Added implementations for 'set_mcontext' and 'get_ucontext_sigreturn' functions for RISC-V architecture, Both functions ensure that the CPU state and user context are properly managed. Signed-off-by: Mark Corbin <mark@dibsco.co.uk> Signed-off-by: Warner Losh <imp@bsdimp.com> Signed-off-by: Ajeet Singh <itachis@FreeBSD.org> Co-authored-by: Warner Losh <imp@bsdimp.com> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-ID: <20240916155119.14610-17-itachis@FreeBSD.org> Signed-off-by: Alistair Francis <alistair.francis@wdc.com>
		
			
				
	
	
		
			171 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			171 lines
		
	
	
		
			6.1 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 *  RISC-V signal definitions
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 *
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 *  Copyright (c) 2019 Mark Corbin
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 *
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 *  This program is free software; you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  (at your option) any later version.
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 *
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 *  This program is distributed in the hope that it will be useful,
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 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  GNU General Public License for more details.
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 *
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 *  You should have received a copy of the GNU General Public License
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 *  along with this program; if not, see <http://www.gnu.org/licenses/>.
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 */
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#include "qemu/osdep.h"
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#include "qemu.h"
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/*
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 * Compare with sendsig() in riscv/riscv/exec_machdep.c
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 * Assumes that target stack frame memory is locked.
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 */
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abi_long
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set_sigtramp_args(CPURISCVState *regs, int sig, struct target_sigframe *frame,
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    abi_ulong frame_addr, struct target_sigaction *ka)
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{
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    /*
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     * Arguments to signal handler:
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     *  a0 (10) = signal number
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     *  a1 (11) = siginfo pointer
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     *  a2 (12) = ucontext pointer
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     *  pc      = signal pointer handler
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     *  sp (2)  = sigframe pointer
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     *  ra (1)  = sigtramp at base of user stack
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     */
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     regs->gpr[xA0] = sig;
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     regs->gpr[xA1] = frame_addr +
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         offsetof(struct target_sigframe, sf_si);
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     regs->gpr[xA2] = frame_addr +
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         offsetof(struct target_sigframe, sf_uc);
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     regs->pc = ka->_sa_handler;
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     regs->gpr[xSP] = frame_addr;
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     regs->gpr[xRA] = TARGET_PS_STRINGS - TARGET_SZSIGCODE;
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     return 0;
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}
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/*
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 * Compare to riscv/riscv/exec_machdep.c sendsig()
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 * Assumes that the memory is locked if frame points to user memory.
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 */
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abi_long setup_sigframe_arch(CPURISCVState *env, abi_ulong frame_addr,
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                             struct target_sigframe *frame, int flags)
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{
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    target_mcontext_t *mcp = &frame->sf_uc.uc_mcontext;
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    get_mcontext(env, mcp, flags);
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    return 0;
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}
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/*
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 * Compare with get_mcontext() in riscv/riscv/machdep.c
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 * Assumes that the memory is locked if mcp points to user memory.
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 */
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abi_long get_mcontext(CPURISCVState *regs, target_mcontext_t *mcp,
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        int flags)
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{
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    mcp->mc_gpregs.gp_t[0] = tswap64(regs->gpr[5]);
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    mcp->mc_gpregs.gp_t[1] = tswap64(regs->gpr[6]);
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    mcp->mc_gpregs.gp_t[2] = tswap64(regs->gpr[7]);
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    mcp->mc_gpregs.gp_t[3] = tswap64(regs->gpr[28]);
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    mcp->mc_gpregs.gp_t[4] = tswap64(regs->gpr[29]);
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    mcp->mc_gpregs.gp_t[5] = tswap64(regs->gpr[30]);
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    mcp->mc_gpregs.gp_t[6] = tswap64(regs->gpr[31]);
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    mcp->mc_gpregs.gp_s[0] = tswap64(regs->gpr[8]);
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    mcp->mc_gpregs.gp_s[1] = tswap64(regs->gpr[9]);
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    mcp->mc_gpregs.gp_s[2] = tswap64(regs->gpr[18]);
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    mcp->mc_gpregs.gp_s[3] = tswap64(regs->gpr[19]);
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    mcp->mc_gpregs.gp_s[4] = tswap64(regs->gpr[20]);
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    mcp->mc_gpregs.gp_s[5] = tswap64(regs->gpr[21]);
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    mcp->mc_gpregs.gp_s[6] = tswap64(regs->gpr[22]);
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    mcp->mc_gpregs.gp_s[7] = tswap64(regs->gpr[23]);
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    mcp->mc_gpregs.gp_s[8] = tswap64(regs->gpr[24]);
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    mcp->mc_gpregs.gp_s[9] = tswap64(regs->gpr[25]);
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    mcp->mc_gpregs.gp_s[10] = tswap64(regs->gpr[26]);
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    mcp->mc_gpregs.gp_s[11] = tswap64(regs->gpr[27]);
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    mcp->mc_gpregs.gp_a[0] = tswap64(regs->gpr[10]);
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    mcp->mc_gpregs.gp_a[1] = tswap64(regs->gpr[11]);
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    mcp->mc_gpregs.gp_a[2] = tswap64(regs->gpr[12]);
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    mcp->mc_gpregs.gp_a[3] = tswap64(regs->gpr[13]);
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    mcp->mc_gpregs.gp_a[4] = tswap64(regs->gpr[14]);
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    mcp->mc_gpregs.gp_a[5] = tswap64(regs->gpr[15]);
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    mcp->mc_gpregs.gp_a[6] = tswap64(regs->gpr[16]);
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    mcp->mc_gpregs.gp_a[7] = tswap64(regs->gpr[17]);
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    if (flags & TARGET_MC_GET_CLEAR_RET) {
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        mcp->mc_gpregs.gp_a[0] = 0; /* a0 */
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        mcp->mc_gpregs.gp_a[1] = 0; /* a1 */
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        mcp->mc_gpregs.gp_t[0] = 0; /* clear syscall error */
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    }
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    mcp->mc_gpregs.gp_ra = tswap64(regs->gpr[1]);
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    mcp->mc_gpregs.gp_sp = tswap64(regs->gpr[2]);
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    mcp->mc_gpregs.gp_gp = tswap64(regs->gpr[3]);
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    mcp->mc_gpregs.gp_tp = tswap64(regs->gpr[4]);
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    mcp->mc_gpregs.gp_sepc = tswap64(regs->pc);
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    return 0;
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}
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/* Compare with set_mcontext() in riscv/riscv/exec_machdep.c */
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abi_long set_mcontext(CPURISCVState *regs, target_mcontext_t *mcp,
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        int srflag)
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{
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    regs->gpr[5] = tswap64(mcp->mc_gpregs.gp_t[0]);
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    regs->gpr[6] = tswap64(mcp->mc_gpregs.gp_t[1]);
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    regs->gpr[7] = tswap64(mcp->mc_gpregs.gp_t[2]);
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    regs->gpr[28] = tswap64(mcp->mc_gpregs.gp_t[3]);
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    regs->gpr[29] = tswap64(mcp->mc_gpregs.gp_t[4]);
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    regs->gpr[30] = tswap64(mcp->mc_gpregs.gp_t[5]);
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    regs->gpr[31] = tswap64(mcp->mc_gpregs.gp_t[6]);
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    regs->gpr[8] = tswap64(mcp->mc_gpregs.gp_s[0]);
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    regs->gpr[9] = tswap64(mcp->mc_gpregs.gp_s[1]);
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    regs->gpr[18] = tswap64(mcp->mc_gpregs.gp_s[2]);
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    regs->gpr[19] = tswap64(mcp->mc_gpregs.gp_s[3]);
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    regs->gpr[20] = tswap64(mcp->mc_gpregs.gp_s[4]);
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    regs->gpr[21] = tswap64(mcp->mc_gpregs.gp_s[5]);
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    regs->gpr[22] = tswap64(mcp->mc_gpregs.gp_s[6]);
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    regs->gpr[23] = tswap64(mcp->mc_gpregs.gp_s[7]);
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    regs->gpr[24] = tswap64(mcp->mc_gpregs.gp_s[8]);
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    regs->gpr[25] = tswap64(mcp->mc_gpregs.gp_s[9]);
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    regs->gpr[26] = tswap64(mcp->mc_gpregs.gp_s[10]);
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    regs->gpr[27] = tswap64(mcp->mc_gpregs.gp_s[11]);
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    regs->gpr[10] = tswap64(mcp->mc_gpregs.gp_a[0]);
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    regs->gpr[11] = tswap64(mcp->mc_gpregs.gp_a[1]);
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    regs->gpr[12] = tswap64(mcp->mc_gpregs.gp_a[2]);
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    regs->gpr[13] = tswap64(mcp->mc_gpregs.gp_a[3]);
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    regs->gpr[14] = tswap64(mcp->mc_gpregs.gp_a[4]);
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    regs->gpr[15] = tswap64(mcp->mc_gpregs.gp_a[5]);
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    regs->gpr[16] = tswap64(mcp->mc_gpregs.gp_a[6]);
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    regs->gpr[17] = tswap64(mcp->mc_gpregs.gp_a[7]);
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    regs->gpr[1] = tswap64(mcp->mc_gpregs.gp_ra);
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    regs->gpr[2] = tswap64(mcp->mc_gpregs.gp_sp);
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    regs->gpr[3] = tswap64(mcp->mc_gpregs.gp_gp);
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    regs->gpr[4] = tswap64(mcp->mc_gpregs.gp_tp);
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    regs->pc = tswap64(mcp->mc_gpregs.gp_sepc);
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    return 0;
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}
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/* Compare with sys_sigreturn() in riscv/riscv/machdep.c */
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abi_long get_ucontext_sigreturn(CPURISCVState *regs,
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                        abi_ulong target_sf, abi_ulong *target_uc)
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{
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    *target_uc = target_sf;
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    return 0;
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}
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