Statistics
| Branch: | Tag: | Revision:

amiro-lld / source / AT42QT1050 / v1 / alld_AT42QT1050_v1.c @ 7df78c60

History | View | Annotate | Download (9.288 KB)

1 9e45662e Thomas Schöpping
/*
2
AMiRo-LLD is a compilation of low-level hardware drivers for the Autonomous Mini Robot (AMiRo) platform.
3
Copyright (C) 2016..2019  Thomas Schöpping et al.
4

5
This program is free software: you can redistribute it and/or modify
6
it under the terms of the GNU Lesser General Public License as published by
7
the Free Software Foundation, either version 3 of the License, or
8
(at your option) any later version.
9

10
This program is distributed in the hope that it will be useful,
11
but WITHOUT ANY WARRANTY; without even the implied warranty of
12
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
GNU Lesser General Public License for more details.
14

15
You should have received a copy of the GNU Lesser General Public License
16
along with this program.  If not, see <http://www.gnu.org/licenses/>.
17
*/
18
19
/**
20 1d5bcc82 Thomas Schöpping
 * @file    alld_AT42QT1050_v1.c
21 9e45662e Thomas Schöpping
 * @brief   Touch sensor function implementations.
22
 *
23
 * @addtogroup lld_touch
24
 * @{
25
 */
26
27 1d5bcc82 Thomas Schöpping
#include <alld_AT42QT1050.h>
28 9e45662e Thomas Schöpping
29 1d5bcc82 Thomas Schöpping
#if (defined(AMIROLLD_CFG_AT42QT1050) && (AMIROLLD_CFG_AT42QT1050 == 1)) || defined(__DOXYGEN__)
30 9e45662e Thomas Schöpping
31
#include <math.h>
32
33 ef078306 Thomas Schöpping
/******************************************************************************/
34
/* LOCAL DEFINITIONS                                                          */
35
/******************************************************************************/
36 119ec0d2 Felix Wittenfeld
#define AT42QT1050_LLD_WATCHDOGTIME_MAX         125000
37
#define AT42QT1050_LLD_INITIALIZATION_TIME_MAX   30000  
38 ef078306 Thomas Schöpping
39
/******************************************************************************/
40
/* EXPORTED VARIABLES                                                         */
41
/******************************************************************************/
42
43
/******************************************************************************/
44
/* LOCAL TYPES                                                                */
45
/******************************************************************************/
46
47
/******************************************************************************/
48
/* LOCAL VARIABLES                                                            */
49
/******************************************************************************/
50
51
/******************************************************************************/
52
/* LOCAL FUNCTIONS                                                            */
53
/******************************************************************************/
54
55
/******************************************************************************/
56
/* EXPORTED FUNCTIONS                                                         */
57
/******************************************************************************/
58
59 9e45662e Thomas Schöpping
/**
60
 * @brief   Read 8bit data from any register.
61
 *
62
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
63
 * @param[in]   reg           Register address to read from.
64
 * @param[out]  data          Pointer to store the register data to.
65
 * @param[in]   timeout       Timeout for the function to return (in microseconds).
66
 *
67
 * @return    Indicator whether the function call was successful or a timeout occurred.
68
 */
69 21076167 Thomas Schöpping
apalExitStatus_t at42qt1050_lld_read_reg(const AT42QT1050Driver* at42qt1050d, const at42qt1050_lld_register_t reg, uint8_t* const data, const apalTime_t timeout)
70 9e45662e Thomas Schöpping
{
71
  apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL);
72
  apalDbgAssert(data != NULL);
73
74
  const uint8_t txbuf = (uint8_t)reg;
75
  return apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, data, 1, timeout);
76
}
77
78
/**
79
 * @brief   Write 8bit data to any (writable) register.
80
 *
81
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
82
 * @param[in]   reg           Register address to write to.
83
 * @param[in]   data          Data to transmit.
84
 * @param[in]   timeout       Timeout for the function to return (in microseconds).
85
 *
86
 * @return    Indicator whether the function call was successful or a timeout occurred.
87
 */
88 21076167 Thomas Schöpping
apalExitStatus_t at42qt1050_lld_write_reg(const AT42QT1050Driver* at42qt1050d, const at42qt1050_lld_register_t reg, const uint8_t data, const apalTime_t timeout)
89 9e45662e Thomas Schöpping
{
90
  apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL);
91
92
  const uint8_t txbuf[2] = { (uint8_t)reg, data };
93
  return apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, txbuf, 2, NULL, 0, timeout);
94
}
95
96
/**
97
 * @brief   Read signal information of a key.
98
 *
99
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
100
 * @param[in]   key           Key to read the signal information of.
101
 * @param[out]  signal        Pointer to store the data to.
102
 * @param[in]   timeout       Timeout for the function to return (in microseconds).
103
 *
104
 * @return    Indicator whether the function call was successful or a timeout occurred.
105
 */
106 21076167 Thomas Schöpping
apalExitStatus_t at42qt1050_lld_read_keyssignal(const AT42QT1050Driver* at42qt1050d, const uint8_t key, uint16_t* signal, const apalTime_t timeout)
107 9e45662e Thomas Schöpping
{
108
  apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL);
109
  apalDbgAssert(key < AT42QT1050_LLD_NUM_KEYS);
110
  apalDbgAssert(signal != NULL);
111
112 7df78c60 Felix Wittenfeld
  const at42qt1050_lld_register_t txbuf = at42qt1050_lld_addr_calc(AT42QT1050_LLD_REG_KEYSIGNAL_0, key);
113 9e45662e Thomas Schöpping
  uint8_t rxbuf[2];
114
  const apalExitStatus_t status = apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, rxbuf, 2, timeout);
115
  *signal = (rxbuf[0] << 8) | rxbuf[1];
116
  return status;
117
}
118
119
/**
120
 * @brief   Read reference data of a key.
121
 *
122
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
123
 * @param[in]   key           Key to read the signal information of.
124
 * @param[out]  refdata       Pointer to store the data to.
125
 * @param[in]   timeout       Timeout for the function to return (in microseconds).
126
 *
127
 * @return    Indicator whether the function call was successful or a timeout occurred.
128
 */
129 21076167 Thomas Schöpping
apalExitStatus_t at42qt1050_lld_read_referencedata(const AT42QT1050Driver* at42qt1050d, const uint8_t key, uint16_t* refdata, const apalTime_t timeout)
130 9e45662e Thomas Schöpping
{
131
  apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL);
132
  apalDbgAssert(key < AT42QT1050_LLD_NUM_KEYS);
133
  apalDbgAssert(refdata != NULL);
134
135 7df78c60 Felix Wittenfeld
  const at42qt1050_lld_register_t txbuf = at42qt1050_lld_addr_calc(AT42QT1050_LLD_REG_REFERENCEDATA_0, key);
136 9e45662e Thomas Schöpping
  uint8_t rxbuf[2];
137
  const apalExitStatus_t status = apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, rxbuf, 2, timeout);
138
  *refdata = (rxbuf[0] << 8) | rxbuf[1];
139
  return status;
140
}
141
142
/**
143 119ec0d2 Felix Wittenfeld
 * @brief       Soft Reset of the device
144
 *
145
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
146
 * @param[in]   timeout       Timeout for the function to return (in microseconds).
147
 * @param[in]   wait4wakeup   Wait for device wakeup (timeout must be > 155 ms)
148
 *
149
 * @return      Indicator whether the function call was successful or a timeout occurred.
150
 */
151
inline apalExitStatus_t at42qt1050_lld_reset_safe(const AT42QT1050Driver* at42qt1050d, const bool wait4wakeup, const apalTime_t timeout) {
152
  if(wait4wakeup)
153
    apalDbgAssert(timeout >= AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX);
154
155
  return at42qt1050_lld_reset(at42qt1050d, timeout-(AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX), wait4wakeup);
156
}
157
158
/**
159
 * @brief       Soft Reset of the device
160
 *
161
 * @param[in]   at42qt1050d   The AT42QT1050 driver to use.
162
 * @param[in]   timeout       Timeout for the i2c call (in microseconds).
163
 * @param[in]   wait4wakeup   Wait for device wakeup (155 ms)
164
 *
165
 * @return      Indicator whether the function call was successful or a timeout occurred.
166
 */
167
inline apalExitStatus_t at42qt1050_lld_reset(const AT42QT1050Driver* at42qt1050d, const apalTime_t timeout, const bool wait4wakeup) {
168
  apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL);
169
170
  const apalExitStatus_t status = at42qt1050_lld_write_reg(
171 7df78c60 Felix Wittenfeld
    at42qt1050d, AT42QT1050_LLD_REG_RESET_CALIBRATE, AT42QT1050_LLD_RESETCALIBRATE_RESET, timeout);
172 119ec0d2 Felix Wittenfeld
  if(wait4wakeup)
173 7df78c60 Felix Wittenfeld
    usleep(AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX+timeout); // watchdog timer+initialization -> datasheet
174 119ec0d2 Felix Wittenfeld
  return status;
175
}
176
177
/**
178 9e45662e Thomas Schöpping
 * @brief   Convert a 4 bit pulse value to the representing number of samples.
179
 * @details Calculation: <#samples> = 2^(<pulse value>)
180
 *
181
 * @param[in]   pulse   Pulse value.
182
 *
183
 * @return    Resulting sample count.
184
 */
185 21076167 Thomas Schöpping
uint16_t at42qt1050_lld_pulse2samples(const uint8_t pulse)
186 9e45662e Thomas Schöpping
{
187
  apalDbgAssert(pulse <= 0x0Fu);
188
189
  return (1 << pulse);
190
}
191
192
/**
193
 * @brief   Convert a desired number of samples to the according (theoretical) pulse value.
194
 * @details Calculation: <pulse value> = log2(<#samples>)
195
 *
196
 * @param[in]   samples   Desired number of samples.
197
 *
198
 * @return    The (theoretical) value to set to the pulse register.
199
 */
200 21076167 Thomas Schöpping
float at42qt1050_lld_samples2pulse(const uint16_t samples)
201 9e45662e Thomas Schöpping
{
202
  return log2f(samples);
203
}
204
205
/**
206
 * @brief   Convert a 4 bit scale value to the accoring scaling factor.
207
 * @details Calculation: <scaling factor> = 2^(<scale value>)
208
 *
209
 * @param[in]   scale   Scale value.
210
 *
211
 * @return    Resulting scaling factor.
212
 */
213 21076167 Thomas Schöpping
uint16_t at42qt1050_lld_scale2scaling(const uint8_t scale)
214 9e45662e Thomas Schöpping
{
215
  apalDbgAssert(scale <= 0x0Fu);
216
217
  return (1 << scale);
218
}
219
220
/**
221
 * @brief   Convert a desired scaling factor to the according (theoretical) scale value.
222
 * @details Calculation: <scale value> = log2(<scaling factor>
223
 * )
224
 * @param[in]   factor    Desired scaling factor.
225
 *
226
 * @return    The (theoretcial) value to set to the scale register.
227
 */
228 21076167 Thomas Schöpping
float at42qt1050_lld_scaling2scale(const uint16_t factor)
229 9e45662e Thomas Schöpping
{
230
  return log2f(factor);
231
}
232
233 1d5bcc82 Thomas Schöpping
#endif /* defined(AMIROLLD_CFG_AT42QT1050) && (AMIROLLD_CFG_AT42QT1050 == 1) */
234 9e45662e Thomas Schöpping
235
/** @} */