xref: /qemu/hw/core/clock.c (revision 06b40d250ecfa1633209c2e431a7a38acfd03a98)
1 /*
2  * Hardware Clocks
3  *
4  * Copyright GreenSocs 2016-2020
5  *
6  * Authors:
7  *  Frederic Konrad
8  *  Damien Hedde
9  *
10  * This work is licensed under the terms of the GNU GPL, version 2 or later.
11  * See the COPYING file in the top-level directory.
12  */
13 
14 #include "qemu/osdep.h"
15 #include "qemu/cutils.h"
16 #include "qapi/visitor.h"
17 #include "system/qtest.h"
18 #include "hw/clock.h"
19 #include "trace.h"
20 
21 #define CLOCK_PATH(_clk) (_clk->canonical_path)
22 
clock_setup_canonical_path(Clock * clk)23 void clock_setup_canonical_path(Clock *clk)
24 {
25     g_free(clk->canonical_path);
26     clk->canonical_path = object_get_canonical_path(OBJECT(clk));
27 }
28 
clock_new(Object * parent,const char * name)29 Clock *clock_new(Object *parent, const char *name)
30 {
31     Object *obj;
32     Clock *clk;
33 
34     obj = object_new(TYPE_CLOCK);
35     object_property_add_child(parent, name, obj);
36     object_unref(obj);
37 
38     clk = CLOCK(obj);
39     clock_setup_canonical_path(clk);
40 
41     return clk;
42 }
43 
clock_set_callback(Clock * clk,ClockCallback * cb,void * opaque,unsigned int events)44 void clock_set_callback(Clock *clk, ClockCallback *cb, void *opaque,
45                         unsigned int events)
46 {
47     assert(OBJECT(clk)->parent);
48     clk->callback = cb;
49     clk->callback_opaque = opaque;
50     clk->callback_events = events;
51 }
52 
clock_set(Clock * clk,uint64_t period)53 bool clock_set(Clock *clk, uint64_t period)
54 {
55     if (clk->period == period) {
56         return false;
57     }
58     trace_clock_set(CLOCK_PATH(clk), CLOCK_PERIOD_TO_HZ(clk->period),
59                     CLOCK_PERIOD_TO_HZ(period));
60     clk->period = period;
61 
62     return true;
63 }
64 
clock_get_child_period(Clock * clk)65 static uint64_t clock_get_child_period(Clock *clk)
66 {
67     /*
68      * Return the period to be used for child clocks, which is the parent
69      * clock period adjusted for multiplier and divider effects.
70      */
71     return muldiv64(clk->period, clk->multiplier, clk->divider);
72 }
73 
clock_call_callback(Clock * clk,ClockEvent event)74 static void clock_call_callback(Clock *clk, ClockEvent event)
75 {
76     /*
77      * Call the Clock's callback for this event, if it has one and
78      * is interested in this event.
79      */
80     if (clk->callback && (clk->callback_events & event)) {
81         clk->callback(clk->callback_opaque, event);
82     }
83 }
84 
clock_propagate_period(Clock * clk,bool call_callbacks)85 static void clock_propagate_period(Clock *clk, bool call_callbacks)
86 {
87     Clock *child;
88     uint64_t child_period = clock_get_child_period(clk);
89 
90     QLIST_FOREACH(child, &clk->children, sibling) {
91         if (child->period != child_period) {
92             if (call_callbacks) {
93                 clock_call_callback(child, ClockPreUpdate);
94             }
95             child->period = child_period;
96             trace_clock_update(CLOCK_PATH(child), CLOCK_PATH(clk),
97                                CLOCK_PERIOD_TO_HZ(child->period),
98                                call_callbacks);
99             if (call_callbacks) {
100                 clock_call_callback(child, ClockUpdate);
101             }
102             clock_propagate_period(child, call_callbacks);
103         }
104     }
105 }
106 
clock_propagate(Clock * clk)107 void clock_propagate(Clock *clk)
108 {
109     trace_clock_propagate(CLOCK_PATH(clk));
110     clock_propagate_period(clk, true);
111 }
112 
clock_set_source(Clock * clk,Clock * src)113 void clock_set_source(Clock *clk, Clock *src)
114 {
115     /* changing clock source is not supported */
116     assert(!clk->source);
117 
118     trace_clock_set_source(CLOCK_PATH(clk), CLOCK_PATH(src));
119 
120     clk->period = clock_get_child_period(src);
121     QLIST_INSERT_HEAD(&src->children, clk, sibling);
122     clk->source = src;
123     clock_propagate_period(clk, false);
124 }
125 
clock_disconnect(Clock * clk)126 static void clock_disconnect(Clock *clk)
127 {
128     if (clk->source == NULL) {
129         return;
130     }
131 
132     trace_clock_disconnect(CLOCK_PATH(clk));
133 
134     clk->source = NULL;
135     QLIST_REMOVE(clk, sibling);
136 }
137 
clock_display_freq(Clock * clk)138 char *clock_display_freq(Clock *clk)
139 {
140     return freq_to_str(clock_get_hz(clk));
141 }
142 
clock_set_mul_div(Clock * clk,uint32_t multiplier,uint32_t divider)143 bool clock_set_mul_div(Clock *clk, uint32_t multiplier, uint32_t divider)
144 {
145     assert(divider != 0);
146 
147     if (clk->multiplier == multiplier && clk->divider == divider) {
148         return false;
149     }
150 
151     trace_clock_set_mul_div(CLOCK_PATH(clk), clk->multiplier, multiplier,
152                             clk->divider, divider);
153     clk->multiplier = multiplier;
154     clk->divider = divider;
155 
156     return true;
157 }
158 
clock_period_prop_get(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)159 static void clock_period_prop_get(Object *obj, Visitor *v, const char *name,
160                                 void *opaque, Error **errp)
161 {
162     Clock *clk = CLOCK(obj);
163     uint64_t period = clock_get(clk);
164     visit_type_uint64(v, name, &period, errp);
165 }
166 
clock_unparent(Object * obj)167 static void clock_unparent(Object *obj)
168 {
169     /*
170      * Callback are registered by the parent, which might die anytime after
171      * it's unparented the children.  Avoid having a callback to a deleted
172      * object in case the clock is still referenced somewhere else (eg: by
173      * a clock output).
174      */
175     clock_set_callback(CLOCK(obj), NULL, NULL, 0);
176 }
177 
clock_initfn(Object * obj)178 static void clock_initfn(Object *obj)
179 {
180     Clock *clk = CLOCK(obj);
181 
182     clk->multiplier = 1;
183     clk->divider = 1;
184 
185     QLIST_INIT(&clk->children);
186 
187     if (qtest_enabled()) {
188         object_property_add(obj, "qtest-clock-period", "uint64",
189                             clock_period_prop_get, NULL, NULL, NULL);
190     }
191 }
192 
clock_finalizefn(Object * obj)193 static void clock_finalizefn(Object *obj)
194 {
195     Clock *clk = CLOCK(obj);
196     Clock *child, *next;
197 
198     /* clear our list of children */
199     QLIST_FOREACH_SAFE(child, &clk->children, sibling, next) {
200         clock_disconnect(child);
201     }
202 
203     /* remove us from source's children list */
204     clock_disconnect(clk);
205 
206     g_free(clk->canonical_path);
207 }
208 
clock_class_init(ObjectClass * klass,const void * data)209 static void clock_class_init(ObjectClass *klass, const void *data)
210 {
211     klass->unparent = clock_unparent;
212 }
213 
214 static const TypeInfo clock_info = {
215     .name              = TYPE_CLOCK,
216     .parent            = TYPE_OBJECT,
217     .instance_size     = sizeof(Clock),
218     .instance_init     = clock_initfn,
219     .class_init        = clock_class_init,
220     .instance_finalize = clock_finalizefn,
221 };
222 
clock_register_types(void)223 static void clock_register_types(void)
224 {
225     type_register_static(&clock_info);
226 }
227 
228 type_init(clock_register_types)
229