xref: /openbmc/u-boot/arch/nios2/cpu/interrupts.c (revision 2d92ba84)
1 /*
2  * (C) Copyright 2000-2002
3  * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
4  *
5  * (C) Copyright 2004, Psyent Corporation <www.psyent.com>
6  * Scott McNutt <smcnutt@psyent.com>
7  *
8  * SPDX-License-Identifier:	GPL-2.0+
9  */
10 
11 
12 #include <nios2.h>
13 #include <nios2-io.h>
14 #include <asm/types.h>
15 #include <asm/io.h>
16 #include <asm/ptrace.h>
17 #include <common.h>
18 #include <command.h>
19 #include <watchdog.h>
20 #ifdef CONFIG_STATUS_LED
21 #include <status_led.h>
22 #endif
23 
24 #if defined(CONFIG_SYS_NIOS_TMRBASE) && !defined(CONFIG_SYS_NIOS_TMRIRQ)
25 #error CONFIG_SYS_NIOS_TMRIRQ not defined (see documentation)
26 #endif
27 
28 /****************************************************************************/
29 
30 struct	irq_action {
31 	interrupt_handler_t *handler;
32 	void *arg;
33 	int count;
34 };
35 
36 static struct irq_action vecs[32];
37 
38 /*************************************************************************/
39 volatile ulong timestamp = 0;
40 
41 void reset_timer (void)
42 {
43 	nios_timer_t *tmr =(nios_timer_t *)CONFIG_SYS_NIOS_TMRBASE;
44 
45 	/* From Embedded Peripherals Handbook:
46 	 *
47 	 * "When the hardware is configured with Writeable period
48 	 * disabled, writing to one of the period_n registers causes
49 	 * the counter to reset to the fixed Timeout Period specified
50 	 * at system generation time."
51 	 *
52 	 * Here we force a reload to prevent early timeouts from
53 	 * get_timer() when the interrupt period is greater than
54 	 * than 1 msec.
55 	 *
56 	 * Simply write to periodl with its own value to force an
57 	 * internal counter reload, THEN reset the timestamp.
58 	 */
59 	writel (readl (&tmr->periodl), &tmr->periodl);
60 	timestamp = 0;
61 
62 	/* From Embedded Peripherals Handbook:
63 	 *
64 	 * "Writing to one of the period_n registers stops the internal
65 	 * counter, except when the hardware is configured with Start/Stop
66 	 * control bits off. If Start/Stop control bits is off, writing
67 	 * either register does not stop the counter."
68 	 *
69 	 * In order to accomodate either configuration, the control
70 	 * register is re-written. If the counter is stopped, it will
71 	 * be restarted. If it is running, the write is essentially
72 	 * a nop.
73 	 */
74 	writel (NIOS_TIMER_ITO | NIOS_TIMER_CONT | NIOS_TIMER_START,
75 			&tmr->control);
76 
77 }
78 
79 ulong get_timer (ulong base)
80 {
81 	WATCHDOG_RESET ();
82 	return (timestamp - base);
83 }
84 
85 /*
86  * This function is derived from Blackfin code (read timebase as long long).
87  * On Nios2 it just returns the timer value.
88  */
89 unsigned long long get_ticks(void)
90 {
91 	return get_timer(0);
92 }
93 
94 /*
95  * This function is derived from Blackfin code.
96  * On Nios2 it returns the number of timer ticks per second.
97  */
98 ulong get_tbclk(void)
99 {
100 	ulong tbclk;
101 
102 	tbclk = CONFIG_SYS_HZ;
103 	return tbclk;
104 }
105 
106 /* The board must handle this interrupt if a timer is not
107  * provided.
108  */
109 #if defined(CONFIG_SYS_NIOS_TMRBASE)
110 void tmr_isr (void *arg)
111 {
112 	nios_timer_t *tmr = (nios_timer_t *)arg;
113 	/* Interrupt is cleared by writing anything to the
114 	 * status register.
115 	 */
116 	writel (0, &tmr->status);
117 	timestamp += CONFIG_SYS_NIOS_TMRMS;
118 #ifdef CONFIG_STATUS_LED
119 	status_led_tick(timestamp);
120 #endif
121 }
122 
123 static void tmr_init (void)
124 {
125 	nios_timer_t *tmr =(nios_timer_t *)CONFIG_SYS_NIOS_TMRBASE;
126 
127 	writel (0, &tmr->status);
128 	writel (0, &tmr->control);
129 	writel (NIOS_TIMER_STOP, &tmr->control);
130 
131 #if defined(CONFIG_SYS_NIOS_TMRCNT)
132 	writel (CONFIG_SYS_NIOS_TMRCNT & 0xffff, &tmr->periodl);
133 	writel ((CONFIG_SYS_NIOS_TMRCNT >> 16) & 0xffff, &tmr->periodh);
134 #endif
135 	writel (NIOS_TIMER_ITO | NIOS_TIMER_CONT | NIOS_TIMER_START,
136 			&tmr->control);
137 	irq_install_handler (CONFIG_SYS_NIOS_TMRIRQ, tmr_isr, (void *)tmr);
138 }
139 
140 #endif /* CONFIG_SYS_NIOS_TMRBASE */
141 
142 /*************************************************************************/
143 int disable_interrupts (void)
144 {
145 	int val = rdctl (CTL_STATUS);
146 	wrctl (CTL_STATUS, val & ~STATUS_IE);
147 	return (val & STATUS_IE);
148 }
149 
150 void enable_interrupts( void )
151 {
152 	int val = rdctl (CTL_STATUS);
153 	wrctl (CTL_STATUS, val | STATUS_IE);
154 }
155 
156 void external_interrupt (struct pt_regs *regs)
157 {
158 	unsigned irqs;
159 	struct irq_action *act;
160 
161 	/* Evaluate only irqs that are both enabled AND pending */
162 	irqs = rdctl (CTL_IENABLE) & rdctl (CTL_IPENDING);
163 	act = vecs;
164 
165 	/* Assume (as does the Nios2 HAL) that bit 0 is highest
166 	 * priority. NOTE: There is ALWAYS a handler assigned
167 	 * (the default if no other).
168 	 */
169 	while (irqs) {
170 		if (irqs & 1) {
171 			act->handler (act->arg);
172 			act->count++;
173 		}
174 		irqs >>=1;
175 		act++;
176 	}
177 }
178 
179 static void def_hdlr (void *arg)
180 {
181 	unsigned irqs = rdctl (CTL_IENABLE);
182 
183 	/* Disable the individual interrupt -- with gratuitous
184 	 * warning.
185 	 */
186 	irqs &= ~(1 << (int)arg);
187 	wrctl (CTL_IENABLE, irqs);
188 	printf ("WARNING: Disabling unhandled interrupt: %d\n",
189 			(int)arg);
190 }
191 
192 /*************************************************************************/
193 void irq_install_handler (int irq, interrupt_handler_t *hdlr, void *arg)
194 {
195 
196 	int flag;
197 	struct irq_action *act;
198 	unsigned ena = rdctl (CTL_IENABLE);
199 
200 	if ((irq < 0) || (irq > 31))
201 		return;
202 	act = &vecs[irq];
203 
204 	flag = disable_interrupts ();
205 	if (hdlr) {
206 		act->handler = hdlr;
207 		act->arg = arg;
208 		ena |= (1 << irq);		/* enable */
209 	} else {
210 		act->handler = def_hdlr;
211 		act->arg = (void *)irq;
212 		ena &= ~(1 << irq);		/* disable */
213 	}
214 	wrctl (CTL_IENABLE, ena);
215 	if (flag) enable_interrupts ();
216 }
217 
218 
219 int interrupt_init (void)
220 {
221 	int i;
222 
223 	/* Assign the default handler to all */
224 	for (i = 0; i < 32; i++) {
225 		vecs[i].handler = def_hdlr;
226 		vecs[i].arg = (void *)i;
227 		vecs[i].count = 0;
228 	}
229 
230 #if defined(CONFIG_SYS_NIOS_TMRBASE)
231 	tmr_init ();
232 #endif
233 
234 	enable_interrupts ();
235 	return (0);
236 }
237 
238 
239 /*************************************************************************/
240 #if defined(CONFIG_CMD_IRQ)
241 int do_irqinfo (cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
242 {
243 	int i;
244 	struct irq_action *act = vecs;
245 
246 	printf ("\nInterrupt-Information:\n\n");
247 	printf ("Nr  Routine   Arg       Count\n");
248 	printf ("-----------------------------\n");
249 
250 	for (i=0; i<32; i++) {
251 		if (act->handler != def_hdlr) {
252 			printf ("%02d  %08lx  %08lx  %d\n",
253 				i,
254 				(ulong)act->handler,
255 				(ulong)act->arg,
256 				act->count);
257 		}
258 		act++;
259 	}
260 	printf ("\n");
261 
262 	return (0);
263 }
264 #endif
265