1c3aac50fSPeter Wemm /* $FreeBSD$ */ 265adb54cSMatt Jacob /* 365adb54cSMatt Jacob * PCI specific probe and attach routines for Qlogic ISP SCSI adapters. 465adb54cSMatt Jacob * FreeBSD Version. 565adb54cSMatt Jacob * 65f5aafe1SMatt Jacob * Copyright (c) 1997, 1998, 1999, 2000, 2001 by Matthew Jacob 765adb54cSMatt Jacob * 865adb54cSMatt Jacob * Redistribution and use in source and binary forms, with or without 965adb54cSMatt Jacob * modification, are permitted provided that the following conditions 1065adb54cSMatt Jacob * are met: 1165adb54cSMatt Jacob * 1. Redistributions of source code must retain the above copyright 1265adb54cSMatt Jacob * notice immediately at the beginning of the file, without modification, 1365adb54cSMatt Jacob * this list of conditions, and the following disclaimer. 14aa57fd6fSMatt Jacob * 2. The name of the author may not be used to endorse or promote products 15aa57fd6fSMatt Jacob * derived from this software without specific prior written permission. 1665adb54cSMatt Jacob * 1765adb54cSMatt Jacob * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND 1865adb54cSMatt Jacob * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 1965adb54cSMatt Jacob * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 2065adb54cSMatt Jacob * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR 2165adb54cSMatt Jacob * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 2265adb54cSMatt Jacob * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 2365adb54cSMatt Jacob * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 2465adb54cSMatt Jacob * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 2565adb54cSMatt Jacob * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 2665adb54cSMatt Jacob * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 2765adb54cSMatt Jacob * SUCH DAMAGE. 2865adb54cSMatt Jacob */ 29d720e6d5SJustin T. Gibbs 30960f6939SMatt Jacob #include <sys/param.h> 31960f6939SMatt Jacob #include <sys/systm.h> 32960f6939SMatt Jacob #include <sys/kernel.h> 33960f6939SMatt Jacob #include <sys/module.h> 34960f6939SMatt Jacob #include <sys/bus.h> 3565adb54cSMatt Jacob 3665adb54cSMatt Jacob #include <pci/pcireg.h> 3765adb54cSMatt Jacob #include <pci/pcivar.h> 3865adb54cSMatt Jacob 39d720e6d5SJustin T. Gibbs #include <machine/bus_memio.h> 40d720e6d5SJustin T. Gibbs #include <machine/bus_pio.h> 41d720e6d5SJustin T. Gibbs #include <machine/bus.h> 42960f6939SMatt Jacob #include <machine/resource.h> 43960f6939SMatt Jacob #include <sys/rman.h> 44960f6939SMatt Jacob #include <sys/malloc.h> 45960f6939SMatt Jacob 46960f6939SMatt Jacob #include <dev/isp/isp_freebsd.h> 47d59bd469SMatt Jacob 48126ec864SMatt Jacob static u_int16_t isp_pci_rd_reg(struct ispsoftc *, int); 49126ec864SMatt Jacob static void isp_pci_wr_reg(struct ispsoftc *, int, u_int16_t); 50126ec864SMatt Jacob static u_int16_t isp_pci_rd_reg_1080(struct ispsoftc *, int); 51126ec864SMatt Jacob static void isp_pci_wr_reg_1080(struct ispsoftc *, int, u_int16_t); 52126ec864SMatt Jacob static int 53126ec864SMatt Jacob isp_pci_rd_isr(struct ispsoftc *, u_int16_t *, u_int16_t *, u_int16_t *); 54126ec864SMatt Jacob static int 55126ec864SMatt Jacob isp_pci_rd_isr_2300(struct ispsoftc *, u_int16_t *, u_int16_t *, u_int16_t *); 56126ec864SMatt Jacob static int isp_pci_mbxdma(struct ispsoftc *); 57126ec864SMatt Jacob static int 58126ec864SMatt Jacob isp_pci_dmasetup(struct ispsoftc *, XS_T *, ispreq_t *, u_int16_t *, u_int16_t); 59d720e6d5SJustin T. Gibbs static void 60126ec864SMatt Jacob isp_pci_dmateardown(struct ispsoftc *, XS_T *, u_int16_t); 6165adb54cSMatt Jacob 62126ec864SMatt Jacob static void isp_pci_reset1(struct ispsoftc *); 63126ec864SMatt Jacob static void isp_pci_dumpregs(struct ispsoftc *, const char *); 6465adb54cSMatt Jacob 6565adb54cSMatt Jacob static struct ispmdvec mdvec = { 66126ec864SMatt Jacob isp_pci_rd_isr, 6765adb54cSMatt Jacob isp_pci_rd_reg, 6865adb54cSMatt Jacob isp_pci_wr_reg, 6965adb54cSMatt Jacob isp_pci_mbxdma, 7065adb54cSMatt Jacob isp_pci_dmasetup, 71d720e6d5SJustin T. Gibbs isp_pci_dmateardown, 7265adb54cSMatt Jacob NULL, 7365adb54cSMatt Jacob isp_pci_reset1, 7465adb54cSMatt Jacob isp_pci_dumpregs, 7556aef503SMatt Jacob NULL, 76d02373f1SMatt Jacob BIU_BURST_ENABLE|BIU_PCI_CONF1_FIFO_64 7765adb54cSMatt Jacob }; 7865adb54cSMatt Jacob 79d59bd469SMatt Jacob static struct ispmdvec mdvec_1080 = { 80126ec864SMatt Jacob isp_pci_rd_isr, 81d59bd469SMatt Jacob isp_pci_rd_reg_1080, 82d59bd469SMatt Jacob isp_pci_wr_reg_1080, 83d59bd469SMatt Jacob isp_pci_mbxdma, 84d59bd469SMatt Jacob isp_pci_dmasetup, 85d59bd469SMatt Jacob isp_pci_dmateardown, 86d59bd469SMatt Jacob NULL, 87d59bd469SMatt Jacob isp_pci_reset1, 88d59bd469SMatt Jacob isp_pci_dumpregs, 8956aef503SMatt Jacob NULL, 90d02373f1SMatt Jacob BIU_BURST_ENABLE|BIU_PCI_CONF1_FIFO_64 91d59bd469SMatt Jacob }; 92d59bd469SMatt Jacob 93960f6939SMatt Jacob static struct ispmdvec mdvec_12160 = { 94126ec864SMatt Jacob isp_pci_rd_isr, 95960f6939SMatt Jacob isp_pci_rd_reg_1080, 96960f6939SMatt Jacob isp_pci_wr_reg_1080, 97960f6939SMatt Jacob isp_pci_mbxdma, 98960f6939SMatt Jacob isp_pci_dmasetup, 99960f6939SMatt Jacob isp_pci_dmateardown, 100960f6939SMatt Jacob NULL, 101960f6939SMatt Jacob isp_pci_reset1, 102960f6939SMatt Jacob isp_pci_dumpregs, 10356aef503SMatt Jacob NULL, 104d02373f1SMatt Jacob BIU_BURST_ENABLE|BIU_PCI_CONF1_FIFO_64 105960f6939SMatt Jacob }; 106960f6939SMatt Jacob 10765adb54cSMatt Jacob static struct ispmdvec mdvec_2100 = { 108126ec864SMatt Jacob isp_pci_rd_isr, 10965adb54cSMatt Jacob isp_pci_rd_reg, 11065adb54cSMatt Jacob isp_pci_wr_reg, 11165adb54cSMatt Jacob isp_pci_mbxdma, 11265adb54cSMatt Jacob isp_pci_dmasetup, 113d720e6d5SJustin T. Gibbs isp_pci_dmateardown, 11465adb54cSMatt Jacob NULL, 11565adb54cSMatt Jacob isp_pci_reset1, 116d02373f1SMatt Jacob isp_pci_dumpregs 11765adb54cSMatt Jacob }; 118222bb542SMatt Jacob 119222bb542SMatt Jacob static struct ispmdvec mdvec_2200 = { 120126ec864SMatt Jacob isp_pci_rd_isr, 121126ec864SMatt Jacob isp_pci_rd_reg, 122126ec864SMatt Jacob isp_pci_wr_reg, 123126ec864SMatt Jacob isp_pci_mbxdma, 124126ec864SMatt Jacob isp_pci_dmasetup, 125126ec864SMatt Jacob isp_pci_dmateardown, 126126ec864SMatt Jacob NULL, 127126ec864SMatt Jacob isp_pci_reset1, 128126ec864SMatt Jacob isp_pci_dumpregs 129126ec864SMatt Jacob }; 130126ec864SMatt Jacob 131126ec864SMatt Jacob static struct ispmdvec mdvec_2300 = { 132126ec864SMatt Jacob isp_pci_rd_isr_2300, 133222bb542SMatt Jacob isp_pci_rd_reg, 134222bb542SMatt Jacob isp_pci_wr_reg, 135222bb542SMatt Jacob isp_pci_mbxdma, 136222bb542SMatt Jacob isp_pci_dmasetup, 137222bb542SMatt Jacob isp_pci_dmateardown, 138222bb542SMatt Jacob NULL, 139222bb542SMatt Jacob isp_pci_reset1, 140d02373f1SMatt Jacob isp_pci_dumpregs 141222bb542SMatt Jacob }; 142d951bbcaSMatt Jacob 14365adb54cSMatt Jacob #ifndef PCIM_CMD_INVEN 14465adb54cSMatt Jacob #define PCIM_CMD_INVEN 0x10 14565adb54cSMatt Jacob #endif 14665adb54cSMatt Jacob #ifndef PCIM_CMD_BUSMASTEREN 14765adb54cSMatt Jacob #define PCIM_CMD_BUSMASTEREN 0x0004 14865adb54cSMatt Jacob #endif 149d951bbcaSMatt Jacob #ifndef PCIM_CMD_PERRESPEN 150d951bbcaSMatt Jacob #define PCIM_CMD_PERRESPEN 0x0040 151d951bbcaSMatt Jacob #endif 152d951bbcaSMatt Jacob #ifndef PCIM_CMD_SEREN 153d951bbcaSMatt Jacob #define PCIM_CMD_SEREN 0x0100 154d951bbcaSMatt Jacob #endif 155d951bbcaSMatt Jacob 156d951bbcaSMatt Jacob #ifndef PCIR_COMMAND 157d951bbcaSMatt Jacob #define PCIR_COMMAND 0x04 158d951bbcaSMatt Jacob #endif 159d951bbcaSMatt Jacob 160d951bbcaSMatt Jacob #ifndef PCIR_CACHELNSZ 161d951bbcaSMatt Jacob #define PCIR_CACHELNSZ 0x0c 162d951bbcaSMatt Jacob #endif 163d951bbcaSMatt Jacob 164d951bbcaSMatt Jacob #ifndef PCIR_LATTIMER 165d951bbcaSMatt Jacob #define PCIR_LATTIMER 0x0d 166d951bbcaSMatt Jacob #endif 167d951bbcaSMatt Jacob 168ab6d0040SMatt Jacob #ifndef PCIR_ROMADDR 169ab6d0040SMatt Jacob #define PCIR_ROMADDR 0x30 170ab6d0040SMatt Jacob #endif 171ab6d0040SMatt Jacob 17265adb54cSMatt Jacob #ifndef PCI_VENDOR_QLOGIC 17365adb54cSMatt Jacob #define PCI_VENDOR_QLOGIC 0x1077 17465adb54cSMatt Jacob #endif 17565adb54cSMatt Jacob 17665adb54cSMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP1020 17765adb54cSMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP1020 0x1020 17865adb54cSMatt Jacob #endif 17965adb54cSMatt Jacob 180d59bd469SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP1080 181d59bd469SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP1080 0x1080 182d59bd469SMatt Jacob #endif 183d59bd469SMatt Jacob 184f556e83bSMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP10160 185f556e83bSMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP10160 0x1016 186f556e83bSMatt Jacob #endif 187f556e83bSMatt Jacob 188960f6939SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP12160 189960f6939SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP12160 0x1216 190960f6939SMatt Jacob #endif 191960f6939SMatt Jacob 192d59bd469SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP1240 193d59bd469SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP1240 0x1240 194d59bd469SMatt Jacob #endif 19565adb54cSMatt Jacob 19622e1dc85SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP1280 19722e1dc85SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP1280 0x1280 19822e1dc85SMatt Jacob #endif 19922e1dc85SMatt Jacob 20065adb54cSMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP2100 20165adb54cSMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP2100 0x2100 20265adb54cSMatt Jacob #endif 20365adb54cSMatt Jacob 204222bb542SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP2200 205222bb542SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP2200 0x2200 206222bb542SMatt Jacob #endif 207222bb542SMatt Jacob 208126ec864SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP2300 209126ec864SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP2300 0x2300 210126ec864SMatt Jacob #endif 211126ec864SMatt Jacob 212126ec864SMatt Jacob #ifndef PCI_PRODUCT_QLOGIC_ISP2312 213126ec864SMatt Jacob #define PCI_PRODUCT_QLOGIC_ISP2312 0x2312 214126ec864SMatt Jacob #endif 215126ec864SMatt Jacob 21656aef503SMatt Jacob #define PCI_QLOGIC_ISP1020 \ 21756aef503SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP1020 << 16) | PCI_VENDOR_QLOGIC) 218d59bd469SMatt Jacob 219d59bd469SMatt Jacob #define PCI_QLOGIC_ISP1080 \ 220d59bd469SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP1080 << 16) | PCI_VENDOR_QLOGIC) 221d59bd469SMatt Jacob 222f556e83bSMatt Jacob #define PCI_QLOGIC_ISP10160 \ 223f556e83bSMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP10160 << 16) | PCI_VENDOR_QLOGIC) 224f556e83bSMatt Jacob 225960f6939SMatt Jacob #define PCI_QLOGIC_ISP12160 \ 226960f6939SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP12160 << 16) | PCI_VENDOR_QLOGIC) 227960f6939SMatt Jacob 228d59bd469SMatt Jacob #define PCI_QLOGIC_ISP1240 \ 229d59bd469SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP1240 << 16) | PCI_VENDOR_QLOGIC) 230d59bd469SMatt Jacob 23122e1dc85SMatt Jacob #define PCI_QLOGIC_ISP1280 \ 23222e1dc85SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP1280 << 16) | PCI_VENDOR_QLOGIC) 23322e1dc85SMatt Jacob 23465adb54cSMatt Jacob #define PCI_QLOGIC_ISP2100 \ 23565adb54cSMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP2100 << 16) | PCI_VENDOR_QLOGIC) 23665adb54cSMatt Jacob 237222bb542SMatt Jacob #define PCI_QLOGIC_ISP2200 \ 238222bb542SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP2200 << 16) | PCI_VENDOR_QLOGIC) 239222bb542SMatt Jacob 240126ec864SMatt Jacob #define PCI_QLOGIC_ISP2300 \ 241126ec864SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP2300 << 16) | PCI_VENDOR_QLOGIC) 242126ec864SMatt Jacob 243126ec864SMatt Jacob #define PCI_QLOGIC_ISP2312 \ 244126ec864SMatt Jacob ((PCI_PRODUCT_QLOGIC_ISP2312 << 16) | PCI_VENDOR_QLOGIC) 245126ec864SMatt Jacob 246e11a1ee8SMatt Jacob /* 247e11a1ee8SMatt Jacob * Odd case for some AMI raid cards... We need to *not* attach to this. 248e11a1ee8SMatt Jacob */ 249e11a1ee8SMatt Jacob #define AMI_RAID_SUBVENDOR_ID 0x101e 250e11a1ee8SMatt Jacob 25165adb54cSMatt Jacob #define IO_MAP_REG 0x10 25265adb54cSMatt Jacob #define MEM_MAP_REG 0x14 25365adb54cSMatt Jacob 254d951bbcaSMatt Jacob #define PCI_DFLT_LTNCY 0x40 255d951bbcaSMatt Jacob #define PCI_DFLT_LNSZ 0x10 25665adb54cSMatt Jacob 257960f6939SMatt Jacob static int isp_pci_probe (device_t); 258960f6939SMatt Jacob static int isp_pci_attach (device_t); 25965adb54cSMatt Jacob 2601923f739SMatt Jacob 26165adb54cSMatt Jacob struct isp_pcisoftc { 26265adb54cSMatt Jacob struct ispsoftc pci_isp; 263960f6939SMatt Jacob device_t pci_dev; 264960f6939SMatt Jacob struct resource * pci_reg; 26565adb54cSMatt Jacob bus_space_tag_t pci_st; 26665adb54cSMatt Jacob bus_space_handle_t pci_sh; 267960f6939SMatt Jacob void * ih; 268d59bd469SMatt Jacob int16_t pci_poff[_NREG_BLKS]; 2691923f739SMatt Jacob bus_dma_tag_t dmat; 270a95ae193SMatt Jacob bus_dmamap_t *dmaps; 27165adb54cSMatt Jacob }; 27273030e03SMatt Jacob extern ispfwfunc *isp_get_firmware_p; 27365adb54cSMatt Jacob 274960f6939SMatt Jacob static device_method_t isp_pci_methods[] = { 275960f6939SMatt Jacob /* Device interface */ 276960f6939SMatt Jacob DEVMETHOD(device_probe, isp_pci_probe), 277960f6939SMatt Jacob DEVMETHOD(device_attach, isp_pci_attach), 278960f6939SMatt Jacob { 0, 0 } 27965adb54cSMatt Jacob }; 280126ec864SMatt Jacob static void isp_pci_intr(void *); 28165adb54cSMatt Jacob 282960f6939SMatt Jacob static driver_t isp_pci_driver = { 283960f6939SMatt Jacob "isp", isp_pci_methods, sizeof (struct isp_pcisoftc) 284960f6939SMatt Jacob }; 285960f6939SMatt Jacob static devclass_t isp_devclass; 286960f6939SMatt Jacob DRIVER_MODULE(isp, pci, isp_pci_driver, isp_devclass, 0, 0); 28765adb54cSMatt Jacob 288960f6939SMatt Jacob static int 289960f6939SMatt Jacob isp_pci_probe(device_t dev) 29065adb54cSMatt Jacob { 291960f6939SMatt Jacob switch ((pci_get_device(dev) << 16) | (pci_get_vendor(dev))) { 29256aef503SMatt Jacob case PCI_QLOGIC_ISP1020: 293960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 1020/1040 PCI SCSI Adapter"); 29465adb54cSMatt Jacob break; 295d59bd469SMatt Jacob case PCI_QLOGIC_ISP1080: 296960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 1080 PCI SCSI Adapter"); 297c6608df3SMatt Jacob break; 298c6608df3SMatt Jacob case PCI_QLOGIC_ISP1240: 299960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 1240 PCI SCSI Adapter"); 300d59bd469SMatt Jacob break; 30122e1dc85SMatt Jacob case PCI_QLOGIC_ISP1280: 302960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 1280 PCI SCSI Adapter"); 303960f6939SMatt Jacob break; 304f556e83bSMatt Jacob case PCI_QLOGIC_ISP10160: 305f556e83bSMatt Jacob device_set_desc(dev, "Qlogic ISP 10160 PCI SCSI Adapter"); 306f556e83bSMatt Jacob break; 307960f6939SMatt Jacob case PCI_QLOGIC_ISP12160: 308e11a1ee8SMatt Jacob if (pci_get_subvendor(dev) == AMI_RAID_SUBVENDOR_ID) { 309e11a1ee8SMatt Jacob return (ENXIO); 310e11a1ee8SMatt Jacob } 311960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 12160 PCI SCSI Adapter"); 31222e1dc85SMatt Jacob break; 31365adb54cSMatt Jacob case PCI_QLOGIC_ISP2100: 314960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 2100 PCI FC-AL Adapter"); 31565adb54cSMatt Jacob break; 3165542fe4bSMatt Jacob case PCI_QLOGIC_ISP2200: 317960f6939SMatt Jacob device_set_desc(dev, "Qlogic ISP 2200 PCI FC-AL Adapter"); 3185542fe4bSMatt Jacob break; 319126ec864SMatt Jacob case PCI_QLOGIC_ISP2300: 320126ec864SMatt Jacob device_set_desc(dev, "Qlogic ISP 2300 PCI FC-AL Adapter"); 321126ec864SMatt Jacob break; 322126ec864SMatt Jacob case PCI_QLOGIC_ISP2312: 323126ec864SMatt Jacob device_set_desc(dev, "Qlogic ISP 2312 PCI FC-AL Adapter"); 324126ec864SMatt Jacob break; 32565adb54cSMatt Jacob default: 326960f6939SMatt Jacob return (ENXIO); 32765adb54cSMatt Jacob } 32873030e03SMatt Jacob if (isp_announced == 0 && bootverbose) { 329d02373f1SMatt Jacob printf("Qlogic ISP Driver, FreeBSD Version %d.%d, " 330a95ae193SMatt Jacob "Core Version %d.%d\n", 331d720e6d5SJustin T. Gibbs ISP_PLATFORM_VERSION_MAJOR, ISP_PLATFORM_VERSION_MINOR, 332d720e6d5SJustin T. Gibbs ISP_CORE_VERSION_MAJOR, ISP_CORE_VERSION_MINOR); 33373030e03SMatt Jacob isp_announced++; 33465adb54cSMatt Jacob } 33556aef503SMatt Jacob /* 33656aef503SMatt Jacob * XXXX: Here is where we might load the f/w module 33756aef503SMatt Jacob * XXXX: (or increase a reference count to it). 33856aef503SMatt Jacob */ 339960f6939SMatt Jacob return (0); 34065adb54cSMatt Jacob } 34165adb54cSMatt Jacob 342960f6939SMatt Jacob static int 343960f6939SMatt Jacob isp_pci_attach(device_t dev) 34465adb54cSMatt Jacob { 345960f6939SMatt Jacob struct resource *regs, *irq; 3466e5c5328SMatt Jacob int tval, rtp, rgd, iqd, m1, m2, isp_debug, role; 347960f6939SMatt Jacob u_int32_t data, cmd, linesz, psize, basetype; 34865adb54cSMatt Jacob struct isp_pcisoftc *pcs; 3493395b056SMatt Jacob struct ispsoftc *isp = NULL; 350c6608df3SMatt Jacob struct ispmdvec *mdvp; 35122941bd7SPeter Wemm const char *sptr; 3523395b056SMatt Jacob int locksetup = 0; 35365adb54cSMatt Jacob 354222bb542SMatt Jacob /* 3559ba86737SMatt Jacob * Figure out if we're supposed to skip this one. 356b9b599feSMatt Jacob * If we are, we actually go to ISP_ROLE_NONE. 3579ba86737SMatt Jacob */ 3586e5c5328SMatt Jacob 3596e5c5328SMatt Jacob tval = 0; 3606e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 3616e5c5328SMatt Jacob "disable", &tval) == 0 && tval) { 362b9b599feSMatt Jacob device_printf(dev, "device is disabled\n"); 363b9b599feSMatt Jacob /* but return 0 so the !$)$)*!$*) unit isn't reused */ 364b9b599feSMatt Jacob return (0); 365b9b599feSMatt Jacob } 3666e5c5328SMatt Jacob 3676e5c5328SMatt Jacob role = 0; 3686e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 3696e5c5328SMatt Jacob "role", &role) == 0 && 3706e5c5328SMatt Jacob ((role & ~(ISP_ROLE_INITIATOR|ISP_ROLE_TARGET)) == 0)) { 3716e5c5328SMatt Jacob device_printf(dev, "setting role to 0x%x\n", role); 3726e5c5328SMatt Jacob } else { 373b9b599feSMatt Jacob #ifdef ISP_TARGET_MODE 374b9b599feSMatt Jacob role = ISP_ROLE_INITIATOR|ISP_ROLE_TARGET; 375b9b599feSMatt Jacob #else 376b9b599feSMatt Jacob role = ISP_DEFAULT_ROLES; 377b9b599feSMatt Jacob #endif 3789ba86737SMatt Jacob } 3799ba86737SMatt Jacob 3807cc0979fSDavid Malone pcs = malloc(sizeof (struct isp_pcisoftc), M_DEVBUF, M_NOWAIT | M_ZERO); 381960f6939SMatt Jacob if (pcs == NULL) { 382960f6939SMatt Jacob device_printf(dev, "cannot allocate softc\n"); 383960f6939SMatt Jacob return (ENOMEM); 384960f6939SMatt Jacob } 385960f6939SMatt Jacob 3869ba86737SMatt Jacob /* 387222bb542SMatt Jacob * Figure out which we should try first - memory mapping or i/o mapping? 388222bb542SMatt Jacob */ 38956aef503SMatt Jacob #ifdef __alpha__ 390960f6939SMatt Jacob m1 = PCIM_CMD_MEMEN; 391960f6939SMatt Jacob m2 = PCIM_CMD_PORTEN; 392222bb542SMatt Jacob #else 393960f6939SMatt Jacob m1 = PCIM_CMD_PORTEN; 394960f6939SMatt Jacob m2 = PCIM_CMD_MEMEN; 395222bb542SMatt Jacob #endif 3966e5c5328SMatt Jacob 3976e5c5328SMatt Jacob tval = 0; 3986e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 3996e5c5328SMatt Jacob "prefer_iomap", &tval) == 0 && tval != 0) { 400960f6939SMatt Jacob m1 = PCIM_CMD_PORTEN; 401960f6939SMatt Jacob m2 = PCIM_CMD_MEMEN; 402960f6939SMatt Jacob } 4036e5c5328SMatt Jacob tval = 0; 4046e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 4056e5c5328SMatt Jacob "prefer_memmap", &tval) == 0 && tval != 0) { 4066e5c5328SMatt Jacob m1 = PCIM_CMD_MEMEN; 4076e5c5328SMatt Jacob m2 = PCIM_CMD_PORTEN; 408222bb542SMatt Jacob } 409222bb542SMatt Jacob 410ab6d0040SMatt Jacob linesz = PCI_DFLT_LNSZ; 411960f6939SMatt Jacob irq = regs = NULL; 412960f6939SMatt Jacob rgd = rtp = iqd = 0; 413960f6939SMatt Jacob 414960f6939SMatt Jacob cmd = pci_read_config(dev, PCIR_COMMAND, 1); 415960f6939SMatt Jacob if (cmd & m1) { 416960f6939SMatt Jacob rtp = (m1 == PCIM_CMD_MEMEN)? SYS_RES_MEMORY : SYS_RES_IOPORT; 417960f6939SMatt Jacob rgd = (m1 == PCIM_CMD_MEMEN)? MEM_MAP_REG : IO_MAP_REG; 418960f6939SMatt Jacob regs = bus_alloc_resource(dev, rtp, &rgd, 0, ~0, 1, RF_ACTIVE); 41965adb54cSMatt Jacob } 420960f6939SMatt Jacob if (regs == NULL && (cmd & m2)) { 421960f6939SMatt Jacob rtp = (m2 == PCIM_CMD_MEMEN)? SYS_RES_MEMORY : SYS_RES_IOPORT; 422960f6939SMatt Jacob rgd = (m2 == PCIM_CMD_MEMEN)? MEM_MAP_REG : IO_MAP_REG; 423960f6939SMatt Jacob regs = bus_alloc_resource(dev, rtp, &rgd, 0, ~0, 1, RF_ACTIVE); 42465adb54cSMatt Jacob } 425960f6939SMatt Jacob if (regs == NULL) { 426960f6939SMatt Jacob device_printf(dev, "unable to map any ports\n"); 427960f6939SMatt Jacob goto bad; 42865adb54cSMatt Jacob } 429222bb542SMatt Jacob if (bootverbose) 430f7dddf8aSMatt Jacob device_printf(dev, "using %s space register mapping\n", 431960f6939SMatt Jacob (rgd == IO_MAP_REG)? "I/O" : "Memory"); 432960f6939SMatt Jacob pcs->pci_dev = dev; 433960f6939SMatt Jacob pcs->pci_reg = regs; 434960f6939SMatt Jacob pcs->pci_st = rman_get_bustag(regs); 435960f6939SMatt Jacob pcs->pci_sh = rman_get_bushandle(regs); 43665adb54cSMatt Jacob 437d59bd469SMatt Jacob pcs->pci_poff[BIU_BLOCK >> _BLK_REG_SHFT] = BIU_REGS_OFF; 438d59bd469SMatt Jacob pcs->pci_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = PCI_MBOX_REGS_OFF; 439d59bd469SMatt Jacob pcs->pci_poff[SXP_BLOCK >> _BLK_REG_SHFT] = PCI_SXP_REGS_OFF; 440d59bd469SMatt Jacob pcs->pci_poff[RISC_BLOCK >> _BLK_REG_SHFT] = PCI_RISC_REGS_OFF; 441d59bd469SMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = DMA_REGS_OFF; 442c6608df3SMatt Jacob mdvp = &mdvec; 443c6608df3SMatt Jacob basetype = ISP_HA_SCSI_UNKNOWN; 444c6608df3SMatt Jacob psize = sizeof (sdparam); 44556aef503SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP1020) { 446c6608df3SMatt Jacob mdvp = &mdvec; 447c6608df3SMatt Jacob basetype = ISP_HA_SCSI_UNKNOWN; 448c6608df3SMatt Jacob psize = sizeof (sdparam); 449d59bd469SMatt Jacob } 450960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP1080) { 451c6608df3SMatt Jacob mdvp = &mdvec_1080; 452c6608df3SMatt Jacob basetype = ISP_HA_SCSI_1080; 453c6608df3SMatt Jacob psize = sizeof (sdparam); 454c6608df3SMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = 455c6608df3SMatt Jacob ISP1080_DMA_REGS_OFF; 456c6608df3SMatt Jacob } 457960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP1240) { 458c6608df3SMatt Jacob mdvp = &mdvec_1080; 45922e1dc85SMatt Jacob basetype = ISP_HA_SCSI_1240; 46022e1dc85SMatt Jacob psize = 2 * sizeof (sdparam); 46122e1dc85SMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = 46222e1dc85SMatt Jacob ISP1080_DMA_REGS_OFF; 46322e1dc85SMatt Jacob } 464960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP1280) { 46522e1dc85SMatt Jacob mdvp = &mdvec_1080; 46622e1dc85SMatt Jacob basetype = ISP_HA_SCSI_1280; 467c6608df3SMatt Jacob psize = 2 * sizeof (sdparam); 468d59bd469SMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = 469d59bd469SMatt Jacob ISP1080_DMA_REGS_OFF; 470d59bd469SMatt Jacob } 471f556e83bSMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP10160) { 472f556e83bSMatt Jacob mdvp = &mdvec_12160; 473f556e83bSMatt Jacob basetype = ISP_HA_SCSI_10160; 474f556e83bSMatt Jacob psize = sizeof (sdparam); 475f556e83bSMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = 476f556e83bSMatt Jacob ISP1080_DMA_REGS_OFF; 477f556e83bSMatt Jacob } 478960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP12160) { 479960f6939SMatt Jacob mdvp = &mdvec_12160; 480960f6939SMatt Jacob basetype = ISP_HA_SCSI_12160; 481960f6939SMatt Jacob psize = 2 * sizeof (sdparam); 482960f6939SMatt Jacob pcs->pci_poff[DMA_BLOCK >> _BLK_REG_SHFT] = 483960f6939SMatt Jacob ISP1080_DMA_REGS_OFF; 484960f6939SMatt Jacob } 485960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP2100) { 486c6608df3SMatt Jacob mdvp = &mdvec_2100; 487c6608df3SMatt Jacob basetype = ISP_HA_FC_2100; 488c6608df3SMatt Jacob psize = sizeof (fcparam); 489d59bd469SMatt Jacob pcs->pci_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = 490d59bd469SMatt Jacob PCI_MBOX_REGS2100_OFF; 491960f6939SMatt Jacob if (pci_get_revid(dev) < 3) { 492ab6d0040SMatt Jacob /* 493ab6d0040SMatt Jacob * XXX: Need to get the actual revision 494ab6d0040SMatt Jacob * XXX: number of the 2100 FB. At any rate, 495ab6d0040SMatt Jacob * XXX: lower cache line size for early revision 496ab6d0040SMatt Jacob * XXX; boards. 497ab6d0040SMatt Jacob */ 498ab6d0040SMatt Jacob linesz = 1; 499ab6d0040SMatt Jacob } 50065adb54cSMatt Jacob } 501960f6939SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP2200) { 502222bb542SMatt Jacob mdvp = &mdvec_2200; 503222bb542SMatt Jacob basetype = ISP_HA_FC_2200; 504222bb542SMatt Jacob psize = sizeof (fcparam); 505222bb542SMatt Jacob pcs->pci_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = 506222bb542SMatt Jacob PCI_MBOX_REGS2100_OFF; 507222bb542SMatt Jacob } 50875c1e828SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP2300) { 509126ec864SMatt Jacob mdvp = &mdvec_2300; 510126ec864SMatt Jacob basetype = ISP_HA_FC_2300; 511126ec864SMatt Jacob psize = sizeof (fcparam); 512126ec864SMatt Jacob pcs->pci_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = 513126ec864SMatt Jacob PCI_MBOX_REGS2300_OFF; 514126ec864SMatt Jacob } 51575c1e828SMatt Jacob if (pci_get_devid(dev) == PCI_QLOGIC_ISP2312) { 51675c1e828SMatt Jacob mdvp = &mdvec_2300; 51775c1e828SMatt Jacob basetype = ISP_HA_FC_2312; 51875c1e828SMatt Jacob psize = sizeof (fcparam); 51975c1e828SMatt Jacob pcs->pci_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = 52075c1e828SMatt Jacob PCI_MBOX_REGS2300_OFF; 52175c1e828SMatt Jacob } 522c6608df3SMatt Jacob isp = &pcs->pci_isp; 5237cc0979fSDavid Malone isp->isp_param = malloc(psize, M_DEVBUF, M_NOWAIT | M_ZERO); 524c6608df3SMatt Jacob if (isp->isp_param == NULL) { 525960f6939SMatt Jacob device_printf(dev, "cannot allocate parameter data\n"); 526960f6939SMatt Jacob goto bad; 527c6608df3SMatt Jacob } 528c6608df3SMatt Jacob isp->isp_mdvec = mdvp; 529c6608df3SMatt Jacob isp->isp_type = basetype; 530960f6939SMatt Jacob isp->isp_revision = pci_get_revid(dev); 531b9b599feSMatt Jacob isp->isp_role = role; 5326e5c5328SMatt Jacob isp->isp_dev = dev; 53365adb54cSMatt Jacob 53456aef503SMatt Jacob /* 53556aef503SMatt Jacob * Try and find firmware for this device. 53656aef503SMatt Jacob */ 53756aef503SMatt Jacob 53856aef503SMatt Jacob if (isp_get_firmware_p) { 53956aef503SMatt Jacob int device = (int) pci_get_device(dev); 54056aef503SMatt Jacob #ifdef ISP_TARGET_MODE 54156aef503SMatt Jacob (*isp_get_firmware_p)(0, 1, device, &mdvp->dv_ispfw); 54256aef503SMatt Jacob #else 54356aef503SMatt Jacob (*isp_get_firmware_p)(0, 0, device, &mdvp->dv_ispfw); 54456aef503SMatt Jacob #endif 54556aef503SMatt Jacob } 54656aef503SMatt Jacob 54756aef503SMatt Jacob /* 548d951bbcaSMatt Jacob * Make sure that SERR, PERR, WRITE INVALIDATE and BUSMASTER 549d951bbcaSMatt Jacob * are set. 550d951bbcaSMatt Jacob */ 551960f6939SMatt Jacob cmd |= PCIM_CMD_SEREN | PCIM_CMD_PERRESPEN | 552960f6939SMatt Jacob PCIM_CMD_BUSMASTEREN | PCIM_CMD_INVEN; 55375c1e828SMatt Jacob if (IS_2300(isp)) { /* per QLogic errata */ 55475c1e828SMatt Jacob cmd &= ~PCIM_CMD_INVEN; 55575c1e828SMatt Jacob } 556fc087171SMatt Jacob if (IS_23XX(isp)) { 557fc087171SMatt Jacob /* 558fc087171SMatt Jacob * Can't tell if ROM will hang on 'ABOUT FIRMWARE' command. 559fc087171SMatt Jacob */ 560fc087171SMatt Jacob isp->isp_touched = 1; 561fc087171SMatt Jacob 562fc087171SMatt Jacob } 563960f6939SMatt Jacob pci_write_config(dev, PCIR_COMMAND, cmd, 1); 564ab6d0040SMatt Jacob 565d951bbcaSMatt Jacob /* 566222bb542SMatt Jacob * Make sure the Cache Line Size register is set sensibly. 567d951bbcaSMatt Jacob */ 568960f6939SMatt Jacob data = pci_read_config(dev, PCIR_CACHELNSZ, 1); 569ab6d0040SMatt Jacob if (data != linesz) { 570d951bbcaSMatt Jacob data = PCI_DFLT_LNSZ; 571d02373f1SMatt Jacob isp_prt(isp, ISP_LOGCONFIG, "set PCI line size to %d", data); 572960f6939SMatt Jacob pci_write_config(dev, PCIR_CACHELNSZ, data, 1); 573d951bbcaSMatt Jacob } 574ab6d0040SMatt Jacob 575d951bbcaSMatt Jacob /* 576d951bbcaSMatt Jacob * Make sure the Latency Timer is sane. 577d951bbcaSMatt Jacob */ 578960f6939SMatt Jacob data = pci_read_config(dev, PCIR_LATTIMER, 1); 579d951bbcaSMatt Jacob if (data < PCI_DFLT_LTNCY) { 580d951bbcaSMatt Jacob data = PCI_DFLT_LTNCY; 581d02373f1SMatt Jacob isp_prt(isp, ISP_LOGCONFIG, "set PCI latency to %d", data); 582960f6939SMatt Jacob pci_write_config(dev, PCIR_LATTIMER, data, 1); 583d951bbcaSMatt Jacob } 584ab6d0040SMatt Jacob 585ab6d0040SMatt Jacob /* 586ab6d0040SMatt Jacob * Make sure we've disabled the ROM. 587ab6d0040SMatt Jacob */ 588960f6939SMatt Jacob data = pci_read_config(dev, PCIR_ROMADDR, 4); 589ab6d0040SMatt Jacob data &= ~1; 590960f6939SMatt Jacob pci_write_config(dev, PCIR_ROMADDR, data, 4); 59105fbcbb0SMatt Jacob 592960f6939SMatt Jacob iqd = 0; 593960f6939SMatt Jacob irq = bus_alloc_resource(dev, SYS_RES_IRQ, &iqd, 0, ~0, 594960f6939SMatt Jacob 1, RF_ACTIVE | RF_SHAREABLE); 595960f6939SMatt Jacob if (irq == NULL) { 596960f6939SMatt Jacob device_printf(dev, "could not allocate interrupt\n"); 597960f6939SMatt Jacob goto bad; 598960f6939SMatt Jacob } 599960f6939SMatt Jacob 6006e5c5328SMatt Jacob tval = 0; 6016e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 6026e5c5328SMatt Jacob "fwload_disable", &tval) == 0 && tval != 0) { 603222bb542SMatt Jacob isp->isp_confopts |= ISP_CFG_NORELOAD; 604222bb542SMatt Jacob } 6056e5c5328SMatt Jacob tval = 0; 6066e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 6076e5c5328SMatt Jacob "ignore_nvram", &tval) == 0 && tval != 0) { 608222bb542SMatt Jacob isp->isp_confopts |= ISP_CFG_NONVRAM; 609222bb542SMatt Jacob } 6106e5c5328SMatt Jacob tval = 0; 6116e5c5328SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 6126e5c5328SMatt Jacob "fullduplex", &tval) == 0 && tval != 0) { 613222bb542SMatt Jacob isp->isp_confopts |= ISP_CFG_FULL_DUPLEX; 614222bb542SMatt Jacob } 615d134aa0bSMatt Jacob #ifdef ISP_FW_CRASH_DUMP 616d134aa0bSMatt Jacob tval = 0; 617d134aa0bSMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 618d134aa0bSMatt Jacob "fw_dump_enable", &tval) == 0 && tval != 0) { 619d134aa0bSMatt Jacob size_t amt = 0; 620d134aa0bSMatt Jacob if (IS_2200(isp)) { 621d134aa0bSMatt Jacob amt = QLA2200_RISC_IMAGE_DUMP_SIZE; 622d134aa0bSMatt Jacob } else if (IS_23XX(isp)) { 623d134aa0bSMatt Jacob amt = QLA2300_RISC_IMAGE_DUMP_SIZE; 624d134aa0bSMatt Jacob } 625d134aa0bSMatt Jacob if (amt) { 626d134aa0bSMatt Jacob FCPARAM(isp)->isp_dump_data = 627a163d034SWarner Losh malloc(amt, M_DEVBUF, M_WAITOK | M_ZERO); 628d134aa0bSMatt Jacob } else { 629d134aa0bSMatt Jacob device_printf(dev, 630d134aa0bSMatt Jacob "f/w crash dumps not supported for this model\n"); 631d134aa0bSMatt Jacob } 632d134aa0bSMatt Jacob } 633d134aa0bSMatt Jacob #endif 634222bb542SMatt Jacob 6356e5c5328SMatt Jacob sptr = 0; 6366e5c5328SMatt Jacob if (resource_string_value(device_get_name(dev), device_get_unit(dev), 637559a1ad2SMatt Jacob "topology", (const char **) &sptr) == 0 && sptr != 0) { 6386e5c5328SMatt Jacob if (strcmp(sptr, "lport") == 0) { 6396e5c5328SMatt Jacob isp->isp_confopts |= ISP_CFG_LPORT; 6406e5c5328SMatt Jacob } else if (strcmp(sptr, "nport") == 0) { 6416e5c5328SMatt Jacob isp->isp_confopts |= ISP_CFG_NPORT; 6426e5c5328SMatt Jacob } else if (strcmp(sptr, "lport-only") == 0) { 6436e5c5328SMatt Jacob isp->isp_confopts |= ISP_CFG_LPORT_ONLY; 6446e5c5328SMatt Jacob } else if (strcmp(sptr, "nport-only") == 0) { 6456e5c5328SMatt Jacob isp->isp_confopts |= ISP_CFG_NPORT_ONLY; 6469637d68cSMatt Jacob } 6476e5c5328SMatt Jacob } 6486e5c5328SMatt Jacob 6499637d68cSMatt Jacob /* 6506e5c5328SMatt Jacob * Because the resource_*_value functions can neither return 6516e5c5328SMatt Jacob * 64 bit integer values, nor can they be directly coerced 6526e5c5328SMatt Jacob * to interpret the right hand side of the assignment as 6536e5c5328SMatt Jacob * you want them to interpret it, we have to force WWN 6546e5c5328SMatt Jacob * hint replacement to specify WWN strings with a leading 6556e5c5328SMatt Jacob * 'w' (e..g w50000000aaaa0001). Sigh. 6569637d68cSMatt Jacob */ 6576e5c5328SMatt Jacob sptr = 0; 6586e5c5328SMatt Jacob tval = resource_string_value(device_get_name(dev), device_get_unit(dev), 659559a1ad2SMatt Jacob "portwwn", (const char **) &sptr); 6606e5c5328SMatt Jacob if (tval == 0 && sptr != 0 && *sptr++ == 'w') { 6616e5c5328SMatt Jacob char *eptr = 0; 6626e5c5328SMatt Jacob isp->isp_osinfo.default_port_wwn = strtouq(sptr, &eptr, 16); 6636e5c5328SMatt Jacob if (eptr < sptr + 16 || isp->isp_osinfo.default_port_wwn == 0) { 6646e5c5328SMatt Jacob device_printf(dev, "mangled portwwn hint '%s'\n", sptr); 6656e5c5328SMatt Jacob isp->isp_osinfo.default_port_wwn = 0; 6669637d68cSMatt Jacob } else { 6673f02619fSMatt Jacob isp->isp_confopts |= ISP_CFG_OWNWWPN; 668222bb542SMatt Jacob } 6696e5c5328SMatt Jacob } 6706e5c5328SMatt Jacob if (isp->isp_osinfo.default_port_wwn == 0) { 6716e5c5328SMatt Jacob isp->isp_osinfo.default_port_wwn = 0x400000007F000009ull; 6726e5c5328SMatt Jacob } 6736e5c5328SMatt Jacob 6746e5c5328SMatt Jacob sptr = 0; 6756e5c5328SMatt Jacob tval = resource_string_value(device_get_name(dev), device_get_unit(dev), 676559a1ad2SMatt Jacob "nodewwn", (const char **) &sptr); 6776e5c5328SMatt Jacob if (tval == 0 && sptr != 0 && *sptr++ == 'w') { 6786e5c5328SMatt Jacob char *eptr = 0; 6796e5c5328SMatt Jacob isp->isp_osinfo.default_node_wwn = strtouq(sptr, &eptr, 16); 6806e5c5328SMatt Jacob if (eptr < sptr + 16 || isp->isp_osinfo.default_node_wwn == 0) { 6816e5c5328SMatt Jacob device_printf(dev, "mangled nodewwn hint '%s'\n", sptr); 6826e5c5328SMatt Jacob isp->isp_osinfo.default_node_wwn = 0; 6836e5c5328SMatt Jacob } else { 6843f02619fSMatt Jacob isp->isp_confopts |= ISP_CFG_OWNWWNN; 6856e5c5328SMatt Jacob } 6866e5c5328SMatt Jacob } 6876e5c5328SMatt Jacob if (isp->isp_osinfo.default_node_wwn == 0) { 6886e5c5328SMatt Jacob isp->isp_osinfo.default_node_wwn = 0x400000007F000009ull; 6896e5c5328SMatt Jacob } 6906e5c5328SMatt Jacob 69143722a42SMatt Jacob isp->isp_osinfo.default_id = -1; 692ed753e82SMatt Jacob if (resource_int_value(device_get_name(dev), device_get_unit(dev), 693ed753e82SMatt Jacob "iid", &tval) == 0) { 694ed753e82SMatt Jacob isp->isp_osinfo.default_id = tval; 695ed753e82SMatt Jacob isp->isp_confopts |= ISP_CFG_OWNLOOPID; 696ed753e82SMatt Jacob } 69743722a42SMatt Jacob if (isp->isp_osinfo.default_id == -1) { 698ed753e82SMatt Jacob if (IS_FC(isp)) { 699ed753e82SMatt Jacob isp->isp_osinfo.default_id = 109; 700ed753e82SMatt Jacob } else { 701ed753e82SMatt Jacob isp->isp_osinfo.default_id = 7; 702ed753e82SMatt Jacob } 703ed753e82SMatt Jacob } 704ed753e82SMatt Jacob 705ed753e82SMatt Jacob isp_debug = 0; 7066e5c5328SMatt Jacob (void) resource_int_value(device_get_name(dev), device_get_unit(dev), 7076e5c5328SMatt Jacob "debug", &isp_debug); 708f09b1922SMatt Jacob 709f09b1922SMatt Jacob /* Make sure the lock is set up. */ 7106008862bSJohn Baldwin mtx_init(&isp->isp_osinfo.lock, "isp", NULL, MTX_DEF); 711f09b1922SMatt Jacob locksetup++; 712f09b1922SMatt Jacob 71372429e49SMatt Jacob if (bus_setup_intr(dev, irq, ISP_IFLAGS, isp_pci_intr, isp, &pcs->ih)) { 714f09b1922SMatt Jacob device_printf(dev, "could not setup interrupt\n"); 715f09b1922SMatt Jacob goto bad; 716f09b1922SMatt Jacob } 717960f6939SMatt Jacob 71805fbcbb0SMatt Jacob /* 719d02373f1SMatt Jacob * Set up logging levels. 720d02373f1SMatt Jacob */ 721d02373f1SMatt Jacob if (isp_debug) { 722d02373f1SMatt Jacob isp->isp_dblev = isp_debug; 723d02373f1SMatt Jacob } else { 724d02373f1SMatt Jacob isp->isp_dblev = ISP_LOGWARN|ISP_LOGERR; 725d02373f1SMatt Jacob } 726d02373f1SMatt Jacob if (bootverbose) 727f7dddf8aSMatt Jacob isp->isp_dblev |= ISP_LOGCONFIG|ISP_LOGINFO; 728d02373f1SMatt Jacob 729d02373f1SMatt Jacob /* 73075c1e828SMatt Jacob * Last minute checks... 73175c1e828SMatt Jacob */ 73275c1e828SMatt Jacob if (IS_2312(isp)) { 73375c1e828SMatt Jacob isp->isp_port = pci_get_function(dev); 73475c1e828SMatt Jacob } 73575c1e828SMatt Jacob 73675c1e828SMatt Jacob /* 73705fbcbb0SMatt Jacob * Make sure we're in reset state. 73805fbcbb0SMatt Jacob */ 7393395b056SMatt Jacob ISP_LOCK(isp); 74065adb54cSMatt Jacob isp_reset(isp); 74165adb54cSMatt Jacob if (isp->isp_state != ISP_RESETSTATE) { 7423395b056SMatt Jacob ISP_UNLOCK(isp); 743960f6939SMatt Jacob goto bad; 74465adb54cSMatt Jacob } 74565adb54cSMatt Jacob isp_init(isp); 746b9b599feSMatt Jacob if (isp->isp_role != ISP_ROLE_NONE && isp->isp_state != ISP_INITSTATE) { 74765adb54cSMatt Jacob isp_uninit(isp); 7483395b056SMatt Jacob ISP_UNLOCK(isp); 749960f6939SMatt Jacob goto bad; 750d59bd469SMatt Jacob } 75165adb54cSMatt Jacob isp_attach(isp); 752b9b599feSMatt Jacob if (isp->isp_role != ISP_ROLE_NONE && isp->isp_state != ISP_RUNSTATE) { 75365adb54cSMatt Jacob isp_uninit(isp); 7543395b056SMatt Jacob ISP_UNLOCK(isp); 755960f6939SMatt Jacob goto bad; 756960f6939SMatt Jacob } 75756aef503SMatt Jacob /* 75856aef503SMatt Jacob * XXXX: Here is where we might unload the f/w module 75956aef503SMatt Jacob * XXXX: (or decrease the reference count to it). 76056aef503SMatt Jacob */ 7613395b056SMatt Jacob ISP_UNLOCK(isp); 762960f6939SMatt Jacob return (0); 763960f6939SMatt Jacob 764960f6939SMatt Jacob bad: 765960f6939SMatt Jacob 766960f6939SMatt Jacob if (pcs && pcs->ih) { 767960f6939SMatt Jacob (void) bus_teardown_intr(dev, irq, pcs->ih); 768960f6939SMatt Jacob } 769960f6939SMatt Jacob 7703395b056SMatt Jacob if (locksetup && isp) { 7713395b056SMatt Jacob mtx_destroy(&isp->isp_osinfo.lock); 7723395b056SMatt Jacob } 7733395b056SMatt Jacob 774960f6939SMatt Jacob if (irq) { 775960f6939SMatt Jacob (void) bus_release_resource(dev, SYS_RES_IRQ, iqd, irq); 776960f6939SMatt Jacob } 7773395b056SMatt Jacob 7783395b056SMatt Jacob 779960f6939SMatt Jacob if (regs) { 780960f6939SMatt Jacob (void) bus_release_resource(dev, rtp, rgd, regs); 781960f6939SMatt Jacob } 7823395b056SMatt Jacob 783960f6939SMatt Jacob if (pcs) { 784960f6939SMatt Jacob if (pcs->pci_isp.isp_param) 785960f6939SMatt Jacob free(pcs->pci_isp.isp_param, M_DEVBUF); 78665adb54cSMatt Jacob free(pcs, M_DEVBUF); 78765adb54cSMatt Jacob } 7883395b056SMatt Jacob 78956aef503SMatt Jacob /* 79056aef503SMatt Jacob * XXXX: Here is where we might unload the f/w module 79156aef503SMatt Jacob * XXXX: (or decrease the reference count to it). 79256aef503SMatt Jacob */ 793960f6939SMatt Jacob return (ENXIO); 79465adb54cSMatt Jacob } 79565adb54cSMatt Jacob 796f09b1922SMatt Jacob static void 797f09b1922SMatt Jacob isp_pci_intr(void *arg) 798f09b1922SMatt Jacob { 799f09b1922SMatt Jacob struct ispsoftc *isp = arg; 800126ec864SMatt Jacob u_int16_t isr, sema, mbox; 801126ec864SMatt Jacob 802f09b1922SMatt Jacob ISP_LOCK(isp); 803126ec864SMatt Jacob isp->isp_intcnt++; 804126ec864SMatt Jacob if (ISP_READ_ISR(isp, &isr, &sema, &mbox) == 0) { 805126ec864SMatt Jacob isp->isp_intbogus++; 806126ec864SMatt Jacob } else { 807b96934e8SMatt Jacob int iok = isp->isp_osinfo.intsok; 808b96934e8SMatt Jacob isp->isp_osinfo.intsok = 0; 809126ec864SMatt Jacob isp_intr(isp, isr, sema, mbox); 810b96934e8SMatt Jacob isp->isp_osinfo.intsok = iok; 811126ec864SMatt Jacob } 812f09b1922SMatt Jacob ISP_UNLOCK(isp); 813f09b1922SMatt Jacob } 814f09b1922SMatt Jacob 815126ec864SMatt Jacob 816126ec864SMatt Jacob #define IspVirt2Off(a, x) \ 817126ec864SMatt Jacob (((struct isp_pcisoftc *)a)->pci_poff[((x) & _BLK_REG_MASK) >> \ 818126ec864SMatt Jacob _BLK_REG_SHFT] + ((x) & 0xff)) 819126ec864SMatt Jacob 820126ec864SMatt Jacob #define BXR2(pcs, off) \ 821126ec864SMatt Jacob bus_space_read_2(pcs->pci_st, pcs->pci_sh, off) 822126ec864SMatt Jacob #define BXW2(pcs, off, v) \ 823126ec864SMatt Jacob bus_space_write_2(pcs->pci_st, pcs->pci_sh, off, v) 824126ec864SMatt Jacob 825126ec864SMatt Jacob 826126ec864SMatt Jacob static INLINE int 827126ec864SMatt Jacob isp_pci_rd_debounced(struct ispsoftc *isp, int off, u_int16_t *rp) 828126ec864SMatt Jacob { 829126ec864SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 830126ec864SMatt Jacob u_int16_t val0, val1; 831126ec864SMatt Jacob int i = 0; 832126ec864SMatt Jacob 833126ec864SMatt Jacob do { 834126ec864SMatt Jacob val0 = BXR2(pcs, IspVirt2Off(isp, off)); 835126ec864SMatt Jacob val1 = BXR2(pcs, IspVirt2Off(isp, off)); 836126ec864SMatt Jacob } while (val0 != val1 && ++i < 1000); 837126ec864SMatt Jacob if (val0 != val1) { 838126ec864SMatt Jacob return (1); 839126ec864SMatt Jacob } 840126ec864SMatt Jacob *rp = val0; 841126ec864SMatt Jacob return (0); 842126ec864SMatt Jacob } 843126ec864SMatt Jacob 844126ec864SMatt Jacob static int 845126ec864SMatt Jacob isp_pci_rd_isr(struct ispsoftc *isp, u_int16_t *isrp, 846126ec864SMatt Jacob u_int16_t *semap, u_int16_t *mbp) 847126ec864SMatt Jacob { 848126ec864SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 849126ec864SMatt Jacob u_int16_t isr, sema; 850126ec864SMatt Jacob 851126ec864SMatt Jacob if (IS_2100(isp)) { 852126ec864SMatt Jacob if (isp_pci_rd_debounced(isp, BIU_ISR, &isr)) { 853126ec864SMatt Jacob return (0); 854126ec864SMatt Jacob } 855126ec864SMatt Jacob if (isp_pci_rd_debounced(isp, BIU_SEMA, &sema)) { 856126ec864SMatt Jacob return (0); 857126ec864SMatt Jacob } 858126ec864SMatt Jacob } else { 859126ec864SMatt Jacob isr = BXR2(pcs, IspVirt2Off(isp, BIU_ISR)); 860126ec864SMatt Jacob sema = BXR2(pcs, IspVirt2Off(isp, BIU_SEMA)); 861126ec864SMatt Jacob } 862126ec864SMatt Jacob isp_prt(isp, ISP_LOGDEBUG3, "ISR 0x%x SEMA 0x%x", isr, sema); 863126ec864SMatt Jacob isr &= INT_PENDING_MASK(isp); 864126ec864SMatt Jacob sema &= BIU_SEMA_LOCK; 865126ec864SMatt Jacob if (isr == 0 && sema == 0) { 866126ec864SMatt Jacob return (0); 867126ec864SMatt Jacob } 868126ec864SMatt Jacob *isrp = isr; 869126ec864SMatt Jacob if ((*semap = sema) != 0) { 870126ec864SMatt Jacob if (IS_2100(isp)) { 871126ec864SMatt Jacob if (isp_pci_rd_debounced(isp, OUTMAILBOX0, mbp)) { 872126ec864SMatt Jacob return (0); 873126ec864SMatt Jacob } 874126ec864SMatt Jacob } else { 875126ec864SMatt Jacob *mbp = BXR2(pcs, IspVirt2Off(isp, OUTMAILBOX0)); 876126ec864SMatt Jacob } 877126ec864SMatt Jacob } 878126ec864SMatt Jacob return (1); 879126ec864SMatt Jacob } 880126ec864SMatt Jacob 881126ec864SMatt Jacob static int 882126ec864SMatt Jacob isp_pci_rd_isr_2300(struct ispsoftc *isp, u_int16_t *isrp, 883126ec864SMatt Jacob u_int16_t *semap, u_int16_t *mbox0p) 884126ec864SMatt Jacob { 885126ec864SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 886126ec864SMatt Jacob u_int32_t r2hisr; 887126ec864SMatt Jacob 8883bd40330SMatt Jacob if (!(BXR2(pcs, IspVirt2Off(isp, BIU_ISR) & BIU2100_ISR_RISC_INT))) { 8893bd40330SMatt Jacob *isrp = 0; 890db4fa023SMatt Jacob return (0); 8913bd40330SMatt Jacob } 892126ec864SMatt Jacob r2hisr = bus_space_read_4(pcs->pci_st, pcs->pci_sh, 893126ec864SMatt Jacob IspVirt2Off(pcs, BIU_R2HSTSLO)); 894126ec864SMatt Jacob isp_prt(isp, ISP_LOGDEBUG3, "RISC2HOST ISR 0x%x", r2hisr); 895126ec864SMatt Jacob if ((r2hisr & BIU_R2HST_INTR) == 0) { 896126ec864SMatt Jacob *isrp = 0; 897126ec864SMatt Jacob return (0); 898126ec864SMatt Jacob } 899126ec864SMatt Jacob switch (r2hisr & BIU_R2HST_ISTAT_MASK) { 900126ec864SMatt Jacob case ISPR2HST_ROM_MBX_OK: 901126ec864SMatt Jacob case ISPR2HST_ROM_MBX_FAIL: 902126ec864SMatt Jacob case ISPR2HST_MBX_OK: 903126ec864SMatt Jacob case ISPR2HST_MBX_FAIL: 904126ec864SMatt Jacob case ISPR2HST_ASYNC_EVENT: 905126ec864SMatt Jacob *isrp = r2hisr & 0xffff; 906126ec864SMatt Jacob *mbox0p = (r2hisr >> 16); 907126ec864SMatt Jacob *semap = 1; 908126ec864SMatt Jacob return (1); 909fc3bbaaaSMatt Jacob case ISPR2HST_RIO_16: 910fc3bbaaaSMatt Jacob *isrp = r2hisr & 0xffff; 911fc3bbaaaSMatt Jacob *mbox0p = ASYNC_RIO1; 912fc3bbaaaSMatt Jacob *semap = 1; 913fc3bbaaaSMatt Jacob return (1); 914fc3bbaaaSMatt Jacob case ISPR2HST_FPOST: 915fc3bbaaaSMatt Jacob *isrp = r2hisr & 0xffff; 916fc3bbaaaSMatt Jacob *mbox0p = ASYNC_CMD_CMPLT; 917fc3bbaaaSMatt Jacob *semap = 1; 918fc3bbaaaSMatt Jacob return (1); 919fc3bbaaaSMatt Jacob case ISPR2HST_FPOST_CTIO: 920fc3bbaaaSMatt Jacob *isrp = r2hisr & 0xffff; 921fc3bbaaaSMatt Jacob *mbox0p = ASYNC_CTIO_DONE; 922fc3bbaaaSMatt Jacob *semap = 1; 923fc3bbaaaSMatt Jacob return (1); 924126ec864SMatt Jacob case ISPR2HST_RSPQ_UPDATE: 925126ec864SMatt Jacob *isrp = r2hisr & 0xffff; 926126ec864SMatt Jacob *mbox0p = 0; 927126ec864SMatt Jacob *semap = 0; 928126ec864SMatt Jacob return (1); 929126ec864SMatt Jacob default: 930126ec864SMatt Jacob return (0); 931126ec864SMatt Jacob } 932126ec864SMatt Jacob } 933126ec864SMatt Jacob 93465adb54cSMatt Jacob static u_int16_t 935126ec864SMatt Jacob isp_pci_rd_reg(struct ispsoftc *isp, int regoff) 93665adb54cSMatt Jacob { 93765adb54cSMatt Jacob u_int16_t rv; 93865adb54cSMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 939126ec864SMatt Jacob int oldconf = 0; 94065adb54cSMatt Jacob 941d59bd469SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK) { 94265adb54cSMatt Jacob /* 94365adb54cSMatt Jacob * We will assume that someone has paused the RISC processor. 94465adb54cSMatt Jacob */ 945126ec864SMatt Jacob oldconf = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 946126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), 947126ec864SMatt Jacob oldconf | BIU_PCI_CONF1_SXP); 94865adb54cSMatt Jacob } 949126ec864SMatt Jacob rv = BXR2(pcs, IspVirt2Off(isp, regoff)); 950d59bd469SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK) { 951126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), oldconf); 95265adb54cSMatt Jacob } 95365adb54cSMatt Jacob return (rv); 95465adb54cSMatt Jacob } 95565adb54cSMatt Jacob 95665adb54cSMatt Jacob static void 957126ec864SMatt Jacob isp_pci_wr_reg(struct ispsoftc *isp, int regoff, u_int16_t val) 95865adb54cSMatt Jacob { 95965adb54cSMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 960126ec864SMatt Jacob int oldconf = 0; 961d59bd469SMatt Jacob 962d59bd469SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK) { 96365adb54cSMatt Jacob /* 96465adb54cSMatt Jacob * We will assume that someone has paused the RISC processor. 96565adb54cSMatt Jacob */ 966126ec864SMatt Jacob oldconf = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 967126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), 968126ec864SMatt Jacob oldconf | BIU_PCI_CONF1_SXP); 96965adb54cSMatt Jacob } 970126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, regoff), val); 971d59bd469SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK) { 972126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), oldconf); 97365adb54cSMatt Jacob } 97465adb54cSMatt Jacob } 97565adb54cSMatt Jacob 976d59bd469SMatt Jacob static u_int16_t 977126ec864SMatt Jacob isp_pci_rd_reg_1080(struct ispsoftc *isp, int regoff) 978d59bd469SMatt Jacob { 97922e1dc85SMatt Jacob u_int16_t rv, oc = 0; 980d59bd469SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 981d59bd469SMatt Jacob 98222e1dc85SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK || 98322e1dc85SMatt Jacob (regoff & _BLK_REG_MASK) == (SXP_BLOCK|SXP_BANK1_SELECT)) { 98422e1dc85SMatt Jacob u_int16_t tc; 985d59bd469SMatt Jacob /* 986d59bd469SMatt Jacob * We will assume that someone has paused the RISC processor. 987d59bd469SMatt Jacob */ 988126ec864SMatt Jacob oc = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 98922e1dc85SMatt Jacob tc = oc & ~BIU_PCI1080_CONF1_DMA; 99022e1dc85SMatt Jacob if (regoff & SXP_BANK1_SELECT) 99122e1dc85SMatt Jacob tc |= BIU_PCI1080_CONF1_SXP1; 99222e1dc85SMatt Jacob else 99322e1dc85SMatt Jacob tc |= BIU_PCI1080_CONF1_SXP0; 994126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), tc); 995d59bd469SMatt Jacob } else if ((regoff & _BLK_REG_MASK) == DMA_BLOCK) { 996126ec864SMatt Jacob oc = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 997126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), 998126ec864SMatt Jacob oc | BIU_PCI1080_CONF1_DMA); 999d59bd469SMatt Jacob } 1000126ec864SMatt Jacob rv = BXR2(pcs, IspVirt2Off(isp, regoff)); 100122e1dc85SMatt Jacob if (oc) { 1002126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), oc); 1003d59bd469SMatt Jacob } 1004d59bd469SMatt Jacob return (rv); 1005d59bd469SMatt Jacob } 1006d59bd469SMatt Jacob 1007d59bd469SMatt Jacob static void 1008126ec864SMatt Jacob isp_pci_wr_reg_1080(struct ispsoftc *isp, int regoff, u_int16_t val) 1009d59bd469SMatt Jacob { 1010d59bd469SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *) isp; 1011126ec864SMatt Jacob int oc = 0; 1012d59bd469SMatt Jacob 101322e1dc85SMatt Jacob if ((regoff & _BLK_REG_MASK) == SXP_BLOCK || 101422e1dc85SMatt Jacob (regoff & _BLK_REG_MASK) == (SXP_BLOCK|SXP_BANK1_SELECT)) { 101522e1dc85SMatt Jacob u_int16_t tc; 1016d59bd469SMatt Jacob /* 1017d59bd469SMatt Jacob * We will assume that someone has paused the RISC processor. 1018d59bd469SMatt Jacob */ 1019126ec864SMatt Jacob oc = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 102022e1dc85SMatt Jacob tc = oc & ~BIU_PCI1080_CONF1_DMA; 102122e1dc85SMatt Jacob if (regoff & SXP_BANK1_SELECT) 102222e1dc85SMatt Jacob tc |= BIU_PCI1080_CONF1_SXP1; 102322e1dc85SMatt Jacob else 102422e1dc85SMatt Jacob tc |= BIU_PCI1080_CONF1_SXP0; 1025126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), tc); 1026d59bd469SMatt Jacob } else if ((regoff & _BLK_REG_MASK) == DMA_BLOCK) { 1027126ec864SMatt Jacob oc = BXR2(pcs, IspVirt2Off(isp, BIU_CONF1)); 1028126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), 1029126ec864SMatt Jacob oc | BIU_PCI1080_CONF1_DMA); 1030d59bd469SMatt Jacob } 1031126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, regoff), val); 103222e1dc85SMatt Jacob if (oc) { 1033126ec864SMatt Jacob BXW2(pcs, IspVirt2Off(isp, BIU_CONF1), oc); 1034d59bd469SMatt Jacob } 1035d59bd469SMatt Jacob } 1036d59bd469SMatt Jacob 1037d720e6d5SJustin T. Gibbs 1038222bb542SMatt Jacob struct imush { 1039222bb542SMatt Jacob struct ispsoftc *isp; 1040222bb542SMatt Jacob int error; 1041222bb542SMatt Jacob }; 1042222bb542SMatt Jacob 10431923f739SMatt Jacob static void imc(void *, bus_dma_segment_t *, int, int); 10441923f739SMatt Jacob 1045d720e6d5SJustin T. Gibbs static void 10461923f739SMatt Jacob imc(void *arg, bus_dma_segment_t *segs, int nseg, int error) 1047d720e6d5SJustin T. Gibbs { 1048222bb542SMatt Jacob struct imush *imushp = (struct imush *) arg; 1049222bb542SMatt Jacob if (error) { 1050222bb542SMatt Jacob imushp->error = error; 1051222bb542SMatt Jacob } else { 10521923f739SMatt Jacob struct ispsoftc *isp =imushp->isp; 10531923f739SMatt Jacob bus_addr_t addr = segs->ds_addr; 10541923f739SMatt Jacob 10551923f739SMatt Jacob isp->isp_rquest_dma = addr; 10561923f739SMatt Jacob addr += ISP_QUEUE_SIZE(RQUEST_QUEUE_LEN(isp)); 10571923f739SMatt Jacob isp->isp_result_dma = addr; 10581923f739SMatt Jacob if (IS_FC(isp)) { 10591923f739SMatt Jacob addr += ISP_QUEUE_SIZE(RESULT_QUEUE_LEN(isp)); 10601923f739SMatt Jacob FCPARAM(isp)->isp_scdma = addr; 10611923f739SMatt Jacob } 1062222bb542SMatt Jacob } 1063d720e6d5SJustin T. Gibbs } 1064d720e6d5SJustin T. Gibbs 1065029f13c6SMatt Jacob /* 1066029f13c6SMatt Jacob * Should be BUS_SPACE_MAXSIZE, but MAXPHYS is larger than BUS_SPACE_MAXSIZE 1067029f13c6SMatt Jacob */ 1068029f13c6SMatt Jacob #define ISP_NSEGS ((MAXPHYS / PAGE_SIZE) + 1) 1069d720e6d5SJustin T. Gibbs 1070d720e6d5SJustin T. Gibbs static int 107117e318c6SMatt Jacob isp_pci_mbxdma(struct ispsoftc *isp) 1072d720e6d5SJustin T. Gibbs { 10731923f739SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *)isp; 1074d720e6d5SJustin T. Gibbs caddr_t base; 1075d720e6d5SJustin T. Gibbs u_int32_t len; 10761923f739SMatt Jacob int i, error, ns; 1077435a9337SMatt Jacob bus_size_t alim, slim; 1078222bb542SMatt Jacob struct imush im; 1079222bb542SMatt Jacob 1080a95ae193SMatt Jacob /* 1081a95ae193SMatt Jacob * Already been here? If so, leave... 1082a95ae193SMatt Jacob */ 1083a95ae193SMatt Jacob if (isp->isp_rquest) { 1084a95ae193SMatt Jacob return (0); 1085a95ae193SMatt Jacob } 1086a95ae193SMatt Jacob 1087435a9337SMatt Jacob #ifdef ISP_DAC_SUPPORTED 1088435a9337SMatt Jacob alim = BUS_SPACE_UNRESTRICTED; 1089435a9337SMatt Jacob #else 1090435a9337SMatt Jacob alim = BUS_SPACE_MAXADDR_32BIT; 1091435a9337SMatt Jacob #endif 10921923f739SMatt Jacob if (IS_ULTRA2(isp) || IS_FC(isp) || IS_1240(isp)) { 1093435a9337SMatt Jacob slim = BUS_SPACE_MAXADDR_32BIT; 10941923f739SMatt Jacob } else { 1095435a9337SMatt Jacob slim = BUS_SPACE_MAXADDR_24BIT; 10961923f739SMatt Jacob } 10971923f739SMatt Jacob 109872429e49SMatt Jacob ISP_UNLOCK(isp); 1099435a9337SMatt Jacob if (bus_dma_tag_create(NULL, 1, slim+1, alim, alim, 1100f6b1c44dSScott Long NULL, NULL, BUS_SPACE_MAXSIZE, ISP_NSEGS, slim, 0, 1101f6b1c44dSScott Long busdma_lock_mutex, &Giant, &pcs->dmat)) { 11021923f739SMatt Jacob isp_prt(isp, ISP_LOGERR, "could not create master dma tag"); 110372429e49SMatt Jacob ISP_LOCK(isp); 11041923f739SMatt Jacob return(1); 11051923f739SMatt Jacob } 11061923f739SMatt Jacob 11071923f739SMatt Jacob 1108d02373f1SMatt Jacob len = sizeof (XS_T **) * isp->isp_maxcmds; 1109a163d034SWarner Losh isp->isp_xflist = (XS_T **) malloc(len, M_DEVBUF, M_WAITOK | M_ZERO); 1110a95ae193SMatt Jacob if (isp->isp_xflist == NULL) { 1111d02373f1SMatt Jacob isp_prt(isp, ISP_LOGERR, "cannot alloc xflist array"); 111272429e49SMatt Jacob ISP_LOCK(isp); 1113a95ae193SMatt Jacob return (1); 1114a95ae193SMatt Jacob } 1115a95ae193SMatt Jacob len = sizeof (bus_dmamap_t) * isp->isp_maxcmds; 1116a163d034SWarner Losh pcs->dmaps = (bus_dmamap_t *) malloc(len, M_DEVBUF, M_WAITOK); 11171923f739SMatt Jacob if (pcs->dmaps == NULL) { 11181923f739SMatt Jacob isp_prt(isp, ISP_LOGERR, "can't alloc dma map storage"); 1119a95ae193SMatt Jacob free(isp->isp_xflist, M_DEVBUF); 112072429e49SMatt Jacob ISP_LOCK(isp); 1121a95ae193SMatt Jacob return (1); 1122a95ae193SMatt Jacob } 1123a95ae193SMatt Jacob 1124d720e6d5SJustin T. Gibbs /* 1125d720e6d5SJustin T. Gibbs * Allocate and map the request, result queues, plus FC scratch area. 1126d720e6d5SJustin T. Gibbs */ 1127d02373f1SMatt Jacob len = ISP_QUEUE_SIZE(RQUEST_QUEUE_LEN(isp)); 1128d02373f1SMatt Jacob len += ISP_QUEUE_SIZE(RESULT_QUEUE_LEN(isp)); 1129222bb542SMatt Jacob if (IS_FC(isp)) { 1130d720e6d5SJustin T. Gibbs len += ISP2100_SCRLEN; 1131d720e6d5SJustin T. Gibbs } 11321923f739SMatt Jacob 11331923f739SMatt Jacob ns = (len / PAGE_SIZE) + 1; 1134435a9337SMatt Jacob if (bus_dma_tag_create(pcs->dmat, QENTRY_LEN, slim+1, alim, alim, 1135f6b1c44dSScott Long NULL, NULL, len, ns, slim, 0, busdma_lock_mutex, &Giant, 1136f6b1c44dSScott Long &isp->isp_cdmat)) { 1137f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 1138f7dddf8aSMatt Jacob "cannot create a dma tag for control spaces"); 11391923f739SMatt Jacob free(pcs->dmaps, M_DEVBUF); 1140a95ae193SMatt Jacob free(isp->isp_xflist, M_DEVBUF); 114172429e49SMatt Jacob ISP_LOCK(isp); 1142d720e6d5SJustin T. Gibbs return (1); 1143d720e6d5SJustin T. Gibbs } 1144d720e6d5SJustin T. Gibbs 11451923f739SMatt Jacob if (bus_dmamem_alloc(isp->isp_cdmat, (void **)&base, BUS_DMA_NOWAIT, 11461923f739SMatt Jacob &isp->isp_cdmap) != 0) { 1147f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 11481923f739SMatt Jacob "cannot allocate %d bytes of CCB memory", len); 11491923f739SMatt Jacob bus_dma_tag_destroy(isp->isp_cdmat); 1150a95ae193SMatt Jacob free(isp->isp_xflist, M_DEVBUF); 11511923f739SMatt Jacob free(pcs->dmaps, M_DEVBUF); 115272429e49SMatt Jacob ISP_LOCK(isp); 1153222bb542SMatt Jacob return (1); 1154222bb542SMatt Jacob } 1155d720e6d5SJustin T. Gibbs 1156a95ae193SMatt Jacob for (i = 0; i < isp->isp_maxcmds; i++) { 11571923f739SMatt Jacob error = bus_dmamap_create(pcs->dmat, 0, &pcs->dmaps[i]); 1158d720e6d5SJustin T. Gibbs if (error) { 1159f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 1160f7dddf8aSMatt Jacob "error %d creating per-cmd DMA maps", error); 11611923f739SMatt Jacob while (--i >= 0) { 11621923f739SMatt Jacob bus_dmamap_destroy(pcs->dmat, pcs->dmaps[i]); 11631923f739SMatt Jacob } 11641923f739SMatt Jacob goto bad; 1165d720e6d5SJustin T. Gibbs } 1166d720e6d5SJustin T. Gibbs } 1167a95ae193SMatt Jacob 11681923f739SMatt Jacob im.isp = isp; 1169222bb542SMatt Jacob im.error = 0; 11701923f739SMatt Jacob bus_dmamap_load(isp->isp_cdmat, isp->isp_cdmap, base, len, imc, &im, 0); 1171222bb542SMatt Jacob if (im.error) { 1172f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 11731923f739SMatt Jacob "error %d loading dma map for control areas", im.error); 11741923f739SMatt Jacob goto bad; 1175222bb542SMatt Jacob } 11761923f739SMatt Jacob 11771923f739SMatt Jacob isp->isp_rquest = base; 11781923f739SMatt Jacob base += ISP_QUEUE_SIZE(RQUEST_QUEUE_LEN(isp)); 11791923f739SMatt Jacob isp->isp_result = base; 11801923f739SMatt Jacob if (IS_FC(isp)) { 11811923f739SMatt Jacob base += ISP_QUEUE_SIZE(RESULT_QUEUE_LEN(isp)); 11821923f739SMatt Jacob FCPARAM(isp)->isp_scratch = base; 118392c49d78SMatt Jacob } 118472429e49SMatt Jacob ISP_LOCK(isp); 1185d720e6d5SJustin T. Gibbs return (0); 11861923f739SMatt Jacob 11871923f739SMatt Jacob bad: 11881923f739SMatt Jacob bus_dmamem_free(isp->isp_cdmat, base, isp->isp_cdmap); 11891923f739SMatt Jacob bus_dma_tag_destroy(isp->isp_cdmat); 11901923f739SMatt Jacob free(isp->isp_xflist, M_DEVBUF); 11911923f739SMatt Jacob free(pcs->dmaps, M_DEVBUF); 119272429e49SMatt Jacob ISP_LOCK(isp); 11931923f739SMatt Jacob isp->isp_rquest = NULL; 11941923f739SMatt Jacob return (1); 1195d720e6d5SJustin T. Gibbs } 1196d720e6d5SJustin T. Gibbs 1197d720e6d5SJustin T. Gibbs typedef struct { 1198d720e6d5SJustin T. Gibbs struct ispsoftc *isp; 11999e11e5beSMatt Jacob void *cmd_token; 12009e11e5beSMatt Jacob void *rq; 12014fd13c1bSMatt Jacob u_int16_t *nxtip; 12029637d68cSMatt Jacob u_int16_t optr; 1203d720e6d5SJustin T. Gibbs u_int error; 1204d720e6d5SJustin T. Gibbs } mush_t; 1205d720e6d5SJustin T. Gibbs 12064873663cSMatt Jacob #define MUSHERR_NOQENTRIES -2 12074873663cSMatt Jacob 12089e11e5beSMatt Jacob #ifdef ISP_TARGET_MODE 12099e11e5beSMatt Jacob /* 12109e11e5beSMatt Jacob * We need to handle DMA for target mode differently from initiator mode. 12119e11e5beSMatt Jacob * 12129e11e5beSMatt Jacob * DMA mapping and construction and submission of CTIO Request Entries 12139e11e5beSMatt Jacob * and rendevous for completion are very tightly coupled because we start 12149e11e5beSMatt Jacob * out by knowing (per platform) how much data we have to move, but we 12159e11e5beSMatt Jacob * don't know, up front, how many DMA mapping segments will have to be used 12169e11e5beSMatt Jacob * cover that data, so we don't know how many CTIO Request Entries we 12179e11e5beSMatt Jacob * will end up using. Further, for performance reasons we may want to 12189e11e5beSMatt Jacob * (on the last CTIO for Fibre Channel), send status too (if all went well). 12199e11e5beSMatt Jacob * 12209e11e5beSMatt Jacob * The standard vector still goes through isp_pci_dmasetup, but the callback 12219e11e5beSMatt Jacob * for the DMA mapping routines comes here instead with the whole transfer 12229e11e5beSMatt Jacob * mapped and a pointer to a partially filled in already allocated request 12239e11e5beSMatt Jacob * queue entry. We finish the job. 12249e11e5beSMatt Jacob */ 1225e9a2738aSMatt Jacob static void tdma_mk(void *, bus_dma_segment_t *, int, int); 1226e9a2738aSMatt Jacob static void tdma_mkfc(void *, bus_dma_segment_t *, int, int); 1227e9a2738aSMatt Jacob 1228e9a2738aSMatt Jacob #define STATUS_WITH_DATA 1 12299e11e5beSMatt Jacob 1230d720e6d5SJustin T. Gibbs static void 123105fbcbb0SMatt Jacob tdma_mk(void *arg, bus_dma_segment_t *dm_segs, int nseg, int error) 1232d720e6d5SJustin T. Gibbs { 1233d720e6d5SJustin T. Gibbs mush_t *mp; 12349e11e5beSMatt Jacob struct ccb_scsiio *csio; 12354fd13c1bSMatt Jacob struct ispsoftc *isp; 12361923f739SMatt Jacob struct isp_pcisoftc *pcs; 1237d720e6d5SJustin T. Gibbs bus_dmamap_t *dp; 12384fd13c1bSMatt Jacob ct_entry_t *cto, *qe; 123905fbcbb0SMatt Jacob u_int8_t scsi_status; 12404fd13c1bSMatt Jacob u_int16_t curi, nxti, handle; 1241b96934e8SMatt Jacob u_int32_t sflags; 124205fbcbb0SMatt Jacob int32_t resid; 12434fd13c1bSMatt Jacob int nth_ctio, nctios, send_status; 1244d720e6d5SJustin T. Gibbs 1245d720e6d5SJustin T. Gibbs mp = (mush_t *) arg; 1246d720e6d5SJustin T. Gibbs if (error) { 1247d720e6d5SJustin T. Gibbs mp->error = error; 1248d720e6d5SJustin T. Gibbs return; 1249d720e6d5SJustin T. Gibbs } 12504fd13c1bSMatt Jacob 12514fd13c1bSMatt Jacob isp = mp->isp; 12529e11e5beSMatt Jacob csio = mp->cmd_token; 12539e11e5beSMatt Jacob cto = mp->rq; 12544fd13c1bSMatt Jacob curi = isp->isp_reqidx; 12554fd13c1bSMatt Jacob qe = (ct_entry_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, curi); 12569e11e5beSMatt Jacob 125765b024e1SMatt Jacob cto->ct_xfrlen = 0; 125865b024e1SMatt Jacob cto->ct_seg_count = 0; 125965b024e1SMatt Jacob cto->ct_header.rqs_entry_count = 1; 126005fbcbb0SMatt Jacob MEMZERO(cto->ct_dataseg, sizeof(cto->ct_dataseg)); 126105fbcbb0SMatt Jacob 126205fbcbb0SMatt Jacob if (nseg == 0) { 126305fbcbb0SMatt Jacob cto->ct_header.rqs_seqno = 1; 12644fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 1265e9a2738aSMatt Jacob "CTIO[%x] lun%d iid%d tag %x flgs %x sts %x ssts %x res %d", 12665f5aafe1SMatt Jacob cto->ct_fwhandle, csio->ccb_h.target_lun, cto->ct_iid, 1267e9a2738aSMatt Jacob cto->ct_tag_val, cto->ct_flags, cto->ct_status, 1268e9a2738aSMatt Jacob cto->ct_scsi_status, cto->ct_resid); 12694fd13c1bSMatt Jacob ISP_TDQE(isp, "tdma_mk[no data]", curi, cto); 12704fd13c1bSMatt Jacob isp_put_ctio(isp, cto, qe); 127165b024e1SMatt Jacob return; 127265b024e1SMatt Jacob } 127365b024e1SMatt Jacob 127465b024e1SMatt Jacob nctios = nseg / ISP_RQDSEG; 127565b024e1SMatt Jacob if (nseg % ISP_RQDSEG) { 127665b024e1SMatt Jacob nctios++; 127765b024e1SMatt Jacob } 127865b024e1SMatt Jacob 127905fbcbb0SMatt Jacob /* 12805f5aafe1SMatt Jacob * Save syshandle, and potentially any SCSI status, which we'll 12815f5aafe1SMatt Jacob * reinsert on the last CTIO we're going to send. 128205fbcbb0SMatt Jacob */ 12834fd13c1bSMatt Jacob 12845f5aafe1SMatt Jacob handle = cto->ct_syshandle; 12855f5aafe1SMatt Jacob cto->ct_syshandle = 0; 128605fbcbb0SMatt Jacob cto->ct_header.rqs_seqno = 0; 128705fbcbb0SMatt Jacob send_status = (cto->ct_flags & CT_SENDSTATUS) != 0; 128805fbcbb0SMatt Jacob 128905fbcbb0SMatt Jacob if (send_status) { 129005fbcbb0SMatt Jacob sflags = cto->ct_flags & (CT_SENDSTATUS | CT_CCINCR); 129105fbcbb0SMatt Jacob cto->ct_flags &= ~(CT_SENDSTATUS | CT_CCINCR); 129205fbcbb0SMatt Jacob /* 129305fbcbb0SMatt Jacob * Preserve residual. 129405fbcbb0SMatt Jacob */ 129505fbcbb0SMatt Jacob resid = cto->ct_resid; 129605fbcbb0SMatt Jacob 129705fbcbb0SMatt Jacob /* 129805fbcbb0SMatt Jacob * Save actual SCSI status. 129905fbcbb0SMatt Jacob */ 130005fbcbb0SMatt Jacob scsi_status = cto->ct_scsi_status; 130105fbcbb0SMatt Jacob 1302e9a2738aSMatt Jacob #ifndef STATUS_WITH_DATA 1303e9a2738aSMatt Jacob sflags |= CT_NO_DATA; 130405fbcbb0SMatt Jacob /* 130505fbcbb0SMatt Jacob * We can't do a status at the same time as a data CTIO, so 130605fbcbb0SMatt Jacob * we need to synthesize an extra CTIO at this level. 130705fbcbb0SMatt Jacob */ 130805fbcbb0SMatt Jacob nctios++; 1309b72b1569SMatt Jacob #endif 131005fbcbb0SMatt Jacob } else { 131105fbcbb0SMatt Jacob sflags = scsi_status = resid = 0; 131205fbcbb0SMatt Jacob } 131305fbcbb0SMatt Jacob 1314b96934e8SMatt Jacob cto->ct_resid = 0; 131505fbcbb0SMatt Jacob cto->ct_scsi_status = 0; 131605fbcbb0SMatt Jacob 13171923f739SMatt Jacob pcs = (struct isp_pcisoftc *)isp; 13181923f739SMatt Jacob dp = &pcs->dmaps[isp_handle_index(handle)]; 13199e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_IN) { 13201923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_PREREAD); 1321d720e6d5SJustin T. Gibbs } else { 13221923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_PREWRITE); 1323d720e6d5SJustin T. Gibbs } 1324d720e6d5SJustin T. Gibbs 13254fd13c1bSMatt Jacob nxti = *mp->nxtip; 13269e11e5beSMatt Jacob 13274fd13c1bSMatt Jacob for (nth_ctio = 0; nth_ctio < nctios; nth_ctio++) { 132805fbcbb0SMatt Jacob int seglim; 13299e11e5beSMatt Jacob 13309e11e5beSMatt Jacob seglim = nseg; 133105fbcbb0SMatt Jacob if (seglim) { 133205fbcbb0SMatt Jacob int seg; 133305fbcbb0SMatt Jacob 13349e11e5beSMatt Jacob if (seglim > ISP_RQDSEG) 13359e11e5beSMatt Jacob seglim = ISP_RQDSEG; 13369e11e5beSMatt Jacob 133705fbcbb0SMatt Jacob for (seg = 0; seg < seglim; seg++, nseg--) { 133805fbcbb0SMatt Jacob /* 133905fbcbb0SMatt Jacob * Unlike normal initiator commands, we don't 134005fbcbb0SMatt Jacob * do any swizzling here. 134105fbcbb0SMatt Jacob */ 13429e11e5beSMatt Jacob cto->ct_dataseg[seg].ds_count = dm_segs->ds_len; 134305fbcbb0SMatt Jacob cto->ct_dataseg[seg].ds_base = dm_segs->ds_addr; 13449e11e5beSMatt Jacob cto->ct_xfrlen += dm_segs->ds_len; 13459e11e5beSMatt Jacob dm_segs++; 13469e11e5beSMatt Jacob } 13479e11e5beSMatt Jacob cto->ct_seg_count = seg; 13489e11e5beSMatt Jacob } else { 134905fbcbb0SMatt Jacob /* 135005fbcbb0SMatt Jacob * This case should only happen when we're sending an 135105fbcbb0SMatt Jacob * extra CTIO with final status. 135205fbcbb0SMatt Jacob */ 135305fbcbb0SMatt Jacob if (send_status == 0) { 13544fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGWARN, 1355f7dddf8aSMatt Jacob "tdma_mk ran out of segments"); 135605fbcbb0SMatt Jacob mp->error = EINVAL; 135705fbcbb0SMatt Jacob return; 13589e11e5beSMatt Jacob } 135905fbcbb0SMatt Jacob } 136005fbcbb0SMatt Jacob 136105fbcbb0SMatt Jacob /* 136205fbcbb0SMatt Jacob * At this point, the fields ct_lun, ct_iid, ct_tagval, 136305fbcbb0SMatt Jacob * ct_tagtype, and ct_timeout have been carried over 136405fbcbb0SMatt Jacob * unchanged from what our caller had set. 136505fbcbb0SMatt Jacob * 136605fbcbb0SMatt Jacob * The dataseg fields and the seg_count fields we just got 136705fbcbb0SMatt Jacob * through setting. The data direction we've preserved all 136805fbcbb0SMatt Jacob * along and only clear it if we're now sending status. 136905fbcbb0SMatt Jacob */ 13709e11e5beSMatt Jacob 13714fd13c1bSMatt Jacob if (nth_ctio == nctios - 1) { 13729e11e5beSMatt Jacob /* 137305fbcbb0SMatt Jacob * We're the last in a sequence of CTIOs, so mark 137405fbcbb0SMatt Jacob * this CTIO and save the handle to the CCB such that 137505fbcbb0SMatt Jacob * when this CTIO completes we can free dma resources 137605fbcbb0SMatt Jacob * and do whatever else we need to do to finish the 1377e9a2738aSMatt Jacob * rest of the command. We *don't* give this to the 1378e9a2738aSMatt Jacob * firmware to work on- the caller will do that. 13799e11e5beSMatt Jacob */ 13804fd13c1bSMatt Jacob 13815f5aafe1SMatt Jacob cto->ct_syshandle = handle; 138205fbcbb0SMatt Jacob cto->ct_header.rqs_seqno = 1; 138305fbcbb0SMatt Jacob 138405fbcbb0SMatt Jacob if (send_status) { 13859e11e5beSMatt Jacob cto->ct_scsi_status = scsi_status; 1386b72b1569SMatt Jacob cto->ct_flags |= sflags; 138705fbcbb0SMatt Jacob cto->ct_resid = resid; 138842426921SMatt Jacob } 1389d02373f1SMatt Jacob if (send_status) { 13904fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 1391e9a2738aSMatt Jacob "CTIO[%x] lun%d iid %d tag %x ct_flags %x " 13925f5aafe1SMatt Jacob "scsi status %x resid %d", 13935f5aafe1SMatt Jacob cto->ct_fwhandle, csio->ccb_h.target_lun, 1394e9a2738aSMatt Jacob cto->ct_iid, cto->ct_tag_val, cto->ct_flags, 139505fbcbb0SMatt Jacob cto->ct_scsi_status, cto->ct_resid); 1396d02373f1SMatt Jacob } else { 13974fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 1398e9a2738aSMatt Jacob "CTIO[%x] lun%d iid%d tag %x ct_flags 0x%x", 13995f5aafe1SMatt Jacob cto->ct_fwhandle, csio->ccb_h.target_lun, 1400e9a2738aSMatt Jacob cto->ct_iid, cto->ct_tag_val, 1401e9a2738aSMatt Jacob cto->ct_flags); 140205fbcbb0SMatt Jacob } 14034fd13c1bSMatt Jacob isp_put_ctio(isp, cto, qe); 14044fd13c1bSMatt Jacob ISP_TDQE(isp, "last tdma_mk", curi, cto); 14054fd13c1bSMatt Jacob if (nctios > 1) { 14064fd13c1bSMatt Jacob MEMORYBARRIER(isp, SYNC_REQUEST, 14074fd13c1bSMatt Jacob curi, QENTRY_LEN); 14084fd13c1bSMatt Jacob } 14099e11e5beSMatt Jacob } else { 14104fd13c1bSMatt Jacob ct_entry_t *oqe = qe; 141105fbcbb0SMatt Jacob 141205fbcbb0SMatt Jacob /* 14135f5aafe1SMatt Jacob * Make sure syshandle fields are clean 141405fbcbb0SMatt Jacob */ 14155f5aafe1SMatt Jacob cto->ct_syshandle = 0; 14169e11e5beSMatt Jacob cto->ct_header.rqs_seqno = 0; 141705fbcbb0SMatt Jacob 14184fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 14195f5aafe1SMatt Jacob "CTIO[%x] lun%d for ID%d ct_flags 0x%x", 14205f5aafe1SMatt Jacob cto->ct_fwhandle, csio->ccb_h.target_lun, 14215f5aafe1SMatt Jacob cto->ct_iid, cto->ct_flags); 142205fbcbb0SMatt Jacob 142305fbcbb0SMatt Jacob /* 142405fbcbb0SMatt Jacob * Get a new CTIO 142505fbcbb0SMatt Jacob */ 14264fd13c1bSMatt Jacob qe = (ct_entry_t *) 14274fd13c1bSMatt Jacob ISP_QUEUE_ENTRY(isp->isp_rquest, nxti); 14284fd13c1bSMatt Jacob nxti = ISP_NXT_QENTRY(nxti, RQUEST_QUEUE_LEN(isp)); 14294fd13c1bSMatt Jacob if (nxti == mp->optr) { 14304fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG0, 1431f7dddf8aSMatt Jacob "Queue Overflow in tdma_mk"); 14329e11e5beSMatt Jacob mp->error = MUSHERR_NOQENTRIES; 14339e11e5beSMatt Jacob return; 14349e11e5beSMatt Jacob } 14354fd13c1bSMatt Jacob 14369e11e5beSMatt Jacob /* 14374fd13c1bSMatt Jacob * Now that we're done with the old CTIO, 14384fd13c1bSMatt Jacob * flush it out to the request queue. 14394fd13c1bSMatt Jacob */ 14404fd13c1bSMatt Jacob ISP_TDQE(isp, "dma_tgt_fc", curi, cto); 14414fd13c1bSMatt Jacob isp_put_ctio(isp, cto, oqe); 14424fd13c1bSMatt Jacob if (nth_ctio != 0) { 14434fd13c1bSMatt Jacob MEMORYBARRIER(isp, SYNC_REQUEST, curi, 14444fd13c1bSMatt Jacob QENTRY_LEN); 14454fd13c1bSMatt Jacob } 14464fd13c1bSMatt Jacob curi = ISP_NXT_QENTRY(curi, RQUEST_QUEUE_LEN(isp)); 14474fd13c1bSMatt Jacob 14484fd13c1bSMatt Jacob /* 14494fd13c1bSMatt Jacob * Reset some fields in the CTIO so we can reuse 14504fd13c1bSMatt Jacob * for the next one we'll flush to the request 14514fd13c1bSMatt Jacob * queue. 14529e11e5beSMatt Jacob */ 14539e11e5beSMatt Jacob cto->ct_header.rqs_entry_type = RQSTYPE_CTIO; 14549e11e5beSMatt Jacob cto->ct_header.rqs_entry_count = 1; 14559e11e5beSMatt Jacob cto->ct_header.rqs_flags = 0; 14569e11e5beSMatt Jacob cto->ct_status = 0; 14579e11e5beSMatt Jacob cto->ct_scsi_status = 0; 14589e11e5beSMatt Jacob cto->ct_xfrlen = 0; 14599e11e5beSMatt Jacob cto->ct_resid = 0; 14609e11e5beSMatt Jacob cto->ct_seg_count = 0; 146105fbcbb0SMatt Jacob MEMZERO(cto->ct_dataseg, sizeof(cto->ct_dataseg)); 14629e11e5beSMatt Jacob } 14639e11e5beSMatt Jacob } 14644fd13c1bSMatt Jacob *mp->nxtip = nxti; 14659e11e5beSMatt Jacob } 14669e11e5beSMatt Jacob 1467fc087171SMatt Jacob /* 1468fc087171SMatt Jacob * We don't have to do multiple CTIOs here. Instead, we can just do 1469fc087171SMatt Jacob * continuation segments as needed. This greatly simplifies the code 1470fc087171SMatt Jacob * improves performance. 1471fc087171SMatt Jacob */ 1472fc087171SMatt Jacob 14739e11e5beSMatt Jacob static void 147405fbcbb0SMatt Jacob tdma_mkfc(void *arg, bus_dma_segment_t *dm_segs, int nseg, int error) 14759e11e5beSMatt Jacob { 14769e11e5beSMatt Jacob mush_t *mp; 14779e11e5beSMatt Jacob struct ccb_scsiio *csio; 14784fd13c1bSMatt Jacob struct ispsoftc *isp; 14794fd13c1bSMatt Jacob ct2_entry_t *cto, *qe; 14804fd13c1bSMatt Jacob u_int16_t curi, nxti; 1481fc087171SMatt Jacob int segcnt; 14829e11e5beSMatt Jacob 14839e11e5beSMatt Jacob mp = (mush_t *) arg; 14849e11e5beSMatt Jacob if (error) { 14859e11e5beSMatt Jacob mp->error = error; 14869e11e5beSMatt Jacob return; 14879e11e5beSMatt Jacob } 14889e11e5beSMatt Jacob 14894fd13c1bSMatt Jacob isp = mp->isp; 149065b024e1SMatt Jacob csio = mp->cmd_token; 149165b024e1SMatt Jacob cto = mp->rq; 1492fc087171SMatt Jacob 14934fd13c1bSMatt Jacob curi = isp->isp_reqidx; 14944fd13c1bSMatt Jacob qe = (ct2_entry_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, curi); 149565b024e1SMatt Jacob 149665b024e1SMatt Jacob if (nseg == 0) { 149765b024e1SMatt Jacob if ((cto->ct_flags & CT2_FLAG_MMASK) != CT2_FLAG_MODE1) { 14984fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGWARN, 1499f7dddf8aSMatt Jacob "dma2_tgt_fc, a status CTIO2 without MODE1 " 1500f7dddf8aSMatt Jacob "set (0x%x)", cto->ct_flags); 150165b024e1SMatt Jacob mp->error = EINVAL; 150265b024e1SMatt Jacob return; 150365b024e1SMatt Jacob } 150465b024e1SMatt Jacob /* 150565b024e1SMatt Jacob * We preserve ct_lun, ct_iid, ct_rxid. We set the data 150665b024e1SMatt Jacob * flags to NO DATA and clear relative offset flags. 150765b024e1SMatt Jacob * We preserve the ct_resid and the response area. 150865b024e1SMatt Jacob */ 1509fc087171SMatt Jacob cto->ct_header.rqs_seqno = 1; 151065b024e1SMatt Jacob cto->ct_seg_count = 0; 151165b024e1SMatt Jacob cto->ct_reloff = 0; 15124fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 15135f5aafe1SMatt Jacob "CTIO2[%x] lun %d->iid%d flgs 0x%x sts 0x%x ssts " 1514d02373f1SMatt Jacob "0x%x res %d", cto->ct_rxid, csio->ccb_h.target_lun, 1515d02373f1SMatt Jacob cto->ct_iid, cto->ct_flags, cto->ct_status, 151665b024e1SMatt Jacob cto->rsp.m1.ct_scsi_status, cto->ct_resid); 15174fd13c1bSMatt Jacob isp_put_ctio2(isp, cto, qe); 15184fd13c1bSMatt Jacob ISP_TDQE(isp, "dma2_tgt_fc[no data]", curi, qe); 15199e11e5beSMatt Jacob return; 15209e11e5beSMatt Jacob } 15219e11e5beSMatt Jacob 152265b024e1SMatt Jacob if ((cto->ct_flags & CT2_FLAG_MMASK) != CT2_FLAG_MODE0) { 1523fc087171SMatt Jacob isp_prt(isp, ISP_LOGERR, 1524f7dddf8aSMatt Jacob "dma2_tgt_fc, a data CTIO2 without MODE0 set " 1525f7dddf8aSMatt Jacob "(0x%x)", cto->ct_flags); 152665b024e1SMatt Jacob mp->error = EINVAL; 152765b024e1SMatt Jacob return; 152865b024e1SMatt Jacob } 152965b024e1SMatt Jacob 153065b024e1SMatt Jacob 15314fd13c1bSMatt Jacob nxti = *mp->nxtip; 15324fd13c1bSMatt Jacob 1533fc087171SMatt Jacob /* 1534fc087171SMatt Jacob * Set up the CTIO2 data segments. 1535fc087171SMatt Jacob */ 1536fc087171SMatt Jacob for (segcnt = 0; cto->ct_seg_count < ISP_RQDSEG_T2 && segcnt < nseg; 1537fc087171SMatt Jacob cto->ct_seg_count++, segcnt++) { 1538fc087171SMatt Jacob cto->rsp.m0.ct_dataseg[cto->ct_seg_count].ds_base = 1539fc087171SMatt Jacob dm_segs[segcnt].ds_addr; 1540fc087171SMatt Jacob cto->rsp.m0.ct_dataseg[cto->ct_seg_count].ds_count = 1541fc087171SMatt Jacob dm_segs[segcnt].ds_len; 1542fc087171SMatt Jacob cto->rsp.m0.ct_xfrlen += dm_segs[segcnt].ds_len; 154376514802SMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 154476514802SMatt Jacob "isp_send_ctio2: ent0[%d]0x%llx:%lld", 154576514802SMatt Jacob cto->ct_seg_count, (long long)dm_segs[segcnt].ds_addr, 154676514802SMatt Jacob (long long)dm_segs[segcnt].ds_len); 1547fc087171SMatt Jacob } 15489e11e5beSMatt Jacob 1549fc087171SMatt Jacob while (segcnt < nseg) { 1550fc087171SMatt Jacob u_int16_t curip; 15514fd13c1bSMatt Jacob int seg; 1552fc087171SMatt Jacob ispcontreq_t local, *crq = &local, *qep; 15539e11e5beSMatt Jacob 1554fc087171SMatt Jacob qep = (ispcontreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, nxti); 1555fc087171SMatt Jacob curip = nxti; 1556fc087171SMatt Jacob nxti = ISP_NXT_QENTRY(curip, RQUEST_QUEUE_LEN(isp)); 15574fd13c1bSMatt Jacob if (nxti == mp->optr) { 1558fc087171SMatt Jacob ISP_UNLOCK(isp); 1559fc087171SMatt Jacob isp_prt(isp, ISP_LOGTDEBUG0, 1560fc087171SMatt Jacob "tdma_mkfc: request queue overflow"); 15619e11e5beSMatt Jacob mp->error = MUSHERR_NOQENTRIES; 15629e11e5beSMatt Jacob return; 15639e11e5beSMatt Jacob } 1564fc087171SMatt Jacob cto->ct_header.rqs_entry_count++; 1565fc087171SMatt Jacob MEMZERO((void *)crq, sizeof (*crq)); 1566fc087171SMatt Jacob crq->req_header.rqs_entry_count = 1; 1567fc087171SMatt Jacob crq->req_header.rqs_entry_type = RQSTYPE_DATASEG; 1568fc087171SMatt Jacob for (seg = 0; segcnt < nseg && seg < ISP_CDSEG; 1569fc087171SMatt Jacob segcnt++, seg++) { 1570fc087171SMatt Jacob crq->req_dataseg[seg].ds_base = dm_segs[segcnt].ds_addr; 1571fc087171SMatt Jacob crq->req_dataseg[seg].ds_count = dm_segs[segcnt].ds_len; 1572fc087171SMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 157376514802SMatt Jacob "isp_send_ctio2: ent%d[%d]0x%llx:%lld", 1574fc087171SMatt Jacob cto->ct_header.rqs_entry_count-1, seg, 157576514802SMatt Jacob (long long) dm_segs[segcnt].ds_addr, 157676514802SMatt Jacob (long long) dm_segs[segcnt].ds_len); 1577fc087171SMatt Jacob cto->rsp.m0.ct_xfrlen += dm_segs[segcnt].ds_len; 1578fc087171SMatt Jacob cto->ct_seg_count++; 1579fc087171SMatt Jacob } 1580fc087171SMatt Jacob MEMORYBARRIER(isp, SYNC_REQUEST, curip, QENTRY_LEN); 1581fc087171SMatt Jacob isp_put_cont_req(isp, crq, qep); 1582fc087171SMatt Jacob ISP_TDQE(isp, "cont entry", curi, qep); 1583fc087171SMatt Jacob } 158465b024e1SMatt Jacob 15859e11e5beSMatt Jacob /* 1586fc087171SMatt Jacob * No do final twiddling for the CTIO itself. 15874fd13c1bSMatt Jacob */ 1588fc087171SMatt Jacob cto->ct_header.rqs_seqno = 1; 1589fc087171SMatt Jacob isp_prt(isp, ISP_LOGTDEBUG1, 1590fc087171SMatt Jacob "CTIO2[%x] lun %d->iid%d flgs 0x%x sts 0x%x ssts 0x%x resid %d", 1591fc087171SMatt Jacob cto->ct_rxid, csio->ccb_h.target_lun, (int) cto->ct_iid, 1592fc087171SMatt Jacob cto->ct_flags, cto->ct_status, cto->rsp.m1.ct_scsi_status, 1593fc087171SMatt Jacob cto->ct_resid); 1594fc087171SMatt Jacob isp_put_ctio2(isp, cto, qe); 1595fc087171SMatt Jacob ISP_TDQE(isp, "last dma2_tgt_fc", curi, qe); 15964fd13c1bSMatt Jacob *mp->nxtip = nxti; 15979e11e5beSMatt Jacob } 15989e11e5beSMatt Jacob #endif 15999e11e5beSMatt Jacob 1600126ec864SMatt Jacob static void dma2(void *, bus_dma_segment_t *, int, int); 16019e11e5beSMatt Jacob 16029e11e5beSMatt Jacob static void 16039e11e5beSMatt Jacob dma2(void *arg, bus_dma_segment_t *dm_segs, int nseg, int error) 16049e11e5beSMatt Jacob { 16059e11e5beSMatt Jacob mush_t *mp; 16064fd13c1bSMatt Jacob struct ispsoftc *isp; 16079e11e5beSMatt Jacob struct ccb_scsiio *csio; 16081923f739SMatt Jacob struct isp_pcisoftc *pcs; 16099e11e5beSMatt Jacob bus_dmamap_t *dp; 16109e11e5beSMatt Jacob bus_dma_segment_t *eseg; 16119e11e5beSMatt Jacob ispreq_t *rq; 16129e11e5beSMatt Jacob int seglim, datalen; 16134fd13c1bSMatt Jacob u_int16_t nxti; 16149e11e5beSMatt Jacob 16159e11e5beSMatt Jacob mp = (mush_t *) arg; 16169e11e5beSMatt Jacob if (error) { 16179e11e5beSMatt Jacob mp->error = error; 16189e11e5beSMatt Jacob return; 16199e11e5beSMatt Jacob } 16209e11e5beSMatt Jacob 16219e11e5beSMatt Jacob if (nseg < 1) { 1622f7dddf8aSMatt Jacob isp_prt(mp->isp, ISP_LOGERR, "bad segment count (%d)", nseg); 16239e11e5beSMatt Jacob mp->error = EFAULT; 16249e11e5beSMatt Jacob return; 16259e11e5beSMatt Jacob } 16269e11e5beSMatt Jacob csio = mp->cmd_token; 16274fd13c1bSMatt Jacob isp = mp->isp; 16289e11e5beSMatt Jacob rq = mp->rq; 16291923f739SMatt Jacob pcs = (struct isp_pcisoftc *)mp->isp; 16301923f739SMatt Jacob dp = &pcs->dmaps[isp_handle_index(rq->req_handle)]; 16314fd13c1bSMatt Jacob nxti = *mp->nxtip; 16329e11e5beSMatt Jacob 16339e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_IN) { 16341923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_PREREAD); 16359e11e5beSMatt Jacob } else { 16361923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_PREWRITE); 16379e11e5beSMatt Jacob } 16389e11e5beSMatt Jacob 16399e11e5beSMatt Jacob datalen = XS_XFRLEN(csio); 16409e11e5beSMatt Jacob 16419e11e5beSMatt Jacob /* 16429e11e5beSMatt Jacob * We're passed an initial partially filled in entry that 16439e11e5beSMatt Jacob * has most fields filled in except for data transfer 16449e11e5beSMatt Jacob * related values. 16459e11e5beSMatt Jacob * 16469e11e5beSMatt Jacob * Our job is to fill in the initial request queue entry and 16479e11e5beSMatt Jacob * then to start allocating and filling in continuation entries 16489e11e5beSMatt Jacob * until we've covered the entire transfer. 16499e11e5beSMatt Jacob */ 16509e11e5beSMatt Jacob 16514fd13c1bSMatt Jacob if (IS_FC(isp)) { 1652d720e6d5SJustin T. Gibbs seglim = ISP_RQDSEG_T2; 1653d720e6d5SJustin T. Gibbs ((ispreqt2_t *)rq)->req_totalcnt = datalen; 16549e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_IN) { 16559e11e5beSMatt Jacob ((ispreqt2_t *)rq)->req_flags |= REQFLAG_DATA_IN; 16569e11e5beSMatt Jacob } else { 16579e11e5beSMatt Jacob ((ispreqt2_t *)rq)->req_flags |= REQFLAG_DATA_OUT; 16589e11e5beSMatt Jacob } 1659d720e6d5SJustin T. Gibbs } else { 1660e142669aSMatt Jacob if (csio->cdb_len > 12) { 1661e142669aSMatt Jacob seglim = 0; 1662e142669aSMatt Jacob } else { 1663d720e6d5SJustin T. Gibbs seglim = ISP_RQDSEG; 1664e142669aSMatt Jacob } 16659e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_IN) { 16669e11e5beSMatt Jacob rq->req_flags |= REQFLAG_DATA_IN; 16679e11e5beSMatt Jacob } else { 16689e11e5beSMatt Jacob rq->req_flags |= REQFLAG_DATA_OUT; 16699e11e5beSMatt Jacob } 1670d720e6d5SJustin T. Gibbs } 1671d720e6d5SJustin T. Gibbs 1672d720e6d5SJustin T. Gibbs eseg = dm_segs + nseg; 1673d720e6d5SJustin T. Gibbs 1674d720e6d5SJustin T. Gibbs while (datalen != 0 && rq->req_seg_count < seglim && dm_segs != eseg) { 16754fd13c1bSMatt Jacob if (IS_FC(isp)) { 1676d720e6d5SJustin T. Gibbs ispreqt2_t *rq2 = (ispreqt2_t *)rq; 1677d720e6d5SJustin T. Gibbs rq2->req_dataseg[rq2->req_seg_count].ds_base = 1678d720e6d5SJustin T. Gibbs dm_segs->ds_addr; 1679d720e6d5SJustin T. Gibbs rq2->req_dataseg[rq2->req_seg_count].ds_count = 1680d720e6d5SJustin T. Gibbs dm_segs->ds_len; 1681d720e6d5SJustin T. Gibbs } else { 1682d720e6d5SJustin T. Gibbs rq->req_dataseg[rq->req_seg_count].ds_base = 1683d720e6d5SJustin T. Gibbs dm_segs->ds_addr; 1684d720e6d5SJustin T. Gibbs rq->req_dataseg[rq->req_seg_count].ds_count = 1685d720e6d5SJustin T. Gibbs dm_segs->ds_len; 1686d720e6d5SJustin T. Gibbs } 1687d720e6d5SJustin T. Gibbs datalen -= dm_segs->ds_len; 1688d720e6d5SJustin T. Gibbs rq->req_seg_count++; 1689d720e6d5SJustin T. Gibbs dm_segs++; 1690d720e6d5SJustin T. Gibbs } 1691d720e6d5SJustin T. Gibbs 1692d720e6d5SJustin T. Gibbs while (datalen > 0 && dm_segs != eseg) { 16934fd13c1bSMatt Jacob u_int16_t onxti; 16944fd13c1bSMatt Jacob ispcontreq_t local, *crq = &local, *cqe; 16954fd13c1bSMatt Jacob 16964fd13c1bSMatt Jacob cqe = (ispcontreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, nxti); 16974fd13c1bSMatt Jacob onxti = nxti; 16984fd13c1bSMatt Jacob nxti = ISP_NXT_QENTRY(onxti, RQUEST_QUEUE_LEN(isp)); 16994fd13c1bSMatt Jacob if (nxti == mp->optr) { 17004fd13c1bSMatt Jacob isp_prt(isp, ISP_LOGDEBUG0, "Request Queue Overflow++"); 17014873663cSMatt Jacob mp->error = MUSHERR_NOQENTRIES; 1702d720e6d5SJustin T. Gibbs return; 1703d720e6d5SJustin T. Gibbs } 1704d720e6d5SJustin T. Gibbs rq->req_header.rqs_entry_count++; 17054fd13c1bSMatt Jacob MEMZERO((void *)crq, sizeof (*crq)); 1706d720e6d5SJustin T. Gibbs crq->req_header.rqs_entry_count = 1; 1707d720e6d5SJustin T. Gibbs crq->req_header.rqs_entry_type = RQSTYPE_DATASEG; 1708d720e6d5SJustin T. Gibbs 1709d720e6d5SJustin T. Gibbs seglim = 0; 1710d720e6d5SJustin T. Gibbs while (datalen > 0 && seglim < ISP_CDSEG && dm_segs != eseg) { 1711d720e6d5SJustin T. Gibbs crq->req_dataseg[seglim].ds_base = 1712d720e6d5SJustin T. Gibbs dm_segs->ds_addr; 1713d720e6d5SJustin T. Gibbs crq->req_dataseg[seglim].ds_count = 1714d720e6d5SJustin T. Gibbs dm_segs->ds_len; 1715d720e6d5SJustin T. Gibbs rq->req_seg_count++; 1716d720e6d5SJustin T. Gibbs dm_segs++; 1717d720e6d5SJustin T. Gibbs seglim++; 1718d720e6d5SJustin T. Gibbs datalen -= dm_segs->ds_len; 1719d720e6d5SJustin T. Gibbs } 17204fd13c1bSMatt Jacob isp_put_cont_req(isp, crq, cqe); 17214fd13c1bSMatt Jacob MEMORYBARRIER(isp, SYNC_REQUEST, onxti, QENTRY_LEN); 1722d720e6d5SJustin T. Gibbs } 17234fd13c1bSMatt Jacob *mp->nxtip = nxti; 1724d720e6d5SJustin T. Gibbs } 1725d720e6d5SJustin T. Gibbs 1726d720e6d5SJustin T. Gibbs static int 17279e11e5beSMatt Jacob isp_pci_dmasetup(struct ispsoftc *isp, struct ccb_scsiio *csio, ispreq_t *rq, 17284fd13c1bSMatt Jacob u_int16_t *nxtip, u_int16_t optr) 1729d720e6d5SJustin T. Gibbs { 17301923f739SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *)isp; 17314fd13c1bSMatt Jacob ispreq_t *qep; 17320a5f7e8bSMatt Jacob bus_dmamap_t *dp = NULL; 1733d720e6d5SJustin T. Gibbs mush_t mush, *mp; 1734126ec864SMatt Jacob void (*eptr)(void *, bus_dma_segment_t *, int, int); 1735d720e6d5SJustin T. Gibbs 17364fd13c1bSMatt Jacob qep = (ispreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, isp->isp_reqidx); 173765b024e1SMatt Jacob #ifdef ISP_TARGET_MODE 173865b024e1SMatt Jacob if (csio->ccb_h.func_code == XPT_CONT_TARGET_IO) { 173965b024e1SMatt Jacob if (IS_FC(isp)) { 174005fbcbb0SMatt Jacob eptr = tdma_mkfc; 174165b024e1SMatt Jacob } else { 174205fbcbb0SMatt Jacob eptr = tdma_mk; 174365b024e1SMatt Jacob } 174405fbcbb0SMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_NONE || 174505fbcbb0SMatt Jacob (csio->dxfer_len == 0)) { 174665b024e1SMatt Jacob mp = &mush; 174765b024e1SMatt Jacob mp->isp = isp; 174865b024e1SMatt Jacob mp->cmd_token = csio; 1749e9a2738aSMatt Jacob mp->rq = rq; /* really a ct_entry_t or ct2_entry_t */ 17504fd13c1bSMatt Jacob mp->nxtip = nxtip; 175165b024e1SMatt Jacob mp->optr = optr; 175265b024e1SMatt Jacob mp->error = 0; 175365b024e1SMatt Jacob (*eptr)(mp, NULL, 0, 0); 17544fd13c1bSMatt Jacob goto mbxsync; 175565b024e1SMatt Jacob } 175665b024e1SMatt Jacob } else 175765b024e1SMatt Jacob #endif 175865b024e1SMatt Jacob eptr = dma2; 175965b024e1SMatt Jacob 17604fd13c1bSMatt Jacob 176105fbcbb0SMatt Jacob if ((csio->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_NONE || 176205fbcbb0SMatt Jacob (csio->dxfer_len == 0)) { 176342426921SMatt Jacob rq->req_seg_count = 1; 17644fd13c1bSMatt Jacob goto mbxsync; 176542426921SMatt Jacob } 176642426921SMatt Jacob 1767d720e6d5SJustin T. Gibbs /* 1768d720e6d5SJustin T. Gibbs * Do a virtual grapevine step to collect info for 17694873663cSMatt Jacob * the callback dma allocation that we have to use... 1770d720e6d5SJustin T. Gibbs */ 1771d720e6d5SJustin T. Gibbs mp = &mush; 1772d720e6d5SJustin T. Gibbs mp->isp = isp; 17739e11e5beSMatt Jacob mp->cmd_token = csio; 1774d720e6d5SJustin T. Gibbs mp->rq = rq; 17754fd13c1bSMatt Jacob mp->nxtip = nxtip; 1776d720e6d5SJustin T. Gibbs mp->optr = optr; 1777d720e6d5SJustin T. Gibbs mp->error = 0; 1778d720e6d5SJustin T. Gibbs 17799e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_SCATTER_VALID) == 0) { 17809e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DATA_PHYS) == 0) { 17814873663cSMatt Jacob int error, s; 17821923f739SMatt Jacob dp = &pcs->dmaps[isp_handle_index(rq->req_handle)]; 1783d720e6d5SJustin T. Gibbs s = splsoftvm(); 17841923f739SMatt Jacob error = bus_dmamap_load(pcs->dmat, *dp, 17859e11e5beSMatt Jacob csio->data_ptr, csio->dxfer_len, eptr, mp, 0); 1786d720e6d5SJustin T. Gibbs if (error == EINPROGRESS) { 17871923f739SMatt Jacob bus_dmamap_unload(pcs->dmat, *dp); 1788d720e6d5SJustin T. Gibbs mp->error = EINVAL; 1789f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 1790f7dddf8aSMatt Jacob "deferred dma allocation not supported"); 1791d720e6d5SJustin T. Gibbs } else if (error && mp->error == 0) { 17920a5f7e8bSMatt Jacob #ifdef DIAGNOSTIC 17936e5c5328SMatt Jacob isp_prt(isp, ISP_LOGERR, 17946e5c5328SMatt Jacob "error %d in dma mapping code", error); 17950a5f7e8bSMatt Jacob #endif 1796d720e6d5SJustin T. Gibbs mp->error = error; 1797d720e6d5SJustin T. Gibbs } 17984873663cSMatt Jacob splx(s); 1799d720e6d5SJustin T. Gibbs } else { 1800d720e6d5SJustin T. Gibbs /* Pointer to physical buffer */ 1801d720e6d5SJustin T. Gibbs struct bus_dma_segment seg; 1802d720e6d5SJustin T. Gibbs seg.ds_addr = (bus_addr_t)csio->data_ptr; 1803d720e6d5SJustin T. Gibbs seg.ds_len = csio->dxfer_len; 18049e11e5beSMatt Jacob (*eptr)(mp, &seg, 1, 0); 1805d720e6d5SJustin T. Gibbs } 1806d720e6d5SJustin T. Gibbs } else { 1807d720e6d5SJustin T. Gibbs struct bus_dma_segment *segs; 1808d720e6d5SJustin T. Gibbs 18099e11e5beSMatt Jacob if ((csio->ccb_h.flags & CAM_DATA_PHYS) != 0) { 1810f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 1811f7dddf8aSMatt Jacob "Physical segment pointers unsupported"); 1812d720e6d5SJustin T. Gibbs mp->error = EINVAL; 18139e11e5beSMatt Jacob } else if ((csio->ccb_h.flags & CAM_SG_LIST_PHYS) == 0) { 1814f7dddf8aSMatt Jacob isp_prt(isp, ISP_LOGERR, 1815f7dddf8aSMatt Jacob "Virtual segment addresses unsupported"); 1816d720e6d5SJustin T. Gibbs mp->error = EINVAL; 1817d720e6d5SJustin T. Gibbs } else { 1818d720e6d5SJustin T. Gibbs /* Just use the segments provided */ 1819d720e6d5SJustin T. Gibbs segs = (struct bus_dma_segment *) csio->data_ptr; 18209e11e5beSMatt Jacob (*eptr)(mp, segs, csio->sglist_cnt, 0); 1821d720e6d5SJustin T. Gibbs } 1822d720e6d5SJustin T. Gibbs } 1823d720e6d5SJustin T. Gibbs if (mp->error) { 18244873663cSMatt Jacob int retval = CMD_COMPLETE; 18254873663cSMatt Jacob if (mp->error == MUSHERR_NOQENTRIES) { 18264873663cSMatt Jacob retval = CMD_EAGAIN; 18274873663cSMatt Jacob } else if (mp->error == EFBIG) { 18280a5f7e8bSMatt Jacob XS_SETERR(csio, CAM_REQ_TOO_BIG); 1829d720e6d5SJustin T. Gibbs } else if (mp->error == EINVAL) { 18300a5f7e8bSMatt Jacob XS_SETERR(csio, CAM_REQ_INVALID); 1831d720e6d5SJustin T. Gibbs } else { 18320a5f7e8bSMatt Jacob XS_SETERR(csio, CAM_UNREC_HBA_ERROR); 1833d720e6d5SJustin T. Gibbs } 18344873663cSMatt Jacob return (retval); 18350a5f7e8bSMatt Jacob } 18364fd13c1bSMatt Jacob mbxsync: 18374fd13c1bSMatt Jacob switch (rq->req_header.rqs_entry_type) { 18384fd13c1bSMatt Jacob case RQSTYPE_REQUEST: 18394fd13c1bSMatt Jacob isp_put_request(isp, rq, qep); 18404fd13c1bSMatt Jacob break; 18414fd13c1bSMatt Jacob case RQSTYPE_CMDONLY: 18424fd13c1bSMatt Jacob isp_put_extended_request(isp, (ispextreq_t *)rq, 18434fd13c1bSMatt Jacob (ispextreq_t *)qep); 18444fd13c1bSMatt Jacob break; 18454fd13c1bSMatt Jacob case RQSTYPE_T2RQS: 18464fd13c1bSMatt Jacob isp_put_request_t2(isp, (ispreqt2_t *) rq, (ispreqt2_t *) qep); 18474fd13c1bSMatt Jacob break; 18480a5f7e8bSMatt Jacob } 18494873663cSMatt Jacob return (CMD_QUEUED); 1850d720e6d5SJustin T. Gibbs } 1851d720e6d5SJustin T. Gibbs 1852d720e6d5SJustin T. Gibbs static void 1853d8d5f2adSMatt Jacob isp_pci_dmateardown(struct ispsoftc *isp, XS_T *xs, u_int16_t handle) 1854d720e6d5SJustin T. Gibbs { 18551923f739SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *)isp; 18561923f739SMatt Jacob bus_dmamap_t *dp = &pcs->dmaps[isp_handle_index(handle)]; 1857a95ae193SMatt Jacob if ((xs->ccb_h.flags & CAM_DIR_MASK) == CAM_DIR_IN) { 18581923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_POSTREAD); 1859d720e6d5SJustin T. Gibbs } else { 18601923f739SMatt Jacob bus_dmamap_sync(pcs->dmat, *dp, BUS_DMASYNC_POSTWRITE); 1861d720e6d5SJustin T. Gibbs } 18621923f739SMatt Jacob bus_dmamap_unload(pcs->dmat, *dp); 1863d720e6d5SJustin T. Gibbs } 1864d720e6d5SJustin T. Gibbs 186565adb54cSMatt Jacob 186665adb54cSMatt Jacob static void 186717e318c6SMatt Jacob isp_pci_reset1(struct ispsoftc *isp) 186865adb54cSMatt Jacob { 186965adb54cSMatt Jacob /* Make sure the BIOS is disabled */ 187065adb54cSMatt Jacob isp_pci_wr_reg(isp, HCCR, PCI_HCCR_CMD_BIOS); 1871469b6b9eSMatt Jacob /* and enable interrupts */ 1872469b6b9eSMatt Jacob ENABLE_INTS(isp); 187365adb54cSMatt Jacob } 187465adb54cSMatt Jacob 187565adb54cSMatt Jacob static void 1876d02373f1SMatt Jacob isp_pci_dumpregs(struct ispsoftc *isp, const char *msg) 187765adb54cSMatt Jacob { 18781923f739SMatt Jacob struct isp_pcisoftc *pcs = (struct isp_pcisoftc *)isp; 1879d02373f1SMatt Jacob if (msg) 18806e5c5328SMatt Jacob printf("%s: %s\n", device_get_nameunit(isp->isp_dev), msg); 18816e5c5328SMatt Jacob else 18826e5c5328SMatt Jacob printf("%s:\n", device_get_nameunit(isp->isp_dev)); 1883d02373f1SMatt Jacob if (IS_SCSI(isp)) 1884d02373f1SMatt Jacob printf(" biu_conf1=%x", ISP_READ(isp, BIU_CONF1)); 1885d02373f1SMatt Jacob else 1886d02373f1SMatt Jacob printf(" biu_csr=%x", ISP_READ(isp, BIU2100_CSR)); 1887d02373f1SMatt Jacob printf(" biu_icr=%x biu_isr=%x biu_sema=%x ", ISP_READ(isp, BIU_ICR), 1888d02373f1SMatt Jacob ISP_READ(isp, BIU_ISR), ISP_READ(isp, BIU_SEMA)); 1889d02373f1SMatt Jacob printf("risc_hccr=%x\n", ISP_READ(isp, HCCR)); 1890d02373f1SMatt Jacob 1891d02373f1SMatt Jacob 1892d02373f1SMatt Jacob if (IS_SCSI(isp)) { 1893d02373f1SMatt Jacob ISP_WRITE(isp, HCCR, HCCR_CMD_PAUSE); 1894d02373f1SMatt Jacob printf(" cdma_conf=%x cdma_sts=%x cdma_fifostat=%x\n", 1895d02373f1SMatt Jacob ISP_READ(isp, CDMA_CONF), ISP_READ(isp, CDMA_STATUS), 1896d02373f1SMatt Jacob ISP_READ(isp, CDMA_FIFO_STS)); 1897d02373f1SMatt Jacob printf(" ddma_conf=%x ddma_sts=%x ddma_fifostat=%x\n", 1898d02373f1SMatt Jacob ISP_READ(isp, DDMA_CONF), ISP_READ(isp, DDMA_STATUS), 1899d02373f1SMatt Jacob ISP_READ(isp, DDMA_FIFO_STS)); 1900d02373f1SMatt Jacob printf(" sxp_int=%x sxp_gross=%x sxp(scsi_ctrl)=%x\n", 1901d02373f1SMatt Jacob ISP_READ(isp, SXP_INTERRUPT), 1902d02373f1SMatt Jacob ISP_READ(isp, SXP_GROSS_ERR), 1903d02373f1SMatt Jacob ISP_READ(isp, SXP_PINS_CTRL)); 1904d02373f1SMatt Jacob ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE); 1905d02373f1SMatt Jacob } 1906d02373f1SMatt Jacob printf(" mbox regs: %x %x %x %x %x\n", 1907d02373f1SMatt Jacob ISP_READ(isp, OUTMAILBOX0), ISP_READ(isp, OUTMAILBOX1), 1908d02373f1SMatt Jacob ISP_READ(isp, OUTMAILBOX2), ISP_READ(isp, OUTMAILBOX3), 1909d02373f1SMatt Jacob ISP_READ(isp, OUTMAILBOX4)); 1910d02373f1SMatt Jacob printf(" PCI Status Command/Status=%x\n", 19111923f739SMatt Jacob pci_read_config(pcs->pci_dev, PCIR_COMMAND, 1)); 191265adb54cSMatt Jacob } 1913