/* * File : interrupt.c * This file is part of RT-Thread RTOS * COPYRIGHT (C) 2006 - 2010, RT-Thread Development Team * * The license and distribution terms for this file may be * found in the file LICENSE in this distribution or at * http://www.rt-thread.org/license/LICENSE * * Change Logs: * Date Author Notes * 2010-10-15 Bernard first version * 2013-03-29 aozima Modify the interrupt interface implementations. */ #include #include #include "soc3210.h" #define MAX_INTR 32 extern rt_uint32_t rt_interrupt_nest; rt_uint32_t rt_interrupt_from_thread, rt_interrupt_to_thread; rt_uint32_t rt_thread_switch_interrupt_flag; static struct rt_irq_desc irq_handle_table[MAX_INTR]; void rt_interrupt_dispatch(void *ptreg); void rt_hw_timer_handler(); /** * @addtogroup Loongson SoC3210 */ /*@{*/ static void rt_hw_interrupt_handler(int vector, void *param) { rt_kprintf("Unhandled interrupt %d occured!!!\n", vector); } /** * This function will initialize hardware interrupt */ void rt_hw_interrupt_init(void) { rt_int32_t idx; rt_memset(irq_handle_table, 0x00, sizeof(irq_handle_table)); for (idx = 0; idx < MAX_INTR; idx ++) { irq_handle_table[idx].handler = rt_hw_interrupt_handler; } /* init interrupt nest, and context in thread sp */ rt_interrupt_nest = 0; rt_interrupt_from_thread = 0; rt_interrupt_to_thread = 0; rt_thread_switch_interrupt_flag = 0; } /** * This function will mask a interrupt. * @param vector the interrupt number */ void rt_hw_interrupt_mask(int vector) { /* mask interrupt */ INT_EN &= ~(1 << vector); } /** * This function will un-mask a interrupt. * @param vector the interrupt number */ void rt_hw_interrupt_umask(int vector) { INT_EN |= (1 << 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 */ 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 < MAX_INTR) { old_handler = irq_handle_table[vector].handler; if (handler != RT_NULL) { #ifdef RT_USING_INTERRUPT_INFO rt_strncpy(irq_handle_table[vector].name, name, RT_NAME_MAX); #endif /* RT_USING_INTERRUPT_INFO */ irq_handle_table[vector].handler = handler; irq_handle_table[vector].param = param; } } return old_handler; } void rt_interrupt_dispatch(void *ptreg) { int irq; void *param; rt_isr_handler_t irq_func; static rt_uint32_t status = 0; rt_uint32_t c0_status; /* check os timer */ c0_status = read_c0_status(); if (c0_status & 0x8000) { rt_hw_timer_handler(); } if (c0_status & 0x0400) { /* the hardware interrupt */ status |= INT_ISR; if (!status) return; for (irq = MAX_INTR; irq > 0; --irq) { if ((status & (1 << irq))) { status &= ~(1 << irq); irq_func = irq_handle_table[irq].handler; param = irq_handle_table[irq].param; /* do interrupt */ (*irq_func)(irq, param); #ifdef RT_USING_INTERRUPT_INFO irq_handle_table[irq].counter++; #endif /* RT_USING_INTERRUPT_INFO */ /* ack interrupt */ INT_CLR = (1 << irq); } } } } /*@}*/