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Dependents: Nucleo_Zumo_BLE_IDB04A1 contest_IOT5 contest_IOT6 contest_IOT_10 ... more
Fork of X_NUCLEO_IDB0XA1 by
Arduino Connector Compatibility Warning
X-NUCLEO-IDB04A1 and X-NUCLEO-IDB05A1 are Arduino compatible with an exception: instead of using pin D13
for the SPI clock, they use pin D3
.
The default configuration for this library is having the SPI clock on pin D3
.
To be fully Arduino compatible, X-NUCLEO-IDB04A1 and X-NUCLEO-IDB05A1 need a small HW patch.
For X-NUCLEO-IDB04A1 this patch consists in removing zero resistor R10
and instead soldering zero resistor R11
.
For X-NUCLEO-IDB05A1 this patch consists in removing zero resistor R4
and instead soldering zero resistor R6
.
In case you patch your board, then you also have to configure this library to use pin D13
to drive the SPI clock (see macro IDB0XA1_D13_PATCH
in file x_nucleo_idb0xa1_targets.h
).
If you use pin D13
for the SPI clock, please be aware that on STM32 Nucleo boards you may not drive the LED, otherwise you will get a conflict: the LED on STM32 Nucleo boards is connected to pin D13
.
Referring to the current list of tested platforms (see X-NUCLEO-IDB04A1 and X-NUCLEO-IDB05A1 pages), the patch is required by ST-Nucleo-F103RB; ST-Nucleo-F302R8; ST-Nucleo-F411RE; and ST-Nucleo-F446RE.
Diff: source/bluenrg-hci/hci/hci.c
- Revision:
- 137:5baea3b414d9
- Parent:
- 135:f0b6cf8ac4fc
- Child:
- 138:32e3c4ca7a45
--- a/source/bluenrg-hci/hci/hci.c Wed Oct 07 16:08:19 2015 +0200 +++ b/source/bluenrg-hci/hci/hci.c Wed Oct 07 16:19:40 2015 +0200 @@ -148,24 +148,23 @@ else { // Insert the packet back into the pool. list_insert_head(&hciReadPktPool, (tListNode *)hciReadPacket); - } - + } +#ifdef YOTTA_CFG_MBED_OS + Call_BTLE_Handler(); +#endif } else{ // HCI Read Packet Pool is empty, wait for a free packet. readPacketListFull = TRUE; Clear_SPI_EXTI_Flag(); - goto get_out; +#ifdef YOTTA_CFG_MBED_OS + Call_BTLE_Handler(); +#endif + return; } Clear_SPI_EXTI_Flag(); } - - get_out: -#ifdef YOTTA_CFG_MBED_OS - Call_BTLE_Handler(); -#endif - return; } void hci_write(const void* data1, const void* data2, uint8_t n_bytes1, uint8_t n_bytes2){