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[Issue #12] - Adding config options for configuring the pins used for SDA/SCL for the display
2026-09-09 14:15:35 -04:00

181 lines
5.3 KiB
Python

import framebuf
import network
import ntptime
import time
from machine import Pin, I2C
import ssd1306
# --- Configuration ---
try:
import config as Config
except ImportError:
print("ERROR: config.py not found.")
print("Create config.py on the device with your Wi-Fi and NTP settings.")
while True:
time.sleep(2)
# --- Hardware Setup ---
i2c = I2C(0, sda=Pin(Config.DISPLAY_SDA_PIN), scl=Pin(Config.DISPLAY_SCL_PIN), freq=400000)
oled = ssd1306.SSD1306_I2C(128, 64, i2c)
def display_message(line1, line2=""):
oled.fill(0)
oled.text(line1, 0, 16)
oled.text(line2, 0, 32)
oled.show()
# --- Wi-Fi Connection ---
display_message("Connecting to", "Wi-Fi...")
wlan = network.WLAN(network.STA_IF)
wlan.active(True)
wlan.connect(Config.WIFI_SSID, Config.WIFI_PASSWORD)
timeout = 20
while not wlan.isconnected() and timeout > 0:
time.sleep(1)
timeout -= 1
if not wlan.isconnected():
display_message("Wi-Fi Error", "Check settings")
raise RuntimeError("Failed to connect to Wi-Fi")
# --- NTP Synchronization ---
display_message("Syncing time...", "NTP server")
try:
ntptime.settime() # Sets the Pico internal RTC to UTC
except Exception as e:
display_message("NTP Failed", str(e))
time.sleep(3)
# Disconnect Wi-Fi to conserve power once time is synchronized
wlan.active(False)
def draw_scaled_text(display, text, x, y, scale=2):
"""
Renders text scaled up by an integer factor (scale=2 -> 16x16, scale=3 -> 24x24).
Uses a temporary 1-bit FrameBuffer to capture the default 8x8 font.
"""
width = len(text) * 8
height = 8
# 1-bit MONO_HLSB buffer: (width * height) / 8 bytes
buf = bytearray((width * height) // 8)
fb = framebuf.FrameBuffer(buf, width, height, framebuf.MONO_HLSB)
# Render string with built-in font into the scratch buffer
fb.fill(0)
fb.text(text, 0, 0, 1)
# Read each pixel and draw a (scale x scale) block on the OLED
for r in range(height):
for c in range(width):
if fb.pixel(c, r):
display.fill_rect(x + (c * scale), y + (r * scale), scale, scale, 1)
def calculate_x_spacing(text, scale=1):
"""
Calculates the amount of horizontal (x) spacing is needed to center a string.
"""
scaled_text = len(text) * scale
return (128 - (scaled_text * 8)) // 2
def is_dst(year, month, day, hour_utc, weekday):
"""
Returns True if UTC time falls within US/Canada Daylight Saving Time:
- Starts: 2nd Sunday in March at 02:00 local (07:00 UTC for UTC-5)
- Ends: 1st Sunday in November at 02:00 local (06:00 UTC for UTC-4)
Note: weekday is 0=Monday ... 6=Sunday.
"""
if not Config.DST_OBSERVED:
return False
# 1. Months completely inside or outside DST
if month < 3 or month > 11:
return False
if 3 < month < 11:
return True
# 2. March (Starts 2nd Sunday)
# The 2nd Sunday always falls between March 8 and March 14
if month == 3:
# Find the day of the 2nd Sunday
second_sunday = 14 - ((weekday - day + 14) % 7)
if day < second_sunday:
return False
elif day > second_sunday:
return True
else:
# On the transition day itself, 02:00 EST is 07:00 UTC
return hour_utc >= 7
# 3. November (Ends 1st Sunday)
# The 1st Sunday always falls between Nov 1 and Nov 7
if month == 11:
first_sunday = 7 - ((weekday - day + 7) % 7)
if day < first_sunday:
return True
elif day > first_sunday:
return False
else:
# On the transition day itself, 02:00 EDT (01:00 EST) is 06:00 UTC
return hour_utc < 6
return False
# --- Main Loop ---
DAYS = ["Mon", "Tue", "Wed", "Thu", "Fri", "Sat", "Sun"]
TIME_Y = 12 # Keep vertical placement consistent
last_second = -1
while True:
# 1. Fast, single-integer read from RTC
current_sec = time.time()
# 2. Gate everything behind the 1-second boundary
if current_sec != last_second:
last_second = current_sec
# Unpack UTC once per second
utc_year, utc_month, utc_day, utc_hour, _, _, utc_weekday, _ = time.gmtime(current_sec)
# Run DST check
dst_offset = 1 if is_dst(utc_year, utc_month, utc_day, utc_hour, utc_weekday) else 0
total_offset = Config.UTC_OFFSET + dst_offset
# Compute local wall-clock components
local_epoch = current_sec + (total_offset * 3600)
year, month, day, hour_24, minute, second, weekday, _ = time.localtime(local_epoch)
# --- String formatting and OLED rendering ---
sep = ":" if second % 2 == 0 else " "
if Config.USE_24_HOUR:
time_str = f"{hour_24:02d}{sep}{minute:02d}"
period = None
else:
hour_12 = hour_24 % 12 or 12
time_str = f"{hour_12}{sep}{minute:02d}"
period = "AM" if hour_24 < 12 else "PM"
oled.fill(0)
time_x = calculate_x_spacing(time_str, scale=2)
draw_scaled_text(oled, time_str, x=time_x, y=TIME_Y, scale=2)
if period:
oled.text(period, time_x + (len(time_str) * 16) + 4, TIME_Y + 8)
date_str = f"{DAYS[weekday]} {year}-{month:02d}-{day:02d}"
oled.text(date_str, calculate_x_spacing(date_str), 42)
oled.show()
# Fast poll to catch the next second boundary immediately
time.sleep_ms(25)