xhci-mem.c revision e10fa4787f1fb9c8738dff955c272f30b7b63134
166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp/* 266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * xHCI host controller driver 366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * 466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * Copyright (C) 2008 Intel Corp. 566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * 666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * Author: Sarah Sharp 766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * Some code borrowed from the Linux EHCI driver. 866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * 966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * This program is free software; you can redistribute it and/or modify 1066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * it under the terms of the GNU General Public License version 2 as 1166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * published by the Free Software Foundation. 1266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * 1366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * This program is distributed in the hope that it will be useful, but 1466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY 1566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License 1666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * for more details. 1766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * 1866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * You should have received a copy of the GNU General Public License 1966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * along with this program; if not, write to the Free Software Foundation, 2066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 2166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp */ 2266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 2366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp#include <linux/usb.h> 240ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp#include <linux/pci.h> 255a0e3ad6af8660be21ca98a971cd00f331318c05Tejun Heo#include <linux/slab.h> 26527c6d7f188f116852141f50b4d008f966bb17f8Sarah Sharp#include <linux/dmapool.h> 2766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 2866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp#include "xhci.h" 2966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 300ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp/* 310ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Allocates a generic ring segment from the ring pool, sets the dma address, 320ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * initializes the segment to zero, and sets the private next pointer to NULL. 330ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * 340ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Section 4.11.1.1: 350ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * "All components of all Command and Transfer TRBs shall be initialized to '0'" 360ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 370ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharpstatic struct xhci_segment *xhci_segment_alloc(struct xhci_hcd *xhci, gfp_t flags) 380ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp{ 390ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *seg; 400ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp dma_addr_t dma; 410ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 420ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg = kzalloc(sizeof *seg, flags); 430ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!seg) 44326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap return NULL; 45700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Allocating priv segment structure at %p\n", seg); 460ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 470ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg->trbs = dma_pool_alloc(xhci->segment_pool, flags, &dma); 480ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!seg->trbs) { 490ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp kfree(seg); 50326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap return NULL; 510ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 52700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "// Allocating segment at %p (virtual) 0x%llx (DMA)\n", 53700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman seg->trbs, (unsigned long long)dma); 540ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 550ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp memset(seg->trbs, 0, SEGMENT_SIZE); 560ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg->dma = dma; 570ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg->next = NULL; 580ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 590ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return seg; 600ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp} 610ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 620ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharpstatic void xhci_segment_free(struct xhci_hcd *xhci, struct xhci_segment *seg) 630ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp{ 640ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!seg) 650ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return; 660ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (seg->trbs) { 67700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Freeing DMA segment at %p (virtual) 0x%llx (DMA)\n", 68700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman seg->trbs, (unsigned long long)seg->dma); 690ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp dma_pool_free(xhci->segment_pool, seg->trbs, seg->dma); 700ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg->trbs = NULL; 710ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 72700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Freeing priv segment structure at %p\n", seg); 730ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp kfree(seg); 740ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp} 750ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 760ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp/* 770ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Make the prev segment point to the next segment. 780ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * 790ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Change the last TRB in the prev segment to be a Link TRB which points to the 800ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * DMA address of the next segment. The caller needs to set any Link TRB 810ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * related flags, such as End TRB, Toggle Cycle, and no snoop. 820ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 830ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharpstatic void xhci_link_segments(struct xhci_hcd *xhci, struct xhci_segment *prev, 840ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *next, bool link_trbs) 850ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp{ 860ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp u32 val; 870ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 880ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!prev || !next) 890ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return; 900ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp prev->next = next; 910ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (link_trbs) { 928e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp prev->trbs[TRBS_PER_SEGMENT-1].link.segment_ptr = next->dma; 930ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 940ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Set the last TRB in the segment to have a TRB type ID of Link TRB */ 950ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val = prev->trbs[TRBS_PER_SEGMENT-1].link.control; 960ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val &= ~TRB_TYPE_BITMASK; 970ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val |= TRB_TYPE(TRB_LINK); 98b0567b3f635db72c881a0d561cebb544ec085073Sarah Sharp /* Always set the chain bit with 0.95 hardware */ 99b0567b3f635db72c881a0d561cebb544ec085073Sarah Sharp if (xhci_link_trb_quirk(xhci)) 100b0567b3f635db72c881a0d561cebb544ec085073Sarah Sharp val |= TRB_CHAIN; 1010ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp prev->trbs[TRBS_PER_SEGMENT-1].link.control = val; 1020ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 103700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Linking segment 0x%llx to segment 0x%llx (DMA)\n", 104700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)prev->dma, 105700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)next->dma); 1060ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp} 1070ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1080ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp/* XXX: Do we need the hcd structure in all these functions? */ 109f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharpvoid xhci_ring_free(struct xhci_hcd *xhci, struct xhci_ring *ring) 1100ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp{ 1110ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *seg; 1120ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *first_seg; 1130ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1140ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!ring || !ring->first_seg) 1150ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return; 1160ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp first_seg = ring->first_seg; 1170ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg = first_seg->next; 118700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Freeing ring at %p\n", ring); 1190ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp while (seg != first_seg) { 1200ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *next = seg->next; 1210ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_segment_free(xhci, seg); 1220ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg = next; 1230ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 1240ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_segment_free(xhci, first_seg); 1250ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp ring->first_seg = NULL; 1260ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp kfree(ring); 1270ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp} 1280ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 12974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharpstatic void xhci_initialize_ring_info(struct xhci_ring *ring) 13074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp{ 13174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* The ring is empty, so the enqueue pointer == dequeue pointer */ 13274f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->enqueue = ring->first_seg->trbs; 13374f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->enq_seg = ring->first_seg; 13474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->dequeue = ring->enqueue; 13574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->deq_seg = ring->first_seg; 13674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* The ring is initialized to 0. The producer must write 1 to the cycle 13774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp * bit to handover ownership of the TRB, so PCS = 1. The consumer must 13874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp * compare CCS to the cycle bit to check ownership, so CCS = 1. 13974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp */ 14074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->cycle_state = 1; 14174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* Not necessary for new rings, but needed for re-initialized rings */ 14274f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->enq_updates = 0; 14374f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp ring->deq_updates = 0; 14474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp} 14574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp 1460ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp/** 1470ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Create a new ring with zero or more segments. 1480ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * 1490ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Link each segment together into a ring. 1500ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Set the end flag and the cycle toggle bit on the last segment. 1510ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * See section 4.9.1 and figures 15 and 16. 1520ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 1530ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharpstatic struct xhci_ring *xhci_ring_alloc(struct xhci_hcd *xhci, 1540ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp unsigned int num_segs, bool link_trbs, gfp_t flags) 1550ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp{ 1560ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_ring *ring; 1570ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *prev; 1580ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1590ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp ring = kzalloc(sizeof *(ring), flags); 160700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Allocating ring at %p\n", ring); 1610ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!ring) 162326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap return NULL; 1630ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 164d0e96f5a71a032ced0c35f521c1cbd67e816922aSarah Sharp INIT_LIST_HEAD(&ring->td_list); 1650ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (num_segs == 0) 1660ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return ring; 1670ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1680ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp ring->first_seg = xhci_segment_alloc(xhci, flags); 1690ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!ring->first_seg) 1700ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 1710ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp num_segs--; 1720ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1730ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp prev = ring->first_seg; 1740ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp while (num_segs > 0) { 1750ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *next; 1760ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1770ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp next = xhci_segment_alloc(xhci, flags); 1780ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!next) 1790ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 1800ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_link_segments(xhci, prev, next, link_trbs); 1810ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1820ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp prev = next; 1830ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp num_segs--; 1840ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 1850ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_link_segments(xhci, prev, ring->first_seg, link_trbs); 1860ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1870ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (link_trbs) { 1880ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* See section 4.9.2.1 and 6.4.4.1 */ 1890ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp prev->trbs[TRBS_PER_SEGMENT-1].link.control |= (LINK_TOGGLE); 1900ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Wrote link toggle flag to" 191700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman " segment %p (virtual), 0x%llx (DMA)\n", 192700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman prev, (unsigned long long)prev->dma); 1930ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 19474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp xhci_initialize_ring_info(ring); 1950ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp return ring; 1960ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 1970ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharpfail: 1980ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_ring_free(xhci, ring); 199326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap return NULL; 2000ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp} 2010ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 202412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharpvoid xhci_free_or_cache_endpoint_ring(struct xhci_hcd *xhci, 203412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp struct xhci_virt_device *virt_dev, 204412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp unsigned int ep_index) 205412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp{ 206412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp int rings_cached; 207412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp 208412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp rings_cached = virt_dev->num_rings_cached; 209412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp if (rings_cached < XHCI_MAX_RINGS_CACHED) { 210412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp virt_dev->num_rings_cached++; 211412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp rings_cached = virt_dev->num_rings_cached; 212412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp virt_dev->ring_cache[rings_cached] = 213412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp virt_dev->eps[ep_index].ring; 214412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp xhci_dbg(xhci, "Cached old ring, " 215412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp "%d ring%s cached\n", 216412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp rings_cached, 217412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp (rings_cached > 1) ? "s" : ""); 218412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp } else { 219412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp xhci_ring_free(xhci, virt_dev->eps[ep_index].ring); 220412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp xhci_dbg(xhci, "Ring cache full (%d rings), " 221412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp "freeing ring\n", 222412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp virt_dev->num_rings_cached); 223412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp } 224412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp virt_dev->eps[ep_index].ring = NULL; 225412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp} 226412566bd716397e28e81fc9b20804bc6a6daf14dSarah Sharp 22774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp/* Zero an endpoint ring (except for link TRBs) and move the enqueue and dequeue 22874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp * pointers to the beginning of the ring. 22974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp */ 23074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharpstatic void xhci_reinit_cached_ring(struct xhci_hcd *xhci, 23174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp struct xhci_ring *ring) 23274f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp{ 23374f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp struct xhci_segment *seg = ring->first_seg; 23474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp do { 23574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp memset(seg->trbs, 0, 23674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp sizeof(union xhci_trb)*TRBS_PER_SEGMENT); 23774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* All endpoint rings have link TRBs */ 23874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp xhci_link_segments(xhci, seg, seg->next, 1); 23974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp seg = seg->next; 24074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp } while (seg != ring->first_seg); 24174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp xhci_initialize_ring_info(ring); 24274f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* td list should be empty since all URBs have been cancelled, 24374f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp * but just in case... 24474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp */ 24574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp INIT_LIST_HEAD(&ring->td_list); 24674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp} 24774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp 248d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn#define CTX_SIZE(_hcc) (HCC_64BYTE_CONTEXT(_hcc) ? 64 : 32) 249d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 250326b4810cc995209e31136af4202ed0414814ed5Randy Dunlapstatic struct xhci_container_ctx *xhci_alloc_container_ctx(struct xhci_hcd *xhci, 251d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn int type, gfp_t flags) 252d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn{ 253d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_container_ctx *ctx = kzalloc(sizeof(*ctx), flags); 254d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn if (!ctx) 255d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return NULL; 256d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 257d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn BUG_ON((type != XHCI_CTX_TYPE_DEVICE) && (type != XHCI_CTX_TYPE_INPUT)); 258d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctx->type = type; 259d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctx->size = HCC_64BYTE_CONTEXT(xhci->hcc_params) ? 2048 : 1024; 260d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn if (type == XHCI_CTX_TYPE_INPUT) 261d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctx->size += CTX_SIZE(xhci->hcc_params); 262d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 263d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctx->bytes = dma_pool_alloc(xhci->device_pool, flags, &ctx->dma); 264d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn memset(ctx->bytes, 0, ctx->size); 265d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return ctx; 266d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn} 267d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 268326b4810cc995209e31136af4202ed0414814ed5Randy Dunlapstatic void xhci_free_container_ctx(struct xhci_hcd *xhci, 269d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_container_ctx *ctx) 270d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn{ 271a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp if (!ctx) 272a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp return; 273d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn dma_pool_free(xhci->device_pool, ctx->bytes, ctx->dma); 274d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn kfree(ctx); 275d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn} 276d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 277d115b04818e57bdbc7ccde4d0660b15e33013dc8John Younstruct xhci_input_control_ctx *xhci_get_input_control_ctx(struct xhci_hcd *xhci, 278d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_container_ctx *ctx) 279d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn{ 280d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn BUG_ON(ctx->type != XHCI_CTX_TYPE_INPUT); 281d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return (struct xhci_input_control_ctx *)ctx->bytes; 282d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn} 283d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 284d115b04818e57bdbc7ccde4d0660b15e33013dc8John Younstruct xhci_slot_ctx *xhci_get_slot_ctx(struct xhci_hcd *xhci, 285d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_container_ctx *ctx) 286d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn{ 287d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn if (ctx->type == XHCI_CTX_TYPE_DEVICE) 288d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return (struct xhci_slot_ctx *)ctx->bytes; 289d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 290d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return (struct xhci_slot_ctx *) 291d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn (ctx->bytes + CTX_SIZE(xhci->hcc_params)); 292d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn} 293d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 294d115b04818e57bdbc7ccde4d0660b15e33013dc8John Younstruct xhci_ep_ctx *xhci_get_ep_ctx(struct xhci_hcd *xhci, 295d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_container_ctx *ctx, 296d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn unsigned int ep_index) 297d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn{ 298d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn /* increment ep index by offset of start of ep ctx array */ 299d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ep_index++; 300d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn if (ctx->type == XHCI_CTX_TYPE_INPUT) 301d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ep_index++; 302d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 303d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn return (struct xhci_ep_ctx *) 304d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn (ctx->bytes + (ep_index * CTX_SIZE(xhci->hcc_params))); 305d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn} 306d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 3078df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 3088df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/***************** Streams structures manipulation *************************/ 3098df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 3108df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpvoid xhci_free_stream_ctx(struct xhci_hcd *xhci, 3118df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned int num_stream_ctxs, 3128df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_ctx *stream_ctx, dma_addr_t dma) 3138df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 3148df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller); 3158df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 3168df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (num_stream_ctxs > MEDIUM_STREAM_ARRAY_SIZE) 3178df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp pci_free_consistent(pdev, 3188df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp sizeof(struct xhci_stream_ctx)*num_stream_ctxs, 3198df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_ctx, dma); 3208df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp else if (num_stream_ctxs <= SMALL_STREAM_ARRAY_SIZE) 3218df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return dma_pool_free(xhci->small_streams_pool, 3228df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_ctx, dma); 3238df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp else 3248df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return dma_pool_free(xhci->medium_streams_pool, 3258df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_ctx, dma); 3268df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 3278df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 3288df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* 3298df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * The stream context array for each endpoint with bulk streams enabled can 3308df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * vary in size, based on: 3318df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * - how many streams the endpoint supports, 3328df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * - the maximum primary stream array size the host controller supports, 3338df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * - and how many streams the device driver asks for. 3348df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 3358df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * The stream context array must be a power of 2, and can be as small as 3368df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 64 bytes or as large as 1MB. 3378df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 3388df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpstruct xhci_stream_ctx *xhci_alloc_stream_ctx(struct xhci_hcd *xhci, 3398df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned int num_stream_ctxs, dma_addr_t *dma, 3408df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp gfp_t mem_flags) 3418df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 3428df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller); 3438df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 3448df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (num_stream_ctxs > MEDIUM_STREAM_ARRAY_SIZE) 3458df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return pci_alloc_consistent(pdev, 3468df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp sizeof(struct xhci_stream_ctx)*num_stream_ctxs, 3478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma); 3488df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp else if (num_stream_ctxs <= SMALL_STREAM_ARRAY_SIZE) 3498df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return dma_pool_alloc(xhci->small_streams_pool, 3508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mem_flags, dma); 3518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp else 3528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return dma_pool_alloc(xhci->medium_streams_pool, 3538df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mem_flags, dma); 3548df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 3558df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 356e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharpstruct xhci_ring *xhci_dma_to_transfer_ring( 357e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp struct xhci_virt_ep *ep, 358e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp u64 address) 359e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp{ 360e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (ep->ep_state & EP_HAS_STREAMS) 361e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return radix_tree_lookup(&ep->stream_info->trb_address_map, 362e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp address >> SEGMENT_SHIFT); 363e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return ep->ring; 364e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp} 365e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 366e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp/* Only use this when you know stream_info is valid */ 3678df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#ifdef CONFIG_USB_XHCI_HCD_DEBUGGING 368e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharpstatic struct xhci_ring *dma_to_stream_ring( 3698df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_info *stream_info, 3708df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u64 address) 3718df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 3728df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return radix_tree_lookup(&stream_info->trb_address_map, 3738df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp address >> SEGMENT_SHIFT); 3748df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 3758df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#endif /* CONFIG_USB_XHCI_HCD_DEBUGGING */ 3768df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 377e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharpstruct xhci_ring *xhci_stream_id_to_ring( 378e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp struct xhci_virt_device *dev, 379e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp unsigned int ep_index, 380e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp unsigned int stream_id) 381e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp{ 382e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp struct xhci_virt_ep *ep = &dev->eps[ep_index]; 383e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 384e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (stream_id == 0) 385e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return ep->ring; 386e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (!ep->stream_info) 387e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return NULL; 388e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 389e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (stream_id > ep->stream_info->num_streams) 390e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return NULL; 391e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return ep->stream_info->stream_rings[stream_id]; 392e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp} 393e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 394e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharpstruct xhci_ring *xhci_triad_to_transfer_ring(struct xhci_hcd *xhci, 395e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp unsigned int slot_id, unsigned int ep_index, 396e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp unsigned int stream_id) 397e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp{ 398e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp struct xhci_virt_ep *ep; 399e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 400e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp ep = &xhci->devs[slot_id]->eps[ep_index]; 401e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp /* Common case: no streams */ 402e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (!(ep->ep_state & EP_HAS_STREAMS)) 403e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return ep->ring; 404e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 405e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (stream_id == 0) { 406e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp xhci_warn(xhci, 407e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp "WARN: Slot ID %u, ep index %u has streams, " 408e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp "but URB has no stream ID.\n", 409e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp slot_id, ep_index); 410e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return NULL; 411e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp } 412e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 413e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp if (stream_id < ep->stream_info->num_streams) 414e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return ep->stream_info->stream_rings[stream_id]; 415e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 416e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp xhci_warn(xhci, 417e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp "WARN: Slot ID %u, ep index %u has " 418e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp "stream IDs 1 to %u allocated, " 419e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp "but stream ID %u is requested.\n", 420e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp slot_id, ep_index, 421e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp ep->stream_info->num_streams - 1, 422e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp stream_id); 423e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return NULL; 424e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp} 425e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 426e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp/* Get the right ring for the given URB. 427e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp * If the endpoint supports streams, boundary check the URB's stream ID. 428e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp * If the endpoint doesn't support streams, return the singular endpoint ring. 429e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp */ 430e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharpstruct xhci_ring *xhci_urb_to_transfer_ring(struct xhci_hcd *xhci, 431e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp struct urb *urb) 432e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp{ 433e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp return xhci_triad_to_transfer_ring(xhci, urb->dev->slot_id, 434e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp xhci_get_endpoint_index(&urb->ep->desc), urb->stream_id); 435e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp} 436e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp 4378df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#ifdef CONFIG_USB_XHCI_HCD_DEBUGGING 4388df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpstatic int xhci_test_radix_tree(struct xhci_hcd *xhci, 4398df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned int num_streams, 4408df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_info *stream_info) 4418df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 4428df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u32 cur_stream; 4438df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ring *cur_ring; 4448df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u64 addr; 4458df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 4468df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (cur_stream = 1; cur_stream < num_streams; cur_stream++) { 4478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ring *mapped_ring; 4488df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp int trb_size = sizeof(union xhci_trb); 4498df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 4508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_ring = stream_info->stream_rings[cur_stream]; 4518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (addr = cur_ring->first_seg->dma; 4528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr < cur_ring->first_seg->dma + SEGMENT_SIZE; 4538df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr += trb_size) { 4548df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mapped_ring = dma_to_stream_ring(stream_info, addr); 4558df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (cur_ring != mapped_ring) { 4568df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_warn(xhci, "WARN: DMA address 0x%08llx " 4578df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp "didn't map to stream ID %u; " 4588df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp "mapped to ring %p\n", 4598df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp (unsigned long long) addr, 4608df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_stream, 4618df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mapped_ring); 4628df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return -EINVAL; 4638df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 4648df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 4658df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* One TRB after the end of the ring segment shouldn't return a 4668df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * pointer to the current ring (although it may be a part of a 4678df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * different ring). 4688df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 4698df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mapped_ring = dma_to_stream_ring(stream_info, addr); 4708df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (mapped_ring != cur_ring) { 4718df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* One TRB before should also fail */ 4728df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr = cur_ring->first_seg->dma - trb_size; 4738df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mapped_ring = dma_to_stream_ring(stream_info, addr); 4748df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 4758df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (mapped_ring == cur_ring) { 4768df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_warn(xhci, "WARN: Bad DMA address 0x%08llx " 4778df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp "mapped to valid stream ID %u; " 4788df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp "mapped ring = %p\n", 4798df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp (unsigned long long) addr, 4808df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_stream, 4818df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mapped_ring); 4828df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return -EINVAL; 4838df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 4848df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 4858df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return 0; 4868df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 4878df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#endif /* CONFIG_USB_XHCI_HCD_DEBUGGING */ 4888df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 4898df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* 4908df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Change an endpoint's internal structure so it supports stream IDs. The 4918df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * number of requested streams includes stream 0, which cannot be used by device 4928df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * drivers. 4938df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 4948df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * The number of stream contexts in the stream context array may be bigger than 4958df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * the number of streams the driver wants to use. This is because the number of 4968df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * stream context array entries must be a power of two. 4978df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 4988df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * We need a radix tree for mapping physical addresses of TRBs to which stream 4998df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * ID they belong to. We need to do this because the host controller won't tell 5008df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * us which stream ring the TRB came from. We could store the stream ID in an 5018df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * event data TRB, but that doesn't help us for the cancellation case, since the 5028df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * endpoint may stop before it reaches that event data TRB. 5038df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 5048df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * The radix tree maps the upper portion of the TRB DMA address to a ring 5058df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * segment that has the same upper portion of DMA addresses. For example, say I 5068df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * have segments of size 1KB, that are always 64-byte aligned. A segment may 5078df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * start at 0x10c91000 and end at 0x10c913f0. If I use the upper 10 bits, the 5088df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * key to the stream ID is 0x43244. I can use the DMA address of the TRB to 5098df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * pass the radix tree a key to get the right stream ID: 5108df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 5118df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 0x10c90fff >> 10 = 0x43243 5128df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 0x10c912c0 >> 10 = 0x43244 5138df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 0x10c91400 >> 10 = 0x43245 5148df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 5158df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Obviously, only those TRBs with DMA addresses that are within the segment 5168df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * will make the radix tree return the stream ID for that ring. 5178df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 5188df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Caveats for the radix tree: 5198df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 5208df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * The radix tree uses an unsigned long as a key pair. On 32-bit systems, an 5218df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * unsigned long will be 32-bits; on a 64-bit system an unsigned long will be 5228df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 64-bits. Since we only request 32-bit DMA addresses, we can use that as the 5238df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * key on 32-bit or 64-bit systems (it would also be fine if we asked for 64-bit 5248df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * PCI DMA addresses on a 64-bit system). There might be a problem on 32-bit 5258df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * extended systems (where the DMA address can be bigger than 32-bits), 5268df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * if we allow the PCI dma mask to be bigger than 32-bits. So don't do that. 5278df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 5288df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpstruct xhci_stream_info *xhci_alloc_stream_info(struct xhci_hcd *xhci, 5298df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned int num_stream_ctxs, 5308df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned int num_streams, gfp_t mem_flags) 5318df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 5328df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_info *stream_info; 5338df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u32 cur_stream; 5348df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ring *cur_ring; 5358df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp unsigned long key; 5368df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u64 addr; 5378df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp int ret; 5388df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5398df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Allocating %u streams and %u " 5408df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp "stream context array entries.\n", 5418df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp num_streams, num_stream_ctxs); 5428df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (xhci->cmd_ring_reserved_trbs == MAX_RSVD_CMD_TRBS) { 5438df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Command ring has no reserved TRBs available\n"); 5448df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return NULL; 5458df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 5468df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->cmd_ring_reserved_trbs++; 5478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5488df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info = kzalloc(sizeof(struct xhci_stream_info), mem_flags); 5498df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!stream_info) 5508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_trbs; 5518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->num_streams = num_streams; 5538df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->num_stream_ctxs = num_stream_ctxs; 5548df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5558df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Initialize the array of virtual pointers to stream rings. */ 5568df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_rings = kzalloc( 5578df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp sizeof(struct xhci_ring *)*num_streams, 5588df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mem_flags); 5598df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!stream_info->stream_rings) 5608df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_info; 5618df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5628df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Initialize the array of DMA addresses for stream rings for the HW. */ 5638df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_ctx_array = xhci_alloc_stream_ctx(xhci, 5648df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp num_stream_ctxs, &stream_info->ctx_array_dma, 5658df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp mem_flags); 5668df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!stream_info->stream_ctx_array) 5678df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_ctx; 5688df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp memset(stream_info->stream_ctx_array, 0, 5698df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp sizeof(struct xhci_stream_ctx)*num_stream_ctxs); 5708df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5718df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Allocate everything needed to free the stream rings later */ 5728df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->free_streams_command = 5738df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_alloc_command(xhci, true, true, mem_flags); 5748df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!stream_info->free_streams_command) 5758df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_ctx; 5768df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5778df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp INIT_RADIX_TREE(&stream_info->trb_address_map, GFP_ATOMIC); 5788df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5798df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Allocate rings for all the streams that the driver will use, 5808df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * and add their segment DMA addresses to the radix tree. 5818df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Stream 0 is reserved. 5828df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 5838df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (cur_stream = 1; cur_stream < num_streams; cur_stream++) { 5848df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_rings[cur_stream] = 5858df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_ring_alloc(xhci, 1, true, mem_flags); 5868df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_ring = stream_info->stream_rings[cur_stream]; 5878df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!cur_ring) 5888df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_rings; 589e9df17eb1408cfafa3d1844bfc7f22c7237b31b8Sarah Sharp cur_ring->stream_id = cur_stream; 5908df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Set deq ptr, cycle bit, and stream context type */ 5918df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr = cur_ring->first_seg->dma | 5928df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp SCT_FOR_CTX(SCT_PRI_TR) | 5938df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_ring->cycle_state; 5948df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_ctx_array[cur_stream].stream_ring = addr; 5958df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Setting stream %d ring ptr to 0x%08llx\n", 5968df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_stream, (unsigned long long) addr); 5978df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 5988df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp key = (unsigned long) 5998df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp (cur_ring->first_seg->dma >> SEGMENT_SHIFT); 6008df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ret = radix_tree_insert(&stream_info->trb_address_map, 6018df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp key, cur_ring); 6028df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (ret) { 6038df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_ring_free(xhci, cur_ring); 6048df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_rings[cur_stream] = NULL; 6058df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_rings; 6068df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 6078df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 6088df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Leave the other unused stream ring pointers in the stream context 6098df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * array initialized to zero. This will cause the xHC to give us an 6108df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * error if the device asks for a stream ID we don't have setup (if it 6118df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * was any other way, the host controller would assume the ring is 6128df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * "empty" and wait forever for data to be queued to that stream ID). 6138df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6148df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#if XHCI_DEBUG 6158df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Do a little test on the radix tree to make sure it returns the 6168df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * correct values. 6178df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6188df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (xhci_test_radix_tree(xhci, num_streams, stream_info)) 6198df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto cleanup_rings; 6208df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp#endif 6218df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6228df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return stream_info; 6238df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6248df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpcleanup_rings: 6258df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (cur_stream = 1; cur_stream < num_streams; cur_stream++) { 6268df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_ring = stream_info->stream_rings[cur_stream]; 6278df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (cur_ring) { 6288df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr = cur_ring->first_seg->dma; 6298df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp radix_tree_delete(&stream_info->trb_address_map, 6308df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr >> SEGMENT_SHIFT); 6318df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_ring_free(xhci, cur_ring); 6328df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_rings[cur_stream] = NULL; 6338df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 6348df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 6358df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_free_command(xhci, stream_info->free_streams_command); 6368df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpcleanup_ctx: 6378df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp kfree(stream_info->stream_rings); 6388df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpcleanup_info: 6398df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp kfree(stream_info); 6408df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpcleanup_trbs: 6418df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->cmd_ring_reserved_trbs--; 6428df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return NULL; 6438df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 6448df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* 6458df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Sets the MaxPStreams field and the Linear Stream Array field. 6468df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Sets the dequeue pointer to the stream context array. 6478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6488df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpvoid xhci_setup_streams_ep_input_ctx(struct xhci_hcd *xhci, 6498df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ep_ctx *ep_ctx, 6508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_info *stream_info) 6518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 6528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp u32 max_primary_streams; 6538df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* MaxPStreams is the number of stream context array entries, not the 6548df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * number we're actually using. Must be in 2^(MaxPstreams + 1) format. 6558df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * fls(0) = 0, fls(0x1) = 1, fls(0x10) = 2, fls(0x100) = 3, etc. 6568df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6578df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp max_primary_streams = fls(stream_info->num_stream_ctxs) - 2; 6588df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Setting number of stream ctx array entries to %u\n", 6598df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 1 << (max_primary_streams + 1)); 6608df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->ep_info &= ~EP_MAXPSTREAMS_MASK; 6618df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->ep_info |= EP_MAXPSTREAMS(max_primary_streams); 6628df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->ep_info |= EP_HAS_LSA; 6638df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->deq = stream_info->ctx_array_dma; 6648df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 6658df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6668df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* 6678df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Sets the MaxPStreams field and the Linear Stream Array field to 0. 6688df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Reinstalls the "normal" endpoint ring (at its previous dequeue mark, 6698df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * not at the beginning of the ring). 6708df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6718df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpvoid xhci_setup_no_streams_ep_input_ctx(struct xhci_hcd *xhci, 6728df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ep_ctx *ep_ctx, 6738df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_virt_ep *ep) 6748df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 6758df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_addr_t addr; 6768df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->ep_info &= ~EP_MAXPSTREAMS_MASK; 6778df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->ep_info &= ~EP_HAS_LSA; 6788df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr = xhci_trb_virt_to_dma(ep->ring->deq_seg, ep->ring->dequeue); 6798df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp ep_ctx->deq = addr | ep->ring->cycle_state; 6808df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 6818df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6828df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* Frees all stream contexts associated with the endpoint, 6838df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * 6848df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Caller should fix the endpoint context streams fields. 6858df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 6868df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharpvoid xhci_free_stream_info(struct xhci_hcd *xhci, 6878df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_stream_info *stream_info) 6888df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp{ 6898df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp int cur_stream; 6908df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp struct xhci_ring *cur_ring; 6918df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_addr_t addr; 6928df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6938df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!stream_info) 6948df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp return; 6958df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 6968df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (cur_stream = 1; cur_stream < stream_info->num_streams; 6978df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_stream++) { 6988df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp cur_ring = stream_info->stream_rings[cur_stream]; 6998df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (cur_ring) { 7008df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr = cur_ring->first_seg->dma; 7018df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp radix_tree_delete(&stream_info->trb_address_map, 7028df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp addr >> SEGMENT_SHIFT); 7038df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_ring_free(xhci, cur_ring); 7048df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_rings[cur_stream] = NULL; 7058df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 7068df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 7078df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_free_command(xhci, stream_info->free_streams_command); 7088df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->cmd_ring_reserved_trbs--; 7098df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (stream_info->stream_ctx_array) 7108df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_free_stream_ctx(xhci, 7118df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->num_stream_ctxs, 7128df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->stream_ctx_array, 7138df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp stream_info->ctx_array_dma); 7148df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 7158df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (stream_info) 7168df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp kfree(stream_info->stream_rings); 7178df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp kfree(stream_info); 7188df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp} 7198df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 7208df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 7218df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/***************** Device context manipulation *************************/ 7228df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 7236f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharpstatic void xhci_init_endpoint_timer(struct xhci_hcd *xhci, 7246f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp struct xhci_virt_ep *ep) 7256f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp{ 7266f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp init_timer(&ep->stop_cmd_timer); 7276f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp ep->stop_cmd_timer.data = (unsigned long) ep; 7286f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp ep->stop_cmd_timer.function = xhci_stop_endpoint_command_watchdog; 7296f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp ep->xhci = xhci; 7306f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp} 7316f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp 732d0e96f5a71a032ced0c35f521c1cbd67e816922aSarah Sharp/* All the xhci_tds in the ring's TD list should be freed at this point */ 7333ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharpvoid xhci_free_virt_device(struct xhci_hcd *xhci, int slot_id) 7343ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp{ 7353ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct xhci_virt_device *dev; 7363ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp int i; 7373ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7383ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Slot ID 0 is reserved */ 7393ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (slot_id == 0 || !xhci->devs[slot_id]) 7403ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return; 7413ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7423ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp dev = xhci->devs[slot_id]; 7438e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci->dcbaa->dev_context_ptrs[slot_id] = 0; 7443ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (!dev) 7453ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return; 7463ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp for (i = 0; i < 31; ++i) { 74863a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp if (dev->eps[i].ring) 74963a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp xhci_ring_free(xhci, dev->eps[i].ring); 7508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (dev->eps[i].stream_info) 7518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_free_stream_info(xhci, 7528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dev->eps[i].stream_info); 7538df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp } 7543ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 75574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp if (dev->ring_cache) { 75674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp for (i = 0; i < dev->num_rings_cached; i++) 75774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp xhci_ring_free(xhci, dev->ring_cache[i]); 75874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp kfree(dev->ring_cache); 75974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp } 76074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp 7613ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (dev->in_ctx) 762d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn xhci_free_container_ctx(xhci, dev->in_ctx); 7633ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (dev->out_ctx) 764d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn xhci_free_container_ctx(xhci, dev->out_ctx); 765d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 7663ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp kfree(xhci->devs[slot_id]); 767326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap xhci->devs[slot_id] = NULL; 7683ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp} 7693ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7703ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharpint xhci_alloc_virt_device(struct xhci_hcd *xhci, int slot_id, 7713ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct usb_device *udev, gfp_t flags) 7723ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp{ 7733ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct xhci_virt_device *dev; 77463a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp int i; 7753ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7763ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Slot ID 0 is reserved */ 7773ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (slot_id == 0 || xhci->devs[slot_id]) { 7783ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_warn(xhci, "Bad Slot ID %d\n", slot_id); 7793ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return 0; 7803ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp } 7813ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7823ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci->devs[slot_id] = kzalloc(sizeof(*xhci->devs[slot_id]), flags); 7833ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (!xhci->devs[slot_id]) 7843ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return 0; 7853ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp dev = xhci->devs[slot_id]; 7863ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 787d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn /* Allocate the (output) device context that will be used in the HC. */ 788d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn dev->out_ctx = xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_DEVICE, flags); 7893ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (!dev->out_ctx) 7903ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp goto fail; 791d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 792700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Slot %d output ctx = 0x%llx (dma)\n", slot_id, 793d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn (unsigned long long)dev->out_ctx->dma); 7943ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 7953ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Allocate the (input) device context for address device command */ 796d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn dev->in_ctx = xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_INPUT, flags); 7973ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (!dev->in_ctx) 7983ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp goto fail; 799d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 800700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Slot %d input ctx = 0x%llx (dma)\n", slot_id, 801d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn (unsigned long long)dev->in_ctx->dma); 8023ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8036f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp /* Initialize the cancellation list and watchdog timers for each ep */ 8046f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp for (i = 0; i < 31; i++) { 8056f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp xhci_init_endpoint_timer(xhci, &dev->eps[i]); 80663a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp INIT_LIST_HEAD(&dev->eps[i].cancelled_td_list); 8076f5165cf989387e84ef23122330b27cca1cbe831Sarah Sharp } 80863a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp 8093ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Allocate endpoint 0 ring */ 81063a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp dev->eps[0].ring = xhci_ring_alloc(xhci, 1, true, flags); 81163a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp if (!dev->eps[0].ring) 8123ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp goto fail; 8133ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 81474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* Allocate pointers to the ring cache */ 81574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp dev->ring_cache = kzalloc( 81674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp sizeof(struct xhci_ring *)*XHCI_MAX_RINGS_CACHED, 81774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp flags); 81874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp if (!dev->ring_cache) 81974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp goto fail; 82074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp dev->num_rings_cached = 0; 82174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp 822f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp init_completion(&dev->cmd_completion); 823913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp INIT_LIST_HEAD(&dev->cmd_list); 824f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 82528c2d2efb48dec2f0b050affae6d5787d6449e47Sarah Sharp /* Point to output device context in dcbaa. */ 826d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn xhci->dcbaa->dev_context_ptrs[slot_id] = dev->out_ctx->dma; 827700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Set slot id %d dcbaa entry %p to 0x%llx\n", 8283ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp slot_id, 8298e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp &xhci->dcbaa->dev_context_ptrs[slot_id], 83028c2d2efb48dec2f0b050affae6d5787d6449e47Sarah Sharp (unsigned long long) xhci->dcbaa->dev_context_ptrs[slot_id]); 8313ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8323ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return 1; 8333ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharpfail: 8343ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_free_virt_device(xhci, slot_id); 8353ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return 0; 8363ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp} 8373ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8382d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharpvoid xhci_copy_ep0_dequeue_into_input_ctx(struct xhci_hcd *xhci, 8392d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp struct usb_device *udev) 8402d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp{ 8412d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp struct xhci_virt_device *virt_dev; 8422d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp struct xhci_ep_ctx *ep0_ctx; 8432d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp struct xhci_ring *ep_ring; 8442d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp 8452d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp virt_dev = xhci->devs[udev->slot_id]; 8462d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp ep0_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, 0); 8472d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp ep_ring = virt_dev->eps[0].ring; 8482d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp /* 8492d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp * FIXME we don't keep track of the dequeue pointer very well after a 8502d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp * Set TR dequeue pointer, so we're setting the dequeue pointer of the 8512d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp * host to our enqueue pointer. This should only be called after a 8522d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp * configured device has reset, so all control transfers should have 8532d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp * been completed or cancelled before the reset. 8542d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp */ 8552d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp ep0_ctx->deq = xhci_trb_virt_to_dma(ep_ring->enq_seg, ep_ring->enqueue); 8562d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp ep0_ctx->deq |= ep_ring->cycle_state; 8572d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp} 8582d1ee5904bb51ea33c6a6f4bec6b6a243e2432a8Sarah Sharp 8593ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp/* Setup an xHCI virtual device for a Set Address command */ 8603ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharpint xhci_setup_addressable_virt_dev(struct xhci_hcd *xhci, struct usb_device *udev) 8613ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp{ 8623ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct xhci_virt_device *dev; 8633ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct xhci_ep_ctx *ep0_ctx; 8643ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp struct usb_device *top_dev; 865d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_slot_ctx *slot_ctx; 866d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn struct xhci_input_control_ctx *ctrl_ctx; 8673ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8683ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp dev = xhci->devs[udev->slot_id]; 8693ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Slot ID 0 is reserved */ 8703ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (udev->slot_id == 0 || !dev) { 8713ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_warn(xhci, "Slot ID %d is not assigned to this device\n", 8723ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp udev->slot_id); 8733ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return -EINVAL; 8743ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp } 875d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ep0_ctx = xhci_get_ep_ctx(xhci, dev->in_ctx, 0); 876d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctrl_ctx = xhci_get_input_control_ctx(xhci, dev->in_ctx); 877d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx = xhci_get_slot_ctx(xhci, dev->in_ctx); 8783ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8793ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* 2) New slot context and endpoint 0 context are valid*/ 880d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ctrl_ctx->add_flags = SLOT_FLAG | EP0_FLAG; 8813ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8823ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* 3) Only the control endpoint is valid - one endpoint context */ 883d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info |= LAST_CTX(1); 8843ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 8854a0cd9670f22c308bc5936ee9734d8ee3f1baa52Sarah Sharp slot_ctx->dev_info |= (u32) udev->route; 8863ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp switch (udev->speed) { 8873ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp case USB_SPEED_SUPER: 888d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info |= (u32) SLOT_SPEED_SS; 8893ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp break; 8903ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp case USB_SPEED_HIGH: 891d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info |= (u32) SLOT_SPEED_HS; 8923ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp break; 8933ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp case USB_SPEED_FULL: 894d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info |= (u32) SLOT_SPEED_FS; 8953ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp break; 8963ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp case USB_SPEED_LOW: 897d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info |= (u32) SLOT_SPEED_LS; 8983ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp break; 899551cdbbeb118bd5ed301f8749aef69219284399bGreg Kroah-Hartman case USB_SPEED_WIRELESS: 9003ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_dbg(xhci, "FIXME xHCI doesn't support wireless speeds\n"); 9013ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return -EINVAL; 9023ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp break; 9033ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp default: 9043ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Speed was set earlier, this shouldn't happen. */ 9053ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp BUG(); 9063ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp } 9073ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Find the root hub port this device is under */ 9083ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp for (top_dev = udev; top_dev->parent && top_dev->parent->parent; 9093ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp top_dev = top_dev->parent) 9103ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Found device below root hub */; 911d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->dev_info2 |= (u32) ROOT_HUB_PORT(top_dev->portnum); 9123ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_dbg(xhci, "Set root hub portnum to %d\n", top_dev->portnum); 9133ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 9143ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Is this a LS/FS device under a HS hub? */ 9153ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if ((udev->speed == USB_SPEED_LOW || udev->speed == USB_SPEED_FULL) && 9163ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp udev->tt) { 917d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->tt_info = udev->tt->hub->slot_id; 918d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn slot_ctx->tt_info |= udev->ttport << 8; 91907b6de102843b717ecd962cf35ec4ad9b1fbed9dSarah Sharp if (udev->tt->multi) 92007b6de102843b717ecd962cf35ec4ad9b1fbed9dSarah Sharp slot_ctx->dev_info |= DEV_MTT; 9213ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp } 922700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "udev->tt = %p\n", udev->tt); 9233ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_dbg(xhci, "udev->ttport = 0x%x\n", udev->ttport); 9243ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 9253ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Step 4 - ring already allocated */ 9263ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Step 5 */ 9273ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp ep0_ctx->ep_info2 = EP_TYPE(CTRL_EP); 9283ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* 9293ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp * XXX: Not sure about wireless USB devices. 9303ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp */ 93147aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp switch (udev->speed) { 93247aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp case USB_SPEED_SUPER: 9333ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp ep0_ctx->ep_info2 |= MAX_PACKET(512); 93447aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp break; 93547aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp case USB_SPEED_HIGH: 93647aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp /* USB core guesses at a 64-byte max packet first for FS devices */ 93747aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp case USB_SPEED_FULL: 93847aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp ep0_ctx->ep_info2 |= MAX_PACKET(64); 93947aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp break; 94047aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp case USB_SPEED_LOW: 9413ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp ep0_ctx->ep_info2 |= MAX_PACKET(8); 94247aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp break; 943551cdbbeb118bd5ed301f8749aef69219284399bGreg Kroah-Hartman case USB_SPEED_WIRELESS: 94447aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp xhci_dbg(xhci, "FIXME xHCI doesn't support wireless speeds\n"); 94547aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp return -EINVAL; 94647aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp break; 94747aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp default: 94847aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp /* New speed? */ 94947aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp BUG(); 95047aded8ade9fee6779b121b2b156235f261239d7Sarah Sharp } 9513ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* EP 0 can handle "burst" sizes of 1, so Max Burst Size field is 0 */ 9523ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp ep0_ctx->ep_info2 |= MAX_BURST(0); 9533ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp ep0_ctx->ep_info2 |= ERROR_COUNT(3); 9543ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 9558e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp ep0_ctx->deq = 95663a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp dev->eps[0].ring->first_seg->dma; 95763a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp ep0_ctx->deq |= dev->eps[0].ring->cycle_state; 9583ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 9593ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* Steps 7 and 8 were done in xhci_alloc_virt_device() */ 9603ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 9613ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp return 0; 9623ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp} 9633ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 964f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp/* Return the polling or NAK interval. 965f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * 966f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * The polling interval is expressed in "microframes". If xHCI's Interval field 967f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * is set to N, it will service the endpoint every 2^(Interval)*125us. 968f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * 969f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * The NAK interval is one NAK per 1 to 255 microframes, or no NAKs if interval 970f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * is set to 0. 971f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp */ 972f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharpstatic inline unsigned int xhci_get_endpoint_interval(struct usb_device *udev, 973f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct usb_host_endpoint *ep) 974f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp{ 975f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp unsigned int interval = 0; 976f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 977f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp switch (udev->speed) { 978f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_HIGH: 979f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Max NAK rate */ 980f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (usb_endpoint_xfer_control(&ep->desc) || 981f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp usb_endpoint_xfer_bulk(&ep->desc)) 982f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = ep->desc.bInterval; 983f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Fall through - SS and HS isoc/int have same decoding */ 984f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_SUPER: 985f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (usb_endpoint_xfer_int(&ep->desc) || 986f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp usb_endpoint_xfer_isoc(&ep->desc)) { 987f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (ep->desc.bInterval == 0) 988f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = 0; 989f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp else 990f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = ep->desc.bInterval - 1; 991f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (interval > 15) 992f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = 15; 993f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (interval != ep->desc.bInterval + 1) 994f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp dev_warn(&udev->dev, "ep %#x - rounding interval to %d microframes\n", 995f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep->desc.bEndpointAddress, 1 << interval); 996f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 997f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp break; 998f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Convert bInterval (in 1-255 frames) to microframes and round down to 999f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * nearest power of 2. 1000f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp */ 1001f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_FULL: 1002f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_LOW: 1003f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (usb_endpoint_xfer_int(&ep->desc) || 1004f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp usb_endpoint_xfer_isoc(&ep->desc)) { 1005f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = fls(8*ep->desc.bInterval) - 1; 1006f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (interval > 10) 1007f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = 10; 1008f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (interval < 3) 1009f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp interval = 3; 1010f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if ((1 << interval) != 8*ep->desc.bInterval) 10119ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp dev_warn(&udev->dev, 10129ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp "ep %#x - rounding interval" 10139ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp " to %d microframes, " 10149ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp "ep desc says %d microframes\n", 10159ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp ep->desc.bEndpointAddress, 10169ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp 1 << interval, 10179ce669a8924c61b7321d6e2f27ed67bcd46c1fbbSarah Sharp 8*ep->desc.bInterval); 1018f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 1019f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp break; 1020f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp default: 1021f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp BUG(); 1022f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 1023f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp return EP_INTERVAL(interval); 1024f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp} 1025f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1026c30c791c946a14a03e87819eced562ed28711961Sarah Sharp/* The "Mult" field in the endpoint context is only set for SuperSpeed isoc eps. 10271cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp * High speed endpoint descriptors can define "the number of additional 10281cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp * transaction opportunities per microframe", but that goes in the Max Burst 10291cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp * endpoint context field. 10301cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp */ 10311cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharpstatic inline u32 xhci_get_endpoint_mult(struct usb_device *udev, 10321cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp struct usb_host_endpoint *ep) 10331cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp{ 1034c30c791c946a14a03e87819eced562ed28711961Sarah Sharp if (udev->speed != USB_SPEED_SUPER || 1035c30c791c946a14a03e87819eced562ed28711961Sarah Sharp !usb_endpoint_xfer_isoc(&ep->desc)) 10361cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp return 0; 1037842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern return ep->ss_ep_comp.bmAttributes; 10381cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp} 10391cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp 1040f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharpstatic inline u32 xhci_get_endpoint_type(struct usb_device *udev, 1041f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct usb_host_endpoint *ep) 1042f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp{ 1043f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp int in; 1044f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp u32 type; 1045f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1046f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp in = usb_endpoint_dir_in(&ep->desc); 1047f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (usb_endpoint_xfer_control(&ep->desc)) { 1048f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(CTRL_EP); 1049f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } else if (usb_endpoint_xfer_bulk(&ep->desc)) { 1050f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (in) 1051f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(BULK_IN_EP); 1052f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp else 1053f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(BULK_OUT_EP); 1054f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } else if (usb_endpoint_xfer_isoc(&ep->desc)) { 1055f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (in) 1056f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(ISOC_IN_EP); 1057f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp else 1058f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(ISOC_OUT_EP); 1059f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } else if (usb_endpoint_xfer_int(&ep->desc)) { 1060f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (in) 1061f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(INT_IN_EP); 1062f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp else 1063f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp type = EP_TYPE(INT_OUT_EP); 1064f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } else { 1065f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp BUG(); 1066f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 1067f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp return type; 1068f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp} 1069f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 10709238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp/* Return the maximum endpoint service interval time (ESIT) payload. 10719238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * Basically, this is the maxpacket size, multiplied by the burst size 10729238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * and mult size. 10739238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp */ 10749238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharpstatic inline u32 xhci_get_max_esit_payload(struct xhci_hcd *xhci, 10759238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp struct usb_device *udev, 10769238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp struct usb_host_endpoint *ep) 10779238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp{ 10789238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp int max_burst; 10799238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp int max_packet; 10809238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 10819238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp /* Only applies for interrupt or isochronous endpoints */ 10829238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp if (usb_endpoint_xfer_control(&ep->desc) || 10839238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp usb_endpoint_xfer_bulk(&ep->desc)) 10849238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp return 0; 10859238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 1086842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern if (udev->speed == USB_SPEED_SUPER) 1087842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern return ep->ss_ep_comp.wBytesPerInterval; 10889238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 10899238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp max_packet = ep->desc.wMaxPacketSize & 0x3ff; 10909238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp max_burst = (ep->desc.wMaxPacketSize & 0x1800) >> 11; 10919238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp /* A 0 in max burst means 1 transfer per ESIT */ 10929238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp return max_packet * (max_burst + 1); 10939238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp} 10949238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 10958df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp/* Set up an endpoint with one ring segment. Do not allocate stream rings. 10968df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * Drivers will have to call usb_alloc_streams() to do that. 10978df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 1098f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharpint xhci_endpoint_init(struct xhci_hcd *xhci, 1099f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct xhci_virt_device *virt_dev, 1100f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct usb_device *udev, 1101f88ba78d9ac0e1f583da4cada80b8816ca761a3fSarah Sharp struct usb_host_endpoint *ep, 1102f88ba78d9ac0e1f583da4cada80b8816ca761a3fSarah Sharp gfp_t mem_flags) 1103f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp{ 1104f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp unsigned int ep_index; 1105f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct xhci_ep_ctx *ep_ctx; 1106f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct xhci_ring *ep_ring; 1107f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp unsigned int max_packet; 1108f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp unsigned int max_burst; 11099238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp u32 max_esit_payload; 1110f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1111f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_index = xhci_get_endpoint_index(&ep->desc); 1112d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ep_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, ep_index); 1113f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1114f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Set up the endpoint ring */ 111563a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp virt_dev->eps[ep_index].new_ring = 111663a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp xhci_ring_alloc(xhci, 1, true, mem_flags); 111774f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp if (!virt_dev->eps[ep_index].new_ring) { 111874f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp /* Attempt to use the ring cache */ 111974f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp if (virt_dev->num_rings_cached == 0) 112074f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp return -ENOMEM; 112174f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp virt_dev->eps[ep_index].new_ring = 112274f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp virt_dev->ring_cache[virt_dev->num_rings_cached]; 112374f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp virt_dev->ring_cache[virt_dev->num_rings_cached] = NULL; 112474f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp virt_dev->num_rings_cached--; 112574f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp xhci_reinit_cached_ring(xhci, virt_dev->eps[ep_index].new_ring); 112674f9fe21e0440066eb337b9f644238cb3050b91cSarah Sharp } 112763a0d9abd18cdcf5a985029c266c6bfe0511768fSarah Sharp ep_ring = virt_dev->eps[ep_index].new_ring; 11288e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp ep_ctx->deq = ep_ring->first_seg->dma | ep_ring->cycle_state; 1129f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1130f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info = xhci_get_endpoint_interval(udev, ep); 11311cf62246c0e394021e494e0a8f1013e80db1a1a9Sarah Sharp ep_ctx->ep_info |= EP_MULT(xhci_get_endpoint_mult(udev, ep)); 1132f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1133f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* FIXME dig Mult and streams info out of ep companion desc */ 1134f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 113547692d179f7a88794bcd302e53ca7899d7592db9Sarah Sharp /* Allow 3 retries for everything but isoc; 113647692d179f7a88794bcd302e53ca7899d7592db9Sarah Sharp * error count = 0 means infinite retries. 113747692d179f7a88794bcd302e53ca7899d7592db9Sarah Sharp */ 1138f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (!usb_endpoint_xfer_isoc(&ep->desc)) 1139f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 = ERROR_COUNT(3); 1140f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp else 114147692d179f7a88794bcd302e53ca7899d7592db9Sarah Sharp ep_ctx->ep_info2 = ERROR_COUNT(1); 1142f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1143f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 |= xhci_get_endpoint_type(udev, ep); 1144f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1145f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Set the max packet size and max burst */ 1146f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp switch (udev->speed) { 1147f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_SUPER: 1148f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp max_packet = ep->desc.wMaxPacketSize; 1149f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 |= MAX_PACKET(max_packet); 1150b10de142119a676552df3f0d2e3a9d647036c26aSarah Sharp /* dig out max burst from ep companion desc */ 1151842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern max_packet = ep->ss_ep_comp.bMaxBurst; 1152842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern if (!max_packet) 1153842f16905dfc6743c1dd80c3d29b49ba3ab7f7c8Alan Stern xhci_warn(xhci, "WARN no SS endpoint bMaxBurst\n"); 1154b10de142119a676552df3f0d2e3a9d647036c26aSarah Sharp ep_ctx->ep_info2 |= MAX_BURST(max_packet); 1155f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp break; 1156f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_HIGH: 1157f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* bits 11:12 specify the number of additional transaction 1158f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * opportunities per microframe (USB 2.0, section 9.6.6) 1159f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp */ 1160f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp if (usb_endpoint_xfer_isoc(&ep->desc) || 1161f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp usb_endpoint_xfer_int(&ep->desc)) { 1162f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp max_burst = (ep->desc.wMaxPacketSize & 0x1800) >> 11; 1163f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 |= MAX_BURST(max_burst); 1164f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 1165f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Fall through */ 1166f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_FULL: 1167f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp case USB_SPEED_LOW: 1168f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp max_packet = ep->desc.wMaxPacketSize & 0x3ff; 1169f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 |= MAX_PACKET(max_packet); 1170f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp break; 1171f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp default: 1172f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp BUG(); 1173f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp } 11749238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp max_esit_payload = xhci_get_max_esit_payload(xhci, udev, ep); 11759238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp ep_ctx->tx_info = MAX_ESIT_PAYLOAD_FOR_EP(max_esit_payload); 11769238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 11779238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp /* 11789238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * XXX no idea how to calculate the average TRB buffer length for bulk 11799238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * endpoints, as the driver gives us no clue how big each scatter gather 11809238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * list entry (or buffer) is going to be. 11819238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * 11829238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * For isochronous and interrupt endpoints, we set it to the max 11839238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * available, until we have new API in the USB core to allow drivers to 11849238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * declare how much bandwidth they actually need. 11859238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * 11869238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * Normally, it would be calculated by taking the total of the buffer 11879238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * lengths in the TD and then dividing by the number of TRBs in a TD, 11889238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * including link TRBs, No-op TRBs, and Event data TRBs. Since we don't 11899238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * use Event Data TRBs, and we don't chain in a link TRB on short 11909238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp * transfers, we're basically dividing by 1. 11919238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp */ 11929238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp ep_ctx->tx_info |= AVG_TRB_LENGTH_FOR_EP(max_esit_payload); 11939238f25d5d32a435277eb234ec82bacdd5daed41Sarah Sharp 1194f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* FIXME Debug endpoint context */ 1195f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp return 0; 1196f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp} 1197f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1198f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharpvoid xhci_endpoint_zero(struct xhci_hcd *xhci, 1199f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct xhci_virt_device *virt_dev, 1200f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct usb_host_endpoint *ep) 1201f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp{ 1202f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp unsigned int ep_index; 1203f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp struct xhci_ep_ctx *ep_ctx; 1204f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1205f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_index = xhci_get_endpoint_index(&ep->desc); 1206d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn ep_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, ep_index); 1207f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1208f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info = 0; 1209f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->ep_info2 = 0; 12108e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp ep_ctx->deq = 0; 1211f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp ep_ctx->tx_info = 0; 1212f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp /* Don't free the endpoint ring until the set interface or configuration 1213f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp * request succeeds. 1214f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp */ 1215f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp} 1216f94e0186312b0fc39f41eed4e21836ed74b7efe1Sarah Sharp 1217f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp/* Copy output xhci_ep_ctx to the input xhci_ep_ctx copy. 1218f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp * Useful when you want to change one particular aspect of the endpoint and then 1219f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp * issue a configure endpoint command. 1220f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp */ 1221f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharpvoid xhci_endpoint_copy(struct xhci_hcd *xhci, 1222913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_container_ctx *in_ctx, 1223913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_container_ctx *out_ctx, 1224913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp unsigned int ep_index) 1225f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp{ 1226f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp struct xhci_ep_ctx *out_ep_ctx; 1227f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp struct xhci_ep_ctx *in_ep_ctx; 1228f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1229913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp out_ep_ctx = xhci_get_ep_ctx(xhci, out_ctx, ep_index); 1230913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp in_ep_ctx = xhci_get_ep_ctx(xhci, in_ctx, ep_index); 1231f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1232f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_ep_ctx->ep_info = out_ep_ctx->ep_info; 1233f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_ep_ctx->ep_info2 = out_ep_ctx->ep_info2; 1234f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_ep_ctx->deq = out_ep_ctx->deq; 1235f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_ep_ctx->tx_info = out_ep_ctx->tx_info; 1236f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp} 1237f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1238f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp/* Copy output xhci_slot_ctx to the input xhci_slot_ctx. 1239f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp * Useful when you want to change one particular aspect of the endpoint and then 1240f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp * issue a configure endpoint command. Only the context entries field matters, 1241f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp * but we'll copy the whole thing anyway. 1242f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp */ 1243913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharpvoid xhci_slot_copy(struct xhci_hcd *xhci, 1244913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_container_ctx *in_ctx, 1245913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_container_ctx *out_ctx) 1246f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp{ 1247f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp struct xhci_slot_ctx *in_slot_ctx; 1248f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp struct xhci_slot_ctx *out_slot_ctx; 1249f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1250913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp in_slot_ctx = xhci_get_slot_ctx(xhci, in_ctx); 1251913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp out_slot_ctx = xhci_get_slot_ctx(xhci, out_ctx); 1252f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1253f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_slot_ctx->dev_info = out_slot_ctx->dev_info; 1254f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_slot_ctx->dev_info2 = out_slot_ctx->dev_info2; 1255f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_slot_ctx->tt_info = out_slot_ctx->tt_info; 1256f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp in_slot_ctx->dev_state = out_slot_ctx->dev_state; 1257f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp} 1258f2217e8edd95b0428d8123d426e0097a5e955f9fSarah Sharp 1259254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn/* Set up the scratchpad buffer array and scratchpad buffers, if needed. */ 1260254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Younstatic int scratchpad_alloc(struct xhci_hcd *xhci, gfp_t flags) 1261254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn{ 1262254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn int i; 1263254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn struct device *dev = xhci_to_hcd(xhci)->self.controller; 1264254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn int num_sp = HCS_MAX_SCRATCHPAD(xhci->hcs_params2); 1265254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1266254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci_dbg(xhci, "Allocating %d scratchpad buffers\n", num_sp); 1267254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1268254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!num_sp) 1269254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn return 0; 1270254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1271254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad = kzalloc(sizeof(*xhci->scratchpad), flags); 1272254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!xhci->scratchpad) 1273254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail_sp; 1274254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1275254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_array = 1276254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn pci_alloc_consistent(to_pci_dev(dev), 1277254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn num_sp * sizeof(u64), 1278254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn &xhci->scratchpad->sp_dma); 1279254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!xhci->scratchpad->sp_array) 1280254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail_sp2; 1281254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1282254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_buffers = kzalloc(sizeof(void *) * num_sp, flags); 1283254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!xhci->scratchpad->sp_buffers) 1284254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail_sp3; 1285254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1286254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma_buffers = 1287254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kzalloc(sizeof(dma_addr_t) * num_sp, flags); 1288254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1289254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!xhci->scratchpad->sp_dma_buffers) 1290254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail_sp4; 1291254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1292254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->dcbaa->dev_context_ptrs[0] = xhci->scratchpad->sp_dma; 1293254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn for (i = 0; i < num_sp; i++) { 1294254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn dma_addr_t dma; 1295254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn void *buf = pci_alloc_consistent(to_pci_dev(dev), 1296254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->page_size, &dma); 1297254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!buf) 1298254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail_sp5; 1299254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1300254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_array[i] = dma; 1301254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_buffers[i] = buf; 1302254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma_buffers[i] = dma; 1303254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn } 1304254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1305254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn return 0; 1306254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1307254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn fail_sp5: 1308254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn for (i = i - 1; i >= 0; i--) { 1309254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn pci_free_consistent(to_pci_dev(dev), xhci->page_size, 1310254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_buffers[i], 1311254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma_buffers[i]); 1312254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn } 1313254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad->sp_dma_buffers); 1314254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1315254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn fail_sp4: 1316254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad->sp_buffers); 1317254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1318254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn fail_sp3: 1319254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn pci_free_consistent(to_pci_dev(dev), num_sp * sizeof(u64), 1320254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_array, 1321254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma); 1322254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1323254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn fail_sp2: 1324254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad); 1325254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad = NULL; 1326254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1327254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn fail_sp: 1328254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn return -ENOMEM; 1329254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn} 1330254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1331254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Younstatic void scratchpad_free(struct xhci_hcd *xhci) 1332254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn{ 1333254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn int num_sp; 1334254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn int i; 1335254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller); 1336254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1337254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (!xhci->scratchpad) 1338254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn return; 1339254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1340254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn num_sp = HCS_MAX_SCRATCHPAD(xhci->hcs_params2); 1341254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1342254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn for (i = 0; i < num_sp; i++) { 1343254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn pci_free_consistent(pdev, xhci->page_size, 1344254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_buffers[i], 1345254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma_buffers[i]); 1346254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn } 1347254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad->sp_dma_buffers); 1348254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad->sp_buffers); 1349254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn pci_free_consistent(pdev, num_sp * sizeof(u64), 1350254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_array, 1351254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad->sp_dma); 1352254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn kfree(xhci->scratchpad); 1353254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn xhci->scratchpad = NULL; 1354254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn} 1355254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 1356913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharpstruct xhci_command *xhci_alloc_command(struct xhci_hcd *xhci, 1357a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp bool allocate_in_ctx, bool allocate_completion, 1358a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp gfp_t mem_flags) 1359913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp{ 1360913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_command *command; 1361913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 1362913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp command = kzalloc(sizeof(*command), mem_flags); 1363913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp if (!command) 1364913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp return NULL; 1365913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 1366a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp if (allocate_in_ctx) { 1367a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp command->in_ctx = 1368a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_INPUT, 1369a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp mem_flags); 1370a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp if (!command->in_ctx) { 1371a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp kfree(command); 1372a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp return NULL; 1373a1d78c16bd31a715785e21967ac6110b386a3c1fSarah Sharp } 137406e182911da95a304eaab71288a47bc5c799c4ebJulia Lawall } 1375913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 1376913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp if (allocate_completion) { 1377913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp command->completion = 1378913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp kzalloc(sizeof(struct completion), mem_flags); 1379913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp if (!command->completion) { 1380913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp xhci_free_container_ctx(xhci, command->in_ctx); 138106e182911da95a304eaab71288a47bc5c799c4ebJulia Lawall kfree(command); 1382913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp return NULL; 1383913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp } 1384913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp init_completion(command->completion); 1385913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp } 1386913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 1387913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp command->status = 0; 1388913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp INIT_LIST_HEAD(&command->cmd_list); 1389913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp return command; 1390913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp} 1391913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 1392913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharpvoid xhci_free_command(struct xhci_hcd *xhci, 1393913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp struct xhci_command *command) 1394913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp{ 1395913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp xhci_free_container_ctx(xhci, 1396913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp command->in_ctx); 1397913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp kfree(command->completion); 1398913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp kfree(command); 1399913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp} 1400913a8a344ffcaf0b4a586d6662a2c66a7106557dSarah Sharp 140166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharpvoid xhci_mem_cleanup(struct xhci_hcd *xhci) 140266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp{ 14030ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller); 14040ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp int size; 14053ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp int i; 14060ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 14070ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Free the Event Ring Segment Table and the actual Event Ring */ 1408d94c05e33d9212ee67b8d4998f984cc71df8168bSarah Sharp if (xhci->ir_set) { 1409d94c05e33d9212ee67b8d4998f984cc71df8168bSarah Sharp xhci_writel(xhci, 0, &xhci->ir_set->erst_size); 1410d94c05e33d9212ee67b8d4998f984cc71df8168bSarah Sharp xhci_write_64(xhci, 0, &xhci->ir_set->erst_base); 1411d94c05e33d9212ee67b8d4998f984cc71df8168bSarah Sharp xhci_write_64(xhci, 0, &xhci->ir_set->erst_dequeue); 1412d94c05e33d9212ee67b8d4998f984cc71df8168bSarah Sharp } 14130ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp size = sizeof(struct xhci_erst_entry)*(xhci->erst.num_entries); 14140ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (xhci->erst.entries) 14150ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp pci_free_consistent(pdev, size, 14160ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.entries, xhci->erst.erst_dma_addr); 14170ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.entries = NULL; 14180ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Freed ERST\n"); 14190ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (xhci->event_ring) 14200ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_ring_free(xhci, xhci->event_ring); 14210ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->event_ring = NULL; 14220ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Freed event ring\n"); 14230ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 14248e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_write_64(xhci, 0, &xhci->op_regs->cmd_ring); 14250ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (xhci->cmd_ring) 14260ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_ring_free(xhci, xhci->cmd_ring); 14270ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->cmd_ring = NULL; 14280ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Freed command ring\n"); 14293ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 14303ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp for (i = 1; i < MAX_HC_SLOTS; ++i) 14313ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_free_virt_device(xhci, i); 14323ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 14330ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (xhci->segment_pool) 14340ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp dma_pool_destroy(xhci->segment_pool); 14350ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->segment_pool = NULL; 14360ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Freed segment pool\n"); 14373ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 14383ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (xhci->device_pool) 14393ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp dma_pool_destroy(xhci->device_pool); 14403ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci->device_pool = NULL; 14413ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci_dbg(xhci, "Freed device context pool\n"); 14423ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 14438df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (xhci->small_streams_pool) 14448df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_pool_destroy(xhci->small_streams_pool); 14458df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->small_streams_pool = NULL; 14468df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Freed small stream array pool\n"); 14478df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 14488df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (xhci->medium_streams_pool) 14498df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_pool_destroy(xhci->medium_streams_pool); 14508df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->medium_streams_pool = NULL; 14518df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci_dbg(xhci, "Freed medium stream array pool\n"); 14528df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 14538e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_write_64(xhci, 0, &xhci->op_regs->dcbaa_ptr); 1454a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp if (xhci->dcbaa) 1455a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp pci_free_consistent(pdev, sizeof(*xhci->dcbaa), 1456a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp xhci->dcbaa, xhci->dcbaa->dma); 1457a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp xhci->dcbaa = NULL; 14583ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp 14595294bea40666db5c5d6c336b8e4e55d69fa576caSarah Sharp scratchpad_free(xhci); 146066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci->page_size = 0; 146166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci->page_shift = 0; 146266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp} 146366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 14646648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharpstatic int xhci_test_trb_in_td(struct xhci_hcd *xhci, 14656648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *input_seg, 14666648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp union xhci_trb *start_trb, 14676648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp union xhci_trb *end_trb, 14686648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp dma_addr_t input_dma, 14696648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *result_seg, 14706648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp char *test_name, int test_number) 14716648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp{ 14726648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp unsigned long long start_dma; 14736648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp unsigned long long end_dma; 14746648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *seg; 14756648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 14766648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp start_dma = xhci_trb_virt_to_dma(input_seg, start_trb); 14776648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp end_dma = xhci_trb_virt_to_dma(input_seg, end_trb); 14786648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 14796648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp seg = trb_in_td(input_seg, start_trb, end_trb, input_dma); 14806648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp if (seg != result_seg) { 14816648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci_warn(xhci, "WARN: %s TRB math test %d failed!\n", 14826648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp test_name, test_number); 14836648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci_warn(xhci, "Tested TRB math w/ seg %p and " 14846648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp "input DMA 0x%llx\n", 14856648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp input_seg, 14866648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp (unsigned long long) input_dma); 14876648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci_warn(xhci, "starting TRB %p (0x%llx DMA), " 14886648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp "ending TRB %p (0x%llx DMA)\n", 14896648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp start_trb, start_dma, 14906648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp end_trb, end_dma); 14916648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci_warn(xhci, "Expected seg %p, got seg %p\n", 14926648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp result_seg, seg); 14936648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp return -1; 14946648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp } 14956648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp return 0; 14966648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp} 14976648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 14986648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp/* TRB math checks for xhci_trb_in_td(), using the command and event rings. */ 14996648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharpstatic int xhci_check_trb_in_td_math(struct xhci_hcd *xhci, gfp_t mem_flags) 15006648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp{ 15016648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct { 15026648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp dma_addr_t input_dma; 15036648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *result_seg; 15046648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp } simple_test_vector [] = { 15056648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* A zeroed DMA field should fail */ 15066648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { 0, NULL }, 15076648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* One TRB before the ring start should fail */ 15086648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma - 16, NULL }, 15096648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* One byte before the ring start should fail */ 15106648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma - 1, NULL }, 15116648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* Starting TRB should succeed */ 15126648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma, xhci->event_ring->first_seg }, 15136648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* Ending TRB should succeed */ 15146648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 1)*16, 15156648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci->event_ring->first_seg }, 15166648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* One byte after the ring end should fail */ 15176648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 1)*16 + 1, NULL }, 15186648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* One TRB after the ring end should fail */ 15196648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT)*16, NULL }, 15206648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* An address of all ones should fail */ 15216648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { (dma_addr_t) (~0), NULL }, 15226648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }; 15236648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct { 15246648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *input_seg; 15256648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp union xhci_trb *start_trb; 15266648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp union xhci_trb *end_trb; 15276648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp dma_addr_t input_dma; 15286648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp struct xhci_segment *result_seg; 15296648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp } complex_test_vector [] = { 15306648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* Test feeding a valid DMA address from a different ring */ 15316648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15326648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = xhci->event_ring->first_seg->trbs, 15336648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1], 15346648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->cmd_ring->first_seg->dma, 15356648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15366648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15376648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* Test feeding a valid end TRB from a different ring */ 15386648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15396648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = xhci->event_ring->first_seg->trbs, 15406648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->cmd_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1], 15416648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->cmd_ring->first_seg->dma, 15426648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15436648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15446648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* Test feeding a valid start and end TRB from a different ring */ 15456648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15466648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = xhci->cmd_ring->first_seg->trbs, 15476648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->cmd_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1], 15486648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->cmd_ring->first_seg->dma, 15496648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15506648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15516648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* TRB in this ring, but after this TD */ 15526648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15536648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = &xhci->event_ring->first_seg->trbs[0], 15546648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[3], 15556648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->event_ring->first_seg->dma + 4*16, 15566648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15576648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15586648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* TRB in this ring, but before this TD */ 15596648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15606648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = &xhci->event_ring->first_seg->trbs[3], 15616648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[6], 15626648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->event_ring->first_seg->dma + 2*16, 15636648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15646648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15656648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* TRB in this ring, but after this wrapped TD */ 15666648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15676648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3], 15686648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[1], 15696648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->event_ring->first_seg->dma + 2*16, 15706648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15716648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15726648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* TRB in this ring, but before this wrapped TD */ 15736648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15746648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3], 15756648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[1], 15766648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 4)*16, 15776648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15786648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15796648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp /* TRB not in this ring, and we have a wrapped TD */ 15806648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp { .input_seg = xhci->event_ring->first_seg, 15816648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3], 15826648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .end_trb = &xhci->event_ring->first_seg->trbs[1], 15836648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .input_dma = xhci->cmd_ring->first_seg->dma + 2*16, 15846648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp .result_seg = NULL, 15856648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }, 15866648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp }; 15876648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 15886648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp unsigned int num_tests; 15896648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp int i, ret; 15906648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 1591e10fa4787f1fb9c8738dff955c272f30b7b63134Kulikov Vasiliy num_tests = ARRAY_SIZE(simple_test_vector); 15926648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp for (i = 0; i < num_tests; i++) { 15936648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp ret = xhci_test_trb_in_td(xhci, 15946648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci->event_ring->first_seg, 15956648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci->event_ring->first_seg->trbs, 15966648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1], 15976648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp simple_test_vector[i].input_dma, 15986648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp simple_test_vector[i].result_seg, 15996648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp "Simple", i); 16006648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp if (ret < 0) 16016648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp return ret; 16026648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp } 16036648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 1604e10fa4787f1fb9c8738dff955c272f30b7b63134Kulikov Vasiliy num_tests = ARRAY_SIZE(complex_test_vector); 16056648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp for (i = 0; i < num_tests; i++) { 16066648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp ret = xhci_test_trb_in_td(xhci, 16076648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp complex_test_vector[i].input_seg, 16086648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp complex_test_vector[i].start_trb, 16096648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp complex_test_vector[i].end_trb, 16106648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp complex_test_vector[i].input_dma, 16116648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp complex_test_vector[i].result_seg, 16126648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp "Complex", i); 16136648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp if (ret < 0) 16146648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp return ret; 16156648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp } 16166648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp xhci_dbg(xhci, "TRB math tests passed.\n"); 16176648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp return 0; 16186648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp} 16196648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 16206648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp 162166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharpint xhci_mem_init(struct xhci_hcd *xhci, gfp_t flags) 162266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp{ 16230ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp dma_addr_t dma; 16240ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct device *dev = xhci_to_hcd(xhci)->self.controller; 162566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp unsigned int val, val2; 16268e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp u64 val_64; 16270ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_segment *seg; 162866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp u32 page_size; 162966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp int i; 163066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 163166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp page_size = xhci_readl(xhci, &xhci->op_regs->page_size); 163266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_dbg(xhci, "Supported page size register = 0x%x\n", page_size); 163366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp for (i = 0; i < 16; i++) { 163466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp if ((0x1 & page_size) != 0) 163566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp break; 163666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp page_size = page_size >> 1; 163766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp } 163866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp if (i < 16) 163966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_dbg(xhci, "Supported page size of %iK\n", (1 << (i+12)) / 1024); 164066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp else 164166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_warn(xhci, "WARN: no supported page size\n"); 164266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp /* Use 4K pages, since that's common and the minimum the HC supports */ 164366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci->page_shift = 12; 164466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci->page_size = 1 << xhci->page_shift; 164566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_dbg(xhci, "HCD page size set to %iK\n", xhci->page_size / 1024); 164666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 164766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp /* 164866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * Program the Number of Device Slots Enabled field in the CONFIG 164966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp * register with the max value of slots the HC can handle. 165066d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp */ 165166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp val = HCS_MAX_SLOTS(xhci_readl(xhci, &xhci->cap_regs->hcs_params1)); 165266d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_dbg(xhci, "// xHC can handle at most %d device slots.\n", 165366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp (unsigned int) val); 165466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp val2 = xhci_readl(xhci, &xhci->op_regs->config_reg); 165566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp val |= (val2 & ~HCS_SLOTS_MASK); 165666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_dbg(xhci, "// Setting Max device slots reg = 0x%x.\n", 165766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp (unsigned int) val); 165866d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_writel(xhci, val, &xhci->op_regs->config_reg); 165966d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 16600ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* 1661a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp * Section 5.4.8 - doorbell array must be 1662a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp * "physically contiguous and 64-byte (cache line) aligned". 1663a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp */ 1664a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp xhci->dcbaa = pci_alloc_consistent(to_pci_dev(dev), 1665a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp sizeof(*xhci->dcbaa), &dma); 1666a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp if (!xhci->dcbaa) 1667a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp goto fail; 1668a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp memset(xhci->dcbaa, 0, sizeof *(xhci->dcbaa)); 1669a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp xhci->dcbaa->dma = dma; 1670700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "// Device context base array address = 0x%llx (DMA), %p (virt)\n", 1671700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)xhci->dcbaa->dma, xhci->dcbaa); 16728e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_write_64(xhci, dma, &xhci->op_regs->dcbaa_ptr); 1673a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp 1674a74588f94655263b96dacbbf14aac0958d8b7409Sarah Sharp /* 16750ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Initialize the ring segment pool. The ring must be a contiguous 16760ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * structure comprised of TRBs. The TRBs must be 16 byte aligned, 16770ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * however, the command ring segment needs 64-byte aligned segments, 16780ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * so we pick the greater alignment need. 16790ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 16800ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->segment_pool = dma_pool_create("xHCI ring segments", dev, 16810ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp SEGMENT_SIZE, 64, xhci->page_size); 1682d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 16833ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp /* See Table 46 and Note on Figure 55 */ 16843ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp xhci->device_pool = dma_pool_create("xHCI input/output contexts", dev, 1685d115b04818e57bdbc7ccde4d0660b15e33013dc8John Youn 2112, 64, xhci->page_size); 16863ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp if (!xhci->segment_pool || !xhci->device_pool) 16870ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 16880ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 16898df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Linear stream context arrays don't have any boundary restrictions, 16908df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * and only need to be 16-byte aligned. 16918df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 16928df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->small_streams_pool = 16938df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_pool_create("xHCI 256 byte stream ctx arrays", 16948df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dev, SMALL_STREAM_ARRAY_SIZE, 16, 0); 16958df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp xhci->medium_streams_pool = 16968df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dma_pool_create("xHCI 1KB stream ctx arrays", 16978df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp dev, MEDIUM_STREAM_ARRAY_SIZE, 16, 0); 16988df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp /* Any stream context array bigger than MEDIUM_STREAM_ARRAY_SIZE 16998df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp * will be allocated with pci_alloc_consistent() 17008df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp */ 17018df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 17028df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp if (!xhci->small_streams_pool || !xhci->medium_streams_pool) 17038df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp goto fail; 17048df75f42f8e67e2851cdcf6da91640fb881defd1Sarah Sharp 17050ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Set up the command ring to have one segments for now. */ 17060ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->cmd_ring = xhci_ring_alloc(xhci, 1, true, flags); 17070ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!xhci->cmd_ring) 17080ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 1709700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Allocated command ring at %p\n", xhci->cmd_ring); 1710700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "First segment DMA is 0x%llx\n", 1711700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)xhci->cmd_ring->first_seg->dma); 17120ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17130ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Set the address in the Command Ring Control register */ 17148e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp val_64 = xhci_read_64(xhci, &xhci->op_regs->cmd_ring); 17158e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp val_64 = (val_64 & (u64) CMD_RING_RSVD_BITS) | 17168e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp (xhci->cmd_ring->first_seg->dma & (u64) ~CMD_RING_RSVD_BITS) | 17170ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->cmd_ring->cycle_state; 17188e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_dbg(xhci, "// Setting command ring address to 0x%x\n", val); 17198e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_write_64(xhci, val_64, &xhci->op_regs->cmd_ring); 17200ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg_cmd_ptrs(xhci); 17210ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17220ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val = xhci_readl(xhci, &xhci->cap_regs->db_off); 17230ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val &= DBOFF_MASK; 17240ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "// Doorbell array is located at offset 0x%x" 17250ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp " from cap regs base addr\n", val); 17260ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->dba = (void *) xhci->cap_regs + val; 17270ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg_regs(xhci); 17280ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_print_run_regs(xhci); 17290ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Set ir_set to interrupt register set 0 */ 17300ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->ir_set = (void *) xhci->run_regs->ir_set; 17310ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17320ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* 17330ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * Event ring setup: Allocate a normal ring, but also setup 17340ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * the event ring segment table (ERST). Section 4.9.3. 17350ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 17360ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "// Allocating event ring\n"); 17370ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->event_ring = xhci_ring_alloc(xhci, ERST_NUM_SEGS, false, flags); 17380ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!xhci->event_ring) 17390ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 17406648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp if (xhci_check_trb_in_td_math(xhci, flags) < 0) 17416648f29d3be2972a74ef8e29aa5d425ab4f1fc48Sarah Sharp goto fail; 17420ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17430ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.entries = pci_alloc_consistent(to_pci_dev(dev), 17440ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp sizeof(struct xhci_erst_entry)*ERST_NUM_SEGS, &dma); 17450ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp if (!xhci->erst.entries) 17460ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp goto fail; 1747700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "// Allocated event ring segment table at 0x%llx\n", 1748700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)dma); 17490ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17500ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp memset(xhci->erst.entries, 0, sizeof(struct xhci_erst_entry)*ERST_NUM_SEGS); 17510ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.num_entries = ERST_NUM_SEGS; 17520ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.erst_dma_addr = dma; 1753700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "Set ERST to 0; private num segs = %i, virt addr = %p, dma addr = 0x%llx\n", 17540ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci->erst.num_entries, 1755700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci->erst.entries, 1756700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)xhci->erst.erst_dma_addr); 17570ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17580ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* set ring base address and size for each segment table entry */ 17590ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp for (val = 0, seg = xhci->event_ring->first_seg; val < ERST_NUM_SEGS; val++) { 17600ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp struct xhci_erst_entry *entry = &xhci->erst.entries[val]; 17618e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp entry->seg_addr = seg->dma; 17620ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp entry->seg_size = TRBS_PER_SEGMENT; 17630ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp entry->rsvd = 0; 17640ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp seg = seg->next; 17650ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp } 17660ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17670ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* set ERST count with the number of entries in the segment table */ 17680ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val = xhci_readl(xhci, &xhci->ir_set->erst_size); 17690ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val &= ERST_SIZE_MASK; 17700ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val |= ERST_NUM_SEGS; 17710ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "// Write ERST size = %i to ir_set 0 (some bits preserved)\n", 17720ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp val); 17730ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_writel(xhci, val, &xhci->ir_set->erst_size); 17740ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17750ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "// Set ERST entries to point to event ring.\n"); 17760ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* set the segment table base address */ 1777700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman xhci_dbg(xhci, "// Set ERST base address for ir_set 0 = 0x%llx\n", 1778700e2052c6814b1b1d2714225d568c5c64bc49aeGreg Kroah-Hartman (unsigned long long)xhci->erst.erst_dma_addr); 17798e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp val_64 = xhci_read_64(xhci, &xhci->ir_set->erst_base); 17808e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp val_64 &= ERST_PTR_MASK; 17818e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp val_64 |= (xhci->erst.erst_dma_addr & (u64) ~ERST_PTR_MASK); 17828e595a5d30a5ee4bb745d4da6439d73ed7d91054Sarah Sharp xhci_write_64(xhci, val_64, &xhci->ir_set->erst_base); 17830ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17840ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* Set the event ring dequeue address */ 178523e3be113f42790736319c049c78e5f9a4394c02Sarah Sharp xhci_set_hc_event_deq(xhci); 17860ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_dbg(xhci, "Wrote ERST address to ir_set 0.\n"); 17870ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp xhci_print_ir_set(xhci, xhci->ir_set, 0); 17880ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp 17890ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp /* 17900ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * XXX: Might need to set the Interrupter Moderation Register to 17910ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * something other than the default (~1ms minimum between interrupts). 17920ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp * See section 5.5.1.2. 17930ebbab37422315a5d0cb29792271085bafdf38c0Sarah Sharp */ 17943ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp init_completion(&xhci->addr_dev); 17953ffbba9511b4148cbe1f6b6238686adaeaca8febSarah Sharp for (i = 0; i < MAX_HC_SLOTS; ++i) 1796326b4810cc995209e31136af4202ed0414814ed5Randy Dunlap xhci->devs[i] = NULL; 179766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp 1798254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn if (scratchpad_alloc(xhci, flags)) 1799254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn goto fail; 1800254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 180166d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp return 0; 1802254c80a3a0eb811489f7410c3291f01a60e8e42fJohn Youn 180366d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharpfail: 180466d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_warn(xhci, "Couldn't initialize memory\n"); 180566d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp xhci_mem_cleanup(xhci); 180666d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp return -ENOMEM; 180766d4eadd8d067269ea8fead1a50fe87c2979a80dSarah Sharp} 1808