3fd323abc5
- use get_dwords() and put_dwords() from EHCI sources for reading / writing xHCI data structures as dword array. This fixes some endianness issues. - simplified copying data from / to data structures since we can now use the dword array with the correct byte order directly. - fixed all remaining "strict-aliasing" GCC warnings.
427 lines
13 KiB
C++
427 lines
13 KiB
C++
/////////////////////////////////////////////////////////////////////////
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// $Id$
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/////////////////////////////////////////////////////////////////////////
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//
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// Experimental USB EHCI adapter (partly ported from Qemu)
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//
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// Copyright (C) 2015-2016 The Bochs Project
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//
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// Copyright(c) 2008 Emutex Ltd. (address@hidden)
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// Copyright(c) 2011-2012 Red Hat, Inc.
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//
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// Red Hat Authors:
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// Gerd Hoffmann <kraxel@redhat.com>
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// Hans de Goede <hdegoede@redhat.com>
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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 Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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/////////////////////////////////////////////////////////////////////////
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#ifndef BX_IODEV_USB_EHCI_H
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#define BX_IODEV_USB_EHCI_H
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#if BX_USE_USB_EHCI_SMF
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# define BX_EHCI_THIS theUSB_EHCI->
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# define BX_EHCI_THIS_PTR theUSB_EHCI
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#else
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# define BX_EHCI_THIS this->
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# define BX_EHCI_THIS_PTR this
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#endif
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#define USB_EHCI_PORTS 6
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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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Bit32u next;
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Bit32u 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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Bit32u 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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Bit32u next; // Standard next link pointer
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Bit32u 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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Bit32u 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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Bit32u 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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Bit32u 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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Bit32u 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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Bit32u next; // Standard next link pointer
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Bit32u altnext; // Standard next link pointer
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Bit32u 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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Bit32u bufptr[5]; // Standard buffer pointer
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#define QTD_BUFPTR_MASK 0xfffff000
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#define QTD_BUFPTR_SH 12
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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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Bit32u next; // Standard next link pointer
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/* endpoint characteristics */
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Bit32u 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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Bit32u 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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Bit32u current_qtd; // Standard next link pointer
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Bit32u next_qtd; // Standard next link pointer
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Bit32u 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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Bit32u token; // Same as QTD token
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Bit32u bufptr[5]; // Standard buffer pointer
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#define BUFPTR_CPROGMASK_MASK 0x000000ff
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#define BUFPTR_FRAMETAG_MASK 0x0000001f
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#define BUFPTR_SBYTES_MASK 0x00000fe0
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#define BUFPTR_SBYTES_SH 5
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} EHCIqh;
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typedef struct EHCIPacket EHCIPacket;
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typedef struct EHCIQueue EHCIQueue;
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typedef QTAILQ_HEAD(EHCIQueueHead, EHCIQueue) EHCIQueueHead;
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typedef struct {
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int frame_timer_index;
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Bit8u usbsts_pending;
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Bit32u usbsts_frindex;
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EHCIQueueHead aqueues;
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EHCIQueueHead pqueues;
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Bit32u pstate, astate;
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/* which address to look at next */
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Bit32u a_fetch_addr;
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Bit32u p_fetch_addr;
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Bit64u last_run_usec;
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Bit32u async_stepdown;
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struct {
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Bit8u CapLength;
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Bit8u Reserved;
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Bit16u HciVersion;
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Bit32u HcsParams;
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Bit32u HccParams;
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} cap_regs;
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struct {
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struct {
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Bit8u itc;
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bx_bool iaad;
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bx_bool ase;
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bx_bool pse;
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bx_bool hcreset;
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bx_bool rs;
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} UsbCmd;
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struct {
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bx_bool ass;
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bx_bool pss;
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bx_bool recl;
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bx_bool hchalted;
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Bit8u inti;
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} UsbSts;
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Bit8u UsbIntr;
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Bit32u FrIndex;
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Bit32u CtrlDsSegment;
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Bit32u PeriodicListBase;
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Bit32u AsyncListAddr;
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Bit32u ConfigFlag;
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} op_regs;
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struct {
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// our data
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usb_device_c *device; // device connected to this port
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bx_bool owner_change;
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struct {
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bx_bool woe;
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bx_bool wde;
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bx_bool wce;
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Bit8u ptc;
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Bit8u pic;
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bx_bool po;
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bx_bool pp;
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Bit8u ls;
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bx_bool pr;
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bx_bool sus;
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bx_bool fpr;
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bx_bool occ;
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bx_bool oca;
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bx_bool pec;
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bx_bool ped;
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bx_bool csc;
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bx_bool ccs;
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} portsc;
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} usb_port[USB_EHCI_PORTS];
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} bx_usb_ehci_t;
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enum async_state {
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EHCI_ASYNC_NONE = 0,
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EHCI_ASYNC_INITIALIZED,
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EHCI_ASYNC_INFLIGHT,
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EHCI_ASYNC_FINISHED,
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};
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struct EHCIPacket {
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EHCIQueue *queue;
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QTAILQ_ENTRY(EHCIPacket) next;
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EHCIqtd qtd; /* copy of current QTD (being worked on) */
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Bit32u qtdaddr; /* address QTD read from */
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USBPacket packet;
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int pid;
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Bit32u tbytes;
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enum async_state async;
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int usb_status;
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};
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struct EHCIQueue {
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bx_usb_ehci_t *ehci;
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QTAILQ_ENTRY(EHCIQueue) next;
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Bit32u seen;
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Bit64u ts;
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int async;
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/* cached data from guest - needs to be flushed
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* when guest removes an entry (doorbell, handshake sequence)
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*/
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EHCIqh qh; /* copy of current QH (being worked on) */
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Bit32u qhaddr; /* address QH read from */
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Bit32u qtdaddr; /* address QTD read from */
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usb_device_c *dev;
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QTAILQ_HEAD(, EHCIPacket) packets;
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};
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class bx_usb_ehci_c : public bx_devmodel_c, public bx_pci_device_stub_c {
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public:
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bx_usb_ehci_c();
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virtual ~bx_usb_ehci_c();
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virtual void init(void);
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virtual void reset(unsigned);
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virtual void register_state(void);
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virtual void after_restore_state(void);
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virtual Bit32u pci_read_handler(Bit8u address, unsigned io_len);
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virtual void pci_write_handler(Bit8u address, Bit32u value, unsigned io_len);
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void async_complete_packet(USBPacket *packet);
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static const char *usb_param_handler(bx_param_string_c *param, int set,
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const char *oldval, const char *val, int maxlen);
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private:
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bx_uhci_core_c *uhci[3];
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bx_usb_ehci_t hub;
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Bit8u devfunc;
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Bit8u device_change;
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int rt_conf_id;
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Bit32u maxframes;
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void reset_hc(void);
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void reset_port(int);
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static void init_device(Bit8u port, bx_list_c *portconf);
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static void remove_device(Bit8u port);
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static void set_connect_status(Bit8u port, int type, bx_bool connected);
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static void change_port_owner(int port);
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// EHCI core methods ported from QEMU 1.2.2
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void update_irq(void);
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void raise_irq(Bit8u intr);
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void commit_irq(void);
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void update_halt(void);
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void set_state(int async, int state);
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int get_state(int async);
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void set_fetch_addr(int async, Bit32u addr);
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Bit32u get_fetch_addr(int async);
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bx_bool async_enabled(void);
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bx_bool periodic_enabled(void);
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EHCIPacket *alloc_packet(EHCIQueue *q);
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void free_packet(EHCIPacket *p);
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EHCIQueue *alloc_queue(Bit32u addr, int async);
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int cancel_queue(EHCIQueue *q);
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int reset_queue(EHCIQueue *q);
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void free_queue(EHCIQueue *q, const char *warn);
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EHCIQueue *find_queue_by_qh(Bit32u addr, int async);
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void queues_rip_unused(int async);
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void queues_rip_unseen(int async);
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void queues_rip_device(usb_device_c *dev, int async);
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void queues_rip_all(int async);
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usb_device_c *find_device(Bit8u addr);
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void flush_qh(EHCIQueue *q);
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int qh_do_overlay(EHCIQueue *q);
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int transfer(EHCIPacket *p);
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void finish_transfer(EHCIQueue *q, int status);
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void execute_complete(EHCIQueue *q);
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int execute(EHCIPacket *p);
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int process_itd(EHCIitd *itd, Bit32u addr);
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int state_waitlisthead(int async);
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int state_fetchentry(int async);
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EHCIQueue *state_fetchqh(int async);
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int state_fetchitd(int async);
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int state_fetchsitd(int async);
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int state_advqueue(EHCIQueue *q);
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int state_fetchqtd(EHCIQueue *q);
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int state_horizqh(EHCIQueue *q);
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int fill_queue(EHCIPacket *p);
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int state_execute(EHCIQueue *q);
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int state_executing(EHCIQueue *q);
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int state_writeback(EHCIQueue *q);
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void advance_state(int async);
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void advance_async_state(void);
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void advance_periodic_state(void);
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void update_frindex(int frames);
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// EHCI frame timer
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static void ehci_frame_handler(void *);
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void ehci_frame_timer(void);
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#if BX_USE_USB_EHCI_SMF
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static bx_bool read_handler(bx_phy_address addr, unsigned len, void *data, void *param);
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static bx_bool write_handler(bx_phy_address addr, unsigned len, void *data, void *param);
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#else
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bx_bool read_handler(bx_phy_address addr, unsigned len, void *data, void *param);
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bx_bool write_handler(bx_phy_address addr, unsigned len, void *data, void *param);
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#endif
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static void runtime_config_handler(void *);
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void runtime_config(void);
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};
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#endif // BX_IODEV_USB_EHCI_H
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