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@ -7,66 +7,144 @@ |
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#include "obj.h" |
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#include "led.h" |
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#define PYB_LED_R_PORT (GPIOA) |
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#define PYB_LED_R1_PIN (GPIO_Pin_8) |
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#define PYB_LED_R2_PIN (GPIO_Pin_10) |
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#define PYB_LED_G_PORT (GPIOC) |
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#define PYB_LED_G1_PIN (GPIO_Pin_4) |
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#define PYB_LED_G2_PIN (GPIO_Pin_5) |
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/* LED numbers, used internally */ |
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#define PYB_LED_1 (1) |
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#define PYB_LED_2 (2) |
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#define PYB_LED_3 (3) |
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#define PYB_LED_4 (4) |
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#if defined(PYBOARD) |
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#define PYB_LED1_PORT (GPIOA) |
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#define PYB_LED1_PIN (GPIO_Pin_8) |
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#define PYB_LED2_PORT (GPIOA) |
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#define PYB_LED2_PIN (GPIO_Pin_10) |
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#define PYB_LED3_PORT (GPIOC) |
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#define PYB_LED3_PIN (GPIO_Pin_4) |
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#define PYB_LED4_PORT (GPIOC) |
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#define PYB_LED4_PIN (GPIO_Pin_5) |
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#define PYB_OTYPE (GPIO_OType_OD) |
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#define PYB_LED_ON(port, pin) (port->BSRRH = pin) |
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#define PYB_LED_OFF(port, pin) (port->BSRRL = pin) |
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#elif defined(STM32F4DISC) |
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#define PYB_LED1_PORT (GPIOD) |
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#define PYB_LED1_PIN (GPIO_Pin_14) |
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#define PYB_LED2_PORT (GPIOD) |
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#define PYB_LED2_PIN (GPIO_Pin_12) |
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#define PYB_LED3_PORT (GPIOD) |
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#define PYB_LED3_PIN (GPIO_Pin_15) |
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#define PYB_LED4_PORT (GPIOD) |
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#define PYB_LED4_PIN (GPIO_Pin_13) |
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#define PYB_OTYPE (GPIO_OType_PP) |
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#define PYB_LED_ON(port, pin) (port->BSRRL = pin) |
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#define PYB_LED_OFF(port, pin) (port->BSRRH = pin) |
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#endif |
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void led_init(void) { |
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// set the output high (so LED is off)
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PYB_LED_R_PORT->BSRRL = PYB_LED_R1_PIN; |
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PYB_LED_R_PORT->BSRRL = PYB_LED_R2_PIN; |
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PYB_LED_G_PORT->BSRRL = PYB_LED_G1_PIN; |
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PYB_LED_G_PORT->BSRRL = PYB_LED_G2_PIN; |
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// make them open drain outputs
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/* GPIO structure */ |
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GPIO_InitTypeDef GPIO_InitStructure; |
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GPIO_InitStructure.GPIO_Pin = PYB_LED_R1_PIN | PYB_LED_R2_PIN; |
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/* Configure I/O speed, mode, output type and pull */ |
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GPIO_InitStructure.GPIO_Speed = GPIO_Speed_2MHz; |
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_OUT; |
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GPIO_InitStructure.GPIO_OType = GPIO_OType_OD; |
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GPIO_InitStructure.GPIO_PuPd = GPIO_PuPd_NOPULL; |
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GPIO_Init(PYB_LED_R_PORT, &GPIO_InitStructure); |
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GPIO_InitStructure.GPIO_Pin = PYB_LED_G1_PIN | PYB_LED_G2_PIN; |
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GPIO_Init(PYB_LED_G_PORT, &GPIO_InitStructure); |
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GPIO_InitStructure.GPIO_OType = PYB_OTYPE; |
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/* Turn off LEDs */ |
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PYB_LED_OFF(PYB_LED1_PORT, PYB_LED1_PIN); |
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PYB_LED_OFF(PYB_LED2_PORT, PYB_LED2_PIN); |
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PYB_LED_OFF(PYB_LED3_PORT, PYB_LED1_PIN); |
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PYB_LED_OFF(PYB_LED4_PORT, PYB_LED2_PIN); |
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/* Initialize LEDs */ |
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GPIO_InitStructure.GPIO_Pin = PYB_LED1_PIN; |
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GPIO_Init(PYB_LED1_PORT, &GPIO_InitStructure); |
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GPIO_InitStructure.GPIO_Pin = PYB_LED2_PIN; |
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GPIO_Init(PYB_LED2_PORT, &GPIO_InitStructure); |
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GPIO_InitStructure.GPIO_Pin = PYB_LED3_PIN; |
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GPIO_Init(PYB_LED3_PORT, &GPIO_InitStructure); |
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GPIO_InitStructure.GPIO_Pin = PYB_LED4_PIN; |
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GPIO_Init(PYB_LED4_PORT, &GPIO_InitStructure); |
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} |
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void led_state(pyb_led_t led, int state) { |
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GPIO_TypeDef *port; |
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uint32_t pin; |
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switch (led) { |
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case PYB_LED_R1: port = PYB_LED_R_PORT; pin = PYB_LED_R1_PIN; break; |
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case PYB_LED_R2: port = PYB_LED_R_PORT; pin = PYB_LED_R2_PIN; break; |
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case PYB_LED_G1: port = PYB_LED_G_PORT; pin = PYB_LED_G1_PIN; break; |
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case PYB_LED_G2: port = PYB_LED_G_PORT; pin = PYB_LED_G2_PIN; break; |
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default: return; |
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case PYB_LED_1: |
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pin = PYB_LED1_PIN; |
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port = PYB_LED1_PORT; |
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break; |
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case PYB_LED_2: |
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pin = PYB_LED2_PIN; |
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port = PYB_LED2_PORT; |
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break; |
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case PYB_LED_3: |
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pin = PYB_LED3_PIN; |
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port = PYB_LED3_PORT; |
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break; |
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case PYB_LED_4: |
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pin = PYB_LED4_PIN; |
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port = PYB_LED4_PORT; |
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break; |
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default: |
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return; |
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} |
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if (state == 0) { |
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// turn LED off (output is high)
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port->BSRRL = pin; |
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// turn LED off
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PYB_LED_OFF(port, pin); |
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} else { |
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// turn LED on (output is low)
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port->BSRRH = pin; |
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// turn LED on
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PYB_LED_ON(port, pin); |
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} |
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} |
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void led_toggle(pyb_led_t led) { |
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GPIO_TypeDef *port; |
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uint32_t pin; |
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switch (led) { |
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case PYB_LED_R1: port = PYB_LED_R_PORT; pin = PYB_LED_R1_PIN; break; |
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case PYB_LED_R2: port = PYB_LED_R_PORT; pin = PYB_LED_R2_PIN; break; |
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case PYB_LED_G1: port = PYB_LED_G_PORT; pin = PYB_LED_G1_PIN; break; |
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case PYB_LED_G2: port = PYB_LED_G_PORT; pin = PYB_LED_G2_PIN; break; |
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default: return; |
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case PYB_LED_1: |
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pin = PYB_LED1_PIN; |
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port = PYB_LED1_PORT; |
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break; |
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case PYB_LED_2: |
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pin = PYB_LED2_PIN; |
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port = PYB_LED2_PORT; |
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break; |
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case PYB_LED_3: |
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pin = PYB_LED3_PIN; |
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port = PYB_LED3_PORT; |
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break; |
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case PYB_LED_4: |
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pin = PYB_LED4_PIN; |
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port = PYB_LED4_PORT; |
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break; |
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default: |
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return; |
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} |
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if (!(port->ODR & pin)) { |
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// turn LED off (output high)
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port->BSRRL = pin; |
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// turn LED off
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PYB_LED_OFF(port, pin); |
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} else { |
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// turn LED on (output low)
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port->BSRRH = pin; |
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PYB_LED_ON(port, pin); |
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} |
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} |
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@ -85,19 +163,13 @@ void led_obj_print(void (*print)(void *env, const char *fmt, ...), void *env, mp |
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mp_obj_t led_obj_on(mp_obj_t self_in) { |
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pyb_led_obj_t *self = self_in; |
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switch (self->led_id) { |
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case 1: led_state(PYB_LED_G1, 1); break; |
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case 2: led_state(PYB_LED_G2, 1); break; |
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} |
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led_state(self->led_id, 1); |
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return mp_const_none; |
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} |
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mp_obj_t led_obj_off(mp_obj_t self_in) { |
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pyb_led_obj_t *self = self_in; |
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switch (self->led_id) { |
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case 1: led_state(PYB_LED_G1, 0); break; |
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case 2: led_state(PYB_LED_G2, 0); break; |
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} |
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led_state(self->led_id, 0); |
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return mp_const_none; |
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} |
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