mirror of
https://github.com/FEX-Emu/linux.git
synced 2024-12-28 20:37:27 +00:00
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 ...
183 lines
10 KiB
C
183 lines
10 KiB
C
/*
|
|
* Generate definitions needed by assembly language modules.
|
|
* This code generates raw asm output which is post-processed to extract
|
|
* and format the required data.
|
|
*/
|
|
|
|
#define ASM_OFFSETS_C
|
|
|
|
#include <linux/kbuild.h>
|
|
#include <linux/kvm_host.h>
|
|
#include <linux/sched.h>
|
|
#include <asm/cputime.h>
|
|
#include <asm/vdso.h>
|
|
#include <asm/pgtable.h>
|
|
|
|
/*
|
|
* Make sure that the compiler is new enough. We want a compiler that
|
|
* is known to work with the "Q" assembler constraint.
|
|
*/
|
|
#if __GNUC__ < 3 || (__GNUC__ == 3 && __GNUC_MINOR__ < 3)
|
|
#error Your compiler is too old; please use version 3.3.3 or newer
|
|
#endif
|
|
|
|
int main(void)
|
|
{
|
|
DEFINE(__THREAD_info, offsetof(struct task_struct, stack));
|
|
DEFINE(__THREAD_ksp, offsetof(struct task_struct, thread.ksp));
|
|
DEFINE(__THREAD_mm_segment, offsetof(struct task_struct, thread.mm_segment));
|
|
BLANK();
|
|
DEFINE(__TASK_pid, offsetof(struct task_struct, pid));
|
|
BLANK();
|
|
DEFINE(__THREAD_per_cause, offsetof(struct task_struct, thread.per_event.cause));
|
|
DEFINE(__THREAD_per_address, offsetof(struct task_struct, thread.per_event.address));
|
|
DEFINE(__THREAD_per_paid, offsetof(struct task_struct, thread.per_event.paid));
|
|
BLANK();
|
|
DEFINE(__TI_task, offsetof(struct thread_info, task));
|
|
DEFINE(__TI_domain, offsetof(struct thread_info, exec_domain));
|
|
DEFINE(__TI_flags, offsetof(struct thread_info, flags));
|
|
DEFINE(__TI_sysc_table, offsetof(struct thread_info, sys_call_table));
|
|
DEFINE(__TI_cpu, offsetof(struct thread_info, cpu));
|
|
DEFINE(__TI_precount, offsetof(struct thread_info, preempt_count));
|
|
DEFINE(__TI_user_timer, offsetof(struct thread_info, user_timer));
|
|
DEFINE(__TI_system_timer, offsetof(struct thread_info, system_timer));
|
|
DEFINE(__TI_last_break, offsetof(struct thread_info, last_break));
|
|
BLANK();
|
|
DEFINE(__PT_ARGS, offsetof(struct pt_regs, args));
|
|
DEFINE(__PT_PSW, offsetof(struct pt_regs, psw));
|
|
DEFINE(__PT_GPRS, offsetof(struct pt_regs, gprs));
|
|
DEFINE(__PT_ORIG_GPR2, offsetof(struct pt_regs, orig_gpr2));
|
|
DEFINE(__PT_INT_CODE, offsetof(struct pt_regs, int_code));
|
|
DEFINE(__PT_INT_PARM, offsetof(struct pt_regs, int_parm));
|
|
DEFINE(__PT_INT_PARM_LONG, offsetof(struct pt_regs, int_parm_long));
|
|
DEFINE(__PT_FLAGS, offsetof(struct pt_regs, flags));
|
|
DEFINE(__PT_SIZE, sizeof(struct pt_regs));
|
|
BLANK();
|
|
DEFINE(__SF_BACKCHAIN, offsetof(struct stack_frame, back_chain));
|
|
DEFINE(__SF_GPRS, offsetof(struct stack_frame, gprs));
|
|
DEFINE(__SF_EMPTY, offsetof(struct stack_frame, empty1));
|
|
BLANK();
|
|
/* timeval/timezone offsets for use by vdso */
|
|
DEFINE(__VDSO_UPD_COUNT, offsetof(struct vdso_data, tb_update_count));
|
|
DEFINE(__VDSO_XTIME_STAMP, offsetof(struct vdso_data, xtime_tod_stamp));
|
|
DEFINE(__VDSO_XTIME_SEC, offsetof(struct vdso_data, xtime_clock_sec));
|
|
DEFINE(__VDSO_XTIME_NSEC, offsetof(struct vdso_data, xtime_clock_nsec));
|
|
DEFINE(__VDSO_WTOM_SEC, offsetof(struct vdso_data, wtom_clock_sec));
|
|
DEFINE(__VDSO_WTOM_NSEC, offsetof(struct vdso_data, wtom_clock_nsec));
|
|
DEFINE(__VDSO_TIMEZONE, offsetof(struct vdso_data, tz_minuteswest));
|
|
DEFINE(__VDSO_ECTG_OK, offsetof(struct vdso_data, ectg_available));
|
|
DEFINE(__VDSO_TK_MULT, offsetof(struct vdso_data, tk_mult));
|
|
DEFINE(__VDSO_TK_SHIFT, offsetof(struct vdso_data, tk_shift));
|
|
DEFINE(__VDSO_ECTG_BASE, offsetof(struct vdso_per_cpu_data, ectg_timer_base));
|
|
DEFINE(__VDSO_ECTG_USER, offsetof(struct vdso_per_cpu_data, ectg_user_time));
|
|
/* constants used by the vdso */
|
|
DEFINE(__CLOCK_REALTIME, CLOCK_REALTIME);
|
|
DEFINE(__CLOCK_MONOTONIC, CLOCK_MONOTONIC);
|
|
DEFINE(__CLOCK_THREAD_CPUTIME_ID, CLOCK_THREAD_CPUTIME_ID);
|
|
DEFINE(__CLOCK_REALTIME_RES, MONOTONIC_RES_NSEC);
|
|
BLANK();
|
|
/* idle data offsets */
|
|
DEFINE(__CLOCK_IDLE_ENTER, offsetof(struct s390_idle_data, clock_idle_enter));
|
|
DEFINE(__CLOCK_IDLE_EXIT, offsetof(struct s390_idle_data, clock_idle_exit));
|
|
DEFINE(__TIMER_IDLE_ENTER, offsetof(struct s390_idle_data, timer_idle_enter));
|
|
DEFINE(__TIMER_IDLE_EXIT, offsetof(struct s390_idle_data, timer_idle_exit));
|
|
/* lowcore offsets */
|
|
DEFINE(__LC_EXT_PARAMS, offsetof(struct _lowcore, ext_params));
|
|
DEFINE(__LC_EXT_CPU_ADDR, offsetof(struct _lowcore, ext_cpu_addr));
|
|
DEFINE(__LC_EXT_INT_CODE, offsetof(struct _lowcore, ext_int_code));
|
|
DEFINE(__LC_SVC_ILC, offsetof(struct _lowcore, svc_ilc));
|
|
DEFINE(__LC_SVC_INT_CODE, offsetof(struct _lowcore, svc_code));
|
|
DEFINE(__LC_PGM_ILC, offsetof(struct _lowcore, pgm_ilc));
|
|
DEFINE(__LC_PGM_INT_CODE, offsetof(struct _lowcore, pgm_code));
|
|
DEFINE(__LC_TRANS_EXC_CODE, offsetof(struct _lowcore, trans_exc_code));
|
|
DEFINE(__LC_MON_CLASS_NR, offsetof(struct _lowcore, mon_class_num));
|
|
DEFINE(__LC_PER_CODE, offsetof(struct _lowcore, per_code));
|
|
DEFINE(__LC_PER_ATMID, offsetof(struct _lowcore, per_atmid));
|
|
DEFINE(__LC_PER_ADDRESS, offsetof(struct _lowcore, per_address));
|
|
DEFINE(__LC_EXC_ACCESS_ID, offsetof(struct _lowcore, exc_access_id));
|
|
DEFINE(__LC_PER_ACCESS_ID, offsetof(struct _lowcore, per_access_id));
|
|
DEFINE(__LC_OP_ACCESS_ID, offsetof(struct _lowcore, op_access_id));
|
|
DEFINE(__LC_AR_MODE_ID, offsetof(struct _lowcore, ar_mode_id));
|
|
DEFINE(__LC_MON_CODE, offsetof(struct _lowcore, monitor_code));
|
|
DEFINE(__LC_SUBCHANNEL_ID, offsetof(struct _lowcore, subchannel_id));
|
|
DEFINE(__LC_SUBCHANNEL_NR, offsetof(struct _lowcore, subchannel_nr));
|
|
DEFINE(__LC_IO_INT_PARM, offsetof(struct _lowcore, io_int_parm));
|
|
DEFINE(__LC_IO_INT_WORD, offsetof(struct _lowcore, io_int_word));
|
|
DEFINE(__LC_STFL_FAC_LIST, offsetof(struct _lowcore, stfl_fac_list));
|
|
DEFINE(__LC_MCCK_CODE, offsetof(struct _lowcore, mcck_interruption_code));
|
|
DEFINE(__LC_MCCK_EXT_DAM_CODE, offsetof(struct _lowcore, external_damage_code));
|
|
DEFINE(__LC_RST_OLD_PSW, offsetof(struct _lowcore, restart_old_psw));
|
|
DEFINE(__LC_EXT_OLD_PSW, offsetof(struct _lowcore, external_old_psw));
|
|
DEFINE(__LC_SVC_OLD_PSW, offsetof(struct _lowcore, svc_old_psw));
|
|
DEFINE(__LC_PGM_OLD_PSW, offsetof(struct _lowcore, program_old_psw));
|
|
DEFINE(__LC_MCK_OLD_PSW, offsetof(struct _lowcore, mcck_old_psw));
|
|
DEFINE(__LC_IO_OLD_PSW, offsetof(struct _lowcore, io_old_psw));
|
|
DEFINE(__LC_RST_NEW_PSW, offsetof(struct _lowcore, restart_psw));
|
|
DEFINE(__LC_EXT_NEW_PSW, offsetof(struct _lowcore, external_new_psw));
|
|
DEFINE(__LC_SVC_NEW_PSW, offsetof(struct _lowcore, svc_new_psw));
|
|
DEFINE(__LC_PGM_NEW_PSW, offsetof(struct _lowcore, program_new_psw));
|
|
DEFINE(__LC_MCK_NEW_PSW, offsetof(struct _lowcore, mcck_new_psw));
|
|
DEFINE(__LC_IO_NEW_PSW, offsetof(struct _lowcore, io_new_psw));
|
|
BLANK();
|
|
DEFINE(__LC_SAVE_AREA_SYNC, offsetof(struct _lowcore, save_area_sync));
|
|
DEFINE(__LC_SAVE_AREA_ASYNC, offsetof(struct _lowcore, save_area_async));
|
|
DEFINE(__LC_SAVE_AREA_RESTART, offsetof(struct _lowcore, save_area_restart));
|
|
DEFINE(__LC_CPU_FLAGS, offsetof(struct _lowcore, cpu_flags));
|
|
DEFINE(__LC_RETURN_PSW, offsetof(struct _lowcore, return_psw));
|
|
DEFINE(__LC_RETURN_MCCK_PSW, offsetof(struct _lowcore, return_mcck_psw));
|
|
DEFINE(__LC_SYNC_ENTER_TIMER, offsetof(struct _lowcore, sync_enter_timer));
|
|
DEFINE(__LC_ASYNC_ENTER_TIMER, offsetof(struct _lowcore, async_enter_timer));
|
|
DEFINE(__LC_MCCK_ENTER_TIMER, offsetof(struct _lowcore, mcck_enter_timer));
|
|
DEFINE(__LC_EXIT_TIMER, offsetof(struct _lowcore, exit_timer));
|
|
DEFINE(__LC_USER_TIMER, offsetof(struct _lowcore, user_timer));
|
|
DEFINE(__LC_SYSTEM_TIMER, offsetof(struct _lowcore, system_timer));
|
|
DEFINE(__LC_STEAL_TIMER, offsetof(struct _lowcore, steal_timer));
|
|
DEFINE(__LC_LAST_UPDATE_TIMER, offsetof(struct _lowcore, last_update_timer));
|
|
DEFINE(__LC_LAST_UPDATE_CLOCK, offsetof(struct _lowcore, last_update_clock));
|
|
DEFINE(__LC_CURRENT, offsetof(struct _lowcore, current_task));
|
|
DEFINE(__LC_CURRENT_PID, offsetof(struct _lowcore, current_pid));
|
|
DEFINE(__LC_THREAD_INFO, offsetof(struct _lowcore, thread_info));
|
|
DEFINE(__LC_KERNEL_STACK, offsetof(struct _lowcore, kernel_stack));
|
|
DEFINE(__LC_ASYNC_STACK, offsetof(struct _lowcore, async_stack));
|
|
DEFINE(__LC_PANIC_STACK, offsetof(struct _lowcore, panic_stack));
|
|
DEFINE(__LC_RESTART_STACK, offsetof(struct _lowcore, restart_stack));
|
|
DEFINE(__LC_RESTART_FN, offsetof(struct _lowcore, restart_fn));
|
|
DEFINE(__LC_RESTART_DATA, offsetof(struct _lowcore, restart_data));
|
|
DEFINE(__LC_RESTART_SOURCE, offsetof(struct _lowcore, restart_source));
|
|
DEFINE(__LC_KERNEL_ASCE, offsetof(struct _lowcore, kernel_asce));
|
|
DEFINE(__LC_USER_ASCE, offsetof(struct _lowcore, user_asce));
|
|
DEFINE(__LC_INT_CLOCK, offsetof(struct _lowcore, int_clock));
|
|
DEFINE(__LC_MCCK_CLOCK, offsetof(struct _lowcore, mcck_clock));
|
|
DEFINE(__LC_MACHINE_FLAGS, offsetof(struct _lowcore, machine_flags));
|
|
DEFINE(__LC_FTRACE_FUNC, offsetof(struct _lowcore, ftrace_func));
|
|
DEFINE(__LC_DUMP_REIPL, offsetof(struct _lowcore, ipib));
|
|
BLANK();
|
|
DEFINE(__LC_CPU_TIMER_SAVE_AREA, offsetof(struct _lowcore, cpu_timer_save_area));
|
|
DEFINE(__LC_CLOCK_COMP_SAVE_AREA, offsetof(struct _lowcore, clock_comp_save_area));
|
|
DEFINE(__LC_PSW_SAVE_AREA, offsetof(struct _lowcore, psw_save_area));
|
|
DEFINE(__LC_PREFIX_SAVE_AREA, offsetof(struct _lowcore, prefixreg_save_area));
|
|
DEFINE(__LC_AREGS_SAVE_AREA, offsetof(struct _lowcore, access_regs_save_area));
|
|
DEFINE(__LC_FPREGS_SAVE_AREA, offsetof(struct _lowcore, floating_pt_save_area));
|
|
DEFINE(__LC_GPREGS_SAVE_AREA, offsetof(struct _lowcore, gpregs_save_area));
|
|
DEFINE(__LC_CREGS_SAVE_AREA, offsetof(struct _lowcore, cregs_save_area));
|
|
#ifdef CONFIG_32BIT
|
|
DEFINE(SAVE_AREA_BASE, offsetof(struct _lowcore, extended_save_area_addr));
|
|
#else /* CONFIG_32BIT */
|
|
DEFINE(__LC_DATA_EXC_CODE, offsetof(struct _lowcore, data_exc_code));
|
|
DEFINE(__LC_MCCK_FAIL_STOR_ADDR, offsetof(struct _lowcore, failing_storage_address));
|
|
DEFINE(__LC_EXT_PARAMS2, offsetof(struct _lowcore, ext_params2));
|
|
DEFINE(SAVE_AREA_BASE, offsetof(struct _lowcore, floating_pt_save_area));
|
|
DEFINE(__LC_PASTE, offsetof(struct _lowcore, paste));
|
|
DEFINE(__LC_FP_CREG_SAVE_AREA, offsetof(struct _lowcore, fpt_creg_save_area));
|
|
DEFINE(__LC_LAST_BREAK, offsetof(struct _lowcore, breaking_event_addr));
|
|
DEFINE(__LC_VDSO_PER_CPU, offsetof(struct _lowcore, vdso_per_cpu_data));
|
|
DEFINE(__LC_GMAP, offsetof(struct _lowcore, gmap));
|
|
DEFINE(__LC_PGM_TDB, offsetof(struct _lowcore, pgm_tdb));
|
|
DEFINE(__THREAD_trap_tdb, offsetof(struct task_struct, thread.trap_tdb));
|
|
DEFINE(__GMAP_ASCE, offsetof(struct gmap, asce));
|
|
DEFINE(__SIE_PROG0C, offsetof(struct kvm_s390_sie_block, prog0c));
|
|
DEFINE(__SIE_PROG20, offsetof(struct kvm_s390_sie_block, prog20));
|
|
#endif /* CONFIG_32BIT */
|
|
return 0;
|
|
}
|