2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
6 * Copyright (C) 1992 - 1997, 2000-2006 Silicon Graphics, Inc. All rights reserved.
9 #include <asm/sn/types.h>
10 #include <asm/sn/addrs.h>
11 #include <asm/sn/io.h>
12 #include <asm/sn/module.h>
13 #include <asm/sn/intr.h>
14 #include <asm/sn/pcibus_provider_defs.h>
15 #include <asm/sn/pcidev.h>
16 #include <asm/sn/sn_sal.h>
17 #include "xtalk/hubdev.h"
20 * The code in this file will only be executed when running with
21 * a PROM that does _not_ have base ACPI IO support.
22 * (i.e., SN_ACPI_BASE_SUPPORT() == 0)
25 static int max_segment_number
; /* Default highest segment number */
26 static int max_pcibus_number
= 255; /* Default highest pci bus number */
30 * Retrieve the hub device info structure for the given nasid.
32 static inline u64
sal_get_hubdev_info(u64 handle
, u64 address
)
34 struct ia64_sal_retval ret_stuff
;
38 SAL_CALL_NOLOCK(ret_stuff
,
39 (u64
) SN_SAL_IOIF_GET_HUBDEV_INFO
,
40 (u64
) handle
, (u64
) address
, 0, 0, 0, 0, 0);
45 * Retrieve the pci bus information given the bus number.
47 static inline u64
sal_get_pcibus_info(u64 segment
, u64 busnum
, u64 address
)
49 struct ia64_sal_retval ret_stuff
;
53 SAL_CALL_NOLOCK(ret_stuff
,
54 (u64
) SN_SAL_IOIF_GET_PCIBUS_INFO
,
55 (u64
) segment
, (u64
) busnum
, (u64
) address
, 0, 0, 0, 0);
60 * Retrieve the pci device information given the bus and device|function number.
63 sal_get_pcidev_info(u64 segment
, u64 bus_number
, u64 devfn
, u64 pci_dev
,
66 struct ia64_sal_retval ret_stuff
;
70 SAL_CALL_NOLOCK(ret_stuff
,
71 (u64
) SN_SAL_IOIF_GET_PCIDEV_INFO
,
72 (u64
) segment
, (u64
) bus_number
, (u64
) devfn
,
80 * sn_fixup_ionodes() - This routine initializes the HUB data structure for
81 * each node in the system. This function is only
82 * executed when running with a non-ACPI capable PROM.
84 static void __init
sn_fixup_ionodes(void)
87 struct hubdev_info
*hubdev
;
91 extern void sn_common_hubdev_init(struct hubdev_info
*);
94 * Get SGI Specific HUB chipset information.
95 * Inform Prom that this kernel can support domain bus numbering.
97 for (i
= 0; i
< num_cnodes
; i
++) {
98 hubdev
= (struct hubdev_info
*)(NODEPDA(i
)->pdinfo
);
99 nasid
= cnodeid_to_nasid(i
);
100 hubdev
->max_segment_number
= 0xffffffff;
101 hubdev
->max_pcibus_number
= 0xff;
102 status
= sal_get_hubdev_info(nasid
, (u64
) __pa(hubdev
));
106 /* Save the largest Domain and pcibus numbers found. */
107 if (hubdev
->max_segment_number
) {
109 * Dealing with a Prom that supports segments.
111 max_segment_number
= hubdev
->max_segment_number
;
112 max_pcibus_number
= hubdev
->max_pcibus_number
;
114 sn_common_hubdev_init(hubdev
);
119 * sn_pci_legacy_window_fixup - Create PCI controller windows for
120 * legacy IO and MEM space. This needs to
121 * be done here, as the PROM does not have
122 * ACPI support defining the root buses
123 * and their resources (_CRS),
126 sn_legacy_pci_window_fixup(struct pci_controller
*controller
,
127 u64 legacy_io
, u64 legacy_mem
)
129 controller
->window
= kcalloc(2, sizeof(struct pci_window
),
131 BUG_ON(controller
->window
== NULL
);
132 controller
->window
[0].offset
= legacy_io
;
133 controller
->window
[0].resource
.name
= "legacy_io";
134 controller
->window
[0].resource
.flags
= IORESOURCE_IO
;
135 controller
->window
[0].resource
.start
= legacy_io
;
136 controller
->window
[0].resource
.end
=
137 controller
->window
[0].resource
.start
+ 0xffff;
138 controller
->window
[0].resource
.parent
= &ioport_resource
;
139 controller
->window
[1].offset
= legacy_mem
;
140 controller
->window
[1].resource
.name
= "legacy_mem";
141 controller
->window
[1].resource
.flags
= IORESOURCE_MEM
;
142 controller
->window
[1].resource
.start
= legacy_mem
;
143 controller
->window
[1].resource
.end
=
144 controller
->window
[1].resource
.start
+ (1024 * 1024) - 1;
145 controller
->window
[1].resource
.parent
= &iomem_resource
;
146 controller
->windows
= 2;
150 * sn_pci_window_fixup() - Create a pci_window for each device resource.
151 * It will setup pci_windows for use by
152 * pcibios_bus_to_resource(), pcibios_resource_to_bus(),
156 sn_pci_window_fixup(struct pci_dev
*dev
, unsigned int count
,
159 struct pci_controller
*controller
= PCI_CONTROLLER(dev
->bus
);
162 unsigned int new_count
;
163 struct pci_window
*new_window
;
167 idx
= controller
->windows
;
168 new_count
= controller
->windows
+ count
;
169 new_window
= kcalloc(new_count
, sizeof(struct pci_window
), GFP_KERNEL
);
170 BUG_ON(new_window
== NULL
);
171 if (controller
->window
) {
172 memcpy(new_window
, controller
->window
,
173 sizeof(struct pci_window
) * controller
->windows
);
174 kfree(controller
->window
);
177 /* Setup a pci_window for each device resource. */
178 for (i
= 0; i
<= PCI_ROM_RESOURCE
; i
++) {
179 if (pci_addrs
[i
] == -1)
182 new_window
[idx
].offset
= dev
->resource
[i
].start
- pci_addrs
[i
];
183 new_window
[idx
].resource
= dev
->resource
[i
];
187 controller
->windows
= new_count
;
188 controller
->window
= new_window
;
192 * sn_io_slot_fixup() - We are not running with an ACPI capable PROM,
193 * and need to convert the pci_dev->resource
194 * 'start' and 'end' addresses to mapped addresses,
195 * and setup the pci_controller->window array entries.
198 sn_io_slot_fixup(struct pci_dev
*dev
)
200 unsigned int count
= 0;
202 s64 pci_addrs
[PCI_ROM_RESOURCE
+ 1];
203 unsigned long addr
, end
, size
, start
;
204 struct pcidev_info
*pcidev_info
;
205 struct sn_irq_info
*sn_irq_info
;
208 pcidev_info
= kzalloc(sizeof(struct pcidev_info
), GFP_KERNEL
);
210 panic("%s: Unable to alloc memory for pcidev_info", __func__
);
212 sn_irq_info
= kzalloc(sizeof(struct sn_irq_info
), GFP_KERNEL
);
214 panic("%s: Unable to alloc memory for sn_irq_info", __func__
);
216 /* Call to retrieve pci device information needed by kernel. */
217 status
= sal_get_pcidev_info((u64
) pci_domain_nr(dev
),
218 (u64
) dev
->bus
->number
,
220 (u64
) __pa(pcidev_info
),
221 (u64
) __pa(sn_irq_info
));
223 BUG_ON(status
); /* Cannot get platform pci device information */
226 /* Copy over PIO Mapped Addresses */
227 for (idx
= 0; idx
<= PCI_ROM_RESOURCE
; idx
++) {
229 if (!pcidev_info
->pdi_pio_mapped_addr
[idx
]) {
234 start
= dev
->resource
[idx
].start
;
235 end
= dev
->resource
[idx
].end
;
241 pci_addrs
[idx
] = start
;
243 addr
= pcidev_info
->pdi_pio_mapped_addr
[idx
];
244 addr
= ((addr
<< 4) >> 4) | __IA64_UNCACHED_OFFSET
;
245 dev
->resource
[idx
].start
= addr
;
246 dev
->resource
[idx
].end
= addr
+ size
;
249 * if it's already in the device structure, remove it before
252 if (dev
->resource
[idx
].parent
&& dev
->resource
[idx
].parent
->child
)
253 release_resource(&dev
->resource
[idx
]);
255 if (dev
->resource
[idx
].flags
& IORESOURCE_IO
)
256 insert_resource(&ioport_resource
, &dev
->resource
[idx
]);
258 insert_resource(&iomem_resource
, &dev
->resource
[idx
]);
260 * If ROM, set the actual ROM image size, and mark as
263 if (idx
== PCI_ROM_RESOURCE
) {
267 rom
= ioremap(pci_resource_start(dev
, PCI_ROM_RESOURCE
),
269 image_size
= pci_get_rom_size(dev
, rom
, size
+ 1);
270 dev
->resource
[PCI_ROM_RESOURCE
].end
=
271 dev
->resource
[PCI_ROM_RESOURCE
].start
+
273 dev
->resource
[PCI_ROM_RESOURCE
].flags
|=
274 IORESOURCE_ROM_BIOS_COPY
;
277 /* Create a pci_window in the pci_controller struct for
278 * each device resource.
281 sn_pci_window_fixup(dev
, count
, pci_addrs
);
283 sn_pci_fixup_slot(dev
, pcidev_info
, sn_irq_info
);
286 EXPORT_SYMBOL(sn_io_slot_fixup
);
289 * sn_pci_controller_fixup() - This routine sets up a bus's resources
290 * consistent with the Linux PCI abstraction layer.
293 sn_pci_controller_fixup(int segment
, int busnum
, struct pci_bus
*bus
)
296 struct pci_controller
*controller
;
297 struct pcibus_bussoft
*prom_bussoft_ptr
;
300 status
= sal_get_pcibus_info((u64
) segment
, (u64
) busnum
,
301 (u64
) ia64_tpa(&prom_bussoft_ptr
));
303 return; /*bus # does not exist */
304 prom_bussoft_ptr
= __va(prom_bussoft_ptr
);
306 controller
= kzalloc(sizeof(*controller
), GFP_KERNEL
);
308 controller
->segment
= segment
;
311 * Temporarily save the prom_bussoft_ptr for use by sn_bus_fixup().
312 * (platform_data will be overwritten later in sn_common_bus_fixup())
314 controller
->platform_data
= prom_bussoft_ptr
;
316 bus
= pci_scan_bus(busnum
, &pci_root_ops
, controller
);
318 goto error_return
; /* error, or bus already scanned */
320 bus
->sysdata
= controller
;
334 sn_bus_fixup(struct pci_bus
*bus
)
336 struct pci_dev
*pci_dev
= NULL
;
337 struct pcibus_bussoft
*prom_bussoft_ptr
;
339 if (!bus
->parent
) { /* If root bus */
340 prom_bussoft_ptr
= PCI_CONTROLLER(bus
)->platform_data
;
341 if (prom_bussoft_ptr
== NULL
) {
343 "sn_bus_fixup: 0x%04x:0x%02x Unable to "
344 "obtain prom_bussoft_ptr\n",
345 pci_domain_nr(bus
), bus
->number
);
348 sn_common_bus_fixup(bus
, prom_bussoft_ptr
);
349 sn_legacy_pci_window_fixup(PCI_CONTROLLER(bus
),
350 prom_bussoft_ptr
->bs_legacy_io
,
351 prom_bussoft_ptr
->bs_legacy_mem
);
353 list_for_each_entry(pci_dev
, &bus
->devices
, bus_list
) {
354 sn_io_slot_fixup(pci_dev
);
360 * sn_io_init - PROM does not have ACPI support to define nodes or root buses,
361 * so we need to do things the hard way, including initiating the
362 * bus scanning ourselves.
365 void __init
sn_io_init(void)
371 /* busses are not known yet ... */
372 for (i
= 0; i
<= max_segment_number
; i
++)
373 for (j
= 0; j
<= max_pcibus_number
; j
++)
374 sn_pci_controller_fixup(i
, j
, NULL
);