hcd-ohci.c 54.6 KB
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/*
 * QEMU USB OHCI Emulation
 * Copyright (c) 2004 Gianni Tedesco
 * Copyright (c) 2006 CodeSourcery
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 * Copyright (c) 2006 Openedhand Ltd.
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 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
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 *
 * TODO:
 *  o Isochronous transfers
 *  o Allocate bandwidth in frames properly
 *  o Disable timers when nothing needs to be done, or remove timer usage
 *    all together.
 *  o Handle unrecoverable errors properly
 *  o BIOS work to boot from USB storage
*/

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#include "hw/hw.h"
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#include "qemu/timer.h"
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#include "hw/usb.h"
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#include "hw/pci/pci.h"
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#include "hw/sysbus.h"
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#include "hw/qdev-dma.h"
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//#define DEBUG_OHCI
/* Dump packet contents.  */
//#define DEBUG_PACKET
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//#define DEBUG_ISOCH
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/* This causes frames to occur 1000x slower */
//#define OHCI_TIME_WARP 1

#ifdef DEBUG_OHCI
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#define DPRINTF printf
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#else
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#define DPRINTF(...)
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#endif

/* Number of Downstream Ports on the root hub.  */

#define OHCI_MAX_PORTS 15

static int64_t usb_frame_time;
static int64_t usb_bit_time;

typedef struct OHCIPort {
    USBPort port;
    uint32_t ctrl;
} OHCIPort;

typedef struct {
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    USBBus bus;
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    qemu_irq irq;
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    MemoryRegion mem;
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    DMAContext *dma;
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    int num_ports;
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    const char *name;
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    QEMUTimer *eof_timer;
    int64_t sof_time;

    /* OHCI state */
    /* Control partition */
    uint32_t ctl, status;
    uint32_t intr_status;
    uint32_t intr;

    /* memory pointer partition */
    uint32_t hcca;
    uint32_t ctrl_head, ctrl_cur;
    uint32_t bulk_head, bulk_cur;
    uint32_t per_cur;
    uint32_t done;
    int done_count;

    /* Frame counter partition */
    uint32_t fsmps:15;
    uint32_t fit:1;
    uint32_t fi:14;
    uint32_t frt:1;
    uint16_t frame_number;
    uint16_t padding;
    uint32_t pstart;
    uint32_t lst;

    /* Root Hub partition */
    uint32_t rhdesc_a, rhdesc_b;
    uint32_t rhstatus;
    OHCIPort rhport[OHCI_MAX_PORTS];
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    /* PXA27x Non-OHCI events */
    uint32_t hstatus;
    uint32_t hmask;
    uint32_t hreset;
    uint32_t htest;

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    /* SM501 local memory offset */
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    dma_addr_t localmem_base;
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    /* Active packets.  */
    uint32_t old_ctl;
    USBPacket usb_packet;
    uint8_t usb_buf[8192];
    uint32_t async_td;
    int async_complete;

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} OHCIState;

/* Host Controller Communications Area */
struct ohci_hcca {
    uint32_t intr[32];
    uint16_t frame, pad;
    uint32_t done;
};
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#define HCCA_WRITEBACK_OFFSET   offsetof(struct ohci_hcca, frame)
#define HCCA_WRITEBACK_SIZE     8 /* frame, pad, done */

#define ED_WBACK_OFFSET offsetof(struct ohci_ed, head)
#define ED_WBACK_SIZE   4
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static void ohci_bus_stop(OHCIState *ohci);
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static void ohci_async_cancel_device(OHCIState *ohci, USBDevice *dev);
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/* Bitfields for the first word of an Endpoint Desciptor.  */
#define OHCI_ED_FA_SHIFT  0
#define OHCI_ED_FA_MASK   (0x7f<<OHCI_ED_FA_SHIFT)
#define OHCI_ED_EN_SHIFT  7
#define OHCI_ED_EN_MASK   (0xf<<OHCI_ED_EN_SHIFT)
#define OHCI_ED_D_SHIFT   11
#define OHCI_ED_D_MASK    (3<<OHCI_ED_D_SHIFT)
#define OHCI_ED_S         (1<<13)
#define OHCI_ED_K         (1<<14)
#define OHCI_ED_F         (1<<15)
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#define OHCI_ED_MPS_SHIFT 16
#define OHCI_ED_MPS_MASK  (0x7ff<<OHCI_ED_MPS_SHIFT)
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/* Flags in the head field of an Endpoint Desciptor.  */
#define OHCI_ED_H         1
#define OHCI_ED_C         2

/* Bitfields for the first word of a Transfer Desciptor.  */
#define OHCI_TD_R         (1<<18)
#define OHCI_TD_DP_SHIFT  19
#define OHCI_TD_DP_MASK   (3<<OHCI_TD_DP_SHIFT)
#define OHCI_TD_DI_SHIFT  21
#define OHCI_TD_DI_MASK   (7<<OHCI_TD_DI_SHIFT)
#define OHCI_TD_T0        (1<<24)
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#define OHCI_TD_T1        (1<<25)
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#define OHCI_TD_EC_SHIFT  26
#define OHCI_TD_EC_MASK   (3<<OHCI_TD_EC_SHIFT)
#define OHCI_TD_CC_SHIFT  28
#define OHCI_TD_CC_MASK   (0xf<<OHCI_TD_CC_SHIFT)

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/* Bitfields for the first word of an Isochronous Transfer Desciptor.  */
/* CC & DI - same as in the General Transfer Desciptor */
#define OHCI_TD_SF_SHIFT  0
#define OHCI_TD_SF_MASK   (0xffff<<OHCI_TD_SF_SHIFT)
#define OHCI_TD_FC_SHIFT  24
#define OHCI_TD_FC_MASK   (7<<OHCI_TD_FC_SHIFT)

/* Isochronous Transfer Desciptor - Offset / PacketStatusWord */
#define OHCI_TD_PSW_CC_SHIFT 12
#define OHCI_TD_PSW_CC_MASK  (0xf<<OHCI_TD_PSW_CC_SHIFT)
#define OHCI_TD_PSW_SIZE_SHIFT 0
#define OHCI_TD_PSW_SIZE_MASK  (0xfff<<OHCI_TD_PSW_SIZE_SHIFT)

#define OHCI_PAGE_MASK    0xfffff000
#define OHCI_OFFSET_MASK  0xfff

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#define OHCI_DPTR_MASK    0xfffffff0

#define OHCI_BM(val, field) \
  (((val) & OHCI_##field##_MASK) >> OHCI_##field##_SHIFT)

#define OHCI_SET_BM(val, field, newval) do { \
    val &= ~OHCI_##field##_MASK; \
    val |= ((newval) << OHCI_##field##_SHIFT) & OHCI_##field##_MASK; \
    } while(0)

/* endpoint descriptor */
struct ohci_ed {
    uint32_t flags;
    uint32_t tail;
    uint32_t head;
    uint32_t next;
};

/* General transfer descriptor */
struct ohci_td {
    uint32_t flags;
    uint32_t cbp;
    uint32_t next;
    uint32_t be;
};

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/* Isochronous transfer descriptor */
struct ohci_iso_td {
    uint32_t flags;
    uint32_t bp;
    uint32_t next;
    uint32_t be;
    uint16_t offset[8];
};

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#define USB_HZ                      12000000

/* OHCI Local stuff */
#define OHCI_CTL_CBSR         ((1<<0)|(1<<1))
#define OHCI_CTL_PLE          (1<<2)
#define OHCI_CTL_IE           (1<<3)
#define OHCI_CTL_CLE          (1<<4)
#define OHCI_CTL_BLE          (1<<5)
#define OHCI_CTL_HCFS         ((1<<6)|(1<<7))
#define  OHCI_USB_RESET       0x00
#define  OHCI_USB_RESUME      0x40
#define  OHCI_USB_OPERATIONAL 0x80
#define  OHCI_USB_SUSPEND     0xc0
#define OHCI_CTL_IR           (1<<8)
#define OHCI_CTL_RWC          (1<<9)
#define OHCI_CTL_RWE          (1<<10)

#define OHCI_STATUS_HCR       (1<<0)
#define OHCI_STATUS_CLF       (1<<1)
#define OHCI_STATUS_BLF       (1<<2)
#define OHCI_STATUS_OCR       (1<<3)
#define OHCI_STATUS_SOC       ((1<<6)|(1<<7))

#define OHCI_INTR_SO          (1<<0) /* Scheduling overrun */
#define OHCI_INTR_WD          (1<<1) /* HcDoneHead writeback */
#define OHCI_INTR_SF          (1<<2) /* Start of frame */
#define OHCI_INTR_RD          (1<<3) /* Resume detect */
#define OHCI_INTR_UE          (1<<4) /* Unrecoverable error */
#define OHCI_INTR_FNO         (1<<5) /* Frame number overflow */
#define OHCI_INTR_RHSC        (1<<6) /* Root hub status change */
#define OHCI_INTR_OC          (1<<30) /* Ownership change */
#define OHCI_INTR_MIE         (1<<31) /* Master Interrupt Enable */

#define OHCI_HCCA_SIZE        0x100
#define OHCI_HCCA_MASK        0xffffff00

#define OHCI_EDPTR_MASK       0xfffffff0

#define OHCI_FMI_FI           0x00003fff
#define OHCI_FMI_FSMPS        0xffff0000
#define OHCI_FMI_FIT          0x80000000

#define OHCI_FR_RT            (1<<31)

#define OHCI_LS_THRESH        0x628

#define OHCI_RHA_RW_MASK      0x00000000 /* Mask of supported features.  */
#define OHCI_RHA_PSM          (1<<8)
#define OHCI_RHA_NPS          (1<<9)
#define OHCI_RHA_DT           (1<<10)
#define OHCI_RHA_OCPM         (1<<11)
#define OHCI_RHA_NOCP         (1<<12)
#define OHCI_RHA_POTPGT_MASK  0xff000000

#define OHCI_RHS_LPS          (1<<0)
#define OHCI_RHS_OCI          (1<<1)
#define OHCI_RHS_DRWE         (1<<15)
#define OHCI_RHS_LPSC         (1<<16)
#define OHCI_RHS_OCIC         (1<<17)
#define OHCI_RHS_CRWE         (1<<31)

#define OHCI_PORT_CCS         (1<<0)
#define OHCI_PORT_PES         (1<<1)
#define OHCI_PORT_PSS         (1<<2)
#define OHCI_PORT_POCI        (1<<3)
#define OHCI_PORT_PRS         (1<<4)
#define OHCI_PORT_PPS         (1<<8)
#define OHCI_PORT_LSDA        (1<<9)
#define OHCI_PORT_CSC         (1<<16)
#define OHCI_PORT_PESC        (1<<17)
#define OHCI_PORT_PSSC        (1<<18)
#define OHCI_PORT_OCIC        (1<<19)
#define OHCI_PORT_PRSC        (1<<20)
#define OHCI_PORT_WTC         (OHCI_PORT_CSC|OHCI_PORT_PESC|OHCI_PORT_PSSC \
                               |OHCI_PORT_OCIC|OHCI_PORT_PRSC)

#define OHCI_TD_DIR_SETUP     0x0
#define OHCI_TD_DIR_OUT       0x1
#define OHCI_TD_DIR_IN        0x2
#define OHCI_TD_DIR_RESERVED  0x3

#define OHCI_CC_NOERROR             0x0
#define OHCI_CC_CRC                 0x1
#define OHCI_CC_BITSTUFFING         0x2
#define OHCI_CC_DATATOGGLEMISMATCH  0x3
#define OHCI_CC_STALL               0x4
#define OHCI_CC_DEVICENOTRESPONDING 0x5
#define OHCI_CC_PIDCHECKFAILURE     0x6
#define OHCI_CC_UNDEXPETEDPID       0x7
#define OHCI_CC_DATAOVERRUN         0x8
#define OHCI_CC_DATAUNDERRUN        0x9
#define OHCI_CC_BUFFEROVERRUN       0xc
#define OHCI_CC_BUFFERUNDERRUN      0xd

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#define OHCI_HRESET_FSBIR       (1 << 0)

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/* Update IRQ levels */
static inline void ohci_intr_update(OHCIState *ohci)
{
    int level = 0;

    if ((ohci->intr & OHCI_INTR_MIE) &&
        (ohci->intr_status & ohci->intr))
        level = 1;

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    qemu_set_irq(ohci->irq, level);
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}

/* Set an interrupt */
static inline void ohci_set_interrupt(OHCIState *ohci, uint32_t intr)
{
    ohci->intr_status |= intr;
    ohci_intr_update(ohci);
}

/* Attach or detach a device on a root hub port.  */
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static void ohci_attach(USBPort *port1)
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{
    OHCIState *s = port1->opaque;
    OHCIPort *port = &s->rhport[port1->index];
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    uint32_t old_state = port->ctrl;
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    /* set connect status */
    port->ctrl |= OHCI_PORT_CCS | OHCI_PORT_CSC;

    /* update speed */
    if (port->port.dev->speed == USB_SPEED_LOW) {
        port->ctrl |= OHCI_PORT_LSDA;
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    } else {
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        port->ctrl &= ~OHCI_PORT_LSDA;
    }

    /* notify of remote-wakeup */
    if ((s->ctl & OHCI_CTL_HCFS) == OHCI_USB_SUSPEND) {
        ohci_set_interrupt(s, OHCI_INTR_RD);
    }

    DPRINTF("usb-ohci: Attached port %d\n", port1->index);
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    if (old_state != port->ctrl) {
        ohci_set_interrupt(s, OHCI_INTR_RHSC);
    }
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}

static void ohci_detach(USBPort *port1)
{
    OHCIState *s = port1->opaque;
    OHCIPort *port = &s->rhport[port1->index];
    uint32_t old_state = port->ctrl;

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    ohci_async_cancel_device(s, port1->dev);

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    /* set connect status */
    if (port->ctrl & OHCI_PORT_CCS) {
        port->ctrl &= ~OHCI_PORT_CCS;
        port->ctrl |= OHCI_PORT_CSC;
    }
    /* disable port */
    if (port->ctrl & OHCI_PORT_PES) {
        port->ctrl &= ~OHCI_PORT_PES;
        port->ctrl |= OHCI_PORT_PESC;
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    }
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    DPRINTF("usb-ohci: Detached port %d\n", port1->index);
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    if (old_state != port->ctrl) {
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        ohci_set_interrupt(s, OHCI_INTR_RHSC);
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    }
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}

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static void ohci_wakeup(USBPort *port1)
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{
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    OHCIState *s = port1->opaque;
    OHCIPort *port = &s->rhport[port1->index];
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    uint32_t intr = 0;
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    if (port->ctrl & OHCI_PORT_PSS) {
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        DPRINTF("usb-ohci: port %d: wakeup\n", port1->index);
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        port->ctrl |= OHCI_PORT_PSSC;
        port->ctrl &= ~OHCI_PORT_PSS;
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        intr = OHCI_INTR_RHSC;
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    }
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    /* Note that the controller can be suspended even if this port is not */
    if ((s->ctl & OHCI_CTL_HCFS) == OHCI_USB_SUSPEND) {
        DPRINTF("usb-ohci: remote-wakeup: SUSPEND->RESUME\n");
        /* This is the one state transition the controller can do by itself */
        s->ctl &= ~OHCI_CTL_HCFS;
        s->ctl |= OHCI_USB_RESUME;
        /* In suspend mode only ResumeDetected is possible, not RHSC:
         * see the OHCI spec 5.1.2.3.
         */
        intr = OHCI_INTR_RD;
    }
    ohci_set_interrupt(s, intr);
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}

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static void ohci_child_detach(USBPort *port1, USBDevice *child)
{
    OHCIState *s = port1->opaque;

    ohci_async_cancel_device(s, child);
}

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static USBDevice *ohci_find_device(OHCIState *ohci, uint8_t addr)
{
    USBDevice *dev;
    int i;

    for (i = 0; i < ohci->num_ports; i++) {
        if ((ohci->rhport[i].ctrl & OHCI_PORT_PES) == 0) {
            continue;
        }
        dev = usb_find_device(&ohci->rhport[i].port, addr);
        if (dev != NULL) {
            return dev;
        }
    }
    return NULL;
}

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/* Reset the controller */
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static void ohci_reset(void *opaque)
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{
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    OHCIState *ohci = opaque;
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    OHCIPort *port;
    int i;

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    ohci_bus_stop(ohci);
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    ohci->ctl = 0;
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    ohci->old_ctl = 0;
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    ohci->status = 0;
    ohci->intr_status = 0;
    ohci->intr = OHCI_INTR_MIE;

    ohci->hcca = 0;
    ohci->ctrl_head = ohci->ctrl_cur = 0;
    ohci->bulk_head = ohci->bulk_cur = 0;
    ohci->per_cur = 0;
    ohci->done = 0;
    ohci->done_count = 7;

    /* FSMPS is marked TBD in OCHI 1.0, what gives ffs?
     * I took the value linux sets ...
     */
    ohci->fsmps = 0x2778;
    ohci->fi = 0x2edf;
    ohci->fit = 0;
    ohci->frt = 0;
    ohci->frame_number = 0;
    ohci->pstart = 0;
    ohci->lst = OHCI_LS_THRESH;

    ohci->rhdesc_a = OHCI_RHA_NPS | ohci->num_ports;
    ohci->rhdesc_b = 0x0; /* Impl. specific */
    ohci->rhstatus = 0;

    for (i = 0; i < ohci->num_ports; i++)
      {
        port = &ohci->rhport[i];
        port->ctrl = 0;
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        if (port->port.dev && port->port.dev->attached) {
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            usb_port_reset(&port->port);
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        }
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      }
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    if (ohci->async_td) {
        usb_cancel_packet(&ohci->usb_packet);
        ohci->async_td = 0;
    }
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    DPRINTF("usb-ohci: Reset %s\n", ohci->name);
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}

/* Get an array of dwords from main memory */
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static inline int get_dwords(OHCIState *ohci,
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                             dma_addr_t addr, uint32_t *buf, int num)
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{
    int i;

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    addr += ohci->localmem_base;

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    for (i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
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        dma_memory_read(ohci->dma, addr, buf, sizeof(*buf));
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        *buf = le32_to_cpu(*buf);
    }

    return 1;
}

/* Put an array of dwords in to main memory */
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static inline int put_dwords(OHCIState *ohci,
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                             dma_addr_t addr, uint32_t *buf, int num)
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{
    int i;

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    addr += ohci->localmem_base;

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    for (i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
        uint32_t tmp = cpu_to_le32(*buf);
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        dma_memory_write(ohci->dma, addr, &tmp, sizeof(tmp));
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    }

    return 1;
}

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/* Get an array of words from main memory */
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static inline int get_words(OHCIState *ohci,
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                            dma_addr_t addr, uint16_t *buf, int num)
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{
    int i;

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    addr += ohci->localmem_base;

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    for (i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
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        dma_memory_read(ohci->dma, addr, buf, sizeof(*buf));
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        *buf = le16_to_cpu(*buf);
    }

    return 1;
}

/* Put an array of words in to main memory */
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static inline int put_words(OHCIState *ohci,
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                            dma_addr_t addr, uint16_t *buf, int num)
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{
    int i;

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    addr += ohci->localmem_base;

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    for (i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
        uint16_t tmp = cpu_to_le16(*buf);
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        dma_memory_write(ohci->dma, addr, &tmp, sizeof(tmp));
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    }

    return 1;
}

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static inline int ohci_read_ed(OHCIState *ohci,
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                               dma_addr_t addr, struct ohci_ed *ed)
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{
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    return get_dwords(ohci, addr, (uint32_t *)ed, sizeof(*ed) >> 2);
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}

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static inline int ohci_read_td(OHCIState *ohci,
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                               dma_addr_t addr, struct ohci_td *td)
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{
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    return get_dwords(ohci, addr, (uint32_t *)td, sizeof(*td) >> 2);
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}

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static inline int ohci_read_iso_td(OHCIState *ohci,
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                                   dma_addr_t addr, struct ohci_iso_td *td)
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{
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    return (get_dwords(ohci, addr, (uint32_t *)td, 4) &&
            get_words(ohci, addr + 16, td->offset, 8));
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}

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static inline int ohci_read_hcca(OHCIState *ohci,
568
                                 dma_addr_t addr, struct ohci_hcca *hcca)
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{
570
    dma_memory_read(ohci->dma, addr + ohci->localmem_base, hcca, sizeof(*hcca));
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    return 1;
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}

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static inline int ohci_put_ed(OHCIState *ohci,
575
                              dma_addr_t addr, struct ohci_ed *ed)
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{
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    /* ed->tail is under control of the HCD.
     * Since just ed->head is changed by HC, just write back this
     */

    return put_dwords(ohci, addr + ED_WBACK_OFFSET,
                      (uint32_t *)((char *)ed + ED_WBACK_OFFSET),
                      ED_WBACK_SIZE >> 2);
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}

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static inline int ohci_put_td(OHCIState *ohci,
587
                              dma_addr_t addr, struct ohci_td *td)
588
{
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    return put_dwords(ohci, addr, (uint32_t *)td, sizeof(*td) >> 2);
}

static inline int ohci_put_iso_td(OHCIState *ohci,
593
                                  dma_addr_t addr, struct ohci_iso_td *td)
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{
    return (put_dwords(ohci, addr, (uint32_t *)td, 4) &&
            put_words(ohci, addr + 16, td->offset, 8));
}

static inline int ohci_put_hcca(OHCIState *ohci,
600
                                dma_addr_t addr, struct ohci_hcca *hcca)
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{
602 603 604 605
    dma_memory_write(ohci->dma,
                     addr + ohci->localmem_base + HCCA_WRITEBACK_OFFSET,
                     (char *)hcca + HCCA_WRITEBACK_OFFSET,
                     HCCA_WRITEBACK_SIZE);
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    return 1;
607 608
}

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/* Read/Write the contents of a TD from/to main memory.  */
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static void ohci_copy_td(OHCIState *ohci, struct ohci_td *td,
611
                         uint8_t *buf, int len, DMADirection dir)
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{
613
    dma_addr_t ptr, n;
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    ptr = td->cbp;
    n = 0x1000 - (ptr & 0xfff);
    if (n > len)
        n = len;
619
    dma_memory_rw(ohci->dma, ptr + ohci->localmem_base, buf, n, dir);
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    if (n == len)
        return;
    ptr = td->be & ~0xfffu;
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    buf += n;
624
    dma_memory_rw(ohci->dma, ptr + ohci->localmem_base, buf, len - n, dir);
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}

627
/* Read/Write the contents of an ISO TD from/to main memory.  */
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static void ohci_copy_iso_td(OHCIState *ohci,
                             uint32_t start_addr, uint32_t end_addr,
630
                             uint8_t *buf, int len, DMADirection dir)
631
{
632
    dma_addr_t ptr, n;
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634 635 636 637
    ptr = start_addr;
    n = 0x1000 - (ptr & 0xfff);
    if (n > len)
        n = len;
638
    dma_memory_rw(ohci->dma, ptr + ohci->localmem_base, buf, n, dir);
639 640 641 642
    if (n == len)
        return;
    ptr = end_addr & ~0xfffu;
    buf += n;
643
    dma_memory_rw(ohci->dma, ptr + ohci->localmem_base, buf, len - n, dir);
644 645 646 647
}

static void ohci_process_lists(OHCIState *ohci, int completion);

648
static void ohci_async_complete_packet(USBPort *port, USBPacket *packet)
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{
650
    OHCIState *ohci = container_of(packet, OHCIState, usb_packet);
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#ifdef DEBUG_PACKET
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    DPRINTF("Async packet complete\n");
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#endif
    ohci->async_complete = 1;
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    ohci_process_lists(ohci, 1);
}

#define USUB(a, b) ((int16_t)((uint16_t)(a) - (uint16_t)(b)))

static int ohci_service_iso_td(OHCIState *ohci, struct ohci_ed *ed,
                               int completion)
{
    int dir;
    size_t len = 0;
665
#ifdef DEBUG_ISOCH
666
    const char *str = NULL;
667
#endif
668 669 670 671
    int pid;
    int ret;
    int i;
    USBDevice *dev;
672
    USBEndpoint *ep;
673 674 675 676 677 678 679 680 681 682
    struct ohci_iso_td iso_td;
    uint32_t addr;
    uint16_t starting_frame;
    int16_t relative_frame_number;
    int frame_count;
    uint32_t start_offset, next_offset, end_offset = 0;
    uint32_t start_addr, end_addr;

    addr = ed->head & OHCI_DPTR_MASK;

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    if (!ohci_read_iso_td(ohci, addr, &iso_td)) {
684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709
        printf("usb-ohci: ISO_TD read error at %x\n", addr);
        return 0;
    }

    starting_frame = OHCI_BM(iso_td.flags, TD_SF);
    frame_count = OHCI_BM(iso_td.flags, TD_FC);
    relative_frame_number = USUB(ohci->frame_number, starting_frame); 

#ifdef DEBUG_ISOCH
    printf("--- ISO_TD ED head 0x%.8x tailp 0x%.8x\n"
           "0x%.8x 0x%.8x 0x%.8x 0x%.8x\n"
           "0x%.8x 0x%.8x 0x%.8x 0x%.8x\n"
           "0x%.8x 0x%.8x 0x%.8x 0x%.8x\n"
           "frame_number 0x%.8x starting_frame 0x%.8x\n"
           "frame_count  0x%.8x relative %d\n"
           "di 0x%.8x cc 0x%.8x\n",
           ed->head & OHCI_DPTR_MASK, ed->tail & OHCI_DPTR_MASK,
           iso_td.flags, iso_td.bp, iso_td.next, iso_td.be,
           iso_td.offset[0], iso_td.offset[1], iso_td.offset[2], iso_td.offset[3],
           iso_td.offset[4], iso_td.offset[5], iso_td.offset[6], iso_td.offset[7],
           ohci->frame_number, starting_frame, 
           frame_count, relative_frame_number,         
           OHCI_BM(iso_td.flags, TD_DI), OHCI_BM(iso_td.flags, TD_CC));
#endif

    if (relative_frame_number < 0) {
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        DPRINTF("usb-ohci: ISO_TD R=%d < 0\n", relative_frame_number);
711 712 713 714
        return 1;
    } else if (relative_frame_number > frame_count) {
        /* ISO TD expired - retire the TD to the Done Queue and continue with
           the next ISO TD of the same ED */
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        DPRINTF("usb-ohci: ISO_TD R=%d > FC=%d\n", relative_frame_number, 
716 717 718 719 720 721 722 723 724
               frame_count);
        OHCI_SET_BM(iso_td.flags, TD_CC, OHCI_CC_DATAOVERRUN);
        ed->head &= ~OHCI_DPTR_MASK;
        ed->head |= (iso_td.next & OHCI_DPTR_MASK);
        iso_td.next = ohci->done;
        ohci->done = addr;
        i = OHCI_BM(iso_td.flags, TD_DI);
        if (i < ohci->done_count)
            ohci->done_count = i;
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        ohci_put_iso_td(ohci, addr, &iso_td);
726 727 728 729 730 731
        return 0;
    }

    dir = OHCI_BM(ed->flags, ED_D);
    switch (dir) {
    case OHCI_TD_DIR_IN:
732
#ifdef DEBUG_ISOCH
733
        str = "in";
734
#endif
735 736 737
        pid = USB_TOKEN_IN;
        break;
    case OHCI_TD_DIR_OUT:
738
#ifdef DEBUG_ISOCH
739
        str = "out";
740
#endif
741 742 743
        pid = USB_TOKEN_OUT;
        break;
    case OHCI_TD_DIR_SETUP:
744
#ifdef DEBUG_ISOCH
745
        str = "setup";
746
#endif
747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805
        pid = USB_TOKEN_SETUP;
        break;
    default:
        printf("usb-ohci: Bad direction %d\n", dir);
        return 1;
    }

    if (!iso_td.bp || !iso_td.be) {
        printf("usb-ohci: ISO_TD bp 0x%.8x be 0x%.8x\n", iso_td.bp, iso_td.be);
        return 1;
    }

    start_offset = iso_td.offset[relative_frame_number];
    next_offset = iso_td.offset[relative_frame_number + 1];

    if (!(OHCI_BM(start_offset, TD_PSW_CC) & 0xe) || 
        ((relative_frame_number < frame_count) && 
         !(OHCI_BM(next_offset, TD_PSW_CC) & 0xe))) {
        printf("usb-ohci: ISO_TD cc != not accessed 0x%.8x 0x%.8x\n",
               start_offset, next_offset);
        return 1;
    }

    if ((relative_frame_number < frame_count) && (start_offset > next_offset)) {
        printf("usb-ohci: ISO_TD start_offset=0x%.8x > next_offset=0x%.8x\n",
                start_offset, next_offset);
        return 1;
    }

    if ((start_offset & 0x1000) == 0) {
        start_addr = (iso_td.bp & OHCI_PAGE_MASK) |
            (start_offset & OHCI_OFFSET_MASK);
    } else {
        start_addr = (iso_td.be & OHCI_PAGE_MASK) |
            (start_offset & OHCI_OFFSET_MASK);
    }

    if (relative_frame_number < frame_count) {
        end_offset = next_offset - 1;
        if ((end_offset & 0x1000) == 0) {
            end_addr = (iso_td.bp & OHCI_PAGE_MASK) |
                (end_offset & OHCI_OFFSET_MASK);
        } else {
            end_addr = (iso_td.be & OHCI_PAGE_MASK) |
                (end_offset & OHCI_OFFSET_MASK);
        }
    } else {
        /* Last packet in the ISO TD */
        end_addr = iso_td.be;
    }

    if ((start_addr & OHCI_PAGE_MASK) != (end_addr & OHCI_PAGE_MASK)) {
        len = (end_addr & OHCI_OFFSET_MASK) + 0x1001
            - (start_addr & OHCI_OFFSET_MASK);
    } else {
        len = end_addr - start_addr + 1;
    }

    if (len && dir != OHCI_TD_DIR_IN) {
806 807
        ohci_copy_iso_td(ohci, start_addr, end_addr, ohci->usb_buf, len,
                         DMA_DIRECTION_TO_DEVICE);
808 809
    }

810
    if (!completion) {
811 812
        bool int_req = relative_frame_number == frame_count &&
                       OHCI_BM(iso_td.flags, TD_DI) == 0;
813 814
        dev = ohci_find_device(ohci, OHCI_BM(ed->flags, ED_FA));
        ep = usb_ep_get(dev, pid, OHCI_BM(ed->flags, ED_EN));
815
        usb_packet_setup(&ohci->usb_packet, pid, ep, addr, false, int_req);
816
        usb_packet_addbuf(&ohci->usb_packet, ohci->usb_buf, len);
817 818
        usb_handle_packet(dev, &ohci->usb_packet);
        if (ohci->usb_packet.status == USB_RET_ASYNC) {
819
            usb_device_flush_ep_queue(dev, ep);
820 821 822
            return 1;
        }
    }
823 824 825 826 827
    if (ohci->usb_packet.status == USB_RET_SUCCESS) {
        ret = ohci->usb_packet.actual_length;
    } else {
        ret = ohci->usb_packet.status;
    }
828 829 830 831 832 833 834 835 836

#ifdef DEBUG_ISOCH
    printf("so 0x%.8x eo 0x%.8x\nsa 0x%.8x ea 0x%.8x\ndir %s len %zu ret %d\n",
           start_offset, end_offset, start_addr, end_addr, str, len, ret);
#endif

    /* Writeback */
    if (dir == OHCI_TD_DIR_IN && ret >= 0 && ret <= len) {
        /* IN transfer succeeded */
837 838
        ohci_copy_iso_td(ohci, start_addr, end_addr, ohci->usb_buf, ret,
                         DMA_DIRECTION_FROM_DEVICE);
839 840 841 842 843 844 845 846 847
        OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                    OHCI_CC_NOERROR);
        OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_SIZE, ret);
    } else if (dir == OHCI_TD_DIR_OUT && ret == len) {
        /* OUT transfer succeeded */
        OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                    OHCI_CC_NOERROR);
        OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_SIZE, 0);
    } else {
848
        if (ret > (ssize_t) len) {
849 850 851 852 853 854 855 856 857 858 859
            printf("usb-ohci: DataOverrun %d > %zu\n", ret, len);
            OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                        OHCI_CC_DATAOVERRUN);
            OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_SIZE,
                        len);
        } else if (ret >= 0) {
            printf("usb-ohci: DataUnderrun %d\n", ret);
            OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                        OHCI_CC_DATAUNDERRUN);
        } else {
            switch (ret) {
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Hans de Goede 已提交
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            case USB_RET_IOERROR:
861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894
            case USB_RET_NODEV:
                OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                            OHCI_CC_DEVICENOTRESPONDING);
                OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_SIZE,
                            0);
                break;
            case USB_RET_NAK:
            case USB_RET_STALL:
                printf("usb-ohci: got NAK/STALL %d\n", ret);
                OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                            OHCI_CC_STALL);
                OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_SIZE,
                            0);
                break;
            default:
                printf("usb-ohci: Bad device response %d\n", ret);
                OHCI_SET_BM(iso_td.offset[relative_frame_number], TD_PSW_CC,
                            OHCI_CC_UNDEXPETEDPID);
                break;
            }
        }
    }

    if (relative_frame_number == frame_count) {
        /* Last data packet of ISO TD - retire the TD to the Done Queue */
        OHCI_SET_BM(iso_td.flags, TD_CC, OHCI_CC_NOERROR);
        ed->head &= ~OHCI_DPTR_MASK;
        ed->head |= (iso_td.next & OHCI_DPTR_MASK);
        iso_td.next = ohci->done;
        ohci->done = addr;
        i = OHCI_BM(iso_td.flags, TD_DI);
        if (i < ohci->done_count)
            ohci->done_count = i;
    }
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    ohci_put_iso_td(ohci, addr, &iso_td);
896
    return 1;
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}

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899 900 901 902 903 904
/* Service a transport descriptor.
   Returns nonzero to terminate processing of this endpoint.  */

static int ohci_service_td(OHCIState *ohci, struct ohci_ed *ed)
{
    int dir;
905
    size_t len = 0, pktlen = 0;
906
#ifdef DEBUG_PACKET
907
    const char *str = NULL;
908
#endif
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    int pid;
    int ret;
    int i;
    USBDevice *dev;
913
    USBEndpoint *ep;
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914 915 916
    struct ohci_td td;
    uint32_t addr;
    int flag_r;
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917
    int completion;
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918 919

    addr = ed->head & OHCI_DPTR_MASK;
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920 921 922 923
    /* See if this TD has already been submitted to the device.  */
    completion = (addr == ohci->async_td);
    if (completion && !ohci->async_complete) {
#ifdef DEBUG_PACKET
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924
        DPRINTF("Skipping async TD\n");
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925 926 927
#endif
        return 1;
    }
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928
    if (!ohci_read_td(ohci, addr, &td)) {
P
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929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945
        fprintf(stderr, "usb-ohci: TD read error at %x\n", addr);
        return 0;
    }

    dir = OHCI_BM(ed->flags, ED_D);
    switch (dir) {
    case OHCI_TD_DIR_OUT:
    case OHCI_TD_DIR_IN:
        /* Same value.  */
        break;
    default:
        dir = OHCI_BM(td.flags, TD_DP);
        break;
    }

    switch (dir) {
    case OHCI_TD_DIR_IN:
946
#ifdef DEBUG_PACKET
P
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947
        str = "in";
948
#endif
P
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949 950 951
        pid = USB_TOKEN_IN;
        break;
    case OHCI_TD_DIR_OUT:
952
#ifdef DEBUG_PACKET
P
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953
        str = "out";
954
#endif
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955 956 957
        pid = USB_TOKEN_OUT;
        break;
    case OHCI_TD_DIR_SETUP:
958
#ifdef DEBUG_PACKET
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959
        str = "setup";
960
#endif
P
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961 962 963 964 965 966 967
        pid = USB_TOKEN_SETUP;
        break;
    default:
        fprintf(stderr, "usb-ohci: Bad direction\n");
        return 1;
    }
    if (td.cbp && td.be) {
P
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968 969 970 971 972 973
        if ((td.cbp & 0xfffff000) != (td.be & 0xfffff000)) {
            len = (td.be & 0xfff) + 0x1001 - (td.cbp & 0xfff);
        } else {
            len = (td.be - td.cbp) + 1;
        }

974 975 976 977 978 979 980 981
        pktlen = len;
        if (len && dir != OHCI_TD_DIR_IN) {
            /* The endpoint may not allow us to transfer it all now */
            pktlen = (ed->flags & OHCI_ED_MPS_MASK) >> OHCI_ED_MPS_SHIFT;
            if (pktlen > len) {
                pktlen = len;
            }
            if (!completion) {
982 983
                ohci_copy_td(ohci, &td, ohci->usb_buf, pktlen,
                             DMA_DIRECTION_TO_DEVICE);
984
            }
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985 986 987 988 989
        }
    }

    flag_r = (td.flags & OHCI_TD_R) != 0;
#ifdef DEBUG_PACKET
990 991 992
    DPRINTF(" TD @ 0x%.8x %" PRId64 " of %" PRId64
            " bytes %s r=%d cbp=0x%.8x be=0x%.8x\n",
            addr, (int64_t)pktlen, (int64_t)len, str, flag_r, td.cbp, td.be);
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994
    if (pktlen > 0 && dir != OHCI_TD_DIR_IN) {
M
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995
        DPRINTF("  data:");
996
        for (i = 0; i < pktlen; i++) {
P
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997
            printf(" %.2x", ohci->usb_buf[i]);
998
        }
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999
        DPRINTF("\n");
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1000 1001
    }
#endif
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1002 1003 1004 1005
    if (completion) {
        ohci->async_td = 0;
        ohci->async_complete = 0;
    } else {
1006 1007 1008 1009 1010 1011
        if (ohci->async_td) {
            /* ??? The hardware should allow one active packet per
               endpoint.  We only allow one active packet per controller.
               This should be sufficient as long as devices respond in a
               timely manner.
            */
P
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1012
#ifdef DEBUG_PACKET
1013
            DPRINTF("Too many pending packets\n");
P
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1014
#endif
1015
            return 1;
P
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1016
        }
1017 1018
        dev = ohci_find_device(ohci, OHCI_BM(ed->flags, ED_FA));
        ep = usb_ep_get(dev, pid, OHCI_BM(ed->flags, ED_EN));
1019 1020
        usb_packet_setup(&ohci->usb_packet, pid, ep, addr, !flag_r,
                         OHCI_BM(td.flags, TD_DI) == 0);
1021
        usb_packet_addbuf(&ohci->usb_packet, ohci->usb_buf, pktlen);
1022
        usb_handle_packet(dev, &ohci->usb_packet);
P
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1023
#ifdef DEBUG_PACKET
1024
        DPRINTF("status=%d\n", ohci->usb_packet.status);
P
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1025
#endif
1026
        if (ohci->usb_packet.status == USB_RET_ASYNC) {
1027
            usb_device_flush_ep_queue(dev, ep);
P
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1028 1029 1030 1031
            ohci->async_td = addr;
            return 1;
        }
    }
1032 1033 1034 1035 1036 1037
    if (ohci->usb_packet.status == USB_RET_SUCCESS) {
        ret = ohci->usb_packet.actual_length;
    } else {
        ret = ohci->usb_packet.status;
    }

P
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1038 1039
    if (ret >= 0) {
        if (dir == OHCI_TD_DIR_IN) {
1040 1041
            ohci_copy_td(ohci, &td, ohci->usb_buf, ret,
                         DMA_DIRECTION_FROM_DEVICE);
P
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1042
#ifdef DEBUG_PACKET
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1043
            DPRINTF("  data:");
P
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1044
            for (i = 0; i < ret; i++)
P
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1045
                printf(" %.2x", ohci->usb_buf[i]);
M
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1046
            DPRINTF("\n");
P
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1047 1048
#endif
        } else {
1049
            ret = pktlen;
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1050 1051 1052 1053
        }
    }

    /* Writeback */
1054
    if (ret == pktlen || (dir == OHCI_TD_DIR_IN && ret >= 0 && flag_r)) {
P
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1055 1056 1057 1058 1059
        /* Transmission succeeded.  */
        if (ret == len) {
            td.cbp = 0;
        } else {
            if ((td.cbp & 0xfff) + ret > 0xfff) {
1060 1061 1062
                td.cbp = (td.be & ~0xfff) + ((td.cbp + ret) & 0xfff);
            } else {
                td.cbp += ret;
P
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            }
        }
        td.flags |= OHCI_TD_T1;
        td.flags ^= OHCI_TD_T0;
        OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_NOERROR);
        OHCI_SET_BM(td.flags, TD_EC, 0);

1070 1071 1072 1073 1074 1075
        if ((dir != OHCI_TD_DIR_IN) && (ret != len)) {
            /* Partial packet transfer: TD not ready to retire yet */
            goto exit_no_retire;
        }

        /* Setting ED_C is part of the TD retirement process */
P
pbrook 已提交
1076 1077 1078 1079 1080
        ed->head &= ~OHCI_ED_C;
        if (td.flags & OHCI_TD_T0)
            ed->head |= OHCI_ED_C;
    } else {
        if (ret >= 0) {
M
malc 已提交
1081
            DPRINTF("usb-ohci: Underrun\n");
P
pbrook 已提交
1082 1083 1084
            OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_DATAUNDERRUN);
        } else {
            switch (ret) {
H
Hans de Goede 已提交
1085
            case USB_RET_IOERROR:
P
pbrook 已提交
1086 1087 1088
            case USB_RET_NODEV:
                OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_DEVICENOTRESPONDING);
            case USB_RET_NAK:
M
malc 已提交
1089
                DPRINTF("usb-ohci: got NAK\n");
P
pbrook 已提交
1090 1091
                return 1;
            case USB_RET_STALL:
M
malc 已提交
1092
                DPRINTF("usb-ohci: got STALL\n");
P
pbrook 已提交
1093 1094 1095
                OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_STALL);
                break;
            case USB_RET_BABBLE:
M
malc 已提交
1096
                DPRINTF("usb-ohci: got BABBLE\n");
P
pbrook 已提交
1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116
                OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_DATAOVERRUN);
                break;
            default:
                fprintf(stderr, "usb-ohci: Bad device response %d\n", ret);
                OHCI_SET_BM(td.flags, TD_CC, OHCI_CC_UNDEXPETEDPID);
                OHCI_SET_BM(td.flags, TD_EC, 3);
                break;
            }
        }
        ed->head |= OHCI_ED_H;
    }

    /* Retire this TD */
    ed->head &= ~OHCI_DPTR_MASK;
    ed->head |= td.next & OHCI_DPTR_MASK;
    td.next = ohci->done;
    ohci->done = addr;
    i = OHCI_BM(td.flags, TD_DI);
    if (i < ohci->done_count)
        ohci->done_count = i;
1117
exit_no_retire:
A
aurel32 已提交
1118
    ohci_put_td(ohci, addr, &td);
P
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1119 1120 1121 1122
    return OHCI_BM(td.flags, TD_CC) != OHCI_CC_NOERROR;
}

/* Service an endpoint list.  Returns nonzero if active TD were found.  */
1123
static int ohci_service_ed_list(OHCIState *ohci, uint32_t head, int completion)
P
pbrook 已提交
1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135
{
    struct ohci_ed ed;
    uint32_t next_ed;
    uint32_t cur;
    int active;

    active = 0;

    if (head == 0)
        return 0;

    for (cur = head; cur; cur = next_ed) {
A
aurel32 已提交
1136
        if (!ohci_read_ed(ohci, cur, &ed)) {
P
pbrook 已提交
1137 1138 1139 1140 1141 1142
            fprintf(stderr, "usb-ohci: ED read error at %x\n", cur);
            return 0;
        }

        next_ed = ed.next & OHCI_DPTR_MASK;

P
pbrook 已提交
1143 1144 1145 1146 1147 1148 1149 1150
        if ((ed.head & OHCI_ED_H) || (ed.flags & OHCI_ED_K)) {
            uint32_t addr;
            /* Cancel pending packets for ED that have been paused.  */
            addr = ed.head & OHCI_DPTR_MASK;
            if (ohci->async_td && addr == ohci->async_td) {
                usb_cancel_packet(&ohci->usb_packet);
                ohci->async_td = 0;
            }
P
pbrook 已提交
1151
            continue;
P
pbrook 已提交
1152
        }
P
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1153 1154 1155

        while ((ed.head & OHCI_DPTR_MASK) != ed.tail) {
#ifdef DEBUG_PACKET
M
malc 已提交
1156
            DPRINTF("ED @ 0x%.8x fa=%u en=%u d=%u s=%u k=%u f=%u mps=%u "
P
pbrook 已提交
1157 1158 1159 1160 1161 1162 1163 1164 1165 1166
                    "h=%u c=%u\n  head=0x%.8x tailp=0x%.8x next=0x%.8x\n", cur,
                    OHCI_BM(ed.flags, ED_FA), OHCI_BM(ed.flags, ED_EN),
                    OHCI_BM(ed.flags, ED_D), (ed.flags & OHCI_ED_S)!= 0,
                    (ed.flags & OHCI_ED_K) != 0, (ed.flags & OHCI_ED_F) != 0,
                    OHCI_BM(ed.flags, ED_MPS), (ed.head & OHCI_ED_H) != 0,
                    (ed.head & OHCI_ED_C) != 0, ed.head & OHCI_DPTR_MASK,
                    ed.tail & OHCI_DPTR_MASK, ed.next & OHCI_DPTR_MASK);
#endif
            active = 1;

1167 1168 1169 1170 1171 1172 1173 1174
            if ((ed.flags & OHCI_ED_F) == 0) {
                if (ohci_service_td(ohci, &ed))
                    break;
            } else {
                /* Handle isochronous endpoints */
                if (ohci_service_iso_td(ohci, &ed, completion))
                    break;
            }
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        }

A
aurel32 已提交
1177
        ohci_put_ed(ohci, cur, &ed);
P
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1178 1179 1180 1181 1182 1183 1184 1185
    }

    return active;
}

/* Generate a SOF event, and set a timer for EOF */
static void ohci_sof(OHCIState *ohci)
{
1186
    ohci->sof_time = qemu_get_clock_ns(vm_clock);
P
pbrook 已提交
1187 1188 1189 1190
    qemu_mod_timer(ohci->eof_timer, ohci->sof_time + usb_frame_time);
    ohci_set_interrupt(ohci, OHCI_INTR_SF);
}

P
pbrook 已提交
1191
/* Process Control and Bulk lists.  */
1192
static void ohci_process_lists(OHCIState *ohci, int completion)
P
pbrook 已提交
1193 1194
{
    if ((ohci->ctl & OHCI_CTL_CLE) && (ohci->status & OHCI_STATUS_CLF)) {
1195 1196 1197 1198
        if (ohci->ctrl_cur && ohci->ctrl_cur != ohci->ctrl_head) {
            DPRINTF("usb-ohci: head %x, cur %x\n",
                    ohci->ctrl_head, ohci->ctrl_cur);
        }
1199
        if (!ohci_service_ed_list(ohci, ohci->ctrl_head, completion)) {
P
pbrook 已提交
1200 1201 1202 1203 1204 1205
            ohci->ctrl_cur = 0;
            ohci->status &= ~OHCI_STATUS_CLF;
        }
    }

    if ((ohci->ctl & OHCI_CTL_BLE) && (ohci->status & OHCI_STATUS_BLF)) {
1206
        if (!ohci_service_ed_list(ohci, ohci->bulk_head, completion)) {
P
pbrook 已提交
1207 1208 1209 1210 1211 1212
            ohci->bulk_cur = 0;
            ohci->status &= ~OHCI_STATUS_BLF;
        }
    }
}

P
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1213 1214 1215 1216 1217 1218
/* Do frame processing on frame boundary */
static void ohci_frame_boundary(void *opaque)
{
    OHCIState *ohci = opaque;
    struct ohci_hcca hcca;

A
aurel32 已提交
1219
    ohci_read_hcca(ohci, ohci->hcca, &hcca);
P
pbrook 已提交
1220 1221 1222 1223 1224 1225

    /* Process all the lists at the end of the frame */
    if (ohci->ctl & OHCI_CTL_PLE) {
        int n;

        n = ohci->frame_number & 0x1f;
1226
        ohci_service_ed_list(ohci, le32_to_cpu(hcca.intr[n]), 0);
P
pbrook 已提交
1227 1228
    }

P
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1229 1230 1231 1232 1233
    /* Cancel all pending packets if either of the lists has been disabled.  */
    if (ohci->async_td &&
        ohci->old_ctl & (~ohci->ctl) & (OHCI_CTL_BLE | OHCI_CTL_CLE)) {
        usb_cancel_packet(&ohci->usb_packet);
        ohci->async_td = 0;
P
pbrook 已提交
1234
    }
P
pbrook 已提交
1235
    ohci->old_ctl = ohci->ctl;
1236
    ohci_process_lists(ohci, 0);
P
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1237 1238 1239 1240

    /* Frame boundary, so do EOF stuf here */
    ohci->frt = ohci->fit;

M
Michael Buesch 已提交
1241
    /* Increment frame number and take care of endianness. */
P
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1242
    ohci->frame_number = (ohci->frame_number + 1) & 0xffff;
M
Michael Buesch 已提交
1243
    hcca.frame = cpu_to_le16(ohci->frame_number);
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1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262

    if (ohci->done_count == 0 && !(ohci->intr_status & OHCI_INTR_WD)) {
        if (!ohci->done)
            abort();
        if (ohci->intr & ohci->intr_status)
            ohci->done |= 1;
        hcca.done = cpu_to_le32(ohci->done);
        ohci->done = 0;
        ohci->done_count = 7;
        ohci_set_interrupt(ohci, OHCI_INTR_WD);
    }

    if (ohci->done_count != 7 && ohci->done_count != 0)
        ohci->done_count--;

    /* Do SOF stuff here */
    ohci_sof(ohci);

    /* Writeback HCCA */
A
aurel32 已提交
1263
    ohci_put_hcca(ohci, ohci->hcca, &hcca);
P
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1264 1265 1266 1267 1268 1269 1270
}

/* Start sending SOF tokens across the USB bus, lists are processed in
 * next frame
 */
static int ohci_bus_start(OHCIState *ohci)
{
1271
    ohci->eof_timer = qemu_new_timer_ns(vm_clock,
P
pbrook 已提交
1272 1273 1274 1275
                    ohci_frame_boundary,
                    ohci);

    if (ohci->eof_timer == NULL) {
1276
        fprintf(stderr, "usb-ohci: %s: qemu_new_timer_ns failed\n", ohci->name);
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pbrook 已提交
1277 1278 1279 1280
        /* TODO: Signal unrecoverable error */
        return 0;
    }

M
malc 已提交
1281
    DPRINTF("usb-ohci: %s: USB Operational\n", ohci->name);
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1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292

    ohci_sof(ohci);

    return 1;
}

/* Stop sending SOF tokens on the bus */
static void ohci_bus_stop(OHCIState *ohci)
{
    if (ohci->eof_timer)
        qemu_del_timer(ohci->eof_timer);
1293
    ohci->eof_timer = NULL;
P
pbrook 已提交
1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
}

/* Sets a flag in a port status register but only set it if the port is
 * connected, if not set ConnectStatusChange flag. If flag is enabled
 * return 1.
 */
static int ohci_port_set_if_connected(OHCIState *ohci, int i, uint32_t val)
{
    int ret = 1;

    /* writing a 0 has no effect */
    if (val == 0)
        return 0;

    /* If CurrentConnectStatus is cleared we set
     * ConnectStatusChange
     */
    if (!(ohci->rhport[i].ctrl & OHCI_PORT_CCS)) {
        ohci->rhport[i].ctrl |= OHCI_PORT_CSC;
        if (ohci->rhstatus & OHCI_RHS_DRWE) {
            /* TODO: CSC is a wakeup event */
        }
        return 0;
    }

    if (ohci->rhport[i].ctrl & val)
        ret = 0;

    /* set the bit */
    ohci->rhport[i].ctrl |= val;

    return ret;
}

/* Set the frame interval - frame interval toggle is manipulated by the hcd only */
static void ohci_set_frame_interval(OHCIState *ohci, uint16_t val)
{
    val &= OHCI_FMI_FI;

    if (val != ohci->fi) {
M
malc 已提交
1334
        DPRINTF("usb-ohci: %s: FrameInterval = 0x%x (%u)\n",
1335
            ohci->name, ohci->fi, ohci->fi);
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1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372
    }

    ohci->fi = val;
}

static void ohci_port_power(OHCIState *ohci, int i, int p)
{
    if (p) {
        ohci->rhport[i].ctrl |= OHCI_PORT_PPS;
    } else {
        ohci->rhport[i].ctrl &= ~(OHCI_PORT_PPS|
                    OHCI_PORT_CCS|
                    OHCI_PORT_PSS|
                    OHCI_PORT_PRS);
    }
}

/* Set HcControlRegister */
static void ohci_set_ctl(OHCIState *ohci, uint32_t val)
{
    uint32_t old_state;
    uint32_t new_state;

    old_state = ohci->ctl & OHCI_CTL_HCFS;
    ohci->ctl = val;
    new_state = ohci->ctl & OHCI_CTL_HCFS;

    /* no state change */
    if (old_state == new_state)
        return;

    switch (new_state) {
    case OHCI_USB_OPERATIONAL:
        ohci_bus_start(ohci);
        break;
    case OHCI_USB_SUSPEND:
        ohci_bus_stop(ohci);
M
malc 已提交
1373
        DPRINTF("usb-ohci: %s: USB Suspended\n", ohci->name);
P
pbrook 已提交
1374 1375
        break;
    case OHCI_USB_RESUME:
M
malc 已提交
1376
        DPRINTF("usb-ohci: %s: USB Resume\n", ohci->name);
P
pbrook 已提交
1377 1378
        break;
    case OHCI_USB_RESET:
1379
        ohci_reset(ohci);
M
malc 已提交
1380
        DPRINTF("usb-ohci: %s: USB Reset\n", ohci->name);
P
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1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395
        break;
    }
}

static uint32_t ohci_get_frame_remaining(OHCIState *ohci)
{
    uint16_t fr;
    int64_t tks;

    if ((ohci->ctl & OHCI_CTL_HCFS) != OHCI_USB_OPERATIONAL)
        return (ohci->frt << 31);

    /* Being in USB operational state guarnatees sof_time was
     * set already.
     */
1396
    tks = qemu_get_clock_ns(vm_clock) - ohci->sof_time;
P
pbrook 已提交
1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424

    /* avoid muldiv if possible */
    if (tks >= usb_frame_time)
        return (ohci->frt << 31);

    tks = muldiv64(1, tks, usb_bit_time);
    fr = (uint16_t)(ohci->fi - tks);

    return (ohci->frt << 31) | fr;
}


/* Set root hub status */
static void ohci_set_hub_status(OHCIState *ohci, uint32_t val)
{
    uint32_t old_state;

    old_state = ohci->rhstatus;

    /* write 1 to clear OCIC */
    if (val & OHCI_RHS_OCIC)
        ohci->rhstatus &= ~OHCI_RHS_OCIC;

    if (val & OHCI_RHS_LPS) {
        int i;

        for (i = 0; i < ohci->num_ports; i++)
            ohci_port_power(ohci, i, 0);
M
malc 已提交
1425
        DPRINTF("usb-ohci: powered down all ports\n");
P
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1426 1427 1428 1429 1430 1431 1432
    }

    if (val & OHCI_RHS_LPSC) {
        int i;

        for (i = 0; i < ohci->num_ports; i++)
            ohci_port_power(ohci, i, 1);
M
malc 已提交
1433
        DPRINTF("usb-ohci: powered up all ports\n");
P
pbrook 已提交
1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463
    }

    if (val & OHCI_RHS_DRWE)
        ohci->rhstatus |= OHCI_RHS_DRWE;

    if (val & OHCI_RHS_CRWE)
        ohci->rhstatus &= ~OHCI_RHS_DRWE;

    if (old_state != ohci->rhstatus)
        ohci_set_interrupt(ohci, OHCI_INTR_RHSC);
}

/* Set root hub port status */
static void ohci_port_set_status(OHCIState *ohci, int portnum, uint32_t val)
{
    uint32_t old_state;
    OHCIPort *port;

    port = &ohci->rhport[portnum];
    old_state = port->ctrl;

    /* Write to clear CSC, PESC, PSSC, OCIC, PRSC */
    if (val & OHCI_PORT_WTC)
        port->ctrl &= ~(val & OHCI_PORT_WTC);

    if (val & OHCI_PORT_CCS)
        port->ctrl &= ~OHCI_PORT_PES;

    ohci_port_set_if_connected(ohci, portnum, val & OHCI_PORT_PES);

1464
    if (ohci_port_set_if_connected(ohci, portnum, val & OHCI_PORT_PSS)) {
M
malc 已提交
1465
        DPRINTF("usb-ohci: port %d: SUSPEND\n", portnum);
1466
    }
P
pbrook 已提交
1467 1468

    if (ohci_port_set_if_connected(ohci, portnum, val & OHCI_PORT_PRS)) {
M
malc 已提交
1469
        DPRINTF("usb-ohci: port %d: RESET\n", portnum);
G
Gerd Hoffmann 已提交
1470
        usb_device_reset(port->port.dev);
P
pbrook 已提交
1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487
        port->ctrl &= ~OHCI_PORT_PRS;
        /* ??? Should this also set OHCI_PORT_PESC.  */
        port->ctrl |= OHCI_PORT_PES | OHCI_PORT_PRSC;
    }

    /* Invert order here to ensure in ambiguous case, device is
     * powered up...
     */
    if (val & OHCI_PORT_LSDA)
        ohci_port_power(ohci, portnum, 0);
    if (val & OHCI_PORT_PPS)
        ohci_port_power(ohci, portnum, 1);

    if (old_state != port->ctrl)
        ohci_set_interrupt(ohci, OHCI_INTR_RHSC);
}

A
Avi Kivity 已提交
1488
static uint64_t ohci_mem_read(void *opaque,
A
Avi Kivity 已提交
1489
                              hwaddr addr,
A
Avi Kivity 已提交
1490
                              unsigned size)
P
pbrook 已提交
1491
{
A
Avi Kivity 已提交
1492
    OHCIState *ohci = opaque;
1493
    uint32_t retval;
P
pbrook 已提交
1494 1495 1496 1497 1498

    /* Only aligned reads are allowed on OHCI */
    if (addr & 3) {
        fprintf(stderr, "usb-ohci: Mis-aligned read\n");
        return 0xffffffff;
1499
    } else if (addr >= 0x54 && addr < 0x54 + ohci->num_ports * 4) {
P
pbrook 已提交
1500
        /* HcRhPortStatus */
1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 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 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605
        retval = ohci->rhport[(addr - 0x54) >> 2].ctrl | OHCI_PORT_PPS;
    } else {
        switch (addr >> 2) {
        case 0: /* HcRevision */
            retval = 0x10;
            break;

        case 1: /* HcControl */
            retval = ohci->ctl;
            break;

        case 2: /* HcCommandStatus */
            retval = ohci->status;
            break;

        case 3: /* HcInterruptStatus */
            retval = ohci->intr_status;
            break;

        case 4: /* HcInterruptEnable */
        case 5: /* HcInterruptDisable */
            retval = ohci->intr;
            break;

        case 6: /* HcHCCA */
            retval = ohci->hcca;
            break;

        case 7: /* HcPeriodCurrentED */
            retval = ohci->per_cur;
            break;

        case 8: /* HcControlHeadED */
            retval = ohci->ctrl_head;
            break;

        case 9: /* HcControlCurrentED */
            retval = ohci->ctrl_cur;
            break;

        case 10: /* HcBulkHeadED */
            retval = ohci->bulk_head;
            break;

        case 11: /* HcBulkCurrentED */
            retval = ohci->bulk_cur;
            break;

        case 12: /* HcDoneHead */
            retval = ohci->done;
            break;

        case 13: /* HcFmInterretval */
            retval = (ohci->fit << 31) | (ohci->fsmps << 16) | (ohci->fi);
            break;

        case 14: /* HcFmRemaining */
            retval = ohci_get_frame_remaining(ohci);
            break;

        case 15: /* HcFmNumber */
            retval = ohci->frame_number;
            break;

        case 16: /* HcPeriodicStart */
            retval = ohci->pstart;
            break;

        case 17: /* HcLSThreshold */
            retval = ohci->lst;
            break;

        case 18: /* HcRhDescriptorA */
            retval = ohci->rhdesc_a;
            break;

        case 19: /* HcRhDescriptorB */
            retval = ohci->rhdesc_b;
            break;

        case 20: /* HcRhStatus */
            retval = ohci->rhstatus;
            break;

        /* PXA27x specific registers */
        case 24: /* HcStatus */
            retval = ohci->hstatus & ohci->hmask;
            break;

        case 25: /* HcHReset */
            retval = ohci->hreset;
            break;

        case 26: /* HcHInterruptEnable */
            retval = ohci->hmask;
            break;

        case 27: /* HcHInterruptTest */
            retval = ohci->htest;
            break;

        default:
            fprintf(stderr, "ohci_read: Bad offset %x\n", (int)addr);
            retval = 0xffffffff;
        }
P
pbrook 已提交
1606 1607
    }

1608
    return retval;
P
pbrook 已提交
1609 1610
}

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static void ohci_mem_write(void *opaque,
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                           hwaddr addr,
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                           uint64_t val,
                           unsigned size)
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{
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    OHCIState *ohci = opaque;
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    /* Only aligned reads are allowed on OHCI */
    if (addr & 3) {
        fprintf(stderr, "usb-ohci: Mis-aligned write\n");
        return;
    }

    if (addr >= 0x54 && addr < 0x54 + ohci->num_ports * 4) {
        /* HcRhPortStatus */
        ohci_port_set_status(ohci, (addr - 0x54) >> 2, val);
        return;
    }

    switch (addr >> 2) {
    case 1: /* HcControl */
        ohci_set_ctl(ohci, val);
        break;

    case 2: /* HcCommandStatus */
        /* SOC is read-only */
        val = (val & ~OHCI_STATUS_SOC);

        /* Bits written as '0' remain unchanged in the register */
        ohci->status |= val;

        if (ohci->status & OHCI_STATUS_HCR)
            ohci_reset(ohci);
        break;

    case 3: /* HcInterruptStatus */
        ohci->intr_status &= ~val;
        ohci_intr_update(ohci);
        break;

    case 4: /* HcInterruptEnable */
        ohci->intr |= val;
        ohci_intr_update(ohci);
        break;

    case 5: /* HcInterruptDisable */
        ohci->intr &= ~val;
        ohci_intr_update(ohci);
        break;

    case 6: /* HcHCCA */
        ohci->hcca = val & OHCI_HCCA_MASK;
        break;

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    case 7: /* HcPeriodCurrentED */
        /* Ignore writes to this read-only register, Linux does them */
        break;

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    case 8: /* HcControlHeadED */
        ohci->ctrl_head = val & OHCI_EDPTR_MASK;
        break;

    case 9: /* HcControlCurrentED */
        ohci->ctrl_cur = val & OHCI_EDPTR_MASK;
        break;

    case 10: /* HcBulkHeadED */
        ohci->bulk_head = val & OHCI_EDPTR_MASK;
        break;

    case 11: /* HcBulkCurrentED */
        ohci->bulk_cur = val & OHCI_EDPTR_MASK;
        break;

    case 13: /* HcFmInterval */
        ohci->fsmps = (val & OHCI_FMI_FSMPS) >> 16;
        ohci->fit = (val & OHCI_FMI_FIT) >> 31;
        ohci_set_frame_interval(ohci, val);
        break;

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    case 15: /* HcFmNumber */
        break;

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    case 16: /* HcPeriodicStart */
        ohci->pstart = val & 0xffff;
        break;

    case 17: /* HcLSThreshold */
        ohci->lst = val & 0xffff;
        break;

    case 18: /* HcRhDescriptorA */
        ohci->rhdesc_a &= ~OHCI_RHA_RW_MASK;
        ohci->rhdesc_a |= val & OHCI_RHA_RW_MASK;
        break;

    case 19: /* HcRhDescriptorB */
        break;

    case 20: /* HcRhStatus */
        ohci_set_hub_status(ohci, val);
        break;

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    /* PXA27x specific registers */
    case 24: /* HcStatus */
        ohci->hstatus &= ~(val & ohci->hmask);

    case 25: /* HcHReset */
        ohci->hreset = val & ~OHCI_HRESET_FSBIR;
        if (val & OHCI_HRESET_FSBIR)
            ohci_reset(ohci);
        break;

    case 26: /* HcHInterruptEnable */
        ohci->hmask = val;
        break;

    case 27: /* HcHInterruptTest */
        ohci->htest = val;
        break;

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    default:
        fprintf(stderr, "ohci_write: Bad offset %x\n", (int)addr);
        break;
    }
}

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static void ohci_async_cancel_device(OHCIState *ohci, USBDevice *dev)
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{
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    if (ohci->async_td &&
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        usb_packet_is_inflight(&ohci->usb_packet) &&
        ohci->usb_packet.ep->dev == dev) {
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        usb_cancel_packet(&ohci->usb_packet);
        ohci->async_td = 0;
    }
}

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static const MemoryRegionOps ohci_mem_ops = {
    .read = ohci_mem_read,
    .write = ohci_mem_write,
    .endianness = DEVICE_LITTLE_ENDIAN,
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};

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static USBPortOps ohci_port_ops = {
    .attach = ohci_attach,
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    .detach = ohci_detach,
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    .child_detach = ohci_child_detach,
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    .wakeup = ohci_wakeup,
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    .complete = ohci_async_complete_packet,
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};

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static USBBusOps ohci_bus_ops = {
};

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static int usb_ohci_init(OHCIState *ohci, DeviceState *dev,
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                         int num_ports, dma_addr_t localmem_base,
                         char *masterbus, uint32_t firstport,
                         DMAContext *dma)
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{
    int i;

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    ohci->dma = dma;

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    if (usb_frame_time == 0) {
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#ifdef OHCI_TIME_WARP
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        usb_frame_time = get_ticks_per_sec();
        usb_bit_time = muldiv64(1, get_ticks_per_sec(), USB_HZ/1000);
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#else
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        usb_frame_time = muldiv64(1, get_ticks_per_sec(), 1000);
        if (get_ticks_per_sec() >= USB_HZ) {
            usb_bit_time = muldiv64(1, get_ticks_per_sec(), USB_HZ);
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        } else {
            usb_bit_time = 1;
        }
#endif
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        DPRINTF("usb-ohci: usb_bit_time=%" PRId64 " usb_frame_time=%" PRId64 "\n",
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                usb_frame_time, usb_bit_time);
    }

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    ohci->num_ports = num_ports;
    if (masterbus) {
        USBPort *ports[OHCI_MAX_PORTS];
        for(i = 0; i < num_ports; i++) {
            ports[i] = &ohci->rhport[i].port;
        }
        if (usb_register_companion(masterbus, ports, num_ports,
                firstport, ohci, &ohci_port_ops,
                USB_SPEED_MASK_LOW | USB_SPEED_MASK_FULL) != 0) {
            return -1;
        }
    } else {
        usb_bus_new(&ohci->bus, &ohci_bus_ops, dev);
        for (i = 0; i < num_ports; i++) {
            usb_register_port(&ohci->bus, &ohci->rhport[i].port,
                              ohci, i, &ohci_port_ops,
                              USB_SPEED_MASK_LOW | USB_SPEED_MASK_FULL);
        }
    }

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    memory_region_init_io(&ohci->mem, &ohci_mem_ops, ohci, "ohci", 256);
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    ohci->localmem_base = localmem_base;
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    ohci->name = object_get_typename(OBJECT(dev));
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    usb_packet_init(&ohci->usb_packet);
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    ohci->async_td = 0;
1817
    qemu_register_reset(ohci_reset, ohci);
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    return 0;
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}

typedef struct {
    PCIDevice pci_dev;
    OHCIState state;
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    char *masterbus;
    uint32_t num_ports;
    uint32_t firstport;
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} OHCIPCIState;

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static int usb_ohci_initfn_pci(struct PCIDevice *dev)
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{
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    OHCIPCIState *ohci = DO_UPCAST(OHCIPCIState, pci_dev, dev);
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    ohci->pci_dev.config[PCI_CLASS_PROG] = 0x10; /* OHCI */
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    ohci->pci_dev.config[PCI_INTERRUPT_PIN] = 0x01; /* interrupt pin A */
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    if (usb_ohci_init(&ohci->state, &dev->qdev, ohci->num_ports, 0,
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                      ohci->masterbus, ohci->firstport,
                      pci_dma_context(dev)) != 0) {
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        return -1;
    }
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    ohci->state.irq = ohci->pci_dev.irq[0];
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1844
    /* TODO: avoid cast below by using dev */
1845
    pci_register_bar(&ohci->pci_dev, 0, 0, &ohci->state.mem);
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    return 0;
}

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typedef struct {
    SysBusDevice busdev;
    OHCIState ohci;
    uint32_t num_ports;
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    dma_addr_t dma_offset;
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} OHCISysBusState;
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static int ohci_init_pxa(SysBusDevice *dev)
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{
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    OHCISysBusState *s = FROM_SYSBUS(OHCISysBusState, dev);
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1860
    /* Cannot fail as we pass NULL for masterbus */
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    usb_ohci_init(&s->ohci, &dev->qdev, s->num_ports, s->dma_offset, NULL, 0,
1862
                  &dma_context_memory);
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    sysbus_init_irq(dev, &s->ohci.irq);
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    sysbus_init_mmio(dev, &s->ohci.mem);
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    return 0;
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}

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static Property ohci_pci_properties[] = {
    DEFINE_PROP_STRING("masterbus", OHCIPCIState, masterbus),
    DEFINE_PROP_UINT32("num-ports", OHCIPCIState, num_ports, 3),
    DEFINE_PROP_UINT32("firstport", OHCIPCIState, firstport, 0),
    DEFINE_PROP_END_OF_LIST(),
};

static void ohci_pci_class_init(ObjectClass *klass, void *data)
{
1878
    DeviceClass *dc = DEVICE_CLASS(klass);
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    PCIDeviceClass *k = PCI_DEVICE_CLASS(klass);

    k->init = usb_ohci_initfn_pci;
    k->vendor_id = PCI_VENDOR_ID_APPLE;
    k->device_id = PCI_DEVICE_ID_APPLE_IPID_USB;
    k->class_id = PCI_CLASS_SERIAL_USB;
1885
    k->no_hotplug = 1;
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    dc->desc = "Apple USB Controller";
    dc->props = ohci_pci_properties;
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}

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static TypeInfo ohci_pci_info = {
    .name          = "pci-ohci",
    .parent        = TYPE_PCI_DEVICE,
    .instance_size = sizeof(OHCIPCIState),
    .class_init    = ohci_pci_class_init,
};

static Property ohci_sysbus_properties[] = {
    DEFINE_PROP_UINT32("num-ports", OHCISysBusState, num_ports, 3),
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    DEFINE_PROP_DMAADDR("dma-offset", OHCISysBusState, dma_offset, 3),
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    DEFINE_PROP_END_OF_LIST(),
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};

1903 1904
static void ohci_sysbus_class_init(ObjectClass *klass, void *data)
{
1905
    DeviceClass *dc = DEVICE_CLASS(klass);
1906 1907 1908
    SysBusDeviceClass *sbc = SYS_BUS_DEVICE_CLASS(klass);

    sbc->init = ohci_init_pxa;
1909 1910
    dc->desc = "OHCI USB Controller";
    dc->props = ohci_sysbus_properties;
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}

1913 1914 1915 1916 1917
static TypeInfo ohci_sysbus_info = {
    .name          = "sysbus-ohci",
    .parent        = TYPE_SYS_BUS_DEVICE,
    .instance_size = sizeof(OHCISysBusState),
    .class_init    = ohci_sysbus_class_init,
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};

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static void ohci_register_types(void)
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{
1922 1923
    type_register_static(&ohci_pci_info);
    type_register_static(&ohci_sysbus_info);
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}
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type_init(ohci_register_types)