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/*
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 * QEMU PC keyboard emulation
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 * 
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 * Copyright (c) 2003 Fabrice Bellard
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 * 
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 * Permission is hereby granted, free of charge, to any person obtaining a copy
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 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
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 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 */
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#include "vl.h"
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/* debug PC keyboard */
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//#define DEBUG_KBD
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/* debug PC keyboard : only mouse */
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//#define DEBUG_MOUSE
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/*        Keyboard Controller Commands */
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#define KBD_CCMD_READ_MODE        0x20        /* Read mode bits */
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#define KBD_CCMD_WRITE_MODE        0x60        /* Write mode bits */
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#define KBD_CCMD_GET_VERSION        0xA1        /* Get controller version */
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#define KBD_CCMD_MOUSE_DISABLE        0xA7        /* Disable mouse interface */
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#define KBD_CCMD_MOUSE_ENABLE        0xA8        /* Enable mouse interface */
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#define KBD_CCMD_TEST_MOUSE        0xA9        /* Mouse interface test */
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#define KBD_CCMD_SELF_TEST        0xAA        /* Controller self test */
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#define KBD_CCMD_KBD_TEST        0xAB        /* Keyboard interface test */
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#define KBD_CCMD_KBD_DISABLE        0xAD        /* Keyboard interface disable */
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#define KBD_CCMD_KBD_ENABLE        0xAE        /* Keyboard interface enable */
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#define KBD_CCMD_READ_INPORT    0xC0    /* read input port */
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#define KBD_CCMD_READ_OUTPORT        0xD0    /* read output port */
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#define KBD_CCMD_WRITE_OUTPORT        0xD1    /* write output port */
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#define KBD_CCMD_WRITE_OBUF        0xD2
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#define KBD_CCMD_WRITE_AUX_OBUF        0xD3    /* Write to output buffer as if
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                                           initiated by the auxiliary device */
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#define KBD_CCMD_WRITE_MOUSE        0xD4        /* Write the following byte to the mouse */
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#define KBD_CCMD_DISABLE_A20    0xDD    /* HP vectra only ? */
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#define KBD_CCMD_ENABLE_A20     0xDF    /* HP vectra only ? */
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#define KBD_CCMD_RESET                0xFE
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/* Keyboard Commands */
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#define KBD_CMD_SET_LEDS        0xED        /* Set keyboard leds */
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#define KBD_CMD_ECHO             0xEE
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#define KBD_CMD_GET_ID                 0xF2        /* get keyboard ID */
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#define KBD_CMD_SET_RATE        0xF3        /* Set typematic rate */
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#define KBD_CMD_ENABLE                0xF4        /* Enable scanning */
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#define KBD_CMD_RESET_DISABLE        0xF5        /* reset and disable scanning */
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#define KBD_CMD_RESET_ENABLE           0xF6    /* reset and enable scanning */
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#define KBD_CMD_RESET                0xFF        /* Reset */
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/* Keyboard Replies */
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#define KBD_REPLY_POR                0xAA        /* Power on reset */
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#define KBD_REPLY_ACK                0xFA        /* Command ACK */
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#define KBD_REPLY_RESEND        0xFE        /* Command NACK, send the cmd again */
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/* Status Register Bits */
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#define KBD_STAT_OBF                 0x01        /* Keyboard output buffer full */
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#define KBD_STAT_IBF                 0x02        /* Keyboard input buffer full */
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#define KBD_STAT_SELFTEST        0x04        /* Self test successful */
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#define KBD_STAT_CMD                0x08        /* Last write was a command write (0=data) */
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#define KBD_STAT_UNLOCKED        0x10        /* Zero if keyboard locked */
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#define KBD_STAT_MOUSE_OBF        0x20        /* Mouse output buffer full */
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#define KBD_STAT_GTO                 0x40        /* General receive/xmit timeout */
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#define KBD_STAT_PERR                 0x80        /* Parity error */
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/* Controller Mode Register Bits */
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#define KBD_MODE_KBD_INT        0x01        /* Keyboard data generate IRQ1 */
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#define KBD_MODE_MOUSE_INT        0x02        /* Mouse data generate IRQ12 */
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#define KBD_MODE_SYS                 0x04        /* The system flag (?) */
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#define KBD_MODE_NO_KEYLOCK        0x08        /* The keylock doesn't affect the keyboard if set */
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#define KBD_MODE_DISABLE_KBD        0x10        /* Disable keyboard interface */
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#define KBD_MODE_DISABLE_MOUSE        0x20        /* Disable mouse interface */
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#define KBD_MODE_KCC                 0x40        /* Scan code conversion to PC format */
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#define KBD_MODE_RFU                0x80
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/* Mouse Commands */
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#define AUX_SET_SCALE11                0xE6        /* Set 1:1 scaling */
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#define AUX_SET_SCALE21                0xE7        /* Set 2:1 scaling */
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#define AUX_SET_RES                0xE8        /* Set resolution */
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#define AUX_GET_SCALE                0xE9        /* Get scaling factor */
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#define AUX_SET_STREAM                0xEA        /* Set stream mode */
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#define AUX_POLL                0xEB        /* Poll */
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#define AUX_RESET_WRAP                0xEC        /* Reset wrap mode */
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#define AUX_SET_WRAP                0xEE        /* Set wrap mode */
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#define AUX_SET_REMOTE                0xF0        /* Set remote mode */
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#define AUX_GET_TYPE                0xF2        /* Get type */
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#define AUX_SET_SAMPLE                0xF3        /* Set sample rate */
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#define AUX_ENABLE_DEV                0xF4        /* Enable aux device */
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#define AUX_DISABLE_DEV                0xF5        /* Disable aux device */
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#define AUX_SET_DEFAULT                0xF6
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#define AUX_RESET                0xFF        /* Reset aux device */
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#define AUX_ACK                        0xFA        /* Command byte ACK. */
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#define MOUSE_STATUS_REMOTE     0x40
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#define MOUSE_STATUS_ENABLED    0x20
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#define MOUSE_STATUS_SCALE21    0x10
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#define KBD_QUEUE_SIZE 256
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typedef struct {
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    uint8_t aux[KBD_QUEUE_SIZE];
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    uint8_t data[KBD_QUEUE_SIZE];
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    int rptr, wptr, count;
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} KBDQueue;
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typedef struct KBDState {
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    KBDQueue queue;
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    uint8_t write_cmd; /* if non zero, write data to port 60 is expected */
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    uint8_t status;
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    uint8_t mode;
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    /* keyboard state */
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    int kbd_write_cmd;
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    int scan_enabled;
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    /* mouse state */
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    int mouse_write_cmd;
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    uint8_t mouse_status;
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    uint8_t mouse_resolution;
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    uint8_t mouse_sample_rate;
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    uint8_t mouse_wrap;
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    uint8_t mouse_type; /* 0 = PS2, 3 = IMPS/2, 4 = IMEX */
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    uint8_t mouse_detect_state;
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    int mouse_dx; /* current values, needed for 'poll' mode */
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    int mouse_dy;
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    int mouse_dz;
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    uint8_t mouse_buttons;
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} KBDState;
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KBDState kbd_state;
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int reset_requested;
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/* update irq and KBD_STAT_[MOUSE_]OBF */
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/* XXX: not generating the irqs if KBD_MODE_DISABLE_KBD is set may be
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   incorrect, but it avoids having to simulate exact delays */
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static void kbd_update_irq(KBDState *s)
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{
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    KBDQueue *q = &s->queue;
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    int irq12_level, irq1_level;
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    irq1_level = 0;    
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    irq12_level = 0;    
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    s->status &= ~(KBD_STAT_OBF | KBD_STAT_MOUSE_OBF);
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    if (q->count != 0) {
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        s->status |= KBD_STAT_OBF;
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        if (q->aux[q->rptr]) {
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            s->status |= KBD_STAT_MOUSE_OBF;
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            if (s->mode & KBD_MODE_MOUSE_INT)
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                irq12_level = 1;
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        } else {
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            if ((s->mode & KBD_MODE_KBD_INT) && 
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                !(s->mode & KBD_MODE_DISABLE_KBD))
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                irq1_level = 1;
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        }
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    }
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    pic_set_irq(1, irq1_level);
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    pic_set_irq(12, irq12_level);
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}
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static void kbd_queue(KBDState *s, int b, int aux)
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{
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    KBDQueue *q = &s->queue;
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#if defined(DEBUG_MOUSE) || defined(DEBUG_KBD)
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    if (aux)
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        printf("mouse event: 0x%02x\n", b);
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#ifdef DEBUG_KBD
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    else
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        printf("kbd event: 0x%02x\n", b);
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#endif
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#endif
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    if (q->count >= KBD_QUEUE_SIZE)
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        return;
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    q->aux[q->wptr] = aux;
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    q->data[q->wptr] = b;
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    if (++q->wptr == KBD_QUEUE_SIZE)
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        q->wptr = 0;
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    q->count++;
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    kbd_update_irq(s);
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}
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static void pc_kbd_put_keycode(void *opaque, int keycode)
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{
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    KBDState *s = opaque;
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    kbd_queue(s, keycode, 0);
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}
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static uint32_t kbd_read_status(void *opaque, uint32_t addr)
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{
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    KBDState *s = opaque;
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    int val;
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    val = s->status;
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#if defined(DEBUG_KBD)
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    printf("kbd: read status=0x%02x\n", val);
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#endif
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    return val;
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}
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static void kbd_write_command(void *opaque, uint32_t addr, uint32_t val)
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{
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    KBDState *s = opaque;
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#ifdef DEBUG_KBD
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    printf("kbd: write cmd=0x%02x\n", val);
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#endif
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    switch(val) {
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    case KBD_CCMD_READ_MODE:
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        kbd_queue(s, s->mode, 0);
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        break;
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    case KBD_CCMD_WRITE_MODE:
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    case KBD_CCMD_WRITE_OBUF:
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    case KBD_CCMD_WRITE_AUX_OBUF:
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    case KBD_CCMD_WRITE_MOUSE:
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    case KBD_CCMD_WRITE_OUTPORT:
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        s->write_cmd = val;
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        break;
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    case KBD_CCMD_MOUSE_DISABLE:
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        s->mode |= KBD_MODE_DISABLE_MOUSE;
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        break;
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    case KBD_CCMD_MOUSE_ENABLE:
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        s->mode &= ~KBD_MODE_DISABLE_MOUSE;
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        break;
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    case KBD_CCMD_TEST_MOUSE:
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        kbd_queue(s, 0x00, 0);
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        break;
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    case KBD_CCMD_SELF_TEST:
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        s->status |= KBD_STAT_SELFTEST;
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        kbd_queue(s, 0x55, 0);
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        break;
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    case KBD_CCMD_KBD_TEST:
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        kbd_queue(s, 0x00, 0);
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        break;
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    case KBD_CCMD_KBD_DISABLE:
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        s->mode |= KBD_MODE_DISABLE_KBD;
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        kbd_update_irq(s);
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        break;
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    case KBD_CCMD_KBD_ENABLE:
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        s->mode &= ~KBD_MODE_DISABLE_KBD;
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        kbd_update_irq(s);
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        break;
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    case KBD_CCMD_READ_INPORT:
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        kbd_queue(s, 0x00, 0);
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        break;
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    case KBD_CCMD_READ_OUTPORT:
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        /* XXX: check that */
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#ifdef TARGET_I386
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        val = 0x01 | (((cpu_single_env->a20_mask >> 20) & 1) << 1);
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#else
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        val = 0x01;
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#endif
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        if (s->status & KBD_STAT_OBF)
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            val |= 0x10;
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        if (s->status & KBD_STAT_MOUSE_OBF)
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            val |= 0x20;
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        kbd_queue(s, val, 0);
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        break;
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#ifdef TARGET_I386
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    case KBD_CCMD_ENABLE_A20:
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        cpu_x86_set_a20(cpu_single_env, 1);
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        break;
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    case KBD_CCMD_DISABLE_A20:
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        cpu_x86_set_a20(cpu_single_env, 0);
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        break;
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#endif
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    case KBD_CCMD_RESET:
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        reset_requested = 1;
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        cpu_interrupt(cpu_single_env, CPU_INTERRUPT_EXIT);
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        break;
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    case 0xff:
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        /* ignore that - I don't know what is its use */
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        break;
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    default:
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        fprintf(stderr, "qemu: unsupported keyboard cmd=0x%02x\n", val);
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        break;
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    }
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}
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static uint32_t kbd_read_data(void *opaque, uint32_t addr)
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{
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    KBDState *s = opaque;
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    KBDQueue *q;
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    int val, index, aux;
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    q = &s->queue;
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    if (q->count == 0) {
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        /* NOTE: if no data left, we return the last keyboard one
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           (needed for EMM386) */
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        /* XXX: need a timer to do things correctly */
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        index = q->rptr - 1;
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        if (index < 0)
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            index = KBD_QUEUE_SIZE - 1;
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        val = q->data[index];
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    } else {
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        aux = q->aux[q->rptr];
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        val = q->data[q->rptr];
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        if (++q->rptr == KBD_QUEUE_SIZE)
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            q->rptr = 0;
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        q->count--;
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        /* reading deasserts IRQ */
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        if (aux)
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            pic_set_irq(12, 0);
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        else
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            pic_set_irq(1, 0);
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    }
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    /* reassert IRQs if data left */
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    kbd_update_irq(s);
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#ifdef DEBUG_KBD
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    printf("kbd: read data=0x%02x\n", val);
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#endif
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    return val;
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}
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static void kbd_reset_keyboard(KBDState *s)
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{
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    s->scan_enabled = 1;
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}
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static void kbd_write_keyboard(KBDState *s, int val)
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{
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    switch(s->kbd_write_cmd) {
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    default:
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    case -1:
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        switch(val) {
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        case 0x00:
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            kbd_queue(s, KBD_REPLY_ACK, 0);
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            break;
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        case 0x05:
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            kbd_queue(s, KBD_REPLY_RESEND, 0);
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            break;
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        case KBD_CMD_GET_ID:
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            kbd_queue(s, KBD_REPLY_ACK, 0);
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            kbd_queue(s, 0xab, 0);
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            kbd_queue(s, 0x83, 0);
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            break;
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        case KBD_CMD_ECHO:
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            kbd_queue(s, KBD_CMD_ECHO, 0);
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            break;
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        case KBD_CMD_ENABLE:
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            s->scan_enabled = 1;
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            kbd_queue(s, KBD_REPLY_ACK, 0);
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            break;
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        case KBD_CMD_SET_LEDS:
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        case KBD_CMD_SET_RATE:
355 80cabfad bellard
            s->kbd_write_cmd = val;
356 80cabfad bellard
            kbd_queue(s, KBD_REPLY_ACK, 0);
357 80cabfad bellard
            break;
358 80cabfad bellard
        case KBD_CMD_RESET_DISABLE:
359 80cabfad bellard
            kbd_reset_keyboard(s);
360 80cabfad bellard
            s->scan_enabled = 0;
361 80cabfad bellard
            kbd_queue(s, KBD_REPLY_ACK, 0);
362 80cabfad bellard
            break;
363 80cabfad bellard
        case KBD_CMD_RESET_ENABLE:
364 80cabfad bellard
            kbd_reset_keyboard(s);
365 80cabfad bellard
            s->scan_enabled = 1;
366 80cabfad bellard
            kbd_queue(s, KBD_REPLY_ACK, 0);
367 80cabfad bellard
            break;
368 80cabfad bellard
        case KBD_CMD_RESET:
369 80cabfad bellard
            kbd_reset_keyboard(s);
370 80cabfad bellard
            kbd_queue(s, KBD_REPLY_ACK, 0);
371 80cabfad bellard
            kbd_queue(s, KBD_REPLY_POR, 0);
372 80cabfad bellard
            break;
373 80cabfad bellard
        default:
374 80cabfad bellard
            kbd_queue(s, KBD_REPLY_ACK, 0);
375 80cabfad bellard
            break;
376 80cabfad bellard
        }
377 80cabfad bellard
        break;
378 80cabfad bellard
    case KBD_CMD_SET_LEDS:
379 80cabfad bellard
        kbd_queue(s, KBD_REPLY_ACK, 0);
380 80cabfad bellard
        s->kbd_write_cmd = -1;
381 80cabfad bellard
        break;
382 80cabfad bellard
    case KBD_CMD_SET_RATE:
383 80cabfad bellard
        kbd_queue(s, KBD_REPLY_ACK, 0);
384 80cabfad bellard
        s->kbd_write_cmd = -1;
385 80cabfad bellard
        break;
386 80cabfad bellard
    }
387 80cabfad bellard
}
388 80cabfad bellard
389 80cabfad bellard
static void kbd_mouse_send_packet(KBDState *s)
390 80cabfad bellard
{
391 80cabfad bellard
    unsigned int b;
392 80cabfad bellard
    int dx1, dy1, dz1;
393 80cabfad bellard
394 80cabfad bellard
    dx1 = s->mouse_dx;
395 80cabfad bellard
    dy1 = s->mouse_dy;
396 80cabfad bellard
    dz1 = s->mouse_dz;
397 80cabfad bellard
    /* XXX: increase range to 8 bits ? */
398 80cabfad bellard
    if (dx1 > 127)
399 80cabfad bellard
        dx1 = 127;
400 80cabfad bellard
    else if (dx1 < -127)
401 80cabfad bellard
        dx1 = -127;
402 80cabfad bellard
    if (dy1 > 127)
403 80cabfad bellard
        dy1 = 127;
404 80cabfad bellard
    else if (dy1 < -127)
405 80cabfad bellard
        dy1 = -127;
406 80cabfad bellard
    b = 0x08 | ((dx1 < 0) << 4) | ((dy1 < 0) << 5) | (s->mouse_buttons & 0x07);
407 80cabfad bellard
    kbd_queue(s, b, 1);
408 80cabfad bellard
    kbd_queue(s, dx1 & 0xff, 1);
409 80cabfad bellard
    kbd_queue(s, dy1 & 0xff, 1);
410 80cabfad bellard
    /* extra byte for IMPS/2 or IMEX */
411 80cabfad bellard
    switch(s->mouse_type) {
412 80cabfad bellard
    default:
413 80cabfad bellard
        break;
414 80cabfad bellard
    case 3:
415 80cabfad bellard
        if (dz1 > 127)
416 80cabfad bellard
            dz1 = 127;
417 80cabfad bellard
        else if (dz1 < -127)
418 80cabfad bellard
                dz1 = -127;
419 80cabfad bellard
        kbd_queue(s, dz1 & 0xff, 1);
420 80cabfad bellard
        break;
421 80cabfad bellard
    case 4:
422 80cabfad bellard
        if (dz1 > 7)
423 80cabfad bellard
            dz1 = 7;
424 80cabfad bellard
        else if (dz1 < -7)
425 80cabfad bellard
            dz1 = -7;
426 80cabfad bellard
        b = (dz1 & 0x0f) | ((s->mouse_buttons & 0x18) << 1);
427 80cabfad bellard
        kbd_queue(s, b, 1);
428 80cabfad bellard
        break;
429 80cabfad bellard
    }
430 80cabfad bellard
431 80cabfad bellard
    /* update deltas */
432 80cabfad bellard
    s->mouse_dx -= dx1;
433 80cabfad bellard
    s->mouse_dy -= dy1;
434 80cabfad bellard
    s->mouse_dz -= dz1;
435 80cabfad bellard
}
436 80cabfad bellard
437 63066f4f bellard
static void pc_kbd_mouse_event(void *opaque, 
438 63066f4f bellard
                               int dx, int dy, int dz, int buttons_state)
439 80cabfad bellard
{
440 63066f4f bellard
    KBDState *s = opaque;
441 80cabfad bellard
442 80cabfad bellard
    /* check if deltas are recorded when disabled */
443 80cabfad bellard
    if (!(s->mouse_status & MOUSE_STATUS_ENABLED))
444 80cabfad bellard
        return;
445 80cabfad bellard
446 80cabfad bellard
    s->mouse_dx += dx;
447 80cabfad bellard
    s->mouse_dy -= dy;
448 80cabfad bellard
    s->mouse_dz += dz;
449 92cb7d54 bellard
    /* XXX: SDL sometimes generates nul events: we delete them */
450 92cb7d54 bellard
    if (s->mouse_dx == 0 && s->mouse_dy == 0 && s->mouse_dz == 0 &&
451 92cb7d54 bellard
        s->mouse_buttons == buttons_state)
452 92cb7d54 bellard
        return;
453 80cabfad bellard
    s->mouse_buttons = buttons_state;
454 80cabfad bellard
    
455 80cabfad bellard
    if (!(s->mouse_status & MOUSE_STATUS_REMOTE) &&
456 6f51f6b5 bellard
        (s->queue.count < (KBD_QUEUE_SIZE - 16))) {
457 80cabfad bellard
        for(;;) {
458 80cabfad bellard
            /* if not remote, send event. Multiple events are sent if
459 80cabfad bellard
               too big deltas */
460 80cabfad bellard
            kbd_mouse_send_packet(s);
461 80cabfad bellard
            if (s->mouse_dx == 0 && s->mouse_dy == 0 && s->mouse_dz == 0)
462 80cabfad bellard
                break;
463 80cabfad bellard
        }
464 80cabfad bellard
    }
465 80cabfad bellard
}
466 80cabfad bellard
467 80cabfad bellard
static void kbd_write_mouse(KBDState *s, int val)
468 80cabfad bellard
{
469 80cabfad bellard
#ifdef DEBUG_MOUSE
470 80cabfad bellard
    printf("kbd: write mouse 0x%02x\n", val);
471 80cabfad bellard
#endif
472 80cabfad bellard
    switch(s->mouse_write_cmd) {
473 80cabfad bellard
    default:
474 80cabfad bellard
    case -1:
475 80cabfad bellard
        /* mouse command */
476 80cabfad bellard
        if (s->mouse_wrap) {
477 80cabfad bellard
            if (val == AUX_RESET_WRAP) {
478 80cabfad bellard
                s->mouse_wrap = 0;
479 80cabfad bellard
                kbd_queue(s, AUX_ACK, 1);
480 80cabfad bellard
                return;
481 80cabfad bellard
            } else if (val != AUX_RESET) {
482 80cabfad bellard
                kbd_queue(s, val, 1);
483 80cabfad bellard
                return;
484 80cabfad bellard
            }
485 80cabfad bellard
        }
486 80cabfad bellard
        switch(val) {
487 80cabfad bellard
        case AUX_SET_SCALE11:
488 80cabfad bellard
            s->mouse_status &= ~MOUSE_STATUS_SCALE21;
489 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
490 80cabfad bellard
            break;
491 80cabfad bellard
        case AUX_SET_SCALE21:
492 80cabfad bellard
            s->mouse_status |= MOUSE_STATUS_SCALE21;
493 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
494 80cabfad bellard
            break;
495 80cabfad bellard
        case AUX_SET_STREAM:
496 80cabfad bellard
            s->mouse_status &= ~MOUSE_STATUS_REMOTE;
497 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
498 80cabfad bellard
            break;
499 80cabfad bellard
        case AUX_SET_WRAP:
500 80cabfad bellard
            s->mouse_wrap = 1;
501 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
502 80cabfad bellard
            break;
503 80cabfad bellard
        case AUX_SET_REMOTE:
504 80cabfad bellard
            s->mouse_status |= MOUSE_STATUS_REMOTE;
505 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
506 80cabfad bellard
            break;
507 80cabfad bellard
        case AUX_GET_TYPE:
508 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
509 80cabfad bellard
            kbd_queue(s, s->mouse_type, 1);
510 80cabfad bellard
            break;
511 80cabfad bellard
        case AUX_SET_RES:
512 80cabfad bellard
        case AUX_SET_SAMPLE:
513 80cabfad bellard
            s->mouse_write_cmd = val;
514 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
515 80cabfad bellard
            break;
516 80cabfad bellard
        case AUX_GET_SCALE:
517 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
518 80cabfad bellard
            kbd_queue(s, s->mouse_status, 1);
519 80cabfad bellard
            kbd_queue(s, s->mouse_resolution, 1);
520 80cabfad bellard
            kbd_queue(s, s->mouse_sample_rate, 1);
521 80cabfad bellard
            break;
522 80cabfad bellard
        case AUX_POLL:
523 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
524 80cabfad bellard
            kbd_mouse_send_packet(s);
525 80cabfad bellard
            break;
526 80cabfad bellard
        case AUX_ENABLE_DEV:
527 80cabfad bellard
            s->mouse_status |= MOUSE_STATUS_ENABLED;
528 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
529 80cabfad bellard
            break;
530 80cabfad bellard
        case AUX_DISABLE_DEV:
531 80cabfad bellard
            s->mouse_status &= ~MOUSE_STATUS_ENABLED;
532 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
533 80cabfad bellard
            break;
534 80cabfad bellard
        case AUX_SET_DEFAULT:
535 80cabfad bellard
            s->mouse_sample_rate = 100;
536 80cabfad bellard
            s->mouse_resolution = 2;
537 80cabfad bellard
            s->mouse_status = 0;
538 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
539 80cabfad bellard
            break;
540 80cabfad bellard
        case AUX_RESET:
541 80cabfad bellard
            s->mouse_sample_rate = 100;
542 80cabfad bellard
            s->mouse_resolution = 2;
543 80cabfad bellard
            s->mouse_status = 0;
544 80cabfad bellard
            kbd_queue(s, AUX_ACK, 1);
545 80cabfad bellard
            kbd_queue(s, 0xaa, 1);
546 80cabfad bellard
            kbd_queue(s, s->mouse_type, 1);
547 80cabfad bellard
            break;
548 80cabfad bellard
        default:
549 80cabfad bellard
            break;
550 80cabfad bellard
        }
551 80cabfad bellard
        break;
552 80cabfad bellard
    case AUX_SET_SAMPLE:
553 80cabfad bellard
        s->mouse_sample_rate = val;
554 80cabfad bellard
#if 0
555 80cabfad bellard
        /* detect IMPS/2 or IMEX */
556 80cabfad bellard
        switch(s->mouse_detect_state) {
557 80cabfad bellard
        default:
558 80cabfad bellard
        case 0:
559 80cabfad bellard
            if (val == 200)
560 80cabfad bellard
                s->mouse_detect_state = 1;
561 80cabfad bellard
            break;
562 80cabfad bellard
        case 1:
563 80cabfad bellard
            if (val == 100)
564 80cabfad bellard
                s->mouse_detect_state = 2;
565 80cabfad bellard
            else if (val == 200)
566 80cabfad bellard
                s->mouse_detect_state = 3;
567 80cabfad bellard
            else
568 80cabfad bellard
                s->mouse_detect_state = 0;
569 80cabfad bellard
            break;
570 80cabfad bellard
        case 2:
571 80cabfad bellard
            if (val == 80) 
572 80cabfad bellard
                s->mouse_type = 3; /* IMPS/2 */
573 80cabfad bellard
            s->mouse_detect_state = 0;
574 80cabfad bellard
            break;
575 80cabfad bellard
        case 3:
576 80cabfad bellard
            if (val == 80) 
577 80cabfad bellard
                s->mouse_type = 4; /* IMEX */
578 80cabfad bellard
            s->mouse_detect_state = 0;
579 80cabfad bellard
            break;
580 80cabfad bellard
        }
581 80cabfad bellard
#endif
582 80cabfad bellard
        kbd_queue(s, AUX_ACK, 1);
583 80cabfad bellard
        s->mouse_write_cmd = -1;
584 80cabfad bellard
        break;
585 80cabfad bellard
    case AUX_SET_RES:
586 80cabfad bellard
        s->mouse_resolution = val;
587 80cabfad bellard
        kbd_queue(s, AUX_ACK, 1);
588 80cabfad bellard
        s->mouse_write_cmd = -1;
589 80cabfad bellard
        break;
590 80cabfad bellard
    }
591 80cabfad bellard
}
592 80cabfad bellard
593 b41a2cd1 bellard
void kbd_write_data(void *opaque, uint32_t addr, uint32_t val)
594 80cabfad bellard
{
595 b41a2cd1 bellard
    KBDState *s = opaque;
596 80cabfad bellard
597 80cabfad bellard
#ifdef DEBUG_KBD
598 80cabfad bellard
    printf("kbd: write data=0x%02x\n", val);
599 80cabfad bellard
#endif
600 80cabfad bellard
601 80cabfad bellard
    switch(s->write_cmd) {
602 80cabfad bellard
    case 0:
603 80cabfad bellard
        kbd_write_keyboard(s, val);
604 80cabfad bellard
        break;
605 80cabfad bellard
    case KBD_CCMD_WRITE_MODE:
606 80cabfad bellard
        s->mode = val;
607 80cabfad bellard
        kbd_update_irq(s);
608 80cabfad bellard
        break;
609 80cabfad bellard
    case KBD_CCMD_WRITE_OBUF:
610 80cabfad bellard
        kbd_queue(s, val, 0);
611 80cabfad bellard
        break;
612 80cabfad bellard
    case KBD_CCMD_WRITE_AUX_OBUF:
613 80cabfad bellard
        kbd_queue(s, val, 1);
614 80cabfad bellard
        break;
615 80cabfad bellard
    case KBD_CCMD_WRITE_OUTPORT:
616 80cabfad bellard
#ifdef TARGET_I386
617 b41a2cd1 bellard
        cpu_x86_set_a20(cpu_single_env, (val >> 1) & 1);
618 80cabfad bellard
#endif
619 80cabfad bellard
        if (!(val & 1)) {
620 80cabfad bellard
            reset_requested = 1;
621 80cabfad bellard
            cpu_interrupt(cpu_single_env, CPU_INTERRUPT_EXIT);
622 80cabfad bellard
        }
623 80cabfad bellard
        break;
624 80cabfad bellard
    case KBD_CCMD_WRITE_MOUSE:
625 80cabfad bellard
        kbd_write_mouse(s, val);
626 80cabfad bellard
        break;
627 80cabfad bellard
    default:
628 80cabfad bellard
        break;
629 80cabfad bellard
    }
630 80cabfad bellard
    s->write_cmd = 0;
631 80cabfad bellard
}
632 80cabfad bellard
633 80cabfad bellard
void kbd_reset(KBDState *s)
634 80cabfad bellard
{
635 80cabfad bellard
    KBDQueue *q;
636 80cabfad bellard
637 80cabfad bellard
    s->kbd_write_cmd = -1;
638 80cabfad bellard
    s->mouse_write_cmd = -1;
639 80cabfad bellard
    s->mode = KBD_MODE_KBD_INT | KBD_MODE_MOUSE_INT;
640 80cabfad bellard
    s->status = KBD_STAT_CMD | KBD_STAT_UNLOCKED;
641 6f51f6b5 bellard
    q = &s->queue;
642 6f51f6b5 bellard
    q->rptr = 0;
643 6f51f6b5 bellard
    q->wptr = 0;
644 6f51f6b5 bellard
    q->count = 0;
645 80cabfad bellard
}
646 80cabfad bellard
647 80cabfad bellard
void kbd_init(void)
648 80cabfad bellard
{
649 b41a2cd1 bellard
    KBDState *s = &kbd_state;
650 b41a2cd1 bellard
    
651 b41a2cd1 bellard
    kbd_reset(s);
652 b41a2cd1 bellard
    register_ioport_read(0x60, 1, 1, kbd_read_data, s);
653 b41a2cd1 bellard
    register_ioport_write(0x60, 1, 1, kbd_write_data, s);
654 b41a2cd1 bellard
    register_ioport_read(0x64, 1, 1, kbd_read_status, s);
655 b41a2cd1 bellard
    register_ioport_write(0x64, 1, 1, kbd_write_command, s);
656 63066f4f bellard
657 63066f4f bellard
    qemu_add_kbd_event_handler(pc_kbd_put_keycode, s);
658 63066f4f bellard
    qemu_add_mouse_event_handler(pc_kbd_mouse_event, s);
659 80cabfad bellard
}