df2d388fa4
devices except pciusb
295 lines
8.2 KiB
C++
295 lines
8.2 KiB
C++
/////////////////////////////////////////////////////////////////////////
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// $Id: pci2isa.cc,v 1.10 2003-07-31 19:51:42 vruppert Exp $
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/////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2002 MandrakeSoft S.A.
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//
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// MandrakeSoft S.A.
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// 43, rue d'Aboukir
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// 75002 Paris - France
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// http://www.linux-mandrake.com/
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// http://www.mandrakesoft.com/
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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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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// i440FX Support - PCI-to-ISA bridge (PIIX3)
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//
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// Define BX_PLUGGABLE in files that can be compiled into plugins. For
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// platforms that require a special tag on exported symbols, BX_PLUGGABLE
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// is used to know when we are exporting symbols and when we are importing.
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#define BX_PLUGGABLE
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#include "bochs.h"
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#if BX_PCI_SUPPORT
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#define LOG_THIS thePci2IsaBridge->
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bx_pci2isa_c *thePci2IsaBridge = NULL;
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int
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libpci2isa_LTX_plugin_init(plugin_t *plugin, plugintype_t type, int argc, char *argv[])
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{
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thePci2IsaBridge = new bx_pci2isa_c ();
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bx_devices.pluginPci2IsaBridge = thePci2IsaBridge;
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BX_REGISTER_DEVICE_DEVMODEL(plugin, type, thePci2IsaBridge, BX_PLUGIN_PCI2ISA);
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return(0); // Success
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}
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void
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libpci2isa_LTX_plugin_fini(void)
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{
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}
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bx_pci2isa_c::bx_pci2isa_c(void)
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{
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put("P2I");
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settype(PCI2ISALOG);
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}
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bx_pci2isa_c::~bx_pci2isa_c(void)
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{
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// nothing for now
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BX_DEBUG(("Exit."));
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}
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void
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bx_pci2isa_c::init(void)
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{
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// called once when bochs initializes
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DEV_register_pci_handlers(this, pci_read_handler, pci_write_handler,
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BX_PCI_DEVICE(1,0), "PIIX3 PCI-to-ISA bridge");
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DEV_register_iowrite_handler(this, write_handler, 0x00B2, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_iowrite_handler(this, write_handler, 0x00B3, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_iowrite_handler(this, write_handler, 0x04D0, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_iowrite_handler(this, write_handler, 0x04D1, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_iowrite_handler(this, write_handler, 0x0CF9, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_ioread_handler(this, read_handler, 0x00B2, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_ioread_handler(this, read_handler, 0x00B3, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_ioread_handler(this, read_handler, 0x04D0, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_ioread_handler(this, read_handler, 0x04D1, "PIIX3 PCI-to-ISA bridge", 1);
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DEV_register_ioread_handler(this, read_handler, 0x0CF9, "PIIX3 PCI-to-ISA bridge", 1);
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for (unsigned i=0; i<256; i++)
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BX_P2I_THIS s.pci_conf[i] = 0x0;
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// readonly registers
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BX_P2I_THIS s.pci_conf[0x00] = 0x86;
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BX_P2I_THIS s.pci_conf[0x01] = 0x80;
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BX_P2I_THIS s.pci_conf[0x02] = 0x00;
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BX_P2I_THIS s.pci_conf[0x03] = 0x70;
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BX_P2I_THIS s.pci_conf[0x0a] = 0x01;
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BX_P2I_THIS s.pci_conf[0x0b] = 0x06;
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BX_P2I_THIS s.pci_conf[0x0e] = 0x80;
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}
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void
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bx_pci2isa_c::reset(unsigned type)
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{
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BX_P2I_THIS s.pci_conf[0x04] = 0x07;
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BX_P2I_THIS s.pci_conf[0x05] = 0x00;
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BX_P2I_THIS s.pci_conf[0x06] = 0x00;
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BX_P2I_THIS s.pci_conf[0x07] = 0x02;
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BX_P2I_THIS s.pci_conf[0x4c] = 0x4d;
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BX_P2I_THIS s.pci_conf[0x4e] = 0x03;
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BX_P2I_THIS s.pci_conf[0x4f] = 0x00;
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BX_P2I_THIS s.pci_conf[0x60] = 0x80;
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BX_P2I_THIS s.pci_conf[0x69] = 0x02;
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BX_P2I_THIS s.pci_conf[0x70] = 0x80;
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BX_P2I_THIS s.pci_conf[0x76] = 0x0c;
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BX_P2I_THIS s.pci_conf[0x77] = 0x0c;
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BX_P2I_THIS s.pci_conf[0x78] = 0x02;
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BX_P2I_THIS s.pci_conf[0x79] = 0x00;
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BX_P2I_THIS s.pci_conf[0x80] = 0x00;
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BX_P2I_THIS s.pci_conf[0x82] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa0] = 0x08;
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BX_P2I_THIS s.pci_conf[0xa0] = 0x08;
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BX_P2I_THIS s.pci_conf[0xa2] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa3] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa4] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa5] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa6] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa7] = 0x00;
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BX_P2I_THIS s.pci_conf[0xa8] = 0x0f;
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BX_P2I_THIS s.pci_conf[0xaa] = 0x00;
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BX_P2I_THIS s.pci_conf[0xab] = 0x00;
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BX_P2I_THIS s.pci_conf[0xac] = 0x00;
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BX_P2I_THIS s.pci_conf[0xae] = 0x00;
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BX_P2I_THIS s.elcr1 = 0x00;
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BX_P2I_THIS s.elcr2 = 0x00;
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}
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// static IO port read callback handler
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// redirects to non-static class handler to avoid virtual functions
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Bit32u
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bx_pci2isa_c::read_handler(void *this_ptr, Bit32u address, unsigned io_len)
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{
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#if !BX_USE_P2I_SMF
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bx_pci2isa_c *class_ptr = (bx_pci2isa_c *) this_ptr;
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return( class_ptr->read(address, io_len) );
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}
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Bit32u
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bx_pci2isa_c::read(Bit32u address, unsigned io_len)
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{
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#else
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UNUSED(this_ptr);
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#endif // !BX_USE_P2I_SMF
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switch (address) {
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case 0x00b2:
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BX_ERROR(("read: APM command register not supported yet"));
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break;
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case 0x00b3:
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BX_ERROR(("read: APM status register not supported yet"));
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break;
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case 0x04d0:
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return(BX_P2I_THIS s.elcr1);
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break;
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case 0x04d1:
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return(BX_P2I_THIS s.elcr2);
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break;
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case 0x0cf9:
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BX_ERROR(("read: CPU reset register not supported yet"));
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break;
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}
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return(0xffffffff);
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}
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// static IO port write callback handler
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// redirects to non-static class handler to avoid virtual functions
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void
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bx_pci2isa_c::write_handler(void *this_ptr, Bit32u address, Bit32u value, unsigned io_len)
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{
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#if !BX_USE_P2I_SMF
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bx_pci2isa_c *class_ptr = (bx_pci2isa_c *) this_ptr;
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class_ptr->write(address, value, io_len);
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}
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void
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bx_pci2isa_c::write(Bit32u address, Bit32u value, unsigned io_len)
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{
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#else
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UNUSED(this_ptr);
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#endif // !BX_USE_P2I_SMF
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switch (address) {
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case 0x00b2:
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BX_ERROR(("write: APM command register not supported yet"));
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break;
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case 0x00b3:
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BX_ERROR(("write: APM status register not supported yet"));
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break;
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case 0x04d0:
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BX_P2I_THIS s.elcr1 = (value & 0xf8);
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BX_ERROR(("write: ELCR1 changes have no effect yet"));
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break;
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case 0x04d1:
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BX_P2I_THIS s.elcr2 = (value & 0xde);
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BX_ERROR(("write: ELCR2 changes have no effect yet"));
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break;
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case 0x0cf9:
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BX_ERROR(("write: CPU reset register not supported yet"));
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break;
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}
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}
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// static pci configuration space read callback handler
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// redirects to non-static class handler to avoid virtual functions
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Bit32u
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bx_pci2isa_c::pci_read_handler(void *this_ptr, Bit8u address, unsigned io_len)
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{
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#if !BX_USE_P2I_SMF
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bx_pci2isa_c *class_ptr = (bx_pci2isa_c *) this_ptr;
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return( class_ptr->pci_read(address, io_len) );
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}
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Bit32u
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bx_pci2isa_c::pci_read(Bit8u address, unsigned io_len)
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{
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#else
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UNUSED(this_ptr);
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#endif // !BX_USE_P2I_SMF
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Bit32u value = 0;
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if (io_len <= 4) {
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for (unsigned i=0; i<io_len; i++) {
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value |= (BX_P2I_THIS s.pci_conf[address+i] << (i*8));
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}
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BX_DEBUG(("PIIX3 PCI-to-ISA read register 0x%02x value 0x%08x", address, value));
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return value;
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}
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else
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return(0xffffffff);
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}
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// static pci configuration space write callback handler
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// redirects to non-static class handler to avoid virtual functions
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void
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bx_pci2isa_c::pci_write_handler(void *this_ptr, Bit8u address, Bit32u value, unsigned io_len)
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{
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#if !BX_USE_P2I_SMF
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bx_pci2isa_c *class_ptr = (bx_pci2isa_c *) this_ptr;
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class_ptr->pci_write(address, value, io_len);
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}
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void
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bx_pci2isa_c::pci_write(Bit8u address, Bit32u value, unsigned io_len)
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{
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#else
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UNUSED(this_ptr);
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#endif // !BX_USE_P2I_SMF
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Bit8u value8;
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if (io_len <= 4) {
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for (unsigned i=0; i<io_len; i++) {
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value8 = (value >> (i*8)) & 0xFF;
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switch (address+i) {
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case 0x06:
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break;
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default:
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BX_P2I_THIS s.pci_conf[address+i] = value8;
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BX_DEBUG(("PIIX3 PCI-to-ISA write register 0x%02x value 0x%02x", address,
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value8));
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}
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}
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}
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}
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#endif /* BX_PCI_SUPPORT */
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