Lcd companion boards support (VKLCD50RTA & VKLCD70RT)

What is this ?

This is a demo program using Renesas RGA library & USB Camera to demonstrate VK-RZ/A1H's companion boards workability.


Supported companion Boards:

VKLCD50RTA

/media/uploads/tvendov/front_view_hmi_50.png /media/uploads/tvendov/side_view_hmi_50.png

VKLCD70RT

/media/uploads/tvendov/front_view_hmi_70.png/media/uploads/tvendov/side_view_hmi_70.png /media/uploads/tvendov/front_view_lvds.png/media/uploads/tvendov/back_view_lvds.png


How to Configure ?

You can choose which display is installed by altering the lcd_panel.h file

Leave the active one & comment out the others:

#define     LCD_VDC5_CH0_PANEL                  LCD_CH0_PANEL_VKLCD50RTA
//#define     LCD_VDC5_CH0_PANEL                  LCD_CH0_PANEL_VKLCD70RT

You can alter the whole demo with your pictures if you like:


How to compile ?

  • The Demo can be compiled in 3 modes:
    • I. Execution from the internal 10-MB on-chip SRAM.
      • After import in the online compiler just leave only the VKRZA1H_RAM.sct & delete all others linker files in the TOOLCHAIN_ARM_STD folder.
      • Save the result binary in the SD Card (<SD>:\vkrza1\lcd_sample ), altering vkrza1h.ini by this way
    • II. Execution from the on-board serial FALSH in dual (32-MB) mode.
      • After import in the online compiler just leave only the VKRZA1H_DOUBLE.sct & delete all others linker files in the TOOLCHAIN_ARM_STD folder.
      • Drag & drop the result binary in MBED disk, (previously inited in double flash mode)
    • III. Execution from the on-board serial FALSH in single (16-MB) mode.
      • After import in the online compiler just leave only the VKRZA1H_SINGLE.sct & delete all others linker files in the TOOLCHAIN_ARM_STD folder.
      • Drag & drop the result binary in MBED disk, (previously inited in single flash mode )

Quick presentation:


Other demos ?

More demos you can find on our FTP

hal/common/InterruptIn.cpp

Committer:
tvendov
Date:
2017-02-16
Revision:
0:6435b67ad23c

File content as of revision 0:6435b67ad23c:

/* mbed Microcontroller Library
 * Copyright (c) 2006-2013 ARM Limited
 *
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */
#include "InterruptIn.h"

#if DEVICE_INTERRUPTIN

namespace mbed {

InterruptIn::InterruptIn(PinName pin) : gpio(),
                                        gpio_irq(),
                                        _rise(),
                                        _fall() {
    // No lock needed in the constructor
    gpio_irq_init(&gpio_irq, pin, (&InterruptIn::_irq_handler), (uint32_t)this);
    gpio_init_in(&gpio, pin);
}

InterruptIn::~InterruptIn() {
    // No lock needed in the destructor
    gpio_irq_free(&gpio_irq);
}

int InterruptIn::read() {
    // Read only
    return gpio_read(&gpio);
}

void InterruptIn::mode(PinMode pull) {
    core_util_critical_section_enter();
    gpio_mode(&gpio, pull);
    core_util_critical_section_exit();
}

void InterruptIn::rise(Callback<void()> func) {
    core_util_critical_section_enter();
    if (func) {
        _rise.attach(func);
        gpio_irq_set(&gpio_irq, IRQ_RISE, 1);
    } else {
        _rise.attach(NULL);
        gpio_irq_set(&gpio_irq, IRQ_RISE, 0);
    }
    core_util_critical_section_exit();
}

void InterruptIn::fall(Callback<void()> func) {
    core_util_critical_section_enter();
    if (func) {
        _fall.attach(func);
        gpio_irq_set(&gpio_irq, IRQ_FALL, 1);
    } else {
        _fall.attach(NULL);
        gpio_irq_set(&gpio_irq, IRQ_FALL, 0);
    }
    core_util_critical_section_exit();
}

void InterruptIn::_irq_handler(uint32_t id, gpio_irq_event event) {
    InterruptIn *handler = (InterruptIn*)id;
    switch (event) {
        case IRQ_RISE: handler->_rise.call(); break;
        case IRQ_FALL: handler->_fall.call(); break;
        case IRQ_NONE: break;
    }
}

void InterruptIn::enable_irq() {
    core_util_critical_section_enter();
    gpio_irq_enable(&gpio_irq);
    core_util_critical_section_exit();
}

void InterruptIn::disable_irq() {
    core_util_critical_section_enter();
    gpio_irq_disable(&gpio_irq);
    core_util_critical_section_exit();
}

InterruptIn::operator int() {
    // Underlying call is atomic
    return read();
}

} // namespace mbed

#endif