Inky 7.3: C++ library and JPEG example compatibility.

pull/682/head
Phil Howard 2023-02-22 14:34:25 +00:00
rodzic 1317f2e04e
commit d3a1a571d3
7 zmienionych plików z 341 dodań i 7 usunięć

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@ -1,14 +1,28 @@
set(OUTPUT_NAME inky_frame_jpeg_image)
add_executable(
${OUTPUT_NAME}
inky_frame_jpeg_image
inky_frame_jpeg_image.cpp
)
# Pull in pico libraries that we need
target_link_libraries(${OUTPUT_NAME} pico_stdlib jpegdec inky_frame fatfs hardware_pwm hardware_spi hardware_i2c hardware_rtc fatfs sdcard pico_graphics)
target_link_libraries(inky_frame_jpeg_image pico_stdlib jpegdec inky_frame fatfs hardware_pwm hardware_spi hardware_i2c hardware_rtc fatfs sdcard pico_graphics)
pico_enable_stdio_usb(${OUTPUT_NAME} 1)
pico_enable_stdio_usb(inky_frame_jpeg_image 1)
# create map/bin/hex file etc.
pico_add_extra_outputs(${OUTPUT_NAME})
pico_add_extra_outputs(inky_frame_jpeg_image)
add_executable(
inky_frame_7_jpeg_image
inky_frame_jpeg_image.cpp
)
# Pull in pico libraries that we need
target_link_libraries(inky_frame_7_jpeg_image pico_stdlib jpegdec inky_frame_7 fatfs hardware_pwm hardware_spi hardware_i2c hardware_rtc fatfs sdcard pico_graphics)
pico_enable_stdio_usb(inky_frame_7_jpeg_image 1)
# create map/bin/hex file etc.
pico_add_extra_outputs(inky_frame_7_jpeg_image)
target_compile_definitions(inky_frame_7_jpeg_image PUBLIC INKY_FRAME_7)

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@ -7,7 +7,11 @@
#include "JPEGDEC.h"
#ifdef INKY_FRAME_7
#include "libraries/inky_frame_7/inky_frame_7.hpp"
#else
#include "libraries/inky_frame/inky_frame.hpp"
#endif
using namespace pimoroni;
@ -169,7 +173,7 @@ int main() {
printf("done!\n");
printf("Displaying file: %s\n", filename.c_str());
draw_jpeg(filename, 0, 0, 600, 448);
draw_jpeg(filename, 0, 0, inky.width, inky.height);
printf("done!\n");
inky.update();

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@ -36,6 +36,7 @@ add_subdirectory(inventor2040w)
add_subdirectory(adcfft)
add_subdirectory(jpegdec)
add_subdirectory(inky_frame)
add_subdirectory(inky_frame_7)
add_subdirectory(galactic_unicorn)
add_subdirectory(gfx_pack)
add_subdirectory(interstate75)

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@ -0,0 +1 @@
include(inky_frame_7.cmake)

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set(LIB_NAME inky_frame_7)
add_library(${LIB_NAME} INTERFACE)
target_sources(${LIB_NAME} INTERFACE
${CMAKE_CURRENT_LIST_DIR}/${LIB_NAME}.cpp
)
target_include_directories(${LIB_NAME} INTERFACE ${CMAKE_CURRENT_LIST_DIR})
# Pull in pico libraries that we need
target_link_libraries(${LIB_NAME} INTERFACE hardware_i2c pico_graphics hardware_spi hardware_pwm bitmap_fonts hershey_fonts pico_stdlib sdcard fatfs pcf85063a psram_display inky73 jpegdec)
target_compile_options(${LIB_NAME} INTERFACE -Wno-error=reorder)

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#include <string.h>
#include <math.h>
#include <functional>
#include "hardware/pwm.h"
#include "hardware/watchdog.h"
#include "inky_frame_7.hpp"
namespace pimoroni {
void gpio_configure(uint gpio, bool dir, bool value = false) {
gpio_set_function(gpio, GPIO_FUNC_SIO); gpio_set_dir(gpio, dir); gpio_put(gpio, value);
}
void gpio_configure_pwm(uint gpio) {
pwm_config cfg = pwm_get_default_config();
pwm_set_wrap(pwm_gpio_to_slice_num(gpio), 65535);
pwm_init(pwm_gpio_to_slice_num(gpio), &cfg, true);
gpio_set_function(gpio, GPIO_FUNC_PWM);
}
void InkyFrame::init() {
// keep the pico awake by holding vsys_en high
gpio_set_function(HOLD_VSYS_EN, GPIO_FUNC_SIO);
gpio_set_dir(HOLD_VSYS_EN, GPIO_OUT);
gpio_put(HOLD_VSYS_EN, true);
// setup the shift register
gpio_configure(SR_CLOCK, GPIO_OUT, true);
gpio_configure(SR_LATCH, GPIO_OUT, true);
gpio_configure(SR_OUT, GPIO_IN);
// determine wake up event
if(read_shift_register_bit(BUTTON_A)) {_wake_up_event = BUTTON_A_EVENT;}
if(read_shift_register_bit(BUTTON_B)) {_wake_up_event = BUTTON_B_EVENT;}
if(read_shift_register_bit(BUTTON_C)) {_wake_up_event = BUTTON_C_EVENT;}
if(read_shift_register_bit(BUTTON_D)) {_wake_up_event = BUTTON_D_EVENT;}
if(read_shift_register_bit(BUTTON_E)) {_wake_up_event = BUTTON_E_EVENT;}
if(read_shift_register_bit(RTC_ALARM)) {_wake_up_event = RTC_ALARM_EVENT;}
if(read_shift_register_bit(EXTERNAL_TRIGGER)) {_wake_up_event = EXTERNAL_TRIGGER_EVENT;}
// there are other reasons a wake event can occur: connect power via usb,
// connect a battery, or press the reset button. these cannot be
// disambiguated so we don't attempt to report them
// Disable display update busy wait, we'll handle it ourselves
inky73.set_blocking(false);
// initialise the rtc
rtc.init();
// setup led pwm
gpio_configure_pwm(LED_A);
gpio_configure_pwm(LED_B);
gpio_configure_pwm(LED_C);
gpio_configure_pwm(LED_D);
gpio_configure_pwm(LED_E);
gpio_configure_pwm(LED_ACTIVITY);
gpio_configure_pwm(LED_CONNECTION);
}
bool InkyFrame::is_busy() {
// check busy flag on shift register
bool busy = !read_shift_register_bit(Flags::EINK_BUSY);
return busy;
}
void InkyFrame::update(bool blocking) {
while(is_busy()) {
tight_loop_contents();
}
inky73.update((PicoGraphics_PenInky7 *)this);
while(is_busy()) {
tight_loop_contents();
}
inky73.power_off();
}
bool InkyFrame::pressed(Button button) {
return read_shift_register_bit(button);
}
// set the LED brightness by generating a gamma corrected target value for
// the 16-bit pwm channel. brightness values are from 0 to 100.
void InkyFrame::led(LED led, uint8_t brightness) {
uint16_t value =
(uint16_t)(pow((float)(brightness) / 100.0f, 2.8) * 65535.0f + 0.5f);
pwm_set_gpio_level(led, value);
}
uint8_t InkyFrame::read_shift_register() {
gpio_put(SR_LATCH, false); sleep_us(1);
gpio_put(SR_LATCH, true); sleep_us(1);
uint8_t result = 0;
uint8_t bits = 8;
while(bits--) {
result <<= 1;
result |= gpio_get(SR_OUT) ? 1 : 0;
gpio_put(SR_CLOCK, false); sleep_us(1);
gpio_put(SR_CLOCK, true); sleep_us(1);
}
return result;
}
bool InkyFrame::read_shift_register_bit(uint8_t index) {
return read_shift_register() & (1U << index);
}
void InkyFrame::sleep(int wake_in_minutes) {
if(wake_in_minutes != -1) {
// set an alarm to wake inky up in wake_in_minutes - the maximum sleep
// is 255 minutes or around 4.5 hours which is the longest timer the RTC
// supports, to sleep any longer we need to specify a date and time to
// wake up
rtc.set_timer(wake_in_minutes, PCF85063A::TIMER_TICK_1_OVER_60HZ);
rtc.enable_timer_interrupt(true, false);
}
// release the vsys hold pin so that inky can go to sleep
gpio_put(HOLD_VSYS_EN, false);
while(true){};
}
void InkyFrame::sleep_until(int second, int minute, int hour, int day) {
if(second != -1 || minute != -1 || hour != -1 || day != -1) {
// set an alarm to wake inky up at the specified time and day
rtc.set_alarm(second, minute, hour, day);
rtc.enable_alarm_interrupt(true);
}
// release the vsys hold pin so that inky can go to sleep
gpio_put(HOLD_VSYS_EN, false);
}
// Display a portion of an image (icon sheet) at dx, dy
void InkyFrame::icon(const uint8_t *data, int sheet_width, int icon_size, int index, int dx, int dy) {
image(data, sheet_width, icon_size * index, 0, icon_size, icon_size, dx, dy);
}
// Display an image that fills the screen (286*128)
void InkyFrame::image(const uint8_t* data) {
image(data, width, 0, 0, width, height, 0, 0);
}
// Display an image smaller than the screen (sw*sh) at dx, dy
void InkyFrame::image(const uint8_t *data, int w, int h, int x, int y) {
image(data, w, 0, 0, w, h, x, y);
}
void InkyFrame::image(const uint8_t *data, int stride, int sx, int sy, int dw, int dh, int dx, int dy) {
for(auto y = 0; y < dh; y++) {
for(auto x = 0; x < dw; x++) {
uint32_t o = ((y + sy) * (stride / 2)) + ((x + sx) / 2);
uint8_t d = ((x + sx) & 0b1) ? data[o] >> 4 : data[o] & 0xf;
// draw the pixel
set_pen(d);
pixel({dx + x, dy + y});
}
}
}
}

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#pragma once
#include <string>
#include "drivers/inky73/inky73.hpp"
#include "drivers/psram_display/psram_display.hpp"
#include "drivers/pcf85063a/pcf85063a.hpp"
#include "drivers/fatfs/ff.h"
#include "libraries/pico_graphics/pico_graphics.hpp"
namespace pimoroni {
class InkyFrame : public PicoGraphics_PenInky7 {
public:
enum Button : uint8_t {
BUTTON_A = 0,
BUTTON_B = 1,
BUTTON_C = 2,
BUTTON_D = 3,
BUTTON_E = 4
};
enum LED : uint8_t {
LED_ACTIVITY = 6,
LED_CONNECTION = 7,
LED_A = 11,
LED_B = 12,
LED_C = 13,
LED_D = 14,
LED_E = 15
};
enum Flags : uint8_t {
RTC_ALARM = 5,
EXTERNAL_TRIGGER = 6,
EINK_BUSY = 7
};
enum WakeUpEvent : uint8_t {
UNKNOWN_EVENT = 0,
BUTTON_A_EVENT = 1,
BUTTON_B_EVENT = 2,
BUTTON_C_EVENT = 3,
BUTTON_D_EVENT = 4,
BUTTON_E_EVENT = 5,
RTC_ALARM_EVENT = 6,
EXTERNAL_TRIGGER_EVENT = 7,
};
enum Pen : uint8_t {
BLACK = 0,
WHITE = 1,
GREEN = 2,
BLUE = 3,
RED = 4,
YELLOW = 5,
ORANGE = 6,
CLEAN = 7,
TAUPE = 7
};
protected:
WakeUpEvent _wake_up_event = UNKNOWN_EVENT;
enum Pin {
HOLD_VSYS_EN = 2,
I2C_INT = 3,
I2C_SDA = 4,
I2C_SCL = 5,
SR_CLOCK = 8,
SR_LATCH = 9,
SR_OUT = 10,
MISO = 16,
EINK_CS = 17,
CLK = 18,
MOSI = 19,
SD_DAT0 = 19,
SD_DAT1 = 20,
SD_DAT2 = 21,
SD_DAT3 = 22,
SD_CS = 22,
ADC0 = 26,
EINK_RESET = 27,
EINK_DC = 28
};
public:
PSRamDisplay ramDisplay;
Inky73 inky73;
I2C i2c;
PCF85063A rtc;
int width;
int height;
// Default 7.3" constructor
InkyFrame() : InkyFrame(800, 480) {};
// 600x448 for 5.7"
// 640x400 for 4.0"
InkyFrame(int width, int height) :
ramDisplay(width, height),
PicoGraphics_PenInky7(width, height, ramDisplay),
inky73(width, height),
i2c(4, 5),
rtc(&i2c),
width(width),
height(height) {
}
void init();
// wake/sleep management
void sleep(int wake_in_minutes = -1);
void sleep_until(int second = -1, int minute = -1, int hour = -1, int day = -1);
WakeUpEvent get_wake_up_event() {return _wake_up_event;}
// screen management
void update(bool blocking=false);
static bool is_busy();
// state
bool pressed(Button button);
static uint8_t read_shift_register();
static bool read_shift_register_bit(uint8_t index);
void led(LED led, uint8_t brightness);
void icon(const uint8_t *data, int sheet_width, int icon_size, int index, int dx, int dy);
void image(const uint8_t* data);
void image(const uint8_t *data, int w, int h, int x, int y);
void image(const uint8_t *data, int stride, int sx, int sy, int dw, int dh, int dx, int dy);
};
}