/usr/src/linux-headers-5.15.0-190/arch/powerpc/include/asm
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book3s/-0755rm
nohash/-0755rm
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8xx_immap.h140990644editdlrm
accounting.h9080644editdlrm
agp.h5250644editdlrm
archrandom.h8380644editdlrm
asm-compat.h18820644editdlrm
asm-const.h4680644editdlrm
asm-offsets.h350644editdlrm
asm-prototypes.h51300644editdlrm
async_tx.h9080644editdlrm
atomic.h142670644editdlrm
backlight.h11150644editdlrm
barrier.h39770644editdlrm
bitops.h79130644editdlrm
bootx.h11420644editdlrm
bpf_perf_event.h2330644editdlrm
btext.h10060644editdlrm
bug.h40900644editdlrm
cache.h28880644editdlrm
cacheflush.h38510644editdlrm
cell-pmu.h34960644editdlrm
cell-regs.h97990644editdlrm
checksum.h57230644editdlrm
clocksource.h1850644editdlrm
cmpxchg.h122800644editdlrm
code-patching-asm.h3970644editdlrm
code-patching.h54430644editdlrm
compat.h33040644editdlrm
context_tracking.h2450644editdlrm
copro.h5930644editdlrm
cpm.h250644editdlrm
cpm1.h217110644editdlrm
cpm2.h495980644editdlrm
cpufeature.h9980644editdlrm
cpuidle.h34070644editdlrm
cputable.h232110644editdlrm
cputhreads.h38560644editdlrm
cputime.h30690644editdlrm
cpu_has_feature.h13390644editdlrm
cpu_setup_power.h5070644editdlrm
crashdump-ppc64.h6240644editdlrm
current.h6800644editdlrm
dbdma.h38090644editdlrm
dbell.h40250644editdlrm
dcr-generic.h9300644editdlrm
dcr-mmio.h10260644editdlrm
dcr-native.h38590644editdlrm
dcr-regs.h58460644editdlrm
dcr.h21080644editdlrm
debug.h18860644editdlrm
delay.h32970644editdlrm
device.h10160644editdlrm
disassemble.h21890644editdlrm
dma-direct.h3910644editdlrm
dma.h107250644editdlrm
drmem.h29700644editdlrm
dtl.h15150644editdlrm
dt_cpu_ftrs.h7560644editdlrm
edac.h11050644editdlrm
eeh.h154780644editdlrm
eeh_event.h8260644editdlrm
ehv_pic.h9630644editdlrm
elf.h62830644editdlrm
elfnote.h5270644editdlrm
emergency-restart.h430644editdlrm
emulated_ops.h20720644editdlrm
epapr_hcalls.h168270644editdlrm
exception-64e.h57850644editdlrm
exception-64s.h43500644editdlrm
exec.h2460644editdlrm
extable.h12050644editdlrm
fadump-internal.h43520644editdlrm
fadump.h10950644editdlrm
fb.h4830644editdlrm
feature-fixups.h98280644editdlrm
firmware.h53270644editdlrm
fixmap.h37230644editdlrm
floppy.h51110644editdlrm
fsl_85xx_cache_sram.h8120644editdlrm
fsl_gtm.h12030644editdlrm
fsl_hcalls.h176150644editdlrm
fsl_lbc.h104890644editdlrm
fsl_pamu_stash.h4110644editdlrm
fsl_pm.h11830644editdlrm
fs_pd.h10460644editdlrm
ftrace.h35500644editdlrm
futex.h22460644editdlrm
grackle.h3310644editdlrm
hardirq.h9480644editdlrm
head-64.h55070644editdlrm
heathrow.h25950644editdlrm
highmem.h20790644editdlrm
hmi.h9710644editdlrm
hugetlb.h21860644editdlrm
hvcall.h212500644editdlrm
hvconsole.h7900644editdlrm
hvcserver.h14730644editdlrm
hvsi.h28500644editdlrm
hw_breakpoint.h37350644editdlrm
hw_irq.h112180644editdlrm
hydra.h29480644editdlrm
i8259.h3610644editdlrm
ibmebus.h22040644editdlrm
icswx.h50900644editdlrm
ide.h5860644editdlrm
idle.h23720644editdlrm
imc-pmu.h39830644editdlrm
immap_cpm2.h107490644editdlrm
inst.h36830644editdlrm
interrupt.h183530644editdlrm
io-defs.h31640644editdlrm
io-workarounds.h13130644editdlrm
io.h313870644editdlrm
iommu.h102830644editdlrm
io_event_irq.h17460644editdlrm
ipic.h31410644editdlrm
irq.h13200644editdlrm
irqflags.h17770644editdlrm
irq_work.h2130644editdlrm
isa-bridge.h6540644editdlrm
jump_label.h13510644editdlrm
kasan.h13960644editdlrm
Kbuild2860644editdlrm
kdebug.h2910644editdlrm
kdump.h13990644editdlrm
kexec.h48380644editdlrm
kexec_ranges.h9430644editdlrm
keylargo.h110610644editdlrm
kfence.h6500644editdlrm
kgdb.h21560644editdlrm
kprobes.h28150644editdlrm
kup.h32590644editdlrm
kvm_asm.h49520644editdlrm
kvm_book3s.h172200644editdlrm
kvm_book3s_32.h8160644editdlrm
kvm_book3s_64.h183330644editdlrm
kvm_book3s_asm.h37770644editdlrm
kvm_book3s_uvmem.h27380644editdlrm
kvm_booke.h22330644editdlrm
kvm_booke_hv_asm.h19600644editdlrm
kvm_fpu.h21990644editdlrm
kvm_guest.h5660644editdlrm
kvm_host.h219660644editdlrm
kvm_para.h7520644editdlrm
kvm_ppc.h366990644editdlrm
libata-portmap.h2490644editdlrm
linkage.h5010644editdlrm
livepatch.h11400644editdlrm
local.h32580644editdlrm
lppaca.h50150644editdlrm
lv1call.h185550644editdlrm
machdep.h96300644editdlrm
macio.h39850644editdlrm
mc146818rtc.h7360644editdlrm
mce.h63960644editdlrm
mediabay.h13750644editdlrm
membarrier.h8770644editdlrm
mem_encrypt.h5320644editdlrm
mman.h14710644editdlrm
mmiowb.h3740644editdlrm
mmu.h112440644editdlrm
mmu_context.h96460644editdlrm
mmzone.h10030644editdlrm
module.h22840644editdlrm
module.lds.h950644editdlrm
mpc5xxx.h4390644editdlrm
mpc6xx.h1430644editdlrm
mpc52xx.h111000644editdlrm
mpc52xx_psc.h101250644editdlrm
mpc85xx.h23820644editdlrm
mpc5121.h38630644editdlrm
mpc8260.h7420644editdlrm
mpic.h143090644editdlrm
mpic_msgr.h34410644editdlrm
mpic_timer.h11830644editdlrm
msi_bitmap.h8670644editdlrm
nmi.h5790644editdlrm
nvram.h28340644editdlrm
ohare.h16840644editdlrm
opal-api.h316800644editdlrm
opal.h178430644editdlrm
paca.h87830644editdlrm
page.h103620644editdlrm
page_32.h16260644editdlrm
page_64.h27160644editdlrm
paravirt.h38810644editdlrm
parport.h9560644editdlrm
pasemi_dma.h232730644editdlrm
pci-bridge.h94810644editdlrm
pci.h36050644editdlrm
percpu.h8150644editdlrm
perf_event.h15090644editdlrm
perf_event_fsl_emb.h12520644editdlrm
perf_event_server.h71040644editdlrm
pgalloc.h20670644editdlrm
pgtable-be-types.h26010644editdlrm
pgtable-types.h18950644editdlrm
pgtable.h40470644editdlrm
pkeys.h42790644editdlrm
plpar_wrappers.h101930644editdlrm
pmac_feature.h133960644editdlrm
pmac_low_i2c.h31000644editdlrm
pmac_pfunc.h82370644editdlrm
pmc.h11160644editdlrm
pmi.h11770644editdlrm
pnv-ocxl.h30690644editdlrm
pnv-pci.h24320644editdlrm
powernv.h4540644editdlrm
ppc-opcode.h314190644editdlrm
ppc-pci.h22820644editdlrm
ppc4xx.h3280644editdlrm
ppc_asm.h205300644editdlrm
probes.h15420644editdlrm
processor.h118980644editdlrm
prom.h73240644editdlrm
ps3.h152190644editdlrm
ps3av.h234220644editdlrm
ps3gpu.h19280644editdlrm
ps3stor.h14080644editdlrm
pte-walk.h22810644editdlrm
ptrace.h105080644editdlrm
qspinlock.h20640644editdlrm
qspinlock_paravirt.h2210644editdlrm
reg.h644650644editdlrm
reg_8xx.h28670644editdlrm
reg_a2.h61280644editdlrm
reg_booke.h338820644editdlrm
reg_fsl_emb.h39610644editdlrm
rheap.h25780644editdlrm
rio.h4240644editdlrm
rtas-types.h29390644editdlrm
rtas.h125740644editdlrm
runlatch.h11840644editdlrm
seccomp.h10430644editdlrm
sections.h19820644editdlrm
secure_boot.h4760644editdlrm
security_features.h35090644editdlrm
secvar.h7650644editdlrm
serial.h4730644editdlrm
setjmp.h4000644editdlrm
setup.h24750644editdlrm
set_memory.h11600644editdlrm
sfp-machine.h126760644editdlrm
shmparam.h2060644editdlrm
signal.h3200644editdlrm
simple_spinlock.h66620644editdlrm
simple_spinlock_types.h4810644editdlrm
slice.h11210644editdlrm
smp.h78040644editdlrm
smu.h197890644editdlrm
sparsemem.h8430644editdlrm
spinlock.h4720644editdlrm
spinlock_types.h3820644editdlrm
spu.h239630644editdlrm
spu_csa.h61660644editdlrm
spu_info.h2720644editdlrm
spu_priv1.h51860644editdlrm
sstep.h47300644editdlrm
stackprotector.h7880644editdlrm
stacktrace.h2970644editdlrm
string.h25220644editdlrm
svm.h6520644editdlrm
swab.h1730644editdlrm
swiotlb.h3740644editdlrm
switch_to.h29660644editdlrm
synch.h20670644editdlrm
syscall.h30570644editdlrm
syscalls.h21890644editdlrm
task_size_32.h5440644editdlrm
task_size_64.h23900644editdlrm
tce.h8920644editdlrm
termios.h6530644editdlrm
thread_info.h61660644editdlrm
time.h29970644editdlrm
timex.h4630644editdlrm
tlb.h23080644editdlrm
tlbflush.h2710644editdlrm
tm.h6240644editdlrm
topology.h35360644editdlrm
trace.h46950644editdlrm
trace_clock.h3720644editdlrm
tsi108.h32640644editdlrm
tsi108_irq.h39160644editdlrm
tsi108_pci.h11910644editdlrm
types.h8220644editdlrm
uaccess.h142880644editdlrm
udbg.h20030644editdlrm
uic.h4030644editdlrm
ultravisor-api.h9410644editdlrm
ultravisor.h21010644editdlrm
uninorth.h84100644editdlrm
unistd.h14450644editdlrm
uprobes.h8010644editdlrm
user.h21920644editdlrm
vas.h75800644editdlrm
vdso.h10960644editdlrm
vdso_datapage.h35700644editdlrm
vermagic.h4900644editdlrm
vga.h12730644editdlrm
vio.h47340644editdlrm
vmalloc.h5540644editdlrm
word-at-a-time.h48780644editdlrm
xics.h45390644editdlrm
xive-regs.h50830644editdlrm
xive.h51910644editdlrm
xmon.h7330644editdlrm
xor.h10170644editdlrm
xor_altivec.h6830644editdlrm
Edit: /usr/src/linux-headers-5.15.0-190/arch/powerpc/include/asm/eeh.h (15478B)
/* SPDX-License-Identifier: GPL-2.0-or-later */ /* * Copyright (C) 2001 Dave Engebretsen & Todd Inglett IBM Corporation. * Copyright 2001-2012 IBM Corporation. */ #ifndef _POWERPC_EEH_H #define _POWERPC_EEH_H #ifdef __KERNEL__ #include #include #include #include #include #include struct pci_dev; struct pci_bus; struct pci_dn; #ifdef CONFIG_EEH /* EEH subsystem flags */ #define EEH_ENABLED 0x01 /* EEH enabled */ #define EEH_FORCE_DISABLED 0x02 /* EEH disabled */ #define EEH_PROBE_MODE_DEV 0x04 /* From PCI device */ #define EEH_PROBE_MODE_DEVTREE 0x08 /* From device tree */ #define EEH_ENABLE_IO_FOR_LOG 0x20 /* Enable IO for log */ #define EEH_EARLY_DUMP_LOG 0x40 /* Dump log immediately */ /* * Delay for PE reset, all in ms * * PCI specification has reset hold time of 100 milliseconds. * We have 250 milliseconds here. The PCI bus settlement time * is specified as 1.5 seconds and we have 1.8 seconds. */ #define EEH_PE_RST_HOLD_TIME 250 #define EEH_PE_RST_SETTLE_TIME 1800 /* * The struct is used to trace PE related EEH functionality. * In theory, there will have one instance of the struct to * be created against particular PE. In nature, PEs correlate * to each other. the struct has to reflect that hierarchy in * order to easily pick up those affected PEs when one particular * PE has EEH errors. * * Also, one particular PE might be composed of PCI device, PCI * bus and its subordinate components. The struct also need ship * the information. Further more, one particular PE is only meaingful * in the corresponding PHB. Therefore, the root PEs should be created * against existing PHBs in on-to-one fashion. */ #define EEH_PE_INVALID (1 << 0) /* Invalid */ #define EEH_PE_PHB (1 << 1) /* PHB PE */ #define EEH_PE_DEVICE (1 << 2) /* Device PE */ #define EEH_PE_BUS (1 << 3) /* Bus PE */ #define EEH_PE_VF (1 << 4) /* VF PE */ #define EEH_PE_ISOLATED (1 << 0) /* Isolated PE */ #define EEH_PE_RECOVERING (1 << 1) /* Recovering PE */ #define EEH_PE_CFG_BLOCKED (1 << 2) /* Block config access */ #define EEH_PE_RESET (1 << 3) /* PE reset in progress */ #define EEH_PE_KEEP (1 << 8) /* Keep PE on hotplug */ #define EEH_PE_CFG_RESTRICTED (1 << 9) /* Block config on error */ #define EEH_PE_REMOVED (1 << 10) /* Removed permanently */ #define EEH_PE_PRI_BUS (1 << 11) /* Cached primary bus */ struct eeh_pe { int type; /* PE type: PHB/Bus/Device */ int state; /* PE EEH dependent mode */ int addr; /* PE configuration address */ struct pci_controller *phb; /* Associated PHB */ struct pci_bus *bus; /* Top PCI bus for bus PE */ int check_count; /* Times of ignored error */ int freeze_count; /* Times of froze up */ time64_t tstamp; /* Time on first-time freeze */ int false_positives; /* Times of reported #ff's */ atomic_t pass_dev_cnt; /* Count of passed through devs */ struct eeh_pe *parent; /* Parent PE */ void *data; /* PE auxillary data */ struct list_head child_list; /* List of PEs below this PE */ struct list_head child; /* Memb. child_list/eeh_phb_pe */ struct list_head edevs; /* List of eeh_dev in this PE */ #ifdef CONFIG_STACKTRACE /* * Saved stack trace. When we find a PE freeze in eeh_dev_check_failure * the stack trace is saved here so we can print it in the recovery * thread if it turns out to due to a real problem rather than * a hot-remove. * * A max of 64 entries might be overkill, but it also might not be. */ unsigned long stack_trace[64]; int trace_entries; #endif /* CONFIG_STACKTRACE */ }; #define eeh_pe_for_each_dev(pe, edev, tmp) \ list_for_each_entry_safe(edev, tmp, &pe->edevs, entry) #define eeh_for_each_pe(root, pe) \ for (pe = root; pe; pe = eeh_pe_next(pe, root)) static inline bool eeh_pe_passed(struct eeh_pe *pe) { return pe ? !!atomic_read(&pe->pass_dev_cnt) : false; } /* * The struct is used to trace EEH state for the associated * PCI device node or PCI device. In future, it might * represent PE as well so that the EEH device to form * another tree except the currently existing tree of PCI * buses and PCI devices */ #define EEH_DEV_BRIDGE (1 << 0) /* PCI bridge */ #define EEH_DEV_ROOT_PORT (1 << 1) /* PCIe root port */ #define EEH_DEV_DS_PORT (1 << 2) /* Downstream port */ #define EEH_DEV_IRQ_DISABLED (1 << 3) /* Interrupt disabled */ #define EEH_DEV_DISCONNECTED (1 << 4) /* Removing from PE */ #define EEH_DEV_NO_HANDLER (1 << 8) /* No error handler */ #define EEH_DEV_SYSFS (1 << 9) /* Sysfs created */ #define EEH_DEV_REMOVED (1 << 10) /* Removed permanently */ struct eeh_dev { int mode; /* EEH mode */ int bdfn; /* bdfn of device (for cfg ops) */ struct pci_controller *controller; int pe_config_addr; /* PE config address */ u32 config_space[16]; /* Saved PCI config space */ int pcix_cap; /* Saved PCIx capability */ int pcie_cap; /* Saved PCIe capability */ int aer_cap; /* Saved AER capability */ int af_cap; /* Saved AF capability */ struct eeh_pe *pe; /* Associated PE */ struct list_head entry; /* Membership in eeh_pe.edevs */ struct list_head rmv_entry; /* Membership in rmv_list */ struct pci_dn *pdn; /* Associated PCI device node */ struct pci_dev *pdev; /* Associated PCI device */ bool in_error; /* Error flag for edev */ /* VF specific properties */ struct pci_dev *physfn; /* Associated SRIOV PF */ int vf_index; /* Index of this VF */ }; /* "fmt" must be a simple literal string */ #define EEH_EDEV_PRINT(level, edev, fmt, ...) \ pr_##level("PCI %04x:%02x:%02x.%x#%04x: EEH: " fmt, \ (edev)->controller->global_number, PCI_BUSNO((edev)->bdfn), \ PCI_SLOT((edev)->bdfn), PCI_FUNC((edev)->bdfn), \ ((edev)->pe ? (edev)->pe_config_addr : 0xffff), ##__VA_ARGS__) #define eeh_edev_dbg(edev, fmt, ...) EEH_EDEV_PRINT(debug, (edev), fmt, ##__VA_ARGS__) #define eeh_edev_info(edev, fmt, ...) EEH_EDEV_PRINT(info, (edev), fmt, ##__VA_ARGS__) #define eeh_edev_warn(edev, fmt, ...) EEH_EDEV_PRINT(warn, (edev), fmt, ##__VA_ARGS__) #define eeh_edev_err(edev, fmt, ...) EEH_EDEV_PRINT(err, (edev), fmt, ##__VA_ARGS__) static inline struct pci_dn *eeh_dev_to_pdn(struct eeh_dev *edev) { return edev ? edev->pdn : NULL; } static inline struct pci_dev *eeh_dev_to_pci_dev(struct eeh_dev *edev) { return edev ? edev->pdev : NULL; } static inline struct eeh_pe *eeh_dev_to_pe(struct eeh_dev* edev) { return edev ? edev->pe : NULL; } /* Return values from eeh_ops::next_error */ enum { EEH_NEXT_ERR_NONE = 0, EEH_NEXT_ERR_INF, EEH_NEXT_ERR_FROZEN_PE, EEH_NEXT_ERR_FENCED_PHB, EEH_NEXT_ERR_DEAD_PHB, EEH_NEXT_ERR_DEAD_IOC }; /* * The struct is used to trace the registered EEH operation * callback functions. Actually, those operation callback * functions are heavily platform dependent. That means the * platform should register its own EEH operation callback * functions before any EEH further operations. */ #define EEH_OPT_DISABLE 0 /* EEH disable */ #define EEH_OPT_ENABLE 1 /* EEH enable */ #define EEH_OPT_THAW_MMIO 2 /* MMIO enable */ #define EEH_OPT_THAW_DMA 3 /* DMA enable */ #define EEH_OPT_FREEZE_PE 4 /* Freeze PE */ #define EEH_STATE_UNAVAILABLE (1 << 0) /* State unavailable */ #define EEH_STATE_NOT_SUPPORT (1 << 1) /* EEH not supported */ #define EEH_STATE_RESET_ACTIVE (1 << 2) /* Active reset */ #define EEH_STATE_MMIO_ACTIVE (1 << 3) /* Active MMIO */ #define EEH_STATE_DMA_ACTIVE (1 << 4) /* Active DMA */ #define EEH_STATE_MMIO_ENABLED (1 << 5) /* MMIO enabled */ #define EEH_STATE_DMA_ENABLED (1 << 6) /* DMA enabled */ #define EEH_RESET_DEACTIVATE 0 /* Deactivate the PE reset */ #define EEH_RESET_HOT 1 /* Hot reset */ #define EEH_RESET_FUNDAMENTAL 3 /* Fundamental reset */ #define EEH_LOG_TEMP 1 /* EEH temporary error log */ #define EEH_LOG_PERM 2 /* EEH permanent error log */ struct eeh_ops { char *name; struct eeh_dev *(*probe)(struct pci_dev *pdev); int (*set_option)(struct eeh_pe *pe, int option); int (*get_state)(struct eeh_pe *pe, int *delay); int (*reset)(struct eeh_pe *pe, int option); int (*get_log)(struct eeh_pe *pe, int severity, char *drv_log, unsigned long len); int (*configure_bridge)(struct eeh_pe *pe); int (*err_inject)(struct eeh_pe *pe, int type, int func, unsigned long addr, unsigned long mask); int (*read_config)(struct eeh_dev *edev, int where, int size, u32 *val); int (*write_config)(struct eeh_dev *edev, int where, int size, u32 val); int (*next_error)(struct eeh_pe **pe); int (*restore_config)(struct eeh_dev *edev); int (*notify_resume)(struct eeh_dev *edev); }; extern int eeh_subsystem_flags; extern u32 eeh_max_freezes; extern bool eeh_debugfs_no_recover; extern struct eeh_ops *eeh_ops; extern raw_spinlock_t confirm_error_lock; static inline void eeh_add_flag(int flag) { eeh_subsystem_flags |= flag; } static inline void eeh_clear_flag(int flag) { eeh_subsystem_flags &= ~flag; } static inline bool eeh_has_flag(int flag) { return !!(eeh_subsystem_flags & flag); } static inline bool eeh_enabled(void) { return eeh_has_flag(EEH_ENABLED) && !eeh_has_flag(EEH_FORCE_DISABLED); } static inline void eeh_serialize_lock(unsigned long *flags) { raw_spin_lock_irqsave(&confirm_error_lock, *flags); } static inline void eeh_serialize_unlock(unsigned long flags) { raw_spin_unlock_irqrestore(&confirm_error_lock, flags); } static inline bool eeh_state_active(int state) { return (state & (EEH_STATE_MMIO_ACTIVE | EEH_STATE_DMA_ACTIVE)) == (EEH_STATE_MMIO_ACTIVE | EEH_STATE_DMA_ACTIVE); } typedef void (*eeh_edev_traverse_func)(struct eeh_dev *edev, void *flag); typedef void *(*eeh_pe_traverse_func)(struct eeh_pe *pe, void *flag); void eeh_set_pe_aux_size(int size); int eeh_phb_pe_create(struct pci_controller *phb); int eeh_wait_state(struct eeh_pe *pe, int max_wait); struct eeh_pe *eeh_phb_pe_get(struct pci_controller *phb); struct eeh_pe *eeh_pe_next(struct eeh_pe *pe, struct eeh_pe *root); struct eeh_pe *eeh_pe_get(struct pci_controller *phb, int pe_no); int eeh_pe_tree_insert(struct eeh_dev *edev, struct eeh_pe *new_pe_parent); int eeh_pe_tree_remove(struct eeh_dev *edev); void eeh_pe_update_time_stamp(struct eeh_pe *pe); void *eeh_pe_traverse(struct eeh_pe *root, eeh_pe_traverse_func fn, void *flag); void eeh_pe_dev_traverse(struct eeh_pe *root, eeh_edev_traverse_func fn, void *flag); void eeh_pe_restore_bars(struct eeh_pe *pe); const char *eeh_pe_loc_get(struct eeh_pe *pe); struct pci_bus *eeh_pe_bus_get(struct eeh_pe *pe); const char *eeh_pe_loc_get_bus(struct pci_bus *bus); struct pci_bus *eeh_pe_bus_get_nolock(struct eeh_pe *pe); void eeh_show_enabled(void); int __init eeh_init(struct eeh_ops *ops); int eeh_check_failure(const volatile void __iomem *token); int eeh_dev_check_failure(struct eeh_dev *edev); void eeh_addr_cache_init(void); void eeh_probe_device(struct pci_dev *pdev); void eeh_remove_device(struct pci_dev *); int eeh_unfreeze_pe(struct eeh_pe *pe); int eeh_pe_reset_and_recover(struct eeh_pe *pe); int eeh_dev_open(struct pci_dev *pdev); void eeh_dev_release(struct pci_dev *pdev); struct eeh_pe *eeh_iommu_group_to_pe(struct iommu_group *group); int eeh_pe_set_option(struct eeh_pe *pe, int option); int eeh_pe_get_state(struct eeh_pe *pe); int eeh_pe_reset(struct eeh_pe *pe, int option, bool include_passed); int eeh_pe_configure(struct eeh_pe *pe); int eeh_pe_inject_err(struct eeh_pe *pe, int type, int func, unsigned long addr, unsigned long mask); /** * EEH_POSSIBLE_ERROR() -- test for possible MMIO failure. * * If this macro yields TRUE, the caller relays to eeh_check_failure() * which does further tests out of line. */ #define EEH_POSSIBLE_ERROR(val, type) ((val) == (type)~0 && eeh_enabled()) /* * Reads from a device which has been isolated by EEH will return * all 1s. This macro gives an all-1s value of the given size (in * bytes: 1, 2, or 4) for comparing with the result of a read. */ #define EEH_IO_ERROR_VALUE(size) (~0U >> ((4 - (size)) * 8)) #else /* !CONFIG_EEH */ static inline bool eeh_enabled(void) { return false; } static inline void eeh_show_enabled(void) { } static inline void eeh_dev_phb_init_dynamic(struct pci_controller *phb) { } static inline int eeh_check_failure(const volatile void __iomem *token) { return 0; } #define eeh_dev_check_failure(x) (0) static inline void eeh_addr_cache_init(void) { } static inline void eeh_probe_device(struct pci_dev *dev) { } static inline void eeh_remove_device(struct pci_dev *dev) { } #define EEH_POSSIBLE_ERROR(val, type) (0) #define EEH_IO_ERROR_VALUE(size) (-1UL) static inline int eeh_phb_pe_create(struct pci_controller *phb) { return 0; } #endif /* CONFIG_EEH */ #if defined(CONFIG_PPC_PSERIES) && defined(CONFIG_EEH) void pseries_eeh_init_edev(struct pci_dn *pdn); void pseries_eeh_init_edev_recursive(struct pci_dn *pdn); #else static inline void pseries_eeh_add_device_early(struct pci_dn *pdn) { } static inline void pseries_eeh_add_device_tree_early(struct pci_dn *pdn) { } #endif #ifdef CONFIG_PPC64 /* * MMIO read/write operations with EEH support. */ static inline u8 eeh_readb(const volatile void __iomem *addr) { u8 val = in_8(addr); if (EEH_POSSIBLE_ERROR(val, u8)) eeh_check_failure(addr); return val; } static inline u16 eeh_readw(const volatile void __iomem *addr) { u16 val = in_le16(addr); if (EEH_POSSIBLE_ERROR(val, u16)) eeh_check_failure(addr); return val; } static inline u32 eeh_readl(const volatile void __iomem *addr) { u32 val = in_le32(addr); if (EEH_POSSIBLE_ERROR(val, u32)) eeh_check_failure(addr); return val; } static inline u64 eeh_readq(const volatile void __iomem *addr) { u64 val = in_le64(addr); if (EEH_POSSIBLE_ERROR(val, u64)) eeh_check_failure(addr); return val; } static inline u16 eeh_readw_be(const volatile void __iomem *addr) { u16 val = in_be16(addr); if (EEH_POSSIBLE_ERROR(val, u16)) eeh_check_failure(addr); return val; } static inline u32 eeh_readl_be(const volatile void __iomem *addr) { u32 val = in_be32(addr); if (EEH_POSSIBLE_ERROR(val, u32)) eeh_check_failure(addr); return val; } static inline u64 eeh_readq_be(const volatile void __iomem *addr) { u64 val = in_be64(addr); if (EEH_POSSIBLE_ERROR(val, u64)) eeh_check_failure(addr); return val; } static inline void eeh_memcpy_fromio(void *dest, const volatile void __iomem *src, unsigned long n) { _memcpy_fromio(dest, src, n); /* Look for ffff's here at dest[n]. Assume that at least 4 bytes * were copied. Check all four bytes. */ if (n >= 4 && EEH_POSSIBLE_ERROR(*((u32 *)(dest + n - 4)), u32)) eeh_check_failure(src); } /* in-string eeh macros */ static inline void eeh_readsb(const volatile void __iomem *addr, void * buf, int ns) { _insb(addr, buf, ns); if (EEH_POSSIBLE_ERROR((*(((u8*)buf)+ns-1)), u8)) eeh_check_failure(addr); } static inline void eeh_readsw(const volatile void __iomem *addr, void * buf, int ns) { _insw(addr, buf, ns); if (EEH_POSSIBLE_ERROR((*(((u16*)buf)+ns-1)), u16)) eeh_check_failure(addr); } static inline void eeh_readsl(const volatile void __iomem *addr, void * buf, int nl) { _insl(addr, buf, nl); if (EEH_POSSIBLE_ERROR((*(((u32*)buf)+nl-1)), u32)) eeh_check_failure(addr); } void eeh_cache_debugfs_init(void); #endif /* CONFIG_PPC64 */ #endif /* __KERNEL__ */ #endif /* _POWERPC_EEH_H */