2 * IBM Hot Plug Controller Driver
4 * Written By: Chuck Cole, Jyoti Shah, Tong Yu, Irene Zubarev, IBM Corporation
6 * Copyright (C) 2001,2003 Greg Kroah-Hartman (greg@kroah.com)
7 * Copyright (C) 2001-2003 IBM Corp.
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2 of the License, or (at
14 * your option) any later version.
16 * This program is distributed in the hope that it will be useful, but
17 * WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
19 * NON INFRINGEMENT. See the GNU General Public License for more
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software
24 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
26 * Send feedback to <gregkh@us.ibm.com>
30 #include <linux/init.h>
31 #include <linux/module.h>
32 #include <linux/slab.h>
33 #include <linux/pci.h>
34 #include <linux/interrupt.h>
35 #include <linux/delay.h>
36 #include <linux/wait.h>
38 #include <asm/pci_x86.h> /* for struct irq_routing_table */
39 #include <asm/io_apic.h>
42 #define attn_on(sl) ibmphp_hpc_writeslot(sl, HPC_SLOT_ATTNON)
43 #define attn_off(sl) ibmphp_hpc_writeslot(sl, HPC_SLOT_ATTNOFF)
44 #define attn_LED_blink(sl) ibmphp_hpc_writeslot(sl, HPC_SLOT_BLINKLED)
45 #define get_ctrl_revision(sl, rev) ibmphp_hpc_readslot(sl, READ_REVLEVEL, rev)
46 #define get_hpc_options(sl, opt) ibmphp_hpc_readslot(sl, READ_HPCOPTIONS, opt)
48 #define DRIVER_VERSION "0.6"
49 #define DRIVER_DESC "IBM Hot Plug PCI Controller Driver"
54 module_param(debug
, bool, S_IRUGO
| S_IWUSR
);
55 MODULE_PARM_DESC(debug
, "Debugging mode enabled or not");
56 MODULE_LICENSE("GPL");
57 MODULE_DESCRIPTION(DRIVER_DESC
);
59 struct pci_bus
*ibmphp_pci_bus
;
62 static int irqs
[16]; /* PIC mode IRQs we're using so far (in case MPS
63 * tables don't provide default info for empty slots */
68 static int get_max_adapter_speed_1 (struct hotplug_slot *, u8 *, u8);
70 static inline int get_max_adapter_speed (struct hotplug_slot *hs, u8 *value)
72 return get_max_adapter_speed_1 (hs, value, 1);
75 static inline int get_cur_bus_info(struct slot
**sl
)
78 struct slot
*slot_cur
= *sl
;
80 debug("options = %x\n", slot_cur
->ctrl
->options
);
81 debug("revision = %x\n", slot_cur
->ctrl
->revision
);
83 if (READ_BUS_STATUS(slot_cur
->ctrl
))
84 rc
= ibmphp_hpc_readslot(slot_cur
, READ_BUSSTATUS
, NULL
);
89 slot_cur
->bus_on
->current_speed
= CURRENT_BUS_SPEED(slot_cur
->busstatus
);
90 if (READ_BUS_MODE(slot_cur
->ctrl
))
91 slot_cur
->bus_on
->current_bus_mode
=
92 CURRENT_BUS_MODE(slot_cur
->busstatus
);
94 slot_cur
->bus_on
->current_bus_mode
= 0xFF;
96 debug("busstatus = %x, bus_speed = %x, bus_mode = %x\n",
98 slot_cur
->bus_on
->current_speed
,
99 slot_cur
->bus_on
->current_bus_mode
);
105 static inline int slot_update(struct slot
**sl
)
108 rc
= ibmphp_hpc_readslot(*sl
, READ_ALLSTAT
, NULL
);
112 rc
= get_cur_bus_info(sl
);
116 static int __init
get_max_slots(void)
118 struct slot
*slot_cur
;
121 list_for_each_entry(slot_cur
, &ibmphp_slot_head
, ibm_slot_list
) {
122 /* sometimes the hot-pluggable slots start with 4 (not always from 1) */
123 slot_count
= max(slot_count
, slot_cur
->number
);
128 /* This routine will put the correct slot->device information per slot. It's
129 * called from initialization of the slot structures. It will also assign
130 * interrupt numbers per each slot.
131 * Parameters: struct slot
132 * Returns 0 or errors
134 int ibmphp_init_devno(struct slot
**cur_slot
)
136 struct irq_routing_table
*rtable
;
141 rtable
= pcibios_get_irq_routing_table();
143 err("no BIOS routing table...\n");
147 len
= (rtable
->size
- sizeof(struct irq_routing_table
)) /
148 sizeof(struct irq_info
);
154 for (loop
= 0; loop
< len
; loop
++) {
155 if ((*cur_slot
)->number
== rtable
->slots
[loop
].slot
&&
156 (*cur_slot
)->bus
== rtable
->slots
[loop
].bus
) {
157 (*cur_slot
)->device
= PCI_SLOT(rtable
->slots
[loop
].devfn
);
158 for (i
= 0; i
< 4; i
++)
159 (*cur_slot
)->irq
[i
] = IO_APIC_get_PCI_irq_vector((int) (*cur_slot
)->bus
,
160 (int) (*cur_slot
)->device
, i
);
162 debug("(*cur_slot)->irq[0] = %x\n",
163 (*cur_slot
)->irq
[0]);
164 debug("(*cur_slot)->irq[1] = %x\n",
165 (*cur_slot
)->irq
[1]);
166 debug("(*cur_slot)->irq[2] = %x\n",
167 (*cur_slot
)->irq
[2]);
168 debug("(*cur_slot)->irq[3] = %x\n",
169 (*cur_slot
)->irq
[3]);
171 debug("rtable->exclusive_irqs = %x\n",
172 rtable
->exclusive_irqs
);
173 debug("rtable->slots[loop].irq[0].bitmap = %x\n",
174 rtable
->slots
[loop
].irq
[0].bitmap
);
175 debug("rtable->slots[loop].irq[1].bitmap = %x\n",
176 rtable
->slots
[loop
].irq
[1].bitmap
);
177 debug("rtable->slots[loop].irq[2].bitmap = %x\n",
178 rtable
->slots
[loop
].irq
[2].bitmap
);
179 debug("rtable->slots[loop].irq[3].bitmap = %x\n",
180 rtable
->slots
[loop
].irq
[3].bitmap
);
182 debug("rtable->slots[loop].irq[0].link = %x\n",
183 rtable
->slots
[loop
].irq
[0].link
);
184 debug("rtable->slots[loop].irq[1].link = %x\n",
185 rtable
->slots
[loop
].irq
[1].link
);
186 debug("rtable->slots[loop].irq[2].link = %x\n",
187 rtable
->slots
[loop
].irq
[2].link
);
188 debug("rtable->slots[loop].irq[3].link = %x\n",
189 rtable
->slots
[loop
].irq
[3].link
);
190 debug("end of init_devno\n");
200 static inline int power_on(struct slot
*slot_cur
)
202 u8 cmd
= HPC_SLOT_ON
;
205 retval
= ibmphp_hpc_writeslot(slot_cur
, cmd
);
207 err("power on failed\n");
210 if (CTLR_RESULT(slot_cur
->ctrl
->status
)) {
211 err("command not completed successfully in power_on\n");
214 msleep(3000); /* For ServeRAID cards, and some 66 PCI */
218 static inline int power_off(struct slot
*slot_cur
)
220 u8 cmd
= HPC_SLOT_OFF
;
223 retval
= ibmphp_hpc_writeslot(slot_cur
, cmd
);
225 err("power off failed\n");
228 if (CTLR_RESULT(slot_cur
->ctrl
->status
)) {
229 err("command not completed successfully in power_off\n");
235 static int set_attention_status(struct hotplug_slot
*hotplug_slot
, u8 value
)
239 u8 cmd
= 0x00; /* avoid compiler warning */
241 debug("set_attention_status - Entry hotplug_slot[%lx] value[%x]\n",
242 (ulong
) hotplug_slot
, value
);
243 ibmphp_lock_operations();
248 case HPC_SLOT_ATTN_OFF
:
249 cmd
= HPC_SLOT_ATTNOFF
;
251 case HPC_SLOT_ATTN_ON
:
252 cmd
= HPC_SLOT_ATTNON
;
254 case HPC_SLOT_ATTN_BLINK
:
255 cmd
= HPC_SLOT_BLINKLED
;
259 err("set_attention_status - Error : invalid input [%x]\n",
264 pslot
= hotplug_slot
->private;
266 rc
= ibmphp_hpc_writeslot(pslot
, cmd
);
273 ibmphp_unlock_operations();
275 debug("set_attention_status - Exit rc[%d]\n", rc
);
279 static int get_attention_status(struct hotplug_slot
*hotplug_slot
, u8
*value
)
285 debug("get_attention_status - Entry hotplug_slot[%lx] pvalue[%lx]\n",
286 (ulong
) hotplug_slot
, (ulong
) value
);
288 ibmphp_lock_operations();
290 pslot
= hotplug_slot
->private;
292 memcpy(&myslot
, pslot
, sizeof(struct slot
));
293 rc
= ibmphp_hpc_readslot(pslot
, READ_SLOTSTATUS
,
296 rc
= ibmphp_hpc_readslot(pslot
,
298 &(myslot
.ext_status
));
300 *value
= SLOT_ATTN(myslot
.status
,
305 ibmphp_unlock_operations();
306 debug("get_attention_status - Exit rc[%d] value[%x]\n", rc
, *value
);
310 static int get_latch_status(struct hotplug_slot
*hotplug_slot
, u8
*value
)
316 debug("get_latch_status - Entry hotplug_slot[%lx] pvalue[%lx]\n",
317 (ulong
) hotplug_slot
, (ulong
) value
);
318 ibmphp_lock_operations();
320 pslot
= hotplug_slot
->private;
322 memcpy(&myslot
, pslot
, sizeof(struct slot
));
323 rc
= ibmphp_hpc_readslot(pslot
, READ_SLOTSTATUS
,
326 *value
= SLOT_LATCH(myslot
.status
);
330 ibmphp_unlock_operations();
331 debug("get_latch_status - Exit rc[%d] rc[%x] value[%x]\n",
337 static int get_power_status(struct hotplug_slot
*hotplug_slot
, u8
*value
)
343 debug("get_power_status - Entry hotplug_slot[%lx] pvalue[%lx]\n",
344 (ulong
) hotplug_slot
, (ulong
) value
);
345 ibmphp_lock_operations();
347 pslot
= hotplug_slot
->private;
349 memcpy(&myslot
, pslot
, sizeof(struct slot
));
350 rc
= ibmphp_hpc_readslot(pslot
, READ_SLOTSTATUS
,
353 *value
= SLOT_PWRGD(myslot
.status
);
357 ibmphp_unlock_operations();
358 debug("get_power_status - Exit rc[%d] rc[%x] value[%x]\n",
363 static int get_adapter_present(struct hotplug_slot
*hotplug_slot
, u8
*value
)
370 debug("get_adapter_status - Entry hotplug_slot[%lx] pvalue[%lx]\n",
371 (ulong
) hotplug_slot
, (ulong
) value
);
372 ibmphp_lock_operations();
374 pslot
= hotplug_slot
->private;
376 memcpy(&myslot
, pslot
, sizeof(struct slot
));
377 rc
= ibmphp_hpc_readslot(pslot
, READ_SLOTSTATUS
,
380 present
= SLOT_PRESENT(myslot
.status
);
381 if (present
== HPC_SLOT_EMPTY
)
389 ibmphp_unlock_operations();
390 debug("get_adapter_present - Exit rc[%d] value[%x]\n", rc
, *value
);
394 static int get_max_bus_speed(struct slot
*slot
)
398 enum pci_bus_speed speed
;
399 struct pci_bus
*bus
= slot
->hotplug_slot
->pci_slot
->bus
;
401 debug("%s - Entry slot[%p]\n", __func__
, slot
);
403 ibmphp_lock_operations();
404 mode
= slot
->supported_bus_mode
;
405 speed
= slot
->supported_speed
;
406 ibmphp_unlock_operations();
412 if (mode
== BUS_MODE_PCIX
)
420 /* Note (will need to change): there would be soon 256, 512 also */
425 bus
->max_bus_speed
= speed
;
427 debug("%s - Exit rc[%d] speed[%x]\n", __func__
, rc
, speed
);
432 static int get_max_adapter_speed_1(struct hotplug_slot *hotplug_slot, u8 *value, u8 flag)
438 debug("get_max_adapter_speed_1 - Entry hotplug_slot[%lx] pvalue[%lx]\n",
439 (ulong)hotplug_slot, (ulong) value);
442 ibmphp_lock_operations();
444 if (hotplug_slot && value) {
445 pslot = hotplug_slot->private;
447 memcpy(&myslot, pslot, sizeof(struct slot));
448 rc = ibmphp_hpc_readslot(pslot, READ_SLOTSTATUS,
451 if (!(SLOT_LATCH (myslot.status)) &&
452 (SLOT_PRESENT (myslot.status))) {
453 rc = ibmphp_hpc_readslot(pslot,
455 &(myslot.ext_status));
457 *value = SLOT_SPEED(myslot.ext_status);
459 *value = MAX_ADAPTER_NONE;
464 ibmphp_unlock_operations();
466 debug("get_max_adapter_speed_1 - Exit rc[%d] value[%x]\n", rc, *value);
470 static int get_bus_name(struct hotplug_slot *hotplug_slot, char *value)
473 struct slot *pslot = NULL;
475 debug("get_bus_name - Entry hotplug_slot[%lx]\n", (ulong)hotplug_slot);
477 ibmphp_lock_operations();
480 pslot = hotplug_slot->private;
483 snprintf(value, 100, "Bus %x", pslot->bus);
488 ibmphp_unlock_operations();
489 debug("get_bus_name - Exit rc[%d] value[%x]\n", rc, *value);
494 /****************************************************************************
495 * This routine will initialize the ops data structure used in the validate
496 * function. It will also power off empty slots that are powered on since BIOS
497 * leaves those on, albeit disconnected
498 ****************************************************************************/
499 static int __init
init_ops(void)
501 struct slot
*slot_cur
;
505 list_for_each_entry(slot_cur
, &ibmphp_slot_head
, ibm_slot_list
) {
506 debug("BEFORE GETTING SLOT STATUS, slot # %x\n",
508 if (slot_cur
->ctrl
->revision
== 0xFF)
509 if (get_ctrl_revision(slot_cur
,
510 &slot_cur
->ctrl
->revision
))
513 if (slot_cur
->bus_on
->current_speed
== 0xFF)
514 if (get_cur_bus_info(&slot_cur
))
516 get_max_bus_speed(slot_cur
);
518 if (slot_cur
->ctrl
->options
== 0xFF)
519 if (get_hpc_options(slot_cur
, &slot_cur
->ctrl
->options
))
522 retval
= slot_update(&slot_cur
);
526 debug("status = %x\n", slot_cur
->status
);
527 debug("ext_status = %x\n", slot_cur
->ext_status
);
528 debug("SLOT_POWER = %x\n", SLOT_POWER(slot_cur
->status
));
529 debug("SLOT_PRESENT = %x\n", SLOT_PRESENT(slot_cur
->status
));
530 debug("SLOT_LATCH = %x\n", SLOT_LATCH(slot_cur
->status
));
532 if ((SLOT_PWRGD(slot_cur
->status
)) &&
533 !(SLOT_PRESENT(slot_cur
->status
)) &&
534 !(SLOT_LATCH(slot_cur
->status
))) {
535 debug("BEFORE POWER OFF COMMAND\n");
536 rc
= power_off(slot_cur
);
540 /* retval = slot_update(&slot_cur);
543 * ibmphp_update_slot_info(slot_cur);
551 /* This operation will check whether the slot is within the bounds and
552 * the operation is valid to perform on that slot
553 * Parameters: slot, operation
554 * Returns: 0 or error codes
556 static int validate(struct slot
*slot_cur
, int opn
)
563 number
= slot_cur
->number
;
564 if ((number
> max_slots
) || (number
< 0))
566 debug("slot_number in validate is %d\n", slot_cur
->number
);
568 retval
= slot_update(&slot_cur
);
574 if (!(SLOT_PWRGD(slot_cur
->status
)) &&
575 (SLOT_PRESENT(slot_cur
->status
)) &&
576 !(SLOT_LATCH(slot_cur
->status
)))
580 if ((SLOT_PWRGD(slot_cur
->status
)) &&
581 (SLOT_PRESENT(slot_cur
->status
)) &&
582 !(SLOT_LATCH(slot_cur
->status
)))
588 err("validate failed....\n");
592 /****************************************************************************
593 * This routine is for updating the data structures in the hotplug core
594 * Parameters: struct slot
595 * Returns: 0 or error
596 ****************************************************************************/
597 int ibmphp_update_slot_info(struct slot
*slot_cur
)
599 struct hotplug_slot_info
*info
;
600 struct pci_bus
*bus
= slot_cur
->hotplug_slot
->pci_slot
->bus
;
605 info
= kmalloc(sizeof(struct hotplug_slot_info
), GFP_KERNEL
);
607 err("out of system memory\n");
611 info
->power_status
= SLOT_PWRGD(slot_cur
->status
);
612 info
->attention_status
= SLOT_ATTN(slot_cur
->status
,
613 slot_cur
->ext_status
);
614 info
->latch_status
= SLOT_LATCH(slot_cur
->status
);
615 if (!SLOT_PRESENT(slot_cur
->status
)) {
616 info
->adapter_status
= 0;
617 /* info->max_adapter_speed_status = MAX_ADAPTER_NONE; */
619 info
->adapter_status
= 1;
620 /* get_max_adapter_speed_1(slot_cur->hotplug_slot,
621 &info->max_adapter_speed_status, 0); */
624 bus_speed
= slot_cur
->bus_on
->current_speed
;
625 mode
= slot_cur
->bus_on
->current_bus_mode
;
631 if (mode
== BUS_MODE_PCIX
)
633 else if (mode
== BUS_MODE_PCI
)
636 bus_speed
= PCI_SPEED_UNKNOWN
;
643 bus_speed
= PCI_SPEED_UNKNOWN
;
646 bus
->cur_bus_speed
= bus_speed
;
649 rc
= pci_hp_change_slot_info(slot_cur
->hotplug_slot
, info
);
655 /******************************************************************************
656 * This function will return the pci_func, given bus and devfunc, or NULL. It
657 * is called from visit routines
658 ******************************************************************************/
660 static struct pci_func
*ibm_slot_find(u8 busno
, u8 device
, u8 function
)
662 struct pci_func
*func_cur
;
663 struct slot
*slot_cur
;
664 list_for_each_entry(slot_cur
, &ibmphp_slot_head
, ibm_slot_list
) {
665 if (slot_cur
->func
) {
666 func_cur
= slot_cur
->func
;
668 if ((func_cur
->busno
== busno
) &&
669 (func_cur
->device
== device
) &&
670 (func_cur
->function
== function
))
672 func_cur
= func_cur
->next
;
679 /*************************************************************
680 * This routine frees up memory used by struct slot, including
681 * the pointers to pci_func, bus, hotplug_slot, controller,
682 * and deregistering from the hotplug core
683 *************************************************************/
684 static void free_slots(void)
686 struct slot
*slot_cur
, *next
;
688 debug("%s -- enter\n", __func__
);
690 list_for_each_entry_safe(slot_cur
, next
, &ibmphp_slot_head
,
692 pci_hp_deregister(slot_cur
->hotplug_slot
);
694 debug("%s -- exit\n", __func__
);
697 static void ibm_unconfigure_device(struct pci_func
*func
)
699 struct pci_dev
*temp
;
702 debug("inside %s\n", __func__
);
703 debug("func->device = %x, func->function = %x\n",
704 func
->device
, func
->function
);
705 debug("func->device << 3 | 0x0 = %x\n", func
->device
<< 3 | 0x0);
707 pci_lock_rescan_remove();
709 for (j
= 0; j
< 0x08; j
++) {
710 temp
= pci_get_bus_and_slot(func
->busno
, (func
->device
<< 3) | j
);
712 pci_stop_and_remove_bus_device(temp
);
717 pci_dev_put(func
->dev
);
719 pci_unlock_rescan_remove();
723 * The following function is to fix kernel bug regarding
724 * getting bus entries, here we manually add those primary
725 * bus entries to kernel bus structure whenever apply
727 static u8
bus_structure_fixup(u8 busno
)
729 struct pci_bus
*bus
, *b
;
733 if (pci_find_bus(0, busno
) || !(ibmphp_find_same_bus_num(busno
)))
736 bus
= kmalloc(sizeof(*bus
), GFP_KERNEL
);
738 err("%s - out of memory\n", __func__
);
741 dev
= kmalloc(sizeof(*dev
), GFP_KERNEL
);
744 err("%s - out of memory\n", __func__
);
749 bus
->ops
= ibmphp_pci_bus
->ops
;
751 for (dev
->devfn
= 0; dev
->devfn
< 256; dev
->devfn
+= 8) {
752 if (!pci_read_config_word(dev
, PCI_VENDOR_ID
, &l
) &&
753 (l
!= 0x0000) && (l
!= 0xffff)) {
754 debug("%s - Inside bus_structure_fixup()\n",
756 b
= pci_scan_bus(busno
, ibmphp_pci_bus
->ops
, NULL
);
760 pci_bus_add_devices(b
);
771 static int ibm_configure_device(struct pci_func
*func
)
773 struct pci_bus
*child
;
775 int flag
= 0; /* this is to make sure we don't double scan the bus,
776 for bridged devices primarily */
778 pci_lock_rescan_remove();
780 if (!(bus_structure_fixup(func
->busno
)))
782 if (func
->dev
== NULL
)
783 func
->dev
= pci_get_bus_and_slot(func
->busno
,
784 PCI_DEVFN(func
->device
, func
->function
));
786 if (func
->dev
== NULL
) {
787 struct pci_bus
*bus
= pci_find_bus(0, func
->busno
);
791 num
= pci_scan_slot(bus
,
792 PCI_DEVFN(func
->device
, func
->function
));
794 pci_bus_add_devices(bus
);
796 func
->dev
= pci_get_bus_and_slot(func
->busno
,
797 PCI_DEVFN(func
->device
, func
->function
));
798 if (func
->dev
== NULL
) {
799 err("ERROR... : pci_dev still NULL\n");
803 if (!(flag
) && (func
->dev
->hdr_type
== PCI_HEADER_TYPE_BRIDGE
)) {
804 pci_hp_add_bridge(func
->dev
);
805 child
= func
->dev
->subordinate
;
807 pci_bus_add_devices(child
);
811 pci_unlock_rescan_remove();
815 /*******************************************************
816 * Returns whether the bus is empty or not
817 *******************************************************/
818 static int is_bus_empty(struct slot
*slot_cur
)
821 struct slot
*tmp_slot
;
822 u8 i
= slot_cur
->bus_on
->slot_min
;
824 while (i
<= slot_cur
->bus_on
->slot_max
) {
825 if (i
== slot_cur
->number
) {
829 tmp_slot
= ibmphp_get_slot_from_physical_num(i
);
832 rc
= slot_update(&tmp_slot
);
835 if (SLOT_PRESENT(tmp_slot
->status
) &&
836 SLOT_PWRGD(tmp_slot
->status
))
843 /***********************************************************
844 * If the HPC permits and the bus currently empty, tries to set the
845 * bus speed and mode at the maximum card and bus capability
847 * Returns: bus is set (0) or error code
848 ***********************************************************/
849 static int set_bus(struct slot
*slot_cur
)
855 static struct pci_device_id ciobx
[] = {
856 { PCI_DEVICE(PCI_VENDOR_ID_SERVERWORKS
, 0x0101) },
860 debug("%s - entry slot # %d\n", __func__
, slot_cur
->number
);
861 if (SET_BUS_STATUS(slot_cur
->ctrl
) && is_bus_empty(slot_cur
)) {
862 rc
= slot_update(&slot_cur
);
865 speed
= SLOT_SPEED(slot_cur
->ext_status
);
866 debug("ext_status = %x, speed = %x\n", slot_cur
->ext_status
, speed
);
868 case HPC_SLOT_SPEED_33
:
869 cmd
= HPC_BUS_33CONVMODE
;
871 case HPC_SLOT_SPEED_66
:
872 if (SLOT_PCIX(slot_cur
->ext_status
)) {
873 if ((slot_cur
->supported_speed
>= BUS_SPEED_66
) &&
874 (slot_cur
->supported_bus_mode
== BUS_MODE_PCIX
))
875 cmd
= HPC_BUS_66PCIXMODE
;
876 else if (!SLOT_BUS_MODE(slot_cur
->ext_status
))
877 /* if max slot/bus capability is 66 pci
878 and there's no bus mode mismatch, then
879 the adapter supports 66 pci */
880 cmd
= HPC_BUS_66CONVMODE
;
882 cmd
= HPC_BUS_33CONVMODE
;
884 if (slot_cur
->supported_speed
>= BUS_SPEED_66
)
885 cmd
= HPC_BUS_66CONVMODE
;
887 cmd
= HPC_BUS_33CONVMODE
;
890 case HPC_SLOT_SPEED_133
:
891 switch (slot_cur
->supported_speed
) {
893 cmd
= HPC_BUS_33CONVMODE
;
896 if (slot_cur
->supported_bus_mode
== BUS_MODE_PCIX
)
897 cmd
= HPC_BUS_66PCIXMODE
;
899 cmd
= HPC_BUS_66CONVMODE
;
902 cmd
= HPC_BUS_100PCIXMODE
;
905 /* This is to take care of the bug in CIOBX chip */
906 if (pci_dev_present(ciobx
))
907 ibmphp_hpc_writeslot(slot_cur
,
908 HPC_BUS_100PCIXMODE
);
909 cmd
= HPC_BUS_133PCIXMODE
;
912 err("Wrong bus speed\n");
917 err("wrong slot speed\n");
920 debug("setting bus speed for slot %d, cmd %x\n",
921 slot_cur
->number
, cmd
);
922 retval
= ibmphp_hpc_writeslot(slot_cur
, cmd
);
924 err("setting bus speed failed\n");
927 if (CTLR_RESULT(slot_cur
->ctrl
->status
)) {
928 err("command not completed successfully in set_bus\n");
932 /* This is for x440, once Brandon fixes the firmware,
933 will not need this delay */
935 debug("%s -Exit\n", __func__
);
939 /* This routine checks the bus limitations that the slot is on from the BIOS.
940 * This is used in deciding whether or not to power up the slot.
941 * (electrical/spec limitations. For example, >1 133 MHz or >2 66 PCI cards on
944 * Returns: 0 = no limitations, -EINVAL = exceeded limitations on the bus
946 static int check_limitations(struct slot
*slot_cur
)
949 struct slot
*tmp_slot
;
953 for (i
= slot_cur
->bus_on
->slot_min
; i
<= slot_cur
->bus_on
->slot_max
; i
++) {
954 tmp_slot
= ibmphp_get_slot_from_physical_num(i
);
957 if ((SLOT_PWRGD(tmp_slot
->status
)) &&
958 !(SLOT_CONNECT(tmp_slot
->status
)))
961 get_cur_bus_info(&slot_cur
);
962 switch (slot_cur
->bus_on
->current_speed
) {
964 limitation
= slot_cur
->bus_on
->slots_at_33_conv
;
967 if (slot_cur
->bus_on
->current_bus_mode
== BUS_MODE_PCIX
)
968 limitation
= slot_cur
->bus_on
->slots_at_66_pcix
;
970 limitation
= slot_cur
->bus_on
->slots_at_66_conv
;
973 limitation
= slot_cur
->bus_on
->slots_at_100_pcix
;
976 limitation
= slot_cur
->bus_on
->slots_at_133_pcix
;
980 if ((count
+ 1) > limitation
)
985 static inline void print_card_capability(struct slot
*slot_cur
)
987 info("capability of the card is ");
988 if ((slot_cur
->ext_status
& CARD_INFO
) == PCIX133
)
989 info(" 133 MHz PCI-X\n");
990 else if ((slot_cur
->ext_status
& CARD_INFO
) == PCIX66
)
991 info(" 66 MHz PCI-X\n");
992 else if ((slot_cur
->ext_status
& CARD_INFO
) == PCI66
)
993 info(" 66 MHz PCI\n");
995 info(" 33 MHz PCI\n");
999 /* This routine will power on the slot, configure the device(s) and find the
1001 * Parameters: hotplug_slot
1002 * Returns: 0 or failure codes
1004 static int enable_slot(struct hotplug_slot
*hs
)
1007 struct slot
*slot_cur
;
1009 struct pci_func
*tmp_func
;
1011 ibmphp_lock_operations();
1013 debug("ENABLING SLOT........\n");
1014 slot_cur
= hs
->private;
1016 rc
= validate(slot_cur
, ENABLE
);
1018 err("validate function failed\n");
1022 attn_LED_blink(slot_cur
);
1024 rc
= set_bus(slot_cur
);
1026 err("was not able to set the bus\n");
1030 /*-----------------debugging------------------------------*/
1031 get_cur_bus_info(&slot_cur
);
1032 debug("the current bus speed right after set_bus = %x\n",
1033 slot_cur
->bus_on
->current_speed
);
1034 /*----------------------------------------------------------*/
1036 rc
= check_limitations(slot_cur
);
1038 err("Adding this card exceeds the limitations of this bus.\n");
1039 err("(i.e., >1 133MHz cards running on same bus, or >2 66 PCI cards running on same bus.\n");
1040 err("Try hot-adding into another bus\n");
1045 rc
= power_on(slot_cur
);
1048 err("something wrong when powering up... please see below for details\n");
1049 /* need to turn off before on, otherwise, blinking overwrites */
1052 if (slot_update(&slot_cur
)) {
1058 /* Check to see the error of why it failed */
1059 if ((SLOT_POWER(slot_cur
->status
)) &&
1060 !(SLOT_PWRGD(slot_cur
->status
)))
1061 err("power fault occurred trying to power up\n");
1062 else if (SLOT_BUS_SPEED(slot_cur
->status
)) {
1063 err("bus speed mismatch occurred. please check current bus speed and card capability\n");
1064 print_card_capability(slot_cur
);
1065 } else if (SLOT_BUS_MODE(slot_cur
->ext_status
)) {
1066 err("bus mode mismatch occurred. please check current bus mode and card capability\n");
1067 print_card_capability(slot_cur
);
1069 ibmphp_update_slot_info(slot_cur
);
1072 debug("after power_on\n");
1073 /*-----------------------debugging---------------------------*/
1074 get_cur_bus_info(&slot_cur
);
1075 debug("the current bus speed right after power_on = %x\n",
1076 slot_cur
->bus_on
->current_speed
);
1077 /*----------------------------------------------------------*/
1079 rc
= slot_update(&slot_cur
);
1084 if (SLOT_POWER(slot_cur
->status
) && !(SLOT_PWRGD(slot_cur
->status
))) {
1085 err("power fault occurred trying to power up...\n");
1088 if (SLOT_POWER(slot_cur
->status
) && (SLOT_BUS_SPEED(slot_cur
->status
))) {
1089 err("bus speed mismatch occurred. please check current bus speed and card capability\n");
1090 print_card_capability(slot_cur
);
1093 /* Don't think this case will happen after above checks...
1094 * but just in case, for paranoia sake */
1095 if (!(SLOT_POWER(slot_cur
->status
))) {
1096 err("power on failed...\n");
1100 slot_cur
->func
= kzalloc(sizeof(struct pci_func
), GFP_KERNEL
);
1101 if (!slot_cur
->func
) {
1102 /* We cannot do update_slot_info here, since no memory for
1103 * kmalloc n.e.ways, and update_slot_info allocates some */
1104 err("out of system memory\n");
1108 slot_cur
->func
->busno
= slot_cur
->bus
;
1109 slot_cur
->func
->device
= slot_cur
->device
;
1110 for (i
= 0; i
< 4; i
++)
1111 slot_cur
->func
->irq
[i
] = slot_cur
->irq
[i
];
1113 debug("b4 configure_card, slot_cur->bus = %x, slot_cur->device = %x\n",
1114 slot_cur
->bus
, slot_cur
->device
);
1116 if (ibmphp_configure_card(slot_cur
->func
, slot_cur
->number
)) {
1117 err("configure_card was unsuccessful...\n");
1118 /* true because don't need to actually deallocate resources,
1119 * just remove references */
1120 ibmphp_unconfigure_card(&slot_cur
, 1);
1121 debug("after unconfigure_card\n");
1122 slot_cur
->func
= NULL
;
1129 tmp_func
= ibm_slot_find(slot_cur
->bus
, slot_cur
->func
->device
,
1131 if (tmp_func
&& !(tmp_func
->dev
))
1132 ibm_configure_device(tmp_func
);
1136 if (slot_update(&slot_cur
)) {
1140 ibmphp_print_test();
1141 rc
= ibmphp_update_slot_info(slot_cur
);
1143 ibmphp_unlock_operations();
1147 attn_off(slot_cur
); /* need to turn off if was blinking b4 */
1150 rcpr
= slot_update(&slot_cur
);
1155 ibmphp_update_slot_info(slot_cur
);
1159 attn_off(slot_cur
); /* need to turn off if was blinking b4 */
1161 rcpr
= power_off(slot_cur
);
1169 /**************************************************************
1170 * HOT REMOVING ADAPTER CARD *
1171 * INPUT: POINTER TO THE HOTPLUG SLOT STRUCTURE *
1172 * OUTPUT: SUCCESS 0 ; FAILURE: UNCONFIGURE , VALIDATE *
1174 **************************************************************/
1175 static int ibmphp_disable_slot(struct hotplug_slot
*hotplug_slot
)
1177 struct slot
*slot
= hotplug_slot
->private;
1180 ibmphp_lock_operations();
1181 rc
= ibmphp_do_disable_slot(slot
);
1182 ibmphp_unlock_operations();
1186 int ibmphp_do_disable_slot(struct slot
*slot_cur
)
1191 debug("DISABLING SLOT...\n");
1193 if ((slot_cur
== NULL
) || (slot_cur
->ctrl
== NULL
))
1196 flag
= slot_cur
->flag
;
1200 rc
= validate(slot_cur
, DISABLE
);
1201 /* checking if powered off already & valid slot # */
1205 attn_LED_blink(slot_cur
);
1207 if (slot_cur
->func
== NULL
) {
1208 /* We need this for functions that were there on bootup */
1209 slot_cur
->func
= kzalloc(sizeof(struct pci_func
), GFP_KERNEL
);
1210 if (!slot_cur
->func
) {
1211 err("out of system memory\n");
1215 slot_cur
->func
->busno
= slot_cur
->bus
;
1216 slot_cur
->func
->device
= slot_cur
->device
;
1219 ibm_unconfigure_device(slot_cur
->func
);
1222 * If we got here from latch suddenly opening on operating card or
1223 * a power fault, there's no power to the card, so cannot
1224 * read from it to determine what resources it occupied. This operation
1225 * is forbidden anyhow. The best we can do is remove it from kernel
1233 rc
= ibmphp_unconfigure_card(&slot_cur
, 0);
1234 slot_cur
->func
= NULL
;
1235 debug("in disable_slot. after unconfigure_card\n");
1237 err("could not unconfigure card.\n");
1241 rc
= ibmphp_hpc_writeslot(slot_cur
, HPC_SLOT_OFF
);
1246 rc
= slot_update(&slot_cur
);
1250 rc
= ibmphp_update_slot_info(slot_cur
);
1251 ibmphp_print_test();
1256 /* Need to turn off if was blinking b4 */
1259 if (slot_update(&slot_cur
)) {
1264 ibmphp_update_slot_info(slot_cur
);
1268 struct hotplug_slot_ops ibmphp_hotplug_slot_ops
= {
1269 .set_attention_status
= set_attention_status
,
1270 .enable_slot
= enable_slot
,
1271 .disable_slot
= ibmphp_disable_slot
,
1272 .hardware_test
= NULL
,
1273 .get_power_status
= get_power_status
,
1274 .get_attention_status
= get_attention_status
,
1275 .get_latch_status
= get_latch_status
,
1276 .get_adapter_status
= get_adapter_present
,
1277 /* .get_max_adapter_speed = get_max_adapter_speed,
1278 .get_bus_name_status = get_bus_name,
1282 static void ibmphp_unload(void)
1285 debug("after slots\n");
1286 ibmphp_free_resources();
1287 debug("after resources\n");
1288 ibmphp_free_bus_info_queue();
1289 debug("after bus info\n");
1290 ibmphp_free_ebda_hpc_queue();
1291 debug("after ebda hpc\n");
1292 ibmphp_free_ebda_pci_rsrc_queue();
1293 debug("after ebda pci rsrc\n");
1294 kfree(ibmphp_pci_bus
);
1297 static int __init
ibmphp_init(void)
1299 struct pci_bus
*bus
;
1305 info(DRIVER_DESC
" version: " DRIVER_VERSION
"\n");
1307 ibmphp_pci_bus
= kmalloc(sizeof(*ibmphp_pci_bus
), GFP_KERNEL
);
1308 if (!ibmphp_pci_bus
) {
1309 err("out of memory\n");
1314 bus
= pci_find_bus(0, 0);
1316 err("Can't find the root pci bus, can not continue\n");
1320 memcpy(ibmphp_pci_bus
, bus
, sizeof(*ibmphp_pci_bus
));
1322 ibmphp_debug
= debug
;
1324 ibmphp_hpc_initvars();
1326 for (i
= 0; i
< 16; i
++)
1329 rc
= ibmphp_access_ebda();
1332 debug("after ibmphp_access_ebda()\n");
1334 rc
= ibmphp_rsrc_init();
1337 debug("AFTER Resource & EBDA INITIALIZATIONS\n");
1339 max_slots
= get_max_slots();
1341 rc
= ibmphp_register_pci();
1350 ibmphp_print_test();
1351 rc
= ibmphp_hpc_start_poll_thread();
1363 static void __exit
ibmphp_exit(void)
1365 ibmphp_hpc_stop_poll_thread();
1366 debug("after polling\n");
1371 module_init(ibmphp_init
);
1372 module_exit(ibmphp_exit
);