mirror of
https://github.com/edk2-porting/linux-next.git
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b05d59dfce
was a pretty active cycle for KVM. Changes include: - a lot of s390 changes: optimizations, support for migration, GDB support and more - ARM changes are pretty small: support for the PSCI 0.2 hypercall interface on both the guest and the host (the latter acked by Catalin) - initial POWER8 and little-endian host support - support for running u-boot on embedded POWER targets - pretty large changes to MIPS too, completing the userspace interface and improving the handling of virtualized timer hardware - for x86, a larger set of changes is scheduled for 3.17. Still, we have a few emulator bugfixes and support for running nested fully-virtualized Xen guests (para-virtualized Xen guests have always worked). And some optimizations too. The only missing architecture here is ia64. It's not a coincidence that support for KVM on ia64 is scheduled for removal in 3.17. -----BEGIN PGP SIGNATURE----- Version: GnuPG v2.0.22 (GNU/Linux) iQIcBAABAgAGBQJTjtlBAAoJEBvWZb6bTYbyMOUP/2NAePghE3IjG99ikHFdn+BX BfrURsuR6GD0AhYQnBidBmpFbAmN/LwSJxv/M7sV7OBRWLu3qbt69DrPTU2e/FK1 j9q25peu8jRyHzJ1q9rBroo74nD9lQYuVr3uXNxxcg0DRnw14JHGlM3y8LDEknO8 W+gpWTeAQ+2AuOX98MpRbCRMuzziCSv5bP5FhBVnsWHiZfvMbcUrbeJt+zYSiDAZ 0tHm/5dFKzfj/vVrrnjD4EZcRr688Bs5rztG96hY6aoVJryjZGLtLp92wCWkRRmH CCvZwd245NmNthuKHzcs27/duSWfU0uOlu7AMrD44QYhzeDGyB/2nbCxbGqLLoBA nnOviXH4cC65/CnisZ79zfo979HbZcX+Lzg747EjBgCSxJmLlwgiG8yXtDvk5otB TH6GUeGDiEEPj//JD3XtgSz0sF2NvjREWRyemjDMvhz6JC/bLytXKb3sn+NXSj8m ujzF9eQoa4qKDcBL4IQYGTJ4z5nY3Pd68dHFIPHB7n82OxFLSQUBKxXw8/1fb5og VVb8PL4GOcmakQlAKtTMlFPmuy4bbL2r/2iV5xJiOZKmXIu8Hs1JezBE3SFAltbl 3cAGwSM9/dDkKxUbTFblyOE9bkKbg4WYmq0LkdzsPEomb3IZWntOT25rYnX+LrBz bAknaZpPiOrW11Et1htY =j5Od -----END PGP SIGNATURE----- Merge tag 'for-linus' of git://git.kernel.org/pub/scm/virt/kvm/kvm into next Pull KVM updates from Paolo Bonzini: "At over 200 commits, covering almost all supported architectures, this was a pretty active cycle for KVM. Changes include: - a lot of s390 changes: optimizations, support for migration, GDB support and more - ARM changes are pretty small: support for the PSCI 0.2 hypercall interface on both the guest and the host (the latter acked by Catalin) - initial POWER8 and little-endian host support - support for running u-boot on embedded POWER targets - pretty large changes to MIPS too, completing the userspace interface and improving the handling of virtualized timer hardware - for x86, a larger set of changes is scheduled for 3.17. Still, we have a few emulator bugfixes and support for running nested fully-virtualized Xen guests (para-virtualized Xen guests have always worked). And some optimizations too. The only missing architecture here is ia64. It's not a coincidence that support for KVM on ia64 is scheduled for removal in 3.17" * tag 'for-linus' of git://git.kernel.org/pub/scm/virt/kvm/kvm: (203 commits) KVM: add missing cleanup_srcu_struct KVM: PPC: Book3S PR: Rework SLB switching code KVM: PPC: Book3S PR: Use SLB entry 0 KVM: PPC: Book3S HV: Fix machine check delivery to guest KVM: PPC: Book3S HV: Work around POWER8 performance monitor bugs KVM: PPC: Book3S HV: Make sure we don't miss dirty pages KVM: PPC: Book3S HV: Fix dirty map for hugepages KVM: PPC: Book3S HV: Put huge-page HPTEs in rmap chain for base address KVM: PPC: Book3S HV: Fix check for running inside guest in global_invalidates() KVM: PPC: Book3S: Move KVM_REG_PPC_WORT to an unused register number KVM: PPC: Book3S: Add ONE_REG register names that were missed KVM: PPC: Add CAP to indicate hcall fixes KVM: PPC: MPIC: Reset IRQ source private members KVM: PPC: Graciously fail broken LE hypercalls PPC: ePAPR: Fix hypercall on LE guest KVM: PPC: BOOK3S: Remove open coded make_dsisr in alignment handler KVM: PPC: BOOK3S: Always use the saved DAR value PPC: KVM: Make NX bit available with magic page KVM: PPC: Disable NX for old magic page using guests KVM: PPC: BOOK3S: HV: Add mixed page-size support for guest ...
362 lines
11 KiB
C
362 lines
11 KiB
C
/*
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* Copyright IBM Corp. 1999, 2012
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* Author(s): Hartmut Penner <hp@de.ibm.com>,
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* Martin Schwidefsky <schwidefsky@de.ibm.com>,
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* Denis Joseph Barrow,
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*/
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#ifndef _ASM_S390_LOWCORE_H
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#define _ASM_S390_LOWCORE_H
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#include <linux/types.h>
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#include <asm/ptrace.h>
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#include <asm/cpu.h>
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#ifdef CONFIG_32BIT
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#define LC_ORDER 0
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#define LC_PAGES 1
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struct save_area {
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u32 ext_save;
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u64 timer;
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u64 clk_cmp;
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u8 pad1[24];
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u8 psw[8];
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u32 pref_reg;
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u8 pad2[20];
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u32 acc_regs[16];
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u64 fp_regs[4];
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u32 gp_regs[16];
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u32 ctrl_regs[16];
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} __packed;
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struct _lowcore {
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psw_t restart_psw; /* 0x0000 */
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psw_t restart_old_psw; /* 0x0008 */
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__u8 pad_0x0010[0x0014-0x0010]; /* 0x0010 */
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__u32 ipl_parmblock_ptr; /* 0x0014 */
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psw_t external_old_psw; /* 0x0018 */
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psw_t svc_old_psw; /* 0x0020 */
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psw_t program_old_psw; /* 0x0028 */
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psw_t mcck_old_psw; /* 0x0030 */
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psw_t io_old_psw; /* 0x0038 */
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__u8 pad_0x0040[0x0058-0x0040]; /* 0x0040 */
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psw_t external_new_psw; /* 0x0058 */
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psw_t svc_new_psw; /* 0x0060 */
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psw_t program_new_psw; /* 0x0068 */
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psw_t mcck_new_psw; /* 0x0070 */
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psw_t io_new_psw; /* 0x0078 */
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__u32 ext_params; /* 0x0080 */
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__u16 ext_cpu_addr; /* 0x0084 */
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__u16 ext_int_code; /* 0x0086 */
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__u16 svc_ilc; /* 0x0088 */
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__u16 svc_code; /* 0x008a */
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__u16 pgm_ilc; /* 0x008c */
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__u16 pgm_code; /* 0x008e */
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__u32 trans_exc_code; /* 0x0090 */
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__u16 mon_class_num; /* 0x0094 */
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__u8 per_code; /* 0x0096 */
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__u8 per_atmid; /* 0x0097 */
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__u32 per_address; /* 0x0098 */
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__u32 monitor_code; /* 0x009c */
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__u8 exc_access_id; /* 0x00a0 */
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__u8 per_access_id; /* 0x00a1 */
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__u8 op_access_id; /* 0x00a2 */
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__u8 ar_mode_id; /* 0x00a3 */
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__u8 pad_0x00a4[0x00b8-0x00a4]; /* 0x00a4 */
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__u16 subchannel_id; /* 0x00b8 */
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__u16 subchannel_nr; /* 0x00ba */
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__u32 io_int_parm; /* 0x00bc */
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__u32 io_int_word; /* 0x00c0 */
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__u8 pad_0x00c4[0x00c8-0x00c4]; /* 0x00c4 */
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__u32 stfl_fac_list; /* 0x00c8 */
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__u8 pad_0x00cc[0x00d4-0x00cc]; /* 0x00cc */
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__u32 extended_save_area_addr; /* 0x00d4 */
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__u32 cpu_timer_save_area[2]; /* 0x00d8 */
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__u32 clock_comp_save_area[2]; /* 0x00e0 */
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__u32 mcck_interruption_code[2]; /* 0x00e8 */
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__u8 pad_0x00f0[0x00f4-0x00f0]; /* 0x00f0 */
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__u32 external_damage_code; /* 0x00f4 */
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__u32 failing_storage_address; /* 0x00f8 */
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__u8 pad_0x00fc[0x0100-0x00fc]; /* 0x00fc */
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psw_t psw_save_area; /* 0x0100 */
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__u32 prefixreg_save_area; /* 0x0108 */
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__u8 pad_0x010c[0x0120-0x010c]; /* 0x010c */
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/* CPU register save area: defined by architecture */
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__u32 access_regs_save_area[16]; /* 0x0120 */
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__u32 floating_pt_save_area[8]; /* 0x0160 */
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__u32 gpregs_save_area[16]; /* 0x0180 */
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__u32 cregs_save_area[16]; /* 0x01c0 */
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/* Save areas. */
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__u32 save_area_sync[8]; /* 0x0200 */
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__u32 save_area_async[8]; /* 0x0220 */
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__u32 save_area_restart[1]; /* 0x0240 */
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/* CPU flags. */
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__u32 cpu_flags; /* 0x0244 */
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/* Return psws. */
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psw_t return_psw; /* 0x0248 */
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psw_t return_mcck_psw; /* 0x0250 */
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/* CPU time accounting values */
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__u64 sync_enter_timer; /* 0x0258 */
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__u64 async_enter_timer; /* 0x0260 */
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__u64 mcck_enter_timer; /* 0x0268 */
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__u64 exit_timer; /* 0x0270 */
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__u64 user_timer; /* 0x0278 */
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__u64 system_timer; /* 0x0280 */
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__u64 steal_timer; /* 0x0288 */
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__u64 last_update_timer; /* 0x0290 */
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__u64 last_update_clock; /* 0x0298 */
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__u64 int_clock; /* 0x02a0 */
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__u64 mcck_clock; /* 0x02a8 */
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__u64 clock_comparator; /* 0x02b0 */
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/* Current process. */
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__u32 current_task; /* 0x02b8 */
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__u32 thread_info; /* 0x02bc */
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__u32 kernel_stack; /* 0x02c0 */
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/* Interrupt, panic and restart stack. */
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__u32 async_stack; /* 0x02c4 */
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__u32 panic_stack; /* 0x02c8 */
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__u32 restart_stack; /* 0x02cc */
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/* Restart function and parameter. */
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__u32 restart_fn; /* 0x02d0 */
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__u32 restart_data; /* 0x02d4 */
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__u32 restart_source; /* 0x02d8 */
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/* Address space pointer. */
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__u32 kernel_asce; /* 0x02dc */
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__u32 user_asce; /* 0x02e0 */
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__u32 current_pid; /* 0x02e4 */
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/* SMP info area */
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__u32 cpu_nr; /* 0x02e8 */
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__u32 softirq_pending; /* 0x02ec */
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__u32 percpu_offset; /* 0x02f0 */
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__u32 machine_flags; /* 0x02f4 */
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__u32 ftrace_func; /* 0x02f8 */
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__u32 spinlock_lockval; /* 0x02fc */
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__u8 pad_0x0300[0x0e00-0x0300]; /* 0x0300 */
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/*
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* 0xe00 contains the address of the IPL Parameter Information
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* block. Dump tools need IPIB for IPL after dump.
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* Note: do not change the position of any fields in 0x0e00-0x0f00
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*/
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__u32 ipib; /* 0x0e00 */
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__u32 ipib_checksum; /* 0x0e04 */
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__u32 vmcore_info; /* 0x0e08 */
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__u8 pad_0x0e0c[0x0e18-0x0e0c]; /* 0x0e0c */
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__u32 os_info; /* 0x0e18 */
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__u8 pad_0x0e1c[0x0f00-0x0e1c]; /* 0x0e1c */
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/* Extended facility list */
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__u64 stfle_fac_list[32]; /* 0x0f00 */
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} __packed;
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#else /* CONFIG_32BIT */
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#define LC_ORDER 1
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#define LC_PAGES 2
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struct save_area {
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u64 fp_regs[16];
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u64 gp_regs[16];
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u8 psw[16];
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u8 pad1[8];
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u32 pref_reg;
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u32 fp_ctrl_reg;
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u8 pad2[4];
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u32 tod_reg;
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u64 timer;
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u64 clk_cmp;
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u8 pad3[8];
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u32 acc_regs[16];
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u64 ctrl_regs[16];
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} __packed;
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struct _lowcore {
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__u8 pad_0x0000[0x0014-0x0000]; /* 0x0000 */
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__u32 ipl_parmblock_ptr; /* 0x0014 */
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__u8 pad_0x0018[0x0080-0x0018]; /* 0x0018 */
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__u32 ext_params; /* 0x0080 */
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__u16 ext_cpu_addr; /* 0x0084 */
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__u16 ext_int_code; /* 0x0086 */
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__u16 svc_ilc; /* 0x0088 */
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__u16 svc_code; /* 0x008a */
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__u16 pgm_ilc; /* 0x008c */
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__u16 pgm_code; /* 0x008e */
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__u32 data_exc_code; /* 0x0090 */
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__u16 mon_class_num; /* 0x0094 */
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__u8 per_code; /* 0x0096 */
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__u8 per_atmid; /* 0x0097 */
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__u64 per_address; /* 0x0098 */
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__u8 exc_access_id; /* 0x00a0 */
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__u8 per_access_id; /* 0x00a1 */
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__u8 op_access_id; /* 0x00a2 */
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__u8 ar_mode_id; /* 0x00a3 */
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__u8 pad_0x00a4[0x00a8-0x00a4]; /* 0x00a4 */
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__u64 trans_exc_code; /* 0x00a8 */
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__u64 monitor_code; /* 0x00b0 */
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__u16 subchannel_id; /* 0x00b8 */
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__u16 subchannel_nr; /* 0x00ba */
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__u32 io_int_parm; /* 0x00bc */
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__u32 io_int_word; /* 0x00c0 */
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__u8 pad_0x00c4[0x00c8-0x00c4]; /* 0x00c4 */
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__u32 stfl_fac_list; /* 0x00c8 */
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__u8 pad_0x00cc[0x00e8-0x00cc]; /* 0x00cc */
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__u32 mcck_interruption_code[2]; /* 0x00e8 */
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__u8 pad_0x00f0[0x00f4-0x00f0]; /* 0x00f0 */
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__u32 external_damage_code; /* 0x00f4 */
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__u64 failing_storage_address; /* 0x00f8 */
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__u8 pad_0x0100[0x0110-0x0100]; /* 0x0100 */
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__u64 breaking_event_addr; /* 0x0110 */
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__u8 pad_0x0118[0x0120-0x0118]; /* 0x0118 */
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psw_t restart_old_psw; /* 0x0120 */
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psw_t external_old_psw; /* 0x0130 */
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psw_t svc_old_psw; /* 0x0140 */
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psw_t program_old_psw; /* 0x0150 */
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psw_t mcck_old_psw; /* 0x0160 */
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psw_t io_old_psw; /* 0x0170 */
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__u8 pad_0x0180[0x01a0-0x0180]; /* 0x0180 */
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psw_t restart_psw; /* 0x01a0 */
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psw_t external_new_psw; /* 0x01b0 */
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psw_t svc_new_psw; /* 0x01c0 */
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psw_t program_new_psw; /* 0x01d0 */
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psw_t mcck_new_psw; /* 0x01e0 */
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psw_t io_new_psw; /* 0x01f0 */
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/* Save areas. */
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__u64 save_area_sync[8]; /* 0x0200 */
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__u64 save_area_async[8]; /* 0x0240 */
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__u64 save_area_restart[1]; /* 0x0280 */
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/* CPU flags. */
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__u64 cpu_flags; /* 0x0288 */
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/* Return psws. */
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psw_t return_psw; /* 0x0290 */
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psw_t return_mcck_psw; /* 0x02a0 */
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/* CPU accounting and timing values. */
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__u64 sync_enter_timer; /* 0x02b0 */
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__u64 async_enter_timer; /* 0x02b8 */
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__u64 mcck_enter_timer; /* 0x02c0 */
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__u64 exit_timer; /* 0x02c8 */
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__u64 user_timer; /* 0x02d0 */
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__u64 system_timer; /* 0x02d8 */
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__u64 steal_timer; /* 0x02e0 */
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__u64 last_update_timer; /* 0x02e8 */
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__u64 last_update_clock; /* 0x02f0 */
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__u64 int_clock; /* 0x02f8 */
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__u64 mcck_clock; /* 0x0300 */
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__u64 clock_comparator; /* 0x0308 */
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/* Current process. */
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__u64 current_task; /* 0x0310 */
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__u64 thread_info; /* 0x0318 */
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__u64 kernel_stack; /* 0x0320 */
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/* Interrupt, panic and restart stack. */
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__u64 async_stack; /* 0x0328 */
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__u64 panic_stack; /* 0x0330 */
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__u64 restart_stack; /* 0x0338 */
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/* Restart function and parameter. */
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__u64 restart_fn; /* 0x0340 */
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__u64 restart_data; /* 0x0348 */
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__u64 restart_source; /* 0x0350 */
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/* Address space pointer. */
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__u64 kernel_asce; /* 0x0358 */
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__u64 user_asce; /* 0x0360 */
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__u64 current_pid; /* 0x0368 */
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/* SMP info area */
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__u32 cpu_nr; /* 0x0370 */
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__u32 softirq_pending; /* 0x0374 */
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__u64 percpu_offset; /* 0x0378 */
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__u64 vdso_per_cpu_data; /* 0x0380 */
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__u64 machine_flags; /* 0x0388 */
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__u64 ftrace_func; /* 0x0390 */
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__u64 gmap; /* 0x0398 */
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__u32 spinlock_lockval; /* 0x03a0 */
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__u8 pad_0x03a0[0x0400-0x03a4]; /* 0x03a4 */
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/* Per cpu primary space access list */
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__u32 paste[16]; /* 0x0400 */
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__u8 pad_0x04c0[0x0e00-0x0440]; /* 0x0440 */
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/*
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* 0xe00 contains the address of the IPL Parameter Information
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* block. Dump tools need IPIB for IPL after dump.
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* Note: do not change the position of any fields in 0x0e00-0x0f00
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*/
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__u64 ipib; /* 0x0e00 */
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__u32 ipib_checksum; /* 0x0e08 */
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__u64 vmcore_info; /* 0x0e0c */
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__u8 pad_0x0e14[0x0e18-0x0e14]; /* 0x0e14 */
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__u64 os_info; /* 0x0e18 */
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__u8 pad_0x0e20[0x0f00-0x0e20]; /* 0x0e20 */
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/* Extended facility list */
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__u64 stfle_fac_list[32]; /* 0x0f00 */
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__u8 pad_0x1000[0x11b8-0x1000]; /* 0x1000 */
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/* 64 bit extparam used for pfault/diag 250: defined by architecture */
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__u64 ext_params2; /* 0x11B8 */
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__u8 pad_0x11c0[0x1200-0x11C0]; /* 0x11C0 */
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/* CPU register save area: defined by architecture */
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__u64 floating_pt_save_area[16]; /* 0x1200 */
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__u64 gpregs_save_area[16]; /* 0x1280 */
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psw_t psw_save_area; /* 0x1300 */
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__u8 pad_0x1310[0x1318-0x1310]; /* 0x1310 */
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__u32 prefixreg_save_area; /* 0x1318 */
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__u32 fpt_creg_save_area; /* 0x131c */
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__u8 pad_0x1320[0x1324-0x1320]; /* 0x1320 */
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__u32 tod_progreg_save_area; /* 0x1324 */
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|
__u32 cpu_timer_save_area[2]; /* 0x1328 */
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|
__u32 clock_comp_save_area[2]; /* 0x1330 */
|
|
__u8 pad_0x1338[0x1340-0x1338]; /* 0x1338 */
|
|
__u32 access_regs_save_area[16]; /* 0x1340 */
|
|
__u64 cregs_save_area[16]; /* 0x1380 */
|
|
__u8 pad_0x1400[0x1800-0x1400]; /* 0x1400 */
|
|
|
|
/* Transaction abort diagnostic block */
|
|
__u8 pgm_tdb[256]; /* 0x1800 */
|
|
|
|
/* align to the top of the prefix area */
|
|
__u8 pad_0x1900[0x2000-0x1900]; /* 0x1900 */
|
|
} __packed;
|
|
|
|
#endif /* CONFIG_32BIT */
|
|
|
|
#define S390_lowcore (*((struct _lowcore *) 0))
|
|
|
|
extern struct _lowcore *lowcore_ptr[];
|
|
|
|
static inline void set_prefix(__u32 address)
|
|
{
|
|
asm volatile("spx %0" : : "m" (address) : "memory");
|
|
}
|
|
|
|
static inline __u32 store_prefix(void)
|
|
{
|
|
__u32 address;
|
|
|
|
asm volatile("stpx %0" : "=m" (address));
|
|
return address;
|
|
}
|
|
|
|
#endif /* _ASM_S390_LOWCORE_H */
|