2 * Copyright (C) 2001 PPC64 Team, IBM Corp
4 * This struct defines the way the registers are stored on the
5 * kernel stack during a system call or other kernel entry.
7 * this should only contain volatile regs
8 * since we can keep non-volatile in the thread_struct
9 * should set this up when only volatiles are saved
12 * Since this is going on the stack, *CARE MUST BE TAKEN* to insure
13 * that the overall structure is a multiple of 16 bytes in length.
15 * Note that the offsets of the fields in this struct correspond with
16 * the PT_* values below. This simplifies arch/powerpc/kernel/ptrace.c.
18 * This program is free software; you can redistribute it and/or
19 * modify it under the terms of the GNU General Public License
20 * as published by the Free Software Foundation; either version
21 * 2 of the License, or (at your option) any later version.
23 #ifndef _ASM_POWERPC_PTRACE_H
24 #define _ASM_POWERPC_PTRACE_H
26 #include <uapi/asm/ptrace.h>
27 #include <asm/asm-const.h>
33 struct user_pt_regs user_regs;
35 unsigned long gpr[32];
38 unsigned long orig_gpr3;
64 * Size of redzone that userspace is allowed to use below the stack
65 * pointer. This is 288 in the 64-bit big-endian ELF ABI, and 512 in
66 * the new ELFv2 little-endian ABI, so we allow the larger amount.
68 * For kernel code we allow a 288-byte redzone, in order to conserve
69 * kernel stack space; gcc currently only uses 288 bytes, and will
70 * hopefully allow explicit control of the redzone size in future.
72 #define USER_REDZONE_SIZE 512
73 #define KERNEL_REDZONE_SIZE 288
75 #define STACK_FRAME_OVERHEAD 112 /* size of minimum stack frame */
76 #define STACK_FRAME_LR_SAVE 2 /* Location of LR in stack frame */
77 #define STACK_FRAME_REGS_MARKER ASM_CONST(0x7265677368657265)
78 #define STACK_INT_FRAME_SIZE (sizeof(struct pt_regs) + \
79 STACK_FRAME_OVERHEAD + KERNEL_REDZONE_SIZE)
80 #define STACK_FRAME_MARKER 12
82 #ifdef PPC64_ELF_ABI_v2
83 #define STACK_FRAME_MIN_SIZE 32
85 #define STACK_FRAME_MIN_SIZE STACK_FRAME_OVERHEAD
88 /* Size of dummy stack frame allocated when calling signal handler. */
89 #define __SIGNAL_FRAMESIZE 128
90 #define __SIGNAL_FRAMESIZE32 64
92 #else /* __powerpc64__ */
94 #define USER_REDZONE_SIZE 0
95 #define KERNEL_REDZONE_SIZE 0
96 #define STACK_FRAME_OVERHEAD 16 /* size of minimum stack frame */
97 #define STACK_FRAME_LR_SAVE 1 /* Location of LR in stack frame */
98 #define STACK_FRAME_REGS_MARKER ASM_CONST(0x72656773)
99 #define STACK_INT_FRAME_SIZE (sizeof(struct pt_regs) + STACK_FRAME_OVERHEAD)
100 #define STACK_FRAME_MARKER 2
101 #define STACK_FRAME_MIN_SIZE STACK_FRAME_OVERHEAD
103 /* Size of stack frame allocated when calling signal handler. */
104 #define __SIGNAL_FRAMESIZE 64
106 #endif /* __powerpc64__ */
110 #define GET_IP(regs) ((regs)->nip)
111 #define GET_USP(regs) ((regs)->gpr[1])
112 #define GET_FP(regs) (0)
113 #define SET_FP(regs, val)
116 extern unsigned long profile_pc(struct pt_regs *regs);
117 #define profile_pc profile_pc
120 #include <asm-generic/ptrace.h>
122 #define kernel_stack_pointer(regs) ((regs)->gpr[1])
123 static inline int is_syscall_success(struct pt_regs *regs)
125 return !(regs->ccr & 0x10000000);
128 static inline long regs_return_value(struct pt_regs *regs)
130 if (is_syscall_success(regs))
133 return -regs->gpr[3];
136 static inline void regs_set_return_value(struct pt_regs *regs, unsigned long rc)
142 #define user_mode(regs) ((((regs)->msr) >> MSR_PR_LG) & 0x1)
144 #define user_mode(regs) (((regs)->msr & MSR_PR) != 0)
147 #define force_successful_syscall_return() \
149 set_thread_flag(TIF_NOERROR); \
153 extern int ptrace_get_reg(struct task_struct *task, int regno,
154 unsigned long *data);
155 extern int ptrace_put_reg(struct task_struct *task, int regno,
158 #define current_pt_regs() \
159 ((struct pt_regs *)((unsigned long)current_thread_info() + THREAD_SIZE) - 1)
161 * We use the least-significant bit of the trap field to indicate
162 * whether we have saved the full set of registers, or only a
163 * partial set. A 1 there means the partial set.
164 * On 4xx we use the next bit to indicate whether the exception
165 * is a critical exception (1 means it is).
167 #define FULL_REGS(regs) (((regs)->trap & 1) == 0)
168 #ifndef __powerpc64__
169 #define IS_CRITICAL_EXC(regs) (((regs)->trap & 2) != 0)
170 #define IS_MCHECK_EXC(regs) (((regs)->trap & 4) != 0)
171 #define IS_DEBUG_EXC(regs) (((regs)->trap & 8) != 0)
172 #endif /* ! __powerpc64__ */
173 #define TRAP(regs) ((regs)->trap & ~0xF)
175 #define NV_REG_POISON 0xdeadbeefdeadbeefUL
176 #define CHECK_FULL_REGS(regs) BUG_ON(regs->trap & 1)
178 #define NV_REG_POISON 0xdeadbeef
179 #define CHECK_FULL_REGS(regs) \
181 if ((regs)->trap & 1) \
182 printk(KERN_CRIT "%s: partial register set\n", __func__); \
184 #endif /* __powerpc64__ */
186 #define arch_has_single_step() (1)
187 #define arch_has_block_step() (!cpu_has_feature(CPU_FTR_601))
188 #define ARCH_HAS_USER_SINGLE_STEP_REPORT
191 * kprobe-based event tracer support
194 #include <linux/stddef.h>
195 #include <linux/thread_info.h>
196 extern int regs_query_register_offset(const char *name);
197 extern const char *regs_query_register_name(unsigned int offset);
198 #define MAX_REG_OFFSET (offsetof(struct pt_regs, dsisr))
201 * regs_get_register() - get register value from its offset
202 * @regs: pt_regs from which register value is gotten
203 * @offset: offset number of the register.
205 * regs_get_register returns the value of a register whose offset from @regs.
206 * The @offset is the offset of the register in struct pt_regs.
207 * If @offset is bigger than MAX_REG_OFFSET, this returns 0.
209 static inline unsigned long regs_get_register(struct pt_regs *regs,
212 if (unlikely(offset > MAX_REG_OFFSET))
214 return *(unsigned long *)((unsigned long)regs + offset);
218 * regs_within_kernel_stack() - check the address in the stack
219 * @regs: pt_regs which contains kernel stack pointer.
220 * @addr: address which is checked.
222 * regs_within_kernel_stack() checks @addr is within the kernel stack page(s).
223 * If @addr is within the kernel stack, it returns true. If not, returns false.
226 static inline bool regs_within_kernel_stack(struct pt_regs *regs,
229 return ((addr & ~(THREAD_SIZE - 1)) ==
230 (kernel_stack_pointer(regs) & ~(THREAD_SIZE - 1)));
234 * regs_get_kernel_stack_nth() - get Nth entry of the stack
235 * @regs: pt_regs which contains kernel stack pointer.
236 * @n: stack entry number.
238 * regs_get_kernel_stack_nth() returns @n th entry of the kernel stack which
239 * is specified by @regs. If the @n th entry is NOT in the kernel stack,
242 static inline unsigned long regs_get_kernel_stack_nth(struct pt_regs *regs,
245 unsigned long *addr = (unsigned long *)kernel_stack_pointer(regs);
247 if (regs_within_kernel_stack(regs, (unsigned long)addr))
253 #endif /* __ASSEMBLY__ */
255 #ifndef __powerpc64__
256 #else /* __powerpc64__ */
257 #define PT_FPSCR32 (PT_FPR0 + 2*32 + 1) /* each FP reg occupies 2 32-bit userspace slots */
258 #define PT_VR0_32 164 /* each Vector reg occupies 4 slots in 32-bit */
259 #define PT_VSCR_32 (PT_VR0 + 32*4 + 3)
260 #define PT_VRSAVE_32 (PT_VR0 + 33*4)
261 #define PT_VSR0_32 300 /* each VSR reg occupies 4 slots in 32-bit */
262 #endif /* __powerpc64__ */
263 #endif /* _ASM_POWERPC_PTRACE_H */