206 lines
5.5 KiB
C
206 lines
5.5 KiB
C
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/* dynamic_screen.c
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* Copyright (C) 2018 Johannes Mueller <github@johannes-mueller.org>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*/
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/* Shared code for a-comp.c and a-exp.c
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*
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* This file contains some code that draws the basic layout of for the inline
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* rendering of a-comp.c and a-exp.c. It is put into a shared file for better
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* maintainability. It is not meant to be compiled as a individual compilation
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* unit but to be included like
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*
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* #include "dynamic_screen.c"
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*
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*/
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static inline void
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draw_grid (cairo_t* cr, const float w, const float h)
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{
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// clear background
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cairo_rectangle (cr, 0, 0, w, h);
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cairo_set_source_rgba (cr, .2, .2, .2, 1.0);
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cairo_fill (cr);
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cairo_set_line_width(cr, 1.0);
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// draw grid 10dB steps
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const double dash1[] = {1, 2};
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const double dash2[] = {1, 3};
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cairo_save (cr);
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cairo_set_line_cap(cr, CAIRO_LINE_CAP_ROUND);
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cairo_set_dash(cr, dash2, 2, 2);
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cairo_set_source_rgba (cr, 0.5, 0.5, 0.5, 0.5);
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for (uint32_t d = 1; d < 7; ++d) {
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const float x = -.5 + floorf (w * (d * 10.f / 70.f));
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const float y = -.5 + floorf (h * (d * 10.f / 70.f));
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cairo_move_to (cr, x, 0);
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cairo_line_to (cr, x, h);
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cairo_stroke (cr);
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cairo_move_to (cr, 0, y);
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cairo_line_to (cr, w, y);
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cairo_stroke (cr);
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}
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cairo_set_source_rgba (cr, 0.5, 0.5, 0.5, 1.0);
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cairo_set_dash(cr, dash1, 2, 2);
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// diagonal unity
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cairo_move_to (cr, 0, h);
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cairo_line_to (cr, w, 0);
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cairo_stroke (cr);
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cairo_restore (cr);
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{ // 0, 0
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cairo_set_source_rgba (cr, 0.5, 0.5, 0.5, 0.5);
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const float x = -.5 + floorf (w * (60.f / 70.f));
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const float y = -.5 + floorf (h * (10.f / 70.f));
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cairo_move_to (cr, x, 0);
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cairo_line_to (cr, x, h);
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cairo_stroke (cr);
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cairo_move_to (cr, 0, y);
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cairo_line_to (cr, w, y);
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cairo_stroke (cr);
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}
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}
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static inline void
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draw_GR_bar (cairo_t* cr, const float w, const float h, const float gainr)
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{
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const float x = -.5 + floorf (w * (62.5f / 70.f));
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const float y = -.5 + floorf (h * (10.0f / 70.f));
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const float wd = floorf (w * (5.f / 70.f));
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const float ht = floorf (h * (55.f / 70.f));
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cairo_rectangle (cr, x, y, wd, ht);
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cairo_fill (cr);
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const float h_gr = fminf (ht, floorf (h * gainr / 70.f));
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cairo_set_source_rgba (cr, 0.95, 0.0, 0.0, 1.0);
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cairo_rectangle (cr, x, y, wd, h_gr);
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cairo_fill (cr);
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cairo_set_source_rgba (cr, 0.5, 0.5, 0.5, 0.5);
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cairo_rectangle (cr, x, y, wd, ht);
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cairo_set_source_rgba (cr, 0.75, 0.75, 0.75, 1.0);
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cairo_stroke (cr);
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}
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static inline void
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draw_inline_bars (cairo_t* cr, const float w, const float h,
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const float thresdb, const float ratio,
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const float peakdb, const float gainr,
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const float level_in, const float level_out)
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{
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cairo_rectangle (cr, 0, 0, w, h);
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cairo_set_source_rgba (cr, .2, .2, .2, 1.0);
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cairo_fill (cr);
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cairo_save (cr);
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const float ht = 0.25f * h;
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const float x1 = w*0.05;
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const float wd = w - 2.0f*x1;
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const float y1 = 0.17*h;
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const float y2 = h - y1 - ht;
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cairo_set_source_rgba (cr, 0.5, 0.5, 0.5, 0.5);
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cairo_rectangle (cr, x1, y1, wd, ht);
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cairo_fill (cr);
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cairo_rectangle (cr, x1, y2, wd, ht);
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cairo_fill (cr);
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cairo_set_source_rgba (cr, 0.75, 0.0, 0.0, 1.0);
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const float w_gr = (gainr > 60.f) ? wd : wd * gainr * (1.f/60.f);
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cairo_rectangle (cr, x1+wd-w_gr, y2, w_gr, ht);
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cairo_fill (cr);
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if (level_in > -60.f) {
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if (level_out > 6.f) {
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cairo_set_source_rgba (cr, 0.75, 0.0, 0.0, 1.0);
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} else if (level_out > 0.f) {
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cairo_set_source_rgba (cr, 0.66, 0.66, 0.0, 1.0);
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} else {
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cairo_set_source_rgba (cr, 0.0, 0.66, 0.0, 1.0);
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}
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const float w_g = (level_in > 10.f) ? wd : wd * (60.f+level_in) / 70.f;
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cairo_rectangle (cr, x1, y1, w_g, ht);
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cairo_fill (cr);
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}
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cairo_set_source_rgba (cr, 1.0, 1.0, 1.0, 1.0);
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const float tck = 0.33*ht;
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cairo_set_line_width (cr, .5);
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for (uint32_t d = 1; d < 7; ++d) {
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const float x = x1 + (d * wd * (10.f / 70.f));
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cairo_move_to (cr, x, y1);
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cairo_line_to (cr, x, y1+tck);
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cairo_move_to (cr, x, y1+ht);
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cairo_line_to (cr, x, y1+ht-tck);
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cairo_move_to (cr, x, y2);
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cairo_line_to (cr, x, y2+tck);
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cairo_move_to (cr, x, y2+ht);
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cairo_line_to (cr, x, y2+ht-tck);
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}
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cairo_stroke (cr);
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const float x_0dB = x1 + wd*(60.f/70.f);
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cairo_move_to (cr, x_0dB, y1);
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cairo_line_to (cr, x_0dB, y1+ht);
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cairo_rectangle (cr, x1, y1, wd, ht);
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cairo_rectangle (cr, x1, y2, wd, ht);
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cairo_stroke (cr);
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cairo_set_line_width (cr, 2.0);
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// visualize threshold
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const float tr = x1 + wd * (60.f+thresdb) / 70.f;
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cairo_set_source_rgba (cr, 0.95, 0.95, 0.0, 1.0);
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cairo_move_to (cr, tr, y1);
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cairo_line_to (cr, tr, y1+ht);
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cairo_stroke (cr);
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// visualize ratio
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const float reduced_0dB = thresdb * (1.f - 1.f/ratio);
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const float rt = x1 + wd * (60.f+reduced_0dB) / 70.f;
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cairo_set_source_rgba (cr, 0.95, 0.0, 0.0, 1.0);
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cairo_move_to (cr, rt, y1);
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cairo_line_to (cr, rt, y1+ht);
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cairo_stroke (cr);
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// visualize in peak
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if (peakdb > -60.f) {
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cairo_set_source_rgba (cr, 0.0, 1.0, 0.0, 1.0);
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const float pk = (peakdb > 10.f) ? x1+wd : wd * (60.f+peakdb) / 70.f;
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cairo_move_to (cr, pk, y1);
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cairo_line_to (cr, pk, y1+ht);
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cairo_stroke (cr);
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}
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}
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