mirror of
https://github.com/subsurface/subsurface.git
synced 2024-11-28 05:00:20 +00:00
Stop plotting the gas / consumption information into the profile
And move the code into info.c where it now belongs Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
This commit is contained in:
parent
6911229278
commit
bbf5f960e1
2 changed files with 83 additions and 90 deletions
92
info.c
92
info.c
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@ -35,6 +35,86 @@ static char *get_text(GtkTextBuffer *buffer)
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return gtk_text_buffer_get_text(buffer, &start, &end, FALSE);
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}
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void update_air_info(char *buffer)
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{
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char markup[120];
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if (! buffer)
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buffer = EMPTY_AIRCONSUMPTION;
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snprintf(markup, sizeof(markup), "<span font=\"8\">%s</span>",buffer);
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gtk_label_set_markup(GTK_LABEL(airconsumption), markup);
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}
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/*
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* Return air usage (in liters).
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*/
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static double calculate_airuse(struct dive *dive)
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{
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double airuse = 0;
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int i;
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for (i = 0; i < MAX_CYLINDERS; i++) {
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cylinder_t *cyl = dive->cylinder + i;
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int size = cyl->type.size.mliter;
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double kilo_atm;
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if (!size)
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continue;
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kilo_atm = (cyl->start.mbar - cyl->end.mbar) / 1013250.0;
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/* Liters of air at 1 atm == milliliters at 1k atm*/
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airuse += kilo_atm * size;
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}
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return airuse;
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}
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static void update_air_info_frame(struct dive *dive)
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{
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const double liters_per_cuft = 28.317;
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const char *unit, *format, *desc;
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double airuse;
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char buffer1[80];
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char buffer2[80];
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int len;
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airuse = calculate_airuse(dive);
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if (!airuse) {
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update_air_info(NULL);
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return;
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}
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switch (output_units.volume) {
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case LITER:
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unit = "l";
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format = "vol: %4.0f %s";
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break;
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case CUFT:
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unit = "cuft";
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format = "vol: %4.2f %s";
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airuse /= liters_per_cuft;
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break;
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}
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len = snprintf(buffer1, sizeof(buffer1), format, airuse, unit);
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if (dive->duration.seconds) {
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double pressure = 1 + (dive->meandepth.mm / 10000.0);
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double sac = airuse / pressure * 60 / dive->duration.seconds;
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snprintf(buffer1+len, sizeof(buffer1)-len,
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"\nSAC: %4.2f %s/min", sac, unit);
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}
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len = 0;
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desc = dive->cylinder[0].type.description;
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if (desc || dive->cylinder[0].gasmix.o2.permille) {
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int o2 = dive->cylinder[0].gasmix.o2.permille / 10;
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if (!desc)
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desc = "";
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if (!o2)
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o2 = 21;
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len = snprintf(buffer2, sizeof(buffer2), "%s (%d%%): used ", desc, o2);
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}
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snprintf(buffer2+len, sizeof(buffer2)-len, buffer1);
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update_air_info(buffer2);
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}
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void flush_dive_info_changes(struct dive *dive)
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{
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if (!dive)
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@ -155,6 +235,8 @@ void show_dive_info(struct dive *dive)
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text = dive->notes ? : "";
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gtk_text_buffer_set_text(notes, text, -1);
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update_air_info_frame(dive);
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}
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static GtkWidget *info_label(GtkWidget *box, const char *str, GtkJustification jtype)
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@ -193,16 +275,6 @@ GtkWidget *dive_info_frame(void)
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return frame;
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}
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void update_air_info(char *buffer)
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{
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char markup[120];
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if (! buffer)
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buffer = EMPTY_AIRCONSUMPTION;
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snprintf(markup, sizeof(markup), "<span font=\"8\">%s</span>",buffer);
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gtk_label_set_markup(GTK_LABEL(airconsumption), markup);
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}
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static GtkEntry *text_entry(GtkWidget *box, const char *label)
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{
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GtkWidget *entry;
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81
profile.c
81
profile.c
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@ -468,83 +468,6 @@ static void plot_cylinder_pressure(struct graphics_context *gc, struct plot_info
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cairo_stroke(gc->cr);
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}
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/*
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* Return air usage (in liters).
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*/
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static double calculate_airuse(struct dive *dive)
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{
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double airuse = 0;
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int i;
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for (i = 0; i < MAX_CYLINDERS; i++) {
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cylinder_t *cyl = dive->cylinder + i;
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int size = cyl->type.size.mliter;
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double kilo_atm;
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if (!size)
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continue;
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kilo_atm = (cyl->start.mbar - cyl->end.mbar) / 1013250.0;
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/* Liters of air at 1 atm == milliliters at 1k atm*/
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airuse += kilo_atm * size;
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}
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return airuse;
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}
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static void plot_info(struct dive *dive, struct graphics_context *gc)
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{
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text_render_options_t tro = {10, 0.2, 1.0, 0.2, RIGHT, BOTTOM};
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const double liters_per_cuft = 28.317;
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const char *unit, *format, *desc;
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double airuse;
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char buffer1[80];
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char buffer2[80];
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int len;
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airuse = calculate_airuse(dive);
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if (!airuse) {
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update_air_info(NULL);
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return;
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}
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switch (output_units.volume) {
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case LITER:
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unit = "l";
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format = "vol: %4.0f %s";
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break;
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case CUFT:
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unit = "cuft";
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format = "vol: %4.2f %s";
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airuse /= liters_per_cuft;
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break;
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}
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tro.vpos = -1.0;
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plot_text(gc, &tro, 0.98, 0.98, format, airuse, unit);
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len = snprintf(buffer1, sizeof(buffer1), format, airuse, unit);
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tro.vpos = -2.2;
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if (dive->duration.seconds) {
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double pressure = 1 + (dive->meandepth.mm / 10000.0);
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double sac = airuse / pressure * 60 / dive->duration.seconds;
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plot_text(gc, &tro, 0.98, 0.98, "SAC: %4.2f %s/min", sac, unit);
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snprintf(buffer1+len, sizeof(buffer1)-len,
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"\nSAC: %4.2f %s/min", sac, unit);
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}
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len = 0;
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tro.vpos = -3.4;
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desc = dive->cylinder[0].type.description;
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if (desc || dive->cylinder[0].gasmix.o2.permille) {
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int o2 = dive->cylinder[0].gasmix.o2.permille / 10;
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if (!desc)
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desc = "";
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if (!o2)
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o2 = 21;
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plot_text(gc, &tro, 0.98, 0.98, "%s (%d%%)", desc, o2);
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len = snprintf(buffer2, sizeof(buffer2), "%s (%d%%): used ", desc, o2);
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}
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snprintf(buffer2+len, sizeof(buffer2)-len, buffer1);
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update_air_info(buffer2);
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}
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static int mbar_to_PSI(int mbar)
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{
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pressure_t p = {mbar};
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@ -788,12 +711,10 @@ void plot(struct graphics_context *gc, int w, int h, struct dive *dive)
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plot_depth_text(gc, pi);
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plot_cylinder_pressure_text(gc, pi);
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/* And info box in the lower right corner.. */
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/* Bounding box last */
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gc->leftx = 0; gc->rightx = 1.0;
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gc->topy = 0; gc->bottomy = 1.0;
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plot_info(dive, gc);
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/* Bounding box last */
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set_source_rgb(gc, 1, 1, 1);
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move_to(gc, 0, 0);
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line_to(gc, 0, 1);
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