make pwm frequency configurable in temperaturecontrol ( allows for SSR heated beds )
[clinton/Smoothieware.git] / src / modules / tools / temperaturecontrol / TemperatureControl.cpp
CommitLineData
df27a6a3 1/*
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2 This file is part of Smoothie (http://smoothieware.org/). The motion control part is heavily based on Grbl (https://github.com/simen/grbl).
3 Smoothie is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version.
4 Smoothie is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
df27a6a3 5 You should have received a copy of the GNU General Public License along with Smoothie. If not, see <http://www.gnu.org/licenses/>.
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6*/
7
7b49793d 8// TODO : THIS FILE IS LAME, MUST BE MADE MUCH BETTER
cd011f58 9
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10#include "libs/Module.h"
11#include "libs/Kernel.h"
12#include <math.h>
13#include "TemperatureControl.h"
3c308aeb 14#include "TemperatureControlPool.h"
3c132bd0 15#include "libs/Pin.h"
e84c3be3 16#include "libs/Median.h"
3c4f2dd8 17#include "modules/robot/Conveyor.h"
8293d443 18#include "PublicDataRequest.h"
ded56b35 19
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20#include "MRI_Hooks.h"
21
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22TemperatureControl::TemperatureControl(uint16_t name) :
23 name_checksum(name), waiting(false), min_temp_violated(false) {}
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24
25void TemperatureControl::on_module_loaded(){
907d5e8a 26
81b547a1 27 // We start not desiring any temp
907d5e8a 28 this->target_temperature = UNDEFINED;
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29
30 // Settings
7dd8133c 31 this->on_config_reload(this);
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32
33 this->acceleration_factor = 10;
34
ded56b35 35 // Register for events
476dcb96 36 register_for_event(ON_CONFIG_RELOAD);
df27a6a3 37 this->register_for_event(ON_GCODE_EXECUTE);
b0be67b5 38 this->register_for_event(ON_GCODE_RECEIVED);
df27a6a3 39 this->register_for_event(ON_MAIN_LOOP);
8ccab7cf 40 this->register_for_event(ON_SECOND_TICK);
8293d443 41 this->register_for_event(ON_GET_PUBLIC_DATA);
991d98cc 42 this->register_for_event(ON_SET_PUBLIC_DATA);
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43}
44
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45void TemperatureControl::on_main_loop(void* argument){
46 if (this->min_temp_violated) {
482d02f0 47 kernel->streams->printf("Error: MINTEMP triggered on P%d.%d! check your thermistors!\n", this->thermistor_pin.port_number, this->thermistor_pin.pin);
7e57bc2c 48 this->min_temp_violated = false;
a7f12bed 49 }
7e57bc2c 50}
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51
52// Get configuration from the config file
53void TemperatureControl::on_config_reload(void* argument){
54
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55 // General config
56 this->set_m_code = this->kernel->config->value(temperature_control_checksum, this->name_checksum, set_m_code_checksum)->by_default(104)->as_number();
57 this->set_and_wait_m_code = this->kernel->config->value(temperature_control_checksum, this->name_checksum, set_and_wait_m_code_checksum)->by_default(109)->as_number();
58 this->get_m_code = this->kernel->config->value(temperature_control_checksum, this->name_checksum, get_m_code_checksum)->by_default(105)->as_number();
f39da6fe 59 this->readings_per_second = this->kernel->config->value(temperature_control_checksum, this->name_checksum, readings_per_second_checksum)->by_default(20)->as_number();
7dee00e4 60
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61 this->designator = this->kernel->config->value(temperature_control_checksum, this->name_checksum, designator_checksum)->by_default(string("T"))->as_string();
62
7dd8133c 63 // Values are here : http://reprap.org/wiki/Thermistor
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64 this->r0 = 100000;
65 this->t0 = 25;
a98f72da 66 this->beta = 4066;
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67 this->r1 = 0;
68 this->r2 = 4700;
a98f72da 69
3c132bd0 70 // Preset values for various common types of thermistors
df27a6a3 71 ConfigValue* thermistor = this->kernel->config->value(temperature_control_checksum, this->name_checksum, thermistor_checksum);
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72 if( thermistor->value.compare("EPCOS100K" ) == 0 ){ // Default
73 }else if( thermistor->value.compare("RRRF100K" ) == 0 ){ this->beta = 3960;
74 }else if( thermistor->value.compare("RRRF10K" ) == 0 ){ this->beta = 3964; this->r0 = 10000; this->r1 = 680; this->r2 = 1600;
75 }else if( thermistor->value.compare("Honeywell100K") == 0 ){ this->beta = 3974;
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76 }else if( thermistor->value.compare("Semitec" ) == 0 ){ this->beta = 4267;
77 }else if( thermistor->value.compare("HT100K" ) == 0 ){ this->beta = 3990; }
a98f72da 78
3c132bd0 79 // Preset values are overriden by specified values
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80 this->r0 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, r0_checksum )->by_default(this->r0 )->as_number(); // Stated resistance eg. 100K
81 this->t0 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, t0_checksum )->by_default(this->t0 )->as_number(); // Temperature at stated resistance, eg. 25C
82 this->beta = this->kernel->config->value(temperature_control_checksum, this->name_checksum, beta_checksum)->by_default(this->beta)->as_number(); // Thermistor beta rating. See http://reprap.org/bin/view/Main/MeasuringThermistorBeta
83 this->r1 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, r1_checksum )->by_default(this->r1 )->as_number();
84 this->r2 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, r2_checksum )->by_default(this->r2 )->as_number();
85
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86 this->preset1 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, preset1_checksum)->by_default(0)->as_number();
87 this->preset2 = this->kernel->config->value(temperature_control_checksum, this->name_checksum, preset2_checksum)->by_default(0)->as_number();
88
907d5e8a 89
df27a6a3 90 // Thermistor math
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91 j = (1.0 / beta);
92 k = (1.0 / (t0 + 273.15));
93
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94 // sigma-delta output modulation
95 o = 0;
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96
97 // Thermistor pin for ADC readings
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98 this->thermistor_pin.from_string(this->kernel->config->value(temperature_control_checksum, this->name_checksum, thermistor_pin_checksum )->required()->as_string());
99 this->kernel->adc->enable_pin(&thermistor_pin);
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100
101 // Heater pin
7dee00e4 102 this->heater_pin.from_string( this->kernel->config->value(temperature_control_checksum, this->name_checksum, heater_pin_checksum)->required()->as_string())->as_output();
a7f12bed 103 this->heater_pin.max_pwm( this->kernel->config->value(temperature_control_checksum, this->name_checksum, max_pwm_checksum)->by_default(255)->as_number() );
7dee00e4 104 this->heater_pin.set(0);
7dd8133c 105
cb3460e9 106 set_low_on_debug(heater_pin.port_number, heater_pin.pin);
8f91e4e6 107
907d5e8a 108 // activate SD-DAC timer
965ec1a4 109 this->kernel->slow_ticker->attach( this->kernel->config->value(temperature_control_checksum, this->name_checksum, pwm_frequency_checksum)->by_default(2000)->as_number() , &heater_pin, &Pwm::on_tick);
907d5e8a 110
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111 // reading tick
112 this->kernel->slow_ticker->attach( this->readings_per_second, this, &TemperatureControl::thermistor_read_tick );
113
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114 // PID
115 this->p_factor = this->kernel->config->value(temperature_control_checksum, this->name_checksum, p_factor_checksum)->by_default(10 )->as_number();
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116 this->i_factor = this->kernel->config->value(temperature_control_checksum, this->name_checksum, i_factor_checksum)->by_default(0.3)->as_number();
117 this->d_factor = this->kernel->config->value(temperature_control_checksum, this->name_checksum, d_factor_checksum)->by_default(200)->as_number();
4b9388c2 118 this->i_max = this->kernel->config->value(temperature_control_checksum, this->name_checksum, i_max_checksum )->by_default(255)->as_number();
b6a72b99 119 this->i = 0.0;
907d5e8a 120 this->last_reading = 0.0;
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121}
122
3c4f2dd8 123void TemperatureControl::on_gcode_received(void* argument){
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124 Gcode* gcode = static_cast<Gcode*>(argument);
125 if (gcode->has_m)
126 {
127 // Get temperature
128 if( gcode->m == this->get_m_code ){
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129 char buf[32]; // should be big enough for any status
130 int n= snprintf(buf, sizeof(buf), "%s:%3.1f /%3.1f @%d ", this->designator.c_str(), this->get_temperature(), ((target_temperature == UNDEFINED)?0.0:target_temperature), this->o);
131 gcode->txt_after_ok.append(buf, n);
a24ab0ac 132 gcode->mark_as_taken();
b0be67b5 133 }
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134 if (gcode->m == 301)
135 {
74b6303c 136 gcode->mark_as_taken();
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137 if (gcode->has_letter('S') && (gcode->get_value('S') == this->pool_index))
138 {
139 if (gcode->has_letter('P'))
140 this->p_factor = gcode->get_value('P');
141 if (gcode->has_letter('I'))
142 this->i_factor = gcode->get_value('I');
143 if (gcode->has_letter('D'))
144 this->d_factor = gcode->get_value('D');
145 if (gcode->has_letter('X'))
146 this->i_max = gcode->get_value('X');
147 }
148 gcode->stream->printf("%s(S%d): Pf:%g If:%g Df:%g X(I_max):%g Pv:%g Iv:%g Dv:%g O:%d\n", this->designator.c_str(), this->pool_index, this->p_factor, this->i_factor, this->d_factor, this->i_max, this->p, this->i, this->d, o);
149 }
150 if (gcode->m == 303)
151 {
74b6303c 152 gcode->mark_as_taken();
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153 if (gcode->has_letter('S') && (gcode->get_value('S') == this->pool_index))
154 {
155 double target = 150.0;
156 if (gcode->has_letter('P'))
157 {
158 target = gcode->get_value('P');
159 gcode->stream->printf("Target: %5.1f\n", target);
160 }
161 gcode->stream->printf("Start PID tune, command is %s\n", gcode->command.c_str());
162 this->pool->PIDtuner->begin(this, target, gcode->stream);
163 }
164 }
cf1a7632 165
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166 // Attach gcodes to the last block for on_gcode_execute
167 if( ( gcode->m == this->set_m_code || gcode->m == this->set_and_wait_m_code ) && gcode->has_letter('S') ){
168 if( this->kernel->conveyor->queue.size() == 0 ){
169 this->kernel->call_event(ON_GCODE_EXECUTE, gcode );
170 }else{
171 Block* block = this->kernel->conveyor->queue.get_ref( this->kernel->conveyor->queue.size() - 1 );
172 block->append_gcode(gcode);
3c4f2dd8 173 }
cf1a7632 174
3c4f2dd8 175 }
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176 }
177}
db453125 178
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179void TemperatureControl::on_gcode_execute(void* argument){
180 Gcode* gcode = static_cast<Gcode*>(argument);
e6b5ae25 181 if( gcode->has_m){
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182 if (((gcode->m == this->set_m_code) || (gcode->m == this->set_and_wait_m_code))
183 && gcode->has_letter('S'))
907d5e8a 184 {
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185 double v = gcode->get_value('S');
186
cf1a7632 187 if (v == 0.0)
eabf7a9b 188 {
907d5e8a 189 this->target_temperature = UNDEFINED;
7dee00e4 190 this->heater_pin.set(0);
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191 }
192 else
193 {
f4bd4fc3 194 this->set_desired_temperature(v);
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195
196 if( gcode->m == this->set_and_wait_m_code)
197 {
74b6303c 198 gcode->mark_as_taken();
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199 this->kernel->pauser->take();
200 this->waiting = true;
201 }
907d5e8a 202 }
df27a6a3 203 }
df27a6a3 204 }
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205}
206
8293d443 207void TemperatureControl::on_get_public_data(void* argument){
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208 PublicDataRequest* pdr = static_cast<PublicDataRequest*>(argument);
209
210 if(!pdr->starts_with(temperature_control_checksum)) return;
211
212 if(!pdr->second_element_is(this->name_checksum)) return; // will be bed or hotend
213
214 // ok this is targeted at us, so send back the requested data
215 if(pdr->third_element_is(current_temperature_checksum)) {
216 // this must be static as it will be accessed long after we have returned
217 static struct pad_temperature temp_return;
218 temp_return.current_temperature= this->get_temperature();
219 temp_return.target_temperature= (target_temperature == UNDEFINED) ? 0 : this->target_temperature;
220 temp_return.pwm= this->o;
221
222 pdr->set_data_ptr(&temp_return);
223 pdr->set_taken();
224 }
8293d443 225}
db453125 226
77047e76 227void TemperatureControl::on_set_public_data(void* argument){
991d98cc 228 PublicDataRequest* pdr = static_cast<PublicDataRequest*>(argument);
77047e76 229
991d98cc 230 if(!pdr->starts_with(temperature_control_checksum)) return;
77047e76 231
991d98cc 232 if(!pdr->second_element_is(this->name_checksum)) return; // will be bed or hotend
77047e76 233
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234 // ok this is targeted at us, so set the temp
235 double t= *static_cast<double*>(pdr->get_data_ptr());
236 this->set_desired_temperature(t);
237 pdr->set_taken();
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238}
239
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240void TemperatureControl::set_desired_temperature(double desired_temperature)
241{
242 if (desired_temperature == 1.0)
243 desired_temperature = preset1;
244 else if (desired_temperature == 2.0)
245 desired_temperature = preset2;
246
907d5e8a 247 target_temperature = desired_temperature;
959dc7db 248 if (desired_temperature == 0.0)
7dee00e4 249 heater_pin.set((o = 0));
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250}
251
252double TemperatureControl::get_temperature(){
907d5e8a 253 return last_reading;
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254}
255
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256double TemperatureControl::adc_value_to_temperature(int adc_value)
257{
258 if ((adc_value == 4095) || (adc_value == 0))
259 return INFINITY;
260 double r = r2 / ((4095.0 / adc_value) - 1.0);
261 if (r1 > 0)
262 r = (r1 * r) / (r1 - r);
263 return (1.0 / (k + (j * log(r / r0)))) - 273.15;
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264}
265
8b8b3339 266uint32_t TemperatureControl::thermistor_read_tick(uint32_t dummy){
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267 int r = new_thermistor_reading();
268
269 double temperature = adc_value_to_temperature(r);
270
271 if (target_temperature > 0)
272 {
273 if ((r <= 1) || (r >= 4094))
36a3f3f0 274 {
7e57bc2c 275 this->min_temp_violated = true;
907d5e8a 276 target_temperature = UNDEFINED;
7dee00e4 277 heater_pin.set(0);
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278 }
279 else
280 {
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281 pid_process(temperature);
282 if ((temperature > target_temperature) && waiting)
36a3f3f0 283 {
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284 kernel->pauser->release();
285 waiting = false;
81b547a1 286 }
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287 }
288 }
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289 else
290 {
7dee00e4 291 heater_pin.set((o = 0));
959dc7db 292 }
907d5e8a 293 last_reading = temperature;
281967e4 294 return 0;
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295}
296
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297void TemperatureControl::pid_process(double temperature)
298{
299 double error = target_temperature - temperature;
ded56b35 300
8cdae54c 301 p = error * p_factor;
b6a72b99 302 i += (error * this->i_factor);
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303 // d was imbued with oldest_raw earlier in new_thermistor_reading
304 d = adc_value_to_temperature(d);
305 d = (d - temperature) * this->d_factor;
ded56b35 306
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307 if (i > this->i_max)
308 i = this->i_max;
309 if (i < -this->i_max)
310 i = -this->i_max;
ded56b35 311
7dee00e4 312 this->o = (p + i + d) * heater_pin.max_pwm() / 256;
8cdae54c 313
7dee00e4 314 if (this->o >= heater_pin.max_pwm())
7dee00e4 315 this->o = heater_pin.max_pwm();
27aecda6 316 else if (this->o < 0)
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317 this->o = 0;
318
27aecda6 319 this->heater_pin.pwm(this->o);
907d5e8a 320}
ded56b35 321
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322int TemperatureControl::new_thermistor_reading()
323{
7dee00e4 324 int last_raw = this->kernel->adc->read(&thermistor_pin);
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325 if (queue.size() >= queue.capacity())
326 {
327 uint16_t l;
328 queue.pop_front(l);
827a49ca 329 d = l;
907d5e8a 330 }
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331 uint16_t r = last_raw;
332 queue.push_back(r);
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333 for (int i=0; i<queue.size(); i++)
334 median_buffer[i] = *queue.get_ref(i);
335 uint16_t m = median_buffer[quick_median(median_buffer, queue.size())];
336 return m;
907d5e8a 337}
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338
339void TemperatureControl::on_second_tick(void* argument)
340{
341 if (waiting)
8f91e4e6 342 kernel->streams->printf("%s:%3.1f /%3.1f @%d\n", designator.c_str(), get_temperature(), ((target_temperature == UNDEFINED)?0.0:target_temperature), o);
8ccab7cf 343}