#include #include using namespace std; const size_t SCREEN_WIDTH = 80; const size_t MAX_ASTERISK = SCREEN_WIDTH - 3 - 1; struct Input { vector numbers; int bin_count{}; }; Input input_data(){ size_t number_count; cin >> number_count; Input in; in.numbers.resize(number_count); for (size_t i = 0; i < number_count; i++) { cin >> in.numbers[i]; } int bin_count; cin >> in.bin_count; return in; } void find_minmax(const std::vector &numbers, double &min, double &max){ min = numbers[0]; max = numbers[0]; for (double x : numbers) { if (x < min) { min = x; } else if (x > max) { max = x; } } } std::vector make_histogram(std::vector numbers, size_t bin_count){ double min; double max; vector bins(bin_count); find_minmax(numbers, min, max); double bin_size = (max - min) / bin_count; for (size_t i = 0; i < numbers.size(); i++) { bool found = false; for (size_t j = 0; (j < bin_count - 1) && !found; j++) { auto lo = min + j * bin_size; auto hi = min + (j + 1) * bin_size; if ((lo <= numbers[i]) && (numbers[i] < hi)) { bins[j]++; found = true; } } if (!found) { bins[bin_count - 1]++; } } return bins; } void show_histogramm_text(vector bins, vector numbers, size_t bin_count){ size_t max_count; for (int i =0; imax_count){ max_count=numbers[i]; } } for (int i =0; imax_count){ max_count=bins[i]; } } if (max_count>MAX_ASTERISK){ for (int i=0; i(bins[i]) / max_count); if (bins[i]<10){ cout<<" "<