#ifndef __DIAG_GPIO_H #define __DIAG_GPIO_H #include #include #include #include #include #include #if LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0) #include #else #include #endif #if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0) #define sbh bcm947xx_sbh #define sbh_lock bcm947xx_sbh_lock #endif #define EXTIF_ADDR 0x1f000000 #define EXTIF_UART (EXTIF_ADDR + 0x00800000) #define GPIO_TYPE_NORMAL (0x0 << 24) #define GPIO_TYPE_EXTIF (0x1 << 24) #define GPIO_TYPE_MASK (0xf << 24) extern void *sbh; extern spinlock_t sbh_lock; #define gpio_in() sb_gpioin(sbh) #define gpio_out(mask, value) sb_gpioout(sbh, mask, ((value) & (mask)), GPIO_DRV_PRIORITY) #define gpio_outen(mask, value) sb_gpioouten(sbh, mask, value, GPIO_DRV_PRIORITY) #define gpio_control(mask, value) sb_gpiocontrol(sbh, mask, value, GPIO_DRV_PRIORITY) #define gpio_intmask(mask, value) sb_gpiointmask(sbh, mask, value, GPIO_DRV_PRIORITY) #define gpio_intpolarity(mask, value) sb_gpiointpolarity(sbh, mask, value, GPIO_DRV_PRIORITY) static void gpio_set_irqenable(int enabled, irqreturn_t (*handler)(int, void *, struct pt_regs *)) { unsigned int coreidx; unsigned long flags; chipcregs_t *cc; int irq; spin_lock_irqsave(sbh_lock, flags); coreidx = sb_coreidx(sbh); irq = sb_irq(sbh) + 2; if (enabled) request_irq(irq, handler, SA_SHIRQ | SA_SAMPLE_RANDOM, "gpio", handler); else free_irq(irq, handler); if ((cc = sb_setcore(sbh, SB_CC, 0))) { int intmask; intmask = readl(&cc->intmask); if (enabled) intmask |= CI_GPIO; else intmask &= ~CI_GPIO; writel(intmask, &cc->intmask); } sb_setcoreidx(sbh, coreidx); spin_unlock_irqrestore(sbh_lock, flags); } static inline void gpio_set_extif(int gpio, int value) { volatile u8 *addr = (volatile u8 *) KSEG1ADDR(EXTIF_UART) + (gpio & ~GPIO_TYPE_MASK); if (value) *addr = 0xFF; else *addr; } #endif