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1/*
2 * xHCI host controller driver
3 *
4 * Copyright (C) 2008 Intel Corp.
5 *
6 * Author: Sarah Sharp
7 * Some code borrowed from the Linux EHCI driver.
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 *
13 * This program is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 * for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software Foundation,
20 * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 */
22
23#ifndef __LINUX_XHCI_HCD_H
24#define __LINUX_XHCI_HCD_H
25
26#include <linux/usb.h>
7f84eef0 27#include <linux/timer.h>
8e595a5d 28#include <linux/kernel.h>
27729aad 29#include <linux/usb/hcd.h>
74c68741 30
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31/* Code sharing between pci-quirks and xhci hcd */
32#include "xhci-ext-caps.h"
c41136b0 33#include "pci-quirks.h"
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34
35/* xHCI PCI Configuration Registers */
36#define XHCI_SBRN_OFFSET (0x60)
37
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38/* Max number of USB devices for any host controller - limit in section 6.1 */
39#define MAX_HC_SLOTS 256
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40/* Section 5.3.3 - MaxPorts */
41#define MAX_HC_PORTS 127
66d4eadd 42
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43/*
44 * xHCI register interface.
45 * This corresponds to the eXtensible Host Controller Interface (xHCI)
46 * Revision 0.95 specification
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47 */
48
49/**
50 * struct xhci_cap_regs - xHCI Host Controller Capability Registers.
51 * @hc_capbase: length of the capabilities register and HC version number
52 * @hcs_params1: HCSPARAMS1 - Structural Parameters 1
53 * @hcs_params2: HCSPARAMS2 - Structural Parameters 2
54 * @hcs_params3: HCSPARAMS3 - Structural Parameters 3
55 * @hcc_params: HCCPARAMS - Capability Parameters
56 * @db_off: DBOFF - Doorbell array offset
57 * @run_regs_off: RTSOFF - Runtime register space offset
58 */
59struct xhci_cap_regs {
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60 __le32 hc_capbase;
61 __le32 hcs_params1;
62 __le32 hcs_params2;
63 __le32 hcs_params3;
64 __le32 hcc_params;
65 __le32 db_off;
66 __le32 run_regs_off;
74c68741 67 /* Reserved up to (CAPLENGTH - 0x1C) */
98441973 68};
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69
70/* hc_capbase bitmasks */
71/* bits 7:0 - how long is the Capabilities register */
72#define HC_LENGTH(p) XHCI_HC_LENGTH(p)
73/* bits 31:16 */
74#define HC_VERSION(p) (((p) >> 16) & 0xffff)
75
76/* HCSPARAMS1 - hcs_params1 - bitmasks */
77/* bits 0:7, Max Device Slots */
78#define HCS_MAX_SLOTS(p) (((p) >> 0) & 0xff)
79#define HCS_SLOTS_MASK 0xff
80/* bits 8:18, Max Interrupters */
81#define HCS_MAX_INTRS(p) (((p) >> 8) & 0x7ff)
82/* bits 24:31, Max Ports - max value is 0x7F = 127 ports */
83#define HCS_MAX_PORTS(p) (((p) >> 24) & 0x7f)
84
85/* HCSPARAMS2 - hcs_params2 - bitmasks */
86/* bits 0:3, frames or uframes that SW needs to queue transactions
87 * ahead of the HW to meet periodic deadlines */
88#define HCS_IST(p) (((p) >> 0) & 0xf)
89/* bits 4:7, max number of Event Ring segments */
90#define HCS_ERST_MAX(p) (((p) >> 4) & 0xf)
6596a926 91/* bits 21:25 Hi 5 bits of Scratchpad buffers SW must allocate for the HW */
74c68741 92/* bit 26 Scratchpad restore - for save/restore HW state - not used yet */
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93/* bits 27:31 Lo 5 bits of Scratchpad buffers SW must allocate for the HW */
94#define HCS_MAX_SCRATCHPAD(p) ((((p) >> 16) & 0x3e0) | (((p) >> 27) & 0x1f))
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95
96/* HCSPARAMS3 - hcs_params3 - bitmasks */
97/* bits 0:7, Max U1 to U0 latency for the roothub ports */
98#define HCS_U1_LATENCY(p) (((p) >> 0) & 0xff)
99/* bits 16:31, Max U2 to U0 latency for the roothub ports */
100#define HCS_U2_LATENCY(p) (((p) >> 16) & 0xffff)
101
102/* HCCPARAMS - hcc_params - bitmasks */
103/* true: HC can use 64-bit address pointers */
104#define HCC_64BIT_ADDR(p) ((p) & (1 << 0))
105/* true: HC can do bandwidth negotiation */
106#define HCC_BANDWIDTH_NEG(p) ((p) & (1 << 1))
107/* true: HC uses 64-byte Device Context structures
108 * FIXME 64-byte context structures aren't supported yet.
109 */
110#define HCC_64BYTE_CONTEXT(p) ((p) & (1 << 2))
111/* true: HC has port power switches */
112#define HCC_PPC(p) ((p) & (1 << 3))
113/* true: HC has port indicators */
114#define HCS_INDICATOR(p) ((p) & (1 << 4))
115/* true: HC has Light HC Reset Capability */
116#define HCC_LIGHT_RESET(p) ((p) & (1 << 5))
117/* true: HC supports latency tolerance messaging */
118#define HCC_LTC(p) ((p) & (1 << 6))
119/* true: no secondary Stream ID Support */
120#define HCC_NSS(p) ((p) & (1 << 7))
121/* Max size for Primary Stream Arrays - 2^(n+1), where n is bits 12:15 */
8df75f42 122#define HCC_MAX_PSA(p) (1 << ((((p) >> 12) & 0xf) + 1))
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123/* Extended Capabilities pointer from PCI base - section 5.3.6 */
124#define HCC_EXT_CAPS(p) XHCI_HCC_EXT_CAPS(p)
125
126/* db_off bitmask - bits 0:1 reserved */
127#define DBOFF_MASK (~0x3)
128
129/* run_regs_off bitmask - bits 0:4 reserved */
130#define RTSOFF_MASK (~0x1f)
131
132
133/* Number of registers per port */
134#define NUM_PORT_REGS 4
135
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136#define PORTSC 0
137#define PORTPMSC 1
138#define PORTLI 2
139#define PORTHLPMC 3
140
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141/**
142 * struct xhci_op_regs - xHCI Host Controller Operational Registers.
143 * @command: USBCMD - xHC command register
144 * @status: USBSTS - xHC status register
145 * @page_size: This indicates the page size that the host controller
146 * supports. If bit n is set, the HC supports a page size
147 * of 2^(n+12), up to a 128MB page size.
148 * 4K is the minimum page size.
149 * @cmd_ring: CRP - 64-bit Command Ring Pointer
150 * @dcbaa_ptr: DCBAAP - 64-bit Device Context Base Address Array Pointer
151 * @config_reg: CONFIG - Configure Register
152 * @port_status_base: PORTSCn - base address for Port Status and Control
153 * Each port has a Port Status and Control register,
154 * followed by a Port Power Management Status and Control
155 * register, a Port Link Info register, and a reserved
156 * register.
157 * @port_power_base: PORTPMSCn - base address for
158 * Port Power Management Status and Control
159 * @port_link_base: PORTLIn - base address for Port Link Info (current
160 * Link PM state and control) for USB 2.1 and USB 3.0
161 * devices.
162 */
163struct xhci_op_regs {
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164 __le32 command;
165 __le32 status;
166 __le32 page_size;
167 __le32 reserved1;
168 __le32 reserved2;
169 __le32 dev_notification;
170 __le64 cmd_ring;
74c68741 171 /* rsvd: offset 0x20-2F */
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172 __le32 reserved3[4];
173 __le64 dcbaa_ptr;
174 __le32 config_reg;
74c68741 175 /* rsvd: offset 0x3C-3FF */
28ccd296 176 __le32 reserved4[241];
74c68741 177 /* port 1 registers, which serve as a base address for other ports */
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178 __le32 port_status_base;
179 __le32 port_power_base;
180 __le32 port_link_base;
181 __le32 reserved5;
74c68741 182 /* registers for ports 2-255 */
28ccd296 183 __le32 reserved6[NUM_PORT_REGS*254];
98441973 184};
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185
186/* USBCMD - USB command - command bitmasks */
187/* start/stop HC execution - do not write unless HC is halted*/
188#define CMD_RUN XHCI_CMD_RUN
189/* Reset HC - resets internal HC state machine and all registers (except
190 * PCI config regs). HC does NOT drive a USB reset on the downstream ports.
191 * The xHCI driver must reinitialize the xHC after setting this bit.
192 */
193#define CMD_RESET (1 << 1)
194/* Event Interrupt Enable - a '1' allows interrupts from the host controller */
195#define CMD_EIE XHCI_CMD_EIE
196/* Host System Error Interrupt Enable - get out-of-band signal for HC errors */
197#define CMD_HSEIE XHCI_CMD_HSEIE
198/* bits 4:6 are reserved (and should be preserved on writes). */
199/* light reset (port status stays unchanged) - reset completed when this is 0 */
200#define CMD_LRESET (1 << 7)
5535b1d5 201/* host controller save/restore state. */
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202#define CMD_CSS (1 << 8)
203#define CMD_CRS (1 << 9)
204/* Enable Wrap Event - '1' means xHC generates an event when MFINDEX wraps. */
205#define CMD_EWE XHCI_CMD_EWE
206/* MFINDEX power management - '1' means xHC can stop MFINDEX counter if all root
207 * hubs are in U3 (selective suspend), disconnect, disabled, or powered-off.
208 * '0' means the xHC can power it off if all ports are in the disconnect,
209 * disabled, or powered-off state.
210 */
211#define CMD_PM_INDEX (1 << 11)
212/* bits 12:31 are reserved (and should be preserved on writes). */
213
4e833c0b 214/* IMAN - Interrupt Management Register */
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215#define IMAN_IE (1 << 1)
216#define IMAN_IP (1 << 0)
4e833c0b 217
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218/* USBSTS - USB status - status bitmasks */
219/* HC not running - set to 1 when run/stop bit is cleared. */
220#define STS_HALT XHCI_STS_HALT
221/* serious error, e.g. PCI parity error. The HC will clear the run/stop bit. */
222#define STS_FATAL (1 << 2)
223/* event interrupt - clear this prior to clearing any IP flags in IR set*/
224#define STS_EINT (1 << 3)
225/* port change detect */
226#define STS_PORT (1 << 4)
227/* bits 5:7 reserved and zeroed */
228/* save state status - '1' means xHC is saving state */
229#define STS_SAVE (1 << 8)
230/* restore state status - '1' means xHC is restoring state */
231#define STS_RESTORE (1 << 9)
232/* true: save or restore error */
233#define STS_SRE (1 << 10)
234/* true: Controller Not Ready to accept doorbell or op reg writes after reset */
235#define STS_CNR XHCI_STS_CNR
236/* true: internal Host Controller Error - SW needs to reset and reinitialize */
237#define STS_HCE (1 << 12)
238/* bits 13:31 reserved and should be preserved */
239
240/*
241 * DNCTRL - Device Notification Control Register - dev_notification bitmasks
242 * Generate a device notification event when the HC sees a transaction with a
243 * notification type that matches a bit set in this bit field.
244 */
245#define DEV_NOTE_MASK (0xffff)
5a6c2f3f 246#define ENABLE_DEV_NOTE(x) (1 << (x))
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247/* Most of the device notification types should only be used for debug.
248 * SW does need to pay attention to function wake notifications.
249 */
250#define DEV_NOTE_FWAKE ENABLE_DEV_NOTE(1)
251
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252/* CRCR - Command Ring Control Register - cmd_ring bitmasks */
253/* bit 0 is the command ring cycle state */
254/* stop ring operation after completion of the currently executing command */
255#define CMD_RING_PAUSE (1 << 1)
256/* stop ring immediately - abort the currently executing command */
257#define CMD_RING_ABORT (1 << 2)
258/* true: command ring is running */
259#define CMD_RING_RUNNING (1 << 3)
260/* bits 4:5 reserved and should be preserved */
261/* Command Ring pointer - bit mask for the lower 32 bits. */
8e595a5d 262#define CMD_RING_RSVD_BITS (0x3f)
0ebbab37 263
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264/* CONFIG - Configure Register - config_reg bitmasks */
265/* bits 0:7 - maximum number of device slots enabled (NumSlotsEn) */
266#define MAX_DEVS(p) ((p) & 0xff)
267/* bits 8:31 - reserved and should be preserved */
268
269/* PORTSC - Port Status and Control Register - port_status_base bitmasks */
270/* true: device connected */
271#define PORT_CONNECT (1 << 0)
272/* true: port enabled */
273#define PORT_PE (1 << 1)
274/* bit 2 reserved and zeroed */
275/* true: port has an over-current condition */
276#define PORT_OC (1 << 3)
277/* true: port reset signaling asserted */
278#define PORT_RESET (1 << 4)
279/* Port Link State - bits 5:8
280 * A read gives the current link PM state of the port,
281 * a write with Link State Write Strobe set sets the link state.
282 */
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283#define PORT_PLS_MASK (0xf << 5)
284#define XDEV_U0 (0x0 << 5)
9574323c 285#define XDEV_U2 (0x2 << 5)
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286#define XDEV_U3 (0x3 << 5)
287#define XDEV_RESUME (0xf << 5)
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288/* true: port has power (see HCC_PPC) */
289#define PORT_POWER (1 << 9)
290/* bits 10:13 indicate device speed:
291 * 0 - undefined speed - port hasn't be initialized by a reset yet
292 * 1 - full speed
293 * 2 - low speed
294 * 3 - high speed
295 * 4 - super speed
296 * 5-15 reserved
297 */
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298#define DEV_SPEED_MASK (0xf << 10)
299#define XDEV_FS (0x1 << 10)
300#define XDEV_LS (0x2 << 10)
301#define XDEV_HS (0x3 << 10)
302#define XDEV_SS (0x4 << 10)
74c68741 303#define DEV_UNDEFSPEED(p) (((p) & DEV_SPEED_MASK) == (0x0<<10))
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304#define DEV_FULLSPEED(p) (((p) & DEV_SPEED_MASK) == XDEV_FS)
305#define DEV_LOWSPEED(p) (((p) & DEV_SPEED_MASK) == XDEV_LS)
306#define DEV_HIGHSPEED(p) (((p) & DEV_SPEED_MASK) == XDEV_HS)
307#define DEV_SUPERSPEED(p) (((p) & DEV_SPEED_MASK) == XDEV_SS)
308/* Bits 20:23 in the Slot Context are the speed for the device */
309#define SLOT_SPEED_FS (XDEV_FS << 10)
310#define SLOT_SPEED_LS (XDEV_LS << 10)
311#define SLOT_SPEED_HS (XDEV_HS << 10)
312#define SLOT_SPEED_SS (XDEV_SS << 10)
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313/* Port Indicator Control */
314#define PORT_LED_OFF (0 << 14)
315#define PORT_LED_AMBER (1 << 14)
316#define PORT_LED_GREEN (2 << 14)
317#define PORT_LED_MASK (3 << 14)
318/* Port Link State Write Strobe - set this when changing link state */
319#define PORT_LINK_STROBE (1 << 16)
320/* true: connect status change */
321#define PORT_CSC (1 << 17)
322/* true: port enable change */
323#define PORT_PEC (1 << 18)
324/* true: warm reset for a USB 3.0 device is done. A "hot" reset puts the port
325 * into an enabled state, and the device into the default state. A "warm" reset
326 * also resets the link, forcing the device through the link training sequence.
327 * SW can also look at the Port Reset register to see when warm reset is done.
328 */
329#define PORT_WRC (1 << 19)
330/* true: over-current change */
331#define PORT_OCC (1 << 20)
332/* true: reset change - 1 to 0 transition of PORT_RESET */
333#define PORT_RC (1 << 21)
334/* port link status change - set on some port link state transitions:
335 * Transition Reason
336 * ------------------------------------------------------------------------------
337 * - U3 to Resume Wakeup signaling from a device
338 * - Resume to Recovery to U0 USB 3.0 device resume
339 * - Resume to U0 USB 2.0 device resume
340 * - U3 to Recovery to U0 Software resume of USB 3.0 device complete
341 * - U3 to U0 Software resume of USB 2.0 device complete
342 * - U2 to U0 L1 resume of USB 2.1 device complete
343 * - U0 to U0 (???) L1 entry rejection by USB 2.1 device
344 * - U0 to disabled L1 entry error with USB 2.1 device
345 * - Any state to inactive Error on USB 3.0 port
346 */
347#define PORT_PLC (1 << 22)
348/* port configure error change - port failed to configure its link partner */
349#define PORT_CEC (1 << 23)
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350/* Cold Attach Status - xHC can set this bit to report device attached during
351 * Sx state. Warm port reset should be perfomed to clear this bit and move port
352 * to connected state.
353 */
354#define PORT_CAS (1 << 24)
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355/* wake on connect (enable) */
356#define PORT_WKCONN_E (1 << 25)
357/* wake on disconnect (enable) */
358#define PORT_WKDISC_E (1 << 26)
359/* wake on over-current (enable) */
360#define PORT_WKOC_E (1 << 27)
361/* bits 28:29 reserved */
e1fd1dc8 362/* true: device is non-removable - for USB 3.0 roothub emulation */
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363#define PORT_DEV_REMOVE (1 << 30)
364/* Initiate a warm port reset - complete when PORT_WRC is '1' */
365#define PORT_WR (1 << 31)
366
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367/* We mark duplicate entries with -1 */
368#define DUPLICATE_ENTRY ((u8)(-1))
369
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370/* Port Power Management Status and Control - port_power_base bitmasks */
371/* Inactivity timer value for transitions into U1, in microseconds.
372 * Timeout can be up to 127us. 0xFF means an infinite timeout.
373 */
374#define PORT_U1_TIMEOUT(p) ((p) & 0xff)
797b0ca5 375#define PORT_U1_TIMEOUT_MASK 0xff
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376/* Inactivity timer value for transitions into U2 */
377#define PORT_U2_TIMEOUT(p) (((p) & 0xff) << 8)
797b0ca5 378#define PORT_U2_TIMEOUT_MASK (0xff << 8)
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379/* Bits 24:31 for port testing */
380
9777e3ce 381/* USB2 Protocol PORTSPMSC */
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382#define PORT_L1S_MASK 7
383#define PORT_L1S_SUCCESS 1
384#define PORT_RWE (1 << 3)
385#define PORT_HIRD(p) (((p) & 0xf) << 4)
65580b43 386#define PORT_HIRD_MASK (0xf << 4)
58e21f73 387#define PORT_L1DS_MASK (0xff << 8)
9574323c 388#define PORT_L1DS(p) (((p) & 0xff) << 8)
65580b43 389#define PORT_HLE (1 << 16)
74c68741 390
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391
392/* USB2 Protocol PORTHLPMC */
393#define PORT_HIRDM(p)((p) & 3)
394#define PORT_L1_TIMEOUT(p)(((p) & 0xff) << 2)
395#define PORT_BESLD(p)(((p) & 0xf) << 10)
396
397/* use 512 microseconds as USB2 LPM L1 default timeout. */
398#define XHCI_L1_TIMEOUT 512
399
400/* Set default HIRD/BESL value to 4 (350/400us) for USB2 L1 LPM resume latency.
401 * Safe to use with mixed HIRD and BESL systems (host and device) and is used
402 * by other operating systems.
403 *
404 * XHCI 1.0 errata 8/14/12 Table 13 notes:
405 * "Software should choose xHC BESL/BESLD field values that do not violate a
406 * device's resume latency requirements,
407 * e.g. not program values > '4' if BLC = '1' and a HIRD device is attached,
408 * or not program values < '4' if BLC = '0' and a BESL device is attached.
409 */
410#define XHCI_DEFAULT_BESL 4
411
74c68741 412/**
98441973 413 * struct xhci_intr_reg - Interrupt Register Set
74c68741
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414 * @irq_pending: IMAN - Interrupt Management Register. Used to enable
415 * interrupts and check for pending interrupts.
416 * @irq_control: IMOD - Interrupt Moderation Register.
417 * Used to throttle interrupts.
418 * @erst_size: Number of segments in the Event Ring Segment Table (ERST).
419 * @erst_base: ERST base address.
420 * @erst_dequeue: Event ring dequeue pointer.
421 *
422 * Each interrupter (defined by a MSI-X vector) has an event ring and an Event
423 * Ring Segment Table (ERST) associated with it. The event ring is comprised of
424 * multiple segments of the same size. The HC places events on the ring and
425 * "updates the Cycle bit in the TRBs to indicate to software the current
426 * position of the Enqueue Pointer." The HCD (Linux) processes those events and
427 * updates the dequeue pointer.
428 */
98441973 429struct xhci_intr_reg {
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430 __le32 irq_pending;
431 __le32 irq_control;
432 __le32 erst_size;
433 __le32 rsvd;
434 __le64 erst_base;
435 __le64 erst_dequeue;
98441973 436};
74c68741 437
66d4eadd 438/* irq_pending bitmasks */
74c68741 439#define ER_IRQ_PENDING(p) ((p) & 0x1)
66d4eadd 440/* bits 2:31 need to be preserved */
7f84eef0 441/* THIS IS BUGGY - FIXME - IP IS WRITE 1 TO CLEAR */
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442#define ER_IRQ_CLEAR(p) ((p) & 0xfffffffe)
443#define ER_IRQ_ENABLE(p) ((ER_IRQ_CLEAR(p)) | 0x2)
444#define ER_IRQ_DISABLE(p) ((ER_IRQ_CLEAR(p)) & ~(0x2))
445
446/* irq_control bitmasks */
447/* Minimum interval between interrupts (in 250ns intervals). The interval
448 * between interrupts will be longer if there are no events on the event ring.
449 * Default is 4000 (1 ms).
450 */
451#define ER_IRQ_INTERVAL_MASK (0xffff)
452/* Counter used to count down the time to the next interrupt - HW use only */
453#define ER_IRQ_COUNTER_MASK (0xffff << 16)
454
455/* erst_size bitmasks */
74c68741 456/* Preserve bits 16:31 of erst_size */
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457#define ERST_SIZE_MASK (0xffff << 16)
458
459/* erst_dequeue bitmasks */
460/* Dequeue ERST Segment Index (DESI) - Segment number (or alias)
461 * where the current dequeue pointer lies. This is an optional HW hint.
462 */
463#define ERST_DESI_MASK (0x7)
464/* Event Handler Busy (EHB) - is the event ring scheduled to be serviced by
465 * a work queue (or delayed service routine)?
466 */
467#define ERST_EHB (1 << 3)
0ebbab37 468#define ERST_PTR_MASK (0xf)
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469
470/**
471 * struct xhci_run_regs
472 * @microframe_index:
473 * MFINDEX - current microframe number
474 *
475 * Section 5.5 Host Controller Runtime Registers:
476 * "Software should read and write these registers using only Dword (32 bit)
477 * or larger accesses"
478 */
479struct xhci_run_regs {
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480 __le32 microframe_index;
481 __le32 rsvd[7];
98441973
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482 struct xhci_intr_reg ir_set[128];
483};
74c68741 484
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485/**
486 * struct doorbell_array
487 *
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488 * Bits 0 - 7: Endpoint target
489 * Bits 8 - 15: RsvdZ
490 * Bits 16 - 31: Stream ID
491 *
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492 * Section 5.6
493 */
494struct xhci_doorbell_array {
28ccd296 495 __le32 doorbell[256];
98441973 496};
0ebbab37 497
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498#define DB_VALUE(ep, stream) ((((ep) + 1) & 0xff) | ((stream) << 16))
499#define DB_VALUE_HOST 0x00000000
0ebbab37 500
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501/**
502 * struct xhci_protocol_caps
503 * @revision: major revision, minor revision, capability ID,
504 * and next capability pointer.
505 * @name_string: Four ASCII characters to say which spec this xHC
506 * follows, typically "USB ".
507 * @port_info: Port offset, count, and protocol-defined information.
508 */
509struct xhci_protocol_caps {
510 u32 revision;
511 u32 name_string;
512 u32 port_info;
513};
514
515#define XHCI_EXT_PORT_MAJOR(x) (((x) >> 24) & 0xff)
516#define XHCI_EXT_PORT_OFF(x) ((x) & 0xff)
517#define XHCI_EXT_PORT_COUNT(x) (((x) >> 8) & 0xff)
518
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JY
519/**
520 * struct xhci_container_ctx
521 * @type: Type of context. Used to calculated offsets to contained contexts.
522 * @size: Size of the context data
523 * @bytes: The raw context data given to HW
524 * @dma: dma address of the bytes
525 *
526 * Represents either a Device or Input context. Holds a pointer to the raw
527 * memory used for the context (bytes) and dma address of it (dma).
528 */
529struct xhci_container_ctx {
530 unsigned type;
531#define XHCI_CTX_TYPE_DEVICE 0x1
532#define XHCI_CTX_TYPE_INPUT 0x2
533
534 int size;
535
536 u8 *bytes;
537 dma_addr_t dma;
538};
539
a74588f9
SS
540/**
541 * struct xhci_slot_ctx
542 * @dev_info: Route string, device speed, hub info, and last valid endpoint
543 * @dev_info2: Max exit latency for device number, root hub port number
544 * @tt_info: tt_info is used to construct split transaction tokens
545 * @dev_state: slot state and device address
546 *
547 * Slot Context - section 6.2.1.1. This assumes the HC uses 32-byte context
548 * structures. If the HC uses 64-byte contexts, there is an additional 32 bytes
549 * reserved at the end of the slot context for HC internal use.
550 */
551struct xhci_slot_ctx {
28ccd296
ME
552 __le32 dev_info;
553 __le32 dev_info2;
554 __le32 tt_info;
555 __le32 dev_state;
a74588f9 556 /* offset 0x10 to 0x1f reserved for HC internal use */
28ccd296 557 __le32 reserved[4];
98441973 558};
a74588f9
SS
559
560/* dev_info bitmasks */
561/* Route String - 0:19 */
562#define ROUTE_STRING_MASK (0xfffff)
563/* Device speed - values defined by PORTSC Device Speed field - 20:23 */
564#define DEV_SPEED (0xf << 20)
565/* bit 24 reserved */
566/* Is this LS/FS device connected through a HS hub? - bit 25 */
567#define DEV_MTT (0x1 << 25)
568/* Set if the device is a hub - bit 26 */
569#define DEV_HUB (0x1 << 26)
570/* Index of the last valid endpoint context in this device context - 27:31 */
3ffbba95
SS
571#define LAST_CTX_MASK (0x1f << 27)
572#define LAST_CTX(p) ((p) << 27)
573#define LAST_CTX_TO_EP_NUM(p) (((p) >> 27) - 1)
3ffbba95
SS
574#define SLOT_FLAG (1 << 0)
575#define EP0_FLAG (1 << 1)
a74588f9
SS
576
577/* dev_info2 bitmasks */
578/* Max Exit Latency (ms) - worst case time to wake up all links in dev path */
579#define MAX_EXIT (0xffff)
580/* Root hub port number that is needed to access the USB device */
3ffbba95 581#define ROOT_HUB_PORT(p) (((p) & 0xff) << 16)
be88fe4f 582#define DEVINFO_TO_ROOT_HUB_PORT(p) (((p) >> 16) & 0xff)
ac1c1b7f
SS
583/* Maximum number of ports under a hub device */
584#define XHCI_MAX_PORTS(p) (((p) & 0xff) << 24)
a74588f9
SS
585
586/* tt_info bitmasks */
587/*
588 * TT Hub Slot ID - for low or full speed devices attached to a high-speed hub
589 * The Slot ID of the hub that isolates the high speed signaling from
590 * this low or full-speed device. '0' if attached to root hub port.
591 */
592#define TT_SLOT (0xff)
593/*
594 * The number of the downstream facing port of the high-speed hub
595 * '0' if the device is not low or full speed.
596 */
597#define TT_PORT (0xff << 8)
ac1c1b7f 598#define TT_THINK_TIME(p) (((p) & 0x3) << 16)
a74588f9
SS
599
600/* dev_state bitmasks */
601/* USB device address - assigned by the HC */
3ffbba95 602#define DEV_ADDR_MASK (0xff)
a74588f9
SS
603/* bits 8:26 reserved */
604/* Slot state */
605#define SLOT_STATE (0x1f << 27)
ae636747 606#define GET_SLOT_STATE(p) (((p) & (0x1f << 27)) >> 27)
a74588f9 607
e2b02177
ML
608#define SLOT_STATE_DISABLED 0
609#define SLOT_STATE_ENABLED SLOT_STATE_DISABLED
610#define SLOT_STATE_DEFAULT 1
611#define SLOT_STATE_ADDRESSED 2
612#define SLOT_STATE_CONFIGURED 3
a74588f9
SS
613
614/**
615 * struct xhci_ep_ctx
616 * @ep_info: endpoint state, streams, mult, and interval information.
617 * @ep_info2: information on endpoint type, max packet size, max burst size,
618 * error count, and whether the HC will force an event for all
619 * transactions.
3ffbba95
SS
620 * @deq: 64-bit ring dequeue pointer address. If the endpoint only
621 * defines one stream, this points to the endpoint transfer ring.
622 * Otherwise, it points to a stream context array, which has a
623 * ring pointer for each flow.
624 * @tx_info:
625 * Average TRB lengths for the endpoint ring and
626 * max payload within an Endpoint Service Interval Time (ESIT).
a74588f9
SS
627 *
628 * Endpoint Context - section 6.2.1.2. This assumes the HC uses 32-byte context
629 * structures. If the HC uses 64-byte contexts, there is an additional 32 bytes
630 * reserved at the end of the endpoint context for HC internal use.
631 */
632struct xhci_ep_ctx {
28ccd296
ME
633 __le32 ep_info;
634 __le32 ep_info2;
635 __le64 deq;
636 __le32 tx_info;
a74588f9 637 /* offset 0x14 - 0x1f reserved for HC internal use */
28ccd296 638 __le32 reserved[3];
98441973 639};
a74588f9
SS
640
641/* ep_info bitmasks */
642/*
643 * Endpoint State - bits 0:2
644 * 0 - disabled
645 * 1 - running
646 * 2 - halted due to halt condition - ok to manipulate endpoint ring
647 * 3 - stopped
648 * 4 - TRB error
649 * 5-7 - reserved
650 */
d0e96f5a
SS
651#define EP_STATE_MASK (0xf)
652#define EP_STATE_DISABLED 0
653#define EP_STATE_RUNNING 1
654#define EP_STATE_HALTED 2
655#define EP_STATE_STOPPED 3
656#define EP_STATE_ERROR 4
a74588f9 657/* Mult - Max number of burtst within an interval, in EP companion desc. */
5a6c2f3f 658#define EP_MULT(p) (((p) & 0x3) << 8)
9af5d71d 659#define CTX_TO_EP_MULT(p) (((p) >> 8) & 0x3)
a74588f9
SS
660/* bits 10:14 are Max Primary Streams */
661/* bit 15 is Linear Stream Array */
662/* Interval - period between requests to an endpoint - 125u increments. */
5a6c2f3f 663#define EP_INTERVAL(p) (((p) & 0xff) << 16)
624defa1 664#define EP_INTERVAL_TO_UFRAMES(p) (1 << (((p) >> 16) & 0xff))
9af5d71d 665#define CTX_TO_EP_INTERVAL(p) (((p) >> 16) & 0xff)
8df75f42
SS
666#define EP_MAXPSTREAMS_MASK (0x1f << 10)
667#define EP_MAXPSTREAMS(p) (((p) << 10) & EP_MAXPSTREAMS_MASK)
668/* Endpoint is set up with a Linear Stream Array (vs. Secondary Stream Array) */
669#define EP_HAS_LSA (1 << 15)
a74588f9
SS
670
671/* ep_info2 bitmasks */
672/*
673 * Force Event - generate transfer events for all TRBs for this endpoint
674 * This will tell the HC to ignore the IOC and ISP flags (for debugging only).
675 */
676#define FORCE_EVENT (0x1)
677#define ERROR_COUNT(p) (((p) & 0x3) << 1)
82d1009f 678#define CTX_TO_EP_TYPE(p) (((p) >> 3) & 0x7)
a74588f9
SS
679#define EP_TYPE(p) ((p) << 3)
680#define ISOC_OUT_EP 1
681#define BULK_OUT_EP 2
682#define INT_OUT_EP 3
683#define CTRL_EP 4
684#define ISOC_IN_EP 5
685#define BULK_IN_EP 6
686#define INT_IN_EP 7
687/* bit 6 reserved */
688/* bit 7 is Host Initiate Disable - for disabling stream selection */
689#define MAX_BURST(p) (((p)&0xff) << 8)
9af5d71d 690#define CTX_TO_MAX_BURST(p) (((p) >> 8) & 0xff)
a74588f9 691#define MAX_PACKET(p) (((p)&0xffff) << 16)
2d3f1fac
SS
692#define MAX_PACKET_MASK (0xffff << 16)
693#define MAX_PACKET_DECODED(p) (((p) >> 16) & 0xffff)
a74588f9 694
dc07c91b
AX
695/* Get max packet size from ep desc. Bit 10..0 specify the max packet size.
696 * USB2.0 spec 9.6.6.
697 */
698#define GET_MAX_PACKET(p) ((p) & 0x7ff)
699
9238f25d
SS
700/* tx_info bitmasks */
701#define AVG_TRB_LENGTH_FOR_EP(p) ((p) & 0xffff)
702#define MAX_ESIT_PAYLOAD_FOR_EP(p) (((p) & 0xffff) << 16)
9af5d71d 703#define CTX_TO_MAX_ESIT_PAYLOAD(p) (((p) >> 16) & 0xffff)
9238f25d 704
bf161e85
SS
705/* deq bitmasks */
706#define EP_CTX_CYCLE_MASK (1 << 0)
9aad95e2 707#define SCTX_DEQ_MASK (~0xfL)
bf161e85 708
a74588f9
SS
709
710/**
d115b048
JY
711 * struct xhci_input_control_context
712 * Input control context; see section 6.2.5.
a74588f9
SS
713 *
714 * @drop_context: set the bit of the endpoint context you want to disable
715 * @add_context: set the bit of the endpoint context you want to enable
716 */
d115b048 717struct xhci_input_control_ctx {
28ccd296
ME
718 __le32 drop_flags;
719 __le32 add_flags;
720 __le32 rsvd2[6];
98441973 721};
a74588f9 722
9af5d71d
SS
723#define EP_IS_ADDED(ctrl_ctx, i) \
724 (le32_to_cpu(ctrl_ctx->add_flags) & (1 << (i + 1)))
725#define EP_IS_DROPPED(ctrl_ctx, i) \
726 (le32_to_cpu(ctrl_ctx->drop_flags) & (1 << (i + 1)))
727
913a8a34
SS
728/* Represents everything that is needed to issue a command on the command ring.
729 * It's useful to pre-allocate these for commands that cannot fail due to
730 * out-of-memory errors, like freeing streams.
731 */
732struct xhci_command {
733 /* Input context for changing device state */
734 struct xhci_container_ctx *in_ctx;
735 u32 status;
736 /* If completion is null, no one is waiting on this command
737 * and the structure can be freed after the command completes.
738 */
739 struct completion *completion;
740 union xhci_trb *command_trb;
741 struct list_head cmd_list;
742};
743
a74588f9
SS
744/* drop context bitmasks */
745#define DROP_EP(x) (0x1 << x)
746/* add context bitmasks */
747#define ADD_EP(x) (0x1 << x)
748
8df75f42
SS
749struct xhci_stream_ctx {
750 /* 64-bit stream ring address, cycle state, and stream type */
28ccd296 751 __le64 stream_ring;
8df75f42 752 /* offset 0x14 - 0x1f reserved for HC internal use */
28ccd296 753 __le32 reserved[2];
8df75f42
SS
754};
755
756/* Stream Context Types (section 6.4.1) - bits 3:1 of stream ctx deq ptr */
63a67a72 757#define SCT_FOR_CTX(p) (((p) & 0x7) << 1)
8df75f42
SS
758/* Secondary stream array type, dequeue pointer is to a transfer ring */
759#define SCT_SEC_TR 0
760/* Primary stream array type, dequeue pointer is to a transfer ring */
761#define SCT_PRI_TR 1
762/* Dequeue pointer is for a secondary stream array (SSA) with 8 entries */
763#define SCT_SSA_8 2
764#define SCT_SSA_16 3
765#define SCT_SSA_32 4
766#define SCT_SSA_64 5
767#define SCT_SSA_128 6
768#define SCT_SSA_256 7
769
770/* Assume no secondary streams for now */
771struct xhci_stream_info {
772 struct xhci_ring **stream_rings;
773 /* Number of streams, including stream 0 (which drivers can't use) */
774 unsigned int num_streams;
775 /* The stream context array may be bigger than
776 * the number of streams the driver asked for
777 */
778 struct xhci_stream_ctx *stream_ctx_array;
779 unsigned int num_stream_ctxs;
780 dma_addr_t ctx_array_dma;
781 /* For mapping physical TRB addresses to segments in stream rings */
782 struct radix_tree_root trb_address_map;
783 struct xhci_command *free_streams_command;
784};
785
786#define SMALL_STREAM_ARRAY_SIZE 256
787#define MEDIUM_STREAM_ARRAY_SIZE 1024
788
9af5d71d
SS
789/* Some Intel xHCI host controllers need software to keep track of the bus
790 * bandwidth. Keep track of endpoint info here. Each root port is allocated
791 * the full bus bandwidth. We must also treat TTs (including each port under a
792 * multi-TT hub) as a separate bandwidth domain. The direct memory interface
793 * (DMI) also limits the total bandwidth (across all domains) that can be used.
794 */
795struct xhci_bw_info {
170c0263 796 /* ep_interval is zero-based */
9af5d71d 797 unsigned int ep_interval;
170c0263 798 /* mult and num_packets are one-based */
9af5d71d
SS
799 unsigned int mult;
800 unsigned int num_packets;
801 unsigned int max_packet_size;
802 unsigned int max_esit_payload;
803 unsigned int type;
804};
805
c29eea62
SS
806/* "Block" sizes in bytes the hardware uses for different device speeds.
807 * The logic in this part of the hardware limits the number of bits the hardware
808 * can use, so must represent bandwidth in a less precise manner to mimic what
809 * the scheduler hardware computes.
810 */
811#define FS_BLOCK 1
812#define HS_BLOCK 4
813#define SS_BLOCK 16
814#define DMI_BLOCK 32
815
816/* Each device speed has a protocol overhead (CRC, bit stuffing, etc) associated
817 * with each byte transferred. SuperSpeed devices have an initial overhead to
818 * set up bursts. These are in blocks, see above. LS overhead has already been
819 * translated into FS blocks.
820 */
821#define DMI_OVERHEAD 8
822#define DMI_OVERHEAD_BURST 4
823#define SS_OVERHEAD 8
824#define SS_OVERHEAD_BURST 32
825#define HS_OVERHEAD 26
826#define FS_OVERHEAD 20
827#define LS_OVERHEAD 128
828/* The TTs need to claim roughly twice as much bandwidth (94 bytes per
829 * microframe ~= 24Mbps) of the HS bus as the devices can actually use because
830 * of overhead associated with split transfers crossing microframe boundaries.
831 * 31 blocks is pure protocol overhead.
832 */
833#define TT_HS_OVERHEAD (31 + 94)
834#define TT_DMI_OVERHEAD (25 + 12)
835
836/* Bandwidth limits in blocks */
837#define FS_BW_LIMIT 1285
838#define TT_BW_LIMIT 1320
839#define HS_BW_LIMIT 1607
840#define SS_BW_LIMIT_IN 3906
841#define DMI_BW_LIMIT_IN 3906
842#define SS_BW_LIMIT_OUT 3906
843#define DMI_BW_LIMIT_OUT 3906
844
845/* Percentage of bus bandwidth reserved for non-periodic transfers */
846#define FS_BW_RESERVED 10
847#define HS_BW_RESERVED 20
2b698999 848#define SS_BW_RESERVED 10
c29eea62 849
63a0d9ab
SS
850struct xhci_virt_ep {
851 struct xhci_ring *ring;
8df75f42
SS
852 /* Related to endpoints that are configured to use stream IDs only */
853 struct xhci_stream_info *stream_info;
63a0d9ab
SS
854 /* Temporary storage in case the configure endpoint command fails and we
855 * have to restore the device state to the previous state
856 */
857 struct xhci_ring *new_ring;
858 unsigned int ep_state;
859#define SET_DEQ_PENDING (1 << 0)
678539cf
SS
860#define EP_HALTED (1 << 1) /* For stall handling */
861#define EP_HALT_PENDING (1 << 2) /* For URB cancellation */
8df75f42
SS
862/* Transitioning the endpoint to using streams, don't enqueue URBs */
863#define EP_GETTING_STREAMS (1 << 3)
864#define EP_HAS_STREAMS (1 << 4)
865/* Transitioning the endpoint to not using streams, don't enqueue URBs */
866#define EP_GETTING_NO_STREAMS (1 << 5)
27082e26
MN
867#define EP_RECENTLY_HALTED (1 << 6)
868#define EP_CONFIG_PENDING (1 << 7)
63a0d9ab
SS
869 /* ---- Related to URB cancellation ---- */
870 struct list_head cancelled_td_list;
63a0d9ab 871 struct xhci_td *stopped_td;
e9df17eb 872 unsigned int stopped_stream;
6f5165cf
SS
873 /* Watchdog timer for stop endpoint command to cancel URBs */
874 struct timer_list stop_cmd_timer;
875 int stop_cmds_pending;
876 struct xhci_hcd *xhci;
bf161e85
SS
877 /* Dequeue pointer and dequeue segment for a submitted Set TR Dequeue
878 * command. We'll need to update the ring's dequeue segment and dequeue
879 * pointer after the command completes.
880 */
881 struct xhci_segment *queued_deq_seg;
882 union xhci_trb *queued_deq_ptr;
d18240db
AX
883 /*
884 * Sometimes the xHC can not process isochronous endpoint ring quickly
885 * enough, and it will miss some isoc tds on the ring and generate
886 * a Missed Service Error Event.
887 * Set skip flag when receive a Missed Service Error Event and
888 * process the missed tds on the endpoint ring.
889 */
890 bool skip;
2e27980e 891 /* Bandwidth checking storage */
9af5d71d 892 struct xhci_bw_info bw_info;
2e27980e 893 struct list_head bw_endpoint_list;
63a0d9ab
SS
894};
895
839c817c
SS
896enum xhci_overhead_type {
897 LS_OVERHEAD_TYPE = 0,
898 FS_OVERHEAD_TYPE,
899 HS_OVERHEAD_TYPE,
900};
901
902struct xhci_interval_bw {
903 unsigned int num_packets;
2e27980e
SS
904 /* Sorted by max packet size.
905 * Head of the list is the greatest max packet size.
906 */
907 struct list_head endpoints;
839c817c
SS
908 /* How many endpoints of each speed are present. */
909 unsigned int overhead[3];
910};
911
912#define XHCI_MAX_INTERVAL 16
913
914struct xhci_interval_bw_table {
915 unsigned int interval0_esit_payload;
916 struct xhci_interval_bw interval_bw[XHCI_MAX_INTERVAL];
c29eea62
SS
917 /* Includes reserved bandwidth for async endpoints */
918 unsigned int bw_used;
2b698999
SS
919 unsigned int ss_bw_in;
920 unsigned int ss_bw_out;
839c817c
SS
921};
922
923
3ffbba95 924struct xhci_virt_device {
64927730 925 struct usb_device *udev;
3ffbba95
SS
926 /*
927 * Commands to the hardware are passed an "input context" that
928 * tells the hardware what to change in its data structures.
929 * The hardware will return changes in an "output context" that
930 * software must allocate for the hardware. We need to keep
931 * track of input and output contexts separately because
932 * these commands might fail and we don't trust the hardware.
933 */
d115b048 934 struct xhci_container_ctx *out_ctx;
3ffbba95 935 /* Used for addressing devices and configuration changes */
d115b048 936 struct xhci_container_ctx *in_ctx;
74f9fe21
SS
937 /* Rings saved to ensure old alt settings can be re-instated */
938 struct xhci_ring **ring_cache;
939 int num_rings_cached;
940#define XHCI_MAX_RINGS_CACHED 31
63a0d9ab 941 struct xhci_virt_ep eps[31];
f94e0186 942 struct completion cmd_completion;
fe30182c 943 u8 fake_port;
66381755 944 u8 real_port;
839c817c
SS
945 struct xhci_interval_bw_table *bw_table;
946 struct xhci_tt_bw_info *tt_info;
3b3db026
SS
947 /* The current max exit latency for the enabled USB3 link states. */
948 u16 current_mel;
839c817c
SS
949};
950
951/*
952 * For each roothub, keep track of the bandwidth information for each periodic
953 * interval.
954 *
955 * If a high speed hub is attached to the roothub, each TT associated with that
956 * hub is a separate bandwidth domain. The interval information for the
957 * endpoints on the devices under that TT will appear in the TT structure.
958 */
959struct xhci_root_port_bw_info {
960 struct list_head tts;
961 unsigned int num_active_tts;
962 struct xhci_interval_bw_table bw_table;
963};
964
965struct xhci_tt_bw_info {
966 struct list_head tt_list;
967 int slot_id;
968 int ttport;
969 struct xhci_interval_bw_table bw_table;
970 int active_eps;
3ffbba95
SS
971};
972
973
a74588f9
SS
974/**
975 * struct xhci_device_context_array
976 * @dev_context_ptr array of 64-bit DMA addresses for device contexts
977 */
978struct xhci_device_context_array {
979 /* 64-bit device addresses; we only write 32-bit addresses */
28ccd296 980 __le64 dev_context_ptrs[MAX_HC_SLOTS];
a74588f9
SS
981 /* private xHCD pointers */
982 dma_addr_t dma;
98441973 983};
a74588f9
SS
984/* TODO: write function to set the 64-bit device DMA address */
985/*
986 * TODO: change this to be dynamically sized at HC mem init time since the HC
987 * might not be able to handle the maximum number of devices possible.
988 */
989
990
0ebbab37
SS
991struct xhci_transfer_event {
992 /* 64-bit buffer address, or immediate data */
28ccd296
ME
993 __le64 buffer;
994 __le32 transfer_len;
0ebbab37 995 /* This field is interpreted differently based on the type of TRB */
28ccd296 996 __le32 flags;
98441973 997};
0ebbab37 998
1c11a172
VG
999/* Transfer event TRB length bit mask */
1000/* bits 0:23 */
1001#define EVENT_TRB_LEN(p) ((p) & 0xffffff)
1002
d0e96f5a
SS
1003/** Transfer Event bit fields **/
1004#define TRB_TO_EP_ID(p) (((p) >> 16) & 0x1f)
1005
0ebbab37
SS
1006/* Completion Code - only applicable for some types of TRBs */
1007#define COMP_CODE_MASK (0xff << 24)
1008#define GET_COMP_CODE(p) (((p) & COMP_CODE_MASK) >> 24)
1009#define COMP_SUCCESS 1
1010/* Data Buffer Error */
1011#define COMP_DB_ERR 2
1012/* Babble Detected Error */
1013#define COMP_BABBLE 3
1014/* USB Transaction Error */
1015#define COMP_TX_ERR 4
1016/* TRB Error - some TRB field is invalid */
1017#define COMP_TRB_ERR 5
1018/* Stall Error - USB device is stalled */
1019#define COMP_STALL 6
1020/* Resource Error - HC doesn't have memory for that device configuration */
1021#define COMP_ENOMEM 7
1022/* Bandwidth Error - not enough room in schedule for this dev config */
1023#define COMP_BW_ERR 8
1024/* No Slots Available Error - HC ran out of device slots */
1025#define COMP_ENOSLOTS 9
1026/* Invalid Stream Type Error */
1027#define COMP_STREAM_ERR 10
1028/* Slot Not Enabled Error - doorbell rung for disabled device slot */
1029#define COMP_EBADSLT 11
1030/* Endpoint Not Enabled Error */
1031#define COMP_EBADEP 12
1032/* Short Packet */
1033#define COMP_SHORT_TX 13
1034/* Ring Underrun - doorbell rung for an empty isoc OUT ep ring */
1035#define COMP_UNDERRUN 14
1036/* Ring Overrun - isoc IN ep ring is empty when ep is scheduled to RX */
1037#define COMP_OVERRUN 15
1038/* Virtual Function Event Ring Full Error */
1039#define COMP_VF_FULL 16
1040/* Parameter Error - Context parameter is invalid */
1041#define COMP_EINVAL 17
1042/* Bandwidth Overrun Error - isoc ep exceeded its allocated bandwidth */
1043#define COMP_BW_OVER 18
1044/* Context State Error - illegal context state transition requested */
1045#define COMP_CTX_STATE 19
1046/* No Ping Response Error - HC didn't get PING_RESPONSE in time to TX */
1047#define COMP_PING_ERR 20
1048/* Event Ring is full */
1049#define COMP_ER_FULL 21
f6ba6fe2
AH
1050/* Incompatible Device Error */
1051#define COMP_DEV_ERR 22
0ebbab37
SS
1052/* Missed Service Error - HC couldn't service an isoc ep within interval */
1053#define COMP_MISSED_INT 23
1054/* Successfully stopped command ring */
1055#define COMP_CMD_STOP 24
1056/* Successfully aborted current command and stopped command ring */
1057#define COMP_CMD_ABORT 25
1058/* Stopped - transfer was terminated by a stop endpoint command */
1059#define COMP_STOP 26
25985edc 1060/* Same as COMP_EP_STOPPED, but the transferred length in the event is invalid */
0ebbab37
SS
1061#define COMP_STOP_INVAL 27
1062/* Control Abort Error - Debug Capability - control pipe aborted */
1063#define COMP_DBG_ABORT 28
1bb73a88
AH
1064/* Max Exit Latency Too Large Error */
1065#define COMP_MEL_ERR 29
1066/* TRB type 30 reserved */
0ebbab37
SS
1067/* Isoc Buffer Overrun - an isoc IN ep sent more data than could fit in TD */
1068#define COMP_BUFF_OVER 31
1069/* Event Lost Error - xHC has an "internal event overrun condition" */
1070#define COMP_ISSUES 32
1071/* Undefined Error - reported when other error codes don't apply */
1072#define COMP_UNKNOWN 33
1073/* Invalid Stream ID Error */
1074#define COMP_STRID_ERR 34
1075/* Secondary Bandwidth Error - may be returned by a Configure Endpoint cmd */
0ebbab37
SS
1076#define COMP_2ND_BW_ERR 35
1077/* Split Transaction Error */
1078#define COMP_SPLIT_ERR 36
1079
1080struct xhci_link_trb {
1081 /* 64-bit segment pointer*/
28ccd296
ME
1082 __le64 segment_ptr;
1083 __le32 intr_target;
1084 __le32 control;
98441973 1085};
0ebbab37
SS
1086
1087/* control bitfields */
1088#define LINK_TOGGLE (0x1<<1)
1089
7f84eef0
SS
1090/* Command completion event TRB */
1091struct xhci_event_cmd {
1092 /* Pointer to command TRB, or the value passed by the event data trb */
28ccd296
ME
1093 __le64 cmd_trb;
1094 __le32 status;
1095 __le32 flags;
98441973 1096};
0ebbab37 1097
3ffbba95 1098/* flags bitmasks */
48fc7dbd
DW
1099
1100/* Address device - disable SetAddress */
1101#define TRB_BSR (1<<9)
1102enum xhci_setup_dev {
1103 SETUP_CONTEXT_ONLY,
1104 SETUP_CONTEXT_ADDRESS,
1105};
1106
3ffbba95
SS
1107/* bits 16:23 are the virtual function ID */
1108/* bits 24:31 are the slot ID */
1109#define TRB_TO_SLOT_ID(p) (((p) & (0xff<<24)) >> 24)
1110#define SLOT_ID_FOR_TRB(p) (((p) & 0xff) << 24)
0ebbab37 1111
ae636747
SS
1112/* Stop Endpoint TRB - ep_index to endpoint ID for this TRB */
1113#define TRB_TO_EP_INDEX(p) ((((p) & (0x1f << 16)) >> 16) - 1)
1114#define EP_ID_FOR_TRB(p) ((((p) + 1) & 0x1f) << 16)
1115
be88fe4f
AX
1116#define SUSPEND_PORT_FOR_TRB(p) (((p) & 1) << 23)
1117#define TRB_TO_SUSPEND_PORT(p) (((p) & (1 << 23)) >> 23)
1118#define LAST_EP_INDEX 30
1119
95241dbd 1120/* Set TR Dequeue Pointer command TRB fields, 6.4.3.9 */
e9df17eb
SS
1121#define TRB_TO_STREAM_ID(p) ((((p) & (0xffff << 16)) >> 16))
1122#define STREAM_ID_FOR_TRB(p) ((((p)) & 0xffff) << 16)
95241dbd 1123#define SCT_FOR_TRB(p) (((p) << 1) & 0x7)
e9df17eb 1124
ae636747 1125
0f2a7930
SS
1126/* Port Status Change Event TRB fields */
1127/* Port ID - bits 31:24 */
1128#define GET_PORT_ID(p) (((p) & (0xff << 24)) >> 24)
1129
0ebbab37
SS
1130/* Normal TRB fields */
1131/* transfer_len bitmasks - bits 0:16 */
1132#define TRB_LEN(p) ((p) & 0x1ffff)
0ebbab37
SS
1133/* Interrupter Target - which MSI-X vector to target the completion event at */
1134#define TRB_INTR_TARGET(p) (((p) & 0x3ff) << 22)
1135#define GET_INTR_TARGET(p) (((p) >> 22) & 0x3ff)
5cd43e33 1136#define TRB_TBC(p) (((p) & 0x3) << 7)
b61d378f 1137#define TRB_TLBPC(p) (((p) & 0xf) << 16)
0ebbab37
SS
1138
1139/* Cycle bit - indicates TRB ownership by HC or HCD */
1140#define TRB_CYCLE (1<<0)
1141/*
1142 * Force next event data TRB to be evaluated before task switch.
1143 * Used to pass OS data back after a TD completes.
1144 */
1145#define TRB_ENT (1<<1)
1146/* Interrupt on short packet */
1147#define TRB_ISP (1<<2)
1148/* Set PCIe no snoop attribute */
1149#define TRB_NO_SNOOP (1<<3)
1150/* Chain multiple TRBs into a TD */
1151#define TRB_CHAIN (1<<4)
1152/* Interrupt on completion */
1153#define TRB_IOC (1<<5)
1154/* The buffer pointer contains immediate data */
1155#define TRB_IDT (1<<6)
1156
ad106f29
AX
1157/* Block Event Interrupt */
1158#define TRB_BEI (1<<9)
0ebbab37
SS
1159
1160/* Control transfer TRB specific fields */
1161#define TRB_DIR_IN (1<<16)
b83cdc8f
AX
1162#define TRB_TX_TYPE(p) ((p) << 16)
1163#define TRB_DATA_OUT 2
1164#define TRB_DATA_IN 3
0ebbab37 1165
04e51901
AX
1166/* Isochronous TRB specific fields */
1167#define TRB_SIA (1<<31)
1168
7f84eef0 1169struct xhci_generic_trb {
28ccd296 1170 __le32 field[4];
98441973 1171};
7f84eef0
SS
1172
1173union xhci_trb {
1174 struct xhci_link_trb link;
1175 struct xhci_transfer_event trans_event;
1176 struct xhci_event_cmd event_cmd;
1177 struct xhci_generic_trb generic;
1178};
1179
0ebbab37
SS
1180/* TRB bit mask */
1181#define TRB_TYPE_BITMASK (0xfc00)
1182#define TRB_TYPE(p) ((p) << 10)
0238634d 1183#define TRB_FIELD_TO_TYPE(p) (((p) & TRB_TYPE_BITMASK) >> 10)
0ebbab37
SS
1184/* TRB type IDs */
1185/* bulk, interrupt, isoc scatter/gather, and control data stage */
1186#define TRB_NORMAL 1
1187/* setup stage for control transfers */
1188#define TRB_SETUP 2
1189/* data stage for control transfers */
1190#define TRB_DATA 3
1191/* status stage for control transfers */
1192#define TRB_STATUS 4
1193/* isoc transfers */
1194#define TRB_ISOC 5
1195/* TRB for linking ring segments */
1196#define TRB_LINK 6
1197#define TRB_EVENT_DATA 7
1198/* Transfer Ring No-op (not for the command ring) */
1199#define TRB_TR_NOOP 8
1200/* Command TRBs */
1201/* Enable Slot Command */
1202#define TRB_ENABLE_SLOT 9
1203/* Disable Slot Command */
1204#define TRB_DISABLE_SLOT 10
1205/* Address Device Command */
1206#define TRB_ADDR_DEV 11
1207/* Configure Endpoint Command */
1208#define TRB_CONFIG_EP 12
1209/* Evaluate Context Command */
1210#define TRB_EVAL_CONTEXT 13
a1587d97
SS
1211/* Reset Endpoint Command */
1212#define TRB_RESET_EP 14
0ebbab37
SS
1213/* Stop Transfer Ring Command */
1214#define TRB_STOP_RING 15
1215/* Set Transfer Ring Dequeue Pointer Command */
1216#define TRB_SET_DEQ 16
1217/* Reset Device Command */
1218#define TRB_RESET_DEV 17
1219/* Force Event Command (opt) */
1220#define TRB_FORCE_EVENT 18
1221/* Negotiate Bandwidth Command (opt) */
1222#define TRB_NEG_BANDWIDTH 19
1223/* Set Latency Tolerance Value Command (opt) */
1224#define TRB_SET_LT 20
1225/* Get port bandwidth Command */
1226#define TRB_GET_BW 21
1227/* Force Header Command - generate a transaction or link management packet */
1228#define TRB_FORCE_HEADER 22
1229/* No-op Command - not for transfer rings */
1230#define TRB_CMD_NOOP 23
1231/* TRB IDs 24-31 reserved */
1232/* Event TRBS */
1233/* Transfer Event */
1234#define TRB_TRANSFER 32
1235/* Command Completion Event */
1236#define TRB_COMPLETION 33
1237/* Port Status Change Event */
1238#define TRB_PORT_STATUS 34
1239/* Bandwidth Request Event (opt) */
1240#define TRB_BANDWIDTH_EVENT 35
1241/* Doorbell Event (opt) */
1242#define TRB_DOORBELL 36
1243/* Host Controller Event */
1244#define TRB_HC_EVENT 37
1245/* Device Notification Event - device sent function wake notification */
1246#define TRB_DEV_NOTE 38
1247/* MFINDEX Wrap Event - microframe counter wrapped */
1248#define TRB_MFINDEX_WRAP 39
1249/* TRB IDs 40-47 reserved, 48-63 is vendor-defined */
1250
0238634d
SS
1251/* Nec vendor-specific command completion event. */
1252#define TRB_NEC_CMD_COMP 48
1253/* Get NEC firmware revision. */
1254#define TRB_NEC_GET_FW 49
1255
f5960b69
ME
1256#define TRB_TYPE_LINK(x) (((x) & TRB_TYPE_BITMASK) == TRB_TYPE(TRB_LINK))
1257/* Above, but for __le32 types -- can avoid work by swapping constants: */
1258#define TRB_TYPE_LINK_LE32(x) (((x) & cpu_to_le32(TRB_TYPE_BITMASK)) == \
1259 cpu_to_le32(TRB_TYPE(TRB_LINK)))
1260#define TRB_TYPE_NOOP_LE32(x) (((x) & cpu_to_le32(TRB_TYPE_BITMASK)) == \
1261 cpu_to_le32(TRB_TYPE(TRB_TR_NOOP)))
1262
0238634d
SS
1263#define NEC_FW_MINOR(p) (((p) >> 0) & 0xff)
1264#define NEC_FW_MAJOR(p) (((p) >> 8) & 0xff)
1265
0ebbab37
SS
1266/*
1267 * TRBS_PER_SEGMENT must be a multiple of 4,
1268 * since the command ring is 64-byte aligned.
1269 * It must also be greater than 16.
1270 */
1386ff75 1271#define TRBS_PER_SEGMENT 64
913a8a34
SS
1272/* Allow two commands + a link TRB, along with any reserved command TRBs */
1273#define MAX_RSVD_CMD_TRBS (TRBS_PER_SEGMENT - 3)
eb8ccd2b
DH
1274#define TRB_SEGMENT_SIZE (TRBS_PER_SEGMENT*16)
1275#define TRB_SEGMENT_SHIFT (ilog2(TRB_SEGMENT_SIZE))
b10de142
SS
1276/* TRB buffer pointers can't cross 64KB boundaries */
1277#define TRB_MAX_BUFF_SHIFT 16
1278#define TRB_MAX_BUFF_SIZE (1 << TRB_MAX_BUFF_SHIFT)
0ebbab37
SS
1279
1280struct xhci_segment {
1281 union xhci_trb *trbs;
1282 /* private to HCD */
1283 struct xhci_segment *next;
1284 dma_addr_t dma;
98441973 1285};
0ebbab37 1286
ae636747
SS
1287struct xhci_td {
1288 struct list_head td_list;
1289 struct list_head cancelled_td_list;
1290 struct urb *urb;
1291 struct xhci_segment *start_seg;
1292 union xhci_trb *first_trb;
1293 union xhci_trb *last_trb;
1294};
1295
6e4468b9
EF
1296/* xHCI command default timeout value */
1297#define XHCI_CMD_DEFAULT_TIMEOUT (5 * HZ)
1298
b92cc66c
EF
1299/* command descriptor */
1300struct xhci_cd {
b92cc66c
EF
1301 struct xhci_command *command;
1302 union xhci_trb *cmd_trb;
1303};
1304
ac9d8fe7
SS
1305struct xhci_dequeue_state {
1306 struct xhci_segment *new_deq_seg;
1307 union xhci_trb *new_deq_ptr;
1308 int new_cycle_state;
1309};
1310
3b72fca0
AX
1311enum xhci_ring_type {
1312 TYPE_CTRL = 0,
1313 TYPE_ISOC,
1314 TYPE_BULK,
1315 TYPE_INTR,
1316 TYPE_STREAM,
1317 TYPE_COMMAND,
1318 TYPE_EVENT,
1319};
1320
0ebbab37
SS
1321struct xhci_ring {
1322 struct xhci_segment *first_seg;
3fe4fe08 1323 struct xhci_segment *last_seg;
0ebbab37 1324 union xhci_trb *enqueue;
7f84eef0
SS
1325 struct xhci_segment *enq_seg;
1326 unsigned int enq_updates;
0ebbab37 1327 union xhci_trb *dequeue;
7f84eef0
SS
1328 struct xhci_segment *deq_seg;
1329 unsigned int deq_updates;
d0e96f5a 1330 struct list_head td_list;
0ebbab37
SS
1331 /*
1332 * Write the cycle state into the TRB cycle field to give ownership of
1333 * the TRB to the host controller (if we are the producer), or to check
1334 * if we own the TRB (if we are the consumer). See section 4.9.1.
1335 */
1336 u32 cycle_state;
e9df17eb 1337 unsigned int stream_id;
3fe4fe08 1338 unsigned int num_segs;
b008df60
AX
1339 unsigned int num_trbs_free;
1340 unsigned int num_trbs_free_temp;
3b72fca0 1341 enum xhci_ring_type type;
ad808333 1342 bool last_td_was_short;
15341303 1343 struct radix_tree_root *trb_address_map;
0ebbab37
SS
1344};
1345
1346struct xhci_erst_entry {
1347 /* 64-bit event ring segment address */
28ccd296
ME
1348 __le64 seg_addr;
1349 __le32 seg_size;
0ebbab37 1350 /* Set to zero */
28ccd296 1351 __le32 rsvd;
98441973 1352};
0ebbab37
SS
1353
1354struct xhci_erst {
1355 struct xhci_erst_entry *entries;
1356 unsigned int num_entries;
1357 /* xhci->event_ring keeps track of segment dma addresses */
1358 dma_addr_t erst_dma_addr;
1359 /* Num entries the ERST can contain */
1360 unsigned int erst_size;
1361};
1362
254c80a3
JY
1363struct xhci_scratchpad {
1364 u64 *sp_array;
1365 dma_addr_t sp_dma;
1366 void **sp_buffers;
1367 dma_addr_t *sp_dma_buffers;
1368};
1369
8e51adcc
AX
1370struct urb_priv {
1371 int length;
1372 int td_cnt;
1373 struct xhci_td *td[0];
1374};
1375
0ebbab37
SS
1376/*
1377 * Each segment table entry is 4*32bits long. 1K seems like an ok size:
1378 * (1K bytes * 8bytes/bit) / (4*32 bits) = 64 segment entries in the table,
1379 * meaning 64 ring segments.
1380 * Initial allocated size of the ERST, in number of entries */
1381#define ERST_NUM_SEGS 1
1382/* Initial allocated size of the ERST, in number of entries */
1383#define ERST_SIZE 64
1384/* Initial number of event segment rings allocated */
1385#define ERST_ENTRIES 1
7f84eef0
SS
1386/* Poll every 60 seconds */
1387#define POLL_TIMEOUT 60
6f5165cf
SS
1388/* Stop endpoint command timeout (secs) for URB cancellation watchdog timer */
1389#define XHCI_STOP_EP_CMD_TIMEOUT 5
0ebbab37
SS
1390/* XXX: Make these module parameters */
1391
5535b1d5
AX
1392struct s3_save {
1393 u32 command;
1394 u32 dev_nt;
1395 u64 dcbaa_ptr;
1396 u32 config_reg;
1397 u32 irq_pending;
1398 u32 irq_control;
1399 u32 erst_size;
1400 u64 erst_base;
1401 u64 erst_dequeue;
1402};
74c68741 1403
9574323c
AX
1404/* Use for lpm */
1405struct dev_info {
1406 u32 dev_id;
1407 struct list_head list;
1408};
1409
20b67cf5
SS
1410struct xhci_bus_state {
1411 unsigned long bus_suspended;
1412 unsigned long next_statechange;
1413
1414 /* Port suspend arrays are indexed by the portnum of the fake roothub */
1415 /* ports suspend status arrays - max 31 ports for USB2, 15 for USB3 */
1416 u32 port_c_suspend;
1417 u32 suspended_ports;
4ee823b8 1418 u32 port_remote_wakeup;
20b67cf5 1419 unsigned long resume_done[USB_MAXCHILDREN];
f370b996
AX
1420 /* which ports have started to resume */
1421 unsigned long resuming_ports;
8b3d4570
SS
1422 /* Which ports are waiting on RExit to U0 transition. */
1423 unsigned long rexit_ports;
1424 struct completion rexit_done[USB_MAXCHILDREN];
20b67cf5
SS
1425};
1426
8b3d4570
SS
1427
1428/*
1429 * It can take up to 20 ms to transition from RExit to U0 on the
1430 * Intel Lynx Point LP xHCI host.
1431 */
1432#define XHCI_MAX_REXIT_TIMEOUT (20 * 1000)
1433
20b67cf5
SS
1434static inline unsigned int hcd_index(struct usb_hcd *hcd)
1435{
f6ff0ac8
SS
1436 if (hcd->speed == HCD_USB3)
1437 return 0;
1438 else
1439 return 1;
20b67cf5
SS
1440}
1441
05103114 1442/* There is one xhci_hcd structure per controller */
74c68741 1443struct xhci_hcd {
b02d0ed6 1444 struct usb_hcd *main_hcd;
f6ff0ac8 1445 struct usb_hcd *shared_hcd;
74c68741
SS
1446 /* glue to PCI and HCD framework */
1447 struct xhci_cap_regs __iomem *cap_regs;
1448 struct xhci_op_regs __iomem *op_regs;
1449 struct xhci_run_regs __iomem *run_regs;
0ebbab37 1450 struct xhci_doorbell_array __iomem *dba;
66d4eadd 1451 /* Our HCD's current interrupter register set */
98441973 1452 struct xhci_intr_reg __iomem *ir_set;
74c68741
SS
1453
1454 /* Cached register copies of read-only HC data */
1455 __u32 hcs_params1;
1456 __u32 hcs_params2;
1457 __u32 hcs_params3;
1458 __u32 hcc_params;
1459
1460 spinlock_t lock;
1461
1462 /* packed release number */
1463 u8 sbrn;
1464 u16 hci_version;
1465 u8 max_slots;
1466 u8 max_interrupters;
1467 u8 max_ports;
1468 u8 isoc_threshold;
1469 int event_ring_max;
1470 int addr_64;
66d4eadd 1471 /* 4KB min, 128MB max */
74c68741 1472 int page_size;
66d4eadd
SS
1473 /* Valid values are 12 to 20, inclusive */
1474 int page_shift;
43b86af8 1475 /* msi-x vectors */
66d4eadd
SS
1476 int msix_count;
1477 struct msix_entry *msix_entries;
4718c177
GC
1478 /* optional clock */
1479 struct clk *clk;
0ebbab37 1480 /* data structures */
a74588f9 1481 struct xhci_device_context_array *dcbaa;
0ebbab37 1482 struct xhci_ring *cmd_ring;
c181bc5b
EF
1483 unsigned int cmd_ring_state;
1484#define CMD_RING_STATE_RUNNING (1 << 0)
1485#define CMD_RING_STATE_ABORTED (1 << 1)
1486#define CMD_RING_STATE_STOPPED (1 << 2)
c9aa1a2d 1487 struct list_head cmd_list;
913a8a34 1488 unsigned int cmd_ring_reserved_trbs;
c311e391
MN
1489 struct timer_list cmd_timer;
1490 struct xhci_command *current_cmd;
0ebbab37
SS
1491 struct xhci_ring *event_ring;
1492 struct xhci_erst erst;
254c80a3
JY
1493 /* Scratchpad */
1494 struct xhci_scratchpad *scratchpad;
9574323c
AX
1495 /* Store LPM test failed devices' information */
1496 struct list_head lpm_failed_devs;
254c80a3 1497
3ffbba95
SS
1498 /* slot enabling and address device helpers */
1499 struct completion addr_dev;
1500 int slot_id;
dbc33303
SS
1501 /* For USB 3.0 LPM enable/disable. */
1502 struct xhci_command *lpm_command;
3ffbba95
SS
1503 /* Internal mirror of the HW's dcbaa */
1504 struct xhci_virt_device *devs[MAX_HC_SLOTS];
839c817c
SS
1505 /* For keeping track of bandwidth domains per roothub. */
1506 struct xhci_root_port_bw_info *rh_bw;
0ebbab37
SS
1507
1508 /* DMA pools */
1509 struct dma_pool *device_pool;
1510 struct dma_pool *segment_pool;
8df75f42
SS
1511 struct dma_pool *small_streams_pool;
1512 struct dma_pool *medium_streams_pool;
7f84eef0 1513
6f5165cf
SS
1514 /* Host controller watchdog timer structures */
1515 unsigned int xhc_state;
9777e3ce 1516
9777e3ce 1517 u32 command;
5535b1d5 1518 struct s3_save s3;
6f5165cf
SS
1519/* Host controller is dying - not responding to commands. "I'm not dead yet!"
1520 *
1521 * xHC interrupts have been disabled and a watchdog timer will (or has already)
1522 * halt the xHCI host, and complete all URBs with an -ESHUTDOWN code. Any code
1523 * that sees this status (other than the timer that set it) should stop touching
1524 * hardware immediately. Interrupt handlers should return immediately when
1525 * they see this status (any time they drop and re-acquire xhci->lock).
1526 * xhci_urb_dequeue() should call usb_hcd_check_unlink_urb() and return without
1527 * putting the TD on the canceled list, etc.
1528 *
1529 * There are no reports of xHCI host controllers that display this issue.
1530 */
1531#define XHCI_STATE_DYING (1 << 0)
c6cc27c7 1532#define XHCI_STATE_HALTED (1 << 1)
7f84eef0 1533 /* Statistics */
7f84eef0 1534 int error_bitmask;
b0567b3f
SS
1535 unsigned int quirks;
1536#define XHCI_LINK_TRB_QUIRK (1 << 0)
ac9d8fe7 1537#define XHCI_RESET_EP_QUIRK (1 << 1)
0238634d 1538#define XHCI_NEC_HOST (1 << 2)
c41136b0 1539#define XHCI_AMD_PLL_FIX (1 << 3)
ad808333 1540#define XHCI_SPURIOUS_SUCCESS (1 << 4)
2cf95c18
SS
1541/*
1542 * Certain Intel host controllers have a limit to the number of endpoint
1543 * contexts they can handle. Ideally, they would signal that they can't handle
1544 * anymore endpoint contexts by returning a Resource Error for the Configure
1545 * Endpoint command, but they don't. Instead they expect software to keep track
1546 * of the number of active endpoints for them, across configure endpoint
1547 * commands, reset device commands, disable slot commands, and address device
1548 * commands.
1549 */
1550#define XHCI_EP_LIMIT_QUIRK (1 << 5)
f5182b41 1551#define XHCI_BROKEN_MSI (1 << 6)
c877b3b2 1552#define XHCI_RESET_ON_RESUME (1 << 7)
c29eea62 1553#define XHCI_SW_BW_CHECKING (1 << 8)
7e393a83 1554#define XHCI_AMD_0x96_HOST (1 << 9)
1530bbc6 1555#define XHCI_TRUST_TX_LENGTH (1 << 10)
3b3db026 1556#define XHCI_LPM_SUPPORT (1 << 11)
e3567d2c 1557#define XHCI_INTEL_HOST (1 << 12)
e95829f4 1558#define XHCI_SPURIOUS_REBOOT (1 << 13)
71c731a2 1559#define XHCI_COMP_MODE_QUIRK (1 << 14)
80fab3b2 1560#define XHCI_AVOID_BEI (1 << 15)
52fb6125 1561#define XHCI_PLAT (1 << 16)
455f5892 1562#define XHCI_SLOW_SUSPEND (1 << 17)
638298dc 1563#define XHCI_SPURIOUS_WAKEUP (1 << 18)
8f873c1f
HG
1564/* For controllers with a broken beyond repair streams implementation */
1565#define XHCI_BROKEN_STREAMS (1 << 19)
2cf95c18
SS
1566 unsigned int num_active_eps;
1567 unsigned int limit_active_eps;
f6ff0ac8
SS
1568 /* There are two roothubs to keep track of bus suspend info for */
1569 struct xhci_bus_state bus_state[2];
da6699ce
SS
1570 /* Is each xHCI roothub port a USB 3.0, USB 2.0, or USB 1.1 port? */
1571 u8 *port_array;
1572 /* Array of pointers to USB 3.0 PORTSC registers */
28ccd296 1573 __le32 __iomem **usb3_ports;
da6699ce
SS
1574 unsigned int num_usb3_ports;
1575 /* Array of pointers to USB 2.0 PORTSC registers */
28ccd296 1576 __le32 __iomem **usb2_ports;
da6699ce 1577 unsigned int num_usb2_ports;
fc71ff75
AX
1578 /* support xHCI 0.96 spec USB2 software LPM */
1579 unsigned sw_lpm_support:1;
1580 /* support xHCI 1.0 spec USB2 hardware LPM */
1581 unsigned hw_lpm_support:1;
b630d4b9
MN
1582 /* cached usb2 extened protocol capabilites */
1583 u32 *ext_caps;
1584 unsigned int num_ext_caps;
71c731a2
AC
1585 /* Compliance Mode Recovery Data */
1586 struct timer_list comp_mode_recovery_timer;
1587 u32 port_status_u0;
1588/* Compliance Mode Timer Triggered every 2 seconds */
1589#define COMP_MODE_RCVRY_MSECS 2000
74c68741
SS
1590};
1591
1592/* convert between an HCD pointer and the corresponding EHCI_HCD */
1593static inline struct xhci_hcd *hcd_to_xhci(struct usb_hcd *hcd)
1594{
b02d0ed6 1595 return *((struct xhci_hcd **) (hcd->hcd_priv));
74c68741
SS
1596}
1597
1598static inline struct usb_hcd *xhci_to_hcd(struct xhci_hcd *xhci)
1599{
b02d0ed6 1600 return xhci->main_hcd;
74c68741
SS
1601}
1602
74c68741 1603#define xhci_dbg(xhci, fmt, args...) \
b2497509 1604 dev_dbg(xhci_to_hcd(xhci)->self.controller , fmt , ## args)
74c68741
SS
1605#define xhci_err(xhci, fmt, args...) \
1606 dev_err(xhci_to_hcd(xhci)->self.controller , fmt , ## args)
1607#define xhci_warn(xhci, fmt, args...) \
1608 dev_warn(xhci_to_hcd(xhci)->self.controller , fmt , ## args)
8202ce2e
SS
1609#define xhci_warn_ratelimited(xhci, fmt, args...) \
1610 dev_warn_ratelimited(xhci_to_hcd(xhci)->self.controller , fmt , ## args)
99705092
HG
1611#define xhci_info(xhci, fmt, args...) \
1612 dev_info(xhci_to_hcd(xhci)->self.controller , fmt , ## args)
74c68741 1613
477632df
SS
1614/*
1615 * Registers should always be accessed with double word or quad word accesses.
1616 *
1617 * Some xHCI implementations may support 64-bit address pointers. Registers
1618 * with 64-bit address pointers should be written to with dword accesses by
1619 * writing the low dword first (ptr[0]), then the high dword (ptr[1]) second.
1620 * xHCI implementations that do not support 64-bit address pointers will ignore
1621 * the high dword, and write order is irrelevant.
1622 */
f7b2e403
SS
1623static inline u64 xhci_read_64(const struct xhci_hcd *xhci,
1624 __le64 __iomem *regs)
1625{
1626 __u32 __iomem *ptr = (__u32 __iomem *) regs;
1627 u64 val_lo = readl(ptr);
1628 u64 val_hi = readl(ptr + 1);
1629 return val_lo + (val_hi << 32);
1630}
477632df
SS
1631static inline void xhci_write_64(struct xhci_hcd *xhci,
1632 const u64 val, __le64 __iomem *regs)
1633{
1634 __u32 __iomem *ptr = (__u32 __iomem *) regs;
1635 u32 val_lo = lower_32_bits(val);
1636 u32 val_hi = upper_32_bits(val);
1637
1638 writel(val_lo, ptr);
1639 writel(val_hi, ptr + 1);
1640}
1641
b0567b3f
SS
1642static inline int xhci_link_trb_quirk(struct xhci_hcd *xhci)
1643{
d7826599 1644 return xhci->quirks & XHCI_LINK_TRB_QUIRK;
b0567b3f
SS
1645}
1646
66d4eadd 1647/* xHCI debugging */
09ece30e 1648void xhci_print_ir_set(struct xhci_hcd *xhci, int set_num);
66d4eadd 1649void xhci_print_registers(struct xhci_hcd *xhci);
0ebbab37
SS
1650void xhci_dbg_regs(struct xhci_hcd *xhci);
1651void xhci_print_run_regs(struct xhci_hcd *xhci);
d0e96f5a
SS
1652void xhci_print_trb_offsets(struct xhci_hcd *xhci, union xhci_trb *trb);
1653void xhci_debug_trb(struct xhci_hcd *xhci, union xhci_trb *trb);
7f84eef0 1654void xhci_debug_segment(struct xhci_hcd *xhci, struct xhci_segment *seg);
0ebbab37
SS
1655void xhci_debug_ring(struct xhci_hcd *xhci, struct xhci_ring *ring);
1656void xhci_dbg_erst(struct xhci_hcd *xhci, struct xhci_erst *erst);
1657void xhci_dbg_cmd_ptrs(struct xhci_hcd *xhci);
7f84eef0 1658void xhci_dbg_ring_ptrs(struct xhci_hcd *xhci, struct xhci_ring *ring);
d115b048 1659void xhci_dbg_ctx(struct xhci_hcd *xhci, struct xhci_container_ctx *ctx, unsigned int last_ep);
9c9a7dbf 1660char *xhci_get_slot_state(struct xhci_hcd *xhci,
2a8f82c4 1661 struct xhci_container_ctx *ctx);
e9df17eb
SS
1662void xhci_dbg_ep_rings(struct xhci_hcd *xhci,
1663 unsigned int slot_id, unsigned int ep_index,
1664 struct xhci_virt_ep *ep);
84a99f6f
XR
1665void xhci_dbg_trace(struct xhci_hcd *xhci, void (*trace)(struct va_format *),
1666 const char *fmt, ...);
66d4eadd 1667
3dbda77e 1668/* xHCI memory management */
66d4eadd
SS
1669void xhci_mem_cleanup(struct xhci_hcd *xhci);
1670int xhci_mem_init(struct xhci_hcd *xhci, gfp_t flags);
3ffbba95
SS
1671void xhci_free_virt_device(struct xhci_hcd *xhci, int slot_id);
1672int xhci_alloc_virt_device(struct xhci_hcd *xhci, int slot_id, struct usb_device *udev, gfp_t flags);
1673int xhci_setup_addressable_virt_dev(struct xhci_hcd *xhci, struct usb_device *udev);
2d1ee590
SS
1674void xhci_copy_ep0_dequeue_into_input_ctx(struct xhci_hcd *xhci,
1675 struct usb_device *udev);
d0e96f5a 1676unsigned int xhci_get_endpoint_index(struct usb_endpoint_descriptor *desc);
01c5f447 1677unsigned int xhci_get_endpoint_address(unsigned int ep_index);
f94e0186 1678unsigned int xhci_get_endpoint_flag(struct usb_endpoint_descriptor *desc);
ac9d8fe7
SS
1679unsigned int xhci_get_endpoint_flag_from_index(unsigned int ep_index);
1680unsigned int xhci_last_valid_endpoint(u32 added_ctxs);
f94e0186 1681void xhci_endpoint_zero(struct xhci_hcd *xhci, struct xhci_virt_device *virt_dev, struct usb_host_endpoint *ep);
2e27980e
SS
1682void xhci_drop_ep_from_interval_table(struct xhci_hcd *xhci,
1683 struct xhci_bw_info *ep_bw,
1684 struct xhci_interval_bw_table *bw_table,
1685 struct usb_device *udev,
1686 struct xhci_virt_ep *virt_ep,
1687 struct xhci_tt_bw_info *tt_info);
1688void xhci_update_tt_active_eps(struct xhci_hcd *xhci,
1689 struct xhci_virt_device *virt_dev,
1690 int old_active_eps);
9af5d71d
SS
1691void xhci_clear_endpoint_bw_info(struct xhci_bw_info *bw_info);
1692void xhci_update_bw_info(struct xhci_hcd *xhci,
1693 struct xhci_container_ctx *in_ctx,
1694 struct xhci_input_control_ctx *ctrl_ctx,
1695 struct xhci_virt_device *virt_dev);
f2217e8e 1696void xhci_endpoint_copy(struct xhci_hcd *xhci,
913a8a34
SS
1697 struct xhci_container_ctx *in_ctx,
1698 struct xhci_container_ctx *out_ctx,
1699 unsigned int ep_index);
1700void xhci_slot_copy(struct xhci_hcd *xhci,
1701 struct xhci_container_ctx *in_ctx,
1702 struct xhci_container_ctx *out_ctx);
f88ba78d
SS
1703int xhci_endpoint_init(struct xhci_hcd *xhci, struct xhci_virt_device *virt_dev,
1704 struct usb_device *udev, struct usb_host_endpoint *ep,
1705 gfp_t mem_flags);
f94e0186 1706void xhci_ring_free(struct xhci_hcd *xhci, struct xhci_ring *ring);
8dfec614
AX
1707int xhci_ring_expansion(struct xhci_hcd *xhci, struct xhci_ring *ring,
1708 unsigned int num_trbs, gfp_t flags);
412566bd
SS
1709void xhci_free_or_cache_endpoint_ring(struct xhci_hcd *xhci,
1710 struct xhci_virt_device *virt_dev,
1711 unsigned int ep_index);
8df75f42
SS
1712struct xhci_stream_info *xhci_alloc_stream_info(struct xhci_hcd *xhci,
1713 unsigned int num_stream_ctxs,
1714 unsigned int num_streams, gfp_t flags);
1715void xhci_free_stream_info(struct xhci_hcd *xhci,
1716 struct xhci_stream_info *stream_info);
1717void xhci_setup_streams_ep_input_ctx(struct xhci_hcd *xhci,
1718 struct xhci_ep_ctx *ep_ctx,
1719 struct xhci_stream_info *stream_info);
4daf9df5 1720void xhci_setup_no_streams_ep_input_ctx(struct xhci_ep_ctx *ep_ctx,
8df75f42 1721 struct xhci_virt_ep *ep);
2cf95c18
SS
1722void xhci_free_device_endpoint_resources(struct xhci_hcd *xhci,
1723 struct xhci_virt_device *virt_dev, bool drop_control_ep);
e9df17eb
SS
1724struct xhci_ring *xhci_dma_to_transfer_ring(
1725 struct xhci_virt_ep *ep,
1726 u64 address);
e9df17eb
SS
1727struct xhci_ring *xhci_stream_id_to_ring(
1728 struct xhci_virt_device *dev,
1729 unsigned int ep_index,
1730 unsigned int stream_id);
913a8a34 1731struct xhci_command *xhci_alloc_command(struct xhci_hcd *xhci,
a1d78c16
SS
1732 bool allocate_in_ctx, bool allocate_completion,
1733 gfp_t mem_flags);
4daf9df5 1734void xhci_urb_free_priv(struct urb_priv *urb_priv);
913a8a34
SS
1735void xhci_free_command(struct xhci_hcd *xhci,
1736 struct xhci_command *command);
66d4eadd 1737
66d4eadd 1738/* xHCI host controller glue */
552e0c4f 1739typedef void (*xhci_get_quirks_t)(struct device *, struct xhci_hcd *);
dc0b177c 1740int xhci_handshake(void __iomem *ptr, u32 mask, u32 done, int usec);
4f0f0bae 1741void xhci_quiesce(struct xhci_hcd *xhci);
66d4eadd
SS
1742int xhci_halt(struct xhci_hcd *xhci);
1743int xhci_reset(struct xhci_hcd *xhci);
1744int xhci_init(struct usb_hcd *hcd);
1745int xhci_run(struct usb_hcd *hcd);
1746void xhci_stop(struct usb_hcd *hcd);
1747void xhci_shutdown(struct usb_hcd *hcd);
552e0c4f 1748int xhci_gen_setup(struct usb_hcd *hcd, xhci_get_quirks_t get_quirks);
1885d9a3 1749void xhci_init_driver(struct hc_driver *drv, int (*setup_fn)(struct usb_hcd *));
436a3890
SS
1750
1751#ifdef CONFIG_PM
a1377e53 1752int xhci_suspend(struct xhci_hcd *xhci, bool do_wakeup);
5535b1d5 1753int xhci_resume(struct xhci_hcd *xhci, bool hibernated);
436a3890
SS
1754#else
1755#define xhci_suspend NULL
1756#define xhci_resume NULL
1757#endif
1758
66d4eadd 1759int xhci_get_frame(struct usb_hcd *hcd);
7f84eef0 1760irqreturn_t xhci_irq(struct usb_hcd *hcd);
851ec164 1761irqreturn_t xhci_msi_irq(int irq, void *hcd);
3ffbba95
SS
1762int xhci_alloc_dev(struct usb_hcd *hcd, struct usb_device *udev);
1763void xhci_free_dev(struct usb_hcd *hcd, struct usb_device *udev);
839c817c
SS
1764int xhci_alloc_tt_info(struct xhci_hcd *xhci,
1765 struct xhci_virt_device *virt_dev,
1766 struct usb_device *hdev,
1767 struct usb_tt *tt, gfp_t mem_flags);
8df75f42
SS
1768int xhci_alloc_streams(struct usb_hcd *hcd, struct usb_device *udev,
1769 struct usb_host_endpoint **eps, unsigned int num_eps,
1770 unsigned int num_streams, gfp_t mem_flags);
1771int xhci_free_streams(struct usb_hcd *hcd, struct usb_device *udev,
1772 struct usb_host_endpoint **eps, unsigned int num_eps,
1773 gfp_t mem_flags);
3ffbba95 1774int xhci_address_device(struct usb_hcd *hcd, struct usb_device *udev);
48fc7dbd 1775int xhci_enable_device(struct usb_hcd *hcd, struct usb_device *udev);
9574323c 1776int xhci_update_device(struct usb_hcd *hcd, struct usb_device *udev);
65580b43
AX
1777int xhci_set_usb2_hardware_lpm(struct usb_hcd *hcd,
1778 struct usb_device *udev, int enable);
ac1c1b7f
SS
1779int xhci_update_hub_device(struct usb_hcd *hcd, struct usb_device *hdev,
1780 struct usb_tt *tt, gfp_t mem_flags);
d0e96f5a
SS
1781int xhci_urb_enqueue(struct usb_hcd *hcd, struct urb *urb, gfp_t mem_flags);
1782int xhci_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status);
f94e0186
SS
1783int xhci_add_endpoint(struct usb_hcd *hcd, struct usb_device *udev, struct usb_host_endpoint *ep);
1784int xhci_drop_endpoint(struct usb_hcd *hcd, struct usb_device *udev, struct usb_host_endpoint *ep);
a1587d97 1785void xhci_endpoint_reset(struct usb_hcd *hcd, struct usb_host_endpoint *ep);
f0615c45 1786int xhci_discover_or_reset_device(struct usb_hcd *hcd, struct usb_device *udev);
f94e0186
SS
1787int xhci_check_bandwidth(struct usb_hcd *hcd, struct usb_device *udev);
1788void xhci_reset_bandwidth(struct usb_hcd *hcd, struct usb_device *udev);
7f84eef0
SS
1789
1790/* xHCI ring, segment, TRB, and TD functions */
23e3be11 1791dma_addr_t xhci_trb_virt_to_dma(struct xhci_segment *seg, union xhci_trb *trb);
cffb9be8
HG
1792struct xhci_segment *trb_in_td(struct xhci_hcd *xhci,
1793 struct xhci_segment *start_seg, union xhci_trb *start_trb,
1794 union xhci_trb *end_trb, dma_addr_t suspect_dma, bool debug);
b45b5069 1795int xhci_is_vendor_info_code(struct xhci_hcd *xhci, unsigned int trb_comp_code);
23e3be11 1796void xhci_ring_cmd_db(struct xhci_hcd *xhci);
ddba5cd0
MN
1797int xhci_queue_slot_control(struct xhci_hcd *xhci, struct xhci_command *cmd,
1798 u32 trb_type, u32 slot_id);
1799int xhci_queue_address_device(struct xhci_hcd *xhci, struct xhci_command *cmd,
1800 dma_addr_t in_ctx_ptr, u32 slot_id, enum xhci_setup_dev);
1801int xhci_queue_vendor_command(struct xhci_hcd *xhci, struct xhci_command *cmd,
0238634d 1802 u32 field1, u32 field2, u32 field3, u32 field4);
ddba5cd0
MN
1803int xhci_queue_stop_endpoint(struct xhci_hcd *xhci, struct xhci_command *cmd,
1804 int slot_id, unsigned int ep_index, int suspend);
23e3be11
SS
1805int xhci_queue_ctrl_tx(struct xhci_hcd *xhci, gfp_t mem_flags, struct urb *urb,
1806 int slot_id, unsigned int ep_index);
1807int xhci_queue_bulk_tx(struct xhci_hcd *xhci, gfp_t mem_flags, struct urb *urb,
1808 int slot_id, unsigned int ep_index);
624defa1
SS
1809int xhci_queue_intr_tx(struct xhci_hcd *xhci, gfp_t mem_flags, struct urb *urb,
1810 int slot_id, unsigned int ep_index);
04e51901
AX
1811int xhci_queue_isoc_tx_prepare(struct xhci_hcd *xhci, gfp_t mem_flags,
1812 struct urb *urb, int slot_id, unsigned int ep_index);
ddba5cd0
MN
1813int xhci_queue_configure_endpoint(struct xhci_hcd *xhci,
1814 struct xhci_command *cmd, dma_addr_t in_ctx_ptr, u32 slot_id,
1815 bool command_must_succeed);
1816int xhci_queue_evaluate_context(struct xhci_hcd *xhci, struct xhci_command *cmd,
1817 dma_addr_t in_ctx_ptr, u32 slot_id, bool command_must_succeed);
1818int xhci_queue_reset_ep(struct xhci_hcd *xhci, struct xhci_command *cmd,
1819 int slot_id, unsigned int ep_index);
1820int xhci_queue_reset_device(struct xhci_hcd *xhci, struct xhci_command *cmd,
1821 u32 slot_id);
c92bcfa7
SS
1822void xhci_find_new_dequeue_state(struct xhci_hcd *xhci,
1823 unsigned int slot_id, unsigned int ep_index,
e9df17eb
SS
1824 unsigned int stream_id, struct xhci_td *cur_td,
1825 struct xhci_dequeue_state *state);
c92bcfa7 1826void xhci_queue_new_dequeue_state(struct xhci_hcd *xhci,
63a0d9ab 1827 unsigned int slot_id, unsigned int ep_index,
e9df17eb 1828 unsigned int stream_id,
63a0d9ab 1829 struct xhci_dequeue_state *deq_state);
82d1009f 1830void xhci_cleanup_stalled_ring(struct xhci_hcd *xhci,
d97b4f8d 1831 unsigned int ep_index, struct xhci_td *td);
ac9d8fe7
SS
1832void xhci_queue_config_ep_quirk(struct xhci_hcd *xhci,
1833 unsigned int slot_id, unsigned int ep_index,
1834 struct xhci_dequeue_state *deq_state);
6f5165cf 1835void xhci_stop_endpoint_command_watchdog(unsigned long arg);
c311e391
MN
1836void xhci_handle_command_timeout(unsigned long data);
1837
be88fe4f
AX
1838void xhci_ring_ep_doorbell(struct xhci_hcd *xhci, unsigned int slot_id,
1839 unsigned int ep_index, unsigned int stream_id);
c9aa1a2d 1840void xhci_cleanup_command_queue(struct xhci_hcd *xhci);
66d4eadd 1841
0f2a7930 1842/* xHCI roothub code */
c9682dff
AX
1843void xhci_set_link_state(struct xhci_hcd *xhci, __le32 __iomem **port_array,
1844 int port_id, u32 link_state);
3b3db026
SS
1845int xhci_enable_usb3_lpm_timeout(struct usb_hcd *hcd,
1846 struct usb_device *udev, enum usb3_link_state state);
1847int xhci_disable_usb3_lpm_timeout(struct usb_hcd *hcd,
1848 struct usb_device *udev, enum usb3_link_state state);
d2f52c9e
AX
1849void xhci_test_and_clear_bit(struct xhci_hcd *xhci, __le32 __iomem **port_array,
1850 int port_id, u32 port_bit);
0f2a7930
SS
1851int xhci_hub_control(struct usb_hcd *hcd, u16 typeReq, u16 wValue, u16 wIndex,
1852 char *buf, u16 wLength);
1853int xhci_hub_status_data(struct usb_hcd *hcd, char *buf);
3f5eb141 1854int xhci_find_raw_port_number(struct usb_hcd *hcd, int port1);
436a3890
SS
1855
1856#ifdef CONFIG_PM
9777e3ce
AX
1857int xhci_bus_suspend(struct usb_hcd *hcd);
1858int xhci_bus_resume(struct usb_hcd *hcd);
436a3890
SS
1859#else
1860#define xhci_bus_suspend NULL
1861#define xhci_bus_resume NULL
1862#endif /* CONFIG_PM */
1863
56192531 1864u32 xhci_port_state_to_neutral(u32 state);
5233630f
SS
1865int xhci_find_slot_id_by_port(struct usb_hcd *hcd, struct xhci_hcd *xhci,
1866 u16 port);
56192531 1867void xhci_ring_device(struct xhci_hcd *xhci, int slot_id);
0f2a7930 1868
d115b048 1869/* xHCI contexts */
4daf9df5 1870struct xhci_input_control_ctx *xhci_get_input_control_ctx(struct xhci_container_ctx *ctx);
d115b048
JY
1871struct xhci_slot_ctx *xhci_get_slot_ctx(struct xhci_hcd *xhci, struct xhci_container_ctx *ctx);
1872struct xhci_ep_ctx *xhci_get_ep_ctx(struct xhci_hcd *xhci, struct xhci_container_ctx *ctx, unsigned int ep_index);
1873
74c68741 1874#endif /* __LINUX_XHCI_HCD_H */