提交 608074de 编写于 作者: B Bernard Xiong

update to interrupt description

上级 aaf01868
......@@ -27,7 +27,7 @@ extern void rt_hw_serial_init(void);
*/
/*@{*/
void rt_timer_handler(int vector)
void rt_timer_handler(int vector, void* param)
{
T0IR |= 0x01; /* clear interrupt flag */
rt_tick_increase();
......@@ -49,7 +49,7 @@ void rt_hw_board_init()
T0MCR = 0x03;
T0MR0 = (DATA_COUNT);
rt_hw_interrupt_install(TIMER0_INT, rt_timer_handler, RT_NULL);
rt_hw_interrupt_install(TIMER0_INT, rt_timer_handler, RT_NULL, "tick");
rt_hw_interrupt_umask(TIMER0_INT);
T0TCR = 0x01; //enable timer0 counter
......
......@@ -113,7 +113,7 @@ void rt_hw_uart_isr(struct rt_lpcserial* lpc_serial)
}
#ifdef RT_USING_UART1
void rt_hw_uart_isr_1(int irqno)
void rt_hw_uart_isr_1(int irqno, void* param)
{
/* get lpc serial device */
rt_hw_uart_isr(&serial1);
......@@ -121,7 +121,7 @@ void rt_hw_uart_isr_1(int irqno)
#endif
#ifdef RT_USING_UART2
void rt_hw_uart_isr_2(int irqno)
void rt_hw_uart_isr_2(int irqno, void* param)
{
/* get lpc serial device */
rt_hw_uart_isr(&serial2);
......@@ -153,13 +153,13 @@ static rt_err_t rt_serial_open(rt_device_t dev, rt_uint16_t oflag)
if (lpc_serial->irqno == UART0_INT)
{
#ifdef RT_USING_UART1
rt_hw_interrupt_install(lpc_serial->irqno, rt_hw_uart_isr_1, RT_NULL);
rt_hw_interrupt_install(lpc_serial->irqno, rt_hw_uart_isr_1, RT_NULL, "uart1");
#endif
}
else
{
#ifdef RT_USING_UART2
rt_hw_interrupt_install(lpc_serial->irqno, rt_hw_uart_isr_2, RT_NULL);
rt_hw_interrupt_install(lpc_serial->irqno, rt_hw_uart_isr_2, RT_NULL, "uart2");
#endif
}
......
......@@ -97,7 +97,7 @@ void rtthread_startup(void)
#elif __ICCARM__
rt_system_heap_init(__segment_end("HEAP"), (void*)0x00210000);
#else
rt_system_heap_init(&__bss_end, 0x00210000);
rt_system_heap_init(&__bss_end, (void*)0x00210000);
#endif
#endif
......
......@@ -33,7 +33,7 @@ static void rt_hw_board_led_init(void);
* This is the timer interrupt service routine.
* @param vector the irq number for timer
*/
void rt_hw_timer_handler(int vector)
void rt_hw_timer_handler(int vector, void* param)
{
if (AT91C_BASE_PITC->PITC_PISR & 0x01)
{
......@@ -168,7 +168,7 @@ void rt_hw_board_init()
AT91C_BASE_PITC->PITC_PIMR = (1 << 25) | (1 << 24) | PIV;
/* install timer handler */
rt_hw_interrupt_install(AT91C_ID_SYS, rt_hw_timer_handler, RT_NULL);
rt_hw_interrupt_install(AT91C_ID_SYS, rt_hw_timer_handler, RT_NULL, "tick");
AT91C_BASE_AIC->AIC_SMR[AT91C_ID_SYS] = 0;
rt_hw_interrupt_umask(AT91C_ID_SYS);
}
......
......@@ -120,7 +120,7 @@ rt_inline void sam7xether_reset_tx_desc(void)
/* interrupt service routing */
static void sam7xether_isr(int irq)
static void sam7xether_isr(int irq, void* param)
{
/* Variable definitions can be made now. */
volatile rt_uint32_t isr, rsr;
......@@ -377,7 +377,7 @@ rt_err_t sam7xether_init(rt_device_t dev)
AT91C_BASE_EMAC->EMAC_IER = AT91C_EMAC_RCOMP | AT91C_EMAC_TCOMP;
/* setup interrupt */
rt_hw_interrupt_install(AT91C_ID_EMAC, sam7xether_isr, RT_NULL);
rt_hw_interrupt_install(AT91C_ID_EMAC, sam7xether_isr, RT_NULL, "emac");
*(volatile unsigned int*)(0xFFFFF000 + AT91C_ID_EMAC * 4) = AT91C_AIC_SRCTYPE_INT_HIGH_LEVEL | 5;
// AT91C_AIC_SMR(AT91C_ID_EMAC) = AT91C_AIC_SRCTYPE_INT_HIGH_LEVEL | 5;
rt_hw_interrupt_umask(AT91C_ID_EMAC);
......
......@@ -76,27 +76,12 @@ struct rt_at91serial serial1;
struct rt_at91serial serial2;
#endif
static void rt_hw_serial_isr(int irqno)
static void rt_hw_serial_isr(int irqno, void* param)
{
rt_base_t level;
struct rt_device* device;
struct rt_at91serial* serial = RT_NULL;
struct rt_at91serial* serial = (struct rt_at91serial*)param;
#ifdef RT_USING_UART1
if (irqno == AT91C_ID_US0)
{
/* serial 1 */
serial = &serial1;
}
#endif
#ifdef RT_USING_UART2
if (irqno == AT91C_ID_US1)
{
/* serial 2 */
serial = &serial2;
}
#endif
RT_ASSERT(serial != RT_NULL);
/* get generic device object */
......@@ -202,7 +187,7 @@ static rt_err_t rt_serial_open(rt_device_t dev, rt_uint16_t oflag)
//serial->hw_base->US_IMR |= 1 << 0; /* umask RxReady interrupt */
/* install UART handler */
rt_hw_interrupt_install(serial->peripheral_id, rt_hw_serial_isr, RT_NULL);
rt_hw_interrupt_install(serial->peripheral_id, rt_hw_serial_isr, serial, "uart");
// SAM7X Datasheet 30.5.3:
// It is notrecommended to use the USART interrupt line in edge sensitive mode
//AT91C_AIC_SMR(serial->peripheral_id) = 5 | (0x01 << 5);
......
......@@ -12,11 +12,14 @@
* 2006-08-23 Bernard first version
*/
#include <rtthread.h>
#include <rthw.h>
#include "AT91SAM7X256.h"
#define MAX_HANDLERS 32
/* exception and interrupt handler table */
struct rt_irq_desc irq_desc[MAX_HANDLERS];
extern rt_uint32_t rt_interrupt_nest;
rt_uint32_t rt_interrupt_from_thread, rt_interrupt_to_thread;
......@@ -39,6 +42,13 @@ void rt_hw_interrupt_init()
{
rt_base_t index;
/* init exceptions table */
for(index=0; index < MAX_HANDLERS; index++)
{
irq_desc[index].handler = (rt_isr_handler_t)rt_hw_interrupt_handler;
irq_desc[index].param = RT_NULL;
}
for (index = 0; index < MAX_HANDLERS; index ++)
{
AT91C_BASE_AIC->AIC_SVR[index] = (rt_uint32_t)rt_hw_interrupt_handler;
......@@ -76,16 +86,28 @@ void rt_hw_interrupt_umask(int vector)
/**
* This function will install a interrupt service routine to a interrupt.
* @param vector the interrupt number
* @param new_handler the interrupt service routine to be installed
* @param old_handler the old interrupt service routine
* @param handler the interrupt service routine to be installed
* @param param the parameter for interrupt service routine
* @name unused.
*
* @return the old handler
*/
void rt_hw_interrupt_install(int vector, rt_isr_handler_t new_handler, rt_isr_handler_t *old_handler)
rt_isr_handler_t rt_hw_interrupt_install(int vector, rt_isr_handler_t handler,
void *param, char *name)
{
rt_isr_handler_t old_handler = RT_NULL;
if(vector >= 0 && vector < MAX_HANDLERS)
{
if (old_handler != RT_NULL) *old_handler = (rt_isr_handler_t)AT91C_BASE_AIC->AIC_SVR[vector];
if (new_handler != RT_NULL) AT91C_BASE_AIC->AIC_SVR[vector] = (rt_uint32_t)new_handler;
old_handler = irq_desc[vector].handler;
if (handler != RT_NULL)
{
irq_desc[vector].handler = (rt_isr_handler_t)handler;
irq_desc[vector].param = param;
}
}
return old_handler;
}
/*@}*/
......@@ -24,9 +24,14 @@
void rt_hw_trap_irq()
{
rt_isr_handler_t hander = (rt_isr_handler_t)AT91C_BASE_AIC->AIC_IVR;
int irqno;
extern struct rt_irq_desc irq_desc[];
hander(AT91C_BASE_AIC->AIC_ISR);
/* get interrupt number */
irqno = AT91C_BASE_AIC->AIC_ISR;
/* invoke isr with parameters */
irq_desc[irqno].handler(irqno, irq_desc[irqno].param);
/* end of interrupt */
AT91C_BASE_AIC->AIC_EOICR = 0;
......
......@@ -12,24 +12,25 @@
* 2008-12-11 XuXinming first version
*/
#include <rtthread.h>
#include <rthw.h>
#include "LPC24xx.h"
#define MAX_HANDLERS 32
/* exception and interrupt handler table */
struct rt_irq_desc irq_desc[MAX_HANDLERS];
extern rt_uint32_t rt_interrupt_nest;
/* exception and interrupt handler table */
rt_uint32_t rt_interrupt_from_thread, rt_interrupt_to_thread;
rt_uint32_t rt_thread_switch_interrupt_flag;
/**
* @addtogroup LPC2478
*/
/*@{*/
void rt_hw_interrupt_handle(int vector)
void rt_hw_interrupt_handler(int vector, void *param)
{
rt_kprintf("Unhandled interrupt %d occured!!!\n", vector);
}
......@@ -45,11 +46,15 @@ void rt_hw_interrupt_init()
VICVectAddr = 0;
VICIntSelect = 0;
for ( i = 0; i < 32; i++ )
/* init exceptions table */
for(i=0; i < MAX_HANDLERS; i++)
{
vect_addr = (rt_uint32_t *)(VIC_BASE_ADDR + 0x100 + i*4);
vect_cntl = (rt_uint32_t *)(VIC_BASE_ADDR + 0x200 + i*4);
*vect_addr = 0x0;
irq_desc[i].handler = (rt_isr_handler_t)rt_hw_interrupt_handler;
irq_desc[i].param = RT_NULL;
vect_addr = (rt_uint32_t *)(VIC_BASE_ADDR + 0x100 + i*4);
vect_cntl = (rt_uint32_t *)(VIC_BASE_ADDR + 0x200 + i*4);
*vect_addr = (rt_uint32_t)&irq_desc[i];
*vect_cntl = 0xF;
}
......@@ -70,20 +75,31 @@ void rt_hw_interrupt_umask(int vector)
VICIntEnable = (1 << vector);
}
void rt_hw_interrupt_install(int vector, rt_isr_handler_t new_handler, rt_isr_handler_t *old_handler)
/**
* This function will install a interrupt service routine to a interrupt.
* @param vector the interrupt number
* @param handler the interrupt service routine to be installed
* @param param the parameter for interrupt service routine
* @name unused.
*
* @return the old handler
*/
rt_isr_handler_t rt_hw_interrupt_install(int vector, rt_isr_handler_t handler,
void *param, char *name)
{
rt_uint32_t *vect_addr;
if(vector < MAX_HANDLERS)
{
/* find first un-assigned VIC address for the handler */
vect_addr = (rt_uint32_t *)(VIC_BASE_ADDR + 0x100 + vector*4);
rt_isr_handler_t old_handler = RT_NULL;
/* get old handler */
if (old_handler != RT_NULL) *old_handler = (rt_isr_handler_t)*vect_addr;
*vect_addr = (rt_uint32_t)new_handler; /* set interrupt vector */
if(vector >= 0 && vector < MAX_HANDLERS)
{
old_handler = irq_desc[vector].handler;
if (handler != RT_NULL)
{
irq_desc[vector].handler = (rt_isr_handler_t)handler;
irq_desc[vector].param = param;
}
}
return old_handler;
}
/*@}*/
......@@ -128,12 +128,15 @@ void rt_hw_trap_resv(struct rt_hw_register *regs)
extern rt_isr_handler_t isr_table[];
void rt_hw_trap_irq()
{
rt_isr_handler_t isr_func;
isr_func = (rt_isr_handler_t) VICVectAddr;
int irqno;
struct rt_irq_desc* irq;
extern struct rt_irq_desc irq_desc[];
/* fixme, how to get interrupt number */
isr_func(0);
irq = (struct rt_irq_desc*) VICVectAddr;
irqno = ((rt_uint32_t) irq - (rt_uint32_t) &irq_desc[0])/sizeof(struct rt_irq_desc);
/* invoke isr */
irq->handler(irqno, irq->param);
}
void rt_hw_trap_fiq()
......
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