136 lines
3.4 KiB
C
136 lines
3.4 KiB
C
/*
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* linux/arch/m32r/platforms/oaks32r/setup.c
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*
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* Setup routines for OAKS32R Board
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*
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* Copyright (c) 2002-2005 Hiroyuki Kondo, Hirokazu Takata,
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* Hitoshi Yamamoto, Mamoru Sakugawa
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*/
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#include <linux/irq.h>
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#include <linux/kernel.h>
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#include <linux/init.h>
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#include <asm/system.h>
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#include <asm/m32r.h>
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#include <asm/io.h>
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#define irq2port(x) (M32R_ICU_CR1_PORTL + ((x - 1) * sizeof(unsigned long)))
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icu_data_t icu_data[NR_IRQS];
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static void disable_oaks32r_irq(unsigned int irq)
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{
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unsigned long port, data;
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port = irq2port(irq);
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data = icu_data[irq].icucr|M32R_ICUCR_ILEVEL7;
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outl(data, port);
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}
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static void enable_oaks32r_irq(unsigned int irq)
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{
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unsigned long port, data;
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port = irq2port(irq);
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data = icu_data[irq].icucr|M32R_ICUCR_IEN|M32R_ICUCR_ILEVEL6;
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outl(data, port);
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}
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static void mask_and_ack_mappi(unsigned int irq)
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{
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disable_oaks32r_irq(irq);
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}
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static void end_oaks32r_irq(unsigned int irq)
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{
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enable_oaks32r_irq(irq);
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}
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static unsigned int startup_oaks32r_irq(unsigned int irq)
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{
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enable_oaks32r_irq(irq);
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return (0);
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}
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static void shutdown_oaks32r_irq(unsigned int irq)
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{
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unsigned long port;
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port = irq2port(irq);
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outl(M32R_ICUCR_ILEVEL7, port);
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}
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static struct hw_interrupt_type oaks32r_irq_type =
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{
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.typename = "OAKS32R-IRQ",
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.startup = startup_oaks32r_irq,
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.shutdown = shutdown_oaks32r_irq,
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.enable = enable_oaks32r_irq,
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.disable = disable_oaks32r_irq,
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.ack = mask_and_ack_mappi,
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.end = end_oaks32r_irq
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};
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void __init init_IRQ(void)
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{
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static int once = 0;
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if (once)
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return;
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else
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once++;
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#ifdef CONFIG_NE2000
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/* INT3 : LAN controller (RTL8019AS) */
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irq_desc[M32R_IRQ_INT3].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_INT3].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_INT3].action = 0;
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irq_desc[M32R_IRQ_INT3].depth = 1;
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icu_data[M32R_IRQ_INT3].icucr = M32R_ICUCR_IEN|M32R_ICUCR_ISMOD10;
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disable_oaks32r_irq(M32R_IRQ_INT3);
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#endif /* CONFIG_M32R_NE2000 */
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/* MFT2 : system timer */
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irq_desc[M32R_IRQ_MFT2].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_MFT2].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_MFT2].action = 0;
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irq_desc[M32R_IRQ_MFT2].depth = 1;
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icu_data[M32R_IRQ_MFT2].icucr = M32R_ICUCR_IEN;
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disable_oaks32r_irq(M32R_IRQ_MFT2);
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#ifdef CONFIG_SERIAL_M32R_SIO
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/* SIO0_R : uart receive data */
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irq_desc[M32R_IRQ_SIO0_R].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_SIO0_R].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_SIO0_R].action = 0;
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irq_desc[M32R_IRQ_SIO0_R].depth = 1;
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icu_data[M32R_IRQ_SIO0_R].icucr = 0;
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disable_oaks32r_irq(M32R_IRQ_SIO0_R);
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/* SIO0_S : uart send data */
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irq_desc[M32R_IRQ_SIO0_S].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_SIO0_S].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_SIO0_S].action = 0;
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irq_desc[M32R_IRQ_SIO0_S].depth = 1;
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icu_data[M32R_IRQ_SIO0_S].icucr = 0;
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disable_oaks32r_irq(M32R_IRQ_SIO0_S);
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/* SIO1_R : uart receive data */
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irq_desc[M32R_IRQ_SIO1_R].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_SIO1_R].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_SIO1_R].action = 0;
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irq_desc[M32R_IRQ_SIO1_R].depth = 1;
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icu_data[M32R_IRQ_SIO1_R].icucr = 0;
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disable_oaks32r_irq(M32R_IRQ_SIO1_R);
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/* SIO1_S : uart send data */
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irq_desc[M32R_IRQ_SIO1_S].status = IRQ_DISABLED;
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irq_desc[M32R_IRQ_SIO1_S].chip = &oaks32r_irq_type;
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irq_desc[M32R_IRQ_SIO1_S].action = 0;
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irq_desc[M32R_IRQ_SIO1_S].depth = 1;
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icu_data[M32R_IRQ_SIO1_S].icucr = 0;
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disable_oaks32r_irq(M32R_IRQ_SIO1_S);
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#endif /* CONFIG_SERIAL_M32R_SIO */
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}
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