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autoconf.c
(3.3 KB)
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bcopy_page.S
(4.14 KB)
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bcopyinout.S
(3.35 KB)
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bcopyinout_xscale.S
(19.19 KB)
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blockio.S
(13.19 KB)
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bus_space_asm_generic.S
(5.43 KB)
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bus_space_base.c
(4.8 KB)
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bus_space_generic.c
(4.1 KB)
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busdma_machdep.c
(50.91 KB)
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copystr.S
(3.29 KB)
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cpu_asm-v6.S
(7.88 KB)
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cpufunc.c
(8.69 KB)
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cpufunc_asm.S
(2.53 KB)
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cpufunc_asm_arm11x6.S
(3.5 KB)
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cpufunc_asm_armv7.S
(1.82 KB)
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cpufunc_asm_pj4b.S
(3.47 KB)
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cpuinfo.c
(14.82 KB)
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db_disasm.c
(2.58 KB)
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db_interface.c
(7.03 KB)
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db_trace.c
(4.69 KB)
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debug_monitor.c
(24 KB)
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disassem.c
(20.16 KB)
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dump_machdep.c
(2.95 KB)
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elf_machdep.c
(8.8 KB)
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elf_note.S
(1.56 KB)
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exception.S
(14.21 KB)
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fiq.c
(4.69 KB)
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fiq_subr.S
(2.77 KB)
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fusu.S
(5.61 KB)
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gdb_machdep.c
(3.62 KB)
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genassym.c
(5.29 KB)
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generic_timer.c
(13.62 KB)
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gic.c
(32.64 KB)
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gic.h
(2.64 KB)
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gic_acpi.c
(9.14 KB)
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gic_common.h
(4.19 KB)
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gic_fdt.c
(9.69 KB)
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hypervisor-stub.S
(2.61 KB)
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identcpu-v6.c
(10.16 KB)
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in_cksum.c
(4.23 KB)
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in_cksum_arm.S
(6.87 KB)
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locore-v6.S
(14.28 KB)
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locore.S
(1.63 KB)
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machdep.c
(23.79 KB)
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machdep_boot.c
(12.48 KB)
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machdep_intr.c
(7.63 KB)
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machdep_kdb.c
(3.77 KB)
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machdep_ptrace.c
(8.1 KB)
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mem.c
(5.03 KB)
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minidump_machdep.c
(8.77 KB)
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mp_machdep.c
(8.58 KB)
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mpcore_timer.c
(15.71 KB)
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mpcore_timervar.h
(2.03 KB)
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nexus.c
(11.33 KB)
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nexusvar.h
(1.54 KB)
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ofw_machdep.c
(2.28 KB)
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pl190.c
(7.63 KB)
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pl310.c
(16.9 KB)
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platform.c
(5.31 KB)
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platform_if.m
(4.14 KB)
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platform_pl310_if.m
(2.44 KB)
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pmap-v6.c
(187.97 KB)
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pmu.c
(3.98 KB)
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pmu.h
(1.8 KB)
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pmu_fdt.c
(5.87 KB)
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ptrace_machdep.c
(1.89 KB)
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sc_machdep.c
(2.21 KB)
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setcpsr.S
(2.52 KB)
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setstack.s
(3.16 KB)
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stack_machdep.c
(2.65 KB)
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stdatomic.c
(13.88 KB)
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support.S
(51.78 KB)
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swtch-v6.S
(13.07 KB)
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swtch.S
(4.68 KB)
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sys_machdep.c
(5.24 KB)
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syscall.c
(5.54 KB)
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trap-v6.c
(19.14 KB)
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uio_machdep.c
(3.95 KB)
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undefined.c
(9.07 KB)
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unwind.c
(16.62 KB)
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vfp.c
(9.1 KB)
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vm_machdep.c
(8.38 KB)
Editing: vm_machdep.c
/*- * SPDX-License-Identifier: BSD-4-Clause * * Copyright (c) 1982, 1986 The Regents of the University of California. * Copyright (c) 1989, 1990 William Jolitz * Copyright (c) 1994 John Dyson * All rights reserved. * * This code is derived from software contributed to Berkeley by * the Systems Programming Group of the University of Utah Computer * Science Department, and William Jolitz. * * Redistribution and use in source and binary :forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * 3. All advertising materials mentioning features or use of this software * must display the following acknowledgement: * This product includes software developed by the University of * California, Berkeley and its contributors. * 4. Neither the name of the University nor the names of its contributors * may be used to endorse or promote products derived from this software * without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. * * from: @(#)vm_machdep.c 7.3 (Berkeley) 5/13/91 * Utah $Hdr: vm_machdep.c 1.16.1.1 89/06/23$ */ #include <sys/cdefs.h> __FBSDID("$FreeBSD$"); #include <sys/param.h> #include <sys/systm.h> #include <sys/kernel.h> #include <sys/malloc.h> #include <sys/mbuf.h> #include <sys/proc.h> #include <sys/socketvar.h> #include <sys/syscall.h> #include <sys/sysctl.h> #include <sys/sysent.h> #include <sys/unistd.h> #include <machine/cpu.h> #include <machine/frame.h> #include <machine/pcb.h> #include <machine/sysarch.h> #include <sys/lock.h> #include <sys/mutex.h> #include <vm/vm.h> #include <vm/pmap.h> #include <vm/vm_extern.h> #include <vm/vm_kern.h> #include <vm/vm_page.h> #include <vm/vm_map.h> #include <vm/vm_param.h> #include <vm/vm_pageout.h> #include <vm/uma.h> #include <vm/uma_int.h> #include <machine/md_var.h> #include <machine/vfp.h> /* * struct switchframe and trapframe must both be a multiple of 8 * for correct stack alignment. */ _Static_assert((sizeof(struct switchframe) % 8) == 0, "Bad alignment"); _Static_assert((sizeof(struct trapframe) % 8) == 0, "Bad alignment"); uint32_t initial_fpscr = VFPSCR_DN | VFPSCR_FZ; /* * Finish a fork operation, with process p2 nearly set up. * Copy and update the pcb, set up the stack so that the child * ready to run and return to user mode. */ void cpu_fork(struct thread *td1, struct proc *p2, struct thread *td2, int flags) { struct pcb *pcb2; struct trapframe *tf; struct mdproc *mdp2; if ((flags & RFPROC) == 0) return; /* Point the pcb to the top of the stack */ pcb2 = (struct pcb *) (td2->td_kstack + td2->td_kstack_pages * PAGE_SIZE) - 1; #ifdef VFP /* Store actual state of VFP */ if (curthread == td1) { critical_enter(); vfp_store(&td1->td_pcb->pcb_vfpstate, false); critical_exit(); } #endif td2->td_pcb = pcb2; /* Clone td1's pcb */ bcopy(td1->td_pcb, pcb2, sizeof(*pcb2)); /* Point to mdproc and then copy over td1's contents */ mdp2 = &p2->p_md; bcopy(&td1->td_proc->p_md, mdp2, sizeof(*mdp2)); /* Point the frame to the stack in front of pcb and copy td1's frame */ td2->td_frame = (struct trapframe *)pcb2 - 1; *td2->td_frame = *td1->td_frame; /* * Create a new fresh stack for the new process. * Copy the trap frame for the return to user mode as if from a * syscall. This copies most of the user mode register values. */ pmap_set_pcb_pagedir(vmspace_pmap(p2->p_vmspace), pcb2); pcb2->pcb_regs.sf_r4 = (register_t)fork_return; pcb2->pcb_regs.sf_r5 = (register_t)td2; pcb2->pcb_regs.sf_lr = (register_t)fork_trampoline; pcb2->pcb_regs.sf_sp = STACKALIGN(td2->td_frame); pcb2->pcb_regs.sf_tpidrurw = (register_t)get_tls(); pcb2->pcb_vfpcpu = -1; pcb2->pcb_vfpstate.fpscr = initial_fpscr; tf = td2->td_frame; tf->tf_spsr &= ~PSR_C; tf->tf_r0 = 0; tf->tf_r1 = 0; /* Setup to release spin count in fork_exit(). */ td2->td_md.md_spinlock_count = 1; td2->td_md.md_saved_cspr = PSR_SVC32_MODE; } void cpu_thread_swapin(struct thread *td) { } void cpu_thread_swapout(struct thread *td) { } void cpu_set_syscall_retval(struct thread *td, int error) { struct trapframe *frame; frame = td->td_frame; switch (error) { case 0: frame->tf_r0 = td->td_retval[0]; frame->tf_r1 = td->td_retval[1]; frame->tf_spsr &= ~PSR_C; /* carry bit */ break; case ERESTART: /* * Reconstruct the pc to point at the swi. */ #if __ARM_ARCH >= 7 if ((frame->tf_spsr & PSR_T) != 0) frame->tf_pc -= THUMB_INSN_SIZE; else #endif frame->tf_pc -= INSN_SIZE; break; case EJUSTRETURN: /* nothing to do */ break; default: frame->tf_r0 = error; frame->tf_spsr |= PSR_C; /* carry bit */ break; } } /* * Initialize machine state, mostly pcb and trap frame for a new * thread, about to return to userspace. Put enough state in the new * thread's PCB to get it to go back to the fork_return(), which * finalizes the thread state and handles peculiarities of the first * return to userspace for the new thread. */ void cpu_copy_thread(struct thread *td, struct thread *td0) { bcopy(td0->td_frame, td->td_frame, sizeof(struct trapframe)); bcopy(td0->td_pcb, td->td_pcb, sizeof(struct pcb)); td->td_pcb->pcb_regs.sf_r4 = (register_t)fork_return; td->td_pcb->pcb_regs.sf_r5 = (register_t)td; td->td_pcb->pcb_regs.sf_lr = (register_t)fork_trampoline; td->td_pcb->pcb_regs.sf_sp = STACKALIGN(td->td_frame); td->td_frame->tf_spsr &= ~PSR_C; td->td_frame->tf_r0 = 0; /* Setup to release spin count in fork_exit(). */ td->td_md.md_spinlock_count = 1; td->td_md.md_saved_cspr = PSR_SVC32_MODE; } /* * Set that machine state for performing an upcall that starts * the entry function with the given argument. */ void cpu_set_upcall(struct thread *td, void (*entry)(void *), void *arg, stack_t *stack) { struct trapframe *tf = td->td_frame; tf->tf_usr_sp = STACKALIGN((int)stack->ss_sp + stack->ss_size); tf->tf_pc = (int)entry; tf->tf_r0 = (int)arg; tf->tf_spsr = PSR_USR32_MODE; } int cpu_set_user_tls(struct thread *td, void *tls_base) { td->td_pcb->pcb_regs.sf_tpidrurw = (register_t)tls_base; if (td == curthread) set_tls(tls_base); return (0); } void cpu_thread_exit(struct thread *td) { } void cpu_thread_alloc(struct thread *td) { td->td_pcb = (struct pcb *)(td->td_kstack + td->td_kstack_pages * PAGE_SIZE) - 1; /* * Ensure td_frame is aligned to an 8 byte boundary as it will be * placed into the stack pointer which must be 8 byte aligned in * the ARM EABI. */ td->td_frame = (struct trapframe *)((caddr_t)td->td_pcb) - 1; } void cpu_thread_free(struct thread *td) { } void cpu_thread_clean(struct thread *td) { } /* * Intercept the return address from a freshly forked process that has NOT * been scheduled yet. * * This is needed to make kernel threads stay in kernel mode. */ void cpu_fork_kthread_handler(struct thread *td, void (*func)(void *), void *arg) { td->td_pcb->pcb_regs.sf_r4 = (register_t)func; /* function */ td->td_pcb->pcb_regs.sf_r5 = (register_t)arg; /* first arg */ } /* * Software interrupt handler for queued VM system processing. */ void swi_vm(void *dummy) { if (busdma_swi_pending) busdma_swi(); } void cpu_exit(struct thread *td) { } bool cpu_exec_vmspace_reuse(struct proc *p __unused, vm_map_t map __unused) { return (true); } int cpu_procctl(struct thread *td __unused, int idtype __unused, id_t id __unused, int com __unused, void *data __unused) { return (EINVAL); }
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