/usr/src/linux-headers-5.15.0-181/arch/ia64/include/asm
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acenv.h11530644editdlrm
acpi-ext.h4440644editdlrm
acpi.h27720644editdlrm
agp.h8630644editdlrm
asm-offsets.h350644editdlrm
asm-prototypes.h8920644editdlrm
asmmacro.h33720644editdlrm
atomic.h63900644editdlrm
barrier.h24140644editdlrm
bitops.h111120644editdlrm
bug.h4040644editdlrm
cache.h7520644editdlrm
cacheflush.h9030644editdlrm
checksum.h17460644editdlrm
clocksource.h2760644editdlrm
cmpxchg.h4790644editdlrm
cpu.h4560644editdlrm
cputime.h6480644editdlrm
current.h4180644editdlrm
cyclone.h4420644editdlrm
delay.h17380644editdlrm
device.h2360644editdlrm
div64.h310644editdlrm
dma-mapping.h3820644editdlrm
dma.h3510644editdlrm
dmi.h3430644editdlrm
early_ioremap.h4280644editdlrm
efi.h3740644editdlrm
elf.h100250644editdlrm
emergency-restart.h1490644editdlrm
esi.h8870644editdlrm
exception.h6090644editdlrm
export.h1150644editdlrm
extable.h3300644editdlrm
fb.h5690644editdlrm
fpswa.h19250644editdlrm
ftrace.h7480644editdlrm
futex.h26160644editdlrm
gcc_intrin.h3680644editdlrm
hardirq.h5610644editdlrm
hugetlb.h9330644editdlrm
hw_irq.h57760644editdlrm
idle.h2000644editdlrm
intrinsics.h3060644editdlrm
io.h75270644editdlrm
iommu.h5050644editdlrm
iommu_table.h1750644editdlrm
iosapic.h27520644editdlrm
irq.h9600644editdlrm
irqflags.h20960644editdlrm
irq_regs.h340644editdlrm
irq_remapping.h1420644editdlrm
Kbuild1390644editdlrm
kdebug.h10110644editdlrm
kexec.h16060644editdlrm
kprobes.h31480644editdlrm
kregs.h68900644editdlrm
libata-portmap.h2250644editdlrm
linkage.h3980644editdlrm
local.h310644editdlrm
mca.h60090644editdlrm
mca_asm.h73560644editdlrm
meminit.h17510644editdlrm
mman.h4320644editdlrm
mmiowb.h4330644editdlrm
mmu.h3740644editdlrm
mmu_context.h53040644editdlrm
mmzone.h8690644editdlrm
module.h11540644editdlrm
module.lds.h3940644editdlrm
msidef.h14380644editdlrm
nodedata.h18980644editdlrm
numa.h23380644editdlrm
page.h58560644editdlrm
pal.h546740644editdlrm
param.h4390644editdlrm
parport.h5340644editdlrm
patch.h12140644editdlrm
pci.h20070644editdlrm
percpu.h13540644editdlrm
pgalloc.h15690644editdlrm
pgtable.h198460644editdlrm
processor.h178760644editdlrm
ptrace.h52580644editdlrm
sal.h271890644editdlrm
sections.h16790644editdlrm
serial.h4460644editdlrm
shmparam.h4450644editdlrm
signal.h7490644editdlrm
smp.h25140644editdlrm
sparsemem.h7850644editdlrm
spinlock.h71490644editdlrm
spinlock_types.h4750644editdlrm
string.h6590644editdlrm
switch_to.h27020644editdlrm
syscall.h18200644editdlrm
termios.h19230644editdlrm
thread_info.h49060644editdlrm
timex.h15020644editdlrm
tlb.h15770644editdlrm
tlbflush.h31650644editdlrm
topology.h14080644editdlrm
types.h8280644editdlrm
uaccess.h97300644editdlrm
uncached.h3140644editdlrm
unistd.h9870644editdlrm
unwind.h58730644editdlrm
user.h22990644editdlrm
ustack.h4030644editdlrm
vermagic.h3410644editdlrm
vga.h6490644editdlrm
vmalloc.h900644editdlrm
xor.h7430644editdlrm
xtp.h9380644editdlrm
Edit: /usr/src/linux-headers-5.15.0-181/arch/ia64/include/asm/mca_asm.h (7356B)
/* SPDX-License-Identifier: GPL-2.0 */ /* * File: mca_asm.h * Purpose: Machine check handling specific defines * * Copyright (C) 1999 Silicon Graphics, Inc. * Copyright (C) Vijay Chander * Copyright (C) Srinivasa Thirumalachar * Copyright (C) 2000 Hewlett-Packard Co. * Copyright (C) 2000 David Mosberger-Tang * Copyright (C) 2002 Intel Corp. * Copyright (C) 2002 Jenna Hall * Copyright (C) 2005 Silicon Graphics, Inc * Copyright (C) 2005 Keith Owens */ #ifndef _ASM_IA64_MCA_ASM_H #define _ASM_IA64_MCA_ASM_H #include #define PSR_IC 13 #define PSR_I 14 #define PSR_DT 17 #define PSR_RT 27 #define PSR_MC 35 #define PSR_IT 36 #define PSR_BN 44 /* * This macro converts a instruction virtual address to a physical address * Right now for simulation purposes the virtual addresses are * direct mapped to physical addresses. * 1. Lop off bits 61 thru 63 in the virtual address */ #define INST_VA_TO_PA(addr) \ dep addr = 0, addr, 61, 3 /* * This macro converts a data virtual address to a physical address * Right now for simulation purposes the virtual addresses are * direct mapped to physical addresses. * 1. Lop off bits 61 thru 63 in the virtual address */ #define DATA_VA_TO_PA(addr) \ tpa addr = addr /* * This macro converts a data physical address to a virtual address * Right now for simulation purposes the virtual addresses are * direct mapped to physical addresses. * 1. Put 0x7 in bits 61 thru 63. */ #define DATA_PA_TO_VA(addr,temp) \ mov temp = 0x7 ;; \ dep addr = temp, addr, 61, 3 #define GET_THIS_PADDR(reg, var) \ mov reg = IA64_KR(PER_CPU_DATA);; \ addl reg = THIS_CPU(var), reg /* * This macro jumps to the instruction at the given virtual address * and starts execution in physical mode with all the address * translations turned off. * 1. Save the current psr * 2. Make sure that all the upper 32 bits are off * * 3. Clear the interrupt enable and interrupt state collection bits * in the psr before updating the ipsr and iip. * * 4. Turn off the instruction, data and rse translation bits of the psr * and store the new value into ipsr * Also make sure that the interrupts are disabled. * Ensure that we are in little endian mode. * [psr.{rt, it, dt, i, be} = 0] * * 5. Get the physical address corresponding to the virtual address * of the next instruction bundle and put it in iip. * (Using magic numbers 24 and 40 in the deposint instruction since * the IA64_SDK code directly maps to lower 24bits as physical address * from a virtual address). * * 6. Do an rfi to move the values from ipsr to psr and iip to ip. */ #define PHYSICAL_MODE_ENTER(temp1, temp2, start_addr, old_psr) \ mov old_psr = psr; \ ;; \ dep old_psr = 0, old_psr, 32, 32; \ \ mov ar.rsc = 0 ; \ ;; \ srlz.d; \ mov temp2 = ar.bspstore; \ ;; \ DATA_VA_TO_PA(temp2); \ ;; \ mov temp1 = ar.rnat; \ ;; \ mov ar.bspstore = temp2; \ ;; \ mov ar.rnat = temp1; \ mov temp1 = psr; \ mov temp2 = psr; \ ;; \ \ dep temp2 = 0, temp2, PSR_IC, 2; \ ;; \ mov psr.l = temp2; \ ;; \ srlz.d; \ dep temp1 = 0, temp1, 32, 32; \ ;; \ dep temp1 = 0, temp1, PSR_IT, 1; \ ;; \ dep temp1 = 0, temp1, PSR_DT, 1; \ ;; \ dep temp1 = 0, temp1, PSR_RT, 1; \ ;; \ dep temp1 = 0, temp1, PSR_I, 1; \ ;; \ dep temp1 = 0, temp1, PSR_IC, 1; \ ;; \ dep temp1 = -1, temp1, PSR_MC, 1; \ ;; \ mov cr.ipsr = temp1; \ ;; \ LOAD_PHYSICAL(p0, temp2, start_addr); \ ;; \ mov cr.iip = temp2; \ mov cr.ifs = r0; \ DATA_VA_TO_PA(sp); \ DATA_VA_TO_PA(gp); \ ;; \ srlz.i; \ ;; \ nop 1; \ nop 2; \ nop 1; \ nop 2; \ rfi; \ ;; /* * This macro jumps to the instruction at the given virtual address * and starts execution in virtual mode with all the address * translations turned on. * 1. Get the old saved psr * * 2. Clear the interrupt state collection bit in the current psr. * * 3. Set the instruction translation bit back in the old psr * Note we have to do this since we are right now saving only the * lower 32-bits of old psr.(Also the old psr has the data and * rse translation bits on) * * 4. Set ipsr to this old_psr with "it" bit set and "bn" = 1. * * 5. Reset the current thread pointer (r13). * * 6. Set iip to the virtual address of the next instruction bundle. * * 7. Do an rfi to move ipsr to psr and iip to ip. */ #define VIRTUAL_MODE_ENTER(temp1, temp2, start_addr, old_psr) \ mov temp2 = psr; \ ;; \ mov old_psr = temp2; \ ;; \ dep temp2 = 0, temp2, PSR_IC, 2; \ ;; \ mov psr.l = temp2; \ mov ar.rsc = 0; \ ;; \ srlz.d; \ mov r13 = ar.k6; \ mov temp2 = ar.bspstore; \ ;; \ DATA_PA_TO_VA(temp2,temp1); \ ;; \ mov temp1 = ar.rnat; \ ;; \ mov ar.bspstore = temp2; \ ;; \ mov ar.rnat = temp1; \ ;; \ mov temp1 = old_psr; \ ;; \ mov temp2 = 1; \ ;; \ dep temp1 = temp2, temp1, PSR_IC, 1; \ ;; \ dep temp1 = temp2, temp1, PSR_IT, 1; \ ;; \ dep temp1 = temp2, temp1, PSR_DT, 1; \ ;; \ dep temp1 = temp2, temp1, PSR_RT, 1; \ ;; \ dep temp1 = temp2, temp1, PSR_BN, 1; \ ;; \ \ mov cr.ipsr = temp1; \ movl temp2 = start_addr; \ ;; \ mov cr.iip = temp2; \ movl gp = __gp \ ;; \ DATA_PA_TO_VA(sp, temp1); \ srlz.i; \ ;; \ nop 1; \ nop 2; \ nop 1; \ rfi \ ;; /* * The MCA and INIT stacks in struct ia64_mca_cpu look like normal kernel * stacks, except that the SAL/OS state and a switch_stack are stored near the * top of the MCA/INIT stack. To support concurrent entry to MCA or INIT, as * well as MCA over INIT, each event needs its own SAL/OS state. All entries * are 16 byte aligned. * * +---------------------------+ * | pt_regs | * +---------------------------+ * | switch_stack | * +---------------------------+ * | SAL/OS state | * +---------------------------+ * | 16 byte scratch area | * +---------------------------+ <-------- SP at start of C MCA handler * | ..... | * +---------------------------+ * | RBS for MCA/INIT handler | * +---------------------------+ * | struct task for MCA/INIT | * +---------------------------+ <-------- Bottom of MCA/INIT stack */ #define ALIGN16(x) ((x)&~15) #define MCA_PT_REGS_OFFSET ALIGN16(KERNEL_STACK_SIZE-IA64_PT_REGS_SIZE) #define MCA_SWITCH_STACK_OFFSET ALIGN16(MCA_PT_REGS_OFFSET-IA64_SWITCH_STACK_SIZE) #define MCA_SOS_OFFSET ALIGN16(MCA_SWITCH_STACK_OFFSET-IA64_SAL_OS_STATE_SIZE) #define MCA_SP_OFFSET ALIGN16(MCA_SOS_OFFSET-16) #endif /* _ASM_IA64_MCA_ASM_H */