cleanup is31fl3729 driver; LED updates only when needed now
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5adce05f84
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5d722f41e8
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@ -16,20 +16,17 @@
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void is31fl3729_init(uint8_t i2c_addr, uint8_t config, uint8_t global_current)
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{
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uint8_t buf;
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// enable device
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#ifdef FL3729_SDB_PORT
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FL3729_SDB_PORT->BSHR = FL3729_SDB_PIN;
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#endif
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// reset config registers
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buf = FL3729_RESET_VALUE;
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i2c_write_addr1b(i2c_addr, FL3729_REG_RESET, &buf, 1);
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i2c_write_reg_8b(i2c_addr, FL3729_REG_CONFIG, FL3729_RESET_VALUE);
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// write initial config
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i2c_write_addr1b(i2c_addr, FL3729_REG_CONFIG, &config, 1);
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i2c_write_addr1b(i2c_addr, FL3729_REG_G_CURRENT, &global_current, 1);
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i2c_write_reg_8b(i2c_addr, FL3729_REG_CONFIG, config);
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i2c_write_reg_8b(i2c_addr, FL3729_REG_G_CURRENT, global_current);
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}
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uint8_t is31fl3729_get_addr(uint8_t adpin)
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@ -40,21 +37,21 @@ uint8_t is31fl3729_get_addr(uint8_t adpin)
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void is31fl3729_set_global_current(uint8_t i2c_addr, uint8_t current)
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{
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i2c_write_addr1b(i2c_addr, FL3729_REG_G_CURRENT, ¤t, 1);
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i2c_write_reg_8b(i2c_addr, FL3729_REG_G_CURRENT, current);
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}
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void is31fl3729_set_scaling_current(uint8_t i2c_addr, uint8_t cs, uint8_t current)
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{
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if (cs > 0xf) return;
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i2c_write_addr1b(i2c_addr, FL3729_REG_SCALING + cs, ¤t, 1);
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i2c_write_reg_8b(i2c_addr, FL3729_REG_SCALING + cs, current);
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}
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/*
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* sets current limit of multiple outputs simultaneously, starting from CS1.
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* useful for initial register configuration.
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*/
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void is31fl3729_set_scaling_current_multi(uint8_t i2c_addr, uint8_t *current, uint8_t count)
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void is31fl3729_set_scaling_current_multi(uint8_t i2c_addr, const uint8_t *current, uint8_t count)
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{
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if (!count) return;
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count &= 0xf;
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@ -67,9 +64,9 @@ void is31fl3729_set_scaling_current_multi(uint8_t i2c_addr, uint8_t *current, ui
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* sw: first switch segment to update. usually set this to 1 for the first switch.
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* if set to 0, will default to 1.
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* *out: output data buffer
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* len: length of buffer
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* len: length of buffer. up to end user to not exceed writing beyond register 0x90.
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*/
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void is31fl3729_set_outputs(uint8_t i2c_addr, uint8_t sw, uint8_t *out, uint8_t len)
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void is31fl3729_set_outputs(uint8_t i2c_addr, uint8_t sw, const uint8_t *out, uint8_t len)
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{
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if (!sw) sw = 1;
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@ -34,15 +34,15 @@
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#define FL3729_GCC_MAX 64 // maximum global current level
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#define FL3729_CONF_SHDN_ENA 0
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#define FL3729_CONF_SHDN_DIS ((1 << 0) << 0)
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#define FL3729_CONF_SSD_SHDN (0 << 0) // software shutdown
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#define FL3729_CONF_SSD_NRML (1 << 0) // normal operation
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#define FL3729_CONF_OSDE_OFF 0
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#define FL3729_CONF_OSDE_OPEN ((1 << 0) << 1)
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#define FL3729_CONF_OSDE_SHORT ((1 << 1) << 1)
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#define FL3729_CONF_OSDE_OFF (0 << 1)
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#define FL3729_CONF_OSDE_OPEN (1 << 1)
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#define FL3729_CONF_OSDE_SHORT (2 << 1)
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#define FL3729_CONF_LOGIC_LOLEV 0
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#define FL3729_CONF_LOGIC_HILEV ((1 << 0) << 3)
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#define FL3729_CONF_LOGIC_LOLEV (0 << 3)
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#define FL3729_CONF_LOGIC_HILEV (1 << 3)
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#define FL3729_CONF_MATRIX_9x15 0x00
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#define FL3729_CONF_MATRIX_8x16 0x10
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@ -68,25 +68,15 @@
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/*
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typedef struct IS31FL3729_Conf {
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uint8_t ad_pin;
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uint8_t config;
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uint8_t global_brightness;
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} IS31FL3729_Conf;
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*/
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void is31fl3729_init(uint8_t i2c_addr, uint8_t config, uint8_t global_current);
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uint8_t is31fl3729_get_addr(uint8_t adpin);
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void is31fl3729_set_global_current(uint8_t i2c_addr, uint8_t current);
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void is31fl3729_set_scaling_current(uint8_t i2c_addr, uint8_t cs, uint8_t current);
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void is31fl3729_set_scaling_current_multi(uint8_t i2c_addr, uint8_t *current, uint8_t count);
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void is31fl3729_set_scaling_current_multi(uint8_t i2c_addr, const uint8_t *current, uint8_t count);
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void is31fl3729_set_outputs(uint8_t i2c_addr, uint8_t sw, uint8_t *out, uint8_t len);
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void is31fl3729_set_outputs(uint8_t i2c_addr, uint8_t sw, const uint8_t *out, uint8_t len);
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@ -100,7 +100,7 @@ uint8_t i2c_read_reg_8b(uint8_t addr, uint8_t reg)
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return dat;
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}
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int8_t i2c_write_addr1b(uint8_t addr, uint8_t reg, uint8_t *data, uint8_t len)
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int8_t i2c_write_addr1b(uint8_t addr, uint8_t reg, const uint8_t *data, uint8_t len)
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{
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timeout = I2C_TIMEOUT;
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while((I2C_GetFlagStatus(I2C1, I2C_FLAG_BUSY) != RESET) && timeout--);
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@ -136,7 +136,7 @@ int8_t i2c_write_addr1b(uint8_t addr, uint8_t reg, uint8_t *data, uint8_t len)
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return 0;
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}
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void i2c_write_reg_8b(uint8_t addr, uint8_t reg, uint8_t dat)
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void i2c_write_reg_8b(uint8_t addr, uint8_t reg, const uint8_t dat)
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{
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i2c_write_addr1b(addr, reg, &dat, 1);
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}
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@ -14,10 +14,10 @@
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void i2c_init();
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int8_t i2c_read_addr1b(uint8_t addr, uint8_t reg, uint8_t *data, uint8_t len);
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int8_t i2c_write_addr1b(uint8_t addr, uint8_t reg, uint8_t *data, uint8_t len);
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int8_t i2c_write_addr1b(uint8_t addr, uint8_t reg, const uint8_t *data, uint8_t len);
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uint8_t i2c_read_reg_8b(uint8_t addr, uint8_t reg);
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void i2c_write_reg_8b(uint8_t addr, uint8_t reg, uint8_t dat);
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void i2c_write_reg_8b(uint8_t addr, uint8_t reg, const uint8_t dat);
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int8_t i2c_ack_poll(uint8_t devaddr);
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@ -48,7 +48,7 @@ void led_init()
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uint8_t buf[FL3729_CS_OUTPUTS] = {0xff};
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is31fl3729_init(FL3729_ADDR,
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FL3729_CONF_SHDN_DIS | FL3729_CONF_OSDE_OFF | FL3729_CONF_MATRIX_2x16,
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FL3729_CONF_SSD_NRML | FL3729_CONF_OSDE_OFF | FL3729_CONF_MATRIX_2x16,
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LED_INIT_CURRENT);
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for (i = 0; i < FL3729_CS_OUTPUTS; i++) buf[i] = LED_INIT_SCALING;
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@ -83,6 +83,8 @@ void led_send()
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out[cursor_map[2]] = cursor[2];
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is31fl3729_set_outputs(FL3729_ADDR, 1, out, 16+15);
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led_updated = 0;
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}
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}
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