2 * Copyright (c) 2000-2004 by David Brownell
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms of the GNU General Public License as published by the
6 * Free Software Foundation; either version 2 of the License, or (at your
7 * option) any later version.
9 * This program is distributed in the hope that it will be useful, but
10 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
11 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software Foundation,
16 * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19 #include <linux/module.h>
20 #include <linux/pci.h>
21 #include <linux/dmapool.h>
22 #include <linux/kernel.h>
23 #include <linux/delay.h>
24 #include <linux/ioport.h>
25 #include <linux/sched.h>
26 #include <linux/vmalloc.h>
27 #include <linux/errno.h>
28 #include <linux/init.h>
29 #include <linux/timer.h>
30 #include <linux/ktime.h>
31 #include <linux/list.h>
32 #include <linux/interrupt.h>
33 #include <linux/usb.h>
34 #include <linux/usb/hcd.h>
35 #include <linux/moduleparam.h>
36 #include <linux/dma-mapping.h>
37 #include <linux/debugfs.h>
38 #include <linux/slab.h>
39 #include <linux/uaccess.h>
41 #include <asm/byteorder.h>
44 #include <asm/system.h>
45 #include <asm/unaligned.h>
47 /*-------------------------------------------------------------------------*/
50 * EHCI hc_driver implementation ... experimental, incomplete.
51 * Based on the final 1.0 register interface specification.
53 * USB 2.0 shows up in upcoming www.pcmcia.org technology.
54 * First was PCMCIA, like ISA; then CardBus, which is PCI.
55 * Next comes "CardBay", using USB 2.0 signals.
57 * Contains additional contributions by Brad Hards, Rory Bolt, and others.
58 * Special thanks to Intel and VIA for providing host controllers to
59 * test this driver on, and Cypress (including In-System Design) for
60 * providing early devices for those host controllers to talk to!
63 #define DRIVER_AUTHOR "David Brownell"
64 #define DRIVER_DESC "USB 2.0 'Enhanced' Host Controller (EHCI) Driver"
66 static const char hcd_name
[] = "ehci_hcd";
76 /* magic numbers that can affect system performance */
77 #define EHCI_TUNE_CERR 3 /* 0-3 qtd retries; 0 == don't stop */
78 #define EHCI_TUNE_RL_HS 4 /* nak throttle; see 4.9 */
79 #define EHCI_TUNE_RL_TT 0
80 #define EHCI_TUNE_MULT_HS 1 /* 1-3 transactions/uframe; 4.10.3 */
81 #define EHCI_TUNE_MULT_TT 1
83 * Some drivers think it's safe to schedule isochronous transfers more than
84 * 256 ms into the future (partly as a result of an old bug in the scheduling
85 * code). In an attempt to avoid trouble, we will use a minimum scheduling
86 * length of 512 frames instead of 256.
88 #define EHCI_TUNE_FLS 1 /* (medium) 512-frame schedule */
90 #define EHCI_IAA_MSECS 10 /* arbitrary */
91 #define EHCI_IO_JIFFIES (HZ/10) /* io watchdog > irq_thresh */
92 #define EHCI_ASYNC_JIFFIES (HZ/20) /* async idle timeout */
93 #define EHCI_SHRINK_FRAMES 5 /* async qh unlink delay */
95 /* Initial IRQ latency: faster than hw default */
96 static int log2_irq_thresh
= 0; // 0 to 6
97 module_param (log2_irq_thresh
, int, S_IRUGO
);
98 MODULE_PARM_DESC (log2_irq_thresh
, "log2 IRQ latency, 1-64 microframes");
100 /* initial park setting: slower than hw default */
101 static unsigned park
= 0;
102 module_param (park
, uint
, S_IRUGO
);
103 MODULE_PARM_DESC (park
, "park setting; 1-3 back-to-back async packets");
105 /* for flakey hardware, ignore overcurrent indicators */
106 static int ignore_oc
= 0;
107 module_param (ignore_oc
, bool, S_IRUGO
);
108 MODULE_PARM_DESC (ignore_oc
, "ignore bogus hardware overcurrent indications");
110 /* for link power management(LPM) feature */
111 static unsigned int hird
;
112 module_param(hird
, int, S_IRUGO
);
113 MODULE_PARM_DESC(hird
, "host initiated resume duration, +1 for each 75us\n");
115 #define INTR_MASK (STS_IAA | STS_FATAL | STS_PCD | STS_ERR | STS_INT)
117 /*-------------------------------------------------------------------------*/
120 #include "ehci-dbg.c"
122 /*-------------------------------------------------------------------------*/
125 timer_action(struct ehci_hcd
*ehci
, enum ehci_timer_action action
)
127 /* Don't override timeouts which shrink or (later) disable
128 * the async ring; just the I/O watchdog. Note that if a
129 * SHRINK were pending, OFF would never be requested.
131 if (timer_pending(&ehci
->watchdog
)
132 && ((BIT(TIMER_ASYNC_SHRINK
) | BIT(TIMER_ASYNC_OFF
))
136 if (!test_and_set_bit(action
, &ehci
->actions
)) {
140 case TIMER_IO_WATCHDOG
:
141 if (!ehci
->need_io_watchdog
)
145 case TIMER_ASYNC_OFF
:
146 t
= EHCI_ASYNC_JIFFIES
;
148 /* case TIMER_ASYNC_SHRINK: */
150 /* add a jiffie since we synch against the
151 * 8 KHz uframe counter.
153 t
= DIV_ROUND_UP(EHCI_SHRINK_FRAMES
* HZ
, 1000) + 1;
156 mod_timer(&ehci
->watchdog
, t
+ jiffies
);
160 /*-------------------------------------------------------------------------*/
163 * handshake - spin reading hc until handshake completes or fails
164 * @ptr: address of hc register to be read
165 * @mask: bits to look at in result of read
166 * @done: value of those bits when handshake succeeds
167 * @usec: timeout in microseconds
169 * Returns negative errno, or zero on success
171 * Success happens when the "mask" bits have the specified value (hardware
172 * handshake done). There are two failure modes: "usec" have passed (major
173 * hardware flakeout), or the register reads as all-ones (hardware removed).
175 * That last failure should_only happen in cases like physical cardbus eject
176 * before driver shutdown. But it also seems to be caused by bugs in cardbus
177 * bridge shutdown: shutting down the bridge before the devices using it.
179 static int handshake (struct ehci_hcd
*ehci
, void __iomem
*ptr
,
180 u32 mask
, u32 done
, int usec
)
185 result
= ehci_readl(ehci
, ptr
);
186 if (result
== ~(u32
)0) /* card removed */
197 /* check TDI/ARC silicon is in host mode */
198 static int tdi_in_host_mode (struct ehci_hcd
*ehci
)
200 u32 __iomem
*reg_ptr
;
203 reg_ptr
= (u32 __iomem
*)(((u8 __iomem
*)ehci
->regs
) + USBMODE
);
204 tmp
= ehci_readl(ehci
, reg_ptr
);
205 return (tmp
& 3) == USBMODE_CM_HC
;
208 /* force HC to halt state from unknown (EHCI spec section 2.3) */
209 static int ehci_halt (struct ehci_hcd
*ehci
)
211 u32 temp
= ehci_readl(ehci
, &ehci
->regs
->status
);
213 /* disable any irqs left enabled by previous code */
214 ehci_writel(ehci
, 0, &ehci
->regs
->intr_enable
);
216 if (ehci_is_TDI(ehci
) && tdi_in_host_mode(ehci
) == 0) {
220 if ((temp
& STS_HALT
) != 0)
223 temp
= ehci_readl(ehci
, &ehci
->regs
->command
);
225 ehci_writel(ehci
, temp
, &ehci
->regs
->command
);
226 return handshake (ehci
, &ehci
->regs
->status
,
227 STS_HALT
, STS_HALT
, 16 * 125);
230 static int handshake_on_error_set_halt(struct ehci_hcd
*ehci
, void __iomem
*ptr
,
231 u32 mask
, u32 done
, int usec
)
235 error
= handshake(ehci
, ptr
, mask
, done
, usec
);
238 ehci_to_hcd(ehci
)->state
= HC_STATE_HALT
;
239 ehci_err(ehci
, "force halt; handshake %p %08x %08x -> %d\n",
240 ptr
, mask
, done
, error
);
246 /* put TDI/ARC silicon into EHCI mode */
247 static void tdi_reset (struct ehci_hcd
*ehci
)
249 u32 __iomem
*reg_ptr
;
252 reg_ptr
= (u32 __iomem
*)(((u8 __iomem
*)ehci
->regs
) + USBMODE
);
253 tmp
= ehci_readl(ehci
, reg_ptr
);
254 tmp
|= USBMODE_CM_HC
;
255 /* The default byte access to MMR space is LE after
256 * controller reset. Set the required endian mode
257 * for transfer buffers to match the host microprocessor
259 if (ehci_big_endian_mmio(ehci
))
261 ehci_writel(ehci
, tmp
, reg_ptr
);
264 /* reset a non-running (STS_HALT == 1) controller */
265 static int ehci_reset (struct ehci_hcd
*ehci
)
268 u32 command
= ehci_readl(ehci
, &ehci
->regs
->command
);
270 /* If the EHCI debug controller is active, special care must be
271 * taken before and after a host controller reset */
272 if (ehci
->debug
&& !dbgp_reset_prep())
275 command
|= CMD_RESET
;
276 dbg_cmd (ehci
, "reset", command
);
277 ehci_writel(ehci
, command
, &ehci
->regs
->command
);
278 ehci_to_hcd(ehci
)->state
= HC_STATE_HALT
;
279 ehci
->next_statechange
= jiffies
;
280 retval
= handshake (ehci
, &ehci
->regs
->command
,
281 CMD_RESET
, 0, 250 * 1000);
283 if (ehci
->has_hostpc
) {
284 ehci_writel(ehci
, USBMODE_EX_HC
| USBMODE_EX_VBPS
,
285 (u32 __iomem
*)(((u8
*)ehci
->regs
) + USBMODE_EX
));
286 ehci_writel(ehci
, TXFIFO_DEFAULT
,
287 (u32 __iomem
*)(((u8
*)ehci
->regs
) + TXFILLTUNING
));
292 if (ehci_is_TDI(ehci
))
296 dbgp_external_startup();
301 /* idle the controller (from running) */
302 static void ehci_quiesce (struct ehci_hcd
*ehci
)
307 if (!HC_IS_RUNNING (ehci_to_hcd(ehci
)->state
))
311 /* wait for any schedule enables/disables to take effect */
312 temp
= ehci_readl(ehci
, &ehci
->regs
->command
) << 10;
313 temp
&= STS_ASS
| STS_PSS
;
314 if (handshake_on_error_set_halt(ehci
, &ehci
->regs
->status
,
315 STS_ASS
| STS_PSS
, temp
, 16 * 125))
318 /* then disable anything that's still active */
319 temp
= ehci_readl(ehci
, &ehci
->regs
->command
);
320 temp
&= ~(CMD_ASE
| CMD_IAAD
| CMD_PSE
);
321 ehci_writel(ehci
, temp
, &ehci
->regs
->command
);
323 /* hardware can take 16 microframes to turn off ... */
324 handshake_on_error_set_halt(ehci
, &ehci
->regs
->status
,
325 STS_ASS
| STS_PSS
, 0, 16 * 125);
328 /*-------------------------------------------------------------------------*/
330 static void end_unlink_async(struct ehci_hcd
*ehci
);
331 static void ehci_work(struct ehci_hcd
*ehci
);
333 #include "ehci-hub.c"
334 #include "ehci-lpm.c"
335 #include "ehci-mem.c"
337 #include "ehci-sched.c"
339 /*-------------------------------------------------------------------------*/
341 static void ehci_iaa_watchdog(unsigned long param
)
343 struct ehci_hcd
*ehci
= (struct ehci_hcd
*) param
;
346 spin_lock_irqsave (&ehci
->lock
, flags
);
348 /* Lost IAA irqs wedge things badly; seen first with a vt8235.
349 * So we need this watchdog, but must protect it against both
350 * (a) SMP races against real IAA firing and retriggering, and
351 * (b) clean HC shutdown, when IAA watchdog was pending.
354 && !timer_pending(&ehci
->iaa_watchdog
)
355 && HC_IS_RUNNING(ehci_to_hcd(ehci
)->state
)) {
358 /* If we get here, IAA is *REALLY* late. It's barely
359 * conceivable that the system is so busy that CMD_IAAD
360 * is still legitimately set, so let's be sure it's
361 * clear before we read STS_IAA. (The HC should clear
362 * CMD_IAAD when it sets STS_IAA.)
364 cmd
= ehci_readl(ehci
, &ehci
->regs
->command
);
366 ehci_writel(ehci
, cmd
& ~CMD_IAAD
,
367 &ehci
->regs
->command
);
369 /* If IAA is set here it either legitimately triggered
370 * before we cleared IAAD above (but _way_ late, so we'll
371 * still count it as lost) ... or a silicon erratum:
372 * - VIA seems to set IAA without triggering the IRQ;
373 * - IAAD potentially cleared without setting IAA.
375 status
= ehci_readl(ehci
, &ehci
->regs
->status
);
376 if ((status
& STS_IAA
) || !(cmd
& CMD_IAAD
)) {
377 COUNT (ehci
->stats
.lost_iaa
);
378 ehci_writel(ehci
, STS_IAA
, &ehci
->regs
->status
);
381 ehci_vdbg(ehci
, "IAA watchdog: status %x cmd %x\n",
383 end_unlink_async(ehci
);
386 spin_unlock_irqrestore(&ehci
->lock
, flags
);
389 static void ehci_watchdog(unsigned long param
)
391 struct ehci_hcd
*ehci
= (struct ehci_hcd
*) param
;
394 spin_lock_irqsave(&ehci
->lock
, flags
);
396 /* stop async processing after it's idled a bit */
397 if (test_bit (TIMER_ASYNC_OFF
, &ehci
->actions
))
398 start_unlink_async (ehci
, ehci
->async
);
400 /* ehci could run by timer, without IRQs ... */
403 spin_unlock_irqrestore (&ehci
->lock
, flags
);
406 /* On some systems, leaving remote wakeup enabled prevents system shutdown.
407 * The firmware seems to think that powering off is a wakeup event!
408 * This routine turns off remote wakeup and everything else, on all ports.
410 static void ehci_turn_off_all_ports(struct ehci_hcd
*ehci
)
412 int port
= HCS_N_PORTS(ehci
->hcs_params
);
415 ehci_writel(ehci
, PORT_RWC_BITS
,
416 &ehci
->regs
->port_status
[port
]);
420 * Halt HC, turn off all ports, and let the BIOS use the companion controllers.
421 * Should be called with ehci->lock held.
423 static void ehci_silence_controller(struct ehci_hcd
*ehci
)
426 ehci_turn_off_all_ports(ehci
);
428 /* make BIOS/etc use companion controller during reboot */
429 ehci_writel(ehci
, 0, &ehci
->regs
->configured_flag
);
431 /* unblock posted writes */
432 ehci_readl(ehci
, &ehci
->regs
->configured_flag
);
435 /* ehci_shutdown kick in for silicon on any bus (not just pci, etc).
436 * This forcibly disables dma and IRQs, helping kexec and other cases
437 * where the next system software may expect clean state.
439 static void ehci_shutdown(struct usb_hcd
*hcd
)
441 struct ehci_hcd
*ehci
= hcd_to_ehci(hcd
);
443 del_timer_sync(&ehci
->watchdog
);
444 del_timer_sync(&ehci
->iaa_watchdog
);
446 spin_lock_irq(&ehci
->lock
);
447 ehci_silence_controller(ehci
);
448 spin_unlock_irq(&ehci
->lock
);
451 static void ehci_port_power (struct ehci_hcd
*ehci
, int is_on
)
455 if (!HCS_PPC (ehci
->hcs_params
))
458 ehci_dbg (ehci
, "...power%s ports...\n", is_on
? "up" : "down");
459 for (port
= HCS_N_PORTS (ehci
->hcs_params
); port
> 0; )
460 (void) ehci_hub_control(ehci_to_hcd(ehci
),
461 is_on
? SetPortFeature
: ClearPortFeature
,
464 /* Flush those writes */
465 ehci_readl(ehci
, &ehci
->regs
->command
);
469 /*-------------------------------------------------------------------------*/
472 * ehci_work is called from some interrupts, timers, and so on.
473 * it calls driver completion functions, after dropping ehci->lock.
475 static void ehci_work (struct ehci_hcd
*ehci
)
477 timer_action_done (ehci
, TIMER_IO_WATCHDOG
);
479 /* another CPU may drop ehci->lock during a schedule scan while
480 * it reports urb completions. this flag guards against bogus
481 * attempts at re-entrant schedule scanning.
487 if (ehci
->next_uframe
!= -1)
488 scan_periodic (ehci
);
491 /* the IO watchdog guards against hardware or driver bugs that
492 * misplace IRQs, and should let us run completely without IRQs.
493 * such lossage has been observed on both VT6202 and VT8235.
495 if (HC_IS_RUNNING (ehci_to_hcd(ehci
)->state
) &&
496 (ehci
->async
->qh_next
.ptr
!= NULL
||
497 ehci
->periodic_sched
!= 0))
498 timer_action (ehci
, TIMER_IO_WATCHDOG
);
502 * Called when the ehci_hcd module is removed.
504 static void ehci_stop (struct usb_hcd
*hcd
)
506 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
508 ehci_dbg (ehci
, "stop\n");
510 /* no more interrupts ... */
511 del_timer_sync (&ehci
->watchdog
);
512 del_timer_sync(&ehci
->iaa_watchdog
);
514 spin_lock_irq(&ehci
->lock
);
515 if (HC_IS_RUNNING (hcd
->state
))
518 ehci_silence_controller(ehci
);
520 spin_unlock_irq(&ehci
->lock
);
522 remove_companion_file(ehci
);
523 remove_debug_files (ehci
);
525 /* root hub is shut down separately (first, when possible) */
526 spin_lock_irq (&ehci
->lock
);
529 spin_unlock_irq (&ehci
->lock
);
530 ehci_mem_cleanup (ehci
);
533 ehci_dbg (ehci
, "irq normal %ld err %ld reclaim %ld (lost %ld)\n",
534 ehci
->stats
.normal
, ehci
->stats
.error
, ehci
->stats
.reclaim
,
535 ehci
->stats
.lost_iaa
);
536 ehci_dbg (ehci
, "complete %ld unlink %ld\n",
537 ehci
->stats
.complete
, ehci
->stats
.unlink
);
540 dbg_status (ehci
, "ehci_stop completed",
541 ehci_readl(ehci
, &ehci
->regs
->status
));
544 /* one-time init, only for memory state */
545 static int ehci_init(struct usb_hcd
*hcd
)
547 struct ehci_hcd
*ehci
= hcd_to_ehci(hcd
);
551 struct ehci_qh_hw
*hw
;
553 spin_lock_init(&ehci
->lock
);
556 * keep io watchdog by default, those good HCDs could turn off it later
558 ehci
->need_io_watchdog
= 1;
559 init_timer(&ehci
->watchdog
);
560 ehci
->watchdog
.function
= ehci_watchdog
;
561 ehci
->watchdog
.data
= (unsigned long) ehci
;
563 init_timer(&ehci
->iaa_watchdog
);
564 ehci
->iaa_watchdog
.function
= ehci_iaa_watchdog
;
565 ehci
->iaa_watchdog
.data
= (unsigned long) ehci
;
568 * hw default: 1K periodic list heads, one per frame.
569 * periodic_size can shrink by USBCMD update if hcc_params allows.
571 ehci
->periodic_size
= DEFAULT_I_TDPS
;
572 INIT_LIST_HEAD(&ehci
->cached_itd_list
);
573 INIT_LIST_HEAD(&ehci
->cached_sitd_list
);
574 if ((retval
= ehci_mem_init(ehci
, GFP_KERNEL
)) < 0)
577 /* controllers may cache some of the periodic schedule ... */
578 hcc_params
= ehci_readl(ehci
, &ehci
->caps
->hcc_params
);
579 if (HCC_ISOC_CACHE(hcc_params
)) // full frame cache
580 ehci
->i_thresh
= 2 + 8;
581 else // N microframes cached
582 ehci
->i_thresh
= 2 + HCC_ISOC_THRES(hcc_params
);
584 ehci
->reclaim
= NULL
;
585 ehci
->next_uframe
= -1;
586 ehci
->clock_frame
= -1;
589 * dedicate a qh for the async ring head, since we couldn't unlink
590 * a 'real' qh without stopping the async schedule [4.8]. use it
591 * as the 'reclamation list head' too.
592 * its dummy is used in hw_alt_next of many tds, to prevent the qh
593 * from automatically advancing to the next td after short reads.
595 ehci
->async
->qh_next
.qh
= NULL
;
596 hw
= ehci
->async
->hw
;
597 hw
->hw_next
= QH_NEXT(ehci
, ehci
->async
->qh_dma
);
598 hw
->hw_info1
= cpu_to_hc32(ehci
, QH_HEAD
);
599 hw
->hw_token
= cpu_to_hc32(ehci
, QTD_STS_HALT
);
600 hw
->hw_qtd_next
= EHCI_LIST_END(ehci
);
601 ehci
->async
->qh_state
= QH_STATE_LINKED
;
602 hw
->hw_alt_next
= QTD_NEXT(ehci
, ehci
->async
->dummy
->qtd_dma
);
604 /* clear interrupt enables, set irq latency */
605 if (log2_irq_thresh
< 0 || log2_irq_thresh
> 6)
607 temp
= 1 << (16 + log2_irq_thresh
);
608 if (HCC_PER_PORT_CHANGE_EVENT(hcc_params
)) {
610 ehci_dbg(ehci
, "enable per-port change event\n");
613 if (HCC_CANPARK(hcc_params
)) {
614 /* HW default park == 3, on hardware that supports it (like
615 * NVidia and ALI silicon), maximizes throughput on the async
616 * schedule by avoiding QH fetches between transfers.
618 * With fast usb storage devices and NForce2, "park" seems to
619 * make problems: throughput reduction (!), data errors...
622 park
= min(park
, (unsigned) 3);
626 ehci_dbg(ehci
, "park %d\n", park
);
628 if (HCC_PGM_FRAMELISTLEN(hcc_params
)) {
629 /* periodic schedule size can be smaller than default */
631 temp
|= (EHCI_TUNE_FLS
<< 2);
632 switch (EHCI_TUNE_FLS
) {
633 case 0: ehci
->periodic_size
= 1024; break;
634 case 1: ehci
->periodic_size
= 512; break;
635 case 2: ehci
->periodic_size
= 256; break;
639 if (HCC_LPM(hcc_params
)) {
640 /* support link power management EHCI 1.1 addendum */
641 ehci_dbg(ehci
, "support lpm\n");
644 ehci_dbg(ehci
, "hird %d invalid, use default 0",
650 ehci
->command
= temp
;
652 /* Accept arbitrarily long scatter-gather lists */
653 if (!(hcd
->driver
->flags
& HCD_LOCAL_MEM
))
654 hcd
->self
.sg_tablesize
= ~0;
658 /* start HC running; it's halted, ehci_init() has been run (once) */
659 static int ehci_run (struct usb_hcd
*hcd
)
661 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
666 hcd
->uses_new_polling
= 1;
668 /* EHCI spec section 4.1 */
669 if ((retval
= ehci_reset(ehci
)) != 0) {
670 ehci_mem_cleanup(ehci
);
673 ehci_writel(ehci
, ehci
->periodic_dma
, &ehci
->regs
->frame_list
);
674 ehci_writel(ehci
, (u32
)ehci
->async
->qh_dma
, &ehci
->regs
->async_next
);
677 * hcc_params controls whether ehci->regs->segment must (!!!)
678 * be used; it constrains QH/ITD/SITD and QTD locations.
679 * pci_pool consistent memory always uses segment zero.
680 * streaming mappings for I/O buffers, like pci_map_single(),
681 * can return segments above 4GB, if the device allows.
683 * NOTE: the dma mask is visible through dma_supported(), so
684 * drivers can pass this info along ... like NETIF_F_HIGHDMA,
685 * Scsi_Host.highmem_io, and so forth. It's readonly to all
686 * host side drivers though.
688 hcc_params
= ehci_readl(ehci
, &ehci
->caps
->hcc_params
);
689 if (HCC_64BIT_ADDR(hcc_params
)) {
690 ehci_writel(ehci
, 0, &ehci
->regs
->segment
);
692 // this is deeply broken on almost all architectures
693 if (!dma_set_mask(hcd
->self
.controller
, DMA_BIT_MASK(64)))
694 ehci_info(ehci
, "enabled 64bit DMA\n");
699 // Philips, Intel, and maybe others need CMD_RUN before the
700 // root hub will detect new devices (why?); NEC doesn't
701 ehci
->command
&= ~(CMD_LRESET
|CMD_IAAD
|CMD_PSE
|CMD_ASE
|CMD_RESET
);
702 ehci
->command
|= CMD_RUN
;
703 ehci_writel(ehci
, ehci
->command
, &ehci
->regs
->command
);
704 dbg_cmd (ehci
, "init", ehci
->command
);
707 * Start, enabling full USB 2.0 functionality ... usb 1.1 devices
708 * are explicitly handed to companion controller(s), so no TT is
709 * involved with the root hub. (Except where one is integrated,
710 * and there's no companion controller unless maybe for USB OTG.)
712 * Turning on the CF flag will transfer ownership of all ports
713 * from the companions to the EHCI controller. If any of the
714 * companions are in the middle of a port reset at the time, it
715 * could cause trouble. Write-locking ehci_cf_port_reset_rwsem
716 * guarantees that no resets are in progress. After we set CF,
717 * a short delay lets the hardware catch up; new resets shouldn't
718 * be started before the port switching actions could complete.
720 down_write(&ehci_cf_port_reset_rwsem
);
721 hcd
->state
= HC_STATE_RUNNING
;
722 ehci_writel(ehci
, FLAG_CF
, &ehci
->regs
->configured_flag
);
723 ehci_readl(ehci
, &ehci
->regs
->command
); /* unblock posted writes */
725 up_write(&ehci_cf_port_reset_rwsem
);
726 ehci
->last_periodic_enable
= ktime_get_real();
728 temp
= HC_VERSION(ehci_readl(ehci
, &ehci
->caps
->hc_capbase
));
730 "USB %x.%x started, EHCI %x.%02x%s\n",
731 ((ehci
->sbrn
& 0xf0)>>4), (ehci
->sbrn
& 0x0f),
732 temp
>> 8, temp
& 0xff,
733 ignore_oc
? ", overcurrent ignored" : "");
735 ehci_writel(ehci
, INTR_MASK
,
736 &ehci
->regs
->intr_enable
); /* Turn On Interrupts */
738 /* GRR this is run-once init(), being done every time the HC starts.
739 * So long as they're part of class devices, we can't do it init()
740 * since the class device isn't created that early.
742 create_debug_files(ehci
);
743 create_companion_file(ehci
);
748 /*-------------------------------------------------------------------------*/
750 static irqreturn_t
ehci_irq (struct usb_hcd
*hcd
)
752 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
753 u32 status
, masked_status
, pcd_status
= 0, cmd
;
756 spin_lock (&ehci
->lock
);
758 status
= ehci_readl(ehci
, &ehci
->regs
->status
);
760 /* e.g. cardbus physical eject */
761 if (status
== ~(u32
) 0) {
762 ehci_dbg (ehci
, "device removed\n");
766 masked_status
= status
& INTR_MASK
;
767 if (!masked_status
) { /* irq sharing? */
768 spin_unlock(&ehci
->lock
);
772 /* clear (just) interrupts */
773 ehci_writel(ehci
, masked_status
, &ehci
->regs
->status
);
774 cmd
= ehci_readl(ehci
, &ehci
->regs
->command
);
778 /* unrequested/ignored: Frame List Rollover */
779 dbg_status (ehci
, "irq", status
);
782 /* INT, ERR, and IAA interrupt rates can be throttled */
784 /* normal [4.15.1.2] or error [4.15.1.1] completion */
785 if (likely ((status
& (STS_INT
|STS_ERR
)) != 0)) {
786 if (likely ((status
& STS_ERR
) == 0))
787 COUNT (ehci
->stats
.normal
);
789 COUNT (ehci
->stats
.error
);
793 /* complete the unlinking of some qh [4.15.2.3] */
794 if (status
& STS_IAA
) {
795 /* guard against (alleged) silicon errata */
796 if (cmd
& CMD_IAAD
) {
797 ehci_writel(ehci
, cmd
& ~CMD_IAAD
,
798 &ehci
->regs
->command
);
799 ehci_dbg(ehci
, "IAA with IAAD still set?\n");
802 COUNT(ehci
->stats
.reclaim
);
803 end_unlink_async(ehci
);
805 ehci_dbg(ehci
, "IAA with nothing to reclaim?\n");
808 /* remote wakeup [4.3.1] */
809 if (status
& STS_PCD
) {
810 unsigned i
= HCS_N_PORTS (ehci
->hcs_params
);
813 /* kick root hub later */
816 /* resume root hub? */
817 if (!(cmd
& CMD_RUN
))
818 usb_hcd_resume_root_hub(hcd
);
820 /* get per-port change detect bits */
827 /* leverage per-port change bits feature */
828 if (ehci
->has_ppcd
&& !(ppcd
& (1 << i
)))
830 pstatus
= ehci_readl(ehci
,
831 &ehci
->regs
->port_status
[i
]);
833 if (pstatus
& PORT_OWNER
)
835 if (!(test_bit(i
, &ehci
->suspended_ports
) &&
836 ((pstatus
& PORT_RESUME
) ||
837 !(pstatus
& PORT_SUSPEND
)) &&
838 (pstatus
& PORT_PE
) &&
839 ehci
->reset_done
[i
] == 0))
842 /* start 20 msec resume signaling from this port,
843 * and make khubd collect PORT_STAT_C_SUSPEND to
844 * stop that signaling. Use 5 ms extra for safety,
845 * like usb_port_resume() does.
847 ehci
->reset_done
[i
] = jiffies
+ msecs_to_jiffies(25);
848 ehci_dbg (ehci
, "port %d remote wakeup\n", i
+ 1);
849 mod_timer(&hcd
->rh_timer
, ehci
->reset_done
[i
]);
853 /* PCI errors [4.15.2.4] */
854 if (unlikely ((status
& STS_FATAL
) != 0)) {
855 ehci_err(ehci
, "fatal error\n");
856 dbg_cmd(ehci
, "fatal", cmd
);
857 dbg_status(ehci
, "fatal", status
);
861 ehci_writel(ehci
, 0, &ehci
->regs
->configured_flag
);
862 /* generic layer kills/unlinks all urbs, then
863 * uses ehci_stop to clean up the rest
870 spin_unlock (&ehci
->lock
);
872 usb_hcd_poll_rh_status(hcd
);
876 /*-------------------------------------------------------------------------*/
879 * non-error returns are a promise to giveback() the urb later
880 * we drop ownership so next owner (or urb unlink) can get it
882 * urb + dev is in hcd.self.controller.urb_list
883 * we're queueing TDs onto software and hardware lists
885 * hcd-specific init for hcpriv hasn't been done yet
887 * NOTE: control, bulk, and interrupt share the same code to append TDs
888 * to a (possibly active) QH, and the same QH scanning code.
890 static int ehci_urb_enqueue (
895 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
896 struct list_head qtd_list
;
898 INIT_LIST_HEAD (&qtd_list
);
900 switch (usb_pipetype (urb
->pipe
)) {
902 /* qh_completions() code doesn't handle all the fault cases
903 * in multi-TD control transfers. Even 1KB is rare anyway.
905 if (urb
->transfer_buffer_length
> (16 * 1024))
908 /* case PIPE_BULK: */
910 if (!qh_urb_transaction (ehci
, urb
, &qtd_list
, mem_flags
))
912 return submit_async(ehci
, urb
, &qtd_list
, mem_flags
);
915 if (!qh_urb_transaction (ehci
, urb
, &qtd_list
, mem_flags
))
917 return intr_submit(ehci
, urb
, &qtd_list
, mem_flags
);
919 case PIPE_ISOCHRONOUS
:
920 if (urb
->dev
->speed
== USB_SPEED_HIGH
)
921 return itd_submit (ehci
, urb
, mem_flags
);
923 return sitd_submit (ehci
, urb
, mem_flags
);
927 static void unlink_async (struct ehci_hcd
*ehci
, struct ehci_qh
*qh
)
930 if (!HC_IS_RUNNING(ehci_to_hcd(ehci
)->state
) && ehci
->reclaim
)
931 end_unlink_async(ehci
);
933 /* If the QH isn't linked then there's nothing we can do
934 * unless we were called during a giveback, in which case
935 * qh_completions() has to deal with it.
937 if (qh
->qh_state
!= QH_STATE_LINKED
) {
938 if (qh
->qh_state
== QH_STATE_COMPLETING
)
939 qh
->needs_rescan
= 1;
943 /* defer till later if busy */
945 struct ehci_qh
*last
;
947 for (last
= ehci
->reclaim
;
949 last
= last
->reclaim
)
951 qh
->qh_state
= QH_STATE_UNLINK_WAIT
;
954 /* start IAA cycle */
956 start_unlink_async (ehci
, qh
);
959 /* remove from hardware lists
960 * completions normally happen asynchronously
963 static int ehci_urb_dequeue(struct usb_hcd
*hcd
, struct urb
*urb
, int status
)
965 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
970 spin_lock_irqsave (&ehci
->lock
, flags
);
971 rc
= usb_hcd_check_unlink_urb(hcd
, urb
, status
);
975 switch (usb_pipetype (urb
->pipe
)) {
976 // case PIPE_CONTROL:
979 qh
= (struct ehci_qh
*) urb
->hcpriv
;
982 switch (qh
->qh_state
) {
983 case QH_STATE_LINKED
:
984 case QH_STATE_COMPLETING
:
985 unlink_async(ehci
, qh
);
987 case QH_STATE_UNLINK
:
988 case QH_STATE_UNLINK_WAIT
:
989 /* already started */
992 /* QH might be waiting for a Clear-TT-Buffer */
993 qh_completions(ehci
, qh
);
999 qh
= (struct ehci_qh
*) urb
->hcpriv
;
1002 switch (qh
->qh_state
) {
1003 case QH_STATE_LINKED
:
1004 case QH_STATE_COMPLETING
:
1005 intr_deschedule (ehci
, qh
);
1008 qh_completions (ehci
, qh
);
1011 ehci_dbg (ehci
, "bogus qh %p state %d\n",
1017 case PIPE_ISOCHRONOUS
:
1020 // wait till next completion, do it then.
1021 // completion irqs can wait up to 1024 msec,
1025 spin_unlock_irqrestore (&ehci
->lock
, flags
);
1029 /*-------------------------------------------------------------------------*/
1031 // bulk qh holds the data toggle
1034 ehci_endpoint_disable (struct usb_hcd
*hcd
, struct usb_host_endpoint
*ep
)
1036 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
1037 unsigned long flags
;
1038 struct ehci_qh
*qh
, *tmp
;
1040 /* ASSERT: any requests/urbs are being unlinked */
1041 /* ASSERT: nobody can be submitting urbs for this any more */
1044 spin_lock_irqsave (&ehci
->lock
, flags
);
1049 /* endpoints can be iso streams. for now, we don't
1050 * accelerate iso completions ... so spin a while.
1052 if (qh
->hw
== NULL
) {
1053 ehci_vdbg (ehci
, "iso delay\n");
1057 if (!HC_IS_RUNNING (hcd
->state
))
1058 qh
->qh_state
= QH_STATE_IDLE
;
1059 switch (qh
->qh_state
) {
1060 case QH_STATE_LINKED
:
1061 case QH_STATE_COMPLETING
:
1062 for (tmp
= ehci
->async
->qh_next
.qh
;
1064 tmp
= tmp
->qh_next
.qh
)
1066 /* periodic qh self-unlinks on empty */
1069 unlink_async (ehci
, qh
);
1071 case QH_STATE_UNLINK
: /* wait for hw to finish? */
1072 case QH_STATE_UNLINK_WAIT
:
1074 spin_unlock_irqrestore (&ehci
->lock
, flags
);
1075 schedule_timeout_uninterruptible(1);
1077 case QH_STATE_IDLE
: /* fully unlinked */
1078 if (qh
->clearing_tt
)
1080 if (list_empty (&qh
->qtd_list
)) {
1084 /* else FALL THROUGH */
1087 /* caller was supposed to have unlinked any requests;
1088 * that's not our job. just leak this memory.
1090 ehci_err (ehci
, "qh %p (#%02x) state %d%s\n",
1091 qh
, ep
->desc
.bEndpointAddress
, qh
->qh_state
,
1092 list_empty (&qh
->qtd_list
) ? "" : "(has tds)");
1097 spin_unlock_irqrestore (&ehci
->lock
, flags
);
1101 ehci_endpoint_reset(struct usb_hcd
*hcd
, struct usb_host_endpoint
*ep
)
1103 struct ehci_hcd
*ehci
= hcd_to_ehci(hcd
);
1105 int eptype
= usb_endpoint_type(&ep
->desc
);
1106 int epnum
= usb_endpoint_num(&ep
->desc
);
1107 int is_out
= usb_endpoint_dir_out(&ep
->desc
);
1108 unsigned long flags
;
1110 if (eptype
!= USB_ENDPOINT_XFER_BULK
&& eptype
!= USB_ENDPOINT_XFER_INT
)
1113 spin_lock_irqsave(&ehci
->lock
, flags
);
1116 /* For Bulk and Interrupt endpoints we maintain the toggle state
1117 * in the hardware; the toggle bits in udev aren't used at all.
1118 * When an endpoint is reset by usb_clear_halt() we must reset
1119 * the toggle bit in the QH.
1122 usb_settoggle(qh
->dev
, epnum
, is_out
, 0);
1123 if (!list_empty(&qh
->qtd_list
)) {
1124 WARN_ONCE(1, "clear_halt for a busy endpoint\n");
1125 } else if (qh
->qh_state
== QH_STATE_LINKED
||
1126 qh
->qh_state
== QH_STATE_COMPLETING
) {
1128 /* The toggle value in the QH can't be updated
1129 * while the QH is active. Unlink it now;
1130 * re-linking will call qh_refresh().
1132 if (eptype
== USB_ENDPOINT_XFER_BULK
)
1133 unlink_async(ehci
, qh
);
1135 intr_deschedule(ehci
, qh
);
1138 spin_unlock_irqrestore(&ehci
->lock
, flags
);
1141 static int ehci_get_frame (struct usb_hcd
*hcd
)
1143 struct ehci_hcd
*ehci
= hcd_to_ehci (hcd
);
1144 return (ehci_readl(ehci
, &ehci
->regs
->frame_index
) >> 3) %
1145 ehci
->periodic_size
;
1148 /*-------------------------------------------------------------------------*/
1150 MODULE_DESCRIPTION(DRIVER_DESC
);
1151 MODULE_AUTHOR (DRIVER_AUTHOR
);
1152 MODULE_LICENSE ("GPL");
1155 #include "ehci-pci.c"
1156 #define PCI_DRIVER ehci_pci_driver
1159 #ifdef CONFIG_USB_EHCI_FSL
1160 #include "ehci-fsl.c"
1161 #define PLATFORM_DRIVER ehci_fsl_driver
1164 #ifdef CONFIG_USB_EHCI_MXC
1165 #include "ehci-mxc.c"
1166 #define PLATFORM_DRIVER ehci_mxc_driver
1169 #ifdef CONFIG_SOC_AU1200
1170 #include "ehci-au1xxx.c"
1171 #define PLATFORM_DRIVER ehci_hcd_au1xxx_driver
1174 #ifdef CONFIG_ARCH_OMAP3
1175 #include "ehci-omap.c"
1176 #define PLATFORM_DRIVER ehci_hcd_omap_driver
1179 #ifdef CONFIG_PPC_PS3
1180 #include "ehci-ps3.c"
1181 #define PS3_SYSTEM_BUS_DRIVER ps3_ehci_driver
1184 #ifdef CONFIG_USB_EHCI_HCD_PPC_OF
1185 #include "ehci-ppc-of.c"
1186 #define OF_PLATFORM_DRIVER ehci_hcd_ppc_of_driver
1189 #ifdef CONFIG_XPS_USB_HCD_XILINX
1190 #include "ehci-xilinx-of.c"
1191 #define XILINX_OF_PLATFORM_DRIVER ehci_hcd_xilinx_of_driver
1194 #ifdef CONFIG_PLAT_ORION
1195 #include "ehci-orion.c"
1196 #define PLATFORM_DRIVER ehci_orion_driver
1199 #ifdef CONFIG_ARCH_IXP4XX
1200 #include "ehci-ixp4xx.c"
1201 #define PLATFORM_DRIVER ixp4xx_ehci_driver
1204 #ifdef CONFIG_USB_W90X900_EHCI
1205 #include "ehci-w90x900.c"
1206 #define PLATFORM_DRIVER ehci_hcd_w90x900_driver
1209 #ifdef CONFIG_ARCH_AT91
1210 #include "ehci-atmel.c"
1211 #define PLATFORM_DRIVER ehci_atmel_driver
1214 #ifdef CONFIG_USB_OCTEON_EHCI
1215 #include "ehci-octeon.c"
1216 #define PLATFORM_DRIVER ehci_octeon_driver
1219 #if !defined(PCI_DRIVER) && !defined(PLATFORM_DRIVER) && \
1220 !defined(PS3_SYSTEM_BUS_DRIVER) && !defined(OF_PLATFORM_DRIVER) && \
1221 !defined(XILINX_OF_PLATFORM_DRIVER)
1222 #error "missing bus glue for ehci-hcd"
1225 static int __init
ehci_hcd_init(void)
1232 printk(KERN_INFO
"%s: " DRIVER_DESC
"\n", hcd_name
);
1233 set_bit(USB_EHCI_LOADED
, &usb_hcds_loaded
);
1234 if (test_bit(USB_UHCI_LOADED
, &usb_hcds_loaded
) ||
1235 test_bit(USB_OHCI_LOADED
, &usb_hcds_loaded
))
1236 printk(KERN_WARNING
"Warning! ehci_hcd should always be loaded"
1237 " before uhci_hcd and ohci_hcd, not after\n");
1239 pr_debug("%s: block sizes: qh %Zd qtd %Zd itd %Zd sitd %Zd\n",
1241 sizeof(struct ehci_qh
), sizeof(struct ehci_qtd
),
1242 sizeof(struct ehci_itd
), sizeof(struct ehci_sitd
));
1245 ehci_debug_root
= debugfs_create_dir("ehci", usb_debug_root
);
1246 if (!ehci_debug_root
) {
1252 #ifdef PLATFORM_DRIVER
1253 retval
= platform_driver_register(&PLATFORM_DRIVER
);
1259 retval
= pci_register_driver(&PCI_DRIVER
);
1264 #ifdef PS3_SYSTEM_BUS_DRIVER
1265 retval
= ps3_ehci_driver_register(&PS3_SYSTEM_BUS_DRIVER
);
1270 #ifdef OF_PLATFORM_DRIVER
1271 retval
= of_register_platform_driver(&OF_PLATFORM_DRIVER
);
1276 #ifdef XILINX_OF_PLATFORM_DRIVER
1277 retval
= of_register_platform_driver(&XILINX_OF_PLATFORM_DRIVER
);
1283 #ifdef XILINX_OF_PLATFORM_DRIVER
1284 /* of_unregister_platform_driver(&XILINX_OF_PLATFORM_DRIVER); */
1287 #ifdef OF_PLATFORM_DRIVER
1288 of_unregister_platform_driver(&OF_PLATFORM_DRIVER
);
1291 #ifdef PS3_SYSTEM_BUS_DRIVER
1292 ps3_ehci_driver_unregister(&PS3_SYSTEM_BUS_DRIVER
);
1296 pci_unregister_driver(&PCI_DRIVER
);
1299 #ifdef PLATFORM_DRIVER
1300 platform_driver_unregister(&PLATFORM_DRIVER
);
1304 debugfs_remove(ehci_debug_root
);
1305 ehci_debug_root
= NULL
;
1308 clear_bit(USB_EHCI_LOADED
, &usb_hcds_loaded
);
1311 module_init(ehci_hcd_init
);
1313 static void __exit
ehci_hcd_cleanup(void)
1315 #ifdef XILINX_OF_PLATFORM_DRIVER
1316 of_unregister_platform_driver(&XILINX_OF_PLATFORM_DRIVER
);
1318 #ifdef OF_PLATFORM_DRIVER
1319 of_unregister_platform_driver(&OF_PLATFORM_DRIVER
);
1321 #ifdef PLATFORM_DRIVER
1322 platform_driver_unregister(&PLATFORM_DRIVER
);
1325 pci_unregister_driver(&PCI_DRIVER
);
1327 #ifdef PS3_SYSTEM_BUS_DRIVER
1328 ps3_ehci_driver_unregister(&PS3_SYSTEM_BUS_DRIVER
);
1331 debugfs_remove(ehci_debug_root
);
1333 clear_bit(USB_EHCI_LOADED
, &usb_hcds_loaded
);
1335 module_exit(ehci_hcd_cleanup
);