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author | skullY <skullydazed@gmail.com> | 2019-01-23 15:43:48 -0800 |
---|---|---|
committer | skullydazed <skullydazed@users.noreply.github.com> | 2019-02-10 15:37:12 -0800 |
commit | fd698c43d78ebbc42c1eb2bec74078b791616ad1 (patch) | |
tree | f55a2cd8a3af7052d9244e5ad96dd3fffa6fb5e0 | |
parent | aeafcc9fd3f41fce6506af5ccf9d9a1fe3b968d8 (diff) | |
download | qmk_firmware-fd698c43d78ebbc42c1eb2bec74078b791616ad1.tar.gz qmk_firmware-fd698c43d78ebbc42c1eb2bec74078b791616ad1.zip |
The beginning of a simple led matrix driver for is31fl3731
-rw-r--r-- | common_features.mk | 20 | ||||
-rw-r--r-- | docs/feature_led_matrix.md | 217 | ||||
-rw-r--r-- | drivers/issi/is31fl3731-simple.c | 240 | ||||
-rw-r--r-- | drivers/issi/is31fl3731-simple.h | 209 | ||||
-rw-r--r-- | quantum/led_matrix.c | 404 | ||||
-rw-r--r-- | quantum/led_matrix.h | 142 | ||||
-rw-r--r-- | quantum/led_matrix_drivers.c | 147 | ||||
-rw-r--r-- | quantum/rgb_matrix.h | 12 |
8 files changed, 1380 insertions, 11 deletions
diff --git a/common_features.mk b/common_features.mk index 8c3361732..8c7043cb7 100644 --- a/common_features.mk +++ b/common_features.mk | |||
@@ -114,8 +114,26 @@ ifeq ($(strip $(RGBLIGHT_ENABLE)), yes) | |||
114 | endif | 114 | endif |
115 | endif | 115 | endif |
116 | 116 | ||
117 | RGB_MATRIX_ENABLE ?= no | ||
118 | VALID_MATRIX_TYPES := yes IS31FL3731 IS31FL3733 custom | 117 | VALID_MATRIX_TYPES := yes IS31FL3731 IS31FL3733 custom |
118 | |||
119 | LED_MATRIX_ENABLE ?= no | ||
120 | ifneq ($(strip $(LED_MATRIX_ENABLE)), no) | ||
121 | ifeq ($(filter $(LED_MATRIX_ENABLE),$(VALID_MATRIX_TYPES)),) | ||
122 | $(error LED_MATRIX_ENABLE="$(LED_MATRIX_ENABLE)" is not a valid matrix type) | ||
123 | endif | ||
124 | OPT_DEFS += -DLED_MATRIX_ENABLE | ||
125 | SRC += $(QUANTUM_DIR)/led_matrix.c | ||
126 | SRC += $(QUANTUM_DIR)/led_matrix_drivers.c | ||
127 | endif | ||
128 | |||
129 | ifeq ($(strip $(LED_MATRIX_ENABLE)), IS31FL3731) | ||
130 | OPT_DEFS += -DIS31FL3731 | ||
131 | COMMON_VPATH += $(DRIVER_PATH)/issi | ||
132 | SRC += is31fl3731-simple.c | ||
133 | SRC += i2c_master.c | ||
134 | endif | ||
135 | |||
136 | RGB_MATRIX_ENABLE ?= no | ||
119 | ifneq ($(strip $(RGB_MATRIX_ENABLE)), no) | 137 | ifneq ($(strip $(RGB_MATRIX_ENABLE)), no) |
120 | ifeq ($(filter $(RGB_MATRIX_ENABLE),$(VALID_MATRIX_TYPES)),) | 138 | ifeq ($(filter $(RGB_MATRIX_ENABLE),$(VALID_MATRIX_TYPES)),) |
121 | $(error RGB_MATRIX_ENABLE="$(RGB_MATRIX_ENABLE)" is not a valid matrix type) | 139 | $(error RGB_MATRIX_ENABLE="$(RGB_MATRIX_ENABLE)" is not a valid matrix type) |
diff --git a/docs/feature_led_matrix.md b/docs/feature_led_matrix.md new file mode 100644 index 000000000..5a62cc530 --- /dev/null +++ b/docs/feature_led_matrix.md | |||
@@ -0,0 +1,217 @@ | |||
1 | # RGB Matrix Lighting | ||
2 | |||
3 | ## Driver configuration | ||
4 | |||
5 | ### IS31FL3731 | ||
6 | |||
7 | There is basic support for addressable RGB matrix lighting with the I2C IS31FL3731 RGB controller. To enable it, add this to your `rules.mk`: | ||
8 | |||
9 | LED_MATRIX_ENABLE = IS31FL3731 | ||
10 | |||
11 | Configure the hardware via your `config.h`: | ||
12 | |||
13 | // This is a 7-bit address, that gets left-shifted and bit 0 | ||
14 | // set to 0 for write, 1 for read (as per I2C protocol) | ||
15 | // The address will vary depending on your wiring: | ||
16 | // 0b1110100 AD <-> GND | ||
17 | // 0b1110111 AD <-> VCC | ||
18 | // 0b1110101 AD <-> SCL | ||
19 | // 0b1110110 AD <-> SDA | ||
20 | #define LED_DRIVER_ADDR_1 0b1110100 | ||
21 | #define LED_DRIVER_ADDR_2 0b1110110 | ||
22 | |||
23 | #define LED_DRIVER_COUNT 2 | ||
24 | #define LED_DRIVER_1_LED_TOTAL 25 | ||
25 | #define LED_DRIVER_2_LED_TOTAL 24 | ||
26 | #define LED_DRIVER_LED_TOTAL LED_DRIVER_1_LED_TOTAL + LED_DRIVER_2_LED_TOTAL | ||
27 | |||
28 | Currently only 2 drivers are supported, but it would be trivial to support all 4 combinations. | ||
29 | |||
30 | Define these arrays listing all the LEDs in your `<keyboard>.c`: | ||
31 | |||
32 | const is31_led g_is31_leds[DRIVER_LED_TOTAL] = { | ||
33 | /* Refer to IS31 manual for these locations | ||
34 | * driver | ||
35 | * | R location | ||
36 | * | | G location | ||
37 | * | | | B location | ||
38 | * | | | | */ | ||
39 | {0, C1_3, C2_3, C3_3}, | ||
40 | .... | ||
41 | } | ||
42 | |||
43 | Where `Cx_y` is the location of the LED in the matrix defined by [the datasheet](http://www.issi.com/WW/pdf/31FL3731.pdf) and the header file `drivers/issi/is31fl3731.h`. The `driver` is the index of the driver you defined in your `config.h` (`0` or `1` right now). | ||
44 | |||
45 | ### IS31FL3733 | ||
46 | |||
47 | There is basic support for addressable RGB matrix lighting with the I2C IS31FL3733 RGB controller. To enable it, add this to your `rules.mk`: | ||
48 | |||
49 | RGB_MATRIX_ENABLE = IS31FL3733 | ||
50 | |||
51 | Configure the hardware via your `config.h`: | ||
52 | |||
53 | // This is a 7-bit address, that gets left-shifted and bit 0 | ||
54 | // set to 0 for write, 1 for read (as per I2C protocol) | ||
55 | // The address will vary depending on your wiring: | ||
56 | // 00 <-> GND | ||
57 | // 01 <-> SCL | ||
58 | // 10 <-> SDA | ||
59 | // 11 <-> VCC | ||
60 | // ADDR1 represents A1:A0 of the 7-bit address. | ||
61 | // ADDR2 represents A3:A2 of the 7-bit address. | ||
62 | // The result is: 0b101(ADDR2)(ADDR1) | ||
63 | #define DRIVER_ADDR_1 0b1010000 | ||
64 | #define DRIVER_ADDR_2 0b1010000 // this is here for compliancy reasons. | ||
65 | |||
66 | #define DRIVER_COUNT 1 | ||
67 | #define DRIVER_1_LED_TOTAL 64 | ||
68 | #define DRIVER_LED_TOTAL DRIVER_1_LED_TOTAL | ||
69 | |||
70 | Currently only a single drivers is supported, but it would be trivial to support all 4 combinations. For now define `DRIVER_ADDR_2` as `DRIVER_ADDR_1` | ||
71 | |||
72 | Define these arrays listing all the LEDs in your `<keyboard>.c`: | ||
73 | |||
74 | const is31_led g_is31_leds[DRIVER_LED_TOTAL] = { | ||
75 | /* Refer to IS31 manual for these locations | ||
76 | * driver | ||
77 | * | R location | ||
78 | * | | G location | ||
79 | * | | | B location | ||
80 | * | | | | */ | ||
81 | {0, B_1, A_1, C_1}, | ||
82 | .... | ||
83 | } | ||
84 | |||
85 | Where `X_Y` is the location of the LED in the matrix defined by [the datasheet](http://www.issi.com/WW/pdf/31FL3733.pdf) and the header file `drivers/issi/is31fl3733.h`. The `driver` is the index of the driver you defined in your `config.h` (Only `0` right now). | ||
86 | |||
87 | From this point forward the configuration is the same for all the drivers. | ||
88 | |||
89 | const rgb_led g_rgb_leds[DRIVER_LED_TOTAL] = { | ||
90 | /* {row | col << 4} | ||
91 | * | {x=0..224, y=0..64} | ||
92 | * | | modifier | ||
93 | * | | | */ | ||
94 | {{0|(0<<4)}, {20.36*0, 21.33*0}, 1}, | ||
95 | {{0|(1<<4)}, {20.36*1, 21.33*0}, 1}, | ||
96 | .... | ||
97 | } | ||
98 | |||
99 | The format for the matrix position used in this array is `{row | (col << 4)}`. The `x` is between (inclusive) 0-224, and `y` is between (inclusive) 0-64. The easiest way to calculate these positions is: | ||
100 | |||
101 | x = 224 / ( NUMBER_OF_ROWS - 1 ) * ROW_POSITION | ||
102 | y = 64 / (NUMBER_OF_COLS - 1 ) * COL_POSITION | ||
103 | |||
104 | Where all variables are decimels/floats. | ||
105 | |||
106 | `modifier` is a boolean, whether or not a certain key is considered a modifier (used in some effects). | ||
107 | |||
108 | ## Keycodes | ||
109 | |||
110 | All RGB keycodes are currently shared with the RGBLIGHT system: | ||
111 | |||
112 | * `RGB_TOG` - toggle | ||
113 | * `RGB_MOD` - cycle through modes | ||
114 | * `RGB_HUI` - increase hue | ||
115 | * `RGB_HUD` - decrease hue | ||
116 | * `RGB_SAI` - increase saturation | ||
117 | * `RGB_SAD` - decrease saturation | ||
118 | * `RGB_VAI` - increase value | ||
119 | * `RGB_VAD` - decrease value | ||
120 | * `RGB_SPI` - increase speed effect (no EEPROM support) | ||
121 | * `RGB_SPD` - decrease speed effect (no EEPROM support) | ||
122 | |||
123 | |||
124 | * `RGB_MODE_*` keycodes will generally work, but are not currently mapped to the correct effects for the RGB Matrix system | ||
125 | |||
126 | ## RGB Matrix Effects | ||
127 | |||
128 | These are the effects that are currently available: | ||
129 | |||
130 | enum rgb_matrix_effects { | ||
131 | RGB_MATRIX_SOLID_COLOR = 1, | ||
132 | RGB_MATRIX_ALPHAS_MODS, | ||
133 | RGB_MATRIX_DUAL_BEACON, | ||
134 | RGB_MATRIX_GRADIENT_UP_DOWN, | ||
135 | RGB_MATRIX_RAINDROPS, | ||
136 | RGB_MATRIX_CYCLE_ALL, | ||
137 | RGB_MATRIX_CYCLE_LEFT_RIGHT, | ||
138 | RGB_MATRIX_CYCLE_UP_DOWN, | ||
139 | RGB_MATRIX_RAINBOW_BEACON, | ||
140 | RGB_MATRIX_RAINBOW_PINWHEELS, | ||
141 | RGB_MATRIX_RAINBOW_MOVING_CHEVRON, | ||
142 | RGB_MATRIX_JELLYBEAN_RAINDROPS, | ||
143 | RGB_MATRIX_DIGITAL_RAIN, | ||
144 | #ifdef RGB_MATRIX_KEYPRESSES | ||
145 | RGB_MATRIX_SOLID_REACTIVE, | ||
146 | RGB_MATRIX_SPLASH, | ||
147 | RGB_MATRIX_MULTISPLASH, | ||
148 | RGB_MATRIX_SOLID_SPLASH, | ||
149 | RGB_MATRIX_SOLID_MULTISPLASH, | ||
150 | #endif | ||
151 | RGB_MATRIX_EFFECT_MAX | ||
152 | }; | ||
153 | |||
154 | You can disable a single effect by defining `DISABLE_[EFFECT_NAME]` in your `config.h`: | ||
155 | |||
156 | |||
157 | |Define |Description | | ||
158 | |---------------------------------------------------|--------------------------------------------| | ||
159 | |`#define DISABLE_RGB_MATRIX_ALPHAS_MODS` |Disables `RGB_MATRIX_ALPHAS_MODS` | | ||
160 | |`#define DISABLE_RGB_MATRIX_DUAL_BEACON` |Disables `RGB_MATRIX_DUAL_BEACON` | | ||
161 | |`#define DISABLE_RGB_MATRIX_GRADIENT_UP_DOWN` |Disables `RGB_MATRIX_GRADIENT_UP_DOWN` | | ||
162 | |`#define DISABLE_RGB_MATRIX_RAINDROPS` |Disables `RGB_MATRIX_RAINDROPS` | | ||
163 | |`#define DISABLE_RGB_MATRIX_CYCLE_ALL` |Disables `RGB_MATRIX_CYCLE_ALL` | | ||
164 | |`#define DISABLE_RGB_MATRIX_CYCLE_LEFT_RIGHT` |Disables `RGB_MATRIX_CYCLE_LEFT_RIGHT` | | ||
165 | |`#define DISABLE_RGB_MATRIX_CYCLE_UP_DOWN` |Disables `RGB_MATRIX_CYCLE_UP_DOWN` | | ||
166 | |`#define DISABLE_RGB_MATRIX_RAINBOW_BEACON` |Disables `RGB_MATRIX_RAINBOW_BEACON` | | ||
167 | |`#define DISABLE_RGB_MATRIX_RAINBOW_PINWHEELS` |Disables `RGB_MATRIX_RAINBOW_PINWHEELS` | | ||
168 | |`#define DISABLE_RGB_MATRIX_RAINBOW_MOVING_CHEVRON`|Disables `RGB_MATRIX_RAINBOW_MOVING_CHEVRON`| | ||
169 | |`#define DISABLE_RGB_MATRIX_JELLYBEAN_RAINDROPS` |Disables `RGB_MATRIX_JELLYBEAN_RAINDROPS` | | ||
170 | |`#define DISABLE_RGB_MATRIX_DIGITAL_RAIN` |Disables `RGB_MATRIX_DIGITAL_RAIN` | | ||
171 | |`#define DISABLE_RGB_MATRIX_SOLID_REACTIVE` |Disables `RGB_MATRIX_SOLID_REACTIVE` | | ||
172 | |`#define DISABLE_RGB_MATRIX_SPLASH` |Disables `RGB_MATRIX_SPLASH` | | ||
173 | |`#define DISABLE_RGB_MATRIX_MULTISPLASH` |Disables `RGB_MATRIX_MULTISPLASH` | | ||
174 | |`#define DISABLE_RGB_MATRIX_SOLID_SPLASH` |Disables `RGB_MATRIX_SOLID_SPLASH` | | ||
175 | |`#define DISABLE_RGB_MATRIX_SOLID_MULTISPLASH` |Disables `RGB_MATRIX_SOLID_MULTISPLASH` | | ||
176 | |||
177 | |||
178 | ## Custom layer effects | ||
179 | |||
180 | Custom layer effects can be done by defining this in your `<keyboard>.c`: | ||
181 | |||
182 | void rgb_matrix_indicators_kb(void) { | ||
183 | rgb_matrix_set_color(index, red, green, blue); | ||
184 | } | ||
185 | |||
186 | A similar function works in the keymap as `rgb_matrix_indicators_user`. | ||
187 | |||
188 | ## Additional `config.h` Options | ||
189 | |||
190 | #define RGB_MATRIX_KEYPRESSES // reacts to keypresses (will slow down matrix scan by a lot) | ||
191 | #define RGB_MATRIX_KEYRELEASES // reacts to keyreleases (not recommened) | ||
192 | #define RGB_DISABLE_AFTER_TIMEOUT 0 // number of ticks to wait until disabling effects | ||
193 | #define RGB_DISABLE_WHEN_USB_SUSPENDED false // turn off effects when suspended | ||
194 | #define RGB_MATRIX_SKIP_FRAMES 1 // number of frames to skip when displaying animations (0 is full effect) if not defined defaults to 1 | ||
195 | #define RGB_MATRIX_MAXIMUM_BRIGHTNESS 200 // limits maximum brightness of LEDs to 200 out of 255. If not defined maximum brightness is set to 255 | ||
196 | |||
197 | ## EEPROM storage | ||
198 | |||
199 | The EEPROM for it is currently shared with the RGBLIGHT system (it's generally assumed only one RGB would be used at a time), but could be configured to use its own 32bit address with: | ||
200 | |||
201 | #define EECONFIG_RGB_MATRIX (uint32_t *)16 | ||
202 | |||
203 | Where `16` is an unused index from `eeconfig.h`. | ||
204 | |||
205 | ## Suspended state | ||
206 | |||
207 | To use the suspend feature, add this to your `<keyboard>.c`: | ||
208 | |||
209 | void suspend_power_down_kb(void) | ||
210 | { | ||
211 | rgb_matrix_set_suspend_state(true); | ||
212 | } | ||
213 | |||
214 | void suspend_wakeup_init_kb(void) | ||
215 | { | ||
216 | rgb_matrix_set_suspend_state(false); | ||
217 | } | ||
diff --git a/drivers/issi/is31fl3731-simple.c b/drivers/issi/is31fl3731-simple.c new file mode 100644 index 000000000..46d51dac7 --- /dev/null +++ b/drivers/issi/is31fl3731-simple.c | |||
@@ -0,0 +1,240 @@ | |||
1 | /* Copyright 2017 Jason Williams | ||
2 | * Copyright 2018 Jack Humbert | ||
3 | * | ||
4 | * This program is free software: you can redistribute it and/or modify | ||
5 | * it under the terms of the GNU General Public License as published by | ||
6 | * the Free Software Foundation, either version 2 of the License, or | ||
7 | * (at your option) any later version. | ||
8 | * | ||
9 | * This program is distributed in the hope that it will be useful, | ||
10 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
11 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
12 | * GNU General Public License for more details. | ||
13 | * | ||
14 | * You should have received a copy of the GNU General Public License | ||
15 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
16 | */ | ||
17 | |||
18 | #ifdef __AVR__ | ||
19 | #include <avr/interrupt.h> | ||
20 | #include <avr/io.h> | ||
21 | #include <util/delay.h> | ||
22 | #else | ||
23 | #include "wait.h" | ||
24 | #endif | ||
25 | |||
26 | #include <stdint.h> | ||
27 | #include <stdbool.h> | ||
28 | #include <string.h> | ||
29 | #include "is31fl3731-simple.h" | ||
30 | #include "i2c_master.h" | ||
31 | #include "progmem.h" | ||
32 | |||
33 | // This is a 7-bit address, that gets left-shifted and bit 0 | ||
34 | // set to 0 for write, 1 for read (as per I2C protocol) | ||
35 | // The address will vary depending on your wiring: | ||
36 | // 0b1110100 AD <-> GND | ||
37 | // 0b1110111 AD <-> VCC | ||
38 | // 0b1110101 AD <-> SCL | ||
39 | // 0b1110110 AD <-> SDA | ||
40 | #define ISSI_ADDR_DEFAULT 0x74 | ||
41 | |||
42 | #define ISSI_REG_CONFIG 0x00 | ||
43 | #define ISSI_REG_CONFIG_PICTUREMODE 0x00 | ||
44 | #define ISSI_REG_CONFIG_AUTOPLAYMODE 0x08 | ||
45 | #define ISSI_REG_CONFIG_AUDIOPLAYMODE 0x18 | ||
46 | |||
47 | #define ISSI_CONF_PICTUREMODE 0x00 | ||
48 | #define ISSI_CONF_AUTOFRAMEMODE 0x04 | ||
49 | #define ISSI_CONF_AUDIOMODE 0x08 | ||
50 | |||
51 | #define ISSI_REG_PICTUREFRAME 0x01 | ||
52 | |||
53 | #define ISSI_REG_SHUTDOWN 0x0A | ||
54 | #define ISSI_REG_AUDIOSYNC 0x06 | ||
55 | |||
56 | #define ISSI_COMMANDREGISTER 0xFD | ||
57 | #define ISSI_BANK_FUNCTIONREG 0x0B // helpfully called 'page nine' | ||
58 | |||
59 | #ifndef ISSI_TIMEOUT | ||
60 | #define ISSI_TIMEOUT 100 | ||
61 | #endif | ||
62 | |||
63 | #ifndef ISSI_PERSISTENCE | ||
64 | #define ISSI_PERSISTENCE 0 | ||
65 | #endif | ||
66 | |||
67 | // Transfer buffer for TWITransmitData() | ||
68 | uint8_t g_twi_transfer_buffer[20]; | ||
69 | |||
70 | // These buffers match the IS31FL3731 PWM registers 0x24-0xB3. | ||
71 | // Storing them like this is optimal for I2C transfers to the registers. | ||
72 | // We could optimize this and take out the unused registers from these | ||
73 | // buffers and the transfers in IS31FL3731_write_pwm_buffer() but it's | ||
74 | // probably not worth the extra complexity. | ||
75 | uint8_t g_pwm_buffer[DRIVER_COUNT][144]; | ||
76 | bool g_pwm_buffer_update_required = false; | ||
77 | |||
78 | uint8_t g_led_control_registers[DRIVER_COUNT][18] = { { 0 }, { 0 } }; | ||
79 | bool g_led_control_registers_update_required = false; | ||
80 | |||
81 | // This is the bit pattern in the LED control registers | ||
82 | // (for matrix A, add one to register for matrix B) | ||
83 | // | ||
84 | // reg - b7 b6 b5 b4 b3 b2 b1 b0 | ||
85 | // 0x00 - R08,R07,R06,R05,R04,R03,R02,R01 | ||
86 | // 0x02 - G08,G07,G06,G05,G04,G03,G02,R00 | ||
87 | // 0x04 - B08,B07,B06,B05,B04,B03,G01,G00 | ||
88 | // 0x06 - - , - , - , - , - ,B02,B01,B00 | ||
89 | // 0x08 - - , - , - , - , - , - , - , - | ||
90 | // 0x0A - B17,B16,B15, - , - , - , - , - | ||
91 | // 0x0C - G17,G16,B14,B13,B12,B11,B10,B09 | ||
92 | // 0x0E - R17,G15,G14,G13,G12,G11,G10,G09 | ||
93 | // 0x10 - R16,R15,R14,R13,R12,R11,R10,R09 | ||
94 | |||
95 | |||
96 | void IS31FL3731_write_register(uint8_t addr, uint8_t reg, uint8_t data) { | ||
97 | g_twi_transfer_buffer[0] = reg; | ||
98 | g_twi_transfer_buffer[1] = data; | ||
99 | |||
100 | #if ISSI_PERSISTENCE > 0 | ||
101 | for (uint8_t i = 0; i < ISSI_PERSISTENCE; i++) { | ||
102 | if (i2c_transmit(addr << 1, g_twi_transfer_buffer, 2, ISSI_TIMEOUT) == 0) { | ||
103 | break; | ||
104 | } | ||
105 | } | ||
106 | #else | ||
107 | i2c_transmit(addr << 1, g_twi_transfer_buffer, 2, ISSI_TIMEOUT); | ||
108 | #endif | ||
109 | } | ||
110 | |||
111 | void IS31FL3731_write_pwm_buffer(uint8_t addr, uint8_t *pwm_buffer) { | ||
112 | // assumes bank is already selected | ||
113 | |||
114 | // transmit PWM registers in 9 transfers of 16 bytes | ||
115 | // g_twi_transfer_buffer[] is 20 bytes | ||
116 | |||
117 | // iterate over the pwm_buffer contents at 16 byte intervals | ||
118 | for (int i = 0; i < 144; i += 16) { | ||
119 | // set the first register, e.g. 0x24, 0x34, 0x44, etc. | ||
120 | g_twi_transfer_buffer[0] = 0x24 + i; | ||
121 | // copy the data from i to i+15 | ||
122 | // device will auto-increment register for data after the first byte | ||
123 | // thus this sets registers 0x24-0x33, 0x34-0x43, etc. in one transfer | ||
124 | for (int j = 0; j < 16; j++) { | ||
125 | g_twi_transfer_buffer[1 + j] = pwm_buffer[i + j]; | ||
126 | } | ||
127 | |||
128 | #if ISSI_PERSISTENCE > 0 | ||
129 | for (uint8_t i = 0; i < ISSI_PERSISTENCE; i++) { | ||
130 | if (i2c_transmit(addr << 1, g_twi_transfer_buffer, 17, ISSI_TIMEOUT) == 0) | ||
131 | break; | ||
132 | } | ||
133 | #else | ||
134 | i2c_transmit(addr << 1, g_twi_transfer_buffer, 17, ISSI_TIMEOUT); | ||
135 | #endif | ||
136 | } | ||
137 | } | ||
138 | |||
139 | void IS31FL3731_init(uint8_t addr) { | ||
140 | // In order to avoid the LEDs being driven with garbage data | ||
141 | // in the LED driver's PWM registers, first enable software shutdown, | ||
142 | // then set up the mode and other settings, clear the PWM registers, | ||
143 | // then disable software shutdown. | ||
144 | |||
145 | // select "function register" bank | ||
146 | IS31FL3731_write_register(addr, ISSI_COMMANDREGISTER, ISSI_BANK_FUNCTIONREG); | ||
147 | |||
148 | // enable software shutdown | ||
149 | IS31FL3731_write_register(addr, ISSI_REG_SHUTDOWN, 0x00); | ||
150 | // this delay was copied from other drivers, might not be needed | ||
151 | // FIXME: Don't we have a wrapper for this already? | ||
152 | #ifdef __AVR__ | ||
153 | _delay_ms(10); | ||
154 | #else | ||
155 | wait_ms(10); | ||
156 | #endif | ||
157 | |||
158 | // picture mode | ||
159 | IS31FL3731_write_register(addr, ISSI_REG_CONFIG, ISSI_REG_CONFIG_PICTUREMODE); | ||
160 | // display frame 0 | ||
161 | IS31FL3731_write_register(addr, ISSI_REG_PICTUREFRAME, 0x00); | ||
162 | // audio sync off | ||
163 | IS31FL3731_write_register(addr, ISSI_REG_AUDIOSYNC, 0x00); | ||
164 | |||
165 | // select bank 0 | ||
166 | IS31FL3731_write_register(addr, ISSI_COMMANDREGISTER, 0); | ||
167 | |||
168 | // turn off all LEDs in the LED control register | ||
169 | for (int i = 0x00; i <= 0x11; i++) { | ||
170 | IS31FL3731_write_register(addr, i, 0x00); | ||
171 | } | ||
172 | |||
173 | // turn off all LEDs in the blink control register (not really needed) | ||
174 | for (int i = 0x12; i <= 0x23; i++) { | ||
175 | IS31FL3731_write_register(addr, i, 0x00); | ||
176 | } | ||
177 | |||
178 | // set PWM on all LEDs to 0 | ||
179 | for (int i = 0x24; i <= 0xB3; i++) { | ||
180 | IS31FL3731_write_register(addr, i, 0x00); | ||
181 | } | ||
182 | |||
183 | // select "function register" bank | ||
184 | IS31FL3731_write_register(addr, ISSI_COMMANDREGISTER, ISSI_BANK_FUNCTIONREG); | ||
185 | |||
186 | // disable software shutdown | ||
187 | IS31FL3731_write_register(addr, ISSI_REG_SHUTDOWN, 0x01); | ||
188 | |||
189 | // select bank 0 and leave it selected. | ||
190 | // most usage after initialization is just writing PWM buffers in bank 0 | ||
191 | // as there's not much point in double-buffering | ||
192 | IS31FL3731_write_register(addr, ISSI_COMMANDREGISTER, 0); | ||
193 | |||
194 | } | ||
195 | |||
196 | void IS31FL3731_set_value(int index, uint8_t value) { | ||
197 | if (index >= 0 && index < DRIVER_LED_TOTAL) { | ||
198 | is31_led led = g_is31_leds[index]; | ||
199 | |||
200 | // Subtract 0x24 to get the second index of g_pwm_buffer | ||
201 | g_pwm_buffer[led.driver][led.v - 0x24] = value; | ||
202 | g_pwm_buffer_update_required = true; | ||
203 | } | ||
204 | } | ||
205 | |||
206 | void IS31FL3731_set_value_all(uint8_t value) { | ||
207 | for (int i = 0; i < DRIVER_LED_TOTAL; i++) { | ||
208 | IS31FL3731_set_value(i, value); | ||
209 | } | ||
210 | } | ||
211 | |||
212 | void IS31FL3731_set_led_control_register(uint8_t index, bool value) { | ||
213 | is31_led led = g_is31_leds[index]; | ||
214 | |||
215 | uint8_t control_register = (led.v - 0x24) / 8; | ||
216 | uint8_t bit_value = (led.v - 0x24) % 8; | ||
217 | |||
218 | if (value) { | ||
219 | g_led_control_registers[led.driver][control_register] |= (1 << bit_value); | ||
220 | } else { | ||
221 | g_led_control_registers[led.driver][control_register] &= ~(1 << bit_value); | ||
222 | } | ||
223 | |||
224 | g_led_control_registers_update_required = true; | ||
225 | } | ||
226 | |||
227 | void IS31FL3731_update_pwm_buffers(uint8_t addr, uint8_t index) { | ||
228 | if (g_pwm_buffer_update_required) { | ||
229 | IS31FL3731_write_pwm_buffer(addr, g_pwm_buffer[index]); | ||
230 | g_pwm_buffer_update_required = false; | ||
231 | } | ||
232 | } | ||
233 | |||
234 | void IS31FL3731_update_led_control_registers(uint8_t addr, uint8_t index) { | ||
235 | if (g_led_control_registers_update_required) { | ||
236 | for (int i=0; i<18; i++) { | ||
237 | IS31FL3731_write_register(addr, i, g_led_control_registers[index][i]); | ||
238 | } | ||
239 | } | ||
240 | } | ||
diff --git a/drivers/issi/is31fl3731-simple.h b/drivers/issi/is31fl3731-simple.h new file mode 100644 index 000000000..c102837a3 --- /dev/null +++ b/drivers/issi/is31fl3731-simple.h | |||
@@ -0,0 +1,209 @@ | |||
1 | /* Copyright 2017 Jason Williams | ||
2 | * Copyright 2018 Jack Humbert | ||
3 | * | ||
4 | * This program is free software: you can redistribute it and/or modify | ||
5 | * it under the terms of the GNU General Public License as published by | ||
6 | * the Free Software Foundation, either version 2 of the License, or | ||
7 | * (at your option) any later version. | ||
8 | * | ||
9 | * This program is distributed in the hope that it will be useful, | ||
10 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
11 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
12 | * GNU General Public License for more details. | ||
13 | * | ||
14 | * You should have received a copy of the GNU General Public License | ||
15 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
16 | */ | ||
17 | |||
18 | |||
19 | #ifndef IS31FL3731_DRIVER_H | ||
20 | #define IS31FL3731_DRIVER_H | ||
21 | |||
22 | |||
23 | typedef struct is31_led { | ||
24 | uint8_t driver:2; | ||
25 | uint8_t v; | ||
26 | } __attribute__((packed)) is31_led; | ||
27 | |||
28 | extern const is31_led g_is31_leds[DRIVER_LED_TOTAL]; | ||
29 | |||
30 | void IS31FL3731_init(uint8_t addr); | ||
31 | void IS31FL3731_write_register(uint8_t addr, uint8_t reg, uint8_t data); | ||
32 | void IS31FL3731_write_pwm_buffer(uint8_t addr, uint8_t *pwm_buffer); | ||
33 | |||
34 | void IS31FL3731_set_value(int index, uint8_t value); | ||
35 | void IS31FL3731_set_value_all(uint8_t value); | ||
36 | |||
37 | void IS31FL3731_set_led_control_register(uint8_t index, bool value); | ||
38 | |||
39 | // This should not be called from an interrupt | ||
40 | // (eg. from a timer interrupt). | ||
41 | // Call this while idle (in between matrix scans). | ||
42 | // If the buffer is dirty, it will update the driver with the buffer. | ||
43 | void IS31FL3731_update_pwm_buffers(uint8_t addr, uint8_t index); | ||
44 | void IS31FL3731_update_led_control_registers(uint8_t addr, uint8_t index); | ||
45 | |||
46 | #define C1_1 0x24 | ||
47 | #define C1_2 0x25 | ||
48 | #define C1_3 0x26 | ||
49 | #define C1_4 0x27 | ||
50 | #define C1_5 0x28 | ||
51 | #define C1_6 0x29 | ||
52 | #define C1_7 0x2A | ||
53 | #define C1_8 0x2B | ||
54 | |||
55 | #define C1_9 0x2C | ||
56 | #define C1_10 0x2D | ||
57 | #define C1_11 0x2E | ||
58 | #define C1_12 0x2F | ||
59 | #define C1_13 0x30 | ||
60 | #define C1_14 0x31 | ||
61 | #define C1_15 0x32 | ||
62 | #define C1_16 0x33 | ||
63 | |||
64 | #define C2_1 0x34 | ||
65 | #define C2_2 0x35 | ||
66 | #define C2_3 0x36 | ||
67 | #define C2_4 0x37 | ||
68 | #define C2_5 0x38 | ||
69 | #define C2_6 0x39 | ||
70 | #define C2_7 0x3A | ||
71 | #define C2_8 0x3B | ||
72 | |||
73 | #define C2_9 0x3C | ||
74 | #define C2_10 0x3D | ||
75 | #define C2_11 0x3E | ||
76 | #define C2_12 0x3F | ||
77 | #define C2_13 0x40 | ||
78 | #define C2_14 0x41 | ||
79 | #define C2_15 0x42 | ||
80 | #define C2_16 0x43 | ||
81 | |||
82 | #define C3_1 0x44 | ||
83 | #define C3_2 0x45 | ||
84 | #define C3_3 0x46 | ||
85 | #define C3_4 0x47 | ||
86 | #define C3_5 0x48 | ||
87 | #define C3_6 0x49 | ||
88 | #define C3_7 0x4A | ||
89 | #define C3_8 0x4B | ||
90 | |||
91 | #define C3_9 0x4C | ||
92 | #define C3_10 0x4D | ||
93 | #define C3_11 0x4E | ||
94 | #define C3_12 0x4F | ||
95 | #define C3_13 0x50 | ||
96 | #define C3_14 0x51 | ||
97 | #define C3_15 0x52 | ||
98 | #define C3_16 0x53 | ||
99 | |||
100 | #define C4_1 0x54 | ||
101 | #define C4_2 0x55 | ||
102 | #define C4_3 0x56 | ||
103 | #define C4_4 0x57 | ||
104 | #define C4_5 0x58 | ||
105 | #define C4_6 0x59 | ||
106 | #define C4_7 0x5A | ||
107 | #define C4_8 0x5B | ||
108 | |||
109 | #define C4_9 0x5C | ||
110 | #define C4_10 0x5D | ||
111 | #define C4_11 0x5E | ||
112 | #define C4_12 0x5F | ||
113 | #define C4_13 0x60 | ||
114 | #define C4_14 0x61 | ||
115 | #define C4_15 0x62 | ||
116 | #define C4_16 0x63 | ||
117 | |||
118 | #define C5_1 0x64 | ||
119 | #define C5_2 0x65 | ||
120 | #define C5_3 0x66 | ||
121 | #define C5_4 0x67 | ||
122 | #define C5_5 0x68 | ||
123 | #define C5_6 0x69 | ||
124 | #define C5_7 0x6A | ||
125 | #define C5_8 0x6B | ||
126 | |||
127 | #define C5_9 0x6C | ||
128 | #define C5_10 0x6D | ||
129 | #define C5_11 0x6E | ||
130 | #define C5_12 0x6F | ||
131 | #define C5_13 0x70 | ||
132 | #define C5_14 0x71 | ||
133 | #define C5_15 0x72 | ||
134 | #define C5_16 0x73 | ||
135 | |||
136 | #define C6_1 0x74 | ||
137 | #define C6_2 0x75 | ||
138 | #define C6_3 0x76 | ||
139 | #define C6_4 0x77 | ||
140 | #define C6_5 0x78 | ||
141 | #define C6_6 0x79 | ||
142 | #define C6_7 0x7A | ||
143 | #define C6_8 0x7B | ||
144 | |||
145 | #define C6_9 0x7C | ||
146 | #define C6_10 0x7D | ||
147 | #define C6_11 0x7E | ||
148 | #define C6_12 0x7F | ||
149 | #define C6_13 0x80 | ||
150 | #define C6_14 0x81 | ||
151 | #define C6_15 0x82 | ||
152 | #define C6_16 0x83 | ||
153 | |||
154 | #define C7_1 0x84 | ||
155 | #define C7_2 0x85 | ||
156 | #define C7_3 0x86 | ||
157 | #define C7_4 0x87 | ||
158 | #define C7_5 0x88 | ||
159 | #define C7_6 0x89 | ||
160 | #define C7_7 0x8A | ||
161 | #define C7_8 0x8B | ||
162 | |||
163 | #define C7_9 0x8C | ||
164 | #define C7_10 0x8D | ||
165 | #define C7_11 0x8E | ||
166 | #define C7_12 0x8F | ||
167 | #define C7_13 0x90 | ||
168 | #define C7_14 0x91 | ||
169 | #define C7_15 0x92 | ||
170 | #define C7_16 0x93 | ||
171 | |||
172 | #define C8_1 0x94 | ||
173 | #define C8_2 0x95 | ||
174 | #define C8_3 0x96 | ||
175 | #define C8_4 0x97 | ||
176 | #define C8_5 0x98 | ||
177 | #define C8_6 0x99 | ||
178 | #define C8_7 0x9A | ||
179 | #define C8_8 0x9B | ||
180 | |||
181 | #define C8_9 0x9C | ||
182 | #define C8_10 0x9D | ||
183 | #define C8_11 0x9E | ||
184 | #define C8_12 0x9F | ||
185 | #define C8_13 0xA0 | ||
186 | #define C8_14 0xA1 | ||
187 | #define C8_15 0xA2 | ||
188 | #define C8_16 0xA3 | ||
189 | |||
190 | #define C9_1 0xA4 | ||
191 | #define C9_2 0xA5 | ||
192 | #define C9_3 0xA6 | ||
193 | #define C9_4 0xA7 | ||
194 | #define C9_5 0xA8 | ||
195 | #define C9_6 0xA9 | ||
196 | #define C9_7 0xAA | ||
197 | #define C9_8 0xAB | ||
198 | |||
199 | #define C9_9 0xAC | ||
200 | #define C9_10 0xAD | ||
201 | #define C9_11 0xAE | ||
202 | #define C9_12 0xAF | ||
203 | #define C9_13 0xB0 | ||
204 | #define C9_14 0xB1 | ||
205 | #define C9_15 0xB2 | ||
206 | #define C9_16 0xB3 | ||
207 | |||
208 | |||
209 | #endif // IS31FL3731_DRIVER_H | ||
diff --git a/quantum/led_matrix.c b/quantum/led_matrix.c new file mode 100644 index 000000000..9a0aa6acd --- /dev/null +++ b/quantum/led_matrix.c | |||
@@ -0,0 +1,404 @@ | |||
1 | /* Copyright 2017 Jason Williams | ||
2 | * Copyright 2017 Jack Humbert | ||
3 | * Copyright 2018 Yiancar | ||
4 | * Copyright 2019 Clueboard | ||
5 | * | ||
6 | * This program is free software: you can redistribute it and/or modify | ||
7 | * it under the terms of the GNU General Public License as published by | ||
8 | * the Free Software Foundation, either version 2 of the License, or | ||
9 | * (at your option) any later version. | ||
10 | * | ||
11 | * This program is distributed in the hope that it will be useful, | ||
12 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
13 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
14 | * GNU General Public License for more details. | ||
15 | * | ||
16 | * You should have received a copy of the GNU General Public License | ||
17 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
18 | */ | ||
19 | |||
20 | #include <stdint.h> | ||
21 | #include <stdbool.h> | ||
22 | #include "quantum.h" | ||
23 | #include "led_matrix.h" | ||
24 | #include "progmem.h" | ||
25 | #include "config.h" | ||
26 | #include "eeprom.h" | ||
27 | #include <string.h> | ||
28 | #include <math.h> | ||
29 | |||
30 | led_config_t led_matrix_config; | ||
31 | |||
32 | #ifndef MAX | ||
33 | #define MAX(X, Y) ((X) > (Y) ? (X) : (Y)) | ||
34 | #endif | ||
35 | |||
36 | #ifndef MIN | ||
37 | #define MIN(a,b) ((a) < (b)? (a): (b)) | ||
38 | #endif | ||
39 | |||
40 | #ifndef LED_DISABLE_AFTER_TIMEOUT | ||
41 | #define LED_DISABLE_AFTER_TIMEOUT 0 | ||
42 | #endif | ||
43 | |||
44 | #ifndef LED_DISABLE_WHEN_USB_SUSPENDED | ||
45 | #define LED_DISABLE_WHEN_USB_SUSPENDED false | ||
46 | #endif | ||
47 | |||
48 | #ifndef EECONFIG_LED_MATRIX | ||
49 | #define EECONFIG_LED_MATRIX EECONFIG_RGBLIGHT | ||
50 | #endif | ||
51 | |||
52 | #if !defined(LED_MATRIX_MAXIMUM_BRIGHTNESS) || LED_MATRIX_MAXIMUM_BRIGHTNESS > 255 | ||
53 | #define LED_MATRIX_MAXIMUM_BRIGHTNESS 255 | ||
54 | #endif | ||
55 | |||
56 | bool g_suspend_state = false; | ||
57 | |||
58 | // Global tick at 20 Hz | ||
59 | uint32_t g_tick = 0; | ||
60 | |||
61 | // Ticks since this key was last hit. | ||
62 | uint8_t g_key_hit[DRIVER_LED_TOTAL]; | ||
63 | |||
64 | // Ticks since any key was last hit. | ||
65 | uint32_t g_any_key_hit = 0; | ||
66 | |||
67 | uint32_t eeconfig_read_led_matrix(void) { | ||
68 | return eeprom_read_dword(EECONFIG_LED_MATRIX); | ||
69 | } | ||
70 | void eeconfig_update_led_matrix(uint32_t config_value) { | ||
71 | eeprom_update_dword(EECONFIG_LED_MATRIX, config_value); | ||
72 | } | ||
73 | void eeconfig_update_led_matrix_default(void) { | ||
74 | dprintf("eeconfig_update_led_matrix_default\n"); | ||
75 | led_matrix_config.enable = 1; | ||
76 | led_matrix_config.mode = LED_MATRIX_UNIFORM_BRIGHTNESS; | ||
77 | led_matrix_config.val = 128; | ||
78 | led_matrix_config.speed = 0; | ||
79 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
80 | } | ||
81 | void eeconfig_debug_led_matrix(void) { | ||
82 | dprintf("led_matrix_config eprom\n"); | ||
83 | dprintf("led_matrix_config.enable = %d\n", led_matrix_config.enable); | ||
84 | dprintf("led_matrix_config.mode = %d\n", led_matrix_config.mode); | ||
85 | dprintf("led_matrix_config.val = %d\n", led_matrix_config.val); | ||
86 | dprintf("led_matrix_config.speed = %d\n", led_matrix_config.speed); | ||
87 | } | ||
88 | |||
89 | // Last led hit | ||
90 | #define LED_HITS_TO_REMEMBER 8 | ||
91 | uint8_t g_last_led_hit[LED_HITS_TO_REMEMBER] = {255}; | ||
92 | uint8_t g_last_led_count = 0; | ||
93 | |||
94 | void map_row_column_to_led(uint8_t row, uint8_t column, uint8_t *led_i, uint8_t *led_count) { | ||
95 | led_matrix led; | ||
96 | *led_count = 0; | ||
97 | |||
98 | for (uint8_t i = 0; i < DRIVER_LED_TOTAL; i++) { | ||
99 | // map_index_to_led(i, &led); | ||
100 | led = g_leds[i]; | ||
101 | if (row == led.matrix_co.row && column == led.matrix_co.col) { | ||
102 | led_i[*led_count] = i; | ||
103 | (*led_count)++; | ||
104 | } | ||
105 | } | ||
106 | } | ||
107 | |||
108 | void led_matrix_update_pwm_buffers(void) { | ||
109 | led_matrix_driver.flush(); | ||
110 | } | ||
111 | |||
112 | void led_matrix_set_index_value(int index, uint8_t value) { | ||
113 | led_matrix_driver.set_value(index, value); | ||
114 | } | ||
115 | |||
116 | void led_matrix_set_index_value_all(uint8_t value) { | ||
117 | led_matrix_driver.set_value_all(value); | ||
118 | } | ||
119 | |||
120 | bool process_led_matrix(uint16_t keycode, keyrecord_t *record) { | ||
121 | if (record->event.pressed) { | ||
122 | uint8_t led[8], led_count; | ||
123 | map_row_column_to_led(record->event.key.row, record->event.key.col, led, &led_count); | ||
124 | if (led_count > 0) { | ||
125 | for (uint8_t i = LED_HITS_TO_REMEMBER; i > 1; i--) { | ||
126 | g_last_led_hit[i - 1] = g_last_led_hit[i - 2]; | ||
127 | } | ||
128 | g_last_led_hit[0] = led[0]; | ||
129 | g_last_led_count = MIN(LED_HITS_TO_REMEMBER, g_last_led_count + 1); | ||
130 | } | ||
131 | for(uint8_t i = 0; i < led_count; i++) | ||
132 | g_key_hit[led[i]] = 0; | ||
133 | g_any_key_hit = 0; | ||
134 | } else { | ||
135 | #ifdef LED_MATRIX_KEYRELEASES | ||
136 | uint8_t led[8], led_count; | ||
137 | map_row_column_to_led(record->event.key.row, record->event.key.col, led, &led_count); | ||
138 | for(uint8_t i = 0; i < led_count; i++) | ||
139 | g_key_hit[led[i]] = 255; | ||
140 | |||
141 | g_any_key_hit = 255; | ||
142 | #endif | ||
143 | } | ||
144 | return true; | ||
145 | } | ||
146 | |||
147 | void led_matrix_set_suspend_state(bool state) { | ||
148 | g_suspend_state = state; | ||
149 | } | ||
150 | |||
151 | // All LEDs off | ||
152 | void led_matrix_all_off(void) { | ||
153 | led_matrix_set_index_value_all(0); | ||
154 | } | ||
155 | |||
156 | // Uniform brightness | ||
157 | void led_matrix_uniform_brightness(void) { | ||
158 | led_matrix_set_index_value_all(led_matrix_config.val); | ||
159 | } | ||
160 | |||
161 | void led_matrix_custom(void) {} | ||
162 | |||
163 | void led_matrix_task(void) { | ||
164 | #ifdef TRACK_PREVIOUS_EFFECT | ||
165 | static uint8_t toggle_enable_last = 255; | ||
166 | #endif | ||
167 | if (!led_matrix_config.enable) { | ||
168 | led_matrix_all_off(); | ||
169 | led_matrix_indicators(); | ||
170 | #ifdef TRACK_PREVIOUS_EFFECT | ||
171 | toggle_enable_last = led_matrix_config.enable; | ||
172 | #endif | ||
173 | return; | ||
174 | } | ||
175 | |||
176 | // delay 1 second before driving LEDs or doing anything else | ||
177 | // FIXME: Can't we use wait_ms() here? | ||
178 | static uint8_t startup_tick = 0; | ||
179 | if (startup_tick < 20) { | ||
180 | startup_tick++; | ||
181 | return; | ||
182 | } | ||
183 | |||
184 | g_tick++; | ||
185 | |||
186 | if (g_any_key_hit < 0xFFFFFFFF) { | ||
187 | g_any_key_hit++; | ||
188 | } | ||
189 | |||
190 | for (int led = 0; led < DRIVER_LED_TOTAL; led++) { | ||
191 | if (g_key_hit[led] < 255) { | ||
192 | if (g_key_hit[led] == 254) | ||
193 | g_last_led_count = MAX(g_last_led_count - 1, 0); | ||
194 | g_key_hit[led]++; | ||
195 | } | ||
196 | } | ||
197 | |||
198 | // Factory default magic value | ||
199 | if (led_matrix_config.mode == 255) { | ||
200 | led_matrix_uniform_brightness(); | ||
201 | return; | ||
202 | } | ||
203 | |||
204 | // Ideally we would also stop sending zeros to the LED driver PWM buffers | ||
205 | // while suspended and just do a software shutdown. This is a cheap hack for now. | ||
206 | bool suspend_backlight = ((g_suspend_state && LED_DISABLE_WHEN_USB_SUSPENDED) || | ||
207 | (LED_DISABLE_AFTER_TIMEOUT > 0 && g_any_key_hit > LED_DISABLE_AFTER_TIMEOUT * 60 * 20)); | ||
208 | uint8_t effect = suspend_backlight ? 0 : led_matrix_config.mode; | ||
209 | |||
210 | #ifdef TRACK_PREVIOUS_EFFECT | ||
211 | // Keep track of the effect used last time, | ||
212 | // detect change in effect, so each effect can | ||
213 | // have an optional initialization. | ||
214 | |||
215 | static uint8_t effect_last = 255; | ||
216 | bool initialize = (effect != effect_last) || (led_matrix_config.enable != toggle_enable_last); | ||
217 | effect_last = effect; | ||
218 | toggle_enable_last = led_matrix_config.enable; | ||
219 | #endif | ||
220 | |||
221 | // this gets ticked at 20 Hz. | ||
222 | // each effect can opt to do calculations | ||
223 | // and/or request PWM buffer updates. | ||
224 | switch (effect) { | ||
225 | case LED_MATRIX_UNIFORM_BRIGHTNESS: | ||
226 | led_matrix_uniform_brightness(); | ||
227 | break; | ||
228 | default: | ||
229 | led_matrix_custom(); | ||
230 | break; | ||
231 | } | ||
232 | |||
233 | if (! suspend_backlight) { | ||
234 | led_matrix_indicators(); | ||
235 | } | ||
236 | |||
237 | } | ||
238 | |||
239 | void led_matrix_indicators(void) { | ||
240 | led_matrix_indicators_kb(); | ||
241 | led_matrix_indicators_user(); | ||
242 | } | ||
243 | |||
244 | __attribute__((weak)) | ||
245 | void led_matrix_indicators_kb(void) {} | ||
246 | |||
247 | __attribute__((weak)) | ||
248 | void led_matrix_indicators_user(void) {} | ||
249 | |||
250 | |||
251 | // void led_matrix_set_indicator_index(uint8_t *index, uint8_t row, uint8_t column) | ||
252 | // { | ||
253 | // if (row >= MATRIX_ROWS) | ||
254 | // { | ||
255 | // // Special value, 255=none, 254=all | ||
256 | // *index = row; | ||
257 | // } | ||
258 | // else | ||
259 | // { | ||
260 | // // This needs updated to something like | ||
261 | // // uint8_t led[8], led_count; | ||
262 | // // map_row_column_to_led(row,column,led,&led_count); | ||
263 | // // for(uint8_t i = 0; i < led_count; i++) | ||
264 | // map_row_column_to_led(row, column, index); | ||
265 | // } | ||
266 | // } | ||
267 | |||
268 | void led_matrix_init(void) { | ||
269 | led_matrix_driver.init(); | ||
270 | |||
271 | // TODO: put the 1 second startup delay here? | ||
272 | |||
273 | // clear the key hits | ||
274 | for (int led=0; led<DRIVER_LED_TOTAL; led++) { | ||
275 | g_key_hit[led] = 255; | ||
276 | } | ||
277 | |||
278 | |||
279 | if (!eeconfig_is_enabled()) { | ||
280 | dprintf("led_matrix_init_drivers eeconfig is not enabled.\n"); | ||
281 | eeconfig_init(); | ||
282 | eeconfig_update_led_matrix_default(); | ||
283 | } | ||
284 | led_matrix_config.raw = eeconfig_read_led_matrix(); | ||
285 | if (!led_matrix_config.mode) { | ||
286 | dprintf("led_matrix_init_drivers led_matrix_config.mode = 0. Write default values to EEPROM.\n"); | ||
287 | eeconfig_update_led_matrix_default(); | ||
288 | led_matrix_config.raw = eeconfig_read_led_matrix(); | ||
289 | } | ||
290 | eeconfig_debug_led_matrix(); // display current eeprom values | ||
291 | } | ||
292 | |||
293 | // Deals with the messy details of incrementing an integer | ||
294 | static uint8_t increment(uint8_t value, uint8_t step, uint8_t min, uint8_t max) { | ||
295 | int16_t new_value = value; | ||
296 | new_value += step; | ||
297 | return MIN(MAX( new_value, min), max ); | ||
298 | } | ||
299 | |||
300 | static uint8_t decrement(uint8_t value, uint8_t step, uint8_t min, uint8_t max) { | ||
301 | int16_t new_value = value; | ||
302 | new_value -= step; | ||
303 | return MIN(MAX( new_value, min), max ); | ||
304 | } | ||
305 | |||
306 | // void *backlight_get_custom_key_value_eeprom_address(uint8_t led) { | ||
307 | // // 3 bytes per value | ||
308 | // return EECONFIG_LED_MATRIX + (led * 3); | ||
309 | // } | ||
310 | |||
311 | // void backlight_get_key_value(uint8_t led, uint8_t *value) { | ||
312 | // void *address = backlight_get_custom_key_value_eeprom_address(led); | ||
313 | // value = eeprom_read_byte(address); | ||
314 | // } | ||
315 | |||
316 | // void backlight_set_key_value(uint8_t row, uint8_t column, uint8_t value) { | ||
317 | // uint8_t led[8], led_count; | ||
318 | // map_row_column_to_led(row,column,led,&led_count); | ||
319 | // for(uint8_t i = 0; i < led_count; i++) { | ||
320 | // if (led[i] < DRIVER_LED_TOTAL) { | ||
321 | // void *address = backlight_get_custom_key_value_eeprom_address(led[i]); | ||
322 | // eeprom_update_byte(address, value); | ||
323 | // } | ||
324 | // } | ||
325 | // } | ||
326 | |||
327 | uint32_t led_matrix_get_tick(void) { | ||
328 | return g_tick; | ||
329 | } | ||
330 | |||
331 | void led_matrix_toggle(void) { | ||
332 | led_matrix_config.enable ^= 1; | ||
333 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
334 | } | ||
335 | |||
336 | void led_matrix_enable(void) { | ||
337 | led_matrix_config.enable = 1; | ||
338 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
339 | } | ||
340 | |||
341 | void led_matrix_enable_noeeprom(void) { | ||
342 | led_matrix_config.enable = 1; | ||
343 | } | ||
344 | |||
345 | void led_matrix_disable(void) { | ||
346 | led_matrix_config.enable = 0; | ||
347 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
348 | } | ||
349 | |||
350 | void led_matrix_disable_noeeprom(void) { | ||
351 | led_matrix_config.enable = 0; | ||
352 | } | ||
353 | |||
354 | void led_matrix_step(void) { | ||
355 | led_matrix_config.mode++; | ||
356 | if (led_matrix_config.mode >= LED_MATRIX_EFFECT_MAX) | ||
357 | led_matrix_config.mode = 1; | ||
358 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
359 | } | ||
360 | |||
361 | void led_matrix_step_reverse(void) { | ||
362 | led_matrix_config.mode--; | ||
363 | if (led_matrix_config.mode < 1) | ||
364 | led_matrix_config.mode = LED_MATRIX_EFFECT_MAX - 1; | ||
365 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
366 | } | ||
367 | |||
368 | void led_matrix_increase_val(void) { | ||
369 | led_matrix_config.val = increment(led_matrix_config.val, 8, 0, LED_MATRIX_MAXIMUM_BRIGHTNESS); | ||
370 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
371 | } | ||
372 | |||
373 | void led_matrix_decrease_val(void) { | ||
374 | led_matrix_config.val = decrement(led_matrix_config.val, 8, 0, LED_MATRIX_MAXIMUM_BRIGHTNESS); | ||
375 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
376 | } | ||
377 | |||
378 | void led_matrix_increase_speed(void) { | ||
379 | led_matrix_config.speed = increment(led_matrix_config.speed, 1, 0, 3); | ||
380 | eeconfig_update_led_matrix(led_matrix_config.raw);//EECONFIG needs to be increased to support this | ||
381 | } | ||
382 | |||
383 | void led_matrix_decrease_speed(void) { | ||
384 | led_matrix_config.speed = decrement(led_matrix_config.speed, 1, 0, 3); | ||
385 | eeconfig_update_led_matrix(led_matrix_config.raw);//EECONFIG needs to be increased to support this | ||
386 | } | ||
387 | |||
388 | void led_matrix_mode(uint8_t mode, bool eeprom_write) { | ||
389 | led_matrix_config.mode = mode; | ||
390 | if (eeprom_write) { | ||
391 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
392 | } | ||
393 | } | ||
394 | |||
395 | uint8_t led_matrix_get_mode(void) { | ||
396 | return led_matrix_config.mode; | ||
397 | } | ||
398 | |||
399 | void led_matrix_set_value(uint8_t val, bool eeprom_write) { | ||
400 | led_matrix_config.val = val; | ||
401 | if (eeprom_write) { | ||
402 | eeconfig_update_led_matrix(led_matrix_config.raw); | ||
403 | } | ||
404 | } | ||
diff --git a/quantum/led_matrix.h b/quantum/led_matrix.h new file mode 100644 index 000000000..20f2e73c6 --- /dev/null +++ b/quantum/led_matrix.h | |||
@@ -0,0 +1,142 @@ | |||
1 | /* Copyright 2017 Jason Williams | ||
2 | * Copyright 2017 Jack Humbert | ||
3 | * Copyright 2018 Yiancar | ||
4 | * Copyright 2019 Clueboard | ||
5 | * | ||
6 | * This program is free software: you can redistribute it and/or modify | ||
7 | * it under the terms of the GNU General Public License as published by | ||
8 | * the Free Software Foundation, either version 2 of the License, or | ||
9 | * (at your option) any later version. | ||
10 | * | ||
11 | * This program is distributed in the hope that it will be useful, | ||
12 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
13 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
14 | * GNU General Public License for more details. | ||
15 | * | ||
16 | * You should have received a copy of the GNU General Public License | ||
17 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
18 | */ | ||
19 | |||
20 | #ifndef LED_MATRIX_H | ||
21 | #define LED_MATRIX_H | ||
22 | |||
23 | |||
24 | typedef struct Point { | ||
25 | uint8_t x; | ||
26 | uint8_t y; | ||
27 | } __attribute__((packed)) Point; | ||
28 | |||
29 | typedef struct led_matrix { | ||
30 | union { | ||
31 | uint8_t raw; | ||
32 | struct { | ||
33 | uint8_t row:4; // 16 max | ||
34 | uint8_t col:4; // 16 max | ||
35 | }; | ||
36 | } matrix_co; | ||
37 | Point point; | ||
38 | uint8_t modifier:1; | ||
39 | } __attribute__((packed)) led_matrix; | ||
40 | |||
41 | extern const led_matrix g_leds[DRIVER_LED_TOTAL]; | ||
42 | |||
43 | typedef struct { | ||
44 | uint8_t index; | ||
45 | uint8_t value; | ||
46 | } led_indicator; | ||
47 | |||
48 | typedef union { | ||
49 | uint32_t raw; | ||
50 | struct { | ||
51 | bool enable :1; | ||
52 | uint8_t mode :6; | ||
53 | uint8_t hue :8; // Unused by led_matrix | ||
54 | uint8_t sat :8; // Unused by led_matrix | ||
55 | uint8_t val :8; | ||
56 | uint8_t speed :8;//EECONFIG needs to be increased to support this | ||
57 | }; | ||
58 | } led_config_t; | ||
59 | |||
60 | enum led_matrix_effects { | ||
61 | LED_MATRIX_UNIFORM_BRIGHTNESS = 1, | ||
62 | // All new effects go above this line | ||
63 | LED_MATRIX_EFFECT_MAX | ||
64 | }; | ||
65 | |||
66 | void led_matrix_set_index_value(int index, uint8_t value); | ||
67 | void led_matrix_set_index_value_all(uint8_t value); | ||
68 | |||
69 | // This runs after another backlight effect and replaces | ||
70 | // colors already set | ||
71 | void led_matrix_indicators(void); | ||
72 | void led_matrix_indicators_kb(void); | ||
73 | void led_matrix_indicators_user(void); | ||
74 | |||
75 | void led_matrix_init(void); | ||
76 | void led_matrix_setup_drivers(void); | ||
77 | |||
78 | void led_matrix_set_suspend_state(bool state); | ||
79 | void led_matrix_set_indicator_state(uint8_t state); | ||
80 | |||
81 | void led_matrix_task(void); | ||
82 | |||
83 | // This should not be called from an interrupt | ||
84 | // (eg. from a timer interrupt). | ||
85 | // Call this while idle (in between matrix scans). | ||
86 | // If the buffer is dirty, it will update the driver with the buffer. | ||
87 | void led_matrix_update_pwm_buffers(void); | ||
88 | |||
89 | bool process_led_matrix(uint16_t keycode, keyrecord_t *record); | ||
90 | |||
91 | uint32_t led_matrix_get_tick(void); | ||
92 | |||
93 | void led_matrix_toggle(void); | ||
94 | void led_matrix_enable(void); | ||
95 | void led_matrix_enable_noeeprom(void); | ||
96 | void led_matrix_disable(void); | ||
97 | void led_matrix_disable_noeeprom(void); | ||
98 | void led_matrix_step(void); | ||
99 | void led_matrix_step_reverse(void); | ||
100 | void led_matrix_increase_val(void); | ||
101 | void led_matrix_decrease_val(void); | ||
102 | void led_matrix_increase_speed(void); | ||
103 | void led_matrix_decrease_speed(void); | ||
104 | void led_matrix_mode(uint8_t mode, bool eeprom_write); | ||
105 | void led_matrix_mode_noeeprom(uint8_t mode); | ||
106 | uint8_t led_matrix_get_mode(void); | ||
107 | void led_matrix_set_value(uint8_t mode, bool eeprom_write); | ||
108 | |||
109 | #ifndef BACKLIGHT_ENABLE | ||
110 | #define backlight_toggle() backlight_matrix_toggle() | ||
111 | #define backlight_enable() backlight_matrix_enable() | ||
112 | #define backlight_enable_noeeprom() backlight_matrix_enable_noeeprom() | ||
113 | #define backlight_disable() backlight_matrix_disable() | ||
114 | #define backlight_disable_noeeprom() backlight_matrix_disable_noeeprom() | ||
115 | #define backlight_step() backlight_matrix_step() | ||
116 | #define backlight_set_value(val) backlight_matrix_set_value(val) | ||
117 | #define backlight_set_value_noeeprom(val) backlight_matrix_set_value_noeeprom(val) | ||
118 | #define backlight_step_reverse() backlight_matrix_step_reverse() | ||
119 | #define backlight_increase_val() backlight_matrix_increase_val() | ||
120 | #define backlight_decrease_val() backlight_matrix_decrease_val() | ||
121 | #define backlight_increase_speed() backlight_matrix_increase_speed() | ||
122 | #define backlight_decrease_speed() backlight_matrix_decrease_speed() | ||
123 | #define backlight_mode(mode) backlight_matrix_mode(mode) | ||
124 | #define backlight_mode_noeeprom(mode) backlight_matrix_mode_noeeprom(mode) | ||
125 | #define backlight_get_mode() backlight_matrix_get_mode() | ||
126 | #endif | ||
127 | |||
128 | typedef struct { | ||
129 | /* Perform any initialisation required for the other driver functions to work. */ | ||
130 | void (*init)(void); | ||
131 | |||
132 | /* Set the brightness of a single LED in the buffer. */ | ||
133 | void (*set_value)(int index, uint8_t value); | ||
134 | /* Set the brightness of all LEDS on the keyboard in the buffer. */ | ||
135 | void (*set_value_all)(uint8_t value); | ||
136 | /* Flush any buffered changes to the hardware. */ | ||
137 | void (*flush)(void); | ||
138 | } led_matrix_driver_t; | ||
139 | |||
140 | extern const led_matrix_driver_t led_matrix_driver; | ||
141 | |||
142 | #endif | ||
diff --git a/quantum/led_matrix_drivers.c b/quantum/led_matrix_drivers.c new file mode 100644 index 000000000..f00f4f366 --- /dev/null +++ b/quantum/led_matrix_drivers.c | |||
@@ -0,0 +1,147 @@ | |||
1 | /* Copyright 2018 Clueboard | ||
2 | * | ||
3 | * This program is free software: you can redistribute it and/or modify | ||
4 | * it under the terms of the GNU General Public License as published by | ||
5 | * the Free Software Foundation, either version 2 of the License, or | ||
6 | * (at your option) any later version. | ||
7 | * | ||
8 | * This program is distributed in the hope that it will be useful, | ||
9 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | ||
10 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | ||
11 | * GNU General Public License for more details. | ||
12 | * | ||
13 | * You should have received a copy of the GNU General Public License | ||
14 | * along with this program. If not, see <http://www.gnu.org/licenses/>. | ||
15 | */ | ||
16 | |||
17 | #include <stdint.h> | ||
18 | #include <stdbool.h> | ||
19 | #include "quantum.h" | ||
20 | #include "led_matrix.h" | ||
21 | |||
22 | /* Each driver needs to define a struct: | ||
23 | * | ||
24 | * const led_matrix_driver_t led_matrix_driver; | ||
25 | * | ||
26 | * All members must be provided. Keyboard custom drivers must define this | ||
27 | * in their own files. | ||
28 | */ | ||
29 | |||
30 | #if defined(IS31FL3731) || defined(IS31FL3733) | ||
31 | |||
32 | #if defined(IS31FL3731) | ||
33 | #include "is31fl3731-simple.h" | ||
34 | #endif | ||
35 | |||
36 | #include "i2c_master.h" | ||
37 | |||
38 | static void init(void) { | ||
39 | i2c_init(); | ||
40 | #ifdef IS31FL3731 | ||
41 | #ifdef LED_DRIVER_ADDR_1 | ||
42 | IS31FL3731_init(DRIVER_ADDR_1); | ||
43 | #endif | ||
44 | #ifdef LED_DRIVER_ADDR_2 | ||
45 | IS31FL3731_init(DRIVER_ADDR_2); | ||
46 | #endif | ||
47 | #ifdef LED_DRIVER_ADDR_3 | ||
48 | IS31FL3731_init(DRIVER_ADDR_3); | ||
49 | #endif | ||
50 | #ifdef LED_DRIVER_ADDR_4 | ||
51 | IS31FL3731_init(DRIVER_ADDR_4); | ||
52 | #endif | ||
53 | #else | ||
54 | #ifdef LED_DRIVER_ADDR_1 | ||
55 | IS31FL3733_init(DRIVER_ADDR_1); | ||
56 | #endif | ||
57 | #ifdef LED_DRIVER_ADDR_2 | ||
58 | IS31FL3733_init(DRIVER_ADDR_2); | ||
59 | #endif | ||
60 | #ifdef LED_DRIVER_ADDR_3 | ||
61 | IS31FL3733_init(DRIVER_ADDR_3); | ||
62 | #endif | ||
63 | #ifdef LED_DRIVER_ADDR_4 | ||
64 | IS31FL3733_init(DRIVER_ADDR_4); | ||
65 | #endif | ||
66 | #endif | ||
67 | for (int index = 0; index < DRIVER_LED_TOTAL; index++) { | ||
68 | #ifdef IS31FL3731 | ||
69 | IS31FL3731_set_led_control_register(index, true); | ||
70 | #else | ||
71 | IS31FL3733_set_led_control_register(index, true); | ||
72 | #endif | ||
73 | } | ||
74 | // This actually updates the LED drivers | ||
75 | #ifdef IS31FL3731 | ||
76 | #ifdef LED_DRIVER_ADDR_1 | ||
77 | IS31FL3731_update_led_control_registers(DRIVER_ADDR_1); | ||
78 | #endif | ||
79 | #ifdef LED_DRIVER_ADDR_2 | ||
80 | IS31FL3731_update_led_control_registers(DRIVER_ADDR_2); | ||
81 | #endif | ||
82 | #ifdef LED_DRIVER_ADDR_3 | ||
83 | IS31FL3731_update_led_control_registers(DRIVER_ADDR_3); | ||
84 | #endif | ||
85 | #ifdef LED_DRIVER_ADDR_4 | ||
86 | IS31FL3731_update_led_control_registers(DRIVER_ADDR_4); | ||
87 | #endif | ||
88 | #else | ||
89 | #ifdef LED_DRIVER_ADDR_1 | ||
90 | IS31FL3733_update_led_control_registers(DRIVER_ADDR_1); | ||
91 | #endif | ||
92 | #ifdef LED_DRIVER_ADDR_2 | ||
93 | IS31FL3733_update_led_control_registers(DRIVER_ADDR_2); | ||
94 | #endif | ||
95 | #ifdef LED_DRIVER_ADDR_3 | ||
96 | IS31FL3733_update_led_control_registers(DRIVER_ADDR_3); | ||
97 | #endif | ||
98 | #ifdef LED_DRIVER_ADDR_4 | ||
99 | IS31FL3733_update_led_control_registers(DRIVER_ADDR_4); | ||
100 | #endif | ||
101 | #endif | ||
102 | } | ||
103 | |||
104 | static void flush(void) { | ||
105 | #ifdef IS31FL3731 | ||
106 | #ifdef LED_DRIVER_ADDR_1 | ||
107 | IS31FL3731_update_pwm_buffers(DRIVER_ADDR_1); | ||
108 | #endif | ||
109 | #ifdef LED_DRIVER_ADDR_2 | ||
110 | IS31FL3731_update_pwm_buffers(DRIVER_ADDR_2); | ||
111 | #endif | ||
112 | #ifdef LED_DRIVER_ADDR_3 | ||
113 | IS31FL3731_update_pwm_buffers(DRIVER_ADDR_3); | ||
114 | #endif | ||
115 | #ifdef LED_DRIVER_ADDR_4 | ||
116 | IS31FL3731_update_pwm_buffers(DRIVER_ADDR_4); | ||
117 | #endif | ||
118 | #else | ||
119 | #ifdef LED_DRIVER_ADDR_1 | ||
120 | IS31FL3733_update_pwm_buffers(DRIVER_ADDR_1); | ||
121 | #endif | ||
122 | #ifdef LED_DRIVER_ADDR_2 | ||
123 | IS31FL3733_update_pwm_buffers(DRIVER_ADDR_2); | ||
124 | #endif | ||
125 | #ifdef LED_DRIVER_ADDR_3 | ||
126 | IS31FL3733_update_pwm_buffers(DRIVER_ADDR_3); | ||
127 | #endif | ||
128 | #ifdef LED_DRIVER_ADDR_4 | ||
129 | IS31FL3733_update_pwm_buffers(DRIVER_ADDR_4); | ||
130 | #endif | ||
131 | #endif | ||
132 | } | ||
133 | |||
134 | const led_matrix_driver_t led_matrix_driver = { | ||
135 | .init = init, | ||
136 | .flush = flush, | ||
137 | #ifdef IS31FL3731 | ||
138 | .set_value = IS31FL3731_set_value, | ||
139 | .set_value_all = IS31FL3731_set_value_all, | ||
140 | #else | ||
141 | .set_value = IS31FL3733_set_value, | ||
142 | .set_value_all = IS31FL3733_set_value_all, | ||
143 | #endif | ||
144 | }; | ||
145 | |||
146 | |||
147 | #endif | ||
diff --git a/quantum/rgb_matrix.h b/quantum/rgb_matrix.h index e43532d11..b64ddec07 100644 --- a/quantum/rgb_matrix.h +++ b/quantum/rgb_matrix.h | |||
@@ -50,25 +50,17 @@ typedef struct rgb_led { | |||
50 | 50 | ||
51 | extern const rgb_led g_rgb_leds[DRIVER_LED_TOTAL]; | 51 | extern const rgb_led g_rgb_leds[DRIVER_LED_TOTAL]; |
52 | 52 | ||
53 | typedef struct | ||
54 | { | ||
55 | HSV color; | ||
56 | uint8_t index; | ||
57 | } rgb_indicator; | ||
58 | |||
59 | typedef union { | 53 | typedef union { |
60 | uint32_t raw; | 54 | uint32_t raw; |
61 | struct { | 55 | struct { |
62 | bool enable :1; | 56 | bool enable :1; |
63 | uint8_t mode :6; | 57 | uint8_t mode :6; |
64 | uint16_t hue :9; | ||
65 | uint8_t sat :8; | ||
66 | uint8_t val :8; | 58 | uint8_t val :8; |
67 | uint8_t speed :8;//EECONFIG needs to be increased to support this | 59 | uint8_t speed :8;//EECONFIG needs to be increased to support this |
68 | }; | 60 | }; |
69 | } rgb_config_t; | 61 | } led_config_t; |
70 | 62 | ||
71 | enum rgb_matrix_effects { | 63 | enum _matrix_effects { |
72 | RGB_MATRIX_SOLID_COLOR = 1, | 64 | RGB_MATRIX_SOLID_COLOR = 1, |
73 | #ifndef DISABLE_RGB_MATRIX_ALPHAS_MODS | 65 | #ifndef DISABLE_RGB_MATRIX_ALPHAS_MODS |
74 | RGB_MATRIX_ALPHAS_MODS, | 66 | RGB_MATRIX_ALPHAS_MODS, |