/param.h> 42a17c678eSDavid Greenman #include <sys/systm.h> 438fae3bd4SPyun YongHyeon #include <sys/bus.h> 4483e6547dSMaxime Henrion #include <sys/endian.h> 45a17c678eSDavid Greenman #include <sys/kernel.h> 468fae3bd4SPyun YongHyeon #include <sys/mbuf.h> 476d7e1582SPyun YongHyeon #include <sys/lock.h> 48fe12f24bSPoul-Henning Kamp #include <sys/module.h> 496d7e1582SPyun YongHyeon #include <sys/mutex.h> 508fae3bd4SPyun YongHyeon #include <sys/rman.h> 514458ac71SBruce Evans #include <sys/socket.h> 528fae3bd4SPyun YongHyeon #include <sys/sockio.h> 5372a32a26SJonathan Lemon #include <sys/sysctl.h> 54a17c678eSDavid Greenman 558fae3bd4SPyun YongHyeon #include <net/bpf.h> 568fae3bd4SPyun YongHyeon #include <net/ethernet.h> 57a17c678eSDavid Greenman #include <net/if.h> 588fae3bd4SPyun YongHyeon #include <net/if_arp.h> 59397f9dfeSDavid Greenman #include <net/if_dl.h> 60ba8c6fd5SDavid Greenman #include <net/if_media.h> 61e8c8b728SJonathan Lemon #include <net/if_types.h> 62e8c8b728SJonathan Lemon #include <net/if_vlan_var.h> 63e8c8b728SJonathan Lemon 64c8bca6dcSBill Paul #include <netinet/in.h> 65c8bca6dcSBill Paul #include <netinet/in_systm.h> 66c8bca6dcSBill Paul #include <netinet/ip.h> 67f13075afSPyun YongHyeon #include <netinet/tcp.h> 68f13075afSPyun YongHyeon #include <netinet/udp.h> 69f13075afSPyun YongHyeon 70f13075afSPyun YongHyeon #include <machine/bus.h> 71c8bca6dcSBill Paul #include <machine/in_cksum.h> 72f13075afSPyun YongHyeon #include <machine/resource.h> 73c8bca6dcSBill Paul 744fbd232cSWarner Losh #include <dev/pci/pcivar.h> 754fbd232cSWarner Losh #include <dev/pci/pcireg.h> /* for PCIM_CMD_xxx */ 76a17c678eSDavid Greenman 77f7788e8eSJonathan Lemon #include <dev/mii/mii.h> 78f7788e8eSJonathan Lemon #include <dev/mii/miivar.h> 79f7788e8eSJonathan Lemon 80f7788e8eSJonathan Lemon #include <dev/fxp/if_fxpreg.h> 81f7788e8eSJonathan Lemon #include <dev/fxp/if_fxpvar.h> 8272a32a26SJonathan Lemon #include <dev/fxp/rcvbundl.h> 83f7788e8eSJonathan Lemon 84f246e4a1SMatthew N. Dodd MODULE_DEPEND(fxp, pci, 1, 1, 1); 85f246e4a1SMatthew N. Dodd MODULE_DEPEND(fxp, ether, 1, 1, 1); 86f7788e8eSJonathan Lemon MODULE_DEPEND(fxp, miibus, 1, 1, 1); 87f7788e8eSJonathan Lemon #include "miibus_if.h" 884fc1dda9SAndrew Gallatin 89ba8c6fd5SDavid Greenman /* 90658c8398SMarius Strobl * NOTE! On !x86 we typically have an alignment constraint. The 91ba8c6fd5SDavid Greenman * card DMAs the packet immediately following the RFA. However, 92ba8c6fd5SDavid Greenman * the first thing in the packet is a 14-byte Ethernet header. 93ba8c6fd5SDavid Greenman * This means that the packet is misaligned. To compensate, 94ba8c6fd5SDavid Greenman * we actually offset the RFA 2 bytes into the cluster. This 95ba8c6fd5SDavid Greenman * alignes the packet after the Ethernet header at a 32-bit 96ba8c6fd5SDavid Greenman * boundary. HOWEVER! This means that the RFA is misaligned! 97ba8c6fd5SDavid Greenman */ 98ba8c6fd5SDavid Greenman #define RFA_ALIGNMENT_FUDGE 2 99ba8c6fd5SDavid Greenman 100ba8c6fd5SDavid Greenman /* 101f7788e8eSJonathan Lemon * Set initial transmit threshold at 64 (512 bytes). This is 102f7788e8eSJonathan Lemon * increased by 64 (512 bytes) at a time, to maximum of 192 103f7788e8eSJonathan Lemon * (1536 bytes), if an underrun occurs. 104f7788e8eSJonathan Lemon */ 105f7788e8eSJonathan Lemon static int tx_threshold = 64; 106f7788e8eSJonathan Lemon 107f7788e8eSJonathan Lemon /* 108f7788e8eSJonathan Lemon * The configuration byte map has several undefined fields which 10972517829SPyun YongHyeon * must be one or must be zero. Set up a template for these bits. 110e0fe5c6dSMarius Strobl * The actual configuration is performed in fxp_init_body. 111f7788e8eSJonathan Lemon * 112f7788e8eSJonathan Lemon * See struct fxp_cb_config for the bit definitions. 113f7788e8eSJonathan Lemon */ 114e0fe5c6dSMarius Strobl static const u_char const fxp_cb_config_template[] = { 115f7788e8eSJonathan Lemon 0x0, 0x0, /* cb_status */ 116f7788e8eSJonathan Lemon 0x0, 0x0, /* cb_command */ 117f7788e8eSJonathan Lemon 0x0, 0x0, 0x0, 0x0, /* link_addr */ 118f7788e8eSJonathan Lemon 0x0, /* 0 */ 119f7788e8eSJonathan Lemon 0x0, /* 1 */ 120f7788e8eSJonathan Lemon 0x0, /* 2 */ 121f7788e8eSJonathan Lemon 0x0, /* 3 */ 122f7788e8eSJonathan Lemon 0x0, /* 4 */ 123f7788e8eSJonathan Lemon 0x0, /* 5 */ 124f7788e8eSJonathan Lemon 0x32, /* 6 */ 125f7788e8eSJonathan Lemon 0x0, /* 7 */ 126f7788e8eSJonathan Lemon 0x0, /* 8 */ 127f7788e8eSJonathan Lemon 0x0, /* 9 */ 128f7788e8eSJonathan Lemon 0x6, /* 10 */ 129f7788e8eSJonathan Lemon 0x0, /* 11 */ 130f7788e8eSJonathan Lemon 0x0, /* 12 */ 131f7788e8eSJonathan Lemon 0x0, /* 13 */ 132f7788e8eSJonathan Lemon 0xf2, /* 14 */ 133f7788e8eSJonathan Lemon 0x48, /* 15 */ 134f7788e8eSJonathan Lemon 0x0, /* 16 */ 135f7788e8eSJonathan Lemon 0x40, /* 17 */ 136f7788e8eSJonathan Lemon 0xf0, /* 18 */ 137f7788e8eSJonathan Lemon 0x0, /* 19 */ 138f7788e8eSJonathan Lemon 0x3f, /* 20 */ 13972517829SPyun YongHyeon 0x5, /* 21 */ 14072517829SPyun YongHyeon 0x0, /* 22 */ 14172517829SPyun YongHyeon 0x0, /* 23 */ 14272517829SPyun YongHyeon 0x0, /* 24 */ 14372517829SPyun YongHyeon 0x0, /* 25 */ 14472517829SPyun YongHyeon 0x0, /* 26 */ 14572517829SPyun YongHyeon 0x0, /* 27 */ 14672517829SPyun YongHyeon 0x0, /* 28 */ 14772517829SPyun YongHyeon 0x0, /* 29 */ 14872517829SPyun YongHyeon 0x0, /* 30 */ 14972517829SPyun YongHyeon 0x0 /* 31 */ 150f7788e8eSJonathan Lemon }; 151f7788e8eSJonathan Lemon 152f7788e8eSJonathan Lemon /* 153f7788e8eSJonathan Lemon * Claim various Intel PCI device identifiers for this driver. The 154f7788e8eSJonathan Lemon * sub-vendor and sub-device field are extensively used to identify 155f7788e8eSJonathan Lemon * particular variants, but we don't currently differentiate between 156f7788e8eSJonathan Lemon * them. 157f7788e8eSJonathan Lemon */ 158e0fe5c6dSMarius Strobl static const struct fxp_ident const fxp_ident_table[] = { 159b96ad4b2SPyun YongHyeon { 0x1029, -1, 0, "Intel 82559 PCI/CardBus Pro/100" }, 160b96ad4b2SPyun YongHyeon { 0x1030, -1, 0, "Intel 82559 Pro/100 Ethernet" }, 161b96ad4b2SPyun YongHyeon { 0x1031, -1, 3, "Intel 82801CAM (ICH3) Pro/100 VE Ethernet" }, 162b96ad4b2SPyun YongHyeon { 0x1032, -1, 3, "Intel 82801CAM (ICH3) Pro/100 VE Ethernet" }, 163b96ad4b2SPyun YongHyeon { 0x1033, -1, 3, "Intel 82801CAM (ICH3) Pro/100 VM Ethernet" }, 164b96ad4b2SPyun YongHyeon { 0x1034, -1, 3, "Intel 82801CAM (ICH3) Pro/100 VM Ethernet" }, 165b96ad4b2SPyun YongHyeon { 0x1035, -1, 3, "Intel 82801CAM (ICH3) Pro/100 Ethernet" }, 166b96ad4b2SPyun YongHyeon { 0x1036, -1, 3, "Intel 82801CAM (ICH3) Pro/100 Ethernet" }, 167b96ad4b2SPyun YongHyeon { 0x1037, -1, 3, "Intel 82801CAM (ICH3) Pro/100 Ethernet" }, 168b96ad4b2SPyun YongHyeon { 0x1038, -1, 3, "Intel 82801CAM (ICH3) Pro/100 VM Ethernet" }, 169b96ad4b2SPyun YongHyeon { 0x1039, -1, 4, "Intel 82801DB (ICH4) Pro/100 VE Ethernet" }, 170b96ad4b2SPyun YongHyeon { 0x103A, -1, 4, "Intel 82801DB (ICH4) Pro/100 Ethernet" }, 171b96ad4b2SPyun YongHyeon { 0x103B, -1, 4, "Intel 82801DB (ICH4) Pro/100 VM Ethernet" }, 172b96ad4b2SPyun YongHyeon { 0x103C, -1, 4, "Intel 82801DB (ICH4) Pro/100 Ethernet" }, 173b96ad4b2SPyun YongHyeon { 0x103D, -1, 4, "Intel 82801DB (ICH4) Pro/100 VE Ethernet" }, 174b96ad4b2SPyun YongHyeon { 0x103E, -1, 4, "Intel 82801DB (ICH4) Pro/100 VM Ethernet" }, 175b96ad4b2SPyun YongHyeon { 0x1050, -1, 5, "Intel 82801BA (D865) Pro/100 VE Ethernet" }, 176b96ad4b2SPyun YongHyeon { 0x1051, -1, 5, "Intel 82562ET (ICH5/ICH5R) Pro/100 VE Ethernet" }, 177b96ad4b2SPyun YongHyeon { 0x1059, -1, 0, "Intel 82551QM Pro/100 M Mobile Connection" }, 178b96ad4b2SPyun YongHyeon { 0x1064, -1, 6, "Intel 82562EZ (ICH6)" }, 179b96ad4b2SPyun YongHyeon { 0x1065, -1, 6, "Intel 82562ET/EZ/GT/GZ PRO/100 VE Ethernet" }, 180b96ad4b2SPyun YongHyeon { 0x1068, -1, 6, "Intel 82801FBM (ICH6-M) Pro/100 VE Ethernet" }, 181b96ad4b2SPyun YongHyeon { 0x1069, -1, 6, "Intel 82562EM/EX/GX Pro/100 Ethernet" }, 182b96ad4b2SPyun YongHyeon { 0x1091, -1, 7, "Intel 82562GX Pro/100 Ethernet" }, 183b96ad4b2SPyun YongHyeon { 0x1092, -1, 7, "Intel Pro/100 VE Network Connection" }, 184b96ad4b2SPyun YongHyeon { 0x1093, -1, 7, "Intel Pro/100 VM Network Connection" }, 185b96ad4b2SPyun YongHyeon { 0x1094, -1, 7, "Intel Pro/100 946GZ (ICH7) Network Connection" }, 186b96ad4b2SPyun YongHyeon { 0x1209, -1, 0, "Intel 82559ER Embedded 10/100 Ethernet" }, 187b96ad4b2SPyun YongHyeon { 0x1229, 0x01, 0, "Intel 82557 Pro/100 Ethernet" }, 188b96ad4b2SPyun YongHyeon { 0x1229, 0x02, 0, "Intel 82557 Pro/100 Ethernet" }, 189b96ad4b2SPyun YongHyeon { 0x1229, 0x03, 0, "Intel 82557 Pro/100 Ethernet" }, 190b96ad4b2SPyun YongHyeon { 0x1229, 0x04, 0, "Intel 82558 Pro/100 Ethernet" }, 191b96ad4b2SPyun YongHyeon { 0x1229, 0x05, 0, "Intel 82558 Pro/100 Ethernet" }, 192b96ad4b2SPyun YongHyeon { 0x1229, 0x06, 0, "Intel 82559 Pro/100 Ethernet" }, 193b96ad4b2SPyun YongHyeon { 0x1229, 0x07, 0, "Intel 82559 Pro/100 Ethernet" }, 194b96ad4b2SPyun YongHyeon { 0x1229, 0x08, 0, "Intel 82559 Pro/100 Ethernet" }, 195b96ad4b2SPyun YongHyeon { 0x1229, 0x09, 0, "Intel 82559ER Pro/100 Ethernet" }, 196b96ad4b2SPyun YongHyeon { 0x1229, 0x0c, 0, "Intel 82550 Pro/100 Ethernet" }, 1971343a72fSPyun YongHyeon { 0x1229, 0x0d, 0, "Intel 82550C Pro/100 Ethernet" }, 198b96ad4b2SPyun YongHyeon { 0x1229, 0x0e, 0, "Intel 82550 Pro/100 Ethernet" }, 199b96ad4b2SPyun YongHyeon { 0x1229, 0x0f, 0, "Intel 82551 Pro/100 Ethernet" }, 200b96ad4b2SPyun YongHyeon { 0x1229, 0x10, 0, "Intel 82551 Pro/100 Ethernet" }, 201b96ad4b2SPyun YongHyeon { 0x1229, -1, 0, "Intel 82557/8/9 Pro/100 Ethernet" }, 202b96ad4b2SPyun YongHyeon { 0x2449, -1, 2, "Intel 82801BA/CAM (ICH2/3) Pro/100 Ethernet" }, 203b96ad4b2SPyun YongHyeon { 0x27dc, -1, 7, "Intel 82801GB (ICH7) 10/100 Ethernet" }, 204b96ad4b2SPyun YongHyeon { 0, -1, 0, NULL }, 205f7788e8eSJonathan Lemon }; 206f7788e8eSJonathan Lemon 207c8bca6dcSBill Paul #ifdef FXP_IP_CSUM_WAR 208c8bca6dcSBill Paul #define FXP_CSUM_FEATURES (CSUM_IP | CSUM_TCP | CSUM_UDP) 209c8bca6dcSBill Paul #else 210c8bca6dcSBill Paul #define FXP_CSUM_FEATURES (CSUM_TCP | CSUM_UDP) 211c8bca6dcSBill Paul #endif 212c8bca6dcSBill Paul 213f7788e8eSJonathan Lemon static int fxp_probe(device_t dev); 214f7788e8eSJonathan Lemon static int fxp_attach(device_t dev); 215f7788e8eSJonathan Lemon static int fxp_detach(device_t dev); 216f7788e8eSJonathan Lemon static int fxp_shutdown(device_t dev); 217f7788e8eSJonathan Lemon static int fxp_suspend(device_t dev); 218f7788e8eSJonathan Lemon static int fxp_resume(device_t dev); 219f7788e8eSJonathan Lemon 220e0fe5c6dSMarius Strobl static const struct fxp_ident *fxp_find_ident(device_t dev); 221f7788e8eSJonathan Lemon static void fxp_intr(void *xsc); 222f13075afSPyun YongHyeon static void fxp_rxcsum(struct fxp_softc *sc, struct ifnet *ifp, 223f13075afSPyun YongHyeon struct mbuf *m, uint16_t status, int pos); 2241abcdbd1SAttilio Rao static int fxp_intr_body(struct fxp_softc *sc, struct ifnet *ifp, 22574d1ed23SMaxime Henrion uint8_t statack, int count); 226f7788e8eSJonathan Lemon static void fxp_init(void *xsc); 2271845b5c3SMarius Strobl static void fxp_init_body(struct fxp_softc *sc, int); 228f7788e8eSJonathan Lemon static void fxp_tick(void *xsc); 229f7788e8eSJonathan Lemon static void fxp_start(struct ifnet *ifp); 2304953bccaSNate Lawson static void fxp_start_body(struct ifnet *ifp); 2314e53f837SPyun YongHyeon static int fxp_encap(struct fxp_softc *sc, struct mbuf **m_head); 2324e53f837SPyun YongHyeon static void fxp_txeof(struct fxp_softc *sc); 233f7788e8eSJonathan Lemon static void fxp_stop(struct fxp_softc *sc); 234f7788e8eSJonathan Lemon static void fxp_release(struct fxp_softc *sc); 235f7788e8eSJonathan Lemon static int fxp_ioctl(struct ifnet *ifp, u_long command, 236f7788e8eSJonathan Lemon caddr_t data); 237df79d527SGleb Smirnoff static void fxp_watchdog(struct fxp_softc *sc); 23885050421SPyun YongHyeon static void fxp_add_rfabuf(struct fxp_softc *sc, 23985050421SPyun YongHyeon struct fxp_rx *rxp); 24085050421SPyun YongHyeon static void fxp_discard_rfabuf(struct fxp_softc *sc, 24185050421SPyun YongHyeon struct fxp_rx *rxp); 24285050421SPyun YongHyeon static int fxp_new_rfabuf(struct fxp_softc *sc, 24385050421SPyun YongHyeon struct fxp_rx *rxp); 24409882363SJonathan Lemon static int fxp_mc_addrs(struct fxp_softc *sc); 245f7788e8eSJonathan Lemon static void fxp_mc_setup(struct fxp_softc *sc); 24674d1ed23SMaxime Henrion static uint16_t fxp_eeprom_getword(struct fxp_softc *sc, int offset, 247f7788e8eSJonathan Lemon int autosize); 24800c4116bSJonathan Lemon static void fxp_eeprom_putword(struct fxp_softc *sc, int offset, 24974d1ed23SMaxime Henrion uint16_t data); 250f7788e8eSJonathan Lemon static void fxp_autosize_eeprom(struct fxp_softc *sc); 2518262183eSPyun YongHyeon static void fxp_load_eeprom(struct fxp_softc *sc); 252f7788e8eSJonathan Lemon static void fxp_read_eeprom(struct fxp_softc *sc, u_short *data, 253f7788e8eSJonathan Lemon int offset, int words); 25400c4116bSJonathan Lemon static void fxp_write_eeprom(struct fxp_softc *sc, u_short *data, 25500c4116bSJonathan Lemon int offset, int words); 256f7788e8eSJonathan Lemon static int fxp_ifmedia_upd(struct ifnet *ifp); 257f7788e8eSJonathan Lemon static void fxp_ifmedia_sts(struct ifnet *ifp, 258f7788e8eSJonathan Lemon struct ifmediareq *ifmr); 259f7788e8eSJonathan Lemon static int fxp_serial_ifmedia_upd(struct ifnet *ifp); 260f7788e8eSJonathan Lemon static void fxp_serial_ifmedia_sts(struct ifnet *ifp, 261f7788e8eSJonathan Lemon struct ifmediareq *ifmr); 262f1928b0cSKevin Lo static int fxp_miibus_readreg(device_t dev, int phy, int reg); 26316ec4b00SWarner Losh static int fxp_miibus_writereg(device_t dev, int phy, int reg, 264f7788e8eSJonathan Lemon int value); 2651845b5c3SMarius Strobl static void fxp_miibus_statchg(device_t dev); 26672a32a26SJonathan Lemon static void fxp_load_ucode(struct fxp_softc *sc); 2678da9c507SPyun YongHyeon static void fxp_update_stats(struct fxp_softc *sc); 2688da9c507SPyun YongHyeon static void fxp_sysctl_node(struct fxp_softc *sc); 26972a32a26SJonathan Lemon static int sysctl_int_range(SYSCTL_HANDLER_ARGS, 27072a32a26SJonathan Lemon int low, int high); 27172a32a26SJonathan Lemon static int sysctl_hw_fxp_bundle_max(SYSCTL_HANDLER_ARGS); 27272a32a26SJonathan Lemon static int sysctl_hw_fxp_int_delay(SYSCTL_HANDLER_ARGS); 27328935f27SMaxime Henrion static void fxp_scb_wait(struct fxp_softc *sc); 27428935f27SMaxime Henrion static void fxp_scb_cmd(struct fxp_softc *sc, int cmd); 27528935f27SMaxime Henrion static void fxp_dma_wait(struct fxp_softc *sc, 27674d1ed23SMaxime Henrion volatile uint16_t *status, bus_dma_tag_t dmat, 277209b07bcSMaxime Henrion bus_dmamap_t map); 278f7788e8eSJonathan Lemon 279f7788e8eSJonathan Lemon static device_method_t fxp_methods[] = { 280f7788e8eSJonathan Lemon /* Device interface */ 281f7788e8eSJonathan Lemon DEVMETHOD(device_probe, fxp_probe), 282f7788e8eSJonathan Lemon DEVMETHOD(device_attach, fxp_attach), 283f7788e8eSJonathan Lemon DEVMETHOD(device_detach, fxp_detach), 284f7788e8eSJonathan Lemon DEVMETHOD(device_shutdown, fxp_shutdown), 285f7788e8eSJonathan Lemon DEVMETHOD(device_suspend, fxp_suspend), 286f7788e8eSJonathan Lemon DEVMETHOD(device_resume, fxp_resume), 287f7788e8eSJonathan Lemon 288f7788e8eSJonathan Lemon /* MII interface */ 289f7788e8eSJonathan Lemon DEVMETHOD(miibus_readreg, fxp_miibus_readreg), 290f7788e8eSJonathan Lemon DEVMETHOD(miibus_writereg, fxp_miibus_writereg), 2911845b5c3SMarius Strobl DEVMETHOD(miibus_statchg, fxp_miibus_statchg), 292f7788e8eSJonathan Lemon 293f7788e8eSJonathan Lemon { 0, 0 } 294f7788e8eSJonathan Lemon }; 295f7788e8eSJonathan Lemon 296f7788e8eSJonathan Lemon static driver_t fxp_driver = { 297f7788e8eSJonathan Lemon "fxp", 298f7788e8eSJonathan Lemon fxp_methods, 299f7788e8eSJonathan Lemon sizeof(struct fxp_softc), 300f7788e8eSJonathan Lemon }; 301f7788e8eSJonathan Lemon 302f7788e8eSJonathan Lemon static devclass_t fxp_devclass; 303f7788e8eSJonathan Lemon 304f246e4a1SMatthew N. Dodd DRIVER_MODULE(fxp, pci, fxp_driver, fxp_devclass, 0, 0); 305f7788e8eSJonathan Lemon DRIVER_MODULE(miibus, fxp, miibus_driver, miibus_devclass, 0, 0); 306f7788e8eSJonathan Lemon 30705bd8c22SMaxime Henrion static struct resource_spec fxp_res_spec_mem[] = { 30805bd8c22SMaxime Henrion { SYS_RES_MEMORY, FXP_PCI_MMBA, RF_ACTIVE }, 30905bd8c22SMaxime Henrion { SYS_RES_IRQ, 0, RF_ACTIVE | RF_SHAREABLE }, 31005bd8c22SMaxime Henrion { -1, 0 } 31105bd8c22SMaxime Henrion }; 31205bd8c22SMaxime Henrion 31305bd8c22SMaxime Henrion static struct resource_spec fxp_res_spec_io[] = { 31405bd8c22SMaxime Henrion { SYS_RES_IOPORT, FXP_PCI_IOBA, RF_ACTIVE }, 31505bd8c22SMaxime Henrion { SYS_RES_IRQ, 0, RF_ACTIVE | RF_SHAREABLE }, 31605bd8c22SMaxime Henrion { -1, 0 } 31705bd8c22SMaxime Henrion }; 31805bd8c22SMaxime Henrion 319f7788e8eSJonathan Lemon /* 320dfe61cf1SDavid Greenman * Wait for the previous command to be accepted (but not necessarily 321dfe61cf1SDavid Greenman * completed). 322dfe61cf1SDavid Greenman */ 32328935f27SMaxime Henrion static void 324f7788e8eSJonathan Lemon fxp_scb_wait(struct fxp_softc *sc) 325a17c678eSDavid Greenman { 3263cf09dd1SMarcel Moolenaar union { 3273cf09dd1SMarcel Moolenaar uint16_t w; 3283cf09dd1SMarcel Moolenaar uint8_t b[2]; 3293cf09dd1SMarcel Moolenaar } flowctl; 330a17c678eSDavid Greenman int i = 10000; 331a17c678eSDavid Greenman 3327dced78aSDavid Greenman while (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) && --i) 3337dced78aSDavid Greenman DELAY(2); 3343cf09dd1SMarcel Moolenaar if (i == 0) { 3351845b5c3SMarius Strobl flowctl.b[0] = CSR_READ_1(sc, FXP_CSR_FC_THRESH); 3361845b5c3SMarius Strobl flowctl.b[1] = CSR_READ_1(sc, FXP_CSR_FC_STATUS); 33700c4116bSJonathan Lemon device_printf(sc->dev, "SCB timeout: 0x%x 0x%x 0x%x 0x%x\n", 338e8c8b728SJonathan Lemon CSR_READ_1(sc, FXP_CSR_SCB_COMMAND), 339e8c8b728SJonathan Lemon CSR_READ_1(sc, FXP_CSR_SCB_STATACK), 3403cf09dd1SMarcel Moolenaar CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS), flowctl.w); 3413cf09dd1SMarcel Moolenaar } 3427dced78aSDavid Greenman } 3437dced78aSDavid Greenman 34428935f27SMaxime Henrion static void 3452e2b8238SJonathan Lemon fxp_scb_cmd(struct fxp_softc *sc, int cmd) 3462e2b8238SJonathan Lemon { 3472e2b8238SJonathan Lemon 3482e2b8238SJonathan Lemon if (cmd == FXP_SCB_COMMAND_CU_RESUME && sc->cu_resume_bug) { 3492e2b8238SJonathan Lemon CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, FXP_CB_COMMAND_NOP); 3502e2b8238SJonathan Lemon fxp_scb_wait(sc); 3512e2b8238SJonathan Lemon } 3522e2b8238SJonathan Lemon CSR_WRITE_1(sc, FXP_CSR_SCB_COMMAND, cmd); 3532e2b8238SJonathan Lemon } 3542e2b8238SJonathan Lemon 35528935f27SMaxime Henrion static void 35674d1ed23SMaxime Henrion fxp_dma_wait(struct fxp_softc *sc, volatile uint16_t *status, 357209b07bcSMaxime Henrion bus_dma_tag_t dmat, bus_dmamap_t map) 3587dced78aSDavid Greenman { 3595986d0d2SPyun YongHyeon int i; 3607dced78aSDavid Greenman 3615986d0d2SPyun YongHyeon for (i = 10000; i > 0; i--) { 3627dced78aSDavid Greenman DELAY(2); 3635986d0d2SPyun YongHyeon bus_dmamap_sync(dmat, map, 3645986d0d2SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 3655986d0d2SPyun YongHyeon if ((le16toh(*status) & FXP_CB_STATUS_C) != 0) 3665986d0d2SPyun YongHyeon break; 367209b07bcSMaxime Henrion } 3687dced78aSDavid Greenman if (i == 0) 369f7788e8eSJonathan Lemon device_printf(sc->dev, "DMA timeout\n"); 370a17c678eSDavid Greenman } 371a17c678eSDavid Greenman 372e0fe5c6dSMarius Strobl static const struct fxp_ident * 373b96ad4b2SPyun YongHyeon fxp_find_ident(device_t dev) 374a17c678eSDavid Greenman { 37574d1ed23SMaxime Henrion uint16_t devid; 37674d1ed23SMaxime Henrion uint8_t revid; 377e0fe5c6dSMarius Strobl const struct fxp_ident *ident; 378f7788e8eSJonathan Lemon 37955ce7b51SDavid Greenman if (pci_get_vendor(dev) == FXP_VENDORID_INTEL) { 380f7788e8eSJonathan Lemon devid = pci_get_device(dev); 381f19fc5d8SJohn Polstra revid = pci_get_revid(dev); 382f7788e8eSJonathan Lemon for (ident = fxp_ident_table; ident->name != NULL; ident++) { 383f19fc5d8SJohn Polstra if (ident->devid == devid && 384f19fc5d8SJohn Polstra (ident->revid == revid || ident->revid == -1)) { 385b96ad4b2SPyun YongHyeon return (ident); 386b96ad4b2SPyun YongHyeon } 387b96ad4b2SPyun YongHyeon } 388b96ad4b2SPyun YongHyeon } 389b96ad4b2SPyun YongHyeon return (NULL); 390b96ad4b2SPyun YongHyeon } 391b96ad4b2SPyun YongHyeon 392b96ad4b2SPyun YongHyeon /* 393b96ad4b2SPyun YongHyeon * Return identification string if this device is ours. 394b96ad4b2SPyun YongHyeon */ 395b96ad4b2SPyun YongHyeon static int 396b96ad4b2SPyun YongHyeon fxp_probe(device_t dev) 397b96ad4b2SPyun YongHyeon { 398e0fe5c6dSMarius Strobl const struct fxp_ident *ident; 399b96ad4b2SPyun YongHyeon 400b96ad4b2SPyun YongHyeon ident = fxp_find_ident(dev); 401b96ad4b2SPyun YongHyeon if (ident != NULL) { 402f7788e8eSJonathan Lemon device_set_desc(dev, ident->name); 403538565c4SWarner Losh return (BUS_PROBE_DEFAULT); 40455ce7b51SDavid Greenman } 405f7788e8eSJonathan Lemon return (ENXIO); 4066182fdbdSPeter Wemm } 4076182fdbdSPeter Wemm 408b2badf02SMaxime Henrion static void 409b2badf02SMaxime Henrion fxp_dma_map_addr(void *arg, bus_dma_segment_t *segs, int nseg, int error) 410b2badf02SMaxime Henrion { 41174d1ed23SMaxime Henrion uint32_t *addr; 412b2badf02SMaxime Henrion 413b2badf02SMaxime Henrion if (error) 414b2badf02SMaxime Henrion return; 415b2badf02SMaxime Henrion 416b2badf02SMaxime Henrion KASSERT(nseg == 1, ("too many DMA segments, %d should be 1", nseg)); 417b2badf02SMaxime Henrion addr = arg; 418b2badf02SMaxime Henrion *addr = segs->ds_addr; 419b2badf02SMaxime Henrion } 420b2badf02SMaxime Henrion 4216182fdbdSPeter Wemm static int 4226182fdbdSPeter Wemm fxp_attach(device_t dev) 423a17c678eSDavid Greenman { 4246720ebccSMaxime Henrion struct fxp_softc *sc; 4256720ebccSMaxime Henrion struct fxp_cb_tx *tcbp; 4266720ebccSMaxime Henrion struct fxp_tx *txp; 427b2badf02SMaxime Henrion struct fxp_rx *rxp; 4286720ebccSMaxime Henrion struct ifnet *ifp; 42974d1ed23SMaxime Henrion uint32_t val; 4308262183eSPyun YongHyeon uint16_t data; 431fc74a9f9SBrooks Davis u_char eaddr[ETHER_ADDR_LEN]; 4321845b5c3SMarius Strobl int error, flags, i, pmc, prefer_iomap; 433a17c678eSDavid Greenman 4346720ebccSMaxime Henrion error = 0; 4356720ebccSMaxime Henrion sc = device_get_softc(dev); 436f7788e8eSJonathan Lemon sc->dev = dev; 4376008862bSJohn Baldwin mtx_init(&sc->sc_mtx, device_get_nameunit(dev), MTX_NETWORK_LOCK, 4384953bccaSNate Lawson MTX_DEF); 4393212724cSJohn Baldwin callout_init_mtx(&sc->stat_ch, &sc->sc_mtx, 0); 4404953bccaSNate Lawson ifmedia_init(&sc->sc_media, 0, fxp_serial_ifmedia_upd, 4414953bccaSNate Lawson fxp_serial_ifmedia_sts); 442a17c678eSDavid Greenman 4437ba33d82SBrooks Davis ifp = sc->ifp = if_alloc(IFT_ETHER); 4447ba33d82SBrooks Davis if (ifp == NULL) { 4457ba33d82SBrooks Davis device_printf(dev, "can not if_alloc()\n"); 4467ba33d82SBrooks Davis error = ENOSPC; 4477ba33d82SBrooks Davis goto fail; 4487ba33d82SBrooks Davis } 4497ba33d82SBrooks Davis 450dfe61cf1SDavid Greenman /* 4512bce79a2SMaxim Sobolev * Enable bus mastering. 452df373873SWes Peters */ 453cf0d8a1eSMaxim Sobolev pci_enable_busmaster(dev); 4549fa6ccfbSMatt Jacob val = pci_read_config(dev, PCIR_COMMAND, 2); 45579495006SWarner Losh 456df373873SWes Peters /* 4579fa6ccfbSMatt Jacob * Figure out which we should try first - memory mapping or i/o mapping? 4589fa6ccfbSMatt Jacob * We default to memory mapping. Then we accept an override from the 4599fa6ccfbSMatt Jacob * command line. Then we check to see which one is enabled. 460dfe61cf1SDavid Greenman */ 4612a05a4ebSMatt Jacob prefer_iomap = 0; 46205bd8c22SMaxime Henrion resource_int_value(device_get_name(dev), device_get_unit(dev), 46305bd8c22SMaxime Henrion "prefer_iomap", &prefer_iomap); 46405bd8c22SMaxime Henrion if (prefer_iomap) 46505bd8c22SMaxime Henrion sc->fxp_spec = fxp_res_spec_io; 46605bd8c22SMaxime Henrion else 46705bd8c22SMaxime Henrion sc->fxp_spec = fxp_res_spec_mem; 4689fa6ccfbSMatt Jacob 46905bd8c22SMaxime Henrion error = bus_alloc_resources(dev, sc->fxp_spec, sc->fxp_res); 47005bd8c22SMaxime Henrion if (error) { 47105bd8c22SMaxime Henrion if (sc->fxp_spec == fxp_res_spec_mem) 47205bd8c22SMaxime Henrion sc->fxp_spec = fxp_res_spec_io; 47305bd8c22SMaxime Henrion else 47405bd8c22SMaxime Henrion sc->fxp_spec = fxp_res_spec_mem; 47505bd8c22SMaxime Henrion error = bus_alloc_resources(dev, sc->fxp_spec, sc->fxp_res); 4769fa6ccfbSMatt Jacob } 47705bd8c22SMaxime Henrion if (error) { 47805bd8c22SMaxime Henrion device_printf(dev, "could not allocate resources\n"); 4796182fdbdSPeter Wemm error = ENXIO; 480a17c678eSDavid Greenman goto fail; 481a17c678eSDavid Greenman } 48205bd8c22SMaxime Henrion 4839fa6ccfbSMatt Jacob if (bootverbose) { 4849fa6ccfbSMatt Jacob device_printf(dev, "using %s space register mapping\n", 48505bd8c22SMaxime Henrion sc->fxp_spec == fxp_res_spec_mem ? "memory" : "I/O"); 4866182fdbdSPeter Wemm } 4876182fdbdSPeter Wemm 488f7788e8eSJonathan Lemon /* 489a996f023SPyun YongHyeon * Put CU/RU idle state and prepare full reset. 490f7788e8eSJonathan Lemon */ 491f7788e8eSJonathan Lemon CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET); 492f7788e8eSJonathan Lemon DELAY(10); 493a996f023SPyun YongHyeon /* Full reset and disable interrupts. */ 494a996f023SPyun YongHyeon CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SOFTWARE_RESET); 495a996f023SPyun YongHyeon DELAY(10); 496a996f023SPyun YongHyeon CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE); 497f7788e8eSJonathan Lemon 498f7788e8eSJonathan Lemon /* 499f7788e8eSJonathan Lemon * Find out how large of an SEEPROM we have. 500f7788e8eSJonathan Lemon */ 501f7788e8eSJonathan Lemon fxp_autosize_eeprom(sc); 5028262183eSPyun YongHyeon fxp_load_eeprom(sc); 503f7788e8eSJonathan Lemon 504f7788e8eSJonathan Lemon /* 50593b6e2e6SMaxime Henrion * Find out the chip revision; lump all 82557 revs together. 50693b6e2e6SMaxime Henrion */ 507b96ad4b2SPyun YongHyeon sc->ident = fxp_find_ident(dev); 508b96ad4b2SPyun YongHyeon if (sc->ident->ich > 0) { 509b96ad4b2SPyun YongHyeon /* Assume ICH controllers are 82559. */ 510b96ad4b2SPyun YongHyeon sc->revision = FXP_REV_82559_A0; 511b96ad4b2SPyun YongHyeon } else { 5128262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_CNTR]; 51393b6e2e6SMaxime Henrion if ((data >> 8) == 1) 51493b6e2e6SMaxime Henrion sc->revision = FXP_REV_82557; 51593b6e2e6SMaxime Henrion else 51693b6e2e6SMaxime Henrion sc->revision = pci_get_revid(dev); 517b96ad4b2SPyun YongHyeon } 51893b6e2e6SMaxime Henrion 51993b6e2e6SMaxime Henrion /* 5207137cea0SPyun YongHyeon * Check availability of WOL. 82559ER does not support WOL. 5217137cea0SPyun YongHyeon */ 5227137cea0SPyun YongHyeon if (sc->revision >= FXP_REV_82558_A4 && 5237137cea0SPyun YongHyeon sc->revision != FXP_REV_82559S_A) { 5248262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_ID]; 5257137cea0SPyun YongHyeon if ((data & 0x20) != 0 && 5263b0a4aefSJohn Baldwin pci_find_cap(sc->dev, PCIY_PMG, &pmc) == 0) 5277137cea0SPyun YongHyeon sc->flags |= FXP_FLAG_WOLCAP; 5287137cea0SPyun YongHyeon } 5297137cea0SPyun YongHyeon 5301343a72fSPyun YongHyeon if (sc->revision == FXP_REV_82550_C) { 5311343a72fSPyun YongHyeon /* 5321343a72fSPyun YongHyeon * 82550C with server extension requires microcode to 5331343a72fSPyun YongHyeon * receive fragmented UDP datagrams. However if the 5341343a72fSPyun YongHyeon * microcode is used for client-only featured 82550C 5351343a72fSPyun YongHyeon * it locks up controller. 5361343a72fSPyun YongHyeon */ 5378262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_COMPAT]; 5381343a72fSPyun YongHyeon if ((data & 0x0400) == 0) 5391343a72fSPyun YongHyeon sc->flags |= FXP_FLAG_NO_UCODE; 5401343a72fSPyun YongHyeon } 5411343a72fSPyun YongHyeon 54243d8b117SPyun YongHyeon /* Receiver lock-up workaround detection. */ 5436e854927SPyun YongHyeon if (sc->revision < FXP_REV_82558_A4) { 5448262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_COMPAT]; 54543d8b117SPyun YongHyeon if ((data & 0x03) != 0x03) { 54643d8b117SPyun YongHyeon sc->flags |= FXP_FLAG_RXBUG; 54743d8b117SPyun YongHyeon device_printf(dev, "Enabling Rx lock-up workaround\n"); 54843d8b117SPyun YongHyeon } 5496e854927SPyun YongHyeon } 55043d8b117SPyun YongHyeon 5517137cea0SPyun YongHyeon /* 5523bd07cfdSJonathan Lemon * Determine whether we must use the 503 serial interface. 553f7788e8eSJonathan Lemon */ 5548262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_PRI_PHY]; 55593b6e2e6SMaxime Henrion if (sc->revision == FXP_REV_82557 && (data & FXP_PHY_DEVICE_MASK) != 0 5564ed53076SMaxime Henrion && (data & FXP_PHY_SERIAL_ONLY)) 557dedabebfSJonathan Lemon sc->flags |= FXP_FLAG_SERIAL_MEDIA; 558f7788e8eSJonathan Lemon 5598da9c507SPyun YongHyeon fxp_sysctl_node(sc); 56072a32a26SJonathan Lemon /* 5612e2b8238SJonathan Lemon * Enable workarounds for certain chip revision deficiencies. 56200c4116bSJonathan Lemon * 56372a32a26SJonathan Lemon * Systems based on the ICH2/ICH2-M chip from Intel, and possibly 56472a32a26SJonathan Lemon * some systems based a normal 82559 design, have a defect where 56572a32a26SJonathan Lemon * the chip can cause a PCI protocol violation if it receives 56600c4116bSJonathan Lemon * a CU_RESUME command when it is entering the IDLE state. The 56700c4116bSJonathan Lemon * workaround is to disable Dynamic Standby Mode, so the chip never 56800c4116bSJonathan Lemon * deasserts CLKRUN#, and always remains in an active state. 56900c4116bSJonathan Lemon * 57000c4116bSJonathan Lemon * See Intel 82801BA/82801BAM Specification Update, Errata #30. 5712e2b8238SJonathan Lemon */ 572b96ad4b2SPyun YongHyeon if ((sc->ident->ich >= 2 && sc->ident->ich <= 3) || 573b96ad4b2SPyun YongHyeon (sc->ident->ich == 0 && sc->revision >= FXP_REV_82559_A0)) { 5748262183eSPyun YongHyeon data = sc->eeprom[FXP_EEPROM_MAP_ID]; 57500c4116bSJonathan Lemon if (data & 0x02) { /* STB enable */ 57674d1ed23SMaxime Henrion uint16_t cksum; 57700c4116bSJonathan Lemon int i; 57800c4116bSJonathan Lemon 57900c4116bSJonathan Lemon device_printf(dev, 580001cfa92SJonathan Lemon "Disabling dynamic standby mode in EEPROM\n"); 58100c4116bSJonathan Lemon data &= ~0x02; 5828262183eSPyun YongHyeon sc->eeprom[FXP_EEPROM_MAP_ID] = data; 5838262183eSPyun YongHyeon fxp_write_eeprom(sc, &data, FXP_EEPROM_MAP_ID, 1); 58400c4116bSJonathan Lemon device_printf(dev, "New EEPROM ID: 0x%x\n", data); 58500c4116bSJonathan Lemon cksum = 0; 5868262183eSPyun YongHyeon for (i = 0; i < (1 << sc->eeprom_size) - 1; i++) 5878262183eSPyun YongHyeon cksum += sc->eeprom[i]; 58800c4116bSJonathan Lemon i = (1 << sc->eeprom_size) - 1; 58900c4116bSJonathan Lemon cksum = 0xBABA - cksum; 59000c4116bSJonathan Lemon fxp_write_eeprom(sc, &cksum, i, 1); 59100c4116bSJonathan Lemon device_printf(dev, 59200c4116bSJonathan Lemon "EEPROM checksum @ 0x%x: 0x%x -> 0x%x\n", 5938262183eSPyun YongHyeon i, sc->eeprom[i], cksum); 5948262183eSPyun YongHyeon sc->eeprom[i] = cksum; 59500c4116bSJonathan Lemon /* 59600c4116bSJonathan Lemon * If the user elects to continue, try the software 59700c4116bSJonathan Lemon * workaround, as it is better than nothing. 59800c4116bSJonathan Lemon */ 5992e2b8238SJonathan Lemon sc->flags |= FXP_FLAG_CU_RESUME_BUG; 60000c4116bSJonathan Lemon } 60100c4116bSJonathan Lemon } 6022e2b8238SJonathan Lemon 6032e2b8238SJonathan Lemon /* 6043bd07cfdSJonathan Lemon * If we are not a 82557 chip, we can enable extended features. 6053bd07cfdSJonathan Lemon */ 60672a32a26SJonathan Lemon if (sc->revision != FXP_REV_82557) { 6073bd07cfdSJonathan Lemon /* 60874396a0aSJonathan Lemon * If MWI is enabled in the PCI configuration, and there 60974396a0aSJonathan Lemon * is a valid cacheline size (8 or 16 dwords), then tell 61074396a0aSJonathan Lemon * the board to turn on MWI. 6113bd07cfdSJonathan Lemon */ 61274396a0aSJonathan Lemon if (val & PCIM_CMD_MWRICEN && 61374396a0aSJonathan Lemon pci_read_config(dev, PCIR_CACHELNSZ, 1) != 0) 6143bd07cfdSJonathan Lemon sc->flags |= FXP_FLAG_MWI_ENABLE; 6153bd07cfdSJonathan Lemon 6163bd07cfdSJonathan Lemon /* turn on the extended TxCB feature */ 6173bd07cfdSJonathan Lemon sc->flags |= FXP_FLAG_EXT_TXCB; 61844e0bc11SYaroslav Tykhiy 61944e0bc11SYaroslav Tykhiy /* enable reception of long frames for VLAN */ 62044e0bc11SYaroslav Tykhiy sc->flags |= FXP_FLAG_LONG_PKT_EN; 62144e0bc11SYaroslav Tykhiy } else { 62244e0bc11SYaroslav Tykhiy /* a hack to get long VLAN frames on a 82557 */ 62344e0bc11SYaroslav Tykhiy sc->flags |= FXP_FLAG_SAVE_BAD; 6243bd07cfdSJonathan Lemon } 6253bd07cfdSJonathan Lemon 626f13075afSPyun YongHyeon /* For 82559 or later chips, Rx checksum offload is supported. */ 627829b278eSPyun YongHyeon if (sc->revision >= FXP_REV_82559_A0) { 628829b278eSPyun YongHyeon /* 82559ER does not support Rx checksum offloading. */ 629829b278eSPyun YongHyeon if (sc->ident->devid != 0x1209) 630f13075afSPyun YongHyeon sc->flags |= FXP_FLAG_82559_RXCSUM; 631829b278eSPyun YongHyeon } 6323bd07cfdSJonathan Lemon /* 633c8bca6dcSBill Paul * Enable use of extended RFDs and TCBs for 82550 634c8bca6dcSBill Paul * and later chips. Note: we need extended TXCB support 635c8bca6dcSBill Paul * too, but that's already enabled by the code above. 636c8bca6dcSBill Paul * Be careful to do this only on the right devices. 637c8bca6dcSBill Paul */ 638507feeafSMaxime Henrion if (sc->revision == FXP_REV_82550 || sc->revision == FXP_REV_82550_C || 639507feeafSMaxime Henrion sc->revision == FXP_REV_82551_E || sc->revision == FXP_REV_82551_F 640507feeafSMaxime Henrion || sc->revision == FXP_REV_82551_10) { 641c8bca6dcSBill Paul sc->rfa_size = sizeof (struct fxp_rfa); 642c8bca6dcSBill Paul sc->tx_cmd = FXP_CB_COMMAND_IPCBXMIT; 643c8bca6dcSBill Paul sc->flags |= FXP_FLAG_EXT_RFA; 644f13075afSPyun YongHyeon /* Use extended RFA instead of 82559 checksum mode. */ 645f13075afSPyun YongHyeon sc->flags &= ~FXP_FLAG_82559_RXCSUM; 646c8bca6dcSBill Paul } else { 647c8bca6dcSBill Paul sc->rfa_size = sizeof (struct fxp_rfa) - FXP_RFAX_LEN; 648c8bca6dcSBill Paul sc->tx_cmd = FXP_CB_COMMAND_XMIT; 649c8bca6dcSBill Paul } 650c8bca6dcSBill Paul 651c8bca6dcSBill Paul /* 652b2badf02SMaxime Henrion * Allocate DMA tags and DMA safe memory. 653b2badf02SMaxime Henrion */ 65440c20505SMaxime Henrion sc->maxtxseg = FXP_NTXSEG; 655c21e84e4SPyun YongHyeon sc->maxsegsize = MCLBYTES; 656c21e84e4SPyun YongHyeon if (sc->flags & FXP_FLAG_EXT_RFA) { 65740c20505SMaxime Henrion sc->maxtxseg--; 658c21e84e4SPyun YongHyeon sc->maxsegsize = FXP_TSO_SEGSIZE; 659c21e84e4SPyun YongHyeon } 660c2175ff5SMarius Strobl error = bus_dma_tag_create(bus_get_dma_tag(dev), 2, 0, 661c2175ff5SMarius Strobl BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 662c21e84e4SPyun YongHyeon sc->maxsegsize * sc->maxtxseg + sizeof(struct ether_vlan_header), 663c21e84e4SPyun YongHyeon sc->maxtxseg, sc->maxsegsize, 0, 664a2057a72SPyun YongHyeon busdma_lock_mutex, &Giant, &sc->fxp_txmtag); 665b2badf02SMaxime Henrion if (error) { 666a2057a72SPyun YongHyeon device_printf(dev, "could not create TX DMA tag\n"); 667a2057a72SPyun YongHyeon goto fail; 668a2057a72SPyun YongHyeon } 669a2057a72SPyun YongHyeon 670a2057a72SPyun YongHyeon error = bus_dma_tag_create(bus_get_dma_tag(dev), 2, 0, 671a2057a72SPyun YongHyeon BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 672a2057a72SPyun YongHyeon MCLBYTES, 1, MCLBYTES, 0, 673a2057a72SPyun YongHyeon busdma_lock_mutex, &Giant, &sc->fxp_rxmtag); 674a2057a72SPyun YongHyeon if (error) { 675a2057a72SPyun YongHyeon device_printf(dev, "could not create RX DMA tag\n"); 676b2badf02SMaxime Henrion goto fail; 677b2badf02SMaxime Henrion } 678b2badf02SMaxime Henrion 679c2175ff5SMarius Strobl error = bus_dma_tag_create(bus_get_dma_tag(dev), 4, 0, 680c2175ff5SMarius Strobl BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 681c2175ff5SMarius Strobl sizeof(struct fxp_stats), 1, sizeof(struct fxp_stats), 0, 682c2175ff5SMarius Strobl busdma_lock_mutex, &Giant, &sc->fxp_stag); 683b2badf02SMaxime Henrion if (error) { 684a2057a72SPyun YongHyeon device_printf(dev, "could not create stats DMA tag\n"); 685b2badf02SMaxime Henrion goto fail; 686b2badf02SMaxime Henrion } 687b2badf02SMaxime Henrion 688b2badf02SMaxime Henrion error = bus_dmamem_alloc(sc->fxp_stag, (void **)&sc->fxp_stats, 689658c8398SMarius Strobl BUS_DMA_NOWAIT | BUS_DMA_COHERENT | BUS_DMA_ZERO, &sc->fxp_smap); 690a2057a72SPyun YongHyeon if (error) { 691a2057a72SPyun YongHyeon device_printf(dev, "could not allocate stats DMA memory\n"); 6924953bccaSNate Lawson goto fail; 693a2057a72SPyun YongHyeon } 694b2badf02SMaxime Henrion error = bus_dmamap_load(sc->fxp_stag, sc->fxp_smap, sc->fxp_stats, 695f9d050a8SPyun YongHyeon sizeof(struct fxp_stats), fxp_dma_map_addr, &sc->stats_addr, 696f9d050a8SPyun YongHyeon BUS_DMA_NOWAIT); 697b2badf02SMaxime Henrion if (error) { 698a2057a72SPyun YongHyeon device_printf(dev, "could not load the stats DMA buffer\n"); 699b2badf02SMaxime Henrion goto fail; 700b2badf02SMaxime Henrion } 701b2badf02SMaxime Henrion 702c2175ff5SMarius Strobl error = bus_dma_tag_create(bus_get_dma_tag(dev), 4, 0, 703c2175ff5SMarius Strobl BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 704c2175ff5SMarius Strobl FXP_TXCB_SZ, 1, FXP_TXCB_SZ, 0, 705c2175ff5SMarius Strobl busdma_lock_mutex, &Giant, &sc->cbl_tag); 706b2badf02SMaxime Henrion if (error) { 707a2057a72SPyun YongHyeon device_printf(dev, "could not create TxCB DMA tag\n"); 708b2badf02SMaxime Henrion goto fail; 709b2badf02SMaxime Henrion } 710b2badf02SMaxime Henrion 711b2badf02SMaxime Henrion error = bus_dmamem_alloc(sc->cbl_tag, (void **)&sc->fxp_desc.cbl_list, 712658c8398SMarius Strobl BUS_DMA_NOWAIT | BUS_DMA_COHERENT | BUS_DMA_ZERO, &sc->cbl_map); 713a2057a72SPyun YongHyeon if (error) { 714a2057a72SPyun YongHyeon device_printf(dev, "could not allocate TxCB DMA memory\n"); 7154953bccaSNate Lawson goto fail; 716a2057a72SPyun YongHyeon } 717b2badf02SMaxime Henrion 718b2badf02SMaxime Henrion error = bus_dmamap_load(sc->cbl_tag, sc->cbl_map, 719b2badf02SMaxime Henrion sc->fxp_desc.cbl_list, FXP_TXCB_SZ, fxp_dma_map_addr, 720f9d050a8SPyun YongHyeon &sc->fxp_desc.cbl_addr, BUS_DMA_NOWAIT); 721b2badf02SMaxime Henrion if (error) { 722a2057a72SPyun YongHyeon device_printf(dev, "could not load TxCB DMA buffer\n"); 723b2badf02SMaxime Henrion goto fail; 724b2badf02SMaxime Henrion } 725b2badf02SMaxime Henrion 726c2175ff5SMarius Strobl error = bus_dma_tag_create(bus_get_dma_tag(dev), 4, 0, 727c2175ff5SMarius Strobl BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, NULL, NULL, 728c2175ff5SMarius Strobl sizeof(struct fxp_cb_mcs), 1, sizeof(struct fxp_cb_mcs), 0, 729c2175ff5SMarius Strobl busdma_lock_mutex, &Giant, &sc->mcs_tag); 730b2badf02SMaxime Henrion if (error) { 731a2057a72SPyun YongHyeon device_printf(dev, 732a2057a72SPyun YongHyeon "could not create multicast setup DMA tag\n"); 733b2badf02SMaxime Henrion goto fail; 734b2badf02SMaxime Henrion } 735b2badf02SMaxime Henrion 736b2badf02SMaxime Henrion error = bus_dmamem_alloc(sc->mcs_tag, (void **)&sc->mcsp, 737658c8398SMarius Strobl BUS_DMA_NOWAIT | BUS_DMA_COHERENT | BUS_DMA_ZERO, &sc->mcs_map); 738a2057a72SPyun YongHyeon if (error) { 739a2057a72SPyun YongHyeon device_printf(dev, 740a2057a72SPyun YongHyeon "could not allocate multicast setup DMA memory\n"); 7414953bccaSNate Lawson goto fail; 742a2057a72SPyun YongHyeon } 743b2badf02SMaxime Henrion error = bus_dmamap_load(sc->mcs_tag, sc->mcs_map, sc->mcsp, 744f9d050a8SPyun YongHyeon sizeof(struct fxp_cb_mcs), fxp_dma_map_addr, &sc->mcs_addr, 745f9d050a8SPyun YongHyeon BUS_DMA_NOWAIT); 746b2badf02SMaxime Henrion if (error) { 747a2057a72SPyun YongHyeon device_printf(dev, 748a2057a72SPyun YongHyeon "can't load the multicast setup DMA buffer\n"); 749b2badf02SMaxime Henrion goto fail; 750b2badf02SMaxime Henrion } 751b2badf02SMaxime Henrion 752b2badf02SMaxime Henrion /* 7536720ebccSMaxime Henrion * Pre-allocate the TX DMA maps and setup the pointers to 7546720ebccSMaxime Henrion * the TX command blocks. 755b2badf02SMaxime Henrion */ 7566720ebccSMaxime Henrion txp = sc->fxp_desc.tx_list; 7576720ebccSMaxime Henrion tcbp = sc->fxp_desc.cbl_list; 7584cec1653SMaxime Henrion for (i = 0; i < FXP_NTXCB; i++) { 7596720ebccSMaxime Henrion txp[i].tx_cb = tcbp + i; 760a2057a72SPyun YongHyeon error = bus_dmamap_create(sc->fxp_txmtag, 0, &txp[i].tx_map); 761b2badf02SMaxime Henrion if (error) { 762b2badf02SMaxime Henrion device_printf(dev, "can't create DMA map for TX\n"); 763b2badf02SMaxime Henrion goto fail; 764b2badf02SMaxime Henrion } 765b2badf02SMaxime Henrion } 766a2057a72SPyun YongHyeon error = bus_dmamap_create(sc->fxp_rxmtag, 0, &sc->spare_map); 767b2badf02SMaxime Henrion if (error) { 768b2badf02SMaxime Henrion device_printf(dev, "can't create spare DMA map\n"); 769b2badf02SMaxime Henrion goto fail; 770b2badf02SMaxime Henrion } 771b2badf02SMaxime Henrion 772b2badf02SMaxime Henrion /* 773b2badf02SMaxime Henrion * Pre-allocate our receive buffers. 774b2badf02SMaxime Henrion */ 775b2badf02SMaxime Henrion sc->fxp_desc.rx_head = sc->fxp_desc.rx_tail = NULL; 776b2badf02SMaxime Henrion for (i = 0; i < FXP_NRFABUFS; i++) { 777b2badf02SMaxime Henrion rxp = &sc->fxp_desc.rx_list[i]; 778a2057a72SPyun YongHyeon error = bus_dmamap_create(sc->fxp_rxmtag, 0, &rxp->rx_map); 779b2badf02SMaxime Henrion if (error) { 780b2badf02SMaxime Henrion device_printf(dev, "can't create DMA map for RX\n"); 781b2badf02SMaxime Henrion goto fail; 782b2badf02SMaxime Henrion } 78385050421SPyun YongHyeon if (fxp_new_rfabuf(sc, rxp) != 0) { 7844953bccaSNate Lawson error = ENOMEM; 7854953bccaSNate Lawson goto fail; 7864953bccaSNate Lawson } 78785050421SPyun YongHyeon fxp_add_rfabuf(sc, rxp); 788b2badf02SMaxime Henrion } 789b2badf02SMaxime Henrion 790b2badf02SMaxime Henrion /* 791f7788e8eSJonathan Lemon * Read MAC address. 792f7788e8eSJonathan Lemon */ 7938262183eSPyun YongHyeon eaddr[0] = sc->eeprom[FXP_EEPROM_MAP_IA0] & 0xff; 7948262183eSPyun YongHyeon eaddr[1] = sc->eeprom[FXP_EEPROM_MAP_IA0] >> 8; 7958262183eSPyun YongHyeon eaddr[2] = sc->eeprom[FXP_EEPROM_MAP_IA1] & 0xff; 7968262183eSPyun YongHyeon eaddr[3] = sc->eeprom[FXP_EEPROM_MAP_IA1] >> 8; 7978262183eSPyun YongHyeon eaddr[4] = sc->eeprom[FXP_EEPROM_MAP_IA2] & 0xff; 7988262183eSPyun YongHyeon eaddr[5] = sc->eeprom[FXP_EEPROM_MAP_IA2] >> 8; 799f7788e8eSJonathan Lemon if (bootverbose) { 8002e2b8238SJonathan Lemon device_printf(dev, "PCI IDs: %04x %04x %04x %04x %04x\n", 801f7788e8eSJonathan Lemon pci_get_vendor(dev), pci_get_device(dev), 8022e2b8238SJonathan Lemon pci_get_subvendor(dev), pci_get_subdevice(dev), 8032e2b8238SJonathan Lemon pci_get_revid(dev)); 80472a32a26SJonathan Lemon device_printf(dev, "Dynamic Standby mode is %s\n", 8058262183eSPyun YongHyeon sc->eeprom[FXP_EEPROM_MAP_ID] & 0x02 ? "enabled" : 8068262183eSPyun YongHyeon "disabled"); 807f7788e8eSJonathan Lemon } 808f7788e8eSJonathan Lemon 809f7788e8eSJonathan Lemon /* 810f7788e8eSJonathan Lemon * If this is only a 10Mbps device, then there is no MII, and 811f7788e8eSJonathan Lemon * the PHY will use a serial interface instead. 812f7788e8eSJonathan Lemon * 813f7788e8eSJonathan Lemon * The Seeq 80c24 AutoDUPLEX(tm) Ethernet Interface Adapter 814f7788e8eSJonathan Lemon * doesn't have a programming interface of any sort. The 815f7788e8eSJonathan Lemon * media is sensed automatically based on how the link partner 816f7788e8eSJonathan Lemon * is configured. This is, in essence, manual configuration. 817f7788e8eSJonathan Lemon */ 818f7788e8eSJonathan Lemon if (sc->flags & FXP_FLAG_SERIAL_MEDIA) { 819f7788e8eSJonathan Lemon ifmedia_add(&sc->sc_media, IFM_ETHER|IFM_MANUAL, 0, NULL); 820f7788e8eSJonathan Lemon ifmedia_set(&sc->sc_media, IFM_ETHER|IFM_MANUAL); 821f7788e8eSJonathan Lemon } else { 8228e5d93dbSMarius Strobl /* 8238e5d93dbSMarius Strobl * i82557 wedge when isolating all of their PHYs. 8248e5d93dbSMarius Strobl */ 8251845b5c3SMarius Strobl flags = MIIF_NOISOLATE; 8261845b5c3SMarius Strobl if (sc->revision >= FXP_REV_82558_A4) 8271845b5c3SMarius Strobl flags |= MIIF_DOPAUSE; 8288e5d93dbSMarius Strobl error = mii_attach(dev, &sc->miibus, ifp, fxp_ifmedia_upd, 8298e5d93dbSMarius Strobl fxp_ifmedia_sts, BMSR_DEFCAPMASK, MII_PHY_ANY, 8301845b5c3SMarius Strobl MII_OFFSET_ANY, flags); 8318e5d93dbSMarius Strobl if (error != 0) { 8328e5d93dbSMarius Strobl device_printf(dev, "attaching PHYs failed\n"); 833ba8c6fd5SDavid Greenman goto fail; 834a17c678eSDavid Greenman } 835f7788e8eSJonathan Lemon } 836dccee1a1SDavid Greenman 8379bf40edeSBrooks Davis if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 838fb583156SDavid Greenman ifp->if_init = fxp_init; 839ba8c6fd5SDavid Greenman ifp->if_softc = sc; 840ba8c6fd5SDavid Greenman ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 841ba8c6fd5SDavid Greenman ifp->if_ioctl = fxp_ioctl; 842ba8c6fd5SDavid Greenman ifp->if_start = fxp_start; 843a17c678eSDavid Greenman 8445fe9116bSYaroslav Tykhiy ifp->if_capabilities = ifp->if_capenable = 0; 8455fe9116bSYaroslav Tykhiy 846c21e84e4SPyun YongHyeon /* Enable checksum offload/TSO for 82550 or better chips */ 847c8bca6dcSBill Paul if (sc->flags & FXP_FLAG_EXT_RFA) { 848c21e84e4SPyun YongHyeon ifp->if_hwassist = FXP_CSUM_FEATURES | CSUM_TSO; 849c21e84e4SPyun YongHyeon ifp->if_capabilities |= IFCAP_HWCSUM | IFCAP_TSO4; 850c21e84e4SPyun YongHyeon ifp->if_capenable |= IFCAP_HWCSUM | IFCAP_TSO4; 851c8bca6dcSBill Paul } 852c8bca6dcSBill Paul 853f13075afSPyun YongHyeon if (sc->flags & FXP_FLAG_82559_RXCSUM) { 854f13075afSPyun YongHyeon ifp->if_capabilities |= IFCAP_RXCSUM; 855f13075afSPyun YongHyeon ifp->if_capenable |= IFCAP_RXCSUM; 856f13075afSPyun YongHyeon } 857f13075afSPyun YongHyeon 8587137cea0SPyun YongHyeon if (sc->flags & FXP_FLAG_WOLCAP) { 8597137cea0SPyun YongHyeon ifp->if_capabilities |= IFCAP_WOL_MAGIC; 8607137cea0SPyun YongHyeon ifp->if_capenable |= IFCAP_WOL_MAGIC; 8617137cea0SPyun YongHyeon } 8627137cea0SPyun YongHyeon 863fb917226SRuslan Ermilov #ifdef DEVICE_POLLING 864fb917226SRuslan Ermilov /* Inform the world we support polling. */ 865fb917226SRuslan Ermilov ifp->if_capabilities |= IFCAP_POLLING; 866fb917226SRuslan Ermilov #endif 867fb917226SRuslan Ermilov 868dfe61cf1SDavid Greenman /* 8694953bccaSNate Lawson * Attach the interface. 8704953bccaSNate Lawson */ 871fc74a9f9SBrooks Davis ether_ifattach(ifp, eaddr); 8724953bccaSNate Lawson 8734953bccaSNate Lawson /* 874e8c8b728SJonathan Lemon * Tell the upper layer(s) we support long frames. 8755fe9116bSYaroslav Tykhiy * Must appear after the call to ether_ifattach() because 8765fe9116bSYaroslav Tykhiy * ether_ifattach() sets ifi_hdrlen to the default value. 877e8c8b728SJonathan Lemon */ 878e8c8b728SJonathan Lemon ifp->if_data.ifi_hdrlen = sizeof(struct ether_vlan_header); 879673d9191SSam Leffler ifp->if_capabilities |= IFCAP_VLAN_MTU; 88044e0bc11SYaroslav Tykhiy ifp->if_capenable |= IFCAP_VLAN_MTU; /* the hw bits already set */ 881bd4fa9d9SPyun YongHyeon if ((sc->flags & FXP_FLAG_EXT_RFA) != 0) { 882bd4fa9d9SPyun YongHyeon ifp->if_capabilities |= IFCAP_VLAN_HWTAGGING | 883713ca255SPyun YongHyeon IFCAP_VLAN_HWCSUM | IFCAP_VLAN_HWTSO; 884bd4fa9d9SPyun YongHyeon ifp->if_capenable |= IFCAP_VLAN_HWTAGGING | 885713ca255SPyun YongHyeon IFCAP_VLAN_HWCSUM | IFCAP_VLAN_HWTSO; 886bd4fa9d9SPyun YongHyeon } 887e8c8b728SJonathan Lemon 888483b9871SDavid Greenman /* 8893114fdb4SDavid Greenman * Let the system queue as many packets as we have available 8903114fdb4SDavid Greenman * TX descriptors. 891483b9871SDavid Greenman */ 8927929aa03SMax Laier IFQ_SET_MAXLEN(&ifp->if_snd, FXP_NTXCB - 1); 8937929aa03SMax Laier ifp->if_snd.ifq_drv_maxlen = FXP_NTXCB - 1; 8947929aa03SMax Laier IFQ_SET_READY(&ifp->if_snd); 8954a684684SDavid Greenman 896201afb0eSMaxime Henrion /* 8974953bccaSNate Lawson * Hook our interrupt after all initialization is complete. 898201afb0eSMaxime Henrion */ 89905bd8c22SMaxime Henrion error = bus_setup_intr(dev, sc->fxp_res[1], INTR_TYPE_NET | INTR_MPSAFE, 900ef544f63SPaolo Pisati NULL, fxp_intr, sc, &sc->ih); 901201afb0eSMaxime Henrion if (error) { 902201afb0eSMaxime Henrion device_printf(dev, "could not setup irq\n"); 903fc74a9f9SBrooks Davis ether_ifdetach(sc->ifp); 904201afb0eSMaxime Henrion goto fail; 905201afb0eSMaxime Henrion } 906201afb0eSMaxime Henrion 9077137cea0SPyun YongHyeon /* 9087137cea0SPyun YongHyeon * Configure hardware to reject magic frames otherwise 9097137cea0SPyun YongHyeon * system will hang on recipt of magic frames. 9107137cea0SPyun YongHyeon */ 9117137cea0SPyun YongHyeon if ((sc->flags & FXP_FLAG_WOLCAP) != 0) { 9127137cea0SPyun YongHyeon FXP_LOCK(sc); 9137137cea0SPyun YongHyeon /* Clear wakeup events. */ 914af75b654SPyun YongHyeon CSR_WRITE_1(sc, FXP_CSR_PMDR, CSR_READ_1(sc, FXP_CSR_PMDR)); 915a461b201SPyun YongHyeon fxp_init_body(sc, 0); 9167137cea0SPyun YongHyeon fxp_stop(sc); 9177137cea0SPyun YongHyeon FXP_UNLOCK(sc); 9187137cea0SPyun YongHyeon } 9197137cea0SPyun YongHyeon 920a17c678eSDavid Greenman fail: 9211b5a39d3SBrooks Davis if (error) 922f7788e8eSJonathan Lemon fxp_release(sc); 923f7788e8eSJonathan Lemon return (error); 924f7788e8eSJonathan Lemon } 925f7788e8eSJonathan Lemon 926f7788e8eSJonathan Lemon /* 9274953bccaSNate Lawson * Release all resources. The softc lock should not be held and the 9284953bccaSNate Lawson * interrupt should already be torn down. 929f7788e8eSJonathan Lemon */ 930f7788e8eSJonathan Lemon static void 931f7788e8eSJonathan Lemon fxp_release(struct fxp_softc *sc) 932f7788e8eSJonathan Lemon { 933b2badf02SMaxime Henrion struct fxp_rx *rxp; 934b2badf02SMaxime Henrion struct fxp_tx *txp; 935b2badf02SMaxime Henrion int i; 936b2badf02SMaxime Henrion 93767fc050fSMaxime Henrion FXP_LOCK_ASSERT(sc, MA_NOTOWNED); 938670f5d73SMaxime Henrion KASSERT(sc->ih == NULL, 939670f5d73SMaxime Henrion ("fxp_release() called with intr handle still active")); 9404953bccaSNate Lawson if (sc->miibus) 9414953bccaSNate Lawson device_delete_child(sc->dev, sc->miibus); 9424953bccaSNate Lawson bus_generic_detach(sc->dev); 9434953bccaSNate Lawson ifmedia_removeall(&sc->sc_media); 944b2badf02SMaxime Henrion if (sc->fxp_desc.cbl_list) { 945b2badf02SMaxime Henrion bus_dmamap_unload(sc->cbl_tag, sc->cbl_map); 946b2badf02SMaxime Henrion bus_dmamem_free(sc->cbl_tag, sc->fxp_desc.cbl_list, 947b2badf02SMaxime Henrion sc->cbl_map); 948b2badf02SMaxime Henrion } 949b2badf02SMaxime Henrion if (sc->fxp_stats) { 950b2badf02SMaxime Henrion bus_dmamap_unload(sc->fxp_stag, sc->fxp_smap); 951b2badf02SMaxime Henrion bus_dmamem_free(sc->fxp_stag, sc->fxp_stats, sc->fxp_smap); 952b2badf02SMaxime Henrion } 953b2badf02SMaxime Henrion if (sc->mcsp) { 954b2badf02SMaxime Henrion bus_dmamap_unload(sc->mcs_tag, sc->mcs_map); 955b2badf02SMaxime Henrion bus_dmamem_free(sc->mcs_tag, sc->mcsp, sc->mcs_map); 956b2badf02SMaxime Henrion } 95705bd8c22SMaxime Henrion bus_release_resources(sc->dev, sc->fxp_spec, sc->fxp_res); 958a2057a72SPyun YongHyeon if (sc->fxp_rxmtag) { 959b983c7b3SMaxime Henrion for (i = 0; i < FXP_NRFABUFS; i++) { 960b983c7b3SMaxime Henrion rxp = &sc->fxp_desc.rx_list[i]; 961b983c7b3SMaxime Henrion if (rxp->rx_mbuf != NULL) { 962a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_rxmtag, rxp->rx_map, 963b983c7b3SMaxime Henrion BUS_DMASYNC_POSTREAD); 964a2057a72SPyun YongHyeon bus_dmamap_unload(sc->fxp_rxmtag, rxp->rx_map); 965b983c7b3SMaxime Henrion m_freem(rxp->rx_mbuf); 966b983c7b3SMaxime Henrion } 967a2057a72SPyun YongHyeon bus_dmamap_destroy(sc->fxp_rxmtag, rxp->rx_map); 968b983c7b3SMaxime Henrion } 969a2057a72SPyun YongHyeon bus_dmamap_destroy(sc->fxp_rxmtag, sc->spare_map); 970a2057a72SPyun YongHyeon bus_dma_tag_destroy(sc->fxp_rxmtag); 971a2057a72SPyun YongHyeon } 972a2057a72SPyun YongHyeon if (sc->fxp_txmtag) { 973b983c7b3SMaxime Henrion for (i = 0; i < FXP_NTXCB; i++) { 974b983c7b3SMaxime Henrion txp = &sc->fxp_desc.tx_list[i]; 975b983c7b3SMaxime Henrion if (txp->tx_mbuf != NULL) { 976a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_txmtag, txp->tx_map, 977b983c7b3SMaxime Henrion BUS_DMASYNC_POSTWRITE); 978a2057a72SPyun YongHyeon bus_dmamap_unload(sc->fxp_txmtag, txp->tx_map); 979b983c7b3SMaxime Henrion m_freem(txp->tx_mbuf); 980b983c7b3SMaxime Henrion } 981a2057a72SPyun YongHyeon bus_dmamap_destroy(sc->fxp_txmtag, txp->tx_map); 982b983c7b3SMaxime Henrion } 983a2057a72SPyun YongHyeon bus_dma_tag_destroy(sc->fxp_txmtag); 984b983c7b3SMaxime Henrion } 985c4bf1e90SMaxime Henrion if (sc->fxp_stag) 986c4bf1e90SMaxime Henrion bus_dma_tag_destroy(sc->fxp_stag); 987b2badf02SMaxime Henrion if (sc->cbl_tag) 988b2badf02SMaxime Henrion bus_dma_tag_destroy(sc->cbl_tag); 989b2badf02SMaxime Henrion if (sc->mcs_tag) 990b2badf02SMaxime Henrion bus_dma_tag_destroy(sc->mcs_tag); 991fc74a9f9SBrooks Davis if (sc->ifp) 992fc74a9f9SBrooks Davis if_free(sc->ifp); 99372a32a26SJonathan Lemon 9940f4dc94cSChuck Paterson mtx_destroy(&sc->sc_mtx); 9956182fdbdSPeter Wemm } 9966182fdbdSPeter Wemm 9976182fdbdSPeter Wemm /* 9986182fdbdSPeter Wemm * Detach interface. 9996182fdbdSPeter Wemm */ 10006182fdbdSPeter Wemm static int 10016182fdbdSPeter Wemm fxp_detach(device_t dev) 10026182fdbdSPeter Wemm { 10036182fdbdSPeter Wemm struct fxp_softc *sc = device_get_softc(dev); 10046182fdbdSPeter Wemm 100540929967SGleb Smirnoff #ifdef DEVICE_POLLING 100640929967SGleb Smirnoff if (sc->ifp->if_capenable & IFCAP_POLLING) 100740929967SGleb Smirnoff ether_poll_deregister(sc->ifp); 100840929967SGleb Smirnoff #endif 100940929967SGleb Smirnoff 10104953bccaSNate Lawson FXP_LOCK(sc); 10116182fdbdSPeter Wemm /* 101232cd7a9cSWarner Losh * Stop DMA and drop transmit queue, but disable interrupts first. 101320f0c80fSMaxime Henrion */ 101420f0c80fSMaxime Henrion CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE); 101520f0c80fSMaxime Henrion fxp_stop(sc); 101632cd7a9cSWarner Losh FXP_UNLOCK(sc); 10179eda9d7aSJohn Baldwin callout_drain(&sc->stat_ch); 101820f0c80fSMaxime Henrion 10196182fdbdSPeter Wemm /* 10203212724cSJohn Baldwin * Close down routes etc. 10213212724cSJohn Baldwin */ 10223212724cSJohn Baldwin ether_ifdetach(sc->ifp); 10233212724cSJohn Baldwin 10243212724cSJohn Baldwin /* 10254953bccaSNate Lawson * Unhook interrupt before dropping lock. This is to prevent 10264953bccaSNate Lawson * races with fxp_intr(). 10276182fdbdSPeter Wemm */ 102805bd8c22SMaxime Henrion bus_teardown_intr(sc->dev, sc->fxp_res[1], sc->ih); 10294953bccaSNate Lawson sc->ih = NULL; 10306182fdbdSPeter Wemm 1031f7788e8eSJonathan Lemon /* Release our allocated resources. */ 1032f7788e8eSJonathan Lemon fxp_release(sc); 1033f7788e8eSJonathan Lemon return (0); 1034a17c678eSDavid Greenman } 1035a17c678eSDavid Greenman 1036a17c678eSDavid Greenman /* 10374a684684SDavid Greenman * Device shutdown routine. Called at system shutdown after sync. The 1038a17c678eSDavid Greenman * main purpose of this routine is to shut off receiver DMA so that 1039a17c678eSDavid Greenman * kernel memory doesn't get clobbered during warmboot. 1040a17c678eSDavid Greenman */ 10416182fdbdSPeter Wemm static int 10426182fdbdSPeter Wemm fxp_shutdown(device_t dev) 1043a17c678eSDavid Greenman { 10443212724cSJohn Baldwin 10456182fdbdSPeter Wemm /* 10466182fdbdSPeter Wemm * Make sure that DMA is disabled prior to reboot. Not doing 10476182fdbdSPeter Wemm * do could allow DMA to corrupt kernel memory during the 10486182fdbdSPeter Wemm * reboot before the driver initializes. 10496182fdbdSPeter Wemm */ 10507137cea0SPyun YongHyeon return (fxp_suspend(dev)); 1051a17c678eSDavid Greenman } 1052a17c678eSDavid Greenman 10537dced78aSDavid Greenman /* 10547dced78aSDavid Greenman * Device suspend routine. Stop the interface and save some PCI 10557dced78aSDavid Greenman * settings in case the BIOS doesn't restore them properly on 10567dced78aSDavid Greenman * resume. 10577dced78aSDavid Greenman */ 10587dced78aSDavid Greenman static int 10597dced78aSDavid Greenman fxp_suspend(device_t dev) 10607dced78aSDavid Greenman { 10617dced78aSDavid Greenman struct fxp_softc *sc = device_get_softc(dev); 10627137cea0SPyun YongHyeon struct ifnet *ifp; 10637137cea0SPyun YongHyeon int pmc; 10647137cea0SPyun YongHyeon uint16_t pmstat; 10657dced78aSDavid Greenman 10664953bccaSNate Lawson FXP_LOCK(sc); 10677dced78aSDavid Greenman 10687137cea0SPyun YongHyeon ifp = sc->ifp; 10693b0a4aefSJohn Baldwin if (pci_find_cap(sc->dev, PCIY_PMG, &pmc) == 0) { 10707137cea0SPyun YongHyeon pmstat = pci_read_config(sc->dev, pmc + PCIR_POWER_STATUS, 2); 10717137cea0SPyun YongHyeon pmstat &= ~(PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE); 10727137cea0SPyun YongHyeon if ((ifp->if_capenable & IFCAP_WOL_MAGIC) != 0) { 10737137cea0SPyun YongHyeon /* Request PME. */ 10747137cea0SPyun YongHyeon pmstat |= PCIM_PSTAT_PME | PCIM_PSTAT_PMEENABLE; 10757137cea0SPyun YongHyeon sc->flags |= FXP_FLAG_WOL; 10767137cea0SPyun YongHyeon /* Reconfigure hardware to accept magic frames. */ 10771845b5c3SMarius Strobl fxp_init_body(sc, 1); 10787137cea0SPyun YongHyeon } 10797137cea0SPyun YongHyeon pci_write_config(sc->dev, pmc + PCIR_POWER_STATUS, pmstat, 2); 10807137cea0SPyun YongHyeon } 10817dced78aSDavid Greenman fxp_stop(sc); 10827dced78aSDavid Greenman 10837dced78aSDavid Greenman sc->suspended = 1; 10847dced78aSDavid Greenman 10854953bccaSNate Lawson FXP_UNLOCK(sc); 1086f7788e8eSJonathan Lemon return (0); 10877dced78aSDavid Greenman } 10887dced78aSDavid Greenman 10897dced78aSDavid Greenman /* 109067ba6566SWarner Losh * Device resume routine. re-enable busmastering, and restart the interface if 10917dced78aSDavid Greenman * appropriate. 10927dced78aSDavid Greenman */ 10937dced78aSDavid Greenman static int 10947dced78aSDavid Greenman fxp_resume(device_t dev) 10957dced78aSDavid Greenman { 10967dced78aSDavid Greenman struct fxp_softc *sc = device_get_softc(dev); 1097fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 10987137cea0SPyun YongHyeon int pmc; 10997137cea0SPyun YongHyeon uint16_t pmstat; 11007dced78aSDavid Greenman 11014953bccaSNate Lawson FXP_LOCK(sc); 11027dced78aSDavid Greenman 11033b0a4aefSJohn Baldwin if (pci_find_cap(sc->dev, PCIY_PMG, &pmc) == 0) { 11047137cea0SPyun YongHyeon sc->flags &= ~FXP_FLAG_WOL; 11057137cea0SPyun YongHyeon pmstat = pci_read_config(sc->dev, pmc + PCIR_POWER_STATUS, 2); 11067137cea0SPyun YongHyeon /* Disable PME and clear PME status. */ 11077137cea0SPyun YongHyeon pmstat &= ~PCIM_PSTAT_PMEENABLE; 11087137cea0SPyun YongHyeon pci_write_config(sc->dev, pmc + PCIR_POWER_STATUS, pmstat, 2); 1109af75b654SPyun YongHyeon if ((sc->flags & FXP_FLAG_WOLCAP) != 0) 1110af75b654SPyun YongHyeon CSR_WRITE_1(sc, FXP_CSR_PMDR, 1111af75b654SPyun YongHyeon CSR_READ_1(sc, FXP_CSR_PMDR)); 11127137cea0SPyun YongHyeon } 11137137cea0SPyun YongHyeon 11147dced78aSDavid Greenman CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET); 11157dced78aSDavid Greenman DELAY(10); 11167dced78aSDavid Greenman 11177dced78aSDavid Greenman /* reinitialize interface if necessary */ 11187dced78aSDavid Greenman if (ifp->if_flags & IFF_UP) 11191845b5c3SMarius Strobl fxp_init_body(sc, 1); 11207dced78aSDavid Greenman 11217dced78aSDavid Greenman sc->suspended = 0; 11227dced78aSDavid Greenman 11234953bccaSNate Lawson FXP_UNLOCK(sc); 1124ba8c6fd5SDavid Greenman return (0); 1125f7788e8eSJonathan Lemon } 1126ba8c6fd5SDavid Greenman 112700c4116bSJonathan Lemon static void 112800c4116bSJonathan Lemon fxp_eeprom_shiftin(struct fxp_softc *sc, int data, int length) 112900c4116bSJonathan Lemon { 113074d1ed23SMaxime Henrion uint16_t reg; 113100c4116bSJonathan Lemon int x; 113200c4116bSJonathan Lemon 113300c4116bSJonathan Lemon /* 113400c4116bSJonathan Lemon * Shift in data. 113500c4116bSJonathan Lemon */ 113600c4116bSJonathan Lemon for (x = 1 << (length - 1); x; x >>= 1) { 113700c4116bSJonathan Lemon if (data & x) 113800c4116bSJonathan Lemon reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI; 113900c4116bSJonathan Lemon else 114000c4116bSJonathan Lemon reg = FXP_EEPROM_EECS; 114100c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg); 114200c4116bSJonathan Lemon DELAY(1); 114300c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK); 114400c4116bSJonathan Lemon DELAY(1); 114500c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg); 114600c4116bSJonathan Lemon DELAY(1); 114700c4116bSJonathan Lemon } 114800c4116bSJonathan Lemon } 114900c4116bSJonathan Lemon 1150f7788e8eSJonathan Lemon /* 1151f7788e8eSJonathan Lemon * Read from the serial EEPROM. Basically, you manually shift in 1152f7788e8eSJonathan Lemon * the read opcode (one bit at a time) and then shift in the address, 1153f7788e8eSJonathan Lemon * and then you shift out the data (all of this one bit at a time). 1154f7788e8eSJonathan Lemon * The word size is 16 bits, so you have to provide the address for 1155f7788e8eSJonathan Lemon * every 16 bits of data. 1156f7788e8eSJonathan Lemon */ 115774d1ed23SMaxime Henrion static uint16_t 1158f7788e8eSJonathan Lemon fxp_eeprom_getword(struct fxp_softc *sc, int offset, int autosize) 1159f7788e8eSJonathan Lemon { 116074d1ed23SMaxime Henrion uint16_t reg, data; 1161f7788e8eSJonathan Lemon int x; 1162ba8c6fd5SDavid Greenman 1163f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS); 1164f7788e8eSJonathan Lemon /* 1165f7788e8eSJonathan Lemon * Shift in read opcode. 1166f7788e8eSJonathan Lemon */ 116700c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, FXP_EEPROM_OPC_READ, 3); 1168f7788e8eSJonathan Lemon /* 1169f7788e8eSJonathan Lemon * Shift in address. 1170f7788e8eSJonathan Lemon */ 1171f7788e8eSJonathan Lemon data = 0; 1172f7788e8eSJonathan Lemon for (x = 1 << (sc->eeprom_size - 1); x; x >>= 1) { 1173f7788e8eSJonathan Lemon if (offset & x) 1174f7788e8eSJonathan Lemon reg = FXP_EEPROM_EECS | FXP_EEPROM_EEDI; 1175f7788e8eSJonathan Lemon else 1176f7788e8eSJonathan Lemon reg = FXP_EEPROM_EECS; 1177f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg); 1178f7788e8eSJonathan Lemon DELAY(1); 1179f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK); 1180f7788e8eSJonathan Lemon DELAY(1); 1181f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg); 1182f7788e8eSJonathan Lemon DELAY(1); 1183f7788e8eSJonathan Lemon reg = CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO; 1184f7788e8eSJonathan Lemon data++; 1185f7788e8eSJonathan Lemon if (autosize && reg == 0) { 1186f7788e8eSJonathan Lemon sc->eeprom_size = data; 1187f7788e8eSJonathan Lemon break; 1188f7788e8eSJonathan Lemon } 1189f7788e8eSJonathan Lemon } 1190f7788e8eSJonathan Lemon /* 1191f7788e8eSJonathan Lemon * Shift out data. 1192f7788e8eSJonathan Lemon */ 1193f7788e8eSJonathan Lemon data = 0; 1194f7788e8eSJonathan Lemon reg = FXP_EEPROM_EECS; 1195f7788e8eSJonathan Lemon for (x = 1 << 15; x; x >>= 1) { 1196f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg | FXP_EEPROM_EESK); 1197f7788e8eSJonathan Lemon DELAY(1); 1198f7788e8eSJonathan Lemon if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO) 1199f7788e8eSJonathan Lemon data |= x; 1200f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, reg); 1201f7788e8eSJonathan Lemon DELAY(1); 1202f7788e8eSJonathan Lemon } 1203f7788e8eSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0); 1204f7788e8eSJonathan Lemon DELAY(1); 1205f7788e8eSJonathan Lemon 1206f7788e8eSJonathan Lemon return (data); 1207ba8c6fd5SDavid Greenman } 1208ba8c6fd5SDavid Greenman 120900c4116bSJonathan Lemon static void 121074d1ed23SMaxime Henrion fxp_eeprom_putword(struct fxp_softc *sc, int offset, uint16_t data) 121100c4116bSJonathan Lemon { 121200c4116bSJonathan Lemon int i; 121300c4116bSJonathan Lemon 121400c4116bSJonathan Lemon /* 121500c4116bSJonathan Lemon * Erase/write enable. 121600c4116bSJonathan Lemon */ 121700c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS); 121800c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, 0x4, 3); 121900c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, 0x03 << (sc->eeprom_size - 2), sc->eeprom_size); 122000c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0); 122100c4116bSJonathan Lemon DELAY(1); 122200c4116bSJonathan Lemon /* 122300c4116bSJonathan Lemon * Shift in write opcode, address, data. 122400c4116bSJonathan Lemon */ 122500c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS); 122600c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, FXP_EEPROM_OPC_WRITE, 3); 122700c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, offset, sc->eeprom_size); 122800c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, data, 16); 122900c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0); 123000c4116bSJonathan Lemon DELAY(1); 123100c4116bSJonathan Lemon /* 123200c4116bSJonathan Lemon * Wait for EEPROM to finish up. 123300c4116bSJonathan Lemon */ 123400c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS); 123500c4116bSJonathan Lemon DELAY(1); 123600c4116bSJonathan Lemon for (i = 0; i < 1000; i++) { 123700c4116bSJonathan Lemon if (CSR_READ_2(sc, FXP_CSR_EEPROMCONTROL) & FXP_EEPROM_EEDO) 123800c4116bSJonathan Lemon break; 123900c4116bSJonathan Lemon DELAY(50); 124000c4116bSJonathan Lemon } 124100c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0); 124200c4116bSJonathan Lemon DELAY(1); 124300c4116bSJonathan Lemon /* 124400c4116bSJonathan Lemon * Erase/write disable. 124500c4116bSJonathan Lemon */ 124600c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, FXP_EEPROM_EECS); 124700c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, 0x4, 3); 124800c4116bSJonathan Lemon fxp_eeprom_shiftin(sc, 0, sc->eeprom_size); 124900c4116bSJonathan Lemon CSR_WRITE_2(sc, FXP_CSR_EEPROMCONTROL, 0); 125000c4116bSJonathan Lemon DELAY(1); 125100c4116bSJonathan Lemon } 125200c4116bSJonathan Lemon 1253ba8c6fd5SDavid Greenman /* 1254e9bf2fa7SDavid Greenman * From NetBSD: 1255e9bf2fa7SDavid Greenman * 1256e9bf2fa7SDavid Greenman * Figure out EEPROM size. 1257e9bf2fa7SDavid Greenman * 1258e9bf2fa7SDavid Greenman * 559's can have either 64-word or 256-word EEPROMs, the 558 1259e9bf2fa7SDavid Greenman * datasheet only talks about 64-word EEPROMs, and the 557 datasheet 1260e9bf2fa7SDavid Greenman * talks about the existance of 16 to 256 word EEPROMs. 1261e9bf2fa7SDavid Greenman * 1262e9bf2fa7SDavid Greenman * The only known sizes are 64 and 256, where the 256 version is used 1263e9bf2fa7SDavid Greenman * by CardBus cards to store CIS information. 1264e9bf2fa7SDavid Greenman * 1265e9bf2fa7SDavid Greenman * The address is shifted in msb-to-lsb, and after the last 1266e9bf2fa7SDavid Greenman * address-bit the EEPROM is supposed to output a `dummy zero' bit, 1267e9bf2fa7SDavid Greenman * after which follows the actual data. We try to detect this zero, by 1268e9bf2fa7SDavid Greenman * probing the data-out bit in the EEPROM control register just after 1269e9bf2fa7SDavid Greenman * having shifted in a bit. If the bit is zero, we assume we've 1270e9bf2fa7SDavid Greenman * shifted enough address bits. The data-out should be tri-state, 1271e9bf2fa7SDavid Greenman * before this, which should translate to a logical one. 1272e9bf2fa7SDavid Greenman */ 1273e9bf2fa7SDavid Greenman static void 1274f7788e8eSJonathan Lemon fxp_autosize_eeprom(struct fxp_softc *sc) 1275e9bf2fa7SDavid Greenman { 1276e9bf2fa7SDavid Greenman 1277f7788e8eSJonathan Lemon /* guess maximum size of 256 words */ 1278f7788e8eSJonathan Lemon sc->eeprom_size = 8; 1279f7788e8eSJonathan Lemon 1280f7788e8eSJonathan Lemon /* autosize */ 1281f7788e8eSJonathan Lemon (void) fxp_eeprom_getword(sc, 0, 1); 1282e9bf2fa7SDavid Greenman } 1283f7788e8eSJonathan Lemon 1284ba8c6fd5SDavid Greenman static void 1285f7788e8eSJonathan Lemon fxp_read_eeprom(struct fxp_softc *sc, u_short *data, int offset, int words) 1286ba8c6fd5SDavid Greenman { 1287f7788e8eSJonathan Lemon int i; 1288ba8c6fd5SDavid Greenman 1289f7788e8eSJonathan Lemon for (i = 0; i < words; i++) 1290f7788e8eSJonathan Lemon data[i] = fxp_eeprom_getword(sc, offset + i, 0); 1291ba8c6fd5SDavid Greenman } 1292ba8c6fd5SDavid Greenman 129300c4116bSJonathan Lemon static void 129400c4116bSJonathan Lemon fxp_write_eeprom(struct fxp_softc *sc, u_short *data, int offset, int words) 129500c4116bSJonathan Lemon { 129600c4116bSJonathan Lemon int i; 129700c4116bSJonathan Lemon 129800c4116bSJonathan Lemon for (i = 0; i < words; i++) 129900c4116bSJonathan Lemon fxp_eeprom_putword(sc, offset + i, data[i]); 130000c4116bSJonathan Lemon } 130100c4116bSJonathan Lemon 13028262183eSPyun YongHyeon static void 13038262183eSPyun YongHyeon fxp_load_eeprom(struct fxp_softc *sc) 13048262183eSPyun YongHyeon { 13058262183eSPyun YongHyeon int i; 13068262183eSPyun YongHyeon uint16_t cksum; 13078262183eSPyun YongHyeon 13088262183eSPyun YongHyeon fxp_read_eeprom(sc, sc->eeprom, 0, 1 << sc->eeprom_size); 13098262183eSPyun YongHyeon cksum = 0; 13108262183eSPyun YongHyeon for (i = 0; i < (1 << sc->eeprom_size) - 1; i++) 13118262183eSPyun YongHyeon cksum += sc->eeprom[i]; 13128262183eSPyun YongHyeon cksum = 0xBABA - cksum; 13138262183eSPyun YongHyeon if (cksum != sc->eeprom[(1 << sc->eeprom_size) - 1]) 13148262183eSPyun YongHyeon device_printf(sc->dev, 13158262183eSPyun YongHyeon "EEPROM checksum mismatch! (0x%04x -> 0x%04x)\n", 13168262183eSPyun YongHyeon cksum, sc->eeprom[(1 << sc->eeprom_size) - 1]); 13178262183eSPyun YongHyeon } 13188262183eSPyun YongHyeon 1319a17c678eSDavid Greenman /* 13204953bccaSNate Lawson * Grab the softc lock and call the real fxp_start_body() routine 1321a17c678eSDavid Greenman */ 1322a17c678eSDavid Greenman static void 1323f7788e8eSJonathan Lemon fxp_start(struct ifnet *ifp) 1324a17c678eSDavid Greenman { 13259b44ff22SGarrett Wollman struct fxp_softc *sc = ifp->if_softc; 13264953bccaSNate Lawson 13274953bccaSNate Lawson FXP_LOCK(sc); 13284953bccaSNate Lawson fxp_start_body(ifp); 13294953bccaSNate Lawson FXP_UNLOCK(sc); 13304953bccaSNate Lawson } 13314953bccaSNate Lawson 13324953bccaSNate Lawson /* 13334953bccaSNate Lawson * Start packet transmission on the interface. 13344953bccaSNate Lawson * This routine must be called with the softc lock held, and is an 13354953bccaSNate Lawson * internal entry point only. 13364953bccaSNate Lawson */ 13374953bccaSNate Lawson static void 13384953bccaSNate Lawson fxp_start_body(struct ifnet *ifp) 13394953bccaSNate Lawson { 13404953bccaSNate Lawson struct fxp_softc *sc = ifp->if_softc; 1341b2badf02SMaxime Henrion struct mbuf *mb_head; 13424e53f837SPyun YongHyeon int txqueued; 1343a17c678eSDavid Greenman 134467fc050fSMaxime Henrion FXP_LOCK_ASSERT(sc, MA_OWNED); 134540c20505SMaxime Henrion 1346c109e385SPyun YongHyeon if ((ifp->if_drv_flags & (IFF_DRV_RUNNING | IFF_DRV_OACTIVE)) != 1347c109e385SPyun YongHyeon IFF_DRV_RUNNING) 1348c109e385SPyun YongHyeon return; 1349c109e385SPyun YongHyeon 13504e53f837SPyun YongHyeon if (sc->tx_queued > FXP_NTXCB_HIWAT) 13514e53f837SPyun YongHyeon fxp_txeof(sc); 1352483b9871SDavid Greenman /* 1353483b9871SDavid Greenman * We're finished if there is nothing more to add to the list or if 1354483b9871SDavid Greenman * we're all filled up with buffers to transmit. 13553114fdb4SDavid Greenman * NOTE: One TxCB is reserved to guarantee that fxp_mc_setup() can add 13563114fdb4SDavid Greenman * a NOP command when needed. 1357483b9871SDavid Greenman */ 135840c20505SMaxime Henrion txqueued = 0; 13597929aa03SMax Laier while (!IFQ_DRV_IS_EMPTY(&ifp->if_snd) && 13607929aa03SMax Laier sc->tx_queued < FXP_NTXCB - 1) { 1361483b9871SDavid Greenman 1362dfe61cf1SDavid Greenman /* 1363dfe61cf1SDavid Greenman * Grab a packet to transmit. 1364dfe61cf1SDavid Greenman */ 13657929aa03SMax Laier IFQ_DRV_DEQUEUE(&ifp->if_snd, mb_head); 13667929aa03SMax Laier if (mb_head == NULL) 13677929aa03SMax Laier break; 1368a17c678eSDavid Greenman 13694e53f837SPyun YongHyeon if (fxp_encap(sc, &mb_head)) { 13704e53f837SPyun YongHyeon if (mb_head == NULL) 137140c20505SMaxime Henrion break; 13724e53f837SPyun YongHyeon IFQ_DRV_PREPEND(&ifp->if_snd, mb_head); 13734e53f837SPyun YongHyeon ifp->if_drv_flags |= IFF_DRV_OACTIVE; 137440c20505SMaxime Henrion } 13754e53f837SPyun YongHyeon txqueued++; 13764e53f837SPyun YongHyeon /* 13774e53f837SPyun YongHyeon * Pass packet to bpf if there is a listener. 13784e53f837SPyun YongHyeon */ 13794e53f837SPyun YongHyeon BPF_MTAP(ifp, mb_head); 13804e53f837SPyun YongHyeon } 138140c20505SMaxime Henrion 138240c20505SMaxime Henrion /* 138340c20505SMaxime Henrion * We're finished. If we added to the list, issue a RESUME to get DMA 138440c20505SMaxime Henrion * going again if suspended. 138540c20505SMaxime Henrion */ 13864e53f837SPyun YongHyeon if (txqueued > 0) { 1387a2057a72SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 1388a2057a72SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 138940c20505SMaxime Henrion fxp_scb_wait(sc); 139040c20505SMaxime Henrion fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_RESUME); 13914e53f837SPyun YongHyeon /* 13924e53f837SPyun YongHyeon * Set a 5 second timer just in case we don't hear 13934e53f837SPyun YongHyeon * from the card again. 13944e53f837SPyun YongHyeon */ 13954e53f837SPyun YongHyeon sc->watchdog_timer = 5; 139640c20505SMaxime Henrion } 139740c20505SMaxime Henrion } 139840c20505SMaxime Henrion 139940c20505SMaxime Henrion static int 14004e53f837SPyun YongHyeon fxp_encap(struct fxp_softc *sc, struct mbuf **m_head) 140140c20505SMaxime Henrion { 140240c20505SMaxime Henrion struct ifnet *ifp; 140340c20505SMaxime Henrion struct mbuf *m; 140440c20505SMaxime Henrion struct fxp_tx *txp; 140540c20505SMaxime Henrion struct fxp_cb_tx *cbp; 1406c21e84e4SPyun YongHyeon struct tcphdr *tcp; 140740c20505SMaxime Henrion bus_dma_segment_t segs[FXP_NTXSEG]; 1408c21e84e4SPyun YongHyeon int error, i, nseg, tcp_payload; 140940c20505SMaxime Henrion 141040c20505SMaxime Henrion FXP_LOCK_ASSERT(sc, MA_OWNED); 1411fc74a9f9SBrooks Davis ifp = sc->ifp; 141240c20505SMaxime Henrion 1413c21e84e4SPyun YongHyeon tcp_payload = 0; 1414c21e84e4SPyun YongHyeon tcp = NULL; 1415dfe61cf1SDavid Greenman /* 1416483b9871SDavid Greenman * Get pointer to next available tx desc. 1417dfe61cf1SDavid Greenman */ 1418b2badf02SMaxime Henrion txp = sc->fxp_desc.tx_last->tx_next; 1419c8bca6dcSBill Paul 1420c8bca6dcSBill Paul /* 1421a35e7eaaSDon Lewis * A note in Appendix B of the Intel 8255x 10/100 Mbps 1422a35e7eaaSDon Lewis * Ethernet Controller Family Open Source Software 1423a35e7eaaSDon Lewis * Developer Manual says: 1424a35e7eaaSDon Lewis * Using software parsing is only allowed with legal 1425a35e7eaaSDon Lewis * TCP/IP or UDP/IP packets. 1426a35e7eaaSDon Lewis * ... 1427a35e7eaaSDon Lewis * For all other datagrams, hardware parsing must 1428a35e7eaaSDon Lewis * be used. 1429a35e7eaaSDon Lewis * Software parsing appears to truncate ICMP and 1430a35e7eaaSDon Lewis * fragmented UDP packets that contain one to three 1431a35e7eaaSDon Lewis * bytes in the second (and final) mbuf of the packet. 1432a35e7eaaSDon Lewis */ 1433a35e7eaaSDon Lewis if (sc->flags & FXP_FLAG_EXT_RFA) 1434a35e7eaaSDon Lewis txp->tx_cb->ipcb_ip_activation_high = 1435a35e7eaaSDon Lewis FXP_IPCB_HARDWAREPARSING_ENABLE; 1436a35e7eaaSDon Lewis 14374e53f837SPyun YongHyeon m = *m_head; 1438c21e84e4SPyun YongHyeon if (m->m_pkthdr.csum_flags & CSUM_TSO) { 1439c21e84e4SPyun YongHyeon /* 1440c21e84e4SPyun YongHyeon * 82550/82551 requires ethernet/IP/TCP headers must be 1441c21e84e4SPyun YongHyeon * contained in the first active transmit buffer. 1442c21e84e4SPyun YongHyeon */ 1443c21e84e4SPyun YongHyeon struct ether_header *eh; 1444c21e84e4SPyun YongHyeon struct ip *ip; 1445c21e84e4SPyun YongHyeon uint32_t ip_off, poff; 1446c21e84e4SPyun YongHyeon 1447c21e84e4SPyun YongHyeon if (M_WRITABLE(*m_head) == 0) { 1448c21e84e4SPyun YongHyeon /* Get a writable copy. */ 1449c21e84e4SPyun YongHyeon m = m_dup(*m_head, M_DONTWAIT); 1450c21e84e4SPyun YongHyeon m_freem(*m_head); 1451c21e84e4SPyun YongHyeon if (m == NULL) { 1452c21e84e4SPyun YongHyeon *m_head = NULL; 1453c21e84e4SPyun YongHyeon return (ENOBUFS); 1454c21e84e4SPyun YongHyeon } 1455c21e84e4SPyun YongHyeon *m_head = m; 1456c21e84e4SPyun YongHyeon } 1457c21e84e4SPyun YongHyeon ip_off = sizeof(struct ether_header); 1458c21e84e4SPyun YongHyeon m = m_pullup(*m_head, ip_off); 1459c21e84e4SPyun YongHyeon if (m == NULL) { 1460c21e84e4SPyun YongHyeon *m_head = NULL; 1461c21e84e4SPyun YongHyeon return (ENOBUFS); 1462c21e84e4SPyun YongHyeon } 1463c21e84e4SPyun YongHyeon eh = mtod(m, struct ether_header *); 1464c21e84e4SPyun YongHyeon /* Check the existence of VLAN tag. */ 1465c21e84e4SPyun YongHyeon if (eh->ether_type == htons(ETHERTYPE_VLAN)) { 1466c21e84e4SPyun YongHyeon ip_off = sizeof(struct ether_vlan_header); 1467c21e84e4SPyun YongHyeon m = m_pullup(m, ip_off); 1468c21e84e4SPyun YongHyeon if (m == NULL) { 1469c21e84e4SPyun YongHyeon *m_head = NULL; 1470c21e84e4SPyun YongHyeon return (ENOBUFS); 1471c21e84e4SPyun YongHyeon } 1472c21e84e4SPyun YongHyeon } 1473c21e84e4SPyun YongHyeon m = m_pullup(m, ip_off + sizeof(struct ip)); 1474c21e84e4SPyun YongHyeon if (m == NULL) { 1475c21e84e4SPyun YongHyeon *m_head = NULL; 1476c21e84e4SPyun YongHyeon return (ENOBUFS); 1477c21e84e4SPyun YongHyeon } 1478c21e84e4SPyun YongHyeon ip = (struct ip *)(mtod(m, char *) + ip_off); 1479c21e84e4SPyun YongHyeon poff = ip_off + (ip->ip_hl << 2); 1480c21e84e4SPyun YongHyeon m = m_pullup(m, poff + sizeof(struct tcphdr)); 1481c21e84e4SPyun YongHyeon if (m == NULL) { 1482c21e84e4SPyun YongHyeon *m_head = NULL; 1483c21e84e4SPyun YongHyeon return (ENOBUFS); 1484c21e84e4SPyun YongHyeon } 1485c21e84e4SPyun YongHyeon tcp = (struct tcphdr *)(mtod(m, char *) + poff); 1486cbecedb2SPyun YongHyeon m = m_pullup(m, poff + (tcp->th_off << 2)); 1487c21e84e4SPyun YongHyeon if (m == NULL) { 1488c21e84e4SPyun YongHyeon *m_head = NULL; 1489c21e84e4SPyun YongHyeon return (ENOBUFS); 1490c21e84e4SPyun YongHyeon } 1491c21e84e4SPyun YongHyeon 1492c21e84e4SPyun YongHyeon /* 1493c21e84e4SPyun YongHyeon * Since 82550/82551 doesn't modify IP length and pseudo 1494c21e84e4SPyun YongHyeon * checksum in the first frame driver should compute it. 1495c21e84e4SPyun YongHyeon */ 149696486faaSPyun YongHyeon ip = (struct ip *)(mtod(m, char *) + ip_off); 149796486faaSPyun YongHyeon tcp = (struct tcphdr *)(mtod(m, char *) + poff); 1498c21e84e4SPyun YongHyeon ip->ip_sum = 0; 14990685c824SPyun YongHyeon ip->ip_len = htons(m->m_pkthdr.tso_segsz + (ip->ip_hl << 2) + 15000685c824SPyun YongHyeon (tcp->th_off << 2)); 1501c21e84e4SPyun YongHyeon tcp->th_sum = in_pseudo(ip->ip_src.s_addr, ip->ip_dst.s_addr, 1502c21e84e4SPyun YongHyeon htons(IPPROTO_TCP + (tcp->th_off << 2) + 1503c21e84e4SPyun YongHyeon m->m_pkthdr.tso_segsz)); 1504c21e84e4SPyun YongHyeon /* Compute total TCP payload. */ 1505c21e84e4SPyun YongHyeon tcp_payload = m->m_pkthdr.len - ip_off - (ip->ip_hl << 2); 1506c21e84e4SPyun YongHyeon tcp_payload -= tcp->th_off << 2; 1507c21e84e4SPyun YongHyeon *m_head = m; 15086da6d0a9SPyun YongHyeon } else if (m->m_pkthdr.csum_flags & FXP_CSUM_FEATURES) { 15096da6d0a9SPyun YongHyeon /* 15106da6d0a9SPyun YongHyeon * Deal with TCP/IP checksum offload. Note that 15116da6d0a9SPyun YongHyeon * in order for TCP checksum offload to work, 15126da6d0a9SPyun YongHyeon * the pseudo header checksum must have already 15136da6d0a9SPyun YongHyeon * been computed and stored in the checksum field 15146da6d0a9SPyun YongHyeon * in the TCP header. The stack should have 15156da6d0a9SPyun YongHyeon * already done this for us. 15166da6d0a9SPyun YongHyeon */ 15176da6d0a9SPyun YongHyeon txp->tx_cb->ipcb_ip_schedule = FXP_IPCB_TCPUDP_CHECKSUM_ENABLE; 15186da6d0a9SPyun YongHyeon if (m->m_pkthdr.csum_flags & CSUM_TCP) 15196da6d0a9SPyun YongHyeon txp->tx_cb->ipcb_ip_schedule |= FXP_IPCB_TCP_PACKET; 15206da6d0a9SPyun YongHyeon 15216da6d0a9SPyun YongHyeon #ifdef FXP_IP_CSUM_WAR 15226da6d0a9SPyun YongHyeon /* 15236da6d0a9SPyun YongHyeon * XXX The 82550 chip appears to have trouble 15246da6d0a9SPyun YongHyeon * dealing with IP header checksums in very small 15256da6d0a9SPyun YongHyeon * datagrams, namely fragments from 1 to 3 bytes 15266da6d0a9SPyun YongHyeon * in size. For example, say you want to transmit 15276da6d0a9SPyun YongHyeon * a UDP packet of 1473 bytes. The packet will be 15286da6d0a9SPyun YongHyeon * fragmented over two IP datagrams, the latter 15296da6d0a9SPyun YongHyeon * containing only one byte of data. The 82550 will 15306da6d0a9SPyun YongHyeon * botch the header checksum on the 1-byte fragment. 15316da6d0a9SPyun YongHyeon * As long as the datagram contains 4 or more bytes 15326da6d0a9SPyun YongHyeon * of data, you're ok. 15336da6d0a9SPyun YongHyeon * 15346da6d0a9SPyun YongHyeon * The following code attempts to work around this 15356da6d0a9SPyun YongHyeon * problem: if the datagram is less than 38 bytes 15366da6d0a9SPyun YongHyeon * in size (14 bytes ether header, 20 bytes IP header, 15376da6d0a9SPyun YongHyeon * plus 4 bytes of data), we punt and compute the IP 15386da6d0a9SPyun YongHyeon * header checksum by hand. This workaround doesn't 15396da6d0a9SPyun YongHyeon * work very well, however, since it can be fooled 15406da6d0a9SPyun YongHyeon * by things like VLAN tags and IP options that make 15416da6d0a9SPyun YongHyeon * the header sizes/offsets vary. 15426da6d0a9SPyun YongHyeon */ 15436da6d0a9SPyun YongHyeon 15446da6d0a9SPyun YongHyeon if (m->m_pkthdr.csum_flags & CSUM_IP) { 15456da6d0a9SPyun YongHyeon if (m->m_pkthdr.len < 38) { 15466da6d0a9SPyun YongHyeon struct ip *ip; 15476da6d0a9SPyun YongHyeon m->m_data += ETHER_HDR_LEN; 15486da6d0a9SPyun YongHyeon ip = mtod(m, struct ip *); 15496da6d0a9SPyun YongHyeon ip->ip_sum = in_cksum(m, ip->ip_hl << 2); 15506da6d0a9SPyun YongHyeon m->m_data -= ETHER_HDR_LEN; 15516da6d0a9SPyun YongHyeon m->m_pkthdr.csum_flags &= ~CSUM_IP; 15526da6d0a9SPyun YongHyeon } else { 15536da6d0a9SPyun YongHyeon txp->tx_cb->ipcb_ip_activation_high = 15546da6d0a9SPyun YongHyeon FXP_IPCB_HARDWAREPARSING_ENABLE; 15556da6d0a9SPyun YongHyeon txp->tx_cb->ipcb_ip_schedule |= 15566da6d0a9SPyun YongHyeon FXP_IPCB_IP_CHECKSUM_ENABLE; 15576da6d0a9SPyun YongHyeon } 15586da6d0a9SPyun YongHyeon } 15596da6d0a9SPyun YongHyeon #endif 1560c21e84e4SPyun YongHyeon } 1561c21e84e4SPyun YongHyeon 1562a2057a72SPyun YongHyeon error = bus_dmamap_load_mbuf_sg(sc->fxp_txmtag, txp->tx_map, *m_head, 15634e53f837SPyun YongHyeon segs, &nseg, 0); 15644e53f837SPyun YongHyeon if (error == EFBIG) { 15654e53f837SPyun YongHyeon m = m_collapse(*m_head, M_DONTWAIT, sc->maxtxseg); 15664e53f837SPyun YongHyeon if (m == NULL) { 15674e53f837SPyun YongHyeon m_freem(*m_head); 15684e53f837SPyun YongHyeon *m_head = NULL; 15694e53f837SPyun YongHyeon return (ENOMEM); 15701104779bSMike Silbersack } 15714e53f837SPyun YongHyeon *m_head = m; 1572a2057a72SPyun YongHyeon error = bus_dmamap_load_mbuf_sg(sc->fxp_txmtag, txp->tx_map, 15734e53f837SPyun YongHyeon *m_head, segs, &nseg, 0); 15744e53f837SPyun YongHyeon if (error != 0) { 15754e53f837SPyun YongHyeon m_freem(*m_head); 15764e53f837SPyun YongHyeon *m_head = NULL; 15774e53f837SPyun YongHyeon return (ENOMEM); 15784e53f837SPyun YongHyeon } 15794e53f837SPyun YongHyeon } else if (error != 0) 15804e53f837SPyun YongHyeon return (error); 15814e53f837SPyun YongHyeon if (nseg == 0) { 15824e53f837SPyun YongHyeon m_freem(*m_head); 15834e53f837SPyun YongHyeon *m_head = NULL; 15844e53f837SPyun YongHyeon return (EIO); 158523a0ed7cSDavid Greenman } 158623a0ed7cSDavid Greenman 158740c20505SMaxime Henrion KASSERT(nseg <= sc->maxtxseg, ("too many DMA segments")); 1588a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_txmtag, txp->tx_map, BUS_DMASYNC_PREWRITE); 1589b2badf02SMaxime Henrion 159040c20505SMaxime Henrion cbp = txp->tx_cb; 159140c20505SMaxime Henrion for (i = 0; i < nseg; i++) { 159240c20505SMaxime Henrion /* 159340c20505SMaxime Henrion * If this is an 82550/82551, then we're using extended 159440c20505SMaxime Henrion * TxCBs _and_ we're using checksum offload. This means 159540c20505SMaxime Henrion * that the TxCB is really an IPCB. One major difference 159640c20505SMaxime Henrion * between the two is that with plain extended TxCBs, 159740c20505SMaxime Henrion * the bottom half of the TxCB contains two entries from 159840c20505SMaxime Henrion * the TBD array, whereas IPCBs contain just one entry: 159940c20505SMaxime Henrion * one entry (8 bytes) has been sacrificed for the TCP/IP 160040c20505SMaxime Henrion * checksum offload control bits. So to make things work 160140c20505SMaxime Henrion * right, we have to start filling in the TBD array 160240c20505SMaxime Henrion * starting from a different place depending on whether 160340c20505SMaxime Henrion * the chip is an 82550/82551 or not. 160440c20505SMaxime Henrion */ 160540c20505SMaxime Henrion if (sc->flags & FXP_FLAG_EXT_RFA) { 160668f4ab9aSPyun YongHyeon cbp->tbd[i + 1].tb_addr = htole32(segs[i].ds_addr); 160768f4ab9aSPyun YongHyeon cbp->tbd[i + 1].tb_size = htole32(segs[i].ds_len); 160840c20505SMaxime Henrion } else { 160940c20505SMaxime Henrion cbp->tbd[i].tb_addr = htole32(segs[i].ds_addr); 161040c20505SMaxime Henrion cbp->tbd[i].tb_size = htole32(segs[i].ds_len); 161140c20505SMaxime Henrion } 161240c20505SMaxime Henrion } 1613c21e84e4SPyun YongHyeon if (sc->flags & FXP_FLAG_EXT_RFA) { 1614c21e84e4SPyun YongHyeon /* Configure dynamic TBD for 82550/82551. */ 1615c21e84e4SPyun YongHyeon cbp->tbd_number = 0xFF; 161668f4ab9aSPyun YongHyeon cbp->tbd[nseg].tb_size |= htole32(0x8000); 1617c21e84e4SPyun YongHyeon } else 161840c20505SMaxime Henrion cbp->tbd_number = nseg; 1619c21e84e4SPyun YongHyeon /* Configure TSO. */ 1620c21e84e4SPyun YongHyeon if (m->m_pkthdr.csum_flags & CSUM_TSO) { 1621c21e84e4SPyun YongHyeon cbp->tbd[-1].tb_size = htole32(m->m_pkthdr.tso_segsz << 16); 162268f4ab9aSPyun YongHyeon cbp->tbd[1].tb_size |= htole32(tcp_payload << 16); 1623c21e84e4SPyun YongHyeon cbp->ipcb_ip_schedule |= FXP_IPCB_LARGESEND_ENABLE | 1624c21e84e4SPyun YongHyeon FXP_IPCB_IP_CHECKSUM_ENABLE | 1625c21e84e4SPyun YongHyeon FXP_IPCB_TCP_PACKET | 1626c21e84e4SPyun YongHyeon FXP_IPCB_TCPUDP_CHECKSUM_ENABLE; 1627c21e84e4SPyun YongHyeon } 1628bd4fa9d9SPyun YongHyeon /* Configure VLAN hardware tag insertion. */ 1629bd4fa9d9SPyun YongHyeon if ((m->m_flags & M_VLANTAG) != 0) { 1630bd4fa9d9SPyun YongHyeon cbp->ipcb_vlan_id = htons(m->m_pkthdr.ether_vtag); 1631bd4fa9d9SPyun YongHyeon txp->tx_cb->ipcb_ip_activation_high |= 1632bd4fa9d9SPyun YongHyeon FXP_IPCB_INSERTVLAN_ENABLE; 1633bd4fa9d9SPyun YongHyeon } 163440c20505SMaxime Henrion 16354e53f837SPyun YongHyeon txp->tx_mbuf = m; 1636b2badf02SMaxime Henrion txp->tx_cb->cb_status = 0; 1637b2badf02SMaxime Henrion txp->tx_cb->byte_count = 0; 16384e53f837SPyun YongHyeon if (sc->tx_queued != FXP_CXINT_THRESH - 1) 1639b2badf02SMaxime Henrion txp->tx_cb->cb_command = 164083e6547dSMaxime Henrion htole16(sc->tx_cmd | FXP_CB_COMMAND_SF | 164183e6547dSMaxime Henrion FXP_CB_COMMAND_S); 16424e53f837SPyun YongHyeon else 1643b2badf02SMaxime Henrion txp->tx_cb->cb_command = 164483e6547dSMaxime Henrion htole16(sc->tx_cmd | FXP_CB_COMMAND_SF | 164583e6547dSMaxime Henrion FXP_CB_COMMAND_S | FXP_CB_COMMAND_I); 1646c21e84e4SPyun YongHyeon if ((m->m_pkthdr.csum_flags & CSUM_TSO) == 0) 1647b2badf02SMaxime Henrion txp->tx_cb->tx_threshold = tx_threshold; 1648a17c678eSDavid Greenman 1649a17c678eSDavid Greenman /* 1650483b9871SDavid Greenman * Advance the end of list forward. 1651a17c678eSDavid Greenman */ 165240c20505SMaxime Henrion sc->fxp_desc.tx_last->tx_cb->cb_command &= htole16(~FXP_CB_COMMAND_S); 1653b2badf02SMaxime Henrion sc->fxp_desc.tx_last = txp; 1654a17c678eSDavid Greenman 1655a17c678eSDavid Greenman /* 16561cd443acSDavid Greenman * Advance the beginning of the list forward if there are 1657b2badf02SMaxime Henrion * no other packets queued (when nothing is queued, tx_first 1658483b9871SDavid Greenman * sits on the last TxCB that was sent out). 1659a17c678eSDavid Greenman */ 16601cd443acSDavid Greenman if (sc->tx_queued == 0) 1661b2badf02SMaxime Henrion sc->fxp_desc.tx_first = txp; 1662a17c678eSDavid Greenman 16631cd443acSDavid Greenman sc->tx_queued++; 16641cd443acSDavid Greenman 166540c20505SMaxime Henrion return (0); 1666a17c678eSDavid Greenman } 1667a17c678eSDavid Greenman 1668e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 1669e4fc250cSLuigi Rizzo static poll_handler_t fxp_poll; 1670e4fc250cSLuigi Rizzo 16711abcdbd1SAttilio Rao static int 1672e4fc250cSLuigi Rizzo fxp_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 1673e4fc250cSLuigi Rizzo { 1674e4fc250cSLuigi Rizzo struct fxp_softc *sc = ifp->if_softc; 167574d1ed23SMaxime Henrion uint8_t statack; 16761abcdbd1SAttilio Rao int rx_npkts = 0; 1677e4fc250cSLuigi Rizzo 16784953bccaSNate Lawson FXP_LOCK(sc); 167940929967SGleb Smirnoff if (!(ifp->if_drv_flags & IFF_DRV_RUNNING)) { 16804953bccaSNate Lawson FXP_UNLOCK(sc); 16811abcdbd1SAttilio Rao return (rx_npkts); 1682e4fc250cSLuigi Rizzo } 168340929967SGleb Smirnoff 1684e4fc250cSLuigi Rizzo statack = FXP_SCB_STATACK_CXTNO | FXP_SCB_STATACK_CNA | 1685e4fc250cSLuigi Rizzo FXP_SCB_STATACK_FR; 1686e4fc250cSLuigi Rizzo if (cmd == POLL_AND_CHECK_STATUS) { 168774d1ed23SMaxime Henrion uint8_t tmp; 16886481f301SPeter Wemm 1689e4fc250cSLuigi Rizzo tmp = CSR_READ_1(sc, FXP_CSR_SCB_STATACK); 16904953bccaSNate Lawson if (tmp == 0xff || tmp == 0) { 16914953bccaSNate Lawson FXP_UNLOCK(sc); 16921abcdbd1SAttilio Rao return (rx_npkts); /* nothing to do */ 16934953bccaSNate Lawson } 1694e4fc250cSLuigi Rizzo tmp &= ~statack; 1695e4fc250cSLuigi Rizzo /* ack what we can */ 1696e4fc250cSLuigi Rizzo if (tmp != 0) 1697e4fc250cSLuigi Rizzo CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, tmp); 1698e4fc250cSLuigi Rizzo statack |= tmp; 1699e4fc250cSLuigi Rizzo } 17001abcdbd1SAttilio Rao rx_npkts = fxp_intr_body(sc, ifp, statack, count); 17014953bccaSNate Lawson FXP_UNLOCK(sc); 17021abcdbd1SAttilio Rao return (rx_npkts); 1703e4fc250cSLuigi Rizzo } 1704e4fc250cSLuigi Rizzo #endif /* DEVICE_POLLING */ 1705e4fc250cSLuigi Rizzo 1706a17c678eSDavid Greenman /* 17079c7d2607SDavid Greenman * Process interface interrupts. 1708a17c678eSDavid Greenman */ 170994927790SDavid Greenman static void 1710f7788e8eSJonathan Lemon fxp_intr(void *xsc) 1711a17c678eSDavid Greenman { 1712f7788e8eSJonathan Lemon struct fxp_softc *sc = xsc; 1713fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 171474d1ed23SMaxime Henrion uint8_t statack; 17150f4dc94cSChuck Paterson 17164953bccaSNate Lawson FXP_LOCK(sc); 1717704d1965SWarner Losh if (sc->suspended) { 1718704d1965SWarner Losh FXP_UNLOCK(sc); 1719704d1965SWarner Losh return; 1720704d1965SWarner Losh } 1721704d1965SWarner Losh 1722e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING 172340929967SGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING) { 17244953bccaSNate Lawson FXP_UNLOCK(sc); 1725e4fc250cSLuigi Rizzo return; 17264953bccaSNate Lawson } 1727e4fc250cSLuigi Rizzo #endif 1728b184b38eSDavid Greenman while ((statack = CSR_READ_1(sc, FXP_CSR_SCB_STATACK)) != 0) { 1729a17c678eSDavid Greenman /* 173011457bbfSJonathan Lemon * It should not be possible to have all bits set; the 173111457bbfSJonathan Lemon * FXP_SCB_INTR_SWI bit always returns 0 on a read. If 173211457bbfSJonathan Lemon * all bits are set, this may indicate that the card has 173311457bbfSJonathan Lemon * been physically ejected, so ignore it. 173411457bbfSJonathan Lemon */ 17354953bccaSNate Lawson if (statack == 0xff) { 17364953bccaSNate Lawson FXP_UNLOCK(sc); 173711457bbfSJonathan Lemon return; 17384953bccaSNate Lawson } 173911457bbfSJonathan Lemon 174011457bbfSJonathan Lemon /* 1741a17c678eSDavid Greenman * First ACK all the interrupts in this pass. 1742a17c678eSDavid Greenman */ 1743ba8c6fd5SDavid Greenman CSR_WRITE_1(sc, FXP_CSR_SCB_STATACK, statack); 1744c109e385SPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 17454953bccaSNate Lawson fxp_intr_body(sc, ifp, statack, -1); 1746e4fc250cSLuigi Rizzo } 17474953bccaSNate Lawson FXP_UNLOCK(sc); 1748e4fc250cSLuigi Rizzo } 1749e4fc250cSLuigi Rizzo 1750e4fc250cSLuigi Rizzo static void 1751b2badf02SMaxime Henrion fxp_txeof(struct fxp_softc *sc) 1752b2badf02SMaxime Henrion { 17534e53f837SPyun YongHyeon struct ifnet *ifp; 1754b2badf02SMaxime Henrion struct fxp_tx *txp; 1755b2badf02SMaxime Henrion 17564e53f837SPyun YongHyeon ifp = sc->ifp; 1757a2057a72SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 1758a2057a72SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 1759b2badf02SMaxime Henrion for (txp = sc->fxp_desc.tx_first; sc->tx_queued && 176083e6547dSMaxime Henrion (le16toh(txp->tx_cb->cb_status) & FXP_CB_STATUS_C) != 0; 1761b2badf02SMaxime Henrion txp = txp->tx_next) { 1762b2badf02SMaxime Henrion if (txp->tx_mbuf != NULL) { 1763a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_txmtag, txp->tx_map, 1764b2badf02SMaxime Henrion BUS_DMASYNC_POSTWRITE); 1765a2057a72SPyun YongHyeon bus_dmamap_unload(sc->fxp_txmtag, txp->tx_map); 1766b2badf02SMaxime Henrion m_freem(txp->tx_mbuf); 1767b2badf02SMaxime Henrion txp->tx_mbuf = NULL; 1768b2badf02SMaxime Henrion /* clear this to reset csum offload bits */ 1769b2badf02SMaxime Henrion txp->tx_cb->tbd[0].tb_addr = 0; 1770b2badf02SMaxime Henrion } 1771b2badf02SMaxime Henrion sc->tx_queued--; 17724e53f837SPyun YongHyeon ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 1773b2badf02SMaxime Henrion } 1774b2badf02SMaxime Henrion sc->fxp_desc.tx_first = txp; 1775a2057a72SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 1776a2057a72SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 17776b24912cSPyun YongHyeon if (sc->tx_queued == 0) 177825935344SPyun YongHyeon sc->watchdog_timer = 0; 1779b2badf02SMaxime Henrion } 1780b2badf02SMaxime Henrion 1781b2badf02SMaxime Henrion static void 1782f13075afSPyun YongHyeon fxp_rxcsum(struct fxp_softc *sc, struct ifnet *ifp, struct mbuf *m, 1783f13075afSPyun YongHyeon uint16_t status, int pos) 1784f13075afSPyun YongHyeon { 1785f13075afSPyun YongHyeon struct ether_header *eh; 1786f13075afSPyun YongHyeon struct ip *ip; 1787f13075afSPyun YongHyeon struct udphdr *uh; 1788f13075afSPyun YongHyeon int32_t hlen, len, pktlen, temp32; 1789f13075afSPyun YongHyeon uint16_t csum, *opts; 1790f13075afSPyun YongHyeon 1791f13075afSPyun YongHyeon if ((sc->flags & FXP_FLAG_82559_RXCSUM) == 0) { 1792f13075afSPyun YongHyeon if ((status & FXP_RFA_STATUS_PARSE) != 0) { 1793f13075afSPyun YongHyeon if (status & FXP_RFDX_CS_IP_CSUM_BIT_VALID) 1794f13075afSPyun YongHyeon m->m_pkthdr.csum_flags |= CSUM_IP_CHECKED; 1795f13075afSPyun YongHyeon if (status & FXP_RFDX_CS_IP_CSUM_VALID) 1796f13075afSPyun YongHyeon m->m_pkthdr.csum_flags |= CSUM_IP_VALID; 1797f13075afSPyun YongHyeon if ((status & FXP_RFDX_CS_TCPUDP_CSUM_BIT_VALID) && 1798f13075afSPyun YongHyeon (status & FXP_RFDX_CS_TCPUDP_CSUM_VALID)) { 1799f13075afSPyun YongHyeon m->m_pkthdr.csum_flags |= CSUM_DATA_VALID | 1800f13075afSPyun YongHyeon CSUM_PSEUDO_HDR; 1801f13075afSPyun YongHyeon m->m_pkthdr.csum_data = 0xffff; 1802f13075afSPyun YongHyeon } 1803f13075afSPyun YongHyeon } 1804f13075afSPyun YongHyeon return; 1805f13075afSPyun YongHyeon } 1806f13075afSPyun YongHyeon 1807f13075afSPyun YongHyeon pktlen = m->m_pkthdr.len; 1808f13075afSPyun YongHyeon if (pktlen < sizeof(struct ether_header) + sizeof(struct ip)) 1809f13075afSPyun YongHyeon return; 1810f13075afSPyun YongHyeon eh = mtod(m, struct ether_header *); 1811f13075afSPyun YongHyeon if (eh->ether_type != htons(ETHERTYPE_IP)) 1812f13075afSPyun YongHyeon return; 1813f13075afSPyun YongHyeon ip = (struct ip *)(eh + 1); 1814f13075afSPyun YongHyeon if (ip->ip_v != IPVERSION) 1815f13075afSPyun YongHyeon return; 1816f13075afSPyun YongHyeon 1817f13075afSPyun YongHyeon hlen = ip->ip_hl << 2; 1818f13075afSPyun YongHyeon pktlen -= sizeof(struct ether_header); 1819f13075afSPyun YongHyeon if (hlen < sizeof(struct ip)) 1820f13075afSPyun YongHyeon return; 1821f13075afSPyun YongHyeon if (ntohs(ip->ip_len) < hlen) 1822f13075afSPyun YongHyeon return; 1823f13075afSPyun YongHyeon if (ntohs(ip->ip_len) != pktlen) 1824f13075afSPyun YongHyeon return; 1825f13075afSPyun YongHyeon if (ip->ip_off & htons(IP_MF | IP_OFFMASK)) 1826f13075afSPyun YongHyeon return; /* can't handle fragmented packet */ 1827f13075afSPyun YongHyeon 1828f13075afSPyun YongHyeon switch (ip->ip_p) { 1829f13075afSPyun YongHyeon case IPPROTO_TCP: 1830f13075afSPyun YongHyeon if (pktlen < (hlen + sizeof(struct tcphdr))) 1831f13075afSPyun YongHyeon return; 1832f13075afSPyun YongHyeon break; 1833f13075afSPyun YongHyeon case IPPROTO_UDP: 1834f13075afSPyun YongHyeon if (pktlen < (hlen + sizeof(struct udphdr))) 1835f13075afSPyun YongHyeon return; 1836f13075afSPyun YongHyeon uh = (struct udphdr *)((caddr_t)ip + hlen); 1837f13075afSPyun YongHyeon if (uh->uh_sum == 0) 1838f13075afSPyun YongHyeon return; /* no checksum */ 1839f13075afSPyun YongHyeon break; 1840f13075afSPyun YongHyeon default: 1841f13075afSPyun YongHyeon return; 1842f13075afSPyun YongHyeon } 1843f13075afSPyun YongHyeon /* Extract computed checksum. */ 1844f13075afSPyun YongHyeon csum = be16dec(mtod(m, char *) + pos); 1845f13075afSPyun YongHyeon /* checksum fixup for IP options */ 1846f13075afSPyun YongHyeon len = hlen - sizeof(struct ip); 1847f13075afSPyun YongHyeon if (len > 0) { 1848f13075afSPyun YongHyeon opts = (uint16_t *)(ip + 1); 1849f13075afSPyun YongHyeon for (; len > 0; len -= sizeof(uint16_t), opts++) { 1850f13075afSPyun YongHyeon temp32 = csum - *opts; 1851f13075afSPyun YongHyeon temp32 = (temp32 >> 16) + (temp32 & 65535); 1852f13075afSPyun YongHyeon csum = temp32 & 65535; 1853f13075afSPyun YongHyeon } 1854f13075afSPyun YongHyeon } 1855f13075afSPyun YongHyeon m->m_pkthdr.csum_flags |= CSUM_DATA_VALID; 1856f13075afSPyun YongHyeon m->m_pkthdr.csum_data = csum; 1857f13075afSPyun YongHyeon } 1858f13075afSPyun YongHyeon 18591abcdbd1SAttilio Rao static int 186074d1ed23SMaxime Henrion fxp_intr_body(struct fxp_softc *sc, struct ifnet *ifp, uint8_t statack, 18614953bccaSNate Lawson int count) 1862e4fc250cSLuigi Rizzo { 18632b5989e9SLuigi Rizzo struct mbuf *m; 1864b2badf02SMaxime Henrion struct fxp_rx *rxp; 18652b5989e9SLuigi Rizzo struct fxp_rfa *rfa; 18662b5989e9SLuigi Rizzo int rnr = (statack & FXP_SCB_STATACK_RNR) ? 1 : 0; 18671abcdbd1SAttilio Rao int rx_npkts; 186860bb79ebSPyun YongHyeon uint16_t status; 18692b5989e9SLuigi Rizzo 18701abcdbd1SAttilio Rao rx_npkts = 0; 187167fc050fSMaxime Henrion FXP_LOCK_ASSERT(sc, MA_OWNED); 18721abcdbd1SAttilio Rao 18732b5989e9SLuigi Rizzo if (rnr) 18740f1db1d6SMaxime Henrion sc->rnr++; 1875947e3815SIan Dowse #ifdef DEVICE_POLLING 1876947e3815SIan Dowse /* Pick up a deferred RNR condition if `count' ran out last time. */ 1877947e3815SIan Dowse if (sc->flags & FXP_FLAG_DEFERRED_RNR) { 1878947e3815SIan Dowse sc->flags &= ~FXP_FLAG_DEFERRED_RNR; 1879947e3815SIan Dowse rnr = 1; 1880947e3815SIan Dowse } 1881947e3815SIan Dowse #endif 1882a17c678eSDavid Greenman 1883a17c678eSDavid Greenman /* 18843114fdb4SDavid Greenman * Free any finished transmit mbuf chains. 188506936301SBill Paul * 188606936301SBill Paul * Handle the CNA event likt a CXTNO event. It used to 188706936301SBill Paul * be that this event (control unit not ready) was not 188806936301SBill Paul * encountered, but it is now with the SMPng modifications. 188906936301SBill Paul * The exact sequence of events that occur when the interface 189006936301SBill Paul * is brought up are different now, and if this event 189106936301SBill Paul * goes unhandled, the configuration/rxfilter setup sequence 189206936301SBill Paul * can stall for several seconds. The result is that no 189306936301SBill Paul * packets go out onto the wire for about 5 to 10 seconds 189406936301SBill Paul * after the interface is ifconfig'ed for the first time. 18953114fdb4SDavid Greenman */ 18964e53f837SPyun YongHyeon if (statack & (FXP_SCB_STATACK_CXTNO | FXP_SCB_STATACK_CNA)) 1897b2badf02SMaxime Henrion fxp_txeof(sc); 18983114fdb4SDavid Greenman 18993114fdb4SDavid Greenman /* 19003114fdb4SDavid Greenman * Try to start more packets transmitting. 19013114fdb4SDavid Greenman */ 19027929aa03SMax Laier if (!IFQ_DRV_IS_EMPTY(&ifp->if_snd)) 19034953bccaSNate Lawson fxp_start_body(ifp); 19042b5989e9SLuigi Rizzo 19052b5989e9SLuigi Rizzo /* 19062b5989e9SLuigi Rizzo * Just return if nothing happened on the receive side. 19072b5989e9SLuigi Rizzo */ 1908947e3815SIan Dowse if (!rnr && (statack & FXP_SCB_STATACK_FR) == 0) 19091abcdbd1SAttilio Rao return (rx_npkts); 19102b5989e9SLuigi Rizzo 19113114fdb4SDavid Greenman /* 1912a17c678eSDavid Greenman * Process receiver interrupts. If a no-resource (RNR) 1913a17c678eSDavid Greenman * condition exists, get whatever packets we can and 1914a17c678eSDavid Greenman * re-start the receiver. 1915947e3815SIan Dowse * 19162b5989e9SLuigi Rizzo * When using polling, we do not process the list to completion, 19172b5989e9SLuigi Rizzo * so when we get an RNR interrupt we must defer the restart 19182b5989e9SLuigi Rizzo * until we hit the last buffer with the C bit set. 19192b5989e9SLuigi Rizzo * If we run out of cycles and rfa_headm has the C bit set, 1920947e3815SIan Dowse * record the pending RNR in the FXP_FLAG_DEFERRED_RNR flag so 1921947e3815SIan Dowse * that the info will be used in the subsequent polling cycle. 1922a17c678eSDavid Greenman */ 19232b5989e9SLuigi Rizzo for (;;) { 1924b2badf02SMaxime Henrion rxp = sc->fxp_desc.rx_head; 1925b2badf02SMaxime Henrion m = rxp->rx_mbuf; 1926ba8c6fd5SDavid Greenman rfa = (struct fxp_rfa *)(m->m_ext.ext_buf + 1927ba8c6fd5SDavid Greenman RFA_ALIGNMENT_FUDGE); 1928a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_rxmtag, rxp->rx_map, 19294812aef5SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 1930a17c678eSDavid Greenman 1931e4fc250cSLuigi Rizzo #ifdef DEVICE_POLLING /* loop at most count times if count >=0 */ 1932947e3815SIan Dowse if (count >= 0 && count-- == 0) { 1933947e3815SIan Dowse if (rnr) { 1934947e3815SIan Dowse /* Defer RNR processing until the next time. */ 1935947e3815SIan Dowse sc->flags |= FXP_FLAG_DEFERRED_RNR; 1936947e3815SIan Dowse rnr = 0; 1937947e3815SIan Dowse } 19382b5989e9SLuigi Rizzo break; 1939947e3815SIan Dowse } 19402b5989e9SLuigi Rizzo #endif /* DEVICE_POLLING */ 19412b5989e9SLuigi Rizzo 194260bb79ebSPyun YongHyeon status = le16toh(rfa->rfa_status); 194360bb79ebSPyun YongHyeon if ((status & FXP_RFA_STATUS_C) == 0) 19442b5989e9SLuigi Rizzo break; 19452b5989e9SLuigi Rizzo 1946f7a5f737SPyun YongHyeon if ((status & FXP_RFA_STATUS_RNR) != 0) 1947f7a5f737SPyun YongHyeon rnr++; 1948dfe61cf1SDavid Greenman /* 1949b2badf02SMaxime Henrion * Advance head forward. 1950dfe61cf1SDavid Greenman */ 1951b2badf02SMaxime Henrion sc->fxp_desc.rx_head = rxp->rx_next; 1952a17c678eSDavid Greenman 1953dfe61cf1SDavid Greenman /* 1954ba8c6fd5SDavid Greenman * Add a new buffer to the receive chain. 1955ba8c6fd5SDavid Greenman * If this fails, the old buffer is recycled 1956ba8c6fd5SDavid Greenman * instead. 1957dfe61cf1SDavid Greenman */ 195885050421SPyun YongHyeon if (fxp_new_rfabuf(sc, rxp) == 0) { 1959aed53495SDavid Greenman int total_len; 1960a17c678eSDavid Greenman 1961e8c8b728SJonathan Lemon /* 19622b5989e9SLuigi Rizzo * Fetch packet length (the top 2 bits of 19632b5989e9SLuigi Rizzo * actual_size are flags set by the controller 19642b5989e9SLuigi Rizzo * upon completion), and drop the packet in case 19652b5989e9SLuigi Rizzo * of bogus length or CRC errors. 1966e8c8b728SJonathan Lemon */ 1967bafb64afSMaxime Henrion total_len = le16toh(rfa->actual_size) & 0x3fff; 1968f13075afSPyun YongHyeon if ((sc->flags & FXP_FLAG_82559_RXCSUM) != 0 && 1969f13075afSPyun YongHyeon (ifp->if_capenable & IFCAP_RXCSUM) != 0) { 1970f13075afSPyun YongHyeon /* Adjust for appended checksum bytes. */ 1971f13075afSPyun YongHyeon total_len -= 2; 1972f13075afSPyun YongHyeon } 1973991ae908SPyun YongHyeon if (total_len < (int)sizeof(struct ether_header) || 1974f7a5f737SPyun YongHyeon total_len > (MCLBYTES - RFA_ALIGNMENT_FUDGE - 1975f7a5f737SPyun YongHyeon sc->rfa_size) || 1976f7a5f737SPyun YongHyeon status & (FXP_RFA_STATUS_CRC | 1977991ae908SPyun YongHyeon FXP_RFA_STATUS_ALIGN | FXP_RFA_STATUS_OVERRUN)) { 1978e8c8b728SJonathan Lemon m_freem(m); 1979f7a5f737SPyun YongHyeon fxp_add_rfabuf(sc, rxp); 19802b5989e9SLuigi Rizzo continue; 1981e8c8b728SJonathan Lemon } 1982920b58e8SBrooks Davis 19832e2de7f2SArchie Cobbs m->m_pkthdr.len = m->m_len = total_len; 1984673d9191SSam Leffler m->m_pkthdr.rcvif = ifp; 1985673d9191SSam Leffler 1986f13075afSPyun YongHyeon /* Do IP checksum checking. */ 1987f13075afSPyun YongHyeon if ((ifp->if_capenable & IFCAP_RXCSUM) != 0) 1988f13075afSPyun YongHyeon fxp_rxcsum(sc, ifp, m, status, total_len); 1989bd4fa9d9SPyun YongHyeon if ((ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0 && 1990bd4fa9d9SPyun YongHyeon (status & FXP_RFA_STATUS_VLAN) != 0) { 1991bd4fa9d9SPyun YongHyeon m->m_pkthdr.ether_vtag = 1992bd4fa9d9SPyun YongHyeon ntohs(rfa->rfax_vlan_id); 1993bd4fa9d9SPyun YongHyeon m->m_flags |= M_VLANTAG; 1994bd4fa9d9SPyun YongHyeon } 199505fb8c3fSNate Lawson /* 199605fb8c3fSNate Lawson * Drop locks before calling if_input() since it 199705fb8c3fSNate Lawson * may re-enter fxp_start() in the netisr case. 199805fb8c3fSNate Lawson * This would result in a lock reversal. Better 199905fb8c3fSNate Lawson * performance might be obtained by chaining all 200005fb8c3fSNate Lawson * packets received, dropping the lock, and then 200105fb8c3fSNate Lawson * calling if_input() on each one. 200205fb8c3fSNate Lawson */ 200305fb8c3fSNate Lawson FXP_UNLOCK(sc); 2004673d9191SSam Leffler (*ifp->if_input)(ifp, m); 200505fb8c3fSNate Lawson FXP_LOCK(sc); 20061abcdbd1SAttilio Rao rx_npkts++; 2007c109e385SPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) 2008c109e385SPyun YongHyeon return (rx_npkts); 200985050421SPyun YongHyeon } else { 201085050421SPyun YongHyeon /* Reuse RFA and loaded DMA map. */ 201185050421SPyun YongHyeon ifp->if_iqdrops++; 201285050421SPyun YongHyeon fxp_discard_rfabuf(sc, rxp); 2013a17c678eSDavid Greenman } 201485050421SPyun YongHyeon fxp_add_rfabuf(sc, rxp); 2015a17c678eSDavid Greenman } 20162b5989e9SLuigi Rizzo if (rnr) { 2017ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 2018ba8c6fd5SDavid Greenman CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, 2019b2badf02SMaxime Henrion sc->fxp_desc.rx_head->rx_addr); 20202e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_START); 2021a17c678eSDavid Greenman } 20221abcdbd1SAttilio Rao return (rx_npkts); 2023a17c678eSDavid Greenman } 2024a17c678eSDavid Greenman 2025303b270bSEivind Eklund static void 20268da9c507SPyun YongHyeon fxp_update_stats(struct fxp_softc *sc) 2027a17c678eSDavid Greenman { 2028fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 2029a17c678eSDavid Greenman struct fxp_stats *sp = sc->fxp_stats; 20308da9c507SPyun YongHyeon struct fxp_hwstats *hsp; 20318da9c507SPyun YongHyeon uint32_t *status; 2032a17c678eSDavid Greenman 20333212724cSJohn Baldwin FXP_LOCK_ASSERT(sc, MA_OWNED); 20348da9c507SPyun YongHyeon 20358da9c507SPyun YongHyeon bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap, 20368da9c507SPyun YongHyeon BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE); 20378da9c507SPyun YongHyeon /* Update statistical counters. */ 20388da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82559_A0) 20398da9c507SPyun YongHyeon status = &sp->completion_status; 20408da9c507SPyun YongHyeon else if (sc->revision >= FXP_REV_82558_A4) 20418da9c507SPyun YongHyeon status = (uint32_t *)&sp->tx_tco; 20428da9c507SPyun YongHyeon else 20438da9c507SPyun YongHyeon status = &sp->tx_pause; 20448da9c507SPyun YongHyeon if (*status == htole32(FXP_STATS_DR_COMPLETE)) { 20458da9c507SPyun YongHyeon hsp = &sc->fxp_hwstats; 20468da9c507SPyun YongHyeon hsp->tx_good += le32toh(sp->tx_good); 20478da9c507SPyun YongHyeon hsp->tx_maxcols += le32toh(sp->tx_maxcols); 20488da9c507SPyun YongHyeon hsp->tx_latecols += le32toh(sp->tx_latecols); 20498da9c507SPyun YongHyeon hsp->tx_underruns += le32toh(sp->tx_underruns); 20508da9c507SPyun YongHyeon hsp->tx_lostcrs += le32toh(sp->tx_lostcrs); 20518da9c507SPyun YongHyeon hsp->tx_deffered += le32toh(sp->tx_deffered); 20528da9c507SPyun YongHyeon hsp->tx_single_collisions += le32toh(sp->tx_single_collisions); 20538da9c507SPyun YongHyeon hsp->tx_multiple_collisions += 20548da9c507SPyun YongHyeon le32toh(sp->tx_multiple_collisions); 20558da9c507SPyun YongHyeon hsp->tx_total_collisions += le32toh(sp->tx_total_collisions); 20568da9c507SPyun YongHyeon hsp->rx_good += le32toh(sp->rx_good); 20578da9c507SPyun YongHyeon hsp->rx_crc_errors += le32toh(sp->rx_crc_errors); 20588da9c507SPyun YongHyeon hsp->rx_alignment_errors += le32toh(sp->rx_alignment_errors); 20598da9c507SPyun YongHyeon hsp->rx_rnr_errors += le32toh(sp->rx_rnr_errors); 20608da9c507SPyun YongHyeon hsp->rx_overrun_errors += le32toh(sp->rx_overrun_errors); 20618da9c507SPyun YongHyeon hsp->rx_cdt_errors += le32toh(sp->rx_cdt_errors); 20628da9c507SPyun YongHyeon hsp->rx_shortframes += le32toh(sp->rx_shortframes); 20638da9c507SPyun YongHyeon hsp->tx_pause += le32toh(sp->tx_pause); 20648da9c507SPyun YongHyeon hsp->rx_pause += le32toh(sp->rx_pause); 20658da9c507SPyun YongHyeon hsp->rx_controls += le32toh(sp->rx_controls); 20668da9c507SPyun YongHyeon hsp->tx_tco += le16toh(sp->tx_tco); 20678da9c507SPyun YongHyeon hsp->rx_tco += le16toh(sp->rx_tco); 20688da9c507SPyun YongHyeon 206983e6547dSMaxime Henrion ifp->if_opackets += le32toh(sp->tx_good); 207083e6547dSMaxime Henrion ifp->if_collisions += le32toh(sp->tx_total_collisions); 2071397f9dfeSDavid Greenman if (sp->rx_good) { 207283e6547dSMaxime Henrion ifp->if_ipackets += le32toh(sp->rx_good); 2073397f9dfeSDavid Greenman sc->rx_idle_secs = 0; 207443d8b117SPyun YongHyeon } else if (sc->flags & FXP_FLAG_RXBUG) { 2075c8cc6fcaSDavid Greenman /* 2076c8cc6fcaSDavid Greenman * Receiver's been idle for another second. 2077c8cc6fcaSDavid Greenman */ 2078397f9dfeSDavid Greenman sc->rx_idle_secs++; 2079397f9dfeSDavid Greenman } 20803ba65732SDavid Greenman ifp->if_ierrors += 208183e6547dSMaxime Henrion le32toh(sp->rx_crc_errors) + 208283e6547dSMaxime Henrion le32toh(sp->rx_alignment_errors) + 208383e6547dSMaxime Henrion le32toh(sp->rx_rnr_errors) + 208483e6547dSMaxime Henrion le32toh(sp->rx_overrun_errors); 2085a17c678eSDavid Greenman /* 2086f9be9005SDavid Greenman * If any transmit underruns occured, bump up the transmit 2087f9be9005SDavid Greenman * threshold by another 512 bytes (64 * 8). 2088f9be9005SDavid Greenman */ 2089f9be9005SDavid Greenman if (sp->tx_underruns) { 209083e6547dSMaxime Henrion ifp->if_oerrors += le32toh(sp->tx_underruns); 2091f9be9005SDavid Greenman if (tx_threshold < 192) 2092f9be9005SDavid Greenman tx_threshold += 64; 2093f9be9005SDavid Greenman } 20948da9c507SPyun YongHyeon *status = 0; 20958da9c507SPyun YongHyeon bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap, 20968da9c507SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 20978da9c507SPyun YongHyeon } 20988da9c507SPyun YongHyeon } 20998da9c507SPyun YongHyeon 21008da9c507SPyun YongHyeon /* 21018da9c507SPyun YongHyeon * Update packet in/out/collision statistics. The i82557 doesn't 21028da9c507SPyun YongHyeon * allow you to access these counters without doing a fairly 21038da9c507SPyun YongHyeon * expensive DMA to get _all_ of the statistics it maintains, so 21048da9c507SPyun YongHyeon * we do this operation here only once per second. The statistics 21058da9c507SPyun YongHyeon * counters in the kernel are updated from the previous dump-stats 21068da9c507SPyun YongHyeon * DMA and then a new dump-stats DMA is started. The on-chip 21078da9c507SPyun YongHyeon * counters are zeroed when the DMA completes. If we can't start 21088da9c507SPyun YongHyeon * the DMA immediately, we don't wait - we just prepare to read 21098da9c507SPyun YongHyeon * them again next time. 21108da9c507SPyun YongHyeon */ 21118da9c507SPyun YongHyeon static void 21128da9c507SPyun YongHyeon fxp_tick(void *xsc) 21138da9c507SPyun YongHyeon { 21148da9c507SPyun YongHyeon struct fxp_softc *sc = xsc; 21158da9c507SPyun YongHyeon struct ifnet *ifp = sc->ifp; 21168da9c507SPyun YongHyeon 21178da9c507SPyun YongHyeon FXP_LOCK_ASSERT(sc, MA_OWNED); 21188da9c507SPyun YongHyeon 21198da9c507SPyun YongHyeon /* Update statistical counters. */ 21208da9c507SPyun YongHyeon fxp_update_stats(sc); 21214953bccaSNate Lawson 2122397f9dfeSDavid Greenman /* 2123c8cc6fcaSDavid Greenman * Release any xmit buffers that have completed DMA. This isn't 2124c8cc6fcaSDavid Greenman * strictly necessary to do here, but it's advantagous for mbufs 2125c8cc6fcaSDavid Greenman * with external storage to be released in a timely manner rather 2126c8cc6fcaSDavid Greenman * than being defered for a potentially long time. This limits 2127c8cc6fcaSDavid Greenman * the delay to a maximum of one second. 2128c8cc6fcaSDavid Greenman */ 2129b2badf02SMaxime Henrion fxp_txeof(sc); 2130b2badf02SMaxime Henrion 2131c8cc6fcaSDavid Greenman /* 2132397f9dfeSDavid Greenman * If we haven't received any packets in FXP_MAC_RX_IDLE seconds, 2133397f9dfeSDavid Greenman * then assume the receiver has locked up and attempt to clear 2134397f9dfeSDavid Greenman * the condition by reprogramming the multicast filter. This is 2135397f9dfeSDavid Greenman * a work-around for a bug in the 82557 where the receiver locks 2136397f9dfeSDavid Greenman * up if it gets certain types of garbage in the syncronization 2137397f9dfeSDavid Greenman * bits prior to the packet header. This bug is supposed to only 2138397f9dfeSDavid Greenman * occur in 10Mbps mode, but has been seen to occur in 100Mbps 2139397f9dfeSDavid Greenman * mode as well (perhaps due to a 10/100 speed transition). 2140397f9dfeSDavid Greenman */ 2141397f9dfeSDavid Greenman if (sc->rx_idle_secs > FXP_MAX_RX_IDLE) { 2142397f9dfeSDavid Greenman sc->rx_idle_secs = 0; 2143c109e385SPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 21441845b5c3SMarius Strobl fxp_init_body(sc, 1); 21456b24912cSPyun YongHyeon return; 2146397f9dfeSDavid Greenman } 2147f9be9005SDavid Greenman /* 21483ba65732SDavid Greenman * If there is no pending command, start another stats 21493ba65732SDavid Greenman * dump. Otherwise punt for now. 2150a17c678eSDavid Greenman */ 2151397f9dfeSDavid Greenman if (CSR_READ_1(sc, FXP_CSR_SCB_COMMAND) == 0) { 2152a17c678eSDavid Greenman /* 2153397f9dfeSDavid Greenman * Start another stats dump. 2154a17c678eSDavid Greenman */ 21552e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_DUMPRESET); 2156dfe61cf1SDavid Greenman } 2157f7788e8eSJonathan Lemon if (sc->miibus != NULL) 2158f7788e8eSJonathan Lemon mii_tick(device_get_softc(sc->miibus)); 21594953bccaSNate Lawson 2160a17c678eSDavid Greenman /* 216116f1e614SRuslan Ermilov * Check that chip hasn't hung. 2162df79d527SGleb Smirnoff */ 2163df79d527SGleb Smirnoff fxp_watchdog(sc); 2164df79d527SGleb Smirnoff 2165df79d527SGleb Smirnoff /* 2166a17c678eSDavid Greenman * Schedule another timeout one second from now. 2167a17c678eSDavid Greenman */ 216845276e4aSSam Leffler callout_reset(&sc->stat_ch, hz, fxp_tick, sc); 2169a17c678eSDavid Greenman } 2170a17c678eSDavid Greenman 2171a17c678eSDavid Greenman /* 2172a17c678eSDavid Greenman * Stop the interface. Cancels the statistics updater and resets 2173a17c678eSDavid Greenman * the interface. 2174a17c678eSDavid Greenman */ 2175a17c678eSDavid Greenman static void 2176f7788e8eSJonathan Lemon fxp_stop(struct fxp_softc *sc) 2177a17c678eSDavid Greenman { 2178fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 2179b2badf02SMaxime Henrion struct fxp_tx *txp; 21803ba65732SDavid Greenman int i; 2181a17c678eSDavid Greenman 218213f4c340SRobert Watson ifp->if_drv_flags &= ~(IFF_DRV_RUNNING | IFF_DRV_OACTIVE); 2183df79d527SGleb Smirnoff sc->watchdog_timer = 0; 21847dced78aSDavid Greenman 2185a17c678eSDavid Greenman /* 2186a17c678eSDavid Greenman * Cancel stats updater. 2187a17c678eSDavid Greenman */ 218845276e4aSSam Leffler callout_stop(&sc->stat_ch); 21893ba65732SDavid Greenman 21903ba65732SDavid Greenman /* 21917137cea0SPyun YongHyeon * Preserve PCI configuration, configure, IA/multicast 21927137cea0SPyun YongHyeon * setup and put RU and CU into idle state. 21933ba65732SDavid Greenman */ 21947137cea0SPyun YongHyeon CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SELECTIVE_RESET); 219572a32a26SJonathan Lemon DELAY(50); 21967137cea0SPyun YongHyeon /* Disable interrupts. */ 21977137cea0SPyun YongHyeon CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE); 2198a17c678eSDavid Greenman 21998da9c507SPyun YongHyeon fxp_update_stats(sc); 22008da9c507SPyun YongHyeon 22013ba65732SDavid Greenman /* 22023ba65732SDavid Greenman * Release any xmit buffers. 22033ba65732SDavid Greenman */ 2204b2badf02SMaxime Henrion txp = sc->fxp_desc.tx_list; 2205da91462dSDavid Greenman if (txp != NULL) { 2206da91462dSDavid Greenman for (i = 0; i < FXP_NTXCB; i++) { 2207b2badf02SMaxime Henrion if (txp[i].tx_mbuf != NULL) { 2208a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_txmtag, txp[i].tx_map, 2209b2badf02SMaxime Henrion BUS_DMASYNC_POSTWRITE); 2210a2057a72SPyun YongHyeon bus_dmamap_unload(sc->fxp_txmtag, 2211a2057a72SPyun YongHyeon txp[i].tx_map); 2212b2badf02SMaxime Henrion m_freem(txp[i].tx_mbuf); 2213b2badf02SMaxime Henrion txp[i].tx_mbuf = NULL; 2214c8bca6dcSBill Paul /* clear this to reset csum offload bits */ 2215b2badf02SMaxime Henrion txp[i].tx_cb->tbd[0].tb_addr = 0; 2216da91462dSDavid Greenman } 2217da91462dSDavid Greenman } 22183ba65732SDavid Greenman } 2219a2057a72SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 2220a2057a72SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 22213ba65732SDavid Greenman sc->tx_queued = 0; 2222a17c678eSDavid Greenman } 2223a17c678eSDavid Greenman 2224a17c678eSDavid Greenman /* 2225a17c678eSDavid Greenman * Watchdog/transmission transmit timeout handler. Called when a 2226a17c678eSDavid Greenman * transmission is started on the interface, but no interrupt is 2227a17c678eSDavid Greenman * received before the timeout. This usually indicates that the 2228a17c678eSDavid Greenman * card has wedged for some reason. 2229a17c678eSDavid Greenman */ 2230a17c678eSDavid Greenman static void 2231df79d527SGleb Smirnoff fxp_watchdog(struct fxp_softc *sc) 2232a17c678eSDavid Greenman { 2233ba8c6fd5SDavid Greenman 2234df79d527SGleb Smirnoff FXP_LOCK_ASSERT(sc, MA_OWNED); 2235df79d527SGleb Smirnoff 2236df79d527SGleb Smirnoff if (sc->watchdog_timer == 0 || --sc->watchdog_timer) 2237df79d527SGleb Smirnoff return; 2238df79d527SGleb Smirnoff 2239f7788e8eSJonathan Lemon device_printf(sc->dev, "device timeout\n"); 2240df79d527SGleb Smirnoff sc->ifp->if_oerrors++; 2241a17c678eSDavid Greenman 22421845b5c3SMarius Strobl fxp_init_body(sc, 1); 2243a17c678eSDavid Greenman } 2244a17c678eSDavid Greenman 22454953bccaSNate Lawson /* 22464953bccaSNate Lawson * Acquire locks and then call the real initialization function. This 22474953bccaSNate Lawson * is necessary because ether_ioctl() calls if_init() and this would 22484953bccaSNate Lawson * result in mutex recursion if the mutex was held. 22494953bccaSNate Lawson */ 2250a17c678eSDavid Greenman static void 2251f7788e8eSJonathan Lemon fxp_init(void *xsc) 2252a17c678eSDavid Greenman { 2253fb583156SDavid Greenman struct fxp_softc *sc = xsc; 22544953bccaSNate Lawson 22554953bccaSNate Lawson FXP_LOCK(sc); 22561845b5c3SMarius Strobl fxp_init_body(sc, 1); 22574953bccaSNate Lawson FXP_UNLOCK(sc); 22584953bccaSNate Lawson } 22594953bccaSNate Lawson 22604953bccaSNate Lawson /* 22614953bccaSNate Lawson * Perform device initialization. This routine must be called with the 22624953bccaSNate Lawson * softc lock held. 22634953bccaSNate Lawson */ 22644953bccaSNate Lawson static void 22651845b5c3SMarius Strobl fxp_init_body(struct fxp_softc *sc, int setmedia) 22664953bccaSNate Lawson { 2267fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 22681845b5c3SMarius Strobl struct mii_data *mii; 2269a17c678eSDavid Greenman struct fxp_cb_config *cbp; 2270a17c678eSDavid Greenman struct fxp_cb_ias *cb_ias; 2271b2badf02SMaxime Henrion struct fxp_cb_tx *tcbp; 2272b2badf02SMaxime Henrion struct fxp_tx *txp; 22733212724cSJohn Baldwin int i, prm; 2274a17c678eSDavid Greenman 227567fc050fSMaxime Henrion FXP_LOCK_ASSERT(sc, MA_OWNED); 2276a17c678eSDavid Greenman /* 22773ba65732SDavid Greenman * Cancel any pending I/O 2278a17c678eSDavid Greenman */ 22793ba65732SDavid Greenman fxp_stop(sc); 2280a17c678eSDavid Greenman 22817137cea0SPyun YongHyeon /* 22827137cea0SPyun YongHyeon * Issue software reset, which also unloads the microcode. 22837137cea0SPyun YongHyeon */ 22847137cea0SPyun YongHyeon sc->flags &= ~FXP_FLAG_UCODE; 22857137cea0SPyun YongHyeon CSR_WRITE_4(sc, FXP_CSR_PORT, FXP_PORT_SOFTWARE_RESET); 22867137cea0SPyun YongHyeon DELAY(50); 22877137cea0SPyun YongHyeon 2288a17c678eSDavid Greenman prm = (ifp->if_flags & IFF_PROMISC) ? 1 : 0; 2289a17c678eSDavid Greenman 2290a17c678eSDavid Greenman /* 2291a17c678eSDavid Greenman * Initialize base of CBL and RFA memory. Loading with zero 2292a17c678eSDavid Greenman * sets it up for regular linear addressing. 2293a17c678eSDavid Greenman */ 2294ba8c6fd5SDavid Greenman CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, 0); 22952e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_BASE); 2296a17c678eSDavid Greenman 2297ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 22982e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_BASE); 2299a17c678eSDavid Greenman 2300a17c678eSDavid Greenman /* 2301a17c678eSDavid Greenman * Initialize base of dump-stats buffer. 2302a17c678eSDavid Greenman */ 2303ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 23048da9c507SPyun YongHyeon bzero(sc->fxp_stats, sizeof(struct fxp_stats)); 23058da9c507SPyun YongHyeon bus_dmamap_sync(sc->fxp_stag, sc->fxp_smap, 23068da9c507SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 2307b2badf02SMaxime Henrion CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->stats_addr); 23082e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_DUMP_ADR); 2309a17c678eSDavid Greenman 2310a17c678eSDavid Greenman /* 231172a32a26SJonathan Lemon * Attempt to load microcode if requested. 2312b96ad4b2SPyun YongHyeon * For ICH based controllers do not load microcode. 231372a32a26SJonathan Lemon */ 2314b96ad4b2SPyun YongHyeon if (sc->ident->ich == 0) { 2315b96ad4b2SPyun YongHyeon if (ifp->if_flags & IFF_LINK0 && 2316b96ad4b2SPyun YongHyeon (sc->flags & FXP_FLAG_UCODE) == 0) 231772a32a26SJonathan Lemon fxp_load_ucode(sc); 2318b96ad4b2SPyun YongHyeon } 231972a32a26SJonathan Lemon 232072a32a26SJonathan Lemon /* 23216b24912cSPyun YongHyeon * Set IFF_ALLMULTI status. It's needed in configure action 23226b24912cSPyun YongHyeon * command. 232309882363SJonathan Lemon */ 23246b24912cSPyun YongHyeon fxp_mc_addrs(sc); 232509882363SJonathan Lemon 232609882363SJonathan Lemon /* 2327a17c678eSDavid Greenman * We temporarily use memory that contains the TxCB list to 2328a17c678eSDavid Greenman * construct the config CB. The TxCB list memory is rebuilt 2329a17c678eSDavid Greenman * later. 2330a17c678eSDavid Greenman */ 2331b2badf02SMaxime Henrion cbp = (struct fxp_cb_config *)sc->fxp_desc.cbl_list; 2332a17c678eSDavid Greenman 2333a17c678eSDavid Greenman /* 2334a17c678eSDavid Greenman * This bcopy is kind of disgusting, but there are a bunch of must be 2335a17c678eSDavid Greenman * zero and must be one bits in this structure and this is the easiest 2336a17c678eSDavid Greenman * way to initialize them all to proper values. 2337a17c678eSDavid Greenman */ 2338b2badf02SMaxime Henrion bcopy(fxp_cb_config_template, cbp, sizeof(fxp_cb_config_template)); 2339a17c678eSDavid Greenman 2340a17c678eSDavid Greenman cbp->cb_status = 0; 234183e6547dSMaxime Henrion cbp->cb_command = htole16(FXP_CB_COMMAND_CONFIG | 234283e6547dSMaxime Henrion FXP_CB_COMMAND_EL); 234383e6547dSMaxime Henrion cbp->link_addr = 0xffffffff; /* (no) next command */ 23442c6c0947SMaxime Henrion cbp->byte_count = sc->flags & FXP_FLAG_EXT_RFA ? 32 : 22; 2345001696daSDavid Greenman cbp->rx_fifo_limit = 8; /* rx fifo threshold (32 bytes) */ 2346001696daSDavid Greenman cbp->tx_fifo_limit = 0; /* tx fifo threshold (0 bytes) */ 2347a17c678eSDavid Greenman cbp->adaptive_ifs = 0; /* (no) adaptive interframe spacing */ 2348f7788e8eSJonathan Lemon cbp->mwi_enable = sc->flags & FXP_FLAG_MWI_ENABLE ? 1 : 0; 2349f7788e8eSJonathan Lemon cbp->type_enable = 0; /* actually reserved */ 2350f7788e8eSJonathan Lemon cbp->read_align_en = sc->flags & FXP_FLAG_READ_ALIGN ? 1 : 0; 2351f7788e8eSJonathan Lemon cbp->end_wr_on_cl = sc->flags & FXP_FLAG_WRITE_ALIGN ? 1 : 0; 2352001696daSDavid Greenman cbp->rx_dma_bytecount = 0; /* (no) rx DMA max */ 2353001696daSDavid Greenman cbp->tx_dma_bytecount = 0; /* (no) tx DMA max */ 2354f7788e8eSJonathan Lemon cbp->dma_mbce = 0; /* (disable) dma max counters */ 2355a17c678eSDavid Greenman cbp->late_scb = 0; /* (don't) defer SCB update */ 2356f7788e8eSJonathan Lemon cbp->direct_dma_dis = 1; /* disable direct rcv dma mode */ 2357f7788e8eSJonathan Lemon cbp->tno_int_or_tco_en =0; /* (disable) tx not okay interrupt */ 23583114fdb4SDavid Greenman cbp->ci_int = 1; /* interrupt on CU idle */ 2359f7788e8eSJonathan Lemon cbp->ext_txcb_dis = sc->flags & FXP_FLAG_EXT_TXCB ? 0 : 1; 2360f7788e8eSJonathan Lemon cbp->ext_stats_dis = 1; /* disable extended counters */ 2361f7788e8eSJonathan Lemon cbp->keep_overrun_rx = 0; /* don't pass overrun frames to host */ 23628ef1f631SYaroslav Tykhiy cbp->save_bf = sc->flags & FXP_FLAG_SAVE_BAD ? 1 : prm; 2363a17c678eSDavid Greenman cbp->disc_short_rx = !prm; /* discard short packets */ 2364f7788e8eSJonathan Lemon cbp->underrun_retry = 1; /* retry mode (once) on DMA underrun */ 2365f7788e8eSJonathan Lemon cbp->two_frames = 0; /* do not limit FIFO to 2 frames */ 2366c21e84e4SPyun YongHyeon cbp->dyn_tbd = sc->flags & FXP_FLAG_EXT_RFA ? 1 : 0; 2367c8bca6dcSBill Paul cbp->ext_rfa = sc->flags & FXP_FLAG_EXT_RFA ? 1 : 0; 2368f7788e8eSJonathan Lemon cbp->mediatype = sc->flags & FXP_FLAG_SERIAL_MEDIA ? 0 : 1; 2369f7788e8eSJonathan Lemon cbp->csma_dis = 0; /* (don't) disable link */ 2370f13075afSPyun YongHyeon cbp->tcp_udp_cksum = ((sc->flags & FXP_FLAG_82559_RXCSUM) != 0 && 2371f13075afSPyun YongHyeon (ifp->if_capenable & IFCAP_RXCSUM) != 0) ? 1 : 0; 2372f7788e8eSJonathan Lemon cbp->vlan_tco = 0; /* (don't) enable vlan wakeup */ 2373f7788e8eSJonathan Lemon cbp->link_wake_en = 0; /* (don't) assert PME# on link change */ 2374f7788e8eSJonathan Lemon cbp->arp_wake_en = 0; /* (don't) assert PME# on arp */ 2375f7788e8eSJonathan Lemon cbp->mc_wake_en = 0; /* (don't) enable PME# on mcmatch */ 2376a17c678eSDavid Greenman cbp->nsai = 1; /* (don't) disable source addr insert */ 2377a17c678eSDavid Greenman cbp->preamble_length = 2; /* (7 byte) preamble */ 2378a17c678eSDavid Greenman cbp->loopback = 0; /* (don't) loopback */ 2379a17c678eSDavid Greenman cbp->linear_priority = 0; /* (normal CSMA/CD operation) */ 2380a17c678eSDavid Greenman cbp->linear_pri_mode = 0; /* (wait after xmit only) */ 2381a17c678eSDavid Greenman cbp->interfrm_spacing = 6; /* (96 bits of) interframe spacing */ 2382a17c678eSDavid Greenman cbp->promiscuous = prm; /* promiscuous mode */ 2383a17c678eSDavid Greenman cbp->bcast_disable = 0; /* (don't) disable broadcasts */ 2384f7788e8eSJonathan Lemon cbp->wait_after_win = 0; /* (don't) enable modified backoff alg*/ 2385f7788e8eSJonathan Lemon cbp->ignore_ul = 0; /* consider U/L bit in IA matching */ 2386f7788e8eSJonathan Lemon cbp->crc16_en = 0; /* (don't) enable crc-16 algorithm */ 2387f7788e8eSJonathan Lemon cbp->crscdt = sc->flags & FXP_FLAG_SERIAL_MEDIA ? 1 : 0; 2388f7788e8eSJonathan Lemon 2389a17c678eSDavid Greenman cbp->stripping = !prm; /* truncate rx packet to byte count */ 2390a17c678eSDavid Greenman cbp->padding = 1; /* (do) pad short tx packets */ 2391a17c678eSDavid Greenman cbp->rcv_crc_xfer = 0; /* (don't) xfer CRC to host */ 2392f7788e8eSJonathan Lemon cbp->long_rx_en = sc->flags & FXP_FLAG_LONG_PKT_EN ? 1 : 0; 2393f7788e8eSJonathan Lemon cbp->ia_wake_en = 0; /* (don't) wake up on address match */ 23947137cea0SPyun YongHyeon cbp->magic_pkt_dis = sc->flags & FXP_FLAG_WOL ? 0 : 1; 2395a17c678eSDavid Greenman cbp->force_fdx = 0; /* (don't) force full duplex */ 23963ba65732SDavid Greenman cbp->fdx_pin_en = 1; /* (enable) FDX# pin */ 2397a17c678eSDavid Greenman cbp->multi_ia = 0; /* (don't) accept multiple IAs */ 2398a026a25bSPyun YongHyeon cbp->mc_all = ifp->if_flags & IFF_ALLMULTI ? 1 : prm; 2399c8bca6dcSBill Paul cbp->gamla_rx = sc->flags & FXP_FLAG_EXT_RFA ? 1 : 0; 2400bd4fa9d9SPyun YongHyeon cbp->vlan_strip_en = ((sc->flags & FXP_FLAG_EXT_RFA) != 0 && 2401bd4fa9d9SPyun YongHyeon (ifp->if_capenable & IFCAP_VLAN_HWTAGGING) != 0) ? 1 : 0; 2402a17c678eSDavid Greenman 24031845b5c3SMarius Strobl if (sc->revision == FXP_REV_82557) { 24043bd07cfdSJonathan Lemon /* 24053bd07cfdSJonathan Lemon * The 82557 has no hardware flow control, the values 24063bd07cfdSJonathan Lemon * below are the defaults for the chip. 24073bd07cfdSJonathan Lemon */ 24083bd07cfdSJonathan Lemon cbp->fc_delay_lsb = 0; 24093bd07cfdSJonathan Lemon cbp->fc_delay_msb = 0x40; 24103bd07cfdSJonathan Lemon cbp->pri_fc_thresh = 3; 24113bd07cfdSJonathan Lemon cbp->tx_fc_dis = 0; 24123bd07cfdSJonathan Lemon cbp->rx_fc_restop = 0; 24133bd07cfdSJonathan Lemon cbp->rx_fc_restart = 0; 24143bd07cfdSJonathan Lemon cbp->fc_filter = 0; 24153bd07cfdSJonathan Lemon cbp->pri_fc_loc = 1; 24163bd07cfdSJonathan Lemon } else { 24171845b5c3SMarius Strobl /* Set pause RX FIFO threshold to 1KB. */ 24181845b5c3SMarius Strobl CSR_WRITE_1(sc, FXP_CSR_FC_THRESH, 1); 24191845b5c3SMarius Strobl /* Set pause time. */ 24201845b5c3SMarius Strobl cbp->fc_delay_lsb = 0xff; 24211845b5c3SMarius Strobl cbp->fc_delay_msb = 0xff; 24223bd07cfdSJonathan Lemon cbp->pri_fc_thresh = 3; 24231845b5c3SMarius Strobl mii = device_get_softc(sc->miibus); 24241845b5c3SMarius Strobl if ((IFM_OPTIONS(mii->mii_media_active) & 24251845b5c3SMarius Strobl IFM_ETH_TXPAUSE) != 0) 24261845b5c3SMarius Strobl /* enable transmit FC */ 24271845b5c3SMarius Strobl cbp->tx_fc_dis = 0; 24281845b5c3SMarius Strobl else 24291845b5c3SMarius Strobl /* disable transmit FC */ 24301845b5c3SMarius Strobl cbp->tx_fc_dis = 1; 24311845b5c3SMarius Strobl if ((IFM_OPTIONS(mii->mii_media_active) & 24321845b5c3SMarius Strobl IFM_ETH_RXPAUSE) != 0) { 24331845b5c3SMarius Strobl /* enable FC restart/restop frames */ 24341845b5c3SMarius Strobl cbp->rx_fc_restart = 1; 24351845b5c3SMarius Strobl cbp->rx_fc_restop = 1; 24361845b5c3SMarius Strobl } else { 24371845b5c3SMarius Strobl /* disable FC restart/restop frames */ 24381845b5c3SMarius Strobl cbp->rx_fc_restart = 0; 24391845b5c3SMarius Strobl cbp->rx_fc_restop = 0; 24401845b5c3SMarius Strobl } 24413bd07cfdSJonathan Lemon cbp->fc_filter = !prm; /* drop FC frames to host */ 24423bd07cfdSJonathan Lemon cbp->pri_fc_loc = 1; /* FC pri location (byte31) */ 24433bd07cfdSJonathan Lemon } 24443bd07cfdSJonathan Lemon 24458da9c507SPyun YongHyeon /* Enable 82558 and 82559 extended statistics functionality. */ 24468da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82558_A4) { 24478da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82559_A0) { 24488da9c507SPyun YongHyeon /* 24498da9c507SPyun YongHyeon * Extend configuration table size to 32 24508da9c507SPyun YongHyeon * to include TCO configuration. 24518da9c507SPyun YongHyeon */ 24528da9c507SPyun YongHyeon cbp->byte_count = 32; 24538da9c507SPyun YongHyeon cbp->ext_stats_dis = 1; 24548da9c507SPyun YongHyeon /* Enable TCO stats. */ 24558da9c507SPyun YongHyeon cbp->tno_int_or_tco_en = 1; 24568da9c507SPyun YongHyeon cbp->gamla_rx = 1; 24578da9c507SPyun YongHyeon } else 24588da9c507SPyun YongHyeon cbp->ext_stats_dis = 0; 24598da9c507SPyun YongHyeon } 24608da9c507SPyun YongHyeon 2461a17c678eSDavid Greenman /* 2462a17c678eSDavid Greenman * Start the config command/DMA. 2463a17c678eSDavid Greenman */ 2464ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 24655986d0d2SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 24665986d0d2SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 2467b2badf02SMaxime Henrion CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr); 24682e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START); 2469a17c678eSDavid Greenman /* ...and wait for it to complete. */ 2470209b07bcSMaxime Henrion fxp_dma_wait(sc, &cbp->cb_status, sc->cbl_tag, sc->cbl_map); 2471a17c678eSDavid Greenman 2472a17c678eSDavid Greenman /* 2473a17c678eSDavid Greenman * Now initialize the station address. Temporarily use the TxCB 2474a17c678eSDavid Greenman * memory area like we did above for the config CB. 2475a17c678eSDavid Greenman */ 2476b2badf02SMaxime Henrion cb_ias = (struct fxp_cb_ias *)sc->fxp_desc.cbl_list; 2477a17c678eSDavid Greenman cb_ias->cb_status = 0; 247883e6547dSMaxime Henrion cb_ias->cb_command = htole16(FXP_CB_COMMAND_IAS | FXP_CB_COMMAND_EL); 247983e6547dSMaxime Henrion cb_ias->link_addr = 0xffffffff; 24804a0d6638SRuslan Ermilov bcopy(IF_LLADDR(sc->ifp), cb_ias->macaddr, ETHER_ADDR_LEN); 2481a17c678eSDavid Greenman 2482a17c678eSDavid Greenman /* 2483a17c678eSDavid Greenman * Start the IAS (Individual Address Setup) command/DMA. 2484a17c678eSDavid Greenman */ 2485ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 24865986d0d2SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 24875986d0d2SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 24886b24912cSPyun YongHyeon CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr); 24892e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START); 2490a17c678eSDavid Greenman /* ...and wait for it to complete. */ 2491209b07bcSMaxime Henrion fxp_dma_wait(sc, &cb_ias->cb_status, sc->cbl_tag, sc->cbl_map); 2492a17c678eSDavid Greenman 2493a17c678eSDavid Greenman /* 24946b24912cSPyun YongHyeon * Initialize the multicast address list. 24956b24912cSPyun YongHyeon */ 24966b24912cSPyun YongHyeon fxp_mc_setup(sc); 24976b24912cSPyun YongHyeon 24986b24912cSPyun YongHyeon /* 2499a17c678eSDavid Greenman * Initialize transmit control block (TxCB) list. 2500a17c678eSDavid Greenman */ 2501b2badf02SMaxime Henrion txp = sc->fxp_desc.tx_list; 2502b2badf02SMaxime Henrion tcbp = sc->fxp_desc.cbl_list; 2503b2badf02SMaxime Henrion bzero(tcbp, FXP_TXCB_SZ); 2504a17c678eSDavid Greenman for (i = 0; i < FXP_NTXCB; i++) { 2505b2badf02SMaxime Henrion txp[i].tx_mbuf = NULL; 250683e6547dSMaxime Henrion tcbp[i].cb_status = htole16(FXP_CB_STATUS_C | FXP_CB_STATUS_OK); 250783e6547dSMaxime Henrion tcbp[i].cb_command = htole16(FXP_CB_COMMAND_NOP); 250883e6547dSMaxime Henrion tcbp[i].link_addr = htole32(sc->fxp_desc.cbl_addr + 250983e6547dSMaxime Henrion (((i + 1) & FXP_TXCB_MASK) * sizeof(struct fxp_cb_tx))); 25103bd07cfdSJonathan Lemon if (sc->flags & FXP_FLAG_EXT_TXCB) 2511b2badf02SMaxime Henrion tcbp[i].tbd_array_addr = 251283e6547dSMaxime Henrion htole32(FXP_TXCB_DMA_ADDR(sc, &tcbp[i].tbd[2])); 25133bd07cfdSJonathan Lemon else 2514b2badf02SMaxime Henrion tcbp[i].tbd_array_addr = 251583e6547dSMaxime Henrion htole32(FXP_TXCB_DMA_ADDR(sc, &tcbp[i].tbd[0])); 2516b2badf02SMaxime Henrion txp[i].tx_next = &txp[(i + 1) & FXP_TXCB_MASK]; 2517a17c678eSDavid Greenman } 2518a17c678eSDavid Greenman /* 2519397f9dfeSDavid Greenman * Set the suspend flag on the first TxCB and start the control 2520a17c678eSDavid Greenman * unit. It will execute the NOP and then suspend. 2521a17c678eSDavid Greenman */ 252283e6547dSMaxime Henrion tcbp->cb_command = htole16(FXP_CB_COMMAND_NOP | FXP_CB_COMMAND_S); 2523a2057a72SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 2524a2057a72SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 2525b2badf02SMaxime Henrion sc->fxp_desc.tx_first = sc->fxp_desc.tx_last = txp; 2526397f9dfeSDavid Greenman sc->tx_queued = 1; 2527a17c678eSDavid Greenman 2528ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 25296b24912cSPyun YongHyeon CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr); 25302e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START); 2531a17c678eSDavid Greenman 2532a17c678eSDavid Greenman /* 2533a17c678eSDavid Greenman * Initialize receiver buffer area - RFA. 2534a17c678eSDavid Greenman */ 2535ba8c6fd5SDavid Greenman fxp_scb_wait(sc); 2536b2badf02SMaxime Henrion CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.rx_head->rx_addr); 25372e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_RU_START); 2538a17c678eSDavid Greenman 25391845b5c3SMarius Strobl if (sc->miibus != NULL && setmedia != 0) 2540f7788e8eSJonathan Lemon mii_mediachg(device_get_softc(sc->miibus)); 2541dccee1a1SDavid Greenman 254213f4c340SRobert Watson ifp->if_drv_flags |= IFF_DRV_RUNNING; 254313f4c340SRobert Watson ifp->if_drv_flags &= ~IFF_DRV_OACTIVE; 2544e8c8b728SJonathan Lemon 2545e8c8b728SJonathan Lemon /* 2546e8c8b728SJonathan Lemon * Enable interrupts. 2547e8c8b728SJonathan Lemon */ 25482b5989e9SLuigi Rizzo #ifdef DEVICE_POLLING 25492b5989e9SLuigi Rizzo /* 25502b5989e9SLuigi Rizzo * ... but only do that if we are not polling. And because (presumably) 25512b5989e9SLuigi Rizzo * the default is interrupts on, we need to disable them explicitly! 25522b5989e9SLuigi Rizzo */ 255340929967SGleb Smirnoff if (ifp->if_capenable & IFCAP_POLLING ) 25542b5989e9SLuigi Rizzo CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, FXP_SCB_INTR_DISABLE); 25552b5989e9SLuigi Rizzo else 25562b5989e9SLuigi Rizzo #endif /* DEVICE_POLLING */ 2557e8c8b728SJonathan Lemon CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, 0); 2558a17c678eSDavid Greenman 2559a17c678eSDavid Greenman /* 2560a17c678eSDavid Greenman * Start stats updater. 2561a17c678eSDavid Greenman */ 256245276e4aSSam Leffler callout_reset(&sc->stat_ch, hz, fxp_tick, sc); 2563f7788e8eSJonathan Lemon } 2564f7788e8eSJonathan Lemon 2565f7788e8eSJonathan Lemon static int 2566f7788e8eSJonathan Lemon fxp_serial_ifmedia_upd(struct ifnet *ifp) 2567f7788e8eSJonathan Lemon { 2568f7788e8eSJonathan Lemon 2569f7788e8eSJonathan Lemon return (0); 2570a17c678eSDavid Greenman } 2571a17c678eSDavid Greenman 2572303b270bSEivind Eklund static void 2573f7788e8eSJonathan Lemon fxp_serial_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 2574ba8c6fd5SDavid Greenman { 2575ba8c6fd5SDavid Greenman 2576f7788e8eSJonathan Lemon ifmr->ifm_active = IFM_ETHER|IFM_MANUAL; 2577ba8c6fd5SDavid Greenman } 2578ba8c6fd5SDavid Greenman 2579ba8c6fd5SDavid Greenman /* 2580ba8c6fd5SDavid Greenman * Change media according to request. 2581ba8c6fd5SDavid Greenman */ 2582f7788e8eSJonathan Lemon static int 2583f7788e8eSJonathan Lemon fxp_ifmedia_upd(struct ifnet *ifp) 2584ba8c6fd5SDavid Greenman { 2585ba8c6fd5SDavid Greenman struct fxp_softc *sc = ifp->if_softc; 2586f7788e8eSJonathan Lemon struct mii_data *mii; 25873fcb7a53SMarius Strobl struct mii_softc *miisc; 2588ba8c6fd5SDavid Greenman 2589f7788e8eSJonathan Lemon mii = device_get_softc(sc->miibus); 25903212724cSJohn Baldwin FXP_LOCK(sc); 25915aa0cdf4SJohn-Mark Gurney LIST_FOREACH(miisc, &mii->mii_phys, mii_list) 25923fcb7a53SMarius Strobl PHY_RESET(miisc); 2593f7788e8eSJonathan Lemon mii_mediachg(mii); 25943212724cSJohn Baldwin FXP_UNLOCK(sc); 2595ba8c6fd5SDavid Greenman return (0); 2596ba8c6fd5SDavid Greenman } 2597ba8c6fd5SDavid Greenman 2598ba8c6fd5SDavid Greenman /* 2599ba8c6fd5SDavid Greenman * Notify the world which media we're using. 2600ba8c6fd5SDavid Greenman */ 2601f7788e8eSJonathan Lemon static void 2602f7788e8eSJonathan Lemon fxp_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 2603ba8c6fd5SDavid Greenman { 2604ba8c6fd5SDavid Greenman struct fxp_softc *sc = ifp->if_softc; 2605f7788e8eSJonathan Lemon struct mii_data *mii; 2606ba8c6fd5SDavid Greenman 2607f7788e8eSJonathan Lemon mii = device_get_softc(sc->miibus); 26083212724cSJohn Baldwin FXP_LOCK(sc); 2609f7788e8eSJonathan Lemon mii_pollstat(mii); 2610f7788e8eSJonathan Lemon ifmr->ifm_active = mii->mii_media_active; 2611f7788e8eSJonathan Lemon ifmr->ifm_status = mii->mii_media_status; 26123212724cSJohn Baldwin FXP_UNLOCK(sc); 2613ba8c6fd5SDavid Greenman } 2614ba8c6fd5SDavid Greenman 2615a17c678eSDavid Greenman /* 2616a17c678eSDavid Greenman * Add a buffer to the end of the RFA buffer list. 2617a17c678eSDavid Greenman * Return 0 if successful, 1 for failure. A failure results in 261885050421SPyun YongHyeon * reusing the RFA buffer. 2619a17c678eSDavid Greenman * The RFA struct is stuck at the beginning of mbuf cluster and the 2620a17c678eSDavid Greenman * data pointer is fixed up to point just past it. 2621a17c678eSDavid Greenman */ 2622a17c678eSDavid Greenman static int 262385050421SPyun YongHyeon fxp_new_rfabuf(struct fxp_softc *sc, struct fxp_rx *rxp) 2624a17c678eSDavid Greenman { 2625a17c678eSDavid Greenman struct mbuf *m; 262685050421SPyun YongHyeon struct fxp_rfa *rfa; 2627b2badf02SMaxime Henrion bus_dmamap_t tmp_map; 262885050421SPyun YongHyeon int error; 2629a17c678eSDavid Greenman 2630a163d034SWarner Losh m = m_getcl(M_DONTWAIT, MT_DATA, M_PKTHDR); 263185050421SPyun YongHyeon if (m == NULL) 263285050421SPyun YongHyeon return (ENOBUFS); 2633ba8c6fd5SDavid Greenman 2634ba8c6fd5SDavid Greenman /* 2635ba8c6fd5SDavid Greenman * Move the data pointer up so that the incoming data packet 2636ba8c6fd5SDavid Greenman * will be 32-bit aligned. 2637ba8c6fd5SDavid Greenman */ 2638ba8c6fd5SDavid Greenman m->m_data += RFA_ALIGNMENT_FUDGE; 2639ba8c6fd5SDavid Greenman 2640eadd5e3aSDavid Greenman /* 2641eadd5e3aSDavid Greenman * Get a pointer to the base of the mbuf cluster and move 2642eadd5e3aSDavid Greenman * data start past it. 2643eadd5e3aSDavid Greenman */ 2644a17c678eSDavid Greenman rfa = mtod(m, struct fxp_rfa *); 2645c8bca6dcSBill Paul m->m_data += sc->rfa_size; 264683e6547dSMaxime Henrion rfa->size = htole16(MCLBYTES - sc->rfa_size - RFA_ALIGNMENT_FUDGE); 2647eadd5e3aSDavid Greenman 2648a17c678eSDavid Greenman rfa->rfa_status = 0; 264983e6547dSMaxime Henrion rfa->rfa_control = htole16(FXP_RFA_CONTROL_EL); 2650a17c678eSDavid Greenman rfa->actual_size = 0; 265185050421SPyun YongHyeon m->m_len = m->m_pkthdr.len = MCLBYTES - RFA_ALIGNMENT_FUDGE - 265285050421SPyun YongHyeon sc->rfa_size; 2653ba8c6fd5SDavid Greenman 265428935f27SMaxime Henrion /* 265528935f27SMaxime Henrion * Initialize the rest of the RFA. Note that since the RFA 265628935f27SMaxime Henrion * is misaligned, we cannot store values directly. We're thus 265728935f27SMaxime Henrion * using the le32enc() function which handles endianness and 265828935f27SMaxime Henrion * is also alignment-safe. 265928935f27SMaxime Henrion */ 266083e6547dSMaxime Henrion le32enc(&rfa->link_addr, 0xffffffff); 266183e6547dSMaxime Henrion le32enc(&rfa->rbd_addr, 0xffffffff); 2662ba8c6fd5SDavid Greenman 2663b2badf02SMaxime Henrion /* Map the RFA into DMA memory. */ 2664a2057a72SPyun YongHyeon error = bus_dmamap_load(sc->fxp_rxmtag, sc->spare_map, rfa, 2665b2badf02SMaxime Henrion MCLBYTES - RFA_ALIGNMENT_FUDGE, fxp_dma_map_addr, 266601e3ef82SPyun YongHyeon &rxp->rx_addr, BUS_DMA_NOWAIT); 2667b2badf02SMaxime Henrion if (error) { 2668b2badf02SMaxime Henrion m_freem(m); 2669b2badf02SMaxime Henrion return (error); 2670b2badf02SMaxime Henrion } 2671b2badf02SMaxime Henrion 2672e2157cf7SPyun YongHyeon if (rxp->rx_mbuf != NULL) 2673a2057a72SPyun YongHyeon bus_dmamap_unload(sc->fxp_rxmtag, rxp->rx_map); 2674b2badf02SMaxime Henrion tmp_map = sc->spare_map; 2675b2badf02SMaxime Henrion sc->spare_map = rxp->rx_map; 2676b2badf02SMaxime Henrion rxp->rx_map = tmp_map; 2677b2badf02SMaxime Henrion rxp->rx_mbuf = m; 2678b2badf02SMaxime Henrion 2679a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_rxmtag, rxp->rx_map, 2680b983c7b3SMaxime Henrion BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 268185050421SPyun YongHyeon return (0); 268285050421SPyun YongHyeon } 268385050421SPyun YongHyeon 268485050421SPyun YongHyeon static void 268585050421SPyun YongHyeon fxp_add_rfabuf(struct fxp_softc *sc, struct fxp_rx *rxp) 268685050421SPyun YongHyeon { 268785050421SPyun YongHyeon struct fxp_rfa *p_rfa; 268885050421SPyun YongHyeon struct fxp_rx *p_rx; 2689b2badf02SMaxime Henrion 2690dfe61cf1SDavid Greenman /* 2691dfe61cf1SDavid Greenman * If there are other buffers already on the list, attach this 2692dfe61cf1SDavid Greenman * one to the end by fixing up the tail to point to this one. 2693dfe61cf1SDavid Greenman */ 2694b2badf02SMaxime Henrion if (sc->fxp_desc.rx_head != NULL) { 2695b2badf02SMaxime Henrion p_rx = sc->fxp_desc.rx_tail; 2696b2badf02SMaxime Henrion p_rfa = (struct fxp_rfa *) 2697b2badf02SMaxime Henrion (p_rx->rx_mbuf->m_ext.ext_buf + RFA_ALIGNMENT_FUDGE); 2698b2badf02SMaxime Henrion p_rx->rx_next = rxp; 269983e6547dSMaxime Henrion le32enc(&p_rfa->link_addr, rxp->rx_addr); 2700aed53495SDavid Greenman p_rfa->rfa_control = 0; 2701a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_rxmtag, p_rx->rx_map, 27024812aef5SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 2703a17c678eSDavid Greenman } else { 2704b2badf02SMaxime Henrion rxp->rx_next = NULL; 2705b2badf02SMaxime Henrion sc->fxp_desc.rx_head = rxp; 2706a17c678eSDavid Greenman } 2707b2badf02SMaxime Henrion sc->fxp_desc.rx_tail = rxp; 270885050421SPyun YongHyeon } 270985050421SPyun YongHyeon 271085050421SPyun YongHyeon static void 271185050421SPyun YongHyeon fxp_discard_rfabuf(struct fxp_softc *sc, struct fxp_rx *rxp) 271285050421SPyun YongHyeon { 271385050421SPyun YongHyeon struct mbuf *m; 271485050421SPyun YongHyeon struct fxp_rfa *rfa; 271585050421SPyun YongHyeon 271685050421SPyun YongHyeon m = rxp->rx_mbuf; 271785050421SPyun YongHyeon m->m_data = m->m_ext.ext_buf; 271885050421SPyun YongHyeon /* 271985050421SPyun YongHyeon * Move the data pointer up so that the incoming data packet 272085050421SPyun YongHyeon * will be 32-bit aligned. 272185050421SPyun YongHyeon */ 272285050421SPyun YongHyeon m->m_data += RFA_ALIGNMENT_FUDGE; 272385050421SPyun YongHyeon 272485050421SPyun YongHyeon /* 272585050421SPyun YongHyeon * Get a pointer to the base of the mbuf cluster and move 272685050421SPyun YongHyeon * data start past it. 272785050421SPyun YongHyeon */ 272885050421SPyun YongHyeon rfa = mtod(m, struct fxp_rfa *); 272985050421SPyun YongHyeon m->m_data += sc->rfa_size; 273085050421SPyun YongHyeon rfa->size = htole16(MCLBYTES - sc->rfa_size - RFA_ALIGNMENT_FUDGE); 273185050421SPyun YongHyeon 273285050421SPyun YongHyeon rfa->rfa_status = 0; 273385050421SPyun YongHyeon rfa->rfa_control = htole16(FXP_RFA_CONTROL_EL); 273485050421SPyun YongHyeon rfa->actual_size = 0; 273585050421SPyun YongHyeon 273685050421SPyun YongHyeon /* 273785050421SPyun YongHyeon * Initialize the rest of the RFA. Note that since the RFA 273885050421SPyun YongHyeon * is misaligned, we cannot store values directly. We're thus 273985050421SPyun YongHyeon * using the le32enc() function which handles endianness and 274085050421SPyun YongHyeon * is also alignment-safe. 274185050421SPyun YongHyeon */ 274285050421SPyun YongHyeon le32enc(&rfa->link_addr, 0xffffffff); 274385050421SPyun YongHyeon le32enc(&rfa->rbd_addr, 0xffffffff); 274485050421SPyun YongHyeon 2745a2057a72SPyun YongHyeon bus_dmamap_sync(sc->fxp_rxmtag, rxp->rx_map, 274685050421SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 2747a17c678eSDavid Greenman } 2748a17c678eSDavid Greenman 2749f1928b0cSKevin Lo static int 2750f7788e8eSJonathan Lemon fxp_miibus_readreg(device_t dev, int phy, int reg) 2751dccee1a1SDavid Greenman { 2752f7788e8eSJonathan Lemon struct fxp_softc *sc = device_get_softc(dev); 2753dccee1a1SDavid Greenman int count = 10000; 27546ebc3153SDavid Greenman int value; 2755dccee1a1SDavid Greenman 2756ba8c6fd5SDavid Greenman CSR_WRITE_4(sc, FXP_CSR_MDICONTROL, 2757ba8c6fd5SDavid Greenman (FXP_MDI_READ << 26) | (reg << 16) | (phy << 21)); 2758dccee1a1SDavid Greenman 2759ba8c6fd5SDavid Greenman while (((value = CSR_READ_4(sc, FXP_CSR_MDICONTROL)) & 0x10000000) == 0 2760ba8c6fd5SDavid Greenman && count--) 27616ebc3153SDavid Greenman DELAY(10); 2762dccee1a1SDavid Greenman 2763dccee1a1SDavid Greenman if (count <= 0) 2764f7788e8eSJonathan Lemon device_printf(dev, "fxp_miibus_readreg: timed out\n"); 2765dccee1a1SDavid Greenman 27666ebc3153SDavid Greenman return (value & 0xffff); 2767dccee1a1SDavid Greenman } 2768dccee1a1SDavid Greenman 276916ec4b00SWarner Losh static int 2770f7788e8eSJonathan Lemon fxp_miibus_writereg(device_t dev, int phy, int reg, int value) 2771dccee1a1SDavid Greenman { 2772f7788e8eSJonathan Lemon struct fxp_softc *sc = device_get_softc(dev); 2773dccee1a1SDavid Greenman int count = 10000; 2774dccee1a1SDavid Greenman 2775ba8c6fd5SDavid Greenman CSR_WRITE_4(sc, FXP_CSR_MDICONTROL, 2776ba8c6fd5SDavid Greenman (FXP_MDI_WRITE << 26) | (reg << 16) | (phy << 21) | 2777ba8c6fd5SDavid Greenman (value & 0xffff)); 2778dccee1a1SDavid Greenman 2779ba8c6fd5SDavid Greenman while ((CSR_READ_4(sc, FXP_CSR_MDICONTROL) & 0x10000000) == 0 && 2780ba8c6fd5SDavid Greenman count--) 27816ebc3153SDavid Greenman DELAY(10); 2782dccee1a1SDavid Greenman 2783dccee1a1SDavid Greenman if (count <= 0) 2784f7788e8eSJonathan Lemon device_printf(dev, "fxp_miibus_writereg: timed out\n"); 278516ec4b00SWarner Losh return (0); 2786dccee1a1SDavid Greenman } 2787dccee1a1SDavid Greenman 27881845b5c3SMarius Strobl static void 27891845b5c3SMarius Strobl fxp_miibus_statchg(device_t dev) 27901845b5c3SMarius Strobl { 27911845b5c3SMarius Strobl struct fxp_softc *sc; 27921845b5c3SMarius Strobl struct mii_data *mii; 27931845b5c3SMarius Strobl struct ifnet *ifp; 27941845b5c3SMarius Strobl 27951845b5c3SMarius Strobl sc = device_get_softc(dev); 27961845b5c3SMarius Strobl mii = device_get_softc(sc->miibus); 27971845b5c3SMarius Strobl ifp = sc->ifp; 27981845b5c3SMarius Strobl if (mii == NULL || ifp == NULL || 27991845b5c3SMarius Strobl (ifp->if_drv_flags & IFF_DRV_RUNNING) == 0 || 28001845b5c3SMarius Strobl (mii->mii_media_status & (IFM_AVALID | IFM_ACTIVE)) != 28011845b5c3SMarius Strobl (IFM_AVALID | IFM_ACTIVE)) 28021845b5c3SMarius Strobl return; 28031845b5c3SMarius Strobl 2804*c3f52a31SPyun YongHyeon if (IFM_SUBTYPE(mii->mii_media_active) == IFM_10_T && 2805*c3f52a31SPyun YongHyeon sc->flags & FXP_FLAG_CU_RESUME_BUG) 2806*c3f52a31SPyun YongHyeon sc->cu_resume_bug = 1; 2807*c3f52a31SPyun YongHyeon else 2808*c3f52a31SPyun YongHyeon sc->cu_resume_bug = 0; 28091845b5c3SMarius Strobl /* 28101845b5c3SMarius Strobl * Call fxp_init_body in order to adjust the flow control settings. 28111845b5c3SMarius Strobl * Note that the 82557 doesn't support hardware flow control. 28121845b5c3SMarius Strobl */ 28131845b5c3SMarius Strobl if (sc->revision == FXP_REV_82557) 28141845b5c3SMarius Strobl return; 28151845b5c3SMarius Strobl fxp_init_body(sc, 0); 28161845b5c3SMarius Strobl } 28171845b5c3SMarius Strobl 2818dccee1a1SDavid Greenman static int 2819f7788e8eSJonathan Lemon fxp_ioctl(struct ifnet *ifp, u_long command, caddr_t data) 2820a17c678eSDavid Greenman { 28219b44ff22SGarrett Wollman struct fxp_softc *sc = ifp->if_softc; 2822a17c678eSDavid Greenman struct ifreq *ifr = (struct ifreq *)data; 2823f7788e8eSJonathan Lemon struct mii_data *mii; 282460bb79ebSPyun YongHyeon int flag, mask, error = 0, reinit; 2825a17c678eSDavid Greenman 2826a17c678eSDavid Greenman switch (command) { 2827a17c678eSDavid Greenman case SIOCSIFFLAGS: 28283212724cSJohn Baldwin FXP_LOCK(sc); 2829a17c678eSDavid Greenman /* 2830a17c678eSDavid Greenman * If interface is marked up and not running, then start it. 2831a17c678eSDavid Greenman * If it is marked down and running, stop it. 2832a17c678eSDavid Greenman * XXX If it's up then re-initialize it. This is so flags 2833a17c678eSDavid Greenman * such as IFF_PROMISC are handled. 2834a17c678eSDavid Greenman */ 2835a17c678eSDavid Greenman if (ifp->if_flags & IFF_UP) { 28366b24912cSPyun YongHyeon if (((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) && 28376b24912cSPyun YongHyeon ((ifp->if_flags ^ sc->if_flags) & 28386b24912cSPyun YongHyeon (IFF_PROMISC | IFF_ALLMULTI | IFF_LINK0)) != 0) 2839a461b201SPyun YongHyeon fxp_init_body(sc, 0); 28406b24912cSPyun YongHyeon else if ((ifp->if_drv_flags & IFF_DRV_RUNNING) == 0) 28411845b5c3SMarius Strobl fxp_init_body(sc, 1); 2842a17c678eSDavid Greenman } else { 28436b24912cSPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 28444a5f1499SDavid Greenman fxp_stop(sc); 2845a17c678eSDavid Greenman } 28466b24912cSPyun YongHyeon sc->if_flags = ifp->if_flags; 28473212724cSJohn Baldwin FXP_UNLOCK(sc); 2848a17c678eSDavid Greenman break; 2849a17c678eSDavid Greenman 2850a17c678eSDavid Greenman case SIOCADDMULTI: 2851a17c678eSDavid Greenman case SIOCDELMULTI: 2852f6ff7180SPyun YongHyeon FXP_LOCK(sc); 28536b24912cSPyun YongHyeon if ((ifp->if_drv_flags & IFF_DRV_RUNNING) != 0) 2854f6ff7180SPyun YongHyeon fxp_init_body(sc, 0); 2855f6ff7180SPyun YongHyeon FXP_UNLOCK(sc); 2856ba8c6fd5SDavid Greenman break; 2857ba8c6fd5SDavid Greenman 2858ba8c6fd5SDavid Greenman case SIOCSIFMEDIA: 2859ba8c6fd5SDavid Greenman case SIOCGIFMEDIA: 2860f7788e8eSJonathan Lemon if (sc->miibus != NULL) { 2861f7788e8eSJonathan Lemon mii = device_get_softc(sc->miibus); 2862f7788e8eSJonathan Lemon error = ifmedia_ioctl(ifp, ifr, 2863f7788e8eSJonathan Lemon &mii->mii_media, command); 2864f7788e8eSJonathan Lemon } else { 2865ba8c6fd5SDavid Greenman error = ifmedia_ioctl(ifp, ifr, &sc->sc_media, command); 2866f7788e8eSJonathan Lemon } 2867a17c678eSDavid Greenman break; 2868a17c678eSDavid Greenman 2869fb917226SRuslan Ermilov case SIOCSIFCAP: 287060bb79ebSPyun YongHyeon reinit = 0; 28718ef1f631SYaroslav Tykhiy mask = ifp->if_capenable ^ ifr->ifr_reqcap; 287240929967SGleb Smirnoff #ifdef DEVICE_POLLING 287340929967SGleb Smirnoff if (mask & IFCAP_POLLING) { 287440929967SGleb Smirnoff if (ifr->ifr_reqcap & IFCAP_POLLING) { 287540929967SGleb Smirnoff error = ether_poll_register(fxp_poll, ifp); 287640929967SGleb Smirnoff if (error) 287740929967SGleb Smirnoff return(error); 287840929967SGleb Smirnoff FXP_LOCK(sc); 287940929967SGleb Smirnoff CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, 288040929967SGleb Smirnoff FXP_SCB_INTR_DISABLE); 288140929967SGleb Smirnoff ifp->if_capenable |= IFCAP_POLLING; 288240929967SGleb Smirnoff FXP_UNLOCK(sc); 288340929967SGleb Smirnoff } else { 288440929967SGleb Smirnoff error = ether_poll_deregister(ifp); 288540929967SGleb Smirnoff /* Enable interrupts in any case */ 288640929967SGleb Smirnoff FXP_LOCK(sc); 288740929967SGleb Smirnoff CSR_WRITE_1(sc, FXP_CSR_SCB_INTRCNTL, 0); 288840929967SGleb Smirnoff ifp->if_capenable &= ~IFCAP_POLLING; 288940929967SGleb Smirnoff FXP_UNLOCK(sc); 289040929967SGleb Smirnoff } 289140929967SGleb Smirnoff } 289240929967SGleb Smirnoff #endif 289340929967SGleb Smirnoff FXP_LOCK(sc); 289460bb79ebSPyun YongHyeon if ((mask & IFCAP_TXCSUM) != 0 && 289560bb79ebSPyun YongHyeon (ifp->if_capabilities & IFCAP_TXCSUM) != 0) { 289660bb79ebSPyun YongHyeon ifp->if_capenable ^= IFCAP_TXCSUM; 289760bb79ebSPyun YongHyeon if ((ifp->if_capenable & IFCAP_TXCSUM) != 0) 289860bb79ebSPyun YongHyeon ifp->if_hwassist |= FXP_CSUM_FEATURES; 289960bb79ebSPyun YongHyeon else 290060bb79ebSPyun YongHyeon ifp->if_hwassist &= ~FXP_CSUM_FEATURES; 290160bb79ebSPyun YongHyeon } 290260bb79ebSPyun YongHyeon if ((mask & IFCAP_RXCSUM) != 0 && 2903f13075afSPyun YongHyeon (ifp->if_capabilities & IFCAP_RXCSUM) != 0) { 290460bb79ebSPyun YongHyeon ifp->if_capenable ^= IFCAP_RXCSUM; 2905f13075afSPyun YongHyeon if ((sc->flags & FXP_FLAG_82559_RXCSUM) != 0) 2906f13075afSPyun YongHyeon reinit++; 2907f13075afSPyun YongHyeon } 2908c21e84e4SPyun YongHyeon if ((mask & IFCAP_TSO4) != 0 && 2909c21e84e4SPyun YongHyeon (ifp->if_capabilities & IFCAP_TSO4) != 0) { 2910c21e84e4SPyun YongHyeon ifp->if_capenable ^= IFCAP_TSO4; 2911c21e84e4SPyun YongHyeon if ((ifp->if_capenable & IFCAP_TSO4) != 0) 2912c21e84e4SPyun YongHyeon ifp->if_hwassist |= CSUM_TSO; 2913c21e84e4SPyun YongHyeon else 2914c21e84e4SPyun YongHyeon ifp->if_hwassist &= ~CSUM_TSO; 2915c21e84e4SPyun YongHyeon } 29167137cea0SPyun YongHyeon if ((mask & IFCAP_WOL_MAGIC) != 0 && 29177137cea0SPyun YongHyeon (ifp->if_capabilities & IFCAP_WOL_MAGIC) != 0) 29187137cea0SPyun YongHyeon ifp->if_capenable ^= IFCAP_WOL_MAGIC; 291960bb79ebSPyun YongHyeon if ((mask & IFCAP_VLAN_MTU) != 0 && 292060bb79ebSPyun YongHyeon (ifp->if_capabilities & IFCAP_VLAN_MTU) != 0) { 29218ef1f631SYaroslav Tykhiy ifp->if_capenable ^= IFCAP_VLAN_MTU; 29228ef1f631SYaroslav Tykhiy if (sc->revision != FXP_REV_82557) 29238ef1f631SYaroslav Tykhiy flag = FXP_FLAG_LONG_PKT_EN; 29248ef1f631SYaroslav Tykhiy else /* a hack to get long frames on the old chip */ 29258ef1f631SYaroslav Tykhiy flag = FXP_FLAG_SAVE_BAD; 29268ef1f631SYaroslav Tykhiy sc->flags ^= flag; 29278ef1f631SYaroslav Tykhiy if (ifp->if_flags & IFF_UP) 292860bb79ebSPyun YongHyeon reinit++; 292960bb79ebSPyun YongHyeon } 2930713ca255SPyun YongHyeon if ((mask & IFCAP_VLAN_HWCSUM) != 0 && 2931713ca255SPyun YongHyeon (ifp->if_capabilities & IFCAP_VLAN_HWCSUM) != 0) 2932713ca255SPyun YongHyeon ifp->if_capenable ^= IFCAP_VLAN_HWCSUM; 2933713ca255SPyun YongHyeon if ((mask & IFCAP_VLAN_HWTSO) != 0 && 2934713ca255SPyun YongHyeon (ifp->if_capabilities & IFCAP_VLAN_HWTSO) != 0) 2935713ca255SPyun YongHyeon ifp->if_capenable ^= IFCAP_VLAN_HWTSO; 2936bd4fa9d9SPyun YongHyeon if ((mask & IFCAP_VLAN_HWTAGGING) != 0 && 2937bd4fa9d9SPyun YongHyeon (ifp->if_capabilities & IFCAP_VLAN_HWTAGGING) != 0) { 2938bd4fa9d9SPyun YongHyeon ifp->if_capenable ^= IFCAP_VLAN_HWTAGGING; 2939713ca255SPyun YongHyeon if ((ifp->if_capenable & IFCAP_VLAN_HWTAGGING) == 0) 2940713ca255SPyun YongHyeon ifp->if_capenable &= 2941713ca255SPyun YongHyeon ~(IFCAP_VLAN_HWTSO | IFCAP_VLAN_HWCSUM); 2942bd4fa9d9SPyun YongHyeon reinit++; 2943bd4fa9d9SPyun YongHyeon } 2944bd4fa9d9SPyun YongHyeon if (reinit > 0 && ifp->if_flags & IFF_UP) 2945a461b201SPyun YongHyeon fxp_init_body(sc, 0); 29463212724cSJohn Baldwin FXP_UNLOCK(sc); 2947bd4fa9d9SPyun YongHyeon VLAN_CAPABILITIES(ifp); 2948fb917226SRuslan Ermilov break; 2949fb917226SRuslan Ermilov 2950a17c678eSDavid Greenman default: 2951673d9191SSam Leffler error = ether_ioctl(ifp, command, data); 2952a17c678eSDavid Greenman } 2953a17c678eSDavid Greenman return (error); 2954a17c678eSDavid Greenman } 2955397f9dfeSDavid Greenman 2956397f9dfeSDavid Greenman /* 295709882363SJonathan Lemon * Fill in the multicast address list and return number of entries. 295809882363SJonathan Lemon */ 295909882363SJonathan Lemon static int 296009882363SJonathan Lemon fxp_mc_addrs(struct fxp_softc *sc) 296109882363SJonathan Lemon { 296209882363SJonathan Lemon struct fxp_cb_mcs *mcsp = sc->mcsp; 2963fc74a9f9SBrooks Davis struct ifnet *ifp = sc->ifp; 296409882363SJonathan Lemon struct ifmultiaddr *ifma; 296509882363SJonathan Lemon int nmcasts; 296609882363SJonathan Lemon 296709882363SJonathan Lemon nmcasts = 0; 29686b24912cSPyun YongHyeon if ((ifp->if_flags & IFF_ALLMULTI) == 0) { 2969eb956cd0SRobert Watson if_maddr_rlock(ifp); 297009882363SJonathan Lemon TAILQ_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 297109882363SJonathan Lemon if (ifma->ifma_addr->sa_family != AF_LINK) 297209882363SJonathan Lemon continue; 297309882363SJonathan Lemon if (nmcasts >= MAXMCADDR) { 29746b24912cSPyun YongHyeon ifp->if_flags |= IFF_ALLMULTI; 297509882363SJonathan Lemon nmcasts = 0; 297609882363SJonathan Lemon break; 297709882363SJonathan Lemon } 297809882363SJonathan Lemon bcopy(LLADDR((struct sockaddr_dl *)ifma->ifma_addr), 2979bafb64afSMaxime Henrion &sc->mcsp->mc_addr[nmcasts][0], ETHER_ADDR_LEN); 298009882363SJonathan Lemon nmcasts++; 298109882363SJonathan Lemon } 2982eb956cd0SRobert Watson if_maddr_runlock(ifp); 298309882363SJonathan Lemon } 2984bafb64afSMaxime Henrion mcsp->mc_cnt = htole16(nmcasts * ETHER_ADDR_LEN); 298509882363SJonathan Lemon return (nmcasts); 298609882363SJonathan Lemon } 298709882363SJonathan Lemon 298809882363SJonathan Lemon /* 2989397f9dfeSDavid Greenman * Program the multicast filter. 2990397f9dfeSDavid Greenman * 2991397f9dfeSDavid Greenman * We have an artificial restriction that the multicast setup command 2992397f9dfeSDavid Greenman * must be the first command in the chain, so we take steps to ensure 29933114fdb4SDavid Greenman * this. By requiring this, it allows us to keep up the performance of 2994397f9dfeSDavid Greenman * the pre-initialized command ring (esp. link pointers) by not actually 2995dc733423SDag-Erling Smørgrav * inserting the mcsetup command in the ring - i.e. its link pointer 2996397f9dfeSDavid Greenman * points to the TxCB ring, but the mcsetup descriptor itself is not part 2997397f9dfeSDavid Greenman * of it. We then can do 'CU_START' on the mcsetup descriptor and have it 2998397f9dfeSDavid Greenman * lead into the regular TxCB ring when it completes. 2999397f9dfeSDavid Greenman */ 3000397f9dfeSDavid Greenman static void 3001f7788e8eSJonathan Lemon fxp_mc_setup(struct fxp_softc *sc) 3002397f9dfeSDavid Greenman { 30036b24912cSPyun YongHyeon struct fxp_cb_mcs *mcsp; 30047dced78aSDavid Greenman int count; 3005397f9dfeSDavid Greenman 300667fc050fSMaxime Henrion FXP_LOCK_ASSERT(sc, MA_OWNED); 30073114fdb4SDavid Greenman 30086b24912cSPyun YongHyeon mcsp = sc->mcsp; 3009397f9dfeSDavid Greenman mcsp->cb_status = 0; 30106b24912cSPyun YongHyeon mcsp->cb_command = htole16(FXP_CB_COMMAND_MCAS | FXP_CB_COMMAND_EL); 30116b24912cSPyun YongHyeon mcsp->link_addr = 0xffffffff; 30126b24912cSPyun YongHyeon fxp_mc_addrs(sc); 3013397f9dfeSDavid Greenman 3014397f9dfeSDavid Greenman /* 30156b24912cSPyun YongHyeon * Wait until command unit is idle. This should never be the 30166b24912cSPyun YongHyeon * case when nothing is queued, but make sure anyway. 3017397f9dfeSDavid Greenman */ 30187dced78aSDavid Greenman count = 100; 30196b24912cSPyun YongHyeon while ((CSR_READ_1(sc, FXP_CSR_SCB_RUSCUS) >> 6) != 30206b24912cSPyun YongHyeon FXP_SCB_CUS_IDLE && --count) 30217dced78aSDavid Greenman DELAY(10); 30227dced78aSDavid Greenman if (count == 0) { 3023f7788e8eSJonathan Lemon device_printf(sc->dev, "command queue timeout\n"); 30247dced78aSDavid Greenman return; 30257dced78aSDavid Greenman } 3026397f9dfeSDavid Greenman 3027397f9dfeSDavid Greenman /* 3028397f9dfeSDavid Greenman * Start the multicast setup command. 3029397f9dfeSDavid Greenman */ 3030397f9dfeSDavid Greenman fxp_scb_wait(sc); 3031a2057a72SPyun YongHyeon bus_dmamap_sync(sc->mcs_tag, sc->mcs_map, 3032a2057a72SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 3033b2badf02SMaxime Henrion CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->mcs_addr); 30342e2b8238SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START); 30356b24912cSPyun YongHyeon /* ...and wait for it to complete. */ 30366b24912cSPyun YongHyeon fxp_dma_wait(sc, &mcsp->cb_status, sc->mcs_tag, sc->mcs_map); 3037397f9dfeSDavid Greenman } 303872a32a26SJonathan Lemon 303974d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101a[] = D101_A_RCVBUNDLE_UCODE; 304074d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101b0[] = D101_B0_RCVBUNDLE_UCODE; 304174d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101ma[] = D101M_B_RCVBUNDLE_UCODE; 304274d1ed23SMaxime Henrion static uint32_t fxp_ucode_d101s[] = D101S_RCVBUNDLE_UCODE; 304374d1ed23SMaxime Henrion static uint32_t fxp_ucode_d102[] = D102_B_RCVBUNDLE_UCODE; 304474d1ed23SMaxime Henrion static uint32_t fxp_ucode_d102c[] = D102_C_RCVBUNDLE_UCODE; 3045de571603SMaxime Henrion static uint32_t fxp_ucode_d102e[] = D102_E_RCVBUNDLE_UCODE; 304672a32a26SJonathan Lemon 304774d1ed23SMaxime Henrion #define UCODE(x) x, sizeof(x)/sizeof(uint32_t) 304872a32a26SJonathan Lemon 3049e0fe5c6dSMarius Strobl static const struct ucode { 305074d1ed23SMaxime Henrion uint32_t revision; 305174d1ed23SMaxime Henrion uint32_t *ucode; 305272a32a26SJonathan Lemon int length; 305372a32a26SJonathan Lemon u_short int_delay_offset; 305472a32a26SJonathan Lemon u_short bundle_max_offset; 3055e0fe5c6dSMarius Strobl } const ucode_table[] = { 305672a32a26SJonathan Lemon { FXP_REV_82558_A4, UCODE(fxp_ucode_d101a), D101_CPUSAVER_DWORD, 0 }, 305772a32a26SJonathan Lemon { FXP_REV_82558_B0, UCODE(fxp_ucode_d101b0), D101_CPUSAVER_DWORD, 0 }, 305872a32a26SJonathan Lemon { FXP_REV_82559_A0, UCODE(fxp_ucode_d101ma), 305972a32a26SJonathan Lemon D101M_CPUSAVER_DWORD, D101M_CPUSAVER_BUNDLE_MAX_DWORD }, 306072a32a26SJonathan Lemon { FXP_REV_82559S_A, UCODE(fxp_ucode_d101s), 306172a32a26SJonathan Lemon D101S_CPUSAVER_DWORD, D101S_CPUSAVER_BUNDLE_MAX_DWORD }, 306272a32a26SJonathan Lemon { FXP_REV_82550, UCODE(fxp_ucode_d102), 306372a32a26SJonathan Lemon D102_B_CPUSAVER_DWORD, D102_B_CPUSAVER_BUNDLE_MAX_DWORD }, 306472a32a26SJonathan Lemon { FXP_REV_82550_C, UCODE(fxp_ucode_d102c), 306572a32a26SJonathan Lemon D102_C_CPUSAVER_DWORD, D102_C_CPUSAVER_BUNDLE_MAX_DWORD }, 3066507feeafSMaxime Henrion { FXP_REV_82551_F, UCODE(fxp_ucode_d102e), 3067de571603SMaxime Henrion D102_E_CPUSAVER_DWORD, D102_E_CPUSAVER_BUNDLE_MAX_DWORD }, 306850df388dSPyun YongHyeon { FXP_REV_82551_10, UCODE(fxp_ucode_d102e), 306950df388dSPyun YongHyeon D102_E_CPUSAVER_DWORD, D102_E_CPUSAVER_BUNDLE_MAX_DWORD }, 307072a32a26SJonathan Lemon { 0, NULL, 0, 0, 0 } 307172a32a26SJonathan Lemon }; 307272a32a26SJonathan Lemon 307372a32a26SJonathan Lemon static void 307472a32a26SJonathan Lemon fxp_load_ucode(struct fxp_softc *sc) 307572a32a26SJonathan Lemon { 3076e0fe5c6dSMarius Strobl const struct ucode *uc; 307772a32a26SJonathan Lemon struct fxp_cb_ucode *cbp; 307894a4f968SPyun YongHyeon int i; 307972a32a26SJonathan Lemon 30801343a72fSPyun YongHyeon if (sc->flags & FXP_FLAG_NO_UCODE) 30811343a72fSPyun YongHyeon return; 30821343a72fSPyun YongHyeon 308372a32a26SJonathan Lemon for (uc = ucode_table; uc->ucode != NULL; uc++) 308472a32a26SJonathan Lemon if (sc->revision == uc->revision) 308572a32a26SJonathan Lemon break; 308672a32a26SJonathan Lemon if (uc->ucode == NULL) 308772a32a26SJonathan Lemon return; 3088b2badf02SMaxime Henrion cbp = (struct fxp_cb_ucode *)sc->fxp_desc.cbl_list; 308972a32a26SJonathan Lemon cbp->cb_status = 0; 309083e6547dSMaxime Henrion cbp->cb_command = htole16(FXP_CB_COMMAND_UCODE | FXP_CB_COMMAND_EL); 309183e6547dSMaxime Henrion cbp->link_addr = 0xffffffff; /* (no) next command */ 309294a4f968SPyun YongHyeon for (i = 0; i < uc->length; i++) 309394a4f968SPyun YongHyeon cbp->ucode[i] = htole32(uc->ucode[i]); 309472a32a26SJonathan Lemon if (uc->int_delay_offset) 309574d1ed23SMaxime Henrion *(uint16_t *)&cbp->ucode[uc->int_delay_offset] = 309683e6547dSMaxime Henrion htole16(sc->tunable_int_delay + sc->tunable_int_delay / 2); 309772a32a26SJonathan Lemon if (uc->bundle_max_offset) 309874d1ed23SMaxime Henrion *(uint16_t *)&cbp->ucode[uc->bundle_max_offset] = 309983e6547dSMaxime Henrion htole16(sc->tunable_bundle_max); 310072a32a26SJonathan Lemon /* 310172a32a26SJonathan Lemon * Download the ucode to the chip. 310272a32a26SJonathan Lemon */ 310372a32a26SJonathan Lemon fxp_scb_wait(sc); 31045986d0d2SPyun YongHyeon bus_dmamap_sync(sc->cbl_tag, sc->cbl_map, 31055986d0d2SPyun YongHyeon BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE); 3106b2badf02SMaxime Henrion CSR_WRITE_4(sc, FXP_CSR_SCB_GENERAL, sc->fxp_desc.cbl_addr); 310772a32a26SJonathan Lemon fxp_scb_cmd(sc, FXP_SCB_COMMAND_CU_START); 310872a32a26SJonathan Lemon /* ...and wait for it to complete. */ 3109209b07bcSMaxime Henrion fxp_dma_wait(sc, &cbp->cb_status, sc->cbl_tag, sc->cbl_map); 311072a32a26SJonathan Lemon device_printf(sc->dev, 311172a32a26SJonathan Lemon "Microcode loaded, int_delay: %d usec bundle_max: %d\n", 311272a32a26SJonathan Lemon sc->tunable_int_delay, 311372a32a26SJonathan Lemon uc->bundle_max_offset == 0 ? 0 : sc->tunable_bundle_max); 311472a32a26SJonathan Lemon sc->flags |= FXP_FLAG_UCODE; 31151343a72fSPyun YongHyeon bzero(cbp, FXP_TXCB_SZ); 311672a32a26SJonathan Lemon } 311772a32a26SJonathan Lemon 31188da9c507SPyun YongHyeon #define FXP_SYSCTL_STAT_ADD(c, h, n, p, d) \ 31198da9c507SPyun YongHyeon SYSCTL_ADD_UINT(c, h, OID_AUTO, n, CTLFLAG_RD, p, 0, d) 31208da9c507SPyun YongHyeon 31218da9c507SPyun YongHyeon static void 31228da9c507SPyun YongHyeon fxp_sysctl_node(struct fxp_softc *sc) 31238da9c507SPyun YongHyeon { 31248da9c507SPyun YongHyeon struct sysctl_ctx_list *ctx; 31258da9c507SPyun YongHyeon struct sysctl_oid_list *child, *parent; 31268da9c507SPyun YongHyeon struct sysctl_oid *tree; 31278da9c507SPyun YongHyeon struct fxp_hwstats *hsp; 31288da9c507SPyun YongHyeon 31298da9c507SPyun YongHyeon ctx = device_get_sysctl_ctx(sc->dev); 31308da9c507SPyun YongHyeon child = SYSCTL_CHILDREN(device_get_sysctl_tree(sc->dev)); 31318da9c507SPyun YongHyeon 31328da9c507SPyun YongHyeon SYSCTL_ADD_PROC(ctx, child, 31338da9c507SPyun YongHyeon OID_AUTO, "int_delay", CTLTYPE_INT | CTLFLAG_RW, 31348da9c507SPyun YongHyeon &sc->tunable_int_delay, 0, sysctl_hw_fxp_int_delay, "I", 31358da9c507SPyun YongHyeon "FXP driver receive interrupt microcode bundling delay"); 31368da9c507SPyun YongHyeon SYSCTL_ADD_PROC(ctx, child, 31378da9c507SPyun YongHyeon OID_AUTO, "bundle_max", CTLTYPE_INT | CTLFLAG_RW, 31388da9c507SPyun YongHyeon &sc->tunable_bundle_max, 0, sysctl_hw_fxp_bundle_max, "I", 31398da9c507SPyun YongHyeon "FXP driver receive interrupt microcode bundle size limit"); 31408da9c507SPyun YongHyeon SYSCTL_ADD_INT(ctx, child,OID_AUTO, "rnr", CTLFLAG_RD, &sc->rnr, 0, 31418da9c507SPyun YongHyeon "FXP RNR events"); 31428da9c507SPyun YongHyeon 31438da9c507SPyun YongHyeon /* 31448da9c507SPyun YongHyeon * Pull in device tunables. 31458da9c507SPyun YongHyeon */ 31468da9c507SPyun YongHyeon sc->tunable_int_delay = TUNABLE_INT_DELAY; 31478da9c507SPyun YongHyeon sc->tunable_bundle_max = TUNABLE_BUNDLE_MAX; 31488da9c507SPyun YongHyeon (void) resource_int_value(device_get_name(sc->dev), 31498da9c507SPyun YongHyeon device_get_unit(sc->dev), "int_delay", &sc->tunable_int_delay); 31508da9c507SPyun YongHyeon (void) resource_int_value(device_get_name(sc->dev), 31518da9c507SPyun YongHyeon device_get_unit(sc->dev), "bundle_max", &sc->tunable_bundle_max); 31528da9c507SPyun YongHyeon sc->rnr = 0; 31538da9c507SPyun YongHyeon 31548da9c507SPyun YongHyeon hsp = &sc->fxp_hwstats; 31558da9c507SPyun YongHyeon tree = SYSCTL_ADD_NODE(ctx, child, OID_AUTO, "stats", CTLFLAG_RD, 31568da9c507SPyun YongHyeon NULL, "FXP statistics"); 31578da9c507SPyun YongHyeon parent = SYSCTL_CHILDREN(tree); 31588da9c507SPyun YongHyeon 31598da9c507SPyun YongHyeon /* Rx MAC statistics. */ 31608da9c507SPyun YongHyeon tree = SYSCTL_ADD_NODE(ctx, parent, OID_AUTO, "rx", CTLFLAG_RD, 31618da9c507SPyun YongHyeon NULL, "Rx MAC statistics"); 31628da9c507SPyun YongHyeon child = SYSCTL_CHILDREN(tree); 31638da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "good_frames", 31648da9c507SPyun YongHyeon &hsp->rx_good, "Good frames"); 31658da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "crc_errors", 31668da9c507SPyun YongHyeon &hsp->rx_crc_errors, "CRC errors"); 31678da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "alignment_errors", 31688da9c507SPyun YongHyeon &hsp->rx_alignment_errors, "Alignment errors"); 31698da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "rnr_errors", 31708da9c507SPyun YongHyeon &hsp->rx_rnr_errors, "RNR errors"); 31718da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "overrun_errors", 31728da9c507SPyun YongHyeon &hsp->rx_overrun_errors, "Overrun errors"); 31738da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "cdt_errors", 31748da9c507SPyun YongHyeon &hsp->rx_cdt_errors, "Collision detect errors"); 31758da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "shortframes", 31768da9c507SPyun YongHyeon &hsp->rx_shortframes, "Short frame errors"); 31778da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82558_A4) { 31788da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "pause", 31798da9c507SPyun YongHyeon &hsp->rx_pause, "Pause frames"); 31808da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "controls", 31818da9c507SPyun YongHyeon &hsp->rx_controls, "Unsupported control frames"); 31828da9c507SPyun YongHyeon } 31838da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82559_A0) 31848da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "tco", 31858da9c507SPyun YongHyeon &hsp->rx_tco, "TCO frames"); 31868da9c507SPyun YongHyeon 31878da9c507SPyun YongHyeon /* Tx MAC statistics. */ 31888da9c507SPyun YongHyeon tree = SYSCTL_ADD_NODE(ctx, parent, OID_AUTO, "tx", CTLFLAG_RD, 31898da9c507SPyun YongHyeon NULL, "Tx MAC statistics"); 31908da9c507SPyun YongHyeon child = SYSCTL_CHILDREN(tree); 31918da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "good_frames", 31928da9c507SPyun YongHyeon &hsp->tx_good, "Good frames"); 31938da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "maxcols", 31948da9c507SPyun YongHyeon &hsp->tx_maxcols, "Maximum collisions errors"); 31958da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "latecols", 31968da9c507SPyun YongHyeon &hsp->tx_latecols, "Late collisions errors"); 31978da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "underruns", 31988da9c507SPyun YongHyeon &hsp->tx_underruns, "Underrun errors"); 31998da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "lostcrs", 32008da9c507SPyun YongHyeon &hsp->tx_lostcrs, "Lost carrier sense"); 32018da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "deffered", 32028da9c507SPyun YongHyeon &hsp->tx_deffered, "Deferred"); 32038da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "single_collisions", 32048da9c507SPyun YongHyeon &hsp->tx_single_collisions, "Single collisions"); 32058da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "multiple_collisions", 32068da9c507SPyun YongHyeon &hsp->tx_multiple_collisions, "Multiple collisions"); 32078da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "total_collisions", 32088da9c507SPyun YongHyeon &hsp->tx_total_collisions, "Total collisions"); 32098da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82558_A4) 32108da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "pause", 32118da9c507SPyun YongHyeon &hsp->tx_pause, "Pause frames"); 32128da9c507SPyun YongHyeon if (sc->revision >= FXP_REV_82559_A0) 32138da9c507SPyun YongHyeon FXP_SYSCTL_STAT_ADD(ctx, child, "tco", 32148da9c507SPyun YongHyeon &hsp->tx_tco, "TCO frames"); 32158da9c507SPyun YongHyeon } 32168da9c507SPyun YongHyeon 32178da9c507SPyun YongHyeon #undef FXP_SYSCTL_STAT_ADD 32188da9c507SPyun YongHyeon 321972a32a26SJonathan Lemon static int 322072a32a26SJonathan Lemon sysctl_int_range(SYSCTL_HANDLER_ARGS, int low, int high) 322172a32a26SJonathan Lemon { 322272a32a26SJonathan Lemon int error, value; 322372a32a26SJonathan Lemon 322472a32a26SJonathan Lemon value = *(int *)arg1; 322572a32a26SJonathan Lemon error = sysctl_handle_int(oidp, &value, 0, req); 322672a32a26SJonathan Lemon if (error || !req->newptr) 322772a32a26SJonathan Lemon return (error); 322872a32a26SJonathan Lemon if (value < low || value > high) 322972a32a26SJonathan Lemon return (EINVAL); 323072a32a26SJonathan Lemon *(int *)arg1 = value; 323172a32a26SJonathan Lemon return (0); 323272a32a26SJonathan Lemon } 323372a32a26SJonathan Lemon 323472a32a26SJonathan Lemon /* 323572a32a26SJonathan Lemon * Interrupt delay is expressed in microseconds, a multiplier is used 323672a32a26SJonathan Lemon * to convert this to the appropriate clock ticks before using. 323772a32a26SJonathan Lemon */ 323872a32a26SJonathan Lemon static int 323972a32a26SJonathan Lemon sysctl_hw_fxp_int_delay(SYSCTL_HANDLER_ARGS) 324072a32a26SJonathan Lemon { 3241e0fe5c6dSMarius Strobl 324272a32a26SJonathan Lemon return (sysctl_int_range(oidp, arg1, arg2, req, 300, 3000)); 324372a32a26SJonathan Lemon } 324472a32a26SJonathan Lemon 324572a32a26SJonathan Lemon static int 324672a32a26SJonathan Lemon sysctl_hw_fxp_bundle_max(SYSCTL_HANDLER_ARGS) 324772a32a26SJonathan Lemon { 3248e0fe5c6dSMarius Strobl 324972a32a26SJonathan Lemon return (sysctl_int_range(oidp, arg1, arg2, req, 1, 0xffff)); 325072a32a26SJonathan Lemon } 3251