Lynx framebuffers multidomain implementation.
[linux/elbrus.git] / arch / arm / kernel / asm-offsets.c
blobe9f119ecfc31f7a1afefbe400ecd435ca7fc50d4
1 /*
2 * Copyright (C) 1995-2003 Russell King
3 * 2001-2002 Keith Owens
4 *
5 * Generate definitions needed by assembly language modules.
6 * This code generates raw asm output which is post-processed to extract
7 * and format the required data.
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
13 #include <linux/sched.h>
14 #include <linux/mm.h>
15 #include <linux/dma-mapping.h>
16 #ifdef CONFIG_KVM_ARM_HOST
17 #include <linux/kvm_host.h>
18 #endif
19 #include <asm/cacheflush.h>
20 #include <asm/glue-df.h>
21 #include <asm/glue-pf.h>
22 #include <asm/mach/arch.h>
23 #include <asm/thread_info.h>
24 #include <asm/memory.h>
25 #include <asm/procinfo.h>
26 #include <asm/suspend.h>
27 #include <asm/hardware/cache-l2x0.h>
28 #include <linux/kbuild.h>
31 * Make sure that the compiler and target are compatible.
33 #if defined(__APCS_26__)
34 #error Sorry, your compiler targets APCS-26 but this kernel requires APCS-32
35 #endif
37 * GCC 3.0, 3.1: general bad code generation.
38 * GCC 3.2.0: incorrect function argument offset calculation.
39 * GCC 3.2.x: miscompiles NEW_AUX_ENT in fs/binfmt_elf.c
40 * (http://gcc.gnu.org/PR8896) and incorrect structure
41 * initialisation in fs/jffs2/erase.c
43 #if (__GNUC__ == 3 && __GNUC_MINOR__ < 3)
44 #error Your compiler is too buggy; it is known to miscompile kernels.
45 #error Known good compilers: 3.3
46 #endif
48 int main(void)
50 DEFINE(TSK_ACTIVE_MM, offsetof(struct task_struct, active_mm));
51 #ifdef CONFIG_CC_STACKPROTECTOR
52 DEFINE(TSK_STACK_CANARY, offsetof(struct task_struct, stack_canary));
53 #endif
54 BLANK();
55 DEFINE(TI_FLAGS, offsetof(struct thread_info, flags));
56 DEFINE(TI_PREEMPT, offsetof(struct thread_info, preempt_count));
57 DEFINE(TI_PREEMPT_LAZY, offsetof(struct thread_info, preempt_lazy_count));
58 DEFINE(TI_ADDR_LIMIT, offsetof(struct thread_info, addr_limit));
59 DEFINE(TI_TASK, offsetof(struct thread_info, task));
60 DEFINE(TI_EXEC_DOMAIN, offsetof(struct thread_info, exec_domain));
61 DEFINE(TI_CPU, offsetof(struct thread_info, cpu));
62 DEFINE(TI_CPU_DOMAIN, offsetof(struct thread_info, cpu_domain));
63 DEFINE(TI_CPU_SAVE, offsetof(struct thread_info, cpu_context));
64 DEFINE(TI_USED_CP, offsetof(struct thread_info, used_cp));
65 DEFINE(TI_TP_VALUE, offsetof(struct thread_info, tp_value));
66 DEFINE(TI_FPSTATE, offsetof(struct thread_info, fpstate));
67 #ifdef CONFIG_VFP
68 DEFINE(TI_VFPSTATE, offsetof(struct thread_info, vfpstate));
69 #ifdef CONFIG_SMP
70 DEFINE(VFP_CPU, offsetof(union vfp_state, hard.cpu));
71 #endif
72 #endif
73 #ifdef CONFIG_ARM_THUMBEE
74 DEFINE(TI_THUMBEE_STATE, offsetof(struct thread_info, thumbee_state));
75 #endif
76 #ifdef CONFIG_IWMMXT
77 DEFINE(TI_IWMMXT_STATE, offsetof(struct thread_info, fpstate.iwmmxt));
78 #endif
79 #ifdef CONFIG_CRUNCH
80 DEFINE(TI_CRUNCH_STATE, offsetof(struct thread_info, crunchstate));
81 #endif
82 BLANK();
83 DEFINE(S_R0, offsetof(struct pt_regs, ARM_r0));
84 DEFINE(S_R1, offsetof(struct pt_regs, ARM_r1));
85 DEFINE(S_R2, offsetof(struct pt_regs, ARM_r2));
86 DEFINE(S_R3, offsetof(struct pt_regs, ARM_r3));
87 DEFINE(S_R4, offsetof(struct pt_regs, ARM_r4));
88 DEFINE(S_R5, offsetof(struct pt_regs, ARM_r5));
89 DEFINE(S_R6, offsetof(struct pt_regs, ARM_r6));
90 DEFINE(S_R7, offsetof(struct pt_regs, ARM_r7));
91 DEFINE(S_R8, offsetof(struct pt_regs, ARM_r8));
92 DEFINE(S_R9, offsetof(struct pt_regs, ARM_r9));
93 DEFINE(S_R10, offsetof(struct pt_regs, ARM_r10));
94 DEFINE(S_FP, offsetof(struct pt_regs, ARM_fp));
95 DEFINE(S_IP, offsetof(struct pt_regs, ARM_ip));
96 DEFINE(S_SP, offsetof(struct pt_regs, ARM_sp));
97 DEFINE(S_LR, offsetof(struct pt_regs, ARM_lr));
98 DEFINE(S_PC, offsetof(struct pt_regs, ARM_pc));
99 DEFINE(S_PSR, offsetof(struct pt_regs, ARM_cpsr));
100 DEFINE(S_OLD_R0, offsetof(struct pt_regs, ARM_ORIG_r0));
101 DEFINE(S_FRAME_SIZE, sizeof(struct pt_regs));
102 BLANK();
103 #ifdef CONFIG_CACHE_L2X0
104 DEFINE(L2X0_R_PHY_BASE, offsetof(struct l2x0_regs, phy_base));
105 DEFINE(L2X0_R_AUX_CTRL, offsetof(struct l2x0_regs, aux_ctrl));
106 DEFINE(L2X0_R_TAG_LATENCY, offsetof(struct l2x0_regs, tag_latency));
107 DEFINE(L2X0_R_DATA_LATENCY, offsetof(struct l2x0_regs, data_latency));
108 DEFINE(L2X0_R_FILTER_START, offsetof(struct l2x0_regs, filter_start));
109 DEFINE(L2X0_R_FILTER_END, offsetof(struct l2x0_regs, filter_end));
110 DEFINE(L2X0_R_PREFETCH_CTRL, offsetof(struct l2x0_regs, prefetch_ctrl));
111 DEFINE(L2X0_R_PWR_CTRL, offsetof(struct l2x0_regs, pwr_ctrl));
112 BLANK();
113 #endif
114 #ifdef CONFIG_CPU_HAS_ASID
115 DEFINE(MM_CONTEXT_ID, offsetof(struct mm_struct, context.id.counter));
116 BLANK();
117 #endif
118 DEFINE(VMA_VM_MM, offsetof(struct vm_area_struct, vm_mm));
119 DEFINE(VMA_VM_FLAGS, offsetof(struct vm_area_struct, vm_flags));
120 BLANK();
121 DEFINE(VM_EXEC, VM_EXEC);
122 BLANK();
123 DEFINE(PAGE_SZ, PAGE_SIZE);
124 BLANK();
125 DEFINE(SYS_ERROR0, 0x9f0000);
126 BLANK();
127 DEFINE(SIZEOF_MACHINE_DESC, sizeof(struct machine_desc));
128 DEFINE(MACHINFO_TYPE, offsetof(struct machine_desc, nr));
129 DEFINE(MACHINFO_NAME, offsetof(struct machine_desc, name));
130 BLANK();
131 DEFINE(PROC_INFO_SZ, sizeof(struct proc_info_list));
132 DEFINE(PROCINFO_INITFUNC, offsetof(struct proc_info_list, __cpu_flush));
133 DEFINE(PROCINFO_MM_MMUFLAGS, offsetof(struct proc_info_list, __cpu_mm_mmu_flags));
134 DEFINE(PROCINFO_IO_MMUFLAGS, offsetof(struct proc_info_list, __cpu_io_mmu_flags));
135 BLANK();
136 #ifdef MULTI_DABORT
137 DEFINE(PROCESSOR_DABT_FUNC, offsetof(struct processor, _data_abort));
138 #endif
139 #ifdef MULTI_PABORT
140 DEFINE(PROCESSOR_PABT_FUNC, offsetof(struct processor, _prefetch_abort));
141 #endif
142 #ifdef MULTI_CPU
143 DEFINE(CPU_SLEEP_SIZE, offsetof(struct processor, suspend_size));
144 DEFINE(CPU_DO_SUSPEND, offsetof(struct processor, do_suspend));
145 DEFINE(CPU_DO_RESUME, offsetof(struct processor, do_resume));
146 #endif
147 #ifdef MULTI_CACHE
148 DEFINE(CACHE_FLUSH_KERN_ALL, offsetof(struct cpu_cache_fns, flush_kern_all));
149 #endif
150 #ifdef CONFIG_ARM_CPU_SUSPEND
151 DEFINE(SLEEP_SAVE_SP_SZ, sizeof(struct sleep_save_sp));
152 DEFINE(SLEEP_SAVE_SP_PHYS, offsetof(struct sleep_save_sp, save_ptr_stash_phys));
153 DEFINE(SLEEP_SAVE_SP_VIRT, offsetof(struct sleep_save_sp, save_ptr_stash));
154 #endif
155 BLANK();
156 DEFINE(DMA_BIDIRECTIONAL, DMA_BIDIRECTIONAL);
157 DEFINE(DMA_TO_DEVICE, DMA_TO_DEVICE);
158 DEFINE(DMA_FROM_DEVICE, DMA_FROM_DEVICE);
159 BLANK();
160 DEFINE(CACHE_WRITEBACK_ORDER, __CACHE_WRITEBACK_ORDER);
161 DEFINE(CACHE_WRITEBACK_GRANULE, __CACHE_WRITEBACK_GRANULE);
162 BLANK();
163 #ifdef CONFIG_KVM_ARM_HOST
164 DEFINE(VCPU_KVM, offsetof(struct kvm_vcpu, kvm));
165 DEFINE(VCPU_MIDR, offsetof(struct kvm_vcpu, arch.midr));
166 DEFINE(VCPU_CP15, offsetof(struct kvm_vcpu, arch.cp15));
167 DEFINE(VCPU_VFP_GUEST, offsetof(struct kvm_vcpu, arch.vfp_guest));
168 DEFINE(VCPU_VFP_HOST, offsetof(struct kvm_vcpu, arch.host_cpu_context));
169 DEFINE(VCPU_REGS, offsetof(struct kvm_vcpu, arch.regs));
170 DEFINE(VCPU_USR_REGS, offsetof(struct kvm_vcpu, arch.regs.usr_regs));
171 DEFINE(VCPU_SVC_REGS, offsetof(struct kvm_vcpu, arch.regs.svc_regs));
172 DEFINE(VCPU_ABT_REGS, offsetof(struct kvm_vcpu, arch.regs.abt_regs));
173 DEFINE(VCPU_UND_REGS, offsetof(struct kvm_vcpu, arch.regs.und_regs));
174 DEFINE(VCPU_IRQ_REGS, offsetof(struct kvm_vcpu, arch.regs.irq_regs));
175 DEFINE(VCPU_FIQ_REGS, offsetof(struct kvm_vcpu, arch.regs.fiq_regs));
176 DEFINE(VCPU_PC, offsetof(struct kvm_vcpu, arch.regs.usr_regs.ARM_pc));
177 DEFINE(VCPU_CPSR, offsetof(struct kvm_vcpu, arch.regs.usr_regs.ARM_cpsr));
178 DEFINE(VCPU_HCR, offsetof(struct kvm_vcpu, arch.hcr));
179 DEFINE(VCPU_IRQ_LINES, offsetof(struct kvm_vcpu, arch.irq_lines));
180 DEFINE(VCPU_HSR, offsetof(struct kvm_vcpu, arch.fault.hsr));
181 DEFINE(VCPU_HxFAR, offsetof(struct kvm_vcpu, arch.fault.hxfar));
182 DEFINE(VCPU_HPFAR, offsetof(struct kvm_vcpu, arch.fault.hpfar));
183 DEFINE(VCPU_HYP_PC, offsetof(struct kvm_vcpu, arch.fault.hyp_pc));
184 #ifdef CONFIG_KVM_ARM_VGIC
185 DEFINE(VCPU_VGIC_CPU, offsetof(struct kvm_vcpu, arch.vgic_cpu));
186 DEFINE(VGIC_CPU_HCR, offsetof(struct vgic_cpu, vgic_hcr));
187 DEFINE(VGIC_CPU_VMCR, offsetof(struct vgic_cpu, vgic_vmcr));
188 DEFINE(VGIC_CPU_MISR, offsetof(struct vgic_cpu, vgic_misr));
189 DEFINE(VGIC_CPU_EISR, offsetof(struct vgic_cpu, vgic_eisr));
190 DEFINE(VGIC_CPU_ELRSR, offsetof(struct vgic_cpu, vgic_elrsr));
191 DEFINE(VGIC_CPU_APR, offsetof(struct vgic_cpu, vgic_apr));
192 DEFINE(VGIC_CPU_LR, offsetof(struct vgic_cpu, vgic_lr));
193 DEFINE(VGIC_CPU_NR_LR, offsetof(struct vgic_cpu, nr_lr));
194 #ifdef CONFIG_KVM_ARM_TIMER
195 DEFINE(VCPU_TIMER_CNTV_CTL, offsetof(struct kvm_vcpu, arch.timer_cpu.cntv_ctl));
196 DEFINE(VCPU_TIMER_CNTV_CVAL, offsetof(struct kvm_vcpu, arch.timer_cpu.cntv_cval));
197 DEFINE(KVM_TIMER_CNTVOFF, offsetof(struct kvm, arch.timer.cntvoff));
198 DEFINE(KVM_TIMER_ENABLED, offsetof(struct kvm, arch.timer.enabled));
199 #endif
200 DEFINE(KVM_VGIC_VCTRL, offsetof(struct kvm, arch.vgic.vctrl_base));
201 #endif
202 DEFINE(KVM_VTTBR, offsetof(struct kvm, arch.vttbr));
203 #endif
204 return 0;