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- from ..Script import Script
- import re
- import datetime
- class DisplayProgressOnLCD(Script):
- def __init__(self):
- super().__init__()
- def getSettingDataString(self):
- return """{
- "name": "Display Progress On LCD",
- "key": "DisplayProgressOnLCD",
- "metadata": {},
- "version": 2,
- "settings":
- {
- "time_remaining":
- {
- "label": "Time Remaining",
- "description": "Select to write remaining time to the display.Select to write remaining time on the display using M117 status line message (almost all printers) or using M73 command (Prusa and Marlin 2 if enabled).",
- "type": "bool",
- "default_value": false
- },
- "time_remaining_method":
- {
- "label": "Time Reporting Method",
- "description": "How should remaining time be shown on the display? It could use a generic message command (M117, almost all printers), or a specialised time remaining command (M73, Prusa and Marlin 2).",
- "type": "enum",
- "options": {
- "m117":"M117 - All printers",
- "m73":"M73 - Prusa, Marlin 2",
- "m118":"M118 - Octoprint"
- },
- "enabled": "time_remaining",
- "default_value": "m117"
- },
- "update_frequency":
- {
- "label": "Update frequency",
- "description": "Update remaining time for every layer or periodically every minute or faster.",
- "type": "enum",
- "options": {"0":"Every layer","15":"Every 15 seconds","30":"Every 30 seconds","60":"Every minute"},
- "default_value": "0",
- "enabled": "time_remaining"
- },
- "percentage":
- {
- "label": "Percentage",
- "description": "When enabled, set the completion bar percentage on the LCD using Marlin's M73 command.",
- "type": "bool",
- "default_value": false
- }
- }
- }"""
-
-
- def getTimeValue(self, line):
- list_split = re.split(":", line)
- return float(list_split[1])
- def outputTime(self, lines, line_index, time_left, mode):
-
- time_left = max(time_left, 0)
- m, s = divmod(time_left, 60)
- h, m = divmod(m, 60)
-
- if mode == "m117":
- current_time_string = "{:d}h{:02d}m{:02d}s".format(int(h), int(m), int(s))
-
- lines.insert(line_index, "M117 Time Left {}".format(current_time_string))
- elif mode == "m118":
- current_time_string = "{:d}h{:02d}m{:02d}s".format(int(h), int(m), int(s))
-
- lines.insert(line_index, "M118 A1 P0 action:notification Time Left {}".format(current_time_string))
- else:
- mins = int(60 * h + m + s / 30)
- lines.insert(line_index, "M73 R{}".format(mins))
- def execute(self, data):
- output_time = self.getSettingValueByKey("time_remaining")
- output_time_method = self.getSettingValueByKey("time_remaining_method")
- output_frequency = int(self.getSettingValueByKey("update_frequency"))
- output_percentage = self.getSettingValueByKey("percentage")
- line_set = {}
- if output_percentage or output_time:
- total_time = -1
- previous_layer_end_percentage = 0
- previous_layer_end_time = 0
- for layer in data:
- layer_index = data.index(layer)
- lines = layer.split("\n")
- for line in lines:
- if (line.startswith(";TIME:") or line.startswith(";PRINT.TIME:")) and total_time == -1:
-
- total_time = self.getTimeValue(line)
- line_index = lines.index(line)
-
- if output_time:
- self.outputTime(lines, line_index, total_time, output_time_method)
- if output_percentage:
-
- if output_time_method == "m118":
- lines.insert(line_index, "M118 A1 P0 action:notification Data Left 0/100")
- else:
- lines.insert(line_index, "M73 P0")
- elif line.startswith(";TIME_ELAPSED:"):
-
-
-
-
-
- if line in line_set:
- continue
- line_set[line] = True
-
- if total_time == -1:
- continue
- current_time = self.getTimeValue(line)
- line_index = lines.index(line)
-
- if output_time:
- if output_frequency == 0:
-
- self.outputTime(lines, line_index, total_time - current_time, output_time_method)
- else:
-
- layer_time_delta = int(current_time - previous_layer_end_time)
- layer_step_delta = int((current_time - previous_layer_end_time) / output_frequency)
-
- if layer_step_delta != 0:
-
- step = line_index / layer_time_delta
-
- lines_added = 1
-
- for seconds in range(1, layer_time_delta + 1):
-
- line_time = int(previous_layer_end_time + seconds)
-
- if line_time % output_frequency == 0 or line_time == total_time:
-
- time_line_index = int((seconds * step) + lines_added)
-
- self.outputTime(lines, time_line_index, total_time - line_time, output_time_method)
-
- lines_added = lines_added + 1
- previous_layer_end_time = int(current_time)
- if output_percentage:
-
- layer_end_percentage = int((current_time / total_time) * 100)
-
- layer_percentage_delta = layer_end_percentage - previous_layer_end_percentage
-
-
- if layer_percentage_delta != 0:
-
- step = line_index / layer_percentage_delta
- for percentage in range(1, layer_percentage_delta + 1):
-
-
- percentage_line_index = int((percentage * step) + percentage)
-
-
- output = min(percentage + previous_layer_end_percentage, 100)
-
-
- if output_time_method == "m118":
- lines.insert(percentage_line_index, "M118 A1 P0 action:notification Data Left {}/100".format(output))
- else:
- lines.insert(percentage_line_index, "M73 P{}".format(output))
- previous_layer_end_percentage = layer_end_percentage
-
- data[layer_index] = "\n".join(lines)
- return data
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