rockbox/firmware/target/arm/tms320dm320/sansa-connect/wifi-sansaconnect.c
Tomasz Moń 8de163b8ae
Sansa Connect: Fix reported CPU frequency
Make frequency related comments accurate. Disable UART0 clock.

Change-Id: I224a3d6656ad53165dcff68ed716fa2c6863240d
2021-07-09 14:16:05 +02:00

132 lines
3.2 KiB
C

/***************************************************************************
* __________ __ ___.
* Open \______ \ ____ ____ | | _\_ |__ _______ ___
* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
* \/ \/ \/ \/ \/
* $Id$
*
* Copyright (C) 2021 by Tomasz Moń
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
*
****************************************************************************/
#include "kernel.h"
#include "system.h"
#include "spi.h"
#include "avr-sansaconnect.h"
#include "libertas/if_spi_drv.h"
#define IO_SERIAL0_XMIT (0x100)
void libertas_spi_init(void)
{
IO_GIO_DIR0 &= ~((1 << 4) /* CS */ | (1 << 3) /* reset */);
libertas_spi_reset(1);
libertas_spi_cs(1);
/* Enable the clock */
bitset16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
/* Disable transmitter */
IO_SERIAL0_TX_ENABLE = 0x0001;
/* SELSDEN = 0, SLVEN = 0, SIOCLR = 0, SCLKM = 1, MSB = 1, MSSEL = 0,
* RATE = 1 (Bit rate = ARM clock / 2*(RATE + 1)))
* Boosted 148.5 MHz / 4 = 37.125 MHz
* Default 74.25 MHz / 4 = 18.5625 MHz
*/
IO_SERIAL0_MODE = 0x0601;
/* Disable the clock */
bitclr16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
/* Make sure the SPI clock is not inverted */
bitclr16(&IO_CLK_INV, CLK_INV_SIF0);
}
void libertas_spi_reset(int high)
{
if (high)
{
IO_GIO_BITSET0 = (1 << 3);
}
else
{
IO_GIO_BITCLR0 = (1 << 3);
}
}
void libertas_spi_pd(int high)
{
avr_hid_wifi_pd(high);
}
void libertas_spi_cs(int high)
{
if (high)
{
IO_GIO_BITSET0 = (1 << 4);
}
else
{
IO_GIO_BITCLR0 = (1 << 4);
}
}
void libertas_spi_tx(const uint8_t *buf, int len)
{
/* Enable the clock */
bitset16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
IO_SERIAL0_TX_ENABLE = 0x0001;
while (len > 0)
{
IO_SERIAL0_TX_DATA = *(buf + 1);
while (IO_SERIAL0_RX_DATA & IO_SERIAL0_XMIT) {};
IO_SERIAL0_TX_DATA = *buf;
while (IO_SERIAL0_RX_DATA & IO_SERIAL0_XMIT) {};
buf += 2;
len -= 2;
}
IO_SERIAL0_TX_ENABLE = 0x0000;
/* Disable the clock */
bitclr16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
}
void libertas_spi_rx(uint8_t *buf, int len)
{
/* Enable the clock */
bitset16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
IO_SERIAL0_TX_ENABLE = 0x0001;
while (len > 0)
{
uint16_t data;
IO_SERIAL0_TX_DATA = 0;
while ((data = IO_SERIAL0_RX_DATA) & IO_SERIAL0_XMIT) {};
*(buf + 1) = data & 0xFF;
IO_SERIAL0_TX_DATA = 0;
while ((data = IO_SERIAL0_RX_DATA) & IO_SERIAL0_XMIT) {};
*buf = data & 0xFF;
buf += 2;
len -= 2;
}
IO_SERIAL0_TX_ENABLE = 0x0000;
/* Disable the clock */
bitclr16(&IO_CLK_MOD2, CLK_MOD2_SIF0);
}