2507c12ab0
As stated before, devices can be little, big or native endian. The target endianness is not of their concern, so we need to push things down a level. This patch adds a parameter to cpu_register_io_memory that allows a device to choose its endianness. For now, all devices simply choose native endian, because that's the same behavior as before. Signed-off-by: Alexander Graf <agraf@suse.de> Signed-off-by: Blue Swirl <blauwirbel@gmail.com>
221 lines
5.8 KiB
C
221 lines
5.8 KiB
C
/*
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* QEMU ETRAX System Emulator
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*
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* Copyright (c) 2007 Edgar E. Iglesias, Axis Communications AB.
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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 "sysbus.h"
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#include "qemu-char.h"
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#define D(x)
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#define RW_TR_CTRL (0x00 / 4)
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#define RW_TR_DMA_EN (0x04 / 4)
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#define RW_REC_CTRL (0x08 / 4)
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#define RW_DOUT (0x1c / 4)
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#define RS_STAT_DIN (0x20 / 4)
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#define R_STAT_DIN (0x24 / 4)
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#define RW_INTR_MASK (0x2c / 4)
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#define RW_ACK_INTR (0x30 / 4)
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#define R_INTR (0x34 / 4)
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#define R_MASKED_INTR (0x38 / 4)
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#define R_MAX (0x3c / 4)
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#define STAT_DAV 16
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#define STAT_TR_IDLE 22
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#define STAT_TR_RDY 24
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struct etrax_serial
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{
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SysBusDevice busdev;
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CharDriverState *chr;
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qemu_irq irq;
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int pending_tx;
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uint8_t rx_fifo[16];
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unsigned int rx_fifo_pos;
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unsigned int rx_fifo_len;
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/* Control registers. */
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uint32_t regs[R_MAX];
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};
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static void ser_update_irq(struct etrax_serial *s)
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{
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if (s->rx_fifo_len) {
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s->regs[R_INTR] |= 8;
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} else {
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s->regs[R_INTR] &= ~8;
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}
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s->regs[R_MASKED_INTR] = s->regs[R_INTR] & s->regs[RW_INTR_MASK];
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qemu_set_irq(s->irq, !!s->regs[R_MASKED_INTR]);
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}
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static uint32_t ser_readl (void *opaque, target_phys_addr_t addr)
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{
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struct etrax_serial *s = opaque;
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D(CPUState *env = s->env);
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uint32_t r = 0;
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addr >>= 2;
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switch (addr)
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{
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case R_STAT_DIN:
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r = s->rx_fifo[(s->rx_fifo_pos - s->rx_fifo_len) & 15];
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if (s->rx_fifo_len) {
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r |= 1 << STAT_DAV;
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}
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r |= 1 << STAT_TR_RDY;
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r |= 1 << STAT_TR_IDLE;
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break;
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case RS_STAT_DIN:
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r = s->rx_fifo[(s->rx_fifo_pos - s->rx_fifo_len) & 15];
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if (s->rx_fifo_len) {
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r |= 1 << STAT_DAV;
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s->rx_fifo_len--;
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}
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r |= 1 << STAT_TR_RDY;
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r |= 1 << STAT_TR_IDLE;
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break;
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default:
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r = s->regs[addr];
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D(printf ("%s " TARGET_FMT_plx "=%x\n", __func__, addr, r));
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break;
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}
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return r;
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}
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static void
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ser_writel (void *opaque, target_phys_addr_t addr, uint32_t value)
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{
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struct etrax_serial *s = opaque;
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unsigned char ch = value;
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D(CPUState *env = s->env);
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D(printf ("%s " TARGET_FMT_plx "=%x\n", __func__, addr, value));
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addr >>= 2;
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switch (addr)
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{
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case RW_DOUT:
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qemu_chr_write(s->chr, &ch, 1);
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s->regs[R_INTR] |= 3;
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s->pending_tx = 1;
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s->regs[addr] = value;
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break;
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case RW_ACK_INTR:
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if (s->pending_tx) {
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value &= ~1;
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s->pending_tx = 0;
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D(printf("fixedup value=%x r_intr=%x\n", value, s->regs[R_INTR]));
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}
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s->regs[addr] = value;
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s->regs[R_INTR] &= ~value;
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D(printf("r_intr=%x\n", s->regs[R_INTR]));
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break;
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default:
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s->regs[addr] = value;
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break;
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}
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ser_update_irq(s);
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}
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static CPUReadMemoryFunc * const ser_read[] = {
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NULL, NULL,
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&ser_readl,
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};
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static CPUWriteMemoryFunc * const ser_write[] = {
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NULL, NULL,
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&ser_writel,
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};
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static void serial_receive(void *opaque, const uint8_t *buf, int size)
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{
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struct etrax_serial *s = opaque;
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int i;
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/* Got a byte. */
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if (s->rx_fifo_len >= 16) {
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printf("WARNING: UART dropped char.\n");
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return;
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}
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for (i = 0; i < size; i++) {
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s->rx_fifo[s->rx_fifo_pos] = buf[i];
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s->rx_fifo_pos++;
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s->rx_fifo_pos &= 15;
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s->rx_fifo_len++;
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}
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ser_update_irq(s);
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}
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static int serial_can_receive(void *opaque)
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{
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struct etrax_serial *s = opaque;
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int r;
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/* Is the receiver enabled? */
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if (!(s->regs[RW_REC_CTRL] & (1 << 3))) {
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return 0;
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}
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r = sizeof(s->rx_fifo) - s->rx_fifo_len;
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return r;
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}
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static void serial_event(void *opaque, int event)
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{
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}
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static int etraxfs_ser_init(SysBusDevice *dev)
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{
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struct etrax_serial *s = FROM_SYSBUS(typeof (*s), dev);
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int ser_regs;
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/* transmitter begins ready and idle. */
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s->regs[RS_STAT_DIN] |= (1 << STAT_TR_RDY);
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s->regs[RS_STAT_DIN] |= (1 << STAT_TR_IDLE);
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sysbus_init_irq(dev, &s->irq);
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ser_regs = cpu_register_io_memory(ser_read, ser_write, s,
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DEVICE_NATIVE_ENDIAN);
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sysbus_init_mmio(dev, R_MAX * 4, ser_regs);
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s->chr = qdev_init_chardev(&dev->qdev);
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if (s->chr)
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qemu_chr_add_handlers(s->chr,
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serial_can_receive, serial_receive,
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serial_event, s);
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return 0;
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}
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static void etraxfs_serial_register(void)
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{
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sysbus_register_dev("etraxfs,serial", sizeof (struct etrax_serial),
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etraxfs_ser_init);
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}
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device_init(etraxfs_serial_register)
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