X-Git-Url: http://git.onelab.eu/?a=blobdiff_plain;f=arch%2Fpowerpc%2Fplatforms%2Fpseries%2Feeh.c;h=da6e5362e7cd8f13f802729e957538cc491e41b3;hb=97bf2856c6014879bd04983a3e9dfcdac1e7fe85;hp=2ab9dcdfb41579704c55d8c1a4ddc918e832d6ee;hpb=76828883507a47dae78837ab5dec5a5b4513c667;p=linux-2.6.git diff --git a/arch/powerpc/platforms/pseries/eeh.c b/arch/powerpc/platforms/pseries/eeh.c index 2ab9dcdfb..da6e5362e 100644 --- a/arch/powerpc/platforms/pseries/eeh.c +++ b/arch/powerpc/platforms/pseries/eeh.c @@ -225,6 +225,7 @@ static void __eeh_mark_slot (struct device_node *dn, int mode_flag) void eeh_mark_slot (struct device_node *dn, int mode_flag) { + struct pci_dev *dev; dn = find_device_pe (dn); /* Back up one, since config addrs might be shared */ @@ -232,6 +233,12 @@ void eeh_mark_slot (struct device_node *dn, int mode_flag) dn = dn->parent; PCI_DN(dn)->eeh_mode |= mode_flag; + + /* Mark the pci device too */ + dev = PCI_DN(dn)->pcidev; + if (dev) + dev->error_state = pci_channel_io_frozen; + __eeh_mark_slot (dn->child, mode_flag); } @@ -330,6 +337,7 @@ int eeh_dn_check_failure(struct device_node *dn, struct pci_dev *dev) printk (KERN_ERR "EEH: Device driver ignored %d bad reads, panicing\n", pdn->eeh_check_count); dump_stack(); + msleep(5000); /* re-read the slot reset state */ if (read_slot_reset_state(pdn, rets) != 0) @@ -449,7 +457,11 @@ EXPORT_SYMBOL(eeh_check_failure); /* ------------------------------------------------------------- */ /* The code below deals with error recovery */ -/** Return negative value if a permanent error, else return +/** + * eeh_slot_availability - returns error status of slot + * @pdn pci device node + * + * Return negative value if a permanent error, else return * a number of milliseconds to wait until the PCI slot is * ready to be used. */ @@ -474,11 +486,42 @@ eeh_slot_availability(struct pci_dn *pdn) printk (KERN_ERR "EEH: Slot unavailable: rc=%d, rets=%d %d %d\n", rc, rets[0], rets[1], rets[2]); - return -1; + return -2; +} + +/** + * rtas_pci_enable - enable MMIO or DMA transfers for this slot + * @pdn pci device node + */ + +int +rtas_pci_enable(struct pci_dn *pdn, int function) +{ + int config_addr; + int rc; + + /* Use PE configuration address, if present */ + config_addr = pdn->eeh_config_addr; + if (pdn->eeh_pe_config_addr) + config_addr = pdn->eeh_pe_config_addr; + + rc = rtas_call(ibm_set_eeh_option, 4, 1, NULL, + config_addr, + BUID_HI(pdn->phb->buid), + BUID_LO(pdn->phb->buid), + function); + + if (rc) + printk(KERN_WARNING "EEH: Cannot enable function %d, err=%d dn=%s\n", + function, rc, pdn->node->full_name); + + return rc; } -/** rtas_pci_slot_reset raises/lowers the pci #RST line - * state: 1/0 to raise/lower the #RST +/** + * rtas_pci_slot_reset - raises/lowers the pci #RST line + * @pdn pci device node + * @state: 1/0 to raise/lower the #RST * * Clear the EEH-frozen condition on a slot. This routine * asserts the PCI #RST line if the 'state' argument is '1', @@ -511,24 +554,21 @@ rtas_pci_slot_reset(struct pci_dn *pdn, int state) BUID_HI(pdn->phb->buid), BUID_LO(pdn->phb->buid), state); - if (rc) { - printk (KERN_WARNING "EEH: Unable to reset the failed slot, (%d) #RST=%d dn=%s\n", + if (rc) + printk (KERN_WARNING "EEH: Unable to reset the failed slot," + " (%d) #RST=%d dn=%s\n", rc, state, pdn->node->full_name); - return; - } } -/** rtas_set_slot_reset -- assert the pci #RST line for 1/4 second - * dn -- device node to be reset. +/** + * rtas_set_slot_reset -- assert the pci #RST line for 1/4 second + * @pdn: pci device node to be reset. * * Return 0 if success, else a non-zero value. */ -int -rtas_set_slot_reset(struct pci_dn *pdn) +static void __rtas_set_slot_reset(struct pci_dn *pdn) { - int i, rc; - rtas_pci_slot_reset (pdn, 1); /* The PCI bus requires that the reset be held high for at least @@ -549,17 +589,33 @@ rtas_set_slot_reset(struct pci_dn *pdn) * up traffic. */ #define PCI_BUS_SETTLE_TIME_MSEC 1800 msleep (PCI_BUS_SETTLE_TIME_MSEC); +} + +int rtas_set_slot_reset(struct pci_dn *pdn) +{ + int i, rc; + + __rtas_set_slot_reset(pdn); /* Now double check with the firmware to make sure the device is * ready to be used; if not, wait for recovery. */ for (i=0; i<10; i++) { rc = eeh_slot_availability (pdn); - if (rc < 0) - printk (KERN_ERR "EEH: failed (%d) to reset slot %s\n", rc, pdn->node->full_name); if (rc == 0) return 0; - if (rc < 0) + + if (rc == -2) { + printk (KERN_ERR "EEH: failed (%d) to reset slot %s\n", + i, pdn->node->full_name); + __rtas_set_slot_reset(pdn); + continue; + } + + if (rc < 0) { + printk (KERN_ERR "EEH: unrecoverable slot failure %s\n", + pdn->node->full_name); return -1; + } msleep (rc+100); } @@ -582,6 +638,8 @@ rtas_set_slot_reset(struct pci_dn *pdn) /** * __restore_bars - Restore the Base Address Registers + * @pdn: pci device node + * * Loads the PCI configuration space base address registers, * the expansion ROM base address, the latency timer, and etc. * from the saved values in the device node. @@ -691,11 +749,11 @@ static void *early_enable_eeh(struct device_node *dn, void *data) { struct eeh_early_enable_info *info = data; int ret; - char *status = get_property(dn, "status", NULL); - u32 *class_code = (u32 *)get_property(dn, "class-code", NULL); - u32 *vendor_id = (u32 *)get_property(dn, "vendor-id", NULL); - u32 *device_id = (u32 *)get_property(dn, "device-id", NULL); - u32 *regs; + const char *status = get_property(dn, "status", NULL); + const u32 *class_code = get_property(dn, "class-code", NULL); + const u32 *vendor_id = get_property(dn, "vendor-id", NULL); + const u32 *device_id = get_property(dn, "device-id", NULL); + const u32 *regs; int enable; struct pci_dn *pdn = PCI_DN(dn); @@ -737,7 +795,7 @@ static void *early_enable_eeh(struct device_node *dn, void *data) /* Ok... see if this device supports EEH. Some do, some don't, * and the only way to find out is to check each and every one. */ - regs = (u32 *)get_property(dn, "reg", NULL); + regs = get_property(dn, "reg", NULL); if (regs) { /* First register entry is addr (00BBSS00) */ /* Try to enable eeh */ @@ -865,7 +923,7 @@ void __init eeh_init(void) * on the CEC architecture, type of the device, on earlier boot * command-line arguments & etc. */ -void eeh_add_device_early(struct device_node *dn) +static void eeh_add_device_early(struct device_node *dn) { struct pci_controller *phb; struct eeh_early_enable_info info; @@ -882,7 +940,6 @@ void eeh_add_device_early(struct device_node *dn) info.buid_lo = BUID_LO(phb->buid); early_enable_eeh(dn, &info); } -EXPORT_SYMBOL_GPL(eeh_add_device_early); void eeh_add_device_tree_early(struct device_node *dn) { @@ -893,20 +950,6 @@ void eeh_add_device_tree_early(struct device_node *dn) } EXPORT_SYMBOL_GPL(eeh_add_device_tree_early); -void eeh_add_device_tree_late(struct pci_bus *bus) -{ - struct pci_dev *dev; - - list_for_each_entry(dev, &bus->devices, bus_list) { - eeh_add_device_late(dev); - if (dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) { - struct pci_bus *subbus = dev->subordinate; - if (subbus) - eeh_add_device_tree_late(subbus); - } - } -} - /** * eeh_add_device_late - perform EEH initialization for the indicated pci device * @dev: pci device for which to set up EEH @@ -914,7 +957,7 @@ void eeh_add_device_tree_late(struct pci_bus *bus) * This routine must be used to complete EEH initialization for PCI * devices that were added after system boot (e.g. hotplug, dlpar). */ -void eeh_add_device_late(struct pci_dev *dev) +static void eeh_add_device_late(struct pci_dev *dev) { struct device_node *dn; struct pci_dn *pdn; @@ -933,16 +976,33 @@ void eeh_add_device_late(struct pci_dev *dev) pci_addr_cache_insert_device (dev); } -EXPORT_SYMBOL_GPL(eeh_add_device_late); + +void eeh_add_device_tree_late(struct pci_bus *bus) +{ + struct pci_dev *dev; + + list_for_each_entry(dev, &bus->devices, bus_list) { + eeh_add_device_late(dev); + if (dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) { + struct pci_bus *subbus = dev->subordinate; + if (subbus) + eeh_add_device_tree_late(subbus); + } + } +} +EXPORT_SYMBOL_GPL(eeh_add_device_tree_late); /** * eeh_remove_device - undo EEH setup for the indicated pci device * @dev: pci device to be removed * - * This routine should be when a device is removed from a running - * system (e.g. by hotplug or dlpar). + * This routine should be called when a device is removed from + * a running system (e.g. by hotplug or dlpar). It unregisters + * the PCI device from the EEH subsystem. I/O errors affecting + * this device will no longer be detected after this call; thus, + * i/o errors affecting this slot may leave this device unusable. */ -void eeh_remove_device(struct pci_dev *dev) +static void eeh_remove_device(struct pci_dev *dev) { struct device_node *dn; if (!dev || !eeh_subsystem_enabled) @@ -955,24 +1015,22 @@ void eeh_remove_device(struct pci_dev *dev) pci_addr_cache_remove_device(dev); dn = pci_device_to_OF_node(dev); - PCI_DN(dn)->pcidev = NULL; - pci_dev_put (dev); + if (PCI_DN(dn)->pcidev) { + PCI_DN(dn)->pcidev = NULL; + pci_dev_put (dev); + } } -EXPORT_SYMBOL_GPL(eeh_remove_device); void eeh_remove_bus_device(struct pci_dev *dev) { + struct pci_bus *bus = dev->subordinate; + struct pci_dev *child, *tmp; + eeh_remove_device(dev); - if (dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) { - struct pci_bus *bus = dev->subordinate; - struct list_head *ln; - if (!bus) - return; - for (ln = bus->devices.next; ln != &bus->devices; ln = ln->next) { - struct pci_dev *pdev = pci_dev_b(ln); - if (pdev) - eeh_remove_bus_device(pdev); - } + + if (bus && dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) { + list_for_each_entry_safe(child, tmp, &bus->devices, bus_list) + eeh_remove_bus_device(child); } } EXPORT_SYMBOL_GPL(eeh_remove_bus_device); @@ -1018,7 +1076,7 @@ static int __init eeh_init_proc(void) { struct proc_dir_entry *e; - if (platform_is_pseries()) { + if (machine_is(pseries)) { e = create_proc_entry("ppc64/eeh", 0, NULL); if (e) e->proc_fops = &proc_eeh_operations;