2 * EHCI HCD (Host Controller Driver) for USB.
4 * Bus Glue for AMD Alchemy Au1xxx
6 * Based on "ohci-au1xxx.c" by Matt Porter <mporter@kernel.crashing.org>
8 * Modified for AMD Alchemy Au1200 EHC
9 * by K.Boge <karsten.boge@amd.com>
11 * This file is licenced under the GPL.
14 #include <linux/platform_device.h>
15 #include <asm/mach-au1x00/au1000.h>
17 #define USB_HOST_CONFIG (USB_MSR_BASE + USB_MSR_MCFG)
18 #define USB_MCFG_PFEN (1<<31)
19 #define USB_MCFG_RDCOMB (1<<30)
20 #define USB_MCFG_SSDEN (1<<23)
21 #define USB_MCFG_PHYPLLEN (1<<19)
22 #define USB_MCFG_UCECLKEN (1<<18)
23 #define USB_MCFG_EHCCLKEN (1<<17)
24 #ifdef CONFIG_DMA_COHERENT
25 #define USB_MCFG_UCAM (1<<7)
27 #define USB_MCFG_UCAM (0)
29 #define USB_MCFG_EBMEN (1<<3)
30 #define USB_MCFG_EMEMEN (1<<2)
32 #define USBH_ENABLE_CE (USB_MCFG_PHYPLLEN | USB_MCFG_EHCCLKEN)
33 #define USBH_ENABLE_INIT (USB_MCFG_PFEN | USB_MCFG_RDCOMB | \
34 USBH_ENABLE_CE | USB_MCFG_SSDEN | \
35 USB_MCFG_UCAM | USB_MCFG_EBMEN | \
38 #define USBH_DISABLE (USB_MCFG_EBMEN | USB_MCFG_EMEMEN)
40 extern int usb_disabled(void);
42 static void au1xxx_start_ehc(void)
44 /* enable clock to EHCI block and HS PHY PLL*/
45 au_writel(au_readl(USB_HOST_CONFIG
) | USBH_ENABLE_CE
, USB_HOST_CONFIG
);
49 /* enable EHCI mmio */
50 au_writel(au_readl(USB_HOST_CONFIG
) | USBH_ENABLE_INIT
, USB_HOST_CONFIG
);
55 static void au1xxx_stop_ehc(void)
60 au_writel(au_readl(USB_HOST_CONFIG
) & ~USBH_DISABLE
, USB_HOST_CONFIG
);
64 /* Disable EHC clock. If the HS PHY is unused disable it too. */
65 c
= au_readl(USB_HOST_CONFIG
) & ~USB_MCFG_EHCCLKEN
;
66 if (!(c
& USB_MCFG_UCECLKEN
)) /* UDC disabled? */
67 c
&= ~USB_MCFG_PHYPLLEN
; /* yes: disable HS PHY PLL */
68 au_writel(c
, USB_HOST_CONFIG
);
72 static const struct hc_driver ehci_au1xxx_hc_driver
= {
73 .description
= hcd_name
,
74 .product_desc
= "Au1xxx EHCI",
75 .hcd_priv_size
= sizeof(struct ehci_hcd
),
78 * generic hardware linkage
81 .flags
= HCD_MEMORY
| HCD_USB2
,
84 * basic lifecycle operations
86 * FIXME -- ehci_init() doesn't do enough here.
87 * See ehci-ppc-soc for a complete implementation.
92 .shutdown
= ehci_shutdown
,
95 * managing i/o requests and associated device resources
97 .urb_enqueue
= ehci_urb_enqueue
,
98 .urb_dequeue
= ehci_urb_dequeue
,
99 .endpoint_disable
= ehci_endpoint_disable
,
100 .endpoint_reset
= ehci_endpoint_reset
,
105 .get_frame_number
= ehci_get_frame
,
110 .hub_status_data
= ehci_hub_status_data
,
111 .hub_control
= ehci_hub_control
,
112 .bus_suspend
= ehci_bus_suspend
,
113 .bus_resume
= ehci_bus_resume
,
114 .relinquish_port
= ehci_relinquish_port
,
115 .port_handed_over
= ehci_port_handed_over
,
117 .clear_tt_buffer_complete
= ehci_clear_tt_buffer_complete
,
120 static int ehci_hcd_au1xxx_drv_probe(struct platform_device
*pdev
)
123 struct ehci_hcd
*ehci
;
124 struct resource
*res
;
130 #if defined(CONFIG_SOC_AU1200) && defined(CONFIG_DMA_COHERENT)
131 /* Au1200 AB USB does not support coherent memory */
132 if (!(read_c0_prid() & 0xff)) {
133 printk(KERN_INFO
"%s: this is chip revision AB!\n", pdev
->name
);
134 printk(KERN_INFO
"%s: update your board or re-configure"
135 " the kernel\n", pdev
->name
);
140 if (pdev
->resource
[1].flags
!= IORESOURCE_IRQ
) {
141 pr_debug("resource[1] is not IORESOURCE_IRQ");
144 hcd
= usb_create_hcd(&ehci_au1xxx_hc_driver
, &pdev
->dev
, "Au1xxx");
148 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
149 hcd
->rsrc_start
= res
->start
;
150 hcd
->rsrc_len
= resource_size(res
);
152 if (!request_mem_region(hcd
->rsrc_start
, hcd
->rsrc_len
, hcd_name
)) {
153 pr_debug("request_mem_region failed");
158 hcd
->regs
= ioremap(hcd
->rsrc_start
, hcd
->rsrc_len
);
160 pr_debug("ioremap failed");
167 ehci
= hcd_to_ehci(hcd
);
168 ehci
->caps
= hcd
->regs
;
169 ehci
->regs
= hcd
->regs
+ HC_LENGTH(readl(&ehci
->caps
->hc_capbase
));
170 /* cache this readonly data; minimize chip reads */
171 ehci
->hcs_params
= readl(&ehci
->caps
->hcs_params
);
173 ret
= usb_add_hcd(hcd
, pdev
->resource
[1].start
,
174 IRQF_DISABLED
| IRQF_SHARED
);
176 platform_set_drvdata(pdev
, hcd
);
183 release_mem_region(hcd
->rsrc_start
, hcd
->rsrc_len
);
189 static int ehci_hcd_au1xxx_drv_remove(struct platform_device
*pdev
)
191 struct usb_hcd
*hcd
= platform_get_drvdata(pdev
);
195 release_mem_region(hcd
->rsrc_start
, hcd
->rsrc_len
);
198 platform_set_drvdata(pdev
, NULL
);
204 static int ehci_hcd_au1xxx_drv_suspend(struct device
*dev
)
206 struct usb_hcd
*hcd
= dev_get_drvdata(dev
);
207 struct ehci_hcd
*ehci
= hcd_to_ehci(hcd
);
214 if (time_before(jiffies
, ehci
->next_statechange
))
217 /* Root hub was already suspended. Disable irq emission and
218 * mark HW unaccessible, bail out if RH has been resumed. Use
219 * the spinlock to properly synchronize with possible pending
220 * RH suspend or resume activity.
222 * This is still racy as hcd->state is manipulated outside of
223 * any locks =P But that will be a different fix.
225 spin_lock_irqsave(&ehci
->lock
, flags
);
226 if (hcd
->state
!= HC_STATE_SUSPENDED
) {
230 ehci_writel(ehci
, 0, &ehci
->regs
->intr_enable
);
231 (void)ehci_readl(ehci
, &ehci
->regs
->intr_enable
);
233 clear_bit(HCD_FLAG_HW_ACCESSIBLE
, &hcd
->flags
);
238 spin_unlock_irqrestore(&ehci
->lock
, flags
);
240 // could save FLADJ in case of Vaux power loss
241 // ... we'd only use it to handle clock skew
246 static int ehci_hcd_au1xxx_drv_resume(struct device
*dev
)
248 struct usb_hcd
*hcd
= dev_get_drvdata(dev
);
249 struct ehci_hcd
*ehci
= hcd_to_ehci(hcd
);
253 // maybe restore FLADJ
255 if (time_before(jiffies
, ehci
->next_statechange
))
258 /* Mark hardware accessible again as we are out of D3 state by now */
259 set_bit(HCD_FLAG_HW_ACCESSIBLE
, &hcd
->flags
);
261 /* If CF is still set, we maintained PCI Vaux power.
262 * Just undo the effect of ehci_pci_suspend().
264 if (ehci_readl(ehci
, &ehci
->regs
->configured_flag
) == FLAG_CF
) {
265 int mask
= INTR_MASK
;
267 if (!hcd
->self
.root_hub
->do_remote_wakeup
)
269 ehci_writel(ehci
, mask
, &ehci
->regs
->intr_enable
);
270 ehci_readl(ehci
, &ehci
->regs
->intr_enable
);
274 ehci_dbg(ehci
, "lost power, restarting\n");
275 usb_root_hub_lost_power(hcd
->self
.root_hub
);
277 /* Else reset, to cope with power loss or flush-to-storage
278 * style "resume" having let BIOS kick in during reboot.
280 (void) ehci_halt(ehci
);
281 (void) ehci_reset(ehci
);
283 /* emptying the schedule aborts any urbs */
284 spin_lock_irq(&ehci
->lock
);
286 end_unlink_async(ehci
);
288 spin_unlock_irq(&ehci
->lock
);
290 ehci_writel(ehci
, ehci
->command
, &ehci
->regs
->command
);
291 ehci_writel(ehci
, FLAG_CF
, &ehci
->regs
->configured_flag
);
292 ehci_readl(ehci
, &ehci
->regs
->command
); /* unblock posted writes */
294 /* here we "know" root ports should always stay powered */
295 ehci_port_power(ehci
, 1);
297 hcd
->state
= HC_STATE_SUSPENDED
;
302 static const struct dev_pm_ops au1xxx_ehci_pmops
= {
303 .suspend
= ehci_hcd_au1xxx_drv_suspend
,
304 .resume
= ehci_hcd_au1xxx_drv_resume
,
307 #define AU1XXX_EHCI_PMOPS &au1xxx_ehci_pmops
310 #define AU1XXX_EHCI_PMOPS NULL
313 static struct platform_driver ehci_hcd_au1xxx_driver
= {
314 .probe
= ehci_hcd_au1xxx_drv_probe
,
315 .remove
= ehci_hcd_au1xxx_drv_remove
,
316 .shutdown
= usb_hcd_platform_shutdown
,
318 .name
= "au1xxx-ehci",
319 .owner
= THIS_MODULE
,
320 .pm
= AU1XXX_EHCI_PMOPS
,
324 MODULE_ALIAS("platform:au1xxx-ehci");