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w5x00_ll_driver.c
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w5x00_ll_driver.c
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/**
* Copyright (c) 2022 WIZnet Co.,Ltd
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include "w5x00_ll_driver.h"
#if ETHERNET_ENABLE && (_WIZCHIP_ == W5100S || _WIZCHIP_ == W5500)
#include <stdio.h>
#include "hardware/gpio.h"
#include "spi.h"
#include "socket.h"
#if _WIZCHIP_ == W5500
#include "W5500/w5500.h"
#elif _WIZCHIP_ == W5100S
#include "W5100S/w5100s.h"
#endif
#ifndef WIZCHIP_SPI_FREQ
#define WIZCHIP_SPI_FREQ 33000000 // 33MHz
#endif
static struct {
uint32_t cs;
uint32_t rst;
} hw;
static uint32_t spi_freq = 0;
static void (*irq_callback)(void);
static volatile bool spin_lock = false;
static void __not_in_flash_func(wizchip_select) (void)
{
if(spi_freq != WIZCHIP_SPI_FREQ) {
uint32_t freq = spi_set_speed(WIZCHIP_SPI_FREQ);
if(freq != WIZCHIP_SPI_FREQ)
spi_freq = freq;
}
DIGITAL_OUT(hw.cs, 0);
}
static void __not_in_flash_func(wizchip_deselect) (void)
{
DIGITAL_OUT(hw.cs, 1);
if(spi_freq != WIZCHIP_SPI_FREQ && spi_freq)
spi_set_speed(spi_freq);
}
static void __not_in_flash_func(wizchip_critical_section_lock) (void)
{
while(spin_lock);
spin_lock = true;
}
static void __not_in_flash_func(wizchip_critical_section_unlock) (void)
{
spin_lock = false;
}
static bool __not_in_flash_func(wizchip_gpio_interrupt_callback) (uint_fast8_t id, bool level)
{
irq_callback();
return true;
}
static void add_pin (xbar_t *gpio, void *data)
{
if(gpio->group == PinGroup_SPI) switch(gpio->function) {
case Output_SPICS:
hw.cs = gpio->pin;
// hal.periph_port.set_pin_description(gpio->function, gpio->group, "WizNet W5x00 CS");
break;
case Output_SPIRST:
hw.rst = gpio->pin;
// hal.periph_port.set_pin_description(gpio->function, gpio->group, "WizNet W5x00 Reset");
break;
default:
break;
}
}
// Public functions
void wizchip_reset (void)
{
#if SPI_RST_PORT == GPIO_SR16
spi_reset_out(0);
hal.delay_ms(2, NULL);
spi_reset_out(1);
#else
DIGITAL_OUT(hw.rst, 0);
hal.delay_ms(2, NULL);
DIGITAL_OUT(hw.rst, 1);
#endif
hal.delay_ms(10, NULL);
}
wizchip_init_err_t wizchip_initialize (void)
{
hal.enumerate_pins(true, add_pin, NULL);
wizchip_deselect();
spi_start();
spi_set_speed(WIZCHIP_SPI_FREQ);
wizchip_reset();
reg_wizchip_cris_cbfunc(wizchip_critical_section_lock, wizchip_critical_section_unlock);
reg_wizchip_cs_cbfunc(wizchip_select, wizchip_deselect);
reg_wizchip_spi_cbfunc(spi_get_byte, spi_put_byte);
#if SPI_DMA_ENABLE
reg_wizchip_spiburst_cbfunc(spi_read, spi_write);
#endif
/* W5x00 initialize */
#if (_WIZCHIP_ == W5100S)
uint8_t memsize[2][4] = {{8, 0, 0, 0}, {8, 0, 0, 0}};
#elif (_WIZCHIP_ == W5500)
uint8_t memsize[2][8] = {{8, 0, 0, 0, 0, 0, 0, 0}, {8, 0, 0, 0, 0, 0, 0, 0}};
#endif
if(ctlwizchip(CW_INIT_WIZCHIP, (void *)memsize) == -1)
return WizChipInit_MemErr;
#if _WIZCHIP_ == W5100 || _WIZCHIP_ == W5200
int8_t link_status;
if (ctlwizchip(CW_GET_PHYLINK, (void *)&link_status) == -1)
return WizChipInit_UnknownLinkStatus;
#endif
#if (_WIZCHIP_ == W5100S)
return getVER() == 0x51 ? WizChipInit_OK : WizChipInit_WrongChip;
#elif (_WIZCHIP_ == W5500)
return getVERSIONR() == 0x04 ? WizChipInit_OK : WizChipInit_WrongChip;
#endif
}
void network_initialize (wiz_NetInfo net_info)
{
ctlnetwork(CN_SET_NETINFO, (void *)&net_info);
}
bool wizchip_gpio_interrupt_initialize (uint8_t socket, void (*callback)(void))
{
int ret_val;
uint16_t reg_val = SIK_RECEIVED; //(SIK_CONNECTED | SIK_DISCONNECTED | SIK_RECEIVED | SIK_TIMEOUT); // except SendOK
if((ret_val = ctlsocket(socket, CS_SET_INTMASK, (void *)®_val)) == SOCK_OK) {
#if (_WIZCHIP_ == W5100S)
reg_val = (1 << socket);
#elif (_WIZCHIP_ == W5500)
reg_val = ((1 << socket) << 8);
#endif
if(ctlwizchip(CW_SET_INTRMASK, (void *)®_val) == 0) {
irq_callback = callback;
hal.irq_claim(IRQ_SPI, 0, wizchip_gpio_interrupt_callback);
} else
ret_val = SOCK_FATAL;
}
return ret_val == SOCK_OK;
}
#endif // ETHERNET_ENABLE && defined(_WIZCHIP_)