2 * H8/300 16bit Timer driver
7 #include <linux/interrupt.h>
8 #include <linux/init.h>
9 #include <linux/clocksource.h>
10 #include <linux/clk.h>
13 #include <linux/of_address.h>
14 #include <linux/of_irq.h>
22 #define bset(b, a) iowrite8(ioread8(a) | (1 << (b)), (a))
23 #define bclr(b, a) iowrite8(ioread8(a) & ~(1 << (b)), (a))
26 struct clocksource cs;
27 unsigned long total_cycles;
28 void __iomem *mapbase;
29 void __iomem *mapcommon;
30 unsigned short cs_enabled;
36 static unsigned long timer16_get_counter(struct timer16_priv *p)
38 unsigned short v1, v2, v3;
41 o1 = ioread8(p->mapcommon + TISRC) & p->ovf;
43 /* Make sure the timer value is stable. Stolen from acpi_pm.c */
46 v1 = ioread16be(p->mapbase + TCNT);
47 v2 = ioread16be(p->mapbase + TCNT);
48 v3 = ioread16be(p->mapbase + TCNT);
49 o1 = ioread8(p->mapcommon + TISRC) & p->ovf;
50 } while (unlikely((o1 != o2) || (v1 > v2 && v1 < v3)
51 || (v2 > v3 && v2 < v1) || (v3 > v1 && v3 < v2)));
60 static irqreturn_t timer16_interrupt(int irq, void *dev_id)
62 struct timer16_priv *p = (struct timer16_priv *)dev_id;
64 bclr(p->ovf, p->mapcommon + TISRC);
65 p->total_cycles += 0x10000;
70 static inline struct timer16_priv *cs_to_priv(struct clocksource *cs)
72 return container_of(cs, struct timer16_priv, cs);
75 static cycle_t timer16_clocksource_read(struct clocksource *cs)
77 struct timer16_priv *p = cs_to_priv(cs);
78 unsigned long raw, value;
80 value = p->total_cycles;
81 raw = timer16_get_counter(p);
86 static int timer16_enable(struct clocksource *cs)
88 struct timer16_priv *p = cs_to_priv(cs);
90 WARN_ON(p->cs_enabled);
93 iowrite16be(0x0000, p->mapbase + TCNT);
94 iowrite8(0x83, p->mapbase + TCR);
95 bset(p->ovie, p->mapcommon + TISRC);
96 bset(p->enb, p->mapcommon + TSTR);
102 static void timer16_disable(struct clocksource *cs)
104 struct timer16_priv *p = cs_to_priv(cs);
106 WARN_ON(!p->cs_enabled);
108 bclr(p->ovie, p->mapcommon + TISRC);
109 bclr(p->enb, p->mapcommon + TSTR);
111 p->cs_enabled = false;
114 static struct timer16_priv timer16_priv = {
116 .name = "h8300_16timer",
118 .read = timer16_clocksource_read,
119 .enable = timer16_enable,
120 .disable = timer16_disable,
121 .mask = CLOCKSOURCE_MASK(sizeof(unsigned long) * 8),
122 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
129 static int __init h8300_16timer_init(struct device_node *node)
131 void __iomem *base[2];
136 clk = of_clk_get(node, 0);
138 pr_err("failed to get clock for clocksource\n");
143 base[REG_CH] = of_iomap(node, 0);
145 pr_err("failed to map registers for clocksource\n");
149 base[REG_COMM] = of_iomap(node, 1);
150 if (!base[REG_COMM]) {
151 pr_err("failed to map registers for clocksource\n");
156 irq = irq_of_parse_and_map(node, 0);
158 pr_err("failed to get irq for clockevent\n");
162 of_property_read_u32(node, "renesas,channel", &ch);
164 timer16_priv.mapbase = base[REG_CH];
165 timer16_priv.mapcommon = base[REG_COMM];
166 timer16_priv.enb = ch;
167 timer16_priv.ovf = ch;
168 timer16_priv.ovie = 4 + ch;
170 ret = request_irq(irq, timer16_interrupt,
171 IRQF_TIMER, timer16_priv.cs.name, &timer16_priv);
173 pr_err("failed to request irq %d of clocksource\n", irq);
177 clocksource_register_hz(&timer16_priv.cs,
178 clk_get_rate(clk) / 8);
182 iounmap(base[REG_COMM]);
184 iounmap(base[REG_CH]);
190 CLOCKSOURCE_OF_DECLARE(h8300_16bit, "renesas,16bit-timer",