[Keyboard] Align xd84 and xd96 with moon (#6465)

* Refactor xd84 to use LINK_TIME_OPTIMIZATION_ENABLE

* Refactor xd96 to use LINK_TIME_OPTIMIZATION_ENABLE

* Align xd84 and xd96 with moon

* Update keyboards/xd96/rules.mk

Co-Authored-By: Drashna Jaelre <drashna@live.com>

* Update keyboards/xd84/rules.mk

Co-Authored-By: Drashna Jaelre <drashna@live.com>
This commit is contained in:
Joel Challis 2019-08-14 20:07:26 +01:00 committed by Drashna Jaelre
parent 547fbe769c
commit 41482e02a6
13 changed files with 83 additions and 61 deletions

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@ -237,7 +237,3 @@
/* Bootmagic Lite key configuration */ /* Bootmagic Lite key configuration */
// #define BOOTMAGIC_LITE_ROW 0 // #define BOOTMAGIC_LITE_ROW 0
// #define BOOTMAGIC_LITE_COLUMN 0 // #define BOOTMAGIC_LITE_COLUMN 0
// LTO options
#define NO_ACTION_MACRO
#define NO_ACTION_FUNCTION

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@ -1,3 +1,18 @@
/* Copyright 2019
*
* This program 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 2 of the License, or
* (at your option) any later version.
*
* This program 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.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <stdint.h> #include <stdint.h>
#include <stdbool.h> #include <stdbool.h>
#include "wait.h" #include "wait.h"

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@ -65,7 +65,7 @@ static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row)
// Clear data in matrix row // Clear data in matrix row
current_matrix[current_row] = 0; current_matrix[current_row] = 0;
// Select row and wait for row selecton to stabilize // Select row and wait for row selection to stabilize
select_row(current_row); select_row(current_row);
wait_us(30); wait_us(30);

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@ -1,9 +1,24 @@
/* Copyright 2019
*
* This program 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 2 of the License, or
* (at your option) any later version.
*
* This program 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.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "i2c_master.h" #include "i2c_master.h"
#include "pca9555.h" #include "pca9555.h"
#include "debug.h" #include "debug.h"
#define SLAVE_TO_ADDR(n) (n<<1) #define SLAVE_TO_ADDR(n) (n << 1)
#define TIMEOUT 100 #define TIMEOUT 100
enum { enum {
@ -14,7 +29,7 @@ enum {
CMD_INVERSION_0, CMD_INVERSION_0,
CMD_INVERSION_1, CMD_INVERSION_1,
CMD_CONFIG_0, CMD_CONFIG_0,
CMD_CONFIG_1 CMD_CONFIG_1,
}; };
void pca9555_init(uint8_t slave_addr) { void pca9555_init(uint8_t slave_addr) {
@ -22,17 +37,17 @@ void pca9555_init(uint8_t slave_addr) {
if (!s_init) { if (!s_init) {
i2c_init(); i2c_init();
s_init=1; s_init = 1;
} }
// TODO: could check device connected // TODO: could check device connected
//i2c_start(SLAVE_TO_ADDR(slave) | I2C_WRITE); // i2c_start(SLAVE_TO_ADDR(slave) | I2C_WRITE);
//i2c_stop(); // i2c_stop();
} }
void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) { void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_OUTPUT_1 : CMD_OUTPUT_0; uint8_t cmd = port ? CMD_CONFIG_1 : CMD_CONFIG_0;
i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT); i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
@ -42,7 +57,7 @@ void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) {
void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) { void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_CONFIG_1 : CMD_CONFIG_0; uint8_t cmd = port ? CMD_OUTPUT_1 : CMD_OUTPUT_0;
i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT); i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
@ -52,10 +67,10 @@ void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port) { uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_INPUT_1 : CMD_INPUT_0; uint8_t cmd = port ? CMD_INPUT_1 : CMD_INPUT_0;
uint8_t data = 0; uint8_t data = 0;
i2c_status_t ret = i2c_readReg(addr, cmd, &data, sizeof(data), TIMEOUT); i2c_status_t ret = i2c_readReg(addr, cmd, &data, sizeof(data), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
print("pca9555_readPins::FAILED\n"); print("pca9555_readPins::FAILED\n");
} }

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@ -18,15 +18,15 @@
/* /*
PCA9555 PCA9555
,----------. ,----------.
SDA --| SDA P00 |-- P1 SDA --| SDA P00 |-- P00
SCL --| SCL P01 |-- P2 SCL --| SCL P01 |-- P01
INT --| INT P02 |-- P3 INT --| INT P02 |-- P02
| P03 |-- P4 | P03 |-- P03
A0 --| A0 P04 |-- P5 A0 --| A0 P04 |-- P04
A1 --| A1 P05 |-- P6 A1 --| A1 P05 |-- P05
A2 --| A2 P06 |-- P7 A2 --| A2 P06 |-- P06
| P07 |-- P8 | P07 |-- P07
| | | |
| P10 |-- P10 | P10 |-- P10
| P11 |-- P11 | P11 |-- P11
| P12 |-- P12 | P12 |-- P12
@ -35,7 +35,7 @@
| P15 |-- P15 | P15 |-- P15
| P16 |-- P16 | P16 |-- P16
| P17 |-- P17 | P17 |-- P17
`----------' `----------'
*/ */
#define PCA9555_PORT0 0 #define PCA9555_PORT0 0
@ -52,4 +52,4 @@ void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf);
void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf); void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf);
uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port); uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port);

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@ -2,7 +2,7 @@
![XD84](https://cdn.shopify.com/s/files/1/2711/4238/products/HTB17eeJSXXXXXbIXFXXq6xXFXXXp_1024x1024.jpg?v=1515505994) ![XD84](https://cdn.shopify.com/s/files/1/2711/4238/products/HTB17eeJSXXXXXbIXFXXq6xXFXXXp_1024x1024.jpg?v=1515505994)
Compact With 84 Keys & RGB LED Underglow Keyboard with 84 Keys & RGB LED Underglow
- Designed by Xiudi - Designed by Xiudi
- Up to 87 keys - Up to 87 keys
- iso and ansi support - iso and ansi support

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@ -78,11 +78,11 @@ BLUETOOTH_ENABLE = no # Enable Bluetooth with the Adafruit EZ-Key HID
AUDIO_ENABLE = no # Audio output on port C6 AUDIO_ENABLE = no # Audio output on port C6
FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches
HD44780_ENABLE = no # Enable support for HD44780 based LCDs (+400) HD44780_ENABLE = no # Enable support for HD44780 based LCDs (+400)
LINK_TIME_OPTIMIZATION_ENABLE = yes
# custom matrix setup # custom matrix setup
CUSTOM_MATRIX = yes CUSTOM_MATRIX = yes
SRC = i2c_master.c custom_matrix_helper.c pca9555.c matrix.c SRC += custom_matrix_helper.c pca9555.c matrix.c
QUANTUM_LIB_SRC += i2c_master.c
EXTRAFLAGS += -flto LAYOUTS = 75_ansi 75_iso
LAYOUTS = 75_ansi 75_iso

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@ -238,7 +238,3 @@
/* Bootmagic Lite key configuration */ /* Bootmagic Lite key configuration */
// #define BOOTMAGIC_LITE_ROW 0 // #define BOOTMAGIC_LITE_ROW 0
// #define BOOTMAGIC_LITE_COLUMN 0 // #define BOOTMAGIC_LITE_COLUMN 0
// LTO options
#define NO_ACTION_MACRO
#define NO_ACTION_FUNCTION

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@ -67,7 +67,7 @@ static bool read_cols_on_row(matrix_row_t current_matrix[], uint8_t current_row)
// Clear data in matrix row // Clear data in matrix row
current_matrix[current_row] = 0; current_matrix[current_row] = 0;
// Select row and wait for row selecton to stabilize // Select row and wait for row selection to stabilize
select_row(current_row); select_row(current_row);
wait_us(30); wait_us(30);

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@ -18,7 +18,7 @@
#include "debug.h" #include "debug.h"
#define SLAVE_TO_ADDR(n) (n<<1) #define SLAVE_TO_ADDR(n) (n << 1)
#define TIMEOUT 100 #define TIMEOUT 100
enum { enum {
@ -29,7 +29,7 @@ enum {
CMD_INVERSION_0, CMD_INVERSION_0,
CMD_INVERSION_1, CMD_INVERSION_1,
CMD_CONFIG_0, CMD_CONFIG_0,
CMD_CONFIG_1 CMD_CONFIG_1,
}; };
void pca9555_init(uint8_t slave_addr) { void pca9555_init(uint8_t slave_addr) {
@ -37,17 +37,17 @@ void pca9555_init(uint8_t slave_addr) {
if (!s_init) { if (!s_init) {
i2c_init(); i2c_init();
s_init=1; s_init = 1;
} }
// TODO: could check device connected // TODO: could check device connected
//i2c_start(SLAVE_TO_ADDR(slave) | I2C_WRITE); // i2c_start(SLAVE_TO_ADDR(slave) | I2C_WRITE);
//i2c_stop(); // i2c_stop();
} }
void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) { void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_OUTPUT_1 : CMD_OUTPUT_0; uint8_t cmd = port ? CMD_CONFIG_1 : CMD_CONFIG_0;
i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT); i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
@ -57,7 +57,7 @@ void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf) {
void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) { void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_CONFIG_1 : CMD_CONFIG_0; uint8_t cmd = port ? CMD_OUTPUT_1 : CMD_OUTPUT_0;
i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT); i2c_status_t ret = i2c_writeReg(addr, cmd, &conf, sizeof(conf), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
@ -67,10 +67,10 @@ void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf) {
uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port) { uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port) {
uint8_t addr = SLAVE_TO_ADDR(slave_addr); uint8_t addr = SLAVE_TO_ADDR(slave_addr);
uint8_t cmd = port ? CMD_INPUT_1 : CMD_INPUT_0; uint8_t cmd = port ? CMD_INPUT_1 : CMD_INPUT_0;
uint8_t data = 0; uint8_t data = 0;
i2c_status_t ret = i2c_readReg(addr, cmd, &data, sizeof(data), TIMEOUT); i2c_status_t ret = i2c_readReg(addr, cmd, &data, sizeof(data), TIMEOUT);
if (ret != I2C_STATUS_SUCCESS) { if (ret != I2C_STATUS_SUCCESS) {
print("pca9555_readPins::FAILED\n"); print("pca9555_readPins::FAILED\n");
} }

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@ -18,15 +18,15 @@
/* /*
PCA9555 PCA9555
,----------. ,----------.
SDA --| SDA P00 |-- P1 SDA --| SDA P00 |-- P00
SCL --| SCL P01 |-- P2 SCL --| SCL P01 |-- P01
INT --| INT P02 |-- P3 INT --| INT P02 |-- P02
| P03 |-- P4 | P03 |-- P03
A0 --| A0 P04 |-- P5 A0 --| A0 P04 |-- P04
A1 --| A1 P05 |-- P6 A1 --| A1 P05 |-- P05
A2 --| A2 P06 |-- P7 A2 --| A2 P06 |-- P06
| P07 |-- P8 | P07 |-- P07
| | | |
| P10 |-- P10 | P10 |-- P10
| P11 |-- P11 | P11 |-- P11
| P12 |-- P12 | P12 |-- P12
@ -35,7 +35,7 @@
| P15 |-- P15 | P15 |-- P15
| P16 |-- P16 | P16 |-- P16
| P17 |-- P17 | P17 |-- P17
`----------' `----------'
*/ */
#define PCA9555_PORT0 0 #define PCA9555_PORT0 0
@ -52,4 +52,4 @@ void pca9555_set_config(uint8_t slave_addr, uint8_t port, uint8_t conf);
void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf); void pca9555_set_output(uint8_t slave_addr, uint8_t port, uint8_t conf);
uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port); uint8_t pca9555_readPins(uint8_t slave_addr, uint8_t port);

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@ -2,7 +2,7 @@
![XD96](https://cdn.shopify.com/s/files/1/2711/4238/products/xd96_pcb_1024x1024.jpg?v=1515425370) ![XD96](https://cdn.shopify.com/s/files/1/2711/4238/products/xd96_pcb_1024x1024.jpg?v=1515425370)
Compact With 96 Keys & RGB LED Underglow Keyboard with 96 Keys & RGB LED Underglow
- Designed by Xiudi - Designed by Xiudi
- ISO and ANSI support - ISO and ANSI support
- Uses Kimera core - Uses Kimera core

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@ -78,9 +78,9 @@ BLUETOOTH_ENABLE = no # Enable Bluetooth with the Adafruit EZ-Key HID
AUDIO_ENABLE = no # Audio output on port C6 AUDIO_ENABLE = no # Audio output on port C6
FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches
HD44780_ENABLE = no # Enable support for HD44780 based LCDs (+400) HD44780_ENABLE = no # Enable support for HD44780 based LCDs (+400)
LINK_TIME_OPTIMIZATION_ENABLE = yes
# custom matrix setup # custom matrix setup
CUSTOM_MATRIX = yes CUSTOM_MATRIX = yes
SRC = i2c_master.c custom_matrix_helper.c pca9555.c matrix.c SRC += custom_matrix_helper.c pca9555.c matrix.c
QUANTUM_LIB_SRC += i2c_master.c
EXTRAFLAGS += -flto