17c478bd9Sstevel@tonic-gate /* 27c478bd9Sstevel@tonic-gate * CDDL HEADER START 37c478bd9Sstevel@tonic-gate * 47c478bd9Sstevel@tonic-gate * The contents of this file are subject to the terms of the 500d0963fSdilpreet * Common Development and Distribution License (the "License"). 600d0963fSdilpreet * You may not use this file except in compliance with the License. 77c478bd9Sstevel@tonic-gate * 87c478bd9Sstevel@tonic-gate * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 97c478bd9Sstevel@tonic-gate * or http://www.opensolaris.org/os/licensing. 107c478bd9Sstevel@tonic-gate * See the License for the specific language governing permissions 117c478bd9Sstevel@tonic-gate * and limitations under the License. 127c478bd9Sstevel@tonic-gate * 137c478bd9Sstevel@tonic-gate * When distributing Covered Code, include this CDDL HEADER in each 147c478bd9Sstevel@tonic-gate * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 157c478bd9Sstevel@tonic-gate * If applicable, add the following below this CDDL HEADER, with the 167c478bd9Sstevel@tonic-gate * fields enclosed by brackets "[]" replaced with your own identifying 177c478bd9Sstevel@tonic-gate * information: Portions Copyright [yyyy] [name of copyright owner] 187c478bd9Sstevel@tonic-gate * 197c478bd9Sstevel@tonic-gate * CDDL HEADER END 207c478bd9Sstevel@tonic-gate */ 217c478bd9Sstevel@tonic-gate /* 22d21b39ddSmrj * Copyright 2008 Sun Microsystems, Inc. All rights reserved. 237c478bd9Sstevel@tonic-gate * Use is subject to license terms. 247c478bd9Sstevel@tonic-gate */ 257c478bd9Sstevel@tonic-gate 267c478bd9Sstevel@tonic-gate /* 2712f080e7Smrj * x86 root nexus driver 287c478bd9Sstevel@tonic-gate */ 297c478bd9Sstevel@tonic-gate 307c478bd9Sstevel@tonic-gate #include <sys/sysmacros.h> 317c478bd9Sstevel@tonic-gate #include <sys/conf.h> 327c478bd9Sstevel@tonic-gate #include <sys/autoconf.h> 337c478bd9Sstevel@tonic-gate #include <sys/sysmacros.h> 347c478bd9Sstevel@tonic-gate #include <sys/debug.h> 357c478bd9Sstevel@tonic-gate #include <sys/psw.h> 367c478bd9Sstevel@tonic-gate #include <sys/ddidmareq.h> 377c478bd9Sstevel@tonic-gate #include <sys/promif.h> 387c478bd9Sstevel@tonic-gate #include <sys/devops.h> 397c478bd9Sstevel@tonic-gate #include <sys/kmem.h> 407c478bd9Sstevel@tonic-gate #include <sys/cmn_err.h> 417c478bd9Sstevel@tonic-gate #include <vm/seg.h> 427c478bd9Sstevel@tonic-gate #include <vm/seg_kmem.h> 437c478bd9Sstevel@tonic-gate #include <vm/seg_dev.h> 447c478bd9Sstevel@tonic-gate #include <sys/vmem.h> 457c478bd9Sstevel@tonic-gate #include <sys/mman.h> 467c478bd9Sstevel@tonic-gate #include <vm/hat.h> 477c478bd9Sstevel@tonic-gate #include <vm/as.h> 487c478bd9Sstevel@tonic-gate #include <vm/page.h> 497c478bd9Sstevel@tonic-gate #include <sys/avintr.h> 507c478bd9Sstevel@tonic-gate #include <sys/errno.h> 517c478bd9Sstevel@tonic-gate #include <sys/modctl.h> 527c478bd9Sstevel@tonic-gate #include <sys/ddi_impldefs.h> 537c478bd9Sstevel@tonic-gate #include <sys/sunddi.h> 547c478bd9Sstevel@tonic-gate #include <sys/sunndi.h> 557a364d25Sschwartz #include <sys/mach_intr.h> 567c478bd9Sstevel@tonic-gate #include <sys/psm.h> 577c478bd9Sstevel@tonic-gate #include <sys/ontrap.h> 5812f080e7Smrj #include <sys/atomic.h> 5912f080e7Smrj #include <sys/sdt.h> 6012f080e7Smrj #include <sys/rootnex.h> 6112f080e7Smrj #include <vm/hat_i86.h> 6200d0963fSdilpreet #include <sys/ddifm.h> 6336945f79Smrj #include <sys/ddi_isa.h> 647c478bd9Sstevel@tonic-gate 65843e1988Sjohnlev #ifdef __xpv 66843e1988Sjohnlev #include <sys/bootinfo.h> 67843e1988Sjohnlev #include <sys/hypervisor.h> 68843e1988Sjohnlev #include <sys/bootconf.h> 69843e1988Sjohnlev #include <vm/kboot_mmu.h> 7020906b23SVikram Hegde #else 7120906b23SVikram Hegde #include <sys/intel_iommu.h> 72843e1988Sjohnlev #endif 73843e1988Sjohnlev 7486c1f4dcSVikram Hegde 7512f080e7Smrj /* 7612f080e7Smrj * enable/disable extra checking of function parameters. Useful for debugging 7712f080e7Smrj * drivers. 7812f080e7Smrj */ 7912f080e7Smrj #ifdef DEBUG 8012f080e7Smrj int rootnex_alloc_check_parms = 1; 8112f080e7Smrj int rootnex_bind_check_parms = 1; 8212f080e7Smrj int rootnex_bind_check_inuse = 1; 8312f080e7Smrj int rootnex_unbind_verify_buffer = 0; 8412f080e7Smrj int rootnex_sync_check_parms = 1; 8512f080e7Smrj #else 8612f080e7Smrj int rootnex_alloc_check_parms = 0; 8712f080e7Smrj int rootnex_bind_check_parms = 0; 8812f080e7Smrj int rootnex_bind_check_inuse = 0; 8912f080e7Smrj int rootnex_unbind_verify_buffer = 0; 9012f080e7Smrj int rootnex_sync_check_parms = 0; 9112f080e7Smrj #endif 927c478bd9Sstevel@tonic-gate 937aec1d6eScindi /* Master Abort and Target Abort panic flag */ 947aec1d6eScindi int rootnex_fm_ma_ta_panic_flag = 0; 957aec1d6eScindi 9612f080e7Smrj /* Semi-temporary patchables to phase in bug fixes, test drivers, etc. */ 977c478bd9Sstevel@tonic-gate int rootnex_bind_fail = 1; 987c478bd9Sstevel@tonic-gate int rootnex_bind_warn = 1; 997c478bd9Sstevel@tonic-gate uint8_t *rootnex_warn_list; 1007c478bd9Sstevel@tonic-gate /* bitmasks for rootnex_warn_list. Up to 8 different warnings with uint8_t */ 1017c478bd9Sstevel@tonic-gate #define ROOTNEX_BIND_WARNING (0x1 << 0) 1027c478bd9Sstevel@tonic-gate 1037c478bd9Sstevel@tonic-gate /* 10412f080e7Smrj * revert back to old broken behavior of always sync'ing entire copy buffer. 10512f080e7Smrj * This is useful if be have a buggy driver which doesn't correctly pass in 10612f080e7Smrj * the offset and size into ddi_dma_sync(). 1077c478bd9Sstevel@tonic-gate */ 10812f080e7Smrj int rootnex_sync_ignore_params = 0; 1097c478bd9Sstevel@tonic-gate 1107c478bd9Sstevel@tonic-gate /* 11112f080e7Smrj * For the 64-bit kernel, pre-alloc enough cookies for a 256K buffer plus 1 11212f080e7Smrj * page for alignment. For the 32-bit kernel, pre-alloc enough cookies for a 11312f080e7Smrj * 64K buffer plus 1 page for alignment (we have less kernel space in a 32-bit 11412f080e7Smrj * kernel). Allocate enough windows to handle a 256K buffer w/ at least 65 11512f080e7Smrj * sgllen DMA engine, and enough copybuf buffer state pages to handle 2 pages 11612f080e7Smrj * (< 8K). We will still need to allocate the copy buffer during bind though 11712f080e7Smrj * (if we need one). These can only be modified in /etc/system before rootnex 11812f080e7Smrj * attach. 1197c478bd9Sstevel@tonic-gate */ 12012f080e7Smrj #if defined(__amd64) 12112f080e7Smrj int rootnex_prealloc_cookies = 65; 12212f080e7Smrj int rootnex_prealloc_windows = 4; 12312f080e7Smrj int rootnex_prealloc_copybuf = 2; 12412f080e7Smrj #else 12512f080e7Smrj int rootnex_prealloc_cookies = 33; 12612f080e7Smrj int rootnex_prealloc_windows = 4; 12712f080e7Smrj int rootnex_prealloc_copybuf = 2; 12812f080e7Smrj #endif 1297c478bd9Sstevel@tonic-gate 13012f080e7Smrj /* driver global state */ 13112f080e7Smrj static rootnex_state_t *rootnex_state; 13212f080e7Smrj 13312f080e7Smrj /* shortcut to rootnex counters */ 13412f080e7Smrj static uint64_t *rootnex_cnt; 1357c478bd9Sstevel@tonic-gate 1367c478bd9Sstevel@tonic-gate /* 13712f080e7Smrj * XXX - does x86 even need these or are they left over from the SPARC days? 1387c478bd9Sstevel@tonic-gate */ 13912f080e7Smrj /* statically defined integer/boolean properties for the root node */ 14012f080e7Smrj static rootnex_intprop_t rootnex_intprp[] = { 14112f080e7Smrj { "PAGESIZE", PAGESIZE }, 14212f080e7Smrj { "MMU_PAGESIZE", MMU_PAGESIZE }, 14312f080e7Smrj { "MMU_PAGEOFFSET", MMU_PAGEOFFSET }, 14412f080e7Smrj { DDI_RELATIVE_ADDRESSING, 1 }, 14512f080e7Smrj }; 14612f080e7Smrj #define NROOT_INTPROPS (sizeof (rootnex_intprp) / sizeof (rootnex_intprop_t)) 1477c478bd9Sstevel@tonic-gate 148843e1988Sjohnlev #ifdef __xpv 149843e1988Sjohnlev typedef maddr_t rootnex_addr_t; 150843e1988Sjohnlev #define ROOTNEX_PADDR_TO_RBASE(xinfo, pa) \ 151843e1988Sjohnlev (DOMAIN_IS_INITDOMAIN(xinfo) ? pa_to_ma(pa) : (pa)) 152843e1988Sjohnlev #else 153843e1988Sjohnlev typedef paddr_t rootnex_addr_t; 154843e1988Sjohnlev #endif 155843e1988Sjohnlev 15620906b23SVikram Hegde #if !defined(__xpv) 15720906b23SVikram Hegde char _depends_on[] = "mach/pcplusmp misc/iommulib"; 15820906b23SVikram Hegde #endif 1597c478bd9Sstevel@tonic-gate 16012f080e7Smrj static struct cb_ops rootnex_cb_ops = { 16112f080e7Smrj nodev, /* open */ 16212f080e7Smrj nodev, /* close */ 16312f080e7Smrj nodev, /* strategy */ 16412f080e7Smrj nodev, /* print */ 16512f080e7Smrj nodev, /* dump */ 16612f080e7Smrj nodev, /* read */ 16712f080e7Smrj nodev, /* write */ 16812f080e7Smrj nodev, /* ioctl */ 16912f080e7Smrj nodev, /* devmap */ 17012f080e7Smrj nodev, /* mmap */ 17112f080e7Smrj nodev, /* segmap */ 17212f080e7Smrj nochpoll, /* chpoll */ 17312f080e7Smrj ddi_prop_op, /* cb_prop_op */ 17412f080e7Smrj NULL, /* struct streamtab */ 17512f080e7Smrj D_NEW | D_MP | D_HOTPLUG, /* compatibility flags */ 17612f080e7Smrj CB_REV, /* Rev */ 17712f080e7Smrj nodev, /* cb_aread */ 17812f080e7Smrj nodev /* cb_awrite */ 17912f080e7Smrj }; 1807c478bd9Sstevel@tonic-gate 18112f080e7Smrj static int rootnex_map(dev_info_t *dip, dev_info_t *rdip, ddi_map_req_t *mp, 1827c478bd9Sstevel@tonic-gate off_t offset, off_t len, caddr_t *vaddrp); 18312f080e7Smrj static int rootnex_map_fault(dev_info_t *dip, dev_info_t *rdip, 1847c478bd9Sstevel@tonic-gate struct hat *hat, struct seg *seg, caddr_t addr, 1857c478bd9Sstevel@tonic-gate struct devpage *dp, pfn_t pfn, uint_t prot, uint_t lock); 18612f080e7Smrj static int rootnex_dma_map(dev_info_t *dip, dev_info_t *rdip, 1877c478bd9Sstevel@tonic-gate struct ddi_dma_req *dmareq, ddi_dma_handle_t *handlep); 18812f080e7Smrj static int rootnex_dma_allochdl(dev_info_t *dip, dev_info_t *rdip, 18912f080e7Smrj ddi_dma_attr_t *attr, int (*waitfp)(caddr_t), caddr_t arg, 19012f080e7Smrj ddi_dma_handle_t *handlep); 19112f080e7Smrj static int rootnex_dma_freehdl(dev_info_t *dip, dev_info_t *rdip, 19212f080e7Smrj ddi_dma_handle_t handle); 19312f080e7Smrj static int rootnex_dma_bindhdl(dev_info_t *dip, dev_info_t *rdip, 19412f080e7Smrj ddi_dma_handle_t handle, struct ddi_dma_req *dmareq, 19512f080e7Smrj ddi_dma_cookie_t *cookiep, uint_t *ccountp); 19612f080e7Smrj static int rootnex_dma_unbindhdl(dev_info_t *dip, dev_info_t *rdip, 19712f080e7Smrj ddi_dma_handle_t handle); 19812f080e7Smrj static int rootnex_dma_sync(dev_info_t *dip, dev_info_t *rdip, 19912f080e7Smrj ddi_dma_handle_t handle, off_t off, size_t len, uint_t cache_flags); 20012f080e7Smrj static int rootnex_dma_win(dev_info_t *dip, dev_info_t *rdip, 20112f080e7Smrj ddi_dma_handle_t handle, uint_t win, off_t *offp, size_t *lenp, 20212f080e7Smrj ddi_dma_cookie_t *cookiep, uint_t *ccountp); 20312f080e7Smrj static int rootnex_dma_mctl(dev_info_t *dip, dev_info_t *rdip, 2047c478bd9Sstevel@tonic-gate ddi_dma_handle_t handle, enum ddi_dma_ctlops request, 2057c478bd9Sstevel@tonic-gate off_t *offp, size_t *lenp, caddr_t *objp, uint_t cache_flags); 20612f080e7Smrj static int rootnex_ctlops(dev_info_t *dip, dev_info_t *rdip, 20712f080e7Smrj ddi_ctl_enum_t ctlop, void *arg, void *result); 20800d0963fSdilpreet static int rootnex_fm_init(dev_info_t *dip, dev_info_t *tdip, int tcap, 20900d0963fSdilpreet ddi_iblock_cookie_t *ibc); 21012f080e7Smrj static int rootnex_intr_ops(dev_info_t *pdip, dev_info_t *rdip, 21112f080e7Smrj ddi_intr_op_t intr_op, ddi_intr_handle_impl_t *hdlp, void *result); 2127c478bd9Sstevel@tonic-gate 21320906b23SVikram Hegde static int rootnex_coredma_allochdl(dev_info_t *dip, dev_info_t *rdip, 21420906b23SVikram Hegde ddi_dma_attr_t *attr, int (*waitfp)(caddr_t), caddr_t arg, 21520906b23SVikram Hegde ddi_dma_handle_t *handlep); 21620906b23SVikram Hegde static int rootnex_coredma_freehdl(dev_info_t *dip, dev_info_t *rdip, 21720906b23SVikram Hegde ddi_dma_handle_t handle); 21820906b23SVikram Hegde static int rootnex_coredma_bindhdl(dev_info_t *dip, dev_info_t *rdip, 21920906b23SVikram Hegde ddi_dma_handle_t handle, struct ddi_dma_req *dmareq, 22020906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp); 22120906b23SVikram Hegde static int rootnex_coredma_unbindhdl(dev_info_t *dip, dev_info_t *rdip, 22220906b23SVikram Hegde ddi_dma_handle_t handle); 223*5dfdb46bSVikram Hegde #if !defined(__xpv) 22420906b23SVikram Hegde static void rootnex_coredma_reset_cookies(dev_info_t *dip, 22520906b23SVikram Hegde ddi_dma_handle_t handle); 22620906b23SVikram Hegde static int rootnex_coredma_get_cookies(dev_info_t *dip, ddi_dma_handle_t handle, 22720906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp); 228*5dfdb46bSVikram Hegde #endif 22920906b23SVikram Hegde static int rootnex_coredma_sync(dev_info_t *dip, dev_info_t *rdip, 23020906b23SVikram Hegde ddi_dma_handle_t handle, off_t off, size_t len, uint_t cache_flags); 23120906b23SVikram Hegde static int rootnex_coredma_win(dev_info_t *dip, dev_info_t *rdip, 23220906b23SVikram Hegde ddi_dma_handle_t handle, uint_t win, off_t *offp, size_t *lenp, 23320906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp); 23420906b23SVikram Hegde static int rootnex_coredma_map(dev_info_t *dip, dev_info_t *rdip, 23520906b23SVikram Hegde struct ddi_dma_req *dmareq, ddi_dma_handle_t *handlep); 23620906b23SVikram Hegde static int rootnex_coredma_mctl(dev_info_t *dip, dev_info_t *rdip, 23720906b23SVikram Hegde ddi_dma_handle_t handle, enum ddi_dma_ctlops request, off_t *offp, 23820906b23SVikram Hegde size_t *lenp, caddr_t *objpp, uint_t cache_flags); 2397c478bd9Sstevel@tonic-gate 2407c478bd9Sstevel@tonic-gate static struct bus_ops rootnex_bus_ops = { 2417c478bd9Sstevel@tonic-gate BUSO_REV, 2427c478bd9Sstevel@tonic-gate rootnex_map, 2437c478bd9Sstevel@tonic-gate NULL, 2447c478bd9Sstevel@tonic-gate NULL, 2457c478bd9Sstevel@tonic-gate NULL, 2467c478bd9Sstevel@tonic-gate rootnex_map_fault, 2477c478bd9Sstevel@tonic-gate rootnex_dma_map, 2487c478bd9Sstevel@tonic-gate rootnex_dma_allochdl, 2497c478bd9Sstevel@tonic-gate rootnex_dma_freehdl, 2507c478bd9Sstevel@tonic-gate rootnex_dma_bindhdl, 2517c478bd9Sstevel@tonic-gate rootnex_dma_unbindhdl, 25212f080e7Smrj rootnex_dma_sync, 2537c478bd9Sstevel@tonic-gate rootnex_dma_win, 2547c478bd9Sstevel@tonic-gate rootnex_dma_mctl, 2557c478bd9Sstevel@tonic-gate rootnex_ctlops, 2567c478bd9Sstevel@tonic-gate ddi_bus_prop_op, 2577c478bd9Sstevel@tonic-gate i_ddi_rootnex_get_eventcookie, 2587c478bd9Sstevel@tonic-gate i_ddi_rootnex_add_eventcall, 2597c478bd9Sstevel@tonic-gate i_ddi_rootnex_remove_eventcall, 2607c478bd9Sstevel@tonic-gate i_ddi_rootnex_post_event, 2617c478bd9Sstevel@tonic-gate 0, /* bus_intr_ctl */ 2627c478bd9Sstevel@tonic-gate 0, /* bus_config */ 2637c478bd9Sstevel@tonic-gate 0, /* bus_unconfig */ 26400d0963fSdilpreet rootnex_fm_init, /* bus_fm_init */ 2657c478bd9Sstevel@tonic-gate NULL, /* bus_fm_fini */ 2667c478bd9Sstevel@tonic-gate NULL, /* bus_fm_access_enter */ 2677c478bd9Sstevel@tonic-gate NULL, /* bus_fm_access_exit */ 2687c478bd9Sstevel@tonic-gate NULL, /* bus_powr */ 2697c478bd9Sstevel@tonic-gate rootnex_intr_ops /* bus_intr_op */ 2707c478bd9Sstevel@tonic-gate }; 2717c478bd9Sstevel@tonic-gate 27212f080e7Smrj static int rootnex_attach(dev_info_t *dip, ddi_attach_cmd_t cmd); 27312f080e7Smrj static int rootnex_detach(dev_info_t *dip, ddi_detach_cmd_t cmd); 2747c478bd9Sstevel@tonic-gate 2757c478bd9Sstevel@tonic-gate static struct dev_ops rootnex_ops = { 2767c478bd9Sstevel@tonic-gate DEVO_REV, 27712f080e7Smrj 0, 27812f080e7Smrj ddi_no_info, 2797c478bd9Sstevel@tonic-gate nulldev, 28012f080e7Smrj nulldev, 2817c478bd9Sstevel@tonic-gate rootnex_attach, 28212f080e7Smrj rootnex_detach, 28312f080e7Smrj nulldev, 28412f080e7Smrj &rootnex_cb_ops, 2857c478bd9Sstevel@tonic-gate &rootnex_bus_ops 2867c478bd9Sstevel@tonic-gate }; 2877c478bd9Sstevel@tonic-gate 28812f080e7Smrj static struct modldrv rootnex_modldrv = { 28912f080e7Smrj &mod_driverops, 290613b2871SRichard Bean "i86pc root nexus", 29112f080e7Smrj &rootnex_ops 2927c478bd9Sstevel@tonic-gate }; 2937c478bd9Sstevel@tonic-gate 29412f080e7Smrj static struct modlinkage rootnex_modlinkage = { 29512f080e7Smrj MODREV_1, 29612f080e7Smrj (void *)&rootnex_modldrv, 29712f080e7Smrj NULL 2987c478bd9Sstevel@tonic-gate }; 2997c478bd9Sstevel@tonic-gate 300*5dfdb46bSVikram Hegde #if !defined(__xpv) 30120906b23SVikram Hegde static iommulib_nexops_t iommulib_nexops = { 30220906b23SVikram Hegde IOMMU_NEXOPS_VERSION, 30320906b23SVikram Hegde "Rootnex IOMMU ops Vers 1.1", 30420906b23SVikram Hegde NULL, 30520906b23SVikram Hegde rootnex_coredma_allochdl, 30620906b23SVikram Hegde rootnex_coredma_freehdl, 30720906b23SVikram Hegde rootnex_coredma_bindhdl, 30820906b23SVikram Hegde rootnex_coredma_unbindhdl, 30920906b23SVikram Hegde rootnex_coredma_reset_cookies, 31020906b23SVikram Hegde rootnex_coredma_get_cookies, 31120906b23SVikram Hegde rootnex_coredma_sync, 31220906b23SVikram Hegde rootnex_coredma_win, 31320906b23SVikram Hegde rootnex_coredma_map, 31420906b23SVikram Hegde rootnex_coredma_mctl 31520906b23SVikram Hegde }; 316*5dfdb46bSVikram Hegde #endif 3177c478bd9Sstevel@tonic-gate 31812f080e7Smrj /* 31912f080e7Smrj * extern hacks 32012f080e7Smrj */ 32112f080e7Smrj extern struct seg_ops segdev_ops; 32212f080e7Smrj extern int ignore_hardware_nodes; /* force flag from ddi_impl.c */ 32312f080e7Smrj #ifdef DDI_MAP_DEBUG 32412f080e7Smrj extern int ddi_map_debug_flag; 32512f080e7Smrj #define ddi_map_debug if (ddi_map_debug_flag) prom_printf 32612f080e7Smrj #endif 32712f080e7Smrj extern void i86_pp_map(page_t *pp, caddr_t kaddr); 32812f080e7Smrj extern void i86_va_map(caddr_t vaddr, struct as *asp, caddr_t kaddr); 32912f080e7Smrj extern int (*psm_intr_ops)(dev_info_t *, ddi_intr_handle_impl_t *, 33012f080e7Smrj psm_intr_op_t, int *); 33112f080e7Smrj extern int impl_ddi_sunbus_initchild(dev_info_t *dip); 33212f080e7Smrj extern void impl_ddi_sunbus_removechild(dev_info_t *dip); 33336945f79Smrj 33412f080e7Smrj /* 33512f080e7Smrj * Use device arena to use for device control register mappings. 33612f080e7Smrj * Various kernel memory walkers (debugger, dtrace) need to know 33712f080e7Smrj * to avoid this address range to prevent undesired device activity. 33812f080e7Smrj */ 33912f080e7Smrj extern void *device_arena_alloc(size_t size, int vm_flag); 34012f080e7Smrj extern void device_arena_free(void * vaddr, size_t size); 34112f080e7Smrj 34212f080e7Smrj 34312f080e7Smrj /* 34412f080e7Smrj * Internal functions 34512f080e7Smrj */ 34612f080e7Smrj static int rootnex_dma_init(); 34712f080e7Smrj static void rootnex_add_props(dev_info_t *); 34812f080e7Smrj static int rootnex_ctl_reportdev(dev_info_t *dip); 34912f080e7Smrj static struct intrspec *rootnex_get_ispec(dev_info_t *rdip, int inum); 35012f080e7Smrj static int rootnex_map_regspec(ddi_map_req_t *mp, caddr_t *vaddrp); 35112f080e7Smrj static int rootnex_unmap_regspec(ddi_map_req_t *mp, caddr_t *vaddrp); 35212f080e7Smrj static int rootnex_map_handle(ddi_map_req_t *mp); 35312f080e7Smrj static void rootnex_clean_dmahdl(ddi_dma_impl_t *hp); 35412f080e7Smrj static int rootnex_valid_alloc_parms(ddi_dma_attr_t *attr, uint_t maxsegsize); 35512f080e7Smrj static int rootnex_valid_bind_parms(ddi_dma_req_t *dmareq, 35612f080e7Smrj ddi_dma_attr_t *attr); 35712f080e7Smrj static void rootnex_get_sgl(ddi_dma_obj_t *dmar_object, ddi_dma_cookie_t *sgl, 35812f080e7Smrj rootnex_sglinfo_t *sglinfo); 35912f080e7Smrj static int rootnex_bind_slowpath(ddi_dma_impl_t *hp, struct ddi_dma_req *dmareq, 36012f080e7Smrj rootnex_dma_t *dma, ddi_dma_attr_t *attr, int kmflag); 36112f080e7Smrj static int rootnex_setup_copybuf(ddi_dma_impl_t *hp, struct ddi_dma_req *dmareq, 36212f080e7Smrj rootnex_dma_t *dma, ddi_dma_attr_t *attr); 36312f080e7Smrj static void rootnex_teardown_copybuf(rootnex_dma_t *dma); 36412f080e7Smrj static int rootnex_setup_windows(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 36512f080e7Smrj ddi_dma_attr_t *attr, int kmflag); 36612f080e7Smrj static void rootnex_teardown_windows(rootnex_dma_t *dma); 36712f080e7Smrj static void rootnex_init_win(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 36812f080e7Smrj rootnex_window_t *window, ddi_dma_cookie_t *cookie, off_t cur_offset); 36912f080e7Smrj static void rootnex_setup_cookie(ddi_dma_obj_t *dmar_object, 37012f080e7Smrj rootnex_dma_t *dma, ddi_dma_cookie_t *cookie, off_t cur_offset, 37112f080e7Smrj size_t *copybuf_used, page_t **cur_pp); 37212f080e7Smrj static int rootnex_sgllen_window_boundary(ddi_dma_impl_t *hp, 37312f080e7Smrj rootnex_dma_t *dma, rootnex_window_t **windowp, ddi_dma_cookie_t *cookie, 37412f080e7Smrj ddi_dma_attr_t *attr, off_t cur_offset); 37512f080e7Smrj static int rootnex_copybuf_window_boundary(ddi_dma_impl_t *hp, 37612f080e7Smrj rootnex_dma_t *dma, rootnex_window_t **windowp, 37712f080e7Smrj ddi_dma_cookie_t *cookie, off_t cur_offset, size_t *copybuf_used); 37812f080e7Smrj static int rootnex_maxxfer_window_boundary(ddi_dma_impl_t *hp, 37912f080e7Smrj rootnex_dma_t *dma, rootnex_window_t **windowp, ddi_dma_cookie_t *cookie); 38012f080e7Smrj static int rootnex_valid_sync_parms(ddi_dma_impl_t *hp, rootnex_window_t *win, 38112f080e7Smrj off_t offset, size_t size, uint_t cache_flags); 38212f080e7Smrj static int rootnex_verify_buffer(rootnex_dma_t *dma); 38300d0963fSdilpreet static int rootnex_dma_check(dev_info_t *dip, const void *handle, 38400d0963fSdilpreet const void *comp_addr, const void *not_used); 38512f080e7Smrj 38612f080e7Smrj /* 38712f080e7Smrj * _init() 38812f080e7Smrj * 38912f080e7Smrj */ 3907c478bd9Sstevel@tonic-gate int 3917c478bd9Sstevel@tonic-gate _init(void) 3927c478bd9Sstevel@tonic-gate { 39312f080e7Smrj 39412f080e7Smrj rootnex_state = NULL; 39512f080e7Smrj return (mod_install(&rootnex_modlinkage)); 3967c478bd9Sstevel@tonic-gate } 3977c478bd9Sstevel@tonic-gate 39812f080e7Smrj 39912f080e7Smrj /* 40012f080e7Smrj * _info() 40112f080e7Smrj * 40212f080e7Smrj */ 40312f080e7Smrj int 40412f080e7Smrj _info(struct modinfo *modinfop) 40512f080e7Smrj { 40612f080e7Smrj return (mod_info(&rootnex_modlinkage, modinfop)); 40712f080e7Smrj } 40812f080e7Smrj 40912f080e7Smrj 41012f080e7Smrj /* 41112f080e7Smrj * _fini() 41212f080e7Smrj * 41312f080e7Smrj */ 4147c478bd9Sstevel@tonic-gate int 4157c478bd9Sstevel@tonic-gate _fini(void) 4167c478bd9Sstevel@tonic-gate { 4177c478bd9Sstevel@tonic-gate return (EBUSY); 4187c478bd9Sstevel@tonic-gate } 4197c478bd9Sstevel@tonic-gate 42012f080e7Smrj 42112f080e7Smrj /* 42212f080e7Smrj * rootnex_attach() 42312f080e7Smrj * 42412f080e7Smrj */ 42512f080e7Smrj static int 42612f080e7Smrj rootnex_attach(dev_info_t *dip, ddi_attach_cmd_t cmd) 4277c478bd9Sstevel@tonic-gate { 4287aec1d6eScindi int fmcap; 42912f080e7Smrj int e; 43012f080e7Smrj 43112f080e7Smrj switch (cmd) { 43212f080e7Smrj case DDI_ATTACH: 43312f080e7Smrj break; 43412f080e7Smrj case DDI_RESUME: 43512f080e7Smrj return (DDI_SUCCESS); 43612f080e7Smrj default: 43712f080e7Smrj return (DDI_FAILURE); 4387c478bd9Sstevel@tonic-gate } 4397c478bd9Sstevel@tonic-gate 4407c478bd9Sstevel@tonic-gate /* 44112f080e7Smrj * We should only have one instance of rootnex. Save it away since we 44212f080e7Smrj * don't have an easy way to get it back later. 4437c478bd9Sstevel@tonic-gate */ 44412f080e7Smrj ASSERT(rootnex_state == NULL); 44512f080e7Smrj rootnex_state = kmem_zalloc(sizeof (rootnex_state_t), KM_SLEEP); 4467c478bd9Sstevel@tonic-gate 44712f080e7Smrj rootnex_state->r_dip = dip; 4487aec1d6eScindi rootnex_state->r_err_ibc = (ddi_iblock_cookie_t)ipltospl(15); 44912f080e7Smrj rootnex_state->r_reserved_msg_printed = B_FALSE; 45012f080e7Smrj rootnex_cnt = &rootnex_state->r_counters[0]; 45186c1f4dcSVikram Hegde rootnex_state->r_intel_iommu_enabled = B_FALSE; 4527c478bd9Sstevel@tonic-gate 4537aec1d6eScindi /* 4547aec1d6eScindi * Set minimum fm capability level for i86pc platforms and then 4557aec1d6eScindi * initialize error handling. Since we're the rootnex, we don't 4567aec1d6eScindi * care what's returned in the fmcap field. 4577aec1d6eScindi */ 45800d0963fSdilpreet ddi_system_fmcap = DDI_FM_EREPORT_CAPABLE | DDI_FM_ERRCB_CAPABLE | 45900d0963fSdilpreet DDI_FM_ACCCHK_CAPABLE | DDI_FM_DMACHK_CAPABLE; 4607aec1d6eScindi fmcap = ddi_system_fmcap; 4617aec1d6eScindi ddi_fm_init(dip, &fmcap, &rootnex_state->r_err_ibc); 4627aec1d6eScindi 46312f080e7Smrj /* initialize DMA related state */ 46412f080e7Smrj e = rootnex_dma_init(); 46512f080e7Smrj if (e != DDI_SUCCESS) { 46612f080e7Smrj kmem_free(rootnex_state, sizeof (rootnex_state_t)); 46712f080e7Smrj return (DDI_FAILURE); 46812f080e7Smrj } 46912f080e7Smrj 47012f080e7Smrj /* Add static root node properties */ 47112f080e7Smrj rootnex_add_props(dip); 47212f080e7Smrj 47312f080e7Smrj /* since we can't call ddi_report_dev() */ 47412f080e7Smrj cmn_err(CE_CONT, "?root nexus = %s\n", ddi_get_name(dip)); 47512f080e7Smrj 47612f080e7Smrj /* Initialize rootnex event handle */ 47712f080e7Smrj i_ddi_rootnex_init_events(dip); 47812f080e7Smrj 47920906b23SVikram Hegde #if !defined(__xpv) 48086c1f4dcSVikram Hegde #if defined(__amd64) 48186c1f4dcSVikram Hegde /* probe intel iommu */ 48286c1f4dcSVikram Hegde intel_iommu_probe_and_parse(); 48386c1f4dcSVikram Hegde 48486c1f4dcSVikram Hegde /* attach the iommu nodes */ 48586c1f4dcSVikram Hegde if (intel_iommu_support) { 48686c1f4dcSVikram Hegde if (intel_iommu_attach_dmar_nodes() == DDI_SUCCESS) { 48786c1f4dcSVikram Hegde rootnex_state->r_intel_iommu_enabled = B_TRUE; 48886c1f4dcSVikram Hegde } else { 48986c1f4dcSVikram Hegde intel_iommu_release_dmar_info(); 49086c1f4dcSVikram Hegde } 49186c1f4dcSVikram Hegde } 49286c1f4dcSVikram Hegde #endif 49386c1f4dcSVikram Hegde 49420906b23SVikram Hegde e = iommulib_nexus_register(dip, &iommulib_nexops, 49520906b23SVikram Hegde &rootnex_state->r_iommulib_handle); 49620906b23SVikram Hegde 49720906b23SVikram Hegde ASSERT(e == DDI_SUCCESS); 49820906b23SVikram Hegde #endif 49920906b23SVikram Hegde 50012f080e7Smrj return (DDI_SUCCESS); 50112f080e7Smrj } 50212f080e7Smrj 50312f080e7Smrj 50412f080e7Smrj /* 50512f080e7Smrj * rootnex_detach() 50612f080e7Smrj * 50712f080e7Smrj */ 5087c478bd9Sstevel@tonic-gate /*ARGSUSED*/ 5097c478bd9Sstevel@tonic-gate static int 51012f080e7Smrj rootnex_detach(dev_info_t *dip, ddi_detach_cmd_t cmd) 5117c478bd9Sstevel@tonic-gate { 51212f080e7Smrj switch (cmd) { 51312f080e7Smrj case DDI_SUSPEND: 51412f080e7Smrj break; 51512f080e7Smrj default: 51612f080e7Smrj return (DDI_FAILURE); 51712f080e7Smrj } 5187c478bd9Sstevel@tonic-gate 51912f080e7Smrj return (DDI_SUCCESS); 52012f080e7Smrj } 5217c478bd9Sstevel@tonic-gate 5227c478bd9Sstevel@tonic-gate 52312f080e7Smrj /* 52412f080e7Smrj * rootnex_dma_init() 52512f080e7Smrj * 52612f080e7Smrj */ 52712f080e7Smrj /*ARGSUSED*/ 52812f080e7Smrj static int 52912f080e7Smrj rootnex_dma_init() 53012f080e7Smrj { 53112f080e7Smrj size_t bufsize; 53212f080e7Smrj 53312f080e7Smrj 53412f080e7Smrj /* 53512f080e7Smrj * size of our cookie/window/copybuf state needed in dma bind that we 53612f080e7Smrj * pre-alloc in dma_alloc_handle 53712f080e7Smrj */ 53812f080e7Smrj rootnex_state->r_prealloc_cookies = rootnex_prealloc_cookies; 53912f080e7Smrj rootnex_state->r_prealloc_size = 54012f080e7Smrj (rootnex_state->r_prealloc_cookies * sizeof (ddi_dma_cookie_t)) + 54112f080e7Smrj (rootnex_prealloc_windows * sizeof (rootnex_window_t)) + 54212f080e7Smrj (rootnex_prealloc_copybuf * sizeof (rootnex_pgmap_t)); 54312f080e7Smrj 54412f080e7Smrj /* 54512f080e7Smrj * setup DDI DMA handle kmem cache, align each handle on 64 bytes, 54612f080e7Smrj * allocate 16 extra bytes for struct pointer alignment 54712f080e7Smrj * (p->dmai_private & dma->dp_prealloc_buffer) 54812f080e7Smrj */ 54912f080e7Smrj bufsize = sizeof (ddi_dma_impl_t) + sizeof (rootnex_dma_t) + 55012f080e7Smrj rootnex_state->r_prealloc_size + 0x10; 55112f080e7Smrj rootnex_state->r_dmahdl_cache = kmem_cache_create("rootnex_dmahdl", 55212f080e7Smrj bufsize, 64, NULL, NULL, NULL, NULL, NULL, 0); 55312f080e7Smrj if (rootnex_state->r_dmahdl_cache == NULL) { 55412f080e7Smrj return (DDI_FAILURE); 55512f080e7Smrj } 5567c478bd9Sstevel@tonic-gate 5577c478bd9Sstevel@tonic-gate /* 5587c478bd9Sstevel@tonic-gate * allocate array to track which major numbers we have printed warnings 5597c478bd9Sstevel@tonic-gate * for. 5607c478bd9Sstevel@tonic-gate */ 5617c478bd9Sstevel@tonic-gate rootnex_warn_list = kmem_zalloc(devcnt * sizeof (*rootnex_warn_list), 5627c478bd9Sstevel@tonic-gate KM_SLEEP); 5637c478bd9Sstevel@tonic-gate 5647c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 5657c478bd9Sstevel@tonic-gate } 5667c478bd9Sstevel@tonic-gate 5677c478bd9Sstevel@tonic-gate 5687c478bd9Sstevel@tonic-gate /* 56912f080e7Smrj * rootnex_add_props() 57012f080e7Smrj * 5717c478bd9Sstevel@tonic-gate */ 5727c478bd9Sstevel@tonic-gate static void 57312f080e7Smrj rootnex_add_props(dev_info_t *dip) 5747c478bd9Sstevel@tonic-gate { 57512f080e7Smrj rootnex_intprop_t *rpp; 5767c478bd9Sstevel@tonic-gate int i; 5777c478bd9Sstevel@tonic-gate 57812f080e7Smrj /* Add static integer/boolean properties to the root node */ 57912f080e7Smrj rpp = rootnex_intprp; 58012f080e7Smrj for (i = 0; i < NROOT_INTPROPS; i++) { 58112f080e7Smrj (void) e_ddi_prop_update_int(DDI_DEV_T_NONE, dip, 58212f080e7Smrj rpp[i].prop_name, rpp[i].prop_value); 58312f080e7Smrj } 5847c478bd9Sstevel@tonic-gate } 5857c478bd9Sstevel@tonic-gate 58612f080e7Smrj 58712f080e7Smrj 5887c478bd9Sstevel@tonic-gate /* 58912f080e7Smrj * ************************* 59012f080e7Smrj * ctlops related routines 59112f080e7Smrj * ************************* 59212f080e7Smrj */ 59312f080e7Smrj 59412f080e7Smrj /* 59512f080e7Smrj * rootnex_ctlops() 5967c478bd9Sstevel@tonic-gate * 5977c478bd9Sstevel@tonic-gate */ 598a195726fSgovinda /*ARGSUSED*/ 5997c478bd9Sstevel@tonic-gate static int 60012f080e7Smrj rootnex_ctlops(dev_info_t *dip, dev_info_t *rdip, ddi_ctl_enum_t ctlop, 60112f080e7Smrj void *arg, void *result) 6027c478bd9Sstevel@tonic-gate { 60312f080e7Smrj int n, *ptr; 60412f080e7Smrj struct ddi_parent_private_data *pdp; 6057c478bd9Sstevel@tonic-gate 60612f080e7Smrj switch (ctlop) { 60712f080e7Smrj case DDI_CTLOPS_DMAPMAPC: 6087c478bd9Sstevel@tonic-gate /* 60912f080e7Smrj * Return 'partial' to indicate that dma mapping 61012f080e7Smrj * has to be done in the main MMU. 6117c478bd9Sstevel@tonic-gate */ 61212f080e7Smrj return (DDI_DMA_PARTIAL); 6137c478bd9Sstevel@tonic-gate 61412f080e7Smrj case DDI_CTLOPS_BTOP: 6157c478bd9Sstevel@tonic-gate /* 61612f080e7Smrj * Convert byte count input to physical page units. 61712f080e7Smrj * (byte counts that are not a page-size multiple 61812f080e7Smrj * are rounded down) 6197c478bd9Sstevel@tonic-gate */ 62012f080e7Smrj *(ulong_t *)result = btop(*(ulong_t *)arg); 6217c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 6227c478bd9Sstevel@tonic-gate 62312f080e7Smrj case DDI_CTLOPS_PTOB: 6247c478bd9Sstevel@tonic-gate /* 62512f080e7Smrj * Convert size in physical pages to bytes 6267c478bd9Sstevel@tonic-gate */ 62712f080e7Smrj *(ulong_t *)result = ptob(*(ulong_t *)arg); 6287c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 6297c478bd9Sstevel@tonic-gate 63012f080e7Smrj case DDI_CTLOPS_BTOPR: 6317c478bd9Sstevel@tonic-gate /* 63212f080e7Smrj * Convert byte count input to physical page units 63312f080e7Smrj * (byte counts that are not a page-size multiple 63412f080e7Smrj * are rounded up) 6357c478bd9Sstevel@tonic-gate */ 63612f080e7Smrj *(ulong_t *)result = btopr(*(ulong_t *)arg); 63712f080e7Smrj return (DDI_SUCCESS); 63812f080e7Smrj 63912f080e7Smrj case DDI_CTLOPS_INITCHILD: 64012f080e7Smrj return (impl_ddi_sunbus_initchild(arg)); 64112f080e7Smrj 64212f080e7Smrj case DDI_CTLOPS_UNINITCHILD: 64312f080e7Smrj impl_ddi_sunbus_removechild(arg); 64412f080e7Smrj return (DDI_SUCCESS); 64512f080e7Smrj 64612f080e7Smrj case DDI_CTLOPS_REPORTDEV: 64712f080e7Smrj return (rootnex_ctl_reportdev(rdip)); 64812f080e7Smrj 64912f080e7Smrj case DDI_CTLOPS_IOMIN: 6507c478bd9Sstevel@tonic-gate /* 65112f080e7Smrj * Nothing to do here but reflect back.. 6527c478bd9Sstevel@tonic-gate */ 6537c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 6547c478bd9Sstevel@tonic-gate 65512f080e7Smrj case DDI_CTLOPS_REGSIZE: 65612f080e7Smrj case DDI_CTLOPS_NREGS: 65712f080e7Smrj break; 6587c478bd9Sstevel@tonic-gate 65912f080e7Smrj case DDI_CTLOPS_SIDDEV: 66012f080e7Smrj if (ndi_dev_is_prom_node(rdip)) 6617c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 66212f080e7Smrj if (ndi_dev_is_persistent_node(rdip)) 66312f080e7Smrj return (DDI_SUCCESS); 6647c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 6657c478bd9Sstevel@tonic-gate 66612f080e7Smrj case DDI_CTLOPS_POWER: 66712f080e7Smrj return ((*pm_platform_power)((power_req_t *)arg)); 66812f080e7Smrj 669a195726fSgovinda case DDI_CTLOPS_RESERVED0: /* Was DDI_CTLOPS_NINTRS, obsolete */ 67012f080e7Smrj case DDI_CTLOPS_RESERVED1: /* Was DDI_CTLOPS_POKE_INIT, obsolete */ 67112f080e7Smrj case DDI_CTLOPS_RESERVED2: /* Was DDI_CTLOPS_POKE_FLUSH, obsolete */ 67212f080e7Smrj case DDI_CTLOPS_RESERVED3: /* Was DDI_CTLOPS_POKE_FINI, obsolete */ 673a195726fSgovinda case DDI_CTLOPS_RESERVED4: /* Was DDI_CTLOPS_INTR_HILEVEL, obsolete */ 674a195726fSgovinda case DDI_CTLOPS_RESERVED5: /* Was DDI_CTLOPS_XLATE_INTRS, obsolete */ 67512f080e7Smrj if (!rootnex_state->r_reserved_msg_printed) { 67612f080e7Smrj rootnex_state->r_reserved_msg_printed = B_TRUE; 67712f080e7Smrj cmn_err(CE_WARN, "Failing ddi_ctlops call(s) for " 67812f080e7Smrj "1 or more reserved/obsolete operations."); 6797c478bd9Sstevel@tonic-gate } 68012f080e7Smrj return (DDI_FAILURE); 6817c478bd9Sstevel@tonic-gate 6827c478bd9Sstevel@tonic-gate default: 6837c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 6847c478bd9Sstevel@tonic-gate } 68512f080e7Smrj /* 68612f080e7Smrj * The rest are for "hardware" properties 68712f080e7Smrj */ 68812f080e7Smrj if ((pdp = ddi_get_parent_data(rdip)) == NULL) 68912f080e7Smrj return (DDI_FAILURE); 6907c478bd9Sstevel@tonic-gate 69112f080e7Smrj if (ctlop == DDI_CTLOPS_NREGS) { 69212f080e7Smrj ptr = (int *)result; 69312f080e7Smrj *ptr = pdp->par_nreg; 69412f080e7Smrj } else { 69512f080e7Smrj off_t *size = (off_t *)result; 6967c478bd9Sstevel@tonic-gate 69712f080e7Smrj ptr = (int *)arg; 69812f080e7Smrj n = *ptr; 69912f080e7Smrj if (n >= pdp->par_nreg) { 70012f080e7Smrj return (DDI_FAILURE); 70112f080e7Smrj } 70212f080e7Smrj *size = (off_t)pdp->par_reg[n].regspec_size; 70312f080e7Smrj } 7047c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 7057c478bd9Sstevel@tonic-gate } 7067c478bd9Sstevel@tonic-gate 70712f080e7Smrj 70812f080e7Smrj /* 70912f080e7Smrj * rootnex_ctl_reportdev() 71012f080e7Smrj * 71112f080e7Smrj */ 7127c478bd9Sstevel@tonic-gate static int 71312f080e7Smrj rootnex_ctl_reportdev(dev_info_t *dev) 71412f080e7Smrj { 71512f080e7Smrj int i, n, len, f_len = 0; 71612f080e7Smrj char *buf; 71712f080e7Smrj 71812f080e7Smrj buf = kmem_alloc(REPORTDEV_BUFSIZE, KM_SLEEP); 71912f080e7Smrj f_len += snprintf(buf, REPORTDEV_BUFSIZE, 72012f080e7Smrj "%s%d at root", ddi_driver_name(dev), ddi_get_instance(dev)); 72112f080e7Smrj len = strlen(buf); 72212f080e7Smrj 72312f080e7Smrj for (i = 0; i < sparc_pd_getnreg(dev); i++) { 72412f080e7Smrj 72512f080e7Smrj struct regspec *rp = sparc_pd_getreg(dev, i); 72612f080e7Smrj 72712f080e7Smrj if (i == 0) 72812f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 72912f080e7Smrj ": "); 73012f080e7Smrj else 73112f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 73212f080e7Smrj " and "); 73312f080e7Smrj len = strlen(buf); 73412f080e7Smrj 73512f080e7Smrj switch (rp->regspec_bustype) { 73612f080e7Smrj 73712f080e7Smrj case BTEISA: 73812f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 73912f080e7Smrj "%s 0x%x", DEVI_EISA_NEXNAME, rp->regspec_addr); 74012f080e7Smrj break; 74112f080e7Smrj 74212f080e7Smrj case BTISA: 74312f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 74412f080e7Smrj "%s 0x%x", DEVI_ISA_NEXNAME, rp->regspec_addr); 74512f080e7Smrj break; 74612f080e7Smrj 74712f080e7Smrj default: 74812f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 74912f080e7Smrj "space %x offset %x", 75012f080e7Smrj rp->regspec_bustype, rp->regspec_addr); 75112f080e7Smrj break; 75212f080e7Smrj } 75312f080e7Smrj len = strlen(buf); 75412f080e7Smrj } 75512f080e7Smrj for (i = 0, n = sparc_pd_getnintr(dev); i < n; i++) { 75612f080e7Smrj int pri; 75712f080e7Smrj 75812f080e7Smrj if (i != 0) { 75912f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 76012f080e7Smrj ","); 76112f080e7Smrj len = strlen(buf); 76212f080e7Smrj } 76312f080e7Smrj pri = INT_IPL(sparc_pd_getintr(dev, i)->intrspec_pri); 76412f080e7Smrj f_len += snprintf(buf + len, REPORTDEV_BUFSIZE - len, 76512f080e7Smrj " sparc ipl %d", pri); 76612f080e7Smrj len = strlen(buf); 76712f080e7Smrj } 76812f080e7Smrj #ifdef DEBUG 76912f080e7Smrj if (f_len + 1 >= REPORTDEV_BUFSIZE) { 77012f080e7Smrj cmn_err(CE_NOTE, "next message is truncated: " 77112f080e7Smrj "printed length 1024, real length %d", f_len); 77212f080e7Smrj } 77312f080e7Smrj #endif /* DEBUG */ 77412f080e7Smrj cmn_err(CE_CONT, "?%s\n", buf); 77512f080e7Smrj kmem_free(buf, REPORTDEV_BUFSIZE); 77612f080e7Smrj return (DDI_SUCCESS); 77712f080e7Smrj } 77812f080e7Smrj 77912f080e7Smrj 78012f080e7Smrj /* 78112f080e7Smrj * ****************** 78212f080e7Smrj * map related code 78312f080e7Smrj * ****************** 78412f080e7Smrj */ 78512f080e7Smrj 78612f080e7Smrj /* 78712f080e7Smrj * rootnex_map() 78812f080e7Smrj * 78912f080e7Smrj */ 79012f080e7Smrj static int 79112f080e7Smrj rootnex_map(dev_info_t *dip, dev_info_t *rdip, ddi_map_req_t *mp, off_t offset, 79212f080e7Smrj off_t len, caddr_t *vaddrp) 7937c478bd9Sstevel@tonic-gate { 7947c478bd9Sstevel@tonic-gate struct regspec *rp, tmp_reg; 7957c478bd9Sstevel@tonic-gate ddi_map_req_t mr = *mp; /* Get private copy of request */ 7967c478bd9Sstevel@tonic-gate int error; 7977c478bd9Sstevel@tonic-gate 7987c478bd9Sstevel@tonic-gate mp = &mr; 7997c478bd9Sstevel@tonic-gate 8007c478bd9Sstevel@tonic-gate switch (mp->map_op) { 8017c478bd9Sstevel@tonic-gate case DDI_MO_MAP_LOCKED: 8027c478bd9Sstevel@tonic-gate case DDI_MO_UNMAP: 8037c478bd9Sstevel@tonic-gate case DDI_MO_MAP_HANDLE: 8047c478bd9Sstevel@tonic-gate break; 8057c478bd9Sstevel@tonic-gate default: 8067c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 8077c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, "rootnex_map: unimplemented map op %d.", 8087c478bd9Sstevel@tonic-gate mp->map_op); 8097c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 8107c478bd9Sstevel@tonic-gate return (DDI_ME_UNIMPLEMENTED); 8117c478bd9Sstevel@tonic-gate } 8127c478bd9Sstevel@tonic-gate 8137c478bd9Sstevel@tonic-gate if (mp->map_flags & DDI_MF_USER_MAPPING) { 8147c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 8157c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, "rootnex_map: unimplemented map type: user."); 8167c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 8177c478bd9Sstevel@tonic-gate return (DDI_ME_UNIMPLEMENTED); 8187c478bd9Sstevel@tonic-gate } 8197c478bd9Sstevel@tonic-gate 8207c478bd9Sstevel@tonic-gate /* 8217c478bd9Sstevel@tonic-gate * First, if given an rnumber, convert it to a regspec... 8227c478bd9Sstevel@tonic-gate * (Presumably, this is on behalf of a child of the root node?) 8237c478bd9Sstevel@tonic-gate */ 8247c478bd9Sstevel@tonic-gate 8257c478bd9Sstevel@tonic-gate if (mp->map_type == DDI_MT_RNUMBER) { 8267c478bd9Sstevel@tonic-gate 8277c478bd9Sstevel@tonic-gate int rnumber = mp->map_obj.rnumber; 8287c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 8297c478bd9Sstevel@tonic-gate static char *out_of_range = 8307c478bd9Sstevel@tonic-gate "rootnex_map: Out of range rnumber <%d>, device <%s>"; 8317c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 8327c478bd9Sstevel@tonic-gate 8337c478bd9Sstevel@tonic-gate rp = i_ddi_rnumber_to_regspec(rdip, rnumber); 8347c478bd9Sstevel@tonic-gate if (rp == NULL) { 8357c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 8367c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, out_of_range, rnumber, 8377c478bd9Sstevel@tonic-gate ddi_get_name(rdip)); 8387c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 8397c478bd9Sstevel@tonic-gate return (DDI_ME_RNUMBER_RANGE); 8407c478bd9Sstevel@tonic-gate } 8417c478bd9Sstevel@tonic-gate 8427c478bd9Sstevel@tonic-gate /* 8437c478bd9Sstevel@tonic-gate * Convert the given ddi_map_req_t from rnumber to regspec... 8447c478bd9Sstevel@tonic-gate */ 8457c478bd9Sstevel@tonic-gate 8467c478bd9Sstevel@tonic-gate mp->map_type = DDI_MT_REGSPEC; 8477c478bd9Sstevel@tonic-gate mp->map_obj.rp = rp; 8487c478bd9Sstevel@tonic-gate } 8497c478bd9Sstevel@tonic-gate 8507c478bd9Sstevel@tonic-gate /* 8517c478bd9Sstevel@tonic-gate * Adjust offset and length correspnding to called values... 8527c478bd9Sstevel@tonic-gate * XXX: A non-zero length means override the one in the regspec 8537c478bd9Sstevel@tonic-gate * XXX: (regardless of what's in the parent's range?) 8547c478bd9Sstevel@tonic-gate */ 8557c478bd9Sstevel@tonic-gate 8567c478bd9Sstevel@tonic-gate tmp_reg = *(mp->map_obj.rp); /* Preserve underlying data */ 8577c478bd9Sstevel@tonic-gate rp = mp->map_obj.rp = &tmp_reg; /* Use tmp_reg in request */ 8587c478bd9Sstevel@tonic-gate 8597c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 860843e1988Sjohnlev cmn_err(CE_CONT, "rootnex: <%s,%s> <0x%x, 0x%x, 0x%d> offset %d len %d " 861843e1988Sjohnlev "handle 0x%x\n", ddi_get_name(dip), ddi_get_name(rdip), 862843e1988Sjohnlev rp->regspec_bustype, rp->regspec_addr, rp->regspec_size, offset, 863843e1988Sjohnlev len, mp->map_handlep); 8647c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 8657c478bd9Sstevel@tonic-gate 8667c478bd9Sstevel@tonic-gate /* 8677c478bd9Sstevel@tonic-gate * I/O or memory mapping: 8687c478bd9Sstevel@tonic-gate * 8697c478bd9Sstevel@tonic-gate * <bustype=0, addr=x, len=x>: memory 8707c478bd9Sstevel@tonic-gate * <bustype=1, addr=x, len=x>: i/o 8717c478bd9Sstevel@tonic-gate * <bustype>1, addr=0, len=x>: x86-compatibility i/o 8727c478bd9Sstevel@tonic-gate */ 8737c478bd9Sstevel@tonic-gate 8747c478bd9Sstevel@tonic-gate if (rp->regspec_bustype > 1 && rp->regspec_addr != 0) { 8757c478bd9Sstevel@tonic-gate cmn_err(CE_WARN, "<%s,%s> invalid register spec" 8767c478bd9Sstevel@tonic-gate " <0x%x, 0x%x, 0x%x>", ddi_get_name(dip), 8777c478bd9Sstevel@tonic-gate ddi_get_name(rdip), rp->regspec_bustype, 8787c478bd9Sstevel@tonic-gate rp->regspec_addr, rp->regspec_size); 8797c478bd9Sstevel@tonic-gate return (DDI_ME_INVAL); 8807c478bd9Sstevel@tonic-gate } 8817c478bd9Sstevel@tonic-gate 8827c478bd9Sstevel@tonic-gate if (rp->regspec_bustype > 1 && rp->regspec_addr == 0) { 8837c478bd9Sstevel@tonic-gate /* 8847c478bd9Sstevel@tonic-gate * compatibility i/o mapping 8857c478bd9Sstevel@tonic-gate */ 8867c478bd9Sstevel@tonic-gate rp->regspec_bustype += (uint_t)offset; 8877c478bd9Sstevel@tonic-gate } else { 8887c478bd9Sstevel@tonic-gate /* 8897c478bd9Sstevel@tonic-gate * Normal memory or i/o mapping 8907c478bd9Sstevel@tonic-gate */ 8917c478bd9Sstevel@tonic-gate rp->regspec_addr += (uint_t)offset; 8927c478bd9Sstevel@tonic-gate } 8937c478bd9Sstevel@tonic-gate 8947c478bd9Sstevel@tonic-gate if (len != 0) 8957c478bd9Sstevel@tonic-gate rp->regspec_size = (uint_t)len; 8967c478bd9Sstevel@tonic-gate 8977c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 898843e1988Sjohnlev cmn_err(CE_CONT, " <%s,%s> <0x%x, 0x%x, 0x%d> offset %d " 899843e1988Sjohnlev "len %d handle 0x%x\n", ddi_get_name(dip), ddi_get_name(rdip), 9007c478bd9Sstevel@tonic-gate rp->regspec_bustype, rp->regspec_addr, rp->regspec_size, 9017c478bd9Sstevel@tonic-gate offset, len, mp->map_handlep); 9027c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 9037c478bd9Sstevel@tonic-gate 9047c478bd9Sstevel@tonic-gate /* 9057c478bd9Sstevel@tonic-gate * Apply any parent ranges at this level, if applicable. 9067c478bd9Sstevel@tonic-gate * (This is where nexus specific regspec translation takes place. 9077c478bd9Sstevel@tonic-gate * Use of this function is implicit agreement that translation is 9087c478bd9Sstevel@tonic-gate * provided via ddi_apply_range.) 9097c478bd9Sstevel@tonic-gate */ 9107c478bd9Sstevel@tonic-gate 9117c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 9127c478bd9Sstevel@tonic-gate ddi_map_debug("applying range of parent <%s> to child <%s>...\n", 9137c478bd9Sstevel@tonic-gate ddi_get_name(dip), ddi_get_name(rdip)); 9147c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 9157c478bd9Sstevel@tonic-gate 9167c478bd9Sstevel@tonic-gate if ((error = i_ddi_apply_range(dip, rdip, mp->map_obj.rp)) != 0) 9177c478bd9Sstevel@tonic-gate return (error); 9187c478bd9Sstevel@tonic-gate 9197c478bd9Sstevel@tonic-gate switch (mp->map_op) { 9207c478bd9Sstevel@tonic-gate case DDI_MO_MAP_LOCKED: 9217c478bd9Sstevel@tonic-gate 9227c478bd9Sstevel@tonic-gate /* 9237c478bd9Sstevel@tonic-gate * Set up the locked down kernel mapping to the regspec... 9247c478bd9Sstevel@tonic-gate */ 9257c478bd9Sstevel@tonic-gate 9267c478bd9Sstevel@tonic-gate return (rootnex_map_regspec(mp, vaddrp)); 9277c478bd9Sstevel@tonic-gate 9287c478bd9Sstevel@tonic-gate case DDI_MO_UNMAP: 9297c478bd9Sstevel@tonic-gate 9307c478bd9Sstevel@tonic-gate /* 9317c478bd9Sstevel@tonic-gate * Release mapping... 9327c478bd9Sstevel@tonic-gate */ 9337c478bd9Sstevel@tonic-gate 9347c478bd9Sstevel@tonic-gate return (rootnex_unmap_regspec(mp, vaddrp)); 9357c478bd9Sstevel@tonic-gate 9367c478bd9Sstevel@tonic-gate case DDI_MO_MAP_HANDLE: 9377c478bd9Sstevel@tonic-gate 9387c478bd9Sstevel@tonic-gate return (rootnex_map_handle(mp)); 9397c478bd9Sstevel@tonic-gate 9407c478bd9Sstevel@tonic-gate default: 9417c478bd9Sstevel@tonic-gate return (DDI_ME_UNIMPLEMENTED); 9427c478bd9Sstevel@tonic-gate } 9437c478bd9Sstevel@tonic-gate } 9447c478bd9Sstevel@tonic-gate 9457c478bd9Sstevel@tonic-gate 9467c478bd9Sstevel@tonic-gate /* 94712f080e7Smrj * rootnex_map_fault() 9487c478bd9Sstevel@tonic-gate * 9497c478bd9Sstevel@tonic-gate * fault in mappings for requestors 9507c478bd9Sstevel@tonic-gate */ 9517c478bd9Sstevel@tonic-gate /*ARGSUSED*/ 9527c478bd9Sstevel@tonic-gate static int 95312f080e7Smrj rootnex_map_fault(dev_info_t *dip, dev_info_t *rdip, struct hat *hat, 95412f080e7Smrj struct seg *seg, caddr_t addr, struct devpage *dp, pfn_t pfn, uint_t prot, 95512f080e7Smrj uint_t lock) 9567c478bd9Sstevel@tonic-gate { 9577c478bd9Sstevel@tonic-gate 9587c478bd9Sstevel@tonic-gate #ifdef DDI_MAP_DEBUG 9597c478bd9Sstevel@tonic-gate ddi_map_debug("rootnex_map_fault: address <%x> pfn <%x>", addr, pfn); 9607c478bd9Sstevel@tonic-gate ddi_map_debug(" Seg <%s>\n", 9617c478bd9Sstevel@tonic-gate seg->s_ops == &segdev_ops ? "segdev" : 9627c478bd9Sstevel@tonic-gate seg == &kvseg ? "segkmem" : "NONE!"); 9637c478bd9Sstevel@tonic-gate #endif /* DDI_MAP_DEBUG */ 9647c478bd9Sstevel@tonic-gate 9657c478bd9Sstevel@tonic-gate /* 9667c478bd9Sstevel@tonic-gate * This is all terribly broken, but it is a start 9677c478bd9Sstevel@tonic-gate * 9687c478bd9Sstevel@tonic-gate * XXX Note that this test means that segdev_ops 9697c478bd9Sstevel@tonic-gate * must be exported from seg_dev.c. 9707c478bd9Sstevel@tonic-gate * XXX What about devices with their own segment drivers? 9717c478bd9Sstevel@tonic-gate */ 9727c478bd9Sstevel@tonic-gate if (seg->s_ops == &segdev_ops) { 973843e1988Sjohnlev struct segdev_data *sdp = (struct segdev_data *)seg->s_data; 9747c478bd9Sstevel@tonic-gate 9757c478bd9Sstevel@tonic-gate if (hat == NULL) { 9767c478bd9Sstevel@tonic-gate /* 9777c478bd9Sstevel@tonic-gate * This is one plausible interpretation of 9787c478bd9Sstevel@tonic-gate * a null hat i.e. use the first hat on the 9797c478bd9Sstevel@tonic-gate * address space hat list which by convention is 9807c478bd9Sstevel@tonic-gate * the hat of the system MMU. At alternative 9817c478bd9Sstevel@tonic-gate * would be to panic .. this might well be better .. 9827c478bd9Sstevel@tonic-gate */ 9837c478bd9Sstevel@tonic-gate ASSERT(AS_READ_HELD(seg->s_as, &seg->s_as->a_lock)); 9847c478bd9Sstevel@tonic-gate hat = seg->s_as->a_hat; 9857c478bd9Sstevel@tonic-gate cmn_err(CE_NOTE, "rootnex_map_fault: nil hat"); 9867c478bd9Sstevel@tonic-gate } 9877c478bd9Sstevel@tonic-gate hat_devload(hat, addr, MMU_PAGESIZE, pfn, prot | sdp->hat_attr, 9887c478bd9Sstevel@tonic-gate (lock ? HAT_LOAD_LOCK : HAT_LOAD)); 9897c478bd9Sstevel@tonic-gate } else if (seg == &kvseg && dp == NULL) { 9907c478bd9Sstevel@tonic-gate hat_devload(kas.a_hat, addr, MMU_PAGESIZE, pfn, prot, 9917c478bd9Sstevel@tonic-gate HAT_LOAD_LOCK); 9927c478bd9Sstevel@tonic-gate } else 9937c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 9947c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 9957c478bd9Sstevel@tonic-gate } 9967c478bd9Sstevel@tonic-gate 9977c478bd9Sstevel@tonic-gate 9987c478bd9Sstevel@tonic-gate /* 99912f080e7Smrj * rootnex_map_regspec() 100012f080e7Smrj * we don't support mapping of I/O cards above 4Gb 10017c478bd9Sstevel@tonic-gate */ 10027c478bd9Sstevel@tonic-gate static int 100312f080e7Smrj rootnex_map_regspec(ddi_map_req_t *mp, caddr_t *vaddrp) 10047c478bd9Sstevel@tonic-gate { 1005843e1988Sjohnlev rootnex_addr_t rbase; 100612f080e7Smrj void *cvaddr; 100712f080e7Smrj uint_t npages, pgoffset; 100812f080e7Smrj struct regspec *rp; 100912f080e7Smrj ddi_acc_hdl_t *hp; 101012f080e7Smrj ddi_acc_impl_t *ap; 101112f080e7Smrj uint_t hat_acc_flags; 1012843e1988Sjohnlev paddr_t pbase; 10137c478bd9Sstevel@tonic-gate 101412f080e7Smrj rp = mp->map_obj.rp; 101512f080e7Smrj hp = mp->map_handlep; 101612f080e7Smrj 101712f080e7Smrj #ifdef DDI_MAP_DEBUG 101812f080e7Smrj ddi_map_debug( 101912f080e7Smrj "rootnex_map_regspec: <0x%x 0x%x 0x%x> handle 0x%x\n", 102012f080e7Smrj rp->regspec_bustype, rp->regspec_addr, 102112f080e7Smrj rp->regspec_size, mp->map_handlep); 102212f080e7Smrj #endif /* DDI_MAP_DEBUG */ 10237c478bd9Sstevel@tonic-gate 10247c478bd9Sstevel@tonic-gate /* 102512f080e7Smrj * I/O or memory mapping 102612f080e7Smrj * 102712f080e7Smrj * <bustype=0, addr=x, len=x>: memory 102812f080e7Smrj * <bustype=1, addr=x, len=x>: i/o 102912f080e7Smrj * <bustype>1, addr=0, len=x>: x86-compatibility i/o 10307c478bd9Sstevel@tonic-gate */ 103112f080e7Smrj 103212f080e7Smrj if (rp->regspec_bustype > 1 && rp->regspec_addr != 0) { 103312f080e7Smrj cmn_err(CE_WARN, "rootnex: invalid register spec" 103412f080e7Smrj " <0x%x, 0x%x, 0x%x>", rp->regspec_bustype, 103512f080e7Smrj rp->regspec_addr, rp->regspec_size); 103612f080e7Smrj return (DDI_FAILURE); 10377c478bd9Sstevel@tonic-gate } 103812f080e7Smrj 103912f080e7Smrj if (rp->regspec_bustype != 0) { 10407c478bd9Sstevel@tonic-gate /* 104112f080e7Smrj * I/O space - needs a handle. 10427c478bd9Sstevel@tonic-gate */ 10437c478bd9Sstevel@tonic-gate if (hp == NULL) { 104412f080e7Smrj return (DDI_FAILURE); 10457c478bd9Sstevel@tonic-gate } 104612f080e7Smrj ap = (ddi_acc_impl_t *)hp->ah_platform_private; 104712f080e7Smrj ap->ahi_acc_attr |= DDI_ACCATTR_IO_SPACE; 104812f080e7Smrj impl_acc_hdl_init(hp); 10497c478bd9Sstevel@tonic-gate 105012f080e7Smrj if (mp->map_flags & DDI_MF_DEVICE_MAPPING) { 105112f080e7Smrj #ifdef DDI_MAP_DEBUG 1052843e1988Sjohnlev ddi_map_debug("rootnex_map_regspec: mmap() " 1053843e1988Sjohnlev "to I/O space is not supported.\n"); 105412f080e7Smrj #endif /* DDI_MAP_DEBUG */ 105512f080e7Smrj return (DDI_ME_INVAL); 10567c478bd9Sstevel@tonic-gate } else { 10577c478bd9Sstevel@tonic-gate /* 105812f080e7Smrj * 1275-compliant vs. compatibility i/o mapping 10597c478bd9Sstevel@tonic-gate */ 106012f080e7Smrj *vaddrp = 106112f080e7Smrj (rp->regspec_bustype > 1 && rp->regspec_addr == 0) ? 106212f080e7Smrj ((caddr_t)(uintptr_t)rp->regspec_bustype) : 106312f080e7Smrj ((caddr_t)(uintptr_t)rp->regspec_addr); 1064843e1988Sjohnlev #ifdef __xpv 1065843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info)) { 1066843e1988Sjohnlev hp->ah_pfn = xen_assign_pfn( 1067843e1988Sjohnlev mmu_btop((ulong_t)rp->regspec_addr & 1068843e1988Sjohnlev MMU_PAGEMASK)); 1069843e1988Sjohnlev } else { 1070843e1988Sjohnlev hp->ah_pfn = mmu_btop( 1071843e1988Sjohnlev (ulong_t)rp->regspec_addr & MMU_PAGEMASK); 1072843e1988Sjohnlev } 1073843e1988Sjohnlev #else 107400d0963fSdilpreet hp->ah_pfn = mmu_btop((ulong_t)rp->regspec_addr & 1075843e1988Sjohnlev MMU_PAGEMASK); 1076843e1988Sjohnlev #endif 107700d0963fSdilpreet hp->ah_pnum = mmu_btopr(rp->regspec_size + 107800d0963fSdilpreet (ulong_t)rp->regspec_addr & MMU_PAGEOFFSET); 10797c478bd9Sstevel@tonic-gate } 10807c478bd9Sstevel@tonic-gate 108112f080e7Smrj #ifdef DDI_MAP_DEBUG 108212f080e7Smrj ddi_map_debug( 108312f080e7Smrj "rootnex_map_regspec: \"Mapping\" %d bytes I/O space at 0x%x\n", 108412f080e7Smrj rp->regspec_size, *vaddrp); 108512f080e7Smrj #endif /* DDI_MAP_DEBUG */ 108612f080e7Smrj return (DDI_SUCCESS); 10877c478bd9Sstevel@tonic-gate } 10887c478bd9Sstevel@tonic-gate 10897c478bd9Sstevel@tonic-gate /* 109012f080e7Smrj * Memory space 109112f080e7Smrj */ 109212f080e7Smrj 109312f080e7Smrj if (hp != NULL) { 109412f080e7Smrj /* 109512f080e7Smrj * hat layer ignores 109612f080e7Smrj * hp->ah_acc.devacc_attr_endian_flags. 109712f080e7Smrj */ 109812f080e7Smrj switch (hp->ah_acc.devacc_attr_dataorder) { 109912f080e7Smrj case DDI_STRICTORDER_ACC: 110012f080e7Smrj hat_acc_flags = HAT_STRICTORDER; 110112f080e7Smrj break; 110212f080e7Smrj case DDI_UNORDERED_OK_ACC: 110312f080e7Smrj hat_acc_flags = HAT_UNORDERED_OK; 110412f080e7Smrj break; 110512f080e7Smrj case DDI_MERGING_OK_ACC: 110612f080e7Smrj hat_acc_flags = HAT_MERGING_OK; 110712f080e7Smrj break; 110812f080e7Smrj case DDI_LOADCACHING_OK_ACC: 110912f080e7Smrj hat_acc_flags = HAT_LOADCACHING_OK; 111012f080e7Smrj break; 111112f080e7Smrj case DDI_STORECACHING_OK_ACC: 111212f080e7Smrj hat_acc_flags = HAT_STORECACHING_OK; 111312f080e7Smrj break; 111412f080e7Smrj } 111512f080e7Smrj ap = (ddi_acc_impl_t *)hp->ah_platform_private; 111612f080e7Smrj ap->ahi_acc_attr |= DDI_ACCATTR_CPU_VADDR; 111712f080e7Smrj impl_acc_hdl_init(hp); 111812f080e7Smrj hp->ah_hat_flags = hat_acc_flags; 111912f080e7Smrj } else { 112012f080e7Smrj hat_acc_flags = HAT_STRICTORDER; 112112f080e7Smrj } 112212f080e7Smrj 1123843e1988Sjohnlev rbase = (rootnex_addr_t)(rp->regspec_addr & MMU_PAGEMASK); 1124843e1988Sjohnlev #ifdef __xpv 1125843e1988Sjohnlev /* 1126843e1988Sjohnlev * If we're dom0, we're using a real device so we need to translate 1127843e1988Sjohnlev * the MA to a PA. 1128843e1988Sjohnlev */ 1129843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info)) { 1130843e1988Sjohnlev pbase = pfn_to_pa(xen_assign_pfn(mmu_btop(rbase))); 1131843e1988Sjohnlev } else { 1132843e1988Sjohnlev pbase = rbase; 1133843e1988Sjohnlev } 1134843e1988Sjohnlev #else 1135843e1988Sjohnlev pbase = rbase; 1136843e1988Sjohnlev #endif 1137843e1988Sjohnlev pgoffset = (ulong_t)rp->regspec_addr & MMU_PAGEOFFSET; 113812f080e7Smrj 113912f080e7Smrj if (rp->regspec_size == 0) { 114012f080e7Smrj #ifdef DDI_MAP_DEBUG 114112f080e7Smrj ddi_map_debug("rootnex_map_regspec: zero regspec_size\n"); 114212f080e7Smrj #endif /* DDI_MAP_DEBUG */ 114312f080e7Smrj return (DDI_ME_INVAL); 114412f080e7Smrj } 114512f080e7Smrj 114612f080e7Smrj if (mp->map_flags & DDI_MF_DEVICE_MAPPING) { 1147843e1988Sjohnlev /* extra cast to make gcc happy */ 1148843e1988Sjohnlev *vaddrp = (caddr_t)((uintptr_t)mmu_btop(pbase)); 114912f080e7Smrj } else { 115012f080e7Smrj npages = mmu_btopr(rp->regspec_size + pgoffset); 115112f080e7Smrj 115212f080e7Smrj #ifdef DDI_MAP_DEBUG 1153843e1988Sjohnlev ddi_map_debug("rootnex_map_regspec: Mapping %d pages " 1154843e1988Sjohnlev "physical %llx", npages, pbase); 115512f080e7Smrj #endif /* DDI_MAP_DEBUG */ 115612f080e7Smrj 115712f080e7Smrj cvaddr = device_arena_alloc(ptob(npages), VM_NOSLEEP); 115812f080e7Smrj if (cvaddr == NULL) 115912f080e7Smrj return (DDI_ME_NORESOURCES); 116012f080e7Smrj 116112f080e7Smrj /* 116212f080e7Smrj * Now map in the pages we've allocated... 116312f080e7Smrj */ 1164843e1988Sjohnlev hat_devload(kas.a_hat, cvaddr, mmu_ptob(npages), 1165843e1988Sjohnlev mmu_btop(pbase), mp->map_prot | hat_acc_flags, 1166843e1988Sjohnlev HAT_LOAD_LOCK); 116712f080e7Smrj *vaddrp = (caddr_t)cvaddr + pgoffset; 116800d0963fSdilpreet 116900d0963fSdilpreet /* save away pfn and npages for FMA */ 117000d0963fSdilpreet hp = mp->map_handlep; 117100d0963fSdilpreet if (hp) { 1172843e1988Sjohnlev hp->ah_pfn = mmu_btop(pbase); 117300d0963fSdilpreet hp->ah_pnum = npages; 117400d0963fSdilpreet } 117512f080e7Smrj } 117612f080e7Smrj 117712f080e7Smrj #ifdef DDI_MAP_DEBUG 117812f080e7Smrj ddi_map_debug("at virtual 0x%x\n", *vaddrp); 117912f080e7Smrj #endif /* DDI_MAP_DEBUG */ 118012f080e7Smrj return (DDI_SUCCESS); 118112f080e7Smrj } 118212f080e7Smrj 118312f080e7Smrj 118412f080e7Smrj /* 118512f080e7Smrj * rootnex_unmap_regspec() 11867c478bd9Sstevel@tonic-gate * 11877c478bd9Sstevel@tonic-gate */ 11887c478bd9Sstevel@tonic-gate static int 118912f080e7Smrj rootnex_unmap_regspec(ddi_map_req_t *mp, caddr_t *vaddrp) 11907c478bd9Sstevel@tonic-gate { 119112f080e7Smrj caddr_t addr = (caddr_t)*vaddrp; 119212f080e7Smrj uint_t npages, pgoffset; 119312f080e7Smrj struct regspec *rp; 11947c478bd9Sstevel@tonic-gate 119512f080e7Smrj if (mp->map_flags & DDI_MF_DEVICE_MAPPING) 119612f080e7Smrj return (0); 11977c478bd9Sstevel@tonic-gate 119812f080e7Smrj rp = mp->map_obj.rp; 11997c478bd9Sstevel@tonic-gate 120012f080e7Smrj if (rp->regspec_size == 0) { 120112f080e7Smrj #ifdef DDI_MAP_DEBUG 120212f080e7Smrj ddi_map_debug("rootnex_unmap_regspec: zero regspec_size\n"); 120312f080e7Smrj #endif /* DDI_MAP_DEBUG */ 120412f080e7Smrj return (DDI_ME_INVAL); 12057c478bd9Sstevel@tonic-gate } 12067c478bd9Sstevel@tonic-gate 12077c478bd9Sstevel@tonic-gate /* 120812f080e7Smrj * I/O or memory mapping: 12097c478bd9Sstevel@tonic-gate * 121012f080e7Smrj * <bustype=0, addr=x, len=x>: memory 121112f080e7Smrj * <bustype=1, addr=x, len=x>: i/o 121212f080e7Smrj * <bustype>1, addr=0, len=x>: x86-compatibility i/o 12137c478bd9Sstevel@tonic-gate */ 121412f080e7Smrj if (rp->regspec_bustype != 0) { 12157c478bd9Sstevel@tonic-gate /* 121612f080e7Smrj * This is I/O space, which requires no particular 121712f080e7Smrj * processing on unmap since it isn't mapped in the 121812f080e7Smrj * first place. 12197c478bd9Sstevel@tonic-gate */ 12207c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 12217c478bd9Sstevel@tonic-gate } 12227c478bd9Sstevel@tonic-gate 12237c478bd9Sstevel@tonic-gate /* 122412f080e7Smrj * Memory space 12257c478bd9Sstevel@tonic-gate */ 122612f080e7Smrj pgoffset = (uintptr_t)addr & MMU_PAGEOFFSET; 122712f080e7Smrj npages = mmu_btopr(rp->regspec_size + pgoffset); 122812f080e7Smrj hat_unload(kas.a_hat, addr - pgoffset, ptob(npages), HAT_UNLOAD_UNLOCK); 122912f080e7Smrj device_arena_free(addr - pgoffset, ptob(npages)); 12307c478bd9Sstevel@tonic-gate 12317c478bd9Sstevel@tonic-gate /* 123212f080e7Smrj * Destroy the pointer - the mapping has logically gone 12337c478bd9Sstevel@tonic-gate */ 123412f080e7Smrj *vaddrp = NULL; 12357c478bd9Sstevel@tonic-gate 12367c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 12377c478bd9Sstevel@tonic-gate } 12387c478bd9Sstevel@tonic-gate 123912f080e7Smrj 124012f080e7Smrj /* 124112f080e7Smrj * rootnex_map_handle() 124212f080e7Smrj * 124312f080e7Smrj */ 12447c478bd9Sstevel@tonic-gate static int 124512f080e7Smrj rootnex_map_handle(ddi_map_req_t *mp) 12467c478bd9Sstevel@tonic-gate { 1247843e1988Sjohnlev rootnex_addr_t rbase; 124812f080e7Smrj ddi_acc_hdl_t *hp; 124912f080e7Smrj uint_t pgoffset; 125012f080e7Smrj struct regspec *rp; 1251843e1988Sjohnlev paddr_t pbase; 12527c478bd9Sstevel@tonic-gate 125312f080e7Smrj rp = mp->map_obj.rp; 12547c478bd9Sstevel@tonic-gate 125512f080e7Smrj #ifdef DDI_MAP_DEBUG 125612f080e7Smrj ddi_map_debug( 125712f080e7Smrj "rootnex_map_handle: <0x%x 0x%x 0x%x> handle 0x%x\n", 125812f080e7Smrj rp->regspec_bustype, rp->regspec_addr, 125912f080e7Smrj rp->regspec_size, mp->map_handlep); 126012f080e7Smrj #endif /* DDI_MAP_DEBUG */ 12617c478bd9Sstevel@tonic-gate 12627c478bd9Sstevel@tonic-gate /* 126312f080e7Smrj * I/O or memory mapping: 126412f080e7Smrj * 126512f080e7Smrj * <bustype=0, addr=x, len=x>: memory 126612f080e7Smrj * <bustype=1, addr=x, len=x>: i/o 126712f080e7Smrj * <bustype>1, addr=0, len=x>: x86-compatibility i/o 12687c478bd9Sstevel@tonic-gate */ 126912f080e7Smrj if (rp->regspec_bustype != 0) { 127012f080e7Smrj /* 127112f080e7Smrj * This refers to I/O space, and we don't support "mapping" 127212f080e7Smrj * I/O space to a user. 127312f080e7Smrj */ 12747c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 12757c478bd9Sstevel@tonic-gate } 12767c478bd9Sstevel@tonic-gate 12777c478bd9Sstevel@tonic-gate /* 127812f080e7Smrj * Set up the hat_flags for the mapping. 12797c478bd9Sstevel@tonic-gate */ 128012f080e7Smrj hp = mp->map_handlep; 12817c478bd9Sstevel@tonic-gate 128212f080e7Smrj switch (hp->ah_acc.devacc_attr_endian_flags) { 128312f080e7Smrj case DDI_NEVERSWAP_ACC: 128412f080e7Smrj hp->ah_hat_flags = HAT_NEVERSWAP | HAT_STRICTORDER; 12857c478bd9Sstevel@tonic-gate break; 128612f080e7Smrj case DDI_STRUCTURE_LE_ACC: 128712f080e7Smrj hp->ah_hat_flags = HAT_STRUCTURE_LE; 12887c478bd9Sstevel@tonic-gate break; 128912f080e7Smrj case DDI_STRUCTURE_BE_ACC: 12907c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 12917c478bd9Sstevel@tonic-gate default: 129212f080e7Smrj return (DDI_REGS_ACC_CONFLICT); 12937c478bd9Sstevel@tonic-gate } 12947c478bd9Sstevel@tonic-gate 129512f080e7Smrj switch (hp->ah_acc.devacc_attr_dataorder) { 129612f080e7Smrj case DDI_STRICTORDER_ACC: 12977c478bd9Sstevel@tonic-gate break; 129812f080e7Smrj case DDI_UNORDERED_OK_ACC: 129912f080e7Smrj hp->ah_hat_flags |= HAT_UNORDERED_OK; 13007c478bd9Sstevel@tonic-gate break; 130112f080e7Smrj case DDI_MERGING_OK_ACC: 130212f080e7Smrj hp->ah_hat_flags |= HAT_MERGING_OK; 13037c478bd9Sstevel@tonic-gate break; 130412f080e7Smrj case DDI_LOADCACHING_OK_ACC: 130512f080e7Smrj hp->ah_hat_flags |= HAT_LOADCACHING_OK; 130612f080e7Smrj break; 130712f080e7Smrj case DDI_STORECACHING_OK_ACC: 130812f080e7Smrj hp->ah_hat_flags |= HAT_STORECACHING_OK; 130912f080e7Smrj break; 13107c478bd9Sstevel@tonic-gate default: 13117c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13127c478bd9Sstevel@tonic-gate } 13137c478bd9Sstevel@tonic-gate 1314843e1988Sjohnlev rbase = (rootnex_addr_t)rp->regspec_addr & 1315843e1988Sjohnlev (~(rootnex_addr_t)MMU_PAGEOFFSET); 1316843e1988Sjohnlev pgoffset = (ulong_t)rp->regspec_addr & MMU_PAGEOFFSET; 13177c478bd9Sstevel@tonic-gate 131812f080e7Smrj if (rp->regspec_size == 0) 131912f080e7Smrj return (DDI_ME_INVAL); 13207c478bd9Sstevel@tonic-gate 1321843e1988Sjohnlev #ifdef __xpv 1322843e1988Sjohnlev /* 1323843e1988Sjohnlev * If we're dom0, we're using a real device so we need to translate 1324843e1988Sjohnlev * the MA to a PA. 1325843e1988Sjohnlev */ 1326843e1988Sjohnlev if (DOMAIN_IS_INITDOMAIN(xen_info)) { 1327843e1988Sjohnlev pbase = pfn_to_pa(xen_assign_pfn(mmu_btop(rbase))) | 1328843e1988Sjohnlev (rbase & MMU_PAGEOFFSET); 1329843e1988Sjohnlev } else { 1330843e1988Sjohnlev pbase = rbase; 1331843e1988Sjohnlev } 1332843e1988Sjohnlev #else 1333843e1988Sjohnlev pbase = rbase; 1334843e1988Sjohnlev #endif 1335843e1988Sjohnlev 1336843e1988Sjohnlev hp->ah_pfn = mmu_btop(pbase); 133712f080e7Smrj hp->ah_pnum = mmu_btopr(rp->regspec_size + pgoffset); 13387c478bd9Sstevel@tonic-gate 13397c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 13407c478bd9Sstevel@tonic-gate } 13417c478bd9Sstevel@tonic-gate 134212f080e7Smrj 134312f080e7Smrj 13447c478bd9Sstevel@tonic-gate /* 134512f080e7Smrj * ************************ 134612f080e7Smrj * interrupt related code 134712f080e7Smrj * ************************ 13487c478bd9Sstevel@tonic-gate */ 13497c478bd9Sstevel@tonic-gate 13507c478bd9Sstevel@tonic-gate /* 135112f080e7Smrj * rootnex_intr_ops() 13527c478bd9Sstevel@tonic-gate * bus_intr_op() function for interrupt support 13537c478bd9Sstevel@tonic-gate */ 13547c478bd9Sstevel@tonic-gate /* ARGSUSED */ 13557c478bd9Sstevel@tonic-gate static int 13567c478bd9Sstevel@tonic-gate rootnex_intr_ops(dev_info_t *pdip, dev_info_t *rdip, ddi_intr_op_t intr_op, 13577c478bd9Sstevel@tonic-gate ddi_intr_handle_impl_t *hdlp, void *result) 13587c478bd9Sstevel@tonic-gate { 13597c478bd9Sstevel@tonic-gate struct intrspec *ispec; 13607c478bd9Sstevel@tonic-gate struct ddi_parent_private_data *pdp; 13617c478bd9Sstevel@tonic-gate 13627c478bd9Sstevel@tonic-gate DDI_INTR_NEXDBG((CE_CONT, 13637c478bd9Sstevel@tonic-gate "rootnex_intr_ops: pdip = %p, rdip = %p, intr_op = %x, hdlp = %p\n", 13647c478bd9Sstevel@tonic-gate (void *)pdip, (void *)rdip, intr_op, (void *)hdlp)); 13657c478bd9Sstevel@tonic-gate 13667c478bd9Sstevel@tonic-gate /* Process the interrupt operation */ 13677c478bd9Sstevel@tonic-gate switch (intr_op) { 13687c478bd9Sstevel@tonic-gate case DDI_INTROP_GETCAP: 13697c478bd9Sstevel@tonic-gate /* First check with pcplusmp */ 13707c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 13717c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13727c478bd9Sstevel@tonic-gate 13737c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_GET_CAP, result)) { 13747c478bd9Sstevel@tonic-gate *(int *)result = 0; 13757c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13767c478bd9Sstevel@tonic-gate } 13777c478bd9Sstevel@tonic-gate break; 13787c478bd9Sstevel@tonic-gate case DDI_INTROP_SETCAP: 13797c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 13807c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13817c478bd9Sstevel@tonic-gate 13827c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_SET_CAP, result)) 13837c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13847c478bd9Sstevel@tonic-gate break; 13857c478bd9Sstevel@tonic-gate case DDI_INTROP_ALLOC: 13867c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 13877c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 13887c478bd9Sstevel@tonic-gate hdlp->ih_pri = ispec->intrspec_pri; 13897c478bd9Sstevel@tonic-gate *(int *)result = hdlp->ih_scratch1; 13907c478bd9Sstevel@tonic-gate break; 13917c478bd9Sstevel@tonic-gate case DDI_INTROP_FREE: 13927c478bd9Sstevel@tonic-gate pdp = ddi_get_parent_data(rdip); 13937c478bd9Sstevel@tonic-gate /* 13947c478bd9Sstevel@tonic-gate * Special case for 'pcic' driver' only. 13957c478bd9Sstevel@tonic-gate * If an intrspec was created for it, clean it up here 13967c478bd9Sstevel@tonic-gate * See detailed comments on this in the function 13977c478bd9Sstevel@tonic-gate * rootnex_get_ispec(). 13987c478bd9Sstevel@tonic-gate */ 13997c478bd9Sstevel@tonic-gate if (pdp->par_intr && strcmp(ddi_get_name(rdip), "pcic") == 0) { 14007c478bd9Sstevel@tonic-gate kmem_free(pdp->par_intr, sizeof (struct intrspec) * 14017c478bd9Sstevel@tonic-gate pdp->par_nintr); 14027c478bd9Sstevel@tonic-gate /* 14037c478bd9Sstevel@tonic-gate * Set it to zero; so that 14047c478bd9Sstevel@tonic-gate * DDI framework doesn't free it again 14057c478bd9Sstevel@tonic-gate */ 14067c478bd9Sstevel@tonic-gate pdp->par_intr = NULL; 14077c478bd9Sstevel@tonic-gate pdp->par_nintr = 0; 14087c478bd9Sstevel@tonic-gate } 14097c478bd9Sstevel@tonic-gate break; 14107c478bd9Sstevel@tonic-gate case DDI_INTROP_GETPRI: 14117c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 14127c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14137c478bd9Sstevel@tonic-gate *(int *)result = ispec->intrspec_pri; 14147c478bd9Sstevel@tonic-gate break; 14157c478bd9Sstevel@tonic-gate case DDI_INTROP_SETPRI: 14167c478bd9Sstevel@tonic-gate /* Validate the interrupt priority passed to us */ 14177c478bd9Sstevel@tonic-gate if (*(int *)result > LOCK_LEVEL) 14187c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14197c478bd9Sstevel@tonic-gate 14207c478bd9Sstevel@tonic-gate /* Ensure that PSM is all initialized and ispec is ok */ 14217c478bd9Sstevel@tonic-gate if ((psm_intr_ops == NULL) || 14227c478bd9Sstevel@tonic-gate ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL)) 14237c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14247c478bd9Sstevel@tonic-gate 14257c478bd9Sstevel@tonic-gate /* Change the priority */ 14267c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_SET_PRI, result) == 14277c478bd9Sstevel@tonic-gate PSM_FAILURE) 14287c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14297c478bd9Sstevel@tonic-gate 14307c478bd9Sstevel@tonic-gate /* update the ispec with the new priority */ 14317c478bd9Sstevel@tonic-gate ispec->intrspec_pri = *(int *)result; 14327c478bd9Sstevel@tonic-gate break; 14337c478bd9Sstevel@tonic-gate case DDI_INTROP_ADDISR: 14347c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 14357c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14367c478bd9Sstevel@tonic-gate ispec->intrspec_func = hdlp->ih_cb_func; 14377c478bd9Sstevel@tonic-gate break; 14387c478bd9Sstevel@tonic-gate case DDI_INTROP_REMISR: 14397c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 14407c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14417c478bd9Sstevel@tonic-gate ispec->intrspec_func = (uint_t (*)()) 0; 14427c478bd9Sstevel@tonic-gate break; 14437c478bd9Sstevel@tonic-gate case DDI_INTROP_ENABLE: 14447c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 14457c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14467c478bd9Sstevel@tonic-gate 14477c478bd9Sstevel@tonic-gate /* Call psmi to translate irq with the dip */ 14487c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 14497c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14507c478bd9Sstevel@tonic-gate 14517a364d25Sschwartz ((ihdl_plat_t *)hdlp->ih_private)->ip_ispecp = ispec; 14527c478bd9Sstevel@tonic-gate (void) (*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_XLATE_VECTOR, 14537c478bd9Sstevel@tonic-gate (int *)&hdlp->ih_vector); 14547c478bd9Sstevel@tonic-gate 14557c478bd9Sstevel@tonic-gate /* Add the interrupt handler */ 14567c478bd9Sstevel@tonic-gate if (!add_avintr((void *)hdlp, ispec->intrspec_pri, 14577c478bd9Sstevel@tonic-gate hdlp->ih_cb_func, DEVI(rdip)->devi_name, hdlp->ih_vector, 14587a364d25Sschwartz hdlp->ih_cb_arg1, hdlp->ih_cb_arg2, NULL, rdip)) 14597c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14607c478bd9Sstevel@tonic-gate break; 14617c478bd9Sstevel@tonic-gate case DDI_INTROP_DISABLE: 14627c478bd9Sstevel@tonic-gate if ((ispec = rootnex_get_ispec(rdip, hdlp->ih_inum)) == NULL) 14637c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14647c478bd9Sstevel@tonic-gate 14657c478bd9Sstevel@tonic-gate /* Call psm_ops() to translate irq with the dip */ 14667c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 14677c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14687c478bd9Sstevel@tonic-gate 14697a364d25Sschwartz ((ihdl_plat_t *)hdlp->ih_private)->ip_ispecp = ispec; 14707c478bd9Sstevel@tonic-gate (void) (*psm_intr_ops)(rdip, hdlp, 14717c478bd9Sstevel@tonic-gate PSM_INTR_OP_XLATE_VECTOR, (int *)&hdlp->ih_vector); 14727c478bd9Sstevel@tonic-gate 14737c478bd9Sstevel@tonic-gate /* Remove the interrupt handler */ 14747c478bd9Sstevel@tonic-gate rem_avintr((void *)hdlp, ispec->intrspec_pri, 14757c478bd9Sstevel@tonic-gate hdlp->ih_cb_func, hdlp->ih_vector); 14767c478bd9Sstevel@tonic-gate break; 14777c478bd9Sstevel@tonic-gate case DDI_INTROP_SETMASK: 14787c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 14797c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14807c478bd9Sstevel@tonic-gate 14817c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_SET_MASK, NULL)) 14827c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14837c478bd9Sstevel@tonic-gate break; 14847c478bd9Sstevel@tonic-gate case DDI_INTROP_CLRMASK: 14857c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 14867c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14877c478bd9Sstevel@tonic-gate 14887c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_CLEAR_MASK, NULL)) 14897c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14907c478bd9Sstevel@tonic-gate break; 14917c478bd9Sstevel@tonic-gate case DDI_INTROP_GETPENDING: 14927c478bd9Sstevel@tonic-gate if (psm_intr_ops == NULL) 14937c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14947c478bd9Sstevel@tonic-gate 14957c478bd9Sstevel@tonic-gate if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_GET_PENDING, 14967c478bd9Sstevel@tonic-gate result)) { 14977c478bd9Sstevel@tonic-gate *(int *)result = 0; 14987c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 14997c478bd9Sstevel@tonic-gate } 15007c478bd9Sstevel@tonic-gate break; 1501a54f81fbSanish case DDI_INTROP_NAVAIL: 15027c478bd9Sstevel@tonic-gate case DDI_INTROP_NINTRS: 1503a54f81fbSanish *(int *)result = i_ddi_get_intx_nintrs(rdip); 1504a54f81fbSanish if (*(int *)result == 0) { 15057c478bd9Sstevel@tonic-gate /* 15067c478bd9Sstevel@tonic-gate * Special case for 'pcic' driver' only. This driver 15077c478bd9Sstevel@tonic-gate * driver is a child of 'isa' and 'rootnex' drivers. 15087c478bd9Sstevel@tonic-gate * 15097c478bd9Sstevel@tonic-gate * See detailed comments on this in the function 15107c478bd9Sstevel@tonic-gate * rootnex_get_ispec(). 15117c478bd9Sstevel@tonic-gate * 15127c478bd9Sstevel@tonic-gate * Children of 'pcic' send 'NINITR' request all the 15137c478bd9Sstevel@tonic-gate * way to rootnex driver. But, the 'pdp->par_nintr' 15147c478bd9Sstevel@tonic-gate * field may not initialized. So, we fake it here 15157c478bd9Sstevel@tonic-gate * to return 1 (a la what PCMCIA nexus does). 15167c478bd9Sstevel@tonic-gate */ 15177c478bd9Sstevel@tonic-gate if (strcmp(ddi_get_name(rdip), "pcic") == 0) 15187c478bd9Sstevel@tonic-gate *(int *)result = 1; 1519a54f81fbSanish else 1520a54f81fbSanish return (DDI_FAILURE); 15217c478bd9Sstevel@tonic-gate } 15227c478bd9Sstevel@tonic-gate break; 15237c478bd9Sstevel@tonic-gate case DDI_INTROP_SUPPORTED_TYPES: 1524a54f81fbSanish *(int *)result = DDI_INTR_TYPE_FIXED; /* Always ... */ 15257c478bd9Sstevel@tonic-gate break; 15267c478bd9Sstevel@tonic-gate default: 15277c478bd9Sstevel@tonic-gate return (DDI_FAILURE); 15287c478bd9Sstevel@tonic-gate } 15297c478bd9Sstevel@tonic-gate 15307c478bd9Sstevel@tonic-gate return (DDI_SUCCESS); 15317c478bd9Sstevel@tonic-gate } 15327c478bd9Sstevel@tonic-gate 15337c478bd9Sstevel@tonic-gate 15347c478bd9Sstevel@tonic-gate /* 153512f080e7Smrj * rootnex_get_ispec() 153612f080e7Smrj * convert an interrupt number to an interrupt specification. 153712f080e7Smrj * The interrupt number determines which interrupt spec will be 153812f080e7Smrj * returned if more than one exists. 153912f080e7Smrj * 154012f080e7Smrj * Look into the parent private data area of the 'rdip' to find out 154112f080e7Smrj * the interrupt specification. First check to make sure there is 154212f080e7Smrj * one that matchs "inumber" and then return a pointer to it. 154312f080e7Smrj * 154412f080e7Smrj * Return NULL if one could not be found. 154512f080e7Smrj * 154612f080e7Smrj * NOTE: This is needed for rootnex_intr_ops() 15477c478bd9Sstevel@tonic-gate */ 154812f080e7Smrj static struct intrspec * 154912f080e7Smrj rootnex_get_ispec(dev_info_t *rdip, int inum) 15507c478bd9Sstevel@tonic-gate { 155112f080e7Smrj struct ddi_parent_private_data *pdp = ddi_get_parent_data(rdip); 15527c478bd9Sstevel@tonic-gate 15537c478bd9Sstevel@tonic-gate /* 155412f080e7Smrj * Special case handling for drivers that provide their own 155512f080e7Smrj * intrspec structures instead of relying on the DDI framework. 155612f080e7Smrj * 155712f080e7Smrj * A broken hardware driver in ON could potentially provide its 155812f080e7Smrj * own intrspec structure, instead of relying on the hardware. 155912f080e7Smrj * If these drivers are children of 'rootnex' then we need to 156012f080e7Smrj * continue to provide backward compatibility to them here. 156112f080e7Smrj * 156212f080e7Smrj * Following check is a special case for 'pcic' driver which 156312f080e7Smrj * was found to have broken hardwre andby provides its own intrspec. 156412f080e7Smrj * 156512f080e7Smrj * Verbatim comments from this driver are shown here: 156612f080e7Smrj * "Don't use the ddi_add_intr since we don't have a 156712f080e7Smrj * default intrspec in all cases." 156812f080e7Smrj * 156912f080e7Smrj * Since an 'ispec' may not be always created for it, 157012f080e7Smrj * check for that and create one if so. 157112f080e7Smrj * 157212f080e7Smrj * NOTE: Currently 'pcic' is the only driver found to do this. 15737c478bd9Sstevel@tonic-gate */ 157412f080e7Smrj if (!pdp->par_intr && strcmp(ddi_get_name(rdip), "pcic") == 0) { 157512f080e7Smrj pdp->par_nintr = 1; 157612f080e7Smrj pdp->par_intr = kmem_zalloc(sizeof (struct intrspec) * 157712f080e7Smrj pdp->par_nintr, KM_SLEEP); 157812f080e7Smrj } 157912f080e7Smrj 158012f080e7Smrj /* Validate the interrupt number */ 158112f080e7Smrj if (inum >= pdp->par_nintr) 158212f080e7Smrj return (NULL); 158312f080e7Smrj 158412f080e7Smrj /* Get the interrupt structure pointer and return that */ 158512f080e7Smrj return ((struct intrspec *)&pdp->par_intr[inum]); 158612f080e7Smrj } 158712f080e7Smrj 158812f080e7Smrj 158912f080e7Smrj /* 159012f080e7Smrj * ****************** 159112f080e7Smrj * dma related code 159212f080e7Smrj * ****************** 159312f080e7Smrj */ 159412f080e7Smrj 159512f080e7Smrj /*ARGSUSED*/ 159612f080e7Smrj static int 159720906b23SVikram Hegde rootnex_coredma_allochdl(dev_info_t *dip, dev_info_t *rdip, 159820906b23SVikram Hegde ddi_dma_attr_t *attr, int (*waitfp)(caddr_t), caddr_t arg, 159920906b23SVikram Hegde ddi_dma_handle_t *handlep) 160012f080e7Smrj { 160112f080e7Smrj uint64_t maxsegmentsize_ll; 160212f080e7Smrj uint_t maxsegmentsize; 160312f080e7Smrj ddi_dma_impl_t *hp; 160412f080e7Smrj rootnex_dma_t *dma; 160512f080e7Smrj uint64_t count_max; 160612f080e7Smrj uint64_t seg; 160712f080e7Smrj int kmflag; 160812f080e7Smrj int e; 160912f080e7Smrj 161012f080e7Smrj 161112f080e7Smrj /* convert our sleep flags */ 161212f080e7Smrj if (waitfp == DDI_DMA_SLEEP) { 161312f080e7Smrj kmflag = KM_SLEEP; 161412f080e7Smrj } else { 161512f080e7Smrj kmflag = KM_NOSLEEP; 161612f080e7Smrj } 161712f080e7Smrj 161812f080e7Smrj /* 161912f080e7Smrj * We try to do only one memory allocation here. We'll do a little 162012f080e7Smrj * pointer manipulation later. If the bind ends up taking more than 162112f080e7Smrj * our prealloc's space, we'll have to allocate more memory in the 162212f080e7Smrj * bind operation. Not great, but much better than before and the 162312f080e7Smrj * best we can do with the current bind interfaces. 162412f080e7Smrj */ 162512f080e7Smrj hp = kmem_cache_alloc(rootnex_state->r_dmahdl_cache, kmflag); 162612f080e7Smrj if (hp == NULL) { 162712f080e7Smrj if (waitfp != DDI_DMA_DONTWAIT) { 162812f080e7Smrj ddi_set_callback(waitfp, arg, 162912f080e7Smrj &rootnex_state->r_dvma_call_list_id); 163012f080e7Smrj } 163112f080e7Smrj return (DDI_DMA_NORESOURCES); 163212f080e7Smrj } 163312f080e7Smrj 163412f080e7Smrj /* Do our pointer manipulation now, align the structures */ 163512f080e7Smrj hp->dmai_private = (void *)(((uintptr_t)hp + 163612f080e7Smrj (uintptr_t)sizeof (ddi_dma_impl_t) + 0x7) & ~0x7); 163712f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 163812f080e7Smrj dma->dp_prealloc_buffer = (uchar_t *)(((uintptr_t)dma + 163912f080e7Smrj sizeof (rootnex_dma_t) + 0x7) & ~0x7); 164012f080e7Smrj 164112f080e7Smrj /* setup the handle */ 164212f080e7Smrj rootnex_clean_dmahdl(hp); 164312f080e7Smrj dma->dp_dip = rdip; 164412f080e7Smrj dma->dp_sglinfo.si_min_addr = attr->dma_attr_addr_lo; 164512f080e7Smrj dma->dp_sglinfo.si_max_addr = attr->dma_attr_addr_hi; 164612f080e7Smrj hp->dmai_minxfer = attr->dma_attr_minxfer; 164712f080e7Smrj hp->dmai_burstsizes = attr->dma_attr_burstsizes; 164812f080e7Smrj hp->dmai_rdip = rdip; 164912f080e7Smrj hp->dmai_attr = *attr; 165012f080e7Smrj 165112f080e7Smrj /* we don't need to worry about the SPL since we do a tryenter */ 165212f080e7Smrj mutex_init(&dma->dp_mutex, NULL, MUTEX_DRIVER, NULL); 165312f080e7Smrj 165412f080e7Smrj /* 165512f080e7Smrj * Figure out our maximum segment size. If the segment size is greater 165612f080e7Smrj * than 4G, we will limit it to (4G - 1) since the max size of a dma 165712f080e7Smrj * object (ddi_dma_obj_t.dmao_size) is 32 bits. dma_attr_seg and 165812f080e7Smrj * dma_attr_count_max are size-1 type values. 165912f080e7Smrj * 166012f080e7Smrj * Maximum segment size is the largest physically contiguous chunk of 166112f080e7Smrj * memory that we can return from a bind (i.e. the maximum size of a 166212f080e7Smrj * single cookie). 166312f080e7Smrj */ 166412f080e7Smrj 166512f080e7Smrj /* handle the rollover cases */ 166612f080e7Smrj seg = attr->dma_attr_seg + 1; 166712f080e7Smrj if (seg < attr->dma_attr_seg) { 166812f080e7Smrj seg = attr->dma_attr_seg; 166912f080e7Smrj } 167012f080e7Smrj count_max = attr->dma_attr_count_max + 1; 167112f080e7Smrj if (count_max < attr->dma_attr_count_max) { 167212f080e7Smrj count_max = attr->dma_attr_count_max; 167312f080e7Smrj } 167412f080e7Smrj 167512f080e7Smrj /* 167612f080e7Smrj * granularity may or may not be a power of two. If it isn't, we can't 167712f080e7Smrj * use a simple mask. 167812f080e7Smrj */ 167912f080e7Smrj if (attr->dma_attr_granular & (attr->dma_attr_granular - 1)) { 168012f080e7Smrj dma->dp_granularity_power_2 = B_FALSE; 168112f080e7Smrj } else { 168212f080e7Smrj dma->dp_granularity_power_2 = B_TRUE; 168312f080e7Smrj } 168412f080e7Smrj 168512f080e7Smrj /* 168612f080e7Smrj * maxxfer should be a whole multiple of granularity. If we're going to 168712f080e7Smrj * break up a window because we're greater than maxxfer, we might as 168812f080e7Smrj * well make sure it's maxxfer is a whole multiple so we don't have to 168912f080e7Smrj * worry about triming the window later on for this case. 169012f080e7Smrj */ 169112f080e7Smrj if (attr->dma_attr_granular > 1) { 169212f080e7Smrj if (dma->dp_granularity_power_2) { 169312f080e7Smrj dma->dp_maxxfer = attr->dma_attr_maxxfer - 169412f080e7Smrj (attr->dma_attr_maxxfer & 169512f080e7Smrj (attr->dma_attr_granular - 1)); 169612f080e7Smrj } else { 169712f080e7Smrj dma->dp_maxxfer = attr->dma_attr_maxxfer - 169812f080e7Smrj (attr->dma_attr_maxxfer % attr->dma_attr_granular); 169912f080e7Smrj } 170012f080e7Smrj } else { 170112f080e7Smrj dma->dp_maxxfer = attr->dma_attr_maxxfer; 170212f080e7Smrj } 170312f080e7Smrj 170412f080e7Smrj maxsegmentsize_ll = MIN(seg, dma->dp_maxxfer); 170512f080e7Smrj maxsegmentsize_ll = MIN(maxsegmentsize_ll, count_max); 170612f080e7Smrj if (maxsegmentsize_ll == 0 || (maxsegmentsize_ll > 0xFFFFFFFF)) { 170712f080e7Smrj maxsegmentsize = 0xFFFFFFFF; 170812f080e7Smrj } else { 170912f080e7Smrj maxsegmentsize = maxsegmentsize_ll; 171012f080e7Smrj } 171112f080e7Smrj dma->dp_sglinfo.si_max_cookie_size = maxsegmentsize; 171212f080e7Smrj dma->dp_sglinfo.si_segmask = attr->dma_attr_seg; 171312f080e7Smrj 171412f080e7Smrj /* check the ddi_dma_attr arg to make sure it makes a little sense */ 171512f080e7Smrj if (rootnex_alloc_check_parms) { 171612f080e7Smrj e = rootnex_valid_alloc_parms(attr, maxsegmentsize); 171712f080e7Smrj if (e != DDI_SUCCESS) { 171812f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_ALLOC_FAIL]); 171912f080e7Smrj (void) rootnex_dma_freehdl(dip, rdip, 172012f080e7Smrj (ddi_dma_handle_t)hp); 172112f080e7Smrj return (e); 172212f080e7Smrj } 172312f080e7Smrj } 172412f080e7Smrj 172512f080e7Smrj *handlep = (ddi_dma_handle_t)hp; 172612f080e7Smrj 172712f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_ACTIVE_HDLS]); 172812f080e7Smrj DTRACE_PROBE1(rootnex__alloc__handle, uint64_t, 172912f080e7Smrj rootnex_cnt[ROOTNEX_CNT_ACTIVE_HDLS]); 173012f080e7Smrj 173112f080e7Smrj return (DDI_SUCCESS); 173212f080e7Smrj } 173312f080e7Smrj 173412f080e7Smrj 173512f080e7Smrj /* 173620906b23SVikram Hegde * rootnex_dma_allochdl() 173720906b23SVikram Hegde * called from ddi_dma_alloc_handle(). 173812f080e7Smrj */ 173920906b23SVikram Hegde static int 174020906b23SVikram Hegde rootnex_dma_allochdl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_attr_t *attr, 174120906b23SVikram Hegde int (*waitfp)(caddr_t), caddr_t arg, ddi_dma_handle_t *handlep) 174220906b23SVikram Hegde { 174320906b23SVikram Hegde #if !defined(__xpv) 174420906b23SVikram Hegde uint_t error = ENOTSUP; 174520906b23SVikram Hegde int retval; 174620906b23SVikram Hegde 174720906b23SVikram Hegde retval = iommulib_nex_open(rdip, &error); 174820906b23SVikram Hegde 174920906b23SVikram Hegde if (retval != DDI_SUCCESS && error == ENOTSUP) { 175020906b23SVikram Hegde /* No IOMMU */ 175120906b23SVikram Hegde return (rootnex_coredma_allochdl(dip, rdip, attr, waitfp, arg, 175220906b23SVikram Hegde handlep)); 175320906b23SVikram Hegde } else if (retval != DDI_SUCCESS) { 175420906b23SVikram Hegde return (DDI_FAILURE); 175520906b23SVikram Hegde } 175620906b23SVikram Hegde 175720906b23SVikram Hegde ASSERT(IOMMU_USED(rdip)); 175820906b23SVikram Hegde 175920906b23SVikram Hegde /* has an IOMMU */ 176020906b23SVikram Hegde return (iommulib_nexdma_allochdl(dip, rdip, attr, 176120906b23SVikram Hegde waitfp, arg, handlep)); 176220906b23SVikram Hegde #else 176320906b23SVikram Hegde return (rootnex_coredma_allochdl(dip, rdip, attr, waitfp, arg, 176420906b23SVikram Hegde handlep)); 176520906b23SVikram Hegde #endif 176620906b23SVikram Hegde } 176720906b23SVikram Hegde 176812f080e7Smrj /*ARGSUSED*/ 176912f080e7Smrj static int 177020906b23SVikram Hegde rootnex_coredma_freehdl(dev_info_t *dip, dev_info_t *rdip, 177120906b23SVikram Hegde ddi_dma_handle_t handle) 177212f080e7Smrj { 177312f080e7Smrj ddi_dma_impl_t *hp; 177412f080e7Smrj rootnex_dma_t *dma; 177512f080e7Smrj 177612f080e7Smrj 177712f080e7Smrj hp = (ddi_dma_impl_t *)handle; 177812f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 177912f080e7Smrj 178012f080e7Smrj /* unbind should have been called first */ 178112f080e7Smrj ASSERT(!dma->dp_inuse); 178212f080e7Smrj 178312f080e7Smrj mutex_destroy(&dma->dp_mutex); 178412f080e7Smrj kmem_cache_free(rootnex_state->r_dmahdl_cache, hp); 178512f080e7Smrj 178612f080e7Smrj ROOTNEX_PROF_DEC(&rootnex_cnt[ROOTNEX_CNT_ACTIVE_HDLS]); 178712f080e7Smrj DTRACE_PROBE1(rootnex__free__handle, uint64_t, 178812f080e7Smrj rootnex_cnt[ROOTNEX_CNT_ACTIVE_HDLS]); 178912f080e7Smrj 179012f080e7Smrj if (rootnex_state->r_dvma_call_list_id) 179112f080e7Smrj ddi_run_callback(&rootnex_state->r_dvma_call_list_id); 179212f080e7Smrj 179312f080e7Smrj return (DDI_SUCCESS); 179412f080e7Smrj } 179512f080e7Smrj 179612f080e7Smrj /* 179720906b23SVikram Hegde * rootnex_dma_freehdl() 179820906b23SVikram Hegde * called from ddi_dma_free_handle(). 179912f080e7Smrj */ 180020906b23SVikram Hegde static int 180120906b23SVikram Hegde rootnex_dma_freehdl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle) 180220906b23SVikram Hegde { 180320906b23SVikram Hegde #if !defined(__xpv) 180420906b23SVikram Hegde if (IOMMU_USED(rdip)) { 180520906b23SVikram Hegde return (iommulib_nexdma_freehdl(dip, rdip, handle)); 180620906b23SVikram Hegde } 180720906b23SVikram Hegde #endif 180820906b23SVikram Hegde return (rootnex_coredma_freehdl(dip, rdip, handle)); 180920906b23SVikram Hegde } 181020906b23SVikram Hegde 181120906b23SVikram Hegde 181212f080e7Smrj /*ARGSUSED*/ 181312f080e7Smrj static int 181420906b23SVikram Hegde rootnex_coredma_bindhdl(dev_info_t *dip, dev_info_t *rdip, 181520906b23SVikram Hegde ddi_dma_handle_t handle, struct ddi_dma_req *dmareq, 181620906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp) 181712f080e7Smrj { 181812f080e7Smrj rootnex_sglinfo_t *sinfo; 181912f080e7Smrj ddi_dma_attr_t *attr; 182012f080e7Smrj ddi_dma_impl_t *hp; 182112f080e7Smrj rootnex_dma_t *dma; 182212f080e7Smrj int kmflag; 182312f080e7Smrj int e; 182412f080e7Smrj 182512f080e7Smrj 182612f080e7Smrj hp = (ddi_dma_impl_t *)handle; 182712f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 182812f080e7Smrj sinfo = &dma->dp_sglinfo; 182912f080e7Smrj attr = &hp->dmai_attr; 183012f080e7Smrj 183112f080e7Smrj hp->dmai_rflags = dmareq->dmar_flags & DMP_DDIFLAGS; 183212f080e7Smrj 183312f080e7Smrj /* 183412f080e7Smrj * This is useful for debugging a driver. Not as useful in a production 183512f080e7Smrj * system. The only time this will fail is if you have a driver bug. 183612f080e7Smrj */ 183712f080e7Smrj if (rootnex_bind_check_inuse) { 183812f080e7Smrj /* 183912f080e7Smrj * No one else should ever have this lock unless someone else 184012f080e7Smrj * is trying to use this handle. So contention on the lock 184112f080e7Smrj * is the same as inuse being set. 184212f080e7Smrj */ 184312f080e7Smrj e = mutex_tryenter(&dma->dp_mutex); 184412f080e7Smrj if (e == 0) { 184512f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_BIND_FAIL]); 184612f080e7Smrj return (DDI_DMA_INUSE); 184712f080e7Smrj } 184812f080e7Smrj if (dma->dp_inuse) { 184912f080e7Smrj mutex_exit(&dma->dp_mutex); 185012f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_BIND_FAIL]); 185112f080e7Smrj return (DDI_DMA_INUSE); 185212f080e7Smrj } 185312f080e7Smrj dma->dp_inuse = B_TRUE; 185412f080e7Smrj mutex_exit(&dma->dp_mutex); 185512f080e7Smrj } 185612f080e7Smrj 185712f080e7Smrj /* check the ddi_dma_attr arg to make sure it makes a little sense */ 185812f080e7Smrj if (rootnex_bind_check_parms) { 185912f080e7Smrj e = rootnex_valid_bind_parms(dmareq, attr); 186012f080e7Smrj if (e != DDI_SUCCESS) { 186112f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_BIND_FAIL]); 186212f080e7Smrj rootnex_clean_dmahdl(hp); 186312f080e7Smrj return (e); 186412f080e7Smrj } 186512f080e7Smrj } 186612f080e7Smrj 186712f080e7Smrj /* save away the original bind info */ 186812f080e7Smrj dma->dp_dma = dmareq->dmar_object; 186912f080e7Smrj 187020906b23SVikram Hegde #if !defined(__xpv) 187186c1f4dcSVikram Hegde if (rootnex_state->r_intel_iommu_enabled) { 187286c1f4dcSVikram Hegde e = intel_iommu_map_sgl(handle, dmareq, 187386c1f4dcSVikram Hegde rootnex_state->r_prealloc_cookies); 187486c1f4dcSVikram Hegde 187586c1f4dcSVikram Hegde switch (e) { 187686c1f4dcSVikram Hegde case IOMMU_SGL_SUCCESS: 187786c1f4dcSVikram Hegde goto rootnex_sgl_end; 187886c1f4dcSVikram Hegde 187986c1f4dcSVikram Hegde case IOMMU_SGL_DISABLE: 188086c1f4dcSVikram Hegde goto rootnex_sgl_start; 188186c1f4dcSVikram Hegde 188286c1f4dcSVikram Hegde case IOMMU_SGL_NORESOURCES: 188386c1f4dcSVikram Hegde cmn_err(CE_WARN, "iommu map sgl failed for %s", 188486c1f4dcSVikram Hegde ddi_node_name(dma->dp_dip)); 188586c1f4dcSVikram Hegde rootnex_clean_dmahdl(hp); 188686c1f4dcSVikram Hegde return (DDI_DMA_NORESOURCES); 188786c1f4dcSVikram Hegde 188886c1f4dcSVikram Hegde default: 188986c1f4dcSVikram Hegde cmn_err(CE_WARN, 189086c1f4dcSVikram Hegde "undefined value returned from" 189186c1f4dcSVikram Hegde " intel_iommu_map_sgl: %d", 189286c1f4dcSVikram Hegde e); 189386c1f4dcSVikram Hegde rootnex_clean_dmahdl(hp); 189486c1f4dcSVikram Hegde return (DDI_DMA_NORESOURCES); 189586c1f4dcSVikram Hegde } 189686c1f4dcSVikram Hegde } 189720906b23SVikram Hegde #endif 189886c1f4dcSVikram Hegde 189986c1f4dcSVikram Hegde rootnex_sgl_start: 190012f080e7Smrj /* 190112f080e7Smrj * Figure out a rough estimate of what maximum number of pages this 190212f080e7Smrj * buffer could use (a high estimate of course). 190312f080e7Smrj */ 190412f080e7Smrj sinfo->si_max_pages = mmu_btopr(dma->dp_dma.dmao_size) + 1; 190512f080e7Smrj 190612f080e7Smrj /* 190712f080e7Smrj * We'll use the pre-allocated cookies for any bind that will *always* 190812f080e7Smrj * fit (more important to be consistent, we don't want to create 190912f080e7Smrj * additional degenerate cases). 191012f080e7Smrj */ 191112f080e7Smrj if (sinfo->si_max_pages <= rootnex_state->r_prealloc_cookies) { 191212f080e7Smrj dma->dp_cookies = (ddi_dma_cookie_t *)dma->dp_prealloc_buffer; 191312f080e7Smrj dma->dp_need_to_free_cookie = B_FALSE; 191412f080e7Smrj DTRACE_PROBE2(rootnex__bind__prealloc, dev_info_t *, rdip, 191512f080e7Smrj uint_t, sinfo->si_max_pages); 191612f080e7Smrj 191712f080e7Smrj /* 191812f080e7Smrj * For anything larger than that, we'll go ahead and allocate the 191912f080e7Smrj * maximum number of pages we expect to see. Hopefuly, we won't be 192012f080e7Smrj * seeing this path in the fast path for high performance devices very 192112f080e7Smrj * frequently. 192212f080e7Smrj * 192312f080e7Smrj * a ddi bind interface that allowed the driver to provide storage to 192412f080e7Smrj * the bind interface would speed this case up. 192512f080e7Smrj */ 192612f080e7Smrj } else { 192712f080e7Smrj /* convert the sleep flags */ 192812f080e7Smrj if (dmareq->dmar_fp == DDI_DMA_SLEEP) { 192912f080e7Smrj kmflag = KM_SLEEP; 193012f080e7Smrj } else { 193112f080e7Smrj kmflag = KM_NOSLEEP; 193212f080e7Smrj } 193312f080e7Smrj 193412f080e7Smrj /* 193512f080e7Smrj * Save away how much memory we allocated. If we're doing a 193612f080e7Smrj * nosleep, the alloc could fail... 193712f080e7Smrj */ 193812f080e7Smrj dma->dp_cookie_size = sinfo->si_max_pages * 193912f080e7Smrj sizeof (ddi_dma_cookie_t); 194012f080e7Smrj dma->dp_cookies = kmem_alloc(dma->dp_cookie_size, kmflag); 194112f080e7Smrj if (dma->dp_cookies == NULL) { 194212f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_BIND_FAIL]); 194312f080e7Smrj rootnex_clean_dmahdl(hp); 194412f080e7Smrj return (DDI_DMA_NORESOURCES); 194512f080e7Smrj } 194612f080e7Smrj dma->dp_need_to_free_cookie = B_TRUE; 194712f080e7Smrj DTRACE_PROBE2(rootnex__bind__alloc, dev_info_t *, rdip, uint_t, 194812f080e7Smrj sinfo->si_max_pages); 194912f080e7Smrj } 195012f080e7Smrj hp->dmai_cookie = dma->dp_cookies; 195112f080e7Smrj 195212f080e7Smrj /* 195312f080e7Smrj * Get the real sgl. rootnex_get_sgl will fill in cookie array while 195412f080e7Smrj * looking at the contraints in the dma structure. It will then put some 195512f080e7Smrj * additional state about the sgl in the dma struct (i.e. is the sgl 195612f080e7Smrj * clean, or do we need to do some munging; how many pages need to be 195712f080e7Smrj * copied, etc.) 195812f080e7Smrj */ 195912f080e7Smrj rootnex_get_sgl(&dmareq->dmar_object, dma->dp_cookies, 196012f080e7Smrj &dma->dp_sglinfo); 196112f080e7Smrj 196286c1f4dcSVikram Hegde rootnex_sgl_end: 196386c1f4dcSVikram Hegde ASSERT(sinfo->si_sgl_size <= sinfo->si_max_pages); 196412f080e7Smrj /* if we don't need a copy buffer, we don't need to sync */ 196512f080e7Smrj if (sinfo->si_copybuf_req == 0) { 196612f080e7Smrj hp->dmai_rflags |= DMP_NOSYNC; 196712f080e7Smrj } 196812f080e7Smrj 196912f080e7Smrj /* 197012f080e7Smrj * if we don't need the copybuf and we don't need to do a partial, we 197112f080e7Smrj * hit the fast path. All the high performance devices should be trying 197212f080e7Smrj * to hit this path. To hit this path, a device should be able to reach 197312f080e7Smrj * all of memory, shouldn't try to bind more than it can transfer, and 197412f080e7Smrj * the buffer shouldn't require more cookies than the driver/device can 197512f080e7Smrj * handle [sgllen]). 197612f080e7Smrj */ 197712f080e7Smrj if ((sinfo->si_copybuf_req == 0) && 197812f080e7Smrj (sinfo->si_sgl_size <= attr->dma_attr_sgllen) && 197912f080e7Smrj (dma->dp_dma.dmao_size < dma->dp_maxxfer)) { 198012f080e7Smrj /* 198185c8e0e8Sstephh * If the driver supports FMA, insert the handle in the FMA DMA 198285c8e0e8Sstephh * handle cache. 198385c8e0e8Sstephh */ 198485c8e0e8Sstephh if (attr->dma_attr_flags & DDI_DMA_FLAGERR) { 198585c8e0e8Sstephh hp->dmai_error.err_cf = rootnex_dma_check; 198685c8e0e8Sstephh (void) ndi_fmc_insert(rdip, DMA_HANDLE, hp, NULL); 198785c8e0e8Sstephh } 198885c8e0e8Sstephh 198985c8e0e8Sstephh /* 199012f080e7Smrj * copy out the first cookie and ccountp, set the cookie 199112f080e7Smrj * pointer to the second cookie. The first cookie is passed 199212f080e7Smrj * back on the stack. Additional cookies are accessed via 199312f080e7Smrj * ddi_dma_nextcookie() 199412f080e7Smrj */ 199512f080e7Smrj *cookiep = dma->dp_cookies[0]; 199612f080e7Smrj *ccountp = sinfo->si_sgl_size; 199712f080e7Smrj hp->dmai_cookie++; 199812f080e7Smrj hp->dmai_rflags &= ~DDI_DMA_PARTIAL; 199912f080e7Smrj hp->dmai_nwin = 1; 200012f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS]); 200112f080e7Smrj DTRACE_PROBE3(rootnex__bind__fast, dev_info_t *, rdip, uint64_t, 200212f080e7Smrj rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS], uint_t, 200312f080e7Smrj dma->dp_dma.dmao_size); 200412f080e7Smrj return (DDI_DMA_MAPPED); 200512f080e7Smrj } 200612f080e7Smrj 200712f080e7Smrj /* 200812f080e7Smrj * go to the slow path, we may need to alloc more memory, create 200912f080e7Smrj * multiple windows, and munge up a sgl to make the device happy. 201012f080e7Smrj */ 201112f080e7Smrj e = rootnex_bind_slowpath(hp, dmareq, dma, attr, kmflag); 201212f080e7Smrj if ((e != DDI_DMA_MAPPED) && (e != DDI_DMA_PARTIAL_MAP)) { 201312f080e7Smrj if (dma->dp_need_to_free_cookie) { 201412f080e7Smrj kmem_free(dma->dp_cookies, dma->dp_cookie_size); 201512f080e7Smrj } 201612f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_BIND_FAIL]); 201712f080e7Smrj rootnex_clean_dmahdl(hp); /* must be after free cookie */ 201812f080e7Smrj return (e); 201912f080e7Smrj } 202012f080e7Smrj 202185c8e0e8Sstephh /* 202285c8e0e8Sstephh * If the driver supports FMA, insert the handle in the FMA DMA handle 202385c8e0e8Sstephh * cache. 202485c8e0e8Sstephh */ 202585c8e0e8Sstephh if (attr->dma_attr_flags & DDI_DMA_FLAGERR) { 202685c8e0e8Sstephh hp->dmai_error.err_cf = rootnex_dma_check; 202785c8e0e8Sstephh (void) ndi_fmc_insert(rdip, DMA_HANDLE, hp, NULL); 202885c8e0e8Sstephh } 202985c8e0e8Sstephh 203012f080e7Smrj /* if the first window uses the copy buffer, sync it for the device */ 203112f080e7Smrj if ((dma->dp_window[dma->dp_current_win].wd_dosync) && 203212f080e7Smrj (hp->dmai_rflags & DDI_DMA_WRITE)) { 203312f080e7Smrj (void) rootnex_dma_sync(dip, rdip, handle, 0, 0, 203412f080e7Smrj DDI_DMA_SYNC_FORDEV); 203512f080e7Smrj } 203612f080e7Smrj 203712f080e7Smrj /* 203812f080e7Smrj * copy out the first cookie and ccountp, set the cookie pointer to the 203912f080e7Smrj * second cookie. Make sure the partial flag is set/cleared correctly. 204012f080e7Smrj * If we have a partial map (i.e. multiple windows), the number of 204112f080e7Smrj * cookies we return is the number of cookies in the first window. 204212f080e7Smrj */ 204312f080e7Smrj if (e == DDI_DMA_MAPPED) { 204412f080e7Smrj hp->dmai_rflags &= ~DDI_DMA_PARTIAL; 204512f080e7Smrj *ccountp = sinfo->si_sgl_size; 204612f080e7Smrj } else { 204712f080e7Smrj hp->dmai_rflags |= DDI_DMA_PARTIAL; 204812f080e7Smrj *ccountp = dma->dp_window[dma->dp_current_win].wd_cookie_cnt; 204912f080e7Smrj ASSERT(hp->dmai_nwin <= dma->dp_max_win); 205012f080e7Smrj } 205112f080e7Smrj *cookiep = dma->dp_cookies[0]; 205212f080e7Smrj hp->dmai_cookie++; 205312f080e7Smrj 205412f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS]); 205512f080e7Smrj DTRACE_PROBE3(rootnex__bind__slow, dev_info_t *, rdip, uint64_t, 205612f080e7Smrj rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS], uint_t, 205712f080e7Smrj dma->dp_dma.dmao_size); 205812f080e7Smrj return (e); 205912f080e7Smrj } 206012f080e7Smrj 206112f080e7Smrj 206212f080e7Smrj /* 206320906b23SVikram Hegde * rootnex_dma_bindhdl() 206420906b23SVikram Hegde * called from ddi_dma_addr_bind_handle() and ddi_dma_buf_bind_handle(). 206512f080e7Smrj */ 206620906b23SVikram Hegde static int 206720906b23SVikram Hegde rootnex_dma_bindhdl(dev_info_t *dip, dev_info_t *rdip, 206820906b23SVikram Hegde ddi_dma_handle_t handle, struct ddi_dma_req *dmareq, 206920906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp) 207020906b23SVikram Hegde { 207120906b23SVikram Hegde #if !defined(__xpv) 207220906b23SVikram Hegde if (IOMMU_USED(rdip)) { 207320906b23SVikram Hegde return (iommulib_nexdma_bindhdl(dip, rdip, handle, dmareq, 207420906b23SVikram Hegde cookiep, ccountp)); 207520906b23SVikram Hegde } 207620906b23SVikram Hegde #endif 207720906b23SVikram Hegde return (rootnex_coredma_bindhdl(dip, rdip, handle, dmareq, 207820906b23SVikram Hegde cookiep, ccountp)); 207920906b23SVikram Hegde } 208020906b23SVikram Hegde 208112f080e7Smrj /*ARGSUSED*/ 208212f080e7Smrj static int 208320906b23SVikram Hegde rootnex_coredma_unbindhdl(dev_info_t *dip, dev_info_t *rdip, 208412f080e7Smrj ddi_dma_handle_t handle) 208512f080e7Smrj { 208612f080e7Smrj ddi_dma_impl_t *hp; 208712f080e7Smrj rootnex_dma_t *dma; 208812f080e7Smrj int e; 208912f080e7Smrj 209012f080e7Smrj hp = (ddi_dma_impl_t *)handle; 209112f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 209212f080e7Smrj 209312f080e7Smrj /* make sure the buffer wasn't free'd before calling unbind */ 209412f080e7Smrj if (rootnex_unbind_verify_buffer) { 209512f080e7Smrj e = rootnex_verify_buffer(dma); 209612f080e7Smrj if (e != DDI_SUCCESS) { 209712f080e7Smrj ASSERT(0); 209812f080e7Smrj return (DDI_FAILURE); 209912f080e7Smrj } 210012f080e7Smrj } 210112f080e7Smrj 210212f080e7Smrj /* sync the current window before unbinding the buffer */ 210312f080e7Smrj if (dma->dp_window && dma->dp_window[dma->dp_current_win].wd_dosync && 210412f080e7Smrj (hp->dmai_rflags & DDI_DMA_READ)) { 210512f080e7Smrj (void) rootnex_dma_sync(dip, rdip, handle, 0, 0, 210612f080e7Smrj DDI_DMA_SYNC_FORCPU); 210712f080e7Smrj } 210812f080e7Smrj 210912f080e7Smrj /* 211000d0963fSdilpreet * If the driver supports FMA, remove the handle in the FMA DMA handle 211100d0963fSdilpreet * cache. 211200d0963fSdilpreet */ 211300d0963fSdilpreet if (hp->dmai_attr.dma_attr_flags & DDI_DMA_FLAGERR) { 211400d0963fSdilpreet if ((DEVI(rdip)->devi_fmhdl != NULL) && 211500d0963fSdilpreet (DDI_FM_DMA_ERR_CAP(DEVI(rdip)->devi_fmhdl->fh_cap))) { 211600d0963fSdilpreet (void) ndi_fmc_remove(rdip, DMA_HANDLE, hp); 211700d0963fSdilpreet } 211800d0963fSdilpreet } 211900d0963fSdilpreet 212000d0963fSdilpreet /* 212112f080e7Smrj * cleanup and copy buffer or window state. if we didn't use the copy 212212f080e7Smrj * buffer or windows, there won't be much to do :-) 212312f080e7Smrj */ 212412f080e7Smrj rootnex_teardown_copybuf(dma); 212512f080e7Smrj rootnex_teardown_windows(dma); 212612f080e7Smrj 212720906b23SVikram Hegde #if !defined(__xpv) 212812f080e7Smrj /* 212986c1f4dcSVikram Hegde * If intel iommu enabled, clean up the page tables and free the dvma 213086c1f4dcSVikram Hegde */ 213186c1f4dcSVikram Hegde if (rootnex_state->r_intel_iommu_enabled) { 213286c1f4dcSVikram Hegde intel_iommu_unmap_sgl(handle); 213386c1f4dcSVikram Hegde } 213420906b23SVikram Hegde #endif 213586c1f4dcSVikram Hegde 213686c1f4dcSVikram Hegde /* 213712f080e7Smrj * If we had to allocate space to for the worse case sgl (it didn't 213812f080e7Smrj * fit into our pre-allocate buffer), free that up now 213912f080e7Smrj */ 214012f080e7Smrj if (dma->dp_need_to_free_cookie) { 214112f080e7Smrj kmem_free(dma->dp_cookies, dma->dp_cookie_size); 214212f080e7Smrj } 214312f080e7Smrj 214412f080e7Smrj /* 214512f080e7Smrj * clean up the handle so it's ready for the next bind (i.e. if the 214612f080e7Smrj * handle is reused). 214712f080e7Smrj */ 214812f080e7Smrj rootnex_clean_dmahdl(hp); 214912f080e7Smrj 215012f080e7Smrj if (rootnex_state->r_dvma_call_list_id) 215112f080e7Smrj ddi_run_callback(&rootnex_state->r_dvma_call_list_id); 215212f080e7Smrj 215312f080e7Smrj ROOTNEX_PROF_DEC(&rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS]); 215412f080e7Smrj DTRACE_PROBE1(rootnex__unbind, uint64_t, 215512f080e7Smrj rootnex_cnt[ROOTNEX_CNT_ACTIVE_BINDS]); 215612f080e7Smrj 215712f080e7Smrj return (DDI_SUCCESS); 215812f080e7Smrj } 215912f080e7Smrj 216020906b23SVikram Hegde /* 216120906b23SVikram Hegde * rootnex_dma_unbindhdl() 216220906b23SVikram Hegde * called from ddi_dma_unbind_handle() 216320906b23SVikram Hegde */ 216420906b23SVikram Hegde /*ARGSUSED*/ 216520906b23SVikram Hegde static int 216620906b23SVikram Hegde rootnex_dma_unbindhdl(dev_info_t *dip, dev_info_t *rdip, 216720906b23SVikram Hegde ddi_dma_handle_t handle) 216820906b23SVikram Hegde { 216920906b23SVikram Hegde #if !defined(__xpv) 217020906b23SVikram Hegde if (IOMMU_USED(rdip)) { 217120906b23SVikram Hegde return (iommulib_nexdma_unbindhdl(dip, rdip, handle)); 217220906b23SVikram Hegde } 217320906b23SVikram Hegde #endif 217420906b23SVikram Hegde return (rootnex_coredma_unbindhdl(dip, rdip, handle)); 217520906b23SVikram Hegde } 217620906b23SVikram Hegde 2177*5dfdb46bSVikram Hegde #if !defined(__xpv) 217820906b23SVikram Hegde /*ARGSUSED*/ 217920906b23SVikram Hegde static void 218020906b23SVikram Hegde rootnex_coredma_reset_cookies(dev_info_t *dip, ddi_dma_handle_t handle) 218120906b23SVikram Hegde { 218220906b23SVikram Hegde ddi_dma_impl_t *hp = (ddi_dma_impl_t *)handle; 218320906b23SVikram Hegde rootnex_dma_t *dma = (rootnex_dma_t *)hp->dmai_private; 218420906b23SVikram Hegde 218520906b23SVikram Hegde hp->dmai_cookie = &dma->dp_cookies[0]; 218620906b23SVikram Hegde hp->dmai_cookie++; 218720906b23SVikram Hegde } 218820906b23SVikram Hegde 218920906b23SVikram Hegde /*ARGSUSED*/ 219020906b23SVikram Hegde static int 219120906b23SVikram Hegde rootnex_coredma_get_cookies(dev_info_t *dip, ddi_dma_handle_t handle, 219220906b23SVikram Hegde ddi_dma_cookie_t *cookiep, uint_t *ccountp) 219320906b23SVikram Hegde { 219420906b23SVikram Hegde ddi_dma_impl_t *hp = (ddi_dma_impl_t *)handle; 219520906b23SVikram Hegde rootnex_dma_t *dma = (rootnex_dma_t *)hp->dmai_private; 219620906b23SVikram Hegde 219720906b23SVikram Hegde 219820906b23SVikram Hegde if (hp->dmai_rflags & DDI_DMA_PARTIAL) { 219920906b23SVikram Hegde *ccountp = dma->dp_window[dma->dp_current_win].wd_cookie_cnt; 220020906b23SVikram Hegde } else { 220120906b23SVikram Hegde *ccountp = dma->dp_sglinfo.si_sgl_size; 220220906b23SVikram Hegde } 220320906b23SVikram Hegde *cookiep = dma->dp_cookies[0]; 220420906b23SVikram Hegde 220520906b23SVikram Hegde /* reset the cookies */ 220620906b23SVikram Hegde hp->dmai_cookie = &dma->dp_cookies[0]; 220720906b23SVikram Hegde hp->dmai_cookie++; 220820906b23SVikram Hegde 220920906b23SVikram Hegde return (DDI_SUCCESS); 221020906b23SVikram Hegde } 2211*5dfdb46bSVikram Hegde #endif 221212f080e7Smrj 221312f080e7Smrj /* 221412f080e7Smrj * rootnex_verify_buffer() 221512f080e7Smrj * verify buffer wasn't free'd 221612f080e7Smrj */ 221712f080e7Smrj static int 221812f080e7Smrj rootnex_verify_buffer(rootnex_dma_t *dma) 221912f080e7Smrj { 222012f080e7Smrj page_t **pplist; 222112f080e7Smrj caddr_t vaddr; 222212f080e7Smrj uint_t pcnt; 222312f080e7Smrj uint_t poff; 222412f080e7Smrj page_t *pp; 222500d0963fSdilpreet char b; 222612f080e7Smrj int i; 222712f080e7Smrj 222812f080e7Smrj /* Figure out how many pages this buffer occupies */ 222912f080e7Smrj if (dma->dp_dma.dmao_type == DMA_OTYP_PAGES) { 223012f080e7Smrj poff = dma->dp_dma.dmao_obj.pp_obj.pp_offset & MMU_PAGEOFFSET; 223112f080e7Smrj } else { 223212f080e7Smrj vaddr = dma->dp_dma.dmao_obj.virt_obj.v_addr; 223312f080e7Smrj poff = (uintptr_t)vaddr & MMU_PAGEOFFSET; 223412f080e7Smrj } 223512f080e7Smrj pcnt = mmu_btopr(dma->dp_dma.dmao_size + poff); 223612f080e7Smrj 223712f080e7Smrj switch (dma->dp_dma.dmao_type) { 223812f080e7Smrj case DMA_OTYP_PAGES: 223912f080e7Smrj /* 224012f080e7Smrj * for a linked list of pp's walk through them to make sure 224112f080e7Smrj * they're locked and not free. 224212f080e7Smrj */ 224312f080e7Smrj pp = dma->dp_dma.dmao_obj.pp_obj.pp_pp; 224412f080e7Smrj for (i = 0; i < pcnt; i++) { 224512f080e7Smrj if (PP_ISFREE(pp) || !PAGE_LOCKED(pp)) { 224612f080e7Smrj return (DDI_FAILURE); 224712f080e7Smrj } 22487c478bd9Sstevel@tonic-gate pp = pp->p_next; 22497c478bd9Sstevel@tonic-gate } 22507c478bd9Sstevel@tonic-gate break; 225112f080e7Smrj 22527c478bd9Sstevel@tonic-gate case DMA_OTYP_VADDR: 22537c478bd9Sstevel@tonic-gate case DMA_OTYP_BUFVADDR: 225412f080e7Smrj pplist = dma->dp_dma.dmao_obj.virt_obj.v_priv; 225512f080e7Smrj /* 225612f080e7Smrj * for an array of pp's walk through them to make sure they're 225712f080e7Smrj * not free. It's possible that they may not be locked. 225812f080e7Smrj */ 225912f080e7Smrj if (pplist) { 226012f080e7Smrj for (i = 0; i < pcnt; i++) { 226112f080e7Smrj if (PP_ISFREE(pplist[i])) { 226212f080e7Smrj return (DDI_FAILURE); 226312f080e7Smrj } 226412f080e7Smrj } 226512f080e7Smrj 226612f080e7Smrj /* For a virtual address, try to peek at each page */ 226712f080e7Smrj } else { 226812f080e7Smrj if (dma->dp_sglinfo.si_asp == &kas) { 226912f080e7Smrj for (i = 0; i < pcnt; i++) { 227000d0963fSdilpreet if (ddi_peek8(NULL, vaddr, &b) == 227100d0963fSdilpreet DDI_FAILURE) 227212f080e7Smrj return (DDI_FAILURE); 227300d0963fSdilpreet vaddr += MMU_PAGESIZE; 227412f080e7Smrj } 227512f080e7Smrj } 227612f080e7Smrj } 227712f080e7Smrj break; 227812f080e7Smrj 227912f080e7Smrj default: 228012f080e7Smrj ASSERT(0); 228112f080e7Smrj break; 228212f080e7Smrj } 228312f080e7Smrj 228412f080e7Smrj return (DDI_SUCCESS); 228512f080e7Smrj } 228612f080e7Smrj 228712f080e7Smrj 228812f080e7Smrj /* 228912f080e7Smrj * rootnex_clean_dmahdl() 229012f080e7Smrj * Clean the dma handle. This should be called on a handle alloc and an 229112f080e7Smrj * unbind handle. Set the handle state to the default settings. 229212f080e7Smrj */ 229312f080e7Smrj static void 229412f080e7Smrj rootnex_clean_dmahdl(ddi_dma_impl_t *hp) 229512f080e7Smrj { 229612f080e7Smrj rootnex_dma_t *dma; 229712f080e7Smrj 229812f080e7Smrj 229912f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 230012f080e7Smrj 230112f080e7Smrj hp->dmai_nwin = 0; 230212f080e7Smrj dma->dp_current_cookie = 0; 230312f080e7Smrj dma->dp_copybuf_size = 0; 230412f080e7Smrj dma->dp_window = NULL; 230512f080e7Smrj dma->dp_cbaddr = NULL; 230612f080e7Smrj dma->dp_inuse = B_FALSE; 230712f080e7Smrj dma->dp_need_to_free_cookie = B_FALSE; 230812f080e7Smrj dma->dp_need_to_free_window = B_FALSE; 230912f080e7Smrj dma->dp_partial_required = B_FALSE; 231012f080e7Smrj dma->dp_trim_required = B_FALSE; 231112f080e7Smrj dma->dp_sglinfo.si_copybuf_req = 0; 231212f080e7Smrj #if !defined(__amd64) 231312f080e7Smrj dma->dp_cb_remaping = B_FALSE; 231412f080e7Smrj dma->dp_kva = NULL; 231512f080e7Smrj #endif 231612f080e7Smrj 231712f080e7Smrj /* FMA related initialization */ 231812f080e7Smrj hp->dmai_fault = 0; 231912f080e7Smrj hp->dmai_fault_check = NULL; 232012f080e7Smrj hp->dmai_fault_notify = NULL; 232112f080e7Smrj hp->dmai_error.err_ena = 0; 232212f080e7Smrj hp->dmai_error.err_status = DDI_FM_OK; 232312f080e7Smrj hp->dmai_error.err_expected = DDI_FM_ERR_UNEXPECTED; 232412f080e7Smrj hp->dmai_error.err_ontrap = NULL; 232512f080e7Smrj hp->dmai_error.err_fep = NULL; 232600d0963fSdilpreet hp->dmai_error.err_cf = NULL; 232712f080e7Smrj } 232812f080e7Smrj 232912f080e7Smrj 233012f080e7Smrj /* 233112f080e7Smrj * rootnex_valid_alloc_parms() 233212f080e7Smrj * Called in ddi_dma_alloc_handle path to validate its parameters. 233312f080e7Smrj */ 233412f080e7Smrj static int 233512f080e7Smrj rootnex_valid_alloc_parms(ddi_dma_attr_t *attr, uint_t maxsegmentsize) 233612f080e7Smrj { 233712f080e7Smrj if ((attr->dma_attr_seg < MMU_PAGEOFFSET) || 233812f080e7Smrj (attr->dma_attr_count_max < MMU_PAGEOFFSET) || 233912f080e7Smrj (attr->dma_attr_granular > MMU_PAGESIZE) || 234012f080e7Smrj (attr->dma_attr_maxxfer < MMU_PAGESIZE)) { 234112f080e7Smrj return (DDI_DMA_BADATTR); 234212f080e7Smrj } 234312f080e7Smrj 234412f080e7Smrj if (attr->dma_attr_addr_hi <= attr->dma_attr_addr_lo) { 234512f080e7Smrj return (DDI_DMA_BADATTR); 234612f080e7Smrj } 234712f080e7Smrj 234812f080e7Smrj if ((attr->dma_attr_seg & MMU_PAGEOFFSET) != MMU_PAGEOFFSET || 234912f080e7Smrj MMU_PAGESIZE & (attr->dma_attr_granular - 1) || 235012f080e7Smrj attr->dma_attr_sgllen <= 0) { 235112f080e7Smrj return (DDI_DMA_BADATTR); 235212f080e7Smrj } 235312f080e7Smrj 235412f080e7Smrj /* We should be able to DMA into every byte offset in a page */ 235512f080e7Smrj if (maxsegmentsize < MMU_PAGESIZE) { 235612f080e7Smrj return (DDI_DMA_BADATTR); 235712f080e7Smrj } 235812f080e7Smrj 235912f080e7Smrj return (DDI_SUCCESS); 236012f080e7Smrj } 236112f080e7Smrj 236212f080e7Smrj 236312f080e7Smrj /* 236412f080e7Smrj * rootnex_valid_bind_parms() 236512f080e7Smrj * Called in ddi_dma_*_bind_handle path to validate its parameters. 236612f080e7Smrj */ 236712f080e7Smrj /* ARGSUSED */ 236812f080e7Smrj static int 236912f080e7Smrj rootnex_valid_bind_parms(ddi_dma_req_t *dmareq, ddi_dma_attr_t *attr) 237012f080e7Smrj { 237112f080e7Smrj #if !defined(__amd64) 237212f080e7Smrj /* 237312f080e7Smrj * we only support up to a 2G-1 transfer size on 32-bit kernels so 237412f080e7Smrj * we can track the offset for the obsoleted interfaces. 237512f080e7Smrj */ 237612f080e7Smrj if (dmareq->dmar_object.dmao_size > 0x7FFFFFFF) { 237712f080e7Smrj return (DDI_DMA_TOOBIG); 237812f080e7Smrj } 237912f080e7Smrj #endif 238012f080e7Smrj 238112f080e7Smrj return (DDI_SUCCESS); 238212f080e7Smrj } 238312f080e7Smrj 238412f080e7Smrj 238512f080e7Smrj /* 238612f080e7Smrj * rootnex_get_sgl() 238712f080e7Smrj * Called in bind fastpath to get the sgl. Most of this will be replaced 238812f080e7Smrj * with a call to the vm layer when vm2.0 comes around... 238912f080e7Smrj */ 239012f080e7Smrj static void 239112f080e7Smrj rootnex_get_sgl(ddi_dma_obj_t *dmar_object, ddi_dma_cookie_t *sgl, 239212f080e7Smrj rootnex_sglinfo_t *sglinfo) 239312f080e7Smrj { 239412f080e7Smrj ddi_dma_atyp_t buftype; 2395843e1988Sjohnlev rootnex_addr_t raddr; 239612f080e7Smrj uint64_t last_page; 239712f080e7Smrj uint64_t offset; 239812f080e7Smrj uint64_t addrhi; 239912f080e7Smrj uint64_t addrlo; 240012f080e7Smrj uint64_t maxseg; 240112f080e7Smrj page_t **pplist; 240212f080e7Smrj uint64_t paddr; 240312f080e7Smrj uint32_t psize; 240412f080e7Smrj uint32_t size; 240512f080e7Smrj caddr_t vaddr; 240612f080e7Smrj uint_t pcnt; 240712f080e7Smrj page_t *pp; 240812f080e7Smrj uint_t cnt; 240912f080e7Smrj 241012f080e7Smrj 241112f080e7Smrj /* shortcuts */ 241212f080e7Smrj pplist = dmar_object->dmao_obj.virt_obj.v_priv; 241312f080e7Smrj vaddr = dmar_object->dmao_obj.virt_obj.v_addr; 241412f080e7Smrj maxseg = sglinfo->si_max_cookie_size; 241512f080e7Smrj buftype = dmar_object->dmao_type; 241612f080e7Smrj addrhi = sglinfo->si_max_addr; 241712f080e7Smrj addrlo = sglinfo->si_min_addr; 241812f080e7Smrj size = dmar_object->dmao_size; 241912f080e7Smrj 242012f080e7Smrj pcnt = 0; 242112f080e7Smrj cnt = 0; 242212f080e7Smrj 242312f080e7Smrj /* 242412f080e7Smrj * if we were passed down a linked list of pages, i.e. pointer to 242512f080e7Smrj * page_t, use this to get our physical address and buf offset. 242612f080e7Smrj */ 242712f080e7Smrj if (buftype == DMA_OTYP_PAGES) { 242812f080e7Smrj pp = dmar_object->dmao_obj.pp_obj.pp_pp; 242912f080e7Smrj ASSERT(!PP_ISFREE(pp) && PAGE_LOCKED(pp)); 243012f080e7Smrj offset = dmar_object->dmao_obj.pp_obj.pp_offset & 243112f080e7Smrj MMU_PAGEOFFSET; 2432843e1988Sjohnlev paddr = pfn_to_pa(pp->p_pagenum) + offset; 243312f080e7Smrj psize = MIN(size, (MMU_PAGESIZE - offset)); 243412f080e7Smrj pp = pp->p_next; 243512f080e7Smrj sglinfo->si_asp = NULL; 243612f080e7Smrj 243712f080e7Smrj /* 243812f080e7Smrj * We weren't passed down a linked list of pages, but if we were passed 243912f080e7Smrj * down an array of pages, use this to get our physical address and buf 244012f080e7Smrj * offset. 244112f080e7Smrj */ 244212f080e7Smrj } else if (pplist != NULL) { 244312f080e7Smrj ASSERT((buftype == DMA_OTYP_VADDR) || 244412f080e7Smrj (buftype == DMA_OTYP_BUFVADDR)); 244512f080e7Smrj 244612f080e7Smrj offset = (uintptr_t)vaddr & MMU_PAGEOFFSET; 244712f080e7Smrj sglinfo->si_asp = dmar_object->dmao_obj.virt_obj.v_as; 244812f080e7Smrj if (sglinfo->si_asp == NULL) { 244912f080e7Smrj sglinfo->si_asp = &kas; 245012f080e7Smrj } 245112f080e7Smrj 245212f080e7Smrj ASSERT(!PP_ISFREE(pplist[pcnt])); 2453843e1988Sjohnlev paddr = pfn_to_pa(pplist[pcnt]->p_pagenum); 245412f080e7Smrj paddr += offset; 245512f080e7Smrj psize = MIN(size, (MMU_PAGESIZE - offset)); 245612f080e7Smrj pcnt++; 245712f080e7Smrj 245812f080e7Smrj /* 245912f080e7Smrj * All we have is a virtual address, we'll need to call into the VM 246012f080e7Smrj * to get the physical address. 246112f080e7Smrj */ 246212f080e7Smrj } else { 246312f080e7Smrj ASSERT((buftype == DMA_OTYP_VADDR) || 246412f080e7Smrj (buftype == DMA_OTYP_BUFVADDR)); 246512f080e7Smrj 246612f080e7Smrj offset = (uintptr_t)vaddr & MMU_PAGEOFFSET; 246712f080e7Smrj sglinfo->si_asp = dmar_object->dmao_obj.virt_obj.v_as; 246812f080e7Smrj if (sglinfo->si_asp == NULL) { 246912f080e7Smrj sglinfo->si_asp = &kas; 247012f080e7Smrj } 247112f080e7Smrj 2472843e1988Sjohnlev paddr = pfn_to_pa(hat_getpfnum(sglinfo->si_asp->a_hat, vaddr)); 247312f080e7Smrj paddr += offset; 247412f080e7Smrj psize = MIN(size, (MMU_PAGESIZE - offset)); 247512f080e7Smrj vaddr += psize; 247612f080e7Smrj } 247712f080e7Smrj 2478843e1988Sjohnlev #ifdef __xpv 2479843e1988Sjohnlev /* 2480843e1988Sjohnlev * If we're dom0, we're using a real device so we need to load 2481843e1988Sjohnlev * the cookies with MFNs instead of PFNs. 2482843e1988Sjohnlev */ 2483843e1988Sjohnlev raddr = ROOTNEX_PADDR_TO_RBASE(xen_info, paddr); 2484843e1988Sjohnlev #else 2485843e1988Sjohnlev raddr = paddr; 2486843e1988Sjohnlev #endif 2487843e1988Sjohnlev 248812f080e7Smrj /* 248912f080e7Smrj * Setup the first cookie with the physical address of the page and the 249012f080e7Smrj * size of the page (which takes into account the initial offset into 249112f080e7Smrj * the page. 249212f080e7Smrj */ 2493843e1988Sjohnlev sgl[cnt].dmac_laddress = raddr; 249412f080e7Smrj sgl[cnt].dmac_size = psize; 249512f080e7Smrj sgl[cnt].dmac_type = 0; 249612f080e7Smrj 249712f080e7Smrj /* 249812f080e7Smrj * Save away the buffer offset into the page. We'll need this later in 249912f080e7Smrj * the copy buffer code to help figure out the page index within the 250012f080e7Smrj * buffer and the offset into the current page. 250112f080e7Smrj */ 250212f080e7Smrj sglinfo->si_buf_offset = offset; 250312f080e7Smrj 250412f080e7Smrj /* 250512f080e7Smrj * If the DMA engine can't reach the physical address, increase how 250612f080e7Smrj * much copy buffer we need. We always increase by pagesize so we don't 250712f080e7Smrj * have to worry about converting offsets. Set a flag in the cookies 250812f080e7Smrj * dmac_type to indicate that it uses the copy buffer. If this isn't the 250912f080e7Smrj * last cookie, go to the next cookie (since we separate each page which 251012f080e7Smrj * uses the copy buffer in case the copy buffer is not physically 251112f080e7Smrj * contiguous. 251212f080e7Smrj */ 2513843e1988Sjohnlev if ((raddr < addrlo) || ((raddr + psize) > addrhi)) { 251412f080e7Smrj sglinfo->si_copybuf_req += MMU_PAGESIZE; 251512f080e7Smrj sgl[cnt].dmac_type = ROOTNEX_USES_COPYBUF; 251612f080e7Smrj if ((cnt + 1) < sglinfo->si_max_pages) { 251712f080e7Smrj cnt++; 251812f080e7Smrj sgl[cnt].dmac_laddress = 0; 251912f080e7Smrj sgl[cnt].dmac_size = 0; 252012f080e7Smrj sgl[cnt].dmac_type = 0; 252112f080e7Smrj } 252212f080e7Smrj } 252312f080e7Smrj 252412f080e7Smrj /* 252512f080e7Smrj * save this page's physical address so we can figure out if the next 252612f080e7Smrj * page is physically contiguous. Keep decrementing size until we are 252712f080e7Smrj * done with the buffer. 252812f080e7Smrj */ 2529843e1988Sjohnlev last_page = raddr & MMU_PAGEMASK; 253012f080e7Smrj size -= psize; 253112f080e7Smrj 253212f080e7Smrj while (size > 0) { 253312f080e7Smrj /* Get the size for this page (i.e. partial or full page) */ 253412f080e7Smrj psize = MIN(size, MMU_PAGESIZE); 253512f080e7Smrj 253612f080e7Smrj if (buftype == DMA_OTYP_PAGES) { 253712f080e7Smrj /* get the paddr from the page_t */ 253812f080e7Smrj ASSERT(!PP_ISFREE(pp) && PAGE_LOCKED(pp)); 2539843e1988Sjohnlev paddr = pfn_to_pa(pp->p_pagenum); 254012f080e7Smrj pp = pp->p_next; 254112f080e7Smrj } else if (pplist != NULL) { 254212f080e7Smrj /* index into the array of page_t's to get the paddr */ 254312f080e7Smrj ASSERT(!PP_ISFREE(pplist[pcnt])); 2544843e1988Sjohnlev paddr = pfn_to_pa(pplist[pcnt]->p_pagenum); 254512f080e7Smrj pcnt++; 254612f080e7Smrj } else { 254712f080e7Smrj /* call into the VM to get the paddr */ 2548843e1988Sjohnlev paddr = pfn_to_pa(hat_getpfnum(sglinfo->si_asp->a_hat, 254912f080e7Smrj vaddr)); 255012f080e7Smrj vaddr += psize; 255112f080e7Smrj } 255212f080e7Smrj 2553843e1988Sjohnlev #ifdef __xpv 2554843e1988Sjohnlev /* 2555843e1988Sjohnlev * If we're dom0, we're using a real device so we need to load 2556843e1988Sjohnlev * the cookies with MFNs instead of PFNs. 2557843e1988Sjohnlev */ 2558843e1988Sjohnlev raddr = ROOTNEX_PADDR_TO_RBASE(xen_info, paddr); 2559843e1988Sjohnlev #else 2560843e1988Sjohnlev raddr = paddr; 2561843e1988Sjohnlev #endif 2562843e1988Sjohnlev 256312f080e7Smrj /* check to see if this page needs the copy buffer */ 2564843e1988Sjohnlev if ((raddr < addrlo) || ((raddr + psize) > addrhi)) { 256512f080e7Smrj sglinfo->si_copybuf_req += MMU_PAGESIZE; 256612f080e7Smrj 256712f080e7Smrj /* 256812f080e7Smrj * if there is something in the current cookie, go to 256912f080e7Smrj * the next one. We only want one page in a cookie which 257012f080e7Smrj * uses the copybuf since the copybuf doesn't have to 257112f080e7Smrj * be physically contiguous. 257212f080e7Smrj */ 257312f080e7Smrj if (sgl[cnt].dmac_size != 0) { 257412f080e7Smrj cnt++; 257512f080e7Smrj } 2576843e1988Sjohnlev sgl[cnt].dmac_laddress = raddr; 257712f080e7Smrj sgl[cnt].dmac_size = psize; 257812f080e7Smrj #if defined(__amd64) 257912f080e7Smrj sgl[cnt].dmac_type = ROOTNEX_USES_COPYBUF; 258012f080e7Smrj #else 258112f080e7Smrj /* 258212f080e7Smrj * save the buf offset for 32-bit kernel. used in the 258312f080e7Smrj * obsoleted interfaces. 258412f080e7Smrj */ 258512f080e7Smrj sgl[cnt].dmac_type = ROOTNEX_USES_COPYBUF | 258612f080e7Smrj (dmar_object->dmao_size - size); 258712f080e7Smrj #endif 258812f080e7Smrj /* if this isn't the last cookie, go to the next one */ 258912f080e7Smrj if ((cnt + 1) < sglinfo->si_max_pages) { 259012f080e7Smrj cnt++; 259112f080e7Smrj sgl[cnt].dmac_laddress = 0; 259212f080e7Smrj sgl[cnt].dmac_size = 0; 259312f080e7Smrj sgl[cnt].dmac_type = 0; 259412f080e7Smrj } 259512f080e7Smrj 259612f080e7Smrj /* 259712f080e7Smrj * this page didn't need the copy buffer, if it's not physically 259812f080e7Smrj * contiguous, or it would put us over a segment boundary, or it 259912f080e7Smrj * puts us over the max cookie size, or the current sgl doesn't 260012f080e7Smrj * have anything in it. 260112f080e7Smrj */ 2602843e1988Sjohnlev } else if (((last_page + MMU_PAGESIZE) != raddr) || 2603843e1988Sjohnlev !(raddr & sglinfo->si_segmask) || 260412f080e7Smrj ((sgl[cnt].dmac_size + psize) > maxseg) || 260512f080e7Smrj (sgl[cnt].dmac_size == 0)) { 260612f080e7Smrj /* 260712f080e7Smrj * if we're not already in a new cookie, go to the next 260812f080e7Smrj * cookie. 260912f080e7Smrj */ 261012f080e7Smrj if (sgl[cnt].dmac_size != 0) { 261112f080e7Smrj cnt++; 261212f080e7Smrj } 261312f080e7Smrj 261412f080e7Smrj /* save the cookie information */ 2615843e1988Sjohnlev sgl[cnt].dmac_laddress = raddr; 261612f080e7Smrj sgl[cnt].dmac_size = psize; 261712f080e7Smrj #if defined(__amd64) 261812f080e7Smrj sgl[cnt].dmac_type = 0; 261912f080e7Smrj #else 262012f080e7Smrj /* 262112f080e7Smrj * save the buf offset for 32-bit kernel. used in the 262212f080e7Smrj * obsoleted interfaces. 262312f080e7Smrj */ 262412f080e7Smrj sgl[cnt].dmac_type = dmar_object->dmao_size - size; 262512f080e7Smrj #endif 262612f080e7Smrj 262712f080e7Smrj /* 262812f080e7Smrj * this page didn't need the copy buffer, it is physically 262912f080e7Smrj * contiguous with the last page, and it's <= the max cookie 263012f080e7Smrj * size. 263112f080e7Smrj */ 263212f080e7Smrj } else { 263312f080e7Smrj sgl[cnt].dmac_size += psize; 263412f080e7Smrj 263512f080e7Smrj /* 263612f080e7Smrj * if this exactly == the maximum cookie size, and 263712f080e7Smrj * it isn't the last cookie, go to the next cookie. 263812f080e7Smrj */ 263912f080e7Smrj if (((sgl[cnt].dmac_size + psize) == maxseg) && 264012f080e7Smrj ((cnt + 1) < sglinfo->si_max_pages)) { 264112f080e7Smrj cnt++; 264212f080e7Smrj sgl[cnt].dmac_laddress = 0; 264312f080e7Smrj sgl[cnt].dmac_size = 0; 264412f080e7Smrj sgl[cnt].dmac_type = 0; 264512f080e7Smrj } 264612f080e7Smrj } 264712f080e7Smrj 264812f080e7Smrj /* 264912f080e7Smrj * save this page's physical address so we can figure out if the 265012f080e7Smrj * next page is physically contiguous. Keep decrementing size 265112f080e7Smrj * until we are done with the buffer. 265212f080e7Smrj */ 2653843e1988Sjohnlev last_page = raddr; 265412f080e7Smrj size -= psize; 265512f080e7Smrj } 265612f080e7Smrj 265712f080e7Smrj /* we're done, save away how many cookies the sgl has */ 265812f080e7Smrj if (sgl[cnt].dmac_size == 0) { 265912f080e7Smrj ASSERT(cnt < sglinfo->si_max_pages); 266012f080e7Smrj sglinfo->si_sgl_size = cnt; 266112f080e7Smrj } else { 266212f080e7Smrj sglinfo->si_sgl_size = cnt + 1; 266312f080e7Smrj } 266412f080e7Smrj } 266512f080e7Smrj 266612f080e7Smrj 266712f080e7Smrj /* 266812f080e7Smrj * rootnex_bind_slowpath() 266912f080e7Smrj * Call in the bind path if the calling driver can't use the sgl without 267012f080e7Smrj * modifying it. We either need to use the copy buffer and/or we will end up 267112f080e7Smrj * with a partial bind. 267212f080e7Smrj */ 267312f080e7Smrj static int 267412f080e7Smrj rootnex_bind_slowpath(ddi_dma_impl_t *hp, struct ddi_dma_req *dmareq, 267512f080e7Smrj rootnex_dma_t *dma, ddi_dma_attr_t *attr, int kmflag) 267612f080e7Smrj { 267712f080e7Smrj rootnex_sglinfo_t *sinfo; 267812f080e7Smrj rootnex_window_t *window; 267912f080e7Smrj ddi_dma_cookie_t *cookie; 268012f080e7Smrj size_t copybuf_used; 268112f080e7Smrj size_t dmac_size; 268212f080e7Smrj boolean_t partial; 268312f080e7Smrj off_t cur_offset; 268412f080e7Smrj page_t *cur_pp; 268512f080e7Smrj major_t mnum; 268612f080e7Smrj int e; 268712f080e7Smrj int i; 268812f080e7Smrj 268912f080e7Smrj 269012f080e7Smrj sinfo = &dma->dp_sglinfo; 269112f080e7Smrj copybuf_used = 0; 269212f080e7Smrj partial = B_FALSE; 269312f080e7Smrj 269412f080e7Smrj /* 269512f080e7Smrj * If we're using the copybuf, set the copybuf state in dma struct. 269612f080e7Smrj * Needs to be first since it sets the copy buffer size. 269712f080e7Smrj */ 269812f080e7Smrj if (sinfo->si_copybuf_req != 0) { 269912f080e7Smrj e = rootnex_setup_copybuf(hp, dmareq, dma, attr); 270012f080e7Smrj if (e != DDI_SUCCESS) { 270112f080e7Smrj return (e); 270212f080e7Smrj } 270312f080e7Smrj } else { 270412f080e7Smrj dma->dp_copybuf_size = 0; 270512f080e7Smrj } 270612f080e7Smrj 270712f080e7Smrj /* 270812f080e7Smrj * Figure out if we need to do a partial mapping. If so, figure out 270912f080e7Smrj * if we need to trim the buffers when we munge the sgl. 271012f080e7Smrj */ 271112f080e7Smrj if ((dma->dp_copybuf_size < sinfo->si_copybuf_req) || 271212f080e7Smrj (dma->dp_dma.dmao_size > dma->dp_maxxfer) || 271312f080e7Smrj (attr->dma_attr_sgllen < sinfo->si_sgl_size)) { 271412f080e7Smrj dma->dp_partial_required = B_TRUE; 271512f080e7Smrj if (attr->dma_attr_granular != 1) { 271612f080e7Smrj dma->dp_trim_required = B_TRUE; 271712f080e7Smrj } 271812f080e7Smrj } else { 271912f080e7Smrj dma->dp_partial_required = B_FALSE; 272012f080e7Smrj dma->dp_trim_required = B_FALSE; 272112f080e7Smrj } 272212f080e7Smrj 272312f080e7Smrj /* If we need to do a partial bind, make sure the driver supports it */ 272412f080e7Smrj if (dma->dp_partial_required && 272512f080e7Smrj !(dmareq->dmar_flags & DDI_DMA_PARTIAL)) { 272612f080e7Smrj 272712f080e7Smrj mnum = ddi_driver_major(dma->dp_dip); 272812f080e7Smrj /* 272912f080e7Smrj * patchable which allows us to print one warning per major 273012f080e7Smrj * number. 273112f080e7Smrj */ 273212f080e7Smrj if ((rootnex_bind_warn) && 273312f080e7Smrj ((rootnex_warn_list[mnum] & ROOTNEX_BIND_WARNING) == 0)) { 273412f080e7Smrj rootnex_warn_list[mnum] |= ROOTNEX_BIND_WARNING; 273512f080e7Smrj cmn_err(CE_WARN, "!%s: coding error detected, the " 273612f080e7Smrj "driver is using ddi_dma_attr(9S) incorrectly. " 273712f080e7Smrj "There is a small risk of data corruption in " 273812f080e7Smrj "particular with large I/Os. The driver should be " 273912f080e7Smrj "replaced with a corrected version for proper " 274012f080e7Smrj "system operation. To disable this warning, add " 274112f080e7Smrj "'set rootnex:rootnex_bind_warn=0' to " 274212f080e7Smrj "/etc/system(4).", ddi_driver_name(dma->dp_dip)); 274312f080e7Smrj } 274412f080e7Smrj return (DDI_DMA_TOOBIG); 274512f080e7Smrj } 274612f080e7Smrj 274712f080e7Smrj /* 274812f080e7Smrj * we might need multiple windows, setup state to handle them. In this 274912f080e7Smrj * code path, we will have at least one window. 275012f080e7Smrj */ 275112f080e7Smrj e = rootnex_setup_windows(hp, dma, attr, kmflag); 275212f080e7Smrj if (e != DDI_SUCCESS) { 275312f080e7Smrj rootnex_teardown_copybuf(dma); 275412f080e7Smrj return (e); 275512f080e7Smrj } 275612f080e7Smrj 275712f080e7Smrj window = &dma->dp_window[0]; 275812f080e7Smrj cookie = &dma->dp_cookies[0]; 275912f080e7Smrj cur_offset = 0; 276012f080e7Smrj rootnex_init_win(hp, dma, window, cookie, cur_offset); 276112f080e7Smrj if (dmareq->dmar_object.dmao_type == DMA_OTYP_PAGES) { 276212f080e7Smrj cur_pp = dmareq->dmar_object.dmao_obj.pp_obj.pp_pp; 276312f080e7Smrj } 276412f080e7Smrj 276512f080e7Smrj /* loop though all the cookies we got back from get_sgl() */ 276612f080e7Smrj for (i = 0; i < sinfo->si_sgl_size; i++) { 276712f080e7Smrj /* 276812f080e7Smrj * If we're using the copy buffer, check this cookie and setup 276912f080e7Smrj * its associated copy buffer state. If this cookie uses the 277012f080e7Smrj * copy buffer, make sure we sync this window during dma_sync. 277112f080e7Smrj */ 277212f080e7Smrj if (dma->dp_copybuf_size > 0) { 277312f080e7Smrj rootnex_setup_cookie(&dmareq->dmar_object, dma, cookie, 277412f080e7Smrj cur_offset, ©buf_used, &cur_pp); 277512f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 277612f080e7Smrj window->wd_dosync = B_TRUE; 277712f080e7Smrj } 277812f080e7Smrj } 277912f080e7Smrj 278012f080e7Smrj /* 278112f080e7Smrj * save away the cookie size, since it could be modified in 278212f080e7Smrj * the windowing code. 278312f080e7Smrj */ 278412f080e7Smrj dmac_size = cookie->dmac_size; 278512f080e7Smrj 278612f080e7Smrj /* if we went over max copybuf size */ 278712f080e7Smrj if (dma->dp_copybuf_size && 278812f080e7Smrj (copybuf_used > dma->dp_copybuf_size)) { 278912f080e7Smrj partial = B_TRUE; 279012f080e7Smrj e = rootnex_copybuf_window_boundary(hp, dma, &window, 279112f080e7Smrj cookie, cur_offset, ©buf_used); 279212f080e7Smrj if (e != DDI_SUCCESS) { 279312f080e7Smrj rootnex_teardown_copybuf(dma); 279412f080e7Smrj rootnex_teardown_windows(dma); 279512f080e7Smrj return (e); 279612f080e7Smrj } 279712f080e7Smrj 279812f080e7Smrj /* 279912f080e7Smrj * if the coookie uses the copy buffer, make sure the 280012f080e7Smrj * new window we just moved to is set to sync. 280112f080e7Smrj */ 280212f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 280312f080e7Smrj window->wd_dosync = B_TRUE; 280412f080e7Smrj } 280512f080e7Smrj DTRACE_PROBE1(rootnex__copybuf__window, dev_info_t *, 280612f080e7Smrj dma->dp_dip); 280712f080e7Smrj 280812f080e7Smrj /* if the cookie cnt == max sgllen, move to the next window */ 280912f080e7Smrj } else if (window->wd_cookie_cnt >= attr->dma_attr_sgllen) { 281012f080e7Smrj partial = B_TRUE; 281112f080e7Smrj ASSERT(window->wd_cookie_cnt == attr->dma_attr_sgllen); 281212f080e7Smrj e = rootnex_sgllen_window_boundary(hp, dma, &window, 281312f080e7Smrj cookie, attr, cur_offset); 281412f080e7Smrj if (e != DDI_SUCCESS) { 281512f080e7Smrj rootnex_teardown_copybuf(dma); 281612f080e7Smrj rootnex_teardown_windows(dma); 281712f080e7Smrj return (e); 281812f080e7Smrj } 281912f080e7Smrj 282012f080e7Smrj /* 282112f080e7Smrj * if the coookie uses the copy buffer, make sure the 282212f080e7Smrj * new window we just moved to is set to sync. 282312f080e7Smrj */ 282412f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 282512f080e7Smrj window->wd_dosync = B_TRUE; 282612f080e7Smrj } 282712f080e7Smrj DTRACE_PROBE1(rootnex__sgllen__window, dev_info_t *, 282812f080e7Smrj dma->dp_dip); 282912f080e7Smrj 283012f080e7Smrj /* else if we will be over maxxfer */ 283112f080e7Smrj } else if ((window->wd_size + dmac_size) > 283212f080e7Smrj dma->dp_maxxfer) { 283312f080e7Smrj partial = B_TRUE; 283412f080e7Smrj e = rootnex_maxxfer_window_boundary(hp, dma, &window, 283512f080e7Smrj cookie); 283612f080e7Smrj if (e != DDI_SUCCESS) { 283712f080e7Smrj rootnex_teardown_copybuf(dma); 283812f080e7Smrj rootnex_teardown_windows(dma); 283912f080e7Smrj return (e); 284012f080e7Smrj } 284112f080e7Smrj 284212f080e7Smrj /* 284312f080e7Smrj * if the coookie uses the copy buffer, make sure the 284412f080e7Smrj * new window we just moved to is set to sync. 284512f080e7Smrj */ 284612f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 284712f080e7Smrj window->wd_dosync = B_TRUE; 284812f080e7Smrj } 284912f080e7Smrj DTRACE_PROBE1(rootnex__maxxfer__window, dev_info_t *, 285012f080e7Smrj dma->dp_dip); 285112f080e7Smrj 285212f080e7Smrj /* else this cookie fits in the current window */ 285312f080e7Smrj } else { 285412f080e7Smrj window->wd_cookie_cnt++; 285512f080e7Smrj window->wd_size += dmac_size; 285612f080e7Smrj } 285712f080e7Smrj 285812f080e7Smrj /* track our offset into the buffer, go to the next cookie */ 285912f080e7Smrj ASSERT(dmac_size <= dma->dp_dma.dmao_size); 286012f080e7Smrj ASSERT(cookie->dmac_size <= dmac_size); 286112f080e7Smrj cur_offset += dmac_size; 286212f080e7Smrj cookie++; 286312f080e7Smrj } 286412f080e7Smrj 286512f080e7Smrj /* if we ended up with a zero sized window in the end, clean it up */ 286612f080e7Smrj if (window->wd_size == 0) { 286712f080e7Smrj hp->dmai_nwin--; 286812f080e7Smrj window--; 286912f080e7Smrj } 287012f080e7Smrj 287112f080e7Smrj ASSERT(window->wd_trim.tr_trim_last == B_FALSE); 287212f080e7Smrj 287312f080e7Smrj if (!partial) { 287412f080e7Smrj return (DDI_DMA_MAPPED); 287512f080e7Smrj } 287612f080e7Smrj 287712f080e7Smrj ASSERT(dma->dp_partial_required); 287812f080e7Smrj return (DDI_DMA_PARTIAL_MAP); 287912f080e7Smrj } 288012f080e7Smrj 288112f080e7Smrj 288212f080e7Smrj /* 288312f080e7Smrj * rootnex_setup_copybuf() 288412f080e7Smrj * Called in bind slowpath. Figures out if we're going to use the copy 288512f080e7Smrj * buffer, and if we do, sets up the basic state to handle it. 288612f080e7Smrj */ 288712f080e7Smrj static int 288812f080e7Smrj rootnex_setup_copybuf(ddi_dma_impl_t *hp, struct ddi_dma_req *dmareq, 288912f080e7Smrj rootnex_dma_t *dma, ddi_dma_attr_t *attr) 289012f080e7Smrj { 289112f080e7Smrj rootnex_sglinfo_t *sinfo; 289212f080e7Smrj ddi_dma_attr_t lattr; 289312f080e7Smrj size_t max_copybuf; 289412f080e7Smrj int cansleep; 289512f080e7Smrj int e; 289612f080e7Smrj #if !defined(__amd64) 289712f080e7Smrj int vmflag; 289812f080e7Smrj #endif 289912f080e7Smrj 290012f080e7Smrj 290112f080e7Smrj sinfo = &dma->dp_sglinfo; 290212f080e7Smrj 290336945f79Smrj /* read this first so it's consistent through the routine */ 290436945f79Smrj max_copybuf = i_ddi_copybuf_size() & MMU_PAGEMASK; 290512f080e7Smrj 290612f080e7Smrj /* We need to call into the rootnex on ddi_dma_sync() */ 290712f080e7Smrj hp->dmai_rflags &= ~DMP_NOSYNC; 290812f080e7Smrj 290912f080e7Smrj /* make sure the copybuf size <= the max size */ 291012f080e7Smrj dma->dp_copybuf_size = MIN(sinfo->si_copybuf_req, max_copybuf); 291112f080e7Smrj ASSERT((dma->dp_copybuf_size & MMU_PAGEOFFSET) == 0); 291212f080e7Smrj 291312f080e7Smrj #if !defined(__amd64) 291412f080e7Smrj /* 291512f080e7Smrj * if we don't have kva space to copy to/from, allocate the KVA space 291612f080e7Smrj * now. We only do this for the 32-bit kernel. We use seg kpm space for 291712f080e7Smrj * the 64-bit kernel. 291812f080e7Smrj */ 291912f080e7Smrj if ((dmareq->dmar_object.dmao_type == DMA_OTYP_PAGES) || 292012f080e7Smrj (dmareq->dmar_object.dmao_obj.virt_obj.v_as != NULL)) { 292112f080e7Smrj 292212f080e7Smrj /* convert the sleep flags */ 292312f080e7Smrj if (dmareq->dmar_fp == DDI_DMA_SLEEP) { 292412f080e7Smrj vmflag = VM_SLEEP; 292512f080e7Smrj } else { 292612f080e7Smrj vmflag = VM_NOSLEEP; 292712f080e7Smrj } 292812f080e7Smrj 292912f080e7Smrj /* allocate Kernel VA space that we can bcopy to/from */ 293012f080e7Smrj dma->dp_kva = vmem_alloc(heap_arena, dma->dp_copybuf_size, 293112f080e7Smrj vmflag); 293212f080e7Smrj if (dma->dp_kva == NULL) { 293312f080e7Smrj return (DDI_DMA_NORESOURCES); 293412f080e7Smrj } 293512f080e7Smrj } 293612f080e7Smrj #endif 293712f080e7Smrj 293812f080e7Smrj /* convert the sleep flags */ 293912f080e7Smrj if (dmareq->dmar_fp == DDI_DMA_SLEEP) { 294012f080e7Smrj cansleep = 1; 294112f080e7Smrj } else { 294212f080e7Smrj cansleep = 0; 294312f080e7Smrj } 294412f080e7Smrj 294512f080e7Smrj /* 2946d21b39ddSmrj * Allocate the actual copy buffer. This needs to fit within the DMA 2947d21b39ddSmrj * engine limits, so we can't use kmem_alloc... We don't need 2948d21b39ddSmrj * contiguous memory (sgllen) since we will be forcing windows on 2949d21b39ddSmrj * sgllen anyway. 295012f080e7Smrj */ 295112f080e7Smrj lattr = *attr; 295212f080e7Smrj lattr.dma_attr_align = MMU_PAGESIZE; 2953d21b39ddSmrj /* 2954d21b39ddSmrj * this should be < 0 to indicate no limit, but due to a bug in 2955d21b39ddSmrj * the rootnex, we'll set it to the maximum positive int. 2956d21b39ddSmrj */ 2957d21b39ddSmrj lattr.dma_attr_sgllen = 0x7fffffff; 295812f080e7Smrj e = i_ddi_mem_alloc(dma->dp_dip, &lattr, dma->dp_copybuf_size, cansleep, 295912f080e7Smrj 0, NULL, &dma->dp_cbaddr, &dma->dp_cbsize, NULL); 296012f080e7Smrj if (e != DDI_SUCCESS) { 296112f080e7Smrj #if !defined(__amd64) 296212f080e7Smrj if (dma->dp_kva != NULL) { 296312f080e7Smrj vmem_free(heap_arena, dma->dp_kva, 296412f080e7Smrj dma->dp_copybuf_size); 296512f080e7Smrj } 296612f080e7Smrj #endif 296712f080e7Smrj return (DDI_DMA_NORESOURCES); 296812f080e7Smrj } 296912f080e7Smrj 297012f080e7Smrj DTRACE_PROBE2(rootnex__alloc__copybuf, dev_info_t *, dma->dp_dip, 297112f080e7Smrj size_t, dma->dp_copybuf_size); 297212f080e7Smrj 297312f080e7Smrj return (DDI_SUCCESS); 297412f080e7Smrj } 297512f080e7Smrj 297612f080e7Smrj 297712f080e7Smrj /* 297812f080e7Smrj * rootnex_setup_windows() 297912f080e7Smrj * Called in bind slowpath to setup the window state. We always have windows 298012f080e7Smrj * in the slowpath. Even if the window count = 1. 298112f080e7Smrj */ 298212f080e7Smrj static int 298312f080e7Smrj rootnex_setup_windows(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 298412f080e7Smrj ddi_dma_attr_t *attr, int kmflag) 298512f080e7Smrj { 298612f080e7Smrj rootnex_window_t *windowp; 298712f080e7Smrj rootnex_sglinfo_t *sinfo; 298812f080e7Smrj size_t copy_state_size; 298912f080e7Smrj size_t win_state_size; 299012f080e7Smrj size_t state_available; 299112f080e7Smrj size_t space_needed; 299212f080e7Smrj uint_t copybuf_win; 299312f080e7Smrj uint_t maxxfer_win; 299412f080e7Smrj size_t space_used; 299512f080e7Smrj uint_t sglwin; 299612f080e7Smrj 299712f080e7Smrj 299812f080e7Smrj sinfo = &dma->dp_sglinfo; 299912f080e7Smrj 300012f080e7Smrj dma->dp_current_win = 0; 300112f080e7Smrj hp->dmai_nwin = 0; 300212f080e7Smrj 300312f080e7Smrj /* If we don't need to do a partial, we only have one window */ 300412f080e7Smrj if (!dma->dp_partial_required) { 300512f080e7Smrj dma->dp_max_win = 1; 300612f080e7Smrj 300712f080e7Smrj /* 300812f080e7Smrj * we need multiple windows, need to figure out the worse case number 300912f080e7Smrj * of windows. 301012f080e7Smrj */ 30117c478bd9Sstevel@tonic-gate } else { 30127c478bd9Sstevel@tonic-gate /* 301312f080e7Smrj * if we need windows because we need more copy buffer that 301412f080e7Smrj * we allow, the worse case number of windows we could need 301512f080e7Smrj * here would be (copybuf space required / copybuf space that 301612f080e7Smrj * we have) plus one for remainder, and plus 2 to handle the 301712f080e7Smrj * extra pages on the trim for the first and last pages of the 301812f080e7Smrj * buffer (a page is the minimum window size so under the right 301912f080e7Smrj * attr settings, you could have a window for each page). 302012f080e7Smrj * The last page will only be hit here if the size is not a 302112f080e7Smrj * multiple of the granularity (which theoretically shouldn't 302212f080e7Smrj * be the case but never has been enforced, so we could have 302312f080e7Smrj * broken things without it). 30247c478bd9Sstevel@tonic-gate */ 302512f080e7Smrj if (sinfo->si_copybuf_req > dma->dp_copybuf_size) { 302612f080e7Smrj ASSERT(dma->dp_copybuf_size > 0); 302712f080e7Smrj copybuf_win = (sinfo->si_copybuf_req / 302812f080e7Smrj dma->dp_copybuf_size) + 1 + 2; 30297c478bd9Sstevel@tonic-gate } else { 303012f080e7Smrj copybuf_win = 0; 30317c478bd9Sstevel@tonic-gate } 303212f080e7Smrj 303312f080e7Smrj /* 303412f080e7Smrj * if we need windows because we have more cookies than the H/W 303512f080e7Smrj * can handle, the number of windows we would need here would 303612f080e7Smrj * be (cookie count / cookies count H/W supports) plus one for 303712f080e7Smrj * remainder, and plus 2 to handle the extra pages on the trim 303812f080e7Smrj * (see above comment about trim) 303912f080e7Smrj */ 304012f080e7Smrj if (attr->dma_attr_sgllen < sinfo->si_sgl_size) { 304112f080e7Smrj sglwin = ((sinfo->si_sgl_size / attr->dma_attr_sgllen) 304212f080e7Smrj + 1) + 2; 30437c478bd9Sstevel@tonic-gate } else { 304412f080e7Smrj sglwin = 0; 30457c478bd9Sstevel@tonic-gate } 304612f080e7Smrj 304712f080e7Smrj /* 304812f080e7Smrj * if we need windows because we're binding more memory than the 304912f080e7Smrj * H/W can transfer at once, the number of windows we would need 305012f080e7Smrj * here would be (xfer count / max xfer H/W supports) plus one 305112f080e7Smrj * for remainder, and plus 2 to handle the extra pages on the 305212f080e7Smrj * trim (see above comment about trim) 305312f080e7Smrj */ 305412f080e7Smrj if (dma->dp_dma.dmao_size > dma->dp_maxxfer) { 305512f080e7Smrj maxxfer_win = (dma->dp_dma.dmao_size / 305612f080e7Smrj dma->dp_maxxfer) + 1 + 2; 305712f080e7Smrj } else { 305812f080e7Smrj maxxfer_win = 0; 30597c478bd9Sstevel@tonic-gate } 306012f080e7Smrj dma->dp_max_win = copybuf_win + sglwin + maxxfer_win; 306112f080e7Smrj ASSERT(dma->dp_max_win > 0); 306212f080e7Smrj } 306312f080e7Smrj win_state_size = dma->dp_max_win * sizeof (rootnex_window_t); 306412f080e7Smrj 306512f080e7Smrj /* 306612f080e7Smrj * Get space for window and potential copy buffer state. Before we 306712f080e7Smrj * go and allocate memory, see if we can get away with using what's 306812f080e7Smrj * left in the pre-allocted state or the dynamically allocated sgl. 306912f080e7Smrj */ 307012f080e7Smrj space_used = (uintptr_t)(sinfo->si_sgl_size * 307112f080e7Smrj sizeof (ddi_dma_cookie_t)); 307212f080e7Smrj 307312f080e7Smrj /* if we dynamically allocated space for the cookies */ 307412f080e7Smrj if (dma->dp_need_to_free_cookie) { 307512f080e7Smrj /* if we have more space in the pre-allocted buffer, use it */ 307612f080e7Smrj ASSERT(space_used <= dma->dp_cookie_size); 307712f080e7Smrj if ((dma->dp_cookie_size - space_used) <= 307812f080e7Smrj rootnex_state->r_prealloc_size) { 307912f080e7Smrj state_available = rootnex_state->r_prealloc_size; 308012f080e7Smrj windowp = (rootnex_window_t *)dma->dp_prealloc_buffer; 308112f080e7Smrj 308212f080e7Smrj /* 308312f080e7Smrj * else, we have more free space in the dynamically allocated 308412f080e7Smrj * buffer, i.e. the buffer wasn't worse case fragmented so we 308512f080e7Smrj * didn't need a lot of cookies. 308612f080e7Smrj */ 308712f080e7Smrj } else { 308812f080e7Smrj state_available = dma->dp_cookie_size - space_used; 308912f080e7Smrj windowp = (rootnex_window_t *) 309012f080e7Smrj &dma->dp_cookies[sinfo->si_sgl_size]; 309112f080e7Smrj } 309212f080e7Smrj 309312f080e7Smrj /* we used the pre-alloced buffer */ 309412f080e7Smrj } else { 309512f080e7Smrj ASSERT(space_used <= rootnex_state->r_prealloc_size); 309612f080e7Smrj state_available = rootnex_state->r_prealloc_size - space_used; 309712f080e7Smrj windowp = (rootnex_window_t *) 309812f080e7Smrj &dma->dp_cookies[sinfo->si_sgl_size]; 309912f080e7Smrj } 310012f080e7Smrj 310112f080e7Smrj /* 310212f080e7Smrj * figure out how much state we need to track the copy buffer. Add an 310312f080e7Smrj * addition 8 bytes for pointer alignemnt later. 310412f080e7Smrj */ 310512f080e7Smrj if (dma->dp_copybuf_size > 0) { 310612f080e7Smrj copy_state_size = sinfo->si_max_pages * 310712f080e7Smrj sizeof (rootnex_pgmap_t); 310812f080e7Smrj } else { 310912f080e7Smrj copy_state_size = 0; 311012f080e7Smrj } 311112f080e7Smrj /* add an additional 8 bytes for pointer alignment */ 311212f080e7Smrj space_needed = win_state_size + copy_state_size + 0x8; 311312f080e7Smrj 311412f080e7Smrj /* if we have enough space already, use it */ 311512f080e7Smrj if (state_available >= space_needed) { 311612f080e7Smrj dma->dp_window = windowp; 311712f080e7Smrj dma->dp_need_to_free_window = B_FALSE; 311812f080e7Smrj 311912f080e7Smrj /* not enough space, need to allocate more. */ 312012f080e7Smrj } else { 312112f080e7Smrj dma->dp_window = kmem_alloc(space_needed, kmflag); 312212f080e7Smrj if (dma->dp_window == NULL) { 312312f080e7Smrj return (DDI_DMA_NORESOURCES); 312412f080e7Smrj } 312512f080e7Smrj dma->dp_need_to_free_window = B_TRUE; 312612f080e7Smrj dma->dp_window_size = space_needed; 312712f080e7Smrj DTRACE_PROBE2(rootnex__bind__sp__alloc, dev_info_t *, 312812f080e7Smrj dma->dp_dip, size_t, space_needed); 312912f080e7Smrj } 313012f080e7Smrj 313112f080e7Smrj /* 313212f080e7Smrj * we allocate copy buffer state and window state at the same time. 313312f080e7Smrj * setup our copy buffer state pointers. Make sure it's aligned. 313412f080e7Smrj */ 313512f080e7Smrj if (dma->dp_copybuf_size > 0) { 313612f080e7Smrj dma->dp_pgmap = (rootnex_pgmap_t *)(((uintptr_t) 313712f080e7Smrj &dma->dp_window[dma->dp_max_win] + 0x7) & ~0x7); 313812f080e7Smrj 313912f080e7Smrj #if !defined(__amd64) 314012f080e7Smrj /* 314112f080e7Smrj * make sure all pm_mapped, pm_vaddr, and pm_pp are set to 314212f080e7Smrj * false/NULL. Should be quicker to bzero vs loop and set. 314312f080e7Smrj */ 314412f080e7Smrj bzero(dma->dp_pgmap, copy_state_size); 314512f080e7Smrj #endif 314612f080e7Smrj } else { 314712f080e7Smrj dma->dp_pgmap = NULL; 314812f080e7Smrj } 314912f080e7Smrj 315012f080e7Smrj return (DDI_SUCCESS); 315112f080e7Smrj } 315212f080e7Smrj 315312f080e7Smrj 315412f080e7Smrj /* 315512f080e7Smrj * rootnex_teardown_copybuf() 315612f080e7Smrj * cleans up after rootnex_setup_copybuf() 315712f080e7Smrj */ 315812f080e7Smrj static void 315912f080e7Smrj rootnex_teardown_copybuf(rootnex_dma_t *dma) 316012f080e7Smrj { 316112f080e7Smrj #if !defined(__amd64) 316212f080e7Smrj int i; 316312f080e7Smrj 316412f080e7Smrj /* 316512f080e7Smrj * if we allocated kernel heap VMEM space, go through all the pages and 316612f080e7Smrj * map out any of the ones that we're mapped into the kernel heap VMEM 316712f080e7Smrj * arena. Then free the VMEM space. 316812f080e7Smrj */ 316912f080e7Smrj if (dma->dp_kva != NULL) { 317012f080e7Smrj for (i = 0; i < dma->dp_sglinfo.si_max_pages; i++) { 317112f080e7Smrj if (dma->dp_pgmap[i].pm_mapped) { 317212f080e7Smrj hat_unload(kas.a_hat, dma->dp_pgmap[i].pm_kaddr, 317312f080e7Smrj MMU_PAGESIZE, HAT_UNLOAD); 317412f080e7Smrj dma->dp_pgmap[i].pm_mapped = B_FALSE; 317512f080e7Smrj } 317612f080e7Smrj } 317712f080e7Smrj 317812f080e7Smrj vmem_free(heap_arena, dma->dp_kva, dma->dp_copybuf_size); 317912f080e7Smrj } 318012f080e7Smrj 318112f080e7Smrj #endif 318212f080e7Smrj 318312f080e7Smrj /* if we allocated a copy buffer, free it */ 318412f080e7Smrj if (dma->dp_cbaddr != NULL) { 31857b93957cSeota i_ddi_mem_free(dma->dp_cbaddr, NULL); 318612f080e7Smrj } 318712f080e7Smrj } 318812f080e7Smrj 318912f080e7Smrj 319012f080e7Smrj /* 319112f080e7Smrj * rootnex_teardown_windows() 319212f080e7Smrj * cleans up after rootnex_setup_windows() 319312f080e7Smrj */ 319412f080e7Smrj static void 319512f080e7Smrj rootnex_teardown_windows(rootnex_dma_t *dma) 319612f080e7Smrj { 319712f080e7Smrj /* 319812f080e7Smrj * if we had to allocate window state on the last bind (because we 319912f080e7Smrj * didn't have enough pre-allocated space in the handle), free it. 320012f080e7Smrj */ 320112f080e7Smrj if (dma->dp_need_to_free_window) { 320212f080e7Smrj kmem_free(dma->dp_window, dma->dp_window_size); 320312f080e7Smrj } 320412f080e7Smrj } 320512f080e7Smrj 320612f080e7Smrj 320712f080e7Smrj /* 320812f080e7Smrj * rootnex_init_win() 320912f080e7Smrj * Called in bind slow path during creation of a new window. Initializes 321012f080e7Smrj * window state to default values. 321112f080e7Smrj */ 321212f080e7Smrj /*ARGSUSED*/ 321312f080e7Smrj static void 321412f080e7Smrj rootnex_init_win(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 321512f080e7Smrj rootnex_window_t *window, ddi_dma_cookie_t *cookie, off_t cur_offset) 321612f080e7Smrj { 321712f080e7Smrj hp->dmai_nwin++; 321812f080e7Smrj window->wd_dosync = B_FALSE; 321912f080e7Smrj window->wd_offset = cur_offset; 322012f080e7Smrj window->wd_size = 0; 322112f080e7Smrj window->wd_first_cookie = cookie; 322212f080e7Smrj window->wd_cookie_cnt = 0; 322312f080e7Smrj window->wd_trim.tr_trim_first = B_FALSE; 322412f080e7Smrj window->wd_trim.tr_trim_last = B_FALSE; 322512f080e7Smrj window->wd_trim.tr_first_copybuf_win = B_FALSE; 322612f080e7Smrj window->wd_trim.tr_last_copybuf_win = B_FALSE; 322712f080e7Smrj #if !defined(__amd64) 322812f080e7Smrj window->wd_remap_copybuf = dma->dp_cb_remaping; 322912f080e7Smrj #endif 323012f080e7Smrj } 323112f080e7Smrj 323212f080e7Smrj 323312f080e7Smrj /* 323412f080e7Smrj * rootnex_setup_cookie() 323512f080e7Smrj * Called in the bind slow path when the sgl uses the copy buffer. If any of 323612f080e7Smrj * the sgl uses the copy buffer, we need to go through each cookie, figure 323712f080e7Smrj * out if it uses the copy buffer, and if it does, save away everything we'll 323812f080e7Smrj * need during sync. 323912f080e7Smrj */ 324012f080e7Smrj static void 324112f080e7Smrj rootnex_setup_cookie(ddi_dma_obj_t *dmar_object, rootnex_dma_t *dma, 324212f080e7Smrj ddi_dma_cookie_t *cookie, off_t cur_offset, size_t *copybuf_used, 324312f080e7Smrj page_t **cur_pp) 324412f080e7Smrj { 324512f080e7Smrj boolean_t copybuf_sz_power_2; 324612f080e7Smrj rootnex_sglinfo_t *sinfo; 3247843e1988Sjohnlev paddr_t paddr; 324812f080e7Smrj uint_t pidx; 324912f080e7Smrj uint_t pcnt; 325012f080e7Smrj off_t poff; 325112f080e7Smrj #if defined(__amd64) 325212f080e7Smrj pfn_t pfn; 325312f080e7Smrj #else 325412f080e7Smrj page_t **pplist; 325512f080e7Smrj #endif 325612f080e7Smrj 325712f080e7Smrj sinfo = &dma->dp_sglinfo; 325812f080e7Smrj 325912f080e7Smrj /* 326012f080e7Smrj * Calculate the page index relative to the start of the buffer. The 326112f080e7Smrj * index to the current page for our buffer is the offset into the 326212f080e7Smrj * first page of the buffer plus our current offset into the buffer 326312f080e7Smrj * itself, shifted of course... 326412f080e7Smrj */ 326512f080e7Smrj pidx = (sinfo->si_buf_offset + cur_offset) >> MMU_PAGESHIFT; 326612f080e7Smrj ASSERT(pidx < sinfo->si_max_pages); 326712f080e7Smrj 326812f080e7Smrj /* if this cookie uses the copy buffer */ 326912f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 327012f080e7Smrj /* 327112f080e7Smrj * NOTE: we know that since this cookie uses the copy buffer, it 327212f080e7Smrj * is <= MMU_PAGESIZE. 327312f080e7Smrj */ 327412f080e7Smrj 327512f080e7Smrj /* 327612f080e7Smrj * get the offset into the page. For the 64-bit kernel, get the 327712f080e7Smrj * pfn which we'll use with seg kpm. 327812f080e7Smrj */ 3279843e1988Sjohnlev poff = cookie->dmac_laddress & MMU_PAGEOFFSET; 328012f080e7Smrj #if defined(__amd64) 3281843e1988Sjohnlev /* mfn_to_pfn() is a NOP on i86pc */ 3282843e1988Sjohnlev pfn = mfn_to_pfn(cookie->dmac_laddress >> MMU_PAGESHIFT); 3283843e1988Sjohnlev #endif /* __amd64 */ 328412f080e7Smrj 328512f080e7Smrj /* figure out if the copybuf size is a power of 2 */ 328612f080e7Smrj if (dma->dp_copybuf_size & (dma->dp_copybuf_size - 1)) { 328712f080e7Smrj copybuf_sz_power_2 = B_FALSE; 328812f080e7Smrj } else { 328912f080e7Smrj copybuf_sz_power_2 = B_TRUE; 329012f080e7Smrj } 329112f080e7Smrj 329212f080e7Smrj /* This page uses the copy buffer */ 329312f080e7Smrj dma->dp_pgmap[pidx].pm_uses_copybuf = B_TRUE; 329412f080e7Smrj 329512f080e7Smrj /* 329612f080e7Smrj * save the copy buffer KVA that we'll use with this page. 329712f080e7Smrj * if we still fit within the copybuf, it's a simple add. 329812f080e7Smrj * otherwise, we need to wrap over using & or % accordingly. 329912f080e7Smrj */ 330012f080e7Smrj if ((*copybuf_used + MMU_PAGESIZE) <= dma->dp_copybuf_size) { 330112f080e7Smrj dma->dp_pgmap[pidx].pm_cbaddr = dma->dp_cbaddr + 330212f080e7Smrj *copybuf_used; 330312f080e7Smrj } else { 330412f080e7Smrj if (copybuf_sz_power_2) { 330512f080e7Smrj dma->dp_pgmap[pidx].pm_cbaddr = (caddr_t)( 330612f080e7Smrj (uintptr_t)dma->dp_cbaddr + 330712f080e7Smrj (*copybuf_used & 330812f080e7Smrj (dma->dp_copybuf_size - 1))); 330912f080e7Smrj } else { 331012f080e7Smrj dma->dp_pgmap[pidx].pm_cbaddr = (caddr_t)( 331112f080e7Smrj (uintptr_t)dma->dp_cbaddr + 331212f080e7Smrj (*copybuf_used % dma->dp_copybuf_size)); 331312f080e7Smrj } 331412f080e7Smrj } 331512f080e7Smrj 331612f080e7Smrj /* 331712f080e7Smrj * over write the cookie physical address with the address of 331812f080e7Smrj * the physical address of the copy buffer page that we will 331912f080e7Smrj * use. 332012f080e7Smrj */ 3321843e1988Sjohnlev paddr = pfn_to_pa(hat_getpfnum(kas.a_hat, 332212f080e7Smrj dma->dp_pgmap[pidx].pm_cbaddr)) + poff; 332312f080e7Smrj 3324843e1988Sjohnlev #ifdef __xpv 3325843e1988Sjohnlev /* 3326843e1988Sjohnlev * If we're dom0, we're using a real device so we need to load 3327843e1988Sjohnlev * the cookies with MAs instead of PAs. 3328843e1988Sjohnlev */ 3329843e1988Sjohnlev cookie->dmac_laddress = ROOTNEX_PADDR_TO_RBASE(xen_info, paddr); 3330843e1988Sjohnlev #else 3331843e1988Sjohnlev cookie->dmac_laddress = paddr; 3332843e1988Sjohnlev #endif 3333843e1988Sjohnlev 333412f080e7Smrj /* if we have a kernel VA, it's easy, just save that address */ 333512f080e7Smrj if ((dmar_object->dmao_type != DMA_OTYP_PAGES) && 333612f080e7Smrj (sinfo->si_asp == &kas)) { 333712f080e7Smrj /* 333812f080e7Smrj * save away the page aligned virtual address of the 333912f080e7Smrj * driver buffer. Offsets are handled in the sync code. 334012f080e7Smrj */ 334112f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr = (caddr_t)(((uintptr_t) 334212f080e7Smrj dmar_object->dmao_obj.virt_obj.v_addr + cur_offset) 334312f080e7Smrj & MMU_PAGEMASK); 334412f080e7Smrj #if !defined(__amd64) 334512f080e7Smrj /* 334612f080e7Smrj * we didn't need to, and will never need to map this 334712f080e7Smrj * page. 334812f080e7Smrj */ 334912f080e7Smrj dma->dp_pgmap[pidx].pm_mapped = B_FALSE; 335012f080e7Smrj #endif 335112f080e7Smrj 335212f080e7Smrj /* we don't have a kernel VA. We need one for the bcopy. */ 335312f080e7Smrj } else { 335412f080e7Smrj #if defined(__amd64) 335512f080e7Smrj /* 335612f080e7Smrj * for the 64-bit kernel, it's easy. We use seg kpm to 335712f080e7Smrj * get a Kernel VA for the corresponding pfn. 335812f080e7Smrj */ 335912f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr = hat_kpm_pfn2va(pfn); 336012f080e7Smrj #else 336112f080e7Smrj /* 336212f080e7Smrj * for the 32-bit kernel, this is a pain. First we'll 336312f080e7Smrj * save away the page_t or user VA for this page. This 336412f080e7Smrj * is needed in rootnex_dma_win() when we switch to a 336512f080e7Smrj * new window which requires us to re-map the copy 336612f080e7Smrj * buffer. 336712f080e7Smrj */ 336812f080e7Smrj pplist = dmar_object->dmao_obj.virt_obj.v_priv; 336912f080e7Smrj if (dmar_object->dmao_type == DMA_OTYP_PAGES) { 337012f080e7Smrj dma->dp_pgmap[pidx].pm_pp = *cur_pp; 337112f080e7Smrj dma->dp_pgmap[pidx].pm_vaddr = NULL; 337212f080e7Smrj } else if (pplist != NULL) { 337312f080e7Smrj dma->dp_pgmap[pidx].pm_pp = pplist[pidx]; 337412f080e7Smrj dma->dp_pgmap[pidx].pm_vaddr = NULL; 337512f080e7Smrj } else { 337612f080e7Smrj dma->dp_pgmap[pidx].pm_pp = NULL; 337712f080e7Smrj dma->dp_pgmap[pidx].pm_vaddr = (caddr_t) 337812f080e7Smrj (((uintptr_t) 337912f080e7Smrj dmar_object->dmao_obj.virt_obj.v_addr + 338012f080e7Smrj cur_offset) & MMU_PAGEMASK); 338112f080e7Smrj } 338212f080e7Smrj 338312f080e7Smrj /* 338412f080e7Smrj * save away the page aligned virtual address which was 338512f080e7Smrj * allocated from the kernel heap arena (taking into 338612f080e7Smrj * account if we need more copy buffer than we alloced 338712f080e7Smrj * and use multiple windows to handle this, i.e. &,%). 338812f080e7Smrj * NOTE: there isn't and physical memory backing up this 338912f080e7Smrj * virtual address space currently. 339012f080e7Smrj */ 339112f080e7Smrj if ((*copybuf_used + MMU_PAGESIZE) <= 339212f080e7Smrj dma->dp_copybuf_size) { 339312f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr = (caddr_t) 339412f080e7Smrj (((uintptr_t)dma->dp_kva + *copybuf_used) & 339512f080e7Smrj MMU_PAGEMASK); 339612f080e7Smrj } else { 339712f080e7Smrj if (copybuf_sz_power_2) { 339812f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr = (caddr_t) 339912f080e7Smrj (((uintptr_t)dma->dp_kva + 340012f080e7Smrj (*copybuf_used & 340112f080e7Smrj (dma->dp_copybuf_size - 1))) & 340212f080e7Smrj MMU_PAGEMASK); 340312f080e7Smrj } else { 340412f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr = (caddr_t) 340512f080e7Smrj (((uintptr_t)dma->dp_kva + 340612f080e7Smrj (*copybuf_used % 340712f080e7Smrj dma->dp_copybuf_size)) & 340812f080e7Smrj MMU_PAGEMASK); 340912f080e7Smrj } 341012f080e7Smrj } 341112f080e7Smrj 341212f080e7Smrj /* 341312f080e7Smrj * if we haven't used up the available copy buffer yet, 341412f080e7Smrj * map the kva to the physical page. 341512f080e7Smrj */ 341612f080e7Smrj if (!dma->dp_cb_remaping && ((*copybuf_used + 341712f080e7Smrj MMU_PAGESIZE) <= dma->dp_copybuf_size)) { 341812f080e7Smrj dma->dp_pgmap[pidx].pm_mapped = B_TRUE; 341912f080e7Smrj if (dma->dp_pgmap[pidx].pm_pp != NULL) { 342012f080e7Smrj i86_pp_map(dma->dp_pgmap[pidx].pm_pp, 342112f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr); 342212f080e7Smrj } else { 342312f080e7Smrj i86_va_map(dma->dp_pgmap[pidx].pm_vaddr, 342412f080e7Smrj sinfo->si_asp, 342512f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr); 342612f080e7Smrj } 342712f080e7Smrj 342812f080e7Smrj /* 342912f080e7Smrj * we've used up the available copy buffer, this page 343012f080e7Smrj * will have to be mapped during rootnex_dma_win() when 343112f080e7Smrj * we switch to a new window which requires a re-map 343212f080e7Smrj * the copy buffer. (32-bit kernel only) 343312f080e7Smrj */ 343412f080e7Smrj } else { 343512f080e7Smrj dma->dp_pgmap[pidx].pm_mapped = B_FALSE; 343612f080e7Smrj } 343712f080e7Smrj #endif 343812f080e7Smrj /* go to the next page_t */ 343912f080e7Smrj if (dmar_object->dmao_type == DMA_OTYP_PAGES) { 344012f080e7Smrj *cur_pp = (*cur_pp)->p_next; 344112f080e7Smrj } 344212f080e7Smrj } 344312f080e7Smrj 344412f080e7Smrj /* add to the copy buffer count */ 344512f080e7Smrj *copybuf_used += MMU_PAGESIZE; 344612f080e7Smrj 344712f080e7Smrj /* 344812f080e7Smrj * This cookie doesn't use the copy buffer. Walk through the pages this 344912f080e7Smrj * cookie occupies to reflect this. 345012f080e7Smrj */ 345112f080e7Smrj } else { 345212f080e7Smrj /* 345312f080e7Smrj * figure out how many pages the cookie occupies. We need to 345412f080e7Smrj * use the original page offset of the buffer and the cookies 345512f080e7Smrj * offset in the buffer to do this. 345612f080e7Smrj */ 345712f080e7Smrj poff = (sinfo->si_buf_offset + cur_offset) & MMU_PAGEOFFSET; 345812f080e7Smrj pcnt = mmu_btopr(cookie->dmac_size + poff); 345912f080e7Smrj 346012f080e7Smrj while (pcnt > 0) { 346112f080e7Smrj #if !defined(__amd64) 346212f080e7Smrj /* 346312f080e7Smrj * the 32-bit kernel doesn't have seg kpm, so we need 346412f080e7Smrj * to map in the driver buffer (if it didn't come down 346512f080e7Smrj * with a kernel VA) on the fly. Since this page doesn't 346612f080e7Smrj * use the copy buffer, it's not, or will it ever, have 346712f080e7Smrj * to be mapped in. 346812f080e7Smrj */ 346912f080e7Smrj dma->dp_pgmap[pidx].pm_mapped = B_FALSE; 347012f080e7Smrj #endif 347112f080e7Smrj dma->dp_pgmap[pidx].pm_uses_copybuf = B_FALSE; 347212f080e7Smrj 347312f080e7Smrj /* 347412f080e7Smrj * we need to update pidx and cur_pp or we'll loose 347512f080e7Smrj * track of where we are. 347612f080e7Smrj */ 347712f080e7Smrj if (dmar_object->dmao_type == DMA_OTYP_PAGES) { 347812f080e7Smrj *cur_pp = (*cur_pp)->p_next; 347912f080e7Smrj } 348012f080e7Smrj pidx++; 348112f080e7Smrj pcnt--; 348212f080e7Smrj } 348312f080e7Smrj } 348412f080e7Smrj } 348512f080e7Smrj 348612f080e7Smrj 348712f080e7Smrj /* 348812f080e7Smrj * rootnex_sgllen_window_boundary() 348912f080e7Smrj * Called in the bind slow path when the next cookie causes us to exceed (in 349012f080e7Smrj * this case == since we start at 0 and sgllen starts at 1) the maximum sgl 349112f080e7Smrj * length supported by the DMA H/W. 349212f080e7Smrj */ 349312f080e7Smrj static int 349412f080e7Smrj rootnex_sgllen_window_boundary(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 349512f080e7Smrj rootnex_window_t **windowp, ddi_dma_cookie_t *cookie, ddi_dma_attr_t *attr, 349612f080e7Smrj off_t cur_offset) 349712f080e7Smrj { 349812f080e7Smrj off_t new_offset; 349912f080e7Smrj size_t trim_sz; 350012f080e7Smrj off_t coffset; 350112f080e7Smrj 350212f080e7Smrj 350312f080e7Smrj /* 350412f080e7Smrj * if we know we'll never have to trim, it's pretty easy. Just move to 350512f080e7Smrj * the next window and init it. We're done. 350612f080e7Smrj */ 350712f080e7Smrj if (!dma->dp_trim_required) { 350812f080e7Smrj (*windowp)++; 350912f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, cur_offset); 351012f080e7Smrj (*windowp)->wd_cookie_cnt++; 351112f080e7Smrj (*windowp)->wd_size = cookie->dmac_size; 351212f080e7Smrj return (DDI_SUCCESS); 351312f080e7Smrj } 351412f080e7Smrj 351512f080e7Smrj /* figure out how much we need to trim from the window */ 351612f080e7Smrj ASSERT(attr->dma_attr_granular != 0); 351712f080e7Smrj if (dma->dp_granularity_power_2) { 351812f080e7Smrj trim_sz = (*windowp)->wd_size & (attr->dma_attr_granular - 1); 351912f080e7Smrj } else { 352012f080e7Smrj trim_sz = (*windowp)->wd_size % attr->dma_attr_granular; 352112f080e7Smrj } 352212f080e7Smrj 352312f080e7Smrj /* The window's a whole multiple of granularity. We're done */ 352412f080e7Smrj if (trim_sz == 0) { 352512f080e7Smrj (*windowp)++; 352612f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, cur_offset); 352712f080e7Smrj (*windowp)->wd_cookie_cnt++; 352812f080e7Smrj (*windowp)->wd_size = cookie->dmac_size; 352912f080e7Smrj return (DDI_SUCCESS); 353012f080e7Smrj } 353112f080e7Smrj 353212f080e7Smrj /* 353312f080e7Smrj * The window's not a whole multiple of granularity, since we know this 353412f080e7Smrj * is due to the sgllen, we need to go back to the last cookie and trim 353512f080e7Smrj * that one, add the left over part of the old cookie into the new 353612f080e7Smrj * window, and then add in the new cookie into the new window. 353712f080e7Smrj */ 353812f080e7Smrj 353912f080e7Smrj /* 354012f080e7Smrj * make sure the driver isn't making us do something bad... Trimming and 354112f080e7Smrj * sgllen == 1 don't go together. 354212f080e7Smrj */ 354312f080e7Smrj if (attr->dma_attr_sgllen == 1) { 354412f080e7Smrj return (DDI_DMA_NOMAPPING); 354512f080e7Smrj } 354612f080e7Smrj 354712f080e7Smrj /* 354812f080e7Smrj * first, setup the current window to account for the trim. Need to go 354912f080e7Smrj * back to the last cookie for this. 355012f080e7Smrj */ 355112f080e7Smrj cookie--; 355212f080e7Smrj (*windowp)->wd_trim.tr_trim_last = B_TRUE; 355312f080e7Smrj (*windowp)->wd_trim.tr_last_cookie = cookie; 3554843e1988Sjohnlev (*windowp)->wd_trim.tr_last_paddr = cookie->dmac_laddress; 355512f080e7Smrj ASSERT(cookie->dmac_size > trim_sz); 355612f080e7Smrj (*windowp)->wd_trim.tr_last_size = cookie->dmac_size - trim_sz; 355712f080e7Smrj (*windowp)->wd_size -= trim_sz; 355812f080e7Smrj 355912f080e7Smrj /* save the buffer offsets for the next window */ 356012f080e7Smrj coffset = cookie->dmac_size - trim_sz; 356112f080e7Smrj new_offset = (*windowp)->wd_offset + (*windowp)->wd_size; 356212f080e7Smrj 356312f080e7Smrj /* 356412f080e7Smrj * set this now in case this is the first window. all other cases are 356512f080e7Smrj * set in dma_win() 356612f080e7Smrj */ 356712f080e7Smrj cookie->dmac_size = (*windowp)->wd_trim.tr_last_size; 356812f080e7Smrj 356912f080e7Smrj /* 357012f080e7Smrj * initialize the next window using what's left over in the previous 357112f080e7Smrj * cookie. 357212f080e7Smrj */ 357312f080e7Smrj (*windowp)++; 357412f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, new_offset); 357512f080e7Smrj (*windowp)->wd_cookie_cnt++; 357612f080e7Smrj (*windowp)->wd_trim.tr_trim_first = B_TRUE; 3577843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = cookie->dmac_laddress + coffset; 357812f080e7Smrj (*windowp)->wd_trim.tr_first_size = trim_sz; 357912f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 358012f080e7Smrj (*windowp)->wd_dosync = B_TRUE; 358112f080e7Smrj } 358212f080e7Smrj 358312f080e7Smrj /* 358412f080e7Smrj * now go back to the current cookie and add it to the new window. set 358512f080e7Smrj * the new window size to the what was left over from the previous 358612f080e7Smrj * cookie and what's in the current cookie. 358712f080e7Smrj */ 358812f080e7Smrj cookie++; 358912f080e7Smrj (*windowp)->wd_cookie_cnt++; 359012f080e7Smrj (*windowp)->wd_size = trim_sz + cookie->dmac_size; 359112f080e7Smrj 359212f080e7Smrj /* 359312f080e7Smrj * trim plus the next cookie could put us over maxxfer (a cookie can be 359412f080e7Smrj * a max size of maxxfer). Handle that case. 359512f080e7Smrj */ 359612f080e7Smrj if ((*windowp)->wd_size > dma->dp_maxxfer) { 359712f080e7Smrj /* 359812f080e7Smrj * maxxfer is already a whole multiple of granularity, and this 359912f080e7Smrj * trim will be <= the previous trim (since a cookie can't be 360012f080e7Smrj * larger than maxxfer). Make things simple here. 360112f080e7Smrj */ 360212f080e7Smrj trim_sz = (*windowp)->wd_size - dma->dp_maxxfer; 360312f080e7Smrj (*windowp)->wd_trim.tr_trim_last = B_TRUE; 360412f080e7Smrj (*windowp)->wd_trim.tr_last_cookie = cookie; 3605843e1988Sjohnlev (*windowp)->wd_trim.tr_last_paddr = cookie->dmac_laddress; 360612f080e7Smrj (*windowp)->wd_trim.tr_last_size = cookie->dmac_size - trim_sz; 360712f080e7Smrj (*windowp)->wd_size -= trim_sz; 360812f080e7Smrj ASSERT((*windowp)->wd_size == dma->dp_maxxfer); 360912f080e7Smrj 361012f080e7Smrj /* save the buffer offsets for the next window */ 361112f080e7Smrj coffset = cookie->dmac_size - trim_sz; 361212f080e7Smrj new_offset = (*windowp)->wd_offset + (*windowp)->wd_size; 361312f080e7Smrj 361412f080e7Smrj /* setup the next window */ 361512f080e7Smrj (*windowp)++; 361612f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, new_offset); 361712f080e7Smrj (*windowp)->wd_cookie_cnt++; 361812f080e7Smrj (*windowp)->wd_trim.tr_trim_first = B_TRUE; 3619843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = cookie->dmac_laddress + 362012f080e7Smrj coffset; 362112f080e7Smrj (*windowp)->wd_trim.tr_first_size = trim_sz; 362212f080e7Smrj } 362312f080e7Smrj 362412f080e7Smrj return (DDI_SUCCESS); 362512f080e7Smrj } 362612f080e7Smrj 362712f080e7Smrj 362812f080e7Smrj /* 362912f080e7Smrj * rootnex_copybuf_window_boundary() 363012f080e7Smrj * Called in bind slowpath when we get to a window boundary because we used 363112f080e7Smrj * up all the copy buffer that we have. 363212f080e7Smrj */ 363312f080e7Smrj static int 363412f080e7Smrj rootnex_copybuf_window_boundary(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 363512f080e7Smrj rootnex_window_t **windowp, ddi_dma_cookie_t *cookie, off_t cur_offset, 363612f080e7Smrj size_t *copybuf_used) 363712f080e7Smrj { 363812f080e7Smrj rootnex_sglinfo_t *sinfo; 363912f080e7Smrj off_t new_offset; 364012f080e7Smrj size_t trim_sz; 3641843e1988Sjohnlev paddr_t paddr; 364212f080e7Smrj off_t coffset; 364312f080e7Smrj uint_t pidx; 364412f080e7Smrj off_t poff; 364512f080e7Smrj 364612f080e7Smrj 364712f080e7Smrj sinfo = &dma->dp_sglinfo; 364812f080e7Smrj 364912f080e7Smrj /* 365012f080e7Smrj * the copy buffer should be a whole multiple of page size. We know that 365112f080e7Smrj * this cookie is <= MMU_PAGESIZE. 365212f080e7Smrj */ 365312f080e7Smrj ASSERT(cookie->dmac_size <= MMU_PAGESIZE); 365412f080e7Smrj 365512f080e7Smrj /* 365612f080e7Smrj * from now on, all new windows in this bind need to be re-mapped during 365712f080e7Smrj * ddi_dma_getwin() (32-bit kernel only). i.e. we ran out out copybuf 365812f080e7Smrj * space... 365912f080e7Smrj */ 366012f080e7Smrj #if !defined(__amd64) 366112f080e7Smrj dma->dp_cb_remaping = B_TRUE; 366212f080e7Smrj #endif 366312f080e7Smrj 366412f080e7Smrj /* reset copybuf used */ 366512f080e7Smrj *copybuf_used = 0; 366612f080e7Smrj 366712f080e7Smrj /* 366812f080e7Smrj * if we don't have to trim (since granularity is set to 1), go to the 366912f080e7Smrj * next window and add the current cookie to it. We know the current 367012f080e7Smrj * cookie uses the copy buffer since we're in this code path. 367112f080e7Smrj */ 367212f080e7Smrj if (!dma->dp_trim_required) { 367312f080e7Smrj (*windowp)++; 367412f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, cur_offset); 367512f080e7Smrj 367612f080e7Smrj /* Add this cookie to the new window */ 367712f080e7Smrj (*windowp)->wd_cookie_cnt++; 367812f080e7Smrj (*windowp)->wd_size += cookie->dmac_size; 367912f080e7Smrj *copybuf_used += MMU_PAGESIZE; 368012f080e7Smrj return (DDI_SUCCESS); 368112f080e7Smrj } 368212f080e7Smrj 368312f080e7Smrj /* 368412f080e7Smrj * *** may need to trim, figure it out. 368512f080e7Smrj */ 368612f080e7Smrj 368712f080e7Smrj /* figure out how much we need to trim from the window */ 368812f080e7Smrj if (dma->dp_granularity_power_2) { 368912f080e7Smrj trim_sz = (*windowp)->wd_size & 369012f080e7Smrj (hp->dmai_attr.dma_attr_granular - 1); 369112f080e7Smrj } else { 369212f080e7Smrj trim_sz = (*windowp)->wd_size % hp->dmai_attr.dma_attr_granular; 369312f080e7Smrj } 369412f080e7Smrj 369512f080e7Smrj /* 369612f080e7Smrj * if the window's a whole multiple of granularity, go to the next 369712f080e7Smrj * window, init it, then add in the current cookie. We know the current 369812f080e7Smrj * cookie uses the copy buffer since we're in this code path. 369912f080e7Smrj */ 370012f080e7Smrj if (trim_sz == 0) { 370112f080e7Smrj (*windowp)++; 370212f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, cur_offset); 370312f080e7Smrj 370412f080e7Smrj /* Add this cookie to the new window */ 370512f080e7Smrj (*windowp)->wd_cookie_cnt++; 370612f080e7Smrj (*windowp)->wd_size += cookie->dmac_size; 370712f080e7Smrj *copybuf_used += MMU_PAGESIZE; 370812f080e7Smrj return (DDI_SUCCESS); 370912f080e7Smrj } 371012f080e7Smrj 371112f080e7Smrj /* 371212f080e7Smrj * *** We figured it out, we definitly need to trim 371312f080e7Smrj */ 371412f080e7Smrj 371512f080e7Smrj /* 371612f080e7Smrj * make sure the driver isn't making us do something bad... 371712f080e7Smrj * Trimming and sgllen == 1 don't go together. 371812f080e7Smrj */ 371912f080e7Smrj if (hp->dmai_attr.dma_attr_sgllen == 1) { 372012f080e7Smrj return (DDI_DMA_NOMAPPING); 372112f080e7Smrj } 372212f080e7Smrj 372312f080e7Smrj /* 372412f080e7Smrj * first, setup the current window to account for the trim. Need to go 372512f080e7Smrj * back to the last cookie for this. Some of the last cookie will be in 372612f080e7Smrj * the current window, and some of the last cookie will be in the new 372712f080e7Smrj * window. All of the current cookie will be in the new window. 372812f080e7Smrj */ 372912f080e7Smrj cookie--; 373012f080e7Smrj (*windowp)->wd_trim.tr_trim_last = B_TRUE; 373112f080e7Smrj (*windowp)->wd_trim.tr_last_cookie = cookie; 3732843e1988Sjohnlev (*windowp)->wd_trim.tr_last_paddr = cookie->dmac_laddress; 373312f080e7Smrj ASSERT(cookie->dmac_size > trim_sz); 373412f080e7Smrj (*windowp)->wd_trim.tr_last_size = cookie->dmac_size - trim_sz; 373512f080e7Smrj (*windowp)->wd_size -= trim_sz; 373612f080e7Smrj 373712f080e7Smrj /* 373812f080e7Smrj * we're trimming the last cookie (not the current cookie). So that 373912f080e7Smrj * last cookie may have or may not have been using the copy buffer ( 374012f080e7Smrj * we know the cookie passed in uses the copy buffer since we're in 374112f080e7Smrj * this code path). 374212f080e7Smrj * 374312f080e7Smrj * If the last cookie doesn't use the copy buffer, nothing special to 374412f080e7Smrj * do. However, if it does uses the copy buffer, it will be both the 374512f080e7Smrj * last page in the current window and the first page in the next 374612f080e7Smrj * window. Since we are reusing the copy buffer (and KVA space on the 374712f080e7Smrj * 32-bit kernel), this page will use the end of the copy buffer in the 374812f080e7Smrj * current window, and the start of the copy buffer in the next window. 374912f080e7Smrj * Track that info... The cookie physical address was already set to 375012f080e7Smrj * the copy buffer physical address in setup_cookie.. 375112f080e7Smrj */ 375212f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 375312f080e7Smrj pidx = (sinfo->si_buf_offset + (*windowp)->wd_offset + 375412f080e7Smrj (*windowp)->wd_size) >> MMU_PAGESHIFT; 375512f080e7Smrj (*windowp)->wd_trim.tr_last_copybuf_win = B_TRUE; 375612f080e7Smrj (*windowp)->wd_trim.tr_last_pidx = pidx; 375712f080e7Smrj (*windowp)->wd_trim.tr_last_cbaddr = 375812f080e7Smrj dma->dp_pgmap[pidx].pm_cbaddr; 375912f080e7Smrj #if !defined(__amd64) 376012f080e7Smrj (*windowp)->wd_trim.tr_last_kaddr = 376112f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr; 376212f080e7Smrj #endif 376312f080e7Smrj } 376412f080e7Smrj 376512f080e7Smrj /* save the buffer offsets for the next window */ 376612f080e7Smrj coffset = cookie->dmac_size - trim_sz; 376712f080e7Smrj new_offset = (*windowp)->wd_offset + (*windowp)->wd_size; 376812f080e7Smrj 376912f080e7Smrj /* 377012f080e7Smrj * set this now in case this is the first window. all other cases are 377112f080e7Smrj * set in dma_win() 377212f080e7Smrj */ 377312f080e7Smrj cookie->dmac_size = (*windowp)->wd_trim.tr_last_size; 377412f080e7Smrj 377512f080e7Smrj /* 377612f080e7Smrj * initialize the next window using what's left over in the previous 377712f080e7Smrj * cookie. 377812f080e7Smrj */ 377912f080e7Smrj (*windowp)++; 378012f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, new_offset); 378112f080e7Smrj (*windowp)->wd_cookie_cnt++; 378212f080e7Smrj (*windowp)->wd_trim.tr_trim_first = B_TRUE; 3783843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = cookie->dmac_laddress + coffset; 378412f080e7Smrj (*windowp)->wd_trim.tr_first_size = trim_sz; 378512f080e7Smrj 378612f080e7Smrj /* 378712f080e7Smrj * again, we're tracking if the last cookie uses the copy buffer. 378812f080e7Smrj * read the comment above for more info on why we need to track 378912f080e7Smrj * additional state. 379012f080e7Smrj * 379112f080e7Smrj * For the first cookie in the new window, we need reset the physical 379212f080e7Smrj * address to DMA into to the start of the copy buffer plus any 379312f080e7Smrj * initial page offset which may be present. 379412f080e7Smrj */ 379512f080e7Smrj if (cookie->dmac_type & ROOTNEX_USES_COPYBUF) { 379612f080e7Smrj (*windowp)->wd_dosync = B_TRUE; 379712f080e7Smrj (*windowp)->wd_trim.tr_first_copybuf_win = B_TRUE; 379812f080e7Smrj (*windowp)->wd_trim.tr_first_pidx = pidx; 379912f080e7Smrj (*windowp)->wd_trim.tr_first_cbaddr = dma->dp_cbaddr; 380012f080e7Smrj poff = (*windowp)->wd_trim.tr_first_paddr & MMU_PAGEOFFSET; 3801843e1988Sjohnlev 3802843e1988Sjohnlev paddr = pfn_to_pa(hat_getpfnum(kas.a_hat, dma->dp_cbaddr)) + 3803843e1988Sjohnlev poff; 3804843e1988Sjohnlev #ifdef __xpv 3805843e1988Sjohnlev /* 3806843e1988Sjohnlev * If we're dom0, we're using a real device so we need to load 3807843e1988Sjohnlev * the cookies with MAs instead of PAs. 3808843e1988Sjohnlev */ 3809843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = 3810843e1988Sjohnlev ROOTNEX_PADDR_TO_RBASE(xen_info, paddr); 3811843e1988Sjohnlev #else 3812843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = paddr; 3813843e1988Sjohnlev #endif 3814843e1988Sjohnlev 381512f080e7Smrj #if !defined(__amd64) 381612f080e7Smrj (*windowp)->wd_trim.tr_first_kaddr = dma->dp_kva; 381712f080e7Smrj #endif 381812f080e7Smrj /* account for the cookie copybuf usage in the new window */ 381912f080e7Smrj *copybuf_used += MMU_PAGESIZE; 382012f080e7Smrj 382112f080e7Smrj /* 382212f080e7Smrj * every piece of code has to have a hack, and here is this 382312f080e7Smrj * ones :-) 382412f080e7Smrj * 382512f080e7Smrj * There is a complex interaction between setup_cookie and the 382612f080e7Smrj * copybuf window boundary. The complexity had to be in either 382712f080e7Smrj * the maxxfer window, or the copybuf window, and I chose the 382812f080e7Smrj * copybuf code. 382912f080e7Smrj * 383012f080e7Smrj * So in this code path, we have taken the last cookie, 383112f080e7Smrj * virtually broken it in half due to the trim, and it happens 383212f080e7Smrj * to use the copybuf which further complicates life. At the 383312f080e7Smrj * same time, we have already setup the current cookie, which 383412f080e7Smrj * is now wrong. More background info: the current cookie uses 383512f080e7Smrj * the copybuf, so it is only a page long max. So we need to 383612f080e7Smrj * fix the current cookies copy buffer address, physical 383712f080e7Smrj * address, and kva for the 32-bit kernel. We due this by 383812f080e7Smrj * bumping them by page size (of course, we can't due this on 383912f080e7Smrj * the physical address since the copy buffer may not be 384012f080e7Smrj * physically contiguous). 384112f080e7Smrj */ 384212f080e7Smrj cookie++; 384312f080e7Smrj dma->dp_pgmap[pidx + 1].pm_cbaddr += MMU_PAGESIZE; 3844843e1988Sjohnlev poff = cookie->dmac_laddress & MMU_PAGEOFFSET; 3845843e1988Sjohnlev 3846843e1988Sjohnlev paddr = pfn_to_pa(hat_getpfnum(kas.a_hat, 384712f080e7Smrj dma->dp_pgmap[pidx + 1].pm_cbaddr)) + poff; 3848843e1988Sjohnlev #ifdef __xpv 3849843e1988Sjohnlev /* 3850843e1988Sjohnlev * If we're dom0, we're using a real device so we need to load 3851843e1988Sjohnlev * the cookies with MAs instead of PAs. 3852843e1988Sjohnlev */ 3853843e1988Sjohnlev cookie->dmac_laddress = ROOTNEX_PADDR_TO_RBASE(xen_info, paddr); 3854843e1988Sjohnlev #else 3855843e1988Sjohnlev cookie->dmac_laddress = paddr; 3856843e1988Sjohnlev #endif 3857843e1988Sjohnlev 385812f080e7Smrj #if !defined(__amd64) 385912f080e7Smrj ASSERT(dma->dp_pgmap[pidx + 1].pm_mapped == B_FALSE); 386012f080e7Smrj dma->dp_pgmap[pidx + 1].pm_kaddr += MMU_PAGESIZE; 386112f080e7Smrj #endif 386212f080e7Smrj } else { 386312f080e7Smrj /* go back to the current cookie */ 386412f080e7Smrj cookie++; 386512f080e7Smrj } 386612f080e7Smrj 386712f080e7Smrj /* 386812f080e7Smrj * add the current cookie to the new window. set the new window size to 386912f080e7Smrj * the what was left over from the previous cookie and what's in the 387012f080e7Smrj * current cookie. 387112f080e7Smrj */ 387212f080e7Smrj (*windowp)->wd_cookie_cnt++; 387312f080e7Smrj (*windowp)->wd_size = trim_sz + cookie->dmac_size; 387412f080e7Smrj ASSERT((*windowp)->wd_size < dma->dp_maxxfer); 387512f080e7Smrj 387612f080e7Smrj /* 387712f080e7Smrj * we know that the cookie passed in always uses the copy buffer. We 387812f080e7Smrj * wouldn't be here if it didn't. 387912f080e7Smrj */ 388012f080e7Smrj *copybuf_used += MMU_PAGESIZE; 388112f080e7Smrj 388212f080e7Smrj return (DDI_SUCCESS); 388312f080e7Smrj } 388412f080e7Smrj 388512f080e7Smrj 388612f080e7Smrj /* 388712f080e7Smrj * rootnex_maxxfer_window_boundary() 388812f080e7Smrj * Called in bind slowpath when we get to a window boundary because we will 388912f080e7Smrj * go over maxxfer. 389012f080e7Smrj */ 389112f080e7Smrj static int 389212f080e7Smrj rootnex_maxxfer_window_boundary(ddi_dma_impl_t *hp, rootnex_dma_t *dma, 389312f080e7Smrj rootnex_window_t **windowp, ddi_dma_cookie_t *cookie) 389412f080e7Smrj { 389512f080e7Smrj size_t dmac_size; 389612f080e7Smrj off_t new_offset; 389712f080e7Smrj size_t trim_sz; 389812f080e7Smrj off_t coffset; 389912f080e7Smrj 390012f080e7Smrj 390112f080e7Smrj /* 390212f080e7Smrj * calculate how much we have to trim off of the current cookie to equal 390312f080e7Smrj * maxxfer. We don't have to account for granularity here since our 390412f080e7Smrj * maxxfer already takes that into account. 390512f080e7Smrj */ 390612f080e7Smrj trim_sz = ((*windowp)->wd_size + cookie->dmac_size) - dma->dp_maxxfer; 390712f080e7Smrj ASSERT(trim_sz <= cookie->dmac_size); 390812f080e7Smrj ASSERT(trim_sz <= dma->dp_maxxfer); 390912f080e7Smrj 391012f080e7Smrj /* save cookie size since we need it later and we might change it */ 391112f080e7Smrj dmac_size = cookie->dmac_size; 391212f080e7Smrj 391312f080e7Smrj /* 391412f080e7Smrj * if we're not trimming the entire cookie, setup the current window to 391512f080e7Smrj * account for the trim. 391612f080e7Smrj */ 391712f080e7Smrj if (trim_sz < cookie->dmac_size) { 391812f080e7Smrj (*windowp)->wd_cookie_cnt++; 391912f080e7Smrj (*windowp)->wd_trim.tr_trim_last = B_TRUE; 392012f080e7Smrj (*windowp)->wd_trim.tr_last_cookie = cookie; 3921843e1988Sjohnlev (*windowp)->wd_trim.tr_last_paddr = cookie->dmac_laddress; 392212f080e7Smrj (*windowp)->wd_trim.tr_last_size = cookie->dmac_size - trim_sz; 392312f080e7Smrj (*windowp)->wd_size = dma->dp_maxxfer; 392412f080e7Smrj 392512f080e7Smrj /* 392612f080e7Smrj * set the adjusted cookie size now in case this is the first 392712f080e7Smrj * window. All other windows are taken care of in get win 392812f080e7Smrj */ 392912f080e7Smrj cookie->dmac_size = (*windowp)->wd_trim.tr_last_size; 393012f080e7Smrj } 393112f080e7Smrj 393212f080e7Smrj /* 393312f080e7Smrj * coffset is the current offset within the cookie, new_offset is the 393412f080e7Smrj * current offset with the entire buffer. 393512f080e7Smrj */ 393612f080e7Smrj coffset = dmac_size - trim_sz; 393712f080e7Smrj new_offset = (*windowp)->wd_offset + (*windowp)->wd_size; 393812f080e7Smrj 393912f080e7Smrj /* initialize the next window */ 394012f080e7Smrj (*windowp)++; 394112f080e7Smrj rootnex_init_win(hp, dma, *windowp, cookie, new_offset); 394212f080e7Smrj (*windowp)->wd_cookie_cnt++; 394312f080e7Smrj (*windowp)->wd_size = trim_sz; 394412f080e7Smrj if (trim_sz < dmac_size) { 394512f080e7Smrj (*windowp)->wd_trim.tr_trim_first = B_TRUE; 3946843e1988Sjohnlev (*windowp)->wd_trim.tr_first_paddr = cookie->dmac_laddress + 394712f080e7Smrj coffset; 394812f080e7Smrj (*windowp)->wd_trim.tr_first_size = trim_sz; 394912f080e7Smrj } 395012f080e7Smrj 395112f080e7Smrj return (DDI_SUCCESS); 395212f080e7Smrj } 395312f080e7Smrj 395412f080e7Smrj 395512f080e7Smrj /*ARGSUSED*/ 395612f080e7Smrj static int 395720906b23SVikram Hegde rootnex_coredma_sync(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 395812f080e7Smrj off_t off, size_t len, uint_t cache_flags) 395912f080e7Smrj { 396012f080e7Smrj rootnex_sglinfo_t *sinfo; 396112f080e7Smrj rootnex_pgmap_t *cbpage; 396212f080e7Smrj rootnex_window_t *win; 396312f080e7Smrj ddi_dma_impl_t *hp; 396412f080e7Smrj rootnex_dma_t *dma; 396512f080e7Smrj caddr_t fromaddr; 396612f080e7Smrj caddr_t toaddr; 396712f080e7Smrj uint_t psize; 396812f080e7Smrj off_t offset; 396912f080e7Smrj uint_t pidx; 397012f080e7Smrj size_t size; 397112f080e7Smrj off_t poff; 397212f080e7Smrj int e; 397312f080e7Smrj 397412f080e7Smrj 397512f080e7Smrj hp = (ddi_dma_impl_t *)handle; 397612f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 397712f080e7Smrj sinfo = &dma->dp_sglinfo; 397812f080e7Smrj 397912f080e7Smrj /* 398012f080e7Smrj * if we don't have any windows, we don't need to sync. A copybuf 398112f080e7Smrj * will cause us to have at least one window. 398212f080e7Smrj */ 398312f080e7Smrj if (dma->dp_window == NULL) { 398412f080e7Smrj return (DDI_SUCCESS); 398512f080e7Smrj } 398612f080e7Smrj 398712f080e7Smrj /* This window may not need to be sync'd */ 398812f080e7Smrj win = &dma->dp_window[dma->dp_current_win]; 398912f080e7Smrj if (!win->wd_dosync) { 399012f080e7Smrj return (DDI_SUCCESS); 399112f080e7Smrj } 399212f080e7Smrj 399312f080e7Smrj /* handle off and len special cases */ 399412f080e7Smrj if ((off == 0) || (rootnex_sync_ignore_params)) { 399512f080e7Smrj offset = win->wd_offset; 399612f080e7Smrj } else { 399712f080e7Smrj offset = off; 399812f080e7Smrj } 399912f080e7Smrj if ((len == 0) || (rootnex_sync_ignore_params)) { 400012f080e7Smrj size = win->wd_size; 400112f080e7Smrj } else { 400212f080e7Smrj size = len; 400312f080e7Smrj } 400412f080e7Smrj 400512f080e7Smrj /* check the sync args to make sure they make a little sense */ 400612f080e7Smrj if (rootnex_sync_check_parms) { 400712f080e7Smrj e = rootnex_valid_sync_parms(hp, win, offset, size, 400812f080e7Smrj cache_flags); 400912f080e7Smrj if (e != DDI_SUCCESS) { 401012f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_SYNC_FAIL]); 401112f080e7Smrj return (DDI_FAILURE); 401212f080e7Smrj } 401312f080e7Smrj } 401412f080e7Smrj 401512f080e7Smrj /* 401612f080e7Smrj * special case the first page to handle the offset into the page. The 401712f080e7Smrj * offset to the current page for our buffer is the offset into the 401812f080e7Smrj * first page of the buffer plus our current offset into the buffer 401912f080e7Smrj * itself, masked of course. 402012f080e7Smrj */ 402112f080e7Smrj poff = (sinfo->si_buf_offset + offset) & MMU_PAGEOFFSET; 402212f080e7Smrj psize = MIN((MMU_PAGESIZE - poff), size); 402312f080e7Smrj 402412f080e7Smrj /* go through all the pages that we want to sync */ 402512f080e7Smrj while (size > 0) { 402612f080e7Smrj /* 402712f080e7Smrj * Calculate the page index relative to the start of the buffer. 402812f080e7Smrj * The index to the current page for our buffer is the offset 402912f080e7Smrj * into the first page of the buffer plus our current offset 403012f080e7Smrj * into the buffer itself, shifted of course... 403112f080e7Smrj */ 403212f080e7Smrj pidx = (sinfo->si_buf_offset + offset) >> MMU_PAGESHIFT; 403312f080e7Smrj ASSERT(pidx < sinfo->si_max_pages); 403412f080e7Smrj 403512f080e7Smrj /* 403612f080e7Smrj * if this page uses the copy buffer, we need to sync it, 403712f080e7Smrj * otherwise, go on to the next page. 403812f080e7Smrj */ 403912f080e7Smrj cbpage = &dma->dp_pgmap[pidx]; 404012f080e7Smrj ASSERT((cbpage->pm_uses_copybuf == B_TRUE) || 404112f080e7Smrj (cbpage->pm_uses_copybuf == B_FALSE)); 404212f080e7Smrj if (cbpage->pm_uses_copybuf) { 404312f080e7Smrj /* cbaddr and kaddr should be page aligned */ 404412f080e7Smrj ASSERT(((uintptr_t)cbpage->pm_cbaddr & 404512f080e7Smrj MMU_PAGEOFFSET) == 0); 404612f080e7Smrj ASSERT(((uintptr_t)cbpage->pm_kaddr & 404712f080e7Smrj MMU_PAGEOFFSET) == 0); 404812f080e7Smrj 404912f080e7Smrj /* 405012f080e7Smrj * if we're copying for the device, we are going to 405112f080e7Smrj * copy from the drivers buffer and to the rootnex 405212f080e7Smrj * allocated copy buffer. 405312f080e7Smrj */ 405412f080e7Smrj if (cache_flags == DDI_DMA_SYNC_FORDEV) { 405512f080e7Smrj fromaddr = cbpage->pm_kaddr + poff; 405612f080e7Smrj toaddr = cbpage->pm_cbaddr + poff; 405712f080e7Smrj DTRACE_PROBE2(rootnex__sync__dev, 405812f080e7Smrj dev_info_t *, dma->dp_dip, size_t, psize); 405912f080e7Smrj 406012f080e7Smrj /* 406112f080e7Smrj * if we're copying for the cpu/kernel, we are going to 406212f080e7Smrj * copy from the rootnex allocated copy buffer to the 406312f080e7Smrj * drivers buffer. 406412f080e7Smrj */ 406512f080e7Smrj } else { 406612f080e7Smrj fromaddr = cbpage->pm_cbaddr + poff; 406712f080e7Smrj toaddr = cbpage->pm_kaddr + poff; 406812f080e7Smrj DTRACE_PROBE2(rootnex__sync__cpu, 406912f080e7Smrj dev_info_t *, dma->dp_dip, size_t, psize); 407012f080e7Smrj } 407112f080e7Smrj 407212f080e7Smrj bcopy(fromaddr, toaddr, psize); 407312f080e7Smrj } 407412f080e7Smrj 407512f080e7Smrj /* 407612f080e7Smrj * decrement size until we're done, update our offset into the 407712f080e7Smrj * buffer, and get the next page size. 407812f080e7Smrj */ 407912f080e7Smrj size -= psize; 408012f080e7Smrj offset += psize; 408112f080e7Smrj psize = MIN(MMU_PAGESIZE, size); 408212f080e7Smrj 408312f080e7Smrj /* page offset is zero for the rest of this loop */ 408412f080e7Smrj poff = 0; 408512f080e7Smrj } 408612f080e7Smrj 408712f080e7Smrj return (DDI_SUCCESS); 408812f080e7Smrj } 408912f080e7Smrj 409020906b23SVikram Hegde /* 409120906b23SVikram Hegde * rootnex_dma_sync() 409220906b23SVikram Hegde * called from ddi_dma_sync() if DMP_NOSYNC is not set in hp->dmai_rflags. 409320906b23SVikram Hegde * We set DMP_NOSYNC if we're not using the copy buffer. If DMP_NOSYNC 409420906b23SVikram Hegde * is set, ddi_dma_sync() returns immediately passing back success. 409520906b23SVikram Hegde */ 409620906b23SVikram Hegde /*ARGSUSED*/ 409720906b23SVikram Hegde static int 409820906b23SVikram Hegde rootnex_dma_sync(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 409920906b23SVikram Hegde off_t off, size_t len, uint_t cache_flags) 410020906b23SVikram Hegde { 410120906b23SVikram Hegde #if !defined(__xpv) 410220906b23SVikram Hegde if (IOMMU_USED(rdip)) { 410320906b23SVikram Hegde return (iommulib_nexdma_sync(dip, rdip, handle, off, len, 410420906b23SVikram Hegde cache_flags)); 410520906b23SVikram Hegde } 410620906b23SVikram Hegde #endif 410720906b23SVikram Hegde return (rootnex_coredma_sync(dip, rdip, handle, off, len, 410820906b23SVikram Hegde cache_flags)); 410920906b23SVikram Hegde } 411012f080e7Smrj 411112f080e7Smrj /* 411212f080e7Smrj * rootnex_valid_sync_parms() 411312f080e7Smrj * checks the parameters passed to sync to verify they are correct. 411412f080e7Smrj */ 411512f080e7Smrj static int 411612f080e7Smrj rootnex_valid_sync_parms(ddi_dma_impl_t *hp, rootnex_window_t *win, 411712f080e7Smrj off_t offset, size_t size, uint_t cache_flags) 411812f080e7Smrj { 411912f080e7Smrj off_t woffset; 412012f080e7Smrj 412112f080e7Smrj 412212f080e7Smrj /* 412312f080e7Smrj * the first part of the test to make sure the offset passed in is 412412f080e7Smrj * within the window. 412512f080e7Smrj */ 412612f080e7Smrj if (offset < win->wd_offset) { 412712f080e7Smrj return (DDI_FAILURE); 412812f080e7Smrj } 412912f080e7Smrj 413012f080e7Smrj /* 413112f080e7Smrj * second and last part of the test to make sure the offset and length 413212f080e7Smrj * passed in is within the window. 413312f080e7Smrj */ 413412f080e7Smrj woffset = offset - win->wd_offset; 413512f080e7Smrj if ((woffset + size) > win->wd_size) { 413612f080e7Smrj return (DDI_FAILURE); 413712f080e7Smrj } 413812f080e7Smrj 413912f080e7Smrj /* 414012f080e7Smrj * if we are sync'ing for the device, the DDI_DMA_WRITE flag should 414112f080e7Smrj * be set too. 414212f080e7Smrj */ 414312f080e7Smrj if ((cache_flags == DDI_DMA_SYNC_FORDEV) && 414412f080e7Smrj (hp->dmai_rflags & DDI_DMA_WRITE)) { 414512f080e7Smrj return (DDI_SUCCESS); 414612f080e7Smrj } 414712f080e7Smrj 414812f080e7Smrj /* 414912f080e7Smrj * at this point, either DDI_DMA_SYNC_FORCPU or DDI_DMA_SYNC_FORKERNEL 415012f080e7Smrj * should be set. Also DDI_DMA_READ should be set in the flags. 415112f080e7Smrj */ 415212f080e7Smrj if (((cache_flags == DDI_DMA_SYNC_FORCPU) || 415312f080e7Smrj (cache_flags == DDI_DMA_SYNC_FORKERNEL)) && 415412f080e7Smrj (hp->dmai_rflags & DDI_DMA_READ)) { 415512f080e7Smrj return (DDI_SUCCESS); 415612f080e7Smrj } 415712f080e7Smrj 415812f080e7Smrj return (DDI_FAILURE); 415912f080e7Smrj } 416012f080e7Smrj 416112f080e7Smrj 416212f080e7Smrj /*ARGSUSED*/ 416312f080e7Smrj static int 416420906b23SVikram Hegde rootnex_coredma_win(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 416512f080e7Smrj uint_t win, off_t *offp, size_t *lenp, ddi_dma_cookie_t *cookiep, 416612f080e7Smrj uint_t *ccountp) 416712f080e7Smrj { 416812f080e7Smrj rootnex_window_t *window; 416912f080e7Smrj rootnex_trim_t *trim; 417012f080e7Smrj ddi_dma_impl_t *hp; 417112f080e7Smrj rootnex_dma_t *dma; 417212f080e7Smrj #if !defined(__amd64) 417312f080e7Smrj rootnex_sglinfo_t *sinfo; 417412f080e7Smrj rootnex_pgmap_t *pmap; 417512f080e7Smrj uint_t pidx; 417612f080e7Smrj uint_t pcnt; 417712f080e7Smrj off_t poff; 417812f080e7Smrj int i; 417912f080e7Smrj #endif 418012f080e7Smrj 418112f080e7Smrj 418212f080e7Smrj hp = (ddi_dma_impl_t *)handle; 418312f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 418412f080e7Smrj #if !defined(__amd64) 418512f080e7Smrj sinfo = &dma->dp_sglinfo; 418612f080e7Smrj #endif 418712f080e7Smrj 418812f080e7Smrj /* If we try and get a window which doesn't exist, return failure */ 418912f080e7Smrj if (win >= hp->dmai_nwin) { 419012f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_GETWIN_FAIL]); 419112f080e7Smrj return (DDI_FAILURE); 419212f080e7Smrj } 419312f080e7Smrj 419412f080e7Smrj /* 419512f080e7Smrj * if we don't have any windows, and they're asking for the first 419612f080e7Smrj * window, setup the cookie pointer to the first cookie in the bind. 419712f080e7Smrj * setup our return values, then increment the cookie since we return 419812f080e7Smrj * the first cookie on the stack. 419912f080e7Smrj */ 420012f080e7Smrj if (dma->dp_window == NULL) { 420112f080e7Smrj if (win != 0) { 420212f080e7Smrj ROOTNEX_PROF_INC(&rootnex_cnt[ROOTNEX_CNT_GETWIN_FAIL]); 420312f080e7Smrj return (DDI_FAILURE); 420412f080e7Smrj } 420512f080e7Smrj hp->dmai_cookie = dma->dp_cookies; 420612f080e7Smrj *offp = 0; 420712f080e7Smrj *lenp = dma->dp_dma.dmao_size; 420812f080e7Smrj *ccountp = dma->dp_sglinfo.si_sgl_size; 420912f080e7Smrj *cookiep = hp->dmai_cookie[0]; 421012f080e7Smrj hp->dmai_cookie++; 421112f080e7Smrj return (DDI_SUCCESS); 421212f080e7Smrj } 421312f080e7Smrj 421412f080e7Smrj /* sync the old window before moving on to the new one */ 421512f080e7Smrj window = &dma->dp_window[dma->dp_current_win]; 421612f080e7Smrj if ((window->wd_dosync) && (hp->dmai_rflags & DDI_DMA_READ)) { 421712f080e7Smrj (void) rootnex_dma_sync(dip, rdip, handle, 0, 0, 421812f080e7Smrj DDI_DMA_SYNC_FORCPU); 421912f080e7Smrj } 422012f080e7Smrj 422112f080e7Smrj #if !defined(__amd64) 422212f080e7Smrj /* 422312f080e7Smrj * before we move to the next window, if we need to re-map, unmap all 422412f080e7Smrj * the pages in this window. 422512f080e7Smrj */ 422612f080e7Smrj if (dma->dp_cb_remaping) { 422712f080e7Smrj /* 422812f080e7Smrj * If we switch to this window again, we'll need to map in 422912f080e7Smrj * on the fly next time. 423012f080e7Smrj */ 423112f080e7Smrj window->wd_remap_copybuf = B_TRUE; 423212f080e7Smrj 423312f080e7Smrj /* 423412f080e7Smrj * calculate the page index into the buffer where this window 423512f080e7Smrj * starts, and the number of pages this window takes up. 423612f080e7Smrj */ 423712f080e7Smrj pidx = (sinfo->si_buf_offset + window->wd_offset) >> 423812f080e7Smrj MMU_PAGESHIFT; 423912f080e7Smrj poff = (sinfo->si_buf_offset + window->wd_offset) & 424012f080e7Smrj MMU_PAGEOFFSET; 424112f080e7Smrj pcnt = mmu_btopr(window->wd_size + poff); 424212f080e7Smrj ASSERT((pidx + pcnt) <= sinfo->si_max_pages); 424312f080e7Smrj 424412f080e7Smrj /* unmap pages which are currently mapped in this window */ 424512f080e7Smrj for (i = 0; i < pcnt; i++) { 424612f080e7Smrj if (dma->dp_pgmap[pidx].pm_mapped) { 424712f080e7Smrj hat_unload(kas.a_hat, 424812f080e7Smrj dma->dp_pgmap[pidx].pm_kaddr, MMU_PAGESIZE, 424912f080e7Smrj HAT_UNLOAD); 425012f080e7Smrj dma->dp_pgmap[pidx].pm_mapped = B_FALSE; 425112f080e7Smrj } 425212f080e7Smrj pidx++; 425312f080e7Smrj } 425412f080e7Smrj } 425512f080e7Smrj #endif 425612f080e7Smrj 425712f080e7Smrj /* 425812f080e7Smrj * Move to the new window. 425912f080e7Smrj * NOTE: current_win must be set for sync to work right 426012f080e7Smrj */ 426112f080e7Smrj dma->dp_current_win = win; 426212f080e7Smrj window = &dma->dp_window[win]; 426312f080e7Smrj 426412f080e7Smrj /* if needed, adjust the first and/or last cookies for trim */ 426512f080e7Smrj trim = &window->wd_trim; 426612f080e7Smrj if (trim->tr_trim_first) { 4267843e1988Sjohnlev window->wd_first_cookie->dmac_laddress = trim->tr_first_paddr; 426812f080e7Smrj window->wd_first_cookie->dmac_size = trim->tr_first_size; 426912f080e7Smrj #if !defined(__amd64) 427012f080e7Smrj window->wd_first_cookie->dmac_type = 427112f080e7Smrj (window->wd_first_cookie->dmac_type & 427212f080e7Smrj ROOTNEX_USES_COPYBUF) + window->wd_offset; 427312f080e7Smrj #endif 427412f080e7Smrj if (trim->tr_first_copybuf_win) { 427512f080e7Smrj dma->dp_pgmap[trim->tr_first_pidx].pm_cbaddr = 427612f080e7Smrj trim->tr_first_cbaddr; 427712f080e7Smrj #if !defined(__amd64) 427812f080e7Smrj dma->dp_pgmap[trim->tr_first_pidx].pm_kaddr = 427912f080e7Smrj trim->tr_first_kaddr; 428012f080e7Smrj #endif 428112f080e7Smrj } 428212f080e7Smrj } 428312f080e7Smrj if (trim->tr_trim_last) { 4284843e1988Sjohnlev trim->tr_last_cookie->dmac_laddress = trim->tr_last_paddr; 428512f080e7Smrj trim->tr_last_cookie->dmac_size = trim->tr_last_size; 428612f080e7Smrj if (trim->tr_last_copybuf_win) { 428712f080e7Smrj dma->dp_pgmap[trim->tr_last_pidx].pm_cbaddr = 428812f080e7Smrj trim->tr_last_cbaddr; 428912f080e7Smrj #if !defined(__amd64) 429012f080e7Smrj dma->dp_pgmap[trim->tr_last_pidx].pm_kaddr = 429112f080e7Smrj trim->tr_last_kaddr; 429212f080e7Smrj #endif 429312f080e7Smrj } 429412f080e7Smrj } 429512f080e7Smrj 429612f080e7Smrj /* 429712f080e7Smrj * setup the cookie pointer to the first cookie in the window. setup 429812f080e7Smrj * our return values, then increment the cookie since we return the 429912f080e7Smrj * first cookie on the stack. 430012f080e7Smrj */ 430112f080e7Smrj hp->dmai_cookie = window->wd_first_cookie; 430212f080e7Smrj *offp = window->wd_offset; 430312f080e7Smrj *lenp = window->wd_size; 430412f080e7Smrj *ccountp = window->wd_cookie_cnt; 430512f080e7Smrj *cookiep = hp->dmai_cookie[0]; 430612f080e7Smrj hp->dmai_cookie++; 430712f080e7Smrj 430812f080e7Smrj #if !defined(__amd64) 430912f080e7Smrj /* re-map copybuf if required for this window */ 431012f080e7Smrj if (dma->dp_cb_remaping) { 431112f080e7Smrj /* 431212f080e7Smrj * calculate the page index into the buffer where this 431312f080e7Smrj * window starts. 431412f080e7Smrj */ 431512f080e7Smrj pidx = (sinfo->si_buf_offset + window->wd_offset) >> 431612f080e7Smrj MMU_PAGESHIFT; 431712f080e7Smrj ASSERT(pidx < sinfo->si_max_pages); 431812f080e7Smrj 431912f080e7Smrj /* 432012f080e7Smrj * the first page can get unmapped if it's shared with the 432112f080e7Smrj * previous window. Even if the rest of this window is already 432212f080e7Smrj * mapped in, we need to still check this one. 432312f080e7Smrj */ 432412f080e7Smrj pmap = &dma->dp_pgmap[pidx]; 432512f080e7Smrj if ((pmap->pm_uses_copybuf) && (pmap->pm_mapped == B_FALSE)) { 432612f080e7Smrj if (pmap->pm_pp != NULL) { 432712f080e7Smrj pmap->pm_mapped = B_TRUE; 432812f080e7Smrj i86_pp_map(pmap->pm_pp, pmap->pm_kaddr); 432912f080e7Smrj } else if (pmap->pm_vaddr != NULL) { 433012f080e7Smrj pmap->pm_mapped = B_TRUE; 433112f080e7Smrj i86_va_map(pmap->pm_vaddr, sinfo->si_asp, 433212f080e7Smrj pmap->pm_kaddr); 433312f080e7Smrj } 433412f080e7Smrj } 433512f080e7Smrj pidx++; 433612f080e7Smrj 433712f080e7Smrj /* map in the rest of the pages if required */ 433812f080e7Smrj if (window->wd_remap_copybuf) { 433912f080e7Smrj window->wd_remap_copybuf = B_FALSE; 434012f080e7Smrj 434112f080e7Smrj /* figure out many pages this window takes up */ 434212f080e7Smrj poff = (sinfo->si_buf_offset + window->wd_offset) & 434312f080e7Smrj MMU_PAGEOFFSET; 434412f080e7Smrj pcnt = mmu_btopr(window->wd_size + poff); 434512f080e7Smrj ASSERT(((pidx - 1) + pcnt) <= sinfo->si_max_pages); 434612f080e7Smrj 434712f080e7Smrj /* map pages which require it */ 434812f080e7Smrj for (i = 1; i < pcnt; i++) { 434912f080e7Smrj pmap = &dma->dp_pgmap[pidx]; 435012f080e7Smrj if (pmap->pm_uses_copybuf) { 435112f080e7Smrj ASSERT(pmap->pm_mapped == B_FALSE); 435212f080e7Smrj if (pmap->pm_pp != NULL) { 435312f080e7Smrj pmap->pm_mapped = B_TRUE; 435412f080e7Smrj i86_pp_map(pmap->pm_pp, 435512f080e7Smrj pmap->pm_kaddr); 435612f080e7Smrj } else if (pmap->pm_vaddr != NULL) { 435712f080e7Smrj pmap->pm_mapped = B_TRUE; 435812f080e7Smrj i86_va_map(pmap->pm_vaddr, 435912f080e7Smrj sinfo->si_asp, 436012f080e7Smrj pmap->pm_kaddr); 436112f080e7Smrj } 436212f080e7Smrj } 436312f080e7Smrj pidx++; 436412f080e7Smrj } 436512f080e7Smrj } 436612f080e7Smrj } 436712f080e7Smrj #endif 436812f080e7Smrj 436912f080e7Smrj /* if the new window uses the copy buffer, sync it for the device */ 437012f080e7Smrj if ((window->wd_dosync) && (hp->dmai_rflags & DDI_DMA_WRITE)) { 437112f080e7Smrj (void) rootnex_dma_sync(dip, rdip, handle, 0, 0, 437212f080e7Smrj DDI_DMA_SYNC_FORDEV); 437312f080e7Smrj } 437412f080e7Smrj 437512f080e7Smrj return (DDI_SUCCESS); 437612f080e7Smrj } 437712f080e7Smrj 437820906b23SVikram Hegde /* 437920906b23SVikram Hegde * rootnex_dma_win() 438020906b23SVikram Hegde * called from ddi_dma_getwin() 438120906b23SVikram Hegde */ 438220906b23SVikram Hegde /*ARGSUSED*/ 438320906b23SVikram Hegde static int 438420906b23SVikram Hegde rootnex_dma_win(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 438520906b23SVikram Hegde uint_t win, off_t *offp, size_t *lenp, ddi_dma_cookie_t *cookiep, 438620906b23SVikram Hegde uint_t *ccountp) 438720906b23SVikram Hegde { 438820906b23SVikram Hegde #if !defined(__xpv) 438920906b23SVikram Hegde if (IOMMU_USED(rdip)) { 439020906b23SVikram Hegde return (iommulib_nexdma_win(dip, rdip, handle, win, offp, lenp, 439120906b23SVikram Hegde cookiep, ccountp)); 439220906b23SVikram Hegde } 439320906b23SVikram Hegde #endif 439412f080e7Smrj 439520906b23SVikram Hegde return (rootnex_coredma_win(dip, rdip, handle, win, offp, lenp, 439620906b23SVikram Hegde cookiep, ccountp)); 439720906b23SVikram Hegde } 439812f080e7Smrj 439912f080e7Smrj /* 440012f080e7Smrj * ************************ 440112f080e7Smrj * obsoleted dma routines 440212f080e7Smrj * ************************ 440312f080e7Smrj */ 440412f080e7Smrj 440512f080e7Smrj /* ARGSUSED */ 440612f080e7Smrj static int 440720906b23SVikram Hegde rootnex_coredma_map(dev_info_t *dip, dev_info_t *rdip, 440820906b23SVikram Hegde struct ddi_dma_req *dmareq, ddi_dma_handle_t *handlep) 440912f080e7Smrj { 441012f080e7Smrj #if defined(__amd64) 441112f080e7Smrj /* 441212f080e7Smrj * this interface is not supported in 64-bit x86 kernel. See comment in 441312f080e7Smrj * rootnex_dma_mctl() 441412f080e7Smrj */ 441512f080e7Smrj return (DDI_DMA_NORESOURCES); 441612f080e7Smrj 441712f080e7Smrj #else /* 32-bit x86 kernel */ 441812f080e7Smrj ddi_dma_handle_t *lhandlep; 441912f080e7Smrj ddi_dma_handle_t lhandle; 442012f080e7Smrj ddi_dma_cookie_t cookie; 442112f080e7Smrj ddi_dma_attr_t dma_attr; 442212f080e7Smrj ddi_dma_lim_t *dma_lim; 442312f080e7Smrj uint_t ccnt; 442412f080e7Smrj int e; 442512f080e7Smrj 442612f080e7Smrj 442712f080e7Smrj /* 442812f080e7Smrj * if the driver is just testing to see if it's possible to do the bind, 442912f080e7Smrj * we'll use local state. Otherwise, use the handle pointer passed in. 443012f080e7Smrj */ 443112f080e7Smrj if (handlep == NULL) { 443212f080e7Smrj lhandlep = &lhandle; 443312f080e7Smrj } else { 443412f080e7Smrj lhandlep = handlep; 443512f080e7Smrj } 443612f080e7Smrj 443712f080e7Smrj /* convert the limit structure to a dma_attr one */ 443812f080e7Smrj dma_lim = dmareq->dmar_limits; 443912f080e7Smrj dma_attr.dma_attr_version = DMA_ATTR_V0; 444012f080e7Smrj dma_attr.dma_attr_addr_lo = dma_lim->dlim_addr_lo; 444112f080e7Smrj dma_attr.dma_attr_addr_hi = dma_lim->dlim_addr_hi; 444212f080e7Smrj dma_attr.dma_attr_minxfer = dma_lim->dlim_minxfer; 444312f080e7Smrj dma_attr.dma_attr_seg = dma_lim->dlim_adreg_max; 444412f080e7Smrj dma_attr.dma_attr_count_max = dma_lim->dlim_ctreg_max; 444512f080e7Smrj dma_attr.dma_attr_granular = dma_lim->dlim_granular; 444612f080e7Smrj dma_attr.dma_attr_sgllen = dma_lim->dlim_sgllen; 444712f080e7Smrj dma_attr.dma_attr_maxxfer = dma_lim->dlim_reqsize; 444812f080e7Smrj dma_attr.dma_attr_burstsizes = dma_lim->dlim_burstsizes; 444912f080e7Smrj dma_attr.dma_attr_align = MMU_PAGESIZE; 445012f080e7Smrj dma_attr.dma_attr_flags = 0; 445112f080e7Smrj 445212f080e7Smrj e = rootnex_dma_allochdl(dip, rdip, &dma_attr, dmareq->dmar_fp, 445312f080e7Smrj dmareq->dmar_arg, lhandlep); 445412f080e7Smrj if (e != DDI_SUCCESS) { 445512f080e7Smrj return (e); 445612f080e7Smrj } 445712f080e7Smrj 445812f080e7Smrj e = rootnex_dma_bindhdl(dip, rdip, *lhandlep, dmareq, &cookie, &ccnt); 445912f080e7Smrj if ((e != DDI_DMA_MAPPED) && (e != DDI_DMA_PARTIAL_MAP)) { 446012f080e7Smrj (void) rootnex_dma_freehdl(dip, rdip, *lhandlep); 446112f080e7Smrj return (e); 446212f080e7Smrj } 446312f080e7Smrj 446412f080e7Smrj /* 446512f080e7Smrj * if the driver is just testing to see if it's possible to do the bind, 446612f080e7Smrj * free up the local state and return the result. 446712f080e7Smrj */ 446812f080e7Smrj if (handlep == NULL) { 446912f080e7Smrj (void) rootnex_dma_unbindhdl(dip, rdip, *lhandlep); 447012f080e7Smrj (void) rootnex_dma_freehdl(dip, rdip, *lhandlep); 447112f080e7Smrj if (e == DDI_DMA_MAPPED) { 447212f080e7Smrj return (DDI_DMA_MAPOK); 447312f080e7Smrj } else { 447412f080e7Smrj return (DDI_DMA_NOMAPPING); 447512f080e7Smrj } 447612f080e7Smrj } 447712f080e7Smrj 447812f080e7Smrj return (e); 447912f080e7Smrj #endif /* defined(__amd64) */ 448012f080e7Smrj } 448112f080e7Smrj 448220906b23SVikram Hegde /* 448320906b23SVikram Hegde * rootnex_dma_map() 448420906b23SVikram Hegde * called from ddi_dma_setup() 448520906b23SVikram Hegde */ 448620906b23SVikram Hegde /* ARGSUSED */ 448720906b23SVikram Hegde static int 448820906b23SVikram Hegde rootnex_dma_map(dev_info_t *dip, dev_info_t *rdip, 448920906b23SVikram Hegde struct ddi_dma_req *dmareq, ddi_dma_handle_t *handlep) 449020906b23SVikram Hegde { 449120906b23SVikram Hegde #if !defined(__xpv) 449220906b23SVikram Hegde if (IOMMU_USED(rdip)) { 449320906b23SVikram Hegde return (iommulib_nexdma_map(dip, rdip, dmareq, handlep)); 449420906b23SVikram Hegde } 449520906b23SVikram Hegde #endif 449620906b23SVikram Hegde return (rootnex_coredma_map(dip, rdip, dmareq, handlep)); 449720906b23SVikram Hegde } 449812f080e7Smrj 449912f080e7Smrj /* 450012f080e7Smrj * rootnex_dma_mctl() 450112f080e7Smrj * 450212f080e7Smrj */ 450312f080e7Smrj /* ARGSUSED */ 450412f080e7Smrj static int 450520906b23SVikram Hegde rootnex_coredma_mctl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 450612f080e7Smrj enum ddi_dma_ctlops request, off_t *offp, size_t *lenp, caddr_t *objpp, 450712f080e7Smrj uint_t cache_flags) 450812f080e7Smrj { 450912f080e7Smrj #if defined(__amd64) 451012f080e7Smrj /* 451112f080e7Smrj * DDI_DMA_SMEM_ALLOC & DDI_DMA_IOPB_ALLOC we're changed to have a 451212f080e7Smrj * common implementation in genunix, so they no longer have x86 451312f080e7Smrj * specific functionality which called into dma_ctl. 451412f080e7Smrj * 451512f080e7Smrj * The rest of the obsoleted interfaces were never supported in the 451612f080e7Smrj * 64-bit x86 kernel. For s10, the obsoleted DDI_DMA_SEGTOC interface 451712f080e7Smrj * was not ported to the x86 64-bit kernel do to serious x86 rootnex 451812f080e7Smrj * implementation issues. 451912f080e7Smrj * 452012f080e7Smrj * If you can't use DDI_DMA_SEGTOC; DDI_DMA_NEXTSEG, DDI_DMA_FREE, and 452112f080e7Smrj * DDI_DMA_NEXTWIN are useless since you can get to the cookie, so we 452212f080e7Smrj * reflect that now too... 452312f080e7Smrj * 452412f080e7Smrj * Even though we fixed the pointer problem in DDI_DMA_SEGTOC, we are 452512f080e7Smrj * not going to put this functionality into the 64-bit x86 kernel now. 452612f080e7Smrj * It wasn't ported to the 64-bit kernel for s10, no reason to change 452712f080e7Smrj * that in a future release. 452812f080e7Smrj */ 452912f080e7Smrj return (DDI_FAILURE); 453012f080e7Smrj 453112f080e7Smrj #else /* 32-bit x86 kernel */ 453212f080e7Smrj ddi_dma_cookie_t lcookie; 453312f080e7Smrj ddi_dma_cookie_t *cookie; 453412f080e7Smrj rootnex_window_t *window; 453512f080e7Smrj ddi_dma_impl_t *hp; 453612f080e7Smrj rootnex_dma_t *dma; 453712f080e7Smrj uint_t nwin; 453812f080e7Smrj uint_t ccnt; 453912f080e7Smrj size_t len; 454012f080e7Smrj off_t off; 454112f080e7Smrj int e; 454212f080e7Smrj 454312f080e7Smrj 454412f080e7Smrj /* 454512f080e7Smrj * DDI_DMA_SEGTOC, DDI_DMA_NEXTSEG, and DDI_DMA_NEXTWIN are a little 454612f080e7Smrj * hacky since were optimizing for the current interfaces and so we can 454712f080e7Smrj * cleanup the mess in genunix. Hopefully we will remove the this 454812f080e7Smrj * obsoleted routines someday soon. 454912f080e7Smrj */ 455012f080e7Smrj 455112f080e7Smrj switch (request) { 455212f080e7Smrj 455312f080e7Smrj case DDI_DMA_SEGTOC: /* ddi_dma_segtocookie() */ 455412f080e7Smrj hp = (ddi_dma_impl_t *)handle; 455512f080e7Smrj cookie = (ddi_dma_cookie_t *)objpp; 455612f080e7Smrj 455712f080e7Smrj /* 455812f080e7Smrj * convert segment to cookie. We don't distinguish between the 455912f080e7Smrj * two :-) 456012f080e7Smrj */ 456112f080e7Smrj *cookie = *hp->dmai_cookie; 456212f080e7Smrj *lenp = cookie->dmac_size; 456312f080e7Smrj *offp = cookie->dmac_type & ~ROOTNEX_USES_COPYBUF; 456412f080e7Smrj return (DDI_SUCCESS); 456512f080e7Smrj 456612f080e7Smrj case DDI_DMA_NEXTSEG: /* ddi_dma_nextseg() */ 456712f080e7Smrj hp = (ddi_dma_impl_t *)handle; 456812f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 456912f080e7Smrj 457012f080e7Smrj if ((*lenp != NULL) && ((uintptr_t)*lenp != (uintptr_t)hp)) { 457112f080e7Smrj return (DDI_DMA_STALE); 457212f080e7Smrj } 457312f080e7Smrj 457412f080e7Smrj /* handle the case where we don't have any windows */ 457512f080e7Smrj if (dma->dp_window == NULL) { 457612f080e7Smrj /* 457712f080e7Smrj * if seg == NULL, and we don't have any windows, 457812f080e7Smrj * return the first cookie in the sgl. 457912f080e7Smrj */ 458012f080e7Smrj if (*lenp == NULL) { 458112f080e7Smrj dma->dp_current_cookie = 0; 458212f080e7Smrj hp->dmai_cookie = dma->dp_cookies; 458312f080e7Smrj *objpp = (caddr_t)handle; 458412f080e7Smrj return (DDI_SUCCESS); 458512f080e7Smrj 458612f080e7Smrj /* if we have more cookies, go to the next cookie */ 458712f080e7Smrj } else { 458812f080e7Smrj if ((dma->dp_current_cookie + 1) >= 458912f080e7Smrj dma->dp_sglinfo.si_sgl_size) { 459012f080e7Smrj return (DDI_DMA_DONE); 459112f080e7Smrj } 459212f080e7Smrj dma->dp_current_cookie++; 459312f080e7Smrj hp->dmai_cookie++; 459412f080e7Smrj return (DDI_SUCCESS); 459512f080e7Smrj } 459612f080e7Smrj } 459712f080e7Smrj 459812f080e7Smrj /* We have one or more windows */ 459912f080e7Smrj window = &dma->dp_window[dma->dp_current_win]; 460012f080e7Smrj 460112f080e7Smrj /* 460212f080e7Smrj * if seg == NULL, return the first cookie in the current 460312f080e7Smrj * window 460412f080e7Smrj */ 460512f080e7Smrj if (*lenp == NULL) { 460612f080e7Smrj dma->dp_current_cookie = 0; 4607cf4e9a1dSmrj hp->dmai_cookie = window->wd_first_cookie; 460812f080e7Smrj 460912f080e7Smrj /* 461012f080e7Smrj * go to the next cookie in the window then see if we done with 461112f080e7Smrj * this window. 461212f080e7Smrj */ 461312f080e7Smrj } else { 461412f080e7Smrj if ((dma->dp_current_cookie + 1) >= 461512f080e7Smrj window->wd_cookie_cnt) { 461612f080e7Smrj return (DDI_DMA_DONE); 461712f080e7Smrj } 461812f080e7Smrj dma->dp_current_cookie++; 461912f080e7Smrj hp->dmai_cookie++; 462012f080e7Smrj } 462112f080e7Smrj *objpp = (caddr_t)handle; 462212f080e7Smrj return (DDI_SUCCESS); 462312f080e7Smrj 462412f080e7Smrj case DDI_DMA_NEXTWIN: /* ddi_dma_nextwin() */ 462512f080e7Smrj hp = (ddi_dma_impl_t *)handle; 462612f080e7Smrj dma = (rootnex_dma_t *)hp->dmai_private; 462712f080e7Smrj 462812f080e7Smrj if ((*offp != NULL) && ((uintptr_t)*offp != (uintptr_t)hp)) { 462912f080e7Smrj return (DDI_DMA_STALE); 463012f080e7Smrj } 463112f080e7Smrj 463212f080e7Smrj /* if win == NULL, return the first window in the bind */ 463312f080e7Smrj if (*offp == NULL) { 463412f080e7Smrj nwin = 0; 463512f080e7Smrj 463612f080e7Smrj /* 463712f080e7Smrj * else, go to the next window then see if we're done with all 463812f080e7Smrj * the windows. 463912f080e7Smrj */ 464012f080e7Smrj } else { 464112f080e7Smrj nwin = dma->dp_current_win + 1; 464212f080e7Smrj if (nwin >= hp->dmai_nwin) { 464312f080e7Smrj return (DDI_DMA_DONE); 464412f080e7Smrj } 464512f080e7Smrj } 464612f080e7Smrj 464712f080e7Smrj /* switch to the next window */ 464812f080e7Smrj e = rootnex_dma_win(dip, rdip, handle, nwin, &off, &len, 464912f080e7Smrj &lcookie, &ccnt); 465012f080e7Smrj ASSERT(e == DDI_SUCCESS); 465112f080e7Smrj if (e != DDI_SUCCESS) { 465212f080e7Smrj return (DDI_DMA_STALE); 465312f080e7Smrj } 465412f080e7Smrj 465512f080e7Smrj /* reset the cookie back to the first cookie in the window */ 465612f080e7Smrj if (dma->dp_window != NULL) { 465712f080e7Smrj window = &dma->dp_window[dma->dp_current_win]; 465812f080e7Smrj hp->dmai_cookie = window->wd_first_cookie; 465912f080e7Smrj } else { 466012f080e7Smrj hp->dmai_cookie = dma->dp_cookies; 466112f080e7Smrj } 466212f080e7Smrj 466312f080e7Smrj *objpp = (caddr_t)handle; 466412f080e7Smrj return (DDI_SUCCESS); 466512f080e7Smrj 466612f080e7Smrj case DDI_DMA_FREE: /* ddi_dma_free() */ 466712f080e7Smrj (void) rootnex_dma_unbindhdl(dip, rdip, handle); 466812f080e7Smrj (void) rootnex_dma_freehdl(dip, rdip, handle); 466912f080e7Smrj if (rootnex_state->r_dvma_call_list_id) { 467012f080e7Smrj ddi_run_callback(&rootnex_state->r_dvma_call_list_id); 467112f080e7Smrj } 467212f080e7Smrj return (DDI_SUCCESS); 467312f080e7Smrj 467412f080e7Smrj case DDI_DMA_IOPB_ALLOC: /* get contiguous DMA-able memory */ 467512f080e7Smrj case DDI_DMA_SMEM_ALLOC: /* get contiguous DMA-able memory */ 467612f080e7Smrj /* should never get here, handled in genunix */ 467712f080e7Smrj ASSERT(0); 467812f080e7Smrj return (DDI_FAILURE); 467912f080e7Smrj 468012f080e7Smrj case DDI_DMA_KVADDR: 468112f080e7Smrj case DDI_DMA_GETERR: 468212f080e7Smrj case DDI_DMA_COFF: 468312f080e7Smrj return (DDI_FAILURE); 468412f080e7Smrj } 468512f080e7Smrj 468612f080e7Smrj return (DDI_FAILURE); 468712f080e7Smrj #endif /* defined(__amd64) */ 46887c478bd9Sstevel@tonic-gate } 46897aec1d6eScindi 469020906b23SVikram Hegde /* 469120906b23SVikram Hegde * rootnex_dma_mctl() 469220906b23SVikram Hegde * 469320906b23SVikram Hegde */ 469420906b23SVikram Hegde /* ARGSUSED */ 469520906b23SVikram Hegde static int 469620906b23SVikram Hegde rootnex_dma_mctl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle, 469720906b23SVikram Hegde enum ddi_dma_ctlops request, off_t *offp, size_t *lenp, caddr_t *objpp, 469820906b23SVikram Hegde uint_t cache_flags) 469920906b23SVikram Hegde { 470020906b23SVikram Hegde #if !defined(__xpv) 470120906b23SVikram Hegde if (IOMMU_USED(rdip)) { 470220906b23SVikram Hegde return (iommulib_nexdma_mctl(dip, rdip, handle, request, offp, 470320906b23SVikram Hegde lenp, objpp, cache_flags)); 470420906b23SVikram Hegde } 470520906b23SVikram Hegde #endif 470620906b23SVikram Hegde 470720906b23SVikram Hegde return (rootnex_coredma_mctl(dip, rdip, handle, request, offp, 470820906b23SVikram Hegde lenp, objpp, cache_flags)); 470920906b23SVikram Hegde } 471000d0963fSdilpreet 471100d0963fSdilpreet /* 471200d0963fSdilpreet * ********* 471300d0963fSdilpreet * FMA Code 471400d0963fSdilpreet * ********* 471500d0963fSdilpreet */ 471600d0963fSdilpreet 471700d0963fSdilpreet /* 471800d0963fSdilpreet * rootnex_fm_init() 471900d0963fSdilpreet * FMA init busop 472000d0963fSdilpreet */ 47217aec1d6eScindi /* ARGSUSED */ 47227aec1d6eScindi static int 472300d0963fSdilpreet rootnex_fm_init(dev_info_t *dip, dev_info_t *tdip, int tcap, 472400d0963fSdilpreet ddi_iblock_cookie_t *ibc) 47257aec1d6eScindi { 472600d0963fSdilpreet *ibc = rootnex_state->r_err_ibc; 472700d0963fSdilpreet 472800d0963fSdilpreet return (ddi_system_fmcap); 472900d0963fSdilpreet } 473000d0963fSdilpreet 473100d0963fSdilpreet /* 473200d0963fSdilpreet * rootnex_dma_check() 473300d0963fSdilpreet * Function called after a dma fault occurred to find out whether the 473400d0963fSdilpreet * fault address is associated with a driver that is able to handle faults 473500d0963fSdilpreet * and recover from faults. 473600d0963fSdilpreet */ 473700d0963fSdilpreet /* ARGSUSED */ 473800d0963fSdilpreet static int 473900d0963fSdilpreet rootnex_dma_check(dev_info_t *dip, const void *handle, const void *addr, 474000d0963fSdilpreet const void *not_used) 474100d0963fSdilpreet { 474200d0963fSdilpreet rootnex_window_t *window; 474300d0963fSdilpreet uint64_t start_addr; 474400d0963fSdilpreet uint64_t fault_addr; 474500d0963fSdilpreet ddi_dma_impl_t *hp; 474600d0963fSdilpreet rootnex_dma_t *dma; 474700d0963fSdilpreet uint64_t end_addr; 474800d0963fSdilpreet size_t csize; 474900d0963fSdilpreet int i; 475000d0963fSdilpreet int j; 475100d0963fSdilpreet 475200d0963fSdilpreet 475300d0963fSdilpreet /* The driver has to set DDI_DMA_FLAGERR to recover from dma faults */ 475400d0963fSdilpreet hp = (ddi_dma_impl_t *)handle; 475500d0963fSdilpreet ASSERT(hp); 475600d0963fSdilpreet 475700d0963fSdilpreet dma = (rootnex_dma_t *)hp->dmai_private; 475800d0963fSdilpreet 475900d0963fSdilpreet /* Get the address that we need to search for */ 476000d0963fSdilpreet fault_addr = *(uint64_t *)addr; 476100d0963fSdilpreet 476200d0963fSdilpreet /* 476300d0963fSdilpreet * if we don't have any windows, we can just walk through all the 476400d0963fSdilpreet * cookies. 476500d0963fSdilpreet */ 476600d0963fSdilpreet if (dma->dp_window == NULL) { 476700d0963fSdilpreet /* for each cookie */ 476800d0963fSdilpreet for (i = 0; i < dma->dp_sglinfo.si_sgl_size; i++) { 476900d0963fSdilpreet /* 477000d0963fSdilpreet * if the faulted address is within the physical address 477100d0963fSdilpreet * range of the cookie, return DDI_FM_NONFATAL. 477200d0963fSdilpreet */ 477300d0963fSdilpreet if ((fault_addr >= dma->dp_cookies[i].dmac_laddress) && 477400d0963fSdilpreet (fault_addr <= (dma->dp_cookies[i].dmac_laddress + 477500d0963fSdilpreet dma->dp_cookies[i].dmac_size))) { 477600d0963fSdilpreet return (DDI_FM_NONFATAL); 477700d0963fSdilpreet } 477800d0963fSdilpreet } 477900d0963fSdilpreet 478000d0963fSdilpreet /* fault_addr not within this DMA handle */ 478100d0963fSdilpreet return (DDI_FM_UNKNOWN); 478200d0963fSdilpreet } 478300d0963fSdilpreet 478400d0963fSdilpreet /* we have mutiple windows, walk through each window */ 478500d0963fSdilpreet for (i = 0; i < hp->dmai_nwin; i++) { 478600d0963fSdilpreet window = &dma->dp_window[i]; 478700d0963fSdilpreet 478800d0963fSdilpreet /* Go through all the cookies in the window */ 478900d0963fSdilpreet for (j = 0; j < window->wd_cookie_cnt; j++) { 479000d0963fSdilpreet 479100d0963fSdilpreet start_addr = window->wd_first_cookie[j].dmac_laddress; 479200d0963fSdilpreet csize = window->wd_first_cookie[j].dmac_size; 479300d0963fSdilpreet 479400d0963fSdilpreet /* 479500d0963fSdilpreet * if we are trimming the first cookie in the window, 479600d0963fSdilpreet * and this is the first cookie, adjust the start 479700d0963fSdilpreet * address and size of the cookie to account for the 479800d0963fSdilpreet * trim. 479900d0963fSdilpreet */ 480000d0963fSdilpreet if (window->wd_trim.tr_trim_first && (j == 0)) { 480100d0963fSdilpreet start_addr = window->wd_trim.tr_first_paddr; 480200d0963fSdilpreet csize = window->wd_trim.tr_first_size; 480300d0963fSdilpreet } 480400d0963fSdilpreet 480500d0963fSdilpreet /* 480600d0963fSdilpreet * if we are trimming the last cookie in the window, 480700d0963fSdilpreet * and this is the last cookie, adjust the start 480800d0963fSdilpreet * address and size of the cookie to account for the 480900d0963fSdilpreet * trim. 481000d0963fSdilpreet */ 481100d0963fSdilpreet if (window->wd_trim.tr_trim_last && 481200d0963fSdilpreet (j == (window->wd_cookie_cnt - 1))) { 481300d0963fSdilpreet start_addr = window->wd_trim.tr_last_paddr; 481400d0963fSdilpreet csize = window->wd_trim.tr_last_size; 481500d0963fSdilpreet } 481600d0963fSdilpreet 481700d0963fSdilpreet end_addr = start_addr + csize; 481800d0963fSdilpreet 481900d0963fSdilpreet /* 482000d0963fSdilpreet * if the faulted address is within the physical address 482100d0963fSdilpreet * range of the cookie, return DDI_FM_NONFATAL. 482200d0963fSdilpreet */ 482300d0963fSdilpreet if ((fault_addr >= start_addr) && 482400d0963fSdilpreet (fault_addr <= end_addr)) { 482500d0963fSdilpreet return (DDI_FM_NONFATAL); 482600d0963fSdilpreet } 482700d0963fSdilpreet } 482800d0963fSdilpreet } 482900d0963fSdilpreet 483000d0963fSdilpreet /* fault_addr not within this DMA handle */ 483100d0963fSdilpreet return (DDI_FM_UNKNOWN); 48327aec1d6eScindi } 4833