Modification of mbed-src library only for STM32F030F4, very cheap microcontroller in 20-Pin TSSOP package, with 16Kbytes of Flash and 4Kbytes of Ram. **Target for online compilator must be Nucleo 32F030R8.**

Dependents:   STM32F031_blink_LED_2


Information

For programming similar chips in TSSOP20 package, but with 32kB flash: STM32F031F6 and STM32F050F6 (virtually identical to STM32F031F6 and no longer produced but still on sale), it is recommended to use NUCLEO-F031K6 as compiler platform, and the mbed library without the need for any modifications.

Just remember that the only significant difference between these chips and NUCLEO-F031K6 is the lack of pins: PB_0, PB_3, PB_4, PB_5, PB_6, PB_7, PA_11, PA_12, PA_15 in TSSOP-20.



STM32F030F4 pinout (pin functions supported in mbed library).

/media/uploads/mega64/mbedf4.jpg

other pins:

Pin nrPin nameConnectedST-LINK on Nucleo (programming and debug)
1.BOOT0GND
4.NRSTCN4 pin 5
5.VDDA+3.3V
15.VSSGNDCN4 pin 3
16.VDD+3.3V
19.SWDIOCN4 pin 4
20.SWCLKCN4 pin 2
  • Remove jumpers CN2 on Nucleo when CN4 is connected to STM32F030F4
  • NRST connection is not necessarily needed, but in this case, after programming it is necessary to manually reset the target processor


STM32R030F4 programming using Nucleo (any type):
/media/uploads/mega64/f4_nucleo.jpg Notes:

  • When programming using the Nucleo virtual disk (drag and drop) , first turn on the power STM32F030F4, and then connect Nucleo to USB. When programming with "ST-LINK Utility", it does not matter.




STM32R030F4 programming using Arduino (as a simple USB-Serial converter) and FlyMcu program:
/media/uploads/mega64/f4_arduino.jpg

Notes:

  • For Usart in STM32F030F4, only 5V tolerant TX, RX pins are pins 17 and 18. Just their uses internal serial bootloader, so you can use such Arduino or other USB-Serial converter operating as standard 5V.
  • Where used FlyMcu, binary file from online compiler Mbed need to convert to intel hex file and during the conversion add the data offset 0x08000000 (or if offset is 0, manually add/edit the first line of the .hex file to ":020000040800F2").
  • During programming procedure, pin 1 (BOOT0) should be connected to 3.3 V. And before contact with the loader program, temporarily pin 4 (NRST) shorted to GND to reset the chip. After programming BOOT0 is connected to GND.
  • In this set with Arduino Uno, the "Flash loader demonstrator" from STM does not work (does not recognize the response from the chip at the initial stage of connection). But with Arduino Duemilanove program "STM Flash loader demonstrator" works perfectly (ver. 2.7.0). And do not need any additional file conversion (as the need for FlyMcu). You can use a binary file directly from the on-line compiler mbed.

Warning.
Because of the small size of the STM32F030F4 flash, for programs that use UART, it is proposed not to use the Serial class but use the <cstdio> (stdio.h) functions that directly use stdout and stdin (e.g printf().putchar(),getchar(),vprintf(),scanf() ).

Example:

version with serial class

#include "mbed.h"
Serial pc(USBTX, USBRX); // tx, rx

int main()
{

    pc.printf("Hello World!\n");

}

consuming 13.7kB FLASH and 1.5kB RAM

but this:

version without serial class

#include "mbed.h"
int main()
{

    printf("Hello World!\n");

}

consuming only 8.7kB FLASH and 0.4kB RAM

5kB used flash difference (with 16kB total size) !!!

However, if you need other than the default UART settings for stdin and stdout (that is 9600b, pins PA_2, PA_3), you can do as an example:

change uart pins and speed

#include "mbed.h"

// declarations needed to change here the parameters of stdio UART
extern int stdio_uart_inited;
extern serial_t stdio_uart; 

int main()
{
    // for change pins
    serial_init(&stdio_uart, PA_9,PA_10);
    stdio_uart_inited=1;

    // for change baud rate
    serial_baud(&stdio_uart, 115000);


    printf("Hello World!\n");

}




uVision users

In the case of online compilation of the program with this library using Keil, to prevent linker errors set in the project options "One ELF Section per Function" and Optimisation: Level 2.



Additional information (and inspiration for this modification):

http://developer.mbed.org/forum/electronics/topic/5184/

http://developer.mbed.org/questions/4643/Does-mbed-support-STM32F030F4/

http://developer.mbed.org/questions/2927/mbed-on-other-packages-stm32f030f4-TSSOP/

http://developer.mbed.org/questions/4139/Programming-STM32F030F4-with-Nucleo-F030/

Committer:
mega64
Date:
Tue Feb 14 21:52:10 2017 +0000
Revision:
11:79a2d67cd509
Parent:
0:38ccae254a29
repair the effects of improvements in the mbed environment (Ch.1, serial_set_flow_control )

Who changed what in which revision?

UserRevisionLine numberNew contents of line
mega64 0:38ccae254a29 1 /* mbed Microcontroller Library
mega64 0:38ccae254a29 2 * Copyright (c) 2006-2013 ARM Limited
mega64 0:38ccae254a29 3 *
mega64 0:38ccae254a29 4 * Licensed under the Apache License, Version 2.0 (the "License");
mega64 0:38ccae254a29 5 * you may not use this file except in compliance with the License.
mega64 0:38ccae254a29 6 * You may obtain a copy of the License at
mega64 0:38ccae254a29 7 *
mega64 0:38ccae254a29 8 * http://www.apache.org/licenses/LICENSE-2.0
mega64 0:38ccae254a29 9 *
mega64 0:38ccae254a29 10 * Unless required by applicable law or agreed to in writing, software
mega64 0:38ccae254a29 11 * distributed under the License is distributed on an "AS IS" BASIS,
mega64 0:38ccae254a29 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
mega64 0:38ccae254a29 13 * See the License for the specific language governing permissions and
mega64 0:38ccae254a29 14 * limitations under the License.
mega64 0:38ccae254a29 15 */
mega64 0:38ccae254a29 16 #ifndef MBED_SPISLAVE_H
mega64 0:38ccae254a29 17 #define MBED_SPISLAVE_H
mega64 0:38ccae254a29 18
mega64 0:38ccae254a29 19 #include "platform.h"
mega64 0:38ccae254a29 20
mega64 0:38ccae254a29 21 #if DEVICE_SPISLAVE
mega64 0:38ccae254a29 22
mega64 0:38ccae254a29 23 #include "spi_api.h"
mega64 0:38ccae254a29 24
mega64 0:38ccae254a29 25 namespace mbed {
mega64 0:38ccae254a29 26
mega64 0:38ccae254a29 27 /** A SPI slave, used for communicating with a SPI Master device
mega64 0:38ccae254a29 28 *
mega64 0:38ccae254a29 29 * The default format is set to 8-bits, mode 0, and a clock frequency of 1MHz
mega64 0:38ccae254a29 30 *
mega64 0:38ccae254a29 31 * Example:
mega64 0:38ccae254a29 32 * @code
mega64 0:38ccae254a29 33 * // Reply to a SPI master as slave
mega64 0:38ccae254a29 34 *
mega64 0:38ccae254a29 35 * #include "mbed.h"
mega64 0:38ccae254a29 36 *
mega64 0:38ccae254a29 37 * SPISlave device(p5, p6, p7, p8); // mosi, miso, sclk, ssel
mega64 0:38ccae254a29 38 *
mega64 0:38ccae254a29 39 * int main() {
mega64 0:38ccae254a29 40 * device.reply(0x00); // Prime SPI with first reply
mega64 0:38ccae254a29 41 * while(1) {
mega64 0:38ccae254a29 42 * if(device.receive()) {
mega64 0:38ccae254a29 43 * int v = device.read(); // Read byte from master
mega64 0:38ccae254a29 44 * v = (v + 1) % 0x100; // Add one to it, modulo 256
mega64 0:38ccae254a29 45 * device.reply(v); // Make this the next reply
mega64 0:38ccae254a29 46 * }
mega64 0:38ccae254a29 47 * }
mega64 0:38ccae254a29 48 * }
mega64 0:38ccae254a29 49 * @endcode
mega64 0:38ccae254a29 50 */
mega64 0:38ccae254a29 51 class SPISlave {
mega64 0:38ccae254a29 52
mega64 0:38ccae254a29 53 public:
mega64 0:38ccae254a29 54
mega64 0:38ccae254a29 55 /** Create a SPI slave connected to the specified pins
mega64 0:38ccae254a29 56 *
mega64 0:38ccae254a29 57 * Pin Options:
mega64 0:38ccae254a29 58 * (5, 6, 7i, 8) or (11, 12, 13, 14)
mega64 0:38ccae254a29 59 *
mega64 0:38ccae254a29 60 * mosi or miso can be specfied as NC if not used
mega64 0:38ccae254a29 61 *
mega64 0:38ccae254a29 62 * @param mosi SPI Master Out, Slave In pin
mega64 0:38ccae254a29 63 * @param miso SPI Master In, Slave Out pin
mega64 0:38ccae254a29 64 * @param sclk SPI Clock pin
mega64 0:38ccae254a29 65 * @param ssel SPI chip select pin
mega64 0:38ccae254a29 66 * @param name (optional) A string to identify the object
mega64 0:38ccae254a29 67 */
mega64 0:38ccae254a29 68 SPISlave(PinName mosi, PinName miso, PinName sclk, PinName ssel);
mega64 0:38ccae254a29 69
mega64 0:38ccae254a29 70 /** Configure the data transmission format
mega64 0:38ccae254a29 71 *
mega64 0:38ccae254a29 72 * @param bits Number of bits per SPI frame (4 - 16)
mega64 0:38ccae254a29 73 * @param mode Clock polarity and phase mode (0 - 3)
mega64 0:38ccae254a29 74 *
mega64 0:38ccae254a29 75 * @code
mega64 0:38ccae254a29 76 * mode | POL PHA
mega64 0:38ccae254a29 77 * -----+--------
mega64 0:38ccae254a29 78 * 0 | 0 0
mega64 0:38ccae254a29 79 * 1 | 0 1
mega64 0:38ccae254a29 80 * 2 | 1 0
mega64 0:38ccae254a29 81 * 3 | 1 1
mega64 0:38ccae254a29 82 * @endcode
mega64 0:38ccae254a29 83 */
mega64 0:38ccae254a29 84 void format(int bits, int mode = 0);
mega64 0:38ccae254a29 85
mega64 0:38ccae254a29 86 /** Set the spi bus clock frequency
mega64 0:38ccae254a29 87 *
mega64 0:38ccae254a29 88 * @param hz SCLK frequency in hz (default = 1MHz)
mega64 0:38ccae254a29 89 */
mega64 0:38ccae254a29 90 void frequency(int hz = 1000000);
mega64 0:38ccae254a29 91
mega64 0:38ccae254a29 92 /** Polls the SPI to see if data has been received
mega64 0:38ccae254a29 93 *
mega64 0:38ccae254a29 94 * @returns
mega64 0:38ccae254a29 95 * 0 if no data,
mega64 0:38ccae254a29 96 * 1 otherwise
mega64 0:38ccae254a29 97 */
mega64 0:38ccae254a29 98 int receive(void);
mega64 0:38ccae254a29 99
mega64 0:38ccae254a29 100 /** Retrieve data from receive buffer as slave
mega64 0:38ccae254a29 101 *
mega64 0:38ccae254a29 102 * @returns
mega64 0:38ccae254a29 103 * the data in the receive buffer
mega64 0:38ccae254a29 104 */
mega64 0:38ccae254a29 105 int read(void);
mega64 0:38ccae254a29 106
mega64 0:38ccae254a29 107 /** Fill the transmission buffer with the value to be written out
mega64 0:38ccae254a29 108 * as slave on the next received message from the master.
mega64 0:38ccae254a29 109 *
mega64 0:38ccae254a29 110 * @param value the data to be transmitted next
mega64 0:38ccae254a29 111 */
mega64 0:38ccae254a29 112 void reply(int value);
mega64 0:38ccae254a29 113
mega64 0:38ccae254a29 114 protected:
mega64 0:38ccae254a29 115 spi_t _spi;
mega64 0:38ccae254a29 116
mega64 0:38ccae254a29 117 int _bits;
mega64 0:38ccae254a29 118 int _mode;
mega64 0:38ccae254a29 119 int _hz;
mega64 0:38ccae254a29 120 };
mega64 0:38ccae254a29 121
mega64 0:38ccae254a29 122 } // namespace mbed
mega64 0:38ccae254a29 123
mega64 0:38ccae254a29 124 #endif
mega64 0:38ccae254a29 125
mega64 0:38ccae254a29 126 #endif