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CommitLineData
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1/*
2 * Texas Instruments TMP105 temperature sensor.
3 *
4 * Copyright (C) 2008 Nokia Corporation
5 * Written by Andrzej Zaborowski <[email protected]>
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 *
fad6cb1a 17 * You should have received a copy of the GNU General Public License along
8167ee88 18 * with this program; if not, see <http://www.gnu.org/licenses/>.
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19 */
20
83c9f4ca 21#include "hw/hw.h"
0d09e41a 22#include "hw/i2c/i2c.h"
47b43a1f 23#include "tmp105.h"
eb60d1c5 24#include "qapi/visitor.h"
7e7c5e4c 25
bc24a225 26static void tmp105_interrupt_update(TMP105State *s)
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27{
28 qemu_set_irq(s->pin, s->alarm ^ ((~s->config >> 2) & 1)); /* POL */
29}
30
bc24a225 31static void tmp105_alarm_update(TMP105State *s)
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32{
33 if ((s->config >> 0) & 1) { /* SD */
34 if ((s->config >> 7) & 1) /* OS */
35 s->config &= ~(1 << 7); /* OS */
36 else
37 return;
38 }
39
40 if ((s->config >> 1) & 1) { /* TM */
41 if (s->temperature >= s->limit[1])
42 s->alarm = 1;
43 else if (s->temperature < s->limit[0])
44 s->alarm = 1;
45 } else {
46 if (s->temperature >= s->limit[1])
47 s->alarm = 1;
48 else if (s->temperature < s->limit[0])
49 s->alarm = 0;
50 }
51
52 tmp105_interrupt_update(s);
53}
54
eb60d1c5
AF
55static void tmp105_get_temperature(Object *obj, Visitor *v, void *opaque,
56 const char *name, Error **errp)
57{
58 TMP105State *s = TMP105(obj);
efdf6a56 59 int64_t value = s->temperature * 1000 / 256;
eb60d1c5
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60
61 visit_type_int(v, &value, name, errp);
62}
63
efdf6a56
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64/* Units are 0.001 centigrades relative to 0 C. s->temperature is 8.8
65 * fixed point, so units are 1/256 centigrades. A simple ratio will do.
66 */
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67static void tmp105_set_temperature(Object *obj, Visitor *v, void *opaque,
68 const char *name, Error **errp)
7e7c5e4c 69{
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70 TMP105State *s = TMP105(obj);
71 int64_t temp;
7e7c5e4c 72
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73 visit_type_int(v, &temp, name, errp);
74 if (error_is_set(errp)) {
75 return;
76 }
7e7c5e4c 77 if (temp >= 128000 || temp < -128000) {
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78 error_setg(errp, "value %" PRId64 ".%03" PRIu64 " °C is out of range",
79 temp / 1000, temp % 1000);
80 return;
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81 }
82
efdf6a56 83 s->temperature = (int16_t) (temp * 256 / 1000);
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84
85 tmp105_alarm_update(s);
86}
87
88static const int tmp105_faultq[4] = { 1, 2, 4, 6 };
89
bc24a225 90static void tmp105_read(TMP105State *s)
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91{
92 s->len = 0;
93
94 if ((s->config >> 1) & 1) { /* TM */
95 s->alarm = 0;
96 tmp105_interrupt_update(s);
97 }
98
99 switch (s->pointer & 3) {
2915efbf 100 case TMP105_REG_TEMPERATURE:
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101 s->buf[s->len ++] = (((uint16_t) s->temperature) >> 8);
102 s->buf[s->len ++] = (((uint16_t) s->temperature) >> 0) &
103 (0xf0 << ((~s->config >> 5) & 3)); /* R */
104 break;
105
2915efbf 106 case TMP105_REG_CONFIG:
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107 s->buf[s->len ++] = s->config;
108 break;
109
2915efbf 110 case TMP105_REG_T_LOW:
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111 s->buf[s->len ++] = ((uint16_t) s->limit[0]) >> 8;
112 s->buf[s->len ++] = ((uint16_t) s->limit[0]) >> 0;
113 break;
114
2915efbf 115 case TMP105_REG_T_HIGH:
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116 s->buf[s->len ++] = ((uint16_t) s->limit[1]) >> 8;
117 s->buf[s->len ++] = ((uint16_t) s->limit[1]) >> 0;
118 break;
119 }
120}
121
bc24a225 122static void tmp105_write(TMP105State *s)
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123{
124 switch (s->pointer & 3) {
2915efbf 125 case TMP105_REG_TEMPERATURE:
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126 break;
127
2915efbf 128 case TMP105_REG_CONFIG:
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129 if (s->buf[0] & ~s->config & (1 << 0)) /* SD */
130 printf("%s: TMP105 shutdown\n", __FUNCTION__);
131 s->config = s->buf[0];
132 s->faults = tmp105_faultq[(s->config >> 3) & 3]; /* F */
133 tmp105_alarm_update(s);
134 break;
135
2915efbf
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136 case TMP105_REG_T_LOW:
137 case TMP105_REG_T_HIGH:
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138 if (s->len >= 3)
139 s->limit[s->pointer & 1] = (int16_t)
140 ((((uint16_t) s->buf[0]) << 8) | s->buf[1]);
141 tmp105_alarm_update(s);
142 break;
143 }
144}
145
9e07bdf8 146static int tmp105_rx(I2CSlave *i2c)
7e7c5e4c 147{
2aad80ee 148 TMP105State *s = TMP105(i2c);
7e7c5e4c 149
2aad80ee 150 if (s->len < 2) {
7e7c5e4c 151 return s->buf[s->len ++];
2aad80ee 152 } else {
7e7c5e4c 153 return 0xff;
2aad80ee 154 }
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155}
156
9e07bdf8 157static int tmp105_tx(I2CSlave *i2c, uint8_t data)
7e7c5e4c 158{
2aad80ee 159 TMP105State *s = TMP105(i2c);
7e7c5e4c 160
cb5ef3fa 161 if (s->len == 0) {
7e7c5e4c 162 s->pointer = data;
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163 s->len++;
164 } else {
165 if (s->len <= 2) {
7e7c5e4c 166 s->buf[s->len - 1] = data;
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167 }
168 s->len++;
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169 tmp105_write(s);
170 }
171
172 return 0;
173}
174
9e07bdf8 175static void tmp105_event(I2CSlave *i2c, enum i2c_event event)
7e7c5e4c 176{
2aad80ee 177 TMP105State *s = TMP105(i2c);
7e7c5e4c 178
2aad80ee 179 if (event == I2C_START_RECV) {
7e7c5e4c 180 tmp105_read(s);
2aad80ee 181 }
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182
183 s->len = 0;
184}
185
371a4468 186static int tmp105_post_load(void *opaque, int version_id)
7e7c5e4c 187{
371a4468 188 TMP105State *s = opaque;
7e7c5e4c 189
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190 s->faults = tmp105_faultq[(s->config >> 3) & 3]; /* F */
191
7e7c5e4c 192 tmp105_interrupt_update(s);
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193 return 0;
194}
195
371a4468
JQ
196static const VMStateDescription vmstate_tmp105 = {
197 .name = "TMP105",
198 .version_id = 0,
199 .minimum_version_id = 0,
200 .minimum_version_id_old = 0,
371a4468
JQ
201 .post_load = tmp105_post_load,
202 .fields = (VMStateField []) {
203 VMSTATE_UINT8(len, TMP105State),
204 VMSTATE_UINT8_ARRAY(buf, TMP105State, 2),
205 VMSTATE_UINT8(pointer, TMP105State),
206 VMSTATE_UINT8(config, TMP105State),
207 VMSTATE_INT16(temperature, TMP105State),
208 VMSTATE_INT16_ARRAY(limit, TMP105State, 2),
209 VMSTATE_UINT8(alarm, TMP105State),
210 VMSTATE_I2C_SLAVE(i2c, TMP105State),
211 VMSTATE_END_OF_LIST()
212 }
213};
214
9e07bdf8 215static void tmp105_reset(I2CSlave *i2c)
7e7c5e4c 216{
2aad80ee 217 TMP105State *s = TMP105(i2c);
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218
219 s->temperature = 0;
220 s->pointer = 0;
221 s->config = 0;
222 s->faults = tmp105_faultq[(s->config >> 3) & 3];
223 s->alarm = 0;
224
225 tmp105_interrupt_update(s);
226}
227
9e07bdf8 228static int tmp105_init(I2CSlave *i2c)
7e7c5e4c 229{
2aad80ee 230 TMP105State *s = TMP105(i2c);
7e7c5e4c 231
697454eb 232 qdev_init_gpio_out(&i2c->qdev, &s->pin, 1);
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233
234 tmp105_reset(&s->i2c);
235
81a322d4 236 return 0;
697454eb
PB
237}
238
eb60d1c5
AF
239static void tmp105_initfn(Object *obj)
240{
241 object_property_add(obj, "temperature", "int",
242 tmp105_get_temperature,
243 tmp105_set_temperature, NULL, NULL, NULL);
244}
245
b5ea9327
AL
246static void tmp105_class_init(ObjectClass *klass, void *data)
247{
39bffca2 248 DeviceClass *dc = DEVICE_CLASS(klass);
b5ea9327
AL
249 I2CSlaveClass *k = I2C_SLAVE_CLASS(klass);
250
251 k->init = tmp105_init;
252 k->event = tmp105_event;
253 k->recv = tmp105_rx;
254 k->send = tmp105_tx;
39bffca2 255 dc->vmsd = &vmstate_tmp105;
b5ea9327
AL
256}
257
8c43a6f0 258static const TypeInfo tmp105_info = {
2aad80ee 259 .name = TYPE_TMP105,
39bffca2
AL
260 .parent = TYPE_I2C_SLAVE,
261 .instance_size = sizeof(TMP105State),
eb60d1c5 262 .instance_init = tmp105_initfn,
39bffca2 263 .class_init = tmp105_class_init,
697454eb 264};
7e7c5e4c 265
83f7d43a 266static void tmp105_register_types(void)
697454eb 267{
39bffca2 268 type_register_static(&tmp105_info);
7e7c5e4c 269}
697454eb 270
83f7d43a 271type_init(tmp105_register_types)
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