mirror of
https://github.com/AsahiLinux/u-boot
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16297cfb2a
This commit unifies board-specific USB initialization implementations under one symbol (usb_board_init), declaration of which is available in usb.h. New API allows selective initialization of USB controllers whenever needed. Signed-off-by: Mateusz Zalega <m.zalega@samsung.com> Signed-off-by: Kyungmin Park <kyungmin.park@samsung.com> Reviewed-by: Lukasz Majewski <l.majewski@samsung.com> Cc: Marek Vasut <marex@denx.de> Cc: Lukasz Majewski <l.majewski@samsung.com>
491 lines
14 KiB
C
491 lines
14 KiB
C
/*
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* URB OHCI HCD (Host Controller Driver) for USB.
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*
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* (C) Copyright 1999 Roman Weissgaerber <weissg@vienna.at>
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* (C) Copyright 2000-2001 David Brownell <dbrownell@users.sourceforge.net>
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*
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* usb-ohci.h
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*/
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/*
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* e.g. PCI controllers need this
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*/
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#ifdef CONFIG_SYS_OHCI_SWAP_REG_ACCESS
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# define ohci_readl(a) __swap_32(*((volatile u32 *)(a)))
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# define ohci_writel(a, b) (*((volatile u32 *)(b)) = __swap_32((volatile u32)a))
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#else
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# define ohci_readl(a) (*((volatile u32 *)(a)))
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# define ohci_writel(a, b) (*((volatile u32 *)(b)) = ((volatile u32)a))
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#endif /* CONFIG_SYS_OHCI_SWAP_REG_ACCESS */
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/* functions for doing board or CPU specific setup/cleanup */
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int usb_board_stop(void);
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int usb_cpu_init(void);
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int usb_cpu_stop(void);
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int usb_cpu_init_fail(void);
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static int cc_to_error[16] = {
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/* mapping of the OHCI CC status to error codes */
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/* No Error */ 0,
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/* CRC Error */ USB_ST_CRC_ERR,
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/* Bit Stuff */ USB_ST_BIT_ERR,
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/* Data Togg */ USB_ST_CRC_ERR,
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/* Stall */ USB_ST_STALLED,
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/* DevNotResp */ -1,
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/* PIDCheck */ USB_ST_BIT_ERR,
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/* UnExpPID */ USB_ST_BIT_ERR,
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/* DataOver */ USB_ST_BUF_ERR,
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/* DataUnder */ USB_ST_BUF_ERR,
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/* reservd */ -1,
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/* reservd */ -1,
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/* BufferOver */ USB_ST_BUF_ERR,
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/* BuffUnder */ USB_ST_BUF_ERR,
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/* Not Access */ -1,
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/* Not Access */ -1
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};
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static const char *cc_to_string[16] = {
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"No Error",
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"CRC: Last data packet from endpoint contained a CRC error.",
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"BITSTUFFING: Last data packet from endpoint contained a bit " \
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"stuffing violation",
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"DATATOGGLEMISMATCH: Last packet from endpoint had data toggle PID\n" \
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"that did not match the expected value.",
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"STALL: TD was moved to the Done Queue because the endpoint returned" \
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" a STALL PID",
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"DEVICENOTRESPONDING: Device did not respond to token (IN) or did\n" \
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"not provide a handshake (OUT)",
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"PIDCHECKFAILURE: Check bits on PID from endpoint failed on data PID\n"\
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"(IN) or handshake (OUT)",
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"UNEXPECTEDPID: Receive PID was not valid when encountered or PID\n" \
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"value is not defined.",
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"DATAOVERRUN: The amount of data returned by the endpoint exceeded\n" \
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"either the size of the maximum data packet allowed\n" \
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"from the endpoint (found in MaximumPacketSize field\n" \
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"of ED) or the remaining buffer size.",
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"DATAUNDERRUN: The endpoint returned less than MaximumPacketSize\n" \
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"and that amount was not sufficient to fill the\n" \
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"specified buffer",
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"reserved1",
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"reserved2",
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"BUFFEROVERRUN: During an IN, HC received data from endpoint faster\n" \
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"than it could be written to system memory",
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"BUFFERUNDERRUN: During an OUT, HC could not retrieve data from\n" \
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"system memory fast enough to keep up with data USB " \
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"data rate.",
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"NOT ACCESSED: This code is set by software before the TD is placed" \
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"on a list to be processed by the HC.(1)",
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"NOT ACCESSED: This code is set by software before the TD is placed" \
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"on a list to be processed by the HC.(2)",
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};
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/* ED States */
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#define ED_NEW 0x00
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#define ED_UNLINK 0x01
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#define ED_OPER 0x02
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#define ED_DEL 0x04
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#define ED_URB_DEL 0x08
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/* usb_ohci_ed */
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struct ed {
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__u32 hwINFO;
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__u32 hwTailP;
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__u32 hwHeadP;
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__u32 hwNextED;
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struct ed *ed_prev;
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__u8 int_period;
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__u8 int_branch;
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__u8 int_load;
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__u8 int_interval;
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__u8 state;
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__u8 type;
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__u16 last_iso;
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struct ed *ed_rm_list;
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struct usb_device *usb_dev;
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void *purb;
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__u32 unused[2];
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} __attribute__((aligned(16)));
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typedef struct ed ed_t;
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/* TD info field */
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#define TD_CC 0xf0000000
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#define TD_CC_GET(td_p) ((td_p >>28) & 0x0f)
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#define TD_CC_SET(td_p, cc) (td_p) = ((td_p) & 0x0fffffff) | (((cc) & 0x0f) << 28)
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#define TD_EC 0x0C000000
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#define TD_T 0x03000000
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#define TD_T_DATA0 0x02000000
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#define TD_T_DATA1 0x03000000
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#define TD_T_TOGGLE 0x00000000
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#define TD_R 0x00040000
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#define TD_DI 0x00E00000
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#define TD_DI_SET(X) (((X) & 0x07)<< 21)
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#define TD_DP 0x00180000
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#define TD_DP_SETUP 0x00000000
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#define TD_DP_IN 0x00100000
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#define TD_DP_OUT 0x00080000
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#define TD_ISO 0x00010000
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#define TD_DEL 0x00020000
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/* CC Codes */
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#define TD_CC_NOERROR 0x00
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#define TD_CC_CRC 0x01
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#define TD_CC_BITSTUFFING 0x02
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#define TD_CC_DATATOGGLEM 0x03
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#define TD_CC_STALL 0x04
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#define TD_DEVNOTRESP 0x05
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#define TD_PIDCHECKFAIL 0x06
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#define TD_UNEXPECTEDPID 0x07
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#define TD_DATAOVERRUN 0x08
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#define TD_DATAUNDERRUN 0x09
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#define TD_BUFFEROVERRUN 0x0C
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#define TD_BUFFERUNDERRUN 0x0D
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#define TD_NOTACCESSED 0x0F
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#define MAXPSW 1
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struct td {
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__u32 hwINFO;
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__u32 hwCBP; /* Current Buffer Pointer */
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__u32 hwNextTD; /* Next TD Pointer */
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__u32 hwBE; /* Memory Buffer End Pointer */
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/* #ifndef CONFIG_MPC5200 /\* this seems wrong *\/ */
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__u16 hwPSW[MAXPSW];
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/* #endif */
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__u8 unused;
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__u8 index;
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struct ed *ed;
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struct td *next_dl_td;
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struct usb_device *usb_dev;
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int transfer_len;
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__u32 data;
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__u32 unused2[2];
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} __attribute__((aligned(32)));
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typedef struct td td_t;
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#define OHCI_ED_SKIP (1 << 14)
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/*
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* The HCCA (Host Controller Communications Area) is a 256 byte
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* structure defined in the OHCI spec. that the host controller is
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* told the base address of. It must be 256-byte aligned.
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*/
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#define NUM_INTS 32 /* part of the OHCI standard */
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struct ohci_hcca {
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__u32 int_table[NUM_INTS]; /* Interrupt ED table */
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#if defined(CONFIG_MPC5200)
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__u16 pad1; /* set to 0 on each frame_no change */
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__u16 frame_no; /* current frame number */
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#else
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__u16 frame_no; /* current frame number */
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__u16 pad1; /* set to 0 on each frame_no change */
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#endif
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__u32 done_head; /* info returned for an interrupt */
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u8 reserved_for_hc[116];
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} __attribute__((aligned(256)));
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/*
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* Maximum number of root hub ports.
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*/
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#ifndef CONFIG_SYS_USB_OHCI_MAX_ROOT_PORTS
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# error "CONFIG_SYS_USB_OHCI_MAX_ROOT_PORTS undefined!"
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#endif
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/*
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* This is the structure of the OHCI controller's memory mapped I/O
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* region. This is Memory Mapped I/O. You must use the ohci_readl() and
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* ohci_writel() macros defined in this file to access these!!
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*/
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struct ohci_regs {
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/* control and status registers */
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__u32 revision;
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__u32 control;
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__u32 cmdstatus;
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__u32 intrstatus;
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__u32 intrenable;
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__u32 intrdisable;
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/* memory pointers */
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__u32 hcca;
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__u32 ed_periodcurrent;
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__u32 ed_controlhead;
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__u32 ed_controlcurrent;
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__u32 ed_bulkhead;
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__u32 ed_bulkcurrent;
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__u32 donehead;
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/* frame counters */
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__u32 fminterval;
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__u32 fmremaining;
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__u32 fmnumber;
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__u32 periodicstart;
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__u32 lsthresh;
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/* Root hub ports */
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struct ohci_roothub_regs {
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__u32 a;
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__u32 b;
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__u32 status;
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__u32 portstatus[CONFIG_SYS_USB_OHCI_MAX_ROOT_PORTS];
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} roothub;
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} __attribute__((aligned(32)));
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/* Some EHCI controls */
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#define EHCI_USBCMD_OFF 0x20
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#define EHCI_USBCMD_HCRESET (1 << 1)
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/* OHCI CONTROL AND STATUS REGISTER MASKS */
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/*
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* HcControl (control) register masks
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*/
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#define OHCI_CTRL_CBSR (3 << 0) /* control/bulk service ratio */
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#define OHCI_CTRL_PLE (1 << 2) /* periodic list enable */
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#define OHCI_CTRL_IE (1 << 3) /* isochronous enable */
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#define OHCI_CTRL_CLE (1 << 4) /* control list enable */
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#define OHCI_CTRL_BLE (1 << 5) /* bulk list enable */
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#define OHCI_CTRL_HCFS (3 << 6) /* host controller functional state */
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#define OHCI_CTRL_IR (1 << 8) /* interrupt routing */
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#define OHCI_CTRL_RWC (1 << 9) /* remote wakeup connected */
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#define OHCI_CTRL_RWE (1 << 10) /* remote wakeup enable */
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/* pre-shifted values for HCFS */
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# define OHCI_USB_RESET (0 << 6)
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# define OHCI_USB_RESUME (1 << 6)
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# define OHCI_USB_OPER (2 << 6)
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# define OHCI_USB_SUSPEND (3 << 6)
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/*
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* HcCommandStatus (cmdstatus) register masks
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*/
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#define OHCI_HCR (1 << 0) /* host controller reset */
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#define OHCI_CLF (1 << 1) /* control list filled */
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#define OHCI_BLF (1 << 2) /* bulk list filled */
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#define OHCI_OCR (1 << 3) /* ownership change request */
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#define OHCI_SOC (3 << 16) /* scheduling overrun count */
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/*
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* masks used with interrupt registers:
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* HcInterruptStatus (intrstatus)
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* HcInterruptEnable (intrenable)
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* HcInterruptDisable (intrdisable)
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*/
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#define OHCI_INTR_SO (1 << 0) /* scheduling overrun */
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#define OHCI_INTR_WDH (1 << 1) /* writeback of done_head */
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#define OHCI_INTR_SF (1 << 2) /* start frame */
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#define OHCI_INTR_RD (1 << 3) /* resume detect */
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#define OHCI_INTR_UE (1 << 4) /* unrecoverable error */
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#define OHCI_INTR_FNO (1 << 5) /* frame number overflow */
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#define OHCI_INTR_RHSC (1 << 6) /* root hub status change */
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#define OHCI_INTR_OC (1 << 30) /* ownership change */
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#define OHCI_INTR_MIE (1 << 31) /* master interrupt enable */
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/* Virtual Root HUB */
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struct virt_root_hub {
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int devnum; /* Address of Root Hub endpoint */
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void *dev; /* was urb */
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void *int_addr;
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int send;
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int interval;
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};
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/* USB HUB CONSTANTS (not OHCI-specific; see hub.h) */
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/* destination of request */
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#define RH_INTERFACE 0x01
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#define RH_ENDPOINT 0x02
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#define RH_OTHER 0x03
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#define RH_CLASS 0x20
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#define RH_VENDOR 0x40
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/* Requests: bRequest << 8 | bmRequestType */
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#define RH_GET_STATUS 0x0080
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#define RH_CLEAR_FEATURE 0x0100
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#define RH_SET_FEATURE 0x0300
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#define RH_SET_ADDRESS 0x0500
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#define RH_GET_DESCRIPTOR 0x0680
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#define RH_SET_DESCRIPTOR 0x0700
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#define RH_GET_CONFIGURATION 0x0880
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#define RH_SET_CONFIGURATION 0x0900
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#define RH_GET_STATE 0x0280
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#define RH_GET_INTERFACE 0x0A80
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#define RH_SET_INTERFACE 0x0B00
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#define RH_SYNC_FRAME 0x0C80
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/* Our Vendor Specific Request */
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#define RH_SET_EP 0x2000
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/* Hub port features */
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#define RH_PORT_CONNECTION 0x00
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#define RH_PORT_ENABLE 0x01
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#define RH_PORT_SUSPEND 0x02
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#define RH_PORT_OVER_CURRENT 0x03
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#define RH_PORT_RESET 0x04
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#define RH_PORT_POWER 0x08
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#define RH_PORT_LOW_SPEED 0x09
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#define RH_C_PORT_CONNECTION 0x10
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#define RH_C_PORT_ENABLE 0x11
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#define RH_C_PORT_SUSPEND 0x12
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#define RH_C_PORT_OVER_CURRENT 0x13
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#define RH_C_PORT_RESET 0x14
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/* Hub features */
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#define RH_C_HUB_LOCAL_POWER 0x00
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#define RH_C_HUB_OVER_CURRENT 0x01
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#define RH_DEVICE_REMOTE_WAKEUP 0x00
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#define RH_ENDPOINT_STALL 0x01
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#define RH_ACK 0x01
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#define RH_REQ_ERR -1
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#define RH_NACK 0x00
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/* OHCI ROOT HUB REGISTER MASKS */
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/* roothub.portstatus [i] bits */
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#define RH_PS_CCS 0x00000001 /* current connect status */
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#define RH_PS_PES 0x00000002 /* port enable status*/
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#define RH_PS_PSS 0x00000004 /* port suspend status */
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#define RH_PS_POCI 0x00000008 /* port over current indicator */
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#define RH_PS_PRS 0x00000010 /* port reset status */
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#define RH_PS_PPS 0x00000100 /* port power status */
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#define RH_PS_LSDA 0x00000200 /* low speed device attached */
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#define RH_PS_CSC 0x00010000 /* connect status change */
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#define RH_PS_PESC 0x00020000 /* port enable status change */
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#define RH_PS_PSSC 0x00040000 /* port suspend status change */
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#define RH_PS_OCIC 0x00080000 /* over current indicator change */
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#define RH_PS_PRSC 0x00100000 /* port reset status change */
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/* roothub.status bits */
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#define RH_HS_LPS 0x00000001 /* local power status */
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#define RH_HS_OCI 0x00000002 /* over current indicator */
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#define RH_HS_DRWE 0x00008000 /* device remote wakeup enable */
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#define RH_HS_LPSC 0x00010000 /* local power status change */
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#define RH_HS_OCIC 0x00020000 /* over current indicator change */
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#define RH_HS_CRWE 0x80000000 /* clear remote wakeup enable */
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/* roothub.b masks */
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#define RH_B_DR 0x0000ffff /* device removable flags */
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#define RH_B_PPCM 0xffff0000 /* port power control mask */
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/* roothub.a masks */
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#define RH_A_NDP (0xff << 0) /* number of downstream ports */
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#define RH_A_PSM (1 << 8) /* power switching mode */
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#define RH_A_NPS (1 << 9) /* no power switching */
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#define RH_A_DT (1 << 10) /* device type (mbz) */
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#define RH_A_OCPM (1 << 11) /* over current protection mode */
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#define RH_A_NOCP (1 << 12) /* no over current protection */
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#define RH_A_POTPGT (0xff << 24) /* power on to power good time */
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/* urb */
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#define N_URB_TD 48
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typedef struct
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{
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ed_t *ed;
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__u16 length; /* number of tds associated with this request */
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__u16 td_cnt; /* number of tds already serviced */
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struct usb_device *dev;
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int state;
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unsigned long pipe;
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void *transfer_buffer;
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int transfer_buffer_length;
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int interval;
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int actual_length;
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int finished;
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td_t *td[N_URB_TD]; /* list pointer to all corresponding TDs associated with this request */
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} urb_priv_t;
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#define URB_DEL 1
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/*
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* This is the full ohci controller description
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*
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* Note how the "proper" USB information is just
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* a subset of what the full implementation needs. (Linus)
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*/
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typedef struct ohci {
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struct ohci_hcca *hcca; /* hcca */
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/*dma_addr_t hcca_dma;*/
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int irq;
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int disabled; /* e.g. got a UE, we're hung */
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int sleeping;
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unsigned long flags; /* for HC bugs */
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struct ohci_regs *regs; /* OHCI controller's memory */
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int ohci_int_load[32]; /* load of the 32 Interrupt Chains (for load balancing)*/
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ed_t *ed_rm_list[2]; /* lists of all endpoints to be removed */
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ed_t *ed_bulktail; /* last endpoint of bulk list */
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ed_t *ed_controltail; /* last endpoint of control list */
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int intrstatus;
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__u32 hc_control; /* copy of the hc control reg */
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struct usb_device *dev[32];
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struct virt_root_hub rh;
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const char *slot_name;
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} ohci_t;
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#define NUM_EDS 8 /* num of preallocated endpoint descriptors */
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struct ohci_device {
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ed_t ed[NUM_EDS];
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int ed_cnt;
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};
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/* hcd */
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/* endpoint */
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static int ep_link(ohci_t * ohci, ed_t * ed);
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static int ep_unlink(ohci_t * ohci, ed_t * ed);
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static ed_t * ep_add_ed(struct usb_device * usb_dev, unsigned long pipe,
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int interval, int load);
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/*-------------------------------------------------------------------------*/
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/* we need more TDs than EDs */
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#define NUM_TD 64
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/* +1 so we can align the storage */
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td_t gtd[NUM_TD+1];
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/* pointers to aligned storage */
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td_t *ptd;
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|
/* TDs ... */
|
|
static inline struct td *
|
|
td_alloc (struct usb_device *usb_dev)
|
|
{
|
|
int i;
|
|
struct td *td;
|
|
|
|
td = NULL;
|
|
for (i = 0; i < NUM_TD; i++)
|
|
{
|
|
if (ptd[i].usb_dev == NULL)
|
|
{
|
|
td = &ptd[i];
|
|
td->usb_dev = usb_dev;
|
|
break;
|
|
}
|
|
}
|
|
|
|
return td;
|
|
}
|
|
|
|
static inline void
|
|
ed_free (struct ed *ed)
|
|
{
|
|
ed->usb_dev = NULL;
|
|
}
|