1 # SPDX-FileCopyrightText: 2020 Melissa LeBlanc-Williams for Adafruit Industries
3 # SPDX-License-Identifier: MIT
7 ================================================================================
11 **Software and Dependencies:**
14 https://github.com/adafruit/Adafruit_Blinka/releases
16 * Author(s): Melissa LeBlanc-Williams
21 from typing import Optional
23 import microcontroller
24 from circuitpython_typing import WriteableBuffer, ReadableBuffer
25 from ._displaycore import _DisplayCore
26 from ._displaybus import _DisplayBus
27 from ._colorconverter import ColorConverter
28 from ._group import Group, circuitpython_splash
29 from ._area import Area
30 from ._constants import (
31 CHIP_SELECT_TOGGLE_EVERY_BYTE,
32 CHIP_SELECT_UNTOUCHED,
41 __version__ = "0.0.0+auto.0"
42 __repo__ = "https://github.com/adafruit/Adafruit_Blinka_displayio.git"
46 # pylint: disable=too-many-instance-attributes, too-many-statements
47 """This initializes a display and connects it into CircuitPython. Unlike other objects
48 in CircuitPython, Display objects live until ``displayio.release_displays()`` is called.
49 This is done so that CircuitPython can use the display itself.
51 Most people should not use this class directly. Use a specific display driver instead
52 that will contain the initialization sequence at minimum.
57 display_bus: _DisplayBus,
58 init_sequence: ReadableBuffer,
65 color_depth: int = 16,
66 grayscale: bool = False,
67 pixels_in_byte_share_row: bool = True,
68 bytes_per_cell: int = 1,
69 reverse_pixels_in_byte: bool = False,
70 reverse_bytes_in_word: bool = True,
71 set_column_command: int = 0x2A,
72 set_row_command: int = 0x2B,
73 write_ram_command: int = 0x2C,
74 backlight_pin: Optional[microcontroller.Pin] = None,
75 brightness_command: Optional[int] = None,
76 brightness: float = 1.0,
77 single_byte_bounds: bool = False,
78 data_as_commands: bool = False,
79 auto_refresh: bool = True,
80 native_frames_per_second: int = 60,
81 backlight_on_high: bool = True,
82 SH1107_addressing: bool = False,
84 # pylint: disable=too-many-locals,invalid-name, too-many-branches
85 """Create a Display object on the given display bus (`displayio.FourWire` or
86 `paralleldisplay.ParallelBus`).
88 The ``init_sequence`` is bitpacked to minimize the ram impact. Every command begins
89 with a command byte followed by a byte to determine the parameter count and if a
90 delay is need after. When the top bit of the second byte is 1, the next byte will be
91 the delay time in milliseconds. The remaining 7 bits are the parameter count
92 excluding any delay byte. The third through final bytes are the remaining command
93 parameters. The next byte will begin a new command definition. Here is a portion of
96 .. code-block:: python
99 b"\\xE1\\x0F\\x00\\x0E\\x14\\x03\\x11\\x07\\x31\
100 \\xC1\\x48\\x08\\x0F\\x0C\\x31\\x36\\x0F"
101 b"\\x11\\x80\\x78" # Exit Sleep then delay 0x78 (120ms)
102 b"\\x29\\x80\\x78" # Display on then delay 0x78 (120ms)
104 display = displayio.Display(display_bus, init_sequence, width=320, height=240)
106 The first command is 0xE1 with 15 (0x0F) parameters following. The second and third
107 are 0x11 and 0x29 respectively with delays (0x80) of 120ms (0x78) and no parameters.
108 Multiple byte literals (b”“) are merged together on load. The parens are needed to
109 allow byte literals on subsequent lines.
111 The initialization sequence should always leave the display memory access inline with
112 the scan of the display to minimize tearing artifacts.
115 if rotation % 90 != 0:
116 raise ValueError("Display rotation must be in 90 degree increments")
118 if SH1107_addressing and color_depth != 1:
119 raise ValueError("color_depth must be 1 when SH1107_addressing is True")
121 # Turn off auto-refresh as we init
122 self._auto_refresh = False
125 if single_byte_bounds:
129 self._core = _DisplayCore(
134 ram_height=ram_height,
138 color_depth=color_depth,
140 pixels_in_byte_share_row=pixels_in_byte_share_row,
141 bytes_per_cell=bytes_per_cell,
142 reverse_pixels_in_byte=reverse_pixels_in_byte,
143 reverse_bytes_in_word=reverse_bytes_in_word,
144 column_command=set_column_command,
145 row_command=set_row_command,
146 set_current_column_command=NO_COMMAND,
147 set_current_row_command=NO_COMMAND,
148 data_as_commands=data_as_commands,
149 always_toggle_chip_select=False,
150 sh1107_addressing=(SH1107_addressing and color_depth == 1),
151 address_little_endian=False,
154 self._write_ram_command = write_ram_command
155 self._brightness_command = brightness_command
156 self._first_manual_refresh = not auto_refresh
157 self._backlight_on_high = backlight_on_high
159 self._native_frames_per_second = native_frames_per_second
160 self._native_ms_per_frame = 1000 // native_frames_per_second
162 self._brightness = brightness
163 self._auto_refresh = auto_refresh
166 while i < len(init_sequence):
167 command = init_sequence[i]
168 data_size = init_sequence[i + 1]
169 delay = (data_size & DELAY) != 0
171 while self._core.begin_transaction():
174 if self._core.data_as_commands:
175 full_command = bytearray(data_size + 1)
176 full_command[0] = command
177 full_command[1:] = init_sequence[i + 2 : i + 2 + data_size]
180 CHIP_SELECT_TOGGLE_EVERY_BYTE,
185 DISPLAY_COMMAND, CHIP_SELECT_TOGGLE_EVERY_BYTE, bytes([command])
189 CHIP_SELECT_UNTOUCHED,
190 init_sequence[i + 2 : i + 2 + data_size],
192 self._core.end_transaction()
196 delay_time_ms = init_sequence[i + 1 + data_size]
197 if delay_time_ms == 255:
199 time.sleep(delay_time_ms / 1000)
202 self._current_group = None
203 self._last_refresh_call = 0
204 self._refresh_thread = None
205 self._colorconverter = ColorConverter()
207 self._backlight_type = None
208 if backlight_pin is not None:
210 from pwmio import PWMOut # pylint: disable=import-outside-toplevel
212 # 100Hz looks decent and doesn't keep the CPU too busy
213 self._backlight = PWMOut(backlight_pin, frequency=100, duty_cycle=0)
214 self._backlight_type = BACKLIGHT_PWM
216 # PWMOut not implemented on this platform
218 if self._backlight_type is None:
219 self._backlight_type = BACKLIGHT_IN_OUT
220 self._backlight = digitalio.DigitalInOut(backlight_pin)
221 self._backlight.switch_to_output()
222 self.brightness = brightness
223 if not circuitpython_splash._in_group:
224 self._set_root_group(circuitpython_splash)
225 self.auto_refresh = auto_refresh
227 def __new__(cls, *args, **kwargs):
228 from . import ( # pylint: disable=import-outside-toplevel, cyclic-import
232 display_instance = super().__new__(cls)
233 allocate_display(display_instance)
234 return display_instance
236 def _send_pixels(self, pixels):
237 if not self._core.data_as_commands:
240 CHIP_SELECT_TOGGLE_EVERY_BYTE,
241 bytes([self._write_ram_command]),
243 self._core.send(DISPLAY_DATA, CHIP_SELECT_UNTOUCHED, pixels)
245 def show(self, group: Group) -> None:
246 """Switches to displaying the given group of layers. When group is None, the
247 default CircuitPython terminal will be shown.
250 group = circuitpython_splash
251 self._core.set_root_group(group)
253 def _set_root_group(self, root_group: Group) -> None:
254 ok = self._core.set_root_group(root_group)
256 raise ValueError("Group already used")
261 target_frames_per_second: Optional[int] = None,
262 minimum_frames_per_second: int = 0,
264 """When auto refresh is off, waits for the target frame rate and then refreshes the
265 display, returning True. If the call has taken too long since the last refresh call
266 for the given target frame rate, then the refresh returns False immediately without
267 updating the screen to hopefully help getting caught up.
269 If the time since the last successful refresh is below the minimum frame rate, then
270 an exception will be raised. Set minimum_frames_per_second to 0 to disable.
272 When auto refresh is on, updates the display immediately. (The display will also
273 update without calls to this.)
275 maximum_ms_per_real_frame = 0xFFFFFFFF
276 if minimum_frames_per_second > 0:
277 maximum_ms_per_real_frame = 1000 // minimum_frames_per_second
279 if target_frames_per_second is None:
280 target_ms_per_frame = 0xFFFFFFFF
282 target_ms_per_frame = 1000 // target_frames_per_second
285 not self._auto_refresh
286 and not self._first_manual_refresh
287 and target_ms_per_frame != 0xFFFFFFFF
289 current_time = time.monotonic() * 1000
290 current_ms_since_real_refresh = current_time - self._core.last_refresh
291 if current_ms_since_real_refresh > maximum_ms_per_real_frame:
292 raise RuntimeError("Below minimum frame rate")
293 current_ms_since_last_call = current_time - self._last_refresh_call
294 self._last_refresh_call = current_time
295 if current_ms_since_last_call > target_ms_per_frame:
298 remaining_time = target_ms_per_frame - (
299 current_ms_since_real_refresh % target_ms_per_frame
301 time.sleep(remaining_time / 1000)
302 self._first_manual_refresh = False
303 self._refresh_display()
306 def _refresh_display(self):
307 if not self._core.start_refresh():
310 areas_to_refresh = self._get_refresh_areas()
311 for area in areas_to_refresh:
312 self._refresh_area(area)
314 self._core.finish_refresh()
318 def _get_refresh_areas(self) -> list[Area]:
319 """Get a list of areas to be refreshed"""
321 if self._core.full_refresh:
322 areas.append(self._core.area)
323 elif self._core.current_group is not None:
324 self._core.current_group._get_refresh_areas( # pylint: disable=protected-access
329 def _background(self):
330 """Run background refresh tasks. Do not call directly"""
333 and (time.monotonic() * 1000 - self._core.last_refresh)
334 > self._native_ms_per_frame
338 def _refresh_area(self, area) -> bool:
339 """Loop through dirty areas and redraw that area."""
340 # pylint: disable=too-many-locals, too-many-branches
343 # Clip the area to the display by overlapping the areas.
344 # If there is no overlap then we're done.
345 if not self._core.clip_area(area, clipped):
348 rows_per_buffer = clipped.height()
349 pixels_per_word = 32 // self._core.colorspace.depth
350 pixels_per_buffer = clipped.size()
352 # We should have lots of memory
353 buffer_size = clipped.size() // pixels_per_word
356 # for SH1107 and other boundary constrained controllers
357 # write one single row at a time
358 if self._core.sh1107_addressing:
359 subrectangles = rows_per_buffer // 8
361 elif clipped.size() > buffer_size * pixels_per_word:
362 rows_per_buffer = buffer_size * pixels_per_word // clipped.width()
363 if rows_per_buffer == 0:
365 # If pixels are packed by column then ensure rows_per_buffer is on a byte boundary
367 self._core.colorspace.depth < 8
368 and self._core.colorspace.pixels_in_byte_share_row
370 pixels_per_byte = 8 // self._core.colorspace.depth
371 if rows_per_buffer % pixels_per_byte != 0:
372 rows_per_buffer -= rows_per_buffer % pixels_per_byte
373 subrectangles = clipped.height() // rows_per_buffer
374 if clipped.height() % rows_per_buffer != 0:
376 pixels_per_buffer = rows_per_buffer * clipped.width()
377 buffer_size = pixels_per_buffer // pixels_per_word
378 if pixels_per_buffer % pixels_per_word:
380 mask_length = (pixels_per_buffer // 32) + 1 # 1 bit per pixel + 1
381 remaining_rows = clipped.height()
383 for subrect_index in range(subrectangles):
386 y1=clipped.y1 + rows_per_buffer * subrect_index,
388 y2=clipped.y1 + rows_per_buffer * (subrect_index + 1),
390 if remaining_rows < rows_per_buffer:
391 subrectangle.y2 = subrectangle.y1 + remaining_rows
392 remaining_rows -= rows_per_buffer
393 self._core.set_region_to_update(subrectangle)
394 if self._core.colorspace.depth >= 8:
395 subrectangle_size_bytes = subrectangle.size() * (
396 self._core.colorspace.depth // 8
399 subrectangle_size_bytes = subrectangle.size() // (
400 8 // self._core.colorspace.depth
403 buffer = memoryview(bytearray([0] * (buffer_size * 4))).cast("I")
404 mask = memoryview(bytearray([0] * (mask_length * 4))).cast("I")
405 self._core.fill_area(subrectangle, mask, buffer)
407 # Can't acquire display bus; skip the rest of the data.
408 if not self._core.bus_free():
411 self._core.begin_transaction()
412 self._send_pixels(buffer.tobytes()[:subrectangle_size_bytes])
413 self._core.end_transaction()
416 def fill_row(self, y: int, buffer: WriteableBuffer) -> WriteableBuffer:
417 """Extract the pixels from a single row"""
418 if self._core.colorspace.depth != 16:
419 raise ValueError("Display must have a 16 bit colorspace.")
421 area = Area(0, y, self._core.width, y + 1)
422 pixels_per_word = 32 // self._core.colorspace.depth
423 buffer_size = self._core.width // pixels_per_word
424 pixels_per_buffer = area.size()
425 if pixels_per_buffer % pixels_per_word:
428 buffer = memoryview(bytearray([0] * (buffer_size * 4))).cast("I")
429 mask_length = (pixels_per_buffer // 32) + 1
430 mask = memoryview(bytearray([0] * (mask_length * 4))).cast("I")
431 self._core.fill_area(area, mask, buffer)
434 def _release(self) -> None:
435 """Release the display and free its resources"""
436 self.auto_refresh = False
437 self._core.release_display_core()
439 def _reset(self) -> None:
440 """Reset the display"""
441 self.auto_refresh = True
442 circuitpython_splash.x = 0
443 circuitpython_splash.y = 0
444 if not circuitpython_splash._in_group: # pylint: disable=protected-access
445 self._set_root_group(circuitpython_splash)
448 def auto_refresh(self) -> bool:
449 """True when the display is refreshed automatically."""
450 return self._auto_refresh
453 def auto_refresh(self, value: bool):
454 self._first_manual_refresh = not value
455 self._auto_refresh = value
458 def brightness(self) -> float:
459 """The brightness of the display as a float. 0.0 is off and 1.0 is full `brightness`."""
460 return self._brightness
463 def brightness(self, value: float):
464 if 0 <= float(value) <= 1.0:
465 if not self._backlight_on_high:
468 if self._backlight_type == BACKLIGHT_PWM:
469 self._backlight.duty_cycle = value * 0xFFFF
470 elif self._backlight_type == BACKLIGHT_IN_OUT:
471 self._backlight.value = value > 0.99
472 elif self._brightness_command is not None:
473 okay = self._core.begin_transaction()
475 if self._core.data_as_commands:
478 CHIP_SELECT_TOGGLE_EVERY_BYTE,
479 bytes([self._brightness_command, round(0xFF * value)]),
484 CHIP_SELECT_TOGGLE_EVERY_BYTE,
485 bytes([self._brightness_command]),
488 DISPLAY_DATA, CHIP_SELECT_UNTOUCHED, round(value * 255)
490 self._core.end_transaction()
491 self._brightness = value
493 raise ValueError("Brightness must be between 0.0 and 1.0")
496 def width(self) -> int:
498 return self._core.get_width()
501 def height(self) -> int:
503 return self._core.get_height()
506 def rotation(self) -> int:
507 """The rotation of the display as an int in degrees."""
508 return self._core.get_rotation()
511 def rotation(self, value: int):
513 raise ValueError("Display rotation must be in 90 degree increments")
514 transposed = self._core.rotation in (90, 270)
515 will_transposed = value in (90, 270)
516 if transposed != will_transposed:
517 self._core.width, self._core.height = self._core.height, self._core.width
518 self._core.set_rotation(value)
519 if self._core.current_group is not None:
520 self._core.current_group._update_transform( # pylint: disable=protected-access
525 def bus(self) -> _DisplayBus:
526 """Current Display Bus"""
527 return self._core.get_bus()