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music_library/presto/records_on_the_day.py
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"""
Presto Music Library - Records On This Day Calendar
===================================================
A MicroPython application for the Pimoroni Presto (RP2350B, 720x720 touch
display, WiFi) that connects to the Music Library API and lets you browse
records by release date.
Features:
- WiFi auto-connect with retry
- NTP time synchronisation
- Month calendar view with day-of-week headers
- Tap a day to see records released on that date (cover art, artist, title)
- Navigate months with arrow buttons
- Error handling for network / API failures
Hardware: Pimoroni Presto running stock Presto firmware
(MicroPython + PicoGraphics + touch driver)
Setup:
1. Copy config.example.py to secrets.py and fill in your credentials
2. Copy main.py and secrets.py to the root of your Presto's flash
3. The app starts automatically on boot (main.py is the default entry point)
"""
# ============================================================================
# IMPORTS
# ============================================================================
import gc
import time
import network
import ntptime
import urequests
# Presto hardware module (provided by stock firmware)
from presto import Presto
# JPEG decoder (provided by stock firmware; may be named jpegdec or picographics
# depending on firmware version — adjust import if needed)
try:
import jpegdec as _jpegdec_lib
_HAS_JPEGDEC = True
except ImportError:
_HAS_JPEGDEC = False
# ============================================================================
# CONFIGURATION
# ============================================================================
# API endpoint (production server)
API_BASE = "https://music-library.claudio-ortolina.org"
# Setup for the Presto display
presto = Presto()
display = presto.display
WIDTH, HEIGHT = display.get_bounds()
touch = presto.touch
# Calendar layout (computed from display bounds)
CELL_GAP = 3
CELLS_PER_ROW = 7
MAX_ROWS = 6
# Header
HEADER_Y = 0
HEADER_H = 31
HEADER_TEXT_H = 14
HEADER_SIDE_MARGIN = 8
HEADER_BUTTON_W = 44
HEADER_BUTTON_H = 25
HEADER_BUTTON_Y = HEADER_Y + (HEADER_H - HEADER_BUTTON_H) // 2
ARROW_W = HEADER_BUTTON_W
ARROW_H = HEADER_BUTTON_H
# Day-of-week labels
DOW_Y = HEADER_Y + HEADER_H + 2
DOW_H = 16
# Day cells: fit 7 across with comfortable side margins
CELL_SIZE = (WIDTH - 16 - (CELLS_PER_ROW - 1) * CELL_GAP) // CELLS_PER_ROW
if CELL_SIZE > 78:
CELL_SIZE = 78
GRID_LEFT = (WIDTH - (CELLS_PER_ROW * CELL_SIZE + (CELLS_PER_ROW - 1) * CELL_GAP)) // 2
# Grid starts after day-of-week labels with a small gap
CALENDAR_TOP = DOW_Y + DOW_H + 6
# Day view (proportional to cell size)
BACK_X = HEADER_SIDE_MARGIN
BACK_Y = HEADER_BUTTON_Y
BACK_W = HEADER_BUTTON_W
BACK_H = HEADER_BUTTON_H
DAY_HEADER_Y = HEADER_Y
DAY_HEADER_H = HEADER_H
DAY_HEADER_TEXT_H = HEADER_TEXT_H
DAY_COUNT_TEXT_H = 8
# Detail view
DETAIL_COVER_SIZE = 150
DETAIL_COVER_X = (WIDTH - DETAIL_COVER_SIZE) // 2
DETAIL_COVER_Y = DAY_HEADER_Y + DAY_HEADER_H + 12
DETAIL_INFO_GAP = 4
DETAIL_TEXT_X = 40
DETAIL_TEXT_W = WIDTH - (2 * DETAIL_TEXT_X)
RECORD_START_Y = DAY_HEADER_Y + DAY_HEADER_H + 8
THUMB_SIZE = 40
THUMB_MARGIN = 8
ROW_PAD_Y = 8
ROW_SEPARATOR_H = 1
TEXT_X = THUMB_MARGIN + THUMB_SIZE + 12
TEXT_W = WIDTH - TEXT_X - 12
# Colors (RGB tuples, converted to pens at runtime)
BG = (24, 24, 27)
CELL_BG = (39, 39, 42)
CELL_OTHER_MONTH = (30, 30, 34)
TODAY_BG = (239, 68, 68)
TODAY_TEXT = (255, 255, 255)
NORMAL_TEXT = (212, 212, 216)
DIM_TEXT = (113, 113, 122)
HEADER_TEXT = (228, 228, 231)
ARROW_COLOR = (161, 161, 170)
BACK_COLOR = (212, 212, 216)
TITLE_COLOR = (228, 228, 231)
ARTIST_COLOR = (161, 161, 170)
ERROR_COLOR = (59, 130, 246)
PLACEHOLDER_BG = (63, 63, 70)
STATUS_TEXT = (161, 161, 170)
# Days of week (Monday first, ISO 8601)
DAY_NAMES = ["Mon", "Tue", "Wed", "Thu", "Fri", "Sat", "Sun"]
MONTH_NAMES = [
"January", "February", "March", "April", "May", "June",
"July", "August", "September", "October", "November", "December",
]
# Touch debounce (milliseconds)
DEBOUNCE_MS = 300
DRAG_REDRAW_MS = 40
DRAG_REDRAW_PX = 8
TOUCH_RELEASE_TIMEOUT_MS = 3_000
# WiFi connection timeout (seconds)
WIFI_TIMEOUT = 30
# Display sleep
DISPLAY_SLEEP_MS = 60_000
DISPLAY_BRIGHTNESS = 1.0
DISPLAY_SLEEP_BRIGHTNESS = 0.0
DISPLAY_FADE_MS = 500
DISPLAY_FADE_STEPS = 20
# ============================================================================
# GLOBAL STATE
# ============================================================================
api_token = ""
# Time state
today_year = 2026
today_month = 5
today_day = 1
view_year = 2026
view_month = 5
# View state
STATE_STARTUP = 0
STATE_MONTH = 1
STATE_DAY = 2
STATE_RECORD = 3
state = STATE_STARTUP
# Day view state
selected_day = 0 # 1-based day of month
selected_record_idx = None # Index into records[] for detail view
records = [] # List of record dicts from API
records_error = False # True if API call failed
# Scroll state
scroll_offset = 0 # Pixel scroll position for day view
_dragging = False # True while fast scroll redraws are active
_content_height = 0 # Cached total record list height
# Detail view scroll
detail_scroll_offset = 0 # Pixel scroll position for detail view
_detail_content_height = 0 # Cached total detail content height
# Touch debounce
_last_touch = 0
_last_drag_redraw = 0
# Display sleep state
_last_activity = 0
_display_awake = True
# ============================================================================
# HELPER: PEN CREATION
# ============================================================================
# We create pens once and reuse them to reduce GC pressure.
# Stored as module-level variables, initialised in init_display().
_pen_bg = None
_pen_cell_bg = None
_pen_cell_other = None
_pen_today_bg = None
_pen_today_text = None
_pen_normal_text = None
_pen_dim_text = None
_pen_header_text = None
_pen_arrow = None
_pen_back = None
_pen_title = None
_pen_artist = None
_pen_error = None
_pen_placeholder = None
_pen_status = None
def _init_pens():
"""Pre-create all pens from the RGB color constants."""
global _pen_bg, _pen_cell_bg, _pen_cell_other, _pen_today_bg
global _pen_today_text, _pen_normal_text, _pen_dim_text, _pen_header_text
global _pen_arrow, _pen_back, _pen_title, _pen_artist, _pen_error
global _pen_placeholder, _pen_status
_pen_bg = display.create_pen(*BG)
_pen_cell_bg = display.create_pen(*CELL_BG)
_pen_cell_other = display.create_pen(*CELL_OTHER_MONTH)
_pen_today_bg = display.create_pen(*TODAY_BG)
_pen_today_text = display.create_pen(*TODAY_TEXT)
_pen_normal_text = display.create_pen(*NORMAL_TEXT)
_pen_dim_text = display.create_pen(*DIM_TEXT)
_pen_header_text = display.create_pen(*HEADER_TEXT)
_pen_arrow = display.create_pen(*ARROW_COLOR)
_pen_back = display.create_pen(*BACK_COLOR)
_pen_title = display.create_pen(*TITLE_COLOR)
_pen_artist = display.create_pen(*ARTIST_COLOR)
_pen_error = display.create_pen(*ERROR_COLOR)
_pen_placeholder = display.create_pen(*PLACEHOLDER_BG)
_pen_status = display.create_pen(*STATUS_TEXT)
# ============================================================================
# HELPER: TEXT WRAPPING
# ============================================================================
def draw_wrapped(text, x, y, max_width, pen, scale=1):
"""Draw text, wrapping at word boundaries to fit within max_width pixels.
PicoGraphics doesn't support automatic wrapping, so we manually break
long strings. Returns the Y position after the last line drawn.
"""
lines = _wrapped_lines(text, max_width, scale=scale)
line_height = 8 * scale + 4 # bitmap8 is 8px tall, plus spacing
cy = y
display.set_pen(pen)
for line in lines:
display.text(line, x, cy, scale=scale)
cy += line_height
return cy
def display_text(text):
"""Replace characters not available in the bitmap font."""
replacements = (
("", "-"),
("", "-"),
("", "-"),
("", "-"),
("", "-"),
("", "-"),
("", '"'),
("", '"'),
("", '"'),
("«", '"'),
("»", '"'),
("", "'"),
("", "'"),
("", "'"),
("", "'"),
("", "..."),
("", "*"),
("·", "-"),
("\u00a0", " "),
("\u202f", " "),
("\u2009", " "),
("\u200a", " "),
("\u200b", ""),
)
rendered = str(text)
for original, replacement in replacements:
rendered = rendered.replace(original, replacement)
return rendered
def _wrapped_line_count(text, max_width, scale=1):
"""Return how many wrapped lines the text will occupy."""
return max(1, len(_wrapped_lines(text, max_width, scale=scale)))
def _wrapped_lines(text, max_width, scale=1):
"""Return wrapped lines for text using the display font metrics."""
words = str(text).split()
lines = []
current_line = ""
if not words:
return lines
for word in words:
test_line = current_line + (" " if current_line else "") + word
w = display.measure_text(test_line, scale=scale)
if w <= max_width:
current_line = test_line
else:
if current_line:
lines.append(current_line)
if display.measure_text(word, scale=scale) > max_width:
lines.append(word)
current_line = ""
else:
current_line = word
if current_line:
lines.append(current_line)
return lines
# ============================================================================
# HELPER: DATE / CALENDAR MATH
# ============================================================================
def days_in_month(year, month):
"""Return the number of days in the given month."""
if month == 2:
# Leap year check
if (year % 4 == 0 and year % 100 != 0) or (year % 400 == 0):
return 29
return 28
if month in (4, 6, 9, 11):
return 30
return 31
def day_of_week(year, month, day):
"""Return 0=Monday .. 6=Sunday using Zeller-like algorithm adjusted
for our calendar (Monday-first weeks)."""
# Tomohiko Sakamoto's algorithm, adjusted for Monday=0
t = [0, 3, 2, 5, 0, 3, 5, 1, 4, 6, 2, 4]
y = year - (1 if month < 3 else 0)
d = (y + y // 4 - y // 100 + y // 400 + t[month - 1] + day) % 7
# Convert Sunday=0 to Sunday=6, Monday=1 to Monday=0, etc.
return (d + 6) % 7
def previous_month(year, month):
"""Return (year, month) for the previous month."""
if month == 1:
return year - 1, 12
return year, month - 1
def next_month(year, month):
"""Return (year, month) for the next month."""
if month == 12:
return year + 1, 1
return year, month + 1
# ============================================================================
# NETWORKING
# ============================================================================
def connect_wifi():
"""Connect to WiFi using credentials from secrets.py.
Returns True on success, False on failure.
Blinks status messages on the display during the attempt.
"""
try:
import secrets
except ImportError:
draw_status("ERROR: secrets.py not found.\n"
"Copy config.example.py to secrets.py")
return False
ssid = getattr(secrets, "WIFI_SSID", "")
password = getattr(secrets, "WIFI_PASSWORD", "")
global api_token
api_token = getattr(secrets, "API_TOKEN", "")
if not ssid:
draw_status("ERROR: WIFI_SSID not set in secrets.py")
return False
if not api_token:
draw_status("ERROR: API_TOKEN not set in secrets.py")
return False
draw_status("Connecting to WiFi:\n{}".format(ssid))
wlan = network.WLAN(network.STA_IF)
wlan.active(True)
if wlan.isconnected():
draw_status("Already connected.\nSyncing time...")
return True
wlan.connect(ssid, password)
# Wait for connection with timeout
elapsed = 0
while not wlan.isconnected() and elapsed < WIFI_TIMEOUT:
time.sleep(0.5)
elapsed += 0.5
if wlan.isconnected():
ip = wlan.ifconfig()[0]
draw_status("Connected.\nIP: {}\nSyncing time...".format(ip))
return True
else:
draw_status("WiFi connection failed.\n"
"Check credentials.\n"
"Retrying in 10 seconds...")
return False
def sync_time():
"""Synchronise system time via NTP. Non-fatal on failure."""
try:
ntptime.settime()
except Exception:
# NTP failure is non-fatal; calendar still works (shows RTC time)
pass
def set_today():
"""Read current date from system clock into global today_* vars."""
global today_year, today_month, today_day
lt = time.localtime()
today_year = lt[0]
today_month = lt[1]
today_day = lt[2]
def make_date_string(year, month, day):
"""Format a date as YYYY-MM-DD for the API."""
return "{:04d}-{:02d}-{:02d}".format(year, month, day)
# ============================================================================
# DISPLAY SLEEP
# ============================================================================
def _fade_backlight(start, end, duration_ms=DISPLAY_FADE_MS, steps=DISPLAY_FADE_STEPS):
"""Gradually fade backlight from start to end brightness."""
step_delay = duration_ms / 1000.0 / steps
for i in range(steps + 1):
t = i / steps
brightness = start + (end - start) * t
try:
presto.set_backlight(brightness)
except Exception:
return
time.sleep(step_delay)
def sleep_display():
"""Turn off the display backlight with a gradual fade."""
global _display_awake
_fade_backlight(DISPLAY_BRIGHTNESS, DISPLAY_SLEEP_BRIGHTNESS)
_display_awake = False
def wake_display():
"""Fade the backlight in, then refresh the clock, reconnect WiFi if
needed, and redraw so the today-highlight stays current."""
global _display_awake
_fade_backlight(DISPLAY_SLEEP_BRIGHTNESS, DISPLAY_BRIGHTNESS)
_display_awake = True
# Refresh today's date from the system clock (may have crossed midnight).
set_today()
if not wifi_connected():
ensure_wifi_connected()
redraw_current_view()
def wifi_connected():
"""Return True if the WLAN interface is currently connected."""
try:
wlan = network.WLAN(network.STA_IF)
wlan.active(True)
return wlan.isconnected()
except Exception:
return False
def ensure_wifi_connected():
"""Reconnect WiFi if it dropped while the display was asleep."""
if wifi_connected():
return True
return connect_wifi()
def redraw_current_view():
"""Redraw the active view after wake-time status messages."""
if state == STATE_MONTH:
draw_month_view()
elif state == STATE_DAY:
draw_day_view()
elif state == STATE_RECORD:
draw_record_detail()
# ============================================================================
# API CLIENT
# ============================================================================
def _auth_header():
"""Return the Authorization header dict for urequests."""
return {"Authorization": "Bearer " + api_token}
def fetch_records(year, month, day):
"""Fetch records released on the given date from the API.
Returns (records_list, error_flag).
- On success: (list_of_dicts, False)
- On failure: ([], True)
"""
date_str = make_date_string(year, month, day)
url = API_BASE + "/api/v1/collection/on_this_day?date=" + date_str
try:
resp = urequests.get(url, headers=_auth_header())
if resp.status_code == 200:
data = resp.json()
recs = data.get("records", [])
resp.close()
gc.collect()
return recs, False
else:
resp.close()
gc.collect()
return [], True
except Exception as e:
# OSError for network failures, ValueError for JSON parse errors
gc.collect()
return [], True
def set_day_records(recs, had_error):
"""Set day-view records and prepare display caches."""
global records, records_error, scroll_offset, _content_height
records = recs
records_error = had_error
scroll_offset = 0
if had_error:
_content_height = 0
return
prepare_records_for_display()
def fetch_thumbnail(url):
"""Fetch a JPEG thumbnail from the given URL.
Returns the raw bytes on success, None on failure.
"""
try:
resp = urequests.get(url, headers=_auth_header())
if resp.status_code == 200:
data = resp.content
resp.close()
return data
resp.close()
except Exception:
pass
return None
# ============================================================================
# JPEG RENDERING
# ============================================================================
def _jpeg_scale_options():
"""Return JPEG scale flags paired with their output-size divisors."""
full = getattr(_jpegdec_lib, "JPEG_SCALE_FULL", 0)
half = getattr(_jpegdec_lib, "JPEG_SCALE_HALF", 1)
quarter = getattr(_jpegdec_lib, "JPEG_SCALE_QUARTER", 2)
eighth = getattr(_jpegdec_lib, "JPEG_SCALE_EIGHTH", 3)
return ((full, 1), (half, 2), (quarter, 4), (eighth, 8))
def _close_jpeg(jpeg):
"""Release a jpegdec object if the firmware exposes close()."""
if jpeg is None:
return
try:
jpeg.close()
except Exception:
pass
def draw_jpeg(data, x, y, max_w, max_h):
"""Decode and draw a JPEG image, scaled to fit within max_w x max_h
and centered in the bounding box.
Uses jpegdec module (standard on Pimoroni firmware).
Falls back to a placeholder rectangle on failure.
"""
if data is None:
_draw_placeholder(x, y, max_w, max_h)
return
# Try jpegdec module with smart scaling
if _HAS_JPEGDEC:
jpeg = None
try:
jpeg = _jpegdec_lib.JPEG(display)
try:
jpeg.open_RAM(memoryview(data))
except Exception:
jpeg.open_RAM(data)
# Attempt smart scaling: get dimensions, pick best scale, center
try:
img_h = jpeg.get_height()
img_w = jpeg.get_width()
# Try scales from largest to smallest; use the first that fits.
scale = None
divisor = 1
for scale_flag, scale_divisor in _jpeg_scale_options():
if img_w // scale_divisor <= max_w and img_h // scale_divisor <= max_h:
scale = scale_flag
divisor = scale_divisor
break
if scale is None:
scale, divisor = _jpeg_scale_options()[-1]
sw = img_w // divisor
sh = img_h // divisor
ox = x + (max_w - sw) // 2
oy = y + (max_h - sh) // 2
jpeg.decode(ox, oy, scale)
_close_jpeg(jpeg)
return
except Exception:
pass
# Fallback: decode at quarter scale (works for most cover art)
jpeg.decode(x, y, getattr(_jpegdec_lib, "JPEG_SCALE_QUARTER", 2))
_close_jpeg(jpeg)
return
except Exception:
_close_jpeg(jpeg)
pass
# Method 2: PicoGraphics built-in JPEG support
try:
if hasattr(display, "open_jpeg_from_RAM"):
display.open_jpeg_from_RAM(data)
display.decode_jpeg(x, y)
return
except Exception:
pass
# Method 3: alternate PicoGraphics JPEG API
try:
if hasattr(display, "draw_jpeg"):
display.draw_jpeg(data, x, y)
return
except Exception:
pass
# All methods failed — draw placeholder
_draw_placeholder(x, y, max_w, max_h)
def _draw_placeholder(x, y, w, h):
"""Draw a grey placeholder rectangle with a question mark."""
display.set_pen(_pen_placeholder)
display.rectangle(x, y, w, h)
display.set_pen(_pen_dim_text)
cx = x + w // 2 - display.measure_text("?", scale=2) // 2
cy = y + h // 2 - 10
display.text("?", cx, cy, scale=2)
# ============================================================================
# DRAWING: STATUS SCREEN (startup / error)
# ============================================================================
def draw_status(message):
"""Draw a simple centered status message on the display (used during
startup and for persistent errors)."""
display.set_pen(_pen_bg)
display.clear()
display.set_pen(_pen_status)
display.set_font("bitmap8")
lines = message.split("\n")
line_h = 20
total_h = len(lines) * line_h
start_y = (HEIGHT - total_h) // 2
for i, line in enumerate(lines):
w = display.measure_text(line, scale=1)
x = (WIDTH - w) // 2
display.text(line, x, start_y + i * line_h, scale=1)
presto.update()
# ============================================================================
# DRAWING: MONTH CALENDAR
# ============================================================================
def draw_month_view():
"""Render the full month calendar view including header, day-of-week
labels, day grid, and today highlight."""
display.set_pen(_pen_bg)
display.clear()
_draw_month_header()
_draw_day_labels()
_draw_day_grid()
presto.update()
def _draw_month_header():
"""Draw the month/year title and navigation arrows at the top."""
# Background bar
display.set_pen(_pen_cell_bg)
display.rectangle(0, HEADER_Y, WIDTH, HEADER_H)
# Month and year text (centered)
display.set_pen(_pen_header_text)
display.set_font("bitmap14_outline")
title = "{} {}".format(MONTH_NAMES[view_month - 1], view_year)
tw = display.measure_text(title, scale=1)
tx = (WIDTH - tw) // 2
ty = HEADER_Y + (HEADER_H - HEADER_TEXT_H) // 2
display.text(title, tx, ty, scale=1)
# Left arrow
lx = HEADER_SIDE_MARGIN
ly = HEADER_BUTTON_Y
display.set_pen(_pen_placeholder)
display.rectangle(lx, ly, ARROW_W, ARROW_H)
display.set_pen(_pen_back)
display.set_font("bitmap8")
_draw_centered_text("<", lx, ly, ARROW_W, ARROW_H, 8)
# Right arrow
rx = WIDTH - ARROW_W - HEADER_SIDE_MARGIN
ry = HEADER_BUTTON_Y
display.set_pen(_pen_placeholder)
display.rectangle(rx, ry, ARROW_W, ARROW_H)
display.set_pen(_pen_back)
display.set_font("bitmap8")
_draw_centered_text(">", rx, ry, ARROW_W, ARROW_H, 8)
def _draw_centered_text(text, x, y, w, h, text_h, scale=1):
"""Draw text centered inside a rectangular area."""
tw = display.measure_text(text, scale=scale)
tx = x + (w - tw) // 2
ty = y + (h - text_h) // 2
display.text(text, tx, ty, scale=scale)
def _draw_day_labels():
"""Draw Mon..Sun labels below the header."""
display.set_pen(_pen_dim_text)
display.set_font("bitmap8")
for i, name in enumerate(DAY_NAMES):
cx = GRID_LEFT + i * (CELL_SIZE + CELL_GAP) + CELL_SIZE // 2
tw = display.measure_text(name, scale=1)
display.text(name, cx - tw // 2, DOW_Y, scale=1)
def _draw_day_grid():
"""Draw the 7x6 grid of day cells for the current view month."""
days = days_in_month(view_year, view_month)
first_dow = day_of_week(view_year, view_month, 1)
display.set_font("bitmap8")
# Draw cells for 6 rows
for row in range(MAX_ROWS):
for col in range(CELLS_PER_ROW):
cell_index = row * CELLS_PER_ROW + col
day_num = cell_index - first_dow + 1
cx = GRID_LEFT + col * (CELL_SIZE + CELL_GAP)
cy = CALENDAR_TOP + row * (CELL_SIZE + CELL_GAP)
if day_num < 1 or day_num > days:
# Cell belongs to previous/next month — dim it
display.set_pen(_pen_cell_other)
display.rectangle(cx, cy, CELL_SIZE, CELL_SIZE)
if day_num > days:
# Show overflow day numbers dimmed
overflow = day_num - days
display.set_pen(_pen_dim_text)
_draw_centered_num(overflow, cx + CELL_SIZE // 2, cy + CELL_SIZE // 2)
continue
# Determine cell style
is_today = (
view_year == today_year
and view_month == today_month
and day_num == today_day
)
is_selected = (state == STATE_DAY and day_num == selected_day)
# Handle today + selected combo specially (show both highlight and border)
if is_today and is_selected:
display.set_pen(_pen_today_bg)
display.rectangle(cx, cy, CELL_SIZE, CELL_SIZE)
# Selection border on top of today highlight
display.set_pen(_pen_arrow)
display.line(cx, cy, cx + CELL_SIZE - 1, cy)
display.line(cx, cy + CELL_SIZE - 1, cx + CELL_SIZE - 1, cy + CELL_SIZE - 1)
display.line(cx, cy, cx, cy + CELL_SIZE - 1)
display.line(cx + CELL_SIZE - 1, cy, cx + CELL_SIZE - 1, cy + CELL_SIZE - 1)
display.set_pen(_pen_today_text)
_draw_centered_num(day_num, cx + CELL_SIZE // 2, cy + CELL_SIZE // 2)
continue
if is_today:
display.set_pen(_pen_today_bg)
elif is_selected:
# Outline the selected cell (non-today)
display.set_pen(_pen_cell_bg)
display.rectangle(cx, cy, CELL_SIZE, CELL_SIZE)
display.set_pen(_pen_arrow)
display.line(cx, cy, cx + CELL_SIZE - 1, cy)
display.line(cx, cy + CELL_SIZE - 1, cx + CELL_SIZE - 1, cy + CELL_SIZE - 1)
display.line(cx, cy, cx, cy + CELL_SIZE - 1)
display.line(cx + CELL_SIZE - 1, cy, cx + CELL_SIZE - 1, cy + CELL_SIZE - 1)
display.set_pen(_pen_normal_text)
_draw_centered_num(day_num, cx + CELL_SIZE // 2, cy + CELL_SIZE // 2)
continue
else:
display.set_pen(_pen_cell_bg)
display.rectangle(cx, cy, CELL_SIZE, CELL_SIZE)
# Day number
if is_today:
display.set_pen(_pen_today_text)
else:
display.set_pen(_pen_normal_text)
_draw_centered_num(day_num, cx + CELL_SIZE // 2, cy + CELL_SIZE // 2)
def _draw_centered_num(num, cx, cy):
"""Draw a number centered at (cx, cy)."""
text = str(num)
tw = display.measure_text(text, scale=1)
display.text(text, cx - tw // 2, cy - 5, scale=1)
# ============================================================================
# DRAWING: DAY VIEW (records list)
# ============================================================================
def draw_day_view():
"""Render the day view showing records for the selected date."""
display.set_pen(_pen_bg)
display.clear()
if records_error:
_draw_day_error()
_draw_day_header()
presto.update()
return
if not records:
_draw_day_empty()
_draw_day_header()
presto.update()
return
_draw_record_list()
_draw_day_header()
presto.update()
def _draw_day_header():
"""Draw the header with formatted date and back button."""
# Background bar
display.set_pen(_pen_cell_bg)
display.rectangle(0, DAY_HEADER_Y, WIDTH, DAY_HEADER_H)
# Back button
bx, by = BACK_X, BACK_Y
display.set_pen(_pen_placeholder)
display.rectangle(bx, by, BACK_W, BACK_H)
display.set_pen(_pen_back)
display.set_font("bitmap8")
_draw_centered_text("<", bx, by, BACK_W, BACK_H, DAY_COUNT_TEXT_H)
# Formatted date
date_str = "{} {}, {}".format(
MONTH_NAMES[view_month - 1], selected_day, view_year
)
display.set_pen(_pen_header_text)
display.set_font("bitmap14_outline")
tw = display.measure_text(date_str, scale=1)
display.text(
date_str,
(WIDTH - tw) // 2,
DAY_HEADER_Y + (DAY_HEADER_H - DAY_HEADER_TEXT_H) // 2,
scale=1
)
# Record count
count_str = "{} record{}".format(len(records), "s" if len(records) != 1 else "")
display.set_pen(_pen_dim_text)
display.set_font("bitmap8")
cw = display.measure_text(count_str, scale=1)
display.text(
count_str,
WIDTH - cw - 11,
DAY_HEADER_Y + (DAY_HEADER_H - DAY_COUNT_TEXT_H) // 2,
scale=1
)
def _draw_day_error():
"""Show error message when API call failed."""
display.set_pen(_pen_error)
display.set_font("bitmap8")
msg = "Could not reach server"
mw = display.measure_text(msg, scale=1)
display.text(msg, (WIDTH - mw) // 2, HEIGHT // 2 - 20, scale=1)
display.set_pen(_pen_dim_text)
hint = "Tap < Back to return"
hw = display.measure_text(hint, scale=1)
display.text(hint, (WIDTH - hw) // 2, HEIGHT // 2 + 10, scale=1)
def _draw_day_empty():
"""Show message when no records exist for the selected date."""
display.set_pen(_pen_dim_text)
display.set_font("bitmap8")
msg = "No records on this day"
mw = display.measure_text(msg, scale=1)
display.text(msg, (WIDTH - mw) // 2, HEIGHT // 2 - 10, scale=1)
def _draw_record_list():
"""Draw the scrollable list of record rows with cover thumbnails.
Uses dynamic row heights so wrapped text doesn't break layout."""
global scroll_offset
max_offset = _max_scroll_offset()
scroll_offset = min(max(0, scroll_offset), max_offset)
# Up arrow if scrolled down
if scroll_offset > 0:
display.set_pen(_pen_arrow)
display.set_font("bitmap14_outline")
display.text("^", WIDTH // 2 - 8, RECORD_START_Y - 28, scale=1)
cy = RECORD_START_Y - scroll_offset
for rec in records:
row_h = rec.get("_row_height", THUMB_SIZE + 8)
row_bottom = cy + row_h
if row_bottom <= RECORD_START_Y:
cy = row_bottom
continue
if cy >= HEIGHT - 28:
break
_draw_record_row(rec, cy)
cy = row_bottom
# Down arrow if more records below
if scroll_offset < max_offset:
display.set_pen(_pen_arrow)
display.set_font("bitmap14_outline")
display.text("v", WIDTH // 2 - 8, HEIGHT - 24, scale=1)
def _max_scroll_offset():
"""Return the maximum pixel scroll offset for the current records."""
viewport_h = HEIGHT - RECORD_START_Y - 28
return max(0, _content_height - viewport_h)
def prepare_records_for_display():
"""Cache display fields, row heights, and thumbnails for current records."""
global _content_height
display.set_font("bitmap8")
_content_height = 0
for rec in records:
_prepare_record_for_display(rec)
_content_height += rec.get("_row_height", THUMB_SIZE + 8)
preload_record_thumbnails()
gc.collect()
def _prepare_record_for_display(rec):
"""Prepare one record's display text and row height."""
title = display_text(rec.get("title", "Unknown Title"))
artists = rec.get("artists", [])
artist_str = display_text(", ".join(artists)) if artists else ""
meta_text = _record_meta_text(rec)
rec["_display_title"] = title
rec["_display_artists"] = artist_str
rec["_display_meta"] = meta_text
rec["_thumb_url"] = _record_thumbnail_url(rec)
rec["_row_height"] = _record_row_height(rec)
def preload_record_thumbnails():
"""Fetch thumbnail bytes before the first day-view draw."""
for rec in records:
if rec.get("micro_cover_url", ""):
_record_thumbnail_data(rec)
def _record_row_height(rec):
"""Calculate a record row height without drawing it."""
min_h = THUMB_SIZE + ROW_PAD_Y * 2 + ROW_SEPARATOR_H
title = rec.get("_display_title", display_text(rec.get("title", "Unknown Title")))
ty = _wrapped_line_count(title, TEXT_W, scale=1) * 12
artist_str = rec.get("_display_artists", "")
if artist_str:
ty += 2 + _wrapped_line_count(artist_str, TEXT_W, scale=1) * 12
if rec.get("_display_meta", _record_meta_text(rec)):
ty += 2 + 12
content_h = max(THUMB_SIZE, ty) + ROW_PAD_Y * 2 + ROW_SEPARATOR_H
return max(min_h, content_h)
def _record_meta_text(rec):
"""Return compact format/date metadata for a record row."""
record_format = rec.get("format", "")
release_year = _release_year(rec.get("release_date", ""))
if record_format and release_year:
return "{} | {}".format(record_format, release_year)
if record_format:
return record_format
return release_year
def _release_year(release_date):
"""Extract a display year from an API release_date value."""
if not release_date:
return ""
return str(release_date)[:4]
def _record_thumbnail_data(rec):
"""Fetch thumbnail bytes once per record and reuse them on redraw."""
if rec.get("_thumb_failed", False):
return None
cached = rec.get("_thumb_data", None)
if cached is not None:
return cached
thumb_url = rec.get("_thumb_url", "") or _record_thumbnail_url(rec)
if not thumb_url:
return None
data = fetch_thumbnail(thumb_url)
if data is None:
rec["_thumb_failed"] = True
else:
rec["_thumb_data"] = data
return data
def _record_thumbnail_url(rec):
"""Return the preferred cover URL for a record row."""
return (
rec.get("micro_cover_url", "")
or rec.get("mini_cover_url", "")
or rec.get("thumb_url", "")
)
def _draw_record_row(rec, y):
"""Draw a single record row using its cached layout height."""
row_h = rec.get("_row_height", None)
if row_h is None:
row_h = _record_row_height(rec)
row_bottom = y + row_h
# Fetch and draw thumbnail (top-aligned in row)
thumb_y = y + ROW_PAD_Y
if _dragging:
_draw_placeholder(THUMB_MARGIN, thumb_y, THUMB_SIZE, THUMB_SIZE)
else:
jpeg_data = _record_thumbnail_data(rec)
if jpeg_data is not None:
draw_jpeg(jpeg_data, THUMB_MARGIN, thumb_y, THUMB_SIZE, THUMB_SIZE)
else:
_draw_placeholder(THUMB_MARGIN, thumb_y, THUMB_SIZE, THUMB_SIZE)
# Title (starts at same height as thumbnail)
title = rec.get("_display_title", display_text(rec.get("title", "Unknown Title")))
display.set_font("bitmap8")
ty = y + ROW_PAD_Y
ty = draw_wrapped(title, TEXT_X, ty, TEXT_W, _pen_title, scale=1)
# Artists
artist_str = rec.get("_display_artists", "")
if artist_str:
ty += 2
ty = draw_wrapped(artist_str, TEXT_X, ty, TEXT_W, _pen_artist, scale=1)
meta_text = rec.get("_display_meta", _record_meta_text(rec))
if meta_text:
ty += 2
ty = draw_wrapped(meta_text, TEXT_X, ty, TEXT_W, _pen_dim_text, scale=1)
# Separator line at the computed bottom
display.set_pen(_pen_cell_other)
display.line(
THUMB_MARGIN,
row_bottom - ROW_SEPARATOR_H,
WIDTH - THUMB_MARGIN,
row_bottom - ROW_SEPARATOR_H
)
# ============================================================================
# DRAWING: RECORD DETAIL
# ============================================================================
def _max_detail_scroll_offset():
"""Return the maximum pixel scroll offset for the detail view."""
if _detail_content_height == 0:
return 0
content_bottom = DETAIL_COVER_Y + _detail_content_height
return max(0, content_bottom - HEIGHT)
def _measure_detail_text_height(text, font="bitmap8", scale=1, max_w=None):
"""Return the pixel height that text would occupy when drawn wrapped."""
if max_w is None:
max_w = DETAIL_TEXT_W
lines = _wrapped_lines(text, max_w, scale=scale)
line_height = 8 * scale + 4
return len(lines) * line_height
def _measure_detail_content(rec):
"""Compute and cache the total height of the scrollable detail content."""
global _detail_content_height
h = 0
# Title (above cover)
title = rec.get("_display_title",
display_text(rec.get("title", "Unknown Title")))
h += _measure_detail_text_height(title, font="bitmap14_outline", scale=1)
h += 6
# Artists (above cover)
artist_str = rec.get("_display_artists", "")
if not artist_str:
artists = rec.get("artists", [])
artist_str = display_text(", ".join(artists)) if artists else ""
if artist_str:
h += _measure_detail_text_height(artist_str)
h += 4
h += DETAIL_INFO_GAP # gap before cover
# Cover
h += DETAIL_COVER_SIZE
h += DETAIL_INFO_GAP
# Genres (below cover)
genres = rec.get("genres", [])
if genres:
genre_str = display_text(", ".join(genres))
h += _measure_detail_text_height(genre_str)
h += 4
h += 6
# Metadata line: record_type | format | year
meta_parts = []
record_type = rec.get("record_type", "")
if record_type:
meta_parts.append(display_text(record_type))
record_format = rec.get("format", "")
if record_format:
meta_parts.append(display_text(record_format))
release_date = rec.get("release_date", "")
if release_date:
meta_parts.append(str(release_date)[:4])
if meta_parts:
meta_str = " | ".join(meta_parts)
h += _measure_detail_text_height(meta_str)
h += 4
# Purchased at
purchased_at = rec.get("purchased_at", "")
if purchased_at:
purch_str = "Purchased: " + display_text(str(purchased_at)[:10])
h += _measure_detail_text_height(purch_str)
_detail_content_height = h
def _set_clip_below_header():
"""Restrict drawing to the area below the fixed header."""
try:
display.set_clip(0, DAY_HEADER_Y + DAY_HEADER_H,
WIDTH, HEIGHT - (DAY_HEADER_Y + DAY_HEADER_H))
except Exception:
pass
def _remove_clip():
"""Remove any active clip rectangle."""
try:
display.remove_clip()
except Exception:
pass
def draw_record_detail():
"""Render the individual record detail view. Layout order:
title, artists, large cover, genres, metadata, purchased at."""
global detail_scroll_offset
display.set_pen(_pen_bg)
display.clear()
rec = records[selected_record_idx]
# Measure content height so scroll bounds are known
_measure_detail_content(rec)
# Clamp scroll offset
max_off = _max_detail_scroll_offset()
if detail_scroll_offset > max_off:
detail_scroll_offset = max_off
if detail_scroll_offset < 0:
detail_scroll_offset = 0
offset = detail_scroll_offset
_draw_detail_header()
# Clip scrolling content below the header
_set_clip_below_header()
# Start drawing below the header
y = DETAIL_COVER_Y - offset
# Title and artists (above cover)
y = _draw_detail_title_artists(rec, y)
y += DETAIL_INFO_GAP # gap before cover
# Cover image
_draw_detail_cover(rec, y)
# Genres, metadata, purchased at (below cover)
y = y + DETAIL_COVER_SIZE + DETAIL_INFO_GAP
_draw_detail_info_below_cover(rec, y)
# Scroll indicators
display.set_font("bitmap14_outline")
if offset > 0:
display.set_pen(_pen_arrow)
display.text("^", WIDTH // 2 - 8, DAY_HEADER_H + 4, scale=1)
if offset < max_off:
display.set_pen(_pen_arrow)
display.text("v", WIDTH // 2 - 8, HEIGHT - 24, scale=1)
_remove_clip()
presto.update()
def _draw_detail_header():
"""Draw the record detail header with back button."""
display.set_pen(_pen_cell_bg)
display.rectangle(0, DAY_HEADER_Y, WIDTH, DAY_HEADER_H)
# Back button
bx, by = BACK_X, BACK_Y
display.set_pen(_pen_placeholder)
display.rectangle(bx, by, BACK_W, BACK_H)
display.set_pen(_pen_back)
display.set_font("bitmap8")
_draw_centered_text("<", bx, by, BACK_W, BACK_H, DAY_COUNT_TEXT_H)
# Title label
display.set_pen(_pen_header_text)
display.set_font("bitmap14_outline")
label = "Record"
tw = display.measure_text(label, scale=1)
display.text(
label,
(WIDTH - tw) // 2,
DAY_HEADER_Y + (DAY_HEADER_H - DAY_HEADER_TEXT_H) // 2,
scale=1
)
def _draw_detail_title_artists(rec, y):
"""Draw title and artists above the cover. Returns y after drawing."""
# Title
title = rec.get("_display_title",
display_text(rec.get("title", "Unknown Title")))
y = _draw_detail_text_line(title, y, _pen_title,
font="bitmap14_outline", scale=1)
y += 6
# Artists
artist_str = rec.get("_display_artists", "")
if not artist_str:
artists = rec.get("artists", [])
artist_str = display_text(", ".join(artists)) if artists else ""
if artist_str:
y = _draw_detail_text_line(artist_str, y, _pen_artist)
y += 4
return y
def _draw_detail_cover(rec, y):
"""Fetch and draw the cover art at the given y position."""
# Skip if entirely outside viewport
if y + DETAIL_COVER_SIZE <= DAY_HEADER_Y + DAY_HEADER_H:
return
if y >= HEIGHT:
return
thumb_url = (
rec.get("thumb_url", "")
or rec.get("mini_cover_url", "")
or rec.get("micro_cover_url", "")
)
if not thumb_url:
_draw_placeholder(DETAIL_COVER_X, y,
DETAIL_COVER_SIZE, DETAIL_COVER_SIZE)
return
# Use cached data or fetch
data = rec.get("_detail_thumb_data", None)
if data is None and not rec.get("_detail_thumb_failed", False):
data = fetch_thumbnail(thumb_url)
if data is None:
rec["_detail_thumb_failed"] = True
else:
rec["_detail_thumb_data"] = data
if data is not None:
draw_jpeg(data, DETAIL_COVER_X, y,
DETAIL_COVER_SIZE, DETAIL_COVER_SIZE)
else:
_draw_placeholder(DETAIL_COVER_X, y,
DETAIL_COVER_SIZE, DETAIL_COVER_SIZE)
def _draw_detail_info_below_cover(rec, y):
"""Draw genres, metadata line, and purchased-at below the cover."""
# Genres
genres = rec.get("genres", [])
if genres:
genre_str = display_text(", ".join(genres))
y = _draw_detail_text_line(genre_str, y, _pen_dim_text)
y += 4
y += 6
# Metadata: record_type | format | year
meta_parts = []
record_type = rec.get("record_type", "")
if record_type:
meta_parts.append(display_text(record_type))
record_format = rec.get("format", "")
if record_format:
meta_parts.append(display_text(record_format))
release_date = rec.get("release_date", "")
if release_date:
meta_parts.append(str(release_date)[:4])
if meta_parts:
meta_str = " | ".join(meta_parts)
y = _draw_detail_text_line(meta_str, y, _pen_dim_text)
y += 4
# Purchased at
purchased_at = rec.get("purchased_at", "")
if purchased_at:
purch_str = "Purchased: " + display_text(str(purchased_at)[:10])
y = _draw_detail_text_line(purch_str, y, _pen_dim_text)
return y
def _draw_detail_text_line(text, y, pen, font="bitmap8", scale=1):
"""Draw text centered horizontally at y, wrapping if needed.
Returns the y-position after drawing (including wrapped lines)."""
max_w = DETAIL_TEXT_W
display.set_pen(pen)
display.set_font(font)
lines = _wrapped_lines(text, max_w, scale=scale)
line_height = 8 * scale + 4
cy = y
for line in lines:
tw = display.measure_text(line, scale=scale)
display.text(line, (WIDTH - tw) // 2, cy, scale=scale)
cy += line_height
return cy
# ============================================================================
# TOUCH HANDLING
# ============================================================================
def read_touch():
"""Return the current touch as (x, y), or None when not pressed."""
try:
touch.poll()
except Exception:
pass
try:
if touch.state:
return int(touch.x), int(touch.y)
except Exception:
pass
for method_name in ("read", "get_touch"):
method = getattr(touch, method_name, None)
if method is None:
continue
try:
point = method()
except Exception:
continue
normalised = _normalise_touch(point)
if normalised is not None:
return normalised
return None
def _normalise_touch(point):
"""Convert common touch return shapes to (x, y)."""
if not point:
return None
if isinstance(point, (tuple, list)):
if len(point) == 2:
return int(point[0]), int(point[1])
if len(point) >= 3 and point[0] is not None:
return int(point[1]), int(point[2])
return None
try:
if hasattr(point, "state") and not point.state:
return None
return int(point.x), int(point.y)
except Exception:
return None
def wait_for_touch_release():
"""Block until the active touch is released."""
start = time.ticks_ms()
while read_touch() is not None:
if time.ticks_diff(time.ticks_ms(), start) >= TOUCH_RELEASE_TIMEOUT_MS:
return False
time.sleep(0.02)
return True
def touch_to_calendar_cell(x, y):
"""Map a touch (x, y) to (row, col) in the calendar grid, or None
if the touch is outside the grid."""
if y < CALENDAR_TOP:
return None
col = (x - GRID_LEFT) // (CELL_SIZE + CELL_GAP)
row = (y - CALENDAR_TOP) // (CELL_SIZE + CELL_GAP)
# Check within cell (not in gap)
cx = GRID_LEFT + col * (CELL_SIZE + CELL_GAP)
cy = CALENDAR_TOP + row * (CELL_SIZE + CELL_GAP)
if cx <= x < cx + CELL_SIZE and cy <= y < cy + CELL_SIZE:
if 0 <= col < CELLS_PER_ROW and 0 <= row < MAX_ROWS:
return row, col
return None
def cell_to_day(row, col):
"""Convert a calendar cell (row, col) to a day number (1-based)
for the current view month. Returns None if the cell is outside
the current month."""
first_dow = day_of_week(view_year, view_month, 1)
day_num = row * CELLS_PER_ROW + col - first_dow + 1
days = days_in_month(view_year, view_month)
if 1 <= day_num <= days:
return day_num
return None
def touch_to_record_index(y):
"""Map a touch y-coordinate to a record list index, accounting for
scroll offset. Returns None if the touch doesn't hit a record row."""
if not records:
return None
cy = RECORD_START_Y - scroll_offset
for i, rec in enumerate(records):
row_h = rec.get("_row_height", THUMB_SIZE + 8)
if cy <= y < cy + row_h:
return i
cy += row_h
return None
def handle_month_touch(x, y):
"""Process a touch event in month view state."""
global view_year, view_month, selected_day, state, records, records_error, scroll_offset
# Check left arrow
lx, ly = HEADER_SIDE_MARGIN, HEADER_BUTTON_Y
if lx <= x <= lx + ARROW_W and ly <= y <= ly + ARROW_H:
view_year, view_month = previous_month(view_year, view_month)
draw_month_view()
return
# Check right arrow
rx, ry = WIDTH - ARROW_W - HEADER_SIDE_MARGIN, HEADER_BUTTON_Y
if rx <= x <= rx + ARROW_W and ry <= y <= ry + ARROW_H:
view_year, view_month = next_month(view_year, view_month)
draw_month_view()
return
# Check calendar cells
cell = touch_to_calendar_cell(x, y)
if cell is None:
return
row, col = cell
day_num = cell_to_day(row, col)
if day_num is None:
return
# Valid day tapped — fetch records
selected_day = day_num
state = STATE_DAY
scroll_offset = 0
records_error = False
records = []
# Show loading state
draw_status("Loading records for\n{} {}, {}...".format(
MONTH_NAMES[view_month - 1], day_num, view_year
))
# Fetch from API
recs, had_error = fetch_records(view_year, view_month, day_num)
set_day_records(recs, had_error)
# Render day view
draw_day_view()
def handle_day_touch(x, y):
"""Process a tap event in day view state.
Back button and scroll are handled by drag logic in the main loop."""
global records, records_error
# Tap in error state: retry fetching records
if records_error:
draw_status("Retrying...")
if not ensure_wifi_connected():
set_day_records([], True)
draw_day_view()
return
recs, had_error = fetch_records(view_year, view_month, selected_day)
set_day_records(recs, had_error)
draw_day_view()
return
# Row taps are handled by the main loop before this function is called.
# ============================================================================
# MAIN LOOP
# ============================================================================
def init_display():
"""Initialise pens (display is already set up at module level)."""
try:
display.set_font("bitmap8")
except Exception:
pass
_init_pens()
def main():
"""Application entry point. Runs the boot sequence then enters the
main event loop."""
global state, view_year, view_month, _last_touch
global selected_day, selected_record_idx, records, records_error
global scroll_offset, detail_scroll_offset
global _dragging
global _last_activity, _last_drag_redraw
# -- Init display --
init_display()
try:
presto.set_backlight(DISPLAY_BRIGHTNESS)
except Exception:
pass
draw_status("Music Library\nStarting up...")
time.sleep(0.5)
# -- WiFi --
if not connect_wifi():
# Show persistent error; try to reconnect in a loop
while not connect_wifi():
time.sleep(10)
gc.collect()
# -- NTP sync --
sync_time()
set_today()
# Start on today's records.
view_year = today_year
view_month = today_month
selected_day = today_day
state = STATE_DAY
records_error = False
scroll_offset = 0
draw_status("Loading records for\n{} {}, {}...".format(
MONTH_NAMES[view_month - 1], today_day, view_year
))
recs, had_error = fetch_records(view_year, view_month, today_day)
set_day_records(recs, had_error)
draw_day_view()
_last_activity = time.ticks_ms()
while True:
touch_point = read_touch()
now = time.ticks_ms()
if _display_awake and time.ticks_diff(now, _last_activity) >= DISPLAY_SLEEP_MS:
sleep_display()
if touch_point is None:
time.sleep(0.03)
continue
if not _display_awake:
wake_display()
_last_activity = now
_last_touch = now
wait_for_touch_release()
continue
x, y = touch_point
if time.ticks_diff(now, _last_touch) < DEBOUNCE_MS:
time.sleep(0.02)
continue
_last_touch = now
_last_activity = now
if state == STATE_MONTH:
handle_month_touch(x, y)
wait_for_touch_release()
elif state == STATE_DAY:
# Check back button immediately (no drag needed)
if BACK_X <= x <= BACK_X + BACK_W and BACK_Y <= y <= BACK_Y + BACK_H:
state = STATE_MONTH
draw_month_view()
wait_for_touch_release()
continue
# Track vertical drag for scrolling
drag_start_y = y
last_drag_y = y
pending_delta = 0
dragged = False
_dragging = False
_last_drag_redraw = time.ticks_ms()
while True:
touch_point = read_touch()
if touch_point is None:
break
current_y = touch_point[1]
if abs(current_y - drag_start_y) >= DRAG_REDRAW_PX:
dragged = True
pending_delta += last_drag_y - current_y
now = time.ticks_ms()
redraw_due = time.ticks_diff(now, _last_drag_redraw) >= DRAG_REDRAW_MS
if abs(pending_delta) >= DRAG_REDRAW_PX and redraw_due:
max_offset = _max_scroll_offset()
new_offset = min(max(0, scroll_offset + pending_delta), max_offset)
if new_offset != scroll_offset:
scroll_offset = new_offset
_dragging = True
draw_day_view()
_last_drag_redraw = now
pending_delta = 0
last_drag_y = current_y
time.sleep(0.01)
if dragged and pending_delta:
max_offset = _max_scroll_offset()
new_offset = min(max(0, scroll_offset + pending_delta), max_offset)
if new_offset != scroll_offset:
scroll_offset = new_offset
_dragging = True
if _dragging:
_dragging = False
draw_day_view()
if not dragged:
# Check for record row tap -> detail view
if not records_error and records:
rec_idx = touch_to_record_index(y)
if rec_idx is not None:
selected_record_idx = rec_idx
detail_scroll_offset = 0
state = STATE_RECORD
draw_record_detail()
continue
# Otherwise handle as normal tap
handle_day_touch(x, y)
elif state == STATE_RECORD:
# Check back button immediately (no drag needed)
if BACK_X <= x <= BACK_X + BACK_W and BACK_Y <= y <= BACK_Y + BACK_H:
state = STATE_DAY
detail_scroll_offset = 0
draw_day_view()
wait_for_touch_release()
continue
# Track vertical drag for scrolling detail view
drag_start_y = y
last_drag_y = y
pending_delta = 0
dragged = False
_last_drag_redraw = time.ticks_ms()
while True:
touch_point = read_touch()
if touch_point is None:
break
current_y = touch_point[1]
if abs(current_y - drag_start_y) >= DRAG_REDRAW_PX:
dragged = True
pending_delta += last_drag_y - current_y
now = time.ticks_ms()
redraw_due = time.ticks_diff(now, _last_drag_redraw) >= DRAG_REDRAW_MS
if abs(pending_delta) >= DRAG_REDRAW_PX and redraw_due:
max_offset = _max_detail_scroll_offset()
new_offset = min(max(0, detail_scroll_offset + pending_delta), max_offset)
if new_offset != detail_scroll_offset:
detail_scroll_offset = new_offset
draw_record_detail()
_last_drag_redraw = now
pending_delta = 0
last_drag_y = current_y
time.sleep(0.01)
if dragged and pending_delta:
max_offset = _max_detail_scroll_offset()
new_offset = min(max(0, detail_scroll_offset + pending_delta), max_offset)
if new_offset != detail_scroll_offset:
detail_scroll_offset = new_offset
draw_record_detail()
# ============================================================================
# STARTUP
# ============================================================================
main()