| import cv2 |
| import numpy as np |
| import math |
| from utils.draw_text_with_background import draw_text_with_background |
|
|
| def display_counter(frame, counter, position=(40, 240), color=(0, 0, 0), background_color=(192, 192, 192)): |
| """Display the repetition counter.""" |
| text = f"Count: {counter}" |
| draw_text_with_background(frame, text, position, |
| cv2.FONT_HERSHEY_SIMPLEX, 0.7, color, background_color, 1) |
|
|
| def display_stage(frame, stage, label="Stage", position=(40, 270), color=(0, 0, 0), background_color=(192, 192, 192)): |
| """Display the current exercise stage.""" |
| text = f"{label}: {stage}" |
| draw_text_with_background(frame, text, position, |
| cv2.FONT_HERSHEY_SIMPLEX, 0.7, color, background_color, 1) |
|
|
| def draw_progress_bar(frame, exercise, value, position, size=(200, 20), color=(0, 255, 0), background_color=(255, 255, 255)): |
| """Draw a progress bar for tracking exercise repetitions.""" |
| x, y = position |
| width, height = size |
| |
| |
| max_value = 10 |
| if exercise == "squat": |
| max_value = 15 |
| elif exercise == "push_up": |
| max_value = 10 |
| elif exercise == "hammer_curl": |
| max_value = 12 |
| |
| |
| fill_width = int((value / max_value) * width) |
| fill_width = min(fill_width, width) |
| |
| |
| cv2.rectangle(frame, (x, y), (x + width, y + height), background_color, -1) |
| cv2.rectangle(frame, (x, y), (x + width, y + height), (0, 0, 0), 1) |
| |
| |
| if fill_width > 0: |
| cv2.rectangle(frame, (x, y), (x + fill_width, y + height), color, -1) |
| |
| |
| text = f"{value}/{max_value}" |
| text_size = cv2.getTextSize(text, cv2.FONT_HERSHEY_SIMPLEX, 0.5, 1)[0] |
| text_x = x + (width - text_size[0]) // 2 |
| text_y = y + (height + text_size[1]) // 2 |
| cv2.putText(frame, text, (text_x, text_y), cv2.FONT_HERSHEY_SIMPLEX, 0.5, (0, 0, 0), 1) |
| |
| |
| label = f"{exercise.replace('_', ' ').title()} Progress" |
| draw_text_with_background(frame, label, (x, y - 10), |
| cv2.FONT_HERSHEY_SIMPLEX, 0.6, (255, 255, 255), (118, 29, 14), 1) |
|
|
| def draw_gauge_meter(frame, angle, text, position, radius=50, color=(0, 0, 255)): |
| """Draw a gauge meter visualization showing the angle.""" |
| x, y = position |
| start_angle = 180 |
| end_angle = 0 |
| |
| |
| cv2.circle(frame, (x, y), radius, (200, 200, 200), 2) |
| |
| |
| gauge_angle = start_angle - (angle * (start_angle - end_angle) / 180) |
| gauge_angle = max(min(gauge_angle, start_angle), end_angle) |
| |
| |
| gauge_angle_rad = math.radians(gauge_angle) |
| |
| |
| gauge_x = int(x + radius * math.cos(gauge_angle_rad)) |
| gauge_y = int(y - radius * math.sin(gauge_angle_rad)) |
| |
| |
| cv2.line(frame, (x, y), (gauge_x, gauge_y), color, 2) |
| |
| |
| cv2.circle(frame, (x, y), 5, color, -1) |
| |
| |
| cv2.putText(frame, f"{int(angle)}°", (x - 20, y + radius + 20), |
| cv2.FONT_HERSHEY_SIMPLEX, 0.6, color, 2) |
| |
| |
| cv2.putText(frame, text, (x - radius, y - radius - 10), |
| cv2.FONT_HERSHEY_SIMPLEX, 0.5, (0, 0, 0), 1) |
|
|