gdbstub.c 73.4 KB
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/*
 * gdb server stub
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 *
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 * Copyright (c) 2003-2005 Fabrice Bellard
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 *
 * This library is free software; you can redistribute it and/or
 * modify it under the terms of the GNU Lesser General Public
 * License as published by the Free Software Foundation; either
 * version 2 of the License, or (at your option) any later version.
 *
 * This library is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * Lesser General Public License for more details.
 *
 * You should have received a copy of the GNU Lesser General Public
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 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
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 */
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#include "config.h"
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#include "qemu-common.h"
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#ifdef CONFIG_USER_ONLY
#include <stdlib.h>
#include <stdio.h>
#include <stdarg.h>
#include <string.h>
#include <errno.h>
#include <unistd.h>
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#include <fcntl.h>
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#include "qemu.h"
#else
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#include "monitor.h"
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#include "qemu-char.h"
#include "sysemu.h"
#include "gdbstub.h"
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#endif
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#define MAX_PACKET_LENGTH 4096

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#include "cpu.h"
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#include "qemu_socket.h"
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#include "kvm.h"
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#ifndef TARGET_CPU_MEMORY_RW_DEBUG
static inline int target_memory_rw_debug(CPUState *env, target_ulong addr,
                                         uint8_t *buf, int len, int is_write)
{
    return cpu_memory_rw_debug(env, addr, buf, len, is_write);
}
#else
/* target_memory_rw_debug() defined in cpu.h */
#endif
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enum {
    GDB_SIGNAL_0 = 0,
    GDB_SIGNAL_INT = 2,
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    GDB_SIGNAL_QUIT = 3,
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    GDB_SIGNAL_TRAP = 5,
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    GDB_SIGNAL_ABRT = 6,
    GDB_SIGNAL_ALRM = 14,
    GDB_SIGNAL_IO = 23,
    GDB_SIGNAL_XCPU = 24,
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    GDB_SIGNAL_UNKNOWN = 143
};

#ifdef CONFIG_USER_ONLY

/* Map target signal numbers to GDB protocol signal numbers and vice
 * versa.  For user emulation's currently supported systems, we can
 * assume most signals are defined.
 */

static int gdb_signal_table[] = {
    0,
    TARGET_SIGHUP,
    TARGET_SIGINT,
    TARGET_SIGQUIT,
    TARGET_SIGILL,
    TARGET_SIGTRAP,
    TARGET_SIGABRT,
    -1, /* SIGEMT */
    TARGET_SIGFPE,
    TARGET_SIGKILL,
    TARGET_SIGBUS,
    TARGET_SIGSEGV,
    TARGET_SIGSYS,
    TARGET_SIGPIPE,
    TARGET_SIGALRM,
    TARGET_SIGTERM,
    TARGET_SIGURG,
    TARGET_SIGSTOP,
    TARGET_SIGTSTP,
    TARGET_SIGCONT,
    TARGET_SIGCHLD,
    TARGET_SIGTTIN,
    TARGET_SIGTTOU,
    TARGET_SIGIO,
    TARGET_SIGXCPU,
    TARGET_SIGXFSZ,
    TARGET_SIGVTALRM,
    TARGET_SIGPROF,
    TARGET_SIGWINCH,
    -1, /* SIGLOST */
    TARGET_SIGUSR1,
    TARGET_SIGUSR2,
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#ifdef TARGET_SIGPWR
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    TARGET_SIGPWR,
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#else
    -1,
#endif
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    -1, /* SIGPOLL */
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
    -1,
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#ifdef __SIGRTMIN
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    __SIGRTMIN + 1,
    __SIGRTMIN + 2,
    __SIGRTMIN + 3,
    __SIGRTMIN + 4,
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    __SIGRTMIN + 6,
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    __SIGRTMIN + 31,
    -1, /* SIGCANCEL */
    __SIGRTMIN,
    __SIGRTMIN + 32,
    __SIGRTMIN + 33,
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    __SIGRTMIN + 95,
    -1, /* SIGINFO */
    -1, /* UNKNOWN */
    -1, /* DEFAULT */
    -1,
    -1,
    -1,
    -1,
    -1,
    -1
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#endif
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};
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#else
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/* In system mode we only need SIGINT and SIGTRAP; other signals
   are not yet supported.  */

enum {
    TARGET_SIGINT = 2,
    TARGET_SIGTRAP = 5
};

static int gdb_signal_table[] = {
    -1,
    -1,
    TARGET_SIGINT,
    -1,
    -1,
    TARGET_SIGTRAP
};
#endif

#ifdef CONFIG_USER_ONLY
static int target_signal_to_gdb (int sig)
{
    int i;
    for (i = 0; i < ARRAY_SIZE (gdb_signal_table); i++)
        if (gdb_signal_table[i] == sig)
            return i;
    return GDB_SIGNAL_UNKNOWN;
}
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#endif
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static int gdb_signal_to_target (int sig)
{
    if (sig < ARRAY_SIZE (gdb_signal_table))
        return gdb_signal_table[sig];
    else
        return -1;
}

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//#define DEBUG_GDB
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typedef struct GDBRegisterState {
    int base_reg;
    int num_regs;
    gdb_reg_cb get_reg;
    gdb_reg_cb set_reg;
    const char *xml;
    struct GDBRegisterState *next;
} GDBRegisterState;

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enum RSState {
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    RS_INACTIVE,
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    RS_IDLE,
    RS_GETLINE,
    RS_CHKSUM1,
    RS_CHKSUM2,
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    RS_SYSCALL,
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};
typedef struct GDBState {
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    CPUState *c_cpu; /* current CPU for step/continue ops */
    CPUState *g_cpu; /* current CPU for other ops */
    CPUState *query_cpu; /* for q{f|s}ThreadInfo */
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    enum RSState state; /* parsing state */
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    char line_buf[MAX_PACKET_LENGTH];
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    int line_buf_index;
    int line_csum;
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    uint8_t last_packet[MAX_PACKET_LENGTH + 4];
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    int last_packet_len;
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    int signal;
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#ifdef CONFIG_USER_ONLY
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    int fd;
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    int running_state;
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#else
    CharDriverState *chr;
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    CharDriverState *mon_chr;
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#endif
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} GDBState;
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/* By default use no IRQs and no timers while single stepping so as to
 * make single stepping like an ICE HW step.
 */
static int sstep_flags = SSTEP_ENABLE|SSTEP_NOIRQ|SSTEP_NOTIMER;

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static GDBState *gdbserver_state;

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/* This is an ugly hack to cope with both new and old gdb.
   If gdb sends qXfer:features:read then assume we're talking to a newish
   gdb that understands target descriptions.  */
static int gdb_has_xml;

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#ifdef CONFIG_USER_ONLY
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/* XXX: This is not thread safe.  Do we care?  */
static int gdbserver_fd = -1;

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static int get_char(GDBState *s)
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{
    uint8_t ch;
    int ret;

    for(;;) {
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        ret = qemu_recv(s->fd, &ch, 1, 0);
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        if (ret < 0) {
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            if (errno == ECONNRESET)
                s->fd = -1;
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            if (errno != EINTR && errno != EAGAIN)
                return -1;
        } else if (ret == 0) {
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            close(s->fd);
            s->fd = -1;
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            return -1;
        } else {
            break;
        }
    }
    return ch;
}
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#endif
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static gdb_syscall_complete_cb gdb_current_syscall_cb;

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static enum {
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    GDB_SYS_UNKNOWN,
    GDB_SYS_ENABLED,
    GDB_SYS_DISABLED,
} gdb_syscall_mode;

/* If gdb is connected when the first semihosting syscall occurs then use
   remote gdb syscalls.  Otherwise use native file IO.  */
int use_gdb_syscalls(void)
{
    if (gdb_syscall_mode == GDB_SYS_UNKNOWN) {
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        gdb_syscall_mode = (gdbserver_state ? GDB_SYS_ENABLED
                                            : GDB_SYS_DISABLED);
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    }
    return gdb_syscall_mode == GDB_SYS_ENABLED;
}

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/* Resume execution.  */
static inline void gdb_continue(GDBState *s)
{
#ifdef CONFIG_USER_ONLY
    s->running_state = 1;
#else
    vm_start();
#endif
}

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static void put_buffer(GDBState *s, const uint8_t *buf, int len)
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{
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#ifdef CONFIG_USER_ONLY
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    int ret;

    while (len > 0) {
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        ret = send(s->fd, buf, len, 0);
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        if (ret < 0) {
            if (errno != EINTR && errno != EAGAIN)
                return;
        } else {
            buf += ret;
            len -= ret;
        }
    }
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#else
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    qemu_chr_fe_write(s->chr, buf, len);
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#endif
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}

static inline int fromhex(int v)
{
    if (v >= '0' && v <= '9')
        return v - '0';
    else if (v >= 'A' && v <= 'F')
        return v - 'A' + 10;
    else if (v >= 'a' && v <= 'f')
        return v - 'a' + 10;
    else
        return 0;
}

static inline int tohex(int v)
{
    if (v < 10)
        return v + '0';
    else
        return v - 10 + 'a';
}

static void memtohex(char *buf, const uint8_t *mem, int len)
{
    int i, c;
    char *q;
    q = buf;
    for(i = 0; i < len; i++) {
        c = mem[i];
        *q++ = tohex(c >> 4);
        *q++ = tohex(c & 0xf);
    }
    *q = '\0';
}

static void hextomem(uint8_t *mem, const char *buf, int len)
{
    int i;

    for(i = 0; i < len; i++) {
        mem[i] = (fromhex(buf[0]) << 4) | fromhex(buf[1]);
        buf += 2;
    }
}

/* return -1 if error, 0 if OK */
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static int put_packet_binary(GDBState *s, const char *buf, int len)
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{
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    int csum, i;
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    uint8_t *p;
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    for(;;) {
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        p = s->last_packet;
        *(p++) = '$';
        memcpy(p, buf, len);
        p += len;
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        csum = 0;
        for(i = 0; i < len; i++) {
            csum += buf[i];
        }
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        *(p++) = '#';
        *(p++) = tohex((csum >> 4) & 0xf);
        *(p++) = tohex((csum) & 0xf);
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        s->last_packet_len = p - s->last_packet;
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        put_buffer(s, (uint8_t *)s->last_packet, s->last_packet_len);
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#ifdef CONFIG_USER_ONLY
        i = get_char(s);
        if (i < 0)
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            return -1;
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        if (i == '+')
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            break;
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#else
        break;
#endif
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    }
    return 0;
}

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/* return -1 if error, 0 if OK */
static int put_packet(GDBState *s, const char *buf)
{
#ifdef DEBUG_GDB
    printf("reply='%s'\n", buf);
#endif
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    return put_packet_binary(s, buf, strlen(buf));
}

/* The GDB remote protocol transfers values in target byte order.  This means
   we can use the raw memory access routines to access the value buffer.
   Conveniently, these also handle the case where the buffer is mis-aligned.
 */
#define GET_REG8(val) do { \
    stb_p(mem_buf, val); \
    return 1; \
    } while(0)
#define GET_REG16(val) do { \
    stw_p(mem_buf, val); \
    return 2; \
    } while(0)
#define GET_REG32(val) do { \
    stl_p(mem_buf, val); \
    return 4; \
    } while(0)
#define GET_REG64(val) do { \
    stq_p(mem_buf, val); \
    return 8; \
    } while(0)

#if TARGET_LONG_BITS == 64
#define GET_REGL(val) GET_REG64(val)
#define ldtul_p(addr) ldq_p(addr)
#else
#define GET_REGL(val) GET_REG32(val)
#define ldtul_p(addr) ldl_p(addr)
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#endif

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#if defined(TARGET_I386)
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#ifdef TARGET_X86_64
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static const int gpr_map[16] = {
    R_EAX, R_EBX, R_ECX, R_EDX, R_ESI, R_EDI, R_EBP, R_ESP,
    8, 9, 10, 11, 12, 13, 14, 15
};
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#else
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#define gpr_map gpr_map32
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#endif
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static const int gpr_map32[8] = { 0, 1, 2, 3, 4, 5, 6, 7 };
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#define NUM_CORE_REGS (CPU_NB_REGS * 2 + 25)

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#define IDX_IP_REG      CPU_NB_REGS
#define IDX_FLAGS_REG   (IDX_IP_REG + 1)
#define IDX_SEG_REGS    (IDX_FLAGS_REG + 1)
#define IDX_FP_REGS     (IDX_SEG_REGS + 6)
#define IDX_XMM_REGS    (IDX_FP_REGS + 16)
#define IDX_MXCSR_REG   (IDX_XMM_REGS + CPU_NB_REGS)

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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    if (n < CPU_NB_REGS) {
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        if (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK) {
            GET_REG64(env->regs[gpr_map[n]]);
        } else if (n < CPU_NB_REGS32) {
            GET_REG32(env->regs[gpr_map32[n]]);
        }
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    } else if (n >= IDX_FP_REGS && n < IDX_FP_REGS + 8) {
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#ifdef USE_X86LDOUBLE
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        /* FIXME: byteswap float values - after fixing fpregs layout. */
        memcpy(mem_buf, &env->fpregs[n - IDX_FP_REGS], 10);
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#else
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        memset(mem_buf, 0, 10);
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#endif
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        return 10;
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    } else if (n >= IDX_XMM_REGS && n < IDX_XMM_REGS + CPU_NB_REGS) {
        n -= IDX_XMM_REGS;
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        if (n < CPU_NB_REGS32 ||
            (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK)) {
            stq_p(mem_buf, env->xmm_regs[n].XMM_Q(0));
            stq_p(mem_buf + 8, env->xmm_regs[n].XMM_Q(1));
            return 16;
        }
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    } else {
        switch (n) {
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        case IDX_IP_REG:
            if (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK) {
                GET_REG64(env->eip);
            } else {
                GET_REG32(env->eip);
            }
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        case IDX_FLAGS_REG: GET_REG32(env->eflags);

        case IDX_SEG_REGS:     GET_REG32(env->segs[R_CS].selector);
        case IDX_SEG_REGS + 1: GET_REG32(env->segs[R_SS].selector);
        case IDX_SEG_REGS + 2: GET_REG32(env->segs[R_DS].selector);
        case IDX_SEG_REGS + 3: GET_REG32(env->segs[R_ES].selector);
        case IDX_SEG_REGS + 4: GET_REG32(env->segs[R_FS].selector);
        case IDX_SEG_REGS + 5: GET_REG32(env->segs[R_GS].selector);

        case IDX_FP_REGS + 8:  GET_REG32(env->fpuc);
        case IDX_FP_REGS + 9:  GET_REG32((env->fpus & ~0x3800) |
                                         (env->fpstt & 0x7) << 11);
        case IDX_FP_REGS + 10: GET_REG32(0); /* ftag */
        case IDX_FP_REGS + 11: GET_REG32(0); /* fiseg */
        case IDX_FP_REGS + 12: GET_REG32(0); /* fioff */
        case IDX_FP_REGS + 13: GET_REG32(0); /* foseg */
        case IDX_FP_REGS + 14: GET_REG32(0); /* fooff */
        case IDX_FP_REGS + 15: GET_REG32(0); /* fop */

        case IDX_MXCSR_REG: GET_REG32(env->mxcsr);
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        }
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    }
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    return 0;
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}

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static int cpu_x86_gdb_load_seg(CPUState *env, int sreg, uint8_t *mem_buf)
{
    uint16_t selector = ldl_p(mem_buf);

    if (selector != env->segs[sreg].selector) {
#if defined(CONFIG_USER_ONLY)
        cpu_x86_load_seg(env, sreg, selector);
#else
        unsigned int limit, flags;
        target_ulong base;

        if (!(env->cr[0] & CR0_PE_MASK) || (env->eflags & VM_MASK)) {
            base = selector << 4;
            limit = 0xffff;
            flags = 0;
        } else {
            if (!cpu_x86_get_descr_debug(env, selector, &base, &limit, &flags))
                return 4;
        }
        cpu_x86_load_seg_cache(env, sreg, selector, base, limit, flags);
#endif
    }
    return 4;
}

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    uint32_t tmp;
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    if (n < CPU_NB_REGS) {
623 624 625 626 627 628 629 630 631
        if (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK) {
            env->regs[gpr_map[n]] = ldtul_p(mem_buf);
            return sizeof(target_ulong);
        } else if (n < CPU_NB_REGS32) {
            n = gpr_map32[n];
            env->regs[n] &= ~0xffffffffUL;
            env->regs[n] |= (uint32_t)ldl_p(mem_buf);
            return 4;
        }
632
    } else if (n >= IDX_FP_REGS && n < IDX_FP_REGS + 8) {
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#ifdef USE_X86LDOUBLE
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        /* FIXME: byteswap float values - after fixing fpregs layout. */
        memcpy(&env->fpregs[n - IDX_FP_REGS], mem_buf, 10);
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#endif
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        return 10;
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    } else if (n >= IDX_XMM_REGS && n < IDX_XMM_REGS + CPU_NB_REGS) {
        n -= IDX_XMM_REGS;
640 641 642 643 644 645
        if (n < CPU_NB_REGS32 ||
            (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK)) {
            env->xmm_regs[n].XMM_Q(0) = ldq_p(mem_buf);
            env->xmm_regs[n].XMM_Q(1) = ldq_p(mem_buf + 8);
            return 16;
        }
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    } else {
647 648
        switch (n) {
        case IDX_IP_REG:
649 650 651 652 653 654 655 656
            if (TARGET_LONG_BITS == 64 && env->hflags & HF_CS64_MASK) {
                env->eip = ldq_p(mem_buf);
                return 8;
            } else {
                env->eip &= ~0xffffffffUL;
                env->eip |= (uint32_t)ldl_p(mem_buf);
                return 4;
            }
657 658 659 660
        case IDX_FLAGS_REG:
            env->eflags = ldl_p(mem_buf);
            return 4;

661 662 663 664 665 666
        case IDX_SEG_REGS:     return cpu_x86_gdb_load_seg(env, R_CS, mem_buf);
        case IDX_SEG_REGS + 1: return cpu_x86_gdb_load_seg(env, R_SS, mem_buf);
        case IDX_SEG_REGS + 2: return cpu_x86_gdb_load_seg(env, R_DS, mem_buf);
        case IDX_SEG_REGS + 3: return cpu_x86_gdb_load_seg(env, R_ES, mem_buf);
        case IDX_SEG_REGS + 4: return cpu_x86_gdb_load_seg(env, R_FS, mem_buf);
        case IDX_SEG_REGS + 5: return cpu_x86_gdb_load_seg(env, R_GS, mem_buf);
667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685

        case IDX_FP_REGS + 8:
            env->fpuc = ldl_p(mem_buf);
            return 4;
        case IDX_FP_REGS + 9:
            tmp = ldl_p(mem_buf);
            env->fpstt = (tmp >> 11) & 7;
            env->fpus = tmp & ~0x3800;
            return 4;
        case IDX_FP_REGS + 10: /* ftag */  return 4;
        case IDX_FP_REGS + 11: /* fiseg */ return 4;
        case IDX_FP_REGS + 12: /* fioff */ return 4;
        case IDX_FP_REGS + 13: /* foseg */ return 4;
        case IDX_FP_REGS + 14: /* fooff */ return 4;
        case IDX_FP_REGS + 15: /* fop */   return 4;

        case IDX_MXCSR_REG:
            env->mxcsr = ldl_p(mem_buf);
            return 4;
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        }
    }
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    /* Unrecognised register.  */
    return 0;
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}

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#elif defined (TARGET_PPC)

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/* Old gdb always expects FP registers.  Newer (xml-aware) gdb only
   expects whatever the target description contains.  Due to a
   historical mishap the FP registers appear in between core integer
   regs and PC, MSR, CR, and so forth.  We hack round this by giving the
   FP regs zero size when talking to a newer gdb.  */
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#define NUM_CORE_REGS 71
700 701 702 703 704
#if defined (TARGET_PPC64)
#define GDB_CORE_XML "power64-core.xml"
#else
#define GDB_CORE_XML "power-core.xml"
#endif
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    if (n < 32) {
        /* gprs */
        GET_REGL(env->gpr[n]);
    } else if (n < 64) {
        /* fprs */
713 714
        if (gdb_has_xml)
            return 0;
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        stfq_p(mem_buf, env->fpr[n-32]);
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        return 8;
    } else {
        switch (n) {
        case 64: GET_REGL(env->nip);
        case 65: GET_REGL(env->msr);
        case 66:
            {
                uint32_t cr = 0;
                int i;
                for (i = 0; i < 8; i++)
                    cr |= env->crf[i] << (32 - ((i + 1) * 4));
                GET_REG32(cr);
            }
        case 67: GET_REGL(env->lr);
        case 68: GET_REGL(env->ctr);
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        case 69: GET_REGL(env->xer);
732 733 734 735
        case 70:
            {
                if (gdb_has_xml)
                    return 0;
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                GET_REG32(env->fpscr);
737
            }
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        }
    }
    return 0;
}
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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 32) {
        /* gprs */
        env->gpr[n] = ldtul_p(mem_buf);
        return sizeof(target_ulong);
    } else if (n < 64) {
        /* fprs */
751 752
        if (gdb_has_xml)
            return 0;
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        env->fpr[n-32] = ldfq_p(mem_buf);
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        return 8;
    } else {
        switch (n) {
        case 64:
            env->nip = ldtul_p(mem_buf);
            return sizeof(target_ulong);
        case 65:
            ppc_store_msr(env, ldtul_p(mem_buf));
            return sizeof(target_ulong);
        case 66:
            {
                uint32_t cr = ldl_p(mem_buf);
                int i;
                for (i = 0; i < 8; i++)
                    env->crf[i] = (cr >> (32 - ((i + 1) * 4))) & 0xF;
                return 4;
            }
        case 67:
            env->lr = ldtul_p(mem_buf);
            return sizeof(target_ulong);
        case 68:
            env->ctr = ldtul_p(mem_buf);
            return sizeof(target_ulong);
        case 69:
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            env->xer = ldtul_p(mem_buf);
            return sizeof(target_ulong);
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        case 70:
            /* fpscr */
782 783
            if (gdb_has_xml)
                return 0;
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            return 4;
        }
    }
    return 0;
788
}
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790
#elif defined (TARGET_SPARC)
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#if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
#define NUM_CORE_REGS 86
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#else
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#define NUM_CORE_REGS 72
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#endif
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#ifdef TARGET_ABI32
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#define GET_REGA(val) GET_REG32(val)
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#else
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#define GET_REGA(val) GET_REGL(val)
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#endif
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 8) {
        /* g0..g7 */
        GET_REGA(env->gregs[n]);
809
    }
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    if (n < 32) {
        /* register window */
        GET_REGA(env->regwptr[n - 8]);
813
    }
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#if defined(TARGET_ABI32) || !defined(TARGET_SPARC64)
    if (n < 64) {
        /* fprs */
817 818 819 820 821
        if (n & 1) {
            GET_REG32(env->fpr[(n - 32) / 2].l.lower);
        } else {
            GET_REG32(env->fpr[(n - 32) / 2].l.upper);
        }
822 823
    }
    /* Y, PSR, WIM, TBR, PC, NPC, FPSR, CPSR */
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    switch (n) {
    case 64: GET_REGA(env->y);
826
    case 65: GET_REGA(cpu_get_psr(env));
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    case 66: GET_REGA(env->wim);
    case 67: GET_REGA(env->tbr);
    case 68: GET_REGA(env->pc);
    case 69: GET_REGA(env->npc);
    case 70: GET_REGA(env->fsr);
    case 71: GET_REGA(0); /* csr */
833
    default: GET_REGA(0);
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    }
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#else
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    if (n < 64) {
        /* f0-f31 */
838 839 840 841 842
        if (n & 1) {
            GET_REG32(env->fpr[(n - 32) / 2].l.lower);
        } else {
            GET_REG32(env->fpr[(n - 32) / 2].l.upper);
        }
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    }
    if (n < 80) {
        /* f32-f62 (double width, even numbers only) */
846
        GET_REG64(env->fpr[(n - 32) / 2].ll);
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    }
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    switch (n) {
    case 80: GET_REGL(env->pc);
    case 81: GET_REGL(env->npc);
851 852 853 854
    case 82: GET_REGL((cpu_get_ccr(env) << 32) |
                      ((env->asi & 0xff) << 24) |
                      ((env->pstate & 0xfff) << 8) |
                      cpu_get_cwp64(env));
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    case 83: GET_REGL(env->fsr);
    case 84: GET_REGL(env->fprs);
    case 85: GET_REGL(env->y);
    }
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#endif
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    return 0;
861 862
}

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
864
{
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#if defined(TARGET_ABI32)
    abi_ulong tmp;

    tmp = ldl_p(mem_buf);
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#else
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    target_ulong tmp;

    tmp = ldtul_p(mem_buf);
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#endif
874

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    if (n < 8) {
        /* g0..g7 */
        env->gregs[n] = tmp;
    } else if (n < 32) {
        /* register window */
        env->regwptr[n - 8] = tmp;
881
    }
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#if defined(TARGET_ABI32) || !defined(TARGET_SPARC64)
    else if (n < 64) {
        /* fprs */
885 886 887 888 889 890
        /* f0-f31 */
        if (n & 1) {
            env->fpr[(n - 32) / 2].l.lower = tmp;
        } else {
            env->fpr[(n - 32) / 2].l.upper = tmp;
        }
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    } else {
        /* Y, PSR, WIM, TBR, PC, NPC, FPSR, CPSR */
        switch (n) {
        case 64: env->y = tmp; break;
895
        case 65: cpu_put_psr(env, tmp); break;
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        case 66: env->wim = tmp; break;
        case 67: env->tbr = tmp; break;
        case 68: env->pc = tmp; break;
        case 69: env->npc = tmp; break;
        case 70: env->fsr = tmp; break;
        default: return 0;
        }
903
    }
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    return 4;
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#else
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    else if (n < 64) {
        /* f0-f31 */
908 909 910 911 912 913
        tmp = ldl_p(mem_buf);
        if (n & 1) {
            env->fpr[(n - 32) / 2].l.lower = tmp;
        } else {
            env->fpr[(n - 32) / 2].l.upper = tmp;
        }
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        return 4;
    } else if (n < 80) {
        /* f32-f62 (double width, even numbers only) */
917
        env->fpr[(n - 32) / 2].ll = tmp;
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    } else {
        switch (n) {
        case 80: env->pc = tmp; break;
        case 81: env->npc = tmp; break;
        case 82:
923
            cpu_put_ccr(env, tmp >> 32);
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	    env->asi = (tmp >> 24) & 0xff;
	    env->pstate = (tmp >> 8) & 0xfff;
926
            cpu_put_cwp64(env, tmp & 0xff);
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	    break;
        case 83: env->fsr = tmp; break;
        case 84: env->fprs = tmp; break;
        case 85: env->y = tmp; break;
        default: return 0;
        }
933
    }
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    return 8;
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#endif
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}
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#elif defined (TARGET_ARM)
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/* Old gdb always expect FPA registers.  Newer (xml-aware) gdb only expect
   whatever the target description contains.  Due to a historical mishap
   the FPA registers appear in between core integer regs and the CPSR.
   We hack round this by giving the FPA regs zero size when talking to a
   newer gdb.  */
#define NUM_CORE_REGS 26
#define GDB_CORE_XML "arm-core.xml"
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    if (n < 16) {
        /* Core integer register.  */
        GET_REG32(env->regs[n]);
    }
    if (n < 24) {
        /* FPA registers.  */
        if (gdb_has_xml)
            return 0;
        memset(mem_buf, 0, 12);
        return 12;
    }
    switch (n) {
    case 24:
        /* FPA status register.  */
        if (gdb_has_xml)
            return 0;
        GET_REG32(0);
    case 25:
        /* CPSR */
        GET_REG32(cpsr_read(env));
    }
    /* Unknown register.  */
    return 0;
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}
973

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    uint32_t tmp;
977

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    tmp = ldl_p(mem_buf);
979

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    /* Mask out low bit of PC to workaround gdb bugs.  This will probably
       cause problems if we ever implement the Jazelle DBX extensions.  */
    if (n == 15)
        tmp &= ~1;
984

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    if (n < 16) {
        /* Core integer register.  */
        env->regs[n] = tmp;
        return 4;
    }
    if (n < 24) { /* 16-23 */
        /* FPA registers (ignored).  */
        if (gdb_has_xml)
            return 0;
        return 12;
    }
    switch (n) {
    case 24:
        /* FPA status register (ignored).  */
        if (gdb_has_xml)
            return 0;
        return 4;
    case 25:
        /* CPSR */
        cpsr_write (env, tmp, 0xffffffff);
        return 4;
    }
    /* Unknown register.  */
    return 0;
}
1010

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#elif defined (TARGET_M68K)
1012

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#define NUM_CORE_REGS 18
1014

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#define GDB_CORE_XML "cf-core.xml"
1016

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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 8) {
        /* D0-D7 */
        GET_REG32(env->dregs[n]);
    } else if (n < 16) {
        /* A0-A7 */
        GET_REG32(env->aregs[n - 8]);
    } else {
	switch (n) {
        case 16: GET_REG32(env->sr);
        case 17: GET_REG32(env->pc);
        }
    }
    /* FP registers not included here because they vary between
       ColdFire and m68k.  Use XML bits for these.  */
    return 0;
}
1035

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    uint32_t tmp;
1039

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    tmp = ldl_p(mem_buf);
1041

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    if (n < 8) {
        /* D0-D7 */
        env->dregs[n] = tmp;
1045
    } else if (n < 16) {
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        /* A0-A7 */
        env->aregs[n - 8] = tmp;
    } else {
        switch (n) {
        case 16: env->sr = tmp; break;
        case 17: env->pc = tmp; break;
        default: return 0;
        }
    }
    return 4;
}
#elif defined (TARGET_MIPS)
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#define NUM_CORE_REGS 73
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 32) {
        GET_REGL(env->active_tc.gpr[n]);
    }
    if (env->CP0_Config1 & (1 << CP0C1_FP)) {
        if (n >= 38 && n < 70) {
            if (env->CP0_Status & (1 << CP0St_FR))
		GET_REGL(env->active_fpu.fpr[n - 38].d);
            else
		GET_REGL(env->active_fpu.fpr[n - 38].w[FP_ENDIAN_IDX]);
        }
        switch (n) {
        case 70: GET_REGL((int32_t)env->active_fpu.fcr31);
        case 71: GET_REGL((int32_t)env->active_fpu.fcr0);
        }
    }
    switch (n) {
    case 32: GET_REGL((int32_t)env->CP0_Status);
    case 33: GET_REGL(env->active_tc.LO[0]);
    case 34: GET_REGL(env->active_tc.HI[0]);
    case 35: GET_REGL(env->CP0_BadVAddr);
    case 36: GET_REGL((int32_t)env->CP0_Cause);
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    case 37: GET_REGL(env->active_tc.PC | !!(env->hflags & MIPS_HFLAG_M16));
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    case 72: GET_REGL(0); /* fp */
    case 89: GET_REGL((int32_t)env->CP0_PRid);
    }
    if (n >= 73 && n <= 88) {
	/* 16 embedded regs.  */
	GET_REGL(0);
    }
1092

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    return 0;
1094 1095
}

1096 1097 1098 1099 1100 1101 1102 1103 1104
/* convert MIPS rounding mode in FCR31 to IEEE library */
static unsigned int ieee_rm[] =
  {
    float_round_nearest_even,
    float_round_to_zero,
    float_round_up,
    float_round_down
  };
#define RESTORE_ROUNDING_MODE \
1105
    set_float_rounding_mode(ieee_rm[env->active_fpu.fcr31 & 3], &env->active_fpu.fp_status)
1106

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
1108
{
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    target_ulong tmp;
1110

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    tmp = ldtul_p(mem_buf);
1112

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    if (n < 32) {
        env->active_tc.gpr[n] = tmp;
        return sizeof(target_ulong);
    }
    if (env->CP0_Config1 & (1 << CP0C1_FP)
            && n >= 38 && n < 73) {
        if (n < 70) {
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            if (env->CP0_Status & (1 << CP0St_FR))
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              env->active_fpu.fpr[n - 38].d = tmp;
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            else
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              env->active_fpu.fpr[n - 38].w[FP_ENDIAN_IDX] = tmp;
        }
        switch (n) {
        case 70:
            env->active_fpu.fcr31 = tmp & 0xFF83FFFF;
            /* set rounding mode */
            RESTORE_ROUNDING_MODE;
            break;
        case 71: env->active_fpu.fcr0 = tmp; break;
        }
        return sizeof(target_ulong);
    }
    switch (n) {
    case 32: env->CP0_Status = tmp; break;
    case 33: env->active_tc.LO[0] = tmp; break;
    case 34: env->active_tc.HI[0] = tmp; break;
    case 35: env->CP0_BadVAddr = tmp; break;
    case 36: env->CP0_Cause = tmp; break;
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    case 37:
        env->active_tc.PC = tmp & ~(target_ulong)1;
        if (tmp & 1) {
            env->hflags |= MIPS_HFLAG_M16;
        } else {
            env->hflags &= ~(MIPS_HFLAG_M16);
        }
        break;
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    case 72: /* fp, ignored */ break;
    default: 
	if (n > 89)
	    return 0;
	/* Other registers are readonly.  Ignore writes.  */
	break;
    }

    return sizeof(target_ulong);
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}
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#elif defined (TARGET_SH4)
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/* Hint: Use "set architecture sh4" in GDB to see fpu registers */
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/* FIXME: We should use XML for this.  */

#define NUM_CORE_REGS 59
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    if (n < 8) {
        if ((env->sr & (SR_MD | SR_RB)) == (SR_MD | SR_RB)) {
            GET_REGL(env->gregs[n + 16]);
        } else {
            GET_REGL(env->gregs[n]);
        }
    } else if (n < 16) {
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        GET_REGL(env->gregs[n]);
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    } else if (n >= 25 && n < 41) {
	GET_REGL(env->fregs[(n - 25) + ((env->fpscr & FPSCR_FR) ? 16 : 0)]);
    } else if (n >= 43 && n < 51) {
	GET_REGL(env->gregs[n - 43]);
    } else if (n >= 51 && n < 59) {
	GET_REGL(env->gregs[n - (51 - 16)]);
    }
    switch (n) {
    case 16: GET_REGL(env->pc);
    case 17: GET_REGL(env->pr);
    case 18: GET_REGL(env->gbr);
    case 19: GET_REGL(env->vbr);
    case 20: GET_REGL(env->mach);
    case 21: GET_REGL(env->macl);
    case 22: GET_REGL(env->sr);
    case 23: GET_REGL(env->fpul);
    case 24: GET_REGL(env->fpscr);
    case 41: GET_REGL(env->ssr);
    case 42: GET_REGL(env->spc);
    }

    return 0;
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}

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    uint32_t tmp;

    tmp = ldl_p(mem_buf);

    if (n < 8) {
        if ((env->sr & (SR_MD | SR_RB)) == (SR_MD | SR_RB)) {
            env->gregs[n + 16] = tmp;
        } else {
            env->gregs[n] = tmp;
        }
	return 4;
    } else if (n < 16) {
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        env->gregs[n] = tmp;
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	return 4;
    } else if (n >= 25 && n < 41) {
	env->fregs[(n - 25) + ((env->fpscr & FPSCR_FR) ? 16 : 0)] = tmp;
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	return 4;
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    } else if (n >= 43 && n < 51) {
	env->gregs[n - 43] = tmp;
	return 4;
    } else if (n >= 51 && n < 59) {
	env->gregs[n - (51 - 16)] = tmp;
	return 4;
    }
    switch (n) {
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    case 16: env->pc = tmp; break;
    case 17: env->pr = tmp; break;
    case 18: env->gbr = tmp; break;
    case 19: env->vbr = tmp; break;
    case 20: env->mach = tmp; break;
    case 21: env->macl = tmp; break;
    case 22: env->sr = tmp; break;
    case 23: env->fpul = tmp; break;
    case 24: env->fpscr = tmp; break;
    case 41: env->ssr = tmp; break;
    case 42: env->spc = tmp; break;
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    default: return 0;
    }

    return 4;
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}
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#elif defined (TARGET_MICROBLAZE)

#define NUM_CORE_REGS (32 + 5)

static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 32) {
	GET_REG32(env->regs[n]);
    } else {
	GET_REG32(env->sregs[n - 32]);
    }
    return 0;
}

static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    uint32_t tmp;

    if (n > NUM_CORE_REGS)
	return 0;

    tmp = ldl_p(mem_buf);

    if (n < 32) {
	env->regs[n] = tmp;
    } else {
	env->sregs[n - 32] = tmp;
    }
    return 4;
}
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#elif defined (TARGET_CRIS)

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#define NUM_CORE_REGS 49

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static int
read_register_crisv10(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 15) {
        GET_REG32(env->regs[n]);
    }

    if (n == 15) {
        GET_REG32(env->pc);
    }

    if (n < 32) {
        switch (n) {
        case 16:
            GET_REG8(env->pregs[n - 16]);
            break;
        case 17:
            GET_REG8(env->pregs[n - 16]);
            break;
        case 20:
        case 21:
            GET_REG16(env->pregs[n - 16]);
            break;
        default:
            if (n >= 23) {
                GET_REG32(env->pregs[n - 16]);
            }
            break;
        }
    }
    return 0;
}

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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
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{
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    uint8_t srs;

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    if (env->pregs[PR_VR] < 32)
        return read_register_crisv10(env, mem_buf, n);

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    srs = env->pregs[PR_SRS];
    if (n < 16) {
	GET_REG32(env->regs[n]);
    }

    if (n >= 21 && n < 32) {
	GET_REG32(env->pregs[n - 16]);
    }
    if (n >= 33 && n < 49) {
	GET_REG32(env->sregs[srs][n - 33]);
    }
    switch (n) {
    case 16: GET_REG8(env->pregs[0]);
    case 17: GET_REG8(env->pregs[1]);
    case 18: GET_REG32(env->pregs[2]);
    case 19: GET_REG8(srs);
    case 20: GET_REG16(env->pregs[4]);
    case 32: GET_REG32(env->pc);
    }

    return 0;
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}
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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
1341
{
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    uint32_t tmp;

    if (n > 49)
	return 0;

    tmp = ldl_p(mem_buf);

    if (n < 16) {
	env->regs[n] = tmp;
    }

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    if (n >= 21 && n < 32) {
	env->pregs[n - 16] = tmp;
    }

    /* FIXME: Should support function regs be writable?  */
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    switch (n) {
    case 16: return 1;
    case 17: return 1;
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    case 18: env->pregs[PR_PID] = tmp; break;
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    case 19: return 1;
    case 20: return 2;
    case 32: env->pc = tmp; break;
    }

    return 4;
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}
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#elif defined (TARGET_ALPHA)

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#define NUM_CORE_REGS 67
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static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
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    uint64_t val;
    CPU_DoubleU d;
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    switch (n) {
    case 0 ... 30:
        val = env->ir[n];
        break;
    case 32 ... 62:
        d.d = env->fir[n - 32];
        val = d.ll;
        break;
    case 63:
        val = cpu_alpha_load_fpcr(env);
        break;
    case 64:
        val = env->pc;
        break;
    case 66:
        val = env->unique;
        break;
    case 31:
    case 65:
        /* 31 really is the zero register; 65 is unassigned in the
           gdb protocol, but is still required to occupy 8 bytes. */
        val = 0;
        break;
    default:
        return 0;
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    }
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    GET_REGL(val);
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}

static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
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    target_ulong tmp = ldtul_p(mem_buf);
    CPU_DoubleU d;
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    switch (n) {
    case 0 ... 30:
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        env->ir[n] = tmp;
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        break;
    case 32 ... 62:
        d.ll = tmp;
        env->fir[n - 32] = d.d;
        break;
    case 63:
        cpu_alpha_store_fpcr(env, tmp);
        break;
    case 64:
        env->pc = tmp;
        break;
    case 66:
        env->unique = tmp;
        break;
    case 31:
    case 65:
        /* 31 really is the zero register; 65 is unassigned in the
           gdb protocol, but is still required to occupy 8 bytes. */
        break;
    default:
        return 0;
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    }
    return 8;
}
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#elif defined (TARGET_S390X)

#define NUM_CORE_REGS S390_NUM_TOTAL_REGS

static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    switch (n) {
        case S390_PSWM_REGNUM: GET_REGL(env->psw.mask); break;
        case S390_PSWA_REGNUM: GET_REGL(env->psw.addr); break;
        case S390_R0_REGNUM ... S390_R15_REGNUM:
            GET_REGL(env->regs[n-S390_R0_REGNUM]); break;
        case S390_A0_REGNUM ... S390_A15_REGNUM:
            GET_REG32(env->aregs[n-S390_A0_REGNUM]); break;
        case S390_FPC_REGNUM: GET_REG32(env->fpc); break;
        case S390_F0_REGNUM ... S390_F15_REGNUM:
            /* XXX */
            break;
        case S390_PC_REGNUM: GET_REGL(env->psw.addr); break;
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        case S390_CC_REGNUM:
            env->cc_op = calc_cc(env, env->cc_op, env->cc_src, env->cc_dst,
                                 env->cc_vr);
            GET_REG32(env->cc_op);
            break;
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    }

    return 0;
}

static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    target_ulong tmpl;
    uint32_t tmp32;
    int r = 8;
    tmpl = ldtul_p(mem_buf);
    tmp32 = ldl_p(mem_buf);

    switch (n) {
        case S390_PSWM_REGNUM: env->psw.mask = tmpl; break;
        case S390_PSWA_REGNUM: env->psw.addr = tmpl; break;
        case S390_R0_REGNUM ... S390_R15_REGNUM:
            env->regs[n-S390_R0_REGNUM] = tmpl; break;
        case S390_A0_REGNUM ... S390_A15_REGNUM:
            env->aregs[n-S390_A0_REGNUM] = tmp32; r=4; break;
        case S390_FPC_REGNUM: env->fpc = tmp32; r=4; break;
        case S390_F0_REGNUM ... S390_F15_REGNUM:
            /* XXX */
            break;
        case S390_PC_REGNUM: env->psw.addr = tmpl; break;
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        case S390_CC_REGNUM: env->cc_op = tmp32; r=4; break;
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    }

    return r;
}
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#elif defined (TARGET_LM32)

#include "hw/lm32_pic.h"
#define NUM_CORE_REGS (32 + 7)

static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    if (n < 32) {
        GET_REG32(env->regs[n]);
    } else {
        switch (n) {
        case 32:
            GET_REG32(env->pc);
            break;
        /* FIXME: put in right exception ID */
        case 33:
            GET_REG32(0);
            break;
        case 34:
            GET_REG32(env->eba);
            break;
        case 35:
            GET_REG32(env->deba);
            break;
        case 36:
            GET_REG32(env->ie);
            break;
        case 37:
            GET_REG32(lm32_pic_get_im(env->pic_state));
            break;
        case 38:
            GET_REG32(lm32_pic_get_ip(env->pic_state));
            break;
        }
    }
    return 0;
}

static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    uint32_t tmp;

    if (n > NUM_CORE_REGS) {
        return 0;
    }

    tmp = ldl_p(mem_buf);

    if (n < 32) {
        env->regs[n] = tmp;
    } else {
        switch (n) {
        case 32:
            env->pc = tmp;
            break;
        case 34:
            env->eba = tmp;
            break;
        case 35:
            env->deba = tmp;
            break;
        case 36:
            env->ie = tmp;
            break;
        case 37:
            lm32_pic_set_im(env->pic_state, tmp);
            break;
        case 38:
            lm32_pic_set_ip(env->pic_state, tmp);
            break;
        }
    }
    return 4;
}
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#elif defined(TARGET_XTENSA)

/* Use num_core_regs to see only non-privileged registers in an unmodified gdb.
 * Use num_regs to see all registers. gdb modification is required for that:
 * reset bit 0 in the 'flags' field of the registers definitions in the
 * gdb/xtensa-config.c inside gdb source tree or inside gdb overlay.
 */
#define NUM_CORE_REGS (env->config->gdb_regmap.num_regs)
#define num_g_regs NUM_CORE_REGS

static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
{
    const XtensaGdbReg *reg = env->config->gdb_regmap.reg + n;

    if (n < 0 || n >= env->config->gdb_regmap.num_regs) {
        return 0;
    }

    switch (reg->type) {
    case 9: /*pc*/
        GET_REG32(env->pc);
        break;

    case 1: /*ar*/
        xtensa_sync_phys_from_window(env);
        GET_REG32(env->phys_regs[(reg->targno & 0xff) % env->config->nareg]);
        break;

    case 2: /*SR*/
        GET_REG32(env->sregs[reg->targno & 0xff]);
        break;

    case 3: /*UR*/
        GET_REG32(env->uregs[reg->targno & 0xff]);
        break;

    case 8: /*a*/
        GET_REG32(env->regs[reg->targno & 0x0f]);
        break;

    default:
        qemu_log("%s from reg %d of unsupported type %d\n",
                __func__, n, reg->type);
        return 0;
    }
}

static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
{
    uint32_t tmp;
    const XtensaGdbReg *reg = env->config->gdb_regmap.reg + n;

    if (n < 0 || n >= env->config->gdb_regmap.num_regs) {
        return 0;
    }

    tmp = ldl_p(mem_buf);

    switch (reg->type) {
    case 9: /*pc*/
        env->pc = tmp;
        break;

    case 1: /*ar*/
        env->phys_regs[(reg->targno & 0xff) % env->config->nareg] = tmp;
        xtensa_sync_window_from_phys(env);
        break;

    case 2: /*SR*/
        env->sregs[reg->targno & 0xff] = tmp;
        break;

    case 3: /*UR*/
        env->uregs[reg->targno & 0xff] = tmp;
        break;

    case 8: /*a*/
        env->regs[reg->targno & 0x0f] = tmp;
        break;

    default:
        qemu_log("%s to reg %d of unsupported type %d\n",
                __func__, n, reg->type);
        return 0;
    }

    return 4;
}
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#else

#define NUM_CORE_REGS 0

static int cpu_gdb_read_register(CPUState *env, uint8_t *mem_buf, int n)
1659
{
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    return 0;
1661 1662
}

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static int cpu_gdb_write_register(CPUState *env, uint8_t *mem_buf, int n)
1664
{
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    return 0;
}
1667

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#endif
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#if !defined(TARGET_XTENSA)
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static int num_g_regs = NUM_CORE_REGS;
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#endif
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#ifdef GDB_CORE_XML
/* Encode data using the encoding for 'x' packets.  */
static int memtox(char *buf, const char *mem, int len)
{
    char *p = buf;
    char c;

    while (len--) {
        c = *(mem++);
        switch (c) {
        case '#': case '$': case '*': case '}':
            *(p++) = '}';
            *(p++) = c ^ 0x20;
            break;
        default:
            *(p++) = c;
            break;
        }
    }
    return p - buf;
}
1695

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static const char *get_feature_xml(const char *p, const char **newp)
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{
    size_t len;
    int i;
    const char *name;
    static char target_xml[1024];

    len = 0;
    while (p[len] && p[len] != ':')
        len++;
    *newp = p + len;

    name = NULL;
    if (strncmp(p, "target.xml", len) == 0) {
        /* Generate the XML description for this CPU.  */
        if (!target_xml[0]) {
            GDBRegisterState *r;

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            snprintf(target_xml, sizeof(target_xml),
                     "<?xml version=\"1.0\"?>"
                     "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">"
                     "<target>"
                     "<xi:include href=\"%s\"/>",
                     GDB_CORE_XML);
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1721
            for (r = first_cpu->gdb_regs; r; r = r->next) {
1722 1723 1724
                pstrcat(target_xml, sizeof(target_xml), "<xi:include href=\"");
                pstrcat(target_xml, sizeof(target_xml), r->xml);
                pstrcat(target_xml, sizeof(target_xml), "\"/>");
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            }
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            pstrcat(target_xml, sizeof(target_xml), "</target>");
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        }
        return target_xml;
    }
    for (i = 0; ; i++) {
        name = xml_builtin[i][0];
        if (!name || (strncmp(name, p, len) == 0 && strlen(name) == len))
            break;
    }
    return name ? xml_builtin[i][1] : NULL;
}
#endif
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pbrook 已提交
1739 1740 1741
static int gdb_read_register(CPUState *env, uint8_t *mem_buf, int reg)
{
    GDBRegisterState *r;
1742

P
pbrook 已提交
1743 1744
    if (reg < NUM_CORE_REGS)
        return cpu_gdb_read_register(env, mem_buf, reg);
1745

P
pbrook 已提交
1746 1747 1748 1749 1750 1751
    for (r = env->gdb_regs; r; r = r->next) {
        if (r->base_reg <= reg && reg < r->base_reg + r->num_regs) {
            return r->get_reg(env, mem_buf, reg - r->base_reg);
        }
    }
    return 0;
1752 1753
}

P
pbrook 已提交
1754
static int gdb_write_register(CPUState *env, uint8_t *mem_buf, int reg)
1755
{
P
pbrook 已提交
1756
    GDBRegisterState *r;
1757

P
pbrook 已提交
1758 1759 1760 1761 1762 1763 1764 1765
    if (reg < NUM_CORE_REGS)
        return cpu_gdb_write_register(env, mem_buf, reg);

    for (r = env->gdb_regs; r; r = r->next) {
        if (r->base_reg <= reg && reg < r->base_reg + r->num_regs) {
            return r->set_reg(env, mem_buf, reg - r->base_reg);
        }
    }
B
bellard 已提交
1766 1767 1768
    return 0;
}

M
Max Filippov 已提交
1769
#if !defined(TARGET_XTENSA)
P
pbrook 已提交
1770 1771 1772 1773 1774 1775 1776 1777 1778
/* Register a supplemental set of CPU registers.  If g_pos is nonzero it
   specifies the first register number and these registers are included in
   a standard "g" packet.  Direction is relative to gdb, i.e. get_reg is
   gdb reading a CPU register, and set_reg is gdb modifying a CPU register.
 */

void gdb_register_coprocessor(CPUState * env,
                             gdb_reg_cb get_reg, gdb_reg_cb set_reg,
                             int num_regs, const char *xml, int g_pos)
B
bellard 已提交
1779
{
P
pbrook 已提交
1780 1781 1782 1783
    GDBRegisterState *s;
    GDBRegisterState **p;
    static int last_reg = NUM_CORE_REGS;

1784
    s = (GDBRegisterState *)g_malloc0(sizeof(GDBRegisterState));
P
pbrook 已提交
1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807
    s->base_reg = last_reg;
    s->num_regs = num_regs;
    s->get_reg = get_reg;
    s->set_reg = set_reg;
    s->xml = xml;
    p = &env->gdb_regs;
    while (*p) {
        /* Check for duplicates.  */
        if (strcmp((*p)->xml, xml) == 0)
            return;
        p = &(*p)->next;
    }
    /* Add to end of list.  */
    last_reg += num_regs;
    *p = s;
    if (g_pos) {
        if (g_pos != s->base_reg) {
            fprintf(stderr, "Error: Bad gdb register numbering for '%s'\n"
                    "Expected %d got %d\n", xml, g_pos, s->base_reg);
        } else {
            num_g_regs = last_reg;
        }
    }
B
bellard 已提交
1808
}
M
Max Filippov 已提交
1809
#endif
B
bellard 已提交
1810

1811 1812 1813 1814 1815 1816 1817 1818
#ifndef CONFIG_USER_ONLY
static const int xlat_gdb_type[] = {
    [GDB_WATCHPOINT_WRITE]  = BP_GDB | BP_MEM_WRITE,
    [GDB_WATCHPOINT_READ]   = BP_GDB | BP_MEM_READ,
    [GDB_WATCHPOINT_ACCESS] = BP_GDB | BP_MEM_ACCESS,
};
#endif

1819
static int gdb_breakpoint_insert(target_ulong addr, target_ulong len, int type)
1820
{
1821 1822 1823
    CPUState *env;
    int err = 0;

1824 1825 1826
    if (kvm_enabled())
        return kvm_insert_breakpoint(gdbserver_state->c_cpu, addr, len, type);

1827 1828 1829
    switch (type) {
    case GDB_BREAKPOINT_SW:
    case GDB_BREAKPOINT_HW:
1830 1831 1832 1833 1834 1835
        for (env = first_cpu; env != NULL; env = env->next_cpu) {
            err = cpu_breakpoint_insert(env, addr, BP_GDB, NULL);
            if (err)
                break;
        }
        return err;
1836 1837 1838 1839
#ifndef CONFIG_USER_ONLY
    case GDB_WATCHPOINT_WRITE:
    case GDB_WATCHPOINT_READ:
    case GDB_WATCHPOINT_ACCESS:
1840 1841 1842 1843 1844 1845 1846
        for (env = first_cpu; env != NULL; env = env->next_cpu) {
            err = cpu_watchpoint_insert(env, addr, len, xlat_gdb_type[type],
                                        NULL);
            if (err)
                break;
        }
        return err;
1847 1848 1849 1850 1851 1852
#endif
    default:
        return -ENOSYS;
    }
}

1853
static int gdb_breakpoint_remove(target_ulong addr, target_ulong len, int type)
1854
{
1855 1856 1857
    CPUState *env;
    int err = 0;

1858 1859 1860
    if (kvm_enabled())
        return kvm_remove_breakpoint(gdbserver_state->c_cpu, addr, len, type);

1861 1862 1863
    switch (type) {
    case GDB_BREAKPOINT_SW:
    case GDB_BREAKPOINT_HW:
1864 1865 1866 1867 1868 1869
        for (env = first_cpu; env != NULL; env = env->next_cpu) {
            err = cpu_breakpoint_remove(env, addr, BP_GDB);
            if (err)
                break;
        }
        return err;
1870 1871 1872 1873
#ifndef CONFIG_USER_ONLY
    case GDB_WATCHPOINT_WRITE:
    case GDB_WATCHPOINT_READ:
    case GDB_WATCHPOINT_ACCESS:
1874 1875 1876 1877 1878 1879
        for (env = first_cpu; env != NULL; env = env->next_cpu) {
            err = cpu_watchpoint_remove(env, addr, len, xlat_gdb_type[type]);
            if (err)
                break;
        }
        return err;
1880 1881 1882 1883 1884 1885
#endif
    default:
        return -ENOSYS;
    }
}

1886
static void gdb_breakpoint_remove_all(void)
1887
{
1888 1889
    CPUState *env;

1890 1891 1892 1893 1894
    if (kvm_enabled()) {
        kvm_remove_all_breakpoints(gdbserver_state->c_cpu);
        return;
    }

1895 1896
    for (env = first_cpu; env != NULL; env = env->next_cpu) {
        cpu_breakpoint_remove_all(env, BP_GDB);
1897
#ifndef CONFIG_USER_ONLY
1898
        cpu_watchpoint_remove_all(env, BP_GDB);
1899
#endif
1900
    }
1901 1902
}

A
aurel32 已提交
1903 1904 1905
static void gdb_set_cpu_pc(GDBState *s, target_ulong pc)
{
#if defined(TARGET_I386)
1906
    cpu_synchronize_state(s->c_cpu);
A
aurel32 已提交
1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917
    s->c_cpu->eip = pc;
#elif defined (TARGET_PPC)
    s->c_cpu->nip = pc;
#elif defined (TARGET_SPARC)
    s->c_cpu->pc = pc;
    s->c_cpu->npc = pc + 4;
#elif defined (TARGET_ARM)
    s->c_cpu->regs[15] = pc;
#elif defined (TARGET_SH4)
    s->c_cpu->pc = pc;
#elif defined (TARGET_MIPS)
N
Nathan Froyd 已提交
1918 1919 1920 1921 1922 1923
    s->c_cpu->active_tc.PC = pc & ~(target_ulong)1;
    if (pc & 1) {
        s->c_cpu->hflags |= MIPS_HFLAG_M16;
    } else {
        s->c_cpu->hflags &= ~(MIPS_HFLAG_M16);
    }
1924 1925
#elif defined (TARGET_MICROBLAZE)
    s->c_cpu->sregs[SR_PC] = pc;
A
aurel32 已提交
1926 1927 1928 1929
#elif defined (TARGET_CRIS)
    s->c_cpu->pc = pc;
#elif defined (TARGET_ALPHA)
    s->c_cpu->pc = pc;
A
Alexander Graf 已提交
1930 1931 1932
#elif defined (TARGET_S390X)
    cpu_synchronize_state(s->c_cpu);
    s->c_cpu->psw.addr = pc;
M
Michael Walle 已提交
1933 1934
#elif defined (TARGET_LM32)
    s->c_cpu->pc = pc;
M
Max Filippov 已提交
1935 1936
#elif defined(TARGET_XTENSA)
    s->c_cpu->pc = pc;
A
aurel32 已提交
1937 1938 1939
#endif
}

1940 1941
static inline int gdb_id(CPUState *env)
{
1942
#if defined(CONFIG_USER_ONLY) && defined(CONFIG_USE_NPTL)
1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961
    return env->host_tid;
#else
    return env->cpu_index + 1;
#endif
}

static CPUState *find_cpu(uint32_t thread_id)
{
    CPUState *env;

    for (env = first_cpu; env != NULL; env = env->next_cpu) {
        if (gdb_id(env) == thread_id) {
            return env;
        }
    }

    return NULL;
}

1962
static int gdb_handle_packet(GDBState *s, const char *line_buf)
B
bellard 已提交
1963
{
1964
    CPUState *env;
B
bellard 已提交
1965
    const char *p;
1966 1967
    uint32_t thread;
    int ch, reg_size, type, res;
P
pbrook 已提交
1968 1969 1970
    char buf[MAX_PACKET_LENGTH];
    uint8_t mem_buf[MAX_PACKET_LENGTH];
    uint8_t *registers;
1971
    target_ulong addr, len;
1972

1973 1974 1975 1976 1977 1978 1979
#ifdef DEBUG_GDB
    printf("command='%s'\n", line_buf);
#endif
    p = line_buf;
    ch = *p++;
    switch(ch) {
    case '?':
B
bellard 已提交
1980
        /* TODO: Make this return the correct value for user-mode.  */
1981
        snprintf(buf, sizeof(buf), "T%02xthread:%02x;", GDB_SIGNAL_TRAP,
1982
                 gdb_id(s->c_cpu));
1983
        put_packet(s, buf);
1984 1985 1986 1987
        /* Remove all the breakpoints when this query is issued,
         * because gdb is doing and initial connect and the state
         * should be cleaned up.
         */
1988
        gdb_breakpoint_remove_all();
1989 1990 1991
        break;
    case 'c':
        if (*p != '\0') {
1992
            addr = strtoull(p, (char **)&p, 16);
A
aurel32 已提交
1993
            gdb_set_cpu_pc(s, addr);
1994
        }
1995
        s->signal = 0;
1996
        gdb_continue(s);
B
bellard 已提交
1997
	return RS_IDLE;
1998
    case 'C':
1999 2000 2001
        s->signal = gdb_signal_to_target (strtoul(p, (char **)&p, 16));
        if (s->signal == -1)
            s->signal = 0;
2002 2003
        gdb_continue(s);
        return RS_IDLE;
J
Jan Kiszka 已提交
2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061
    case 'v':
        if (strncmp(p, "Cont", 4) == 0) {
            int res_signal, res_thread;

            p += 4;
            if (*p == '?') {
                put_packet(s, "vCont;c;C;s;S");
                break;
            }
            res = 0;
            res_signal = 0;
            res_thread = 0;
            while (*p) {
                int action, signal;

                if (*p++ != ';') {
                    res = 0;
                    break;
                }
                action = *p++;
                signal = 0;
                if (action == 'C' || action == 'S') {
                    signal = strtoul(p, (char **)&p, 16);
                } else if (action != 'c' && action != 's') {
                    res = 0;
                    break;
                }
                thread = 0;
                if (*p == ':') {
                    thread = strtoull(p+1, (char **)&p, 16);
                }
                action = tolower(action);
                if (res == 0 || (res == 'c' && action == 's')) {
                    res = action;
                    res_signal = signal;
                    res_thread = thread;
                }
            }
            if (res) {
                if (res_thread != -1 && res_thread != 0) {
                    env = find_cpu(res_thread);
                    if (env == NULL) {
                        put_packet(s, "E22");
                        break;
                    }
                    s->c_cpu = env;
                }
                if (res == 's') {
                    cpu_single_step(s->c_cpu, sstep_flags);
                }
                s->signal = res_signal;
                gdb_continue(s);
                return RS_IDLE;
            }
            break;
        } else {
            goto unknown_command;
        }
2062 2063 2064 2065 2066 2067
    case 'k':
        /* Kill the target */
        fprintf(stderr, "\nQEMU: Terminated via GDBstub\n");
        exit(0);
    case 'D':
        /* Detach packet */
2068
        gdb_breakpoint_remove_all();
D
Daniel Gutson 已提交
2069
        gdb_syscall_mode = GDB_SYS_DISABLED;
2070 2071 2072
        gdb_continue(s);
        put_packet(s, "OK");
        break;
2073 2074
    case 's':
        if (*p != '\0') {
2075
            addr = strtoull(p, (char **)&p, 16);
A
aurel32 已提交
2076
            gdb_set_cpu_pc(s, addr);
2077
        }
2078
        cpu_single_step(s->c_cpu, sstep_flags);
2079
        gdb_continue(s);
B
bellard 已提交
2080
	return RS_IDLE;
P
pbrook 已提交
2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096
    case 'F':
        {
            target_ulong ret;
            target_ulong err;

            ret = strtoull(p, (char **)&p, 16);
            if (*p == ',') {
                p++;
                err = strtoull(p, (char **)&p, 16);
            } else {
                err = 0;
            }
            if (*p == ',')
                p++;
            type = *p;
            if (gdb_current_syscall_cb)
2097
                gdb_current_syscall_cb(s->c_cpu, ret, err);
P
pbrook 已提交
2098 2099 2100
            if (type == 'C') {
                put_packet(s, "T02");
            } else {
2101
                gdb_continue(s);
P
pbrook 已提交
2102 2103 2104
            }
        }
        break;
2105
    case 'g':
2106
        cpu_synchronize_state(s->g_cpu);
M
Max Filippov 已提交
2107
        env = s->g_cpu;
P
pbrook 已提交
2108 2109
        len = 0;
        for (addr = 0; addr < num_g_regs; addr++) {
2110
            reg_size = gdb_read_register(s->g_cpu, mem_buf + len, addr);
P
pbrook 已提交
2111 2112 2113
            len += reg_size;
        }
        memtohex(buf, mem_buf, len);
2114 2115 2116
        put_packet(s, buf);
        break;
    case 'G':
2117
        cpu_synchronize_state(s->g_cpu);
M
Max Filippov 已提交
2118
        env = s->g_cpu;
P
pbrook 已提交
2119
        registers = mem_buf;
2120 2121
        len = strlen(p) / 2;
        hextomem((uint8_t *)registers, p, len);
P
pbrook 已提交
2122
        for (addr = 0; addr < num_g_regs && len > 0; addr++) {
2123
            reg_size = gdb_write_register(s->g_cpu, registers, addr);
P
pbrook 已提交
2124 2125 2126
            len -= reg_size;
            registers += reg_size;
        }
2127 2128 2129
        put_packet(s, "OK");
        break;
    case 'm':
2130
        addr = strtoull(p, (char **)&p, 16);
2131 2132
        if (*p == ',')
            p++;
2133
        len = strtoull(p, NULL, 16);
2134
        if (target_memory_rw_debug(s->g_cpu, addr, mem_buf, len, 0) != 0) {
2135 2136 2137 2138 2139
            put_packet (s, "E14");
        } else {
            memtohex(buf, mem_buf, len);
            put_packet(s, buf);
        }
2140 2141
        break;
    case 'M':
2142
        addr = strtoull(p, (char **)&p, 16);
2143 2144
        if (*p == ',')
            p++;
2145
        len = strtoull(p, (char **)&p, 16);
2146
        if (*p == ':')
2147 2148
            p++;
        hextomem(mem_buf, p, len);
2149
        if (target_memory_rw_debug(s->g_cpu, addr, mem_buf, len, 1) != 0) {
B
bellard 已提交
2150
            put_packet(s, "E14");
2151
        } else {
2152
            put_packet(s, "OK");
2153
        }
2154
        break;
P
pbrook 已提交
2155 2156 2157 2158 2159 2160 2161
    case 'p':
        /* Older gdb are really dumb, and don't use 'g' if 'p' is avaialable.
           This works, but can be very slow.  Anything new enough to
           understand XML also knows how to use this properly.  */
        if (!gdb_has_xml)
            goto unknown_command;
        addr = strtoull(p, (char **)&p, 16);
2162
        reg_size = gdb_read_register(s->g_cpu, mem_buf, addr);
P
pbrook 已提交
2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177
        if (reg_size) {
            memtohex(buf, mem_buf, reg_size);
            put_packet(s, buf);
        } else {
            put_packet(s, "E14");
        }
        break;
    case 'P':
        if (!gdb_has_xml)
            goto unknown_command;
        addr = strtoull(p, (char **)&p, 16);
        if (*p == '=')
            p++;
        reg_size = strlen(p) / 2;
        hextomem(mem_buf, p, reg_size);
2178
        gdb_write_register(s->g_cpu, mem_buf, addr);
P
pbrook 已提交
2179 2180
        put_packet(s, "OK");
        break;
2181 2182 2183 2184 2185
    case 'Z':
    case 'z':
        type = strtoul(p, (char **)&p, 16);
        if (*p == ',')
            p++;
2186
        addr = strtoull(p, (char **)&p, 16);
2187 2188
        if (*p == ',')
            p++;
2189
        len = strtoull(p, (char **)&p, 16);
2190
        if (ch == 'Z')
2191
            res = gdb_breakpoint_insert(addr, len, type);
2192
        else
2193
            res = gdb_breakpoint_remove(addr, len, type);
2194 2195 2196
        if (res >= 0)
             put_packet(s, "OK");
        else if (res == -ENOSYS)
P
pbrook 已提交
2197
            put_packet(s, "");
2198 2199
        else
            put_packet(s, "E22");
2200
        break;
2201 2202 2203 2204 2205 2206 2207
    case 'H':
        type = *p++;
        thread = strtoull(p, (char **)&p, 16);
        if (thread == -1 || thread == 0) {
            put_packet(s, "OK");
            break;
        }
2208
        env = find_cpu(thread);
2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228
        if (env == NULL) {
            put_packet(s, "E22");
            break;
        }
        switch (type) {
        case 'c':
            s->c_cpu = env;
            put_packet(s, "OK");
            break;
        case 'g':
            s->g_cpu = env;
            put_packet(s, "OK");
            break;
        default:
             put_packet(s, "E22");
             break;
        }
        break;
    case 'T':
        thread = strtoull(p, (char **)&p, 16);
2229 2230 2231 2232 2233
        env = find_cpu(thread);

        if (env != NULL) {
            put_packet(s, "OK");
        } else {
2234
            put_packet(s, "E22");
2235
        }
2236
        break;
2237
    case 'q':
2238 2239 2240 2241
    case 'Q':
        /* parse any 'q' packets here */
        if (!strcmp(p,"qemu.sstepbits")) {
            /* Query Breakpoint bit definitions */
B
blueswir1 已提交
2242 2243 2244 2245
            snprintf(buf, sizeof(buf), "ENABLE=%x,NOIRQ=%x,NOTIMER=%x",
                     SSTEP_ENABLE,
                     SSTEP_NOIRQ,
                     SSTEP_NOTIMER);
2246 2247 2248 2249 2250 2251 2252
            put_packet(s, buf);
            break;
        } else if (strncmp(p,"qemu.sstep",10) == 0) {
            /* Display or change the sstep_flags */
            p += 10;
            if (*p != '=') {
                /* Display current setting */
B
blueswir1 已提交
2253
                snprintf(buf, sizeof(buf), "0x%x", sstep_flags);
2254 2255 2256 2257 2258 2259 2260 2261
                put_packet(s, buf);
                break;
            }
            p++;
            type = strtoul(p, (char **)&p, 16);
            sstep_flags = type;
            put_packet(s, "OK");
            break;
2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272
        } else if (strcmp(p,"C") == 0) {
            /* "Current thread" remains vague in the spec, so always return
             *  the first CPU (gdb returns the first thread). */
            put_packet(s, "QC1");
            break;
        } else if (strcmp(p,"fThreadInfo") == 0) {
            s->query_cpu = first_cpu;
            goto report_cpuinfo;
        } else if (strcmp(p,"sThreadInfo") == 0) {
        report_cpuinfo:
            if (s->query_cpu) {
2273
                snprintf(buf, sizeof(buf), "m%x", gdb_id(s->query_cpu));
2274 2275 2276 2277 2278 2279 2280
                put_packet(s, buf);
                s->query_cpu = s->query_cpu->next_cpu;
            } else
                put_packet(s, "l");
            break;
        } else if (strncmp(p,"ThreadExtraInfo,", 16) == 0) {
            thread = strtoull(p+16, (char **)&p, 16);
2281 2282
            env = find_cpu(thread);
            if (env != NULL) {
2283
                cpu_synchronize_state(env);
2284 2285 2286 2287 2288 2289
                len = snprintf((char *)mem_buf, sizeof(mem_buf),
                               "CPU#%d [%s]", env->cpu_index,
                               env->halted ? "halted " : "running");
                memtohex(buf, mem_buf, len);
                put_packet(s, buf);
            }
2290
            break;
2291
        }
B
blueswir1 已提交
2292
#ifdef CONFIG_USER_ONLY
2293
        else if (strncmp(p, "Offsets", 7) == 0) {
2294
            TaskState *ts = s->c_cpu->opaque;
2295

B
blueswir1 已提交
2296 2297 2298 2299 2300 2301
            snprintf(buf, sizeof(buf),
                     "Text=" TARGET_ABI_FMT_lx ";Data=" TARGET_ABI_FMT_lx
                     ";Bss=" TARGET_ABI_FMT_lx,
                     ts->info->code_offset,
                     ts->info->data_offset,
                     ts->info->data_offset);
2302 2303 2304
            put_packet(s, buf);
            break;
        }
B
blueswir1 已提交
2305
#else /* !CONFIG_USER_ONLY */
2306 2307 2308 2309 2310 2311 2312 2313 2314 2315
        else if (strncmp(p, "Rcmd,", 5) == 0) {
            int len = strlen(p + 5);

            if ((len % 2) != 0) {
                put_packet(s, "E01");
                break;
            }
            hextomem(mem_buf, p + 5, len);
            len = len / 2;
            mem_buf[len++] = 0;
2316
            qemu_chr_be_write(s->mon_chr, mem_buf, len);
2317 2318 2319
            put_packet(s, "OK");
            break;
        }
B
blueswir1 已提交
2320
#endif /* !CONFIG_USER_ONLY */
P
pbrook 已提交
2321
        if (strncmp(p, "Supported", 9) == 0) {
B
blueswir1 已提交
2322
            snprintf(buf, sizeof(buf), "PacketSize=%x", MAX_PACKET_LENGTH);
P
pbrook 已提交
2323
#ifdef GDB_CORE_XML
2324
            pstrcat(buf, sizeof(buf), ";qXfer:features:read+");
P
pbrook 已提交
2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335
#endif
            put_packet(s, buf);
            break;
        }
#ifdef GDB_CORE_XML
        if (strncmp(p, "Xfer:features:read:", 19) == 0) {
            const char *xml;
            target_ulong total_len;

            gdb_has_xml = 1;
            p += 19;
2336
            xml = get_feature_xml(p, &p);
P
pbrook 已提交
2337
            if (!xml) {
B
blueswir1 已提交
2338
                snprintf(buf, sizeof(buf), "E00");
P
pbrook 已提交
2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351
                put_packet(s, buf);
                break;
            }

            if (*p == ':')
                p++;
            addr = strtoul(p, (char **)&p, 16);
            if (*p == ',')
                p++;
            len = strtoul(p, (char **)&p, 16);

            total_len = strlen(xml);
            if (addr > total_len) {
B
blueswir1 已提交
2352
                snprintf(buf, sizeof(buf), "E00");
P
pbrook 已提交
2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371
                put_packet(s, buf);
                break;
            }
            if (len > (MAX_PACKET_LENGTH - 5) / 2)
                len = (MAX_PACKET_LENGTH - 5) / 2;
            if (len < total_len - addr) {
                buf[0] = 'm';
                len = memtox(buf + 1, xml + addr, len);
            } else {
                buf[0] = 'l';
                len = memtox(buf + 1, xml + addr, total_len - addr);
            }
            put_packet_binary(s, buf, len + 1);
            break;
        }
#endif
        /* Unrecognised 'q' command.  */
        goto unknown_command;

2372
    default:
P
pbrook 已提交
2373
    unknown_command:
2374 2375 2376 2377 2378 2379 2380 2381
        /* put empty packet */
        buf[0] = '\0';
        put_packet(s, buf);
        break;
    }
    return RS_IDLE;
}

2382 2383 2384 2385 2386 2387
void gdb_set_stop_cpu(CPUState *env)
{
    gdbserver_state->c_cpu = env;
    gdbserver_state->g_cpu = env;
}

B
bellard 已提交
2388
#ifndef CONFIG_USER_ONLY
2389
static void gdb_vm_state_change(void *opaque, int running, RunState state)
2390
{
2391 2392
    GDBState *s = gdbserver_state;
    CPUState *env = s->c_cpu;
2393
    char buf[256];
2394
    const char *type;
2395 2396
    int ret;

2397
    if (running || s->state == RS_INACTIVE || s->state == RS_SYSCALL) {
P
pbrook 已提交
2398
        return;
J
Jan Kiszka 已提交
2399
    }
2400
    switch (state) {
2401
    case RUN_STATE_DEBUG:
2402 2403
        if (env->watchpoint_hit) {
            switch (env->watchpoint_hit->flags & BP_MEM_ACCESS) {
2404
            case BP_MEM_READ:
2405 2406
                type = "r";
                break;
2407
            case BP_MEM_ACCESS:
2408 2409 2410 2411 2412 2413
                type = "a";
                break;
            default:
                type = "";
                break;
            }
2414 2415
            snprintf(buf, sizeof(buf),
                     "T%02xthread:%02x;%swatch:" TARGET_FMT_lx ";",
2416
                     GDB_SIGNAL_TRAP, gdb_id(env), type,
2417 2418
                     env->watchpoint_hit->vaddr);
            env->watchpoint_hit = NULL;
2419
            goto send_packet;
2420
        }
2421
        tb_flush(env);
2422
        ret = GDB_SIGNAL_TRAP;
2423
        break;
2424
    case RUN_STATE_PAUSED:
2425
        ret = GDB_SIGNAL_INT;
2426
        break;
2427
    case RUN_STATE_SHUTDOWN:
2428 2429
        ret = GDB_SIGNAL_QUIT;
        break;
2430
    case RUN_STATE_IO_ERROR:
2431 2432
        ret = GDB_SIGNAL_IO;
        break;
2433
    case RUN_STATE_WATCHDOG:
2434 2435
        ret = GDB_SIGNAL_ALRM;
        break;
2436
    case RUN_STATE_INTERNAL_ERROR:
2437 2438
        ret = GDB_SIGNAL_ABRT;
        break;
2439 2440
    case RUN_STATE_SAVE_VM:
    case RUN_STATE_RESTORE_VM:
2441
        return;
2442
    case RUN_STATE_FINISH_MIGRATE:
2443 2444 2445 2446 2447
        ret = GDB_SIGNAL_XCPU;
        break;
    default:
        ret = GDB_SIGNAL_UNKNOWN;
        break;
B
bellard 已提交
2448
    }
2449
    snprintf(buf, sizeof(buf), "T%02xthread:%02x;", ret, gdb_id(env));
2450 2451

send_packet:
2452
    put_packet(s, buf);
2453 2454 2455

    /* disable single step if it was enabled */
    cpu_single_step(env, 0);
2456
}
B
bellard 已提交
2457
#endif
2458

P
pbrook 已提交
2459 2460
/* Send a gdb syscall request.
   This accepts limited printf-style format specifiers, specifically:
P
pbrook 已提交
2461 2462 2463
    %x  - target_ulong argument printed in hex.
    %lx - 64-bit argument printed in hex.
    %s  - string pointer (target_ulong) and length (int) pair.  */
2464
void gdb_do_syscall(gdb_syscall_complete_cb cb, const char *fmt, ...)
P
pbrook 已提交
2465 2466 2467 2468 2469
{
    va_list va;
    char buf[256];
    char *p;
    target_ulong addr;
P
pbrook 已提交
2470
    uint64_t i64;
P
pbrook 已提交
2471 2472
    GDBState *s;

2473
    s = gdbserver_state;
P
pbrook 已提交
2474 2475 2476 2477 2478
    if (!s)
        return;
    gdb_current_syscall_cb = cb;
    s->state = RS_SYSCALL;
#ifndef CONFIG_USER_ONLY
2479
    vm_stop(RUN_STATE_DEBUG);
P
pbrook 已提交
2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490
#endif
    s->state = RS_IDLE;
    va_start(va, fmt);
    p = buf;
    *(p++) = 'F';
    while (*fmt) {
        if (*fmt == '%') {
            fmt++;
            switch (*fmt++) {
            case 'x':
                addr = va_arg(va, target_ulong);
B
blueswir1 已提交
2491
                p += snprintf(p, &buf[sizeof(buf)] - p, TARGET_FMT_lx, addr);
P
pbrook 已提交
2492
                break;
P
pbrook 已提交
2493 2494 2495 2496
            case 'l':
                if (*(fmt++) != 'x')
                    goto bad_format;
                i64 = va_arg(va, uint64_t);
B
blueswir1 已提交
2497
                p += snprintf(p, &buf[sizeof(buf)] - p, "%" PRIx64, i64);
P
pbrook 已提交
2498
                break;
P
pbrook 已提交
2499 2500
            case 's':
                addr = va_arg(va, target_ulong);
B
blueswir1 已提交
2501 2502
                p += snprintf(p, &buf[sizeof(buf)] - p, TARGET_FMT_lx "/%x",
                              addr, va_arg(va, int));
P
pbrook 已提交
2503 2504
                break;
            default:
P
pbrook 已提交
2505
            bad_format:
P
pbrook 已提交
2506 2507 2508 2509 2510 2511 2512 2513
                fprintf(stderr, "gdbstub: Bad syscall format string '%s'\n",
                        fmt - 1);
                break;
            }
        } else {
            *(p++) = *(fmt++);
        }
    }
P
pbrook 已提交
2514
    *p = 0;
P
pbrook 已提交
2515 2516 2517
    va_end(va);
    put_packet(s, buf);
#ifdef CONFIG_USER_ONLY
2518
    gdb_handlesig(s->c_cpu, 0);
P
pbrook 已提交
2519
#else
2520
    cpu_exit(s->c_cpu);
P
pbrook 已提交
2521 2522 2523
#endif
}

B
bellard 已提交
2524
static void gdb_read_byte(GDBState *s, int ch)
2525 2526
{
    int i, csum;
T
ths 已提交
2527
    uint8_t reply;
2528

B
bellard 已提交
2529
#ifndef CONFIG_USER_ONLY
2530 2531 2532 2533 2534 2535 2536
    if (s->last_packet_len) {
        /* Waiting for a response to the last packet.  If we see the start
           of a new command then abandon the previous response.  */
        if (ch == '-') {
#ifdef DEBUG_GDB
            printf("Got NACK, retransmitting\n");
#endif
T
ths 已提交
2537
            put_buffer(s, (uint8_t *)s->last_packet, s->last_packet_len);
2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549
        }
#ifdef DEBUG_GDB
        else if (ch == '+')
            printf("Got ACK\n");
        else
            printf("Got '%c' when expecting ACK/NACK\n", ch);
#endif
        if (ch == '+' || ch == '$')
            s->last_packet_len = 0;
        if (ch != '$')
            return;
    }
2550
    if (runstate_is_running()) {
2551 2552
        /* when the CPU is running, we cannot do anything except stop
           it when receiving a char */
2553
        vm_stop(RUN_STATE_PAUSED);
2554
    } else
B
bellard 已提交
2555
#endif
B
bellard 已提交
2556
    {
2557 2558 2559 2560 2561
        switch(s->state) {
        case RS_IDLE:
            if (ch == '$') {
                s->line_buf_index = 0;
                s->state = RS_GETLINE;
B
bellard 已提交
2562
            }
B
bellard 已提交
2563
            break;
2564 2565 2566 2567 2568
        case RS_GETLINE:
            if (ch == '#') {
            s->state = RS_CHKSUM1;
            } else if (s->line_buf_index >= sizeof(s->line_buf) - 1) {
                s->state = RS_IDLE;
B
bellard 已提交
2569
            } else {
2570
            s->line_buf[s->line_buf_index++] = ch;
B
bellard 已提交
2571 2572
            }
            break;
2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584
        case RS_CHKSUM1:
            s->line_buf[s->line_buf_index] = '\0';
            s->line_csum = fromhex(ch) << 4;
            s->state = RS_CHKSUM2;
            break;
        case RS_CHKSUM2:
            s->line_csum |= fromhex(ch);
            csum = 0;
            for(i = 0; i < s->line_buf_index; i++) {
                csum += s->line_buf[i];
            }
            if (s->line_csum != (csum & 0xff)) {
T
ths 已提交
2585 2586
                reply = '-';
                put_buffer(s, &reply, 1);
2587
                s->state = RS_IDLE;
B
bellard 已提交
2588
            } else {
T
ths 已提交
2589 2590
                reply = '+';
                put_buffer(s, &reply, 1);
2591
                s->state = gdb_handle_packet(s, s->line_buf);
B
bellard 已提交
2592 2593
            }
            break;
P
pbrook 已提交
2594 2595
        default:
            abort();
2596 2597 2598 2599
        }
    }
}

P
Paul Brook 已提交
2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617
/* Tell the remote gdb that the process has exited.  */
void gdb_exit(CPUState *env, int code)
{
  GDBState *s;
  char buf[4];

  s = gdbserver_state;
  if (!s) {
      return;
  }
#ifdef CONFIG_USER_ONLY
  if (gdbserver_fd < 0 || s->fd < 0) {
      return;
  }
#endif

  snprintf(buf, sizeof(buf), "W%02x", (uint8_t)code);
  put_packet(s, buf);
2618 2619 2620

#ifndef CONFIG_USER_ONLY
  if (s->chr) {
2621
      qemu_chr_delete(s->chr);
2622 2623
  }
#endif
P
Paul Brook 已提交
2624 2625
}

B
bellard 已提交
2626
#ifdef CONFIG_USER_ONLY
2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639
int
gdb_queuesig (void)
{
    GDBState *s;

    s = gdbserver_state;

    if (gdbserver_fd < 0 || s->fd < 0)
        return 0;
    else
        return 1;
}

B
bellard 已提交
2640 2641 2642 2643 2644 2645 2646
int
gdb_handlesig (CPUState *env, int sig)
{
  GDBState *s;
  char buf[256];
  int n;

2647
  s = gdbserver_state;
2648 2649
  if (gdbserver_fd < 0 || s->fd < 0)
    return sig;
B
bellard 已提交
2650 2651 2652 2653 2654 2655 2656

  /* disable single step if it was enabled */
  cpu_single_step(env, 0);
  tb_flush(env);

  if (sig != 0)
    {
2657
      snprintf(buf, sizeof(buf), "S%02x", target_signal_to_gdb (sig));
B
bellard 已提交
2658 2659
      put_packet(s, buf);
    }
2660 2661 2662 2663
  /* put_packet() might have detected that the peer terminated the 
     connection.  */
  if (s->fd < 0)
      return sig;
B
bellard 已提交
2664 2665 2666

  sig = 0;
  s->state = RS_IDLE;
B
bellard 已提交
2667 2668
  s->running_state = 0;
  while (s->running_state == 0) {
B
bellard 已提交
2669 2670 2671 2672 2673 2674
      n = read (s->fd, buf, 256);
      if (n > 0)
        {
          int i;

          for (i = 0; i < n; i++)
B
bellard 已提交
2675
            gdb_read_byte (s, buf[i]);
B
bellard 已提交
2676 2677 2678 2679 2680 2681 2682
        }
      else if (n == 0 || errno != EAGAIN)
        {
          /* XXX: Connection closed.  Should probably wait for annother
             connection before continuing.  */
          return sig;
        }
B
bellard 已提交
2683
  }
2684 2685
  sig = s->signal;
  s->signal = 0;
B
bellard 已提交
2686 2687
  return sig;
}
2688

2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701
/* Tell the remote gdb that the process has exited due to SIG.  */
void gdb_signalled(CPUState *env, int sig)
{
  GDBState *s;
  char buf[4];

  s = gdbserver_state;
  if (gdbserver_fd < 0 || s->fd < 0)
    return;

  snprintf(buf, sizeof(buf), "X%02x", target_signal_to_gdb (sig));
  put_packet(s, buf);
}
B
bellard 已提交
2702

2703
static void gdb_accept(void)
2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716
{
    GDBState *s;
    struct sockaddr_in sockaddr;
    socklen_t len;
    int val, fd;

    for(;;) {
        len = sizeof(sockaddr);
        fd = accept(gdbserver_fd, (struct sockaddr *)&sockaddr, &len);
        if (fd < 0 && errno != EINTR) {
            perror("accept");
            return;
        } else if (fd >= 0) {
K
Kevin Wolf 已提交
2717 2718 2719
#ifndef _WIN32
            fcntl(fd, F_SETFD, FD_CLOEXEC);
#endif
B
bellard 已提交
2720 2721 2722
            break;
        }
    }
2723 2724 2725

    /* set short latency */
    val = 1;
B
bellard 已提交
2726
    setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, (char *)&val, sizeof(val));
2727

2728
    s = g_malloc0(sizeof(GDBState));
2729 2730
    s->c_cpu = first_cpu;
    s->g_cpu = first_cpu;
2731
    s->fd = fd;
P
pbrook 已提交
2732
    gdb_has_xml = 0;
2733

2734
    gdbserver_state = s;
P
pbrook 已提交
2735

2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748
    fcntl(fd, F_SETFL, O_NONBLOCK);
}

static int gdbserver_open(int port)
{
    struct sockaddr_in sockaddr;
    int fd, val, ret;

    fd = socket(PF_INET, SOCK_STREAM, 0);
    if (fd < 0) {
        perror("socket");
        return -1;
    }
K
Kevin Wolf 已提交
2749 2750 2751
#ifndef _WIN32
    fcntl(fd, F_SETFD, FD_CLOEXEC);
#endif
2752 2753 2754

    /* allow fast reuse */
    val = 1;
B
bellard 已提交
2755
    setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, (char *)&val, sizeof(val));
2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778

    sockaddr.sin_family = AF_INET;
    sockaddr.sin_port = htons(port);
    sockaddr.sin_addr.s_addr = 0;
    ret = bind(fd, (struct sockaddr *)&sockaddr, sizeof(sockaddr));
    if (ret < 0) {
        perror("bind");
        return -1;
    }
    ret = listen(fd, 0);
    if (ret < 0) {
        perror("listen");
        return -1;
    }
    return fd;
}

int gdbserver_start(int port)
{
    gdbserver_fd = gdbserver_open(port);
    if (gdbserver_fd < 0)
        return -1;
    /* accept connections */
2779
    gdb_accept();
2780 2781
    return 0;
}
2782 2783 2784 2785 2786

/* Disable gdb stub for child processes.  */
void gdbserver_fork(CPUState *env)
{
    GDBState *s = gdbserver_state;
E
edgar_igl 已提交
2787
    if (gdbserver_fd < 0 || s->fd < 0)
2788 2789 2790 2791 2792 2793
      return;
    close(s->fd);
    s->fd = -1;
    cpu_breakpoint_remove_all(env, BP_GDB);
    cpu_watchpoint_remove_all(env, BP_GDB);
}
B
bellard 已提交
2794
#else
T
ths 已提交
2795
static int gdb_chr_can_receive(void *opaque)
2796
{
P
pbrook 已提交
2797 2798 2799
  /* We can handle an arbitrarily large amount of data.
   Pick the maximum packet size, which is as good as anything.  */
  return MAX_PACKET_LENGTH;
2800 2801
}

T
ths 已提交
2802
static void gdb_chr_receive(void *opaque, const uint8_t *buf, int size)
2803 2804 2805 2806
{
    int i;

    for (i = 0; i < size; i++) {
2807
        gdb_read_byte(gdbserver_state, buf[i]);
2808 2809 2810 2811 2812 2813
    }
}

static void gdb_chr_event(void *opaque, int event)
{
    switch (event) {
2814
    case CHR_EVENT_OPENED:
2815
        vm_stop(RUN_STATE_PAUSED);
P
pbrook 已提交
2816
        gdb_has_xml = 0;
2817 2818 2819 2820 2821 2822
        break;
    default:
        break;
    }
}

2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851
static void gdb_monitor_output(GDBState *s, const char *msg, int len)
{
    char buf[MAX_PACKET_LENGTH];

    buf[0] = 'O';
    if (len > (MAX_PACKET_LENGTH/2) - 1)
        len = (MAX_PACKET_LENGTH/2) - 1;
    memtohex(buf + 1, (uint8_t *)msg, len);
    put_packet(s, buf);
}

static int gdb_monitor_write(CharDriverState *chr, const uint8_t *buf, int len)
{
    const char *p = (const char *)buf;
    int max_sz;

    max_sz = (sizeof(gdbserver_state->last_packet) - 2) / 2;
    for (;;) {
        if (len <= max_sz) {
            gdb_monitor_output(gdbserver_state, p, len);
            break;
        }
        gdb_monitor_output(gdbserver_state, p, max_sz);
        p += max_sz;
        len -= max_sz;
    }
    return len;
}

2852 2853 2854
#ifndef _WIN32
static void gdb_sigterm_handler(int signal)
{
2855
    if (runstate_is_running()) {
2856
        vm_stop(RUN_STATE_PAUSED);
J
Jan Kiszka 已提交
2857
    }
2858 2859 2860 2861
}
#endif

int gdbserver_start(const char *device)
2862 2863
{
    GDBState *s;
2864
    char gdbstub_device_name[128];
2865 2866
    CharDriverState *chr = NULL;
    CharDriverState *mon_chr;
2867

2868 2869 2870 2871 2872 2873 2874 2875
    if (!device)
        return -1;
    if (strcmp(device, "none") != 0) {
        if (strstart(device, "tcp:", NULL)) {
            /* enforce required TCP attributes */
            snprintf(gdbstub_device_name, sizeof(gdbstub_device_name),
                     "%s,nowait,nodelay,server", device);
            device = gdbstub_device_name;
2876
        }
2877 2878 2879
#ifndef _WIN32
        else if (strcmp(device, "stdio") == 0) {
            struct sigaction act;
2880

2881 2882 2883 2884 2885
            memset(&act, 0, sizeof(act));
            act.sa_handler = gdb_sigterm_handler;
            sigaction(SIGINT, &act, NULL);
        }
#endif
2886
        chr = qemu_chr_new("gdb", device, NULL);
2887 2888 2889 2890 2891
        if (!chr)
            return -1;

        qemu_chr_add_handlers(chr, gdb_chr_can_receive, gdb_chr_receive,
                              gdb_chr_event, NULL);
2892 2893
    }

2894 2895
    s = gdbserver_state;
    if (!s) {
2896
        s = g_malloc0(sizeof(GDBState));
2897
        gdbserver_state = s;
2898

2899 2900 2901
        qemu_add_vm_change_state_handler(gdb_vm_state_change, NULL);

        /* Initialize a monitor terminal for gdb */
2902
        mon_chr = g_malloc0(sizeof(*mon_chr));
2903 2904 2905 2906
        mon_chr->chr_write = gdb_monitor_write;
        monitor_init(mon_chr, 0);
    } else {
        if (s->chr)
2907
            qemu_chr_delete(s->chr);
2908 2909 2910
        mon_chr = s->mon_chr;
        memset(s, 0, sizeof(GDBState));
    }
2911 2912
    s->c_cpu = first_cpu;
    s->g_cpu = first_cpu;
2913
    s->chr = chr;
2914 2915
    s->state = chr ? RS_IDLE : RS_INACTIVE;
    s->mon_chr = mon_chr;
2916

B
bellard 已提交
2917 2918
    return 0;
}
2919
#endif