2 * Texas Instruments DSPS platforms "glue layer"
4 * Copyright (C) 2012, by Texas Instruments
6 * Based on the am35x "glue layer" code.
8 * This file is part of the Inventra Controller Driver for Linux.
10 * The Inventra Controller Driver for Linux is free software; you
11 * can redistribute it and/or modify it under the terms of the GNU
12 * General Public License version 2 as published by the Free Software
15 * The Inventra Controller Driver for Linux is distributed in
16 * the hope that it will be useful, but WITHOUT ANY WARRANTY;
17 * without even the implied warranty of MERCHANTABILITY or
18 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
19 * License for more details.
21 * You should have received a copy of the GNU General Public License
22 * along with The Inventra Controller Driver for Linux ; if not,
23 * write to the Free Software Foundation, Inc., 59 Temple Place,
24 * Suite 330, Boston, MA 02111-1307 USA
26 * musb_dsps.c will be a common file for all the TI DSPS platforms
27 * such as dm64x, dm36x, dm35x, da8x, am35x and ti81x.
28 * For now only ti81x is using this and in future davinci.c, am35x.c
29 * da8xx.c would be merged to this file after testing.
33 #include <linux/err.h>
34 #include <linux/platform_device.h>
35 #include <linux/dma-mapping.h>
36 #include <linux/pm_runtime.h>
37 #include <linux/module.h>
38 #include <linux/usb/usb_phy_generic.h>
39 #include <linux/platform_data/usb-omap.h>
40 #include <linux/sizes.h>
43 #include <linux/of_device.h>
44 #include <linux/of_address.h>
45 #include <linux/of_irq.h>
46 #include <linux/usb/of.h>
48 #include <linux/debugfs.h>
50 #include "musb_core.h"
52 static const struct of_device_id musb_dsps_of_match
[];
55 * avoid using musb_readx()/musb_writex() as glue layer should not be
56 * dependent on musb core layer symbols.
58 static inline u8
dsps_readb(const void __iomem
*addr
, unsigned offset
)
60 return __raw_readb(addr
+ offset
);
63 static inline u32
dsps_readl(const void __iomem
*addr
, unsigned offset
)
65 return __raw_readl(addr
+ offset
);
68 static inline void dsps_writeb(void __iomem
*addr
, unsigned offset
, u8 data
)
70 __raw_writeb(data
, addr
+ offset
);
73 static inline void dsps_writel(void __iomem
*addr
, unsigned offset
, u32 data
)
75 __raw_writel(data
, addr
+ offset
);
79 * DSPS musb wrapper register offset.
80 * FIXME: This should be expanded to have all the wrapper registers from TI DSPS
83 struct dsps_musb_wrapper
{
98 /* bit positions for control */
101 /* bit positions for interrupt */
102 unsigned usb_shift
:5;
107 unsigned txep_shift
:5;
111 unsigned rxep_shift
:5;
115 /* bit positions for phy_utmi */
116 unsigned otg_disable
:5;
118 /* bit positions for mode */
120 unsigned iddig_mux
:5;
121 /* miscellaneous stuff */
122 unsigned poll_timeout
;
126 * register shadow for suspend
128 struct dsps_context
{
139 * DSPS glue structure.
143 struct platform_device
*musb
; /* child musb pdev */
144 const struct dsps_musb_wrapper
*wrp
; /* wrapper register offsets */
145 struct timer_list timer
; /* otg_workaround timer */
146 unsigned long last_timer
; /* last timer data for each instance */
147 bool sw_babble_enabled
;
149 struct dsps_context context
;
150 struct debugfs_regset32 regset
;
151 struct dentry
*dbgfs_root
;
154 static const struct debugfs_reg32 dsps_musb_regs
[] = {
155 { "revision", 0x00 },
159 { "intr0_stat", 0x30 },
160 { "intr1_stat", 0x34 },
161 { "intr0_set", 0x38 },
162 { "intr1_set", 0x3c },
166 { "srpfixtime", 0xd4 },
168 { "phy_utmi", 0xe0 },
172 static void dsps_musb_try_idle(struct musb
*musb
, unsigned long timeout
)
174 struct device
*dev
= musb
->controller
;
175 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
178 timeout
= jiffies
+ msecs_to_jiffies(3);
180 /* Never idle if active, or when VBUS timeout is not set as host */
181 if (musb
->is_active
|| (musb
->a_wait_bcon
== 0 &&
182 musb
->xceiv
->otg
->state
== OTG_STATE_A_WAIT_BCON
)) {
183 dev_dbg(musb
->controller
, "%s active, deleting timer\n",
184 usb_otg_state_string(musb
->xceiv
->otg
->state
));
185 del_timer(&glue
->timer
);
186 glue
->last_timer
= jiffies
;
189 if (musb
->port_mode
!= MUSB_PORT_MODE_DUAL_ROLE
)
192 if (!musb
->g
.dev
.driver
)
195 if (time_after(glue
->last_timer
, timeout
) &&
196 timer_pending(&glue
->timer
)) {
197 dev_dbg(musb
->controller
,
198 "Longer idle timer already pending, ignoring...\n");
201 glue
->last_timer
= timeout
;
203 dev_dbg(musb
->controller
, "%s inactive, starting idle timer for %u ms\n",
204 usb_otg_state_string(musb
->xceiv
->otg
->state
),
205 jiffies_to_msecs(timeout
- jiffies
));
206 mod_timer(&glue
->timer
, timeout
);
210 * dsps_musb_enable - enable interrupts
212 static void dsps_musb_enable(struct musb
*musb
)
214 struct device
*dev
= musb
->controller
;
215 struct platform_device
*pdev
= to_platform_device(dev
->parent
);
216 struct dsps_glue
*glue
= platform_get_drvdata(pdev
);
217 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
218 void __iomem
*reg_base
= musb
->ctrl_base
;
219 u32 epmask
, coremask
;
221 /* Workaround: setup IRQs through both register sets. */
222 epmask
= ((musb
->epmask
& wrp
->txep_mask
) << wrp
->txep_shift
) |
223 ((musb
->epmask
& wrp
->rxep_mask
) << wrp
->rxep_shift
);
224 coremask
= (wrp
->usb_bitmap
& ~MUSB_INTR_SOF
);
226 dsps_writel(reg_base
, wrp
->epintr_set
, epmask
);
227 dsps_writel(reg_base
, wrp
->coreintr_set
, coremask
);
228 /* start polling for ID change in dual-role idle mode */
229 if (musb
->xceiv
->otg
->state
== OTG_STATE_B_IDLE
&&
230 musb
->port_mode
== MUSB_PORT_MODE_DUAL_ROLE
)
231 mod_timer(&glue
->timer
, jiffies
+
232 msecs_to_jiffies(wrp
->poll_timeout
));
233 dsps_musb_try_idle(musb
, 0);
237 * dsps_musb_disable - disable HDRC and flush interrupts
239 static void dsps_musb_disable(struct musb
*musb
)
241 struct device
*dev
= musb
->controller
;
242 struct platform_device
*pdev
= to_platform_device(dev
->parent
);
243 struct dsps_glue
*glue
= platform_get_drvdata(pdev
);
244 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
245 void __iomem
*reg_base
= musb
->ctrl_base
;
247 dsps_writel(reg_base
, wrp
->coreintr_clear
, wrp
->usb_bitmap
);
248 dsps_writel(reg_base
, wrp
->epintr_clear
,
249 wrp
->txep_bitmap
| wrp
->rxep_bitmap
);
250 dsps_writeb(musb
->mregs
, MUSB_DEVCTL
, 0);
253 static void otg_timer(unsigned long _musb
)
255 struct musb
*musb
= (void *)_musb
;
256 void __iomem
*mregs
= musb
->mregs
;
257 struct device
*dev
= musb
->controller
;
258 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
259 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
262 int skip_session
= 0;
265 * We poll because DSPS IP's won't expose several OTG-critical
266 * status change events (from the transceiver) otherwise.
268 devctl
= dsps_readb(mregs
, MUSB_DEVCTL
);
269 dev_dbg(musb
->controller
, "Poll devctl %02x (%s)\n", devctl
,
270 usb_otg_state_string(musb
->xceiv
->otg
->state
));
272 spin_lock_irqsave(&musb
->lock
, flags
);
273 switch (musb
->xceiv
->otg
->state
) {
274 case OTG_STATE_A_WAIT_BCON
:
275 dsps_writeb(musb
->mregs
, MUSB_DEVCTL
, 0);
279 case OTG_STATE_A_IDLE
:
280 case OTG_STATE_B_IDLE
:
281 if (devctl
& MUSB_DEVCTL_BDEVICE
) {
282 musb
->xceiv
->otg
->state
= OTG_STATE_B_IDLE
;
285 musb
->xceiv
->otg
->state
= OTG_STATE_A_IDLE
;
288 if (!(devctl
& MUSB_DEVCTL_SESSION
) && !skip_session
)
289 dsps_writeb(mregs
, MUSB_DEVCTL
, MUSB_DEVCTL_SESSION
);
290 mod_timer(&glue
->timer
, jiffies
+
291 msecs_to_jiffies(wrp
->poll_timeout
));
293 case OTG_STATE_A_WAIT_VFALL
:
294 musb
->xceiv
->otg
->state
= OTG_STATE_A_WAIT_VRISE
;
295 dsps_writel(musb
->ctrl_base
, wrp
->coreintr_set
,
296 MUSB_INTR_VBUSERROR
<< wrp
->usb_shift
);
301 spin_unlock_irqrestore(&musb
->lock
, flags
);
304 static irqreturn_t
dsps_interrupt(int irq
, void *hci
)
306 struct musb
*musb
= hci
;
307 void __iomem
*reg_base
= musb
->ctrl_base
;
308 struct device
*dev
= musb
->controller
;
309 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
310 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
312 irqreturn_t ret
= IRQ_NONE
;
315 spin_lock_irqsave(&musb
->lock
, flags
);
317 /* Get endpoint interrupts */
318 epintr
= dsps_readl(reg_base
, wrp
->epintr_status
);
319 musb
->int_rx
= (epintr
& wrp
->rxep_bitmap
) >> wrp
->rxep_shift
;
320 musb
->int_tx
= (epintr
& wrp
->txep_bitmap
) >> wrp
->txep_shift
;
323 dsps_writel(reg_base
, wrp
->epintr_status
, epintr
);
325 /* Get usb core interrupts */
326 usbintr
= dsps_readl(reg_base
, wrp
->coreintr_status
);
327 if (!usbintr
&& !epintr
)
330 musb
->int_usb
= (usbintr
& wrp
->usb_bitmap
) >> wrp
->usb_shift
;
332 dsps_writel(reg_base
, wrp
->coreintr_status
, usbintr
);
334 dev_dbg(musb
->controller
, "usbintr (%x) epintr(%x)\n",
337 if (usbintr
& ((1 << wrp
->drvvbus
) << wrp
->usb_shift
)) {
338 int drvvbus
= dsps_readl(reg_base
, wrp
->status
);
339 void __iomem
*mregs
= musb
->mregs
;
340 u8 devctl
= dsps_readb(mregs
, MUSB_DEVCTL
);
343 err
= musb
->int_usb
& MUSB_INTR_VBUSERROR
;
346 * The Mentor core doesn't debounce VBUS as needed
347 * to cope with device connect current spikes. This
348 * means it's not uncommon for bus-powered devices
349 * to get VBUS errors during enumeration.
351 * This is a workaround, but newer RTL from Mentor
352 * seems to allow a better one: "re"-starting sessions
353 * without waiting for VBUS to stop registering in
356 musb
->int_usb
&= ~MUSB_INTR_VBUSERROR
;
357 musb
->xceiv
->otg
->state
= OTG_STATE_A_WAIT_VFALL
;
358 mod_timer(&glue
->timer
, jiffies
+
359 msecs_to_jiffies(wrp
->poll_timeout
));
360 WARNING("VBUS error workaround (delay coming)\n");
361 } else if (drvvbus
) {
363 musb
->xceiv
->otg
->default_a
= 1;
364 musb
->xceiv
->otg
->state
= OTG_STATE_A_WAIT_VRISE
;
365 del_timer(&glue
->timer
);
369 musb
->xceiv
->otg
->default_a
= 0;
370 musb
->xceiv
->otg
->state
= OTG_STATE_B_IDLE
;
373 /* NOTE: this must complete power-on within 100 ms. */
374 dev_dbg(musb
->controller
, "VBUS %s (%s)%s, devctl %02x\n",
375 drvvbus
? "on" : "off",
376 usb_otg_state_string(musb
->xceiv
->otg
->state
),
382 if (musb
->int_tx
|| musb
->int_rx
|| musb
->int_usb
)
383 ret
|= musb_interrupt(musb
);
385 /* Poll for ID change in OTG port mode */
386 if (musb
->xceiv
->otg
->state
== OTG_STATE_B_IDLE
&&
387 musb
->port_mode
== MUSB_PORT_MODE_DUAL_ROLE
)
388 mod_timer(&glue
->timer
, jiffies
+
389 msecs_to_jiffies(wrp
->poll_timeout
));
391 spin_unlock_irqrestore(&musb
->lock
, flags
);
396 static int dsps_musb_dbg_init(struct musb
*musb
, struct dsps_glue
*glue
)
402 sprintf(buf
, "%s.dsps", dev_name(musb
->controller
));
403 root
= debugfs_create_dir(buf
, NULL
);
406 glue
->dbgfs_root
= root
;
408 glue
->regset
.regs
= dsps_musb_regs
;
409 glue
->regset
.nregs
= ARRAY_SIZE(dsps_musb_regs
);
410 glue
->regset
.base
= musb
->ctrl_base
;
412 file
= debugfs_create_regset32("regdump", S_IRUGO
, root
, &glue
->regset
);
414 debugfs_remove_recursive(root
);
420 static int dsps_musb_init(struct musb
*musb
)
422 struct device
*dev
= musb
->controller
;
423 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
424 struct platform_device
*parent
= to_platform_device(dev
->parent
);
425 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
426 void __iomem
*reg_base
;
431 r
= platform_get_resource_byname(parent
, IORESOURCE_MEM
, "control");
432 reg_base
= devm_ioremap_resource(dev
, r
);
433 if (IS_ERR(reg_base
))
434 return PTR_ERR(reg_base
);
435 musb
->ctrl_base
= reg_base
;
437 /* NOP driver needs change if supporting dual instance */
438 musb
->xceiv
= devm_usb_get_phy_by_phandle(dev
->parent
, "phys", 0);
439 if (IS_ERR(musb
->xceiv
))
440 return PTR_ERR(musb
->xceiv
);
442 musb
->phy
= devm_phy_get(dev
->parent
, "usb2-phy");
444 /* Returns zero if e.g. not clocked */
445 rev
= dsps_readl(reg_base
, wrp
->revision
);
449 usb_phy_init(musb
->xceiv
);
450 if (IS_ERR(musb
->phy
)) {
453 ret
= phy_init(musb
->phy
);
456 ret
= phy_power_on(musb
->phy
);
463 setup_timer(&glue
->timer
, otg_timer
, (unsigned long) musb
);
466 dsps_writel(reg_base
, wrp
->control
, (1 << wrp
->reset
));
468 musb
->isr
= dsps_interrupt
;
470 /* reset the otgdisable bit, needed for host mode to work */
471 val
= dsps_readl(reg_base
, wrp
->phy_utmi
);
472 val
&= ~(1 << wrp
->otg_disable
);
473 dsps_writel(musb
->ctrl_base
, wrp
->phy_utmi
, val
);
476 * Check whether the dsps version has babble control enabled.
477 * In latest silicon revision the babble control logic is enabled.
478 * If MUSB_BABBLE_CTL returns 0x4 then we have the babble control
481 val
= dsps_readb(musb
->mregs
, MUSB_BABBLE_CTL
);
482 if (val
& MUSB_BABBLE_RCV_DISABLE
) {
483 glue
->sw_babble_enabled
= true;
484 val
|= MUSB_BABBLE_SW_SESSION_CTRL
;
485 dsps_writeb(musb
->mregs
, MUSB_BABBLE_CTL
, val
);
488 return dsps_musb_dbg_init(musb
, glue
);
491 static int dsps_musb_exit(struct musb
*musb
)
493 struct device
*dev
= musb
->controller
;
494 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
496 del_timer_sync(&glue
->timer
);
497 usb_phy_shutdown(musb
->xceiv
);
498 phy_power_off(musb
->phy
);
500 debugfs_remove_recursive(glue
->dbgfs_root
);
505 static int dsps_musb_set_mode(struct musb
*musb
, u8 mode
)
507 struct device
*dev
= musb
->controller
;
508 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
509 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
510 void __iomem
*ctrl_base
= musb
->ctrl_base
;
513 reg
= dsps_readl(ctrl_base
, wrp
->mode
);
517 reg
&= ~(1 << wrp
->iddig
);
520 * if we're setting mode to host-only or device-only, we're
521 * going to ignore whatever the PHY sends us and just force
522 * ID pin status by SW
524 reg
|= (1 << wrp
->iddig_mux
);
526 dsps_writel(ctrl_base
, wrp
->mode
, reg
);
527 dsps_writel(ctrl_base
, wrp
->phy_utmi
, 0x02);
529 case MUSB_PERIPHERAL
:
530 reg
|= (1 << wrp
->iddig
);
533 * if we're setting mode to host-only or device-only, we're
534 * going to ignore whatever the PHY sends us and just force
535 * ID pin status by SW
537 reg
|= (1 << wrp
->iddig_mux
);
539 dsps_writel(ctrl_base
, wrp
->mode
, reg
);
542 dsps_writel(ctrl_base
, wrp
->phy_utmi
, 0x02);
545 dev_err(glue
->dev
, "unsupported mode %d\n", mode
);
552 static bool dsps_sw_babble_control(struct musb
*musb
)
555 bool session_restart
= false;
557 babble_ctl
= dsps_readb(musb
->mregs
, MUSB_BABBLE_CTL
);
558 dev_dbg(musb
->controller
, "babble: MUSB_BABBLE_CTL value %x\n",
561 * check line monitor flag to check whether babble is
564 dev_dbg(musb
->controller
, "STUCK_J is %s\n",
565 babble_ctl
& MUSB_BABBLE_STUCK_J
? "set" : "reset");
567 if (babble_ctl
& MUSB_BABBLE_STUCK_J
) {
571 * babble is due to noise, then set transmit idle (d7 bit)
572 * to resume normal operation
574 babble_ctl
= dsps_readb(musb
->mregs
, MUSB_BABBLE_CTL
);
575 babble_ctl
|= MUSB_BABBLE_FORCE_TXIDLE
;
576 dsps_writeb(musb
->mregs
, MUSB_BABBLE_CTL
, babble_ctl
);
578 /* wait till line monitor flag cleared */
579 dev_dbg(musb
->controller
, "Set TXIDLE, wait J to clear\n");
581 babble_ctl
= dsps_readb(musb
->mregs
, MUSB_BABBLE_CTL
);
583 } while ((babble_ctl
& MUSB_BABBLE_STUCK_J
) && timeout
--);
585 /* check whether stuck_at_j bit cleared */
586 if (babble_ctl
& MUSB_BABBLE_STUCK_J
) {
588 * real babble condition has occurred
589 * restart the controller to start the
592 dev_dbg(musb
->controller
, "J not cleared, misc (%x)\n",
594 session_restart
= true;
597 session_restart
= true;
600 return session_restart
;
603 static int dsps_musb_recover(struct musb
*musb
)
605 struct device
*dev
= musb
->controller
;
606 struct dsps_glue
*glue
= dev_get_drvdata(dev
->parent
);
607 int session_restart
= 0;
609 if (glue
->sw_babble_enabled
)
610 session_restart
= dsps_sw_babble_control(musb
);
614 return session_restart
? 0 : -EPIPE
;
617 /* Similar to am35x, dm81xx support only 32-bit read operation */
618 static void dsps_read_fifo32(struct musb_hw_ep
*hw_ep
, u16 len
, u8
*dst
)
620 void __iomem
*fifo
= hw_ep
->fifo
;
623 ioread32_rep(fifo
, dst
, len
>> 2);
628 /* Read any remaining 1 to 3 bytes */
630 u32 val
= musb_readl(fifo
, 0);
631 memcpy(dst
, &val
, len
);
635 static struct musb_platform_ops dsps_ops
= {
636 .quirks
= MUSB_DMA_CPPI41
| MUSB_INDEXED_EP
,
637 .init
= dsps_musb_init
,
638 .exit
= dsps_musb_exit
,
640 #ifdef CONFIG_USB_TI_CPPI41_DMA
641 .dma_init
= cppi41_dma_controller_create
,
642 .dma_exit
= cppi41_dma_controller_destroy
,
644 .enable
= dsps_musb_enable
,
645 .disable
= dsps_musb_disable
,
647 .try_idle
= dsps_musb_try_idle
,
648 .set_mode
= dsps_musb_set_mode
,
649 .recover
= dsps_musb_recover
,
652 static u64 musb_dmamask
= DMA_BIT_MASK(32);
654 static int get_int_prop(struct device_node
*dn
, const char *s
)
659 ret
= of_property_read_u32(dn
, s
, &val
);
665 static int get_musb_port_mode(struct device
*dev
)
667 enum usb_dr_mode mode
;
669 mode
= usb_get_dr_mode(dev
);
671 case USB_DR_MODE_HOST
:
672 return MUSB_PORT_MODE_HOST
;
674 case USB_DR_MODE_PERIPHERAL
:
675 return MUSB_PORT_MODE_GADGET
;
677 case USB_DR_MODE_UNKNOWN
:
678 case USB_DR_MODE_OTG
:
680 return MUSB_PORT_MODE_DUAL_ROLE
;
684 static int dsps_create_musb_pdev(struct dsps_glue
*glue
,
685 struct platform_device
*parent
)
687 struct musb_hdrc_platform_data pdata
;
688 struct resource resources
[2];
689 struct resource
*res
;
690 struct device
*dev
= &parent
->dev
;
691 struct musb_hdrc_config
*config
;
692 struct platform_device
*musb
;
693 struct device_node
*dn
= parent
->dev
.of_node
;
696 memset(resources
, 0, sizeof(resources
));
697 res
= platform_get_resource_byname(parent
, IORESOURCE_MEM
, "mc");
699 dev_err(dev
, "failed to get memory.\n");
704 res
= platform_get_resource_byname(parent
, IORESOURCE_IRQ
, "mc");
706 dev_err(dev
, "failed to get irq.\n");
711 /* allocate the child platform device */
712 musb
= platform_device_alloc("musb-hdrc", PLATFORM_DEVID_AUTO
);
714 dev_err(dev
, "failed to allocate musb device\n");
718 musb
->dev
.parent
= dev
;
719 musb
->dev
.dma_mask
= &musb_dmamask
;
720 musb
->dev
.coherent_dma_mask
= musb_dmamask
;
724 ret
= platform_device_add_resources(musb
, resources
,
725 ARRAY_SIZE(resources
));
727 dev_err(dev
, "failed to add resources\n");
731 config
= devm_kzalloc(&parent
->dev
, sizeof(*config
), GFP_KERNEL
);
736 pdata
.config
= config
;
737 pdata
.platform_ops
= &dsps_ops
;
739 config
->num_eps
= get_int_prop(dn
, "mentor,num-eps");
740 config
->ram_bits
= get_int_prop(dn
, "mentor,ram-bits");
741 config
->host_port_deassert_reset_at_resume
= 1;
742 pdata
.mode
= get_musb_port_mode(dev
);
743 /* DT keeps this entry in mA, musb expects it as per USB spec */
744 pdata
.power
= get_int_prop(dn
, "mentor,power") / 2;
746 ret
= of_property_read_u32(dn
, "mentor,multipoint", &val
);
748 config
->multipoint
= true;
750 config
->maximum_speed
= usb_get_maximum_speed(&parent
->dev
);
751 switch (config
->maximum_speed
) {
755 case USB_SPEED_SUPER
:
756 dev_warn(dev
, "ignore incorrect maximum_speed "
757 "(super-speed) setting in dts");
760 config
->maximum_speed
= USB_SPEED_HIGH
;
763 ret
= platform_device_add_data(musb
, &pdata
, sizeof(pdata
));
765 dev_err(dev
, "failed to add platform_data\n");
769 ret
= platform_device_add(musb
);
771 dev_err(dev
, "failed to register musb device\n");
777 platform_device_put(musb
);
781 static int dsps_probe(struct platform_device
*pdev
)
783 const struct of_device_id
*match
;
784 const struct dsps_musb_wrapper
*wrp
;
785 struct dsps_glue
*glue
;
788 if (!strcmp(pdev
->name
, "musb-hdrc"))
791 match
= of_match_node(musb_dsps_of_match
, pdev
->dev
.of_node
);
793 dev_err(&pdev
->dev
, "fail to get matching of_match struct\n");
798 if (of_device_is_compatible(pdev
->dev
.of_node
, "ti,musb-dm816"))
799 dsps_ops
.read_fifo
= dsps_read_fifo32
;
802 glue
= devm_kzalloc(&pdev
->dev
, sizeof(*glue
), GFP_KERNEL
);
806 glue
->dev
= &pdev
->dev
;
809 platform_set_drvdata(pdev
, glue
);
810 pm_runtime_enable(&pdev
->dev
);
812 ret
= pm_runtime_get_sync(&pdev
->dev
);
814 dev_err(&pdev
->dev
, "pm_runtime_get_sync FAILED");
818 ret
= dsps_create_musb_pdev(glue
, pdev
);
825 pm_runtime_put(&pdev
->dev
);
827 pm_runtime_disable(&pdev
->dev
);
831 static int dsps_remove(struct platform_device
*pdev
)
833 struct dsps_glue
*glue
= platform_get_drvdata(pdev
);
835 platform_device_unregister(glue
->musb
);
837 /* disable usbss clocks */
838 pm_runtime_put(&pdev
->dev
);
839 pm_runtime_disable(&pdev
->dev
);
844 static const struct dsps_musb_wrapper am33xx_driver_data
= {
849 .epintr_clear
= 0x40,
850 .epintr_status
= 0x30,
851 .coreintr_set
= 0x3c,
852 .coreintr_clear
= 0x44,
853 .coreintr_status
= 0x34,
864 .usb_bitmap
= (0x1ff << 0),
868 .txep_bitmap
= (0xffff << 0),
871 .rxep_bitmap
= (0xfffe << 16),
872 .poll_timeout
= 2000, /* ms */
875 static const struct of_device_id musb_dsps_of_match
[] = {
876 { .compatible
= "ti,musb-am33xx",
877 .data
= &am33xx_driver_data
, },
878 { .compatible
= "ti,musb-dm816",
879 .data
= &am33xx_driver_data
, },
882 MODULE_DEVICE_TABLE(of
, musb_dsps_of_match
);
884 #ifdef CONFIG_PM_SLEEP
885 static int dsps_suspend(struct device
*dev
)
887 struct dsps_glue
*glue
= dev_get_drvdata(dev
);
888 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
889 struct musb
*musb
= platform_get_drvdata(glue
->musb
);
892 del_timer_sync(&glue
->timer
);
895 /* This can happen if the musb device is in -EPROBE_DEFER */
898 mbase
= musb
->ctrl_base
;
899 glue
->context
.control
= dsps_readl(mbase
, wrp
->control
);
900 glue
->context
.epintr
= dsps_readl(mbase
, wrp
->epintr_set
);
901 glue
->context
.coreintr
= dsps_readl(mbase
, wrp
->coreintr_set
);
902 glue
->context
.phy_utmi
= dsps_readl(mbase
, wrp
->phy_utmi
);
903 glue
->context
.mode
= dsps_readl(mbase
, wrp
->mode
);
904 glue
->context
.tx_mode
= dsps_readl(mbase
, wrp
->tx_mode
);
905 glue
->context
.rx_mode
= dsps_readl(mbase
, wrp
->rx_mode
);
910 static int dsps_resume(struct device
*dev
)
912 struct dsps_glue
*glue
= dev_get_drvdata(dev
);
913 const struct dsps_musb_wrapper
*wrp
= glue
->wrp
;
914 struct musb
*musb
= platform_get_drvdata(glue
->musb
);
920 mbase
= musb
->ctrl_base
;
921 dsps_writel(mbase
, wrp
->control
, glue
->context
.control
);
922 dsps_writel(mbase
, wrp
->epintr_set
, glue
->context
.epintr
);
923 dsps_writel(mbase
, wrp
->coreintr_set
, glue
->context
.coreintr
);
924 dsps_writel(mbase
, wrp
->phy_utmi
, glue
->context
.phy_utmi
);
925 dsps_writel(mbase
, wrp
->mode
, glue
->context
.mode
);
926 dsps_writel(mbase
, wrp
->tx_mode
, glue
->context
.tx_mode
);
927 dsps_writel(mbase
, wrp
->rx_mode
, glue
->context
.rx_mode
);
928 if (musb
->xceiv
->otg
->state
== OTG_STATE_B_IDLE
&&
929 musb
->port_mode
== MUSB_PORT_MODE_DUAL_ROLE
)
930 mod_timer(&glue
->timer
, jiffies
+
931 msecs_to_jiffies(wrp
->poll_timeout
));
937 static SIMPLE_DEV_PM_OPS(dsps_pm_ops
, dsps_suspend
, dsps_resume
);
939 static struct platform_driver dsps_usbss_driver
= {
941 .remove
= dsps_remove
,
945 .of_match_table
= musb_dsps_of_match
,
949 MODULE_DESCRIPTION("TI DSPS MUSB Glue Layer");
950 MODULE_AUTHOR("Ravi B <ravibabu@ti.com>");
951 MODULE_AUTHOR("Ajay Kumar Gupta <ajay.gupta@ti.com>");
952 MODULE_LICENSE("GPL v2");
954 module_platform_driver(dsps_usbss_driver
);