intel_8254_timer.cc revision 5642:102cf92b8ea9
1/*
2 * Copyright (c) 2004, 2005
3 * The Regents of The University of Michigan
4 * All Rights Reserved
5 *
6 * This code is part of the M5 simulator.
7 *
8 * Permission is granted to use, copy, create derivative works and
9 * redistribute this software and such derivative works for any
10 * purpose, so long as the copyright notice above, this grant of
11 * permission, and the disclaimer below appear in all copies made; and
12 * so long as the name of The University of Michigan is not used in
13 * any advertising or publicity pertaining to the use or distribution
14 * of this software without specific, written prior authorization.
15 *
16 * THIS SOFTWARE IS PROVIDED AS IS, WITHOUT REPRESENTATION FROM THE
17 * UNIVERSITY OF MICHIGAN AS TO ITS FITNESS FOR ANY PURPOSE, AND
18 * WITHOUT WARRANTY BY THE UNIVERSITY OF MICHIGAN OF ANY KIND, EITHER
19 * EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION THE IMPLIED
20 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 * PURPOSE. THE REGENTS OF THE UNIVERSITY OF MICHIGAN SHALL NOT BE
22 * LIABLE FOR ANY DAMAGES, INCLUDING DIRECT, SPECIAL, INDIRECT,
23 * INCIDENTAL, OR CONSEQUENTIAL DAMAGES, WITH RESPECT TO ANY CLAIM
24 * ARISING OUT OF OR IN CONNECTION WITH THE USE OF THE SOFTWARE, EVEN
25 * IF IT HAS BEEN OR IS HEREAFTER ADVISED OF THE POSSIBILITY OF SUCH
26 * DAMAGES.
27 *
28 * Authors: Ali G. Saidi
29 *          Andrew L. Schultz
30 *          Miguel J. Serrano
31 */
32
33#include "base/misc.hh"
34#include "dev/intel_8254_timer.hh"
35
36using namespace std;
37
38Intel8254Timer::Intel8254Timer(EventManager *em, const string &name,
39    Counter *counter0, Counter *counter1, Counter *counter2) :
40    EventManager(em), _name(name)
41{
42    counter[0] = counter0;
43    counter[1] = counter1;
44    counter[2] = counter2;
45}
46
47Intel8254Timer::Intel8254Timer(EventManager *em, const string &name) :
48    EventManager(em), _name(name)
49{
50    counter[0] = new Counter(this, name + ".counter0", 0);
51    counter[1] = new Counter(this, name + ".counter1", 1);
52    counter[2] = new Counter(this, name + ".counter2", 2);
53}
54
55void
56Intel8254Timer::writeControl(const CtrlReg data)
57{
58    int sel = data.sel;
59
60    if (sel == ReadBackCommand)
61       panic("PITimer Read-Back Command is not implemented.\n");
62
63    if (data.rw == LatchCommand)
64        counter[sel]->latchCount();
65    else {
66        counter[sel]->setRW(data.rw);
67        counter[sel]->setMode(data.mode);
68        counter[sel]->setBCD(data.bcd);
69    }
70}
71
72void
73Intel8254Timer::serialize(const string &base, ostream &os)
74{
75    // serialize the counters
76    counter[0]->serialize(base + ".counter0", os);
77    counter[1]->serialize(base + ".counter1", os);
78    counter[2]->serialize(base + ".counter2", os);
79}
80
81void
82Intel8254Timer::unserialize(const string &base, Checkpoint *cp,
83        const string &section)
84{
85    // unserialze the counters
86    counter[0]->unserialize(base + ".counter0", cp, section);
87    counter[1]->unserialize(base + ".counter1", cp, section);
88    counter[2]->unserialize(base + ".counter2", cp, section);
89}
90
91Intel8254Timer::Counter::Counter(Intel8254Timer *p,
92        const string &name, unsigned int _num)
93    : _name(name), num(_num), event(this), count(0),
94      latched_count(0), period(0), mode(0), output_high(false),
95      latch_on(false), read_byte(LSB), write_byte(LSB), parent(p)
96{
97
98}
99
100void
101Intel8254Timer::Counter::latchCount()
102{
103    // behave like a real latch
104    if(!latch_on) {
105        latch_on = true;
106        read_byte = LSB;
107        latched_count = count;
108    }
109}
110
111uint8_t
112Intel8254Timer::Counter::read()
113{
114    if (latch_on) {
115        switch (read_byte) {
116          case LSB:
117            read_byte = MSB;
118            return (uint8_t)latched_count;
119            break;
120          case MSB:
121            read_byte = LSB;
122            latch_on = false;
123            return latched_count >> 8;
124            break;
125          default:
126            panic("Shouldn't be here");
127        }
128    } else {
129        switch (read_byte) {
130          case LSB:
131            read_byte = MSB;
132            return (uint8_t)count;
133            break;
134          case MSB:
135            read_byte = LSB;
136            return count >> 8;
137            break;
138          default:
139            panic("Shouldn't be here");
140        }
141    }
142}
143
144void
145Intel8254Timer::Counter::write(const uint8_t data)
146{
147    switch (write_byte) {
148      case LSB:
149        count = (count & 0xFF00) | data;
150
151        if (event.scheduled())
152            parent->deschedule(event);
153        output_high = false;
154        write_byte = MSB;
155        break;
156
157      case MSB:
158        count = (count & 0x00FF) | (data << 8);
159        // In the RateGen or SquareWave modes, the timer wraps around and
160        // triggers on a value of 1, not 0.
161        if (mode == RateGen || mode == SquareWave)
162            period = count - 1;
163        else
164            period = count;
165
166        if (period > 0)
167            event.setTo(period);
168
169        write_byte = LSB;
170        break;
171    }
172}
173
174void
175Intel8254Timer::Counter::setRW(int rw_val)
176{
177    if (rw_val != TwoPhase)
178        panic("Only LSB/MSB read/write is implemented.\n");
179}
180
181void
182Intel8254Timer::Counter::setMode(int mode_val)
183{
184    if(mode_val != InitTc && mode_val != RateGen &&
185       mode_val != SquareWave)
186        panic("PIT mode %#x is not implemented: \n", mode_val);
187
188    mode = mode_val;
189}
190
191void
192Intel8254Timer::Counter::setBCD(int bcd_val)
193{
194    if (bcd_val)
195        panic("PITimer does not implement BCD counts.\n");
196}
197
198bool
199Intel8254Timer::Counter::outputHigh()
200{
201    return output_high;
202}
203
204void
205Intel8254Timer::Counter::serialize(const string &base, ostream &os)
206{
207    paramOut(os, base + ".count", count);
208    paramOut(os, base + ".latched_count", latched_count);
209    paramOut(os, base + ".period", period);
210    paramOut(os, base + ".mode", mode);
211    paramOut(os, base + ".output_high", output_high);
212    paramOut(os, base + ".latch_on", latch_on);
213    paramOut(os, base + ".read_byte", read_byte);
214    paramOut(os, base + ".write_byte", write_byte);
215
216    Tick event_tick = 0;
217    if (event.scheduled())
218        event_tick = event.when();
219    paramOut(os, base + ".event_tick", event_tick);
220}
221
222void
223Intel8254Timer::Counter::unserialize(const string &base, Checkpoint *cp,
224                                         const string &section)
225{
226    paramIn(cp, section, base + ".count", count);
227    paramIn(cp, section, base + ".latched_count", latched_count);
228    paramIn(cp, section, base + ".period", period);
229    paramIn(cp, section, base + ".mode", mode);
230    paramIn(cp, section, base + ".output_high", output_high);
231    paramIn(cp, section, base + ".latch_on", latch_on);
232    paramIn(cp, section, base + ".read_byte", read_byte);
233    paramIn(cp, section, base + ".write_byte", write_byte);
234
235    Tick event_tick;
236    paramIn(cp, section, base + ".event_tick", event_tick);
237    if (event_tick)
238        parent->schedule(event, event_tick);
239}
240
241Intel8254Timer::Counter::CounterEvent::CounterEvent(Counter* c_ptr)
242{
243    interval = (Tick)(Clock::Float::s / 1193180.0);
244    counter = c_ptr;
245}
246
247void
248Intel8254Timer::Counter::CounterEvent::process()
249{
250    switch (counter->mode) {
251      case InitTc:
252        counter->output_high = true;
253        break;
254      case RateGen:
255      case SquareWave:
256        setTo(counter->period);
257        break;
258      default:
259        panic("Unimplemented PITimer mode.\n");
260    }
261    counter->parent->counterInterrupt(counter->num);
262}
263
264void
265Intel8254Timer::Counter::CounterEvent::setTo(int clocks)
266{
267    if (clocks == 0)
268        panic("Timer can't be set to go off instantly.\n");
269    DPRINTF(Intel8254Timer, "Timer set to curTick + %d\n",
270            clocks * interval);
271    counter->parent->schedule(this, curTick + clocks * interval);
272}
273
274const char *
275Intel8254Timer::Counter::CounterEvent::description() const
276{
277    return "Intel 8254 Interval timer";
278}
279