parent
462599b41d
commit
0dc1f3e153
29
PWFile.py
29
PWFile.py
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@ -174,7 +174,7 @@ class StringImpactExcel:
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def set_true_color(object, r_or_rgb_list, g=0, b=0):
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def set_true_color(object, r_or_rgb_list, g=0, b=0):
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true_color = object.TrueColor
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true_color = object.TrueColor
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if type(r_or_rgb_list) == List or type(r_or_rgb_list)==list:
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if type(r_or_rgb_list) == List or type(r_or_rgb_list) == list:
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true_color.SetRGB(*r_or_rgb_list)
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true_color.SetRGB(*r_or_rgb_list)
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else:
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else:
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true_color.SetRGB(r_or_rgb_list, g, b)
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true_color.SetRGB(r_or_rgb_list, g, b)
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@ -254,12 +254,18 @@ class StringImpactPlate:
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forth_reprtv_span = first_tower_info.forth_representive_span
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forth_reprtv_span = first_tower_info.forth_representive_span
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continouse_sheet.range("B69").value = forth_reprtv_span
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continouse_sheet.range("B69").value = forth_reprtv_span
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high_temperature_tension = continouse_sheet.range("L69").value
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high_temperature_tension = continouse_sheet.range("L69").value
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forth_tower_info = tower_dict[tower_key_list[draw_tower_index[0] + 1]]
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forth_tower_info: SEntry = tower_dict[tower_key_list[draw_tower_index[0] + 1]]
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if forth_tower_info.is_tension_tower:
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forth_tower_fitting_length = 0
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else:
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forth_tower_fitting_length = fitting.fitting_length_dic[
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forth_tower_info.fitting
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]
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gaocha_of_first_tower = (
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gaocha_of_first_tower = (
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(
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(
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forth_tower_info.tower_height
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forth_tower_info.tower_height
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- forth_tower_info.foundation_low
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- forth_tower_info.foundation_low
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- fitting.fitting_length_dic[forth_tower_info.fitting]
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- forth_tower_fitting_length
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)
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)
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- (first_tower_info.tower_height - first_tower_info.foundation_low)
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- (first_tower_info.tower_height - first_tower_info.foundation_low)
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+ forth_tower_info.altitude_off
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+ forth_tower_info.altitude_off
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@ -293,12 +299,18 @@ class StringImpactPlate:
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draw_last_tower_key = tower_key_list[draw_tower_index[-1]]
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draw_last_tower_key = tower_key_list[draw_tower_index[-1]]
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last_tower_info = tower_dict[draw_last_tower_key] # 最后一个塔位
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last_tower_info = tower_dict[draw_last_tower_key] # 最后一个塔位
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back_reprtv_span = last_tower_info.back_representive_span
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back_reprtv_span = last_tower_info.back_representive_span
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back_tower_info = tower_dict[tower_key_list[draw_tower_index[-1] - 1]]
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back_tower_info: SEntry = tower_dict[tower_key_list[draw_tower_index[-1] - 1]]
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if back_tower_info.is_tension_tower:
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back_tower_fitting_length = 0
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else:
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back_tower_fitting_length = fitting.fitting_length_dic[
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back_tower_info.fitting
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]
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gaocha_of_last_tower = (
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gaocha_of_last_tower = (
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(
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(
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back_tower_info.tower_height
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back_tower_info.tower_height
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- back_tower_info.foundation_low
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- back_tower_info.foundation_low
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- fitting.fitting_length_dic[back_tower_info.fitting]
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- back_tower_fitting_length
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)
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)
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- (last_tower_info.tower_height - last_tower_info.foundation_low)
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- (last_tower_info.tower_height - last_tower_info.foundation_low)
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- last_tower_info.altitude_off
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- last_tower_info.altitude_off
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@ -397,7 +409,7 @@ class ContinuousPlate:
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continue
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continue
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if not last_tower_info:
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if not last_tower_info:
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last_tower_info = tower_info
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last_tower_info = tower_info
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if draw_count == draw_count_limit:
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if draw_count == draw_count_limit - 1:
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# 画代表档距
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# 画代表档距
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representive_span_text = f"{tower_info.back_representive_span:.0f}"
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representive_span_text = f"{tower_info.back_representive_span:.0f}"
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representive_span_text_point = np.array(
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representive_span_text_point = np.array(
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@ -408,7 +420,10 @@ class ContinuousPlate:
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APoint(*representive_span_text_point.tolist()),
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APoint(*representive_span_text_point.tolist()),
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3,
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3,
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)
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)
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set_true_color(added_representive_span_text,ColorEnume.representive_span_text_color_rgb)
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set_true_color(
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added_representive_span_text,
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ColorEnume.representive_span_text_color_rgb,
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)
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if draw_count > draw_count_limit - 1:
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if draw_count > draw_count_limit - 1:
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break
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break
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foundation_low = tower_info.foundation_low
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foundation_low = tower_info.foundation_low
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