[bsp/ls1cdev]添加自引导特性,添加配置选项
1、添加自引导特性,添加配置选项 2、修复cpuport.c的bug 3、修复ls1c_pin.c不能默认复用的bug
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@ -228,20 +228,6 @@ CONFIG_LWIP_NETIF_LOOPBACK=0
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# RT-Thread online packages
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#
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#
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# system packages
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#
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#
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# RT-Thread GUI Engine
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#
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# CONFIG_PKG_USING_GUIENGINE is not set
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# CONFIG_PKG_USING_LVGL is not set
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# CONFIG_PKG_USING_LWEXT4 is not set
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# CONFIG_PKG_USING_PARTITION is not set
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# CONFIG_PKG_USING_SQLITE is not set
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# CONFIG_PKG_USING_RTI is not set
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#
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# IoT - internet of things
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#
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@ -271,6 +257,7 @@ CONFIG_LWIP_NETIF_LOOPBACK=0
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# CONFIG_PKG_USING_COAP is not set
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# CONFIG_PKG_USING_NOPOLL is not set
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# CONFIG_PKG_USING_NETUTILS is not set
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# CONFIG_PKG_USING_ONENET is not set
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#
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# security packages
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@ -289,6 +276,7 @@ CONFIG_LWIP_NETIF_LOOPBACK=0
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# multimedia packages
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#
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# CONFIG_PKG_USING_OPENMV is not set
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# CONFIG_PKG_USING_MUPDF is not set
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#
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# tools packages
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@ -299,6 +287,26 @@ CONFIG_LWIP_NETIF_LOOPBACK=0
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# CONFIG_PKG_USING_SYSTEMVIEW is not set
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# CONFIG_PKG_USING_IPERF is not set
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#
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# system packages
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#
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#
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# RT-Thread GUI Engine
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#
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# CONFIG_PKG_USING_GUIENGINE is not set
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# CONFIG_PKG_USING_LWEXT4 is not set
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# CONFIG_PKG_USING_PARTITION is not set
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# CONFIG_PKG_USING_SQLITE is not set
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# CONFIG_PKG_USING_RTI is not set
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# CONFIG_PKG_USING_LITTLEVGL2RTT is not set
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#
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# peripheral libraries and drivers
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#
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# CONFIG_PKG_USING_STM32F4_HAL is not set
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# CONFIG_PKG_USING_STM32F4_DRIVERS is not set
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#
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# miscellaneous packages
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#
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@ -306,13 +314,18 @@ CONFIG_LWIP_NETIF_LOOPBACK=0
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# CONFIG_PKG_USING_MINILZO is not set
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# CONFIG_PKG_USING_QUICKLZ is not set
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# CONFIG_PKG_USING_MULTIBUTTON is not set
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# CONFIG_PKG_USING_SAMPLES is not set
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# CONFIG_PKG_USING_CANFESTIVAL is not set
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#
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# sample package
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#
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# CONFIG_PKG_USING_SAMPLES is not set
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#
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# example package: hello
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#
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# CONFIG_PKG_USING_HELLO is not set
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# CONFIG_RT_USING_SELF_BOOT is not set
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CONFIG_RT_USING_UART2=y
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CONFIG_RT_UART_RX_BUFFER_SIZE=64
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CONFIG_RT_USING_GMAC_INT_MODE=y
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@ -12,6 +12,8 @@ from building import *
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TARGET = 'rtthread.' + rtconfig.TARGET_EXT
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rtconfig.AFLAGS += ' -I' + str(Dir('#'))
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env = Environment(tools = ['mingw'],
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AS = rtconfig.AS, ASFLAGS = rtconfig.AFLAGS,
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CC = rtconfig.CC, CCFLAGS = rtconfig.CFLAGS,
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@ -25,6 +27,13 @@ Export('rtconfig')
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# prepare building environment
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objs = PrepareBuilding(env, RTT_ROOT)
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if GetDepend('RT_USING_SELF_BOOT'):
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rtconfig.LFLAGS += " -Ttext 0x80010000"
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else:
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rtconfig.LFLAGS += " -Ttext 0x80200000"
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env.Replace(LINKFLAGS = rtconfig.LFLAGS)
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if GetDepend('RT_USING_RTGUI'):
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objs = objs + SConscript(RTT_ROOT + '/examples/gui/SConscript', variant_dir='build/examples/gui', duplicate=0)
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@ -100,6 +100,9 @@ void rt_hw_board_init(void)
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/* init hardware interrupt */
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rt_hw_interrupt_init();
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/* clear bev */
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write_c0_status(read_c0_status()&(~(1<<22)));
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/* copy vector */
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rt_memcpy((void *)A_K0BASE, tlb_refill_exception, 0x80);
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rt_memcpy((void *)(A_K0BASE + 0x180), general_exception, 0x80);
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@ -31,6 +31,8 @@
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#include "mii.c"
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#include "synopGMAC_debug.h"
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#include <ls1c.h>
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#include "ls1c_pin.h"
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#define RMII
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#define Gmac_base 0xbfe10000
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@ -865,10 +867,22 @@ int rt_hw_eth_init(void)
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u64 base_addr = Gmac_base;
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struct synopGMACNetworkAdapter * synopGMACadapter;
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static u8 mac_addr0[6] = DEFAULT_MAC_ADDRESS;
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int index;
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rt_sem_init(&sem_ack, "tx_ack", 1, RT_IPC_FLAG_FIFO);
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rt_sem_init(&sem_lock, "eth_lock", 1, RT_IPC_FLAG_FIFO);
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for(index=21; index<=30;index++)
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{
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pin_set_purpose(index, PIN_PURPOSE_OTHER);
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pin_set_remap(index, PIN_REMAP_DEFAULT);
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}
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pin_set_purpose(35, PIN_PURPOSE_OTHER);
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pin_set_remap(35, PIN_REMAP_DEFAULT);
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*((volatile unsigned int *)0xbfd00424) &= ~(7 << 28);
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*((volatile unsigned int *)0xbfd00424) |= (1 << 30); //wl rmii
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memset(ð_dev, 0, sizeof(eth_dev));
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synopGMACadapter = (struct synopGMACNetworkAdapter * )plat_alloc_memory(sizeof (struct synopGMACNetworkAdapter));
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@ -19,6 +19,10 @@ config $PKGS_DIR
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source "$RTT_DIR/Kconfig"
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source "$PKGS_DIR/Kconfig"
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config RT_USING_SELF_BOOT
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bool "Enable RT-Thread run without bootloader"
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default n
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if RT_USING_SERIAL
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config RT_USING_UART2
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bool "Using RT_USING_UART2"
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@ -1,4 +1,4 @@
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// 引脚功能(普通gpio,pwm,复用等)相关接口
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// 引脚功能(普通gpio,pwm,复用等)相关接口
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#include "ls1c_public.h"
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@ -8,21 +8,21 @@
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/*
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* 把指定pin设置为指定用途(普通gpio,非gpio)
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* @gpio gpio引脚编号
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* @purpose 用途
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* 把指定pin设置为指定用途(普通gpio,非gpio)
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* @gpio gpio引脚编号
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* @purpose 用途
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*/
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void pin_set_purpose(unsigned int gpio, pin_purpose_t purpose)
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{
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volatile unsigned int *gpio_cfgx; // GPIO_CFGx寄存器
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volatile unsigned int *gpio_cfgx; // GPIO_CFGx寄存器
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unsigned int pin = GPIO_GET_PIN(gpio);
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gpio_cfgx = gpio_get_cfg_reg(gpio);
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if (PIN_PURPOSE_GPIO == purpose) // 引脚用作普通gpio
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if (PIN_PURPOSE_GPIO == purpose) // 引脚用作普通gpio
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{
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reg_set_one_bit(gpio_cfgx, pin);
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}
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else // 引脚用作其它功能(非gpio)
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else // 引脚用作其它功能(非gpio)
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{
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reg_clr_one_bit(gpio_cfgx, pin);
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}
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@ -33,25 +33,27 @@ void pin_set_purpose(unsigned int gpio, pin_purpose_t purpose)
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/*
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* 设置指定pin为第n复用
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* @gpio gpio编号
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* @remap 第n复用
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* 设置指定pin为第n复用
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* @gpio gpio编号
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* @remap 第n复用
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*/
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void pin_set_remap(unsigned int gpio, pin_remap_t remap)
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{
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volatile unsigned int *reg = NULL; // 复用寄存器
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volatile unsigned int *reg = NULL; // 复用寄存器
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unsigned int port = GPIO_GET_PORT(gpio);
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unsigned int pin = GPIO_GET_PIN(gpio);
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int i;
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/*指定全部pin复用为0*/
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for(i =0; i <=4; i++)
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/*指定全部pin复用为0*/
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for (i = 0; i <= 4; i++)
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{
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reg = (volatile unsigned int *)((LS1C_CBUS_FIRST0)+((port)*0x04)+((i)*0x10));
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// 置0
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reg = (volatile unsigned int *)((LS1C_CBUS_FIRST0) + ((port) * 0x04) + ((i) * 0x10));
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// 置0
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reg_clr_one_bit(reg, pin);
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}
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if (remap == PIN_REMAP_DEFAULT) return;
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switch (port)
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{
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case 0:
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return ;
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}
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// 置1
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// 置1
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reg_set_one_bit(reg, pin);
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return ;
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@ -11,6 +11,7 @@
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* Date Author Notes
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* 2010-05-17 swkyer first version
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* 2010-09-04 bernard move the beginning entry to 0x80200000
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* 2018-05-12 zhuangwei use -Ttext
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*/
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OUTPUT_ARCH(mips)
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@ -19,16 +20,13 @@ GROUP(-lgcc -lc)
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ENTRY(_start)
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SECTIONS
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{
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. = 0x80200000 ;
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.start :
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{
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*(.start);
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}
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. = 0x80000000 ;
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. = ALIGN(4);
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.text :
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{
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start = ABSOLUTE(.);
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*(.start);
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*(.text)
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*(.text.*)
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*(.rodata)
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@ -156,11 +156,6 @@
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/* RT-Thread online packages */
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/* system packages */
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/* RT-Thread GUI Engine */
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/* IoT - internet of things */
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/* tools packages */
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/* system packages */
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/* RT-Thread GUI Engine */
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/* peripheral libraries and drivers */
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/* miscellaneous packages */
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/* sample package */
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/* example package: hello */
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#define RT_USING_UART2
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@ -0,0 +1,85 @@
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#ifndef __OPENLOONGSON_SDRAM_CFG_H
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#define __OPENLOONGSON_SDRAM_CFG_H
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//#define SD_FREQ (6 * PLL_M) / (2 * SDRAM_PARAM_DIV_NUM)
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#define SD_FREQ (((APB_CLK / 4) * (PLL_MULT / CPU_DIV)) / SDRAM_PARAM_DIV_NUM)
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/* 颗粒行数 */
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#define ROW_1K 0x7
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#define ROW_2K 0x0
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#define ROW_4K 0x1
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#define ROW_8K 0x2
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#define ROW_16K 0x3
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/* 颗粒列数 */
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#define COL_256 0x7
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#define COL_512 0x0
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#define COL_1K 0x1
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#define COL_2K 0x2
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#define COL_4K 0x3
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/* 颗粒位宽 */
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#define WIDTH_8 0x0
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#define WIDTH_16 0x1
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#define WIDTH_32 0x2
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#define TRCD 3
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#define TCL 3
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#define TRP 3
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#define TRFC 8
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#define TRAS 6
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#define TREF 0x818
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#define TWR 2
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#define DEF_SEL 0x1
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#define DEF_SEL_N 0x0
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#define HANG_UP 0x1
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#define HANG_UP_N 0x0
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#define CFG_VALID 0x1
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#if 0
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// 白菜板8MB
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/*
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以型号为IS42S16400的SDRAM为例,
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物理参数为,
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容量:8MB
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位宽:16位
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列宽:8位,即2的8次方,即256
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行宽:12位,即2的12次方,即4K
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所以,
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颗粒的位宽=WIDTH_16
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颗粒的列数=COL_256
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颗粒的行数=ROW_4K
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再结合宏SD_PARA0和芯片手册中寄存器SD_CONFIG,相信一看就能明白
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替换宏SD_PARA0中的行宽、列宽和位宽
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*/
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#define SDRAM_WIDTH (WIDTH_16)
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#define SDRAM_COL (COL_256)
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#define SDRAM_ROW (ROW_4K)
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#else
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// 智龙32MByte
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#define SDRAM_WIDTH (WIDTH_16)
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#define SDRAM_COL (COL_512)
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#define SDRAM_ROW (ROW_8K)
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#endif
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#define SD_PARA0 (0x7f<<25 | \
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(TRAS << 21) | \
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(TRFC << 17) | (TRP << 14) | (TCL << 11) | \
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(TRCD << 8) | (SDRAM_WIDTH << 6) | (SDRAM_COL << 3) | \
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SDRAM_ROW)
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#define SD_PARA1 ((HANG_UP_N << 8) | (DEF_SEL_N << 7) | (TWR << 5) | (TREF >> 7))
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#define SD_PARA1_EN ((CFG_VALID << 9) | (HANG_UP_N << 8) | \
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(DEF_SEL_N << 7) | (TWR << 5) | (TREF >> 7))
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#endif
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