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1/*
2Copyright 2012 Jun Wako <wakojun@gmail.com>
3
4This program is free software: you can redistribute it and/or modify
5it under the terms of the GNU General Public License as published by
6the Free Software Foundation, either version 2 of the License, or
7(at your option) any later version.
8
9This program is distributed in the hope that it will be useful,
10but WITHOUT ANY WARRANTY; without even the implied warranty of
11MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12GNU General Public License for more details.
13
14You should have received a copy of the GNU General Public License
15along with this program. If not, see <http://www.gnu.org/licenses/>.
16*/
17
18#include "hal.h"
19#include "led_custom.h"
20#include "rev7.h"
21#include "printf.h"
22
23static void breathing_callback(PWMDriver *pwmp);
24
25static PWMConfig pwmCFG = {
26 0xFFFF, /* PWM clock frequency */
27 256, /* PWM period (in ticks) 1S (1/10kHz=0.1mS 0.1ms*10000 ticks=1S) */
28 NULL, /* No Callback */
29 {
30 {PWM_OUTPUT_DISABLED, NULL},
31 {PWM_OUTPUT_DISABLED, NULL},
32 {PWM_OUTPUT_ACTIVE_HIGH, NULL}, /* Enable Channel 3 */
33 {PWM_OUTPUT_DISABLED, NULL}
34 },
35 0, /* HW dependent part.*/
36 0
37};
38
39static PWMConfig pwmCFG_breathing = {
40 0xFFFF, /* 10kHz PWM clock frequency */
41 256, /* PWM period (in ticks) 1S (1/10kHz=0.1mS 0.1ms*10000 ticks=1S) */
42 breathing_callback, /* Breathing Callback */
43 {
44 {PWM_OUTPUT_DISABLED, NULL},
45 {PWM_OUTPUT_DISABLED, NULL},
46 {PWM_OUTPUT_ACTIVE_HIGH, NULL}, /* Enable Channel 3 */
47 {PWM_OUTPUT_DISABLED, NULL}
48 },
49 0, /* HW dependent part.*/
50 0
51};
52
53// See http://jared.geek.nz/2013/feb/linear-led-pwm
54static uint16_t cie_lightness(uint16_t v) {
55 if (v <= 5243) // if below 8% of max
56 return v / 9; // same as dividing by 900%
57 else {
58 uint32_t y = (((uint32_t) v + 10486) << 8) / (10486 + 0xFFFFUL); // add 16% of max and compare
59 // to get a useful result with integer division, we shift left in the expression above
60 // and revert what we've done again after squaring.
61 y = y * y * y >> 8;
62 if (y > 0xFFFFUL) // prevent overflow
63 return 0xFFFFU;
64 else
65 return (uint16_t) y;
66 }
67}
68
69
70void backlight_init_ports(void) {
71 palSetPadMode(GPIOB, 8, PAL_MODE_ALTERNATE(2));
72 pwmStart(&PWMD4, &pwmCFG);
73 if(kb_backlight_config.enable){
74 if(kb_backlight_config.breathing){
75 breathing_enable();
76 } else{
77 backlight_set(kb_backlight_config.level);
78 }
79 } else {
80 backlight_set(0);
81 }
82}
83
84void backlight_set(uint8_t level) {
85 uint32_t duty = (uint32_t)(cie_lightness(0xFFFF * (uint32_t) level / BACKLIGHT_LEVELS));
86 if (level == 0) {
87 // Turn backlight off
88 // Disable channel 3 on PWM4
89 pwmDisableChannel(&PWMD4, 2);
90 } else {
91 // Turn backlight on
92 if(!is_breathing()){
93 // Enable channel 3 on PWM4
94 pwmEnableChannel(&PWMD4, 2, PWM_FRACTION_TO_WIDTH(&PWMD4,0xFFFF,duty));
95 }
96 }
97}
98
99
100uint8_t backlight_tick = 0;
101
102void backlight_task(void) {
103}
104
105#define BREATHING_NO_HALT 0
106#define BREATHING_HALT_OFF 1
107#define BREATHING_HALT_ON 2
108#define BREATHING_STEPS 128
109
110static uint8_t breathing_period = BREATHING_PERIOD;
111static uint8_t breathing_halt = BREATHING_NO_HALT;
112static uint16_t breathing_counter = 0;
113
114bool is_breathing(void) {
115 return PWMD4.config == &pwmCFG_breathing;
116}
117
118#define breathing_min() do {breathing_counter = 0;} while (0)
119#define breathing_max() do {breathing_counter = breathing_period * 256 / 2;} while (0)
120
121
122void breathing_interrupt_enable(void){
123 pwmStop(&PWMD4);
124 pwmStart(&PWMD4, &pwmCFG_breathing);
125 chSysLockFromISR();
126 pwmEnablePeriodicNotification(&PWMD4);
127 pwmEnableChannelI(
128 &PWMD4,
129 2,
130 PWM_FRACTION_TO_WIDTH(
131 &PWMD4,
132 0xFFFF,
133 0xFFFF
134 )
135 );
136 chSysUnlockFromISR();
137}
138
139void breathing_interrupt_disable(void){
140 pwmStop(&PWMD4);
141 pwmStart(&PWMD4, &pwmCFG);
142}
143
144void breathing_enable(void)
145{
146 breathing_counter = 0;
147 breathing_halt = BREATHING_NO_HALT;
148 breathing_interrupt_enable();
149}
150
151void breathing_pulse(void)
152{
153 if (kb_backlight_config.level == 0)
154 breathing_min();
155 else
156 breathing_max();
157 breathing_halt = BREATHING_HALT_ON;
158 breathing_interrupt_enable();
159}
160
161void breathing_disable(void)
162{
163 breathing_interrupt_disable();
164 // Restore backlight level
165 backlight_set(kb_backlight_config.level);
166}
167
168void breathing_self_disable(void)
169{
170 if (kb_backlight_config.level == 0)
171 breathing_halt = BREATHING_HALT_OFF;
172 else
173 breathing_halt = BREATHING_HALT_ON;
174}
175
176void breathing_toggle(void) {
177 if (is_breathing()){
178 breathing_disable();
179 } else {
180 breathing_enable();
181 }
182}
183
184void breathing_period_set(uint8_t value)
185{
186 if (!value)
187 value = 1;
188 breathing_period = value;
189}
190
191void breathing_period_default(void) {
192 breathing_period_set(BREATHING_PERIOD);
193}
194
195void breathing_period_inc(void)
196{
197 breathing_period_set(breathing_period+1);
198}
199
200void breathing_period_dec(void)
201{
202 breathing_period_set(breathing_period-1);
203}
204
205/* To generate breathing curve in python:
206 * from math import sin, pi; [int(sin(x/128.0*pi)**4*255) for x in range(128)]
207 */
208static const uint8_t breathing_table[BREATHING_STEPS] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 2, 3, 4, 5, 6, 8, 10, 12, 15, 17, 20, 24, 28, 32, 36, 41, 46, 51, 57, 63, 70, 76, 83, 91, 98, 106, 113, 121, 129, 138, 146, 154, 162, 170, 178, 185, 193, 200, 207, 213, 220, 225, 231, 235, 240, 244, 247, 250, 252, 253, 254, 255, 254, 253, 252, 250, 247, 244, 240, 235, 231, 225, 220, 213, 207, 200, 193, 185, 178, 170, 162, 154, 146, 138, 129, 121, 113, 106, 98, 91, 83, 76, 70, 63, 57, 51, 46, 41, 36, 32, 28, 24, 20, 17, 15, 12, 10, 8, 6, 5, 4, 3, 2, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
209
210// Use this before the cie_lightness function.
211static inline uint16_t scale_backlight(uint16_t v) {
212 return v / BACKLIGHT_LEVELS * kb_backlight_config.level;
213}
214
215static void breathing_callback(PWMDriver *pwmp)
216{
217 (void)pwmp;
218 uint16_t interval = (uint16_t) breathing_period * 256 / BREATHING_STEPS;
219 // resetting after one period to prevent ugly reset at overflow.
220 breathing_counter = (breathing_counter + 1) % (breathing_period * 256);
221 uint8_t index = breathing_counter / interval % BREATHING_STEPS;
222
223 if (((breathing_halt == BREATHING_HALT_ON) && (index == BREATHING_STEPS / 2)) ||
224 ((breathing_halt == BREATHING_HALT_OFF) && (index == BREATHING_STEPS - 1)))
225 {
226 breathing_interrupt_disable();
227 }
228
229 uint32_t duty = cie_lightness(scale_backlight(breathing_table[index] * 256));
230
231 chSysLockFromISR();
232 pwmEnableChannelI(
233 &PWMD4,
234 2,
235 PWM_FRACTION_TO_WIDTH(
236 &PWMD4,
237 0xFFFF,
238 duty
239 )
240 );
241 chSysUnlockFromISR();
242}