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v3.15
 
  1/*
  2 * arch/sh/kernel/process.c
  3 *
  4 * This file handles the architecture-dependent parts of process handling..
  5 *
  6 *  Copyright (C) 1995  Linus Torvalds
  7 *
  8 *  SuperH version:  Copyright (C) 1999, 2000  Niibe Yutaka & Kaz Kojima
  9 *		     Copyright (C) 2006 Lineo Solutions Inc. support SH4A UBC
 10 *		     Copyright (C) 2002 - 2008  Paul Mundt
 11 *
 12 * This file is subject to the terms and conditions of the GNU General Public
 13 * License.  See the file "COPYING" in the main directory of this archive
 14 * for more details.
 15 */
 16#include <linux/module.h>
 17#include <linux/mm.h>
 
 
 
 18#include <linux/slab.h>
 19#include <linux/elfcore.h>
 20#include <linux/kallsyms.h>
 21#include <linux/fs.h>
 22#include <linux/ftrace.h>
 23#include <linux/hw_breakpoint.h>
 24#include <linux/prefetch.h>
 25#include <linux/stackprotector.h>
 26#include <asm/uaccess.h>
 27#include <asm/mmu_context.h>
 28#include <asm/fpu.h>
 29#include <asm/syscalls.h>
 30#include <asm/switch_to.h>
 31
 32void show_regs(struct pt_regs * regs)
 33{
 34	printk("\n");
 35	show_regs_print_info(KERN_DEFAULT);
 36
 37	print_symbol("PC is at %s\n", instruction_pointer(regs));
 38	print_symbol("PR is at %s\n", regs->pr);
 39
 40	printk("PC  : %08lx SP  : %08lx SR  : %08lx ",
 41	       regs->pc, regs->regs[15], regs->sr);
 42#ifdef CONFIG_MMU
 43	printk("TEA : %08x\n", __raw_readl(MMU_TEA));
 44#else
 45	printk("\n");
 46#endif
 47
 48	printk("R0  : %08lx R1  : %08lx R2  : %08lx R3  : %08lx\n",
 49	       regs->regs[0],regs->regs[1],
 50	       regs->regs[2],regs->regs[3]);
 51	printk("R4  : %08lx R5  : %08lx R6  : %08lx R7  : %08lx\n",
 52	       regs->regs[4],regs->regs[5],
 53	       regs->regs[6],regs->regs[7]);
 54	printk("R8  : %08lx R9  : %08lx R10 : %08lx R11 : %08lx\n",
 55	       regs->regs[8],regs->regs[9],
 56	       regs->regs[10],regs->regs[11]);
 57	printk("R12 : %08lx R13 : %08lx R14 : %08lx\n",
 58	       regs->regs[12],regs->regs[13],
 59	       regs->regs[14]);
 60	printk("MACH: %08lx MACL: %08lx GBR : %08lx PR  : %08lx\n",
 61	       regs->mach, regs->macl, regs->gbr, regs->pr);
 62
 63	show_trace(NULL, (unsigned long *)regs->regs[15], regs);
 64	show_code(regs);
 65}
 66
 67void start_thread(struct pt_regs *regs, unsigned long new_pc,
 68		  unsigned long new_sp)
 69{
 70	regs->pr = 0;
 71	regs->sr = SR_FD;
 72	regs->pc = new_pc;
 73	regs->regs[15] = new_sp;
 74
 75	free_thread_xstate(current);
 76}
 77EXPORT_SYMBOL(start_thread);
 78
 79/*
 80 * Free current thread data structures etc..
 81 */
 82void exit_thread(void)
 83{
 84}
 85
 86void flush_thread(void)
 87{
 88	struct task_struct *tsk = current;
 89
 90	flush_ptrace_hw_breakpoint(tsk);
 91
 92#if defined(CONFIG_SH_FPU)
 93	/* Forget lazy FPU state */
 94	clear_fpu(tsk, task_pt_regs(tsk));
 95	clear_used_math();
 96#endif
 97}
 98
 99void release_thread(struct task_struct *dead_task)
100{
101	/* do nothing */
102}
103
104/* Fill in the fpu structure for a core dump.. */
105int dump_fpu(struct pt_regs *regs, elf_fpregset_t *fpu)
106{
107	int fpvalid = 0;
108
109#if defined(CONFIG_SH_FPU)
110	struct task_struct *tsk = current;
111
112	fpvalid = !!tsk_used_math(tsk);
113	if (fpvalid)
114		fpvalid = !fpregs_get(tsk, NULL, 0,
115				      sizeof(struct user_fpu_struct),
116				      fpu, NULL);
117#endif
118
119	return fpvalid;
120}
121EXPORT_SYMBOL(dump_fpu);
122
123asmlinkage void ret_from_fork(void);
124asmlinkage void ret_from_kernel_thread(void);
125
126int copy_thread(unsigned long clone_flags, unsigned long usp,
127		unsigned long arg, struct task_struct *p)
128{
 
 
 
129	struct thread_info *ti = task_thread_info(p);
130	struct pt_regs *childregs;
131
132#if defined(CONFIG_SH_DSP)
133	struct task_struct *tsk = current;
134
135	if (is_dsp_enabled(tsk)) {
136		/* We can use the __save_dsp or just copy the struct:
137		 * __save_dsp(p);
138		 * p->thread.dsp_status.status |= SR_DSP
139		 */
140		p->thread.dsp_status = tsk->thread.dsp_status;
141	}
142#endif
143
144	memset(p->thread.ptrace_bps, 0, sizeof(p->thread.ptrace_bps));
145
146	childregs = task_pt_regs(p);
147	p->thread.sp = (unsigned long) childregs;
148	if (unlikely(p->flags & PF_KTHREAD)) {
149		memset(childregs, 0, sizeof(struct pt_regs));
150		p->thread.pc = (unsigned long) ret_from_kernel_thread;
151		childregs->regs[4] = arg;
152		childregs->regs[5] = usp;
153		childregs->sr = SR_MD;
154#if defined(CONFIG_SH_FPU)
155		childregs->sr |= SR_FD;
156#endif
157		ti->addr_limit = KERNEL_DS;
158		ti->status &= ~TS_USEDFPU;
159		p->thread.fpu_counter = 0;
160		return 0;
161	}
162	*childregs = *current_pt_regs();
163
164	if (usp)
165		childregs->regs[15] = usp;
166	ti->addr_limit = USER_DS;
167
168	if (clone_flags & CLONE_SETTLS)
169		childregs->gbr = childregs->regs[0];
170
171	childregs->regs[0] = 0; /* Set return value for child */
172	p->thread.pc = (unsigned long) ret_from_fork;
173	return 0;
174}
175
176/*
177 *	switch_to(x,y) should switch tasks from x to y.
178 *
179 */
180__notrace_funcgraph struct task_struct *
181__switch_to(struct task_struct *prev, struct task_struct *next)
182{
183	struct thread_struct *next_t = &next->thread;
184
185#if defined(CONFIG_CC_STACKPROTECTOR) && !defined(CONFIG_SMP)
186	__stack_chk_guard = next->stack_canary;
187#endif
188
189	unlazy_fpu(prev, task_pt_regs(prev));
190
191	/* we're going to use this soon, after a few expensive things */
192	if (next->thread.fpu_counter > 5)
193		prefetch(next_t->xstate);
194
195#ifdef CONFIG_MMU
196	/*
197	 * Restore the kernel mode register
198	 *	k7 (r7_bank1)
199	 */
200	asm volatile("ldc	%0, r7_bank"
201		     : /* no output */
202		     : "r" (task_thread_info(next)));
203#endif
204
205	/*
206	 * If the task has used fpu the last 5 timeslices, just do a full
207	 * restore of the math state immediately to avoid the trap; the
208	 * chances of needing FPU soon are obviously high now
209	 */
210	if (next->thread.fpu_counter > 5)
211		__fpu_state_restore();
212
213	return prev;
214}
215
216unsigned long get_wchan(struct task_struct *p)
217{
218	unsigned long pc;
219
220	if (!p || p == current || p->state == TASK_RUNNING)
221		return 0;
222
223	/*
224	 * The same comment as on the Alpha applies here, too ...
225	 */
226	pc = thread_saved_pc(p);
227
228#ifdef CONFIG_FRAME_POINTER
229	if (in_sched_functions(pc)) {
230		unsigned long schedule_frame = (unsigned long)p->thread.sp;
231		return ((unsigned long *)schedule_frame)[21];
232	}
233#endif
234
235	return pc;
236}
v6.13.7
  1// SPDX-License-Identifier: GPL-2.0
  2/*
  3 * arch/sh/kernel/process.c
  4 *
  5 * This file handles the architecture-dependent parts of process handling..
  6 *
  7 *  Copyright (C) 1995  Linus Torvalds
  8 *
  9 *  SuperH version:  Copyright (C) 1999, 2000  Niibe Yutaka & Kaz Kojima
 10 *		     Copyright (C) 2006 Lineo Solutions Inc. support SH4A UBC
 11 *		     Copyright (C) 2002 - 2008  Paul Mundt
 
 
 
 
 12 */
 13#include <linux/module.h>
 14#include <linux/mm.h>
 15#include <linux/sched/debug.h>
 16#include <linux/sched/task.h>
 17#include <linux/sched/task_stack.h>
 18#include <linux/slab.h>
 19#include <linux/elfcore.h>
 
 20#include <linux/fs.h>
 21#include <linux/ftrace.h>
 22#include <linux/hw_breakpoint.h>
 23#include <linux/prefetch.h>
 24#include <linux/stackprotector.h>
 25#include <linux/uaccess.h>
 26#include <asm/mmu_context.h>
 27#include <asm/fpu.h>
 28#include <asm/syscalls.h>
 29#include <asm/switch_to.h>
 30
 31void show_regs(struct pt_regs * regs)
 32{
 33	pr_info("\n");
 34	show_regs_print_info(KERN_DEFAULT);
 35
 36	pr_info("PC is at %pS\n", (void *)instruction_pointer(regs));
 37	pr_info("PR is at %pS\n", (void *)regs->pr);
 38
 39	pr_info("PC  : %08lx SP  : %08lx SR  : %08lx ", regs->pc,
 40		regs->regs[15], regs->sr);
 41#ifdef CONFIG_MMU
 42	pr_cont("TEA : %08x\n", __raw_readl(MMU_TEA));
 43#else
 44	pr_cont("\n");
 45#endif
 46
 47	pr_info("R0  : %08lx R1  : %08lx R2  : %08lx R3  : %08lx\n",
 48		regs->regs[0], regs->regs[1], regs->regs[2], regs->regs[3]);
 49	pr_info("R4  : %08lx R5  : %08lx R6  : %08lx R7  : %08lx\n",
 50		regs->regs[4], regs->regs[5], regs->regs[6], regs->regs[7]);
 51	pr_info("R8  : %08lx R9  : %08lx R10 : %08lx R11 : %08lx\n",
 52		regs->regs[8], regs->regs[9], regs->regs[10], regs->regs[11]);
 53	pr_info("R12 : %08lx R13 : %08lx R14 : %08lx\n",
 54		regs->regs[12], regs->regs[13], regs->regs[14]);
 55	pr_info("MACH: %08lx MACL: %08lx GBR : %08lx PR  : %08lx\n",
 56		regs->mach, regs->macl, regs->gbr, regs->pr);
 
 
 
 
 57
 58	show_trace(NULL, (unsigned long *)regs->regs[15], regs, KERN_DEFAULT);
 59	show_code(regs);
 60}
 61
 62void start_thread(struct pt_regs *regs, unsigned long new_pc,
 63		  unsigned long new_sp)
 64{
 65	regs->pr = 0;
 66	regs->sr = SR_FD;
 67	regs->pc = new_pc;
 68	regs->regs[15] = new_sp;
 69
 70	free_thread_xstate(current);
 71}
 72EXPORT_SYMBOL(start_thread);
 73
 
 
 
 
 
 
 
 74void flush_thread(void)
 75{
 76	struct task_struct *tsk = current;
 77
 78	flush_ptrace_hw_breakpoint(tsk);
 79
 80#if defined(CONFIG_SH_FPU)
 81	/* Forget lazy FPU state */
 82	clear_fpu(tsk, task_pt_regs(tsk));
 83	clear_used_math();
 84#endif
 85}
 86
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 87asmlinkage void ret_from_fork(void);
 88asmlinkage void ret_from_kernel_thread(void);
 89
 90int copy_thread(struct task_struct *p, const struct kernel_clone_args *args)
 
 91{
 92	unsigned long clone_flags = args->flags;
 93	unsigned long usp = args->stack;
 94	unsigned long tls = args->tls;
 95	struct thread_info *ti = task_thread_info(p);
 96	struct pt_regs *childregs;
 97
 98#if defined(CONFIG_SH_DSP)
 99	struct task_struct *tsk = current;
100
101	if (is_dsp_enabled(tsk)) {
102		/* We can use the __save_dsp or just copy the struct:
103		 * __save_dsp(p);
104		 * p->thread.dsp_status.status |= SR_DSP
105		 */
106		p->thread.dsp_status = tsk->thread.dsp_status;
107	}
108#endif
109
110	memset(p->thread.ptrace_bps, 0, sizeof(p->thread.ptrace_bps));
111
112	childregs = task_pt_regs(p);
113	p->thread.sp = (unsigned long) childregs;
114	if (unlikely(args->fn)) {
115		memset(childregs, 0, sizeof(struct pt_regs));
116		p->thread.pc = (unsigned long) ret_from_kernel_thread;
117		childregs->regs[4] = (unsigned long) args->fn_arg;
118		childregs->regs[5] = (unsigned long) args->fn;
119		childregs->sr = SR_MD;
120#if defined(CONFIG_SH_FPU)
121		childregs->sr |= SR_FD;
122#endif
 
123		ti->status &= ~TS_USEDFPU;
124		p->thread.fpu_counter = 0;
125		return 0;
126	}
127	*childregs = *current_pt_regs();
128
129	if (usp)
130		childregs->regs[15] = usp;
 
131
132	if (clone_flags & CLONE_SETTLS)
133		childregs->gbr = tls;
134
135	childregs->regs[0] = 0; /* Set return value for child */
136	p->thread.pc = (unsigned long) ret_from_fork;
137	return 0;
138}
139
140/*
141 *	switch_to(x,y) should switch tasks from x to y.
142 *
143 */
144__notrace_funcgraph struct task_struct *
145__switch_to(struct task_struct *prev, struct task_struct *next)
146{
147	struct thread_struct *next_t = &next->thread;
148
149#if defined(CONFIG_STACKPROTECTOR) && !defined(CONFIG_SMP)
150	__stack_chk_guard = next->stack_canary;
151#endif
152
153	unlazy_fpu(prev, task_pt_regs(prev));
154
155	/* we're going to use this soon, after a few expensive things */
156	if (next->thread.fpu_counter > 5)
157		prefetch(next_t->xstate);
158
159#ifdef CONFIG_MMU
160	/*
161	 * Restore the kernel mode register
162	 *	k7 (r7_bank1)
163	 */
164	asm volatile("ldc	%0, r7_bank"
165		     : /* no output */
166		     : "r" (task_thread_info(next)));
167#endif
168
169	/*
170	 * If the task has used fpu the last 5 timeslices, just do a full
171	 * restore of the math state immediately to avoid the trap; the
172	 * chances of needing FPU soon are obviously high now
173	 */
174	if (next->thread.fpu_counter > 5)
175		__fpu_state_restore();
176
177	return prev;
178}
179
180unsigned long __get_wchan(struct task_struct *p)
181{
182	unsigned long pc;
 
 
 
183
184	/*
185	 * The same comment as on the Alpha applies here, too ...
186	 */
187	pc = thread_saved_pc(p);
188
189#ifdef CONFIG_FRAME_POINTER
190	if (in_sched_functions(pc)) {
191		unsigned long schedule_frame = (unsigned long)p->thread.sp;
192		return ((unsigned long *)schedule_frame)[21];
193	}
194#endif
195
196	return pc;
197}