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/*
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 * QEMU USB EHCI Emulation
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 *
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 * Copyright(c) 2008  Emutex Ltd. (address@hidden)
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 *
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 * EHCI project was started by Mark Burkley, with contributions by
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 * Niels de Vos.  David S. Ahern continued working on it.  Kevin Wolf,
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 * Jan Kiszka and Vincent Palatin contributed bugfixes.
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 *
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 *
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 * This library is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2 of the License, or(at your option) any later version.
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 *
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 * This library is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, see <http://www.gnu.org/licenses/>.
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 *
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 * TODO:
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 *  o Downstream port handoff
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 */
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#include "hw.h"
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#include "qemu-timer.h"
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#include "usb.h"
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#include "pci.h"
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#include "monitor.h"
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#include "trace.h"
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#define EHCI_DEBUG   0
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#if EHCI_DEBUG
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#define DPRINTF printf
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#else
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#define DPRINTF(...)
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#endif
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/* internal processing - reset HC to try and recover */
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#define USB_RET_PROCERR   (-99)
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#define MMIO_SIZE        0x1000
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/* Capability Registers Base Address - section 2.2 */
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#define CAPREGBASE       0x0000
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#define CAPLENGTH        CAPREGBASE + 0x0000  // 1-byte, 0x0001 reserved
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#define HCIVERSION       CAPREGBASE + 0x0002  // 2-bytes, i/f version #
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#define HCSPARAMS        CAPREGBASE + 0x0004  // 4-bytes, structural params
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#define HCCPARAMS        CAPREGBASE + 0x0008  // 4-bytes, capability params
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#define EECP             HCCPARAMS + 1
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#define HCSPPORTROUTE1   CAPREGBASE + 0x000c
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#define HCSPPORTROUTE2   CAPREGBASE + 0x0010
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#define OPREGBASE        0x0020        // Operational Registers Base Address
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#define USBCMD           OPREGBASE + 0x0000
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#define USBCMD_RUNSTOP   (1 << 0)      // run / Stop
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#define USBCMD_HCRESET   (1 << 1)      // HC Reset
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#define USBCMD_FLS       (3 << 2)      // Frame List Size
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#define USBCMD_FLS_SH    2             // Frame List Size Shift
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#define USBCMD_PSE       (1 << 4)      // Periodic Schedule Enable
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#define USBCMD_ASE       (1 << 5)      // Asynch Schedule Enable
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#define USBCMD_IAAD      (1 << 6)      // Int Asynch Advance Doorbell
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#define USBCMD_LHCR      (1 << 7)      // Light Host Controller Reset
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#define USBCMD_ASPMC     (3 << 8)      // Async Sched Park Mode Count
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#define USBCMD_ASPME     (1 << 11)     // Async Sched Park Mode Enable
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#define USBCMD_ITC       (0x7f << 16)  // Int Threshold Control
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#define USBCMD_ITC_SH    16            // Int Threshold Control Shift
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#define USBSTS           OPREGBASE + 0x0004
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#define USBSTS_RO_MASK   0x0000003f
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#define USBSTS_INT       (1 << 0)      // USB Interrupt
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#define USBSTS_ERRINT    (1 << 1)      // Error Interrupt
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#define USBSTS_PCD       (1 << 2)      // Port Change Detect
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#define USBSTS_FLR       (1 << 3)      // Frame List Rollover
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#define USBSTS_HSE       (1 << 4)      // Host System Error
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#define USBSTS_IAA       (1 << 5)      // Interrupt on Async Advance
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#define USBSTS_HALT      (1 << 12)     // HC Halted
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#define USBSTS_REC       (1 << 13)     // Reclamation
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#define USBSTS_PSS       (1 << 14)     // Periodic Schedule Status
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#define USBSTS_ASS       (1 << 15)     // Asynchronous Schedule Status
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/*
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 *  Interrupt enable bits correspond to the interrupt active bits in USBSTS
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 *  so no need to redefine here.
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 */
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#define USBINTR              OPREGBASE + 0x0008
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#define USBINTR_MASK         0x0000003f
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#define FRINDEX              OPREGBASE + 0x000c
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#define CTRLDSSEGMENT        OPREGBASE + 0x0010
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#define PERIODICLISTBASE     OPREGBASE + 0x0014
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#define ASYNCLISTADDR        OPREGBASE + 0x0018
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#define ASYNCLISTADDR_MASK   0xffffffe0
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#define CONFIGFLAG           OPREGBASE + 0x0040
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#define PORTSC               (OPREGBASE + 0x0044)
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#define PORTSC_BEGIN         PORTSC
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#define PORTSC_END           (PORTSC + 4 * NB_PORTS)
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/*
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 * Bits that are reserverd or are read-only are masked out of values
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 * written to us by software
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 */
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#define PORTSC_RO_MASK       0x007021c5
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#define PORTSC_RWC_MASK      0x0000002a
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#define PORTSC_WKOC_E        (1 << 22)    // Wake on Over Current Enable
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#define PORTSC_WKDS_E        (1 << 21)    // Wake on Disconnect Enable
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#define PORTSC_WKCN_E        (1 << 20)    // Wake on Connect Enable
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#define PORTSC_PTC           (15 << 16)   // Port Test Control
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#define PORTSC_PTC_SH        16           // Port Test Control shift
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#define PORTSC_PIC           (3 << 14)    // Port Indicator Control
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#define PORTSC_PIC_SH        14           // Port Indicator Control Shift
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#define PORTSC_POWNER        (1 << 13)    // Port Owner
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#define PORTSC_PPOWER        (1 << 12)    // Port Power
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#define PORTSC_LINESTAT      (3 << 10)    // Port Line Status
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#define PORTSC_LINESTAT_SH   10           // Port Line Status Shift
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#define PORTSC_PRESET        (1 << 8)     // Port Reset
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#define PORTSC_SUSPEND       (1 << 7)     // Port Suspend
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#define PORTSC_FPRES         (1 << 6)     // Force Port Resume
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#define PORTSC_OCC           (1 << 5)     // Over Current Change
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#define PORTSC_OCA           (1 << 4)     // Over Current Active
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#define PORTSC_PEDC          (1 << 3)     // Port Enable/Disable Change
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#define PORTSC_PED           (1 << 2)     // Port Enable/Disable
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#define PORTSC_CSC           (1 << 1)     // Connect Status Change
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#define PORTSC_CONNECT       (1 << 0)     // Current Connect Status
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#define FRAME_TIMER_FREQ 1000
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#define FRAME_TIMER_USEC (1000000 / FRAME_TIMER_FREQ)
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#define NB_MAXINTRATE    8        // Max rate at which controller issues ints
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#define NB_PORTS         4        // Number of downstream ports
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#define BUFF_SIZE        5*4096   // Max bytes to transfer per transaction
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#define MAX_ITERATIONS   20       // Max number of QH before we break the loop
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#define MAX_QH           100      // Max allowable queue heads in a chain
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/*  Internal periodic / asynchronous schedule state machine states
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 */
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typedef enum {
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    EST_INACTIVE = 1000,
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    EST_ACTIVE,
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    EST_EXECUTING,
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    EST_SLEEPING,
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    /*  The following states are internal to the state machine function
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    */
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    EST_WAITLISTHEAD,
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    EST_FETCHENTRY,
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    EST_FETCHQH,
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    EST_FETCHITD,
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    EST_ADVANCEQUEUE,
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    EST_FETCHQTD,
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    EST_EXECUTE,
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    EST_WRITEBACK,
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    EST_HORIZONTALQH
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} EHCI_STATES;
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/* macros for accessing fields within next link pointer entry */
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#define NLPTR_GET(x)             ((x) & 0xffffffe0)
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#define NLPTR_TYPE_GET(x)        (((x) >> 1) & 3)
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#define NLPTR_TBIT(x)            ((x) & 1)  // 1=invalid, 0=valid
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/* link pointer types */
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#define NLPTR_TYPE_ITD           0     // isoc xfer descriptor
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#define NLPTR_TYPE_QH            1     // queue head
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#define NLPTR_TYPE_STITD         2     // split xaction, isoc xfer descriptor
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#define NLPTR_TYPE_FSTN          3     // frame span traversal node
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/*  EHCI spec version 1.0 Section 3.3
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 */
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typedef struct EHCIitd {
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    uint32_t next;
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    uint32_t transact[8];
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#define ITD_XACT_ACTIVE          (1 << 31)
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#define ITD_XACT_DBERROR         (1 << 30)
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#define ITD_XACT_BABBLE          (1 << 29)
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#define ITD_XACT_XACTERR         (1 << 28)
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#define ITD_XACT_LENGTH_MASK     0x0fff0000
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#define ITD_XACT_LENGTH_SH       16
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#define ITD_XACT_IOC             (1 << 15)
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#define ITD_XACT_PGSEL_MASK      0x00007000
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#define ITD_XACT_PGSEL_SH        12
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#define ITD_XACT_OFFSET_MASK     0x00000fff
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    uint32_t bufptr[7];
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#define ITD_BUFPTR_MASK          0xfffff000
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#define ITD_BUFPTR_SH            12
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#define ITD_BUFPTR_EP_MASK       0x00000f00
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#define ITD_BUFPTR_EP_SH         8
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#define ITD_BUFPTR_DEVADDR_MASK  0x0000007f
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#define ITD_BUFPTR_DEVADDR_SH    0
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#define ITD_BUFPTR_DIRECTION     (1 << 11)
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#define ITD_BUFPTR_MAXPKT_MASK   0x000007ff
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#define ITD_BUFPTR_MAXPKT_SH     0
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#define ITD_BUFPTR_MULT_MASK     0x00000003
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#define ITD_BUFPTR_MULT_SH       0
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} EHCIitd;
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/*  EHCI spec version 1.0 Section 3.4
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 */
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typedef struct EHCIsitd {
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    uint32_t next;                  // Standard next link pointer
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    uint32_t epchar;
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#define SITD_EPCHAR_IO              (1 << 31)
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#define SITD_EPCHAR_PORTNUM_MASK    0x7f000000
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#define SITD_EPCHAR_PORTNUM_SH      24
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#define SITD_EPCHAR_HUBADD_MASK     0x007f0000
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#define SITD_EPCHAR_HUBADDR_SH      16
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#define SITD_EPCHAR_EPNUM_MASK      0x00000f00
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#define SITD_EPCHAR_EPNUM_SH        8
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#define SITD_EPCHAR_DEVADDR_MASK    0x0000007f
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    uint32_t uframe;
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#define SITD_UFRAME_CMASK_MASK      0x0000ff00
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#define SITD_UFRAME_CMASK_SH        8
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#define SITD_UFRAME_SMASK_MASK      0x000000ff
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    uint32_t results;
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#define SITD_RESULTS_IOC              (1 << 31)
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#define SITD_RESULTS_PGSEL            (1 << 30)
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#define SITD_RESULTS_TBYTES_MASK      0x03ff0000
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#define SITD_RESULTS_TYBYTES_SH       16
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#define SITD_RESULTS_CPROGMASK_MASK   0x0000ff00
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#define SITD_RESULTS_CPROGMASK_SH     8
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#define SITD_RESULTS_ACTIVE           (1 << 7)
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#define SITD_RESULTS_ERR              (1 << 6)
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#define SITD_RESULTS_DBERR            (1 << 5)
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#define SITD_RESULTS_BABBLE           (1 << 4)
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#define SITD_RESULTS_XACTERR          (1 << 3)
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#define SITD_RESULTS_MISSEDUF         (1 << 2)
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#define SITD_RESULTS_SPLITXSTATE      (1 << 1)
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    uint32_t bufptr[2];
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#define SITD_BUFPTR_MASK              0xfffff000
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#define SITD_BUFPTR_CURROFF_MASK      0x00000fff
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#define SITD_BUFPTR_TPOS_MASK         0x00000018
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#define SITD_BUFPTR_TPOS_SH           3
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#define SITD_BUFPTR_TCNT_MASK         0x00000007
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    uint32_t backptr;                 // Standard next link pointer
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} EHCIsitd;
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/*  EHCI spec version 1.0 Section 3.5
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 */
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typedef struct EHCIqtd {
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    uint32_t next;                    // Standard next link pointer
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    uint32_t altnext;                 // Standard next link pointer
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    uint32_t token;
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#define QTD_TOKEN_DTOGGLE             (1 << 31)
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#define QTD_TOKEN_TBYTES_MASK         0x7fff0000
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#define QTD_TOKEN_TBYTES_SH           16
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#define QTD_TOKEN_IOC                 (1 << 15)
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#define QTD_TOKEN_CPAGE_MASK          0x00007000
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#define QTD_TOKEN_CPAGE_SH            12
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#define QTD_TOKEN_CERR_MASK           0x00000c00
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#define QTD_TOKEN_CERR_SH             10
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#define QTD_TOKEN_PID_MASK            0x00000300
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#define QTD_TOKEN_PID_SH              8
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#define QTD_TOKEN_ACTIVE              (1 << 7)
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#define QTD_TOKEN_HALT                (1 << 6)
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#define QTD_TOKEN_DBERR               (1 << 5)
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#define QTD_TOKEN_BABBLE              (1 << 4)
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#define QTD_TOKEN_XACTERR             (1 << 3)
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#define QTD_TOKEN_MISSEDUF            (1 << 2)
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#define QTD_TOKEN_SPLITXSTATE         (1 << 1)
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#define QTD_TOKEN_PING                (1 << 0)
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    uint32_t bufptr[5];               // Standard buffer pointer
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#define QTD_BUFPTR_MASK               0xfffff000
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} EHCIqtd;
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/*  EHCI spec version 1.0 Section 3.6
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 */
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typedef struct EHCIqh {
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    uint32_t next;                    // Standard next link pointer
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    /* endpoint characteristics */
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    uint32_t epchar;
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#define QH_EPCHAR_RL_MASK             0xf0000000
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#define QH_EPCHAR_RL_SH               28
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#define QH_EPCHAR_C                   (1 << 27)
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#define QH_EPCHAR_MPLEN_MASK          0x07FF0000
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#define QH_EPCHAR_MPLEN_SH            16
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#define QH_EPCHAR_H                   (1 << 15)
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#define QH_EPCHAR_DTC                 (1 << 14)
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#define QH_EPCHAR_EPS_MASK            0x00003000
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#define QH_EPCHAR_EPS_SH              12
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#define EHCI_QH_EPS_FULL              0
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#define EHCI_QH_EPS_LOW               1
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#define EHCI_QH_EPS_HIGH              2
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#define EHCI_QH_EPS_RESERVED          3
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#define QH_EPCHAR_EP_MASK             0x00000f00
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#define QH_EPCHAR_EP_SH               8
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#define QH_EPCHAR_I                   (1 << 7)
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#define QH_EPCHAR_DEVADDR_MASK        0x0000007f
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#define QH_EPCHAR_DEVADDR_SH          0
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    /* endpoint capabilities */
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    uint32_t epcap;
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#define QH_EPCAP_MULT_MASK            0xc0000000
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#define QH_EPCAP_MULT_SH              30
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#define QH_EPCAP_PORTNUM_MASK         0x3f800000
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#define QH_EPCAP_PORTNUM_SH           23
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#define QH_EPCAP_HUBADDR_MASK         0x007f0000
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#define QH_EPCAP_HUBADDR_SH           16
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#define QH_EPCAP_CMASK_MASK           0x0000ff00
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#define QH_EPCAP_CMASK_SH             8
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#define QH_EPCAP_SMASK_MASK           0x000000ff
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#define QH_EPCAP_SMASK_SH             0
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    uint32_t current_qtd;             // Standard next link pointer
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    uint32_t next_qtd;                // Standard next link pointer
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    uint32_t altnext_qtd;
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#define QH_ALTNEXT_NAKCNT_MASK        0x0000001e
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#define QH_ALTNEXT_NAKCNT_SH          1
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    uint32_t token;                   // Same as QTD token
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    uint32_t bufptr[5];               // Standard buffer pointer
325 94527ead Gerd Hoffmann
#define BUFPTR_CPROGMASK_MASK         0x000000ff
326 94527ead Gerd Hoffmann
#define BUFPTR_FRAMETAG_MASK          0x0000001f
327 94527ead Gerd Hoffmann
#define BUFPTR_SBYTES_MASK            0x00000fe0
328 94527ead Gerd Hoffmann
#define BUFPTR_SBYTES_SH              5
329 94527ead Gerd Hoffmann
} EHCIqh;
330 94527ead Gerd Hoffmann
331 94527ead Gerd Hoffmann
/*  EHCI spec version 1.0 Section 3.7
332 94527ead Gerd Hoffmann
 */
333 94527ead Gerd Hoffmann
typedef struct EHCIfstn {
334 94527ead Gerd Hoffmann
    uint32_t next;                    // Standard next link pointer
335 94527ead Gerd Hoffmann
    uint32_t backptr;                 // Standard next link pointer
336 94527ead Gerd Hoffmann
} EHCIfstn;
337 94527ead Gerd Hoffmann
338 0122f472 Gerd Hoffmann
typedef struct EHCIQueue EHCIQueue;
339 0122f472 Gerd Hoffmann
typedef struct EHCIState EHCIState;
340 0122f472 Gerd Hoffmann
341 0122f472 Gerd Hoffmann
enum async_state {
342 0122f472 Gerd Hoffmann
    EHCI_ASYNC_NONE = 0,
343 0122f472 Gerd Hoffmann
    EHCI_ASYNC_INFLIGHT,
344 0122f472 Gerd Hoffmann
    EHCI_ASYNC_FINISHED,
345 0122f472 Gerd Hoffmann
};
346 0122f472 Gerd Hoffmann
347 0122f472 Gerd Hoffmann
struct EHCIQueue {
348 0122f472 Gerd Hoffmann
    EHCIState *ehci;
349 8ac6d699 Gerd Hoffmann
    QTAILQ_ENTRY(EHCIQueue) next;
350 8ac6d699 Gerd Hoffmann
    bool async_schedule;
351 8ac6d699 Gerd Hoffmann
    uint32_t seen, ts;
352 0122f472 Gerd Hoffmann
353 0122f472 Gerd Hoffmann
    /* cached data from guest - needs to be flushed
354 0122f472 Gerd Hoffmann
     * when guest removes an entry (doorbell, handshake sequence)
355 0122f472 Gerd Hoffmann
     */
356 0122f472 Gerd Hoffmann
    EHCIqh qh;             // copy of current QH (being worked on)
357 0122f472 Gerd Hoffmann
    uint32_t qhaddr;       // address QH read from
358 0122f472 Gerd Hoffmann
    EHCIqtd qtd;           // copy of current QTD (being worked on)
359 0122f472 Gerd Hoffmann
    uint32_t qtdaddr;      // address QTD read from
360 0122f472 Gerd Hoffmann
361 0122f472 Gerd Hoffmann
    USBPacket packet;
362 0122f472 Gerd Hoffmann
    uint8_t buffer[BUFF_SIZE];
363 0122f472 Gerd Hoffmann
    int pid;
364 0122f472 Gerd Hoffmann
    uint32_t tbytes;
365 0122f472 Gerd Hoffmann
    enum async_state async;
366 0122f472 Gerd Hoffmann
    int usb_status;
367 0122f472 Gerd Hoffmann
};
368 0122f472 Gerd Hoffmann
369 0122f472 Gerd Hoffmann
struct EHCIState {
370 94527ead Gerd Hoffmann
    PCIDevice dev;
371 0122f472 Gerd Hoffmann
    USBBus bus;
372 94527ead Gerd Hoffmann
    qemu_irq irq;
373 94527ead Gerd Hoffmann
    target_phys_addr_t mem_base;
374 94527ead Gerd Hoffmann
    int mem;
375 94527ead Gerd Hoffmann
    int num_ports;
376 94527ead Gerd Hoffmann
    /*
377 94527ead Gerd Hoffmann
     *  EHCI spec version 1.0 Section 2.3
378 94527ead Gerd Hoffmann
     *  Host Controller Operational Registers
379 94527ead Gerd Hoffmann
     */
380 94527ead Gerd Hoffmann
    union {
381 94527ead Gerd Hoffmann
        uint8_t mmio[MMIO_SIZE];
382 94527ead Gerd Hoffmann
        struct {
383 94527ead Gerd Hoffmann
            uint8_t cap[OPREGBASE];
384 94527ead Gerd Hoffmann
            uint32_t usbcmd;
385 94527ead Gerd Hoffmann
            uint32_t usbsts;
386 94527ead Gerd Hoffmann
            uint32_t usbintr;
387 94527ead Gerd Hoffmann
            uint32_t frindex;
388 94527ead Gerd Hoffmann
            uint32_t ctrldssegment;
389 94527ead Gerd Hoffmann
            uint32_t periodiclistbase;
390 94527ead Gerd Hoffmann
            uint32_t asynclistaddr;
391 94527ead Gerd Hoffmann
            uint32_t notused[9];
392 94527ead Gerd Hoffmann
            uint32_t configflag;
393 94527ead Gerd Hoffmann
            uint32_t portsc[NB_PORTS];
394 94527ead Gerd Hoffmann
        };
395 94527ead Gerd Hoffmann
    };
396 0122f472 Gerd Hoffmann
397 94527ead Gerd Hoffmann
    /*
398 94527ead Gerd Hoffmann
     *  Internal states, shadow registers, etc
399 94527ead Gerd Hoffmann
     */
400 94527ead Gerd Hoffmann
    uint32_t sofv;
401 94527ead Gerd Hoffmann
    QEMUTimer *frame_timer;
402 94527ead Gerd Hoffmann
    int attach_poll_counter;
403 94527ead Gerd Hoffmann
    int astate;                        // Current state in asynchronous schedule
404 94527ead Gerd Hoffmann
    int pstate;                        // Current state in periodic schedule
405 94527ead Gerd Hoffmann
    USBPort ports[NB_PORTS];
406 94527ead Gerd Hoffmann
    uint32_t usbsts_pending;
407 8ac6d699 Gerd Hoffmann
    QTAILQ_HEAD(, EHCIQueue) queues;
408 94527ead Gerd Hoffmann
409 0122f472 Gerd Hoffmann
    uint32_t a_fetch_addr;   // which address to look at next
410 0122f472 Gerd Hoffmann
    uint32_t p_fetch_addr;   // which address to look at next
411 94527ead Gerd Hoffmann
412 0122f472 Gerd Hoffmann
    USBPacket ipacket;
413 0122f472 Gerd Hoffmann
    uint8_t ibuffer[BUFF_SIZE];
414 94527ead Gerd Hoffmann
    int isoch_pause;
415 0122f472 Gerd Hoffmann
416 94527ead Gerd Hoffmann
    uint32_t last_run_usec;
417 94527ead Gerd Hoffmann
    uint32_t frame_end_usec;
418 0122f472 Gerd Hoffmann
};
419 94527ead Gerd Hoffmann
420 94527ead Gerd Hoffmann
#define SET_LAST_RUN_CLOCK(s) \
421 94527ead Gerd Hoffmann
    (s)->last_run_usec = qemu_get_clock_ns(vm_clock) / 1000;
422 94527ead Gerd Hoffmann
423 94527ead Gerd Hoffmann
/* nifty macros from Arnon's EHCI version  */
424 94527ead Gerd Hoffmann
#define get_field(data, field) \
425 94527ead Gerd Hoffmann
    (((data) & field##_MASK) >> field##_SH)
426 94527ead Gerd Hoffmann
427 94527ead Gerd Hoffmann
#define set_field(data, newval, field) do { \
428 94527ead Gerd Hoffmann
    uint32_t val = *data; \
429 94527ead Gerd Hoffmann
    val &= ~ field##_MASK; \
430 94527ead Gerd Hoffmann
    val |= ((newval) << field##_SH) & field##_MASK; \
431 94527ead Gerd Hoffmann
    *data = val; \
432 94527ead Gerd Hoffmann
    } while(0)
433 94527ead Gerd Hoffmann
434 26d53979 Gerd Hoffmann
static const char *ehci_state_names[] = {
435 26d53979 Gerd Hoffmann
    [ EST_INACTIVE ]     = "INACTIVE",
436 26d53979 Gerd Hoffmann
    [ EST_ACTIVE ]       = "ACTIVE",
437 26d53979 Gerd Hoffmann
    [ EST_EXECUTING ]    = "EXECUTING",
438 26d53979 Gerd Hoffmann
    [ EST_SLEEPING ]     = "SLEEPING",
439 26d53979 Gerd Hoffmann
    [ EST_WAITLISTHEAD ] = "WAITLISTHEAD",
440 26d53979 Gerd Hoffmann
    [ EST_FETCHENTRY ]   = "FETCH ENTRY",
441 26d53979 Gerd Hoffmann
    [ EST_FETCHQH ]      = "FETCH QH",
442 26d53979 Gerd Hoffmann
    [ EST_FETCHITD ]     = "FETCH ITD",
443 26d53979 Gerd Hoffmann
    [ EST_ADVANCEQUEUE ] = "ADVANCEQUEUE",
444 26d53979 Gerd Hoffmann
    [ EST_FETCHQTD ]     = "FETCH QTD",
445 26d53979 Gerd Hoffmann
    [ EST_EXECUTE ]      = "EXECUTE",
446 26d53979 Gerd Hoffmann
    [ EST_WRITEBACK ]    = "WRITEBACK",
447 26d53979 Gerd Hoffmann
    [ EST_HORIZONTALQH ] = "HORIZONTALQH",
448 26d53979 Gerd Hoffmann
};
449 26d53979 Gerd Hoffmann
450 26d53979 Gerd Hoffmann
static const char *ehci_mmio_names[] = {
451 26d53979 Gerd Hoffmann
    [ CAPLENGTH ]        = "CAPLENGTH",
452 26d53979 Gerd Hoffmann
    [ HCIVERSION ]       = "HCIVERSION",
453 26d53979 Gerd Hoffmann
    [ HCSPARAMS ]        = "HCSPARAMS",
454 26d53979 Gerd Hoffmann
    [ HCCPARAMS ]        = "HCCPARAMS",
455 26d53979 Gerd Hoffmann
    [ USBCMD ]           = "USBCMD",
456 26d53979 Gerd Hoffmann
    [ USBSTS ]           = "USBSTS",
457 26d53979 Gerd Hoffmann
    [ USBINTR ]          = "USBINTR",
458 26d53979 Gerd Hoffmann
    [ FRINDEX ]          = "FRINDEX",
459 26d53979 Gerd Hoffmann
    [ PERIODICLISTBASE ] = "P-LIST BASE",
460 26d53979 Gerd Hoffmann
    [ ASYNCLISTADDR ]    = "A-LIST ADDR",
461 26d53979 Gerd Hoffmann
    [ PORTSC_BEGIN ]     = "PORTSC #0",
462 26d53979 Gerd Hoffmann
    [ PORTSC_BEGIN + 4]  = "PORTSC #1",
463 26d53979 Gerd Hoffmann
    [ PORTSC_BEGIN + 8]  = "PORTSC #2",
464 26d53979 Gerd Hoffmann
    [ PORTSC_BEGIN + 12] = "PORTSC #3",
465 26d53979 Gerd Hoffmann
    [ CONFIGFLAG ]       = "CONFIGFLAG",
466 26d53979 Gerd Hoffmann
};
467 94527ead Gerd Hoffmann
468 26d53979 Gerd Hoffmann
static const char *nr2str(const char **n, size_t len, uint32_t nr)
469 94527ead Gerd Hoffmann
{
470 26d53979 Gerd Hoffmann
    if (nr < len && n[nr] != NULL) {
471 26d53979 Gerd Hoffmann
        return n[nr];
472 94527ead Gerd Hoffmann
    } else {
473 26d53979 Gerd Hoffmann
        return "unknown";
474 94527ead Gerd Hoffmann
    }
475 94527ead Gerd Hoffmann
}
476 94527ead Gerd Hoffmann
477 26d53979 Gerd Hoffmann
static const char *state2str(uint32_t state)
478 26d53979 Gerd Hoffmann
{
479 26d53979 Gerd Hoffmann
    return nr2str(ehci_state_names, ARRAY_SIZE(ehci_state_names), state);
480 26d53979 Gerd Hoffmann
}
481 26d53979 Gerd Hoffmann
482 26d53979 Gerd Hoffmann
static const char *addr2str(target_phys_addr_t addr)
483 26d53979 Gerd Hoffmann
{
484 26d53979 Gerd Hoffmann
    return nr2str(ehci_mmio_names, ARRAY_SIZE(ehci_mmio_names), addr);
485 26d53979 Gerd Hoffmann
}
486 26d53979 Gerd Hoffmann
487 439a97cc Gerd Hoffmann
static void ehci_trace_usbsts(uint32_t mask, int state)
488 439a97cc Gerd Hoffmann
{
489 439a97cc Gerd Hoffmann
    /* interrupts */
490 439a97cc Gerd Hoffmann
    if (mask & USBSTS_INT) {
491 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("INT", state);
492 439a97cc Gerd Hoffmann
    }
493 439a97cc Gerd Hoffmann
    if (mask & USBSTS_ERRINT) {
494 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("ERRINT", state);
495 439a97cc Gerd Hoffmann
    }
496 439a97cc Gerd Hoffmann
    if (mask & USBSTS_PCD) {
497 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("PCD", state);
498 439a97cc Gerd Hoffmann
    }
499 439a97cc Gerd Hoffmann
    if (mask & USBSTS_FLR) {
500 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("FLR", state);
501 439a97cc Gerd Hoffmann
    }
502 439a97cc Gerd Hoffmann
    if (mask & USBSTS_HSE) {
503 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("HSE", state);
504 439a97cc Gerd Hoffmann
    }
505 439a97cc Gerd Hoffmann
    if (mask & USBSTS_IAA) {
506 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("IAA", state);
507 439a97cc Gerd Hoffmann
    }
508 439a97cc Gerd Hoffmann
509 439a97cc Gerd Hoffmann
    /* status */
510 439a97cc Gerd Hoffmann
    if (mask & USBSTS_HALT) {
511 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("HALT", state);
512 439a97cc Gerd Hoffmann
    }
513 439a97cc Gerd Hoffmann
    if (mask & USBSTS_REC) {
514 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("REC", state);
515 439a97cc Gerd Hoffmann
    }
516 439a97cc Gerd Hoffmann
    if (mask & USBSTS_PSS) {
517 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("PSS", state);
518 439a97cc Gerd Hoffmann
    }
519 439a97cc Gerd Hoffmann
    if (mask & USBSTS_ASS) {
520 439a97cc Gerd Hoffmann
        trace_usb_ehci_usbsts("ASS", state);
521 439a97cc Gerd Hoffmann
    }
522 439a97cc Gerd Hoffmann
}
523 439a97cc Gerd Hoffmann
524 439a97cc Gerd Hoffmann
static inline void ehci_set_usbsts(EHCIState *s, int mask)
525 439a97cc Gerd Hoffmann
{
526 439a97cc Gerd Hoffmann
    if ((s->usbsts & mask) == mask) {
527 439a97cc Gerd Hoffmann
        return;
528 439a97cc Gerd Hoffmann
    }
529 439a97cc Gerd Hoffmann
    ehci_trace_usbsts(mask, 1);
530 439a97cc Gerd Hoffmann
    s->usbsts |= mask;
531 439a97cc Gerd Hoffmann
}
532 439a97cc Gerd Hoffmann
533 439a97cc Gerd Hoffmann
static inline void ehci_clear_usbsts(EHCIState *s, int mask)
534 439a97cc Gerd Hoffmann
{
535 439a97cc Gerd Hoffmann
    if ((s->usbsts & mask) == 0) {
536 439a97cc Gerd Hoffmann
        return;
537 439a97cc Gerd Hoffmann
    }
538 439a97cc Gerd Hoffmann
    ehci_trace_usbsts(mask, 0);
539 439a97cc Gerd Hoffmann
    s->usbsts &= ~mask;
540 439a97cc Gerd Hoffmann
}
541 94527ead Gerd Hoffmann
542 94527ead Gerd Hoffmann
static inline void ehci_set_interrupt(EHCIState *s, int intr)
543 94527ead Gerd Hoffmann
{
544 94527ead Gerd Hoffmann
    int level = 0;
545 94527ead Gerd Hoffmann
546 94527ead Gerd Hoffmann
    // TODO honour interrupt threshold requests
547 94527ead Gerd Hoffmann
548 439a97cc Gerd Hoffmann
    ehci_set_usbsts(s, intr);
549 94527ead Gerd Hoffmann
550 94527ead Gerd Hoffmann
    if ((s->usbsts & USBINTR_MASK) & s->usbintr) {
551 94527ead Gerd Hoffmann
        level = 1;
552 94527ead Gerd Hoffmann
    }
553 94527ead Gerd Hoffmann
554 94527ead Gerd Hoffmann
    qemu_set_irq(s->irq, level);
555 94527ead Gerd Hoffmann
}
556 94527ead Gerd Hoffmann
557 94527ead Gerd Hoffmann
static inline void ehci_record_interrupt(EHCIState *s, int intr)
558 94527ead Gerd Hoffmann
{
559 94527ead Gerd Hoffmann
    s->usbsts_pending |= intr;
560 94527ead Gerd Hoffmann
}
561 94527ead Gerd Hoffmann
562 94527ead Gerd Hoffmann
static inline void ehci_commit_interrupt(EHCIState *s)
563 94527ead Gerd Hoffmann
{
564 94527ead Gerd Hoffmann
    if (!s->usbsts_pending) {
565 94527ead Gerd Hoffmann
        return;
566 94527ead Gerd Hoffmann
    }
567 94527ead Gerd Hoffmann
    ehci_set_interrupt(s, s->usbsts_pending);
568 94527ead Gerd Hoffmann
    s->usbsts_pending = 0;
569 94527ead Gerd Hoffmann
}
570 94527ead Gerd Hoffmann
571 26d53979 Gerd Hoffmann
static void ehci_set_state(EHCIState *s, int async, int state)
572 26d53979 Gerd Hoffmann
{
573 26d53979 Gerd Hoffmann
    if (async) {
574 26d53979 Gerd Hoffmann
        trace_usb_ehci_state("async", state2str(state));
575 26d53979 Gerd Hoffmann
        s->astate = state;
576 26d53979 Gerd Hoffmann
    } else {
577 26d53979 Gerd Hoffmann
        trace_usb_ehci_state("periodic", state2str(state));
578 26d53979 Gerd Hoffmann
        s->pstate = state;
579 26d53979 Gerd Hoffmann
    }
580 26d53979 Gerd Hoffmann
}
581 26d53979 Gerd Hoffmann
582 26d53979 Gerd Hoffmann
static int ehci_get_state(EHCIState *s, int async)
583 26d53979 Gerd Hoffmann
{
584 26d53979 Gerd Hoffmann
    return async ? s->astate : s->pstate;
585 26d53979 Gerd Hoffmann
}
586 26d53979 Gerd Hoffmann
587 0122f472 Gerd Hoffmann
static void ehci_set_fetch_addr(EHCIState *s, int async, uint32_t addr)
588 0122f472 Gerd Hoffmann
{
589 0122f472 Gerd Hoffmann
    if (async) {
590 0122f472 Gerd Hoffmann
        s->a_fetch_addr = addr;
591 0122f472 Gerd Hoffmann
    } else {
592 0122f472 Gerd Hoffmann
        s->p_fetch_addr = addr;
593 0122f472 Gerd Hoffmann
    }
594 0122f472 Gerd Hoffmann
}
595 0122f472 Gerd Hoffmann
596 0122f472 Gerd Hoffmann
static int ehci_get_fetch_addr(EHCIState *s, int async)
597 0122f472 Gerd Hoffmann
{
598 0122f472 Gerd Hoffmann
    return async ? s->a_fetch_addr : s->p_fetch_addr;
599 0122f472 Gerd Hoffmann
}
600 0122f472 Gerd Hoffmann
601 8ac6d699 Gerd Hoffmann
static void ehci_trace_qh(EHCIQueue *q, target_phys_addr_t addr, EHCIqh *qh)
602 26d53979 Gerd Hoffmann
{
603 025b168c Gerd Hoffmann
    /* need three here due to argument count limits */
604 025b168c Gerd Hoffmann
    trace_usb_ehci_qh_ptrs(q, addr, qh->next,
605 025b168c Gerd Hoffmann
                           qh->current_qtd, qh->next_qtd, qh->altnext_qtd);
606 025b168c Gerd Hoffmann
    trace_usb_ehci_qh_fields(addr,
607 025b168c Gerd Hoffmann
                             get_field(qh->epchar, QH_EPCHAR_RL),
608 025b168c Gerd Hoffmann
                             get_field(qh->epchar, QH_EPCHAR_MPLEN),
609 025b168c Gerd Hoffmann
                             get_field(qh->epchar, QH_EPCHAR_EPS),
610 025b168c Gerd Hoffmann
                             get_field(qh->epchar, QH_EPCHAR_EP),
611 025b168c Gerd Hoffmann
                             get_field(qh->epchar, QH_EPCHAR_DEVADDR));
612 025b168c Gerd Hoffmann
    trace_usb_ehci_qh_bits(addr,
613 025b168c Gerd Hoffmann
                           (bool)(qh->epchar & QH_EPCHAR_C),
614 025b168c Gerd Hoffmann
                           (bool)(qh->epchar & QH_EPCHAR_H),
615 025b168c Gerd Hoffmann
                           (bool)(qh->epchar & QH_EPCHAR_DTC),
616 025b168c Gerd Hoffmann
                           (bool)(qh->epchar & QH_EPCHAR_I));
617 26d53979 Gerd Hoffmann
}
618 26d53979 Gerd Hoffmann
619 8ac6d699 Gerd Hoffmann
static void ehci_trace_qtd(EHCIQueue *q, target_phys_addr_t addr, EHCIqtd *qtd)
620 26d53979 Gerd Hoffmann
{
621 025b168c Gerd Hoffmann
    /* need three here due to argument count limits */
622 025b168c Gerd Hoffmann
    trace_usb_ehci_qtd_ptrs(q, addr, qtd->next, qtd->altnext);
623 025b168c Gerd Hoffmann
    trace_usb_ehci_qtd_fields(addr,
624 025b168c Gerd Hoffmann
                              get_field(qtd->token, QTD_TOKEN_TBYTES),
625 025b168c Gerd Hoffmann
                              get_field(qtd->token, QTD_TOKEN_CPAGE),
626 025b168c Gerd Hoffmann
                              get_field(qtd->token, QTD_TOKEN_CERR),
627 025b168c Gerd Hoffmann
                              get_field(qtd->token, QTD_TOKEN_PID));
628 025b168c Gerd Hoffmann
    trace_usb_ehci_qtd_bits(addr,
629 025b168c Gerd Hoffmann
                            (bool)(qtd->token & QTD_TOKEN_IOC),
630 025b168c Gerd Hoffmann
                            (bool)(qtd->token & QTD_TOKEN_ACTIVE),
631 025b168c Gerd Hoffmann
                            (bool)(qtd->token & QTD_TOKEN_HALT),
632 025b168c Gerd Hoffmann
                            (bool)(qtd->token & QTD_TOKEN_BABBLE),
633 025b168c Gerd Hoffmann
                            (bool)(qtd->token & QTD_TOKEN_XACTERR));
634 26d53979 Gerd Hoffmann
}
635 26d53979 Gerd Hoffmann
636 26d53979 Gerd Hoffmann
static void ehci_trace_itd(EHCIState *s, target_phys_addr_t addr, EHCIitd *itd)
637 26d53979 Gerd Hoffmann
{
638 e654887f Gerd Hoffmann
    trace_usb_ehci_itd(addr, itd->next,
639 e654887f Gerd Hoffmann
                       get_field(itd->bufptr[1], ITD_BUFPTR_MAXPKT),
640 e654887f Gerd Hoffmann
                       get_field(itd->bufptr[2], ITD_BUFPTR_MULT),
641 e654887f Gerd Hoffmann
                       get_field(itd->bufptr[0], ITD_BUFPTR_EP),
642 e654887f Gerd Hoffmann
                       get_field(itd->bufptr[0], ITD_BUFPTR_DEVADDR));
643 26d53979 Gerd Hoffmann
}
644 26d53979 Gerd Hoffmann
645 8ac6d699 Gerd Hoffmann
/* queue management */
646 8ac6d699 Gerd Hoffmann
647 8ac6d699 Gerd Hoffmann
static EHCIQueue *ehci_alloc_queue(EHCIState *ehci, int async)
648 8ac6d699 Gerd Hoffmann
{
649 8ac6d699 Gerd Hoffmann
    EHCIQueue *q;
650 8ac6d699 Gerd Hoffmann
651 8ac6d699 Gerd Hoffmann
    q = qemu_mallocz(sizeof(*q));
652 8ac6d699 Gerd Hoffmann
    q->ehci = ehci;
653 8ac6d699 Gerd Hoffmann
    q->async_schedule = async;
654 8ac6d699 Gerd Hoffmann
    QTAILQ_INSERT_HEAD(&ehci->queues, q, next);
655 8ac6d699 Gerd Hoffmann
    trace_usb_ehci_queue_action(q, "alloc");
656 8ac6d699 Gerd Hoffmann
    return q;
657 8ac6d699 Gerd Hoffmann
}
658 8ac6d699 Gerd Hoffmann
659 8ac6d699 Gerd Hoffmann
static void ehci_free_queue(EHCIQueue *q)
660 8ac6d699 Gerd Hoffmann
{
661 8ac6d699 Gerd Hoffmann
    trace_usb_ehci_queue_action(q, "free");
662 8ac6d699 Gerd Hoffmann
    if (q->async == EHCI_ASYNC_INFLIGHT) {
663 8ac6d699 Gerd Hoffmann
        usb_cancel_packet(&q->packet);
664 8ac6d699 Gerd Hoffmann
    }
665 8ac6d699 Gerd Hoffmann
    QTAILQ_REMOVE(&q->ehci->queues, q, next);
666 8ac6d699 Gerd Hoffmann
    qemu_free(q);
667 8ac6d699 Gerd Hoffmann
}
668 8ac6d699 Gerd Hoffmann
669 8ac6d699 Gerd Hoffmann
static EHCIQueue *ehci_find_queue_by_qh(EHCIState *ehci, uint32_t addr)
670 8ac6d699 Gerd Hoffmann
{
671 8ac6d699 Gerd Hoffmann
    EHCIQueue *q;
672 8ac6d699 Gerd Hoffmann
673 8ac6d699 Gerd Hoffmann
    QTAILQ_FOREACH(q, &ehci->queues, next) {
674 8ac6d699 Gerd Hoffmann
        if (addr == q->qhaddr) {
675 8ac6d699 Gerd Hoffmann
            return q;
676 8ac6d699 Gerd Hoffmann
        }
677 8ac6d699 Gerd Hoffmann
    }
678 8ac6d699 Gerd Hoffmann
    return NULL;
679 8ac6d699 Gerd Hoffmann
}
680 8ac6d699 Gerd Hoffmann
681 8ac6d699 Gerd Hoffmann
static void ehci_queues_rip_unused(EHCIState *ehci)
682 8ac6d699 Gerd Hoffmann
{
683 8ac6d699 Gerd Hoffmann
    EHCIQueue *q, *tmp;
684 8ac6d699 Gerd Hoffmann
685 8ac6d699 Gerd Hoffmann
    QTAILQ_FOREACH_SAFE(q, &ehci->queues, next, tmp) {
686 8ac6d699 Gerd Hoffmann
        if (q->seen) {
687 8ac6d699 Gerd Hoffmann
            q->seen = 0;
688 8ac6d699 Gerd Hoffmann
            q->ts = ehci->last_run_usec;
689 8ac6d699 Gerd Hoffmann
            continue;
690 8ac6d699 Gerd Hoffmann
        }
691 8ac6d699 Gerd Hoffmann
        if (ehci->last_run_usec < q->ts + 250000) {
692 8ac6d699 Gerd Hoffmann
            /* allow 0.25 sec idle */
693 8ac6d699 Gerd Hoffmann
            continue;
694 8ac6d699 Gerd Hoffmann
        }
695 8ac6d699 Gerd Hoffmann
        ehci_free_queue(q);
696 8ac6d699 Gerd Hoffmann
    }
697 8ac6d699 Gerd Hoffmann
}
698 8ac6d699 Gerd Hoffmann
699 07771f6f Gerd Hoffmann
static void ehci_queues_rip_device(EHCIState *ehci, USBDevice *dev)
700 07771f6f Gerd Hoffmann
{
701 07771f6f Gerd Hoffmann
    EHCIQueue *q, *tmp;
702 07771f6f Gerd Hoffmann
703 07771f6f Gerd Hoffmann
    QTAILQ_FOREACH_SAFE(q, &ehci->queues, next, tmp) {
704 07771f6f Gerd Hoffmann
        if (q->packet.owner != dev) {
705 07771f6f Gerd Hoffmann
            continue;
706 07771f6f Gerd Hoffmann
        }
707 07771f6f Gerd Hoffmann
        ehci_free_queue(q);
708 07771f6f Gerd Hoffmann
    }
709 07771f6f Gerd Hoffmann
}
710 07771f6f Gerd Hoffmann
711 8ac6d699 Gerd Hoffmann
static void ehci_queues_rip_all(EHCIState *ehci)
712 8ac6d699 Gerd Hoffmann
{
713 8ac6d699 Gerd Hoffmann
    EHCIQueue *q, *tmp;
714 8ac6d699 Gerd Hoffmann
715 8ac6d699 Gerd Hoffmann
    QTAILQ_FOREACH_SAFE(q, &ehci->queues, next, tmp) {
716 8ac6d699 Gerd Hoffmann
        ehci_free_queue(q);
717 8ac6d699 Gerd Hoffmann
    }
718 8ac6d699 Gerd Hoffmann
}
719 8ac6d699 Gerd Hoffmann
720 94527ead Gerd Hoffmann
/* Attach or detach a device on root hub */
721 94527ead Gerd Hoffmann
722 94527ead Gerd Hoffmann
static void ehci_attach(USBPort *port)
723 94527ead Gerd Hoffmann
{
724 94527ead Gerd Hoffmann
    EHCIState *s = port->opaque;
725 94527ead Gerd Hoffmann
    uint32_t *portsc = &s->portsc[port->index];
726 94527ead Gerd Hoffmann
727 dcbd0b5c Gerd Hoffmann
    trace_usb_ehci_port_attach(port->index, port->dev->product_desc);
728 94527ead Gerd Hoffmann
729 94527ead Gerd Hoffmann
    *portsc |= PORTSC_CONNECT;
730 94527ead Gerd Hoffmann
    *portsc |= PORTSC_CSC;
731 94527ead Gerd Hoffmann
732 94527ead Gerd Hoffmann
    /*
733 94527ead Gerd Hoffmann
     *  If a high speed device is attached then we own this port(indicated
734 94527ead Gerd Hoffmann
     *  by zero in the PORTSC_POWNER bit field) so set the status bit
735 94527ead Gerd Hoffmann
     *  and set an interrupt if enabled.
736 94527ead Gerd Hoffmann
     */
737 94527ead Gerd Hoffmann
    if ( !(*portsc & PORTSC_POWNER)) {
738 94527ead Gerd Hoffmann
        ehci_set_interrupt(s, USBSTS_PCD);
739 94527ead Gerd Hoffmann
    }
740 94527ead Gerd Hoffmann
}
741 94527ead Gerd Hoffmann
742 94527ead Gerd Hoffmann
static void ehci_detach(USBPort *port)
743 94527ead Gerd Hoffmann
{
744 94527ead Gerd Hoffmann
    EHCIState *s = port->opaque;
745 94527ead Gerd Hoffmann
    uint32_t *portsc = &s->portsc[port->index];
746 94527ead Gerd Hoffmann
747 dcbd0b5c Gerd Hoffmann
    trace_usb_ehci_port_detach(port->index);
748 94527ead Gerd Hoffmann
749 94527ead Gerd Hoffmann
    *portsc &= ~PORTSC_CONNECT;
750 94527ead Gerd Hoffmann
    *portsc |= PORTSC_CSC;
751 94527ead Gerd Hoffmann
752 94527ead Gerd Hoffmann
    /*
753 94527ead Gerd Hoffmann
     *  If a high speed device is attached then we own this port(indicated
754 94527ead Gerd Hoffmann
     *  by zero in the PORTSC_POWNER bit field) so set the status bit
755 94527ead Gerd Hoffmann
     *  and set an interrupt if enabled.
756 94527ead Gerd Hoffmann
     */
757 94527ead Gerd Hoffmann
    if ( !(*portsc & PORTSC_POWNER)) {
758 94527ead Gerd Hoffmann
        ehci_set_interrupt(s, USBSTS_PCD);
759 94527ead Gerd Hoffmann
    }
760 94527ead Gerd Hoffmann
}
761 94527ead Gerd Hoffmann
762 94527ead Gerd Hoffmann
/* 4.1 host controller initialization */
763 94527ead Gerd Hoffmann
static void ehci_reset(void *opaque)
764 94527ead Gerd Hoffmann
{
765 94527ead Gerd Hoffmann
    EHCIState *s = opaque;
766 94527ead Gerd Hoffmann
    int i;
767 94527ead Gerd Hoffmann
768 439a97cc Gerd Hoffmann
    trace_usb_ehci_reset();
769 94527ead Gerd Hoffmann
770 94527ead Gerd Hoffmann
    memset(&s->mmio[OPREGBASE], 0x00, MMIO_SIZE - OPREGBASE);
771 94527ead Gerd Hoffmann
772 94527ead Gerd Hoffmann
    s->usbcmd = NB_MAXINTRATE << USBCMD_ITC_SH;
773 94527ead Gerd Hoffmann
    s->usbsts = USBSTS_HALT;
774 94527ead Gerd Hoffmann
775 94527ead Gerd Hoffmann
    s->astate = EST_INACTIVE;
776 94527ead Gerd Hoffmann
    s->pstate = EST_INACTIVE;
777 94527ead Gerd Hoffmann
    s->isoch_pause = -1;
778 94527ead Gerd Hoffmann
    s->attach_poll_counter = 0;
779 94527ead Gerd Hoffmann
780 94527ead Gerd Hoffmann
    for(i = 0; i < NB_PORTS; i++) {
781 94527ead Gerd Hoffmann
        s->portsc[i] = PORTSC_POWNER | PORTSC_PPOWER;
782 94527ead Gerd Hoffmann
783 94527ead Gerd Hoffmann
        if (s->ports[i].dev) {
784 94527ead Gerd Hoffmann
            usb_attach(&s->ports[i], s->ports[i].dev);
785 94527ead Gerd Hoffmann
        }
786 94527ead Gerd Hoffmann
    }
787 8ac6d699 Gerd Hoffmann
    ehci_queues_rip_all(s);
788 94527ead Gerd Hoffmann
}
789 94527ead Gerd Hoffmann
790 94527ead Gerd Hoffmann
static uint32_t ehci_mem_readb(void *ptr, target_phys_addr_t addr)
791 94527ead Gerd Hoffmann
{
792 94527ead Gerd Hoffmann
    EHCIState *s = ptr;
793 94527ead Gerd Hoffmann
    uint32_t val;
794 94527ead Gerd Hoffmann
795 94527ead Gerd Hoffmann
    val = s->mmio[addr];
796 94527ead Gerd Hoffmann
797 94527ead Gerd Hoffmann
    return val;
798 94527ead Gerd Hoffmann
}
799 94527ead Gerd Hoffmann
800 94527ead Gerd Hoffmann
static uint32_t ehci_mem_readw(void *ptr, target_phys_addr_t addr)
801 94527ead Gerd Hoffmann
{
802 94527ead Gerd Hoffmann
    EHCIState *s = ptr;
803 94527ead Gerd Hoffmann
    uint32_t val;
804 94527ead Gerd Hoffmann
805 94527ead Gerd Hoffmann
    val = s->mmio[addr] | (s->mmio[addr+1] << 8);
806 94527ead Gerd Hoffmann
807 94527ead Gerd Hoffmann
    return val;
808 94527ead Gerd Hoffmann
}
809 94527ead Gerd Hoffmann
810 94527ead Gerd Hoffmann
static uint32_t ehci_mem_readl(void *ptr, target_phys_addr_t addr)
811 94527ead Gerd Hoffmann
{
812 94527ead Gerd Hoffmann
    EHCIState *s = ptr;
813 94527ead Gerd Hoffmann
    uint32_t val;
814 94527ead Gerd Hoffmann
815 94527ead Gerd Hoffmann
    val = s->mmio[addr] | (s->mmio[addr+1] << 8) |
816 94527ead Gerd Hoffmann
          (s->mmio[addr+2] << 16) | (s->mmio[addr+3] << 24);
817 94527ead Gerd Hoffmann
818 439a97cc Gerd Hoffmann
    trace_usb_ehci_mmio_readl(addr, addr2str(addr), val);
819 94527ead Gerd Hoffmann
    return val;
820 94527ead Gerd Hoffmann
}
821 94527ead Gerd Hoffmann
822 94527ead Gerd Hoffmann
static void ehci_mem_writeb(void *ptr, target_phys_addr_t addr, uint32_t val)
823 94527ead Gerd Hoffmann
{
824 94527ead Gerd Hoffmann
    fprintf(stderr, "EHCI doesn't handle byte writes to MMIO\n");
825 94527ead Gerd Hoffmann
    exit(1);
826 94527ead Gerd Hoffmann
}
827 94527ead Gerd Hoffmann
828 94527ead Gerd Hoffmann
static void ehci_mem_writew(void *ptr, target_phys_addr_t addr, uint32_t val)
829 94527ead Gerd Hoffmann
{
830 94527ead Gerd Hoffmann
    fprintf(stderr, "EHCI doesn't handle 16-bit writes to MMIO\n");
831 94527ead Gerd Hoffmann
    exit(1);
832 94527ead Gerd Hoffmann
}
833 94527ead Gerd Hoffmann
834 94527ead Gerd Hoffmann
static void handle_port_status_write(EHCIState *s, int port, uint32_t val)
835 94527ead Gerd Hoffmann
{
836 94527ead Gerd Hoffmann
    uint32_t *portsc = &s->portsc[port];
837 94527ead Gerd Hoffmann
    int rwc;
838 94527ead Gerd Hoffmann
    USBDevice *dev = s->ports[port].dev;
839 94527ead Gerd Hoffmann
840 94527ead Gerd Hoffmann
    rwc = val & PORTSC_RWC_MASK;
841 94527ead Gerd Hoffmann
    val &= PORTSC_RO_MASK;
842 94527ead Gerd Hoffmann
843 94527ead Gerd Hoffmann
    // handle_read_write_clear(&val, portsc, PORTSC_PEDC | PORTSC_CSC);
844 94527ead Gerd Hoffmann
845 94527ead Gerd Hoffmann
    *portsc &= ~rwc;
846 94527ead Gerd Hoffmann
847 94527ead Gerd Hoffmann
    if ((val & PORTSC_PRESET) && !(*portsc & PORTSC_PRESET)) {
848 dcbd0b5c Gerd Hoffmann
        trace_usb_ehci_port_reset(port, 1);
849 94527ead Gerd Hoffmann
    }
850 94527ead Gerd Hoffmann
851 94527ead Gerd Hoffmann
    if (!(val & PORTSC_PRESET) &&(*portsc & PORTSC_PRESET)) {
852 dcbd0b5c Gerd Hoffmann
        trace_usb_ehci_port_reset(port, 0);
853 94527ead Gerd Hoffmann
        usb_attach(&s->ports[port], dev);
854 94527ead Gerd Hoffmann
855 94527ead Gerd Hoffmann
        // TODO how to handle reset of ports with no device
856 94527ead Gerd Hoffmann
        if (dev) {
857 94527ead Gerd Hoffmann
            usb_send_msg(dev, USB_MSG_RESET);
858 94527ead Gerd Hoffmann
        }
859 94527ead Gerd Hoffmann
860 94527ead Gerd Hoffmann
        if (s->ports[port].dev) {
861 94527ead Gerd Hoffmann
            *portsc &= ~PORTSC_CSC;
862 94527ead Gerd Hoffmann
        }
863 94527ead Gerd Hoffmann
864 94527ead Gerd Hoffmann
        /*  Table 2.16 Set the enable bit(and enable bit change) to indicate
865 94527ead Gerd Hoffmann
         *  to SW that this port has a high speed device attached
866 94527ead Gerd Hoffmann
         *
867 94527ead Gerd Hoffmann
         *  TODO - when to disable?
868 94527ead Gerd Hoffmann
         */
869 94527ead Gerd Hoffmann
        val |= PORTSC_PED;
870 94527ead Gerd Hoffmann
        val |= PORTSC_PEDC;
871 94527ead Gerd Hoffmann
    }
872 94527ead Gerd Hoffmann
873 94527ead Gerd Hoffmann
    *portsc &= ~PORTSC_RO_MASK;
874 94527ead Gerd Hoffmann
    *portsc |= val;
875 94527ead Gerd Hoffmann
}
876 94527ead Gerd Hoffmann
877 94527ead Gerd Hoffmann
static void ehci_mem_writel(void *ptr, target_phys_addr_t addr, uint32_t val)
878 94527ead Gerd Hoffmann
{
879 94527ead Gerd Hoffmann
    EHCIState *s = ptr;
880 c4f8e211 Gerd Hoffmann
    uint32_t *mmio = (uint32_t *)(&s->mmio[addr]);
881 c4f8e211 Gerd Hoffmann
    uint32_t old = *mmio;
882 94527ead Gerd Hoffmann
    int i;
883 439a97cc Gerd Hoffmann
884 c4f8e211 Gerd Hoffmann
    trace_usb_ehci_mmio_writel(addr, addr2str(addr), val);
885 94527ead Gerd Hoffmann
886 94527ead Gerd Hoffmann
    /* Only aligned reads are allowed on OHCI */
887 94527ead Gerd Hoffmann
    if (addr & 3) {
888 94527ead Gerd Hoffmann
        fprintf(stderr, "usb-ehci: Mis-aligned write to addr 0x"
889 94527ead Gerd Hoffmann
                TARGET_FMT_plx "\n", addr);
890 94527ead Gerd Hoffmann
        return;
891 94527ead Gerd Hoffmann
    }
892 94527ead Gerd Hoffmann
893 94527ead Gerd Hoffmann
    if (addr >= PORTSC && addr < PORTSC + 4 * NB_PORTS) {
894 94527ead Gerd Hoffmann
        handle_port_status_write(s, (addr-PORTSC)/4, val);
895 c4f8e211 Gerd Hoffmann
        trace_usb_ehci_mmio_change(addr, addr2str(addr), *mmio, old);
896 94527ead Gerd Hoffmann
        return;
897 94527ead Gerd Hoffmann
    }
898 94527ead Gerd Hoffmann
899 94527ead Gerd Hoffmann
    if (addr < OPREGBASE) {
900 94527ead Gerd Hoffmann
        fprintf(stderr, "usb-ehci: write attempt to read-only register"
901 94527ead Gerd Hoffmann
                TARGET_FMT_plx "\n", addr);
902 94527ead Gerd Hoffmann
        return;
903 94527ead Gerd Hoffmann
    }
904 94527ead Gerd Hoffmann
905 94527ead Gerd Hoffmann
906 94527ead Gerd Hoffmann
    /* Do any register specific pre-write processing here.  */
907 94527ead Gerd Hoffmann
    switch(addr) {
908 94527ead Gerd Hoffmann
    case USBCMD:
909 94527ead Gerd Hoffmann
        if ((val & USBCMD_RUNSTOP) && !(s->usbcmd & USBCMD_RUNSTOP)) {
910 94527ead Gerd Hoffmann
            qemu_mod_timer(s->frame_timer, qemu_get_clock_ns(vm_clock));
911 94527ead Gerd Hoffmann
            SET_LAST_RUN_CLOCK(s);
912 439a97cc Gerd Hoffmann
            ehci_clear_usbsts(s, USBSTS_HALT);
913 94527ead Gerd Hoffmann
        }
914 94527ead Gerd Hoffmann
915 94527ead Gerd Hoffmann
        if (!(val & USBCMD_RUNSTOP) && (s->usbcmd & USBCMD_RUNSTOP)) {
916 94527ead Gerd Hoffmann
            qemu_del_timer(s->frame_timer);
917 94527ead Gerd Hoffmann
            // TODO - should finish out some stuff before setting halt
918 439a97cc Gerd Hoffmann
            ehci_set_usbsts(s, USBSTS_HALT);
919 94527ead Gerd Hoffmann
        }
920 94527ead Gerd Hoffmann
921 94527ead Gerd Hoffmann
        if (val & USBCMD_HCRESET) {
922 94527ead Gerd Hoffmann
            ehci_reset(s);
923 94527ead Gerd Hoffmann
            val &= ~USBCMD_HCRESET;
924 94527ead Gerd Hoffmann
        }
925 94527ead Gerd Hoffmann
926 94527ead Gerd Hoffmann
        /* not supporting dynamic frame list size at the moment */
927 94527ead Gerd Hoffmann
        if ((val & USBCMD_FLS) && !(s->usbcmd & USBCMD_FLS)) {
928 94527ead Gerd Hoffmann
            fprintf(stderr, "attempt to set frame list size -- value %d\n",
929 94527ead Gerd Hoffmann
                    val & USBCMD_FLS);
930 94527ead Gerd Hoffmann
            val &= ~USBCMD_FLS;
931 94527ead Gerd Hoffmann
        }
932 94527ead Gerd Hoffmann
        break;
933 94527ead Gerd Hoffmann
934 94527ead Gerd Hoffmann
    case USBSTS:
935 94527ead Gerd Hoffmann
        val &= USBSTS_RO_MASK;              // bits 6 thru 31 are RO
936 439a97cc Gerd Hoffmann
        ehci_clear_usbsts(s, val);          // bits 0 thru 5 are R/WC
937 439a97cc Gerd Hoffmann
        val = s->usbsts;
938 94527ead Gerd Hoffmann
        ehci_set_interrupt(s, 0);
939 94527ead Gerd Hoffmann
        break;
940 94527ead Gerd Hoffmann
941 94527ead Gerd Hoffmann
    case USBINTR:
942 94527ead Gerd Hoffmann
        val &= USBINTR_MASK;
943 94527ead Gerd Hoffmann
        break;
944 94527ead Gerd Hoffmann
945 94527ead Gerd Hoffmann
    case FRINDEX:
946 94527ead Gerd Hoffmann
        s->sofv = val >> 3;
947 94527ead Gerd Hoffmann
        break;
948 94527ead Gerd Hoffmann
949 94527ead Gerd Hoffmann
    case CONFIGFLAG:
950 94527ead Gerd Hoffmann
        val &= 0x1;
951 94527ead Gerd Hoffmann
        if (val) {
952 94527ead Gerd Hoffmann
            for(i = 0; i < NB_PORTS; i++)
953 94527ead Gerd Hoffmann
                s->portsc[i] &= ~PORTSC_POWNER;
954 94527ead Gerd Hoffmann
        }
955 94527ead Gerd Hoffmann
        break;
956 94527ead Gerd Hoffmann
957 94527ead Gerd Hoffmann
    case PERIODICLISTBASE:
958 94527ead Gerd Hoffmann
        if ((s->usbcmd & USBCMD_PSE) && (s->usbcmd & USBCMD_RUNSTOP)) {
959 94527ead Gerd Hoffmann
            fprintf(stderr,
960 94527ead Gerd Hoffmann
              "ehci: PERIODIC list base register set while periodic schedule\n"
961 94527ead Gerd Hoffmann
              "      is enabled and HC is enabled\n");
962 94527ead Gerd Hoffmann
        }
963 94527ead Gerd Hoffmann
        break;
964 94527ead Gerd Hoffmann
965 94527ead Gerd Hoffmann
    case ASYNCLISTADDR:
966 94527ead Gerd Hoffmann
        if ((s->usbcmd & USBCMD_ASE) && (s->usbcmd & USBCMD_RUNSTOP)) {
967 94527ead Gerd Hoffmann
            fprintf(stderr,
968 94527ead Gerd Hoffmann
              "ehci: ASYNC list address register set while async schedule\n"
969 94527ead Gerd Hoffmann
              "      is enabled and HC is enabled\n");
970 94527ead Gerd Hoffmann
        }
971 94527ead Gerd Hoffmann
        break;
972 94527ead Gerd Hoffmann
    }
973 94527ead Gerd Hoffmann
974 c4f8e211 Gerd Hoffmann
    *mmio = val;
975 c4f8e211 Gerd Hoffmann
    trace_usb_ehci_mmio_change(addr, addr2str(addr), *mmio, old);
976 94527ead Gerd Hoffmann
}
977 94527ead Gerd Hoffmann
978 94527ead Gerd Hoffmann
979 94527ead Gerd Hoffmann
// TODO : Put in common header file, duplication from usb-ohci.c
980 94527ead Gerd Hoffmann
981 94527ead Gerd Hoffmann
/* Get an array of dwords from main memory */
982 94527ead Gerd Hoffmann
static inline int get_dwords(uint32_t addr, uint32_t *buf, int num)
983 94527ead Gerd Hoffmann
{
984 94527ead Gerd Hoffmann
    int i;
985 94527ead Gerd Hoffmann
986 94527ead Gerd Hoffmann
    for(i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
987 94527ead Gerd Hoffmann
        cpu_physical_memory_rw(addr,(uint8_t *)buf, sizeof(*buf), 0);
988 94527ead Gerd Hoffmann
        *buf = le32_to_cpu(*buf);
989 94527ead Gerd Hoffmann
    }
990 94527ead Gerd Hoffmann
991 94527ead Gerd Hoffmann
    return 1;
992 94527ead Gerd Hoffmann
}
993 94527ead Gerd Hoffmann
994 94527ead Gerd Hoffmann
/* Put an array of dwords in to main memory */
995 94527ead Gerd Hoffmann
static inline int put_dwords(uint32_t addr, uint32_t *buf, int num)
996 94527ead Gerd Hoffmann
{
997 94527ead Gerd Hoffmann
    int i;
998 94527ead Gerd Hoffmann
999 94527ead Gerd Hoffmann
    for(i = 0; i < num; i++, buf++, addr += sizeof(*buf)) {
1000 94527ead Gerd Hoffmann
        uint32_t tmp = cpu_to_le32(*buf);
1001 94527ead Gerd Hoffmann
        cpu_physical_memory_rw(addr,(uint8_t *)&tmp, sizeof(tmp), 1);
1002 94527ead Gerd Hoffmann
    }
1003 94527ead Gerd Hoffmann
1004 94527ead Gerd Hoffmann
    return 1;
1005 94527ead Gerd Hoffmann
}
1006 94527ead Gerd Hoffmann
1007 94527ead Gerd Hoffmann
// 4.10.2
1008 94527ead Gerd Hoffmann
1009 0122f472 Gerd Hoffmann
static int ehci_qh_do_overlay(EHCIQueue *q)
1010 94527ead Gerd Hoffmann
{
1011 94527ead Gerd Hoffmann
    int i;
1012 94527ead Gerd Hoffmann
    int dtoggle;
1013 94527ead Gerd Hoffmann
    int ping;
1014 94527ead Gerd Hoffmann
    int eps;
1015 94527ead Gerd Hoffmann
    int reload;
1016 94527ead Gerd Hoffmann
1017 94527ead Gerd Hoffmann
    // remember values in fields to preserve in qh after overlay
1018 94527ead Gerd Hoffmann
1019 0122f472 Gerd Hoffmann
    dtoggle = q->qh.token & QTD_TOKEN_DTOGGLE;
1020 0122f472 Gerd Hoffmann
    ping    = q->qh.token & QTD_TOKEN_PING;
1021 94527ead Gerd Hoffmann
1022 0122f472 Gerd Hoffmann
    q->qh.current_qtd = q->qtdaddr;
1023 0122f472 Gerd Hoffmann
    q->qh.next_qtd    = q->qtd.next;
1024 0122f472 Gerd Hoffmann
    q->qh.altnext_qtd = q->qtd.altnext;
1025 0122f472 Gerd Hoffmann
    q->qh.token       = q->qtd.token;
1026 94527ead Gerd Hoffmann
1027 94527ead Gerd Hoffmann
1028 0122f472 Gerd Hoffmann
    eps = get_field(q->qh.epchar, QH_EPCHAR_EPS);
1029 94527ead Gerd Hoffmann
    if (eps == EHCI_QH_EPS_HIGH) {
1030 0122f472 Gerd Hoffmann
        q->qh.token &= ~QTD_TOKEN_PING;
1031 0122f472 Gerd Hoffmann
        q->qh.token |= ping;
1032 94527ead Gerd Hoffmann
    }
1033 94527ead Gerd Hoffmann
1034 0122f472 Gerd Hoffmann
    reload = get_field(q->qh.epchar, QH_EPCHAR_RL);
1035 0122f472 Gerd Hoffmann
    set_field(&q->qh.altnext_qtd, reload, QH_ALTNEXT_NAKCNT);
1036 94527ead Gerd Hoffmann
1037 94527ead Gerd Hoffmann
    for (i = 0; i < 5; i++) {
1038 0122f472 Gerd Hoffmann
        q->qh.bufptr[i] = q->qtd.bufptr[i];
1039 94527ead Gerd Hoffmann
    }
1040 94527ead Gerd Hoffmann
1041 0122f472 Gerd Hoffmann
    if (!(q->qh.epchar & QH_EPCHAR_DTC)) {
1042 94527ead Gerd Hoffmann
        // preserve QH DT bit
1043 0122f472 Gerd Hoffmann
        q->qh.token &= ~QTD_TOKEN_DTOGGLE;
1044 0122f472 Gerd Hoffmann
        q->qh.token |= dtoggle;
1045 94527ead Gerd Hoffmann
    }
1046 94527ead Gerd Hoffmann
1047 0122f472 Gerd Hoffmann
    q->qh.bufptr[1] &= ~BUFPTR_CPROGMASK_MASK;
1048 0122f472 Gerd Hoffmann
    q->qh.bufptr[2] &= ~BUFPTR_FRAMETAG_MASK;
1049 94527ead Gerd Hoffmann
1050 0122f472 Gerd Hoffmann
    put_dwords(NLPTR_GET(q->qhaddr), (uint32_t *) &q->qh, sizeof(EHCIqh) >> 2);
1051 94527ead Gerd Hoffmann
1052 94527ead Gerd Hoffmann
    return 0;
1053 94527ead Gerd Hoffmann
}
1054 94527ead Gerd Hoffmann
1055 0122f472 Gerd Hoffmann
static int ehci_buffer_rw(EHCIQueue *q, int bytes, int rw)
1056 94527ead Gerd Hoffmann
{
1057 94527ead Gerd Hoffmann
    int bufpos = 0;
1058 94527ead Gerd Hoffmann
    int cpage, offset;
1059 94527ead Gerd Hoffmann
    uint32_t head;
1060 94527ead Gerd Hoffmann
    uint32_t tail;
1061 94527ead Gerd Hoffmann
1062 94527ead Gerd Hoffmann
1063 94527ead Gerd Hoffmann
    if (!bytes) {
1064 94527ead Gerd Hoffmann
        return 0;
1065 94527ead Gerd Hoffmann
    }
1066 94527ead Gerd Hoffmann
1067 0122f472 Gerd Hoffmann
    cpage = get_field(q->qh.token, QTD_TOKEN_CPAGE);
1068 94527ead Gerd Hoffmann
    if (cpage > 4) {
1069 94527ead Gerd Hoffmann
        fprintf(stderr, "cpage out of range (%d)\n", cpage);
1070 94527ead Gerd Hoffmann
        return USB_RET_PROCERR;
1071 94527ead Gerd Hoffmann
    }
1072 94527ead Gerd Hoffmann
1073 0122f472 Gerd Hoffmann
    offset = q->qh.bufptr[0] & ~QTD_BUFPTR_MASK;
1074 94527ead Gerd Hoffmann
1075 94527ead Gerd Hoffmann
    do {
1076 94527ead Gerd Hoffmann
        /* start and end of this page */
1077 0122f472 Gerd Hoffmann
        head = q->qh.bufptr[cpage] & QTD_BUFPTR_MASK;
1078 94527ead Gerd Hoffmann
        tail = head + ~QTD_BUFPTR_MASK + 1;
1079 94527ead Gerd Hoffmann
        /* add offset into page */
1080 94527ead Gerd Hoffmann
        head |= offset;
1081 94527ead Gerd Hoffmann
1082 94527ead Gerd Hoffmann
        if (bytes <= (tail - head)) {
1083 94527ead Gerd Hoffmann
            tail = head + bytes;
1084 94527ead Gerd Hoffmann
        }
1085 94527ead Gerd Hoffmann
1086 f2c88dc1 Gerd Hoffmann
        trace_usb_ehci_data(rw, cpage, offset, head, tail-head, bufpos);
1087 0122f472 Gerd Hoffmann
        cpu_physical_memory_rw(head, q->buffer + bufpos, tail - head, rw);
1088 94527ead Gerd Hoffmann
1089 94527ead Gerd Hoffmann
        bufpos += (tail - head);
1090 ba7cb5a8 Gerd Hoffmann
        offset += (tail - head);
1091 94527ead Gerd Hoffmann
        bytes -= (tail - head);
1092 94527ead Gerd Hoffmann
1093 94527ead Gerd Hoffmann
        if (bytes > 0) {
1094 94527ead Gerd Hoffmann
            cpage++;
1095 94527ead Gerd Hoffmann
            offset = 0;
1096 94527ead Gerd Hoffmann
        }
1097 94527ead Gerd Hoffmann
    } while (bytes > 0);
1098 94527ead Gerd Hoffmann
1099 94527ead Gerd Hoffmann
    /* save cpage */
1100 0122f472 Gerd Hoffmann
    set_field(&q->qh.token, cpage, QTD_TOKEN_CPAGE);
1101 94527ead Gerd Hoffmann
1102 94527ead Gerd Hoffmann
    /* save offset into cpage */
1103 ba7cb5a8 Gerd Hoffmann
    q->qh.bufptr[0] &= QTD_BUFPTR_MASK;
1104 0122f472 Gerd Hoffmann
    q->qh.bufptr[0] |= offset;
1105 94527ead Gerd Hoffmann
1106 94527ead Gerd Hoffmann
    return 0;
1107 94527ead Gerd Hoffmann
}
1108 94527ead Gerd Hoffmann
1109 94527ead Gerd Hoffmann
static void ehci_async_complete_packet(USBDevice *dev, USBPacket *packet)
1110 94527ead Gerd Hoffmann
{
1111 0122f472 Gerd Hoffmann
    EHCIQueue *q = container_of(packet, EHCIQueue, packet);
1112 94527ead Gerd Hoffmann
1113 8ac6d699 Gerd Hoffmann
    trace_usb_ehci_queue_action(q, "wakeup");
1114 8ac6d699 Gerd Hoffmann
    assert(q->async == EHCI_ASYNC_INFLIGHT);
1115 0122f472 Gerd Hoffmann
    q->async = EHCI_ASYNC_FINISHED;
1116 0122f472 Gerd Hoffmann
    q->usb_status = packet->len;
1117 94527ead Gerd Hoffmann
}
1118 94527ead Gerd Hoffmann
1119 0122f472 Gerd Hoffmann
static void ehci_execute_complete(EHCIQueue *q)
1120 94527ead Gerd Hoffmann
{
1121 94527ead Gerd Hoffmann
    int c_err, reload;
1122 94527ead Gerd Hoffmann
1123 8ac6d699 Gerd Hoffmann
    assert(q->async != EHCI_ASYNC_INFLIGHT);
1124 0122f472 Gerd Hoffmann
    q->async = EHCI_ASYNC_NONE;
1125 94527ead Gerd Hoffmann
1126 94527ead Gerd Hoffmann
    DPRINTF("execute_complete: qhaddr 0x%x, next %x, qtdaddr 0x%x, status %d\n",
1127 0122f472 Gerd Hoffmann
            q->qhaddr, q->qh.next, q->qtdaddr, q->usb_status);
1128 94527ead Gerd Hoffmann
1129 0122f472 Gerd Hoffmann
    if (q->usb_status < 0) {
1130 94527ead Gerd Hoffmann
err:
1131 94527ead Gerd Hoffmann
        /* TO-DO: put this is in a function that can be invoked below as well */
1132 0122f472 Gerd Hoffmann
        c_err = get_field(q->qh.token, QTD_TOKEN_CERR);
1133 94527ead Gerd Hoffmann
        c_err--;
1134 0122f472 Gerd Hoffmann
        set_field(&q->qh.token, c_err, QTD_TOKEN_CERR);
1135 94527ead Gerd Hoffmann
1136 0122f472 Gerd Hoffmann
        switch(q->usb_status) {
1137 94527ead Gerd Hoffmann
        case USB_RET_NODEV:
1138 d2bd525f Gerd Hoffmann
            q->qh.token |= (QTD_TOKEN_HALT | QTD_TOKEN_XACTERR);
1139 d2bd525f Gerd Hoffmann
            ehci_record_interrupt(q->ehci, USBSTS_ERRINT);
1140 94527ead Gerd Hoffmann
            break;
1141 94527ead Gerd Hoffmann
        case USB_RET_STALL:
1142 0122f472 Gerd Hoffmann
            q->qh.token |= QTD_TOKEN_HALT;
1143 0122f472 Gerd Hoffmann
            ehci_record_interrupt(q->ehci, USBSTS_ERRINT);
1144 94527ead Gerd Hoffmann
            break;
1145 94527ead Gerd Hoffmann
        case USB_RET_NAK:
1146 94527ead Gerd Hoffmann
            /* 4.10.3 */
1147 0122f472 Gerd Hoffmann
            reload = get_field(q->qh.epchar, QH_EPCHAR_RL);
1148 0122f472 Gerd Hoffmann
            if ((q->pid == USB_TOKEN_IN) && reload) {
1149 0122f472 Gerd Hoffmann
                int nakcnt = get_field(q->qh.altnext_qtd, QH_ALTNEXT_NAKCNT);
1150 94527ead Gerd Hoffmann
                nakcnt--;
1151 0122f472 Gerd Hoffmann
                set_field(&q->qh.altnext_qtd, nakcnt, QH_ALTNEXT_NAKCNT);
1152 94527ead Gerd Hoffmann
            } else if (!reload) {
1153 0122f472 Gerd Hoffmann
                return;
1154 94527ead Gerd Hoffmann
            }
1155 94527ead Gerd Hoffmann
            break;
1156 94527ead Gerd Hoffmann
        case USB_RET_BABBLE:
1157 d2bd525f Gerd Hoffmann
            q->qh.token |= (QTD_TOKEN_HALT | QTD_TOKEN_BABBLE);
1158 0122f472 Gerd Hoffmann
            ehci_record_interrupt(q->ehci, USBSTS_ERRINT);
1159 94527ead Gerd Hoffmann
            break;
1160 94527ead Gerd Hoffmann
        default:
1161 0122f472 Gerd Hoffmann
            /* should not be triggerable */
1162 0122f472 Gerd Hoffmann
            fprintf(stderr, "USB invalid response %d to handle\n", q->usb_status);
1163 0122f472 Gerd Hoffmann
            assert(0);
1164 94527ead Gerd Hoffmann
            break;
1165 94527ead Gerd Hoffmann
        }
1166 94527ead Gerd Hoffmann
    } else {
1167 94527ead Gerd Hoffmann
        // DPRINTF("Short packet condition\n");
1168 94527ead Gerd Hoffmann
        // TODO check 4.12 for splits
1169 94527ead Gerd Hoffmann
1170 0122f472 Gerd Hoffmann
        if ((q->usb_status > q->tbytes) && (q->pid == USB_TOKEN_IN)) {
1171 0122f472 Gerd Hoffmann
            q->usb_status = USB_RET_BABBLE;
1172 94527ead Gerd Hoffmann
            goto err;
1173 94527ead Gerd Hoffmann
        }
1174 94527ead Gerd Hoffmann
1175 0122f472 Gerd Hoffmann
        if (q->tbytes && q->pid == USB_TOKEN_IN) {
1176 0122f472 Gerd Hoffmann
            if (ehci_buffer_rw(q, q->usb_status, 1) != 0) {
1177 0122f472 Gerd Hoffmann
                q->usb_status = USB_RET_PROCERR;
1178 0122f472 Gerd Hoffmann
                return;
1179 94527ead Gerd Hoffmann
            }
1180 0122f472 Gerd Hoffmann
            q->tbytes -= q->usb_status;
1181 94527ead Gerd Hoffmann
        } else {
1182 0122f472 Gerd Hoffmann
            q->tbytes = 0;
1183 94527ead Gerd Hoffmann
        }
1184 94527ead Gerd Hoffmann
1185 0122f472 Gerd Hoffmann
        DPRINTF("updating tbytes to %d\n", q->tbytes);
1186 0122f472 Gerd Hoffmann
        set_field(&q->qh.token, q->tbytes, QTD_TOKEN_TBYTES);
1187 94527ead Gerd Hoffmann
    }
1188 94527ead Gerd Hoffmann
1189 0122f472 Gerd Hoffmann
    q->qh.token ^= QTD_TOKEN_DTOGGLE;
1190 0122f472 Gerd Hoffmann
    q->qh.token &= ~QTD_TOKEN_ACTIVE;
1191 94527ead Gerd Hoffmann
1192 0122f472 Gerd Hoffmann
    if ((q->usb_status >= 0) && (q->qh.token & QTD_TOKEN_IOC)) {
1193 0122f472 Gerd Hoffmann
        ehci_record_interrupt(q->ehci, USBSTS_INT);
1194 94527ead Gerd Hoffmann
    }
1195 94527ead Gerd Hoffmann
}
1196 94527ead Gerd Hoffmann
1197 94527ead Gerd Hoffmann
// 4.10.3
1198 94527ead Gerd Hoffmann
1199 0122f472 Gerd Hoffmann
static int ehci_execute(EHCIQueue *q)
1200 94527ead Gerd Hoffmann
{
1201 94527ead Gerd Hoffmann
    USBPort *port;
1202 94527ead Gerd Hoffmann
    USBDevice *dev;
1203 94527ead Gerd Hoffmann
    int ret;
1204 94527ead Gerd Hoffmann
    int i;
1205 94527ead Gerd Hoffmann
    int endp;
1206 94527ead Gerd Hoffmann
    int devadr;
1207 94527ead Gerd Hoffmann
1208 0122f472 Gerd Hoffmann
    if ( !(q->qh.token & QTD_TOKEN_ACTIVE)) {
1209 94527ead Gerd Hoffmann
        fprintf(stderr, "Attempting to execute inactive QH\n");
1210 94527ead Gerd Hoffmann
        return USB_RET_PROCERR;
1211 94527ead Gerd Hoffmann
    }
1212 94527ead Gerd Hoffmann
1213 0122f472 Gerd Hoffmann
    q->tbytes = (q->qh.token & QTD_TOKEN_TBYTES_MASK) >> QTD_TOKEN_TBYTES_SH;
1214 0122f472 Gerd Hoffmann
    if (q->tbytes > BUFF_SIZE) {
1215 94527ead Gerd Hoffmann
        fprintf(stderr, "Request for more bytes than allowed\n");
1216 94527ead Gerd Hoffmann
        return USB_RET_PROCERR;
1217 94527ead Gerd Hoffmann
    }
1218 94527ead Gerd Hoffmann
1219 0122f472 Gerd Hoffmann
    q->pid = (q->qh.token & QTD_TOKEN_PID_MASK) >> QTD_TOKEN_PID_SH;
1220 0122f472 Gerd Hoffmann
    switch(q->pid) {
1221 0122f472 Gerd Hoffmann
        case 0: q->pid = USB_TOKEN_OUT; break;
1222 0122f472 Gerd Hoffmann
        case 1: q->pid = USB_TOKEN_IN; break;
1223 0122f472 Gerd Hoffmann
        case 2: q->pid = USB_TOKEN_SETUP; break;
1224 94527ead Gerd Hoffmann
        default: fprintf(stderr, "bad token\n"); break;
1225 94527ead Gerd Hoffmann
    }
1226 94527ead Gerd Hoffmann
1227 0122f472 Gerd Hoffmann
    if ((q->tbytes && q->pid != USB_TOKEN_IN) &&
1228 0122f472 Gerd Hoffmann
        (ehci_buffer_rw(q, q->tbytes, 0) != 0)) {
1229 94527ead Gerd Hoffmann
        return USB_RET_PROCERR;
1230 94527ead Gerd Hoffmann
    }
1231 94527ead Gerd Hoffmann
1232 0122f472 Gerd Hoffmann
    endp = get_field(q->qh.epchar, QH_EPCHAR_EP);
1233 0122f472 Gerd Hoffmann
    devadr = get_field(q->qh.epchar, QH_EPCHAR_DEVADDR);
1234 94527ead Gerd Hoffmann
1235 94527ead Gerd Hoffmann
    ret = USB_RET_NODEV;
1236 94527ead Gerd Hoffmann
1237 94527ead Gerd Hoffmann
    // TO-DO: associating device with ehci port
1238 94527ead Gerd Hoffmann
    for(i = 0; i < NB_PORTS; i++) {
1239 0122f472 Gerd Hoffmann
        port = &q->ehci->ports[i];
1240 94527ead Gerd Hoffmann
        dev = port->dev;
1241 94527ead Gerd Hoffmann
1242 94527ead Gerd Hoffmann
        // TODO sometime we will also need to check if we are the port owner
1243 94527ead Gerd Hoffmann
1244 0122f472 Gerd Hoffmann
        if (!(q->ehci->portsc[i] &(PORTSC_CONNECT))) {
1245 94527ead Gerd Hoffmann
            DPRINTF("Port %d, no exec, not connected(%08X)\n",
1246 0122f472 Gerd Hoffmann
                    i, q->ehci->portsc[i]);
1247 94527ead Gerd Hoffmann
            continue;
1248 94527ead Gerd Hoffmann
        }
1249 94527ead Gerd Hoffmann
1250 0122f472 Gerd Hoffmann
        q->packet.pid = q->pid;
1251 0122f472 Gerd Hoffmann
        q->packet.devaddr = devadr;
1252 0122f472 Gerd Hoffmann
        q->packet.devep = endp;
1253 0122f472 Gerd Hoffmann
        q->packet.data = q->buffer;
1254 0122f472 Gerd Hoffmann
        q->packet.len = q->tbytes;
1255 94527ead Gerd Hoffmann
1256 0122f472 Gerd Hoffmann
        ret = usb_handle_packet(dev, &q->packet);
1257 94527ead Gerd Hoffmann
1258 94527ead Gerd Hoffmann
        DPRINTF("submit: qh %x next %x qtd %x pid %x len %d (total %d) endp %x ret %d\n",
1259 0122f472 Gerd Hoffmann
                q->qhaddr, q->qh.next, q->qtdaddr, q->pid,
1260 0122f472 Gerd Hoffmann
                q->packet.len, q->tbytes, endp, ret);
1261 94527ead Gerd Hoffmann
1262 94527ead Gerd Hoffmann
        if (ret != USB_RET_NODEV) {
1263 94527ead Gerd Hoffmann
            break;
1264 94527ead Gerd Hoffmann
        }
1265 94527ead Gerd Hoffmann
    }
1266 94527ead Gerd Hoffmann
1267 94527ead Gerd Hoffmann
    if (ret > BUFF_SIZE) {
1268 94527ead Gerd Hoffmann
        fprintf(stderr, "ret from usb_handle_packet > BUFF_SIZE\n");
1269 94527ead Gerd Hoffmann
        return USB_RET_PROCERR;
1270 94527ead Gerd Hoffmann
    }
1271 94527ead Gerd Hoffmann
1272 94527ead Gerd Hoffmann
    return ret;
1273 94527ead Gerd Hoffmann
}
1274 94527ead Gerd Hoffmann
1275 94527ead Gerd Hoffmann
/*  4.7.2
1276 94527ead Gerd Hoffmann
 */
1277 94527ead Gerd Hoffmann
1278 94527ead Gerd Hoffmann
static int ehci_process_itd(EHCIState *ehci,
1279 94527ead Gerd Hoffmann
                            EHCIitd *itd)
1280 94527ead Gerd Hoffmann
{
1281 94527ead Gerd Hoffmann
    USBPort *port;
1282 94527ead Gerd Hoffmann
    USBDevice *dev;
1283 94527ead Gerd Hoffmann
    int ret;
1284 e654887f Gerd Hoffmann
    uint32_t i, j, len, len1, len2, pid, dir, devaddr, endp;
1285 e654887f Gerd Hoffmann
    uint32_t pg, off, ptr1, ptr2, max, mult;
1286 94527ead Gerd Hoffmann
1287 94527ead Gerd Hoffmann
    dir =(itd->bufptr[1] & ITD_BUFPTR_DIRECTION);
1288 e654887f Gerd Hoffmann
    devaddr = get_field(itd->bufptr[0], ITD_BUFPTR_DEVADDR);
1289 94527ead Gerd Hoffmann
    endp = get_field(itd->bufptr[0], ITD_BUFPTR_EP);
1290 e654887f Gerd Hoffmann
    max = get_field(itd->bufptr[1], ITD_BUFPTR_MAXPKT);
1291 e654887f Gerd Hoffmann
    mult = get_field(itd->bufptr[2], ITD_BUFPTR_MULT);
1292 94527ead Gerd Hoffmann
1293 94527ead Gerd Hoffmann
    for(i = 0; i < 8; i++) {
1294 94527ead Gerd Hoffmann
        if (itd->transact[i] & ITD_XACT_ACTIVE) {
1295 e654887f Gerd Hoffmann
            pg   = get_field(itd->transact[i], ITD_XACT_PGSEL);
1296 e654887f Gerd Hoffmann
            off  = itd->transact[i] & ITD_XACT_OFFSET_MASK;
1297 e654887f Gerd Hoffmann
            ptr1 = (itd->bufptr[pg] & ITD_BUFPTR_MASK);
1298 e654887f Gerd Hoffmann
            ptr2 = (itd->bufptr[pg+1] & ITD_BUFPTR_MASK);
1299 e654887f Gerd Hoffmann
            len  = get_field(itd->transact[i], ITD_XACT_LENGTH);
1300 e654887f Gerd Hoffmann
1301 e654887f Gerd Hoffmann
            if (len > max * mult) {
1302 e654887f Gerd Hoffmann
                len = max * mult;
1303 e654887f Gerd Hoffmann
            }
1304 94527ead Gerd Hoffmann
1305 94527ead Gerd Hoffmann
            if (len > BUFF_SIZE) {
1306 94527ead Gerd Hoffmann
                return USB_RET_PROCERR;
1307 94527ead Gerd Hoffmann
            }
1308 94527ead Gerd Hoffmann
1309 e654887f Gerd Hoffmann
            if (off + len > 4096) {
1310 e654887f Gerd Hoffmann
                /* transfer crosses page border */
1311 e654887f Gerd Hoffmann
                len2 = off + len - 4096;
1312 e654887f Gerd Hoffmann
                len1 = len - len2;
1313 e654887f Gerd Hoffmann
            } else {
1314 e654887f Gerd Hoffmann
                len1 = len;
1315 e654887f Gerd Hoffmann
                len2 = 0;
1316 e654887f Gerd Hoffmann
            }
1317 94527ead Gerd Hoffmann
1318 94527ead Gerd Hoffmann
            if (!dir) {
1319 94527ead Gerd Hoffmann
                pid = USB_TOKEN_OUT;
1320 e654887f Gerd Hoffmann
                trace_usb_ehci_data(0, pg, off, ptr1 + off, len1, 0);
1321 e654887f Gerd Hoffmann
                cpu_physical_memory_rw(ptr1 + off, &ehci->ibuffer[0], len1, 0);
1322 e654887f Gerd Hoffmann
                if (len2) {
1323 e654887f Gerd Hoffmann
                    trace_usb_ehci_data(0, pg+1, 0, ptr2, len2, len1);
1324 e654887f Gerd Hoffmann
                    cpu_physical_memory_rw(ptr2, &ehci->ibuffer[len1], len2, 0);
1325 e654887f Gerd Hoffmann
                }
1326 e654887f Gerd Hoffmann
            } else {
1327 94527ead Gerd Hoffmann
                pid = USB_TOKEN_IN;
1328 e654887f Gerd Hoffmann
            }
1329 94527ead Gerd Hoffmann
1330 94527ead Gerd Hoffmann
            ret = USB_RET_NODEV;
1331 94527ead Gerd Hoffmann
1332 94527ead Gerd Hoffmann
            for (j = 0; j < NB_PORTS; j++) {
1333 94527ead Gerd Hoffmann
                port = &ehci->ports[j];
1334 94527ead Gerd Hoffmann
                dev = port->dev;
1335 94527ead Gerd Hoffmann
1336 94527ead Gerd Hoffmann
                // TODO sometime we will also need to check if we are the port owner
1337 94527ead Gerd Hoffmann
1338 94527ead Gerd Hoffmann
                if (!(ehci->portsc[j] &(PORTSC_CONNECT))) {
1339 94527ead Gerd Hoffmann
                    continue;
1340 94527ead Gerd Hoffmann
                }
1341 94527ead Gerd Hoffmann
1342 0122f472 Gerd Hoffmann
                ehci->ipacket.pid = pid;
1343 e654887f Gerd Hoffmann
                ehci->ipacket.devaddr = devaddr;
1344 0122f472 Gerd Hoffmann
                ehci->ipacket.devep = endp;
1345 0122f472 Gerd Hoffmann
                ehci->ipacket.data = ehci->ibuffer;
1346 0122f472 Gerd Hoffmann
                ehci->ipacket.len = len;
1347 94527ead Gerd Hoffmann
1348 0122f472 Gerd Hoffmann
                ret = usb_handle_packet(dev, &ehci->ipacket);
1349 94527ead Gerd Hoffmann
1350 94527ead Gerd Hoffmann
                if (ret != USB_RET_NODEV) {
1351 94527ead Gerd Hoffmann
                    break;
1352 94527ead Gerd Hoffmann
                }
1353 94527ead Gerd Hoffmann
            }
1354 94527ead Gerd Hoffmann
1355 e654887f Gerd Hoffmann
#if 0
1356 94527ead Gerd Hoffmann
            /*  In isoch, there is no facility to indicate a NAK so let's
1357 94527ead Gerd Hoffmann
             *  instead just complete a zero-byte transaction.  Setting
1358 94527ead Gerd Hoffmann
             *  DBERR seems too draconian.
1359 94527ead Gerd Hoffmann
             */
1360 94527ead Gerd Hoffmann

1361 94527ead Gerd Hoffmann
            if (ret == USB_RET_NAK) {
1362 94527ead Gerd Hoffmann
                if (ehci->isoch_pause > 0) {
1363 94527ead Gerd Hoffmann
                    DPRINTF("ISOCH: received a NAK but paused so returning\n");
1364 94527ead Gerd Hoffmann
                    ehci->isoch_pause--;
1365 94527ead Gerd Hoffmann
                    return 0;
1366 94527ead Gerd Hoffmann
                } else if (ehci->isoch_pause == -1) {
1367 94527ead Gerd Hoffmann
                    DPRINTF("ISOCH: recv NAK & isoch pause inactive, setting\n");
1368 94527ead Gerd Hoffmann
                    // Pause frindex for up to 50 msec waiting for data from
1369 94527ead Gerd Hoffmann
                    // remote
1370 94527ead Gerd Hoffmann
                    ehci->isoch_pause = 50;
1371 94527ead Gerd Hoffmann
                    return 0;
1372 94527ead Gerd Hoffmann
                } else {
1373 94527ead Gerd Hoffmann
                    DPRINTF("ISOCH: isoch pause timeout! return 0\n");
1374 94527ead Gerd Hoffmann
                    ret = 0;
1375 94527ead Gerd Hoffmann
                }
1376 94527ead Gerd Hoffmann
            } else {
1377 94527ead Gerd Hoffmann
                DPRINTF("ISOCH: received ACK, clearing pause\n");
1378 94527ead Gerd Hoffmann
                ehci->isoch_pause = -1;
1379 94527ead Gerd Hoffmann
            }
1380 e654887f Gerd Hoffmann
#else
1381 e654887f Gerd Hoffmann
            if (ret == USB_RET_NAK) {
1382 e654887f Gerd Hoffmann
                ret = 0;
1383 e654887f Gerd Hoffmann
            }
1384 e654887f Gerd Hoffmann
#endif
1385 94527ead Gerd Hoffmann
1386 94527ead Gerd Hoffmann
            if (ret >= 0) {
1387 e654887f Gerd Hoffmann
                if (!dir) {
1388 e654887f Gerd Hoffmann
                    /* OUT */
1389 e654887f Gerd Hoffmann
                    set_field(&itd->transact[i], len - ret, ITD_XACT_LENGTH);
1390 e654887f Gerd Hoffmann
                } else {
1391 e654887f Gerd Hoffmann
                    /* IN */
1392 e654887f Gerd Hoffmann
                    if (len1 > ret) {
1393 e654887f Gerd Hoffmann
                        len1 = ret;
1394 e654887f Gerd Hoffmann
                    }
1395 e654887f Gerd Hoffmann
                    if (len2 > ret - len1) {
1396 e654887f Gerd Hoffmann
                        len2 = ret - len1;
1397 e654887f Gerd Hoffmann
                    }
1398 e654887f Gerd Hoffmann
                    if (len1) {
1399 e654887f Gerd Hoffmann
                        trace_usb_ehci_data(1, pg, off, ptr1 + off, len1, 0);
1400 e654887f Gerd Hoffmann
                        cpu_physical_memory_rw(ptr1 + off, &ehci->ibuffer[0], len1, 1);
1401 e654887f Gerd Hoffmann
                    }
1402 e654887f Gerd Hoffmann
                    if (len2) {
1403 e654887f Gerd Hoffmann
                        trace_usb_ehci_data(1, pg+1, 0, ptr2, len2, len1);
1404 e654887f Gerd Hoffmann
                        cpu_physical_memory_rw(ptr2, &ehci->ibuffer[len1], len2, 1);
1405 e654887f Gerd Hoffmann
                    }
1406 e654887f Gerd Hoffmann
                    set_field(&itd->transact[i], ret, ITD_XACT_LENGTH);
1407 e654887f Gerd Hoffmann
                }
1408 94527ead Gerd Hoffmann
1409 94527ead Gerd Hoffmann
                if (itd->transact[i] & ITD_XACT_IOC) {
1410 94527ead Gerd Hoffmann
                    ehci_record_interrupt(ehci, USBSTS_INT);
1411 94527ead Gerd Hoffmann
                }
1412 94527ead Gerd Hoffmann
            }
1413 e654887f Gerd Hoffmann
            itd->transact[i] &= ~ITD_XACT_ACTIVE;
1414 94527ead Gerd Hoffmann
        }
1415 94527ead Gerd Hoffmann
    }
1416 94527ead Gerd Hoffmann
    return 0;
1417 94527ead Gerd Hoffmann
}
1418 94527ead Gerd Hoffmann
1419 94527ead Gerd Hoffmann
/*  This state is the entry point for asynchronous schedule
1420 94527ead Gerd Hoffmann
 *  processing.  Entry here consitutes a EHCI start event state (4.8.5)
1421 94527ead Gerd Hoffmann
 */
1422 26d53979 Gerd Hoffmann
static int ehci_state_waitlisthead(EHCIState *ehci,  int async)
1423 94527ead Gerd Hoffmann
{
1424 0122f472 Gerd Hoffmann
    EHCIqh qh;
1425 94527ead Gerd Hoffmann
    int i = 0;
1426 94527ead Gerd Hoffmann
    int again = 0;
1427 94527ead Gerd Hoffmann
    uint32_t entry = ehci->asynclistaddr;
1428 94527ead Gerd Hoffmann
1429 94527ead Gerd Hoffmann
    /* set reclamation flag at start event (4.8.6) */
1430 94527ead Gerd Hoffmann
    if (async) {
1431 439a97cc Gerd Hoffmann
        ehci_set_usbsts(ehci, USBSTS_REC);
1432 94527ead Gerd Hoffmann
    }
1433 94527ead Gerd Hoffmann
1434 8ac6d699 Gerd Hoffmann
    ehci_queues_rip_unused(ehci);
1435 8ac6d699 Gerd Hoffmann
1436 94527ead Gerd Hoffmann
    /*  Find the head of the list (4.9.1.1) */
1437 94527ead Gerd Hoffmann
    for(i = 0; i < MAX_QH; i++) {
1438 0122f472 Gerd Hoffmann
        get_dwords(NLPTR_GET(entry), (uint32_t *) &qh, sizeof(EHCIqh) >> 2);
1439 8ac6d699 Gerd Hoffmann
        ehci_trace_qh(NULL, NLPTR_GET(entry), &qh);
1440 94527ead Gerd Hoffmann
1441 0122f472 Gerd Hoffmann
        if (qh.epchar & QH_EPCHAR_H) {
1442 94527ead Gerd Hoffmann
            if (async) {
1443 94527ead Gerd Hoffmann
                entry |= (NLPTR_TYPE_QH << 1);
1444 94527ead Gerd Hoffmann
            }
1445 94527ead Gerd Hoffmann
1446 0122f472 Gerd Hoffmann
            ehci_set_fetch_addr(ehci, async, entry);
1447 26d53979 Gerd Hoffmann
            ehci_set_state(ehci, async, EST_FETCHENTRY);
1448 94527ead Gerd Hoffmann
            again = 1;
1449 94527ead Gerd Hoffmann
            goto out;
1450 94527ead Gerd Hoffmann
        }
1451 94527ead Gerd Hoffmann
1452 0122f472 Gerd Hoffmann
        entry = qh.next;
1453 94527ead Gerd Hoffmann
        if (entry == ehci->asynclistaddr) {
1454 94527ead Gerd Hoffmann
            break;
1455 94527ead Gerd Hoffmann
        }
1456 94527ead Gerd Hoffmann
    }
1457 94527ead Gerd Hoffmann
1458 94527ead Gerd Hoffmann
    /* no head found for list. */
1459 94527ead Gerd Hoffmann
1460 26d53979 Gerd Hoffmann
    ehci_set_state(ehci, async, EST_ACTIVE);
1461 94527ead Gerd Hoffmann
1462 94527ead Gerd Hoffmann
out:
1463 94527ead Gerd Hoffmann
    return again;
1464 94527ead Gerd Hoffmann
}
1465 94527ead Gerd Hoffmann
1466 94527ead Gerd Hoffmann
1467 94527ead Gerd Hoffmann
/*  This state is the entry point for periodic schedule processing as
1468 94527ead Gerd Hoffmann
 *  well as being a continuation state for async processing.
1469 94527ead Gerd Hoffmann
 */
1470 26d53979 Gerd Hoffmann
static int ehci_state_fetchentry(EHCIState *ehci, int async)
1471 94527ead Gerd Hoffmann
{
1472 94527ead Gerd Hoffmann
    int again = 0;
1473 0122f472 Gerd Hoffmann
    uint32_t entry = ehci_get_fetch_addr(ehci, async);
1474 94527ead Gerd Hoffmann
1475 94527ead Gerd Hoffmann
    if (entry < 0x1000) {
1476 94527ead Gerd Hoffmann
        DPRINTF("fetchentry: entry invalid (0x%08x)\n", entry);
1477 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_ACTIVE);
1478 94527ead Gerd Hoffmann
        goto out;
1479 94527ead Gerd Hoffmann
    }
1480 94527ead Gerd Hoffmann
1481 94527ead Gerd Hoffmann
    /* section 4.8, only QH in async schedule */
1482 94527ead Gerd Hoffmann
    if (async && (NLPTR_TYPE_GET(entry) != NLPTR_TYPE_QH)) {
1483 94527ead Gerd Hoffmann
        fprintf(stderr, "non queue head request in async schedule\n");
1484 94527ead Gerd Hoffmann
        return -1;
1485 94527ead Gerd Hoffmann
    }
1486 94527ead Gerd Hoffmann
1487 94527ead Gerd Hoffmann
    switch (NLPTR_TYPE_GET(entry)) {
1488 94527ead Gerd Hoffmann
    case NLPTR_TYPE_QH:
1489 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_FETCHQH);
1490 94527ead Gerd Hoffmann
        again = 1;
1491 94527ead Gerd Hoffmann
        break;
1492 94527ead Gerd Hoffmann
1493 94527ead Gerd Hoffmann
    case NLPTR_TYPE_ITD:
1494 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_FETCHITD);
1495 94527ead Gerd Hoffmann
        again = 1;
1496 94527ead Gerd Hoffmann
        break;
1497 94527ead Gerd Hoffmann
1498 94527ead Gerd Hoffmann
    default:
1499 94527ead Gerd Hoffmann
        // TODO: handle siTD and FSTN types
1500 94527ead Gerd Hoffmann
        fprintf(stderr, "FETCHENTRY: entry at %X is of type %d "
1501 94527ead Gerd Hoffmann
                "which is not supported yet\n", entry, NLPTR_TYPE_GET(entry));
1502 94527ead Gerd Hoffmann
        return -1;
1503 94527ead Gerd Hoffmann
    }
1504 94527ead Gerd Hoffmann
1505 94527ead Gerd Hoffmann
out:
1506 94527ead Gerd Hoffmann
    return again;
1507 94527ead Gerd Hoffmann
}
1508 94527ead Gerd Hoffmann
1509 0122f472 Gerd Hoffmann
static EHCIQueue *ehci_state_fetchqh(EHCIState *ehci, int async)
1510 94527ead Gerd Hoffmann
{
1511 0122f472 Gerd Hoffmann
    uint32_t entry;
1512 0122f472 Gerd Hoffmann
    EHCIQueue *q;
1513 94527ead Gerd Hoffmann
    int reload;
1514 94527ead Gerd Hoffmann
1515 0122f472 Gerd Hoffmann
    entry = ehci_get_fetch_addr(ehci, async);
1516 8ac6d699 Gerd Hoffmann
    q = ehci_find_queue_by_qh(ehci, entry);
1517 8ac6d699 Gerd Hoffmann
    if (NULL == q) {
1518 8ac6d699 Gerd Hoffmann
        q = ehci_alloc_queue(ehci, async);
1519 8ac6d699 Gerd Hoffmann
    }
1520 0122f472 Gerd Hoffmann
    q->qhaddr = entry;
1521 8ac6d699 Gerd Hoffmann
    q->seen++;
1522 8ac6d699 Gerd Hoffmann
1523 8ac6d699 Gerd Hoffmann
    if (q->seen > 1) {
1524 8ac6d699 Gerd Hoffmann
        /* we are going in circles -- stop processing */
1525 8ac6d699 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_ACTIVE);
1526 8ac6d699 Gerd Hoffmann
        q = NULL;
1527 8ac6d699 Gerd Hoffmann
        goto out;
1528 8ac6d699 Gerd Hoffmann
    }
1529 94527ead Gerd Hoffmann
1530 0122f472 Gerd Hoffmann
    get_dwords(NLPTR_GET(q->qhaddr), (uint32_t *) &q->qh, sizeof(EHCIqh) >> 2);
1531 8ac6d699 Gerd Hoffmann
    ehci_trace_qh(q, NLPTR_GET(q->qhaddr), &q->qh);
1532 8ac6d699 Gerd Hoffmann
1533 8ac6d699 Gerd Hoffmann
    if (q->async == EHCI_ASYNC_INFLIGHT) {
1534 8ac6d699 Gerd Hoffmann
        /* I/O still in progress -- skip queue */
1535 8ac6d699 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_HORIZONTALQH);
1536 8ac6d699 Gerd Hoffmann
        goto out;
1537 8ac6d699 Gerd Hoffmann
    }
1538 8ac6d699 Gerd Hoffmann
    if (q->async == EHCI_ASYNC_FINISHED) {
1539 8ac6d699 Gerd Hoffmann
        /* I/O finished -- continue processing queue */
1540 8ac6d699 Gerd Hoffmann
        trace_usb_ehci_queue_action(q, "resume");
1541 8ac6d699 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_EXECUTING);
1542 8ac6d699 Gerd Hoffmann
        goto out;
1543 8ac6d699 Gerd Hoffmann
    }
1544 0122f472 Gerd Hoffmann
1545 0122f472 Gerd Hoffmann
    if (async && (q->qh.epchar & QH_EPCHAR_H)) {
1546 94527ead Gerd Hoffmann
1547 94527ead Gerd Hoffmann
        /*  EHCI spec version 1.0 Section 4.8.3 & 4.10.1 */
1548 94527ead Gerd Hoffmann
        if (ehci->usbsts & USBSTS_REC) {
1549 439a97cc Gerd Hoffmann
            ehci_clear_usbsts(ehci, USBSTS_REC);
1550 94527ead Gerd Hoffmann
        } else {
1551 94527ead Gerd Hoffmann
            DPRINTF("FETCHQH:  QH 0x%08x. H-bit set, reclamation status reset"
1552 0122f472 Gerd Hoffmann
                       " - done processing\n", q->qhaddr);
1553 26d53979 Gerd Hoffmann
            ehci_set_state(ehci, async, EST_ACTIVE);
1554 0122f472 Gerd Hoffmann
            q = NULL;
1555 94527ead Gerd Hoffmann
            goto out;
1556 94527ead Gerd Hoffmann
        }
1557 94527ead Gerd Hoffmann
    }
1558 94527ead Gerd Hoffmann
1559 94527ead Gerd Hoffmann
#if EHCI_DEBUG
1560 0122f472 Gerd Hoffmann
    if (q->qhaddr != q->qh.next) {
1561 94527ead Gerd Hoffmann
    DPRINTF("FETCHQH:  QH 0x%08x (h %x halt %x active %x) next 0x%08x\n",
1562 0122f472 Gerd Hoffmann
               q->qhaddr,
1563 0122f472 Gerd Hoffmann
               q->qh.epchar & QH_EPCHAR_H,
1564 0122f472 Gerd Hoffmann
               q->qh.token & QTD_TOKEN_HALT,
1565 0122f472 Gerd Hoffmann
               q->qh.token & QTD_TOKEN_ACTIVE,
1566 0122f472 Gerd Hoffmann
               q->qh.next);
1567 94527ead Gerd Hoffmann
    }
1568 94527ead Gerd Hoffmann
#endif
1569 94527ead Gerd Hoffmann
1570 0122f472 Gerd Hoffmann
    reload = get_field(q->qh.epchar, QH_EPCHAR_RL);
1571 94527ead Gerd Hoffmann
    if (reload) {
1572 0122f472 Gerd Hoffmann
        set_field(&q->qh.altnext_qtd, reload, QH_ALTNEXT_NAKCNT);
1573 94527ead Gerd Hoffmann
    }
1574 94527ead Gerd Hoffmann
1575 0122f472 Gerd Hoffmann
    if (q->qh.token & QTD_TOKEN_HALT) {
1576 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_HORIZONTALQH);
1577 94527ead Gerd Hoffmann
1578 0122f472 Gerd Hoffmann
    } else if ((q->qh.token & QTD_TOKEN_ACTIVE) && (q->qh.current_qtd > 0x1000)) {
1579 0122f472 Gerd Hoffmann
        q->qtdaddr = q->qh.current_qtd;
1580 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_FETCHQTD);
1581 94527ead Gerd Hoffmann
1582 94527ead Gerd Hoffmann
    } else {
1583 94527ead Gerd Hoffmann
        /*  EHCI spec version 1.0 Section 4.10.2 */
1584 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_ADVANCEQUEUE);
1585 94527ead Gerd Hoffmann
    }
1586 94527ead Gerd Hoffmann
1587 94527ead Gerd Hoffmann
out:
1588 0122f472 Gerd Hoffmann
    return q;
1589 94527ead Gerd Hoffmann
}
1590 94527ead Gerd Hoffmann
1591 26d53979 Gerd Hoffmann
static int ehci_state_fetchitd(EHCIState *ehci, int async)
1592 94527ead Gerd Hoffmann
{
1593 0122f472 Gerd Hoffmann
    uint32_t entry;
1594 94527ead Gerd Hoffmann
    EHCIitd itd;
1595 94527ead Gerd Hoffmann
1596 0122f472 Gerd Hoffmann
    assert(!async);
1597 0122f472 Gerd Hoffmann
    entry = ehci_get_fetch_addr(ehci, async);
1598 0122f472 Gerd Hoffmann
1599 0122f472 Gerd Hoffmann
    get_dwords(NLPTR_GET(entry),(uint32_t *) &itd,
1600 94527ead Gerd Hoffmann
               sizeof(EHCIitd) >> 2);
1601 0122f472 Gerd Hoffmann
    ehci_trace_itd(ehci, entry, &itd);
1602 94527ead Gerd Hoffmann
1603 94527ead Gerd Hoffmann
    if (ehci_process_itd(ehci, &itd) != 0) {
1604 94527ead Gerd Hoffmann
        return -1;
1605 94527ead Gerd Hoffmann
    }
1606 94527ead Gerd Hoffmann
1607 0122f472 Gerd Hoffmann
    put_dwords(NLPTR_GET(entry), (uint32_t *) &itd,
1608 94527ead Gerd Hoffmann
                sizeof(EHCIitd) >> 2);
1609 0122f472 Gerd Hoffmann
    ehci_set_fetch_addr(ehci, async, itd.next);
1610 26d53979 Gerd Hoffmann
    ehci_set_state(ehci, async, EST_FETCHENTRY);
1611 94527ead Gerd Hoffmann
1612 94527ead Gerd Hoffmann
    return 1;
1613 94527ead Gerd Hoffmann
}
1614 94527ead Gerd Hoffmann
1615 94527ead Gerd Hoffmann
/* Section 4.10.2 - paragraph 3 */
1616 0122f472 Gerd Hoffmann
static int ehci_state_advqueue(EHCIQueue *q, int async)
1617 94527ead Gerd Hoffmann
{
1618 94527ead Gerd Hoffmann
#if 0
1619 94527ead Gerd Hoffmann
    /* TO-DO: 4.10.2 - paragraph 2
1620 94527ead Gerd Hoffmann
     * if I-bit is set to 1 and QH is not active
1621 94527ead Gerd Hoffmann
     * go to horizontal QH
1622 94527ead Gerd Hoffmann
     */
1623 94527ead Gerd Hoffmann
    if (I-bit set) {
1624 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_HORIZONTALQH);
1625 94527ead Gerd Hoffmann
        goto out;
1626 94527ead Gerd Hoffmann
    }
1627 94527ead Gerd Hoffmann
#endif
1628 94527ead Gerd Hoffmann
1629 94527ead Gerd Hoffmann
    /*
1630 94527ead Gerd Hoffmann
     * want data and alt-next qTD is valid
1631 94527ead Gerd Hoffmann
     */
1632 0122f472 Gerd Hoffmann
    if (((q->qh.token & QTD_TOKEN_TBYTES_MASK) != 0) &&
1633 0122f472 Gerd Hoffmann
        (q->qh.altnext_qtd > 0x1000) &&
1634 0122f472 Gerd Hoffmann
        (NLPTR_TBIT(q->qh.altnext_qtd) == 0)) {
1635 0122f472 Gerd Hoffmann
        q->qtdaddr = q->qh.altnext_qtd;
1636 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_FETCHQTD);
1637 94527ead Gerd Hoffmann
1638 94527ead Gerd Hoffmann
    /*
1639 94527ead Gerd Hoffmann
     *  next qTD is valid
1640 94527ead Gerd Hoffmann
     */
1641 0122f472 Gerd Hoffmann
    } else if ((q->qh.next_qtd > 0x1000) &&
1642 0122f472 Gerd Hoffmann
               (NLPTR_TBIT(q->qh.next_qtd) == 0)) {
1643 0122f472 Gerd Hoffmann
        q->qtdaddr = q->qh.next_qtd;
1644 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_FETCHQTD);
1645 94527ead Gerd Hoffmann
1646 94527ead Gerd Hoffmann
    /*
1647 94527ead Gerd Hoffmann
     *  no valid qTD, try next QH
1648 94527ead Gerd Hoffmann
     */
1649 94527ead Gerd Hoffmann
    } else {
1650 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1651 94527ead Gerd Hoffmann
    }
1652 94527ead Gerd Hoffmann
1653 94527ead Gerd Hoffmann
    return 1;
1654 94527ead Gerd Hoffmann
}
1655 94527ead Gerd Hoffmann
1656 94527ead Gerd Hoffmann
/* Section 4.10.2 - paragraph 4 */
1657 0122f472 Gerd Hoffmann
static int ehci_state_fetchqtd(EHCIQueue *q, int async)
1658 94527ead Gerd Hoffmann
{
1659 94527ead Gerd Hoffmann
    int again = 0;
1660 94527ead Gerd Hoffmann
1661 0122f472 Gerd Hoffmann
    get_dwords(NLPTR_GET(q->qtdaddr),(uint32_t *) &q->qtd, sizeof(EHCIqtd) >> 2);
1662 8ac6d699 Gerd Hoffmann
    ehci_trace_qtd(q, NLPTR_GET(q->qtdaddr), &q->qtd);
1663 94527ead Gerd Hoffmann
1664 0122f472 Gerd Hoffmann
    if (q->qtd.token & QTD_TOKEN_ACTIVE) {
1665 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_EXECUTE);
1666 94527ead Gerd Hoffmann
        again = 1;
1667 94527ead Gerd Hoffmann
    } else {
1668 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1669 94527ead Gerd Hoffmann
        again = 1;
1670 94527ead Gerd Hoffmann
    }
1671 94527ead Gerd Hoffmann
1672 94527ead Gerd Hoffmann
    return again;
1673 94527ead Gerd Hoffmann
}
1674 94527ead Gerd Hoffmann
1675 0122f472 Gerd Hoffmann
static int ehci_state_horizqh(EHCIQueue *q, int async)
1676 94527ead Gerd Hoffmann
{
1677 94527ead Gerd Hoffmann
    int again = 0;
1678 94527ead Gerd Hoffmann
1679 0122f472 Gerd Hoffmann
    if (ehci_get_fetch_addr(q->ehci, async) != q->qh.next) {
1680 0122f472 Gerd Hoffmann
        ehci_set_fetch_addr(q->ehci, async, q->qh.next);
1681 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_FETCHENTRY);
1682 94527ead Gerd Hoffmann
        again = 1;
1683 94527ead Gerd Hoffmann
    } else {
1684 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_ACTIVE);
1685 94527ead Gerd Hoffmann
    }
1686 94527ead Gerd Hoffmann
1687 94527ead Gerd Hoffmann
    return again;
1688 94527ead Gerd Hoffmann
}
1689 94527ead Gerd Hoffmann
1690 8ac6d699 Gerd Hoffmann
/*
1691 8ac6d699 Gerd Hoffmann
 *  Write the qh back to guest physical memory.  This step isn't
1692 8ac6d699 Gerd Hoffmann
 *  in the EHCI spec but we need to do it since we don't share
1693 8ac6d699 Gerd Hoffmann
 *  physical memory with our guest VM.
1694 8ac6d699 Gerd Hoffmann
 *
1695 8ac6d699 Gerd Hoffmann
 *  The first three dwords are read-only for the EHCI, so skip them
1696 8ac6d699 Gerd Hoffmann
 *  when writing back the qh.
1697 8ac6d699 Gerd Hoffmann
 */
1698 8ac6d699 Gerd Hoffmann
static void ehci_flush_qh(EHCIQueue *q)
1699 8ac6d699 Gerd Hoffmann
{
1700 8ac6d699 Gerd Hoffmann
    uint32_t *qh = (uint32_t *) &q->qh;
1701 8ac6d699 Gerd Hoffmann
    uint32_t dwords = sizeof(EHCIqh) >> 2;
1702 8ac6d699 Gerd Hoffmann
    uint32_t addr = NLPTR_GET(q->qhaddr);
1703 8ac6d699 Gerd Hoffmann
1704 8ac6d699 Gerd Hoffmann
    put_dwords(addr + 3 * sizeof(uint32_t), qh + 3, dwords - 3);
1705 8ac6d699 Gerd Hoffmann
}
1706 8ac6d699 Gerd Hoffmann
1707 0122f472 Gerd Hoffmann
static int ehci_state_execute(EHCIQueue *q, int async)
1708 94527ead Gerd Hoffmann
{
1709 94527ead Gerd Hoffmann
    int again = 0;
1710 94527ead Gerd Hoffmann
    int reload, nakcnt;
1711 94527ead Gerd Hoffmann
    int smask;
1712 94527ead Gerd Hoffmann
1713 0122f472 Gerd Hoffmann
    if (ehci_qh_do_overlay(q) != 0) {
1714 94527ead Gerd Hoffmann
        return -1;
1715 94527ead Gerd Hoffmann
    }
1716 94527ead Gerd Hoffmann
1717 0122f472 Gerd Hoffmann
    smask = get_field(q->qh.epcap, QH_EPCAP_SMASK);
1718 94527ead Gerd Hoffmann
1719 94527ead Gerd Hoffmann
    if (!smask) {
1720 0122f472 Gerd Hoffmann
        reload = get_field(q->qh.epchar, QH_EPCHAR_RL);
1721 0122f472 Gerd Hoffmann
        nakcnt = get_field(q->qh.altnext_qtd, QH_ALTNEXT_NAKCNT);
1722 94527ead Gerd Hoffmann
        if (reload && !nakcnt) {
1723 0122f472 Gerd Hoffmann
            ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1724 94527ead Gerd Hoffmann
            again = 1;
1725 94527ead Gerd Hoffmann
            goto out;
1726 94527ead Gerd Hoffmann
        }
1727 94527ead Gerd Hoffmann
    }
1728 94527ead Gerd Hoffmann
1729 94527ead Gerd Hoffmann
    // TODO verify enough time remains in the uframe as in 4.4.1.1
1730 94527ead Gerd Hoffmann
    // TODO write back ptr to async list when done or out of time
1731 94527ead Gerd Hoffmann
    // TODO Windows does not seem to ever set the MULT field
1732 94527ead Gerd Hoffmann
1733 94527ead Gerd Hoffmann
    if (!async) {
1734 0122f472 Gerd Hoffmann
        int transactCtr = get_field(q->qh.epcap, QH_EPCAP_MULT);
1735 94527ead Gerd Hoffmann
        if (!transactCtr) {
1736 0122f472 Gerd Hoffmann
            ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1737 94527ead Gerd Hoffmann
            again = 1;
1738 94527ead Gerd Hoffmann
            goto out;
1739 94527ead Gerd Hoffmann
        }
1740 94527ead Gerd Hoffmann
    }
1741 94527ead Gerd Hoffmann
1742 94527ead Gerd Hoffmann
    if (async) {
1743 0122f472 Gerd Hoffmann
        ehci_set_usbsts(q->ehci, USBSTS_REC);
1744 94527ead Gerd Hoffmann
    }
1745 94527ead Gerd Hoffmann
1746 0122f472 Gerd Hoffmann
    q->usb_status = ehci_execute(q);
1747 0122f472 Gerd Hoffmann
    if (q->usb_status == USB_RET_PROCERR) {
1748 94527ead Gerd Hoffmann
        again = -1;
1749 94527ead Gerd Hoffmann
        goto out;
1750 94527ead Gerd Hoffmann
    }
1751 8ac6d699 Gerd Hoffmann
    if (q->usb_status == USB_RET_ASYNC) {
1752 8ac6d699 Gerd Hoffmann
        ehci_flush_qh(q);
1753 8ac6d699 Gerd Hoffmann
        trace_usb_ehci_queue_action(q, "suspend");
1754 8ac6d699 Gerd Hoffmann
        q->async = EHCI_ASYNC_INFLIGHT;
1755 8ac6d699 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1756 94527ead Gerd Hoffmann
        again = 1;
1757 8ac6d699 Gerd Hoffmann
        goto out;
1758 94527ead Gerd Hoffmann
    }
1759 94527ead Gerd Hoffmann
1760 8ac6d699 Gerd Hoffmann
    ehci_set_state(q->ehci, async, EST_EXECUTING);
1761 8ac6d699 Gerd Hoffmann
    again = 1;
1762 8ac6d699 Gerd Hoffmann
1763 94527ead Gerd Hoffmann
out:
1764 94527ead Gerd Hoffmann
    return again;
1765 94527ead Gerd Hoffmann
}
1766 94527ead Gerd Hoffmann
1767 0122f472 Gerd Hoffmann
static int ehci_state_executing(EHCIQueue *q, int async)
1768 94527ead Gerd Hoffmann
{
1769 94527ead Gerd Hoffmann
    int again = 0;
1770 94527ead Gerd Hoffmann
    int reload, nakcnt;
1771 94527ead Gerd Hoffmann
1772 0122f472 Gerd Hoffmann
    ehci_execute_complete(q);
1773 0122f472 Gerd Hoffmann
    if (q->usb_status == USB_RET_ASYNC) {
1774 94527ead Gerd Hoffmann
        goto out;
1775 94527ead Gerd Hoffmann
    }
1776 0122f472 Gerd Hoffmann
    if (q->usb_status == USB_RET_PROCERR) {
1777 94527ead Gerd Hoffmann
        again = -1;
1778 94527ead Gerd Hoffmann
        goto out;
1779 94527ead Gerd Hoffmann
    }
1780 94527ead Gerd Hoffmann
1781 94527ead Gerd Hoffmann
    // 4.10.3
1782 94527ead Gerd Hoffmann
    if (!async) {
1783 0122f472 Gerd Hoffmann
        int transactCtr = get_field(q->qh.epcap, QH_EPCAP_MULT);
1784 94527ead Gerd Hoffmann
        transactCtr--;
1785 0122f472 Gerd Hoffmann
        set_field(&q->qh.epcap, transactCtr, QH_EPCAP_MULT);
1786 94527ead Gerd Hoffmann
        // 4.10.3, bottom of page 82, should exit this state when transaction
1787 94527ead Gerd Hoffmann
        // counter decrements to 0
1788 94527ead Gerd Hoffmann
    }
1789 94527ead Gerd Hoffmann
1790 0122f472 Gerd Hoffmann
    reload = get_field(q->qh.epchar, QH_EPCHAR_RL);
1791 94527ead Gerd Hoffmann
    if (reload) {
1792 0122f472 Gerd Hoffmann
        nakcnt = get_field(q->qh.altnext_qtd, QH_ALTNEXT_NAKCNT);
1793 0122f472 Gerd Hoffmann
        if (q->usb_status == USB_RET_NAK) {
1794 94527ead Gerd Hoffmann
            if (nakcnt) {
1795 94527ead Gerd Hoffmann
                nakcnt--;
1796 94527ead Gerd Hoffmann
            }
1797 94527ead Gerd Hoffmann
        } else {
1798 94527ead Gerd Hoffmann
            nakcnt = reload;
1799 94527ead Gerd Hoffmann
        }
1800 0122f472 Gerd Hoffmann
        set_field(&q->qh.altnext_qtd, nakcnt, QH_ALTNEXT_NAKCNT);
1801 94527ead Gerd Hoffmann
    }
1802 94527ead Gerd Hoffmann
1803 94527ead Gerd Hoffmann
    /* 4.10.5 */
1804 0122f472 Gerd Hoffmann
    if ((q->usb_status == USB_RET_NAK) || (q->qh.token & QTD_TOKEN_ACTIVE)) {
1805 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1806 94527ead Gerd Hoffmann
    } else {
1807 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_WRITEBACK);
1808 94527ead Gerd Hoffmann
    }
1809 94527ead Gerd Hoffmann
1810 94527ead Gerd Hoffmann
    again = 1;
1811 94527ead Gerd Hoffmann
1812 94527ead Gerd Hoffmann
out:
1813 8ac6d699 Gerd Hoffmann
    ehci_flush_qh(q);
1814 94527ead Gerd Hoffmann
    return again;
1815 94527ead Gerd Hoffmann
}
1816 94527ead Gerd Hoffmann
1817 94527ead Gerd Hoffmann
1818 0122f472 Gerd Hoffmann
static int ehci_state_writeback(EHCIQueue *q, int async)
1819 94527ead Gerd Hoffmann
{
1820 94527ead Gerd Hoffmann
    int again = 0;
1821 94527ead Gerd Hoffmann
1822 94527ead Gerd Hoffmann
    /*  Write back the QTD from the QH area */
1823 8ac6d699 Gerd Hoffmann
    ehci_trace_qtd(q, NLPTR_GET(q->qtdaddr), (EHCIqtd*) &q->qh.next_qtd);
1824 0122f472 Gerd Hoffmann
    put_dwords(NLPTR_GET(q->qtdaddr),(uint32_t *) &q->qh.next_qtd,
1825 94527ead Gerd Hoffmann
                sizeof(EHCIqtd) >> 2);
1826 94527ead Gerd Hoffmann
1827 d2bd525f Gerd Hoffmann
    /*
1828 d2bd525f Gerd Hoffmann
     * EHCI specs say go horizontal here.
1829 d2bd525f Gerd Hoffmann
     *
1830 d2bd525f Gerd Hoffmann
     * We can also advance the queue here for performance reasons.  We
1831 d2bd525f Gerd Hoffmann
     * need to take care to only take that shortcut in case we've
1832 d2bd525f Gerd Hoffmann
     * processed the qtd just written back without errors, i.e. halt
1833 d2bd525f Gerd Hoffmann
     * bit is clear.
1834 94527ead Gerd Hoffmann
     */
1835 d2bd525f Gerd Hoffmann
    if (q->qh.token & QTD_TOKEN_HALT) {
1836 d2bd525f Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_HORIZONTALQH);
1837 d2bd525f Gerd Hoffmann
        again = 1;
1838 d2bd525f Gerd Hoffmann
    } else {
1839 0122f472 Gerd Hoffmann
        ehci_set_state(q->ehci, async, EST_ADVANCEQUEUE);
1840 94527ead Gerd Hoffmann
        again = 1;
1841 d2bd525f Gerd Hoffmann
    }
1842 94527ead Gerd Hoffmann
    return again;
1843 94527ead Gerd Hoffmann
}
1844 94527ead Gerd Hoffmann
1845 94527ead Gerd Hoffmann
/*
1846 94527ead Gerd Hoffmann
 * This is the state machine that is common to both async and periodic
1847 94527ead Gerd Hoffmann
 */
1848 94527ead Gerd Hoffmann
1849 26d53979 Gerd Hoffmann
static void ehci_advance_state(EHCIState *ehci,
1850 26d53979 Gerd Hoffmann
                               int async)
1851 94527ead Gerd Hoffmann
{
1852 0122f472 Gerd Hoffmann
    EHCIQueue *q = NULL;
1853 94527ead Gerd Hoffmann
    int again;
1854 94527ead Gerd Hoffmann
    int iter = 0;
1855 94527ead Gerd Hoffmann
1856 94527ead Gerd Hoffmann
    do {
1857 26d53979 Gerd Hoffmann
        if (ehci_get_state(ehci, async) == EST_FETCHQH) {
1858 94527ead Gerd Hoffmann
            iter++;
1859 94527ead Gerd Hoffmann
            /* if we are roaming a lot of QH without executing a qTD
1860 94527ead Gerd Hoffmann
             * something is wrong with the linked list. TO-DO: why is
1861 94527ead Gerd Hoffmann
             * this hack needed?
1862 94527ead Gerd Hoffmann
             */
1863 8ac6d699 Gerd Hoffmann
            assert(iter < MAX_ITERATIONS);
1864 8ac6d699 Gerd Hoffmann
#if 0
1865 94527ead Gerd Hoffmann
            if (iter > MAX_ITERATIONS) {
1866 94527ead Gerd Hoffmann
                DPRINTF("\n*** advance_state: bailing on MAX ITERATIONS***\n");
1867 26d53979 Gerd Hoffmann
                ehci_set_state(ehci, async, EST_ACTIVE);
1868 94527ead Gerd Hoffmann
                break;
1869 94527ead Gerd Hoffmann
            }
1870 8ac6d699 Gerd Hoffmann
#endif
1871 94527ead Gerd Hoffmann
        }
1872 26d53979 Gerd Hoffmann
        switch(ehci_get_state(ehci, async)) {
1873 94527ead Gerd Hoffmann
        case EST_WAITLISTHEAD:
1874 26d53979 Gerd Hoffmann
            again = ehci_state_waitlisthead(ehci, async);
1875 94527ead Gerd Hoffmann
            break;
1876 94527ead Gerd Hoffmann
1877 94527ead Gerd Hoffmann
        case EST_FETCHENTRY:
1878 26d53979 Gerd Hoffmann
            again = ehci_state_fetchentry(ehci, async);
1879 94527ead Gerd Hoffmann
            break;
1880 94527ead Gerd Hoffmann
1881 94527ead Gerd Hoffmann
        case EST_FETCHQH:
1882 0122f472 Gerd Hoffmann
            q = ehci_state_fetchqh(ehci, async);
1883 0122f472 Gerd Hoffmann
            again = q ? 1 : 0;
1884 94527ead Gerd Hoffmann
            break;
1885 94527ead Gerd Hoffmann
1886 94527ead Gerd Hoffmann
        case EST_FETCHITD:
1887 26d53979 Gerd Hoffmann
            again = ehci_state_fetchitd(ehci, async);
1888 94527ead Gerd Hoffmann
            break;
1889 94527ead Gerd Hoffmann
1890 94527ead Gerd Hoffmann
        case EST_ADVANCEQUEUE:
1891 0122f472 Gerd Hoffmann
            again = ehci_state_advqueue(q, async);
1892 94527ead Gerd Hoffmann
            break;
1893 94527ead Gerd Hoffmann
1894 94527ead Gerd Hoffmann
        case EST_FETCHQTD:
1895 0122f472 Gerd Hoffmann
            again = ehci_state_fetchqtd(q, async);
1896 94527ead Gerd Hoffmann
            break;
1897 94527ead Gerd Hoffmann
1898 94527ead Gerd Hoffmann
        case EST_HORIZONTALQH:
1899 0122f472 Gerd Hoffmann
            again = ehci_state_horizqh(q, async);
1900 94527ead Gerd Hoffmann
            break;
1901 94527ead Gerd Hoffmann
1902 94527ead Gerd Hoffmann
        case EST_EXECUTE:
1903 94527ead Gerd Hoffmann
            iter = 0;
1904 0122f472 Gerd Hoffmann
            again = ehci_state_execute(q, async);
1905 94527ead Gerd Hoffmann
            break;
1906 94527ead Gerd Hoffmann
1907 94527ead Gerd Hoffmann
        case EST_EXECUTING:
1908 8ac6d699 Gerd Hoffmann
            assert(q != NULL);
1909 0122f472 Gerd Hoffmann
            again = ehci_state_executing(q, async);
1910 94527ead Gerd Hoffmann
            break;
1911 94527ead Gerd Hoffmann
1912 94527ead Gerd Hoffmann
        case EST_WRITEBACK:
1913 0122f472 Gerd Hoffmann
            again = ehci_state_writeback(q, async);
1914 94527ead Gerd Hoffmann
            break;
1915 94527ead Gerd Hoffmann
1916 94527ead Gerd Hoffmann
        default:
1917 94527ead Gerd Hoffmann
            fprintf(stderr, "Bad state!\n");
1918 94527ead Gerd Hoffmann
            again = -1;
1919 8ac6d699 Gerd Hoffmann
            assert(0);
1920 94527ead Gerd Hoffmann
            break;
1921 94527ead Gerd Hoffmann
        }
1922 94527ead Gerd Hoffmann
1923 94527ead Gerd Hoffmann
        if (again < 0) {
1924 94527ead Gerd Hoffmann
            fprintf(stderr, "processing error - resetting ehci HC\n");
1925 94527ead Gerd Hoffmann
            ehci_reset(ehci);
1926 94527ead Gerd Hoffmann
            again = 0;
1927 8ac6d699 Gerd Hoffmann
            assert(0);
1928 94527ead Gerd Hoffmann
        }
1929 94527ead Gerd Hoffmann
    }
1930 94527ead Gerd Hoffmann
    while (again);
1931 94527ead Gerd Hoffmann
1932 94527ead Gerd Hoffmann
    ehci_commit_interrupt(ehci);
1933 94527ead Gerd Hoffmann
}
1934 94527ead Gerd Hoffmann
1935 94527ead Gerd Hoffmann
static void ehci_advance_async_state(EHCIState *ehci)
1936 94527ead Gerd Hoffmann
{
1937 26d53979 Gerd Hoffmann
    int async = 1;
1938 94527ead Gerd Hoffmann
1939 26d53979 Gerd Hoffmann
    switch(ehci_get_state(ehci, async)) {
1940 94527ead Gerd Hoffmann
    case EST_INACTIVE:
1941 94527ead Gerd Hoffmann
        if (!(ehci->usbcmd & USBCMD_ASE)) {
1942 94527ead Gerd Hoffmann
            break;
1943 94527ead Gerd Hoffmann
        }
1944 439a97cc Gerd Hoffmann
        ehci_set_usbsts(ehci, USBSTS_ASS);
1945 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_ACTIVE);
1946 94527ead Gerd Hoffmann
        // No break, fall through to ACTIVE
1947 94527ead Gerd Hoffmann
1948 94527ead Gerd Hoffmann
    case EST_ACTIVE:
1949 94527ead Gerd Hoffmann
        if ( !(ehci->usbcmd & USBCMD_ASE)) {
1950 439a97cc Gerd Hoffmann
            ehci_clear_usbsts(ehci, USBSTS_ASS);
1951 26d53979 Gerd Hoffmann
            ehci_set_state(ehci, async, EST_INACTIVE);
1952 94527ead Gerd Hoffmann
            break;
1953 94527ead Gerd Hoffmann
        }
1954 94527ead Gerd Hoffmann
1955 94527ead Gerd Hoffmann
        /* If the doorbell is set, the guest wants to make a change to the
1956 94527ead Gerd Hoffmann
         * schedule. The host controller needs to release cached data.
1957 94527ead Gerd Hoffmann
         * (section 4.8.2)
1958 94527ead Gerd Hoffmann
         */
1959 94527ead Gerd Hoffmann
        if (ehci->usbcmd & USBCMD_IAAD) {
1960 94527ead Gerd Hoffmann
            DPRINTF("ASYNC: doorbell request acknowledged\n");
1961 94527ead Gerd Hoffmann
            ehci->usbcmd &= ~USBCMD_IAAD;
1962 94527ead Gerd Hoffmann
            ehci_set_interrupt(ehci, USBSTS_IAA);
1963 94527ead Gerd Hoffmann
            break;
1964 94527ead Gerd Hoffmann
        }
1965 94527ead Gerd Hoffmann
1966 94527ead Gerd Hoffmann
        /* make sure guest has acknowledged */
1967 94527ead Gerd Hoffmann
        /* TO-DO: is this really needed? */
1968 94527ead Gerd Hoffmann
        if (ehci->usbsts & USBSTS_IAA) {
1969 94527ead Gerd Hoffmann
            DPRINTF("IAA status bit still set.\n");
1970 94527ead Gerd Hoffmann
            break;
1971 94527ead Gerd Hoffmann
        }
1972 94527ead Gerd Hoffmann
1973 94527ead Gerd Hoffmann
        /* check that address register has been set */
1974 94527ead Gerd Hoffmann
        if (ehci->asynclistaddr == 0) {
1975 94527ead Gerd Hoffmann
            break;
1976 94527ead Gerd Hoffmann
        }
1977 94527ead Gerd Hoffmann
1978 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_WAITLISTHEAD);
1979 26d53979 Gerd Hoffmann
        ehci_advance_state(ehci, async);
1980 94527ead Gerd Hoffmann
        break;
1981 94527ead Gerd Hoffmann
1982 94527ead Gerd Hoffmann
    default:
1983 94527ead Gerd Hoffmann
        /* this should only be due to a developer mistake */
1984 94527ead Gerd Hoffmann
        fprintf(stderr, "ehci: Bad asynchronous state %d. "
1985 94527ead Gerd Hoffmann
                "Resetting to active\n", ehci->astate);
1986 0122f472 Gerd Hoffmann
        assert(0);
1987 94527ead Gerd Hoffmann
    }
1988 94527ead Gerd Hoffmann
}
1989 94527ead Gerd Hoffmann
1990 94527ead Gerd Hoffmann
static void ehci_advance_periodic_state(EHCIState *ehci)
1991 94527ead Gerd Hoffmann
{
1992 94527ead Gerd Hoffmann
    uint32_t entry;
1993 94527ead Gerd Hoffmann
    uint32_t list;
1994 26d53979 Gerd Hoffmann
    int async = 0;
1995 94527ead Gerd Hoffmann
1996 94527ead Gerd Hoffmann
    // 4.6
1997 94527ead Gerd Hoffmann
1998 26d53979 Gerd Hoffmann
    switch(ehci_get_state(ehci, async)) {
1999 94527ead Gerd Hoffmann
    case EST_INACTIVE:
2000 94527ead Gerd Hoffmann
        if ( !(ehci->frindex & 7) && (ehci->usbcmd & USBCMD_PSE)) {
2001 439a97cc Gerd Hoffmann
            ehci_set_usbsts(ehci, USBSTS_PSS);
2002 26d53979 Gerd Hoffmann
            ehci_set_state(ehci, async, EST_ACTIVE);
2003 94527ead Gerd Hoffmann
            // No break, fall through to ACTIVE
2004 94527ead Gerd Hoffmann
        } else
2005 94527ead Gerd Hoffmann
            break;
2006 94527ead Gerd Hoffmann
2007 94527ead Gerd Hoffmann
    case EST_ACTIVE:
2008 94527ead Gerd Hoffmann
        if ( !(ehci->frindex & 7) && !(ehci->usbcmd & USBCMD_PSE)) {
2009 439a97cc Gerd Hoffmann
            ehci_clear_usbsts(ehci, USBSTS_PSS);
2010 26d53979 Gerd Hoffmann
            ehci_set_state(ehci, async, EST_INACTIVE);
2011 94527ead Gerd Hoffmann
            break;
2012 94527ead Gerd Hoffmann
        }
2013 94527ead Gerd Hoffmann
2014 94527ead Gerd Hoffmann
        list = ehci->periodiclistbase & 0xfffff000;
2015 94527ead Gerd Hoffmann
        /* check that register has been set */
2016 94527ead Gerd Hoffmann
        if (list == 0) {
2017 94527ead Gerd Hoffmann
            break;
2018 94527ead Gerd Hoffmann
        }
2019 94527ead Gerd Hoffmann
        list |= ((ehci->frindex & 0x1ff8) >> 1);
2020 94527ead Gerd Hoffmann
2021 94527ead Gerd Hoffmann
        cpu_physical_memory_rw(list, (uint8_t *) &entry, sizeof entry, 0);
2022 94527ead Gerd Hoffmann
        entry = le32_to_cpu(entry);
2023 94527ead Gerd Hoffmann
2024 94527ead Gerd Hoffmann
        DPRINTF("PERIODIC state adv fr=%d.  [%08X] -> %08X\n",
2025 94527ead Gerd Hoffmann
                ehci->frindex / 8, list, entry);
2026 0122f472 Gerd Hoffmann
        ehci_set_fetch_addr(ehci, async,entry);
2027 26d53979 Gerd Hoffmann
        ehci_set_state(ehci, async, EST_FETCHENTRY);
2028 26d53979 Gerd Hoffmann
        ehci_advance_state(ehci, async);
2029 94527ead Gerd Hoffmann
        break;
2030 94527ead Gerd Hoffmann
2031 94527ead Gerd Hoffmann
    default:
2032 94527ead Gerd Hoffmann
        /* this should only be due to a developer mistake */
2033 94527ead Gerd Hoffmann
        fprintf(stderr, "ehci: Bad periodic state %d. "
2034 94527ead Gerd Hoffmann
                "Resetting to active\n", ehci->pstate);
2035 0122f472 Gerd Hoffmann
        assert(0);
2036 94527ead Gerd Hoffmann
    }
2037 94527ead Gerd Hoffmann
}
2038 94527ead Gerd Hoffmann
2039 94527ead Gerd Hoffmann
static void ehci_frame_timer(void *opaque)
2040 94527ead Gerd Hoffmann
{
2041 94527ead Gerd Hoffmann
    EHCIState *ehci = opaque;
2042 94527ead Gerd Hoffmann
    int64_t expire_time, t_now;
2043 94527ead Gerd Hoffmann
    int usec_elapsed;
2044 94527ead Gerd Hoffmann
    int frames;
2045 94527ead Gerd Hoffmann
    int usec_now;
2046 94527ead Gerd Hoffmann
    int i;
2047 94527ead Gerd Hoffmann
    int skipped_frames = 0;
2048 94527ead Gerd Hoffmann
2049 94527ead Gerd Hoffmann
2050 94527ead Gerd Hoffmann
    t_now = qemu_get_clock_ns(vm_clock);
2051 94527ead Gerd Hoffmann
    expire_time = t_now + (get_ticks_per_sec() / FRAME_TIMER_FREQ);
2052 94527ead Gerd Hoffmann
    if (expire_time == t_now) {
2053 94527ead Gerd Hoffmann
        expire_time++;
2054 94527ead Gerd Hoffmann
    }
2055 94527ead Gerd Hoffmann
2056 94527ead Gerd Hoffmann
    usec_now = t_now / 1000;
2057 94527ead Gerd Hoffmann
    usec_elapsed = usec_now - ehci->last_run_usec;
2058 94527ead Gerd Hoffmann
    frames = usec_elapsed / FRAME_TIMER_USEC;
2059 94527ead Gerd Hoffmann
    ehci->frame_end_usec = usec_now + FRAME_TIMER_USEC - 10;
2060 94527ead Gerd Hoffmann
2061 94527ead Gerd Hoffmann
    for (i = 0; i < frames; i++) {
2062 94527ead Gerd Hoffmann
        if ( !(ehci->usbsts & USBSTS_HALT)) {
2063 94527ead Gerd Hoffmann
            if (ehci->isoch_pause <= 0) {
2064 94527ead Gerd Hoffmann
                ehci->frindex += 8;
2065 94527ead Gerd Hoffmann
            }
2066 94527ead Gerd Hoffmann
2067 94527ead Gerd Hoffmann
            if (ehci->frindex > 0x00001fff) {
2068 94527ead Gerd Hoffmann
                ehci->frindex = 0;
2069 94527ead Gerd Hoffmann
                ehci_set_interrupt(ehci, USBSTS_FLR);
2070 94527ead Gerd Hoffmann
            }
2071 94527ead Gerd Hoffmann
2072 94527ead Gerd Hoffmann
            ehci->sofv = (ehci->frindex - 1) >> 3;
2073 94527ead Gerd Hoffmann
            ehci->sofv &= 0x000003ff;
2074 94527ead Gerd Hoffmann
        }
2075 94527ead Gerd Hoffmann
2076 94527ead Gerd Hoffmann
        if (frames - i > 10) {
2077 94527ead Gerd Hoffmann
            skipped_frames++;
2078 94527ead Gerd Hoffmann
        } else {
2079 d0539307 Gerd Hoffmann
            ehci_advance_periodic_state(ehci);
2080 94527ead Gerd Hoffmann
        }
2081 94527ead Gerd Hoffmann
2082 94527ead Gerd Hoffmann
        ehci->last_run_usec += FRAME_TIMER_USEC;
2083 94527ead Gerd Hoffmann
    }
2084 94527ead Gerd Hoffmann
2085 94527ead Gerd Hoffmann
#if 0
2086 94527ead Gerd Hoffmann
    if (skipped_frames) {
2087 94527ead Gerd Hoffmann
        DPRINTF("WARNING - EHCI skipped %d frames\n", skipped_frames);
2088 94527ead Gerd Hoffmann
    }
2089 94527ead Gerd Hoffmann
#endif
2090 94527ead Gerd Hoffmann
2091 94527ead Gerd Hoffmann
    /*  Async is not inside loop since it executes everything it can once
2092 94527ead Gerd Hoffmann
     *  called
2093 94527ead Gerd Hoffmann
     */
2094 d0539307 Gerd Hoffmann
    ehci_advance_async_state(ehci);
2095 94527ead Gerd Hoffmann
2096 94527ead Gerd Hoffmann
    qemu_mod_timer(ehci->frame_timer, expire_time);
2097 94527ead Gerd Hoffmann
}
2098 94527ead Gerd Hoffmann
2099 94527ead Gerd Hoffmann
static CPUReadMemoryFunc *ehci_readfn[3]={
2100 94527ead Gerd Hoffmann
    ehci_mem_readb,
2101 94527ead Gerd Hoffmann
    ehci_mem_readw,
2102 94527ead Gerd Hoffmann
    ehci_mem_readl
2103 94527ead Gerd Hoffmann
};
2104 94527ead Gerd Hoffmann
2105 94527ead Gerd Hoffmann
static CPUWriteMemoryFunc *ehci_writefn[3]={
2106 94527ead Gerd Hoffmann
    ehci_mem_writeb,
2107 94527ead Gerd Hoffmann
    ehci_mem_writew,
2108 94527ead Gerd Hoffmann
    ehci_mem_writel
2109 94527ead Gerd Hoffmann
};
2110 94527ead Gerd Hoffmann
2111 94527ead Gerd Hoffmann
static void ehci_map(PCIDevice *pci_dev, int region_num,
2112 94527ead Gerd Hoffmann
                     pcibus_t addr, pcibus_t size, int type)
2113 94527ead Gerd Hoffmann
{
2114 94527ead Gerd Hoffmann
    EHCIState *s =(EHCIState *)pci_dev;
2115 94527ead Gerd Hoffmann
2116 94527ead Gerd Hoffmann
    DPRINTF("ehci_map: region %d, addr %08" PRIx64 ", size %" PRId64 ", s->mem %08X\n",
2117 94527ead Gerd Hoffmann
            region_num, addr, size, s->mem);
2118 94527ead Gerd Hoffmann
    s->mem_base = addr;
2119 94527ead Gerd Hoffmann
    cpu_register_physical_memory(addr, size, s->mem);
2120 94527ead Gerd Hoffmann
}
2121 94527ead Gerd Hoffmann
2122 07771f6f Gerd Hoffmann
static void ehci_device_destroy(USBBus *bus, USBDevice *dev)
2123 07771f6f Gerd Hoffmann
{
2124 07771f6f Gerd Hoffmann
    EHCIState *s = container_of(bus, EHCIState, bus);
2125 07771f6f Gerd Hoffmann
2126 07771f6f Gerd Hoffmann
    ehci_queues_rip_device(s, dev);
2127 07771f6f Gerd Hoffmann
}
2128 07771f6f Gerd Hoffmann
2129 94527ead Gerd Hoffmann
static int usb_ehci_initfn(PCIDevice *dev);
2130 94527ead Gerd Hoffmann
2131 94527ead Gerd Hoffmann
static USBPortOps ehci_port_ops = {
2132 94527ead Gerd Hoffmann
    .attach = ehci_attach,
2133 94527ead Gerd Hoffmann
    .detach = ehci_detach,
2134 94527ead Gerd Hoffmann
    .complete = ehci_async_complete_packet,
2135 94527ead Gerd Hoffmann
};
2136 94527ead Gerd Hoffmann
2137 07771f6f Gerd Hoffmann
static USBBusOps ehci_bus_ops = {
2138 07771f6f Gerd Hoffmann
    .device_destroy = ehci_device_destroy,
2139 07771f6f Gerd Hoffmann
};
2140 07771f6f Gerd Hoffmann
2141 94527ead Gerd Hoffmann
static PCIDeviceInfo ehci_info = {
2142 94527ead Gerd Hoffmann
    .qdev.name    = "usb-ehci",
2143 94527ead Gerd Hoffmann
    .qdev.size    = sizeof(EHCIState),
2144 94527ead Gerd Hoffmann
    .init         = usb_ehci_initfn,
2145 94527ead Gerd Hoffmann
};
2146 94527ead Gerd Hoffmann
2147 94527ead Gerd Hoffmann
static int usb_ehci_initfn(PCIDevice *dev)
2148 94527ead Gerd Hoffmann
{
2149 94527ead Gerd Hoffmann
    EHCIState *s = DO_UPCAST(EHCIState, dev, dev);
2150 94527ead Gerd Hoffmann
    uint8_t *pci_conf = s->dev.config;
2151 94527ead Gerd Hoffmann
    int i;
2152 94527ead Gerd Hoffmann
2153 94527ead Gerd Hoffmann
    pci_config_set_vendor_id(pci_conf, PCI_VENDOR_ID_INTEL);
2154 94527ead Gerd Hoffmann
    pci_config_set_device_id(pci_conf, PCI_DEVICE_ID_INTEL_82801D);
2155 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_REVISION_ID], 0x10);
2156 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_CLASS_PROG], 0x20);
2157 94527ead Gerd Hoffmann
    pci_config_set_class(pci_conf, PCI_CLASS_SERIAL_USB);
2158 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_HEADER_TYPE], PCI_HEADER_TYPE_NORMAL);
2159 94527ead Gerd Hoffmann
2160 94527ead Gerd Hoffmann
    /* capabilities pointer */
2161 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_CAPABILITY_LIST], 0x00);
2162 94527ead Gerd Hoffmann
    //pci_set_byte(&pci_conf[PCI_CAPABILITY_LIST], 0x50);
2163 94527ead Gerd Hoffmann
2164 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_INTERRUPT_PIN], 4); // interrupt pin 3
2165 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_MIN_GNT], 0);
2166 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[PCI_MAX_LAT], 0);
2167 94527ead Gerd Hoffmann
2168 94527ead Gerd Hoffmann
    // pci_conf[0x50] = 0x01; // power management caps
2169 94527ead Gerd Hoffmann
2170 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[0x60], 0x20);  // spec release number (2.1.4)
2171 94527ead Gerd Hoffmann
    pci_set_byte(&pci_conf[0x61], 0x20);  // frame length adjustment (2.1.5)
2172 94527ead Gerd Hoffmann
    pci_set_word(&pci_conf[0x62], 0x00);  // port wake up capability (2.1.6)
2173 94527ead Gerd Hoffmann
2174 94527ead Gerd Hoffmann
    pci_conf[0x64] = 0x00;
2175 94527ead Gerd Hoffmann
    pci_conf[0x65] = 0x00;
2176 94527ead Gerd Hoffmann
    pci_conf[0x66] = 0x00;
2177 94527ead Gerd Hoffmann
    pci_conf[0x67] = 0x00;
2178 94527ead Gerd Hoffmann
    pci_conf[0x68] = 0x01;
2179 94527ead Gerd Hoffmann
    pci_conf[0x69] = 0x00;
2180 94527ead Gerd Hoffmann
    pci_conf[0x6a] = 0x00;
2181 94527ead Gerd Hoffmann
    pci_conf[0x6b] = 0x00;  // USBLEGSUP
2182 94527ead Gerd Hoffmann
    pci_conf[0x6c] = 0x00;
2183 94527ead Gerd Hoffmann
    pci_conf[0x6d] = 0x00;
2184 94527ead Gerd Hoffmann
    pci_conf[0x6e] = 0x00;
2185 94527ead Gerd Hoffmann
    pci_conf[0x6f] = 0xc0;  // USBLEFCTLSTS
2186 94527ead Gerd Hoffmann
2187 94527ead Gerd Hoffmann
    // 2.2 host controller interface version
2188 94527ead Gerd Hoffmann
    s->mmio[0x00] = (uint8_t) OPREGBASE;
2189 94527ead Gerd Hoffmann
    s->mmio[0x01] = 0x00;
2190 94527ead Gerd Hoffmann
    s->mmio[0x02] = 0x00;
2191 94527ead Gerd Hoffmann
    s->mmio[0x03] = 0x01;        // HC version
2192 94527ead Gerd Hoffmann
    s->mmio[0x04] = NB_PORTS;    // Number of downstream ports
2193 94527ead Gerd Hoffmann
    s->mmio[0x05] = 0x00;        // No companion ports at present
2194 94527ead Gerd Hoffmann
    s->mmio[0x06] = 0x00;
2195 94527ead Gerd Hoffmann
    s->mmio[0x07] = 0x00;
2196 94527ead Gerd Hoffmann
    s->mmio[0x08] = 0x80;        // We can cache whole frame, not 64-bit capable
2197 94527ead Gerd Hoffmann
    s->mmio[0x09] = 0x68;        // EECP
2198 94527ead Gerd Hoffmann
    s->mmio[0x0a] = 0x00;
2199 94527ead Gerd Hoffmann
    s->mmio[0x0b] = 0x00;
2200 94527ead Gerd Hoffmann
2201 94527ead Gerd Hoffmann
    s->irq = s->dev.irq[3];
2202 94527ead Gerd Hoffmann
2203 07771f6f Gerd Hoffmann
    usb_bus_new(&s->bus, &ehci_bus_ops, &s->dev.qdev);
2204 94527ead Gerd Hoffmann
    for(i = 0; i < NB_PORTS; i++) {
2205 94527ead Gerd Hoffmann
        usb_register_port(&s->bus, &s->ports[i], s, i, &ehci_port_ops,
2206 94527ead Gerd Hoffmann
                          USB_SPEED_MASK_HIGH);
2207 94527ead Gerd Hoffmann
        usb_port_location(&s->ports[i], NULL, i+1);
2208 94527ead Gerd Hoffmann
        s->ports[i].dev = 0;
2209 94527ead Gerd Hoffmann
    }
2210 94527ead Gerd Hoffmann
2211 94527ead Gerd Hoffmann
    s->frame_timer = qemu_new_timer_ns(vm_clock, ehci_frame_timer, s);
2212 8ac6d699 Gerd Hoffmann
    QTAILQ_INIT(&s->queues);
2213 94527ead Gerd Hoffmann
2214 94527ead Gerd Hoffmann
    qemu_register_reset(ehci_reset, s);
2215 94527ead Gerd Hoffmann
2216 94527ead Gerd Hoffmann
    s->mem = cpu_register_io_memory(ehci_readfn, ehci_writefn, s,
2217 94527ead Gerd Hoffmann
                                    DEVICE_LITTLE_ENDIAN);
2218 94527ead Gerd Hoffmann
2219 94527ead Gerd Hoffmann
    pci_register_bar(&s->dev, 0, MMIO_SIZE, PCI_BASE_ADDRESS_SPACE_MEMORY,
2220 94527ead Gerd Hoffmann
                                                            ehci_map);
2221 94527ead Gerd Hoffmann
2222 94527ead Gerd Hoffmann
    fprintf(stderr, "*** EHCI support is under development ***\n");
2223 94527ead Gerd Hoffmann
2224 94527ead Gerd Hoffmann
    return 0;
2225 94527ead Gerd Hoffmann
}
2226 94527ead Gerd Hoffmann
2227 94527ead Gerd Hoffmann
static void ehci_register(void)
2228 94527ead Gerd Hoffmann
{
2229 94527ead Gerd Hoffmann
    pci_qdev_register(&ehci_info);
2230 94527ead Gerd Hoffmann
}
2231 94527ead Gerd Hoffmann
device_init(ehci_register);
2232 94527ead Gerd Hoffmann
2233 94527ead Gerd Hoffmann
/*
2234 94527ead Gerd Hoffmann
 * vim: expandtab ts=4
2235 94527ead Gerd Hoffmann
 */