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/*
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 * TI TSC2102 (touchscreen/sensors/audio controller) emulator.
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 * TI TSC2301 (touchscreen/sensors/keypad).
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 *
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 * Copyright (c) 2006 Andrzej Zaborowski  <balrog@zabor.org>
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 * Copyright (C) 2008 Nokia Corporation
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 *
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 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public License as
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 * published by the Free Software Foundation; either version 2 or
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 * (at your option) version 3 of the License.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License along
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 * with this program; if not, write to the Free Software Foundation, Inc.,
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 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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 */
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#include "hw.h"
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#include "audio/audio.h"
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#include "qemu-timer.h"
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#include "console.h"
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#include "omap.h"        /* For struct i2s_codec_s and struct uwire_slave_s */
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#include "devices.h"
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#define TSC_DATA_REGISTERS_PAGE                0x0
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#define TSC_CONTROL_REGISTERS_PAGE        0x1
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#define TSC_AUDIO_REGISTERS_PAGE        0x2
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#define TSC_VERBOSE
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#define TSC_CUT_RESOLUTION(value, p)        ((value) >> (16 - resolution[p]))
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struct tsc210x_state_s {
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    qemu_irq pint;
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    qemu_irq kbint;
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    qemu_irq davint;
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    QEMUTimer *timer;
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    QEMUSoundCard card;
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    struct uwire_slave_s chip;
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    struct i2s_codec_s codec;
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    uint8_t in_fifo[16384];
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    uint8_t out_fifo[16384];
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    uint16_t model;
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    int x, y;
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    int pressure;
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    int state, page, offset, irq;
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    uint16_t command, dav;
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    int busy;
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    int enabled;
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    int host_mode;
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    int function;
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    int nextfunction;
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    int precision;
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    int nextprecision;
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    int filter;
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    int pin_func;
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    int ref;
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    int timing;
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    int noise;
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    uint16_t audio_ctrl1;
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    uint16_t audio_ctrl2;
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    uint16_t audio_ctrl3;
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    uint16_t pll[3];
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    uint16_t volume;
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    int64_t volume_change;
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    int softstep;
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    uint16_t dac_power;
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    int64_t powerdown;
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    uint16_t filter_data[0x14];
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    const char *name;
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    SWVoiceIn *adc_voice[1];
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    SWVoiceOut *dac_voice[1];
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    int i2s_rx_rate;
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    int i2s_tx_rate;
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    AudioState *audio;
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    int tr[8];
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    struct {
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        uint16_t down;
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        uint16_t mask;
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        int scan;
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        int debounce;
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        int mode;
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        int intr;
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    } kb;
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};
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static const int resolution[4] = { 12, 8, 10, 12 };
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#define TSC_MODE_NO_SCAN        0x0
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#define TSC_MODE_XY_SCAN        0x1
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#define TSC_MODE_XYZ_SCAN        0x2
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#define TSC_MODE_X                0x3
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#define TSC_MODE_Y                0x4
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#define TSC_MODE_Z                0x5
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#define TSC_MODE_BAT1                0x6
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#define TSC_MODE_BAT2                0x7
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#define TSC_MODE_AUX                0x8
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#define TSC_MODE_AUX_SCAN        0x9
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#define TSC_MODE_TEMP1                0xa
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#define TSC_MODE_PORT_SCAN        0xb
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#define TSC_MODE_TEMP2                0xc
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#define TSC_MODE_XX_DRV                0xd
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#define TSC_MODE_YY_DRV                0xe
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#define TSC_MODE_YX_DRV                0xf
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static const uint16_t mode_regs[16] = {
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    0x0000,        /* No scan */
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    0x0600,        /* X, Y scan */
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    0x0780,        /* X, Y, Z scan */
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    0x0400,        /* X */
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    0x0200,        /* Y */
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    0x0180,        /* Z */
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    0x0040,        /* BAT1 */
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    0x0030,        /* BAT2 */
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    0x0010,        /* AUX */
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    0x0010,        /* AUX scan */
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    0x0004,        /* TEMP1 */
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    0x0070,        /* Port scan */
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    0x0002,        /* TEMP2 */
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    0x0000,        /* X+, X- drivers */
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    0x0000,        /* Y+, Y- drivers */
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    0x0000,        /* Y+, X- drivers */
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};
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#define X_TRANSFORM(s)                        \
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    ((s->y * s->tr[0] - s->x * s->tr[1]) / s->tr[2] + s->tr[3])
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#define Y_TRANSFORM(s)                        \
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    ((s->y * s->tr[4] - s->x * s->tr[5]) / s->tr[6] + s->tr[7])
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#define Z1_TRANSFORM(s)                        \
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    ((400 - ((s)->x >> 7) + ((s)->pressure << 10)) << 4)
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#define Z2_TRANSFORM(s)                        \
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    ((4000 + ((s)->y >> 7) - ((s)->pressure << 10)) << 4)
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#define BAT1_VAL                        0x8660
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#define BAT2_VAL                        0x0000
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#define AUX1_VAL                        0x35c0
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#define AUX2_VAL                        0xffff
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#define TEMP1_VAL                        0x8c70
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#define TEMP2_VAL                        0xa5b0
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#define TSC_POWEROFF_DELAY                50
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#define TSC_SOFTSTEP_DELAY                50
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static void tsc210x_reset(struct tsc210x_state_s *s)
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{
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    s->state = 0;
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    s->pin_func = 2;
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    s->enabled = 0;
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    s->busy = 0;
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    s->nextfunction = 0;
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    s->ref = 0;
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    s->timing = 0;
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    s->irq = 0;
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    s->dav = 0;
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    s->audio_ctrl1 = 0x0000;
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    s->audio_ctrl2 = 0x4410;
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    s->audio_ctrl3 = 0x0000;
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    s->pll[0] = 0x1004;
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    s->pll[1] = 0x0000;
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    s->pll[2] = 0x1fff;
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    s->volume = 0xffff;
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    s->dac_power = 0x8540;
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    s->softstep = 1;
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    s->volume_change = 0;
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    s->powerdown = 0;
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    s->filter_data[0x00] = 0x6be3;
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    s->filter_data[0x01] = 0x9666;
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    s->filter_data[0x02] = 0x675d;
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    s->filter_data[0x03] = 0x6be3;
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    s->filter_data[0x04] = 0x9666;
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    s->filter_data[0x05] = 0x675d;
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    s->filter_data[0x06] = 0x7d83;
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    s->filter_data[0x07] = 0x84ee;
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    s->filter_data[0x08] = 0x7d83;
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    s->filter_data[0x09] = 0x84ee;
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    s->filter_data[0x0a] = 0x6be3;
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    s->filter_data[0x0b] = 0x9666;
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    s->filter_data[0x0c] = 0x675d;
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    s->filter_data[0x0d] = 0x6be3;
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    s->filter_data[0x0e] = 0x9666;
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    s->filter_data[0x0f] = 0x675d;
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    s->filter_data[0x10] = 0x7d83;
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    s->filter_data[0x11] = 0x84ee;
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    s->filter_data[0x12] = 0x7d83;
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    s->filter_data[0x13] = 0x84ee;
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    s->i2s_tx_rate = 0;
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    s->i2s_rx_rate = 0;
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    s->kb.scan = 1;
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    s->kb.debounce = 0;
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    s->kb.mask = 0x0000;
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    s->kb.mode = 3;
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    s->kb.intr = 0;
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    qemu_set_irq(s->pint, !s->irq);
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    qemu_set_irq(s->davint, !s->dav);
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    qemu_irq_raise(s->kbint);
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}
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struct tsc210x_rate_info_s {
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    int rate;
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    int dsor;
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    int fsref;
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};
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/*  { rate,  dsor,  fsref } */
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static const struct tsc210x_rate_info_s tsc2101_rates[] = {
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    /* Fsref / 6.0 */
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    { 7350,        7,        1 },
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    { 8000,        7,        0 },
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    /* Fsref / 5.5 */
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    { 8018,        6,        1 },
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    { 8727,        6,        0 },
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    /* Fsref / 5.0 */
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    { 8820,        5,        1 },
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    { 9600,        5,        0 },
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    /* Fsref / 4.0 */
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    { 11025,        4,        1 },
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    { 12000,        4,        0 },
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    /* Fsref / 3.0 */
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    { 14700,        3,        1 },
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    { 16000,        3,        0 },
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    /* Fsref / 2.0 */
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    { 22050,        2,        1 },
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    { 24000,        2,        0 },
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    /* Fsref / 1.5 */
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    { 29400,        1,        1 },
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    { 32000,        1,        0 },
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    /* Fsref */
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    { 44100,        0,        1 },
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    { 48000,        0,        0 },
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    { 0,        0,         0 },
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};
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/*  { rate,   dsor, fsref }        */
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static const struct tsc210x_rate_info_s tsc2102_rates[] = {
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    /* Fsref / 6.0 */
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    { 7350,        63,        1 },
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    { 8000,        63,        0 },
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    /* Fsref / 6.0 */
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    { 7350,        54,        1 },
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    { 8000,        54,        0 },
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    /* Fsref / 5.0 */
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    { 8820,        45,        1 },
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    { 9600,        45,        0 },
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    /* Fsref / 4.0 */
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    { 11025,        36,        1 },
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    { 12000,        36,        0 },
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    /* Fsref / 3.0 */
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    { 14700,        27,        1 },
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    { 16000,        27,        0 },
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    /* Fsref / 2.0 */
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    { 22050,        18,        1 },
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    { 24000,        18,        0 },
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    /* Fsref / 1.5 */
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    { 29400,        9,        1 },
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    { 32000,        9,        0 },
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    /* Fsref */
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    { 44100,        0,        1 },
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    { 48000,        0,        0 },
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    { 0,        0,         0 },
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};
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static inline void tsc210x_out_flush(struct tsc210x_state_s *s, int len)
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{
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    uint8_t *data = s->codec.out.fifo + s->codec.out.start;
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    uint8_t *end = data + len;
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    while (data < end)
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        data += AUD_write(s->dac_voice[0], data, end - data) ?: (end - data);
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    s->codec.out.len -= len;
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    if (s->codec.out.len)
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        memmove(s->codec.out.fifo, end, s->codec.out.len);
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    s->codec.out.start = 0;
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}
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static void tsc210x_audio_out_cb(struct tsc210x_state_s *s, int free_b)
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{
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    if (s->codec.out.len >= free_b) {
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        tsc210x_out_flush(s, free_b);
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        return;
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    }
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    s->codec.out.size = MIN(free_b, 16384);
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    qemu_irq_raise(s->codec.tx_start);
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}
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static void tsc2102_audio_rate_update(struct tsc210x_state_s *s)
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{
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    const struct tsc210x_rate_info_s *rate;
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    s->codec.tx_rate = 0;
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    s->codec.rx_rate = 0;
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    if (s->dac_power & (1 << 15))                                /* PWDNC */
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        return;
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    for (rate = tsc2102_rates; rate->rate; rate ++)
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        if (rate->dsor == (s->audio_ctrl1 & 0x3f) &&                /* DACFS */
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                        rate->fsref == ((s->audio_ctrl3 >> 13) & 1))/* REFFS */
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            break;
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    if (!rate->rate) {
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        printf("%s: unknown sampling rate configured\n", __FUNCTION__);
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        return;
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    }
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    s->codec.tx_rate = rate->rate;
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}
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static void tsc2102_audio_output_update(struct tsc210x_state_s *s)
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{
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    int enable;
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    struct audsettings fmt;
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    if (s->dac_voice[0]) {
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        tsc210x_out_flush(s, s->codec.out.len);
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        s->codec.out.size = 0;
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        AUD_set_active_out(s->dac_voice[0], 0);
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        AUD_close_out(&s->card, s->dac_voice[0]);
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        s->dac_voice[0] = 0;
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    }
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    s->codec.cts = 0;
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    enable =
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            (~s->dac_power & (1 << 15)) &&                        /* PWDNC */
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            (~s->dac_power & (1 << 10));                        /* DAPWDN */
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    if (!enable || !s->codec.tx_rate)
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        return;
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    /* Force our own sampling rate even in slave DAC mode */
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    fmt.endianness = 0;
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    fmt.nchannels = 2;
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    fmt.freq = s->codec.tx_rate;
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    fmt.fmt = AUD_FMT_S16;
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    s->dac_voice[0] = AUD_open_out(&s->card, s->dac_voice[0],
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                    "tsc2102.sink", s, (void *) tsc210x_audio_out_cb, &fmt);
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    if (s->dac_voice[0]) {
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        s->codec.cts = 1;
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        AUD_set_active_out(s->dac_voice[0], 1);
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    }
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}
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static uint16_t tsc2102_data_register_read(struct tsc210x_state_s *s, int reg)
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{
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    switch (reg) {
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    case 0x00:        /* X */
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        s->dav &= 0xfbff;
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        return TSC_CUT_RESOLUTION(X_TRANSFORM(s), s->precision) +
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                (s->noise & 3);
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    case 0x01:        /* Y */
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        s->noise ++;
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        s->dav &= 0xfdff;
371 a5d7eb65 balrog
        return TSC_CUT_RESOLUTION(Y_TRANSFORM(s), s->precision) ^
372 3efda49d balrog
                (s->noise & 3);
373 3efda49d balrog
374 3efda49d balrog
    case 0x02:        /* Z1 */
375 3efda49d balrog
        s->dav &= 0xfeff;
376 3efda49d balrog
        return TSC_CUT_RESOLUTION(Z1_TRANSFORM(s), s->precision) -
377 3efda49d balrog
                (s->noise & 3);
378 3efda49d balrog
379 3efda49d balrog
    case 0x03:        /* Z2 */
380 3efda49d balrog
        s->dav &= 0xff7f;
381 3efda49d balrog
        return TSC_CUT_RESOLUTION(Z2_TRANSFORM(s), s->precision) |
382 3efda49d balrog
                (s->noise & 3);
383 3efda49d balrog
384 3efda49d balrog
    case 0x04:        /* KPData */
385 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2300) {
386 a5d7eb65 balrog
            if (s->kb.intr && (s->kb.mode & 2)) {
387 a5d7eb65 balrog
                s->kb.intr = 0;
388 a5d7eb65 balrog
                qemu_irq_raise(s->kbint);
389 a5d7eb65 balrog
            }
390 a5d7eb65 balrog
            return s->kb.down;
391 a5d7eb65 balrog
        }
392 a5d7eb65 balrog
393 3efda49d balrog
        return 0xffff;
394 3efda49d balrog
395 3efda49d balrog
    case 0x05:        /* BAT1 */
396 3efda49d balrog
        s->dav &= 0xffbf;
397 8ef6367e balrog
        return TSC_CUT_RESOLUTION(BAT1_VAL, s->precision) +
398 8ef6367e balrog
                (s->noise & 6);
399 3efda49d balrog
400 3efda49d balrog
    case 0x06:        /* BAT2 */
401 3efda49d balrog
        s->dav &= 0xffdf;
402 3efda49d balrog
        return TSC_CUT_RESOLUTION(BAT2_VAL, s->precision);
403 3efda49d balrog
404 3efda49d balrog
    case 0x07:        /* AUX1 */
405 3efda49d balrog
        s->dav &= 0xffef;
406 3efda49d balrog
        return TSC_CUT_RESOLUTION(AUX1_VAL, s->precision);
407 3efda49d balrog
408 3efda49d balrog
    case 0x08:        /* AUX2 */
409 3efda49d balrog
        s->dav &= 0xfff7;
410 3efda49d balrog
        return 0xffff;
411 3efda49d balrog
412 3efda49d balrog
    case 0x09:        /* TEMP1 */
413 3efda49d balrog
        s->dav &= 0xfffb;
414 8ef6367e balrog
        return TSC_CUT_RESOLUTION(TEMP1_VAL, s->precision) -
415 8ef6367e balrog
                (s->noise & 5);
416 3efda49d balrog
417 3efda49d balrog
    case 0x0a:        /* TEMP2 */
418 3efda49d balrog
        s->dav &= 0xfffd;
419 8ef6367e balrog
        return TSC_CUT_RESOLUTION(TEMP2_VAL, s->precision) ^
420 8ef6367e balrog
                (s->noise & 3);
421 3efda49d balrog
422 3efda49d balrog
    case 0x0b:        /* DAC */
423 3efda49d balrog
        s->dav &= 0xfffe;
424 3efda49d balrog
        return 0xffff;
425 3efda49d balrog
426 3efda49d balrog
    default:
427 3efda49d balrog
#ifdef TSC_VERBOSE
428 3efda49d balrog
        fprintf(stderr, "tsc2102_data_register_read: "
429 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
430 3efda49d balrog
#endif
431 3efda49d balrog
        return 0xffff;
432 3efda49d balrog
    }
433 3efda49d balrog
}
434 3efda49d balrog
435 3efda49d balrog
static uint16_t tsc2102_control_register_read(
436 3efda49d balrog
                struct tsc210x_state_s *s, int reg)
437 3efda49d balrog
{
438 3efda49d balrog
    switch (reg) {
439 3efda49d balrog
    case 0x00:        /* TSC ADC */
440 3efda49d balrog
        return (s->pressure << 15) | ((!s->busy) << 14) |
441 3efda49d balrog
                (s->nextfunction << 10) | (s->nextprecision << 8) | s->filter; 
442 3efda49d balrog
443 a5d7eb65 balrog
    case 0x01:        /* Status / Keypad Control */
444 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
445 a5d7eb65 balrog
            return (s->pin_func << 14) | ((!s->enabled) << 13) |
446 a5d7eb65 balrog
                    (s->host_mode << 12) | ((!!s->dav) << 11) | s->dav;
447 a5d7eb65 balrog
        else
448 a5d7eb65 balrog
            return (s->kb.intr << 15) | ((s->kb.scan || !s->kb.down) << 14) |
449 a5d7eb65 balrog
                    (s->kb.debounce << 11);
450 a5d7eb65 balrog
451 a5d7eb65 balrog
    case 0x02:        /* DAC Control */
452 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2300)
453 a5d7eb65 balrog
            return s->dac_power & 0x8000;
454 a5d7eb65 balrog
        else
455 a5d7eb65 balrog
            goto bad_reg;
456 3efda49d balrog
457 3efda49d balrog
    case 0x03:        /* Reference */
458 3efda49d balrog
        return s->ref;
459 3efda49d balrog
460 3efda49d balrog
    case 0x04:        /* Reset */
461 3efda49d balrog
        return 0xffff;
462 3efda49d balrog
463 3efda49d balrog
    case 0x05:        /* Configuration */
464 3efda49d balrog
        return s->timing;
465 3efda49d balrog
466 a5d7eb65 balrog
    case 0x06:        /* Secondary configuration */
467 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
468 a5d7eb65 balrog
            goto bad_reg;
469 a5d7eb65 balrog
        return ((!s->dav) << 15) | ((s->kb.mode & 1) << 14) | s->pll[2];
470 a5d7eb65 balrog
471 a5d7eb65 balrog
    case 0x10:        /* Keypad Mask */
472 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
473 a5d7eb65 balrog
            goto bad_reg;
474 a5d7eb65 balrog
        return s->kb.mask;
475 a5d7eb65 balrog
476 3efda49d balrog
    default:
477 a5d7eb65 balrog
    bad_reg:
478 3efda49d balrog
#ifdef TSC_VERBOSE
479 3efda49d balrog
        fprintf(stderr, "tsc2102_control_register_read: "
480 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
481 3efda49d balrog
#endif
482 3efda49d balrog
        return 0xffff;
483 3efda49d balrog
    }
484 3efda49d balrog
}
485 3efda49d balrog
486 3efda49d balrog
static uint16_t tsc2102_audio_register_read(struct tsc210x_state_s *s, int reg)
487 3efda49d balrog
{
488 3efda49d balrog
    int l_ch, r_ch;
489 3efda49d balrog
    uint16_t val;
490 3efda49d balrog
491 3efda49d balrog
    switch (reg) {
492 3efda49d balrog
    case 0x00:        /* Audio Control 1 */
493 3efda49d balrog
        return s->audio_ctrl1;
494 3efda49d balrog
495 3efda49d balrog
    case 0x01:
496 3efda49d balrog
        return 0xff00;
497 3efda49d balrog
498 3efda49d balrog
    case 0x02:        /* DAC Volume Control */
499 3efda49d balrog
        return s->volume;
500 3efda49d balrog
501 3efda49d balrog
    case 0x03:
502 3efda49d balrog
        return 0x8b00;
503 3efda49d balrog
504 3efda49d balrog
    case 0x04:        /* Audio Control 2 */
505 3efda49d balrog
        l_ch = 1;
506 3efda49d balrog
        r_ch = 1;
507 3efda49d balrog
        if (s->softstep && !(s->dac_power & (1 << 10))) {
508 3efda49d balrog
            l_ch = (qemu_get_clock(vm_clock) >
509 3efda49d balrog
                            s->volume_change + TSC_SOFTSTEP_DELAY);
510 3efda49d balrog
            r_ch = (qemu_get_clock(vm_clock) >
511 3efda49d balrog
                            s->volume_change + TSC_SOFTSTEP_DELAY);
512 3efda49d balrog
        }
513 3efda49d balrog
514 3efda49d balrog
        return s->audio_ctrl2 | (l_ch << 3) | (r_ch << 2);
515 3efda49d balrog
516 3efda49d balrog
    case 0x05:        /* Stereo DAC Power Control */
517 3efda49d balrog
        return 0x2aa0 | s->dac_power |
518 3efda49d balrog
                (((s->dac_power & (1 << 10)) &&
519 3efda49d balrog
                  (qemu_get_clock(vm_clock) >
520 3efda49d balrog
                   s->powerdown + TSC_POWEROFF_DELAY)) << 6);
521 3efda49d balrog
522 3efda49d balrog
    case 0x06:        /* Audio Control 3 */
523 3efda49d balrog
        val = s->audio_ctrl3 | 0x0001;
524 3efda49d balrog
        s->audio_ctrl3 &= 0xff3f;
525 3efda49d balrog
        return val;
526 3efda49d balrog
527 3efda49d balrog
    case 0x07:        /* LCH_BASS_BOOST_N0 */
528 3efda49d balrog
    case 0x08:        /* LCH_BASS_BOOST_N1 */
529 3efda49d balrog
    case 0x09:        /* LCH_BASS_BOOST_N2 */
530 3efda49d balrog
    case 0x0a:        /* LCH_BASS_BOOST_N3 */
531 3efda49d balrog
    case 0x0b:        /* LCH_BASS_BOOST_N4 */
532 3efda49d balrog
    case 0x0c:        /* LCH_BASS_BOOST_N5 */
533 3efda49d balrog
    case 0x0d:        /* LCH_BASS_BOOST_D1 */
534 3efda49d balrog
    case 0x0e:        /* LCH_BASS_BOOST_D2 */
535 3efda49d balrog
    case 0x0f:        /* LCH_BASS_BOOST_D4 */
536 3efda49d balrog
    case 0x10:        /* LCH_BASS_BOOST_D5 */
537 3efda49d balrog
    case 0x11:        /* RCH_BASS_BOOST_N0 */
538 3efda49d balrog
    case 0x12:        /* RCH_BASS_BOOST_N1 */
539 3efda49d balrog
    case 0x13:        /* RCH_BASS_BOOST_N2 */
540 3efda49d balrog
    case 0x14:        /* RCH_BASS_BOOST_N3 */
541 3efda49d balrog
    case 0x15:        /* RCH_BASS_BOOST_N4 */
542 3efda49d balrog
    case 0x16:        /* RCH_BASS_BOOST_N5 */
543 3efda49d balrog
    case 0x17:        /* RCH_BASS_BOOST_D1 */
544 3efda49d balrog
    case 0x18:        /* RCH_BASS_BOOST_D2 */
545 3efda49d balrog
    case 0x19:        /* RCH_BASS_BOOST_D4 */
546 3efda49d balrog
    case 0x1a:        /* RCH_BASS_BOOST_D5 */
547 3efda49d balrog
        return s->filter_data[reg - 0x07];
548 3efda49d balrog
549 3efda49d balrog
    case 0x1b:        /* PLL Programmability 1 */
550 3efda49d balrog
        return s->pll[0];
551 3efda49d balrog
552 3efda49d balrog
    case 0x1c:        /* PLL Programmability 2 */
553 3efda49d balrog
        return s->pll[1];
554 3efda49d balrog
555 3efda49d balrog
    case 0x1d:        /* Audio Control 4 */
556 3efda49d balrog
        return (!s->softstep) << 14;
557 3efda49d balrog
558 3efda49d balrog
    default:
559 3efda49d balrog
#ifdef TSC_VERBOSE
560 3efda49d balrog
        fprintf(stderr, "tsc2102_audio_register_read: "
561 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
562 3efda49d balrog
#endif
563 3efda49d balrog
        return 0xffff;
564 3efda49d balrog
    }
565 3efda49d balrog
}
566 3efda49d balrog
567 3efda49d balrog
static void tsc2102_data_register_write(
568 3efda49d balrog
                struct tsc210x_state_s *s, int reg, uint16_t value)
569 3efda49d balrog
{
570 3efda49d balrog
    switch (reg) {
571 3efda49d balrog
    case 0x00:        /* X */
572 3efda49d balrog
    case 0x01:        /* Y */
573 3efda49d balrog
    case 0x02:        /* Z1 */
574 3efda49d balrog
    case 0x03:        /* Z2 */
575 3efda49d balrog
    case 0x05:        /* BAT1 */
576 3efda49d balrog
    case 0x06:        /* BAT2 */
577 3efda49d balrog
    case 0x07:        /* AUX1 */
578 3efda49d balrog
    case 0x08:        /* AUX2 */
579 3efda49d balrog
    case 0x09:        /* TEMP1 */
580 3efda49d balrog
    case 0x0a:        /* TEMP2 */
581 3efda49d balrog
        return;
582 3efda49d balrog
583 3efda49d balrog
    default:
584 3efda49d balrog
#ifdef TSC_VERBOSE
585 3efda49d balrog
        fprintf(stderr, "tsc2102_data_register_write: "
586 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
587 3efda49d balrog
#endif
588 3efda49d balrog
    }
589 3efda49d balrog
}
590 3efda49d balrog
591 3efda49d balrog
static void tsc2102_control_register_write(
592 3efda49d balrog
                struct tsc210x_state_s *s, int reg, uint16_t value)
593 3efda49d balrog
{
594 3efda49d balrog
    switch (reg) {
595 3efda49d balrog
    case 0x00:        /* TSC ADC */
596 3efda49d balrog
        s->host_mode = value >> 15;
597 3efda49d balrog
        s->enabled = !(value & 0x4000);
598 3efda49d balrog
        if (s->busy && !s->enabled)
599 3efda49d balrog
            qemu_del_timer(s->timer);
600 3efda49d balrog
        s->busy &= s->enabled;
601 3efda49d balrog
        s->nextfunction = (value >> 10) & 0xf;
602 3efda49d balrog
        s->nextprecision = (value >> 8) & 3;
603 3efda49d balrog
        s->filter = value & 0xff;
604 3efda49d balrog
        return;
605 3efda49d balrog
606 a5d7eb65 balrog
    case 0x01:        /* Status / Keypad Control */
607 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
608 a5d7eb65 balrog
            s->pin_func = value >> 14;
609 a5d7eb65 balrog
        else {
610 a5d7eb65 balrog
            s->kb.scan = (value >> 14) & 1;
611 a5d7eb65 balrog
            s->kb.debounce = (value >> 11) & 7;
612 a5d7eb65 balrog
            if (s->kb.intr && s->kb.scan) {
613 a5d7eb65 balrog
                s->kb.intr = 0;
614 a5d7eb65 balrog
                qemu_irq_raise(s->kbint);
615 a5d7eb65 balrog
            }
616 a5d7eb65 balrog
        }
617 3efda49d balrog
        return;
618 3efda49d balrog
619 a5d7eb65 balrog
    case 0x02:        /* DAC Control */
620 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2300) {
621 a5d7eb65 balrog
            s->dac_power &= 0x7fff;
622 a5d7eb65 balrog
            s->dac_power |= 0x8000 & value;
623 a5d7eb65 balrog
        } else
624 a5d7eb65 balrog
            goto bad_reg;
625 a5d7eb65 balrog
        break;
626 a5d7eb65 balrog
627 3efda49d balrog
    case 0x03:        /* Reference */
628 3efda49d balrog
        s->ref = value & 0x1f;
629 3efda49d balrog
        return;
630 3efda49d balrog
631 3efda49d balrog
    case 0x04:        /* Reset */
632 3efda49d balrog
        if (value == 0xbb00) {
633 3efda49d balrog
            if (s->busy)
634 3efda49d balrog
                qemu_del_timer(s->timer);
635 3efda49d balrog
            tsc210x_reset(s);
636 3efda49d balrog
#ifdef TSC_VERBOSE
637 3efda49d balrog
        } else {
638 3efda49d balrog
            fprintf(stderr, "tsc2102_control_register_write: "
639 3efda49d balrog
                            "wrong value written into RESET\n");
640 3efda49d balrog
#endif
641 3efda49d balrog
        }
642 3efda49d balrog
        return;
643 3efda49d balrog
644 3efda49d balrog
    case 0x05:        /* Configuration */
645 3efda49d balrog
        s->timing = value & 0x3f;
646 3efda49d balrog
#ifdef TSC_VERBOSE
647 3efda49d balrog
        if (value & ~0x3f)
648 3efda49d balrog
            fprintf(stderr, "tsc2102_control_register_write: "
649 3efda49d balrog
                            "wrong value written into CONFIG\n");
650 3efda49d balrog
#endif
651 3efda49d balrog
        return;
652 3efda49d balrog
653 a5d7eb65 balrog
    case 0x06:        /* Secondary configuration */
654 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
655 a5d7eb65 balrog
            goto bad_reg;
656 a5d7eb65 balrog
        s->kb.mode = value >> 14;
657 a5d7eb65 balrog
        s->pll[2] = value & 0x3ffff;
658 a5d7eb65 balrog
        return;
659 a5d7eb65 balrog
660 a5d7eb65 balrog
    case 0x10:        /* Keypad Mask */
661 a5d7eb65 balrog
        if ((s->model & 0xff00) == 0x2100)
662 a5d7eb65 balrog
            goto bad_reg;
663 a5d7eb65 balrog
        s->kb.mask = value;
664 a5d7eb65 balrog
        return;
665 a5d7eb65 balrog
666 3efda49d balrog
    default:
667 a5d7eb65 balrog
    bad_reg:
668 3efda49d balrog
#ifdef TSC_VERBOSE
669 3efda49d balrog
        fprintf(stderr, "tsc2102_control_register_write: "
670 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
671 3efda49d balrog
#endif
672 3efda49d balrog
    }
673 3efda49d balrog
}
674 3efda49d balrog
675 3efda49d balrog
static void tsc2102_audio_register_write(
676 3efda49d balrog
                struct tsc210x_state_s *s, int reg, uint16_t value)
677 3efda49d balrog
{
678 3efda49d balrog
    switch (reg) {
679 3efda49d balrog
    case 0x00:        /* Audio Control 1 */
680 3efda49d balrog
        s->audio_ctrl1 = value & 0x0f3f;
681 3efda49d balrog
#ifdef TSC_VERBOSE
682 3efda49d balrog
        if ((value & ~0x0f3f) || ((value & 7) != ((value >> 3) & 7)))
683 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
684 3efda49d balrog
                            "wrong value written into Audio 1\n");
685 3efda49d balrog
#endif
686 73560bc8 balrog
        tsc2102_audio_rate_update(s);
687 d8f699cb balrog
        if (s->audio)
688 73560bc8 balrog
            tsc2102_audio_output_update(s);
689 3efda49d balrog
        return;
690 3efda49d balrog
691 3efda49d balrog
    case 0x01:
692 3efda49d balrog
#ifdef TSC_VERBOSE
693 3efda49d balrog
        if (value != 0xff00)
694 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
695 3efda49d balrog
                            "wrong value written into reg 0x01\n");
696 3efda49d balrog
#endif
697 3efda49d balrog
        return;
698 3efda49d balrog
699 3efda49d balrog
    case 0x02:        /* DAC Volume Control */
700 3efda49d balrog
        s->volume = value;
701 3efda49d balrog
        s->volume_change = qemu_get_clock(vm_clock);
702 3efda49d balrog
        return;
703 3efda49d balrog
704 3efda49d balrog
    case 0x03:
705 3efda49d balrog
#ifdef TSC_VERBOSE
706 3efda49d balrog
        if (value != 0x8b00)
707 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
708 3efda49d balrog
                            "wrong value written into reg 0x03\n");
709 3efda49d balrog
#endif
710 3efda49d balrog
        return;
711 3efda49d balrog
712 3efda49d balrog
    case 0x04:        /* Audio Control 2 */
713 3efda49d balrog
        s->audio_ctrl2 = value & 0xf7f2;
714 3efda49d balrog
#ifdef TSC_VERBOSE
715 3efda49d balrog
        if (value & ~0xf7fd)
716 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
717 3efda49d balrog
                            "wrong value written into Audio 2\n");
718 3efda49d balrog
#endif
719 3efda49d balrog
        return;
720 3efda49d balrog
721 3efda49d balrog
    case 0x05:        /* Stereo DAC Power Control */
722 3efda49d balrog
        if ((value & ~s->dac_power) & (1 << 10))
723 3efda49d balrog
            s->powerdown = qemu_get_clock(vm_clock);
724 3efda49d balrog
725 3efda49d balrog
        s->dac_power = value & 0x9543;
726 3efda49d balrog
#ifdef TSC_VERBOSE
727 3efda49d balrog
        if ((value & ~0x9543) != 0x2aa0)
728 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
729 3efda49d balrog
                            "wrong value written into Power\n");
730 3efda49d balrog
#endif
731 73560bc8 balrog
        tsc2102_audio_rate_update(s);
732 d8f699cb balrog
        if (s->audio)
733 73560bc8 balrog
            tsc2102_audio_output_update(s);
734 3efda49d balrog
        return;
735 3efda49d balrog
736 3efda49d balrog
    case 0x06:        /* Audio Control 3 */
737 3efda49d balrog
        s->audio_ctrl3 &= 0x00c0;
738 3efda49d balrog
        s->audio_ctrl3 |= value & 0xf800;
739 3efda49d balrog
#ifdef TSC_VERBOSE
740 3efda49d balrog
        if (value & ~0xf8c7)
741 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
742 3efda49d balrog
                            "wrong value written into Audio 3\n");
743 3efda49d balrog
#endif
744 d8f699cb balrog
        if (s->audio)
745 73560bc8 balrog
            tsc2102_audio_output_update(s);
746 3efda49d balrog
        return;
747 3efda49d balrog
748 3efda49d balrog
    case 0x07:        /* LCH_BASS_BOOST_N0 */
749 3efda49d balrog
    case 0x08:        /* LCH_BASS_BOOST_N1 */
750 3efda49d balrog
    case 0x09:        /* LCH_BASS_BOOST_N2 */
751 3efda49d balrog
    case 0x0a:        /* LCH_BASS_BOOST_N3 */
752 3efda49d balrog
    case 0x0b:        /* LCH_BASS_BOOST_N4 */
753 3efda49d balrog
    case 0x0c:        /* LCH_BASS_BOOST_N5 */
754 3efda49d balrog
    case 0x0d:        /* LCH_BASS_BOOST_D1 */
755 3efda49d balrog
    case 0x0e:        /* LCH_BASS_BOOST_D2 */
756 3efda49d balrog
    case 0x0f:        /* LCH_BASS_BOOST_D4 */
757 3efda49d balrog
    case 0x10:        /* LCH_BASS_BOOST_D5 */
758 3efda49d balrog
    case 0x11:        /* RCH_BASS_BOOST_N0 */
759 3efda49d balrog
    case 0x12:        /* RCH_BASS_BOOST_N1 */
760 3efda49d balrog
    case 0x13:        /* RCH_BASS_BOOST_N2 */
761 3efda49d balrog
    case 0x14:        /* RCH_BASS_BOOST_N3 */
762 3efda49d balrog
    case 0x15:        /* RCH_BASS_BOOST_N4 */
763 3efda49d balrog
    case 0x16:        /* RCH_BASS_BOOST_N5 */
764 3efda49d balrog
    case 0x17:        /* RCH_BASS_BOOST_D1 */
765 3efda49d balrog
    case 0x18:        /* RCH_BASS_BOOST_D2 */
766 3efda49d balrog
    case 0x19:        /* RCH_BASS_BOOST_D4 */
767 3efda49d balrog
    case 0x1a:        /* RCH_BASS_BOOST_D5 */
768 3efda49d balrog
        s->filter_data[reg - 0x07] = value;
769 3efda49d balrog
        return;
770 3efda49d balrog
771 3efda49d balrog
    case 0x1b:        /* PLL Programmability 1 */
772 3efda49d balrog
        s->pll[0] = value & 0xfffc;
773 3efda49d balrog
#ifdef TSC_VERBOSE
774 3efda49d balrog
        if (value & ~0xfffc)
775 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
776 3efda49d balrog
                            "wrong value written into PLL 1\n");
777 3efda49d balrog
#endif
778 3efda49d balrog
        return;
779 3efda49d balrog
780 3efda49d balrog
    case 0x1c:        /* PLL Programmability 2 */
781 3efda49d balrog
        s->pll[1] = value & 0xfffc;
782 3efda49d balrog
#ifdef TSC_VERBOSE
783 3efda49d balrog
        if (value & ~0xfffc)
784 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
785 3efda49d balrog
                            "wrong value written into PLL 2\n");
786 3efda49d balrog
#endif
787 3efda49d balrog
        return;
788 3efda49d balrog
789 3efda49d balrog
    case 0x1d:        /* Audio Control 4 */
790 3efda49d balrog
        s->softstep = !(value & 0x4000);
791 3efda49d balrog
#ifdef TSC_VERBOSE
792 3efda49d balrog
        if (value & ~0x4000)
793 3efda49d balrog
            fprintf(stderr, "tsc2102_audio_register_write: "
794 3efda49d balrog
                            "wrong value written into Audio 4\n");
795 3efda49d balrog
#endif
796 3efda49d balrog
        return;
797 3efda49d balrog
798 3efda49d balrog
    default:
799 3efda49d balrog
#ifdef TSC_VERBOSE
800 3efda49d balrog
        fprintf(stderr, "tsc2102_audio_register_write: "
801 3efda49d balrog
                        "no such register: 0x%02x\n", reg);
802 3efda49d balrog
#endif
803 3efda49d balrog
    }
804 3efda49d balrog
}
805 3efda49d balrog
806 3efda49d balrog
/* This handles most of the chip logic.  */
807 3efda49d balrog
static void tsc210x_pin_update(struct tsc210x_state_s *s)
808 3efda49d balrog
{
809 3efda49d balrog
    int64_t expires;
810 3efda49d balrog
    int pin_state;
811 3efda49d balrog
812 3efda49d balrog
    switch (s->pin_func) {
813 3efda49d balrog
    case 0:
814 3efda49d balrog
        pin_state = s->pressure;
815 3efda49d balrog
        break;
816 3efda49d balrog
    case 1:
817 3efda49d balrog
        pin_state = !!s->dav;
818 3efda49d balrog
        break;
819 3efda49d balrog
    case 2:
820 3efda49d balrog
    default:
821 3efda49d balrog
        pin_state = s->pressure && !s->dav;
822 3efda49d balrog
    }
823 3efda49d balrog
824 3efda49d balrog
    if (!s->enabled)
825 3efda49d balrog
        pin_state = 0;
826 3efda49d balrog
827 3efda49d balrog
    if (pin_state != s->irq) {
828 3efda49d balrog
        s->irq = pin_state;
829 7fc42b4b balrog
        qemu_set_irq(s->pint, !s->irq);
830 3efda49d balrog
    }
831 3efda49d balrog
832 3efda49d balrog
    switch (s->nextfunction) {
833 3efda49d balrog
    case TSC_MODE_XY_SCAN:
834 3efda49d balrog
    case TSC_MODE_XYZ_SCAN:
835 3efda49d balrog
        if (!s->pressure)
836 3efda49d balrog
            return;
837 3efda49d balrog
        break;
838 3efda49d balrog
839 3efda49d balrog
    case TSC_MODE_X:
840 3efda49d balrog
    case TSC_MODE_Y:
841 3efda49d balrog
    case TSC_MODE_Z:
842 3efda49d balrog
        if (!s->pressure)
843 3efda49d balrog
            return;
844 3efda49d balrog
        /* Fall through */
845 3efda49d balrog
    case TSC_MODE_BAT1:
846 3efda49d balrog
    case TSC_MODE_BAT2:
847 3efda49d balrog
    case TSC_MODE_AUX:
848 3efda49d balrog
    case TSC_MODE_TEMP1:
849 3efda49d balrog
    case TSC_MODE_TEMP2:
850 3efda49d balrog
        if (s->dav)
851 3efda49d balrog
            s->enabled = 0;
852 3efda49d balrog
        break;
853 3efda49d balrog
854 3efda49d balrog
    case TSC_MODE_AUX_SCAN:
855 3efda49d balrog
    case TSC_MODE_PORT_SCAN:
856 3efda49d balrog
        break;
857 3efda49d balrog
858 3efda49d balrog
    case TSC_MODE_NO_SCAN:
859 3efda49d balrog
    case TSC_MODE_XX_DRV:
860 3efda49d balrog
    case TSC_MODE_YY_DRV:
861 3efda49d balrog
    case TSC_MODE_YX_DRV:
862 3efda49d balrog
    default:
863 3efda49d balrog
        return;
864 3efda49d balrog
    }
865 3efda49d balrog
866 a5d7eb65 balrog
    if (!s->enabled || s->busy || s->dav)
867 3efda49d balrog
        return;
868 3efda49d balrog
869 3efda49d balrog
    s->busy = 1;
870 3efda49d balrog
    s->precision = s->nextprecision;
871 3efda49d balrog
    s->function = s->nextfunction;
872 3efda49d balrog
    expires = qemu_get_clock(vm_clock) + (ticks_per_sec >> 10);
873 3efda49d balrog
    qemu_mod_timer(s->timer, expires);
874 3efda49d balrog
}
875 3efda49d balrog
876 3efda49d balrog
static uint16_t tsc210x_read(struct tsc210x_state_s *s)
877 3efda49d balrog
{
878 3efda49d balrog
    uint16_t ret = 0x0000;
879 3efda49d balrog
880 3efda49d balrog
    if (!s->command)
881 3efda49d balrog
        fprintf(stderr, "tsc210x_read: SPI underrun!\n");
882 3efda49d balrog
883 3efda49d balrog
    switch (s->page) {
884 3efda49d balrog
    case TSC_DATA_REGISTERS_PAGE:
885 3efda49d balrog
        ret = tsc2102_data_register_read(s, s->offset);
886 a5d7eb65 balrog
        if (!s->dav)
887 a5d7eb65 balrog
            qemu_irq_raise(s->davint);
888 3efda49d balrog
        break;
889 3efda49d balrog
    case TSC_CONTROL_REGISTERS_PAGE:
890 3efda49d balrog
        ret = tsc2102_control_register_read(s, s->offset);
891 3efda49d balrog
        break;
892 3efda49d balrog
    case TSC_AUDIO_REGISTERS_PAGE:
893 3efda49d balrog
        ret = tsc2102_audio_register_read(s, s->offset);
894 3efda49d balrog
        break;
895 3efda49d balrog
    default:
896 3efda49d balrog
        cpu_abort(cpu_single_env, "tsc210x_read: wrong memory page\n");
897 3efda49d balrog
    }
898 3efda49d balrog
899 3efda49d balrog
    tsc210x_pin_update(s);
900 3efda49d balrog
901 3efda49d balrog
    /* Allow sequential reads.  */
902 3efda49d balrog
    s->offset ++;
903 3efda49d balrog
    s->state = 0;
904 3efda49d balrog
    return ret;
905 3efda49d balrog
}
906 3efda49d balrog
907 3efda49d balrog
static void tsc210x_write(struct tsc210x_state_s *s, uint16_t value)
908 3efda49d balrog
{
909 3efda49d balrog
    /*
910 3efda49d balrog
     * This is a two-state state machine for reading
911 3efda49d balrog
     * command and data every second time.
912 3efda49d balrog
     */
913 3efda49d balrog
    if (!s->state) {
914 3efda49d balrog
        s->command = value >> 15;
915 3efda49d balrog
        s->page = (value >> 11) & 0x0f;
916 3efda49d balrog
        s->offset = (value >> 5) & 0x3f;
917 3efda49d balrog
        s->state = 1;
918 3efda49d balrog
    } else {
919 3efda49d balrog
        if (s->command)
920 3efda49d balrog
            fprintf(stderr, "tsc210x_write: SPI overrun!\n");
921 3efda49d balrog
        else
922 3efda49d balrog
            switch (s->page) {
923 3efda49d balrog
            case TSC_DATA_REGISTERS_PAGE:
924 3efda49d balrog
                tsc2102_data_register_write(s, s->offset, value);
925 3efda49d balrog
                break;
926 3efda49d balrog
            case TSC_CONTROL_REGISTERS_PAGE:
927 3efda49d balrog
                tsc2102_control_register_write(s, s->offset, value);
928 3efda49d balrog
                break;
929 3efda49d balrog
            case TSC_AUDIO_REGISTERS_PAGE:
930 3efda49d balrog
                tsc2102_audio_register_write(s, s->offset, value);
931 3efda49d balrog
                break;
932 3efda49d balrog
            default:
933 3efda49d balrog
                cpu_abort(cpu_single_env,
934 3efda49d balrog
                                "tsc210x_write: wrong memory page\n");
935 3efda49d balrog
            }
936 3efda49d balrog
937 3efda49d balrog
        tsc210x_pin_update(s);
938 3efda49d balrog
        s->state = 0;
939 3efda49d balrog
    }
940 3efda49d balrog
}
941 3efda49d balrog
942 e927bb00 balrog
uint32_t tsc210x_txrx(void *opaque, uint32_t value, int len)
943 a5d7eb65 balrog
{
944 a5d7eb65 balrog
    struct tsc210x_state_s *s = opaque;
945 a5d7eb65 balrog
    uint32_t ret = 0;
946 a5d7eb65 balrog
947 e927bb00 balrog
    if (len != 16)
948 e927bb00 balrog
        cpu_abort(cpu_single_env, "%s: FIXME: bad SPI word width %i\n",
949 e927bb00 balrog
                        __FUNCTION__, len);
950 e927bb00 balrog
951 a5d7eb65 balrog
    /* TODO: sequential reads etc - how do we make sure the host doesn't
952 a5d7eb65 balrog
     * unintentionally read out a conversion result from a register while
953 a5d7eb65 balrog
     * transmitting the command word of the next command?  */
954 a5d7eb65 balrog
    if (!value || (s->state && s->command))
955 a5d7eb65 balrog
        ret = tsc210x_read(s);
956 a5d7eb65 balrog
    if (value || (s->state && !s->command))
957 a5d7eb65 balrog
        tsc210x_write(s, value);
958 a5d7eb65 balrog
959 a5d7eb65 balrog
    return ret;
960 a5d7eb65 balrog
}
961 a5d7eb65 balrog
962 3efda49d balrog
static void tsc210x_timer_tick(void *opaque)
963 3efda49d balrog
{
964 3efda49d balrog
    struct tsc210x_state_s *s = opaque;
965 3efda49d balrog
966 3efda49d balrog
    /* Timer ticked -- a set of conversions has been finished.  */
967 3efda49d balrog
968 3efda49d balrog
    if (!s->busy)
969 3efda49d balrog
        return;
970 3efda49d balrog
971 3efda49d balrog
    s->busy = 0;
972 3efda49d balrog
    s->dav |= mode_regs[s->function];
973 3efda49d balrog
    tsc210x_pin_update(s);
974 a5d7eb65 balrog
    qemu_irq_lower(s->davint);
975 3efda49d balrog
}
976 3efda49d balrog
977 3efda49d balrog
static void tsc210x_touchscreen_event(void *opaque,
978 3efda49d balrog
                int x, int y, int z, int buttons_state)
979 3efda49d balrog
{
980 3efda49d balrog
    struct tsc210x_state_s *s = opaque;
981 3efda49d balrog
    int p = s->pressure;
982 3efda49d balrog
983 3efda49d balrog
    if (buttons_state) {
984 3efda49d balrog
        s->x = x;
985 3efda49d balrog
        s->y = y;
986 3efda49d balrog
    }
987 3efda49d balrog
    s->pressure = !!buttons_state;
988 3efda49d balrog
989 3efda49d balrog
    /*
990 3efda49d balrog
     * Note: We would get better responsiveness in the guest by
991 3efda49d balrog
     * signaling TS events immediately, but for now we simulate
992 3efda49d balrog
     * the first conversion delay for sake of correctness.
993 3efda49d balrog
     */
994 3efda49d balrog
    if (p != s->pressure)
995 3efda49d balrog
        tsc210x_pin_update(s);
996 3efda49d balrog
}
997 3efda49d balrog
998 d8f699cb balrog
static void tsc210x_i2s_swallow(struct tsc210x_state_s *s)
999 d8f699cb balrog
{
1000 d8f699cb balrog
    if (s->dac_voice[0])
1001 d8f699cb balrog
        tsc210x_out_flush(s, s->codec.out.len);
1002 d8f699cb balrog
    else
1003 d8f699cb balrog
        s->codec.out.len = 0;
1004 d8f699cb balrog
}
1005 d8f699cb balrog
1006 d8f699cb balrog
static void tsc210x_i2s_set_rate(struct tsc210x_state_s *s, int in, int out)
1007 d8f699cb balrog
{
1008 d8f699cb balrog
    s->i2s_tx_rate = out;
1009 d8f699cb balrog
    s->i2s_rx_rate = in;
1010 d8f699cb balrog
}
1011 d8f699cb balrog
1012 3efda49d balrog
static void tsc210x_save(QEMUFile *f, void *opaque)
1013 3efda49d balrog
{
1014 3efda49d balrog
    struct tsc210x_state_s *s = (struct tsc210x_state_s *) opaque;
1015 3efda49d balrog
    int64_t now = qemu_get_clock(vm_clock);
1016 3efda49d balrog
    int i;
1017 3efda49d balrog
1018 3efda49d balrog
    qemu_put_be16(f, s->x);
1019 3efda49d balrog
    qemu_put_be16(f, s->y);
1020 3efda49d balrog
    qemu_put_byte(f, s->pressure);
1021 3efda49d balrog
1022 3efda49d balrog
    qemu_put_byte(f, s->state);
1023 3efda49d balrog
    qemu_put_byte(f, s->page);
1024 3efda49d balrog
    qemu_put_byte(f, s->offset);
1025 3efda49d balrog
    qemu_put_byte(f, s->command);
1026 3efda49d balrog
1027 3efda49d balrog
    qemu_put_byte(f, s->irq);
1028 3efda49d balrog
    qemu_put_be16s(f, &s->dav);
1029 3efda49d balrog
1030 3efda49d balrog
    qemu_put_timer(f, s->timer);
1031 3efda49d balrog
    qemu_put_byte(f, s->enabled);
1032 3efda49d balrog
    qemu_put_byte(f, s->host_mode);
1033 3efda49d balrog
    qemu_put_byte(f, s->function);
1034 3efda49d balrog
    qemu_put_byte(f, s->nextfunction);
1035 3efda49d balrog
    qemu_put_byte(f, s->precision);
1036 3efda49d balrog
    qemu_put_byte(f, s->nextprecision);
1037 3efda49d balrog
    qemu_put_byte(f, s->filter);
1038 3efda49d balrog
    qemu_put_byte(f, s->pin_func);
1039 3efda49d balrog
    qemu_put_byte(f, s->ref);
1040 3efda49d balrog
    qemu_put_byte(f, s->timing);
1041 3efda49d balrog
    qemu_put_be32(f, s->noise);
1042 3efda49d balrog
1043 3efda49d balrog
    qemu_put_be16s(f, &s->audio_ctrl1);
1044 3efda49d balrog
    qemu_put_be16s(f, &s->audio_ctrl2);
1045 3efda49d balrog
    qemu_put_be16s(f, &s->audio_ctrl3);
1046 3efda49d balrog
    qemu_put_be16s(f, &s->pll[0]);
1047 3efda49d balrog
    qemu_put_be16s(f, &s->pll[1]);
1048 3efda49d balrog
    qemu_put_be16s(f, &s->volume);
1049 b6c4f71f blueswir1
    qemu_put_sbe64(f, (s->volume_change - now));
1050 b6c4f71f blueswir1
    qemu_put_sbe64(f, (s->powerdown - now));
1051 3efda49d balrog
    qemu_put_byte(f, s->softstep);
1052 3efda49d balrog
    qemu_put_be16s(f, &s->dac_power);
1053 3efda49d balrog
1054 3efda49d balrog
    for (i = 0; i < 0x14; i ++)
1055 3efda49d balrog
        qemu_put_be16s(f, &s->filter_data[i]);
1056 3efda49d balrog
}
1057 3efda49d balrog
1058 3efda49d balrog
static int tsc210x_load(QEMUFile *f, void *opaque, int version_id)
1059 3efda49d balrog
{
1060 3efda49d balrog
    struct tsc210x_state_s *s = (struct tsc210x_state_s *) opaque;
1061 3efda49d balrog
    int64_t now = qemu_get_clock(vm_clock);
1062 3efda49d balrog
    int i;
1063 3efda49d balrog
1064 3efda49d balrog
    s->x = qemu_get_be16(f);
1065 3efda49d balrog
    s->y = qemu_get_be16(f);
1066 3efda49d balrog
    s->pressure = qemu_get_byte(f);
1067 3efda49d balrog
1068 3efda49d balrog
    s->state = qemu_get_byte(f);
1069 3efda49d balrog
    s->page = qemu_get_byte(f);
1070 3efda49d balrog
    s->offset = qemu_get_byte(f);
1071 3efda49d balrog
    s->command = qemu_get_byte(f);
1072 3efda49d balrog
1073 3efda49d balrog
    s->irq = qemu_get_byte(f);
1074 3efda49d balrog
    qemu_get_be16s(f, &s->dav);
1075 3efda49d balrog
1076 3efda49d balrog
    qemu_get_timer(f, s->timer);
1077 3efda49d balrog
    s->enabled = qemu_get_byte(f);
1078 3efda49d balrog
    s->host_mode = qemu_get_byte(f);
1079 3efda49d balrog
    s->function = qemu_get_byte(f);
1080 3efda49d balrog
    s->nextfunction = qemu_get_byte(f);
1081 3efda49d balrog
    s->precision = qemu_get_byte(f);
1082 3efda49d balrog
    s->nextprecision = qemu_get_byte(f);
1083 3efda49d balrog
    s->filter = qemu_get_byte(f);
1084 3efda49d balrog
    s->pin_func = qemu_get_byte(f);
1085 3efda49d balrog
    s->ref = qemu_get_byte(f);
1086 3efda49d balrog
    s->timing = qemu_get_byte(f);
1087 3efda49d balrog
    s->noise = qemu_get_be32(f);
1088 3efda49d balrog
1089 3efda49d balrog
    qemu_get_be16s(f, &s->audio_ctrl1);
1090 3efda49d balrog
    qemu_get_be16s(f, &s->audio_ctrl2);
1091 3efda49d balrog
    qemu_get_be16s(f, &s->audio_ctrl3);
1092 3efda49d balrog
    qemu_get_be16s(f, &s->pll[0]);
1093 3efda49d balrog
    qemu_get_be16s(f, &s->pll[1]);
1094 3efda49d balrog
    qemu_get_be16s(f, &s->volume);
1095 b6c4f71f blueswir1
    s->volume_change = qemu_get_sbe64(f) + now;
1096 b6c4f71f blueswir1
    s->powerdown = qemu_get_sbe64(f) + now;
1097 3efda49d balrog
    s->softstep = qemu_get_byte(f);
1098 3efda49d balrog
    qemu_get_be16s(f, &s->dac_power);
1099 3efda49d balrog
1100 3efda49d balrog
    for (i = 0; i < 0x14; i ++)
1101 3efda49d balrog
        qemu_get_be16s(f, &s->filter_data[i]);
1102 3efda49d balrog
1103 3efda49d balrog
    s->busy = qemu_timer_pending(s->timer);
1104 7fc42b4b balrog
    qemu_set_irq(s->pint, !s->irq);
1105 a5d7eb65 balrog
    qemu_set_irq(s->davint, !s->dav);
1106 3efda49d balrog
1107 3efda49d balrog
    return 0;
1108 3efda49d balrog
}
1109 3efda49d balrog
1110 d8f699cb balrog
struct uwire_slave_s *tsc2102_init(qemu_irq pint, AudioState *audio)
1111 3efda49d balrog
{
1112 3efda49d balrog
    struct tsc210x_state_s *s;
1113 3efda49d balrog
1114 3efda49d balrog
    s = (struct tsc210x_state_s *)
1115 3efda49d balrog
            qemu_mallocz(sizeof(struct tsc210x_state_s));
1116 3efda49d balrog
    memset(s, 0, sizeof(struct tsc210x_state_s));
1117 3efda49d balrog
    s->x = 160;
1118 3efda49d balrog
    s->y = 160;
1119 3efda49d balrog
    s->pressure = 0;
1120 3efda49d balrog
    s->precision = s->nextprecision = 0;
1121 3efda49d balrog
    s->timer = qemu_new_timer(vm_clock, tsc210x_timer_tick, s);
1122 3efda49d balrog
    s->pint = pint;
1123 a5d7eb65 balrog
    s->model = 0x2102;
1124 d8f699cb balrog
    s->name = "tsc2102";
1125 d8f699cb balrog
    s->audio = audio;
1126 3efda49d balrog
1127 a5d7eb65 balrog
    s->tr[0] = 0;
1128 a5d7eb65 balrog
    s->tr[1] = 1;
1129 e927bb00 balrog
    s->tr[2] = 1;
1130 e927bb00 balrog
    s->tr[3] = 0;
1131 a5d7eb65 balrog
    s->tr[4] = 1;
1132 a5d7eb65 balrog
    s->tr[5] = 0;
1133 e927bb00 balrog
    s->tr[6] = 1;
1134 e927bb00 balrog
    s->tr[7] = 0;
1135 a5d7eb65 balrog
1136 3efda49d balrog
    s->chip.opaque = s;
1137 3efda49d balrog
    s->chip.send = (void *) tsc210x_write;
1138 3efda49d balrog
    s->chip.receive = (void *) tsc210x_read;
1139 3efda49d balrog
1140 d8f699cb balrog
    s->codec.opaque = s;
1141 d8f699cb balrog
    s->codec.tx_swallow = (void *) tsc210x_i2s_swallow;
1142 d8f699cb balrog
    s->codec.set_rate = (void *) tsc210x_i2s_set_rate;
1143 d8f699cb balrog
    s->codec.in.fifo = s->in_fifo;
1144 d8f699cb balrog
    s->codec.out.fifo = s->out_fifo;
1145 d8f699cb balrog
1146 3efda49d balrog
    tsc210x_reset(s);
1147 3efda49d balrog
1148 3efda49d balrog
    qemu_add_mouse_event_handler(tsc210x_touchscreen_event, s, 1,
1149 3efda49d balrog
                    "QEMU TSC2102-driven Touchscreen");
1150 3efda49d balrog
1151 d8f699cb balrog
    if (s->audio)
1152 d8f699cb balrog
        AUD_register_card(s->audio, s->name, &s->card);
1153 d8f699cb balrog
1154 3efda49d balrog
    qemu_register_reset((void *) tsc210x_reset, s);
1155 18be5187 pbrook
    register_savevm(s->name, -1, 0,
1156 3efda49d balrog
                    tsc210x_save, tsc210x_load, s);
1157 3efda49d balrog
1158 3efda49d balrog
    return &s->chip;
1159 3efda49d balrog
}
1160 d8f699cb balrog
1161 a5d7eb65 balrog
struct uwire_slave_s *tsc2301_init(qemu_irq penirq, qemu_irq kbirq,
1162 a5d7eb65 balrog
                qemu_irq dav, AudioState *audio)
1163 a5d7eb65 balrog
{
1164 a5d7eb65 balrog
    struct tsc210x_state_s *s;
1165 a5d7eb65 balrog
1166 a5d7eb65 balrog
    s = (struct tsc210x_state_s *)
1167 a5d7eb65 balrog
            qemu_mallocz(sizeof(struct tsc210x_state_s));
1168 a5d7eb65 balrog
    memset(s, 0, sizeof(struct tsc210x_state_s));
1169 a5d7eb65 balrog
    s->x = 400;
1170 a5d7eb65 balrog
    s->y = 240;
1171 a5d7eb65 balrog
    s->pressure = 0;
1172 a5d7eb65 balrog
    s->precision = s->nextprecision = 0;
1173 a5d7eb65 balrog
    s->timer = qemu_new_timer(vm_clock, tsc210x_timer_tick, s);
1174 a5d7eb65 balrog
    s->pint = penirq;
1175 a5d7eb65 balrog
    s->kbint = kbirq;
1176 a5d7eb65 balrog
    s->davint = dav;
1177 a5d7eb65 balrog
    s->model = 0x2301;
1178 a5d7eb65 balrog
    s->name = "tsc2301";
1179 a5d7eb65 balrog
    s->audio = audio;
1180 a5d7eb65 balrog
1181 a5d7eb65 balrog
    s->tr[0] = 0;
1182 a5d7eb65 balrog
    s->tr[1] = 1;
1183 e927bb00 balrog
    s->tr[2] = 1;
1184 e927bb00 balrog
    s->tr[3] = 0;
1185 a5d7eb65 balrog
    s->tr[4] = 1;
1186 a5d7eb65 balrog
    s->tr[5] = 0;
1187 e927bb00 balrog
    s->tr[6] = 1;
1188 e927bb00 balrog
    s->tr[7] = 0;
1189 a5d7eb65 balrog
1190 a5d7eb65 balrog
    s->chip.opaque = s;
1191 a5d7eb65 balrog
    s->chip.send = (void *) tsc210x_write;
1192 a5d7eb65 balrog
    s->chip.receive = (void *) tsc210x_read;
1193 a5d7eb65 balrog
1194 a5d7eb65 balrog
    s->codec.opaque = s;
1195 a5d7eb65 balrog
    s->codec.tx_swallow = (void *) tsc210x_i2s_swallow;
1196 a5d7eb65 balrog
    s->codec.set_rate = (void *) tsc210x_i2s_set_rate;
1197 a5d7eb65 balrog
    s->codec.in.fifo = s->in_fifo;
1198 a5d7eb65 balrog
    s->codec.out.fifo = s->out_fifo;
1199 a5d7eb65 balrog
1200 a5d7eb65 balrog
    tsc210x_reset(s);
1201 a5d7eb65 balrog
1202 a5d7eb65 balrog
    qemu_add_mouse_event_handler(tsc210x_touchscreen_event, s, 1,
1203 a5d7eb65 balrog
                    "QEMU TSC2301-driven Touchscreen");
1204 a5d7eb65 balrog
1205 a5d7eb65 balrog
    if (s->audio)
1206 a5d7eb65 balrog
        AUD_register_card(s->audio, s->name, &s->card);
1207 a5d7eb65 balrog
1208 a5d7eb65 balrog
    qemu_register_reset((void *) tsc210x_reset, s);
1209 18be5187 pbrook
    register_savevm(s->name, -1, 0, tsc210x_save, tsc210x_load, s);
1210 a5d7eb65 balrog
1211 a5d7eb65 balrog
    return &s->chip;
1212 a5d7eb65 balrog
}
1213 a5d7eb65 balrog
1214 d8f699cb balrog
struct i2s_codec_s *tsc210x_codec(struct uwire_slave_s *chip)
1215 d8f699cb balrog
{
1216 d8f699cb balrog
    struct tsc210x_state_s *s = (struct tsc210x_state_s *) chip->opaque;
1217 d8f699cb balrog
1218 d8f699cb balrog
    return &s->codec;
1219 d8f699cb balrog
}
1220 a5d7eb65 balrog
1221 a5d7eb65 balrog
/*
1222 a5d7eb65 balrog
 * Use tslib generated calibration data to generate ADC input values
1223 a5d7eb65 balrog
 * from the touchscreen.  Assuming 12-bit precision was used during
1224 a5d7eb65 balrog
 * tslib calibration.
1225 a5d7eb65 balrog
 */
1226 a5d7eb65 balrog
void tsc210x_set_transform(struct uwire_slave_s *chip,
1227 a5d7eb65 balrog
                struct mouse_transform_info_s *info)
1228 a5d7eb65 balrog
{
1229 a5d7eb65 balrog
    struct tsc210x_state_s *s = (struct tsc210x_state_s *) chip->opaque;
1230 a5d7eb65 balrog
#if 0
1231 a5d7eb65 balrog
    int64_t ltr[8];
1232 a5d7eb65 balrog

1233 a5d7eb65 balrog
    ltr[0] = (int64_t) info->a[1] * info->y;
1234 a5d7eb65 balrog
    ltr[1] = (int64_t) info->a[4] * info->x;
1235 a5d7eb65 balrog
    ltr[2] = (int64_t) info->a[1] * info->a[3] -
1236 a5d7eb65 balrog
            (int64_t) info->a[4] * info->a[0];
1237 a5d7eb65 balrog
    ltr[3] = (int64_t) info->a[2] * info->a[4] -
1238 a5d7eb65 balrog
            (int64_t) info->a[5] * info->a[1];
1239 a5d7eb65 balrog
    ltr[4] = (int64_t) info->a[0] * info->y;
1240 a5d7eb65 balrog
    ltr[5] = (int64_t) info->a[3] * info->x;
1241 a5d7eb65 balrog
    ltr[6] = (int64_t) info->a[4] * info->a[0] -
1242 a5d7eb65 balrog
            (int64_t) info->a[1] * info->a[3];
1243 a5d7eb65 balrog
    ltr[7] = (int64_t) info->a[2] * info->a[3] -
1244 a5d7eb65 balrog
            (int64_t) info->a[5] * info->a[0];
1245 a5d7eb65 balrog

1246 a5d7eb65 balrog
    /* Avoid integer overflow */
1247 a5d7eb65 balrog
    s->tr[0] = ltr[0] >> 11;
1248 a5d7eb65 balrog
    s->tr[1] = ltr[1] >> 11;
1249 a5d7eb65 balrog
    s->tr[2] = muldiv64(ltr[2], 1, info->a[6]);
1250 a5d7eb65 balrog
    s->tr[3] = muldiv64(ltr[3], 1 << 4, ltr[2]);
1251 a5d7eb65 balrog
    s->tr[4] = ltr[4] >> 11;
1252 a5d7eb65 balrog
    s->tr[5] = ltr[5] >> 11;
1253 a5d7eb65 balrog
    s->tr[6] = muldiv64(ltr[6], 1, info->a[6]);
1254 a5d7eb65 balrog
    s->tr[7] = muldiv64(ltr[7], 1 << 4, ltr[6]);
1255 a5d7eb65 balrog
#else
1256 a5d7eb65 balrog
1257 a5d7eb65 balrog
    /* This version assumes touchscreen X & Y axis are parallel or
1258 a5d7eb65 balrog
     * perpendicular to LCD's  X & Y axis in some way.  */
1259 a5d7eb65 balrog
    if (abs(info->a[0]) > abs(info->a[1])) {
1260 a5d7eb65 balrog
        s->tr[0] = 0;
1261 a5d7eb65 balrog
        s->tr[1] = -info->a[6] * info->x;
1262 a5d7eb65 balrog
        s->tr[2] = info->a[0];
1263 a5d7eb65 balrog
        s->tr[3] = -info->a[2] / info->a[0];
1264 a5d7eb65 balrog
        s->tr[4] = info->a[6] * info->y;
1265 a5d7eb65 balrog
        s->tr[5] = 0;
1266 a5d7eb65 balrog
        s->tr[6] = info->a[4];
1267 a5d7eb65 balrog
        s->tr[7] = -info->a[5] / info->a[4];
1268 a5d7eb65 balrog
    } else {
1269 a5d7eb65 balrog
        s->tr[0] = info->a[6] * info->y;
1270 a5d7eb65 balrog
        s->tr[1] = 0;
1271 a5d7eb65 balrog
        s->tr[2] = info->a[1];
1272 a5d7eb65 balrog
        s->tr[3] = -info->a[2] / info->a[1];
1273 a5d7eb65 balrog
        s->tr[4] = 0;
1274 a5d7eb65 balrog
        s->tr[5] = -info->a[6] * info->x;
1275 a5d7eb65 balrog
        s->tr[6] = info->a[3];
1276 a5d7eb65 balrog
        s->tr[7] = -info->a[5] / info->a[3];
1277 a5d7eb65 balrog
    }
1278 a5d7eb65 balrog
1279 a5d7eb65 balrog
    s->tr[0] >>= 11;
1280 a5d7eb65 balrog
    s->tr[1] >>= 11;
1281 a5d7eb65 balrog
    s->tr[3] <<= 4;
1282 a5d7eb65 balrog
    s->tr[4] >>= 11;
1283 a5d7eb65 balrog
    s->tr[5] >>= 11;
1284 a5d7eb65 balrog
    s->tr[7] <<= 4;
1285 a5d7eb65 balrog
#endif
1286 a5d7eb65 balrog
}
1287 a5d7eb65 balrog
1288 a5d7eb65 balrog
void tsc210x_key_event(struct uwire_slave_s *chip, int key, int down)
1289 a5d7eb65 balrog
{
1290 a5d7eb65 balrog
    struct tsc210x_state_s *s = (struct tsc210x_state_s *) chip->opaque;
1291 a5d7eb65 balrog
1292 a5d7eb65 balrog
    if (down)
1293 a5d7eb65 balrog
        s->kb.down |= 1 << key;
1294 a5d7eb65 balrog
    else
1295 a5d7eb65 balrog
        s->kb.down &= ~(1 << key);
1296 a5d7eb65 balrog
1297 a5d7eb65 balrog
    if (down && (s->kb.down & ~s->kb.mask) && !s->kb.intr) {
1298 a5d7eb65 balrog
        s->kb.intr = 1;
1299 a5d7eb65 balrog
        qemu_irq_lower(s->kbint);
1300 a5d7eb65 balrog
    } else if (s->kb.intr && !(s->kb.down & ~s->kb.mask) &&
1301 a5d7eb65 balrog
                    !(s->kb.mode & 1)) {
1302 a5d7eb65 balrog
        s->kb.intr = 0;
1303 a5d7eb65 balrog
        qemu_irq_raise(s->kbint);
1304 a5d7eb65 balrog
    }
1305 a5d7eb65 balrog
}