amiro-lld / source / AT42QT1050 / v1 / alld_AT42QT1050_v1.c @ ef5bc242
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1 | 9e45662e | Thomas Schöpping | /*
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2 | AMiRo-LLD is a compilation of low-level hardware drivers for the Autonomous Mini Robot (AMiRo) platform.
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3 | Copyright (C) 2016..2019 Thomas Schöpping et al.
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4 | |||
5 | This program is free software: you can redistribute it and/or modify
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6 | it under the terms of the GNU Lesser General Public License as published by
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7 | the Free Software Foundation, either version 3 of the License, or
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8 | (at your option) any later version.
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9 | |||
10 | This program is distributed in the hope that it will be useful,
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11 | but WITHOUT ANY WARRANTY; without even the implied warranty of
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12 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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13 | GNU Lesser General Public License for more details.
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14 | |||
15 | You should have received a copy of the GNU Lesser General Public License
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16 | along with this program. If not, see <http://www.gnu.org/licenses/>.
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17 | */
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18 | |||
19 | /**
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20 | 1d5bcc82 | Thomas Schöpping | * @file alld_AT42QT1050_v1.c
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21 | 9e45662e | Thomas Schöpping | * @brief Touch sensor function implementations.
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22 | *
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23 | * @addtogroup lld_touch
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24 | * @{
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25 | */
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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> |
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32 | |||
33 | ef078306 | Thomas Schöpping | /******************************************************************************/
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34 | /* LOCAL DEFINITIONS */
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35 | /******************************************************************************/
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36 | 119ec0d2 | Felix Wittenfeld | #define AT42QT1050_LLD_WATCHDOGTIME_MAX 125000 |
37 | #define AT42QT1050_LLD_INITIALIZATION_TIME_MAX 30000 |
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38 | ef078306 | Thomas Schöpping | |
39 | /******************************************************************************/
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40 | /* EXPORTED VARIABLES */
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41 | /******************************************************************************/
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42 | |||
43 | /******************************************************************************/
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44 | /* LOCAL TYPES */
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45 | /******************************************************************************/
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46 | |||
47 | /******************************************************************************/
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48 | /* LOCAL VARIABLES */
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49 | /******************************************************************************/
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50 | |||
51 | /******************************************************************************/
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52 | /* LOCAL FUNCTIONS */
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53 | /******************************************************************************/
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54 | |||
55 | /******************************************************************************/
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56 | /* EXPORTED FUNCTIONS */
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57 | /******************************************************************************/
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58 | |||
59 | 9e45662e | Thomas Schöpping | /**
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60 | * @brief Read 8bit data from any register.
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61 | *
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62 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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63 | * @param[in] reg Register address to read from.
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64 | * @param[out] data Pointer to store the register data to.
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65 | * @param[in] timeout Timeout for the function to return (in microseconds).
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66 | *
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67 | * @return Indicator whether the function call was successful or a timeout occurred.
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68 | */
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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); |
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72 | apalDbgAssert(data != NULL);
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73 | |||
74 | const uint8_t txbuf = (uint8_t)reg;
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75 | return apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, data, 1, timeout); |
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76 | } |
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77 | |||
78 | /**
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79 | * @brief Write 8bit data to any (writable) register.
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80 | *
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81 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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82 | * @param[in] reg Register address to write to.
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83 | * @param[in] data Data to transmit.
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84 | * @param[in] timeout Timeout for the function to return (in microseconds).
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85 | *
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86 | * @return Indicator whether the function call was successful or a timeout occurred.
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87 | */
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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); |
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91 | |||
92 | const uint8_t txbuf[2] = { (uint8_t)reg, data }; |
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93 | return apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, txbuf, 2, NULL, 0, timeout); |
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94 | } |
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95 | |||
96 | /**
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97 | * @brief Read signal information of a key.
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98 | *
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99 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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100 | * @param[in] key Key to read the signal information of.
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101 | * @param[out] signal Pointer to store the data to.
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102 | * @param[in] timeout Timeout for the function to return (in microseconds).
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103 | *
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104 | * @return Indicator whether the function call was successful or a timeout occurred.
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105 | */
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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); |
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109 | apalDbgAssert(key < AT42QT1050_LLD_NUM_KEYS); |
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110 | apalDbgAssert(signal != NULL);
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111 | |||
112 | 7df78c60 | Felix Wittenfeld | const at42qt1050_lld_register_t txbuf = at42qt1050_lld_addr_calc(AT42QT1050_LLD_REG_KEYSIGNAL_0, key);
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113 | 9e45662e | Thomas Schöpping | uint8_t rxbuf[2];
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114 | const apalExitStatus_t status = apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, rxbuf, 2, timeout); |
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115 | *signal = (rxbuf[0] << 8) | rxbuf[1]; |
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116 | return status;
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117 | } |
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118 | |||
119 | /**
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120 | * @brief Read reference data of a key.
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121 | *
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122 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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123 | * @param[in] key Key to read the signal information of.
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124 | * @param[out] refdata Pointer to store the data to.
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125 | * @param[in] timeout Timeout for the function to return (in microseconds).
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126 | *
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127 | * @return Indicator whether the function call was successful or a timeout occurred.
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128 | */
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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); |
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132 | apalDbgAssert(key < AT42QT1050_LLD_NUM_KEYS); |
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133 | apalDbgAssert(refdata != NULL);
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134 | |||
135 | 7df78c60 | Felix Wittenfeld | const at42qt1050_lld_register_t txbuf = at42qt1050_lld_addr_calc(AT42QT1050_LLD_REG_REFERENCEDATA_0, key);
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136 | 9e45662e | Thomas Schöpping | uint8_t rxbuf[2];
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137 | const apalExitStatus_t status = apalI2CMasterTransmit(at42qt1050d->i2cd, at42qt1050d->addr, &txbuf, 1, rxbuf, 2, timeout); |
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138 | *refdata = (rxbuf[0] << 8) | rxbuf[1]; |
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139 | return status;
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140 | } |
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141 | |||
142 | /**
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143 | 119ec0d2 | Felix Wittenfeld | * @brief Soft Reset of the device
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144 | *
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145 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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146 | * @param[in] timeout Timeout for the function to return (in microseconds).
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147 | * @param[in] wait4wakeup Wait for device wakeup (timeout must be > 155 ms)
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148 | *
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149 | * @return Indicator whether the function call was successful or a timeout occurred.
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150 | */
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151 | inline apalExitStatus_t at42qt1050_lld_reset_safe(const AT42QT1050Driver* at42qt1050d, const bool wait4wakeup, const apalTime_t timeout) { |
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152 | if(wait4wakeup)
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153 | apalDbgAssert(timeout >= AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX); |
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154 | |||
155 | return at42qt1050_lld_reset(at42qt1050d, timeout-(AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX), wait4wakeup);
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156 | } |
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157 | |||
158 | /**
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159 | * @brief Soft Reset of the device
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160 | *
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161 | * @param[in] at42qt1050d The AT42QT1050 driver to use.
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162 | * @param[in] timeout Timeout for the i2c call (in microseconds).
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163 | * @param[in] wait4wakeup Wait for device wakeup (155 ms)
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164 | *
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165 | * @return Indicator whether the function call was successful or a timeout occurred.
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166 | */
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167 | inline apalExitStatus_t at42qt1050_lld_reset(const AT42QT1050Driver* at42qt1050d, const apalTime_t timeout, const bool wait4wakeup) { |
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168 | apalDbgAssert(at42qt1050d != NULL && at42qt1050d->i2cd != NULL); |
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169 | |||
170 | const apalExitStatus_t status = at42qt1050_lld_write_reg(
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171 | 7df78c60 | Felix Wittenfeld | at42qt1050d, AT42QT1050_LLD_REG_RESET_CALIBRATE, AT42QT1050_LLD_RESETCALIBRATE_RESET, timeout); |
172 | 119ec0d2 | Felix Wittenfeld | if(wait4wakeup)
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173 | 7df78c60 | Felix Wittenfeld | usleep(AT42QT1050_LLD_WATCHDOGTIME_MAX+AT42QT1050_LLD_INITIALIZATION_TIME_MAX+timeout); // watchdog timer+initialization -> datasheet
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174 | 119ec0d2 | Felix Wittenfeld | return status;
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175 | } |
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176 | |||
177 | /**
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178 | 9e45662e | Thomas Schöpping | * @brief Convert a 4 bit pulse value to the representing number of samples.
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179 | * @details Calculation: <#samples> = 2^(<pulse value>)
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180 | *
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181 | * @param[in] pulse Pulse value.
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182 | *
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183 | * @return Resulting sample count.
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184 | */
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185 | 21076167 | Thomas Schöpping | uint16_t at42qt1050_lld_pulse2samples(const uint8_t pulse)
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186 | 9e45662e | Thomas Schöpping | { |
187 | apalDbgAssert(pulse <= 0x0Fu);
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188 | |||
189 | return (1 << pulse); |
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190 | } |
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191 | |||
192 | /**
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193 | * @brief Convert a desired number of samples to the according (theoretical) pulse value.
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194 | * @details Calculation: <pulse value> = log2(<#samples>)
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195 | *
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196 | * @param[in] samples Desired number of samples.
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197 | *
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198 | * @return The (theoretical) value to set to the pulse register.
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199 | */
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200 | 21076167 | Thomas Schöpping | float at42qt1050_lld_samples2pulse(const uint16_t samples) |
201 | 9e45662e | Thomas Schöpping | { |
202 | return log2f(samples);
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203 | } |
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204 | |||
205 | /**
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206 | * @brief Convert a 4 bit scale value to the accoring scaling factor.
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207 | * @details Calculation: <scaling factor> = 2^(<scale value>)
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208 | *
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209 | * @param[in] scale Scale value.
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210 | *
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211 | * @return Resulting scaling factor.
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212 | */
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213 | 21076167 | Thomas Schöpping | uint16_t at42qt1050_lld_scale2scaling(const uint8_t scale)
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214 | 9e45662e | Thomas Schöpping | { |
215 | apalDbgAssert(scale <= 0x0Fu);
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216 | |||
217 | return (1 << scale); |
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218 | } |
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219 | |||
220 | /**
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221 | * @brief Convert a desired scaling factor to the according (theoretical) scale value.
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222 | * @details Calculation: <scale value> = log2(<scaling factor>
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223 | * )
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224 | * @param[in] factor Desired scaling factor.
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225 | *
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226 | * @return The (theoretcial) value to set to the scale register.
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227 | */
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228 | 21076167 | Thomas Schöpping | float at42qt1050_lld_scaling2scale(const uint16_t factor) |
229 | 9e45662e | Thomas Schöpping | { |
230 | return log2f(factor);
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231 | } |
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232 | |||
233 | 1d5bcc82 | Thomas Schöpping | #endif /* defined(AMIROLLD_CFG_AT42QT1050) && (AMIROLLD_CFG_AT42QT1050 == 1) */ |
234 | 9e45662e | Thomas Schöpping | |
235 | /** @} */ |