+    def set_region_to_update(self, area: Area) -> None:
+        """Set the region to update"""
+        region_x1 = area.x1 + self.colstart
+        region_x2 = area.x2 + self.colstart
+        region_y1 = area.y1 + self.rowstart
+        region_y2 = area.y2 + self.rowstart
+
+        if self.colorspace.depth < 8:
+            pixels_per_byte = 8 // self.colorspace.depth
+            if self.colorspace.pixels_in_byte_share_row:
+                region_x1 /= pixels_per_byte * self.colorspace.bytes_per_cell
+                region_x2 /= pixels_per_byte * self.colorspace.bytes_per_cell
+            else:
+                region_y1 /= pixels_per_byte * self.colorspace.bytes_per_cell
+                region_y2 /= pixels_per_byte * self.colorspace.bytes_per_cell
+
+        region_x2 -= 1
+        region_y2 -= 1
+
+        chip_select = CHIP_SELECT_UNTOUCHED
+        if self.always_toggle_chip_select or self.data_as_commands:
+            chip_select = CHIP_SELECT_TOGGLE_EVERY_BYTE
+
+        # Set column
+        self.begin_transaction()
+        data_type = DISPLAY_DATA
+        if not self.data_as_commands:
+            self.send(
+                DISPLAY_COMMAND, CHIP_SELECT_UNTOUCHED, bytes([self.column_command])
+            )
+        else:
+            data_type = DISPLAY_COMMAND
+            """
+            self._core.send(
+                DISPLAY_COMMAND, CHIP_SELECT_TOGGLE_EVERY_BYTE, bytes([command]) + data
+            )
+            self._core.send(DISPLAY_DATA, CHIP_SELECT_UNTOUCHED, data)
+            """
+
+        if self.ram_width < 0x100:  # Single Byte Bounds
+            data = struct.pack(">BB", region_x1, region_x2)
+        else:
+            if self.address_little_endian:
+                region_x1 = bswap16(region_x1)
+                region_x2 = bswap16(region_x2)
+            data = struct.pack(">HH", region_x1, region_x2)
+
+        # Quirk for SH1107 "SH1107_addressing"
+        #     Column lower command = 0x00, Column upper command = 0x10
+        if self.sh1107_addressing:
+            data = struct.pack(
+                ">BB",
+                ((region_x1 >> 4) & 0xF0) | 0x10,  # 0x10 to 0x17
+                region_x1 & 0x0F,  # 0x00 to 0x0F
+            )
+
+        self.send(data_type, chip_select, data)
+        self.end_transaction()
+
+        if self.set_current_column_command != NO_COMMAND:
+            self.begin_transaction()
+            self.send(
+                DISPLAY_COMMAND, chip_select, bytes([self.set_current_column_command])
+            )
+            # Only send the first half of data because it is the first coordinate.
+            self.send(DISPLAY_DATA, chip_select, data[: len(data) // 2])
+            self.end_transaction()
+
+        # Set row
+        self.begin_transaction()
+
+        if not self.data_as_commands:
+            self.send(DISPLAY_COMMAND, CHIP_SELECT_UNTOUCHED, bytes([self.row_command]))
+
+        if self.ram_width < 0x100:  # Single Byte Bounds
+            data = struct.pack(">BB", region_y1, region_y2)
+        else:
+            if self.address_little_endian:
+                region_y1 = bswap16(region_y1)
+                region_y2 = bswap16(region_y2)
+            data = struct.pack(">HH", region_y1, region_y2)
+
+        # Quirk for SH1107 "SH1107_addressing"
+        #     Page address command = 0xB0
+        if self.sh1107_addressing:
+            data = struct.pack(">B", 0xB0 | region_y1)
+
+        self.send(data_type, chip_select, data)
+        self.end_transaction()
+
+        if self.set_current_row_command != NO_COMMAND:
+            self.begin_transaction()
+            self.send(
+                DISPLAY_COMMAND, chip_select, bytes([self.set_current_row_command])
+            )
+            # Only send the first half of data because it is the first coordinate.
+            self.send(DISPLAY_DATA, chip_select, data[: len(data) // 2])
+            self.end_transaction()
+
+        """
+        img = self._buffer.convert("RGB").crop(astuple(area))
+        img = img.rotate(360 - self._core.rotation, expand=True)
+
+        display_area = self._apply_rotation(area)
+
+        img = img.crop(astuple(display_area))
+
+        data = numpy.array(img).astype("uint16")
+        color = (
+            ((data[:, :, 0] & 0xF8) << 8)
+            | ((data[:, :, 1] & 0xFC) << 3)
+            | (data[:, :, 2] >> 3)
+        )
+
+        pixels = bytes(
+            numpy.dstack(((color >> 8) & 0xFF, color & 0xFF)).flatten().tolist()
+        )
+        """
+