staging: erofs: fix warning Comparison to bool
[linux/fpc-iii.git] / arch / arm64 / kernel / asm-offsets.c
blob947e39896e289b0feb6f1a93f523e7be3f38f064
1 /*
2 * Based on arch/arm/kernel/asm-offsets.c
4 * Copyright (C) 1995-2003 Russell King
5 * 2001-2002 Keith Owens
6 * Copyright (C) 2012 ARM Ltd.
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
21 #include <linux/arm_sdei.h>
22 #include <linux/sched.h>
23 #include <linux/mm.h>
24 #include <linux/dma-mapping.h>
25 #include <linux/kvm_host.h>
26 #include <linux/preempt.h>
27 #include <linux/suspend.h>
28 #include <asm/cpufeature.h>
29 #include <asm/fixmap.h>
30 #include <asm/thread_info.h>
31 #include <asm/memory.h>
32 #include <asm/smp_plat.h>
33 #include <asm/suspend.h>
34 #include <asm/vdso_datapage.h>
35 #include <linux/kbuild.h>
36 #include <linux/arm-smccc.h>
38 int main(void)
40 DEFINE(TSK_ACTIVE_MM, offsetof(struct task_struct, active_mm));
41 BLANK();
42 DEFINE(TSK_TI_FLAGS, offsetof(struct task_struct, thread_info.flags));
43 DEFINE(TSK_TI_PREEMPT, offsetof(struct task_struct, thread_info.preempt_count));
44 DEFINE(TSK_TI_ADDR_LIMIT, offsetof(struct task_struct, thread_info.addr_limit));
45 #ifdef CONFIG_ARM64_SW_TTBR0_PAN
46 DEFINE(TSK_TI_TTBR0, offsetof(struct task_struct, thread_info.ttbr0));
47 #endif
48 DEFINE(TSK_STACK, offsetof(struct task_struct, stack));
49 #ifdef CONFIG_STACKPROTECTOR
50 DEFINE(TSK_STACK_CANARY, offsetof(struct task_struct, stack_canary));
51 #endif
52 BLANK();
53 DEFINE(THREAD_CPU_CONTEXT, offsetof(struct task_struct, thread.cpu_context));
54 BLANK();
55 DEFINE(S_X0, offsetof(struct pt_regs, regs[0]));
56 DEFINE(S_X2, offsetof(struct pt_regs, regs[2]));
57 DEFINE(S_X4, offsetof(struct pt_regs, regs[4]));
58 DEFINE(S_X6, offsetof(struct pt_regs, regs[6]));
59 DEFINE(S_X8, offsetof(struct pt_regs, regs[8]));
60 DEFINE(S_X10, offsetof(struct pt_regs, regs[10]));
61 DEFINE(S_X12, offsetof(struct pt_regs, regs[12]));
62 DEFINE(S_X14, offsetof(struct pt_regs, regs[14]));
63 DEFINE(S_X16, offsetof(struct pt_regs, regs[16]));
64 DEFINE(S_X18, offsetof(struct pt_regs, regs[18]));
65 DEFINE(S_X20, offsetof(struct pt_regs, regs[20]));
66 DEFINE(S_X22, offsetof(struct pt_regs, regs[22]));
67 DEFINE(S_X24, offsetof(struct pt_regs, regs[24]));
68 DEFINE(S_X26, offsetof(struct pt_regs, regs[26]));
69 DEFINE(S_X28, offsetof(struct pt_regs, regs[28]));
70 DEFINE(S_LR, offsetof(struct pt_regs, regs[30]));
71 DEFINE(S_SP, offsetof(struct pt_regs, sp));
72 DEFINE(S_PSTATE, offsetof(struct pt_regs, pstate));
73 DEFINE(S_PC, offsetof(struct pt_regs, pc));
74 DEFINE(S_SYSCALLNO, offsetof(struct pt_regs, syscallno));
75 DEFINE(S_ORIG_ADDR_LIMIT, offsetof(struct pt_regs, orig_addr_limit));
76 DEFINE(S_PMR_SAVE, offsetof(struct pt_regs, pmr_save));
77 DEFINE(S_STACKFRAME, offsetof(struct pt_regs, stackframe));
78 DEFINE(S_FRAME_SIZE, sizeof(struct pt_regs));
79 BLANK();
80 DEFINE(MM_CONTEXT_ID, offsetof(struct mm_struct, context.id.counter));
81 BLANK();
82 DEFINE(VMA_VM_MM, offsetof(struct vm_area_struct, vm_mm));
83 DEFINE(VMA_VM_FLAGS, offsetof(struct vm_area_struct, vm_flags));
84 BLANK();
85 DEFINE(VM_EXEC, VM_EXEC);
86 BLANK();
87 DEFINE(PAGE_SZ, PAGE_SIZE);
88 BLANK();
89 DEFINE(DMA_TO_DEVICE, DMA_TO_DEVICE);
90 DEFINE(DMA_FROM_DEVICE, DMA_FROM_DEVICE);
91 BLANK();
92 DEFINE(PREEMPT_DISABLE_OFFSET, PREEMPT_DISABLE_OFFSET);
93 BLANK();
94 DEFINE(CLOCK_REALTIME, CLOCK_REALTIME);
95 DEFINE(CLOCK_MONOTONIC, CLOCK_MONOTONIC);
96 DEFINE(CLOCK_MONOTONIC_RAW, CLOCK_MONOTONIC_RAW);
97 DEFINE(CLOCK_REALTIME_RES, offsetof(struct vdso_data, hrtimer_res));
98 DEFINE(CLOCK_REALTIME_COARSE, CLOCK_REALTIME_COARSE);
99 DEFINE(CLOCK_MONOTONIC_COARSE,CLOCK_MONOTONIC_COARSE);
100 DEFINE(CLOCK_COARSE_RES, LOW_RES_NSEC);
101 DEFINE(NSEC_PER_SEC, NSEC_PER_SEC);
102 BLANK();
103 DEFINE(VDSO_CS_CYCLE_LAST, offsetof(struct vdso_data, cs_cycle_last));
104 DEFINE(VDSO_RAW_TIME_SEC, offsetof(struct vdso_data, raw_time_sec));
105 DEFINE(VDSO_XTIME_CLK_SEC, offsetof(struct vdso_data, xtime_clock_sec));
106 DEFINE(VDSO_XTIME_CRS_SEC, offsetof(struct vdso_data, xtime_coarse_sec));
107 DEFINE(VDSO_XTIME_CRS_NSEC, offsetof(struct vdso_data, xtime_coarse_nsec));
108 DEFINE(VDSO_WTM_CLK_SEC, offsetof(struct vdso_data, wtm_clock_sec));
109 DEFINE(VDSO_TB_SEQ_COUNT, offsetof(struct vdso_data, tb_seq_count));
110 DEFINE(VDSO_CS_MONO_MULT, offsetof(struct vdso_data, cs_mono_mult));
111 DEFINE(VDSO_CS_SHIFT, offsetof(struct vdso_data, cs_shift));
112 DEFINE(VDSO_TZ_MINWEST, offsetof(struct vdso_data, tz_minuteswest));
113 DEFINE(VDSO_USE_SYSCALL, offsetof(struct vdso_data, use_syscall));
114 BLANK();
115 DEFINE(TVAL_TV_SEC, offsetof(struct timeval, tv_sec));
116 DEFINE(TSPEC_TV_SEC, offsetof(struct timespec, tv_sec));
117 BLANK();
118 DEFINE(TZ_MINWEST, offsetof(struct timezone, tz_minuteswest));
119 DEFINE(TZ_DSTTIME, offsetof(struct timezone, tz_dsttime));
120 BLANK();
121 DEFINE(CPU_BOOT_STACK, offsetof(struct secondary_data, stack));
122 DEFINE(CPU_BOOT_TASK, offsetof(struct secondary_data, task));
123 BLANK();
124 #ifdef CONFIG_KVM_ARM_HOST
125 DEFINE(VCPU_CONTEXT, offsetof(struct kvm_vcpu, arch.ctxt));
126 DEFINE(VCPU_FAULT_DISR, offsetof(struct kvm_vcpu, arch.fault.disr_el1));
127 DEFINE(VCPU_WORKAROUND_FLAGS, offsetof(struct kvm_vcpu, arch.workaround_flags));
128 DEFINE(VCPU_HCR_EL2, offsetof(struct kvm_vcpu, arch.hcr_el2));
129 DEFINE(CPU_GP_REGS, offsetof(struct kvm_cpu_context, gp_regs));
130 DEFINE(CPU_APIAKEYLO_EL1, offsetof(struct kvm_cpu_context, sys_regs[APIAKEYLO_EL1]));
131 DEFINE(CPU_APIBKEYLO_EL1, offsetof(struct kvm_cpu_context, sys_regs[APIBKEYLO_EL1]));
132 DEFINE(CPU_APDAKEYLO_EL1, offsetof(struct kvm_cpu_context, sys_regs[APDAKEYLO_EL1]));
133 DEFINE(CPU_APDBKEYLO_EL1, offsetof(struct kvm_cpu_context, sys_regs[APDBKEYLO_EL1]));
134 DEFINE(CPU_APGAKEYLO_EL1, offsetof(struct kvm_cpu_context, sys_regs[APGAKEYLO_EL1]));
135 DEFINE(CPU_USER_PT_REGS, offsetof(struct kvm_regs, regs));
136 DEFINE(HOST_CONTEXT_VCPU, offsetof(struct kvm_cpu_context, __hyp_running_vcpu));
137 DEFINE(HOST_DATA_CONTEXT, offsetof(struct kvm_host_data, host_ctxt));
138 #endif
139 #ifdef CONFIG_CPU_PM
140 DEFINE(CPU_CTX_SP, offsetof(struct cpu_suspend_ctx, sp));
141 DEFINE(MPIDR_HASH_MASK, offsetof(struct mpidr_hash, mask));
142 DEFINE(MPIDR_HASH_SHIFTS, offsetof(struct mpidr_hash, shift_aff));
143 DEFINE(SLEEP_STACK_DATA_SYSTEM_REGS, offsetof(struct sleep_stack_data, system_regs));
144 DEFINE(SLEEP_STACK_DATA_CALLEE_REGS, offsetof(struct sleep_stack_data, callee_saved_regs));
145 #endif
146 DEFINE(ARM_SMCCC_RES_X0_OFFS, offsetof(struct arm_smccc_res, a0));
147 DEFINE(ARM_SMCCC_RES_X2_OFFS, offsetof(struct arm_smccc_res, a2));
148 DEFINE(ARM_SMCCC_QUIRK_ID_OFFS, offsetof(struct arm_smccc_quirk, id));
149 DEFINE(ARM_SMCCC_QUIRK_STATE_OFFS, offsetof(struct arm_smccc_quirk, state));
150 BLANK();
151 DEFINE(HIBERN_PBE_ORIG, offsetof(struct pbe, orig_address));
152 DEFINE(HIBERN_PBE_ADDR, offsetof(struct pbe, address));
153 DEFINE(HIBERN_PBE_NEXT, offsetof(struct pbe, next));
154 DEFINE(ARM64_FTR_SYSVAL, offsetof(struct arm64_ftr_reg, sys_val));
155 BLANK();
156 #ifdef CONFIG_UNMAP_KERNEL_AT_EL0
157 DEFINE(TRAMP_VALIAS, TRAMP_VALIAS);
158 #endif
159 #ifdef CONFIG_ARM_SDE_INTERFACE
160 DEFINE(SDEI_EVENT_INTREGS, offsetof(struct sdei_registered_event, interrupted_regs));
161 DEFINE(SDEI_EVENT_PRIORITY, offsetof(struct sdei_registered_event, priority));
162 #endif
163 return 0;