BLE Temperature Service Mobile and Ubiquitous Computing Module Birkbeck College

Dependencies:   DS1820

Committer:
gkroussos
Date:
Sun Mar 08 19:42:20 2015 +0000
Revision:
0:dd0fea342ad2
BLE Temperature Service ; Mobile and Ubiquitous Computing Module; Birkbeck College

Who changed what in which revision?

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gkroussos 0:dd0fea342ad2 1 /* mbed Microcontroller Library
gkroussos 0:dd0fea342ad2 2 * Copyright (c) 2006-2013 ARM Limited
gkroussos 0:dd0fea342ad2 3 *
gkroussos 0:dd0fea342ad2 4 * Licensed under the Apache License, Version 2.0 (the "License");
gkroussos 0:dd0fea342ad2 5 * you may not use this file except in compliance with the License.
gkroussos 0:dd0fea342ad2 6 * You may obtain a copy of the License at
gkroussos 0:dd0fea342ad2 7 *
gkroussos 0:dd0fea342ad2 8 * http://www.apache.org/licenses/LICENSE-2.0
gkroussos 0:dd0fea342ad2 9 *
gkroussos 0:dd0fea342ad2 10 * Unless required by applicable law or agreed to in writing, software
gkroussos 0:dd0fea342ad2 11 * distributed under the License is distributed on an "AS IS" BASIS,
gkroussos 0:dd0fea342ad2 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
gkroussos 0:dd0fea342ad2 13 * See the License for the specific language governing permissions and
gkroussos 0:dd0fea342ad2 14 * limitations under the License.
gkroussos 0:dd0fea342ad2 15 */
gkroussos 0:dd0fea342ad2 16 #ifndef MBED_PWMOUT_H
gkroussos 0:dd0fea342ad2 17 #define MBED_PWMOUT_H
gkroussos 0:dd0fea342ad2 18
gkroussos 0:dd0fea342ad2 19 #include "platform.h"
gkroussos 0:dd0fea342ad2 20
gkroussos 0:dd0fea342ad2 21 #if DEVICE_PWMOUT
gkroussos 0:dd0fea342ad2 22 #include "pwmout_api.h"
gkroussos 0:dd0fea342ad2 23
gkroussos 0:dd0fea342ad2 24 namespace mbed {
gkroussos 0:dd0fea342ad2 25
gkroussos 0:dd0fea342ad2 26 /** A pulse-width modulation digital output
gkroussos 0:dd0fea342ad2 27 *
gkroussos 0:dd0fea342ad2 28 * Example
gkroussos 0:dd0fea342ad2 29 * @code
gkroussos 0:dd0fea342ad2 30 * // Fade a led on.
gkroussos 0:dd0fea342ad2 31 * #include "mbed.h"
gkroussos 0:dd0fea342ad2 32 *
gkroussos 0:dd0fea342ad2 33 * PwmOut led(LED1);
gkroussos 0:dd0fea342ad2 34 *
gkroussos 0:dd0fea342ad2 35 * int main() {
gkroussos 0:dd0fea342ad2 36 * while(1) {
gkroussos 0:dd0fea342ad2 37 * led = led + 0.01;
gkroussos 0:dd0fea342ad2 38 * wait(0.2);
gkroussos 0:dd0fea342ad2 39 * if(led == 1.0) {
gkroussos 0:dd0fea342ad2 40 * led = 0;
gkroussos 0:dd0fea342ad2 41 * }
gkroussos 0:dd0fea342ad2 42 * }
gkroussos 0:dd0fea342ad2 43 * }
gkroussos 0:dd0fea342ad2 44 * @endcode
gkroussos 0:dd0fea342ad2 45 *
gkroussos 0:dd0fea342ad2 46 * @note
gkroussos 0:dd0fea342ad2 47 * On the LPC1768 and LPC2368, the PWMs all share the same
gkroussos 0:dd0fea342ad2 48 * period - if you change the period for one, you change it for all.
gkroussos 0:dd0fea342ad2 49 * Although routines that change the period maintain the duty cycle
gkroussos 0:dd0fea342ad2 50 * for its PWM, all other PWMs will require their duty cycle to be
gkroussos 0:dd0fea342ad2 51 * refreshed.
gkroussos 0:dd0fea342ad2 52 */
gkroussos 0:dd0fea342ad2 53 class PwmOut {
gkroussos 0:dd0fea342ad2 54
gkroussos 0:dd0fea342ad2 55 public:
gkroussos 0:dd0fea342ad2 56
gkroussos 0:dd0fea342ad2 57 /** Create a PwmOut connected to the specified pin
gkroussos 0:dd0fea342ad2 58 *
gkroussos 0:dd0fea342ad2 59 * @param pin PwmOut pin to connect to
gkroussos 0:dd0fea342ad2 60 */
gkroussos 0:dd0fea342ad2 61 PwmOut(PinName pin) {
gkroussos 0:dd0fea342ad2 62 pwmout_init(&_pwm, pin);
gkroussos 0:dd0fea342ad2 63 }
gkroussos 0:dd0fea342ad2 64
gkroussos 0:dd0fea342ad2 65 /** Set the ouput duty-cycle, specified as a percentage (float)
gkroussos 0:dd0fea342ad2 66 *
gkroussos 0:dd0fea342ad2 67 * @param value A floating-point value representing the output duty-cycle,
gkroussos 0:dd0fea342ad2 68 * specified as a percentage. The value should lie between
gkroussos 0:dd0fea342ad2 69 * 0.0f (representing on 0%) and 1.0f (representing on 100%).
gkroussos 0:dd0fea342ad2 70 * Values outside this range will be saturated to 0.0f or 1.0f.
gkroussos 0:dd0fea342ad2 71 */
gkroussos 0:dd0fea342ad2 72 void write(float value) {
gkroussos 0:dd0fea342ad2 73 pwmout_write(&_pwm, value);
gkroussos 0:dd0fea342ad2 74 }
gkroussos 0:dd0fea342ad2 75
gkroussos 0:dd0fea342ad2 76 /** Return the current output duty-cycle setting, measured as a percentage (float)
gkroussos 0:dd0fea342ad2 77 *
gkroussos 0:dd0fea342ad2 78 * @returns
gkroussos 0:dd0fea342ad2 79 * A floating-point value representing the current duty-cycle being output on the pin,
gkroussos 0:dd0fea342ad2 80 * measured as a percentage. The returned value will lie between
gkroussos 0:dd0fea342ad2 81 * 0.0f (representing on 0%) and 1.0f (representing on 100%).
gkroussos 0:dd0fea342ad2 82 *
gkroussos 0:dd0fea342ad2 83 * @note
gkroussos 0:dd0fea342ad2 84 * This value may not match exactly the value set by a previous <write>.
gkroussos 0:dd0fea342ad2 85 */
gkroussos 0:dd0fea342ad2 86 float read() {
gkroussos 0:dd0fea342ad2 87 return pwmout_read(&_pwm);
gkroussos 0:dd0fea342ad2 88 }
gkroussos 0:dd0fea342ad2 89
gkroussos 0:dd0fea342ad2 90 /** Set the PWM period, specified in seconds (float), keeping the duty cycle the same.
gkroussos 0:dd0fea342ad2 91 *
gkroussos 0:dd0fea342ad2 92 * @note
gkroussos 0:dd0fea342ad2 93 * The resolution is currently in microseconds; periods smaller than this
gkroussos 0:dd0fea342ad2 94 * will be set to zero.
gkroussos 0:dd0fea342ad2 95 */
gkroussos 0:dd0fea342ad2 96 void period(float seconds) {
gkroussos 0:dd0fea342ad2 97 pwmout_period(&_pwm, seconds);
gkroussos 0:dd0fea342ad2 98 }
gkroussos 0:dd0fea342ad2 99
gkroussos 0:dd0fea342ad2 100 /** Set the PWM period, specified in milli-seconds (int), keeping the duty cycle the same.
gkroussos 0:dd0fea342ad2 101 */
gkroussos 0:dd0fea342ad2 102 void period_ms(int ms) {
gkroussos 0:dd0fea342ad2 103 pwmout_period_ms(&_pwm, ms);
gkroussos 0:dd0fea342ad2 104 }
gkroussos 0:dd0fea342ad2 105
gkroussos 0:dd0fea342ad2 106 /** Set the PWM period, specified in micro-seconds (int), keeping the duty cycle the same.
gkroussos 0:dd0fea342ad2 107 */
gkroussos 0:dd0fea342ad2 108 void period_us(int us) {
gkroussos 0:dd0fea342ad2 109 pwmout_period_us(&_pwm, us);
gkroussos 0:dd0fea342ad2 110 }
gkroussos 0:dd0fea342ad2 111
gkroussos 0:dd0fea342ad2 112 /** Set the PWM pulsewidth, specified in seconds (float), keeping the period the same.
gkroussos 0:dd0fea342ad2 113 */
gkroussos 0:dd0fea342ad2 114 void pulsewidth(float seconds) {
gkroussos 0:dd0fea342ad2 115 pwmout_pulsewidth(&_pwm, seconds);
gkroussos 0:dd0fea342ad2 116 }
gkroussos 0:dd0fea342ad2 117
gkroussos 0:dd0fea342ad2 118 /** Set the PWM pulsewidth, specified in milli-seconds (int), keeping the period the same.
gkroussos 0:dd0fea342ad2 119 */
gkroussos 0:dd0fea342ad2 120 void pulsewidth_ms(int ms) {
gkroussos 0:dd0fea342ad2 121 pwmout_pulsewidth_ms(&_pwm, ms);
gkroussos 0:dd0fea342ad2 122 }
gkroussos 0:dd0fea342ad2 123
gkroussos 0:dd0fea342ad2 124 /** Set the PWM pulsewidth, specified in micro-seconds (int), keeping the period the same.
gkroussos 0:dd0fea342ad2 125 */
gkroussos 0:dd0fea342ad2 126 void pulsewidth_us(int us) {
gkroussos 0:dd0fea342ad2 127 pwmout_pulsewidth_us(&_pwm, us);
gkroussos 0:dd0fea342ad2 128 }
gkroussos 0:dd0fea342ad2 129
gkroussos 0:dd0fea342ad2 130 #ifdef MBED_OPERATORS
gkroussos 0:dd0fea342ad2 131 /** A operator shorthand for write()
gkroussos 0:dd0fea342ad2 132 */
gkroussos 0:dd0fea342ad2 133 PwmOut& operator= (float value) {
gkroussos 0:dd0fea342ad2 134 write(value);
gkroussos 0:dd0fea342ad2 135 return *this;
gkroussos 0:dd0fea342ad2 136 }
gkroussos 0:dd0fea342ad2 137
gkroussos 0:dd0fea342ad2 138 PwmOut& operator= (PwmOut& rhs) {
gkroussos 0:dd0fea342ad2 139 write(rhs.read());
gkroussos 0:dd0fea342ad2 140 return *this;
gkroussos 0:dd0fea342ad2 141 }
gkroussos 0:dd0fea342ad2 142
gkroussos 0:dd0fea342ad2 143 /** An operator shorthand for read()
gkroussos 0:dd0fea342ad2 144 */
gkroussos 0:dd0fea342ad2 145 operator float() {
gkroussos 0:dd0fea342ad2 146 return read();
gkroussos 0:dd0fea342ad2 147 }
gkroussos 0:dd0fea342ad2 148 #endif
gkroussos 0:dd0fea342ad2 149
gkroussos 0:dd0fea342ad2 150 protected:
gkroussos 0:dd0fea342ad2 151 pwmout_t _pwm;
gkroussos 0:dd0fea342ad2 152 };
gkroussos 0:dd0fea342ad2 153
gkroussos 0:dd0fea342ad2 154 } // namespace mbed
gkroussos 0:dd0fea342ad2 155
gkroussos 0:dd0fea342ad2 156 #endif
gkroussos 0:dd0fea342ad2 157
gkroussos 0:dd0fea342ad2 158 #endif