xref: /openbmc/qemu/hw/sensor/tmp105.c (revision f15f7273ea55472d5904c53566c82369d81214c1)
1  /*
2   * Texas Instruments TMP105 temperature sensor.
3   *
4   * Copyright (C) 2008 Nokia Corporation
5   * Written by Andrzej Zaborowski <andrew@openedhand.com>
6   *
7   * This program is free software; you can redistribute it and/or
8   * modify it under the terms of the GNU General Public License as
9   * published by the Free Software Foundation; either version 2 or
10   * (at your option) version 3 of the License.
11   *
12   * This program is distributed in the hope that it will be useful,
13   * but WITHOUT ANY WARRANTY; without even the implied warranty of
14   * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15   * GNU General Public License for more details.
16   *
17   * You should have received a copy of the GNU General Public License along
18   * with this program; if not, see <http://www.gnu.org/licenses/>.
19   */
20  
21  #include "qemu/osdep.h"
22  #include "hw/i2c/i2c.h"
23  #include "hw/irq.h"
24  #include "migration/vmstate.h"
25  #include "hw/sensor/tmp105.h"
26  #include "qapi/error.h"
27  #include "qapi/visitor.h"
28  #include "qemu/module.h"
29  #include "hw/registerfields.h"
30  #include "trace.h"
31  
32  FIELD(CONFIG, SHUTDOWN_MODE,        0, 1)
33  FIELD(CONFIG, THERMOSTAT_MODE,      1, 1)
34  FIELD(CONFIG, POLARITY,             2, 1)
35  FIELD(CONFIG, FAULT_QUEUE,          3, 2)
36  FIELD(CONFIG, CONVERTER_RESOLUTION, 5, 2)
37  FIELD(CONFIG, ONE_SHOT,             7, 1)
38  
tmp105_interrupt_update(TMP105State * s)39  static void tmp105_interrupt_update(TMP105State *s)
40  {
41      qemu_set_irq(s->pin, s->alarm ^ FIELD_EX8(~s->config, CONFIG, POLARITY));
42  }
43  
tmp105_alarm_update(TMP105State * s,bool one_shot)44  static void tmp105_alarm_update(TMP105State *s, bool one_shot)
45  {
46      if (FIELD_EX8(s->config, CONFIG, SHUTDOWN_MODE) && !one_shot) {
47          return;
48      }
49  
50      if (FIELD_EX8(s->config, CONFIG, THERMOSTAT_MODE)) {
51          /*
52           * TM == 1 : Interrupt mode. We signal Alert when the
53           * temperature rises above T_high, and expect the guest to clear
54           * it (eg by reading a device register).
55           */
56          if (s->detect_falling) {
57              if (s->temperature < s->limit[0]) {
58                  s->alarm = 1;
59                  s->detect_falling = false;
60              }
61          } else {
62              if (s->temperature >= s->limit[1]) {
63                  s->alarm = 1;
64                  s->detect_falling = true;
65              }
66          }
67      } else {
68          /*
69           * TM == 0 : Comparator mode. We signal Alert when the temperature
70           * rises above T_high, and stop signalling it when the temperature
71           * falls below T_low.
72           */
73          if (s->detect_falling) {
74              if (s->temperature < s->limit[0]) {
75                  s->alarm = 0;
76                  s->detect_falling = false;
77              }
78          } else {
79              if (s->temperature >= s->limit[1]) {
80                  s->alarm = 1;
81                  s->detect_falling = true;
82              }
83          }
84      }
85  
86      tmp105_interrupt_update(s);
87  }
88  
tmp105_get_temperature(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)89  static void tmp105_get_temperature(Object *obj, Visitor *v, const char *name,
90                                     void *opaque, Error **errp)
91  {
92      TMP105State *s = TMP105(obj);
93      int64_t value = s->temperature * 1000 / 256;
94  
95      visit_type_int(v, name, &value, errp);
96  }
97  
98  /*
99   * Units are 0.001 centigrades relative to 0 C.  s->temperature is 8.8
100   * fixed point, so units are 1/256 centigrades.  A simple ratio will do.
101   */
tmp105_set_temperature(Object * obj,Visitor * v,const char * name,void * opaque,Error ** errp)102  static void tmp105_set_temperature(Object *obj, Visitor *v, const char *name,
103                                     void *opaque, Error **errp)
104  {
105      TMP105State *s = TMP105(obj);
106      int64_t temp;
107  
108      if (!visit_type_int(v, name, &temp, errp)) {
109          return;
110      }
111      if (temp >= 128000 || temp < -128000) {
112          error_setg(errp, "value %" PRId64 ".%03" PRIu64 " C is out of range",
113                     temp / 1000, temp % 1000);
114          return;
115      }
116  
117      s->temperature = (int16_t) (temp * 256 / 1000);
118  
119      tmp105_alarm_update(s, false);
120  }
121  
122  static const int tmp105_faultq[4] = { 1, 2, 4, 6 };
123  
tmp105_read(TMP105State * s)124  static void tmp105_read(TMP105State *s)
125  {
126      s->len = 0;
127  
128      if (FIELD_EX8(s->config, CONFIG, THERMOSTAT_MODE)) {
129          s->alarm = 0;
130          tmp105_interrupt_update(s);
131      }
132  
133      switch (s->pointer & 3) {
134      case TMP105_REG_TEMPERATURE:
135          s->buf[s->len++] = (((uint16_t) s->temperature) >> 8);
136          s->buf[s->len++] = (((uint16_t) s->temperature) >> 0) &
137                  (0xf0 << (FIELD_EX8(~s->config, CONFIG, CONVERTER_RESOLUTION)));
138          break;
139  
140      case TMP105_REG_CONFIG:
141          s->buf[s->len++] = s->config;
142          break;
143  
144      case TMP105_REG_T_LOW:
145          s->buf[s->len++] = ((uint16_t) s->limit[0]) >> 8;
146          s->buf[s->len++] = ((uint16_t) s->limit[0]) >> 0;
147          break;
148  
149      case TMP105_REG_T_HIGH:
150          s->buf[s->len++] = ((uint16_t) s->limit[1]) >> 8;
151          s->buf[s->len++] = ((uint16_t) s->limit[1]) >> 0;
152          break;
153      }
154  
155      trace_tmp105_read(s->i2c.address, s->pointer);
156  }
157  
tmp105_write(TMP105State * s)158  static void tmp105_write(TMP105State *s)
159  {
160      trace_tmp105_write(s->i2c.address, s->pointer);
161  
162      switch (s->pointer & 3) {
163      case TMP105_REG_TEMPERATURE:
164          break;
165  
166      case TMP105_REG_CONFIG:
167          if (FIELD_EX8(s->buf[0] & ~s->config, CONFIG, SHUTDOWN_MODE)) {
168              trace_tmp105_write_shutdown(s->i2c.address);
169          }
170          s->config = FIELD_DP8(s->buf[0], CONFIG, ONE_SHOT, 0);
171          s->faults = tmp105_faultq[FIELD_EX8(s->config, CONFIG, FAULT_QUEUE)];
172          tmp105_alarm_update(s, FIELD_EX8(s->buf[0], CONFIG, ONE_SHOT));
173          break;
174  
175      case TMP105_REG_T_LOW:
176      case TMP105_REG_T_HIGH:
177          if (s->len >= 3) {
178              s->limit[s->pointer & 1] = (int16_t)
179                      ((((uint16_t) s->buf[0]) << 8) | (s->buf[1] & 0xf0));
180          }
181          tmp105_alarm_update(s, false);
182          break;
183      }
184  }
185  
tmp105_rx(I2CSlave * i2c)186  static uint8_t tmp105_rx(I2CSlave *i2c)
187  {
188      TMP105State *s = TMP105(i2c);
189  
190      if (s->len < 2) {
191          return s->buf[s->len++];
192      } else {
193          return 0xff;
194      }
195  }
196  
tmp105_tx(I2CSlave * i2c,uint8_t data)197  static int tmp105_tx(I2CSlave *i2c, uint8_t data)
198  {
199      TMP105State *s = TMP105(i2c);
200  
201      if (s->len == 0) {
202          s->pointer = data;
203          s->len++;
204      } else {
205          if (s->len <= 2) {
206              s->buf[s->len - 1] = data;
207          }
208          s->len++;
209          tmp105_write(s);
210      }
211  
212      return 0;
213  }
214  
tmp105_event(I2CSlave * i2c,enum i2c_event event)215  static int tmp105_event(I2CSlave *i2c, enum i2c_event event)
216  {
217      TMP105State *s = TMP105(i2c);
218  
219      if (event == I2C_START_RECV) {
220          tmp105_read(s);
221      }
222  
223      s->len = 0;
224      return 0;
225  }
226  
tmp105_post_load(void * opaque,int version_id)227  static int tmp105_post_load(void *opaque, int version_id)
228  {
229      TMP105State *s = opaque;
230  
231      s->faults = tmp105_faultq[FIELD_EX8(s->config, CONFIG, FAULT_QUEUE)];
232  
233      tmp105_interrupt_update(s);
234      return 0;
235  }
236  
detect_falling_needed(void * opaque)237  static bool detect_falling_needed(void *opaque)
238  {
239      TMP105State *s = opaque;
240  
241      /*
242       * We only need to migrate the detect_falling bool if it's set;
243       * for migration from older machines we assume that it is false
244       * (ie temperature is not out of range).
245       */
246      return s->detect_falling;
247  }
248  
249  static const VMStateDescription vmstate_tmp105_detect_falling = {
250      .name = "TMP105/detect-falling",
251      .version_id = 1,
252      .minimum_version_id = 1,
253      .needed = detect_falling_needed,
254      .fields = (const VMStateField[]) {
255          VMSTATE_BOOL(detect_falling, TMP105State),
256          VMSTATE_END_OF_LIST()
257      }
258  };
259  
260  static const VMStateDescription vmstate_tmp105 = {
261      .name = "TMP105",
262      .version_id = 0,
263      .minimum_version_id = 0,
264      .post_load = tmp105_post_load,
265      .fields = (const VMStateField[]) {
266          VMSTATE_UINT8(len, TMP105State),
267          VMSTATE_UINT8_ARRAY(buf, TMP105State, 2),
268          VMSTATE_UINT8(pointer, TMP105State),
269          VMSTATE_UINT8(config, TMP105State),
270          VMSTATE_INT16(temperature, TMP105State),
271          VMSTATE_INT16_ARRAY(limit, TMP105State, 2),
272          VMSTATE_UINT8(alarm, TMP105State),
273          VMSTATE_I2C_SLAVE(i2c, TMP105State),
274          VMSTATE_END_OF_LIST()
275      },
276      .subsections = (const VMStateDescription * const []) {
277          &vmstate_tmp105_detect_falling,
278          NULL
279      }
280  };
281  
tmp105_reset(I2CSlave * i2c)282  static void tmp105_reset(I2CSlave *i2c)
283  {
284      TMP105State *s = TMP105(i2c);
285  
286      s->temperature = 0;
287      s->pointer = 0;
288      s->config = 0;
289      s->faults = tmp105_faultq[FIELD_EX8(s->config, CONFIG, FAULT_QUEUE)];
290      s->alarm = 0;
291      s->detect_falling = false;
292  
293      s->limit[0] = 0x4b00; /* T_LOW, 75 degrees C */
294      s->limit[1] = 0x5000; /* T_HIGH, 80 degrees C */
295  
296      tmp105_interrupt_update(s);
297  }
298  
tmp105_realize(DeviceState * dev,Error ** errp)299  static void tmp105_realize(DeviceState *dev, Error **errp)
300  {
301      I2CSlave *i2c = I2C_SLAVE(dev);
302      TMP105State *s = TMP105(i2c);
303  
304      qdev_init_gpio_out(&i2c->qdev, &s->pin, 1);
305  
306      tmp105_reset(&s->i2c);
307  }
308  
tmp105_initfn(Object * obj)309  static void tmp105_initfn(Object *obj)
310  {
311      object_property_add(obj, "temperature", "int",
312                          tmp105_get_temperature,
313                          tmp105_set_temperature, NULL, NULL);
314  }
315  
tmp105_class_init(ObjectClass * klass,void * data)316  static void tmp105_class_init(ObjectClass *klass, void *data)
317  {
318      DeviceClass *dc = DEVICE_CLASS(klass);
319      I2CSlaveClass *k = I2C_SLAVE_CLASS(klass);
320  
321      dc->realize = tmp105_realize;
322      k->event = tmp105_event;
323      k->recv = tmp105_rx;
324      k->send = tmp105_tx;
325      dc->vmsd = &vmstate_tmp105;
326  }
327  
328  static const TypeInfo tmp105_info = {
329      .name          = TYPE_TMP105,
330      .parent        = TYPE_I2C_SLAVE,
331      .instance_size = sizeof(TMP105State),
332      .instance_init = tmp105_initfn,
333      .class_init    = tmp105_class_init,
334  };
335  
tmp105_register_types(void)336  static void tmp105_register_types(void)
337  {
338      type_register_static(&tmp105_info);
339  }
340  
341  type_init(tmp105_register_types)
342