mirror of
https://github.com/AuxXxilium/linux_dsm_epyc7002.git
synced 2024-12-23 04:36:40 +07:00
2a727f6091
The sem_exit variable is conceptually a completion, so it should be called that. Similarly, the semOperations semaphore is a simple mutex, and can be changed into that, respectively. With both converted, the ibmphp_hpc_initvars() function is no longer used and can be removed. Signed-off-by: Arnd Bergmann <arnd@arndb.de> Signed-off-by: Bjorn Helgaas <bhelgaas@google.com>
751 lines
23 KiB
C
751 lines
23 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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#ifndef __IBMPHP_H
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#define __IBMPHP_H
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/*
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* IBM Hot Plug Controller Driver
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*
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* Written By: Jyoti Shah, Tong Yu, Irene Zubarev, IBM Corporation
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*
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* Copyright (C) 2001 Greg Kroah-Hartman (greg@kroah.com)
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* Copyright (C) 2001-2003 IBM Corp.
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*
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* All rights reserved.
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*
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* Send feedback to <gregkh@us.ibm.com>
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*
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*/
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#include <linux/pci_hotplug.h>
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extern int ibmphp_debug;
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#if !defined(MODULE)
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#define MY_NAME "ibmphpd"
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#else
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#define MY_NAME THIS_MODULE->name
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#endif
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#define debug(fmt, arg...) do { if (ibmphp_debug == 1) printk(KERN_DEBUG "%s: " fmt, MY_NAME, ## arg); } while (0)
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#define debug_pci(fmt, arg...) do { if (ibmphp_debug) printk(KERN_DEBUG "%s: " fmt, MY_NAME, ## arg); } while (0)
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#define err(format, arg...) printk(KERN_ERR "%s: " format, MY_NAME, ## arg)
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#define info(format, arg...) printk(KERN_INFO "%s: " format, MY_NAME, ## arg)
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#define warn(format, arg...) printk(KERN_WARNING "%s: " format, MY_NAME, ## arg)
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/* EBDA stuff */
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/***********************************************************
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* SLOT CAPABILITY *
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***********************************************************/
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#define EBDA_SLOT_133_MAX 0x20
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#define EBDA_SLOT_100_MAX 0x10
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#define EBDA_SLOT_66_MAX 0x02
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#define EBDA_SLOT_PCIX_CAP 0x08
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/************************************************************
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* RESOURCE TYPE *
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************************************************************/
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#define EBDA_RSRC_TYPE_MASK 0x03
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#define EBDA_IO_RSRC_TYPE 0x00
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#define EBDA_MEM_RSRC_TYPE 0x01
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#define EBDA_PFM_RSRC_TYPE 0x03
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#define EBDA_RES_RSRC_TYPE 0x02
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/*************************************************************
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* IO RESTRICTION TYPE *
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*************************************************************/
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#define EBDA_IO_RESTRI_MASK 0x0c
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#define EBDA_NO_RESTRI 0x00
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#define EBDA_AVO_VGA_ADDR 0x04
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#define EBDA_AVO_VGA_ADDR_AND_ALIA 0x08
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#define EBDA_AVO_ISA_ADDR 0x0c
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/**************************************************************
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* DEVICE TYPE DEF *
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**************************************************************/
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#define EBDA_DEV_TYPE_MASK 0x10
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#define EBDA_PCI_DEV 0x10
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#define EBDA_NON_PCI_DEV 0x00
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/***************************************************************
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* PRIMARY DEF DEFINITION *
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***************************************************************/
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#define EBDA_PRI_DEF_MASK 0x20
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#define EBDA_PRI_PCI_BUS_INFO 0x20
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#define EBDA_NORM_DEV_RSRC_INFO 0x00
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//--------------------------------------------------------------
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// RIO TABLE DATA STRUCTURE
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//--------------------------------------------------------------
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struct rio_table_hdr {
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u8 ver_num;
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u8 scal_count;
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u8 riodev_count;
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u16 offset;
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};
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//-------------------------------------------------------------
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// SCALABILITY DETAIL
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//-------------------------------------------------------------
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struct scal_detail {
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u8 node_id;
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u32 cbar;
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u8 port0_node_connect;
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u8 port0_port_connect;
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u8 port1_node_connect;
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u8 port1_port_connect;
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u8 port2_node_connect;
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u8 port2_port_connect;
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u8 chassis_num;
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// struct list_head scal_detail_list;
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};
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//--------------------------------------------------------------
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// RIO DETAIL
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//--------------------------------------------------------------
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struct rio_detail {
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u8 rio_node_id;
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u32 bbar;
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u8 rio_type;
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u8 owner_id;
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u8 port0_node_connect;
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u8 port0_port_connect;
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u8 port1_node_connect;
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u8 port1_port_connect;
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u8 first_slot_num;
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u8 status;
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u8 wpindex;
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u8 chassis_num;
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struct list_head rio_detail_list;
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};
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struct opt_rio {
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u8 rio_type;
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u8 chassis_num;
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u8 first_slot_num;
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u8 middle_num;
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struct list_head opt_rio_list;
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};
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struct opt_rio_lo {
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u8 rio_type;
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u8 chassis_num;
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u8 first_slot_num;
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u8 middle_num;
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u8 pack_count;
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struct list_head opt_rio_lo_list;
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};
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/****************************************************************
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* HPC DESCRIPTOR NODE *
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****************************************************************/
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struct ebda_hpc_list {
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u8 format;
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u16 num_ctlrs;
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short phys_addr;
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// struct list_head ebda_hpc_list;
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};
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/*****************************************************************
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* IN HPC DATA STRUCTURE, THE ASSOCIATED SLOT AND BUS *
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* STRUCTURE *
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*****************************************************************/
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struct ebda_hpc_slot {
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u8 slot_num;
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u32 slot_bus_num;
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u8 ctl_index;
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u8 slot_cap;
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};
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struct ebda_hpc_bus {
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u32 bus_num;
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u8 slots_at_33_conv;
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u8 slots_at_66_conv;
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u8 slots_at_66_pcix;
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u8 slots_at_100_pcix;
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u8 slots_at_133_pcix;
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};
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/********************************************************************
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* THREE TYPE OF HOT PLUG CONTROLLER *
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********************************************************************/
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struct isa_ctlr_access {
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u16 io_start;
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u16 io_end;
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};
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struct pci_ctlr_access {
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u8 bus;
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u8 dev_fun;
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};
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struct wpeg_i2c_ctlr_access {
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ulong wpegbbar;
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u8 i2c_addr;
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};
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#define HPC_DEVICE_ID 0x0246
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#define HPC_SUBSYSTEM_ID 0x0247
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#define HPC_PCI_OFFSET 0x40
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/*************************************************************************
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* RSTC DESCRIPTOR NODE *
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*************************************************************************/
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struct ebda_rsrc_list {
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u8 format;
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u16 num_entries;
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u16 phys_addr;
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struct ebda_rsrc_list *next;
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};
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/***************************************************************************
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* PCI RSRC NODE *
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***************************************************************************/
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struct ebda_pci_rsrc {
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u8 rsrc_type;
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u8 bus_num;
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u8 dev_fun;
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u32 start_addr;
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u32 end_addr;
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u8 marked; /* for NVRAM */
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struct list_head ebda_pci_rsrc_list;
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};
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/***********************************************************
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* BUS_INFO DATE STRUCTURE *
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***********************************************************/
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struct bus_info {
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u8 slot_min;
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u8 slot_max;
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u8 slot_count;
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u8 busno;
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u8 controller_id;
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u8 current_speed;
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u8 current_bus_mode;
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u8 index;
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u8 slots_at_33_conv;
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u8 slots_at_66_conv;
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u8 slots_at_66_pcix;
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u8 slots_at_100_pcix;
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u8 slots_at_133_pcix;
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struct list_head bus_info_list;
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};
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/***********************************************************
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* GLOBAL VARIABLES *
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***********************************************************/
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extern struct list_head ibmphp_ebda_pci_rsrc_head;
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extern struct list_head ibmphp_slot_head;
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/***********************************************************
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* FUNCTION PROTOTYPES *
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***********************************************************/
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void ibmphp_free_ebda_hpc_queue(void);
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int ibmphp_access_ebda(void);
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struct slot *ibmphp_get_slot_from_physical_num(u8);
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int ibmphp_get_total_hp_slots(void);
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void ibmphp_free_ibm_slot(struct slot *);
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void ibmphp_free_bus_info_queue(void);
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void ibmphp_free_ebda_pci_rsrc_queue(void);
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struct bus_info *ibmphp_find_same_bus_num(u32);
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int ibmphp_get_bus_index(u8);
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u16 ibmphp_get_total_controllers(void);
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int ibmphp_register_pci(void);
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/* passed parameters */
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#define MEM 0
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#define IO 1
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#define PFMEM 2
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/* bit masks */
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#define RESTYPE 0x03
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#define IOMASK 0x00 /* will need to take its complement */
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#define MMASK 0x01
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#define PFMASK 0x03
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#define PCIDEVMASK 0x10 /* we should always have PCI devices */
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#define PRIMARYBUSMASK 0x20
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/* pci specific defines */
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#define PCI_VENDOR_ID_NOTVALID 0xFFFF
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#define PCI_HEADER_TYPE_MULTIDEVICE 0x80
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#define PCI_HEADER_TYPE_MULTIBRIDGE 0x81
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#define LATENCY 0x64
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#define CACHE 64
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#define DEVICEENABLE 0x015F /* CPQ has 0x0157 */
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#define IOBRIDGE 0x1000 /* 4k */
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#define MEMBRIDGE 0x100000 /* 1M */
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/* irqs */
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#define SCSI_IRQ 0x09
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#define LAN_IRQ 0x0A
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#define OTHER_IRQ 0x0B
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/* Data Structures */
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/* type is of the form x x xx xx
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* | | | |_ 00 - I/O, 01 - Memory, 11 - PFMemory
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* | | - 00 - No Restrictions, 01 - Avoid VGA, 10 - Avoid
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* | | VGA and their aliases, 11 - Avoid ISA
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* | - 1 - PCI device, 0 - non pci device
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* - 1 - Primary PCI Bus Information (0 if Normal device)
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* the IO restrictions [2:3] are only for primary buses
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*/
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/* we need this struct because there could be several resource blocks
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* allocated per primary bus in the EBDA
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*/
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struct range_node {
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int rangeno;
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u32 start;
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u32 end;
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struct range_node *next;
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};
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struct bus_node {
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u8 busno;
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int noIORanges;
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struct range_node *rangeIO;
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int noMemRanges;
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struct range_node *rangeMem;
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int noPFMemRanges;
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struct range_node *rangePFMem;
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int needIOUpdate;
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int needMemUpdate;
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int needPFMemUpdate;
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struct resource_node *firstIO; /* first IO resource on the Bus */
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struct resource_node *firstMem; /* first memory resource on the Bus */
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struct resource_node *firstPFMem; /* first prefetchable memory resource on the Bus */
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struct resource_node *firstPFMemFromMem; /* when run out of pfmem available, taking from Mem */
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struct list_head bus_list;
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};
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struct resource_node {
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int rangeno;
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u8 busno;
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u8 devfunc;
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u32 start;
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u32 end;
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u32 len;
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int type; /* MEM, IO, PFMEM */
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u8 fromMem; /* this is to indicate that the range is from
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* from the Memory bucket rather than from PFMem */
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struct resource_node *next;
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struct resource_node *nextRange; /* for the other mem range on bus */
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};
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struct res_needed {
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u32 mem;
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u32 pfmem;
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u32 io;
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u8 not_correct; /* needed for return */
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int devices[32]; /* for device numbers behind this bridge */
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};
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/* functions */
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int ibmphp_rsrc_init(void);
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int ibmphp_add_resource(struct resource_node *);
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int ibmphp_remove_resource(struct resource_node *);
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int ibmphp_find_resource(struct bus_node *, u32, struct resource_node **, int);
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int ibmphp_check_resource(struct resource_node *, u8);
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int ibmphp_remove_bus(struct bus_node *, u8);
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void ibmphp_free_resources(void);
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int ibmphp_add_pfmem_from_mem(struct resource_node *);
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struct bus_node *ibmphp_find_res_bus(u8);
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void ibmphp_print_test(void); /* for debugging purposes */
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int ibmphp_hpc_readslot(struct slot *, u8, u8 *);
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int ibmphp_hpc_writeslot(struct slot *, u8);
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void ibmphp_lock_operations(void);
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void ibmphp_unlock_operations(void);
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int ibmphp_hpc_start_poll_thread(void);
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void ibmphp_hpc_stop_poll_thread(void);
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//----------------------------------------------------------------------------
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//----------------------------------------------------------------------------
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// HPC return codes
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//----------------------------------------------------------------------------
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#define HPC_ERROR 0xFF
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//-----------------------------------------------------------------------------
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// BUS INFO
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//-----------------------------------------------------------------------------
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#define BUS_SPEED 0x30
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#define BUS_MODE 0x40
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#define BUS_MODE_PCIX 0x01
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#define BUS_MODE_PCI 0x00
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#define BUS_SPEED_2 0x20
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#define BUS_SPEED_1 0x10
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#define BUS_SPEED_33 0x00
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#define BUS_SPEED_66 0x01
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#define BUS_SPEED_100 0x02
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#define BUS_SPEED_133 0x03
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#define BUS_SPEED_66PCIX 0x04
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#define BUS_SPEED_66UNKNOWN 0x05
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#define BUS_STATUS_AVAILABLE 0x01
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#define BUS_CONTROL_AVAILABLE 0x02
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#define SLOT_LATCH_REGS_SUPPORTED 0x10
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#define PRGM_MODEL_REV_LEVEL 0xF0
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#define MAX_ADAPTER_NONE 0x09
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//----------------------------------------------------------------------------
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// HPC 'write' operations/commands
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//----------------------------------------------------------------------------
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// Command Code State Write to reg
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// Machine at index
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//------------------------- ---- ------- ------------
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#define HPC_CTLR_ENABLEIRQ 0x00 // N 15
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#define HPC_CTLR_DISABLEIRQ 0x01 // N 15
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#define HPC_SLOT_OFF 0x02 // Y 0-14
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#define HPC_SLOT_ON 0x03 // Y 0-14
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#define HPC_SLOT_ATTNOFF 0x04 // N 0-14
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#define HPC_SLOT_ATTNON 0x05 // N 0-14
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#define HPC_CTLR_CLEARIRQ 0x06 // N 15
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#define HPC_CTLR_RESET 0x07 // Y 15
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#define HPC_CTLR_IRQSTEER 0x08 // N 15
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#define HPC_BUS_33CONVMODE 0x09 // Y 31-34
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#define HPC_BUS_66CONVMODE 0x0A // Y 31-34
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#define HPC_BUS_66PCIXMODE 0x0B // Y 31-34
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#define HPC_BUS_100PCIXMODE 0x0C // Y 31-34
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#define HPC_BUS_133PCIXMODE 0x0D // Y 31-34
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#define HPC_ALLSLOT_OFF 0x11 // Y 15
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#define HPC_ALLSLOT_ON 0x12 // Y 15
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#define HPC_SLOT_BLINKLED 0x13 // N 0-14
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//----------------------------------------------------------------------------
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// read commands
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//----------------------------------------------------------------------------
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#define READ_SLOTSTATUS 0x01
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#define READ_EXTSLOTSTATUS 0x02
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#define READ_BUSSTATUS 0x03
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#define READ_CTLRSTATUS 0x04
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#define READ_ALLSTAT 0x05
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#define READ_ALLSLOT 0x06
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#define READ_SLOTLATCHLOWREG 0x07
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#define READ_REVLEVEL 0x08
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#define READ_HPCOPTIONS 0x09
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//----------------------------------------------------------------------------
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// slot status
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//----------------------------------------------------------------------------
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#define HPC_SLOT_POWER 0x01
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#define HPC_SLOT_CONNECT 0x02
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#define HPC_SLOT_ATTN 0x04
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#define HPC_SLOT_PRSNT2 0x08
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#define HPC_SLOT_PRSNT1 0x10
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#define HPC_SLOT_PWRGD 0x20
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#define HPC_SLOT_BUS_SPEED 0x40
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#define HPC_SLOT_LATCH 0x80
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//----------------------------------------------------------------------------
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// HPC_SLOT_POWER status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_POWER_OFF 0x00
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#define HPC_SLOT_POWER_ON 0x01
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//----------------------------------------------------------------------------
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// HPC_SLOT_CONNECT status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_CONNECTED 0x00
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#define HPC_SLOT_DISCONNECTED 0x01
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//----------------------------------------------------------------------------
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// HPC_SLOT_ATTN status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_ATTN_OFF 0x00
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#define HPC_SLOT_ATTN_ON 0x01
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#define HPC_SLOT_ATTN_BLINK 0x02
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//----------------------------------------------------------------------------
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// HPC_SLOT_PRSNT status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_EMPTY 0x00
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#define HPC_SLOT_PRSNT_7 0x01
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#define HPC_SLOT_PRSNT_15 0x02
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#define HPC_SLOT_PRSNT_25 0x03
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//----------------------------------------------------------------------------
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// HPC_SLOT_PWRGD status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_PWRGD_FAULT_NONE 0x00
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#define HPC_SLOT_PWRGD_GOOD 0x01
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//----------------------------------------------------------------------------
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// HPC_SLOT_BUS_SPEED status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_BUS_SPEED_OK 0x00
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#define HPC_SLOT_BUS_SPEED_MISM 0x01
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//----------------------------------------------------------------------------
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// HPC_SLOT_LATCH status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_LATCH_OPEN 0x01 // NOTE : in PCI spec bit off = open
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#define HPC_SLOT_LATCH_CLOSED 0x00 // NOTE : in PCI spec bit on = closed
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//----------------------------------------------------------------------------
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// extended slot status
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//----------------------------------------------------------------------------
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#define HPC_SLOT_PCIX 0x01
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#define HPC_SLOT_SPEED1 0x02
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#define HPC_SLOT_SPEED2 0x04
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#define HPC_SLOT_BLINK_ATTN 0x08
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#define HPC_SLOT_RSRVD1 0x10
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#define HPC_SLOT_RSRVD2 0x20
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#define HPC_SLOT_BUS_MODE 0x40
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#define HPC_SLOT_RSRVD3 0x80
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//----------------------------------------------------------------------------
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// HPC_XSLOT_PCIX_CAP status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_PCIX_NO 0x00
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#define HPC_SLOT_PCIX_YES 0x01
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//----------------------------------------------------------------------------
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// HPC_XSLOT_SPEED status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_SPEED_33 0x00
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#define HPC_SLOT_SPEED_66 0x01
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#define HPC_SLOT_SPEED_133 0x02
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//----------------------------------------------------------------------------
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// HPC_XSLOT_ATTN_BLINK status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_ATTN_BLINK_OFF 0x00
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#define HPC_SLOT_ATTN_BLINK_ON 0x01
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//----------------------------------------------------------------------------
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// HPC_XSLOT_BUS_MODE status return codes
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//----------------------------------------------------------------------------
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#define HPC_SLOT_BUS_MODE_OK 0x00
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#define HPC_SLOT_BUS_MODE_MISM 0x01
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//----------------------------------------------------------------------------
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// Controller status
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//----------------------------------------------------------------------------
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#define HPC_CTLR_WORKING 0x01
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#define HPC_CTLR_FINISHED 0x02
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#define HPC_CTLR_RESULT0 0x04
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#define HPC_CTLR_RESULT1 0x08
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#define HPC_CTLR_RESULE2 0x10
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#define HPC_CTLR_RESULT3 0x20
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#define HPC_CTLR_IRQ_ROUTG 0x40
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#define HPC_CTLR_IRQ_PENDG 0x80
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//----------------------------------------------------------------------------
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// HPC_CTLR_WORKING status return codes
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//----------------------------------------------------------------------------
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#define HPC_CTLR_WORKING_NO 0x00
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#define HPC_CTLR_WORKING_YES 0x01
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|
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//----------------------------------------------------------------------------
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// HPC_CTLR_FINISHED status return codes
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//----------------------------------------------------------------------------
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#define HPC_CTLR_FINISHED_NO 0x00
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#define HPC_CTLR_FINISHED_YES 0x01
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//----------------------------------------------------------------------------
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// HPC_CTLR_RESULT status return codes
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//----------------------------------------------------------------------------
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#define HPC_CTLR_RESULT_SUCCESS 0x00
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#define HPC_CTLR_RESULT_FAILED 0x01
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#define HPC_CTLR_RESULT_RSVD 0x02
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#define HPC_CTLR_RESULT_NORESP 0x03
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|
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//----------------------------------------------------------------------------
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// macro for slot info
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|
//----------------------------------------------------------------------------
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#define SLOT_POWER(s) ((u8) ((s & HPC_SLOT_POWER) \
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? HPC_SLOT_POWER_ON : HPC_SLOT_POWER_OFF))
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|
|
|
#define SLOT_CONNECT(s) ((u8) ((s & HPC_SLOT_CONNECT) \
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|
? HPC_SLOT_DISCONNECTED : HPC_SLOT_CONNECTED))
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|
|
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#define SLOT_ATTN(s, es) ((u8) ((es & HPC_SLOT_BLINK_ATTN) \
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|
? HPC_SLOT_ATTN_BLINK \
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|
: ((s & HPC_SLOT_ATTN) ? HPC_SLOT_ATTN_ON : HPC_SLOT_ATTN_OFF)))
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|
|
|
#define SLOT_PRESENT(s) ((u8) ((s & HPC_SLOT_PRSNT1) \
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|
? ((s & HPC_SLOT_PRSNT2) ? HPC_SLOT_EMPTY : HPC_SLOT_PRSNT_15) \
|
|
: ((s & HPC_SLOT_PRSNT2) ? HPC_SLOT_PRSNT_25 : HPC_SLOT_PRSNT_7)))
|
|
|
|
#define SLOT_PWRGD(s) ((u8) ((s & HPC_SLOT_PWRGD) \
|
|
? HPC_SLOT_PWRGD_GOOD : HPC_SLOT_PWRGD_FAULT_NONE))
|
|
|
|
#define SLOT_BUS_SPEED(s) ((u8) ((s & HPC_SLOT_BUS_SPEED) \
|
|
? HPC_SLOT_BUS_SPEED_MISM : HPC_SLOT_BUS_SPEED_OK))
|
|
|
|
#define SLOT_LATCH(s) ((u8) ((s & HPC_SLOT_LATCH) \
|
|
? HPC_SLOT_LATCH_CLOSED : HPC_SLOT_LATCH_OPEN))
|
|
|
|
#define SLOT_PCIX(es) ((u8) ((es & HPC_SLOT_PCIX) \
|
|
? HPC_SLOT_PCIX_YES : HPC_SLOT_PCIX_NO))
|
|
|
|
#define SLOT_SPEED(es) ((u8) ((es & HPC_SLOT_SPEED2) \
|
|
? ((es & HPC_SLOT_SPEED1) ? HPC_SLOT_SPEED_133 \
|
|
: HPC_SLOT_SPEED_66) \
|
|
: HPC_SLOT_SPEED_33))
|
|
|
|
#define SLOT_BUS_MODE(es) ((u8) ((es & HPC_SLOT_BUS_MODE) \
|
|
? HPC_SLOT_BUS_MODE_MISM : HPC_SLOT_BUS_MODE_OK))
|
|
|
|
//--------------------------------------------------------------------------
|
|
// macro for bus info
|
|
//---------------------------------------------------------------------------
|
|
#define CURRENT_BUS_SPEED(s) ((u8) (s & BUS_SPEED_2) \
|
|
? ((s & BUS_SPEED_1) ? BUS_SPEED_133 : BUS_SPEED_100) \
|
|
: ((s & BUS_SPEED_1) ? BUS_SPEED_66 : BUS_SPEED_33))
|
|
|
|
#define CURRENT_BUS_MODE(s) ((u8) (s & BUS_MODE) ? BUS_MODE_PCIX : BUS_MODE_PCI)
|
|
|
|
#define READ_BUS_STATUS(s) ((u8) (s->options & BUS_STATUS_AVAILABLE))
|
|
|
|
#define READ_BUS_MODE(s) ((s->revision & PRGM_MODEL_REV_LEVEL) >= 0x20)
|
|
|
|
#define SET_BUS_STATUS(s) ((u8) (s->options & BUS_CONTROL_AVAILABLE))
|
|
|
|
#define READ_SLOT_LATCH(s) ((u8) (s->options & SLOT_LATCH_REGS_SUPPORTED))
|
|
|
|
//----------------------------------------------------------------------------
|
|
// macro for controller info
|
|
//----------------------------------------------------------------------------
|
|
#define CTLR_WORKING(c) ((u8) ((c & HPC_CTLR_WORKING) \
|
|
? HPC_CTLR_WORKING_YES : HPC_CTLR_WORKING_NO))
|
|
#define CTLR_FINISHED(c) ((u8) ((c & HPC_CTLR_FINISHED) \
|
|
? HPC_CTLR_FINISHED_YES : HPC_CTLR_FINISHED_NO))
|
|
#define CTLR_RESULT(c) ((u8) ((c & HPC_CTLR_RESULT1) \
|
|
? ((c & HPC_CTLR_RESULT0) ? HPC_CTLR_RESULT_NORESP \
|
|
: HPC_CTLR_RESULT_RSVD) \
|
|
: ((c & HPC_CTLR_RESULT0) ? HPC_CTLR_RESULT_FAILED \
|
|
: HPC_CTLR_RESULT_SUCCESS)))
|
|
|
|
// command that affect the state machine of HPC
|
|
#define NEEDTOCHECK_CMDSTATUS(c) ((c == HPC_SLOT_OFF) || \
|
|
(c == HPC_SLOT_ON) || \
|
|
(c == HPC_CTLR_RESET) || \
|
|
(c == HPC_BUS_33CONVMODE) || \
|
|
(c == HPC_BUS_66CONVMODE) || \
|
|
(c == HPC_BUS_66PCIXMODE) || \
|
|
(c == HPC_BUS_100PCIXMODE) || \
|
|
(c == HPC_BUS_133PCIXMODE) || \
|
|
(c == HPC_ALLSLOT_OFF) || \
|
|
(c == HPC_ALLSLOT_ON))
|
|
|
|
|
|
/* Core part of the driver */
|
|
|
|
#define ENABLE 1
|
|
#define DISABLE 0
|
|
|
|
#define CARD_INFO 0x07
|
|
#define PCIX133 0x07
|
|
#define PCIX66 0x05
|
|
#define PCI66 0x04
|
|
|
|
extern struct pci_bus *ibmphp_pci_bus;
|
|
|
|
/* Variables */
|
|
|
|
struct pci_func {
|
|
struct pci_dev *dev; /* from the OS */
|
|
u8 busno;
|
|
u8 device;
|
|
u8 function;
|
|
struct resource_node *io[6];
|
|
struct resource_node *mem[6];
|
|
struct resource_node *pfmem[6];
|
|
struct pci_func *next;
|
|
int devices[32]; /* for bridge config */
|
|
u8 irq[4]; /* for interrupt config */
|
|
u8 bus; /* flag for unconfiguring, to say if PPB */
|
|
};
|
|
|
|
struct slot {
|
|
u8 bus;
|
|
u8 device;
|
|
u8 number;
|
|
u8 real_physical_slot_num;
|
|
u32 capabilities;
|
|
u8 supported_speed;
|
|
u8 supported_bus_mode;
|
|
u8 flag; /* this is for disable slot and polling */
|
|
u8 ctlr_index;
|
|
struct hotplug_slot hotplug_slot;
|
|
struct controller *ctrl;
|
|
struct pci_func *func;
|
|
u8 irq[4];
|
|
int bit_mode; /* 0 = 32, 1 = 64 */
|
|
struct bus_info *bus_on;
|
|
struct list_head ibm_slot_list;
|
|
u8 status;
|
|
u8 ext_status;
|
|
u8 busstatus;
|
|
};
|
|
|
|
struct controller {
|
|
struct ebda_hpc_slot *slots;
|
|
struct ebda_hpc_bus *buses;
|
|
struct pci_dev *ctrl_dev; /* in case where controller is PCI */
|
|
u8 starting_slot_num; /* starting and ending slot #'s this ctrl controls*/
|
|
u8 ending_slot_num;
|
|
u8 revision;
|
|
u8 options; /* which options HPC supports */
|
|
u8 status;
|
|
u8 ctlr_id;
|
|
u8 slot_count;
|
|
u8 bus_count;
|
|
u8 ctlr_relative_id;
|
|
u32 irq;
|
|
union {
|
|
struct isa_ctlr_access isa_ctlr;
|
|
struct pci_ctlr_access pci_ctlr;
|
|
struct wpeg_i2c_ctlr_access wpeg_ctlr;
|
|
} u;
|
|
u8 ctlr_type;
|
|
struct list_head ebda_hpc_list;
|
|
};
|
|
|
|
/* Functions */
|
|
|
|
int ibmphp_init_devno(struct slot **); /* This function is called from EBDA, so we need it not be static */
|
|
int ibmphp_do_disable_slot(struct slot *slot_cur);
|
|
int ibmphp_update_slot_info(struct slot *); /* This function is called from HPC, so we need it to not be be static */
|
|
int ibmphp_configure_card(struct pci_func *, u8);
|
|
int ibmphp_unconfigure_card(struct slot **, int);
|
|
extern const struct hotplug_slot_ops ibmphp_hotplug_slot_ops;
|
|
|
|
static inline struct slot *to_slot(struct hotplug_slot *hotplug_slot)
|
|
{
|
|
return container_of(hotplug_slot, struct slot, hotplug_slot);
|
|
}
|
|
|
|
#endif //__IBMPHP_H
|
|
|