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@ -810,6 +810,8 @@ def handle_str_hk_data(set_id: int, hk_data: bytes, pw: PrintWrapper):
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pw.dlog(f"Received STR HK set with set ID {set_id}")
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pw.dlog(f"Received STR HK set with set ID {set_id}")
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if set_id == SetId.SOLUTION:
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if set_id == SetId.SOLUTION:
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handle_solution_set(hk_data, pw)
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handle_solution_set(hk_data, pw)
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elif set_id == SetId.HISTOGRAM:
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handle_histogram_set(hk_data, pw)
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elif set_id == SetId.TEMPERATURE:
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elif set_id == SetId.TEMPERATURE:
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handle_temperature_set(hk_data, pw)
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handle_temperature_set(hk_data, pw)
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elif set_id == SetId.AUTO_BLOB:
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elif set_id == SetId.AUTO_BLOB:
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@ -972,6 +974,7 @@ def handle_blobs_set(hk_data: bytes, pw: PrintWrapper):
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pw.dlog("{:<8} {:<8}".format("X", "Y"))
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pw.dlog("{:<8} {:<8}".format("X", "Y"))
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for idx in range(8):
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for idx in range(8):
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pw.dlog("{:<8} {:<8}".format(x_coords[idx], y_coords[idx]))
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pw.dlog("{:<8} {:<8}".format(x_coords[idx], y_coords[idx]))
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assert current_idx == len(hk_data) - 1
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=7)
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=7)
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@ -983,7 +986,9 @@ def handle_centroid_set(hk_data: bytes, pw: PrintWrapper):
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)
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)
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current_idx = unpack_time_hk(hk_data, 0, pw)
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current_idx = unpack_time_hk(hk_data, 0, pw)
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centroid_count = struct.unpack("!I", hk_data[current_idx : current_idx + 4])[0]
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centroid_count = struct.unpack("!I", hk_data[current_idx : current_idx + 4])[0]
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current_idx += 4
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pw.dlog(f"Centroid count: {centroid_count}")
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pw.dlog(f"Centroid count: {centroid_count}")
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assert current_idx == len(hk_data) - 1
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=3)
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=3)
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@ -993,19 +998,24 @@ def handle_centroids_set(hk_data: bytes, pw: PrintWrapper):
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centroids_count = struct.unpack("!H", hk_data[current_idx : current_idx + 2])[0]
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centroids_count = struct.unpack("!H", hk_data[current_idx : current_idx + 2])[0]
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current_idx += 2
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current_idx += 2
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pw.dlog(f"Centroids count: {centroids_count}")
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pw.dlog(f"Centroids count: {centroids_count}")
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fmt_coords = "!HHHHHHHHHHHHHHHH"
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fmt_coords = "!ffffffffffffffff"
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inc_len = struct.calcsize(fmt_coords)
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inc_len = struct.calcsize(fmt_coords)
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x_coords = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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x_coords = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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current_idx += inc_len
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current_idx += inc_len
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y_coords = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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y_coords = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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current_idx += inc_len
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current_idx += inc_len
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fmt_coords = "!BBBBBBBBBBBBBBBB"
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inc_len = struct.calcsize(fmt_coords)
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magnitude = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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magnitude = struct.unpack(fmt_coords, hk_data[current_idx : current_idx + inc_len])
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current_idx += inc_len
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current_idx += inc_len
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pw.dlog("{:<8} {:<8} {:<8}".format("X", "Y", "Magnitude"))
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pw.dlog("{:<8} {:<8} {:<8} {:<8}".format("Index", "X", "Y", "Magnitude"))
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for idx in range(16):
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for idx in range(16):
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pw.dlog(
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pw.dlog(
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"{:<8} {:<8} {:<8}".format(x_coords[idx], y_coords[idx], magnitude[idx])
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"{:<8} {:<8.3f} {:<8.3f} {:<8}".format(
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idx, x_coords[idx], y_coords[idx], magnitude[idx]
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)
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)
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)
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assert current_idx == len(hk_data) - 1
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=6)
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=6)
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@ -1034,13 +1044,13 @@ def handle_matched_centroids_set(hk_data: bytes, pw: PrintWrapper):
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y_errors = struct.unpack(fmt_floats, hk_data[current_idx : current_idx + inc_len])
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y_errors = struct.unpack(fmt_floats, hk_data[current_idx : current_idx + inc_len])
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current_idx += inc_len
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current_idx += inc_len
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pw.dlog(
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pw.dlog(
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"{:<10} {:<10} {:<10} {:<10} {:<10}".format(
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"{:<8} {:<10} {:<10} {:<10} {:<10} {:<10}".format(
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"Star ID", "X", "Y", "X Error", "Y Error"
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"Index", "Star ID", "X", "Y", "X Error", "Y Error"
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)
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)
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)
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)
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for idx in range(16):
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for idx in range(16):
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pw.dlog(
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pw.dlog(
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"{:<10} {:<10} {:<10.3f} {:<10.3f} {:<10.3f} {:<10.3f}".format(
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"{:<8} {:<10} {:<10.3f} {:<10.3f} {:<10.3f} {:<10.3f}".format(
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idx,
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idx,
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star_id[idx],
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star_id[idx],
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x_coords[idx],
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x_coords[idx],
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@ -1049,6 +1059,7 @@ def handle_matched_centroids_set(hk_data: bytes, pw: PrintWrapper):
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y_errors[idx],
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y_errors[idx],
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)
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)
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)
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)
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assert current_idx == len(hk_data) - 1
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=8)
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=8)
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@ -1065,9 +1076,50 @@ def handle_auto_blob_set(hk_data: bytes, pw: PrintWrapper):
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fmt_threshold, hk_data[current_idx : current_idx + inc_len]
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fmt_threshold, hk_data[current_idx : current_idx + inc_len]
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)[0]
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)[0]
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pw.dlog(f"Threshold {threshold}")
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pw.dlog(f"Threshold {threshold}")
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assert current_idx == len(hk_data) - 1
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=3)
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FsfwTmTcPrinter.get_validity_buffer(hk_data[current_idx:], num_vars=3)
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def handle_histogram_set(hk_data: bytes, pw: PrintWrapper):
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pw.dlog("Received Histogram Set")
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current_idx = unpack_time_hk(hk_data, 0, pw)
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fmt_str = "!IIIIIIIII"
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bins_list = []
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inc_len = struct.calcsize(fmt_str)
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a_bins = struct.unpack(fmt_str, hk_data[current_idx : current_idx + inc_len])
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bins_list.append(a_bins)
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current_idx += inc_len
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b_bins = struct.unpack(fmt_str, hk_data[current_idx : current_idx + inc_len])
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bins_list.append(b_bins)
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current_idx += inc_len
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c_bins = struct.unpack(fmt_str, hk_data[current_idx : current_idx + inc_len])
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bins_list.append(c_bins)
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current_idx += inc_len
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d_bins = struct.unpack(fmt_str, hk_data[current_idx : current_idx + inc_len])
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bins_list.append(d_bins)
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pw.dlog(
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"{:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8}".format(
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"Section", "Index", "0", "1", "2", "3", "4", "5", "6", "7", "8"
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)
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)
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for idx in range(4):
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name = "?"
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if idx == 0:
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name = "A"
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if idx == 1:
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name = "B"
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if idx == 2:
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name = "C"
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if idx == 3:
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name = "D"
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pw.dlog(
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"{:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8} {:<8}".format(
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name, idx, *bins_list[idx]
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)
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)
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pass
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def handle_star_tracker_action_replies(
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def handle_star_tracker_action_replies(
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action_id: int, pw: PrintWrapper, custom_data: bytes
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action_id: int, pw: PrintWrapper, custom_data: bytes
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):
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):
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