void imx_gpc_post_resume(void);
void imx_gpc_mask_all(void);
void imx_gpc_restore_all(void);
-void imx_gpc_irq_mask(struct irq_data *d);
-void imx_gpc_irq_unmask(struct irq_data *d);
+void imx_gpc_hwirq_mask(unsigned int hwirq);
+void imx_gpc_hwirq_unmask(unsigned int hwirq);
void imx_anatop_init(void);
void imx_anatop_pre_suspend(void);
void imx_anatop_post_resume(void);
writel_relaxed(gpc_saved_imrs[i], reg_imr1 + i * 4);
}
-void imx_gpc_irq_unmask(struct irq_data *d)
+void imx_gpc_hwirq_unmask(unsigned int hwirq)
{
void __iomem *reg;
u32 val;
- /* Sanity check for SPI irq */
- if (d->hwirq < 32)
- return;
-
- reg = gpc_base + GPC_IMR1 + (d->hwirq / 32 - 1) * 4;
+ reg = gpc_base + GPC_IMR1 + (hwirq / 32 - 1) * 4;
val = readl_relaxed(reg);
- val &= ~(1 << d->hwirq % 32);
+ val &= ~(1 << hwirq % 32);
writel_relaxed(val, reg);
}
-void imx_gpc_irq_mask(struct irq_data *d)
+void imx_gpc_hwirq_mask(unsigned int hwirq)
{
void __iomem *reg;
u32 val;
+ reg = gpc_base + GPC_IMR1 + (hwirq / 32 - 1) * 4;
+ val = readl_relaxed(reg);
+ val |= 1 << (hwirq % 32);
+ writel_relaxed(val, reg);
+}
+
+static void imx_gpc_irq_unmask(struct irq_data *d)
+{
+ /* Sanity check for SPI irq */
+ if (d->hwirq < 32)
+ return;
+
+ imx_gpc_hwirq_unmask(d->hwirq);
+}
+
+static void imx_gpc_irq_mask(struct irq_data *d)
+{
/* Sanity check for SPI irq */
if (d->hwirq < 32)
return;
- reg = gpc_base + GPC_IMR1 + (d->hwirq / 32 - 1) * 4;
- val = readl_relaxed(reg);
- val |= 1 << (d->hwirq % 32);
- writel_relaxed(val, reg);
+ imx_gpc_hwirq_mask(d->hwirq);
}
void __init imx_gpc_init(void)
int imx6q_set_lpm(enum mxc_cpu_pwr_mode mode)
{
- struct irq_data *iomuxc_irq_data = irq_get_irq_data(32);
u32 val = readl_relaxed(ccm_base + CLPCR);
val &= ~BM_CLPCR_LPM;
* 3) Software should mask IRQ #32 right after CCM Low-Power mode
* is set (set bits 0-1 of CCM_CLPCR).
*/
- imx_gpc_irq_unmask(iomuxc_irq_data);
+ imx_gpc_hwirq_unmask(32);
writel_relaxed(val, ccm_base + CLPCR);
- imx_gpc_irq_mask(iomuxc_irq_data);
+ imx_gpc_hwirq_mask(32);
return 0;
}