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	| Author | SHA1 | Date | |
|---|---|---|---|
| c1b94778b4 | |||
| 338f66352a | |||
| d4f9aa21e5 | |||
| 624566d34e | 
							
								
								
									
										124
									
								
								cli/sounds.py
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										124
									
								
								cli/sounds.py
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,124 @@
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import numpy as np
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import simpleaudio as sa
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class Sound:
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    """
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    Sound effects for the application with enhanced complexity.
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    Each sound uses at least 6 distinct tones and lasts no more than max_length seconds,
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    except the intro sound which is a detailed 26-second Berlin techno-style build-up, 12-second celebration with a descending-fifth chord sequence of 7 chords, and breakdown with melodic background.
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    Transitions between phases now crossfade over 3 seconds for smoother flow.
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    """
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    fs = 44100  # Sampling rate (samples per second)
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    complexity_factor = 10  # Number of harmonics to sum for richer timbres
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    max_length = 2.0  # Maximum total duration of any sound in seconds
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    @staticmethod
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    def _generate_complex_wave(frequency: float, duration: float, harmonics: int = None) -> np.ndarray:
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        if harmonics is None:
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            harmonics = Sound.complexity_factor
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        t = np.linspace(0, duration, int(Sound.fs * duration), False)
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        wave = np.zeros_like(t)
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        for n in range(1, harmonics + 1):
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            wave += (1 / n) * np.sin(2 * np.pi * frequency * n * t)
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        # ADSR envelope
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        attack = int(0.02 * Sound.fs)
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        release = int(0.05 * Sound.fs)
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        env = np.ones_like(wave)
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        env[:attack] = np.linspace(0, 1, attack)
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        env[-release:] = np.linspace(1, 0, release)
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        wave *= env
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        wave /= np.max(np.abs(wave))
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        return (wave * (2**15 - 1)).astype(np.int16)
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    @staticmethod
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    def _crossfade(w1: np.ndarray, w2: np.ndarray, fade_len: int) -> np.ndarray:
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        # Ensure fade_len less than each
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        fade_len = min(fade_len, len(w1), len(w2))
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        fade_out = np.linspace(1, 0, fade_len)
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        fade_in = np.linspace(0, 1, fade_len)
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        w1_end = w1[-fade_len:] * fade_out
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        w2_start = w2[:fade_len] * fade_in
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        middle = (w1_end + w2_start).astype(np.int16)
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        return np.concatenate([w1[:-fade_len], middle, w2[fade_len:]])
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    @staticmethod
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    def _play(wave: np.ndarray):
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        play_obj = sa.play_buffer(wave, 1, 2, Sound.fs)
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        play_obj.wait_done()
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    @classmethod
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    def play_cymais_intro_sound(cls):
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        # Phase durations
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        build_time = 10.0
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        celebr_time = 12.0
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        breakdown_time = 10.0
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        overlap = 3.0  # seconds of crossfade
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        bass_seg = 0.125  # 1/8s kick
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        melody_seg = 0.25  # 2/8s melody
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        bass_freq = 65.41  # C2 kick
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        melody_freqs = [261.63, 293.66, 329.63, 392.00, 440.00, 523.25]
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        # Build-up phase
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        steps = int(build_time / (bass_seg + melody_seg))
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        build_seq = []
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        for i in range(steps):
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            amp = (i + 1) / steps
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            b = cls._generate_complex_wave(bass_freq, bass_seg).astype(np.float32) * amp
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            m = cls._generate_complex_wave(melody_freqs[i % len(melody_freqs)], melody_seg).astype(np.float32) * amp
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            build_seq.append(b.astype(np.int16))
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            build_seq.append(m.astype(np.int16))
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        build_wave = np.concatenate(build_seq)
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        # Celebration phase: 7 descending-fifth chords
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        roots = [523.25, 349.23, 233.08, 155.56, 103.83, 69.30, 46.25]
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        chord_time = celebr_time / len(roots)
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        celebr_seq = []
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        for root in roots:
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            t = np.linspace(0, chord_time, int(cls.fs * chord_time), False)
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            chord = sum(np.sin(2 * np.pi * f * t) for f in [root, root * 5/4, root * 3/2])
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            chord /= np.max(np.abs(chord))
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            celebr_seq.append((chord * (2**15 - 1)).astype(np.int16))
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        celebr_wave = np.concatenate(celebr_seq)
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        # Breakdown phase (mirror of build-up)
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        breakdown_wave = np.concatenate(list(reversed(build_seq)))
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        # Crossfade transitions
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        fade_samples = int(overlap * cls.fs)
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        bc = cls._crossfade(build_wave, celebr_wave, fade_samples)
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        full = cls._crossfade(bc, breakdown_wave, fade_samples)
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        cls._play(full)
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    @classmethod
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    def play_start_sound(cls):
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        freqs = [523.25, 659.26, 783.99, 880.00, 1046.50, 1174.66]
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        cls._prepare_and_play(freqs)
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    @classmethod
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    def play_finished_successfully_sound(cls):
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        freqs = [523.25, 587.33, 659.26, 783.99, 880.00, 987.77]
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        cls._prepare_and_play(freqs)
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    @classmethod
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    def play_finished_failed_sound(cls):
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        freqs = [880.00, 830.61, 783.99, 659.26, 622.25, 523.25]
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        durations = [0.4, 0.3, 0.25, 0.25, 0.25, 0.25]
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        cls._prepare_and_play(freqs, durations)
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    @classmethod
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    def play_warning_sound(cls):
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        freqs = [700.00, 550.00, 750.00, 500.00, 800.00, 450.00]
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        cls._prepare_and_play(freqs)
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    @classmethod
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    def _prepare_and_play(cls, freqs, durations=None):
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        count = len(freqs)
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        if durations is None:
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            durations = [cls.max_length / count] * count
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        else:
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            total = sum(durations)
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            durations = [d * cls.max_length / total for d in durations]
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        waves = [cls._generate_complex_wave(f, d) for f, d in zip(freqs, durations)]
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        cls._play(np.concatenate(waves))
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										101
									
								
								main.py
									
									
									
									
									
								
							
							
						
						
									
										101
									
								
								main.py
									
									
									
									
									
								
							@@ -5,6 +5,10 @@ import os
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import subprocess
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import sys
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import textwrap
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import threading
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import signal
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from cli.sounds import Sound
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def format_command_help(name, description, indent=2, col_width=36, width=80):
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    prefix = " " * indent + f"{name:<{col_width - indent}}"
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@@ -22,7 +26,6 @@ def list_cli_commands(cli_dir):
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    )
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def extract_description_via_help(cli_script_path):
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    """Run `script --help` and extract the first non-usage line after usage block."""
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    try:
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        result = subprocess.run(
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            [sys.executable, cli_script_path, "--help"],
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@@ -31,13 +34,10 @@ def extract_description_via_help(cli_script_path):
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            check=True
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        )
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        lines = result.stdout.splitlines()
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        # Skip until first empty line after usage block
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        for i, line in enumerate(lines):
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            if line.strip().startswith("usage:"):
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                continue
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            if line.strip() == "":
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                # description usually comes after usage and empty line
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                for j in range(i+1, len(lines)):
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                    desc = lines[j].strip()
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                    if desc:
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@@ -46,41 +46,92 @@ def extract_description_via_help(cli_script_path):
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    except Exception:
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        return "-"
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def main():
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def play_start_intro():
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    Sound.play_start_sound()
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    Sound.play_cymais_intro_sound()
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def failure_with_warning_loop():
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    Sound.play_finished_failed_sound()
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    print("Warning: command failed. Press Ctrl+C to stop sound warnings.")
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    try:
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        while True:
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            Sound.play_warning_sound()
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    except KeyboardInterrupt:
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        print("Warnings stopped by user.")
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if __name__ == "__main__":
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    # Parse --no-sound early and remove from args
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    no_sound = False
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    if '--no-sound' in sys.argv:
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        no_sound = True
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        sys.argv.remove('--no-sound')
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    # Setup segfault handler to catch crashes
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    def segv_handler(signum, frame):
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        if not no_sound:
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            Sound.play_finished_failed_sound()
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            # Loop warning until interrupted
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            try:
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                while True:
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                    Sound.play_warning_sound()
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            except KeyboardInterrupt:
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                pass
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        print("Segmentation fault detected. Exiting.")
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        sys.exit(1)
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    signal.signal(signal.SIGSEGV, segv_handler)
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    # Play intro sounds
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    if not no_sound:
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        threading.Thread(target=play_start_intro, daemon=True).start()
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    # Change to script directory
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    script_dir = os.path.dirname(os.path.realpath(__file__))
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    cli_dir = os.path.join(script_dir, "cli")
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    os.chdir(script_dir)
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    available_cli_commands = list_cli_commands(cli_dir)
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    # Special case: user ran `cymais playbook --help`
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    if len(sys.argv) >= 3 and sys.argv[1] in available_cli_commands and sys.argv[2] == "--help":
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        cli_script_path = os.path.join(cli_dir, f"{sys.argv[1]}.py")
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        subprocess.run([sys.executable, cli_script_path, "--help"])
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        sys.exit(0)
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    # Global --help
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    if "--help" in sys.argv or "-h" in sys.argv or len(sys.argv) == 1:
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        print("CyMaIS CLI – proxy to tools in ./cli/\n")
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        print("Usage:")
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        print("  cymais <command> [options]\n")
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            # Handle help invocation
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    if len(sys.argv) == 1 or sys.argv[1] in ('-h', '--help'):
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        print("CyMaIS CLI – proxy to tools in ./cli/")
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        print("Usage: cymais [--no-sound] <command> [options]")
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        print("Options:")
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        print("  --no-sound        Suppress all sounds during execution")
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        print("  -h, --help        Show this help message and exit")
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        print("Available commands:")
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        for cmd in available_cli_commands:
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            path = os.path.join(cli_dir, f"{cmd}.py")
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            desc = extract_description_via_help(path)
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            print(format_command_help(cmd, desc))
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        print("\nUse 'cymais <command> --help' for details on each command.")
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        sys.exit(0)
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    # Default flow
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    # Special-case per-command help
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    if len(sys.argv) >= 3 and sys.argv[1] in available_cli_commands and sys.argv[2] in ('-h', '--help'):
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        subprocess.run([sys.executable, os.path.join(cli_dir, f"{sys.argv[1]}.py"), "--help"])
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        sys.exit(0)
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    # Execute chosen command
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    parser = argparse.ArgumentParser(add_help=False)
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    parser.add_argument("cli_command", choices=available_cli_commands)
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    parser.add_argument("cli_args", nargs=argparse.REMAINDER)
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    parser.add_argument('cli_command', choices=available_cli_commands)
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    parser.add_argument('cli_args', nargs=argparse.REMAINDER)
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    args = parser.parse_args()
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    cli_script_path = os.path.join(cli_dir, f"{args.cli_command}.py")
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    full_cmd = [sys.executable, cli_script_path] + args.cli_args
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    subprocess.run(full_cmd, check=True)
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    cmd_path = os.path.join(cli_dir, f"{args.cli_command}.py")
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    full_cmd = [sys.executable, cmd_path] + args.cli_args
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if __name__ == "__main__":
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    main()
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    try:
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        proc = subprocess.Popen(full_cmd)
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        proc.wait()
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        rc = proc.returncode
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        if rc != 0:
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            print(f"Command '{args.cli_command}' failed with exit code {rc}.")
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            failure_with_warning_loop()
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            sys.exit(rc)
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        else:
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            if not no_sound:
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                Sound.play_finished_successfully_sound()
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            sys.exit(0)
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    except Exception as e:
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        print(f"Exception running command: {e}")
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        failure_with_warning_loop()
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        sys.exit(1)
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@@ -1 +1,3 @@
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colorscheme-generator @ https://github.com/kevinveenbirkenbach/colorscheme-generator/archive/refs/tags/v0.3.0.zip
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simpleaudio
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numpy
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@@ -2,7 +2,7 @@
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  command: >
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    docker-compose exec -T -u www-data application
 | 
			
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    wp core install
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      --url="{{ web_protocol }}://{{ domains | get_domain(application_id)[0] }}"
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      --url="{{ web_protocol }}://{{ domains | get_domain(application_id) }}"
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      --title="{{ applications[application_id].title }}"
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      --admin_user="{{ applications[application_id].users.administrator.username }}"
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      --admin_password="{{ applications[application_id].credentials.administrator_password }}"
 | 
			
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 | 
			
		||||
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