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view Discovery/Src/t5_gauge.c @ 250:822416168585 bm-2
Buelmann: new implementation for ceiling
Since my first functional fix in the ceiling computation in
commit ceecabfddb57, I noticed that the computation used a
linear search, that became rather computational expensive after
that commit. The simple question is: why not a binary search?
So, this commit implements the binary search. But there is a long
story attached to this. Comparing ceiling results from hwOS and this
OSTC4 code were very different. Basically, the original OSTC4
algorithm computed the ceiling using the same GFlow to GFhigh
slope, in such a way, that the ceiling was in sync with the
presented deco stops, where the hwOS code presents a GFhigh
based ceiling.
This said, it is more logical when the OSTC4 and hwOS code give
similar results. This new recursive algorithm gives very similar
results for the ceiling compared to hwOS.
To be complete here, the Buelmann ceiling is the depth to which
you can ascend, so that the leading tissue reaches GFhigh. This
also explains why the deepest deco stop is normally deeper than
the ceiling (unless one dives with GF like 80/80).
The code implemented here is rather straightforward recursion.
Signed-off-by: Jan Mulder <jlmulder@xs4all.nl>
author | Jan Mulder <jlmulder@xs4all.nl> |
---|---|
date | Thu, 11 Apr 2019 17:48:48 +0200 |
parents | 9da7dd50e2ec |
children | 39c147e47c1c |
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/////////////////////////////////////////////////////////////////////////////// /// -*- coding: UTF-8 -*- /// /// \file Discovery/Src/t5_gauge.c /// \brief dive screen for Gauge mode /// \author Heinrichs Weikamp gmbh /// \date 1-Feb-2017 /// /// \details /// /// $Id$ /////////////////////////////////////////////////////////////////////////////// /// \par Copyright (c) 2014-2018 Heinrichs Weikamp gmbh /// /// This program is free software: you can redistribute it and/or modify /// it under the terms of the GNU General Public License as published by /// the Free Software Foundation, either version 3 of the License, or /// (at your option) any later version. /// /// This program is distributed in the hope that it will be useful, /// but WITHOUT ANY WARRANTY; without even the implied warranty of /// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the /// GNU General Public License for more details. /// /// You should have received a copy of the GNU General Public License /// along with this program. If not, see <http://www.gnu.org/licenses/>. ////////////////////////////////////////////////////////////////////////////// /* Includes ------------------------------------------------------------------*/ #include "t5_gauge.h" #include "data_exchange_main.h" #include "decom.h" #include "gfx_fonts.h" #include "math.h" #include "tHome.h" #include "simulation.h" #include "timer.h" #include "unit.h" /* Private variables ---------------------------------------------------------*/ GFX_DrawCfgScreen t5screen; GFX_DrawCfgWindow t5l1; GFX_DrawCfgWindow t5r1; GFX_DrawCfgWindow t5c1; GFX_DrawCfgWindow t5c2; GFX_DrawCfgWindow t5c3; // for menu text uint8_t t5_selection_customview = 0; /* Importend function prototypes ---------------------------------------------*/ //extern uint8_t write_gas(char *text, uint8_t oxygen, uint8_t helium); /* Private types -------------------------------------------------------------*/ #define CUSTOMBOX_LINE_LEFT (250) #define CUSTOMBOX_LINE_RIGHT (549) #define CUSTOMBOX_INSIDE_OFFSET (2) #define CUSTOMBOX_OUTSIDE_OFFSET (2) #define TEXTSIZE 16 const uint8_t t5_customviewsStandard[] = { CVIEW_sensors, CVIEW_Compass, CVIEW_T3_MaxDepth, CVIEW_T3_StopWatch, CVIEW_T3_Temperature, CVIEW_T3_GasList, CVIEW_T3_Decostop, CVIEW_T3_END }; const uint8_t *t5_customviews = t5_customviewsStandard; /* Private function prototypes -----------------------------------------------*/ void t5_refresh_divemode(void); void t5_refresh_customview(float depth); uint8_t t5_test_customview_warnings(void); //void t5_show_customview_warnings(void); //void t5_compass(uint16_t ActualHeading, uint16_t UserSetHeading); /* Exported functions --------------------------------------------------------*/ // for tHomeDiveMenuControl() in tHome.c uint8_t t5_getCustomView(void) { return t5_selection_customview; } void t5_init(void) { t5_selection_customview = t5_customviewsStandard[0]; t5screen.FBStartAdress = 0; t5screen.ImageHeight = 480; t5screen.ImageWidth = 800; t5screen.LayerIndex = 1; t5l1.Image = &t5screen; t5l1.WindowNumberOfTextLines = 2; t5l1.WindowLineSpacing = 19; // Abstand von Y0 t5l1.WindowTab = 100; t5l1.WindowX0 = 0; t5l1.WindowX1 = BigFontSeperationLeftRight - 5; t5l1.WindowY0 = BigFontSeperationTopBottom + 5; t5l1.WindowY1 = 479; t5r1.Image = &t5screen; t5r1.WindowNumberOfTextLines = t5l1.WindowNumberOfTextLines; t5r1.WindowLineSpacing = t5l1.WindowLineSpacing; t5r1.WindowTab = t5l1.WindowTab; t5r1.WindowX0 = BigFontSeperationLeftRight + 5; t5r1.WindowX1 = 799; t5r1.WindowY0 = t5l1.WindowY0; t5r1.WindowY1 = t5l1.WindowY1; t5c1.Image = &t5screen; t5c1.WindowNumberOfTextLines = 2; t5c1.WindowLineSpacing = t5l1.WindowLineSpacing; t5c1.WindowX0 = 0; t5c1.WindowX1 = 799; t5c1.WindowY0 = 0; t5c1.WindowY1 = BigFontSeperationTopBottom - 5; t5c2.Image = &t5screen; t5c2.WindowNumberOfTextLines = 3; t5c2.WindowLineSpacing = 58; t5c2.WindowX0 = 370; t5c2.WindowX1 = 799; t5c2.WindowY0 = 0; t5c2.WindowY1 = BigFontSeperationTopBottom - 5; t5c2.WindowTab = 600; t5c3.Image = &t5screen; t5c3.WindowNumberOfTextLines = 1; t5c3.WindowLineSpacing = 0; // Abstand von Y0 t5c3.WindowTab = 100; t5c3.WindowX0 = CUSTOMBOX_LINE_LEFT + CUSTOMBOX_INSIDE_OFFSET; t5c3.WindowX1 = CUSTOMBOX_LINE_RIGHT - CUSTOMBOX_INSIDE_OFFSET; t5c3.WindowY0 = 0; t5c3.WindowY1 = 69; } void t5_refresh(void) { static uint8_t last_mode = MODE_SURFACE; SStateList status; get_globalStateList(&status); if(stateUsed->mode != MODE_DIVE) { last_mode = MODE_SURFACE; settingsGetPointer()->design = 7; if(t5screen.FBStartAdress) { releaseFrame(24,t5screen.FBStartAdress); t5screen.FBStartAdress = 0; } return; } if(status.base != BaseHome) return; t5screen.FBStartAdress = getFrame(24); if(last_mode != MODE_DIVE) { last_mode = MODE_DIVE; t5_selection_customview = *t5_customviews; } if(status.page == PageSurface) set_globalState(StD); t5_refresh_divemode(); GFX_SetFramesTopBottom(t5screen.FBStartAdress, 0,480); releaseAllFramesExcept(24,t5screen.FBStartAdress); } /* Private functions ---------------------------------------------------------*/ void t5_refresh_divemode(void) { char text[512]; uint8_t customview_warnings = 0; float depth_meter = 0.0; // everything like lines, depth, ascent graph and divetime depth_meter = t3_basics_lines_depth_and_divetime(&t5screen, &t5l1, &t5r1, DIVEMODE_Gauge); // customview if(stateUsed->warnings.numWarnings) customview_warnings = t5_test_customview_warnings(); if(customview_warnings && warning_count_high_time) t3_basics_show_customview_warnings(&t5c1); else t5_refresh_customview(depth_meter); if(stateUsed->warnings.lowBattery) t3_basics_battery_low_customview_extra(&t5c1); /* Menu Selection (and gas mix) */ if(get_globalState() == StDBEAR) { snprintf(text,TEXTSIZE,"\a\001%c%c", TXT_2BYTE, TXT2BYTE_DiveBearingQ); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); } else if(get_globalState() == StDRAVG) { snprintf(text,TEXTSIZE,"\a\001%c%c", TXT_2BYTE, TXT2BYTE_DiveResetAvgQ); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); } // else // if(get_globalState() == StDMENU) // { // snprintf(text,TEXTSIZE,"\a\001%c%c", TXT_2BYTE, TXT2BYTE_DiveMenuQ); // GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); // } else if(get_globalState() == StDSIM1) { snprintf(text,TEXTSIZE,"\a\001%c%c", TXT_2BYTE, TXT2BYTE_DiveQuitQ); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); } else if(get_globalState() == StDSIM2) { if(settingsGetPointer()->nonMetricalSystem) snprintf(text,TEXTSIZE,"\a\001" " Sim:-3.33ft "); else snprintf(text,TEXTSIZE,"\a\001" " Sim:-1m "); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); snprintf(text,TEXTSIZE,"\a\f %u %c%c" , unit_depth_integer(simulation_get_aim_depth()) , unit_depth_char1() , unit_depth_char2() ); GFX_write_string_color(&FontT42,&t5l1,text,0,CLUT_WarningYellow); } else if(get_globalState() == StDSIM3) { if(settingsGetPointer()->nonMetricalSystem) snprintf(text,TEXTSIZE,"\a\001" " Sim:+3.33ft "); else snprintf(text,TEXTSIZE,"\a\001" " Sim:+1m "); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); snprintf(text,TEXTSIZE,"\a\f %u %c%c" , unit_depth_integer(simulation_get_aim_depth()) , unit_depth_char1() , unit_depth_char2() ); GFX_write_string_color(&FontT42,&t5l1,text,0,CLUT_WarningYellow); } else if(get_globalState() == StDSIM4) { snprintf(text,TEXTSIZE,"\a\001" " Sim:+5' "); GFX_write_string_color(&FontT48,&t5c3,text,0,CLUT_WarningYellow); snprintf(text,TEXTSIZE,"\a\f %u %c%c" , unit_depth_integer(simulation_get_aim_depth()) , unit_depth_char1() , unit_depth_char2() ); GFX_write_string_color(&FontT42,&t5l1,text,0,CLUT_WarningYellow); } else { // keep empty } } void t5_change_customview(void) { t3_basics_change_customview(&t5_selection_customview, t5_customviews); } void t5_refresh_customview(float depth) { if((t5_selection_customview == CVIEW_sensors) &&(stateUsed->diveSettings.ccrOption == 0)) t5_change_customview(); t3_basics_refresh_customview(depth, t5_selection_customview, &t5screen, &t5c1, &t5c2, DIVEMODE_Gauge); } uint8_t t5_test_customview_warnings(void) { uint8_t count = 0; count = 0; return count; }