666 lines
25 KiB
Plaintext
666 lines
25 KiB
Plaintext
README
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^^^^^^
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This README discusses issues unique to NuttX configurations for the
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Atmel SAM4L Xplained Pro development board. This board features the
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ATSAM4LC4C MCU.
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The SAM4L Xplained Pro Starter Kit is bundled with four modules:
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1) I/O1 - An MMC/SD card slot, PWM LED control, ADC light sensor, UART
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loopback, TWI AT30TSE758 Temperature sensor.
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2) OLED1 - An OLED plus 3 additional switches and 3 additional LEDs
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3) SLCD1 - A segment LCD that connects directly to the "EXT5 SEGMENT LCD"
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connector
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4) PROTO1 - A prototyping board with logic on board (other than power-related
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logic).
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Contents
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^^^^^^^^
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- Modules
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- LEDs
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- Serial Consoles
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- SAM4L Xplained Pro-specific Configuration Options
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- Configurations
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Modules
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^^^^^^^
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The SAM4L Xplained Pro Starter Kit is bundled with four modules:
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I/O1
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----
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The primary function of this module is to provide SD card support, but
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the full list of modules features include:
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- microSD card connector (SPI interface)
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- PWM (LED control)
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- ADC (light sensor)
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- UART loopback
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- TWI AT30TSE758 Temperature sensor with EEPROM
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SPI is available on two of the SAM4L Xplained connectors, EXT1 and EXT2.
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They mate with the I/O1 connector as indicated in this table.
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I/O1 Connector
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--------------
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I/O1 EXT1 EXT2 Other use of either pin
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----------------- -------------------- -------------------- ------------------------------------
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1 ID 1 1
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2 GND 2 GND 2
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3 LIGHTSENSOR 3 PA04 ADCIFE/AD0 3 PA07 ADCIFE/AD2
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4 LP_OUT 4 PA05 ADCIFE/AD1 4 PB02 ADCIFE/AD3
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5 GPIO1 5 PB12 GPIO 5 PC08 GPIO PB12 and PC8 on EXT5
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6 GPIO2 6 PC02 GPIO 6 PB10 GPIO PB10 on EXT5
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7 LED 7 PC00 TC/1/A0 7 PC04 TC/1/A2
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8 LP_IN 8 PC01 TC/1/B0 8 PC05 TC/1/B2 PC05 on EXT5
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9 TEMP_ALERT 9 PC25 EIC/EXTINT2 9 PC06 EIC/EXTINT8 PC25 on EXT5
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10 microSD_DETECT 10 PB13 SPI/NPCS1 10 PC09 GPIO PB13 on EXT5
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11 TWI SDA 11 PA23 TWIMS/0/TWD 11 PB14 TWIMS/3/TWD PB14 on EXT3&4, PA23 and PB14 on EXT5
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12 TWI SCL 12 PA24 TWIMS/0/TWCK 12 PB15 TWIMS/3/TWCK PB15 on EXT3&4, PA24 and PB15 on EXT5
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13 UART RX 13 PB00 USART/0/RXD 13 PC26 USART/1/RXD PB00 on EXT4, PC26 on EXT3&5
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14 UART TX 14 PB01 USART/0/TXD 14 PC27 USART/1/TXD PB01 on EXT4, PC27 on EXT3&5
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15 microSD_SS 15 PC03 SPI/NPCS0 15 PB11 SPI/NPCS2 PB11 on EXT5
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16 SPI_MOSI 16 PA22 SPI/MOSI 16 PA22 SPI/MOSI PA22 on EXT5
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17 SPI_MISO 17 PA21 SPI/MISO 17 PA21 SPI/MISO PA21 on EXT5
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18 SPI_SCK 18 PC30 SPI/SCK 18 PC30 SPI/SCK PC30 on EXT5
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19 GND 19 GND GND
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20 VCC 20 VCC VCC
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The mapping between the I/O1 pins and the SD connector are shown in the
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following table.
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SD Card Connection
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------------------
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I/O1 SD PIN Description
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---- ---- --- -------------------------------------------------
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D2 1 Data line 2 (not used)
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15 D3 2 Data line 3. Active low chip select, pulled high
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16 CMD 3 Command line, connected to SPI_MOSI.
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20 VDD 4
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18 CLK 5 Clock line, connected to SPI_SCK.
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2/19 GND 6
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17 D0 7 Data line 0, connected to SPI_MISO.
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D1 8 Data line 1 (not used)
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10 SW_A 9 Card detect
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2/19 SW_B 10 GND
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Card Detect
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-----------
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When a microSD card is put into the connector SW_A and SW_B are short-
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circuited. SW_A is connected to the microSD_DETECT signal. To use this
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as a card indicator remember to enable internal pullup in the target
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device.
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GPIOs
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-----
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So all that is required to connect the SD is configure the SPI
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PIN EXT1 EXT2 Description
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--- -------------- --------------- -------------------------------------
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15 PC03 SPI/NPCS0 PB11 SPI/NPCS2 Active low chip select OUTPUT, pulled
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high on board.
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10 PB13 SPI/NPCS1 10 PC09 GPIO Active low card detect INPUT, must
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use internal pull-up.
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Configuration Options:
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----------------------
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CONFIG_SAM4L_XPLAINED_IOMODULE=y : Informs the system that the
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I/O1 module is installed
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CONFIG_SAM4L_XPLAINED_IOMODULE_EXT1=y : The module is installed in EXT1
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CONFIG_SAM4L_XPLAINED_IOMODULE_EXT2=y : The mdoule is installed in EXT2
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See the set-up in the discussion of the nsh configuration below for other
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required configuration options.
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NOTE: As of this writing, only the SD card slot is supported in the I/O1
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module.
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OLED1
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-----
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This module provides an OLED plus 3 additional switches and 3 additional
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LEDs.
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OLED1 Connector
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--------------
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OLED1 EXT1 EXT2 Other use of either pin
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----------------- -------------------- -------------------- ------------------------------------
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1 ID 1 1
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2 GND 2 GND 2
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3 BUTTON2 3 PA04 ADCIFE/AD0 3 PA07 ADCIFE/AD2
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4 BUTTON3 4 PA05 ADCIFE/AD1 4 PB02 ADCIFE/AD3
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5 DATA_CMD_SEL 5 PB12 GPIO 5 PC08 GPIO PB12 and PC8 on EXT5
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6 LED3 6 PC02 GPIO 6 PB10 GPIO PB10 on EXT5
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7 LED1 7 PC00 TC/1/A0 7 PC04 TC/1/A2
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8 LED2 8 PC01 TC/1/B0 8 PC05 TC/1/B2 PC05 on EXT5
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9 BUTTON1 9 PC25 EIC/EXTINT2 9 PC06 EIC/EXTINT8 PC25 on EXT5
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10 DISPLAY_RESET 10 PB13 SPI/NPCS1 10 PC09 GPIO PB13 on EXT5
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11 N/C 11 PA23 TWIMS/0/TWD 11 PB14 TWIMS/3/TWD PB14 on EXT3&4, PA23 and PB14 on EXT5
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12 N/C 12 PA24 TWIMS/0/TWCK 12 PB15 TWIMS/3/TWCK PB15 on EXT3&4, PA24 and PB15 on EXT5
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13 N/C 13 PB00 USART/0/RXD 13 PC26 USART/1/RXD PB00 on EXT4, PC26 on EXT3&5
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14 N/C 14 PB01 USART/0/TXD 14 PC27 USART/1/TXD PB01 on EXT4, PC27 on EXT3&5
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15 DISPLAY_SS 15 PC03 SPI/NPCS0 15 PB11 SPI/NPCS2 PB11 on EXT5
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16 SPI_MOSI 16 PA22 SPI/MOSI 16 PA22 SPI/MOSI PA22 on EXT5
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17 N/C 17 PA21 SPI/MISO 17 PA21 SPI/MISO PA21 on EXT5
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18 SPI_SCK 18 PC30 SPI/SCK 18 PC30 SPI/SCK PC30 on EXT5
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19 GND 19 GND GND
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20 VCC 20 VCC VCC
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Configuration Options:
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----------------------
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CONFIG_SAM4L_XPLAINED_OLED1MODULE=y : Informs the system that the
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I/O1 module is installed
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CONFIG_SAM4L_XPLAINED_OLED1MODULE_EXT1=y : The module is installed in EXT1
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CONFIG_SAM4L_XPLAINED_OLED1MODULE_EXT2=y : The mdoule is installed in EXT2
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See the set-up in the discussion of the nsh configuration below for other
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required configuration options.
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SLCD1
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-----
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This module provides a A segment LCD that connects directly to the "EXT5
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SEGMENT LCD" connector
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Configuration Options:
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----------------------
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CONFIG_SAM4L_XPLAINED_SLCD1MODULE=y : Informs the system that the
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I/O1 module is installed
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See the set-up in the discussion of the nsh configuration below for other
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required configuration options.
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PROTO1
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------
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A prototyping board with logic on board (other than power-related logic).
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There is no built-in support for the PROTO1 module.
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LEDs
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^^^^
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There are three LEDs on board the SAM4L Xplained Pro board: The EDBG
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controls two of the LEDs, a power LED and a status LED. There is only
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one user controllable LED, a yellow LED labeled LED0 near the SAM4L USB
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connector.
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This LED is controlled by PC07 and LED0 can be activated by driving the
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PC07 to GND.
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When CONFIG_ARCH_LEDS is defined in the NuttX configuration, NuttX will
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control LED0 as follows:
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SYMBOL Meaning LED0
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------------------- ----------------------- ------
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LED_STARTED NuttX has been started OFF
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LED_HEAPALLOCATE Heap has been allocated OFF
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LED_IRQSENABLED Interrupts enabled OFF
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LED_STACKCREATED Idle stack created ON
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LED_INIRQ In an interrupt N/C
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LED_SIGNAL In a signal handler N/C
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LED_ASSERTION An assertion failed N/C
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LED_PANIC The system has crashed FLASH
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Thus is LED0 is statically on, NuttX has successfully booted and is,
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apparently, running normmally. If LED0 is flashing at approximately
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2Hz, then a fatal error has been detected and the system has halted.
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Serial Consoles
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^^^^^^^^^^^^^^^
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USART0
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------
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USART0 is available on connectors EXT1 and EXT4
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EXT1 EXT4 GPIO Function
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---- ---- ------ -----------
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13 13 PB00 USART0_RXD
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14 14 PB01 USART0_TXD
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19 19 GND
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20 20 VCC
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If you have a TTL to RS-232 convertor then this is the most convenient
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serial console to use. It is the default in all of these configurations.
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An option is to use the virtual COM port.
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Virtual COM Port
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----------------
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The SAM4L Xplained Pro contains an Embedded Debugger (EDBG) that can be
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used to program and debug the ATSAM4LC4C using Serial Wire Debug (SWD).
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The Embedded debugger also include a Virtual Com port interface over
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USART1. Virtual COM port connections:
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PC26 USART1 RXD
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PC27 USART1 TXD
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SAM4L Xplained Pro-specific Configuration Options
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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CONFIG_ARCH - Identifies the arch/ subdirectory. This should
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be set to:
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CONFIG_ARCH=arm
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CONFIG_ARCH_family - For use in C code:
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CONFIG_ARCH_ARM=y
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CONFIG_ARCH_architecture - For use in C code:
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CONFIG_ARCH_CORTEXM4=y
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CONFIG_ARCH_CHIP - Identifies the arch/*/chip subdirectory
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CONFIG_ARCH_CHIP="sam34"
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CONFIG_ARCH_CHIP_name - For use in C code to identify the exact
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chip:
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CONFIG_ARCH_CHIP_SAM34
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CONFIG_ARCH_CHIP_SAM4L
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CONFIG_ARCH_CHIP_ATSAM4LC4C
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CONFIG_ARCH_BOARD - Identifies the configs subdirectory and
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hence, the board that supports the particular chip or SoC.
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CONFIG_ARCH_BOARD=sam4l-xplained (for the SAM4L Xplained Pro development board)
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CONFIG_ARCH_BOARD_name - For use in C code
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CONFIG_ARCH_BOARD_SAM4L_XPLAINED=y
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CONFIG_ARCH_LOOPSPERMSEC - Must be calibrated for correct operation
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of delay loops
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CONFIG_ENDIAN_BIG - define if big endian (default is little
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endian)
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CONFIG_RAM_SIZE - Describes the installed DRAM (SRAM in this case):
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CONFIG_RAM_SIZE=0x00008000 (32Kb)
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CONFIG_RAM_START - The start address of installed DRAM
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CONFIG_RAM_START=0x20000000
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CONFIG_ARCH_LEDS - Use LEDs to show state. Unique to boards that
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have LEDs
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CONFIG_ARCH_INTERRUPTSTACK - This architecture supports an interrupt
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stack. If defined, this symbol is the size of the interrupt
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stack in bytes. If not defined, the user task stacks will be
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used during interrupt handling.
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CONFIG_ARCH_STACKDUMP - Do stack dumps after assertions
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CONFIG_ARCH_LEDS - Use LEDs to show state. Unique to board architecture.
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Individual subsystems can be enabled:
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CPU
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---
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CONFIG_SAM34_OCD
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HSB
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---
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CONFIG_SAM34_APBA
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CONFIG_SAM34_AESA
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PBA
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---
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CONFIG_SAM34_IISC
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CONFIG_SAM34_SPI0
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CONFIG_SAM34_TC0
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CONFIG_SAM34_TC1
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CONFIG_SAM34_TWIM0
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CONFIG_SAM34_TWIS0
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CONFIG_SAM34_TWIM1
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CONFIG_SAM34_TWIS1
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CONFIG_SAM34_USART0
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CONFIG_SAM34_USART1
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CONFIG_SAM34_USART2
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CONFIG_SAM34_USART3
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CONFIG_SAM34_ADC12B
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CONFIG_SAM34_DACC
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CONFIG_SAM34_ACC
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CONFIG_SAM34_GLOC
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CONFIG_SAM34_ABDACB
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CONFIG_SAM34_TRNG
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CONFIG_SAM34_PARC
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CONFIG_SAM34_CATB
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CONFIG_SAM34_TWIM2
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CONFIG_SAM34_TWIM3
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CONFIG_SAM34_LCDCA
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PBB
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---
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CONFIG_SAM34_HRAMC1
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CONFIG_SAM34_HMATRIX
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CONFIG_SAM34_PDCA
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CONFIG_SAM34_CRCCU
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CONFIG_SAM34_USBC
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CONFIG_SAM34_PEVC
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PBC
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---
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CONFIG_SAM34_CHIPID
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CONFIG_SAM34_FREQM
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PBD
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---
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CONFIG_SAM34_AST
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CONFIG_SAM34_WDT
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CONFIG_SAM34_EIC
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CONFIG_SAM34_PICOUART
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Some subsystems can be configured to operate in different ways. The drivers
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need to know how to configure the subsystem.
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CONFIG_SAM34_GPIOA_IRQ
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CONFIG_SAM34_GPIOB_IRQ
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CONFIG_SAM34_GPIOC_IRQ
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CONFIG_USART0_SERIALDRIVER
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CONFIG_USART1_SERIALDRIVER
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CONFIG_USART2_SERIALDRIVER
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CONFIG_USART3_SERIALDRIVER
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ST91SAM4L specific device driver settings
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CONFIG_U[S]ARTn_SERIAL_CONSOLE - selects the USARTn (n=0,1,2,3) or UART
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m (m=4,5) for the console and ttys0 (default is the USART1).
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CONFIG_U[S]ARTn_RXBUFSIZE - Characters are buffered as received.
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This specific the size of the receive buffer
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CONFIG_U[S]ARTn_TXBUFSIZE - Characters are buffered before
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being sent. This specific the size of the transmit buffer
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CONFIG_U[S]ARTn_BAUD - The configure BAUD of the UART. Must be
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CONFIG_U[S]ARTn_BITS - The number of bits. Must be either 7 or 8.
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CONFIG_U[S]ARTn_PARTIY - 0=no parity, 1=odd parity, 2=even parity
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CONFIG_U[S]ARTn_2STOP - Two stop bits
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Configurations
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^^^^^^^^^^^^^^
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Each SAM4L Xplained Pro configuration is maintained in a sub-directory and
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can be selected as follow:
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tools/configure.sh sam4l-xplained/<subdir>
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Before building, make sure the PATH environment variable includes the
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correct path to the directory than holds your toolchain binaries.
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And then build NuttX by simply typing the following. At the conclusion of
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the make, the nuttx binary will reside in an ELF file called, simply, nuttx.
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make
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The <subdir> that is provided above as an argument to the tools/configure.sh
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must be is one of the following.
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NOTE: These configurations use the mconf-based configuration tool. To
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change any of these configurations using that tool, you should:
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a. Build and install the kconfig-mconf tool. See nuttx/README.txt
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see additional README.txt files in the NuttX tools repository.
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b. Execute 'make menuconfig' in nuttx/ in order to start the
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reconfiguration process.
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NOTES:
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1. These configurations use the mconf-based configuration tool. To
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change any of these configurations using that tool, you should:
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a. Build and install the kconfig-mconf tool. See nuttx/README.txt
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see additional README.txt files in the NuttX tools repository.
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b. Execute 'make menuconfig' in nuttx/ in order to start the
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reconfiguration process.
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2. Unless stated otherwise, all configurations generate console
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output of on USART0 which is available on EXT1 or EXT4 (see the
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section "Serial Consoles" above). The virtual COM port could
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be used, instead, by reconfiguring to use USART1 instead of
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USART0:
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System Type -> AT91SAM3/4 Peripheral Support
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CONFIG_SAM_USART0=y
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CONFIG_SAM_USART1=n
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Device Drivers -> Serial Driver Support -> Serial Console
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CONFIG_USART0_SERIAL_CONSOLE=y
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Device Drivers -> Serial Driver Support -> USART0 Configuration
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CONFIG_USART0_2STOP=0
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CONFIG_USART0_BAUD=115200
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CONFIG_USART0_BITS=8
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CONFIG_USART0_PARITY=0
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CONFIG_USART0_RXBUFSIZE=256
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CONFIG_USART0_TXBUFSIZE=256
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3. Unless otherwise stated, the configurations are setup for
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Linux (or any other POSIX environment like Cygwin under Windows):
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Build Setup:
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CONFIG_HOST_LINUX=y : Linux or other POSIX environment
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4. These configurations use the older, OABI, buildroot toolchain. But
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that is easily reconfigured:
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System Type -> Toolchain:
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CONFIG_ARMV7M_TOOLCHAIN_BUILDROOT=y : Buildroot toolchain
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CONFIG_ARMV7M_OABI_TOOLCHAIN=y : Older, OABI toolchain
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If you want to use the Atmel GCC toolchain, here are the steps to
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do so:
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Build Setup:
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CONFIG_HOST_WINDOWS=y : Windows
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CONFIG_HOST_CYGWIN=y : Using Cygwin or other POSIX environment
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System Type -> Toolchain:
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CONFIG_ARMV7M_TOOLCHAIN_GNU_EABIW=y : General GCC EABI toolchain under windows
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This re-configuration should be done before making NuttX or else the
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subsequent 'make' will fail. If you have already attempted building
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NuttX then you will have to 1) 'make distclean' to remove the old
|
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configuration, 2) 'tools/configure.sh sam3u-ek/ksnh' to start
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with a fresh configuration, and 3) perform the configuration changes
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above.
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Also, make sure that your PATH variable has the new path to your
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Atmel tools. Try 'which arm-none-eabi-gcc' to make sure that you
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are selecting the right tool.
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See also the "NOTE about Windows native toolchains" in the section call
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"GNU Toolchain Options" above.
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Configuration sub-directories
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-----------------------------
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nsh:
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This configuration directory will built the NuttShell. See NOTES above
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and below:
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NOTES:
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1. NOTE: If you get a compilation error like:
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libxx_new.cxx:74:40: error: 'operator new' takes type 'size_t'
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('unsigned int') as first parameter [-fper
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Sometimes NuttX and your toolchain will disagree on the underlying
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type of size_t; sometimes it is an 'unsigned int' and sometimes it is
|
|
an 'unsigned long int'. If this error occurs, then you may need to
|
|
toggle the value of CONFIG_CXX_NEWLONG.
|
|
|
|
2. If the I/O1 module is connected to the SAM4L Xplained Pro, then
|
|
support for the SD card slot can be enabled by making the following
|
|
changes to the configuration:
|
|
|
|
File Systems:
|
|
CONFIG_FS_FAT=y : Enable the FAT file system
|
|
CONFIG_FAT_LCNAMES=y : Enable upper/lower case 8.3 file names (Optional, see below)
|
|
CONFIG_FAT_LFN=y : Enable long file named (Optional, see below)
|
|
CONFIG_FAT_MAXFNAME=32 : Maximum supported file name length
|
|
|
|
There are issues related to patents that Microsoft holds on FAT long
|
|
file name technologies. See the top level COPYING file for further
|
|
details.
|
|
|
|
System Type -> Peripherals:
|
|
CONFIG_SAM34_SPI0=y : Enable the SAM4L SPI peripheral
|
|
|
|
Device Drivers
|
|
CONFIG_SPI=y : Enable SPI support
|
|
CONFIG_SPI_EXCHANGE=y : The exchange() method is supported
|
|
|
|
CONFIG_MMCSD=y : Enable MMC/SD support
|
|
CONFIG_MMCSD_NSLOTS=1 : Only one MMC/SD card slot
|
|
CONFIG_MMCSD_MULTIBLOCK_DISABLE=n : Should not need to disable multi-block transfers
|
|
CONFIG_MMCSD_HAVE_CARDDETECT=y : I/O1 module as a card detect GPIO
|
|
CONFIG_MMCSD_SPI=y : Use the SPI interface to the MMC/SD card
|
|
CONFIG_MMCSD_SPICLOCK=20000000 : This is a guess for the optimal MMC/SD frequency
|
|
CONFIG_MMCSD_SPIMODE=0 : Mode 0 is required
|
|
|
|
Board Selection -> Common Board Options
|
|
CONFIG_NSH_MMCSDSLOTNO=0 : Only one MMC/SD slot, slot 0
|
|
CONFIG_NSH_MMCSDSPIPORTNO=0 : Use CS=0 if the I/O1 is in EXT1, OR
|
|
CONFIG_NSH_MMCSDSPIPORTNO=2 : Use CS=2 if the I/O1 is in EXT2
|
|
|
|
Board Selection -> SAM4L Xplained Pro Modules
|
|
CONFIG_SAM4L_XPLAINED_IOMODULE=y : I/O1 module is connected
|
|
CONFIG_SAM4L_XPLAINED_IOMODULE_EXT1=y : In EXT1, or EXT2
|
|
CONFIG_SAM4L_XPLAINED_IOMODULE_EXT2=y
|
|
|
|
Application Configuration -> NSH Library
|
|
CONFIG_NSH_ARCHINIT=y : Board has architecture-specific initialization
|
|
|
|
NOTE: If you enable the I/O1 this configuration with USART0 as the
|
|
console and with the I/O1 module in EXT1, you *must* remove UART
|
|
jumper. Otherwise, you have lookpack on USART0 and NSH will *not*
|
|
behave very well (since its outgoing prompts also appear as incoming
|
|
commands).
|
|
|
|
STATUS: As of 2013-6-18, this configuration appears completely
|
|
functional. Testing, however, has been very light. Example:
|
|
|
|
NuttShell (NSH) NuttX-6.28
|
|
nsh> mount -t vfat /dev/mmcsd0 /mnt/stuff
|
|
nsh> ls /mnt/stuff
|
|
/mnt/stuff:
|
|
nsh> echo "This is a test" >/mnt/stuff/atest.txt
|
|
nsh> ls /mnt/stuff
|
|
/mnt/stuff:
|
|
atest.txt
|
|
nsh> cat /mnt/stuff/atest.txt
|
|
This is a test
|
|
nsh>
|
|
|
|
3. If the OLED1 module is connected to the SAM4L Xplained Pro, then
|
|
support for the OLED display can be enabled by making the following
|
|
changes to the configuration:
|
|
|
|
System Type -> Peripherals:
|
|
CONFIG_SAM34_SPI0=y : Enable the SAM4L SPI peripheral
|
|
|
|
Device Drivers -> SPI
|
|
CONFIG_SPI=y : Enable SPI support
|
|
CONFIG_SPI_EXCHANGE=y : The exchange() method is supported
|
|
CONFIG_SPI_CMDDATA=y : CMD/DATA support is required
|
|
|
|
Device Drivers -> LCDs
|
|
CONFIG_LCD=y : Enable LCD support
|
|
CONFIG_LCD_MAXCONTRAST=255 : Maximum contrast value
|
|
CONFIG_LCD_LANDSCAPE=y : Landscape orientation (see below*)
|
|
CONFIG_LCD_UG2832HSWEG04=y : Enable support for the OLED
|
|
CONFIG_LCD_SSD1306_SPIMODE=0 : SPI Mode 0
|
|
CONFIG_LCD_SSD1306_SPIMODE=3500000 : Pick an SPI frequency
|
|
|
|
Board Selection -> SAM4L Xplained Pro Modules
|
|
CONFIG_SAM4L_XPLAINED_OLED1MODULE=y : OLED1 module is connected
|
|
CONFIG_SAM4L_XPLAINED_OLED1MODULE_EXT1=y : In EXT1, or EXT2
|
|
CONFIG_SAM4L_XPLAINED_OLED1MODULE_EXT2=y
|
|
|
|
The NX graphics subsystem also needs to be configured:
|
|
|
|
CONFIG_NX=y : Enable graphics support
|
|
CONFIG_NX_LCDDRIVER=y : Using an LCD driver
|
|
CONFIG_NX_NPLANES=1 : With a single color plane
|
|
CONFIG_NX_WRITEONLY=n : You can read from the LCD (see below**)
|
|
CONFIG_NX_DISABLE_2BPP=y : Disable all resolutions except 1BPP
|
|
CONFIG_NX_DISABLE_4BPP=y
|
|
CONFIG_NX_DISABLE_8BPP=y
|
|
CONFIG_NX_DISABLE_16BPP=y
|
|
CONFIG_NX_DISABLE_24BPP=y
|
|
CONFIG_NX_DISABLE_32BPP=y
|
|
CONFIG_NX_PACKEDMSFIRST=y : LSB packed first (shouldn't matter)
|
|
CONFIG_NXSTART_EXTERNINIT=y : We have board_graphics_setup()
|
|
CONFIG_NXTK_BORDERWIDTH=2 : Use a small border
|
|
CONFIG_NXTK_DEFAULT_BORDERCOLORS=y : Default border colors
|
|
CONFIG_NXFONTS_CHARBITS=7 : 7-bit fonts
|
|
CONFIG_NXFONT_SANS17X23B=y : Pick a font (any that will fit)
|
|
|
|
* This orientation will put the buttons "above" the LCD. The
|
|
reverse landscape configuration (CONFIG_LCD_RLANDSCAPE) will
|
|
"flip" the display so that the buttons are "below" the LCD.
|
|
|
|
** The hardware is write only, but the driver maintains a frame buffer
|
|
to support read and read-write-modiry operations on the LCD.
|
|
Reading from the frame buffer is, however, untested.
|
|
|
|
Then, in order to use the OLED, you will need to build some kind of
|
|
graphics application or use one of the NuttX graphics examples.
|
|
Here, for example, is the setup for the graphic "Hello, World!"
|
|
example:
|
|
|
|
CONFIG_EXAMPLES_NXHELLO=y : Enables the example
|
|
CONFIG_EXAMPLES_NXHELLO_DEFAULT_COLORS=y : Use default colors (see below *)
|
|
CONFIG_EXAMPLES_NXHELLO_DEFAULT_FONT=y : Use the default font
|
|
CONFIG_EXAMPLES_NXHELLO_BPP=1 : One bit per pixel
|
|
CONFIG_EXAMPLES_NXHELLO_EXTERNINIT=y : Special initialization is required.
|
|
|
|
* The OLED is monochrome so the only "colors" are blacka nd white.
|
|
The default "colors" will give you while text on a black background.
|
|
You can override the faults it you want black text on a while background.
|
|
|
|
NOTE: One issue that I have seen with the NXHello example when
|
|
running as an NSH command is that it only works the first time.
|
|
So, after you run the 'nxhello' command one time, you will have to
|
|
reset the board before you run it again.
|
|
|
|
This is clearly some issue with initializing, un-initializing, and
|
|
then re-initializing. If you want to fix this, patches are quite
|
|
welcome.
|
|
|
|
4. If the LCD1 module is connected to the SAM4L Xplained Pro, then
|
|
support for the SLCDt can be enabled by making the following
|
|
changes to the configuration:
|
|
|
|
System Type -> AT91SAM3/4 Peripheral Support
|
|
CONFIG_SAM34_LCDCA=y
|
|
|
|
System Type -> AT91SAM3/4 Clock Configuration
|
|
CONFIG_SAM34_OSC32K=y
|
|
|
|
Board Selection -> Board-Specific Options -> SAM4L Xplained Pro Modules
|
|
CONFIG_SAM4L_XPLAINED_SLCD1MODULE=y
|
|
|
|
Device Drivers
|
|
CONFIG_LCD=y
|
|
CONFIG_LCD_MAXCONTRAST=63
|
|
|
|
Library Routines -> Non-standard Library Support
|
|
CONFIG_LIB_SLCDCODEC=y
|
|
|
|
The SLCD example can be enabled to verify the SLCD:
|
|
|
|
Application Configuration -> Examples
|
|
CONFIG_EXAMPLES_SLCD=y
|
|
CONFIG_EXAMPLES_SLCD_DEVNAME="/dev/slcd"
|
|
CONFIG_EXAMPLES_SLCD_BUFSIZE=64
|
|
|
|
Application Configuration -> NSH Library
|
|
CONFIG_NSH_ARCHINIT=y
|
|
|
|
NOTE: In order to use the segment LCD you *must* open the VLCD_A and
|
|
VLCD_BC jumpers or the SLD will not be powered!
|