isp1760-hcd.c 54.1 KB
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/*
 * Driver for the NXP ISP1760 chip
 *
 * However, the code might contain some bugs. What doesn't work for sure is:
 * - ISO
 * - OTG
 e The interrupt line is configured as active low, level.
 *
 * (c) 2007 Sebastian Siewior <bigeasy@linutronix.de>
 *
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 * (c) 2011 Arvid Brodin <arvid.brodin@enea.com>
 *
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 */
#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/list.h>
#include <linux/usb.h>
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#include <linux/usb/hcd.h>
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#include <linux/debugfs.h>
#include <linux/uaccess.h>
#include <linux/io.h>
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#include <linux/mm.h>
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#include <asm/unaligned.h>
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#include <asm/cacheflush.h>
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#include "isp1760-hcd.h"

static struct kmem_cache *qtd_cachep;
static struct kmem_cache *qh_cachep;
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static struct kmem_cache *urb_listitem_cachep;
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struct isp1760_hcd {
	u32 hcs_params;
	spinlock_t		lock;
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	struct slotinfo		atl_slots[32];
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	int			atl_done_map;
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	struct slotinfo		int_slots[32];
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	int			int_done_map;
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	struct memory_chunk memory_pool[BLOCKS];
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	struct list_head	controlqhs, bulkqhs, interruptqhs;
	int active_ptds;
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	/* periodic schedule support */
#define	DEFAULT_I_TDPS		1024
	unsigned		periodic_size;
	unsigned		i_thresh;
	unsigned long		reset_done;
	unsigned long		next_statechange;
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	unsigned int		devflags;
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};

static inline struct isp1760_hcd *hcd_to_priv(struct usb_hcd *hcd)
{
	return (struct isp1760_hcd *) (hcd->hcd_priv);
}

/* Section 2.2 Host Controller Capability Registers */
#define HC_LENGTH(p)		(((p)>>00)&0x00ff)	/* bits 7:0 */
#define HC_VERSION(p)		(((p)>>16)&0xffff)	/* bits 31:16 */
#define HCS_INDICATOR(p)	((p)&(1 << 16))	/* true: has port indicators */
#define HCS_PPC(p)		((p)&(1 << 4))	/* true: port power control */
#define HCS_N_PORTS(p)		(((p)>>0)&0xf)	/* bits 3:0, ports on HC */
#define HCC_ISOC_CACHE(p)       ((p)&(1 << 7))  /* true: can cache isoc frame */
#define HCC_ISOC_THRES(p)       (((p)>>4)&0x7)  /* bits 6:4, uframes cached */

/* Section 2.3 Host Controller Operational Registers */
#define CMD_LRESET	(1<<7)		/* partial reset (no ports, etc) */
#define CMD_RESET	(1<<1)		/* reset HC not bus */
#define CMD_RUN		(1<<0)		/* start/stop HC */
#define STS_PCD		(1<<2)		/* port change detect */
#define FLAG_CF		(1<<0)		/* true: we'll support "high speed" */

#define PORT_OWNER	(1<<13)		/* true: companion hc owns this port */
#define PORT_POWER	(1<<12)		/* true: has power (see PPC) */
#define PORT_USB11(x) (((x) & (3 << 10)) == (1 << 10))	/* USB 1.1 device */
#define PORT_RESET	(1<<8)		/* reset port */
#define PORT_SUSPEND	(1<<7)		/* suspend port */
#define PORT_RESUME	(1<<6)		/* resume it */
#define PORT_PE		(1<<2)		/* port enable */
#define PORT_CSC	(1<<1)		/* connect status change */
#define PORT_CONNECT	(1<<0)		/* device connected */
#define PORT_RWC_BITS   (PORT_CSC)

struct isp1760_qtd {
	u8 packet_type;
	void *data_buffer;
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	u32 payload_addr;

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	/* the rest is HCD-private */
	struct list_head qtd_list;
	struct urb *urb;
	size_t length;
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	size_t actual_length;

	/* QTD_ENQUEUED:	waiting for transfer (inactive) */
	/* QTD_PAYLOAD_ALLOC:	chip mem has been allocated for payload */
	/* QTD_XFER_STARTED:	valid ptd has been written to isp176x - only
				interrupt handler may touch this qtd! */
	/* QTD_XFER_COMPLETE:	payload has been transferred successfully */
	/* QTD_RETIRE:		transfer error/abort qtd */
#define QTD_ENQUEUED		0
#define QTD_PAYLOAD_ALLOC	1
#define QTD_XFER_STARTED	2
#define QTD_XFER_COMPLETE	3
#define QTD_RETIRE		4
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	u32 status;
};

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/* Queue head, one for each active endpoint */
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struct isp1760_qh {
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	struct list_head qh_list;
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	struct list_head qtd_list;
	u32 toggle;
	u32 ping;
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	int slot;
};

struct urb_listitem {
	struct list_head urb_list;
	struct urb *urb;
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};

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/*
 * Access functions for isp176x registers (addresses 0..0x03FF).
 */
static u32 reg_read32(void __iomem *base, u32 reg)
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{
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	return readl(base + reg);
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}

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static void reg_write32(void __iomem *base, u32 reg, u32 val)
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{
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	writel(val, base + reg);
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}

/*
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 * Access functions for isp176x memory (offset >= 0x0400).
 *
 * bank_reads8() reads memory locations prefetched by an earlier write to
 * HC_MEMORY_REG (see isp176x datasheet). Unless you want to do fancy multi-
 * bank optimizations, you should use the more generic mem_reads8() below.
 *
 * For access to ptd memory, use the specialized ptd_read() and ptd_write()
 * below.
 *
 * These functions copy via MMIO data to/from the device. memcpy_{to|from}io()
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 * doesn't quite work because some people have to enforce 32-bit access
 */
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static void bank_reads8(void __iomem *src_base, u32 src_offset, u32 bank_addr,
							__u32 *dst, u32 bytes)
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{
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	__u32 __iomem *src;
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	u32 val;
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	__u8 *src_byteptr;
	__u8 *dst_byteptr;
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	src = src_base + (bank_addr | src_offset);
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	if (src_offset < PAYLOAD_OFFSET) {
		while (bytes >= 4) {
			*dst = le32_to_cpu(__raw_readl(src));
			bytes -= 4;
			src++;
			dst++;
		}
	} else {
		while (bytes >= 4) {
			*dst = __raw_readl(src);
			bytes -= 4;
			src++;
			dst++;
		}
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	}

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	if (!bytes)
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		return;

	/* in case we have 3, 2 or 1 by left. The dst buffer may not be fully
	 * allocated.
	 */
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	if (src_offset < PAYLOAD_OFFSET)
		val = le32_to_cpu(__raw_readl(src));
	else
		val = __raw_readl(src);

	dst_byteptr = (void *) dst;
	src_byteptr = (void *) &val;
	while (bytes > 0) {
		*dst_byteptr = *src_byteptr;
		dst_byteptr++;
		src_byteptr++;
		bytes--;
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	}
}

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static void mem_reads8(void __iomem *src_base, u32 src_offset, void *dst,
								u32 bytes)
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{
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	reg_write32(src_base, HC_MEMORY_REG, src_offset + ISP_BANK(0));
	ndelay(90);
	bank_reads8(src_base, src_offset, ISP_BANK(0), dst, bytes);
}

static void mem_writes8(void __iomem *dst_base, u32 dst_offset,
						__u32 const *src, u32 bytes)
{
	__u32 __iomem *dst;

	dst = dst_base + dst_offset;

	if (dst_offset < PAYLOAD_OFFSET) {
		while (bytes >= 4) {
			__raw_writel(cpu_to_le32(*src), dst);
			bytes -= 4;
			src++;
			dst++;
		}
	} else {
		while (bytes >= 4) {
			__raw_writel(*src, dst);
			bytes -= 4;
			src++;
			dst++;
		}
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	}

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	if (!bytes)
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		return;
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	/* in case we have 3, 2 or 1 bytes left. The buffer is allocated and the
	 * extra bytes should not be read by the HW.
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	 */

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	if (dst_offset < PAYLOAD_OFFSET)
		__raw_writel(cpu_to_le32(*src), dst);
	else
		__raw_writel(*src, dst);
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}

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/*
 * Read and write ptds. 'ptd_offset' should be one of ISO_PTD_OFFSET,
 * INT_PTD_OFFSET, and ATL_PTD_OFFSET. 'slot' should be less than 32.
 */
static void ptd_read(void __iomem *base, u32 ptd_offset, u32 slot,
								struct ptd *ptd)
{
	reg_write32(base, HC_MEMORY_REG,
				ISP_BANK(0) + ptd_offset + slot*sizeof(*ptd));
	ndelay(90);
	bank_reads8(base, ptd_offset + slot*sizeof(*ptd), ISP_BANK(0),
						(void *) ptd, sizeof(*ptd));
}

static void ptd_write(void __iomem *base, u32 ptd_offset, u32 slot,
								struct ptd *ptd)
{
	mem_writes8(base, ptd_offset + slot*sizeof(*ptd) + sizeof(ptd->dw0),
						&ptd->dw1, 7*sizeof(ptd->dw1));
	/* Make sure dw0 gets written last (after other dw's and after payload)
	   since it contains the enable bit */
	wmb();
	mem_writes8(base, ptd_offset + slot*sizeof(*ptd), &ptd->dw0,
							sizeof(ptd->dw0));
}


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/* memory management of the 60kb on the chip from 0x1000 to 0xffff */
static void init_memory(struct isp1760_hcd *priv)
{
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	int i, curr;
	u32 payload_addr;
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	payload_addr = PAYLOAD_OFFSET;
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	for (i = 0; i < BLOCK_1_NUM; i++) {
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		priv->memory_pool[i].start = payload_addr;
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		priv->memory_pool[i].size = BLOCK_1_SIZE;
		priv->memory_pool[i].free = 1;
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		payload_addr += priv->memory_pool[i].size;
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	}

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	curr = i;
	for (i = 0; i < BLOCK_2_NUM; i++) {
		priv->memory_pool[curr + i].start = payload_addr;
		priv->memory_pool[curr + i].size = BLOCK_2_SIZE;
		priv->memory_pool[curr + i].free = 1;
		payload_addr += priv->memory_pool[curr + i].size;
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	}

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	curr = i;
	for (i = 0; i < BLOCK_3_NUM; i++) {
		priv->memory_pool[curr + i].start = payload_addr;
		priv->memory_pool[curr + i].size = BLOCK_3_SIZE;
		priv->memory_pool[curr + i].free = 1;
		payload_addr += priv->memory_pool[curr + i].size;
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	}

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	WARN_ON(payload_addr - priv->memory_pool[0].start > PAYLOAD_AREA_SIZE);
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}

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static void alloc_mem(struct usb_hcd *hcd, struct isp1760_qtd *qtd)
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{
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	struct isp1760_hcd *priv = hcd_to_priv(hcd);
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	int i;

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	WARN_ON(qtd->payload_addr);
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	if (!qtd->length)
		return;
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	for (i = 0; i < BLOCKS; i++) {
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		if (priv->memory_pool[i].size >= qtd->length &&
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				priv->memory_pool[i].free) {
			priv->memory_pool[i].free = 0;
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			qtd->payload_addr = priv->memory_pool[i].start;
			return;
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		}
	}
}

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static void free_mem(struct usb_hcd *hcd, struct isp1760_qtd *qtd)
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{
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	struct isp1760_hcd *priv = hcd_to_priv(hcd);
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	int i;

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	if (!qtd->payload_addr)
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		return;

	for (i = 0; i < BLOCKS; i++) {
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		if (priv->memory_pool[i].start == qtd->payload_addr) {
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			WARN_ON(priv->memory_pool[i].free);
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			priv->memory_pool[i].free = 1;
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			qtd->payload_addr = 0;
			return;
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		}
	}

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	dev_err(hcd->self.controller, "%s: Invalid pointer: %08x\n",
						__func__, qtd->payload_addr);
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	WARN_ON(1);
	qtd->payload_addr = 0;
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}

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static int handshake(struct usb_hcd *hcd, u32 reg,
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		      u32 mask, u32 done, int usec)
{
	u32 result;

	do {
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		result = reg_read32(hcd->regs, reg);
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		if (result == ~0)
			return -ENODEV;
		result &= mask;
		if (result == done)
			return 0;
		udelay(1);
		usec--;
	} while (usec > 0);
	return -ETIMEDOUT;
}

/* reset a non-running (STS_HALT == 1) controller */
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static int ehci_reset(struct usb_hcd *hcd)
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{
	int retval;
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	struct isp1760_hcd *priv = hcd_to_priv(hcd);

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	u32 command = reg_read32(hcd->regs, HC_USBCMD);
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	command |= CMD_RESET;
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	reg_write32(hcd->regs, HC_USBCMD, command);
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	hcd->state = HC_STATE_HALT;
	priv->next_statechange = jiffies;
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	retval = handshake(hcd, HC_USBCMD,
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			    CMD_RESET, 0, 250 * 1000);
	return retval;
}

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static struct isp1760_qh *qh_alloc(gfp_t flags)
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{
	struct isp1760_qh *qh;

	qh = kmem_cache_zalloc(qh_cachep, flags);
	if (!qh)
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		return NULL;
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	INIT_LIST_HEAD(&qh->qh_list);
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	INIT_LIST_HEAD(&qh->qtd_list);
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	qh->slot = -1;

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	return qh;
}

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static void qh_free(struct isp1760_qh *qh)
{
	WARN_ON(!list_empty(&qh->qtd_list));
	WARN_ON(qh->slot > -1);
	kmem_cache_free(qh_cachep, qh);
}
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/* one-time init, only for memory state */
static int priv_init(struct usb_hcd *hcd)
{
	struct isp1760_hcd		*priv = hcd_to_priv(hcd);
	u32			hcc_params;

	spin_lock_init(&priv->lock);

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	INIT_LIST_HEAD(&priv->interruptqhs);
	INIT_LIST_HEAD(&priv->controlqhs);
	INIT_LIST_HEAD(&priv->bulkqhs);

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	/*
	 * hw default: 1K periodic list heads, one per frame.
	 * periodic_size can shrink by USBCMD update if hcc_params allows.
	 */
	priv->periodic_size = DEFAULT_I_TDPS;

	/* controllers may cache some of the periodic schedule ... */
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	hcc_params = reg_read32(hcd->regs, HC_HCCPARAMS);
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	/* full frame cache */
	if (HCC_ISOC_CACHE(hcc_params))
		priv->i_thresh = 8;
	else /* N microframes cached */
		priv->i_thresh = 2 + HCC_ISOC_THRES(hcc_params);

	return 0;
}

static int isp1760_hc_setup(struct usb_hcd *hcd)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	int result;
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	u32 scratch, hwmode;

	/* Setup HW Mode Control: This assumes a level active-low interrupt */
	hwmode = HW_DATA_BUS_32BIT;

	if (priv->devflags & ISP1760_FLAG_BUS_WIDTH_16)
		hwmode &= ~HW_DATA_BUS_32BIT;
	if (priv->devflags & ISP1760_FLAG_ANALOG_OC)
		hwmode |= HW_ANA_DIGI_OC;
	if (priv->devflags & ISP1760_FLAG_DACK_POL_HIGH)
		hwmode |= HW_DACK_POL_HIGH;
	if (priv->devflags & ISP1760_FLAG_DREQ_POL_HIGH)
		hwmode |= HW_DREQ_POL_HIGH;
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	if (priv->devflags & ISP1760_FLAG_INTR_POL_HIGH)
		hwmode |= HW_INTR_HIGH_ACT;
	if (priv->devflags & ISP1760_FLAG_INTR_EDGE_TRIG)
		hwmode |= HW_INTR_EDGE_TRIG;
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	/*
	 * We have to set this first in case we're in 16-bit mode.
	 * Write it twice to ensure correct upper bits if switching
	 * to 16-bit mode.
	 */
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	reg_write32(hcd->regs, HC_HW_MODE_CTRL, hwmode);
	reg_write32(hcd->regs, HC_HW_MODE_CTRL, hwmode);
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	reg_write32(hcd->regs, HC_SCRATCH_REG, 0xdeadbabe);
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	/* Change bus pattern */
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	scratch = reg_read32(hcd->regs, HC_CHIP_ID_REG);
	scratch = reg_read32(hcd->regs, HC_SCRATCH_REG);
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	if (scratch != 0xdeadbabe) {
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		dev_err(hcd->self.controller, "Scratch test failed.\n");
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		return -ENODEV;
	}

	/* pre reset */
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	reg_write32(hcd->regs, HC_BUFFER_STATUS_REG, 0);
	reg_write32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG, NO_TRANSFER_ACTIVE);
	reg_write32(hcd->regs, HC_INT_PTD_SKIPMAP_REG, NO_TRANSFER_ACTIVE);
	reg_write32(hcd->regs, HC_ISO_PTD_SKIPMAP_REG, NO_TRANSFER_ACTIVE);
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	/* reset */
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	reg_write32(hcd->regs, HC_RESET_REG, SW_RESET_RESET_ALL);
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	mdelay(100);

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	reg_write32(hcd->regs, HC_RESET_REG, SW_RESET_RESET_HC);
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	mdelay(100);

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	result = ehci_reset(hcd);
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	if (result)
		return result;

	/* Step 11 passed */

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	dev_info(hcd->self.controller, "bus width: %d, oc: %s\n",
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			   (priv->devflags & ISP1760_FLAG_BUS_WIDTH_16) ?
			   16 : 32, (priv->devflags & ISP1760_FLAG_ANALOG_OC) ?
			   "analog" : "digital");
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	/* This is weird: at the first plug-in of a device there seems to be
	   one packet queued that never gets returned? */
	priv->active_ptds = -1;

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	/* ATL reset */
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	reg_write32(hcd->regs, HC_HW_MODE_CTRL, hwmode | ALL_ATX_RESET);
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	mdelay(10);
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	reg_write32(hcd->regs, HC_HW_MODE_CTRL, hwmode);
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	reg_write32(hcd->regs, HC_INTERRUPT_ENABLE, INTERRUPT_ENABLE_MASK);
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	/*
	 * PORT 1 Control register of the ISP1760 is the OTG control
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	 * register on ISP1761. Since there is no OTG or device controller
	 * support in this driver, we use port 1 as a "normal" USB host port on
	 * both chips.
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	 */
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	reg_write32(hcd->regs, HC_PORT1_CTRL, PORT1_POWER | PORT1_INIT2);
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	mdelay(10);
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	priv->hcs_params = reg_read32(hcd->regs, HC_HCSPARAMS);
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	return priv_init(hcd);
}

static void isp1760_init_maps(struct usb_hcd *hcd)
{
	/*set last maps, for iso its only 1, else 32 tds bitmap*/
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	reg_write32(hcd->regs, HC_ATL_PTD_LASTPTD_REG, 0x80000000);
	reg_write32(hcd->regs, HC_INT_PTD_LASTPTD_REG, 0x80000000);
	reg_write32(hcd->regs, HC_ISO_PTD_LASTPTD_REG, 0x00000001);
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524 525 526
	reg_write32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG, 0xffffffff);
	reg_write32(hcd->regs, HC_INT_PTD_SKIPMAP_REG, 0xffffffff);
	reg_write32(hcd->regs, HC_ISO_PTD_SKIPMAP_REG, 0xffffffff);
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528 529
	reg_write32(hcd->regs, HC_BUFFER_STATUS_REG,
						ATL_BUF_FILL | INT_BUF_FILL);
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}

static void isp1760_enable_interrupts(struct usb_hcd *hcd)
{
534
	reg_write32(hcd->regs, HC_ATL_IRQ_MASK_AND_REG, 0);
535
	reg_write32(hcd->regs, HC_ATL_IRQ_MASK_OR_REG, 0xffffffff);
536
	reg_write32(hcd->regs, HC_INT_IRQ_MASK_AND_REG, 0);
537
	reg_write32(hcd->regs, HC_INT_IRQ_MASK_OR_REG, 0xffffffff);
538 539
	reg_write32(hcd->regs, HC_ISO_IRQ_MASK_AND_REG, 0);
	reg_write32(hcd->regs, HC_ISO_IRQ_MASK_OR_REG, 0xffffffff);
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	/* step 23 passed */
}

static int isp1760_run(struct usb_hcd *hcd)
{
	int retval;
	u32 temp;
	u32 command;
	u32 chipid;

	hcd->uses_new_polling = 1;

	hcd->state = HC_STATE_RUNNING;
	isp1760_enable_interrupts(hcd);
554 555
	temp = reg_read32(hcd->regs, HC_HW_MODE_CTRL);
	reg_write32(hcd->regs, HC_HW_MODE_CTRL, temp | HW_GLOBAL_INTR_EN);
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	command = reg_read32(hcd->regs, HC_USBCMD);
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	command &= ~(CMD_LRESET|CMD_RESET);
	command |= CMD_RUN;
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	reg_write32(hcd->regs, HC_USBCMD, command);
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	retval = handshake(hcd, HC_USBCMD, CMD_RUN, CMD_RUN, 250 * 1000);
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	if (retval)
		return retval;

	/*
	 * XXX
	 * Spec says to write FLAG_CF as last config action, priv code grabs
	 * the semaphore while doing so.
	 */
	down_write(&ehci_cf_port_reset_rwsem);
572
	reg_write32(hcd->regs, HC_CONFIGFLAG, FLAG_CF);
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	retval = handshake(hcd, HC_CONFIGFLAG, FLAG_CF, FLAG_CF, 250 * 1000);
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	up_write(&ehci_cf_port_reset_rwsem);
	if (retval)
		return retval;

579
	chipid = reg_read32(hcd->regs, HC_CHIP_ID_REG);
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	dev_info(hcd->self.controller, "USB ISP %04x HW rev. %d started\n",
					chipid & 0xffff, chipid >> 16);
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	/* PTD Register Init Part 2, Step 28 */
	/* enable INTs */
	isp1760_init_maps(hcd);

	/* GRR this is run-once init(), being done every time the HC starts.
	 * So long as they're part of class devices, we can't do it init()
	 * since the class device isn't created that early.
	 */
	return 0;
}

static u32 base_to_chip(u32 base)
{
	return ((base - 0x400) >> 3);
}

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static int last_qtd_of_urb(struct isp1760_qtd *qtd, struct isp1760_qh *qh)
{
	struct urb *urb;

	if (list_is_last(&qtd->qtd_list, &qh->qtd_list))
		return 1;

	urb = qtd->urb;
	qtd = list_entry(qtd->qtd_list.next, typeof(*qtd), qtd_list);
	return (qtd->urb != urb);
}

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/* magic numbers that can affect system performance */
#define	EHCI_TUNE_CERR		3	/* 0-3 qtd retries; 0 == don't stop */
#define	EHCI_TUNE_RL_HS		4	/* nak throttle; see 4.9 */
#define	EHCI_TUNE_RL_TT		0
#define	EHCI_TUNE_MULT_HS	1	/* 1-3 transactions/uframe; 4.10.3 */
#define	EHCI_TUNE_MULT_TT	1
#define	EHCI_TUNE_FLS		2	/* (small) 256 frame schedule */

static void create_ptd_atl(struct isp1760_qh *qh,
620
			struct isp1760_qtd *qtd, struct ptd *ptd)
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{
	u32 maxpacket;
	u32 multi;
	u32 rl = RL_COUNTER;
	u32 nak = NAK_COUNTER;

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	memset(ptd, 0, sizeof(*ptd));

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	/* according to 3.6.2, max packet len can not be > 0x400 */
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	maxpacket = usb_maxpacket(qtd->urb->dev, qtd->urb->pipe,
						usb_pipeout(qtd->urb->pipe));
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	multi =  1 + ((maxpacket >> 11) & 0x3);
	maxpacket &= 0x7ff;

	/* DW0 */
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	ptd->dw0 = DW0_VALID_BIT;
	ptd->dw0 |= TO_DW0_LENGTH(qtd->length);
	ptd->dw0 |= TO_DW0_MAXPACKET(maxpacket);
	ptd->dw0 |= TO_DW0_ENDPOINT(usb_pipeendpoint(qtd->urb->pipe));
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	/* DW1 */
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	ptd->dw1 = usb_pipeendpoint(qtd->urb->pipe) >> 1;
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	ptd->dw1 |= TO_DW1_DEVICE_ADDR(usb_pipedevice(qtd->urb->pipe));
	ptd->dw1 |= TO_DW1_PID_TOKEN(qtd->packet_type);
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	if (usb_pipebulk(qtd->urb->pipe))
647
		ptd->dw1 |= DW1_TRANS_BULK;
648
	else if  (usb_pipeint(qtd->urb->pipe))
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		ptd->dw1 |= DW1_TRANS_INT;
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	if (qtd->urb->dev->speed != USB_SPEED_HIGH) {
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		/* split transaction */

654
		ptd->dw1 |= DW1_TRANS_SPLIT;
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		if (qtd->urb->dev->speed == USB_SPEED_LOW)
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			ptd->dw1 |= DW1_SE_USB_LOSPEED;
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		ptd->dw1 |= TO_DW1_PORT_NUM(qtd->urb->dev->ttport);
		ptd->dw1 |= TO_DW1_HUB_NUM(qtd->urb->dev->tt->hub->devnum);
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		/* SE bit for Split INT transfers */
662 663
		if (usb_pipeint(qtd->urb->pipe) &&
				(qtd->urb->dev->speed == USB_SPEED_LOW))
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			ptd->dw1 |= 2 << 16;
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		rl = 0;
		nak = 0;
	} else {
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		ptd->dw0 |= TO_DW0_MULTI(multi);
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		if (usb_pipecontrol(qtd->urb->pipe) ||
						usb_pipebulk(qtd->urb->pipe))
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			ptd->dw3 |= TO_DW3_PING(qh->ping);
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	}
	/* DW2 */
675
	ptd->dw2 = 0;
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	ptd->dw2 |= TO_DW2_DATA_START_ADDR(base_to_chip(qtd->payload_addr));
	ptd->dw2 |= TO_DW2_RL(rl);
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	/* DW3 */
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	ptd->dw3 |= TO_DW3_NAKCOUNT(nak);
	ptd->dw3 |= TO_DW3_DATA_TOGGLE(qh->toggle);
682 683
	if (usb_pipecontrol(qtd->urb->pipe)) {
		if (qtd->data_buffer == qtd->urb->setup_packet)
684
			ptd->dw3 &= ~TO_DW3_DATA_TOGGLE(1);
685
		else if (last_qtd_of_urb(qtd, qh))
686
			ptd->dw3 |= TO_DW3_DATA_TOGGLE(1);
687
	}
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	ptd->dw3 |= DW3_ACTIVE_BIT;
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	/* Cerr */
691
	ptd->dw3 |= TO_DW3_CERR(ERR_COUNTER);
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}

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static void transform_add_int(struct isp1760_qh *qh,
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			struct isp1760_qtd *qtd, struct ptd *ptd)
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{
697
	u32 usof;
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	u32 period;

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	/*
	 * Most of this is guessing. ISP1761 datasheet is quite unclear, and
	 * the algorithm from the original Philips driver code, which was
	 * pretty much used in this driver before as well, is quite horrendous
	 * and, i believe, incorrect. The code below follows the datasheet and
	 * USB2.0 spec as far as I can tell, and plug/unplug seems to be much
	 * more reliable this way (fingers crossed...).
	 */
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	if (qtd->urb->dev->speed == USB_SPEED_HIGH) {
		/* urb->interval is in units of microframes (1/8 ms) */
		period = qtd->urb->interval >> 3;

		if (qtd->urb->interval > 4)
			usof = 0x01; /* One bit set =>
						interval 1 ms * uFrame-match */
		else if (qtd->urb->interval > 2)
			usof = 0x22; /* Two bits set => interval 1/2 ms */
		else if (qtd->urb->interval > 1)
			usof = 0x55; /* Four bits set => interval 1/4 ms */
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		else
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			usof = 0xff; /* All bits set => interval 1/8 ms */
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	} else {
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		/* urb->interval is in units of frames (1 ms) */
		period = qtd->urb->interval;
		usof = 0x0f;		/* Execute Start Split on any of the
					   four first uFrames */

		/*
		 * First 8 bits in dw5 is uSCS and "specifies which uSOF the
		 * complete split needs to be sent. Valid only for IN." Also,
		 * "All bits can be set to one for every transfer." (p 82,
		 * ISP1761 data sheet.) 0x1c is from Philips driver. Where did
		 * that number come from? 0xff seems to work fine...
		 */
		/* ptd->dw5 = 0x1c; */
		ptd->dw5 = 0xff; /* Execute Complete Split on any uFrame */
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	}

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	period = period >> 1;/* Ensure equal or shorter period than requested */
	period &= 0xf8; /* Mask off too large values and lowest unused 3 bits */

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	ptd->dw2 |= period;
	ptd->dw4 = usof;
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}

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static void create_ptd_int(struct isp1760_qh *qh,
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			struct isp1760_qtd *qtd, struct ptd *ptd)
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{
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	create_ptd_atl(qh, qtd, ptd);
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	transform_add_int(qh, qtd, ptd);
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}

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static void isp1760_urb_done(struct usb_hcd *hcd, struct urb *urb)
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__releases(priv->lock)
__acquires(priv->lock)
{
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	struct isp1760_hcd *priv = hcd_to_priv(hcd);

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	if (!urb->unlinked) {
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		if (urb->status == -EINPROGRESS)
			urb->status = 0;
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	}

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	if (usb_pipein(urb->pipe) && usb_pipetype(urb->pipe) != PIPE_CONTROL) {
		void *ptr;
		for (ptr = urb->transfer_buffer;
		     ptr < urb->transfer_buffer + urb->transfer_buffer_length;
		     ptr += PAGE_SIZE)
			flush_dcache_page(virt_to_page(ptr));
	}

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	/* complete() can reenter this HCD */
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	usb_hcd_unlink_urb_from_ep(hcd, urb);
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	spin_unlock(&priv->lock);
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	usb_hcd_giveback_urb(hcd, urb, urb->status);
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	spin_lock(&priv->lock);
}

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static struct isp1760_qtd *qtd_alloc(gfp_t flags, struct urb *urb,
								u8 packet_type)
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{
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	struct isp1760_qtd *qtd;

	qtd = kmem_cache_zalloc(qtd_cachep, flags);
	if (!qtd)
		return NULL;

	INIT_LIST_HEAD(&qtd->qtd_list);
	qtd->urb = urb;
	qtd->packet_type = packet_type;
791 792
	qtd->status = QTD_ENQUEUED;
	qtd->actual_length = 0;
793 794 795 796 797 798 799

	return qtd;
}

static void qtd_free(struct isp1760_qtd *qtd)
{
	WARN_ON(qtd->payload_addr);
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	kmem_cache_free(qtd_cachep, qtd);
}

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static void start_bus_transfer(struct usb_hcd *hcd, u32 ptd_offset, int slot,
				struct slotinfo *slots, struct isp1760_qtd *qtd,
				struct isp1760_qh *qh, struct ptd *ptd)
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{
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	struct isp1760_hcd *priv = hcd_to_priv(hcd);
808 809
	int skip_map;

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	WARN_ON((slot < 0) || (slot > 31));
	WARN_ON(qtd->length && !qtd->payload_addr);
	WARN_ON(slots[slot].qtd);
	WARN_ON(slots[slot].qh);
	WARN_ON(qtd->status != QTD_PAYLOAD_ALLOC);

	slots[slot].qtd = qtd;
	slots[slot].qh = qh;
	qh->slot = slot;
	qtd->status = QTD_XFER_STARTED; /* Set this before writing ptd, since
		interrupt routine may preempt and expects this value. */
	ptd_write(hcd->regs, ptd_offset, slot, ptd);
	priv->active_ptds++;
823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841

	/* Make sure done map has not triggered from some unlinked transfer */
	if (ptd_offset == ATL_PTD_OFFSET) {
		priv->atl_done_map |= reg_read32(hcd->regs,
						HC_ATL_PTD_DONEMAP_REG);
		priv->atl_done_map &= ~(1 << qh->slot);

		skip_map = reg_read32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG);
		skip_map &= ~(1 << qh->slot);
		reg_write32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG, skip_map);
	} else {
		priv->int_done_map |= reg_read32(hcd->regs,
						HC_INT_PTD_DONEMAP_REG);
		priv->int_done_map &= ~(1 << qh->slot);

		skip_map = reg_read32(hcd->regs, HC_INT_PTD_SKIPMAP_REG);
		skip_map &= ~(1 << qh->slot);
		reg_write32(hcd->regs, HC_INT_PTD_SKIPMAP_REG, skip_map);
	}
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}

844
static int is_short_bulk(struct isp1760_qtd *qtd)
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{
846 847
	return (usb_pipebulk(qtd->urb->pipe) &&
					(qtd->actual_length < qtd->length));
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}

850 851
static void collect_qtds(struct usb_hcd *hcd, struct isp1760_qh *qh,
						struct list_head *urb_list)
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{
853 854 855
	int last_qtd;
	struct isp1760_qtd *qtd, *qtd_next;
	struct urb_listitem *urb_listitem;
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857 858 859
	list_for_each_entry_safe(qtd, qtd_next, &qh->qtd_list, qtd_list) {
		if (qtd->status < QTD_XFER_COMPLETE)
			break;
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861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884
		if (list_is_last(&qtd->qtd_list, &qh->qtd_list))
			last_qtd = 1;
		else
			last_qtd = qtd->urb != qtd_next->urb;

		if ((!last_qtd) && (qtd->status == QTD_RETIRE))
			qtd_next->status = QTD_RETIRE;

		if (qtd->status == QTD_XFER_COMPLETE) {
			if (qtd->actual_length) {
				switch (qtd->packet_type) {
				case IN_PID:
					mem_reads8(hcd->regs, qtd->payload_addr,
							qtd->data_buffer,
							qtd->actual_length);
					/* Fall through (?) */
				case OUT_PID:
					qtd->urb->actual_length +=
							qtd->actual_length;
					/* Fall through ... */
				case SETUP_PID:
					break;
				}
			}
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			if (is_short_bulk(qtd)) {
				if (qtd->urb->transfer_flags & URB_SHORT_NOT_OK)
					qtd->urb->status = -EREMOTEIO;
				if (!last_qtd)
					qtd_next->status = QTD_RETIRE;
			}
		}
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894 895
		if (qtd->payload_addr)
			free_mem(hcd, qtd);
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897 898 899 900 901 902 903 904 905 906 907 908
		if (last_qtd) {
			if ((qtd->status == QTD_RETIRE) &&
					(qtd->urb->status == -EINPROGRESS))
				qtd->urb->status = -EPIPE;
			/* Defer calling of urb_done() since it releases lock */
			urb_listitem = kmem_cache_zalloc(urb_listitem_cachep,
								GFP_ATOMIC);
			if (unlikely(!urb_listitem))
				break;
			urb_listitem->urb = qtd->urb;
			list_add_tail(&urb_listitem->urb_list, urb_list);
		}
909

910 911 912 913
		list_del(&qtd->qtd_list);
		qtd_free(qtd);
	}
}
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915 916 917 918 919 920 921 922 923 924
#define ENQUEUE_DEPTH	2
static void enqueue_qtds(struct usb_hcd *hcd, struct isp1760_qh *qh)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	int ptd_offset;
	struct slotinfo *slots;
	int curr_slot, free_slot;
	int n;
	struct ptd ptd;
	struct isp1760_qtd *qtd;
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	if (unlikely(list_empty(&qh->qtd_list))) {
		WARN_ON(1);
		return;
	}
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	if (usb_pipeint(list_entry(qh->qtd_list.next, struct isp1760_qtd,
							qtd_list)->urb->pipe)) {
		ptd_offset = INT_PTD_OFFSET;
		slots = priv->int_slots;
	} else {
		ptd_offset = ATL_PTD_OFFSET;
		slots = priv->atl_slots;
	}
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	free_slot = -1;
	for (curr_slot = 0; curr_slot < 32; curr_slot++) {
		if ((free_slot == -1) && (slots[curr_slot].qtd == NULL))
			free_slot = curr_slot;
		if (slots[curr_slot].qh == qh)
			break;
	}
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	n = 0;
	list_for_each_entry(qtd, &qh->qtd_list, qtd_list) {
		if (qtd->status == QTD_ENQUEUED) {
			WARN_ON(qtd->payload_addr);
			alloc_mem(hcd, qtd);
			if ((qtd->length) && (!qtd->payload_addr))
				break;
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			if ((qtd->length) &&
			    ((qtd->packet_type == SETUP_PID) ||
			     (qtd->packet_type == OUT_PID))) {
				mem_writes8(hcd->regs, qtd->payload_addr,
						qtd->data_buffer, qtd->length);
			}
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963
			qtd->status = QTD_PAYLOAD_ALLOC;
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		}

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		if (qtd->status == QTD_PAYLOAD_ALLOC) {
/*
			if ((curr_slot > 31) && (free_slot == -1))
				dev_dbg(hcd->self.controller, "%s: No slot "
					"available for transfer\n", __func__);
*/
			/* Start xfer for this endpoint if not already done */
			if ((curr_slot > 31) && (free_slot > -1)) {
				if (usb_pipeint(qtd->urb->pipe))
					create_ptd_int(qh, qtd, &ptd);
				else
					create_ptd_atl(qh, qtd, &ptd);

				start_bus_transfer(hcd, ptd_offset, free_slot,
							slots, qtd, qh, &ptd);
				curr_slot = free_slot;
			}
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			n++;
			if (n >= ENQUEUE_DEPTH)
				break;
		}
	}
}
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991 992 993 994 995 996 997 998 999 1000 1001 1002 1003
void schedule_ptds(struct usb_hcd *hcd)
{
	struct isp1760_hcd *priv;
	struct isp1760_qh *qh, *qh_next;
	struct list_head *ep_queue;
	struct usb_host_endpoint *ep;
	LIST_HEAD(urb_list);
	struct urb_listitem *urb_listitem, *urb_listitem_next;

	if (!hcd) {
		WARN_ON(1);
		return;
	}
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1005
	priv = hcd_to_priv(hcd);
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1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
	/*
	 * check finished/retired xfers, transfer payloads, call urb_done()
	 */
	ep_queue = &priv->interruptqhs;
	while (ep_queue) {
		list_for_each_entry_safe(qh, qh_next, ep_queue, qh_list) {
			ep = list_entry(qh->qtd_list.next, struct isp1760_qtd,
							qtd_list)->urb->ep;
			collect_qtds(hcd, qh, &urb_list);
			if (list_empty(&qh->qtd_list)) {
				list_del(&qh->qh_list);
				if (ep->hcpriv == NULL) {
					/* Endpoint has been disabled, so we
					can free the associated queue head. */
					qh_free(qh);
				}
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1023 1024 1025
			}
		}

1026 1027 1028 1029 1030 1031 1032
		if (ep_queue == &priv->interruptqhs)
			ep_queue = &priv->controlqhs;
		else if (ep_queue == &priv->controlqhs)
			ep_queue = &priv->bulkqhs;
		else
			ep_queue = NULL;
	}
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1034 1035 1036 1037 1038
	list_for_each_entry_safe(urb_listitem, urb_listitem_next, &urb_list,
								urb_list) {
		isp1760_urb_done(hcd, urb_listitem->urb);
		kmem_cache_free(urb_listitem_cachep, urb_listitem);
	}
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1039

1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076
	/*
	 * Schedule packets for transfer.
	 *
	 * According to USB2.0 specification:
	 *
	 * 1st prio: interrupt xfers, up to 80 % of bandwidth
	 * 2nd prio: control xfers
	 * 3rd prio: bulk xfers
	 *
	 * ... but let's use a simpler scheme here (mostly because ISP1761 doc
	 * is very unclear on how to prioritize traffic):
	 *
	 * 1) Enqueue any queued control transfers, as long as payload chip mem
	 *    and PTD ATL slots are available.
	 * 2) Enqueue any queued INT transfers, as long as payload chip mem
	 *    and PTD INT slots are available.
	 * 3) Enqueue any queued bulk transfers, as long as payload chip mem
	 *    and PTD ATL slots are available.
	 *
	 * Use double buffering (ENQUEUE_DEPTH==2) as a compromise between
	 * conservation of chip mem and performance.
	 *
	 * I'm sure this scheme could be improved upon!
	 */
	ep_queue = &priv->controlqhs;
	while (ep_queue) {
		list_for_each_entry_safe(qh, qh_next, ep_queue, qh_list)
			enqueue_qtds(hcd, qh);

		if (ep_queue == &priv->controlqhs)
			ep_queue = &priv->interruptqhs;
		else if (ep_queue == &priv->interruptqhs)
			ep_queue = &priv->bulkqhs;
		else
			ep_queue = NULL;
	}
}
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1078 1079 1080
#define PTD_STATE_QTD_DONE	1
#define PTD_STATE_QTD_RELOAD	2
#define PTD_STATE_URB_RETIRE	3
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1082 1083 1084 1085 1086
static int check_int_transfer(struct usb_hcd *hcd, struct ptd *ptd,
								struct urb *urb)
{
	__dw dw4;
	int i;
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1088 1089
	dw4 = ptd->dw4;
	dw4 >>= 8;
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1091 1092
	/* FIXME: ISP1761 datasheet does not say what to do with these. Do we
	   need to handle these errors? Is it done in hardware? */
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1093

1094
	if (ptd->dw3 & DW3_HALT_BIT) {
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1095

1096
		urb->status = -EPROTO; /* Default unknown error */
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1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121
		for (i = 0; i < 8; i++) {
			switch (dw4 & 0x7) {
			case INT_UNDERRUN:
				dev_dbg(hcd->self.controller, "%s: underrun "
						"during uFrame %d\n",
						__func__, i);
				urb->status = -ECOMM; /* Could not write data */
				break;
			case INT_EXACT:
				dev_dbg(hcd->self.controller, "%s: transaction "
						"error during uFrame %d\n",
						__func__, i);
				urb->status = -EPROTO; /* timeout, bad CRC, PID
							  error etc. */
				break;
			case INT_BABBLE:
				dev_dbg(hcd->self.controller, "%s: babble "
						"error during uFrame %d\n",
						__func__, i);
				urb->status = -EOVERFLOW;
				break;
			}
			dw4 >>= 3;
		}
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1123 1124
		return PTD_STATE_URB_RETIRE;
	}
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1126 1127
	return PTD_STATE_QTD_DONE;
}
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1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151
static int check_atl_transfer(struct usb_hcd *hcd, struct ptd *ptd,
								struct urb *urb)
{
	WARN_ON(!ptd);
	if (ptd->dw3 & DW3_HALT_BIT) {
		if (ptd->dw3 & DW3_BABBLE_BIT)
			urb->status = -EOVERFLOW;
		else if (FROM_DW3_CERR(ptd->dw3))
			urb->status = -EPIPE;  /* Stall */
		else if (ptd->dw3 & DW3_ERROR_BIT)
			urb->status = -EPROTO; /* XactErr */
		else
			urb->status = -EPROTO; /* Unknown */
/*
		dev_dbg(hcd->self.controller, "%s: ptd error:\n"
			"        dw0: %08x dw1: %08x dw2: %08x dw3: %08x\n"
			"        dw4: %08x dw5: %08x dw6: %08x dw7: %08x\n",
			__func__,
			ptd->dw0, ptd->dw1, ptd->dw2, ptd->dw3,
			ptd->dw4, ptd->dw5, ptd->dw6, ptd->dw7);
*/
		return PTD_STATE_URB_RETIRE;
	}
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1153 1154 1155 1156 1157
	if ((ptd->dw3 & DW3_ERROR_BIT) && (ptd->dw3 & DW3_ACTIVE_BIT)) {
		/* Transfer Error, *but* active and no HALT -> reload */
		dev_dbg(hcd->self.controller, "PID error; reloading ptd\n");
		return PTD_STATE_QTD_RELOAD;
	}
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1159 1160 1161 1162 1163 1164 1165
	if (!FROM_DW3_NAKCOUNT(ptd->dw3) && (ptd->dw3 & DW3_ACTIVE_BIT)) {
		/*
		 * NAKs are handled in HW by the chip. Usually if the
		 * device is not able to send data fast enough.
		 * This happens mostly on slower hardware.
		 */
		return PTD_STATE_QTD_RELOAD;
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1166
	}
1167 1168

	return PTD_STATE_QTD_DONE;
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1169 1170
}

1171
static irqreturn_t isp1760_irq(struct usb_hcd *hcd)
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1172
{
1173
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
1174 1175
	u32 imask;
	irqreturn_t irqret = IRQ_NONE;
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	struct ptd ptd;
	struct isp1760_qh *qh;
1178 1179 1180 1181 1182 1183 1184
	int slot;
	int state;
	struct slotinfo *slots;
	u32 ptd_offset;
	struct isp1760_qtd *qtd;
	int modified;
	static int last_active_ptds;
1185
	int int_skip_map, atl_skip_map;
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1187
	spin_lock(&priv->lock);
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1188

1189 1190
	if (!(hcd->state & HC_STATE_RUNNING))
		goto leave;
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1192 1193 1194 1195 1196
	imask = reg_read32(hcd->regs, HC_INTERRUPT_REG);
	if (unlikely(!imask))
		goto leave;
	reg_write32(hcd->regs, HC_INTERRUPT_REG, imask); /* Clear */

1197 1198 1199 1200 1201 1202
	int_skip_map = reg_read32(hcd->regs, HC_INT_PTD_SKIPMAP_REG);
	atl_skip_map = reg_read32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG);
	priv->int_done_map |= reg_read32(hcd->regs, HC_INT_PTD_DONEMAP_REG);
	priv->atl_done_map |= reg_read32(hcd->regs, HC_ATL_PTD_DONEMAP_REG);
	priv->int_done_map &= ~int_skip_map;
	priv->atl_done_map &= ~atl_skip_map;
1203

1204 1205 1206 1207
	modified = priv->int_done_map | priv->atl_done_map;

	while (priv->int_done_map || priv->atl_done_map) {
		if (priv->int_done_map) {
1208
			/* INT ptd */
1209 1210
			slot = __ffs(priv->int_done_map);
			priv->int_done_map &= ~(1 << slot);
1211
			slots = priv->int_slots;
1212 1213 1214 1215
			/* This should not trigger, and could be removed if
			   noone have any problems with it triggering: */
			if (!slots[slot].qh) {
				WARN_ON(1);
1216
				continue;
1217
			}
1218 1219 1220 1221
			ptd_offset = INT_PTD_OFFSET;
			ptd_read(hcd->regs, INT_PTD_OFFSET, slot, &ptd);
			state = check_int_transfer(hcd, &ptd,
							slots[slot].qtd->urb);
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		} else {
1223
			/* ATL ptd */
1224 1225
			slot = __ffs(priv->atl_done_map);
			priv->atl_done_map &= ~(1 << slot);
1226
			slots = priv->atl_slots;
1227 1228 1229 1230
			/* This should not trigger, and could be removed if
			   noone have any problems with it triggering: */
			if (!slots[slot].qh) {
				WARN_ON(1);
1231
				continue;
1232
			}
1233 1234 1235 1236
			ptd_offset = ATL_PTD_OFFSET;
			ptd_read(hcd->regs, ATL_PTD_OFFSET, slot, &ptd);
			state = check_atl_transfer(hcd, &ptd,
							slots[slot].qtd->urb);
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1237 1238
		}

1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256
		qtd = slots[slot].qtd;
		slots[slot].qtd = NULL;
		qh = slots[slot].qh;
		slots[slot].qh = NULL;
		priv->active_ptds--;
		qh->slot = -1;

		WARN_ON(qtd->status != QTD_XFER_STARTED);

		switch (state) {
		case PTD_STATE_QTD_DONE:
			if ((usb_pipeint(qtd->urb->pipe)) &&
				       (qtd->urb->dev->speed != USB_SPEED_HIGH))
				qtd->actual_length =
				       FROM_DW3_SCS_NRBYTESTRANSFERRED(ptd.dw3);
			else
				qtd->actual_length =
					FROM_DW3_NRBYTESTRANSFERRED(ptd.dw3);
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1258 1259 1260 1261 1262 1263 1264
			qtd->status = QTD_XFER_COMPLETE;
			if (list_is_last(&qtd->qtd_list, &qh->qtd_list) ||
							is_short_bulk(qtd))
				qtd = NULL;
			else
				qtd = list_entry(qtd->qtd_list.next,
							typeof(*qtd), qtd_list);
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1266 1267 1268
			qh->toggle = FROM_DW3_DATA_TOGGLE(ptd.dw3);
			qh->ping = FROM_DW3_PING(ptd.dw3);
			break;
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1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280
		case PTD_STATE_QTD_RELOAD: /* QTD_RETRY, for atls only */
			qtd->status = QTD_PAYLOAD_ALLOC;
			ptd.dw0 |= DW0_VALID_BIT;
			/* RL counter = ERR counter */
			ptd.dw3 &= ~TO_DW3_NAKCOUNT(0xf);
			ptd.dw3 |= TO_DW3_NAKCOUNT(FROM_DW2_RL(ptd.dw2));
			ptd.dw3 &= ~TO_DW3_CERR(3);
			ptd.dw3 |= TO_DW3_CERR(ERR_COUNTER);
			qh->toggle = FROM_DW3_DATA_TOGGLE(ptd.dw3);
			qh->ping = FROM_DW3_PING(ptd.dw3);
			break;
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1282 1283 1284 1285 1286 1287
		case PTD_STATE_URB_RETIRE:
			qtd->status = QTD_RETIRE;
			qtd = NULL;
			qh->toggle = 0;
			qh->ping = 0;
			break;
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1289 1290 1291 1292
		default:
			WARN_ON(1);
			continue;
		}
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1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305
		if (qtd && (qtd->status == QTD_PAYLOAD_ALLOC)) {
			if (slots == priv->int_slots) {
				if (state == PTD_STATE_QTD_RELOAD)
					dev_err(hcd->self.controller,
						"%s: PTD_STATE_QTD_RELOAD on "
						"interrupt packet\n", __func__);
				if (state != PTD_STATE_QTD_RELOAD)
					create_ptd_int(qh, qtd, &ptd);
			} else {
				if (state != PTD_STATE_QTD_RELOAD)
					create_ptd_atl(qh, qtd, &ptd);
			}
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1307 1308 1309 1310
			start_bus_transfer(hcd, ptd_offset, slot, slots, qtd,
				qh, &ptd);
		}
	}
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1312 1313
	if (modified)
		schedule_ptds(hcd);
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1314

1315 1316 1317 1318 1319
	/* ISP1760 Errata 2 explains that interrupts may be missed (or not
	   happen?) if two USB devices are running simultaneously. Perhaps
	   this happens when a PTD is finished during interrupt handling;
	   enable SOF interrupts if PTDs are still scheduled when exiting this
	   interrupt handler, just to be safe. */
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1321 1322 1323 1324 1325 1326 1327 1328 1329
	if (priv->active_ptds != last_active_ptds) {
		if (priv->active_ptds > 0)
			reg_write32(hcd->regs, HC_INTERRUPT_ENABLE,
						INTERRUPT_ENABLE_SOT_MASK);
		else
			reg_write32(hcd->regs, HC_INTERRUPT_ENABLE,
						INTERRUPT_ENABLE_MASK);
		last_active_ptds = priv->active_ptds;
	}
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1331 1332 1333
	irqret = IRQ_HANDLED;
leave:
	spin_unlock(&priv->lock);
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1334

1335
	return irqret;
S
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1336 1337
}

1338
static int qtd_fill(struct isp1760_qtd *qtd, void *databuffer, size_t len)
S
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1339
{
1340
	qtd->data_buffer = databuffer;
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1341

1342 1343 1344
	if (len > MAX_PAYLOAD_SIZE)
		len = MAX_PAYLOAD_SIZE;
	qtd->length = len;
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1345

1346
	return qtd->length;
S
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1347 1348
}

1349
static void qtd_list_free(struct list_head *qtd_list)
S
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1350
{
1351
	struct isp1760_qtd *qtd, *qtd_next;
S
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1352

1353
	list_for_each_entry_safe(qtd, qtd_next, qtd_list, qtd_list) {
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1354
		list_del(&qtd->qtd_list);
1355
		qtd_free(qtd);
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1356 1357 1358 1359
	}
}

/*
1360 1361
 * Packetize urb->transfer_buffer into list of packets of size wMaxPacketSize.
 * Also calculate the PID type (SETUP/IN/OUT) for each packet.
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 */
1363
#define max_packet(wMaxPacketSize) ((wMaxPacketSize) & 0x07ff)
1364
static void packetize_urb(struct usb_hcd *hcd,
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1365 1366
		struct urb *urb, struct list_head *head, gfp_t flags)
{
1367
	struct isp1760_qtd *qtd;
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1368
	void *buf;
1369 1370
	int len, maxpacketsize;
	u8 packet_type;
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1371 1372 1373 1374 1375

	/*
	 * URBs map to sequences of QTDs:  one logical transaction
	 */

1376 1377 1378 1379 1380 1381 1382 1383
	if (!urb->transfer_buffer && urb->transfer_buffer_length) {
		/* XXX This looks like usb storage / SCSI bug */
		dev_err(hcd->self.controller,
				"buf is null, dma is %08lx len is %d\n",
				(long unsigned)urb->transfer_dma,
				urb->transfer_buffer_length);
		WARN_ON(1);
	}
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1385 1386 1387 1388
	if (usb_pipein(urb->pipe))
		packet_type = IN_PID;
	else
		packet_type = OUT_PID;
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1389 1390

	if (usb_pipecontrol(urb->pipe)) {
1391
		qtd = qtd_alloc(flags, urb, SETUP_PID);
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1392 1393
		if (!qtd)
			goto cleanup;
1394
		qtd_fill(qtd, urb->setup_packet, sizeof(struct usb_ctrlrequest));
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1395 1396 1397
		list_add_tail(&qtd->qtd_list, head);

		/* for zero length DATA stages, STATUS is always IN */
1398 1399
		if (urb->transfer_buffer_length == 0)
			packet_type = IN_PID;
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1400 1401
	}

1402 1403
	maxpacketsize = max_packet(usb_maxpacket(urb->dev, urb->pipe,
						usb_pipeout(urb->pipe)));
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1404 1405 1406 1407 1408 1409

	/*
	 * buffer gets wrapped in one or more qtds;
	 * last one may be "short" (including zero len)
	 * and may serve as a control status ack
	 */
1410 1411 1412
	buf = urb->transfer_buffer;
	len = urb->transfer_buffer_length;

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1413 1414 1415
	for (;;) {
		int this_qtd_len;

1416 1417 1418 1419 1420
		qtd = qtd_alloc(flags, urb, packet_type);
		if (!qtd)
			goto cleanup;
		this_qtd_len = qtd_fill(qtd, buf, len);
		list_add_tail(&qtd->qtd_list, head);
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1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437

		len -= this_qtd_len;
		buf += this_qtd_len;

		if (len <= 0)
			break;
	}

	/*
	 * control requests may need a terminating data "status" ack;
	 * bulk ones may need a terminating short packet (zero length).
	 */
	if (urb->transfer_buffer_length != 0) {
		int one_more = 0;

		if (usb_pipecontrol(urb->pipe)) {
			one_more = 1;
1438 1439 1440 1441
			if (packet_type == IN_PID)
				packet_type = OUT_PID;
			else
				packet_type = IN_PID;
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1442 1443
		} else if (usb_pipebulk(urb->pipe)
				&& (urb->transfer_flags & URB_ZERO_PACKET)
1444 1445
				&& !(urb->transfer_buffer_length %
							maxpacketsize)) {
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1446 1447 1448
			one_more = 1;
		}
		if (one_more) {
1449
			qtd = qtd_alloc(flags, urb, packet_type);
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1450 1451 1452 1453
			if (!qtd)
				goto cleanup;

			/* never any data in such packets */
1454 1455
			qtd_fill(qtd, NULL, 0);
			list_add_tail(&qtd->qtd_list, head);
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1456 1457 1458
		}
	}

1459
	return;
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1460 1461

cleanup:
1462 1463 1464
	qtd_list_free(head);
}

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1465 1466 1467
static int isp1760_urb_enqueue(struct usb_hcd *hcd, struct urb *urb,
		gfp_t mem_flags)
{
1468 1469 1470 1471 1472 1473 1474
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	struct list_head *ep_queue;
	struct isp1760_qh *qh, *qhit;
	unsigned long spinflags;
	LIST_HEAD(new_qtds);
	int retval;
	int qh_in_queue;
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1475 1476 1477

	switch (usb_pipetype(urb->pipe)) {
	case PIPE_CONTROL:
1478 1479
		ep_queue = &priv->controlqhs;
		break;
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1480
	case PIPE_BULK:
1481
		ep_queue = &priv->bulkqhs;
S
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1482 1483
		break;
	case PIPE_INTERRUPT:
1484 1485 1486 1487
		if (urb->interval < 0)
			return -EINVAL;
		/* FIXME: Check bandwidth  */
		ep_queue = &priv->interruptqhs;
S
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1488 1489
		break;
	case PIPE_ISOCHRONOUS:
1490 1491 1492 1493
		dev_err(hcd->self.controller, "%s: isochronous USB packets "
							"not yet supported\n",
							__func__);
		return -EPIPE;
S
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1494
	default:
1495 1496
		dev_err(hcd->self.controller, "%s: unknown pipe type\n",
							__func__);
S
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1497 1498 1499
		return -EPIPE;
	}

1500 1501
	if (usb_pipein(urb->pipe))
		urb->actual_length = 0;
S
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1502

1503 1504 1505 1506
	packetize_urb(hcd, urb, &new_qtds, mem_flags);
	if (list_empty(&new_qtds))
		return -ENOMEM;
	urb->hcpriv = NULL; /* Used to signal unlink to interrupt handler */
S
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1507

1508 1509
	retval = 0;
	spin_lock_irqsave(&priv->lock, spinflags);
S
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1510

1511 1512 1513
	if (!test_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags)) {
		retval = -ESHUTDOWN;
		goto out;
S
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1514
	}
1515 1516 1517
	retval = usb_hcd_link_urb_to_ep(hcd, urb);
	if (retval)
		goto out;
S
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1518

1519 1520 1521 1522 1523 1524
	qh = urb->ep->hcpriv;
	if (qh) {
		qh_in_queue = 0;
		list_for_each_entry(qhit, ep_queue, qh_list) {
			if (qhit == qh) {
				qh_in_queue = 1;
1525
				break;
1526 1527 1528 1529 1530 1531 1532 1533 1534
			}
		}
		if (!qh_in_queue)
			list_add_tail(&qh->qh_list, ep_queue);
	} else {
		qh = qh_alloc(GFP_ATOMIC);
		if (!qh) {
			retval = -ENOMEM;
			goto out;
S
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1535
		}
1536 1537
		list_add_tail(&qh->qh_list, ep_queue);
		urb->ep->hcpriv = qh;
S
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1538 1539
	}

1540 1541 1542 1543 1544 1545
	list_splice_tail(&new_qtds, &qh->qtd_list);
	schedule_ptds(hcd);

out:
	spin_unlock_irqrestore(&priv->lock, spinflags);
	return retval;
S
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1546 1547
}

1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575
static void kill_transfer(struct usb_hcd *hcd, struct urb *urb,
		struct isp1760_qh *qh)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	int skip_map;

	WARN_ON(qh->slot == -1);

	/* We need to forcefully reclaim the slot since some transfers never
	   return, e.g. interrupt transfers and NAKed bulk transfers. */
	if (usb_pipebulk(urb->pipe)) {
		skip_map = reg_read32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG);
		skip_map |= (1 << qh->slot);
		reg_write32(hcd->regs, HC_ATL_PTD_SKIPMAP_REG, skip_map);
		priv->atl_slots[qh->slot].qh = NULL;
		priv->atl_slots[qh->slot].qtd = NULL;
	} else {
		skip_map = reg_read32(hcd->regs, HC_INT_PTD_SKIPMAP_REG);
		skip_map |= (1 << qh->slot);
		reg_write32(hcd->regs, HC_INT_PTD_SKIPMAP_REG, skip_map);
		priv->int_slots[qh->slot].qh = NULL;
		priv->int_slots[qh->slot].qtd = NULL;
	}

	qh->slot = -1;
	priv->active_ptds--;
}

1576 1577
static int isp1760_urb_dequeue(struct usb_hcd *hcd, struct urb *urb,
		int status)
S
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1578
{
1579
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
1580
	unsigned long spinflags;
1581 1582 1583
	struct isp1760_qh *qh;
	struct isp1760_qtd *qtd;
	int retval = 0;
S
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1584

1585
	spin_lock_irqsave(&priv->lock, spinflags);
S
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1586

1587 1588 1589 1590 1591
	qh = urb->ep->hcpriv;
	if (!qh) {
		retval = -EINVAL;
		goto out;
	}
S
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1592

1593 1594 1595 1596
	list_for_each_entry(qtd, &qh->qtd_list, qtd_list)
		if (qtd->urb == urb) {
			if (qtd->status == QTD_XFER_STARTED)
				kill_transfer(hcd, urb, qh);
1597
			qtd->status = QTD_RETIRE;
1598
		}
S
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1599

1600 1601
	urb->status = status;
	schedule_ptds(hcd);
S
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1602

1603 1604 1605
out:
	spin_unlock_irqrestore(&priv->lock, spinflags);
	return retval;
S
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1606 1607
}

1608 1609 1610 1611
static void isp1760_endpoint_disable(struct usb_hcd *hcd,
		struct usb_host_endpoint *ep)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
1612
	unsigned long spinflags;
1613 1614 1615 1616
	struct isp1760_qh *qh;
	struct isp1760_qtd *qtd;

	spin_lock_irqsave(&priv->lock, spinflags);
1617

1618 1619 1620 1621
	qh = ep->hcpriv;
	if (!qh)
		goto out;

1622 1623 1624 1625 1626
	list_for_each_entry(qtd, &qh->qtd_list, qtd_list) {
		if (qtd->status == QTD_XFER_STARTED)
			kill_transfer(hcd, qtd->urb, qh);
		qtd->status = QTD_RETIRE;
		qtd->urb->status = -ECONNRESET;
1627
	}
1628

1629 1630 1631
	ep->hcpriv = NULL;
	/* Cannot free qh here since it will be parsed by schedule_ptds() */

1632 1633
	schedule_ptds(hcd);

1634 1635 1636 1637
out:
	spin_unlock_irqrestore(&priv->lock, spinflags);
}

S
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1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654
static int isp1760_hub_status_data(struct usb_hcd *hcd, char *buf)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	u32 temp, status = 0;
	u32 mask;
	int retval = 1;
	unsigned long flags;

	/* if !USB_SUSPEND, root hub timers won't get shut down ... */
	if (!HC_IS_RUNNING(hcd->state))
		return 0;

	/* init status to no-changes */
	buf[0] = 0;
	mask = PORT_CSC;

	spin_lock_irqsave(&priv->lock, flags);
1655
	temp = reg_read32(hcd->regs, HC_PORTSC1);
S
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1656 1657 1658 1659

	if (temp & PORT_OWNER) {
		if (temp & PORT_CSC) {
			temp &= ~PORT_CSC;
1660
			reg_write32(hcd->regs, HC_PORTSC1, temp);
S
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1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699
			goto done;
		}
	}

	/*
	 * Return status information even for ports with OWNER set.
	 * Otherwise khubd wouldn't see the disconnect event when a
	 * high-speed device is switched over to the companion
	 * controller by the user.
	 */

	if ((temp & mask) != 0
			|| ((temp & PORT_RESUME) != 0
				&& time_after_eq(jiffies,
					priv->reset_done))) {
		buf [0] |= 1 << (0 + 1);
		status = STS_PCD;
	}
	/* FIXME autosuspend idle root hubs */
done:
	spin_unlock_irqrestore(&priv->lock, flags);
	return status ? retval : 0;
}

static void isp1760_hub_descriptor(struct isp1760_hcd *priv,
		struct usb_hub_descriptor *desc)
{
	int ports = HCS_N_PORTS(priv->hcs_params);
	u16 temp;

	desc->bDescriptorType = 0x29;
	/* priv 1.0, 2.3.9 says 20ms max */
	desc->bPwrOn2PwrGood = 10;
	desc->bHubContrCurrent = 0;

	desc->bNbrPorts = ports;
	temp = 1 + (ports / 8);
	desc->bDescLength = 7 + 2 * temp;

1700
	/* ports removable, and usb 1.0 legacy PortPwrCtrlMask */
J
John Youn 已提交
1701 1702
	memset(&desc->u.hs.DeviceRemovable[0], 0, temp);
	memset(&desc->u.hs.DeviceRemovable[temp], 0xff, temp);
S
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1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716

	/* per-port overcurrent reporting */
	temp = 0x0008;
	if (HCS_PPC(priv->hcs_params))
		/* per-port power control */
		temp |= 0x0001;
	else
		/* no power switching */
		temp |= 0x0002;
	desc->wHubCharacteristics = cpu_to_le16(temp);
}

#define	PORT_WAKE_BITS	(PORT_WKOC_E|PORT_WKDISC_E|PORT_WKCONN_E)

1717 1718
static int check_reset_complete(struct usb_hcd *hcd, int index,
		int port_status)
S
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1719 1720 1721 1722 1723 1724 1725
{
	if (!(port_status & PORT_CONNECT))
		return port_status;

	/* if reset finished and it's still not enabled -- handoff */
	if (!(port_status & PORT_PE)) {

1726
		dev_info(hcd->self.controller,
1727 1728
					"port %d full speed --> companion\n",
					index + 1);
S
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1729 1730 1731

		port_status |= PORT_OWNER;
		port_status &= ~PORT_RWC_BITS;
1732
		reg_write32(hcd->regs, HC_PORTSC1, port_status);
S
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1733 1734

	} else
1735
		dev_info(hcd->self.controller, "port %d high speed\n",
1736
								index + 1);
S
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1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773

	return port_status;
}

static int isp1760_hub_control(struct usb_hcd *hcd, u16 typeReq,
		u16 wValue, u16 wIndex, char *buf, u16 wLength)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	int ports = HCS_N_PORTS(priv->hcs_params);
	u32 temp, status;
	unsigned long flags;
	int retval = 0;
	unsigned selector;

	/*
	 * FIXME:  support SetPortFeatures USB_PORT_FEAT_INDICATOR.
	 * HCS_INDICATOR may say we can change LEDs to off/amber/green.
	 * (track current state ourselves) ... blink for diagnostics,
	 * power, "this is the one", etc.  EHCI spec supports this.
	 */

	spin_lock_irqsave(&priv->lock, flags);
	switch (typeReq) {
	case ClearHubFeature:
		switch (wValue) {
		case C_HUB_LOCAL_POWER:
		case C_HUB_OVER_CURRENT:
			/* no hub-wide feature/status flags */
			break;
		default:
			goto error;
		}
		break;
	case ClearPortFeature:
		if (!wIndex || wIndex > ports)
			goto error;
		wIndex--;
1774
		temp = reg_read32(hcd->regs, HC_PORTSC1);
S
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1775 1776 1777 1778 1779

		/*
		 * Even if OWNER is set, so the port is owned by the
		 * companion controller, khubd needs to be able to clear
		 * the port-change status bits (especially
1780
		 * USB_PORT_STAT_C_CONNECTION).
S
Sebastian Siewior 已提交
1781 1782 1783 1784
		 */

		switch (wValue) {
		case USB_PORT_FEAT_ENABLE:
1785
			reg_write32(hcd->regs, HC_PORTSC1, temp & ~PORT_PE);
S
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1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798
			break;
		case USB_PORT_FEAT_C_ENABLE:
			/* XXX error? */
			break;
		case USB_PORT_FEAT_SUSPEND:
			if (temp & PORT_RESET)
				goto error;

			if (temp & PORT_SUSPEND) {
				if ((temp & PORT_PE) == 0)
					goto error;
				/* resume signaling for 20 msec */
				temp &= ~(PORT_RWC_BITS);
1799 1800
				reg_write32(hcd->regs, HC_PORTSC1,
							temp | PORT_RESUME);
S
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1801 1802 1803 1804 1805 1806 1807 1808 1809
				priv->reset_done = jiffies +
					msecs_to_jiffies(20);
			}
			break;
		case USB_PORT_FEAT_C_SUSPEND:
			/* we auto-clear this feature */
			break;
		case USB_PORT_FEAT_POWER:
			if (HCS_PPC(priv->hcs_params))
1810 1811
				reg_write32(hcd->regs, HC_PORTSC1,
							temp & ~PORT_POWER);
S
Sebastian Siewior 已提交
1812 1813
			break;
		case USB_PORT_FEAT_C_CONNECTION:
1814
			reg_write32(hcd->regs, HC_PORTSC1, temp | PORT_CSC);
S
Sebastian Siewior 已提交
1815 1816 1817 1818 1819 1820 1821 1822 1823 1824
			break;
		case USB_PORT_FEAT_C_OVER_CURRENT:
			/* XXX error ?*/
			break;
		case USB_PORT_FEAT_C_RESET:
			/* GetPortStatus clears reset */
			break;
		default:
			goto error;
		}
1825
		reg_read32(hcd->regs, HC_USBCMD);
S
Sebastian Siewior 已提交
1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839
		break;
	case GetHubDescriptor:
		isp1760_hub_descriptor(priv, (struct usb_hub_descriptor *)
			buf);
		break;
	case GetHubStatus:
		/* no hub-wide feature/status flags */
		memset(buf, 0, 4);
		break;
	case GetPortStatus:
		if (!wIndex || wIndex > ports)
			goto error;
		wIndex--;
		status = 0;
1840
		temp = reg_read32(hcd->regs, HC_PORTSC1);
S
Sebastian Siewior 已提交
1841 1842 1843

		/* wPortChange bits */
		if (temp & PORT_CSC)
1844
			status |= USB_PORT_STAT_C_CONNECTION << 16;
S
Sebastian Siewior 已提交
1845 1846 1847 1848


		/* whoever resumes must GetPortStatus to complete it!! */
		if (temp & PORT_RESUME) {
1849
			dev_err(hcd->self.controller, "Port resume should be skipped.\n");
S
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1850 1851 1852 1853 1854 1855 1856

			/* Remote Wakeup received? */
			if (!priv->reset_done) {
				/* resume signaling for 20 msec */
				priv->reset_done = jiffies
						+ msecs_to_jiffies(20);
				/* check the port again */
1857
				mod_timer(&hcd->rh_timer, priv->reset_done);
S
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1858 1859 1860 1861 1862
			}

			/* resume completed? */
			else if (time_after_eq(jiffies,
					priv->reset_done)) {
1863
				status |= USB_PORT_STAT_C_SUSPEND << 16;
S
Sebastian Siewior 已提交
1864 1865 1866
				priv->reset_done = 0;

				/* stop resume signaling */
1867 1868 1869 1870
				temp = reg_read32(hcd->regs, HC_PORTSC1);
				reg_write32(hcd->regs, HC_PORTSC1,
					temp & ~(PORT_RWC_BITS | PORT_RESUME));
				retval = handshake(hcd, HC_PORTSC1,
S
Sebastian Siewior 已提交
1871 1872
					   PORT_RESUME, 0, 2000 /* 2msec */);
				if (retval != 0) {
1873
					dev_err(hcd->self.controller,
S
Sebastian Siewior 已提交
1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885
						"port %d resume error %d\n",
						wIndex + 1, retval);
					goto error;
				}
				temp &= ~(PORT_SUSPEND|PORT_RESUME|(3<<10));
			}
		}

		/* whoever resets must GetPortStatus to complete it!! */
		if ((temp & PORT_RESET)
				&& time_after_eq(jiffies,
					priv->reset_done)) {
1886
			status |= USB_PORT_STAT_C_RESET << 16;
S
Sebastian Siewior 已提交
1887 1888 1889
			priv->reset_done = 0;

			/* force reset to complete */
1890
			reg_write32(hcd->regs, HC_PORTSC1, temp & ~PORT_RESET);
S
Sebastian Siewior 已提交
1891 1892 1893
			/* REVISIT:  some hardware needs 550+ usec to clear
			 * this bit; seems too long to spin routinely...
			 */
1894
			retval = handshake(hcd, HC_PORTSC1,
S
Sebastian Siewior 已提交
1895 1896
					PORT_RESET, 0, 750);
			if (retval != 0) {
1897
				dev_err(hcd->self.controller, "port %d reset error %d\n",
S
Sebastian Siewior 已提交
1898 1899 1900 1901 1902
						wIndex + 1, retval);
				goto error;
			}

			/* see what we found out */
1903 1904
			temp = check_reset_complete(hcd, wIndex,
					reg_read32(hcd->regs, HC_PORTSC1));
S
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1905 1906 1907 1908 1909 1910 1911 1912
		}
		/*
		 * Even if OWNER is set, there's no harm letting khubd
		 * see the wPortStatus values (they should all be 0 except
		 * for PORT_POWER anyway).
		 */

		if (temp & PORT_OWNER)
1913
			dev_err(hcd->self.controller, "PORT_OWNER is set\n");
S
Sebastian Siewior 已提交
1914 1915

		if (temp & PORT_CONNECT) {
1916
			status |= USB_PORT_STAT_CONNECTION;
S
Sebastian Siewior 已提交
1917
			/* status may be from integrated TT */
1918
			status |= USB_PORT_STAT_HIGH_SPEED;
S
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1919 1920
		}
		if (temp & PORT_PE)
1921
			status |= USB_PORT_STAT_ENABLE;
S
Sebastian Siewior 已提交
1922
		if (temp & (PORT_SUSPEND|PORT_RESUME))
1923
			status |= USB_PORT_STAT_SUSPEND;
S
Sebastian Siewior 已提交
1924
		if (temp & PORT_RESET)
1925
			status |= USB_PORT_STAT_RESET;
S
Sebastian Siewior 已提交
1926
		if (temp & PORT_POWER)
1927
			status |= USB_PORT_STAT_POWER;
S
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1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946

		put_unaligned(cpu_to_le32(status), (__le32 *) buf);
		break;
	case SetHubFeature:
		switch (wValue) {
		case C_HUB_LOCAL_POWER:
		case C_HUB_OVER_CURRENT:
			/* no hub-wide feature/status flags */
			break;
		default:
			goto error;
		}
		break;
	case SetPortFeature:
		selector = wIndex >> 8;
		wIndex &= 0xff;
		if (!wIndex || wIndex > ports)
			goto error;
		wIndex--;
1947
		temp = reg_read32(hcd->regs, HC_PORTSC1);
S
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1948 1949 1950 1951 1952 1953
		if (temp & PORT_OWNER)
			break;

/*		temp &= ~PORT_RWC_BITS; */
		switch (wValue) {
		case USB_PORT_FEAT_ENABLE:
1954
			reg_write32(hcd->regs, HC_PORTSC1, temp | PORT_PE);
S
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1955 1956 1957 1958 1959 1960 1961
			break;

		case USB_PORT_FEAT_SUSPEND:
			if ((temp & PORT_PE) == 0
					|| (temp & PORT_RESET) != 0)
				goto error;

1962
			reg_write32(hcd->regs, HC_PORTSC1, temp | PORT_SUSPEND);
S
Sebastian Siewior 已提交
1963 1964 1965
			break;
		case USB_PORT_FEAT_POWER:
			if (HCS_PPC(priv->hcs_params))
1966 1967
				reg_write32(hcd->regs, HC_PORTSC1,
							temp | PORT_POWER);
S
Sebastian Siewior 已提交
1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989
			break;
		case USB_PORT_FEAT_RESET:
			if (temp & PORT_RESUME)
				goto error;
			/* line status bits may report this as low speed,
			 * which can be fine if this root hub has a
			 * transaction translator built in.
			 */
			if ((temp & (PORT_PE|PORT_CONNECT)) == PORT_CONNECT
					&& PORT_USB11(temp)) {
				temp |= PORT_OWNER;
			} else {
				temp |= PORT_RESET;
				temp &= ~PORT_PE;

				/*
				 * caller must wait, then call GetPortStatus
				 * usb 2.0 spec says 50 ms resets on root
				 */
				priv->reset_done = jiffies +
					msecs_to_jiffies(50);
			}
1990
			reg_write32(hcd->regs, HC_PORTSC1, temp);
S
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1991 1992 1993 1994
			break;
		default:
			goto error;
		}
1995
		reg_read32(hcd->regs, HC_USBCMD);
S
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1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011
		break;

	default:
error:
		/* "stall" on error */
		retval = -EPIPE;
	}
	spin_unlock_irqrestore(&priv->lock, flags);
	return retval;
}

static int isp1760_get_frame(struct usb_hcd *hcd)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
	u32 fr;

2012
	fr = reg_read32(hcd->regs, HC_FRINDEX);
S
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2013 2014 2015 2016 2017 2018
	return (fr >> 3) % priv->periodic_size;
}

static void isp1760_stop(struct usb_hcd *hcd)
{
	struct isp1760_hcd *priv = hcd_to_priv(hcd);
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	u32 temp;
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	isp1760_hub_control(hcd, ClearPortFeature, USB_PORT_FEAT_POWER,	1,
			NULL, 0);
	mdelay(20);

	spin_lock_irq(&priv->lock);
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	ehci_reset(hcd);
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	/* Disable IRQ */
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	temp = reg_read32(hcd->regs, HC_HW_MODE_CTRL);
	reg_write32(hcd->regs, HC_HW_MODE_CTRL, temp &= ~HW_GLOBAL_INTR_EN);
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	spin_unlock_irq(&priv->lock);

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	reg_write32(hcd->regs, HC_CONFIGFLAG, 0);
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}

static void isp1760_shutdown(struct usb_hcd *hcd)
{
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	u32 command, temp;
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	isp1760_stop(hcd);
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	temp = reg_read32(hcd->regs, HC_HW_MODE_CTRL);
	reg_write32(hcd->regs, HC_HW_MODE_CTRL, temp &= ~HW_GLOBAL_INTR_EN);
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	command = reg_read32(hcd->regs, HC_USBCMD);
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	command &= ~CMD_RUN;
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	reg_write32(hcd->regs, HC_USBCMD, command);
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}

static const struct hc_driver isp1760_hc_driver = {
	.description		= "isp1760-hcd",
	.product_desc		= "NXP ISP1760 USB Host Controller",
	.hcd_priv_size		= sizeof(struct isp1760_hcd),
	.irq			= isp1760_irq,
	.flags			= HCD_MEMORY | HCD_USB2,
	.reset			= isp1760_hc_setup,
	.start			= isp1760_run,
	.stop			= isp1760_stop,
	.shutdown		= isp1760_shutdown,
	.urb_enqueue		= isp1760_urb_enqueue,
	.urb_dequeue		= isp1760_urb_dequeue,
	.endpoint_disable	= isp1760_endpoint_disable,
	.get_frame_number	= isp1760_get_frame,
	.hub_status_data	= isp1760_hub_status_data,
	.hub_control		= isp1760_hub_control,
};

int __init init_kmem_once(void)
{
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	urb_listitem_cachep = kmem_cache_create("isp1760 urb_listitem",
			sizeof(struct urb_listitem), 0, SLAB_TEMPORARY |
			SLAB_MEM_SPREAD, NULL);

	if (!urb_listitem_cachep)
		return -ENOMEM;

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	qtd_cachep = kmem_cache_create("isp1760_qtd",
			sizeof(struct isp1760_qtd), 0, SLAB_TEMPORARY |
			SLAB_MEM_SPREAD, NULL);

	if (!qtd_cachep)
		return -ENOMEM;

	qh_cachep = kmem_cache_create("isp1760_qh", sizeof(struct isp1760_qh),
			0, SLAB_TEMPORARY | SLAB_MEM_SPREAD, NULL);

	if (!qh_cachep) {
		kmem_cache_destroy(qtd_cachep);
		return -ENOMEM;
	}

	return 0;
}

void deinit_kmem_cache(void)
{
	kmem_cache_destroy(qtd_cachep);
	kmem_cache_destroy(qh_cachep);
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	kmem_cache_destroy(urb_listitem_cachep);
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}

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struct usb_hcd *isp1760_register(phys_addr_t res_start, resource_size_t res_len,
				 int irq, unsigned long irqflags,
				 struct device *dev, const char *busname,
				 unsigned int devflags)
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{
	struct usb_hcd *hcd;
	struct isp1760_hcd *priv;
	int ret;

	if (usb_disabled())
		return ERR_PTR(-ENODEV);

	/* prevent usb-core allocating DMA pages */
	dev->dma_mask = NULL;

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	hcd = usb_create_hcd(&isp1760_hc_driver, dev, dev_name(dev));
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	if (!hcd)
		return ERR_PTR(-ENOMEM);

	priv = hcd_to_priv(hcd);
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	priv->devflags = devflags;
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	init_memory(priv);
	hcd->regs = ioremap(res_start, res_len);
	if (!hcd->regs) {
		ret = -EIO;
		goto err_put;
	}

	hcd->irq = irq;
	hcd->rsrc_start = res_start;
	hcd->rsrc_len = res_len;

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	ret = usb_add_hcd(hcd, irq, irqflags);
	if (ret)
		goto err_unmap;

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	return hcd;

err_unmap:
	 iounmap(hcd->regs);

err_put:
	 usb_put_hcd(hcd);

	 return ERR_PTR(ret);
}

MODULE_DESCRIPTION("Driver for the ISP1760 USB-controller from NXP");
MODULE_AUTHOR("Sebastian Siewior <bigeasy@linuxtronix.de>");
MODULE_LICENSE("GPL v2");