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[qemu/mini2440.git] / hw / sh_intc.c
blob99db51c6dfc70d7a9869e6c71c95fc0108b9ee0a
1 /*
2 * SuperH interrupt controller module
4 * Copyright (c) 2007 Magnus Damm
5 * Based on sh_timer.c and arm_timer.c by Paul Brook
6 * Copyright (c) 2005-2006 CodeSourcery.
8 * This code is licenced under the GPL.
9 */
11 #include <assert.h>
12 #include "sh_intc.h"
13 #include "hw.h"
14 #include "sh.h"
16 //#define DEBUG_INTC
17 //#define DEBUG_INTC_SOURCES
19 #define INTC_A7(x) ((x) & 0x1fffffff)
20 #define INTC_ARRAY(x) (sizeof(x) / sizeof(x[0]))
22 void sh_intc_toggle_source(struct intc_source *source,
23 int enable_adj, int assert_adj)
25 int enable_changed = 0;
26 int pending_changed = 0;
27 int old_pending;
29 if ((source->enable_count == source->enable_max) && (enable_adj == -1))
30 enable_changed = -1;
32 source->enable_count += enable_adj;
34 if (source->enable_count == source->enable_max)
35 enable_changed = 1;
37 source->asserted += assert_adj;
39 old_pending = source->pending;
40 source->pending = source->asserted &&
41 (source->enable_count == source->enable_max);
43 if (old_pending != source->pending)
44 pending_changed = 1;
46 if (pending_changed) {
47 if (source->pending) {
48 source->parent->pending++;
49 if (source->parent->pending == 1)
50 cpu_interrupt(first_cpu, CPU_INTERRUPT_HARD);
52 else {
53 source->parent->pending--;
54 if (source->parent->pending == 0)
55 cpu_reset_interrupt(first_cpu, CPU_INTERRUPT_HARD);
59 if (enable_changed || assert_adj || pending_changed) {
60 #ifdef DEBUG_INTC_SOURCES
61 printf("sh_intc: (%d/%d/%d/%d) interrupt source 0x%x %s%s%s\n",
62 source->parent->pending,
63 source->asserted,
64 source->enable_count,
65 source->enable_max,
66 source->vect,
67 source->asserted ? "asserted " :
68 assert_adj ? "deasserted" : "",
69 enable_changed == 1 ? "enabled " :
70 enable_changed == -1 ? "disabled " : "",
71 source->pending ? "pending" : "");
72 #endif
76 void sh_intc_set_irq (void *opaque, int n, int level)
78 struct intc_desc *desc = opaque;
79 struct intc_source *source = &(desc->sources[n]);
81 if (level && !source->asserted)
82 sh_intc_toggle_source(source, 0, 1);
83 else if (!level && source->asserted)
84 sh_intc_toggle_source(source, 0, -1);
87 int sh_intc_get_pending_vector(struct intc_desc *desc, int imask)
89 unsigned int i;
91 /* slow: use a linked lists of pending sources instead */
92 /* wrong: take interrupt priority into account (one list per priority) */
94 if (imask == 0x0f) {
95 return -1; /* FIXME, update code to include priority per source */
98 for (i = 0; i < desc->nr_sources; i++) {
99 struct intc_source *source = desc->sources + i;
101 if (source->pending) {
102 #ifdef DEBUG_INTC_SOURCES
103 printf("sh_intc: (%d) returning interrupt source 0x%x\n",
104 desc->pending, source->vect);
105 #endif
106 return source->vect;
110 assert(0);
113 #define INTC_MODE_NONE 0
114 #define INTC_MODE_DUAL_SET 1
115 #define INTC_MODE_DUAL_CLR 2
116 #define INTC_MODE_ENABLE_REG 3
117 #define INTC_MODE_MASK_REG 4
118 #define INTC_MODE_IS_PRIO 8
120 static unsigned int sh_intc_mode(unsigned long address,
121 unsigned long set_reg, unsigned long clr_reg)
123 if ((address != INTC_A7(set_reg)) &&
124 (address != INTC_A7(clr_reg)))
125 return INTC_MODE_NONE;
127 if (set_reg && clr_reg) {
128 if (address == INTC_A7(set_reg))
129 return INTC_MODE_DUAL_SET;
130 else
131 return INTC_MODE_DUAL_CLR;
134 if (set_reg)
135 return INTC_MODE_ENABLE_REG;
136 else
137 return INTC_MODE_MASK_REG;
140 static void sh_intc_locate(struct intc_desc *desc,
141 unsigned long address,
142 unsigned long **datap,
143 intc_enum **enums,
144 unsigned int *first,
145 unsigned int *width,
146 unsigned int *modep)
148 unsigned int i, mode;
150 /* this is slow but works for now */
152 if (desc->mask_regs) {
153 for (i = 0; i < desc->nr_mask_regs; i++) {
154 struct intc_mask_reg *mr = desc->mask_regs + i;
156 mode = sh_intc_mode(address, mr->set_reg, mr->clr_reg);
157 if (mode == INTC_MODE_NONE)
158 continue;
160 *modep = mode;
161 *datap = &mr->value;
162 *enums = mr->enum_ids;
163 *first = mr->reg_width - 1;
164 *width = 1;
165 return;
169 if (desc->prio_regs) {
170 for (i = 0; i < desc->nr_prio_regs; i++) {
171 struct intc_prio_reg *pr = desc->prio_regs + i;
173 mode = sh_intc_mode(address, pr->set_reg, pr->clr_reg);
174 if (mode == INTC_MODE_NONE)
175 continue;
177 *modep = mode | INTC_MODE_IS_PRIO;
178 *datap = &pr->value;
179 *enums = pr->enum_ids;
180 *first = (pr->reg_width / pr->field_width) - 1;
181 *width = pr->field_width;
182 return;
186 assert(0);
189 static void sh_intc_toggle_mask(struct intc_desc *desc, intc_enum id,
190 int enable, int is_group)
192 struct intc_source *source = desc->sources + id;
194 if (!id)
195 return;
197 if (!source->next_enum_id && (!source->enable_max || !source->vect)) {
198 #ifdef DEBUG_INTC_SOURCES
199 printf("sh_intc: reserved interrupt source %d modified\n", id);
200 #endif
201 return;
204 if (source->vect)
205 sh_intc_toggle_source(source, enable ? 1 : -1, 0);
207 #ifdef DEBUG_INTC
208 else {
209 printf("setting interrupt group %d to %d\n", id, !!enable);
211 #endif
213 if ((is_group || !source->vect) && source->next_enum_id) {
214 sh_intc_toggle_mask(desc, source->next_enum_id, enable, 1);
217 #ifdef DEBUG_INTC
218 if (!source->vect) {
219 printf("setting interrupt group %d to %d - done\n", id, !!enable);
221 #endif
224 static uint32_t sh_intc_read(void *opaque, target_phys_addr_t offset)
226 struct intc_desc *desc = opaque;
227 intc_enum *enum_ids = NULL;
228 unsigned int first = 0;
229 unsigned int width = 0;
230 unsigned int mode = 0;
231 unsigned long *valuep;
233 #ifdef DEBUG_INTC
234 printf("sh_intc_read 0x%lx\n", (unsigned long) offset);
235 #endif
237 sh_intc_locate(desc, (unsigned long)offset, &valuep,
238 &enum_ids, &first, &width, &mode);
239 return *valuep;
242 static void sh_intc_write(void *opaque, target_phys_addr_t offset,
243 uint32_t value)
245 struct intc_desc *desc = opaque;
246 intc_enum *enum_ids = NULL;
247 unsigned int first = 0;
248 unsigned int width = 0;
249 unsigned int mode = 0;
250 unsigned int k;
251 unsigned long *valuep;
252 unsigned long mask;
254 #ifdef DEBUG_INTC
255 printf("sh_intc_write 0x%lx 0x%08x\n", (unsigned long) offset, value);
256 #endif
258 sh_intc_locate(desc, (unsigned long)offset, &valuep,
259 &enum_ids, &first, &width, &mode);
261 switch (mode) {
262 case INTC_MODE_ENABLE_REG | INTC_MODE_IS_PRIO: break;
263 case INTC_MODE_DUAL_SET: value |= *valuep; break;
264 case INTC_MODE_DUAL_CLR: value = *valuep & ~value; break;
265 default: assert(0);
268 for (k = 0; k <= first; k++) {
269 mask = ((1 << width) - 1) << ((first - k) * width);
271 if ((*valuep & mask) == (value & mask))
272 continue;
273 #if 0
274 printf("k = %d, first = %d, enum = %d, mask = 0x%08x\n",
275 k, first, enum_ids[k], (unsigned int)mask);
276 #endif
277 sh_intc_toggle_mask(desc, enum_ids[k], value & mask, 0);
280 *valuep = value;
282 #ifdef DEBUG_INTC
283 printf("sh_intc_write 0x%lx -> 0x%08x\n", (unsigned long) offset, value);
284 #endif
287 static CPUReadMemoryFunc *sh_intc_readfn[] = {
288 sh_intc_read,
289 sh_intc_read,
290 sh_intc_read
293 static CPUWriteMemoryFunc *sh_intc_writefn[] = {
294 sh_intc_write,
295 sh_intc_write,
296 sh_intc_write
299 struct intc_source *sh_intc_source(struct intc_desc *desc, intc_enum id)
301 if (id)
302 return desc->sources + id;
304 return NULL;
307 static void sh_intc_register(struct intc_desc *desc,
308 unsigned long address)
310 if (address)
311 cpu_register_physical_memory_offset(INTC_A7(address), 4,
312 desc->iomemtype, INTC_A7(address));
315 static void sh_intc_register_source(struct intc_desc *desc,
316 intc_enum source,
317 struct intc_group *groups,
318 int nr_groups)
320 unsigned int i, k;
321 struct intc_source *s;
323 if (desc->mask_regs) {
324 for (i = 0; i < desc->nr_mask_regs; i++) {
325 struct intc_mask_reg *mr = desc->mask_regs + i;
327 for (k = 0; k < INTC_ARRAY(mr->enum_ids); k++) {
328 if (mr->enum_ids[k] != source)
329 continue;
331 s = sh_intc_source(desc, mr->enum_ids[k]);
332 if (s)
333 s->enable_max++;
338 if (desc->prio_regs) {
339 for (i = 0; i < desc->nr_prio_regs; i++) {
340 struct intc_prio_reg *pr = desc->prio_regs + i;
342 for (k = 0; k < INTC_ARRAY(pr->enum_ids); k++) {
343 if (pr->enum_ids[k] != source)
344 continue;
346 s = sh_intc_source(desc, pr->enum_ids[k]);
347 if (s)
348 s->enable_max++;
353 if (groups) {
354 for (i = 0; i < nr_groups; i++) {
355 struct intc_group *gr = groups + i;
357 for (k = 0; k < INTC_ARRAY(gr->enum_ids); k++) {
358 if (gr->enum_ids[k] != source)
359 continue;
361 s = sh_intc_source(desc, gr->enum_ids[k]);
362 if (s)
363 s->enable_max++;
370 void sh_intc_register_sources(struct intc_desc *desc,
371 struct intc_vect *vectors,
372 int nr_vectors,
373 struct intc_group *groups,
374 int nr_groups)
376 unsigned int i, k;
377 struct intc_source *s;
379 for (i = 0; i < nr_vectors; i++) {
380 struct intc_vect *vect = vectors + i;
382 sh_intc_register_source(desc, vect->enum_id, groups, nr_groups);
383 s = sh_intc_source(desc, vect->enum_id);
384 if (s)
385 s->vect = vect->vect;
387 #ifdef DEBUG_INTC_SOURCES
388 printf("sh_intc: registered source %d -> 0x%04x (%d/%d)\n",
389 vect->enum_id, s->vect, s->enable_count, s->enable_max);
390 #endif
393 if (groups) {
394 for (i = 0; i < nr_groups; i++) {
395 struct intc_group *gr = groups + i;
397 s = sh_intc_source(desc, gr->enum_id);
398 s->next_enum_id = gr->enum_ids[0];
400 for (k = 1; k < INTC_ARRAY(gr->enum_ids); k++) {
401 if (!gr->enum_ids[k])
402 continue;
404 s = sh_intc_source(desc, gr->enum_ids[k - 1]);
405 s->next_enum_id = gr->enum_ids[k];
408 #ifdef DEBUG_INTC_SOURCES
409 printf("sh_intc: registered group %d (%d/%d)\n",
410 gr->enum_id, s->enable_count, s->enable_max);
411 #endif
416 int sh_intc_init(struct intc_desc *desc,
417 int nr_sources,
418 struct intc_mask_reg *mask_regs,
419 int nr_mask_regs,
420 struct intc_prio_reg *prio_regs,
421 int nr_prio_regs)
423 unsigned int i;
425 desc->pending = 0;
426 desc->nr_sources = nr_sources;
427 desc->mask_regs = mask_regs;
428 desc->nr_mask_regs = nr_mask_regs;
429 desc->prio_regs = prio_regs;
430 desc->nr_prio_regs = nr_prio_regs;
432 i = sizeof(struct intc_source) * nr_sources;
433 desc->sources = malloc(i);
434 if (!desc->sources)
435 return -1;
437 memset(desc->sources, 0, i);
438 for (i = 0; i < desc->nr_sources; i++) {
439 struct intc_source *source = desc->sources + i;
441 source->parent = desc;
444 desc->irqs = qemu_allocate_irqs(sh_intc_set_irq, desc, nr_sources);
446 desc->iomemtype = cpu_register_io_memory(0, sh_intc_readfn,
447 sh_intc_writefn, desc);
448 if (desc->mask_regs) {
449 for (i = 0; i < desc->nr_mask_regs; i++) {
450 struct intc_mask_reg *mr = desc->mask_regs + i;
452 sh_intc_register(desc, mr->set_reg);
453 sh_intc_register(desc, mr->clr_reg);
457 if (desc->prio_regs) {
458 for (i = 0; i < desc->nr_prio_regs; i++) {
459 struct intc_prio_reg *pr = desc->prio_regs + i;
461 sh_intc_register(desc, pr->set_reg);
462 sh_intc_register(desc, pr->clr_reg);
466 return 0;