178 Commits
Author SHA1 Message Date
Dofensmirtsz f370b5b467 double crystal 2016-06-22 03:14:33 +02:00
Dofensmirtsz ec76b4e754 Merge branch 'developer' into FireWorld
# Conflicts:
#	worlds/worlds.json
2016-06-22 02:57:01 +02:00
Jannick van Ballegooijen 82acf0d9fc ice world 2016-06-22 02:54:12 +02:00
Dofensmirtsz f6d7695405 Fire en Earth werkend 2016-06-22 02:52:35 +02:00
kennyboy55 5de58e6f74 Remove circle 2016-06-22 02:35:34 +02:00
kennyboy55 316d6c9e14 Merge pull request #31 from CrystalPointA4/feature/loadingscreen
Feature/loadingscreen
2016-06-22 02:20:48 +02:00
Remco 80f0c33b91 Merge branch 'developer' into feature/loadingscreen
# Conflicts:
#	worlds/rock.json
2016-06-22 02:17:44 +02:00
Remco 9f455be8d6 revert commit 2016-06-22 02:00:30 +02:00
kennyboy55 5ad61e525f Merge pull request #30 from CrystalPointA4/world/Building
World/building
2016-06-22 01:54:21 +02:00
kennyboy55 df611e8e51 Bugfix 2016-06-22 01:51:58 +02:00
kennyboy55 5fc92d3f2a Merge branch 'developer' into world/Building
# Conflicts:
#	World.cpp
#	worlds/rock.json
2016-06-22 01:49:27 +02:00
Remco d1abc20f64 placed loadingscreen picture in json file of a world 2016-06-22 01:48:00 +02:00
kennyboy55 97d43a1249 Merge pull request #29 from CrystalPointA4/feature/weaponCollision
Feature/weapon collision
2016-06-22 01:45:14 +02:00
Remco cdd3b962eb texture in loadings screen 2016-06-22 01:40:53 +02:00
jancoow c9e5be2573 Merge branch 'developer' into feature/weaponCollision 2016-06-22 01:38:46 +02:00
jancoow 5b6e7b54c7 Added enemy damage 2016-06-22 01:37:47 +02:00
kennyboy55 9143204610 Merge pull request #28 from CrystalPointA4/feature/weaponCollision
Feature/weapon collision
2016-06-22 00:50:22 +02:00
kennyboy55 5f31b2e602 Merge branch 'developer' into feature/weaponCollision 2016-06-22 00:49:05 +02:00
kennyboy55 342a56fa5a Added audio 2016-06-22 00:47:02 +02:00
jancoow 27dfaf74c4 Better weapon alignment 2016-06-22 00:32:19 +02:00
Remco fea7728139 enemy hits player 2016-06-22 00:26:43 +02:00
Remco 50e2b1c7ea enemy weird xp gift fixed 2016-06-21 23:44:32 +02:00
Remco 5bff991b77 Merge branch 'developer' into feature/loadingscreen 2016-06-21 23:39:09 +02:00
Remco 9192eb7371 see couting points of loading things 2016-06-21 23:38:33 +02:00
kennyboy55 eaa6f9cd57 Hotfix rock world 2016-06-21 23:35:36 +02:00
Dofensmirtsz 6306e8abd4 Heightmap fix, texture fix, rotating crystals and enemy height to 0 2016-06-21 23:31:43 +02:00
Remco 7edbcd4d4d loadingscreen has been draw when loading a world 2016-06-21 23:28:44 +02:00
Remco d3bde622f0 menu placing right 2016-06-21 23:19:20 +02:00
Remco a407be072d Revert "Revert "Revert "added loadingscreen clas"""
This reverts commit 97448bfabf.
2016-06-21 23:12:22 +02:00
Remco 97448bfabf Revert "Revert "added loadingscreen clas""
This reverts commit 7e6514581e.
2016-06-21 23:12:02 +02:00
Remco 7e6514581e Revert "added loadingscreen clas"
This reverts commit 52ef1b4494.
2016-06-21 23:11:42 +02:00
jancoow ba0482ee0a Merge remote-tracking branch 'origin/developer' into feature/weaponCollision
Added waeponswitch to backbutton of controller

# Conflicts:
#	Enemy.cpp
#	Player.cpp
#	Weapon.cpp
#	Weapon.h
2016-06-21 23:10:58 +02:00
kennyboy55 0e99b9f719 Attempt fix rock world 2016-06-21 22:57:18 +02:00
jancoow e7163fc07c Added controller cursor in menu 2016-06-21 22:12:08 +02:00
Remco 52ef1b4494 added loadingscreen clas 2016-06-21 22:10:58 +02:00
kennyboy55 3cf6bf5857 Merge pull request #27 from CrystalPointA4/musicInclude
Music include
2016-06-21 20:03:56 +02:00
Aaldert 579a04a9b4 Merge branch 'developer' into musicInclude
# Conflicts:
#	worlds/small.json
2016-06-21 19:16:12 +02:00
Aaldert b09311d810 Merge branch 'developer' into musicInclude
# Conflicts:
#	Enemy.cpp
#	World.cpp
2016-06-21 19:06:50 +02:00
kennyboy55 d42ae6ccd3 Merge pull request #26 from CrystalPointA4/feature/weaponJSON
Feature/weapon json
2016-06-21 19:05:53 +02:00
kennyboy55 f80b513d90 Add weapon switching 2016-06-21 19:05:06 +02:00
kennyboy55 3025fecf94 Load weapons from JSON 2016-06-21 18:25:16 +02:00
Aaldert 41a81d104e Enemy stops geluid als gedood 2016-06-21 18:23:57 +02:00
Aaldert 9543dd8324 Muziek toegvoegt aan world en enemy 2016-06-21 18:15:49 +02:00
Aaldert d56625e19a MusicIncluded, crystals 2016-06-21 17:10:34 +02:00
jancoow 0431e9c230 Merge remote-tracking branch 'origin/feature/weaponJSON' into feature/weaponCollision 2016-06-21 17:07:59 +02:00
jancoow d14f045708 Added dead check 2016-06-21 17:07:19 +02:00
kennyboy55 4437acb9f2 Added missing json 2016-06-21 17:06:57 +02:00
jancoow 02a537dc60 Merge remote-tracking branch 'origin/feature/weaponJSON' into feature/weaponCollision 2016-06-21 17:01:08 +02:00
jancoow 4249e35653 Check if weapon collision point is inside enemy and do weapon damage 2016-06-21 17:00:36 +02:00
kennyboy55 ec900f7410 Added health+damage to enemy 2016-06-21 16:58:39 +02:00
kennyboy55 0a0fdfc8b1 Merge pull request #25 from CrystalPointA4/feature/Controller
Feature/controller
2016-06-21 15:44:43 +02:00
kennyboy55 4effce6fea Merge branch 'developer' into feature/Controller 2016-06-21 15:43:54 +02:00
kennyboy55 81cf7f43c0 Merge pull request #24 from CrystalPointA4/feature/normalsmoothing
normal smoothing
2016-06-21 15:42:39 +02:00
kennyboy55 58ac7d13cf Merge pull request #23 from CrystalPointA4/feature/soundsystemfix
Sound pointers worden gedelete
2016-06-21 15:42:09 +02:00
kennyboy55 c91bb5c656 attempt fix 2016-06-21 15:41:42 +02:00
kennyboy55 ed3e537a3c Fix visual studio project files 2016-06-21 15:31:12 +02:00
Jannick van Ballegooijen eaeff6ed7d normal smoothing 2016-06-21 15:28:15 +02:00
kennyboy55 942b068851 Merge branch 'developer' into feature/Controller
# Conflicts:
#	CrystalPoint.cpp
#	Player.cpp
2016-06-21 15:14:08 +02:00
Aaldert eadfea9d63 Sound pointers worden gedelete 2016-06-21 14:45:41 +02:00
kennyboy55 e848780535 Merge pull request #22 from CrystalPointA4/feature/gameplay
Feature/gameplay
2016-06-21 14:17:13 +02:00
Aaldert ea22712a45 Merge branch 'developer' into feature/gameplay
# Conflicts:
#	CrystalPoint.cpp
2016-06-21 14:06:41 +02:00
jancoow 36dc74a39e Fixed crash at startup, improved walking speed 2016-06-21 14:00:04 +02:00
kennyboy55 6096e53d94 Merge pull request #21 from CrystalPointA4/feature/Sounds
Bugfixes, added sound to portal and enemy in JSON
2016-06-21 13:53:30 +02:00
kennyboy55 8700aa90af Bugfixes, added sound to portal and enemy in JSON 2016-06-21 13:51:16 +02:00
Aaldert 35c21260e4 Hp, Lvl en Xp gameplay toegevoegt 2016-06-21 12:25:38 +02:00
jancoow 06a768a3a1 Fixed right weapon 2016-06-21 11:32:37 +02:00
jancoow 3f8623d0bf Merge remote-tracking branch 'origin/developer' into feature/Controller
Added support for second controller
# Conflicts:
#	CrystalPoint.cpp
#	CrystalPoint.h
#	CrystalPoint.vcxproj
#	CrystalPoint.vcxproj.filters
2016-06-21 11:24:55 +02:00
kennyboy55 7c4805d899 Merge pull request #18 from CrystalPointA4/feature/Menu
Feature/menu
2016-06-20 20:43:00 +02:00
kennyboy55 e42779f6c7 Fixed project files 2016-06-20 20:42:35 +02:00
kennyboy55 ce2f658b61 Merge branch 'developer' into feature/Menu 2016-06-20 20:39:00 +02:00
kennyboy55 3701918ac9 Bugfix 2016-06-20 20:38:56 +02:00
kennyboy55 d887328907 Merge pull request #19 from CrystalPointA4/feature/werkendewav
Feature/werkendewav
2016-06-20 20:37:14 +02:00
kennyboy55 8cf1b02cf7 Merge branch 'developer' into feature/werkendewav 2016-06-20 20:34:35 +02:00
kennyboy55 83557c7ba7 Added controller code 2016-06-20 20:33:28 +02:00
Janco Kock 779cf5cb91 Merge pull request #20 from CrystalPointA4/linux_refactor
Working version for linux
2016-06-20 20:11:10 +02:00
jancoow 030a136e8b Working version for linux 2016-06-20 20:00:58 +02:00
kennyboy55 da0b1f5588 Johan fix 2016-06-20 17:16:29 +02:00
Aaldert f93c09a999 rock heeft muziek 2016-06-20 15:48:57 +02:00
Aaldert 587b79044b Delete 2016-06-20 15:41:39 +02:00
Aaldert dba9c581b1 world aangepast 2016-06-20 15:33:07 +02:00
Aaldert d5406120c6 Enemy speelt cow! 2016-06-20 15:30:38 +02:00
Remco e081373a45 Merge branch 'developer' into feature/Menu
# Conflicts:
#	CrystalPoint.vcxproj.filters
#	Main.cpp
#	Skybox.cpp
#	Skybox.h
2016-06-20 15:23:55 +02:00
Remco 98f3645b6b menu pauses game, able to resume the game. exit game by pause menu 2016-06-20 15:20:12 +02:00
Aaldert 5c776e3d3a Test 2016-06-20 14:53:40 +02:00
Remco 03c06e0974 delete action pointer 2016-06-20 13:44:02 +02:00
Aaldert b7d73c9abe Test 1 2016-06-20 13:43:13 +02:00
Remco 7758f2c294 able to give button a funtion pointer, who will be called when clicked on the button 2016-06-20 13:42:28 +02:00
Remco 2e50d11e07 able to click with cursor, button detect clicking event 2016-06-20 13:29:28 +02:00
Remco 1ec3c8f346 buttons shows when ever the cursor is in the button 2016-06-20 12:50:51 +02:00
Remco 8dcee70324 button, text is placed in middle of button, plane is placed behind text 2016-06-20 12:38:16 +02:00
Remco 6cf9437620 button is draw by menu 2016-06-20 12:11:24 +02:00
kennyboy55 f84fcfa4e2 Merge pull request #17 from CrystalPointA4/worlds
Added Rock world. Updated others
2016-06-10 12:10:28 +02:00
kennyboy55 ad30824057 Added Rock world. Updated others 2016-06-10 12:09:16 +02:00
kennyboy55 04fd3ac0e3 Skybox brightness hotfix 2016-06-10 11:59:43 +02:00
kennyboy55 31c11f3e1f Merge pull request #16 from CrystalPointA4/feature/portal_logic
Feature/portal logic
2016-06-10 11:56:52 +02:00
kennyboy55 656a904a4b Merge remote-tracking branch 'origin/feature/portal_logic' into feature/portal_logic 2016-06-10 11:56:17 +02:00
kennyboy55 348b53c027 Added enemy -> brightness skybox 2016-06-10 11:55:57 +02:00
Remco 71801a30f2 player crystals refresh 2016-06-10 11:06:39 +02:00
Remco 0ca94aef4d when collected all crystals it is possible to move to the next level, by stepping in the portal 2016-06-10 10:56:54 +02:00
kennyboy55 ced3ff4462 Attempt implement menu (unresolved symbol error) 2016-06-09 17:56:37 +02:00
Remco 912a2234a3 crystals will be displayed, when not get with darker icons, when picked up crystals get colors 2016-06-09 17:47:34 +02:00
kennyboy55 0209c8b4e2 Merge pull request #14 from CrystalPointA4/feature/refactor_crystals
Feature/refactor crystals
2016-06-09 13:05:11 +02:00
kennyboy55 6bcd9b1426 Merge pull request #15 from CrystalPointA4/feature/Skybox
Feature/skybox
2016-06-09 13:04:19 +02:00
kennyboy55 579e02728a Merge branch 'developer' into feature/Skybox
# Conflicts:
#	CrystalPoint.vcxproj.filters
#	World.h
2016-06-09 13:03:28 +02:00
kennyboy55 af681b0223 Fixed color issues 2016-06-09 13:01:03 +02:00
Remco 3ed5331437 Merge branch 'developer' into feature/refactor_crystals 2016-06-09 12:41:53 +02:00
kennyboy55 0aad7262d6 Merge pull request #13 from CrystalPointA4/feature/OpenAL
Feature/OpenAL
2016-06-09 12:38:09 +02:00
Remco 9cfaf07eba optimiasted crystal, entity now has a collide methode, which will be called when an entity collison has with the player. 2016-06-09 12:35:00 +02:00
kennyboy55 9659caa1d8 Fix filters 2016-06-09 12:32:13 +02:00
kennyboy55 a4373adc25 Fix image direction / load from JSON 2016-06-09 12:22:40 +02:00
Remco 1f3188376a added new model for crystal, not possible to move through crystals 2016-06-09 12:07:27 +02:00
kennyboy55 69561794d8 Reimplemented into newer develop version 2016-06-09 12:01:24 +02:00
Aaldert 5c24a34202 Merge branch 'developer' into feature/OpenAL
# Conflicts:
#	CrystalPoint.vcxproj.filters
#	Enemy.cpp
#	Enemy.h
#	worlds/small.json
2016-06-09 11:44:45 +02:00
Remco 1164501158 added variables for crystal icons in interface class 2016-06-09 11:12:15 +02:00
kennyboy55 593b9547cf Merge pull request #12 from CrystalPointA4/crystal_capturing
Crystal capturing
2016-06-09 10:34:49 +02:00
kennyboy55 1a4339b49d Merge branch 'developer' into crystal_capturing
# Conflicts:
#	World.cpp
#	worlds/small.json
2016-06-09 10:34:33 +02:00
kennyboy55 2c624ac4c7 Merge pull request #11 from CrystalPointA4/enemy
Enemy
2016-06-09 10:27:24 +02:00
Remco 881b58138c crystal displayed on interface, with fancy gradient and the most beautifull colors for the crystal :) 2016-06-08 13:08:14 +02:00
Remco bba0a2e2a0 picking up crystal(sphere) 2016-06-08 12:41:33 +02:00
Aaldert 117010b9fe OpenAl Werkt! en Setup enzo 2016-06-05 23:49:06 +02:00
Aaldert 47b4d9570d Music Handler 2016-06-05 17:25:04 +02:00
Aaldert 0f8fd67dd3 Merge remote-tracking branch 'refs/remotes/origin/developer' into feature/OpenAL
# Conflicts:
#	CrystalPoint.vcxproj.filters
#	Enemy.h
2016-06-05 16:06:48 +02:00
Aaldert 0afbca8ffc More Generalized 2016-06-05 15:26:14 +02:00
Remco 293ceb0b9f enemy walking around world 2016-06-03 13:58:07 +02:00
Remco b827885f40 enemy collide logic in enemy and out of world 2016-06-03 13:51:54 +02:00
kennyboy55 527394f635 Merge pull request #10 from CrystalPointA4/enemy
Enemy
2016-06-03 11:31:33 +02:00
kennyboy55 95ab1879b4 Merge branch 'developer' into enemy
# Conflicts:
#	CrystalPoint.cpp
#	Entity.cpp
#	Player.cpp
#	Player.h
#	World.cpp
#	World.h
2016-06-03 11:30:19 +02:00
kennyboy55 95febc136f Merge pull request #9 from CrystalPointA4/feature/interface
Feature/interface
2016-06-03 11:14:46 +02:00
kennyboy55 b4a2da4b88 Merge pull request #8 from CrystalPointA4/worldLoading
Added world loading and other various improvements
2016-06-03 11:12:23 +02:00
Remco c3fe041eb1 enemy logic added to enemy and out of world 2016-06-03 11:09:48 +02:00
kennyboy55 1ade6002c1 Bugfix/performance improvement 2016-05-30 13:12:51 +02:00
Daniel f0a8330819 Werkt, maar loopt vast 2016-05-30 12:46:49 +02:00
Daniel a80fc69043 .wav file toegevoegt 2016-05-30 11:59:36 +02:00
Daniel 0c73b5a586 Settings aangepast, als het goed is zit het er nu volledig in 2016-05-30 11:58:34 +02:00
Daniel b53bcac528 OpenAL Test 2016-05-30 11:04:09 +02:00
kennyboy55 ae80c7a5bf Add health/xp/level interface 2016-05-28 16:04:44 +02:00
kennyboy55 34ea491f39 Remove scale 2016-05-28 13:11:11 +02:00
kennyboy55 d83cc6403c Spawn objects from file 2016-05-27 10:56:24 +02:00
kennyboy55 1c59a3bc6f Fix player height (not working with scale) 2016-05-26 18:53:36 +02:00
kennyboy55 2b0e22d4c9 Added height at location 2016-05-26 17:06:34 +02:00
kennyboy55 4c613b606a Implemented getHeight 2016-05-26 13:21:14 +02:00
kennyboy55 56e174ae2f Lord and Savior Johan 2016-05-26 12:53:22 +02:00
kennyboy55 908786897f Added world loading and other various improvements 2016-05-25 22:29:18 +02:00
kennyboy55 33a61ca2ed Merge pull request #7 from CrystalPointA4/enemy
Enemy collision and tracking
2016-05-25 13:44:26 +02:00
Remco b2fa0bc028 Merge branch 'developer' into enemy
# Conflicts:
#	World.h
#	worlds/world1.json
2016-05-25 13:42:02 +02:00
Remco cf124b3f38 enemy collison added, no jittering anymore 2016-05-25 13:38:13 +02:00
kennyboy55 0b6096d3e8 Merge pull request #6 from CrystalPointA4/array-rendering
Implement optimised array rendering
2016-05-25 12:56:17 +02:00
kennyboy55 84fcc346a9 Implement optimised array rendering 2016-05-25 12:44:24 +02:00
kennyboy55 fe1aa7220e Merge pull request #5 from CrystalPointA4/heightmap
Heightmap implemented
2016-05-25 11:53:02 +02:00
Remco d739141b25 enemys always looking at you when you are the target 2016-05-25 11:46:22 +02:00
kennyboy55 2a6cc0fd87 Fix missing Vertex 2016-05-25 11:44:13 +02:00
kennyboy55 965b54c901 Added heightmap 2016-05-25 11:31:37 +02:00
jancoow e7a7cc5588 Fixed capital letters and string return error.. 2016-05-23 12:34:55 +02:00
Remco 9d3cfa7e2a Merge branch 'developer' into johan
# Conflicts:
#	World.cpp
#	worlds/world1.json
2016-05-23 10:34:21 +02:00
Janco Kock 47c228205a Merge pull request #3 from CrystalPointA4/johan_linuxrefactor
Johan linuxrefactor
2016-05-23 10:00:59 +02:00
kennyboy55 b1aa61d5f0 Fix cmath issue 2016-05-23 10:00:31 +02:00
jancoow 5ca5ca194b Fixed capital letters... 2016-05-23 09:46:36 +02:00
jancoow e75f624935 Fixed cmath problem 2016-05-23 08:53:03 +02:00
Remco d01efecb0e enemy comes to you when in his radius 2016-05-23 08:48:23 +02:00
jancoow 7d13269480 Refactor johan branch for compiling with g++ 2016-05-22 23:19:05 +02:00
kennyboy55 a8415db4ac Added new Johan Code 2016-05-20 13:00:04 +02:00
kennyboy55 1120a3e144 Removed gitignore files 2016-05-20 12:40:54 +02:00
kennyboy55 f2af3a7324 Added gitignore 2016-05-20 10:51:23 +02:00
kennyboy55 7c4ee37867 Johan is love, Johan is life 2016-05-19 14:25:03 +02:00
Remco a38a6d3c5f get player out of main. player is now a singelton?(not sure of singleton is good inplemented). Added player singleton in worldstate 2016-05-19 11:27:32 +02:00
kennyboy55 876ec56780 Started rewriting 2016-05-17 15:31:49 +02:00
kennyboy55 5df4a1d8d0 Hotfix Main.cpp and Weapon.cpp 2016-05-17 10:42:06 +02:00
kennyboy55 d7f74212f0 Merge pull request #2 from CrystalPointA4/weapons_by_player
Weapons by player
2016-05-17 10:37:12 +02:00
Remco 3a4d11d46d obj testing files 2016-05-17 10:35:23 +02:00
Remco e5664e207d weapons are facing next to the camera 2016-05-17 10:34:11 +02:00
kennyboy55 cda6e2c822 Merge pull request #1 from CrystalPointA4/develop
Develop
2016-05-12 13:20:31 +02:00
kennyboy55 3d97ade42e Parse all lighting 2016-05-12 13:17:03 +02:00
Remco 1693c74a6a update movement 2016-05-12 12:18:52 +02:00
Jannick van Ballegooijen 11f07b154b added diffuse / ambient obj parsing 2016-05-12 12:17:56 +02:00
kennyboy55 049fb28ffc Added more structure, added abstraction to existing parts 2016-05-11 12:37:18 +02:00
kennyboy55 9769b88156 Project structure 2016-05-11 11:14:23 +02:00
kennyboy55 d032021cde Added objects 2016-05-11 11:00:15 +02:00
kennyboy55 77ac841b8b Project init 2016-05-10 14:03:58 +02:00
272 changed files with 115937 additions and 3 deletions
-1
View File
@@ -48,7 +48,6 @@ artifacts/
*_i.h
*.ilk
*.meta
*.obj
*.pch
*.pdb
*.pgc
+6
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@@ -0,0 +1,6 @@
/workspace.xml
/vcs.xml
/modules.xml
/misc.xml
/encodings.xml
/CrystalPoint.iml
+76
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@@ -0,0 +1,76 @@
#include "Button.h"
#include <string>
#include "Util.h"
#include "Vector.h"
#include "Cursor.h"
Button::Button(const std::string & text, Vec2f position, float width, float height) : Text(text,position)
{
this->width = width;
this->height = height;
this->planePosition = position;
cursorOnButton = false;
alfa = 0.5f;
background = Vec3f(10, 10, 10);
//foreground = Vec3f(255, 255, 255);
this->setColor(Vec3f(255, 255, 255));
this->position.x += width / 2 - textWidth / 2;
this->position.y += height / 2 - textHeight / 2;
}
Button::~Button()
{
/*if (action != nullptr)
delete action;*/
}
void Button::draw(void)
{
glColor4f(background.x/255.0f, background.y / 255.0f, background.z / 255.0f, alfa);
glBegin(GL_QUADS);
glVertex2f(planePosition.x, planePosition.y);
glVertex2f(planePosition.x, planePosition.y + height);
glVertex2f(planePosition.x + width, planePosition.y + height);
glVertex2f(planePosition.x + width, planePosition.y);
glEnd();
/*glColor4f(foreground.x / 255.0f, foreground.y / 255.0f, foreground.z / 255.0f, 1.0f);
Util::glutBitmapString(text, position.x, position.y+height/2+14/2);*/
Text::draw();
}
void Button::update(int x, int y)
{
cursorOnButton =
(x > planePosition.x && x < planePosition.x + width) &&
y > planePosition.y && y < planePosition.y + height;
if (cursorOnButton)
alfa = 1.0f;
else
alfa = 0.5f;
if (cursorOnButton && Cursor::getInstance()->clicked)
if(action != nullptr)
action(this);
}
void Button::addAction(action_function action)
{
this->action = action;
}
void Button::setForeground(Vec3f color)
{
this->setColor(color);
}
void Button::setBackground(Vec3f color)
{
background = color;
}
+30
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@@ -0,0 +1,30 @@
#pragma once
#include "Text.h"
class Button : public Text
{
private:
typedef void(*action_function)(Button* b);
float width, height;
Vec3f background;
Vec2f planePosition;
bool cursorOnButton;
float alfa;
action_function action = nullptr;
public:
Button(const std::string &text, Vec2f position, float width, float height);
~Button();
void draw();
void update(int x, int y);
void addAction(action_function action);
void setForeground(Vec3f color);
void setBackground(Vec3f color);
};
+17
View File
@@ -0,0 +1,17 @@
cmake_minimum_required(VERSION 3.5)
project(CrystalPoint)
file(GLOB_RECURSE SOURCE_FILES
"*.h"
"*.cpp"
"*.cc"
)
add_executable(CrystalPoint ${SOURCE_FILES})
find_package(OpenGL REQUIRED)
find_package(GLUT REQUIRED)
find_package(OpenAL REQUIRED)
include_directories( ${OPENGL_INCLUDE_DIRS} ${GLUT_INCLUDE_DIRS} ${OPENAL_INCLUDE_DIRS} )
target_link_libraries(CrystalPoint ${OPENGL_LIBRARIES} ${GLUT_LIBRARY} ${OPENAL_LIBRARY} )
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -std=c++11 -Wall -lpthread")
+42
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//
// Created by janco on 5/24/16.
//
#include "Controller.h"
Controller::Controller(int controllerId) {
this->controllerId = controllerId;
this->ypr = Vec3f();
this->joystick = Vec2f();
this->setConnected(false);
this->setConnected(true);
}
Controller::~Controller() { }
void Controller::rumble(int duration, int power){
// controllerhandler->rumble(controllerId, duration, power);
}
void Controller::setConnected(bool connected) {
if(connected){
this->connected = true;
}else{
this->connected = false;
this->ypr = Vec3f(0,0,0);
this->joystick = Vec2f(0,0);
this->button = false;
this->magnetSwitch = false;
this ->joystickButton = false;
}
}
bool Controller::isConnected(void) {
return connected;
}
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#pragma once
#include "Vector.h"
class Controller{
public:
Controller(int controllerId);
~Controller();
Vec3f ypr;
Vec2f joystick;
bool button, joystickButton, magnetSwitch;
int controllerId;
void setConnected(bool connected);
bool isConnected(void);
void rumble(int duration, int power);
private:
bool connected = false;
};
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//
// Created by janco on 5/23/16.
//
#include "ControllerHandler.h"
#include <iostream>
/*
* String split helper functions
*/
std::vector<std::string> &split(const std::string &s, char delim, std::vector<std::string> &elems) {
std::stringstream ss(s);
std::string item;
while (std::getline(ss, item, delim)) {
elems.push_back(item);
}
return elems;
}
std::vector<std::string> split(const std::string &s, char delim) {
std::vector<std::string> elems;
split(s, delim, elems);
return elems;
}
ControllerHandler::ControllerHandler(){
readthread = std::thread(&ControllerHandler::BasestationReader, this);
};
Controller* ControllerHandler::getLeftController(void){
for (int i = 0; i < 4; i++)
{
if(controllers[i] != nullptr && controllers[i]->isConnected()){
return controllers[i];
}
}
return nullptr;
}
Controller* ControllerHandler::getRightController(void){
bool c1found = false;
for (int i = 0; i < 4; i++)
{
if(controllers[i] != nullptr && controllers[i]->isConnected()){
if(c1found){
return controllers[i];
}
c1found = true;
}
}
return nullptr;
}
void ControllerHandler::SearchBasestation(void){
basestationFound = false;
std::vector<serial::PortInfo> devices_found = serial::list_ports();
std::vector<serial::PortInfo>::iterator iter = devices_found.begin();
while( iter != devices_found.end() )
{
serial::PortInfo device = *iter++;
if(device.hardware_id == "USB VID:PID=10c4:ea60 SNR=02133"){
basestationFound = true;
baseStation = new serial::Serial(device.port, BasestationBaudrate, serial::Timeout::simpleTimeout(1000));
break;
}
}
}
void ControllerHandler::rumble(int idController, int duration, int power){
if (basestationFound)
{
char sendbuffer[16];
sprintf(sendbuffer, "1|%01d|%06d|%03d\n", idController, duration, power);
baseStation->write(sendbuffer);
}
}
/*
* Reading from basestation
*/
void ControllerHandler::BasestationReader() {
while(1){
while(!basestationFound){
SearchBasestation();
if(basestationFound){
baseStation ->write("stop\n");
baseStation ->write("clientlist\n");
}
std::this_thread::sleep_for(std::chrono::milliseconds(2000));
}
while(baseStation->isOpen()){
std::string basestationMessage = baseStation->readline();
std::vector<std::string> basestationMessageSplit = split(basestationMessage, '|');
if(basestationMessageSplit.size() > 1){ //Valid message
std::cout << "DEBUG: Message received. Length: " << basestationMessageSplit.size() << " Type: " << basestationMessageSplit[0] << " Message: " << basestationMessage;
int messageId = std::stoi(basestationMessageSplit[0]);
switch(messageId){
//commandList[messageId](basestationMessageSplit);
case 0: commandDebug(basestationMessageSplit); break; //Debug message
case 1: commandControllerData(basestationMessageSplit); break; //Data from controller
case 2: commandControllerEvent(basestationMessageSplit); break; //Controller events
case 3: commandControllerList(basestationMessageSplit); break; //Connected controller list
}
}
}
}
}
void ControllerHandler::commandDebug(std::vector<std::string> data) {
std::cout << "DEBUG: " << data[1];
}
void ControllerHandler::commandControllerData(std::vector<std::string> data) {
if(data.size() == 10){
Controller* c = controllers[std::stoi(data[1])];
if(c != nullptr && c->isConnected()){
c->ypr.x = std::stoi(data[5])/100.0f;
c->ypr.y = std::stoi(data[6])/100.0f;
c->ypr.z = std::stoi(data[7])/100.0f;
c->joystick.x = std::stoi(data[2])/2000.0f;
c->joystick.y = std::stoi(data[3])/2000.0f;
c->joystickButton = !(data[4] == "0");
c->magnetSwitch = !(data[9] == "0");
}
}
}
void ControllerHandler::commandControllerEvent(std::vector<std::string> data) {
if(data.size() == 3){
if(data[1] == "connected"){
int controllerId = std::stoi(data[2]);
controllers[controllerId] = new Controller(controllerId);
controllers[controllerId]->setConnected(true);
}else if(data[1] == "disconnected"){
// controllers.erase(*controllers[std::stoi(data[2])]);
}
}
}
void ControllerHandler::commandControllerList(std::vector<std::string> data) {
for(unsigned int i = 1; i < data.size() - 1; i++){
int controllerId = std::stoi(data[i]);
controllers[controllerId] = new Controller(controllerId);
rumble(controllerId, 100, 100);
}
if(basestationFound)
baseStation->write("start\n");
}
+41
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#pragma once
//
// Created by janco on 5/23/16.
//
#define BasestationBaudrate 115200
#include <thread>
#ifdef WIN32
#include "include/serial.h"
#else
#include "lib/serial/include/serial.h"
#endif
#include "Controller.h"
class ControllerHandler{
public:
ControllerHandler();
Controller* getLeftController(void);
Controller* getRightController(void);
void rumble(int idController, int duration, int power);
private:
void SearchBasestation(void);
void BasestationReader(void);
bool basestationFound;
serial::Serial *baseStation;
std::thread readthread;
Controller* controllers[4];
//Command functions
void commandDebug(std::vector<std::string> data);
void commandControllerData(std::vector<std::string> data);
void commandControllerEvent(std::vector<std::string> data);
void commandControllerList(std::vector<std::string> data);
//void(*commandList [1])(std::vector<std::string> data);
};
+57
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#include "Crystal.h"
#include "Model.h"
#include "Player.h"
Crystal::Crystal(const std::string & filled, const std::string & empty, const Vec3f & position, Vec3f & rotation, const float & scale)
{
this->filled = Model::load(filled);
this->empty = Model::load(empty);
model = this->filled;
this->position = position;
this->rotation = rotation;
this->scale = scale;
this->canCollide = true;
isFilled = true;
sound_id = CrystalPoint::GetSoundSystem().LoadSound("WAVE/Crystal.wav", false);
music = CrystalPoint::GetSoundSystem().GetSound(sound_id);
music->SetPos(position, Vec3f());
crystalRot = 0;
}
Crystal::~Crystal()
{
CrystalPoint::GetSoundSystem().UnloadSound(sound_id);
if (model)
Model::unload(model);
//if isfilled, means model is model filled, so model empty has to been deleted.
//if is not filled, means model is model empty, so model filled has to been deleted.
if (isFilled)
if(empty)
Model::unload(empty);
else
if(filled)
Model::unload(filled);
}
void Crystal::draw()
{
crystalRot -= 3.0f;
rotation = Vec3f(0, crystalRot, 0);
Entity::draw();
}
void Crystal::collide()
{
if (isFilled)
{
music->Play();
Player::getInstance()->crystals++;
isFilled = false;
model = empty;
}
}
+23
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#pragma once
#include "Entity.h"
#include <string>
#include "CrystalPoint.h"
class Crystal :
public Entity
{
public:
Crystal(const std::string &filled, const std::string &empty,
const Vec3f &position, Vec3f &rotation, const float &scale);
~Crystal();
float crystalRot;
bool isFilled;
void draw();
void collide();
private:
int sound_id;
Sound* music;
Model* filled;
Model* empty;
};
+28
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Microsoft Visual Studio Solution File, Format Version 12.00
# Visual Studio 14
VisualStudioVersion = 14.0.24720.0
MinimumVisualStudioVersion = 10.0.40219.1
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "CrystalPoint", "CrystalPoint.vcxproj", "{F82158C7-7345-4CB0-9F90-3AB49A071904}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|x64 = Debug|x64
Debug|x86 = Debug|x86
Release|x64 = Release|x64
Release|x86 = Release|x86
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Debug|x64.ActiveCfg = Debug|x64
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Debug|x64.Build.0 = Debug|x64
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Debug|x86.ActiveCfg = Debug|Win32
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Debug|x86.Build.0 = Debug|Win32
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Release|x64.ActiveCfg = Release|x64
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Release|x64.Build.0 = Release|x64
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Release|x86.ActiveCfg = Release|Win32
{F82158C7-7345-4CB0-9F90-3AB49A071904}.Release|x86.Build.0 = Release|Win32
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal
+207
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#include "CrystalPoint.h"
#include <GL/freeglut.h>
#include <cmath>
#include <cstring>
#include "WorldHandler.h"
#include "Player.h"
#include "Cursor.h"
#include "Menu.h"
#include "Text.h"
#include "Vector.h"
#include "Button.h"
int CrystalPoint::width = 0;
int CrystalPoint::height = 0;
SoundSystem CrystalPoint::sound_system;
bool state = false;
void CrystalPoint::init()
{
player = Player::getInstance();
worldhandler = WorldHandler::getInstance();
cursor = Cursor::getInstance();
menu = new Menu();
menuIsBuild = false;
lastFrameTime = 0;
state = true;
glClearColor(0.7f, 0.7f, 1.0f, 1.0f);
}
void CrystalPoint::draw()
{
glClear(GL_COLOR_BUFFER_BIT | GL_DEPTH_BUFFER_BIT);
//Draw world
glEnable(GL_LIGHTING);
glEnable(GL_DEPTH_TEST);
glMatrixMode(GL_PROJECTION);
glLoadIdentity();
gluPerspective(70, width / (float)height, 0.1f, 15000);
glMatrixMode(GL_MODELVIEW);
glLoadIdentity();
worldhandler->draw();
if(!state)
menu->draw();
glutSwapBuffers();
}
void CrystalPoint::update()
{
float frameTime = glutGet(GLUT_ELAPSED_TIME) / 1000.0f;
float deltaTime = frameTime - lastFrameTime;
lastFrameTime = frameTime;
if (keyboardState.keys[27] && !prevKeyboardState.keys[27])
state = !state;
if (state)
{
Player* player = Player::getInstance();
if (keyboardState.special[GLUT_KEY_LEFT] && !prevKeyboardState.special[GLUT_KEY_LEFT])
worldhandler->PreviousWorld();
if (keyboardState.special[GLUT_KEY_RIGHT] && !prevKeyboardState.special[GLUT_KEY_RIGHT])
worldhandler->NextWorld();
if (keyboardState.special[GLUT_KEY_UP] && !prevKeyboardState.special[GLUT_KEY_UP])
player->NextLeftWeapon();
if (keyboardState.special[GLUT_KEY_DOWN] && !prevKeyboardState.special[GLUT_KEY_DOWN])
player->PreviousLeftWeapon();
if (keyboardState.keys[27])
state = false;
//testing code
if (keyboardState.keys['u'])
player->HpUp(1);
if (keyboardState.keys['i'])
player->HpDown(1);
if (keyboardState.keys['o'])
player->XpUp(1);
player->rotation.y += mouseOffset.x / 10.0f;
player->rotation.x += mouseOffset.y / 10.0f;
float speed = 10;
Vec3f oldPosition = player->position;
if (keyboardState.keys['a']) player->setPosition(0, deltaTime*speed, false);
if (keyboardState.keys['d']) player->setPosition(180, deltaTime*speed, false);
if (keyboardState.keys['w']) player->setPosition(90, deltaTime*speed, false);
if (keyboardState.keys['s']) player->setPosition(270, deltaTime*speed, false);
if (keyboardState.keys['q']) player->setPosition(1, deltaTime*speed, true);
if (keyboardState.keys['e']) player->setPosition(-1, deltaTime*speed, true);
Controller *leftcontroller = controller.getLeftController();
if (leftcontroller != nullptr) {
Vec2f *leftControllerJoystick = &leftcontroller->joystick;
if (leftcontroller->joystickButton) {
controller.rumble(leftcontroller->controllerId, 100, 100);
}
if (leftControllerJoystick->y > 0.3) {
player->setPosition(270, leftControllerJoystick->y * deltaTime * 2.0f, false);
}
else if (leftControllerJoystick->y < -0.3) {
player->setPosition(90, leftControllerJoystick->y * -1 * deltaTime * 2.0f, false);
}
if (leftControllerJoystick->x > 0.3) {
player->setPosition(180, leftControllerJoystick->x * deltaTime * 2.0f, false);
}
else if (leftControllerJoystick->x < -0.3) {
player->setPosition(0, leftControllerJoystick->x * -1 * deltaTime * 2.0f, false);
}
player->leftWeapon->rotateWeapon(Vec3f(leftcontroller->ypr.y + 140, 0, -leftcontroller->ypr.z));
}
Controller *rightcontroller = controller.getRightController();
if(rightcontroller != nullptr){
Vec2f *rightControllerJoystick = &rightcontroller->joystick;
if (rightControllerJoystick->y > 0.3 || rightControllerJoystick->y < -0.3) {
player->rotation.x += rightcontroller->joystick.y/4;
}
if (rightControllerJoystick->x > 0.3 || rightControllerJoystick->x < -0.3) {
player->rotation.y += rightcontroller->joystick.x/4;
}
player->rightWeapon->rotateWeapon(Vec3f(rightcontroller->ypr.y + 140, 0, -rightcontroller->ypr.z));
}
if (player->rotation.x > 90)
player->rotation.x = 90;
if (player->rotation.x < -90)
player->rotation.x = -90;
player->position.y = worldhandler->getHeight(player->position.x, player->position.z) + 1.7f;
if (!worldhandler->isPlayerPositionValid())
player->position = oldPosition;
/*else if (player->position.y > oldPosition.y + 1.2)
player->position = oldPosition;
*/
worldhandler->update(deltaTime);
}
else
{
if (!menuIsBuild)
{
buildMenu();
menuIsBuild = true;
}
menu->update();
cursor->update(cursor->mousePosition + mouseOffset);
}
mouseOffset = Vec2f(0, 0);
prevKeyboardState = keyboardState;
glutPostRedisplay();
sound_system.SetListener(player->position, Vec3f(), Vec3f());
}
void CrystalPoint::buildMenu()
{
Button* start = new Button("Resume", Vec2f(width / 2 - 50, height / 2 - 30), 100, 50);
auto toWorld = [](Button* b)
{
state = true;
};
start->addAction(toWorld);
menu->AddMenuElement(start);
Button* test = new Button("Exit", Vec2f(width / 2 - 50, height / 2 + 30), 100, 50);
test->addAction([](Button* b)
{
exit(0);
});
menu->AddMenuElement(test);
Text* t = new Text("Pause", Vec2f(width / 2 - Util::glutTextWidth("Pause") / 2, height / 2 - 75));
t->setColor(Vec3f(255, 255, 0));
menu->AddMenuElement(t);
}
KeyboardState::KeyboardState()
{
memset(keys, 0, sizeof(keys));
memset(special, 0, sizeof(special));
}
+51
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@@ -0,0 +1,51 @@
#pragma once
class WorldHandler;
class SoundSystem;
class Player;
class Cursor;
class Menu;
#include "Vector.h"
#include "SoundSystem.h"
#include "ControllerHandler.h"
class KeyboardState
{
public:
bool keys[256];
bool special[256];
bool control, shift, alt;
KeyboardState();
};
class CrystalPoint
{
public:
void init();
void draw();
void update();
WorldHandler* worldhandler;
Player* player;
ControllerHandler controller;
Cursor* cursor;
Menu* menu;
static int width, height;
KeyboardState keyboardState;
KeyboardState prevKeyboardState;
Vec2f mouseOffset;
Vec2f mousePosition;
float lastFrameTime;
static SoundSystem& GetSoundSystem() { return sound_system; }
bool menuIsBuild;
private:
static SoundSystem sound_system;
void buildMenu();
};
+243
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@@ -0,0 +1,243 @@
<?xml version="1.0" encoding="utf-8"?>
<Project DefaultTargets="Build" ToolsVersion="14.0" xmlns="http://schemas.microsoft.com/developer/msbuild/2003">
<ItemGroup Label="ProjectConfigurations">
<ProjectConfiguration Include="Debug|Win32">
<Configuration>Debug</Configuration>
<Platform>Win32</Platform>
</ProjectConfiguration>
<ProjectConfiguration Include="Release|Win32">
<Configuration>Release</Configuration>
<Platform>Win32</Platform>
</ProjectConfiguration>
<ProjectConfiguration Include="Debug|x64">
<Configuration>Debug</Configuration>
<Platform>x64</Platform>
</ProjectConfiguration>
<ProjectConfiguration Include="Release|x64">
<Configuration>Release</Configuration>
<Platform>x64</Platform>
</ProjectConfiguration>
</ItemGroup>
<PropertyGroup Label="Globals">
<ProjectGuid>{F82158C7-7345-4CB0-9F90-3AB49A071904}</ProjectGuid>
<Keyword>Win32Proj</Keyword>
<RootNamespace>CrystalJohan</RootNamespace>
<WindowsTargetPlatformVersion>8.1</WindowsTargetPlatformVersion>
<ProjectName>CrystalPoint</ProjectName>
</PropertyGroup>
<Import Project="$(VCTargetsPath)\Microsoft.Cpp.Default.props" />
<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Debug|Win32'" Label="Configuration">
<ConfigurationType>Application</ConfigurationType>
<UseDebugLibraries>true</UseDebugLibraries>
<PlatformToolset>v140</PlatformToolset>
<CharacterSet>Unicode</CharacterSet>
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<PropertyGroup Condition="'$(Configuration)|$(Platform)'=='Release|Win32'" Label="Configuration">
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<PlatformToolset>v140</PlatformToolset>
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<ImportGroup Label="ExtensionSettings">
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<ImportGroup Label="Shared">
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<EnableCOMDATFolding>true</EnableCOMDATFolding>
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<ItemGroup>
<ClCompile Include="Button.cpp" />
<ClCompile Include="Controller.cpp" />
<ClCompile Include="ControllerHandler.cpp" />
<ClCompile Include="Crystal.cpp" />
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<Import Project="$(VCTargetsPath)\Microsoft.Cpp.targets" />
<ImportGroup Label="ExtensionTargets">
</ImportGroup>
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#include "Cursor.h"
#include <GL/freeglut.h>
#include <cmath>
#include "CrystalPoint.h"
Cursor* Cursor::instance = NULL;
Cursor::Cursor()
{
enabled = false;
mousePosition = Vec2f(CrystalPoint::width / 2, CrystalPoint::height / 2);
clicked = false;
}
Cursor::~Cursor()
{
}
Cursor* Cursor::getInstance(void)
{
if (instance == nullptr)
instance = new Cursor();
return instance;
}
void Cursor::enable(bool enable)
{
enabled = enable;
}
bool Cursor::isEnabled(void)
{
return enabled;
}
void Cursor::draw(void)
{
//Draw Cursor
glMatrixMode(GL_PROJECTION);
glLoadIdentity();
glOrtho(0, CrystalPoint::width, CrystalPoint::height, 0, -10, 10);
glMatrixMode(GL_MODELVIEW);
glLoadIdentity();
glDisable(GL_LIGHTING);
glDisable(GL_DEPTH_TEST);
glColor4f(1, cos(glutGet(GLUT_ELAPSED_TIME) / 1000.0f), sin(glutGet(GLUT_ELAPSED_TIME) / 1000.0f), 1);
glBegin(GL_TRIANGLES);
glVertex2f(mousePosition.x, mousePosition.y);
glVertex2f(mousePosition.x + 15, mousePosition.y + 15);
glVertex2f(mousePosition.x + 5, mousePosition.y + 20);
glEnd();
}
void Cursor::update(Vec2f newPosition)
{
if (newPosition.x < 0)
newPosition.x = 0;
if (newPosition.y < 0)
newPosition.y = 0;
if (newPosition.x > CrystalPoint::width)
newPosition.x = CrystalPoint::width;
if (newPosition.y > CrystalPoint::height)
newPosition.y = CrystalPoint::height;
mousePosition = newPosition;
if (clicked)
clicked = !clicked;
if (state != prev)
if(state == GLUT_UP)
clicked = true;
prev = state;
}
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#pragma once
#include "Vector.h"
class Cursor
{
private:
Cursor();
static Cursor* instance;
bool enabled;
public:
Vec2f mousePosition;
~Cursor();
static Cursor* getInstance(void);
void enable(bool enable);
bool isEnabled(void);
bool clicked;
int state, prev;
void draw(void);
void update(Vec2f newPosition);
};
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#define _USE_MATH_DEFINES
#include <cmath>
#include "Enemy.h"
#include "Model.h"
#include <iostream>
Enemy::Enemy(const std::string &fileName,
const std::string &fileMusic,
float damage,
float health,
const Vec3f &position,
const Vec3f &rotation,
const float &scale)
{
model = Model::load(fileName);
this->position = position;
this->rotation = rotation;
this->scale = scale;
this->canCollide = true;
target = position;
speed = 1;
radius = 10;
xp = health;
this->health = health;
this->damage = damage;
hasTarget = false;
hit_sound_id = CrystalPoint::GetSoundSystem().LoadSound(fileMusic.c_str(), false);
music = CrystalPoint::GetSoundSystem().GetSound(hit_sound_id);
attack = false;
}
Enemy::~Enemy()
{
music->Stop();
CrystalPoint::GetSoundSystem().UnloadSound(hit_sound_id);
if (model)
Model::unload(model);
}
void Enemy::draw()
{
Entity::draw();
}
void Enemy::inEyeSight(Vec3f & TargetPosition)
{
if (position.Distance(TargetPosition) <= radius)
{
hasTarget = true;
target = TargetPosition;
}
else
hasTarget = false;
}
void Enemy::collide(const Entity * entity)
{
Vec3f difference = position - entity->position; //zou misschien omgedraait moeten worden
difference.y = 0;
difference.Normalize();
difference = difference * (entity->model->radius + 0.01f);
position.x = difference.x + entity->position.x;
position.z = difference.z + entity->position.z;
}
void Enemy::update(float delta)
{
music->SetPos(position, Vec3f());
if (hasTarget)
{
if (music->IsPlaying() == false)
{
music->Play();
}
//just 2d walking
float dx, dz, length;
dx = target.x - position.x;
dz = target.z - position.z;
length = sqrt(dx*dx + dz*dz);
if (length > 1)
{
attack = false;
dx /= length;
dz /= length;
dx *= speed*delta;
dz *= speed*delta;
position.x += dx;
position.z += dz;
}
else
{
attack = true;
}
rotation.y = atan2f(dx, dz) * 180 / M_PI;
}
}
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#pragma once
#include "Entity.h"
#include <string>
#include "Vector.h"
#include "CrystalPoint.h"
class Enemy : public Entity
{
public:
Enemy(const std::string &fileName, const std::string &fileMusic, float damage, float health, const Vec3f &position, const Vec3f &rotation, const float &scale);
~Enemy();
Sound* music;
bool hasTarget;
Vec3f target;
float speed,radius;
float health;
float damage;
int xp;
bool attack;
void update(float);
void draw();
void inEyeSight(Vec3f &);
void collide(const Entity *entity);
private:
int hit_sound_id;
};
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#include "Entity.h"
#include "cmath"
#include <GL/freeglut.h>
#include "Model.h"
Entity::Entity()
{
model = NULL;
scale = 1;
canCollide = true;
}
Entity::~Entity()
{
if(model)
Model::unload(model);
}
void Entity::draw()
{
if (model)
{
glPushMatrix();
glTranslatef(position.x, position.y, position.z);
glRotatef(rotation.x, 1, 0, 0);
glRotatef(rotation.y, 0, 1, 0);
glRotatef(rotation.z, 0, 0, 1);
glScalef(scale, scale, scale);
glEnable(GL_CULL_FACE);
glCullFace(GL_BACK);
model->draw();
glCullFace(GL_FRONT);
model->draw();
glDisable(GL_CULL_FACE);
glPopMatrix();
}
}
bool Entity::inObject(const Vec3f & point)
{
if (!model)
return false;
Vec3f center = position + model->center;
float distance = ((point.x - center.x) * (point.x - center.x) + (point.z - center.z)*(point.z - center.z));
if (distance < model->radius*scale*model->radius*scale)
return true;
return false;
}
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#pragma once
#include "Vector.h"
class Model;
class Entity
{
public:
Entity();
~Entity();
Model* model;
virtual void draw();
virtual void update(float elapsedTime) {};
virtual void collide() {};
Vec3f position;
Vec3f rotation;
float scale;
bool canCollide;
bool inObject(const Vec3f &position);
};
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#include "HeightMap.h"
#include "stb_image.h"
#include "Vector.h"
#include "LevelObject.h"
#include <GL/freeglut.h>
#include <iostream>
#include <string>
#include "World.h"
#define RED 0
#define GREEN 1
#define BLUE 2
#define ALPHA 3
HeightMap::HeightMap(const std::string &file, World* world)
{
int bpp;
unsigned char* imgData = stbi_load(file.c_str(), &width, &height, &bpp, 4);
auto heightAt = [&](int x, int y)
{
return (imgData[(x + y * width) * 4 ] / 256.0f) * 50.0f;
};
auto valueAt = [&](int x, int y, int offset = 0)
{
return imgData[(x + y * width) * 4 + offset];
};
std::vector<std::vector<Vec3f>> faceNormals(width-1, std::vector<Vec3f>(height-1, Vec3f(0,1,0)));
for (int y = 0; y < height - 1; y++)
{
for (int x = 0; x < width - 1; x++)
{
int offsets[4][2] = { { 0, 0 },{ 1, 0 },{ 1, 1 },{ 0, 1 } };
Vec3f ca(0, heightAt(x, y + 1) - heightAt(x, y), 1);
Vec3f ba(1, heightAt(x + 1, y) - heightAt(x, y), 0);
Vec3f normal = ca.cross(ba);
normal.Normalize();
faceNormals[x][y] = normal;
}
}
for (int y = 0; y < height-1; y++)
{
for (int x = 0; x < width-1; x++)
{
int offsets[4][2] = { { 0, 0 },{ 1, 0 },{ 1, 1 },{ 0, 1 } };
if (valueAt(x, y, GREEN) > 5)
{
world->addLevelObject(new LevelObject(world->getObjectFromValue(valueAt(x, y, GREEN)).first, Vec3f(x, heightAt(x, y), y), Vec3f(0, 0, 0), 1, world->getObjectFromValue(valueAt(x, y, GREEN)).second));
}
for (int i = 0; i < 4; i++)
{
int xx = x + offsets[i][0];
int yy = y + offsets[i][1];
Vec3f normal(0, 0, 0);
if(xx < width-1 && yy < height-1)
normal = normal + faceNormals[xx][yy];
if(xx > 0 && yy < height-1)
normal = normal + faceNormals[xx-1][yy];
if (xx > 0 && yy > 0)
normal = normal + faceNormals[xx-1][yy-1];
if (yy > 0 && xx < width-1)
normal = normal + faceNormals[xx][yy-1];
normal.Normalize();
float h = heightAt(xx, yy);
vertices.push_back(Vertex{ (float)(xx), h, (float)(yy),
normal.x, normal.y, normal.z,
(xx) / (float)height, (yy) / (float)width } );
}
}
}
glGenTextures(1, &imageIndex);
glBindTexture(GL_TEXTURE_2D, imageIndex);
glTexImage2D(GL_TEXTURE_2D,
0, //level
GL_RGBA, //internal format
width, //width
height, //height
0, //border
GL_RGBA, //data format
GL_UNSIGNED_BYTE, //data type
imgData); //data
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
stbi_image_free(imgData);
}
HeightMap::~HeightMap()
{
glDeleteTextures(1, &imageIndex);
}
void HeightMap::Draw()
{
glEnable(GL_LIGHTING);
float color[] = { 0.7f, 0.7f, 0.7f, 1 };
glMaterialfv(GL_FRONT_AND_BACK, GL_DIFFUSE, color);
glMaterialfv(GL_FRONT_AND_BACK, GL_AMBIENT, color);
glEnable(GL_TEXTURE_2D);
glBindTexture(GL_TEXTURE_2D, imageIndex);
glEnableClientState(GL_VERTEX_ARRAY);
glEnableClientState(GL_TEXTURE_COORD_ARRAY);
//glEnableClientState(GL_COLOR_ARRAY);
glEnableClientState(GL_NORMAL_ARRAY);
glVertexPointer(3, GL_FLOAT, sizeof(Vertex), ((float*)vertices.data()) + 0);
glTexCoordPointer(2, GL_FLOAT, sizeof(Vertex), ((float*)vertices.data()) + 6);
glNormalPointer(GL_FLOAT, sizeof(Vertex), ((float*)vertices.data()) + 3);
glDrawArrays(GL_QUADS, 0, vertices.size());
glDisableClientState(GL_VERTEX_ARRAY);
glDisableClientState(GL_TEXTURE_COORD_ARRAY);
//glDisableClientState(GL_COLOR_ARRAY);
glDisableClientState(GL_NORMAL_ARRAY);
}
float HeightMap::GetHeight(float x, float y)
{
int ix = x;
int iy = y;
int index = (ix + (width - 1) * iy) * 4;
if (index + 3 >= vertices.size())
index = vertices.size() - 4;
if (index < 0)
index = 0;
Vertex& a = vertices[index];
Vertex& b = vertices[index+1];
Vertex& c = vertices[index+3];
float lowervalue = ((b.z - c.z)*(a.x - c.x) + (c.x - b.x)*(a.z - c.z));
float labda1 = ((b.z - c.z)*(x - c.x) + (c.x - b.x)*(y - c.z)) / lowervalue;
float labda2 = ((c.y - a.y)*(x - c.x) + (a.x - c.x)*(y - c.y)) / lowervalue;
float labda3 = 1 - labda1 - labda2;
Vertex z = a * labda1 + b * labda2 + c * labda3;
// Vertex z = (a * labda1) + (b * labda2) ;
return z.y;
}
int HeightMap::GetSize()
{
return height >= width ? height : width;
}
void HeightMap::SetTexture(const std::string &file)
{
int bpp, width2, height2;
unsigned char* imgData = stbi_load(file.c_str(), &width2, &height2, &bpp, 4);
glBindTexture(GL_TEXTURE_2D, imageIndex);
glTexImage2D(GL_TEXTURE_2D,
0, //level
GL_RGBA, //internal format
width2, //width
height2, //height
0, //border
GL_RGBA, //data format
GL_UNSIGNED_BYTE, //data type
imgData); //data
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
stbi_image_free(imgData);
}
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#pragma once
#include "Vertex.h"
#include <string>
#include <vector>
#include <GL/freeglut.h>
class World;
class HeightMap
{
private:
int height;
int width;
GLuint imageIndex;
public:
HeightMap(const std::string &file, World* world);
~HeightMap();
void Draw();
float GetHeight(float x, float y);
int GetSize();
void SetTexture(const std::string &file);
std::vector<Vertex> vertices;
};
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#include "Interface.h"
#include <GL/freeglut.h>
#include "CrystalPoint.h"
#include <string>
#include "Player.h"
#include "Util.h"
Interface::Interface()
{
crystalWidth = 20;
crystalHeight = 50;
crystalOffset = 5;
maxCrystals = 0;
}
Interface::Interface(int maxCrystal)
{
crystalWidth = 20;
crystalHeight = 50;
crystalOffset = 5;
maxCrystals = maxCrystal;
}
Interface::~Interface()
{
}
void Interface::draw()
{
Player* player = Player::getInstance();
//Switch view to Ortho
glMatrixMode(GL_PROJECTION);
glLoadIdentity();
glOrtho(0, 1000, 1000, 0, -10, 10);
glMatrixMode(GL_MODELVIEW);
glLoadIdentity();
glDisable(GL_LIGHTING);
glDisable(GL_DEPTH_TEST);
glDisable(GL_TEXTURE_2D);
//Draw interface
//Health bar
glBegin(GL_QUADS);
glColor4f(0,0,0, 1.0);
glVertex2f(250, 980);
glVertex2f(250, 965);
glVertex2f(750, 965);
glVertex2f(750, 980);
glEnd();
glBegin(GL_QUADS);
glColor4f(1.0f, 0.1f, 0.1f, 1.0);
glVertex2f(250, 980);
glVertex2f(250, 965);
glColor4f(1.0f, 0.5f, 0.5f, 1.0);
glVertex2f(250 + (player->health / player->maxHp * 500), 965);
glVertex2f(250 + (player->health / player->maxHp * 500), 980);
glEnd();
//XP bar
glBegin(GL_QUADS);
glColor4f(0, 0, 0, 1.0);
glVertex2f(250, 950);
glVertex2f(250, 935);
glVertex2f(750, 935);
glVertex2f(750, 950);
glEnd();
glBegin(GL_QUADS);
glColor4f(1.0f, 1.0f, 0.1f, 1.0);
glVertex2f(250, 950);
glVertex2f(250, 935);
glColor4f(1.0f, 1.0f, 0.5f, 1.0);
glVertex2f(250 + (player->xp / player->maxXp * 500), 935);
glVertex2f(250 + (player->xp / player->maxXp * 500), 950);
glEnd();
//Text: level
glColor4f(1.0f, 1.0f, 0.1f, 1.0);
Util::glutBitmapString("Level: " + std::to_string(player->level), 490, 900);
//Text: weapons
Util::glutBitmapString(player->leftWeapon->name, 850, 900);
Util::glutBitmapString(player->rightWeapon->name, 10, 900);
for (int i = 0; i < maxCrystals; i++)
{
glBegin(GL_QUADS);
if(i < player->crystals)
glColor4f(0, 1.0f, 1.0f, 1.0f);
else
glColor4f(0, 0.4f, 0.4f, 1.0f);
glVertex2f(975 - crystalWidth / 2 , crystalOffset*i + crystalHeight*i);
glVertex2f(975 - crystalWidth , crystalHeight / 2 + crystalOffset*i + crystalHeight*i);
if (i < player->crystals)
glColor4f(0, 0.7f, 0.7f, 1.0f);
else
glColor4f(0, 0.2f, 0.2f, 1.0f);
glVertex2f(975 - crystalWidth / 2 , crystalHeight + crystalOffset*i + crystalHeight*i);
glVertex2f(975 , crystalHeight / 2 + crystalOffset*i + crystalHeight*i);
glEnd();
}
glEnable(GL_LIGHTING);
glEnable(GL_DEPTH_TEST);
}
void Interface::update(float deltaTime)
{
}
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#pragma once
class Interface
{
public:
Interface();
Interface(int);
~Interface();
void draw(void);
void update(float deltaTime);
int crystalWidth, crystalHeight, crystalOffset;
int maxCrystals;
};
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#include "LevelObject.h"
#include "Model.h"
LevelObject::LevelObject(const std::string &fileName, const Vec3f &position, const Vec3f &rotation, const float &scale, const bool &hasCollision)
{
model = Model::load(fileName);
this->position = position;
this->position.x -= model->center.x;
this->position.z -= model->center.z;
this->rotation = rotation;
this->scale = scale;
this->canCollide = hasCollision;
}
LevelObject::~LevelObject()
{
if (model)
Model::unload(model);
}
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#pragma once
#include "Entity.h"
#include <string>
class LevelObject : public Entity
{
public:
LevelObject(const std::string &fileName,
const Vec3f &position,
const Vec3f &rotation,
const float &scale,
const bool &hasCollision);
~LevelObject();
};
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#include "stb_image.h"
#include "LoadingScreen.h"
#include "CrystalPoint.h"
#include "Util.h"
#include <ostream>
LoadingScreen::LoadingScreen()
{
points = 0;
}
LoadingScreen::~LoadingScreen()
{
}
void LoadingScreen::draw()
{
glMatrixMode(GL_PROJECTION);
glLoadIdentity();
glOrtho(0, CrystalPoint::width, CrystalPoint::height, 0, -10, 10);
glMatrixMode(GL_MODELVIEW);
glLoadIdentity();
glDisable(GL_LIGHTING);
glDisable(GL_DEPTH_TEST);
glDisable(GL_COLOR_MATERIAL);
glEnable(GL_TEXTURE_2D);
glColor4f(1.0f, 1.0f, 1.0f, 1.0f);
glBindTexture(GL_TEXTURE_2D, textureId);
glBegin(GL_QUADS);
glTexCoord2f(0, 1);
glVertex2f(0, 0);
glTexCoord2f(0, 0);
glVertex2f(0, CrystalPoint::height);
glTexCoord2f(1, 0);
glVertex2f(CrystalPoint::width, CrystalPoint::height);
glTexCoord2f(1, 1);
glVertex2f(CrystalPoint::width, 0);
glEnd();
/*glColor4f(1.0f, 1.0f, 0.0f, 1.0f);
std::ostringstream oss;
oss << loading << points << std::endl;
Util::glutBitmapString(oss.str(),
CrystalPoint::width / 2 - Util::glutTextWidth(oss.str()),
CrystalPoint::height / 2 - 7);*/
glDisable(GL_TEXTURE_2D);
glEnable(GL_LIGHTING);
glEnable(GL_DEPTH_TEST);
glutSwapBuffers();
}
void LoadingScreen::rise()
{
points++;
draw();
}
void LoadingScreen::setTexture(const std::string filename)
{
textureId = Util::loadTexture(filename);
}
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#pragma once
#include <string>
#include <GL\freeglut.h>
class LoadingScreen
{
public:
LoadingScreen();
~LoadingScreen();
void draw();
void rise();
int points;
GLuint textureId;
void setTexture(const std::string fileName);
private:
const std::string loading = "Loaded: ";
};
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#include <GL/freeglut.h>
#include "CrystalPoint.h"
#include <stdio.h>
#include "Vector.h"
#define STB_IMAGE_IMPLEMENTATION
#include "stb_image.h"
#include "Cursor.h"
void configureOpenGL(void);
CrystalPoint* app;
bool justMoved = false;
int main(int argc, char* argv[])
{
app = new CrystalPoint();
glutInit(&argc, argv);
configureOpenGL();
app->init();
glutDisplayFunc([]() { app->draw(); } );
glutIdleFunc([]() { app->update(); } );
glutReshapeFunc([](int w, int h) { CrystalPoint::width = w; CrystalPoint::height = h; glViewport(0, 0, w, h); });
//Keyboard
glutKeyboardFunc([](unsigned char c, int, int) { app->keyboardState.keys[c] = true; });
glutKeyboardUpFunc([](unsigned char c, int, int) { app->keyboardState.keys[c] = false; });
glutSpecialFunc([](int c, int, int) { app->keyboardState.special[c] = true; });
glutSpecialUpFunc([](int c, int, int) { app->keyboardState.special[c] = false; });
auto mousemotion = [](int x, int y)
{
if (justMoved)
{
justMoved = false;
return;
}
int dx = x - app->width / 2;
int dy = y - app->height / 2;
if ((dx != 0 || dy != 0) && abs(dx) < 400 && abs(dy) < 400)
{
app->mouseOffset = app->mouseOffset + Vec2f(dx, dy);
glutWarpPointer(app->width / 2, app->height / 2);
justMoved = true;
}
};
//Mouse
glutPassiveMotionFunc(mousemotion);
glutMotionFunc(mousemotion);
auto mouseclick = [](int button, int state,
int x, int y)
{
if (button == GLUT_LEFT_BUTTON)
Cursor::getInstance()->state = state;
//std::cout << "Left button is down" << std::endl;
};
glutMouseFunc(mouseclick);
CrystalPoint::height = GLUT_WINDOW_HEIGHT;
CrystalPoint::width = GLUT_WINDOW_WIDTH;
glutMainLoop();
delete app;
return 0;
}
void configureOpenGL()
{
//Init window and glut display mode
glutInitDisplayMode(GLUT_RGB | GLUT_DOUBLE | GLUT_DEPTH);
glutInitWindowSize(1440, 900);
//glutInitWindowPosition((glutGet(GLUT_SCREEN_WIDTH) / 2) - (glutGet(GLUT_WINDOW_WIDTH) / 2), (glutGet(GLUT_SCREEN_HEIGHT) / 2) - (glutGet(GLUT_WINDOW_HEIGHT) / 2));
glutCreateWindow("Crystal Point");
//glutFullScreen();
//Depth testing
glEnable(GL_DEPTH_TEST);
//Alpha blending
glEnable(GL_BLEND);
glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
//Alpha testing
glEnable(GL_ALPHA_TEST);
glAlphaFunc(GL_GREATER, 0.01f);
//Lighting
GLfloat mat_specular[] = { 0.2, 0.2, 0.2, 0 };
//GLfloat mat_shininess[] = { 5.0 };
GLfloat light_position[] = { 0.0, 2.0, 1.0, 0 };
GLfloat light_diffuse[] = { 1.0, 1.0, 1.0, 0 };
GLfloat light_ambient[] = { 0.3, 0.3, 0.3, 0 };
glClearColor(0.7, 0.7, 1.0, 1.0);
//glMaterialfv(GL_FRONT, GL_SPECULAR, mat_specular);
//glMaterialfv(GL_FRONT, GL_SHININESS, mat_shininess);
//glLightfv(GL_LIGHT0, GL_DIFFUSE, light_diffuse);
//glLightfv(GL_LIGHT0, GL_AMBIENT, light_ambient);
glEnable(GL_LIGHTING);
glEnable(GL_LIGHT0);
//glEnable(GL_COLOR_MATERIAL);
glutSetCursor(GLUT_CURSOR_NONE);
}
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#include <GL/freeglut.h>
#include "Menu.h"
#include "CrystalPoint.h"
Menu::Menu()
{
cursor = Cursor::getInstance();
}
Menu::~Menu()
{
}
void Menu::draw(void)
{
//Switch view to Ortho
glMatrixMode(GL_PROJECTION);
glLoadIdentity();
glOrtho(0, CrystalPoint::width, CrystalPoint::height, 0, -10, 10);
glMatrixMode(GL_MODELVIEW);
glLoadIdentity();
glDisable(GL_LIGHTING);
glDisable(GL_DEPTH_TEST);
glDisable(GL_TEXTURE_2D);
glColor4f(60/255.0f, 60/255.0f, 60/255.0f, 0.8f);
glBegin(GL_QUADS);
glVertex2f(0,0);
glVertex2f(0, CrystalPoint::height);
glVertex2f(CrystalPoint::width, CrystalPoint::height);
glVertex2f(CrystalPoint::width, 0);
glEnd();
for (MenuElement* e : elements)
{
e->draw();
}
cursor->draw();
glEnable(GL_LIGHTING);
glEnable(GL_DEPTH_TEST);
}
void Menu::update()
{
for (MenuElement* e : elements)
{
e->update(cursor->mousePosition.x, cursor->mousePosition.y);
}
}
void Menu::AddMenuElement(MenuElement * e)
{
elements.push_back(e);
}
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#pragma once
#include <vector>
#include "MenuElement.h"
#include "Cursor.h"
class Menu
{
private:
std::vector<MenuElement*> elements;
Cursor* cursor;
public:
Menu();
~Menu();
void draw(void);
void update(void);
void AddMenuElement(MenuElement* e);
};
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#include "MenuElement.h"
MenuElement::MenuElement(Vec2f position)
{
hover = false;
this->position = position;
}
MenuElement::~MenuElement()
{
}
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#pragma once
#include "Vector.h"
#include <string>
class MenuElement
{
protected:
bool hover;
Vec2f position;
public:
MenuElement(Vec2f position);
~MenuElement();
virtual void draw(void) {};
virtual void update(int x, int y) {};
};
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#include "Model.h"
#include "stb_image.h"
#include <iostream>
#include <fstream>
#include <string>
#include <algorithm>
#include <cmath>
#include <cstring>
//Prototypes
std::vector<std::string> split(std::string str, std::string sep);
std::string replace(std::string str, std::string toReplace, std::string replacement);
std::string toLower(std::string data);
Model::Model(std::string fileName)
{
std::string dirName = fileName;
if (dirName.rfind("/") != std::string::npos)
dirName = dirName.substr(0, dirName.rfind("/"));
if (dirName.rfind("\\") != std::string::npos)
dirName = dirName.substr(0, dirName.rfind("\\"));
if (fileName == dirName)
dirName = "";
std::ifstream pFile(fileName.c_str());
if (!pFile.is_open())
{
std::cout << "Could not open file " << fileName << std::endl;
return;
}
ObjGroup* currentGroup = new ObjGroup();
currentGroup->materialIndex = -1;
while (!pFile.eof())
{
std::string line;
std::getline(pFile, line);
line = replace(line, "\t", " ");
while (line.find(" ") != std::string::npos)
line = replace(line, " ", " ");
if (line == "")
continue;
if (line[0] == ' ')
line = line.substr(1);
if (line == "")
continue;
if (line[line.length() - 1] == ' ')
line = line.substr(0, line.length() - 1);
if (line == "")
continue;
if (line[0] == '#')
continue;
std::vector<std::string> params = split(line, " ");
params[0] = toLower(params[0]);
if (params[0] == "v")
vertices.push_back(Vec3f((float)atof(params[1].c_str()), (float)atof(params[2].c_str()), (float)atof(params[3].c_str())));
else if (params[0] == "vn")
normals.push_back(Vec3f((float)atof(params[1].c_str()), (float)atof(params[2].c_str()), (float)atof(params[3].c_str())));
else if (params[0] == "vt")
texcoords.push_back(Vec2f((float)atof(params[1].c_str()), (float)atof(params[2].c_str())));
else if (params[0] == "f")
{
for (size_t ii = 4; ii <= params.size(); ii++)
{
Face face;
for (size_t i = ii - 3; i < ii; i++) //magische forlus om van quads triangles te maken ;)
{
VertexIndex vertex;
std::vector<std::string> indices = split(params[i == (ii - 3) ? 1 : i], "/");
if (indices.size() >= 1) //er is een positie
vertex.position = atoi(indices[0].c_str()) - 1;
if (indices.size() == 2) //alleen texture
vertex.texcoord = atoi(indices[1].c_str()) - 1;
if (indices.size() == 3) //v/t/n of v//n
{
if (indices[1] != "")
vertex.texcoord = atoi(indices[1].c_str()) - 1;
vertex.normal = atoi(indices[2].c_str()) - 1;
}
face.vertices.push_back(vertex);
}
currentGroup->faces.push_back(face);
}
}
else if (params[0] == "s")
{//smoothing
}
else if (params[0] == "mtllib")
{
loadMaterialFile(dirName + "/" + params[1], dirName);
}
else if (params[0] == "usemtl")
{
if (currentGroup->faces.size() != 0)
groups.push_back(currentGroup);
currentGroup = new ObjGroup();
currentGroup->materialIndex = -1;
for (size_t i = 0; i < materials.size(); i++)
{
MaterialInfo* info = materials[i];
if (info->name == params[1])
{
currentGroup->materialIndex = i;
break;
}
}
if (currentGroup->materialIndex == -1)
std::cout << "Could not find material name " << params[1] << std::endl;
}
}
groups.push_back(currentGroup);
minVertex = vertices[0];
maxVertex = vertices[0];
for (auto v : vertices)
{
for (int i = 0; i < 3; i++)
{
minVertex[i] = fmin(minVertex[i], v[i]);
maxVertex[i] = fmax(maxVertex[i], v[i]);
}
}
center = (minVertex + maxVertex) / 2.0f;
radius = 0;
for (auto v : vertices)
radius = fmax(radius, (center.x - v.x) * (center.x - v.x) + (center.z - v.z) * (center.z - v.z));
radius = sqrt(radius);
for (ObjGroup *group : groups)
{
Optimise(group);
}
}
void Model::Optimise(ObjGroup *t)
{
for (Face &face : t->faces)
{
for (auto &vertex : face.vertices)
{
t->VertexArray.push_back(Vertex(vertices[vertex.position].x, vertices[vertex.position].y, vertices[vertex.position].z,
normals[vertex.normal].x, normals[vertex.normal].y, normals[vertex.normal].z,
texcoords[vertex.texcoord].x, texcoords[vertex.texcoord].y));
}
}
}
void Model::draw()
{
glEnableClientState(GL_VERTEX_ARRAY);
glEnableClientState(GL_NORMAL_ARRAY);
glEnableClientState(GL_TEXTURE_COORD_ARRAY);
for (auto &g : groups)
{
if (materials[g->materialIndex]->hasTexture)
{
glEnable(GL_TEXTURE_2D);
materials[g->materialIndex]->texture->bind();
}
else
{
glDisable(GL_TEXTURE_2D);
float color[4] = { 1, 0, 0, 1 };
if (materials[g->materialIndex]->hasDiffuse)
{
memcpy(color, materials[g->materialIndex]->diffuseColor.v, 3 * sizeof(float));
glMaterialfv(GL_FRONT_AND_BACK, GL_DIFFUSE, color);
}
else if (materials[g->materialIndex]->hasAmbient)
{
memcpy(color, materials[g->materialIndex]->ambientColor.v, 3 * sizeof(float));
glMaterialfv(GL_FRONT_AND_BACK, GL_AMBIENT, color);
}
else if (materials[g->materialIndex]->hasSpecular)
{
memcpy(color, materials[g->materialIndex]->specularColor.v, 3 * sizeof(float));
glMaterialfv(GL_FRONT_AND_BACK, GL_SPECULAR, color);
}
}
glVertexPointer(3, GL_FLOAT, sizeof(Vertex), ((float*)g->VertexArray.data()) + 0);
glNormalPointer(GL_FLOAT, sizeof(Vertex), ((float*)g->VertexArray.data()) + 3);
glTexCoordPointer(2, GL_FLOAT, sizeof(Vertex), ((float*)g->VertexArray.data()) + 6);
glDrawArrays(GL_TRIANGLES, 0, g->VertexArray.size());
}
glDisableClientState(GL_VERTEX_ARRAY);
glDisableClientState(GL_NORMAL_ARRAY);
glDisableClientState(GL_TEXTURE_COORD_ARRAY);
}
void Model::loadMaterialFile(std::string fileName, std::string dirName)
{
std::ifstream pFile(fileName.c_str());
if (!pFile.is_open())
{
std::cout << "Could not open file " << fileName << std::endl;
return;
}
MaterialInfo* currentMaterial = NULL;
while (!pFile.eof())
{
std::string line;
std::getline(pFile, line);
line = replace(line, "\t", " ");
while (line.find(" ") != std::string::npos)
line = replace(line, " ", " ");
if (line == "")
continue;
if (line[0] == ' ')
line = line.substr(1);
if (line == "")
continue;
if (line[line.length() - 1] == ' ')
line = line.substr(0, line.length() - 1);
if (line == "")
continue;
if (line[0] == '#')
continue;
std::vector<std::string> params = split(line, " ");
params[0] = toLower(params[0]);
if (params[0] == "newmtl")
{
if (currentMaterial != NULL)
{
materials.push_back(currentMaterial);
}
currentMaterial = new MaterialInfo();
currentMaterial->name = params[1];
}
else if (params[0] == "map_kd")
{
currentMaterial->hasTexture = true;
currentMaterial->texture = new Texture(dirName + "/" + params[1]);
}
else if (params[0] == "kd")
{
currentMaterial->hasDiffuse = true;
currentMaterial->diffuseColor = Vec3f(atof(params[1].c_str()), atof(params[2].c_str()), atof(params[3].c_str()));
}
else if (params[0] == "ka")
{
currentMaterial->hasAmbient = true;
currentMaterial->ambientColor = Vec3f(atof(params[1].c_str()), atof(params[2].c_str()), atof(params[3].c_str()));
}
else if (params[0] == "ks")
{
currentMaterial->hasSpecular = true;
currentMaterial->specularColor = Vec3f(atof(params[1].c_str()), atof(params[2].c_str()), atof(params[3].c_str()));
}
else
std::cout << "Didn't parse " << params[0] << " in material file" << std::endl;
}
if (currentMaterial != NULL)
materials.push_back(currentMaterial);
}
Model::MaterialInfo::MaterialInfo()
{
hasTexture = false;
}
Model::Texture::Texture(const std::string & fileName)
{
int width, height, bpp;
stbi_set_flip_vertically_on_load(true);
unsigned char* imgData = stbi_load(fileName.c_str(), &width, &height, &bpp, 4);
glGenTextures(1, &index);
glBindTexture(GL_TEXTURE_2D, index);
glTexImage2D(GL_TEXTURE_2D,
0, //level
GL_RGBA, //internal format
width, //width
height, //height
0, //border
GL_RGBA, //data format
GL_UNSIGNED_BYTE, //data type
imgData); //data
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP);
stbi_image_free(imgData);
}
void Model::Texture::bind()
{
glBindTexture(GL_TEXTURE_2D, index);
}
std::string replace(std::string str, std::string toReplace, std::string replacement)
{
size_t index = 0;
while (true)
{
index = str.find(toReplace, index);
if (index == std::string::npos)
break;
str.replace(index, toReplace.length(), replacement);
++index;
}
return str;
}
std::vector<std::string> split(std::string str, std::string sep)
{
std::vector<std::string> ret;
size_t index;
while (true)
{
index = str.find(sep);
if (index == std::string::npos)
break;
ret.push_back(str.substr(0, index));
str = str.substr(index + 1);
}
ret.push_back(str);
return ret;
}
inline std::string toLower(std::string data)
{
std::transform(data.begin(), data.end(), data.begin(), ::tolower);
return data;
}
std::map<std::string, std::pair<Model*, int>> Model::cache;
Model* Model::load(const std::string &fileName)
{
if (cache.find(fileName) == cache.end())
cache[fileName] = std::pair<Model*, int>(new Model(fileName), 0);
cache[fileName].second++;
return cache[fileName].first;
}
void Model::unload(Model* model)
{
for (auto m : cache)
{
if (m.second.first == model)
{
m.second.second--;
if (m.second.second == 0)
{
delete m.second.first;
cache.erase(cache.find(m.first));
break;
}
}
}
}
Model::~Model(void)
{
}
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#pragma once
#include <GL/freeglut.h>
#include <list>
#include <vector>
#include <map>
#include "Vector.h"
#include "Vertex.h"
class Model
{
private:
class VertexIndex
{
public:
int position;
int normal;
int texcoord;
};
class Face
{
public:
std::list<VertexIndex> vertices;
};
class Texture
{
GLuint index;
public:
Texture(const std::string &fileName);
void bind();
};
class MaterialInfo
{
public:
MaterialInfo();
std::string name;
Texture* texture;
bool hasTexture;
bool hasDiffuse;
Vec3f diffuseColor;
bool hasAmbient;
Vec3f ambientColor;
bool hasSpecular;
Vec3f specularColor;
};
class ObjGroup
{
public:
std::string name;
int materialIndex;
std::list<Face> faces;
std::vector<Vertex> VertexArray;
};
std::vector<Vec3f> vertices;
std::vector<Vec3f> normals;
std::vector<Vec2f> texcoords;
std::vector<ObjGroup*> groups;
std::vector<MaterialInfo*> materials;
void loadMaterialFile(std::string fileName, std::string dirName);
Model(std::string filename);
~Model(void);
public:
static std::map<std::string, std::pair<Model*, int> > cache;
static Model* load(const std::string &fileName);
static void unload(Model* model);
void draw();
void Optimise(ObjGroup *t);
Vec3f minVertex;
Vec3f maxVertex;
Vec3f center;
float radius;
};
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#define _USE_MATH_DEFINES
#include <cmath>
#include "Player.h"
#include <GL/freeglut.h>
#include <string>
#include <iostream>
#include <fstream>
Player* Player::instance = NULL;
Player::Player()
{
speed = 10;
maxHp = 100;
health = maxHp;
xp = 0;
maxXp = 100;
level = 1;
crystals = 0;
loadWeapons();
currentleftweapon = 0;
leftWeapon = leftweapons[0];
leftWeapon->rotateWeapon(Vec3f(150, 0, 60));
currentrightweapon = 0;
rightWeapon = rightweapons[0];
rightWeapon->rotateWeapon(Vec3f(150, 0, 60));
}
Player* Player::getInstance()
{
if (instance == nullptr)
instance = new Player();
return instance;
}
void Player::init()
{
instance = new Player();
}
Player::~Player()
{
if (leftWeapon)
delete leftWeapon;
if (rightWeapon)
delete rightWeapon;
}
void Player::setCamera()
{
glRotatef(rotation.x, 1, 0, 0);
glRotatef(rotation.y, 0, 1, 0);
glTranslatef(-position.x, -position.y, -position.z);
leftWeapon->rotate(rotation);
rightWeapon->rotate(rotation);
}
void Player::setPosition(float angle, float fac, bool height)
{
if (height)
position.y += angle*fac;
else
{
position.x -= (float)cos((rotation.y + angle) / 180 * M_PI) * fac;
position.z -= (float)sin((rotation.y + angle) / 180 * M_PI) * fac;
}
leftWeapon->move(position);
rightWeapon->move(position);
}
void Player::draw() {
leftWeapon->draw();
rightWeapon->draw();
}
void Player::HpDown(int damage)
{
int newHealth = health - damage;
if (newHealth <= 0)
{
exit(0);
}
health = newHealth;
}
void Player::HpUp(int hp)
{
if (health != maxHp)
{
int newHealth = health + hp;
if (newHealth >= maxHp)
{
newHealth = maxHp;
}
health = newHealth;
}
}
void Player::XpUp(int xpUp)
{
float newXp = xp + xpUp;
if (newXp >= maxXp)
{
newXp -= maxXp;
levelUp();
}
xp = newXp;
}
void Player::levelUp()
{
level++;
maxXp += 50;
maxHp += 10;
health = maxHp;
}
void Player::loadWeapons()
{
std::string fileName = "weapons.json";
//Open world json file
std::ifstream file(fileName);
if (!file.is_open())
std::cout << "Error, can't open world file - " << fileName << "\n";
json::Value v = json::readJson(file);
file.close();
//Check file
if (v["weapons"].isNull())
std::cout << "Invalid weapons file: " << fileName << "\n";
//Load object templates
for (auto w : v["weapons"])
{
Weapon* lweapon;
Weapon* rweapon;
std::string name = w["name"].asString();
std::string fileN = w["file"].asString();
float damage = w["damage"].asFloat();
Weapon::Element e = Weapon::FIRE;
if(w["element"].asString() == "fire")
e = Weapon::FIRE;
else if (w["element"].asString() == "water")
e = Weapon::WATER;
else if (w["element"].asString() == "earth")
e = Weapon::EARTH;
else if (w["element"].asString() == "air")
e = Weapon::AIR;
else
e = Weapon::FIRE;
Vec3f leftoffset = Vec3f(w["left"]["offset"][0].asFloat(), w["left"]["offset"][1].asFloat(), w["left"]["offset"][2].asFloat());
Vec3f rightoffset = Vec3f(w["right"]["offset"][0].asFloat(), w["right"]["offset"][1].asFloat(), w["right"]["offset"][2].asFloat());
Vec3f anchor = Vec3f(w["anchor"][0].asFloat(), w["anchor"][1].asFloat(), w["anchor"][2].asFloat());
Vec3f collision = Vec3f(w["collision"][0].asFloat(), w["collision"][1].asFloat(), w["collision"][2].asFloat());
Vec2f maxRot = Vec2f(w["maxRotation"][0].asFloat(), w["maxRotation"][1].asFloat());
Vec2f minRot = Vec2f(w["minRotation"][0].asFloat(), w["minRotation"][1].asFloat());
lweapon = new Weapon(name, damage, e, fileN, 1, position, rotation, leftoffset, anchor, maxRot, minRot, collision);
rweapon = new Weapon(name, damage, e, fileN, 1, position, rotation, rightoffset, anchor, maxRot, minRot, collision);
leftweapons.push_back(lweapon);
rightweapons.push_back(rweapon);
}
}
void Player::PreviousRightWeapon()
{
currentrightweapon--;
if (currentrightweapon < 0)
currentrightweapon = (rightweapons.size() > level ? level - 1 : rightweapons.size() - 1);
rightWeapon = rightweapons[currentrightweapon];
}
void Player::NextRightWeapon(void)
{
currentrightweapon++;
if (currentrightweapon > level - 1 || currentrightweapon > rightweapons.size() - 1)
currentrightweapon = 0;
rightWeapon = rightweapons[currentrightweapon];
}
void Player::PreviousLeftWeapon(void)
{
currentleftweapon--;
if (currentleftweapon < 0)
currentleftweapon = (leftweapons.size() > level ? level - 1 : leftweapons.size() - 1);
leftWeapon = leftweapons[currentleftweapon];
}
void Player::NextLeftWeapon(void)
{
currentleftweapon++;
if (currentleftweapon > level - 1 || currentleftweapon > leftweapons.size() - 1)
currentleftweapon = 0;
leftWeapon = leftweapons[currentleftweapon];
}
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#pragma once
#include "Vector.h"
#include "Weapon.h"
#include "json.h"
#include <vector>
class Player
{
private:
static Player* instance;
void levelUp();
std::vector<Weapon*> leftweapons;
std::vector<Weapon*> rightweapons;
void loadWeapons(void);
int currentrightweapon;
int currentleftweapon;
public:
Player();
~Player();
void setCamera();
void setPosition(float angle, float fac, bool height);
void draw(void);
static Player* getInstance(void);
static void init(void);
Vec3f position;
Vec2f rotation;
Weapon* leftWeapon;
Weapon* rightWeapon;
float health, maxHp;
float xp, maxXp;
int level;
int crystals;
float speed;
void HpUp(int);
void HpDown(int);
void XpUp(int);
void PreviousRightWeapon(void);
void NextRightWeapon(void);
void PreviousLeftWeapon(void);
void NextLeftWeapon(void);
};
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#include "Portal.h"
#include "Model.h"
#include <iostream>
#include "Player.h"
#include "WorldHandler.h"
Portal::Portal(const std::string &fileName,
const Vec3f &position,
Vec3f &rotation,
const float &scale)
{
model = Model::load(fileName);
this->position = position;
this->rotation = rotation;
this->scale = scale;
this->canCollide = true;
started = false;
delay = 0;
sound_id = CrystalPoint::GetSoundSystem().LoadSound("WAVE/portal.wav", false);
music = CrystalPoint::GetSoundSystem().GetSound(sound_id);
music->SetPos(position, Vec3f());
mayEnter = false;
maxCrystals = 0;
}
Portal::~Portal()
{
// Model::unload(model);
CrystalPoint::GetSoundSystem().UnloadSound(sound_id);
}
void Portal::collide()
{
if (maxCrystals == (Player::getInstance()->crystals) && !mayEnter)
{
canCollide = false;
mayEnter = true;
}
}
bool Portal::enter(float deltaTime)
{
if (delay > 3 && started)
{
delay = 0;
return true;
}
if (delay == 0 && !started)
{
music->Play();
started = true;
}
delay += deltaTime;
return false;
}
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#pragma once
#include "Entity.h"
#include <string>
#include "CrystalPoint.h"
class Portal :
public Entity
{
public:
Portal(const std::string &fileName,
const Vec3f &position,
Vec3f &rotation,
const float &scale);
~Portal();
bool enter(float deltaTime);
void collide();
int maxCrystals;
bool mayEnter;
private:
int sound_id;
Sound* music;
bool started;
float delay;
};
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# CrystalPoint
Crystal Point: The Elemental Labyrinth
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========================================================================
CONSOLE APPLICATION : CrystalPoint Project Overview
========================================================================
AppWizard has created this CrystalPoint application for you.
This file contains a summary of what you will find in each of the files that
make up your CrystalPoint application.
CrystalPoint.vcxproj
This is the main project file for VC++ projects generated using an Application Wizard.
It contains information about the version of Visual C++ that generated the file, and
information about the platforms, configurations, and project features selected with the
Application Wizard.
CrystalPoint.vcxproj.filters
This is the filters file for VC++ projects generated using an Application Wizard.
It contains information about the association between the files in your project
and the filters. This association is used in the IDE to show grouping of files with
similar extensions under a specific node (for e.g. ".cpp" files are associated with the
"Source Files" filter).
CrystalPoint.cpp
This is the main application source file.
/////////////////////////////////////////////////////////////////////////////
Other standard files:
StdAfx.h, StdAfx.cpp
These files are used to build a precompiled header (PCH) file
named CrystalPoint.pch and a precompiled types file named StdAfx.obj.
/////////////////////////////////////////////////////////////////////////////
Other notes:
AppWizard uses "TODO:" comments to indicate parts of the source code you
should add to or customize.
/////////////////////////////////////////////////////////////////////////////
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#include "cmath"
#include <GL/freeglut.h>
#include "Util.h"
#include "stb_image.h"
#include "Skybox.h"
#include <string>
#include <iostream>
enum{SKY_LEFT=0,SKY_BACK,SKY_RIGHT,SKY_FRONT,SKY_TOP,SKY_BOTTOM};
GLuint skybox[6];
Skybox::Skybox(const float &size, const std::string &folder)
{
this->size = size;
this->folder = folder;
brightness = 80;
targetBrightness = 80;
}
Skybox::~Skybox()
{
glDeleteTextures(6, &skybox[0]);
}
void Skybox::init()
{
skybox[SKY_LEFT] = Util::loadTexture(folder + "left.png");
skybox[SKY_BACK] = Util::loadTexture(folder + "back.png");
skybox[SKY_RIGHT] = Util::loadTexture(folder + "right.png");
skybox[SKY_FRONT] = Util::loadTexture(folder + "front.png");
skybox[SKY_TOP] = Util::loadTexture(folder + "top.png");
skybox[SKY_BOTTOM] = Util::loadTexture(folder + "bottom.png");
}
void Skybox::draw()
{
glColor4f(brightness/255, brightness/255, brightness/255, 1);
bool b1 = glIsEnabled(GL_TEXTURE_2D);
glDisable(GL_LIGHTING);
glDisable(GL_DEPTH_TEST);
glEnable(GL_TEXTURE_2D);
glDisable(GL_COLOR_MATERIAL);
glBindTexture(GL_TEXTURE_2D, skybox[SKY_BACK]);
glBegin(GL_QUADS);
glTexCoord2f(1,1);
glVertex3f(size / 2, size / 2, size / 2);
glTexCoord2f(0,1);
glVertex3f(-size / 2, size / 2, size / 2);
glTexCoord2f(0,0);
glVertex3f(-size / 2, -size / 2, size / 2);
glTexCoord2f(1,0);
glVertex3f(size / 2, -size / 2, size / 2);
glEnd();
glBindTexture(GL_TEXTURE_2D, skybox[SKY_LEFT]);
glBegin(GL_QUADS);
//left face
glTexCoord2f(1,1);
glVertex3f(-size / 2, size / 2, size / 2);
glTexCoord2f(0,1);
glVertex3f(-size / 2, size / 2, -size / 2);
glTexCoord2f(0,0);
glVertex3f(-size / 2, -size / 2, -size / 2);
glTexCoord2f(1,0);
glVertex3f(-size / 2, -size / 2, size / 2);
glEnd();
glBindTexture(GL_TEXTURE_2D, skybox[SKY_FRONT]);
glBegin(GL_QUADS);
//front face
glTexCoord2f(0, 1);
glVertex3f(size / 2, size / 2, -size / 2);
glTexCoord2f(1, 1);
glVertex3f(-size / 2, size / 2, -size / 2);
glTexCoord2f(1, 0);
glVertex3f(-size / 2, -size / 2, -size / 2);
glTexCoord2f(0, 0);
glVertex3f(size / 2, -size / 2, -size / 2);
glEnd();
glBindTexture(GL_TEXTURE_2D, skybox[SKY_RIGHT]);
glBegin(GL_QUADS);
//right face
glTexCoord2f(1, 1);
glVertex3f(size / 2, size / 2, -size / 2);
glTexCoord2f(0,1);
glVertex3f(size / 2, size / 2, size / 2);
glTexCoord2f(0,0);
glVertex3f(size / 2, -size / 2, size / 2);
glTexCoord2f(1, 0);
glVertex3f(size / 2, -size / 2, -size / 2);
glEnd();
glBindTexture(GL_TEXTURE_2D, skybox[SKY_TOP]);
glBegin(GL_QUADS); //top face
glTexCoord2f(0,0);
glVertex3f(size / 2, size / 2, size / 2);
glTexCoord2f(0,1);
glVertex3f(-size / 2, size / 2, size / 2);
glTexCoord2f(1,1);
glVertex3f(-size / 2, size / 2, -size / 2);
glTexCoord2f(1,0);
glVertex3f(size / 2, size / 2, -size / 2);
glEnd();
glBindTexture(GL_TEXTURE_2D, skybox[SKY_BOTTOM]);
glBegin(GL_QUADS);
//bottom face
glTexCoord2f(0,1);
glVertex3f(size / 2, -size / 2, size / 2);
glTexCoord2f(0,0);
glVertex3f(-size / 2, -size / 2, size / 2);
glTexCoord2f(1,0);
glVertex3f(-size / 2, -size / 2, -size / 2);
glTexCoord2f(1,1);
glVertex3f(size / 2, -size / 2, -size / 2);
glEnd();
glEnable(GL_LIGHTING); //turn everything back, which we turned on, and turn everything off, which we have turned on.
glEnable(GL_DEPTH_TEST);
if (!b1)
glDisable(GL_TEXTURE_2D);
}
void Skybox::update(float deltaTime, int curr, int max)
{
targetBrightness = 80 + ((255 - 80) / max) * curr;
if (targetBrightness > brightness + 2)
{
brightness += 20 * deltaTime;
}
if (targetBrightness < brightness - 2)
{
brightness -= 20 * deltaTime;
}
}
GLuint Skybox::loadTexture(const std::string & fileName) //load the filename named texture
{
int width, height, bpp;
stbi_set_flip_vertically_on_load(true);
unsigned char* imgData = stbi_load(fileName.c_str(), &width, &height, &bpp, 4);
GLuint num;
glGenTextures(1, &num);
glBindTexture(GL_TEXTURE_2D, num);
glTexImage2D(GL_TEXTURE_2D,
0, //level
GL_RGBA, //internal format
width, //width
height, //height
0, //border
GL_RGBA, //data format
GL_UNSIGNED_BYTE, //data type
imgData); //data
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP);
stbi_image_free(imgData);
return num;
}
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#pragma once
#include <string>
class Skybox
{
private:
float size;
std::string folder;
float brightness;
float targetBrightness;
public:
Skybox(const float &size, const std::string &folder);
~Skybox();
void init();
void draw();
void update(float deltaTime, int, int);
GLuint loadTexture(const std::string &fileName);
};
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#include "Sound.h"
#include <iostream>
#ifdef WIN32
#include <windows.h>
#include <al.h>
#else
#include <AL/al.h>
typedef unsigned long DWORD;
typedef unsigned short WORD;
typedef unsigned int UNINT32;
typedef unsigned char BYTE;
#endif
Sound::Sound(const char* inWavPath, bool inLooping):
buffer_id(0),
source_id(0),
is_looping(inLooping)
{
const char* path = inWavPath;
FILE *fp = fopen(path, "rb"); // Open the WAVE file
if (!fp)
return; // Could not open file
// Check that the WAVE file is OK
char type[4];
fread(type, sizeof(char), 4, fp); // Reads the first bytes in the file
if (type[0] != 'R' || type[1] != 'I' || type[2] != 'F' || type[3] != 'F') // Should be "RIFF"
return; // Not RIFF
DWORD size;
fread(&size, sizeof(DWORD), 1, fp); // Continue to read the file
fread(type, sizeof(char), 4, fp); // Continue to read the file
if (type[0] != 'W' || type[1] != 'A' || type[2] != 'V' || type[3] != 'E') // This part should be "WAVE"
return; // Not WAVE
fread(type, sizeof(char), 4, fp); // Continue to read the file
if (type[0] != 'f' || type[1] != 'm' || type[2] != 't' || type[3] != ' ') // This part should be "fmt "
return; // Not fmt
// Now we know that the file is a acceptable WAVE file
// Info about the WAVE data is now read and stored
DWORD chunkSize;
fread(&chunkSize, sizeof(DWORD), 1, fp);
short formatType;
fread(&formatType, sizeof(short), 1, fp);
short channels;
fread(&channels, sizeof(short), 1, fp);
DWORD sampleRate;
fread(&sampleRate, sizeof(DWORD), 1, fp);
DWORD avgBytesPerSec;
fread(&avgBytesPerSec, sizeof(DWORD), 1, fp);
short bytesPerSample;
fread(&bytesPerSample, sizeof(short), 1, fp);
short bitsPerSample;
fread(&bitsPerSample, sizeof(short), 1, fp);
ALenum format = 0; // The audio format (bits per sample, number of channels)
if (bitsPerSample == 8)
{
if (channels == 1)
format = AL_FORMAT_MONO8;
else if (channels == 2)
format = AL_FORMAT_STEREO8;
}
else if (bitsPerSample == 16)
{
if (channels == 1)
format = AL_FORMAT_MONO16;
else if (channels == 2)
format = AL_FORMAT_STEREO16;
}
if (!format)
return; // Not valid format
fread(type, sizeof(char), 4, fp);
if (type[0] != 'd' || type[1] != 'a' || type[2] != 't' || type[3] != 'a') // This part should be "data"
return; // not data
DWORD dataSize;
fread(&dataSize, sizeof(DWORD), 1, fp); // The size of the sound data is read
// Display the info about the WAVE file
std::cout << "Chunk Size: " << chunkSize << "\n";
std::cout << "Format Type: " << formatType << "\n";
std::cout << "Channels: " << channels << "\n";
std::cout << "Sample Rate: " << sampleRate << "\n";
std::cout << "Average Bytes Per Second: " << avgBytesPerSec << "\n";
std::cout << "Bytes Per Sample: " << bytesPerSample << "\n";
std::cout << "Bits Per Sample: " << bitsPerSample << "\n";
std::cout << "Data Size: " << dataSize << "\n";
unsigned char* buf = new unsigned char[dataSize]; // Allocate memory for the sound data
std::cout << fread(buf, sizeof(BYTE), dataSize, fp) << " bytes loaded\n"; // Read the sound data and display the
fclose(fp);
alGenBuffers(1, &buffer_id); // Generate one OpenAL Buffer and link to "buffer"
alGenSources(1, &source_id); // Generate one OpenAL Source and link to "source"
if (alGetError() != AL_NO_ERROR)
return; // Error during buffer/source generation
alBufferData(buffer_id, format, buf, dataSize, sampleRate); // Store the sound data in the OpenAL Buffer
if (alGetError() != AL_NO_ERROR)
return; // Error during buffer loading
delete[] buf; // Delete the sound data buffer
}
Sound::~Sound()
{
alSourceStop(source_id);
alDeleteSources(1, &source_id); // Delete the OpenAL Source
alDeleteBuffers(1, &buffer_id); // Delete the OpenAL Buffer
}
void Sound::SetPos(const Vec3f& inPos, const Vec3f& inVel)
{
alSourcei(source_id, AL_BUFFER, buffer_id); // Link the buffer to the source
alSourcef(source_id, AL_PITCH, 1.0f); // Set the pitch of the source
alSourcef(source_id, AL_GAIN, 1.0f); // Set the gain of the source
alSourcefv(source_id, AL_POSITION, inPos.v); // Set the position of the source
alSourcefv(source_id, AL_VELOCITY, inVel.v); // Set the velocity of the source
alSourcei(source_id, AL_LOOPING, is_looping ? AL_TRUE : AL_FALSE); // Set if source is looping sound
}
void Sound::Play()
{
alSourcePlay(source_id);
int e = alGetError(); // != AL_NO_ERROR) return;
}
void Sound::Pause()
{
alSourcePause(source_id);
}
void Sound::Stop()
{
alSourceStop(source_id);
}
bool Sound::IsPlaying()
{
ALenum state;
alGetSourcei(source_id, AL_SOURCE_STATE, &state);
return (state == AL_PLAYING);
}
bool Sound::IsStopped()
{
ALenum state;
alGetSourcei(source_id, AL_SOURCE_STATE, &state);
std::cout << "MUSIC STATE: " << state << std::endl;
return (state == AL_STOPPED);
}
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#pragma once
#include "Vector.h"
class Sound
{
public:
Sound(const char* inWavPath, bool inLooping);
~Sound();
void SetPos(const Vec3f& inPos, const Vec3f& inVel);
void Play();
void Pause();
void Stop();
bool IsPlaying();
bool IsStopped();
private:
unsigned int buffer_id;
unsigned int source_id;
bool is_looping;
};
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#include "SoundSystem.h"
SoundSystem::SoundSystem():
device(nullptr),
context(nullptr)
{
device = alcOpenDevice(nullptr);
if (!device)
return;
context = alcCreateContext(device, nullptr);
if (!context)
return;
alcMakeContextCurrent(context);
}
SoundSystem::~SoundSystem()
{
for (auto sound : sounds)
delete sound;
alcMakeContextCurrent(nullptr);
alcDestroyContext(context);
alcCloseDevice(device);
}
void SoundSystem::SetListener(const Vec3f& inPos, const Vec3f& inVel, const Vec3f& inOri)
{
ALfloat orientation[] = { 0.0, 0.0, -1.0, 0.0, 1.0, 0.0 };
alListenerfv(AL_POSITION, inPos.v);
alListenerfv(AL_VELOCITY, inVel.v);
alListenerfv(AL_ORIENTATION, orientation);
}
unsigned int SoundSystem::LoadSound(const char* inWavPath, bool inLooping)
{
Sound* sound = new Sound(inWavPath, inLooping);
sounds.push_back(sound);
return sounds.size() - 1;
}
Sound* SoundSystem::GetSound(unsigned int inID)
{
if (inID > sounds.size())
return nullptr;
return sounds[inID];
}
void SoundSystem::UnloadSound(unsigned int inID)
{
if (inID > sounds.size())
return;
delete sounds[inID];
//sounds.erase(sounds.begin() + inID);
}
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#pragma once
#include <vector>
#ifdef WIN32
#include <al.h>
#include <alc.h>
#else
#include <AL/al.h>
#include <AL/alc.h>
#endif
#include "Vector.h"
#include "Sound.h"
class SoundSystem
{
public:
SoundSystem();
~SoundSystem();
void SetListener(const Vec3f& inPos, const Vec3f& inVel, const Vec3f& inOri);
unsigned int LoadSound(const char* inWavPath, bool inLooping);
Sound* GetSound(unsigned int inID);
void UnloadSound(unsigned int inID);
private:
ALCdevice* device;
ALCcontext* context;
std::vector<Sound*> sounds;
};
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#include "Text.h"
Text::Text(const std::string &text, Vec2f position) : MenuElement(position)
{
this->text = text;
color = Vec3f(50, 150, 150);
textHeight = 14;
textWidth = Util::glutTextWidth(text);
}
Text::~Text()
{
}
void Text::draw()
{
glColor4f(color.x/255.0f, color.y/255.0f, color.z/255.0f, 1.0f);
Util::glutBitmapString(text, position.x-1, position.y+textHeight);
}
void Text::update(int x, int y)
{
//Do nothing
}
void Text::setColor(Vec3f color)
{
this->color = color;
}
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#pragma once
#include "MenuElement.h"
#include "Vector.h"
#include "Util.h"
class Text : public MenuElement
{
private:
std::string text;
Vec3f color;
protected:
int textWidth;
int textHeight;
public:
Text(const std::string &text, Vec2f position);
~Text();
virtual void draw();
virtual void update(int x, int y);
void setColor(Vec3f color);
};
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#include "Util.h"
#include "stb_image.h"
Util::Util()
{
}
Util::~Util()
{
}
GLuint Util::loadTexture(const std::string &filename)
{
int width, height, bpp;
stbi_set_flip_vertically_on_load(true);
unsigned char* imgData = stbi_load(filename.c_str(), &width, &height, &bpp, 4);
GLuint num;
glGenTextures(1, &num);
glBindTexture(GL_TEXTURE_2D, num);
glTexImage2D(GL_TEXTURE_2D,
0, //level
GL_RGBA, //internal format
width, //width
height, //height
0, //border
GL_RGBA, //data format
GL_UNSIGNED_BYTE, //data type
imgData); //data
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_NEAREST);
glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP);
glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP);
stbi_image_free(imgData);
return num;
}
void Util::glutBitmapString(std::string str, int x, int y)
{
glRasterPos2f(x, y);
for (int i = 0; i < str.size(); i++)
{
glutBitmapCharacter(GLUT_BITMAP_HELVETICA_18, str[i]);
}
}
int Util::glutTextWidth(const std::string str)
{
int total = 0;
for (int i = 0; i < str.size(); i++)
{
total += glutBitmapWidth(GLUT_BITMAP_HELVETICA_18, str[i]);
}
return total;
}
//int Util::glutTextHeight()
//{
// return glutBitmapHeight(GLUT_BITMAP_HELVETICA_18);
//}
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#pragma once
#include <string>
#include <GL/freeglut.h>
class Util
{
private:
Util();
~Util();
public:
static GLuint loadTexture(const std::string &filename);
static void glutBitmapString(std::string str, int x, int y);
static int glutTextWidth(const std::string str);
//static int glutTextHeight();
};
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#define _USE_MATH_DEFINES
#include <cmath>
#include "Vector.h"
Vec3f::Vec3f(float x, float y, float z)
{
this->x = x;
this->y = y;
this->z = z;
}
/*The length of the vector*/
float Vec3f::Length()
{
return (float)sqrt(x*x+y*y+z*z);
}
void Vec3f::Normalize()
{
float length = this->Length();
if (length != 0)
{
x = x / length;
y = y / length;
z = z / length;
}
}
float Vec3f::Distance(const Vec3f &other)
{
return (float)sqrt(pow(other.x - x, 2)+pow(other.y - y, 2)+pow(other.z - z, 2));
}
Vec3f::Vec3f()
{
this->x = 0;
this->y = 0;
this->z = 0;
}
Vec3f::Vec3f(const Vec3f &other)
{
this->x = other.x;
this->y = other.y;
this->z = other.z;
}
float& Vec3f::operator [](int index)
{
return v[index];
}
Vec3f Vec3f::operator+(const Vec3f & other)
{
return Vec3f(x + other.x, y + other.y, z + other.z);
}
Vec3f Vec3f::operator-(const Vec3f & other)
{
return Vec3f(x - other.x, y - other.y, z - other.z);
}
Vec3f Vec3f::operator/(float value)
{
return Vec3f(x / value, y / value, z / value);
}
bool Vec3f::operator==(const Vec3f & other)
{
/*bool xb, yb,zb;
xb = x == other.x;
yb = y == other.y;
zb = z == other.z;
if (xb & yb & zb)
return true;*/
return x == other.x & y == other.y & z == other.z;
}
bool Vec3f::operator!=(const Vec3f & other)
{
return x != other.x & y != other.y & z != other.z;
}
Vec3f Vec3f::operator*(const float & other)
{
return Vec3f(x*other, y*other, z*other);
}
Vec3f Vec3f::cross(const Vec3f & other)
{
return Vec3f(
y*other.z - other.y*z,
z*other.x - other.z*x,
x*other.y - other.x*y
);
}
Vec2f::Vec2f(float x, float y)
{
this->x = x;
this->y = y;
}
Vec2f::Vec2f()
{
this->x = 0;
this->y = 0;
}
Vec2f::Vec2f(const Vec2f &other)
{
this->x = other.x;
this->y = other.y;
}
float& Vec2f::operator [](int index)
{
return v[index];
}
Vec2f Vec2f::operator+(const Vec2f & other)
{
return Vec2f(x + other.x, y+other.y);
}
float Vec2f::length()
{
return (float)sqrt(x*x + y*y);
}
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#pragma once
class Vec3f
{
public:
union
{
struct
{
float x, y, z;
};
float v[3];
};
Vec3f();
Vec3f(const Vec3f &other);
Vec3f(float x, float y, float z);
float Length();
void Normalize();
float Distance(const Vec3f &);
float& operator [](int);
Vec3f operator + (const Vec3f &other);
Vec3f operator -(const Vec3f &other);
Vec3f operator / (float value);
bool operator ==(const Vec3f &other);
bool operator !=(const Vec3f &other);
Vec3f operator *(const float &other);
Vec3f cross(const Vec3f &other);
};
class Vec2f
{
public:
union
{
struct
{
float x, y;
};
float v[2];
};
Vec2f();
Vec2f(float x, float y);
Vec2f(const Vec2f &other);
float& operator [](int);
Vec2f operator + (const Vec2f &other);
float length();
};
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#include "Vertex.h"
Vertex::Vertex(float x, float y, float z, float nx, float ny, float nz, float tx, float ty)
{
this->x = x;
this->y = y;
this->z = z;
this->normalX = nx;
this->normalY = ny;
this->normalZ = nz;
this->texX = tx;
this->texY = ty;
}
Vertex::~Vertex()
{
}
Vertex Vertex::operator/(const float &other) const
{
return Vertex(x / other, y / other, z / other, normalX, normalY, normalZ, texX, texY);
}
Vertex Vertex::operator*(const Vertex & other) const
{
return Vertex(x*other.x, y*other.y, z*other.z, normalX, normalY, normalZ, texX, texY);
}
Vertex Vertex::operator*(const float & other) const
{
return Vertex(x*other, y*other, z*other, normalX, normalY, normalZ, texX, texY);
}
Vertex Vertex::operator+(const Vertex & other) const
{
return Vertex(x+other.x, y+other.y, z+other.z, normalX, normalY, normalZ, texX, texY);
}
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#pragma once
class Vertex
{
public:
Vertex(float x, float y, float z, float nx, float ny, float nz, float tx, float ty);
~Vertex();
float x;
float y;
float z;
float normalX;
float normalY;
float normalZ;
float texX;
float texY;
Vertex operator/(const float &other) const;
Vertex operator*(const Vertex &other) const;
Vertex operator*(const float &other) const;
Vertex operator+(const Vertex &other) const;
};
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//
// Created by janco on 25-5-16.
//
#include "Weapon.h"
#include "Model.h"
#include <iostream>
#include <string>
#include <cmath>
Weapon::Weapon(std::string name, int damage, Element e, std::string modelFilename, float scale, Vec3f location, Vec2f rotation,
Vec3f offsetPlayer, Vec3f ankerPoint,
Vec2f maxRotation, Vec2f minRotation,
Vec3f collision){
weaponmodel = Model::load(modelFilename);
rotate(rotation);
move(location);
this->scale = scale;
this->name = name;
this->damage = damage;
this->element = e;
this->offsetPlayer = offsetPlayer;
this->ankerPoint = ankerPoint;
this->maxRotation = maxRotation;
this->minRotation = minRotation;
this->collision = collision;
};
Weapon::~Weapon(){
}
void Weapon::rotateWeapon(Vec3f rotation){
if(rotation.x < maxRotation.x && rotation.x > minRotation.x){
rotationWeapon.x = rotation.x;
}
if(rotation.z < maxRotation.y && rotation.z > minRotation.y){
rotationWeapon.z = rotation.z;
}
rotationWeapon.y = rotation.y;
}
void Weapon::rotate(Vec2f rotation){
this->rotation.y = -rotation.y;
}
void Weapon::move(Vec3f location){
position = location;
}
void Weapon::draw(){
if (weaponmodel != nullptr)
{
glPushMatrix();
//Player position and rotation
glTranslatef(position.x, position.y, position.z);
glRotatef(rotation.x, 1, 0, 0);
glRotatef(rotation.y, 0, 1, 0);
glRotatef(rotation.z, 0, 0, 1);
//offset from player
glTranslatef(offsetPlayer.x, offsetPlayer.y, offsetPlayer.z);
//Rotate weapon itself, from specific anker point
glTranslatef(ankerPoint.x, ankerPoint.y, ankerPoint.z);
glRotatef(rotationWeapon.z, 0, 0, 1);
glRotatef(rotationWeapon.y, 0, 1, 0);
glRotatef(rotationWeapon.x, 1, 0, 0);
glTranslatef(-ankerPoint.x, -ankerPoint.y, -ankerPoint.z);
glScalef(scale, scale, scale);
weaponmodel->draw();
//Test code for finding anker point
glColor3ub(255, 255, 0);
glTranslatef(ankerPoint.x, ankerPoint.y, ankerPoint.z);
glBegin(GL_LINES);
glVertex2f(0, 4);
glVertex2f(0, -4);
glVertex2f(4, 0);
glVertex2f(-4, 0);
glEnd();
glPopMatrix();
}
}
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//
// Created by janco on 25-5-16.
//
#ifndef CRYSTALPOINT_WEAPON_H
#define CRYSTALPOINT_WEAPON_H
#include "Vector.h"
#include "Model.h"
#include <string>
class Weapon {
public:
enum Element {FIRE, WATER, EARTH, AIR};
Weapon(std::string name, int damage, Element element, std::string modelFilename, float scale, Vec3f location, Vec2f rotation,
Vec3f offsetPlayer, Vec3f ankerPoint,
Vec2f maxRotation, Vec2f minXRotation,
Vec3f collision);
~Weapon();
void draw();
void rotateWeapon(Vec3f rotation);
void rotate(Vec2f rotation);
void move(Vec3f location);
std::string name;
unsigned int damage;
Element element;
Model* weaponmodel;
float scale;
Vec3f position, rotation, rotationWeapon;
Vec3f offsetPlayer, ankerPoint, collision;
Vec2f maxRotation, minRotation;
};
#endif //CRYSTALPOINT_WEAPON_H
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#include "World.h"
#include <GL/freeglut.h>
#include "Entity.h"
#include "json.h"
#include "Model.h"
#include <fstream>
#include <iostream>
#include <algorithm>
#include "WorldHandler.h"
World::World(const std::string &fileName)
{
nextworld = false;
//Store player instance
player = Player::getInstance();
//Create the interface
interface = new Interface();
//Open world json file
std::ifstream file(fileName);
if(!file.is_open())
std::cout<<"Error, can't open world file - " << fileName << "\n";
json::Value v = json::readJson(file);
file.close();
//Check file
if(v["world"].isNull() || v["world"]["heightmap"].isNull() || v["world"]["skybox"].isNull())
std::cout << "Invalid world file: world - " << fileName << "\n";
if (v["world"]["object-templates"].isNull())
std::cout << "Invalid world file: object templates - " << fileName << "\n";
if (v["player"].isNull() || v["player"]["startposition"].isNull())
std::cout << "Invalid world file: player - " << fileName << "\n";
if (v["objects"].isNull())
std::cout << "Invalid world file: objects - " << fileName << "\n";
if (v["enemies"].isNull())
std::cout << "Invalid world file: enemies - " << fileName << "\n";
if (v["crystal"].isNull())
std::cout << "Invalid world file: crystals - " << fileName << "\n";
if (!v["world"]["loadingscreen"].isNull())
{
ls.setTexture(v["world"]["loadingscreen"].asString());
ls.draw();
}
//Load object templates
for (auto objt : v["world"]["object-templates"])
{
//collision
bool cancollide = true;
if (!objt["collision"].isNull())
cancollide = objt["collision"].asBool();
objecttemplates.push_back(std::pair<int, std::pair<std::string, bool>>(objt["color"], std::pair<std::string, bool>(objt["file"], cancollide)));
}
//Generate heightmap for this world
heightmap = new HeightMap(v["world"]["heightmap"].asString(), this);
//Load skybox
skybox = new Skybox(15000.0f, v["world"]["skybox"].asString());
skybox->init();
//Map different texture to heightmap if available
if(!v["world"]["texture"].isNull())
heightmap->SetTexture(v["world"]["texture"].asString());
//Set player starting position
player->position.x = v["player"]["startposition"][0].asFloat();
player->position.z = v["player"]["startposition"][2].asFloat();
player->position.y = heightmap->GetHeight(player->position.x, player->position.z);
//Load and place objects into world
for (auto object : v["objects"])
{
//Collision
bool hasCollision = true;
if (!object["collide"].isNull())
hasCollision = object["collide"].asBool();
//Rotation
Vec3f rotation(0, 0, 0);
if(!object["rot"].isNull())
rotation = Vec3f(object["rot"][0].asFloat(), object["rot"][1].asFloat(), object["rot"][2].asFloat());
//Scale
float scale = 1;
if (!object["scale"].isNull())
scale = object["scale"].asFloat();
//Position
if (object["pos"].isNull())
std::cout << "Invalid world file: objects pos - " << fileName << "\n";
//File
if (object["file"].isNull())
std::cout << "Invalid world file: objects file - " << fileName << "\n";
//Create
Vec3f position(object["pos"][0].asFloat(), object["pos"][1].asFloat(), object["pos"][2].asFloat());
position.y = getHeight(position.x, position.z);
entities.push_back(new LevelObject(object["file"].asString(), position, rotation, scale, hasCollision));
}
maxEnemies = 0;
//Load and place enemies into world
for (auto e : v["enemies"])
{
//Rotation
Vec3f rotation(0, 0, 0);
if (!e["rot"].isNull())
rotation = Vec3f(e["rot"][0].asFloat(), e["rot"][1].asFloat(), e["rot"][2].asFloat());
//Scale
float scale = 1.0f;
if (!e["scale"].isNull())
scale = e["scale"].asFloat();
//Position
if (e["pos"].isNull())
std::cout << "Invalid world file: enemies pos - " << fileName << "\n";
//File
if (e["file"].isNull())
std::cout << "Invalid world file: enemies file - " << fileName << "\n";
//Music
if (e["music"].isNull())
std::cout << "Invalid world file: enemies music - " << fileName << "\n";
//Damage
if (e["damage"].isNull())
std::cout << "Invalid world file: enemies damage - " << fileName << "\n";
//Health
if (e["health"].isNull())
std::cout << "Invalid world file: enemies health - " << fileName << "\n";
//Create
Vec3f position(e["pos"][0].asFloat(), e["pos"][1].asFloat(), e["pos"][2].asFloat());
position.y = getHeight(position.x, position.z) + 2.0f;
maxEnemies++;
enemies.push_back(new Enemy(e["file"].asString(), e["music"].asString(), e["damage"].asFloat(), e["health"].asFloat(), position, rotation, scale));
}
maxCrystals = 0;
if (!v["crystal"].isNull())
{
std::string filled = "unknown";
std::string empty = "unknown";
if(!v["crystal"]["full texture"].isNull())
filled = v["crystal"]["full texture"].asString();
if(!v["crystal"]["empty texture"].isNull())
empty = v["crystal"]["empty texture"].asString();
if (!v["crystal"]["instances"].isNull())
{
for (auto instance : v["crystal"]["instances"])
{
Vec3f position(0, 0, 0);
Vec3f rotation(0, 0, 0);
float scale = 1.0f;
if (!instance["pos"].isNull())
{
position.x = instance["pos"][0];
position.y = instance["pos"][1];
position.z = instance["pos"][2];
}
if (!instance["rot"].isNull())
{
rotation.x = instance["rot"][0];
rotation.y = instance["rot"][1];
rotation.z = instance["rot"][2];
}
if (!instance["scale"].isNull())
scale = instance["scale"].asFloat();
position.y = getHeight(position.x, position.z);
maxCrystals++;
Crystal *c = new Crystal(filled, empty, position, rotation, scale);
entities.push_back(c);
}
interface->maxCrystals = maxCrystals;
}
}
if (!v["world"]["music"].isNull())
{
sound_id = CrystalPoint::GetSoundSystem().LoadSound(v["world"]["music"].asString().c_str(), true);
music = CrystalPoint::GetSoundSystem().GetSound(sound_id);
}
if (!v["portal"].isNull())
{
Vec3f pos(0, 0, 0);
if (!v["portal"]["pos"].isNull())
pos = Vec3f(v["portal"]["pos"][0].asFloat(),
v["portal"]["pos"][1].asFloat(),
v["portal"]["pos"][2].asFloat());
pos.y = getHeight(pos.x, pos.z);
Vec3f rot(0, 0, 0);
if (!v["portal"]["rot"].isNull())
pos = Vec3f(v["portal"]["rot"][0].asFloat(),
v["portal"]["rot"][1].asFloat(),
v["portal"]["rot"][2].asFloat());
float scale = 1.0f;
if (!v["portal"]["scale"].isNull())
scale = !v["portal"]["scale"].asFloat();
portal = new Portal(v["portal"]["file"], pos, rot, scale);
entities.push_back(portal);
portal->maxCrystals = maxCrystals;
}
}
World::~World()
{
delete heightmap;
music->Stop();
CrystalPoint::GetSoundSystem().UnloadSound(sound_id);
delete skybox;
delete portal;
}
std::pair<std::string, bool> World::getObjectFromValue(int val)
{
for (auto i : objecttemplates)
{
if (i.first == val)
return i.second;
}
return objecttemplates[0].second;
}
float World::getHeight(float x, float y)
{
return heightmap->GetHeight(x, y);
}
void World::draw()
{
float lightPosition[4] = { 0, 2, 1, 0 };
glLightfv(GL_LIGHT0, GL_POSITION, lightPosition);
GLfloat lightAmbient[] = { 0.05, 0.05, 0.05, 0 };
GLfloat light_diffuse[] = { 0.9, 0.9, 0.9, 0 };
glLightfv(GL_LIGHT0, GL_DIFFUSE, light_diffuse);
glLightfv(GL_LIGHT0, GL_AMBIENT, lightAmbient);
GLfloat mat_specular[] = { 0.15, 0.15, 0.15, 0 };
glMaterialfv(GL_FRONT, GL_SPECULAR, mat_specular);
player->setCamera();
skybox->draw();
player->draw();
heightmap->Draw();
for (auto &enemy : enemies)
enemy->draw();
for (auto &entity : entities)
entity->draw();
interface->draw();
}
void World::update(float elapsedTime)
{
if (nextworld)
{
WorldHandler::getInstance()->NextWorld();
return;
}
music->SetPos(player->position, Vec3f());
if (music->IsPlaying() == false)
{
music->Play();
}
for (auto &entity : entities)
entity->update(elapsedTime);
int count = 0;
int remove = false;
for (auto &enemy : enemies)
{
//Al deze code zou in enemy moeten staan
enemy->inEyeSight(player->position);
enemy->update(elapsedTime);
if (enemy->hasTarget)
{
for (auto e : entities)
{
if (e->canCollide && e->inObject(enemy->position))
{
enemy->collide(e);
break;
}
}
}
if (enemy->attack)
{
remove = true;
continue;
}
enemy->position.y = getHeight(enemy->position.x, enemy->position.z);
if(!remove)
count++;
}
if (remove)
{
player->XpUp(enemies[count]->xp);
delete enemies[count];
enemies.erase(enemies.begin() + count);
player->HpUp(10);
}
skybox->update(elapsedTime, maxEnemies - enemies.size(), maxEnemies);
if (portal->mayEnter)
{
if (portal->enter(elapsedTime))
nextworld = true;
}
}
void World::addLevelObject(LevelObject* obj)
{
entities.push_back(obj);
}
bool World::isPlayerPositionValid()
{
for (auto &e : entities)
{
if (e->canCollide && e->inObject(player->position))
{
e->collide();
return false;
}
}
return true;
}
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#pragma once
#include <vector>
#include "HeightMap.h"
#include "Player.h"
#include "Enemy.h"
#include "LevelObject.h"
#include "Interface.h"
#include "Crystal.h"
#include "Skybox.h"
#include "CrystalPoint.h"
#include "Portal.h"
#include "LoadingScreen.h"
class Entity;
class World
{
private:
std::vector<std::pair<int, std::pair<std::string, bool>>> objecttemplates;
Sound* music;
Player* player;
HeightMap* heightmap;
Interface* interface;
Skybox* skybox;
Portal* portal;
bool nextworld;
int sound_id,maxCrystals,maxEnemies;
std::vector<Entity*> entities;
std::vector<Enemy*> enemies;
//std::vector<Crystal*> crystals;
LoadingScreen ls;
public:
World(const std::string &fileName);
~World();
void draw();
void update(float elapsedTime);
bool isPlayerPositionValid();
float getHeight(float x, float y);
void addLevelObject(LevelObject* obj);
std::pair<std::string, bool> getObjectFromValue(int i);
};
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#include "WorldHandler.h"
#include "World.h"
#include "json.h"
#include <fstream>
#include <iostream>
#include <string>
WorldHandler* WorldHandler::instance = nullptr;
void WorldHandler::ChangeWorld(int i)
{
if (i < 0)
i = worldfiles.size() - 1;
else if (i >= worldfiles.size())
i = 0;
if (i != worldIndex)
{
loadingWorld = true;
if(worldIndex != -1)
delete world;
world = new World(worldfiles[i]);
worldIndex = i;
loadingWorld = false;
}
}
WorldHandler::WorldHandler()
{
loadingWorld = true;
worldIndex = -1;
//Find worlds.json
std::ifstream file("worlds/worlds.json");
if (!file.is_open())
std::cout << "Error, can't open worlds overview file\n";
json::Value v = json::readJson(file);
file.close();
//Load file names into vector
if (v["worlds"].isNull() || !v["worlds"].isArray())
std::cout << "Error, no content in worlds overview file\n";
for (auto line : v["worlds"])
{
std::cout << "Found world: " << line << "\n";
worldfiles.push_back(line);
}
if (worldfiles.size() > 0)
{
ChangeWorld(0);
}
}
WorldHandler::~WorldHandler()
{
worldIndex = -1;
delete world;
}
WorldHandler* WorldHandler::getInstance()
{
if (instance == nullptr)
instance = new WorldHandler();
return instance;
}
void WorldHandler::init()
{
instance = new WorldHandler();
}
void WorldHandler::draw(void)
{
if(!loadingWorld)
world->draw();
else
{
//Draw Loading screen
}
}
void WorldHandler::update(float deltaTime)
{
if(!loadingWorld)
world->update(deltaTime);
}
bool WorldHandler::isPlayerPositionValid(void)
{
if(!loadingWorld)
return world->isPlayerPositionValid();
return false;
}
float WorldHandler::getHeight(float x, float y)
{
if (!loadingWorld)
return world->getHeight(x, y);
else
return 0.0f;
}
void WorldHandler::Navigate(const std::string &fileName)
{
if (!loadingWorld)
{
for (int i = 0; i < worldfiles.size(); i++)
{
if (worldfiles[i] == fileName)
ChangeWorld(i);
}
}
}
void WorldHandler::NextWorld()
{
if (!loadingWorld)
{
ChangeWorld(worldIndex + 1);
Player::getInstance()->crystals = 0;
}
}
void WorldHandler::PreviousWorld()
{
if (!loadingWorld)
{
ChangeWorld(worldIndex - 1);
Player::getInstance()->crystals = 0;
}
}
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#pragma once
#include <string>
#include <vector>
class World;
class WorldHandler
{
private:
WorldHandler();
static WorldHandler* instance;
bool loadingWorld;
World* world;
int worldIndex;
void ChangeWorld(int i);
public:
~WorldHandler();
static WorldHandler* getInstance(void);
static void init();
void draw(void);
void update(float deltaTime);
bool isPlayerPositionValid(void);
float getHeight(float x, float y);
void Navigate(const std::string &fileName);
void NextWorld();
void PreviousWorld();
std::vector<std::string> worldfiles;
};
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Freeglut Copyright
------------------
Freeglut code without an explicit copyright is covered by the following
copyright:
Copyright (c) 1999-2000 Pawel W. Olszta. All Rights Reserved.
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies or substantial portions of the Software.
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
PAWEL W. OLSZTA BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
Except as contained in this notice, the name of Pawel W. Olszta shall not be
used in advertising or otherwise to promote the sale, use or other dealings
in this Software without prior written authorization from Pawel W. Olszta.
+106
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freeglut 3.0.0-1.mp for MSVC
This package contains freeglut import libraries, headers, and Windows DLLs.
These allow 32 and 64 bit GLUT applications to be compiled on Windows using
Microsoft Visual C++.
For more information on freeglut, visit http://freeglut.sourceforge.net/.
Installation
Create a folder on your PC which is readable by all users, for example
“C:\Program Files\Common Files\MSVC\freeglut\” on a typical Windows system. Copy
the “lib\” and “include\” folders from this zip archive to that location.
The appropriate freeglut DLL can either be placed in the same folder as your
application, or can be installed in a system-wide folder which appears in your
%PATH% environment variable. Be careful not to mix the 32 bit DLL up with the 64
bit DLL, as they are not interchangeable.
Compiling 32 bit Applications
To create a 32 bit freeglut application, create a new Win32 C++ project in MSVC.
From the “Win32 Application Wizard”, choose a “Windows application”, check the
“Empty project” box, and submit.
Youll now need to configure the compiler and linker settings. Open up the
project properties, and select “All Configurations” (this is necessary to ensure
our changes are applied for both debug and release builds). Open up the
“general” section under “C/C++”, and configure the “include\” folder you created
above as an “Additional Include Directory”. If you have more than one GLUT
package which contains a “glut.h” file, its important to ensure that the
freeglut include folder appears above all other GLUT include folders.
Now open up the “general” section under “Linker”, and configure the “lib\”
folder you created above as an “Additional Library Directory”. A freeglut
application depends on the import libraries “freeglut.lib” and “opengl32.lib”,
which can be configured under the “Input” section. However, it shouldnt be
necessary to explicitly state these dependencies, since the freeglut headers
handle this for you. Now open the “Advanced” section, and enter “mainCRTStartup”
as the “Entry Point” for your application. This is necessary because GLUT
applications use “main” as the application entry point, not “WinMain”—without it
youll get an undefined reference when you try to link your application.
Thats all of your project properties configured, so you can now add source
files to your project and build the application. If you want your application to
be compatible with GLUT, you should “#include <GL/glut.h>”. If you want to use
freeglut specific extensions, you should “#include <GL/freeglut.h>” instead.
Dont forget to either include the freeglut DLL when distributing applications,
or provide your users with some method of obtaining it if they dont already
have it!
Compiling 64 bit Applications
Building 64 bit applications is almost identical to building 32 bit applications.
When you use the configuration manager to add the x64 platform, its easiest to
copy the settings from the Win32 platform. If you do so, its then only necessary
to change the “Additional Library Directories” configuration so that it
references the directory containing the 64 bit import library rather
than the 32 bit one.
Problems?
If you have problems using this package (compiler / linker errors etc.), please
check that you have followed all of the steps in this readme file correctly.
Almost all of the problems which are reported with these packages are due to
missing a step or not doing it correctly, for example trying to build a 32 bit
app against the 64 bit import library. If you have followed all of the steps
correctly but your application still fails to build, try building a very simple
but functional program (the example at
http://www.transmissionzero.co.uk/computing/using-glut-with-mingw/ works fine
with MSVC). A lot of people try to build very complex applications after
installing these packages, and often the error is with the application code or
other library dependencies rather than freeglut.
If you still cant get it working after trying to compile a simple application,
then please get in touch via http://www.transmissionzero.co.uk/contact/,
providing as much detail as you can. Please dont complain to the freeglut guys
unless youre sure its a freeglut bug, and have reproduced the issue after
compiling freeglut from the latest SVN version—if thats still the case, Im
sure they would appreciate a bug report or a patch.
Changelog
20150722: Release 3.0.0-2.mp
• Modified the freeglut_std.h file so that it doesnt try to link against the
freeglutd.lib import library.
20150315: Release 3.0.0-1.mp
• First 3.0.0 MSVC release. Ive built the package using Visual Studio 2013,
and the only change Ive made is to the DLL version resource—Ive changed
the description so that my MinGW and MSVC builds are distinguishable from
each other (and other builds) using Windows Explorer.
Transmission Zero
20150722
http://www.transmissionzero.co.uk/
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#ifndef __FREEGLUT_H__
#define __FREEGLUT_H__
/*
* freeglut.h
*
* The freeglut library include file
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* PAWEL W. OLSZTA BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#include "freeglut_std.h"
#include "freeglut_ext.h"
/*** END OF FILE ***/
#endif /* __FREEGLUT_H__ */
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#ifndef __FREEGLUT_EXT_H__
#define __FREEGLUT_EXT_H__
/*
* freeglut_ext.h
*
* The non-GLUT-compatible extensions to the freeglut library include file
*
* Copyright (c) 1999-2000 Pawel W. Olszta. All Rights Reserved.
* Written by Pawel W. Olszta, <olszta@sourceforge.net>
* Creation date: Thu Dec 2 1999
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included
* in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* PAWEL W. OLSZTA BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifdef __cplusplus
extern "C" {
#endif
/*
* Additional GLUT Key definitions for the Special key function
*/
#define GLUT_KEY_NUM_LOCK 0x006D
#define GLUT_KEY_BEGIN 0x006E
#define GLUT_KEY_DELETE 0x006F
#define GLUT_KEY_SHIFT_L 0x0070
#define GLUT_KEY_SHIFT_R 0x0071
#define GLUT_KEY_CTRL_L 0x0072
#define GLUT_KEY_CTRL_R 0x0073
#define GLUT_KEY_ALT_L 0x0074
#define GLUT_KEY_ALT_R 0x0075
/*
* GLUT API Extension macro definitions -- behaviour when the user clicks on an "x" to close a window
*/
#define GLUT_ACTION_EXIT 0
#define GLUT_ACTION_GLUTMAINLOOP_RETURNS 1
#define GLUT_ACTION_CONTINUE_EXECUTION 2
/*
* Create a new rendering context when the user opens a new window?
*/
#define GLUT_CREATE_NEW_CONTEXT 0
#define GLUT_USE_CURRENT_CONTEXT 1
/*
* Direct/Indirect rendering context options (has meaning only in Unix/X11)
*/
#define GLUT_FORCE_INDIRECT_CONTEXT 0
#define GLUT_ALLOW_DIRECT_CONTEXT 1
#define GLUT_TRY_DIRECT_CONTEXT 2
#define GLUT_FORCE_DIRECT_CONTEXT 3
/*
* GLUT API Extension macro definitions -- the glutGet parameters
*/
#define GLUT_INIT_STATE 0x007C
#define GLUT_ACTION_ON_WINDOW_CLOSE 0x01F9
#define GLUT_WINDOW_BORDER_WIDTH 0x01FA
#define GLUT_WINDOW_BORDER_HEIGHT 0x01FB
#define GLUT_WINDOW_HEADER_HEIGHT 0x01FB /* Docs say it should always have been GLUT_WINDOW_BORDER_HEIGHT, keep this for backward compatibility */
#define GLUT_VERSION 0x01FC
#define GLUT_RENDERING_CONTEXT 0x01FD
#define GLUT_DIRECT_RENDERING 0x01FE
#define GLUT_FULL_SCREEN 0x01FF
#define GLUT_SKIP_STALE_MOTION_EVENTS 0x0204
#define GLUT_GEOMETRY_VISUALIZE_NORMALS 0x0205
#define GLUT_STROKE_FONT_DRAW_JOIN_DOTS 0x0206 /* Draw dots between line segments of stroke fonts? */
/*
* New tokens for glutInitDisplayMode.
* Only one GLUT_AUXn bit may be used at a time.
* Value 0x0400 is defined in OpenGLUT.
*/
#define GLUT_AUX 0x1000
#define GLUT_AUX1 0x1000
#define GLUT_AUX2 0x2000
#define GLUT_AUX3 0x4000
#define GLUT_AUX4 0x8000
/*
* Context-related flags, see fg_state.c
* Set the requested OpenGL version
*/
#define GLUT_INIT_MAJOR_VERSION 0x0200
#define GLUT_INIT_MINOR_VERSION 0x0201
#define GLUT_INIT_FLAGS 0x0202
#define GLUT_INIT_PROFILE 0x0203
/*
* Flags for glutInitContextFlags, see fg_init.c
*/
#define GLUT_DEBUG 0x0001
#define GLUT_FORWARD_COMPATIBLE 0x0002
/*
* Flags for glutInitContextProfile, see fg_init.c
*/
#define GLUT_CORE_PROFILE 0x0001
#define GLUT_COMPATIBILITY_PROFILE 0x0002
/*
* Process loop function, see fg_main.c
*/
FGAPI void FGAPIENTRY glutMainLoopEvent( void );
FGAPI void FGAPIENTRY glutLeaveMainLoop( void );
FGAPI void FGAPIENTRY glutExit ( void );
/*
* Window management functions, see fg_window.c
*/
FGAPI void FGAPIENTRY glutFullScreenToggle( void );
FGAPI void FGAPIENTRY glutLeaveFullScreen( void );
/*
* Menu functions
*/
FGAPI void FGAPIENTRY glutSetMenuFont( int menuID, void* font );
/*
* Window-specific callback functions, see fg_callbacks.c
*/
FGAPI void FGAPIENTRY glutMouseWheelFunc( void (* callback)( int, int, int, int ) );
FGAPI void FGAPIENTRY glutPositionFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutCloseFunc( void (* callback)( void ) );
FGAPI void FGAPIENTRY glutWMCloseFunc( void (* callback)( void ) );
/* And also a destruction callback for menus */
FGAPI void FGAPIENTRY glutMenuDestroyFunc( void (* callback)( void ) );
/*
* State setting and retrieval functions, see fg_state.c
*/
FGAPI void FGAPIENTRY glutSetOption ( GLenum option_flag, int value );
FGAPI int * FGAPIENTRY glutGetModeValues(GLenum mode, int * size);
/* A.Donev: User-data manipulation */
FGAPI void* FGAPIENTRY glutGetWindowData( void );
FGAPI void FGAPIENTRY glutSetWindowData(void* data);
FGAPI void* FGAPIENTRY glutGetMenuData( void );
FGAPI void FGAPIENTRY glutSetMenuData(void* data);
/*
* Font stuff, see fg_font.c
*/
FGAPI int FGAPIENTRY glutBitmapHeight( void* font );
FGAPI GLfloat FGAPIENTRY glutStrokeHeight( void* font );
FGAPI void FGAPIENTRY glutBitmapString( void* font, const unsigned char *string );
FGAPI void FGAPIENTRY glutStrokeString( void* font, const unsigned char *string );
/*
* Geometry functions, see fg_geometry.c
*/
FGAPI void FGAPIENTRY glutWireRhombicDodecahedron( void );
FGAPI void FGAPIENTRY glutSolidRhombicDodecahedron( void );
FGAPI void FGAPIENTRY glutWireSierpinskiSponge ( int num_levels, double offset[3], double scale );
FGAPI void FGAPIENTRY glutSolidSierpinskiSponge ( int num_levels, double offset[3], double scale );
FGAPI void FGAPIENTRY glutWireCylinder( double radius, double height, GLint slices, GLint stacks);
FGAPI void FGAPIENTRY glutSolidCylinder( double radius, double height, GLint slices, GLint stacks);
/*
* Rest of functions for rendering Newell's teaset, found in fg_teapot.c
* NB: front facing polygons have clockwise winding, not counter clockwise
*/
FGAPI void FGAPIENTRY glutWireTeacup( double size );
FGAPI void FGAPIENTRY glutSolidTeacup( double size );
FGAPI void FGAPIENTRY glutWireTeaspoon( double size );
FGAPI void FGAPIENTRY glutSolidTeaspoon( double size );
/*
* Extension functions, see fg_ext.c
*/
typedef void (*GLUTproc)();
FGAPI GLUTproc FGAPIENTRY glutGetProcAddress( const char *procName );
/*
* Multi-touch/multi-pointer extensions
*/
#define GLUT_HAS_MULTI 1
/* TODO: add device_id parameter,
cf. http://sourceforge.net/mailarchive/forum.php?thread_name=20120518071314.GA28061%40perso.beuc.net&forum_name=freeglut-developer */
FGAPI void FGAPIENTRY glutMultiEntryFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutMultiButtonFunc( void (* callback)( int, int, int, int, int ) );
FGAPI void FGAPIENTRY glutMultiMotionFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutMultiPassiveFunc( void (* callback)( int, int, int ) );
/*
* Joystick functions, see fg_joystick.c
*/
/* USE OF THESE FUNCTIONS IS DEPRECATED !!!!! */
/* If you have a serious need for these functions in your application, please either
* contact the "freeglut" developer community at freeglut-developer@lists.sourceforge.net,
* switch to the OpenGLUT library, or else port your joystick functionality over to PLIB's
* "js" library.
*/
int glutJoystickGetNumAxes( int ident );
int glutJoystickGetNumButtons( int ident );
int glutJoystickNotWorking( int ident );
float glutJoystickGetDeadBand( int ident, int axis );
void glutJoystickSetDeadBand( int ident, int axis, float db );
float glutJoystickGetSaturation( int ident, int axis );
void glutJoystickSetSaturation( int ident, int axis, float st );
void glutJoystickSetMinRange( int ident, float *axes );
void glutJoystickSetMaxRange( int ident, float *axes );
void glutJoystickSetCenter( int ident, float *axes );
void glutJoystickGetMinRange( int ident, float *axes );
void glutJoystickGetMaxRange( int ident, float *axes );
void glutJoystickGetCenter( int ident, float *axes );
/*
* Initialization functions, see fg_init.c
*/
/* to get the typedef for va_list */
#include <stdarg.h>
FGAPI void FGAPIENTRY glutInitContextVersion( int majorVersion, int minorVersion );
FGAPI void FGAPIENTRY glutInitContextFlags( int flags );
FGAPI void FGAPIENTRY glutInitContextProfile( int profile );
FGAPI void FGAPIENTRY glutInitErrorFunc( void (* callback)( const char *fmt, va_list ap ) );
FGAPI void FGAPIENTRY glutInitWarningFunc( void (* callback)( const char *fmt, va_list ap ) );
/* OpenGL >= 2.0 support */
FGAPI void FGAPIENTRY glutSetVertexAttribCoord3(GLint attrib);
FGAPI void FGAPIENTRY glutSetVertexAttribNormal(GLint attrib);
FGAPI void FGAPIENTRY glutSetVertexAttribTexCoord2(GLint attrib);
/* Mobile platforms lifecycle */
FGAPI void FGAPIENTRY glutInitContextFunc(void (* callback)());
FGAPI void FGAPIENTRY glutAppStatusFunc(void (* callback)(int));
/* state flags that can be passed to callback set by glutAppStatusFunc */
#define GLUT_APPSTATUS_PAUSE 0x0001
#define GLUT_APPSTATUS_RESUME 0x0002
/*
* GLUT API macro definitions -- the display mode definitions
*/
#define GLUT_CAPTIONLESS 0x0400
#define GLUT_BORDERLESS 0x0800
#define GLUT_SRGB 0x1000
#ifdef __cplusplus
}
#endif
/*** END OF FILE ***/
#endif /* __FREEGLUT_EXT_H__ */
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#ifndef __FREEGLUT_STD_H__
#define __FREEGLUT_STD_H__
/*
* freeglut_std.h
*
* The GLUT-compatible part of the freeglut library include file
*
* Copyright (c) 1999-2000 Pawel W. Olszta. All Rights Reserved.
* Written by Pawel W. Olszta, <olszta@sourceforge.net>
* Creation date: Thu Dec 2 1999
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included
* in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* PAWEL W. OLSZTA BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#ifdef __cplusplus
extern "C" {
#endif
/*
* Under windows, we have to differentiate between static and dynamic libraries
*/
#ifdef _WIN32
/* #pragma may not be supported by some compilers.
* Discussion by FreeGLUT developers suggests that
* Visual C++ specific code involving pragmas may
* need to move to a separate header. 24th Dec 2003
*/
/* Define FREEGLUT_LIB_PRAGMAS to 1 to include library
* pragmas or to 0 to exclude library pragmas.
* The default behavior depends on the compiler/platform.
*/
# ifndef FREEGLUT_LIB_PRAGMAS
# if ( defined(_MSC_VER) || defined(__WATCOMC__) ) && !defined(_WIN32_WCE)
# define FREEGLUT_LIB_PRAGMAS 1
# else
# define FREEGLUT_LIB_PRAGMAS 0
# endif
# endif
# ifndef WIN32_LEAN_AND_MEAN
# define WIN32_LEAN_AND_MEAN 1
# endif
# ifndef NOMINMAX
# define NOMINMAX
# endif
# include <windows.h>
/* Windows static library */
# ifdef FREEGLUT_STATIC
#error Static linking is not supported with this build. Please remove the FREEGLUT_STATIC preprocessor directive, or download the source code from http://freeglut.sf.net/ and build against that.
/* Windows shared library (DLL) */
# else
# define FGAPIENTRY __stdcall
# if defined(FREEGLUT_EXPORTS)
# define FGAPI __declspec(dllexport)
# else
# define FGAPI __declspec(dllimport)
/* Link with Win32 shared freeglut lib */
# if FREEGLUT_LIB_PRAGMAS
# pragma comment (lib, "freeglut.lib")
# endif
# endif
# endif
/* Drag in other Windows libraries as required by FreeGLUT */
# if FREEGLUT_LIB_PRAGMAS
# pragma comment (lib, "glu32.lib") /* link OpenGL Utility lib */
# pragma comment (lib, "opengl32.lib") /* link Microsoft OpenGL lib */
# pragma comment (lib, "gdi32.lib") /* link Windows GDI lib */
# pragma comment (lib, "winmm.lib") /* link Windows MultiMedia lib */
# pragma comment (lib, "user32.lib") /* link Windows user lib */
# endif
#else
/* Non-Windows definition of FGAPI and FGAPIENTRY */
# define FGAPI
# define FGAPIENTRY
#endif
/*
* The freeglut and GLUT API versions
*/
#define FREEGLUT 1
#define GLUT_API_VERSION 4
#define GLUT_XLIB_IMPLEMENTATION 13
/* Deprecated:
cf. http://sourceforge.net/mailarchive/forum.php?thread_name=CABcAi1hw7cr4xtigckaGXB5X8wddLfMcbA_rZ3NAuwMrX_zmsw%40mail.gmail.com&forum_name=freeglut-developer */
#define FREEGLUT_VERSION_2_0 1
/*
* Always include OpenGL and GLU headers
*/
/* Note: FREEGLUT_GLES is only used to cleanly bootstrap headers
inclusion here; use GLES constants directly
(e.g. GL_ES_VERSION_2_0) for all other needs */
#ifdef FREEGLUT_GLES
# include <EGL/egl.h>
# include <GLES/gl.h>
# include <GLES2/gl2.h>
#elif __APPLE__
# include <OpenGL/gl.h>
# include <OpenGL/glu.h>
#else
# include <GL/gl.h>
# include <GL/glu.h>
#endif
/*
* GLUT API macro definitions -- the special key codes:
*/
#define GLUT_KEY_F1 0x0001
#define GLUT_KEY_F2 0x0002
#define GLUT_KEY_F3 0x0003
#define GLUT_KEY_F4 0x0004
#define GLUT_KEY_F5 0x0005
#define GLUT_KEY_F6 0x0006
#define GLUT_KEY_F7 0x0007
#define GLUT_KEY_F8 0x0008
#define GLUT_KEY_F9 0x0009
#define GLUT_KEY_F10 0x000A
#define GLUT_KEY_F11 0x000B
#define GLUT_KEY_F12 0x000C
#define GLUT_KEY_LEFT 0x0064
#define GLUT_KEY_UP 0x0065
#define GLUT_KEY_RIGHT 0x0066
#define GLUT_KEY_DOWN 0x0067
#define GLUT_KEY_PAGE_UP 0x0068
#define GLUT_KEY_PAGE_DOWN 0x0069
#define GLUT_KEY_HOME 0x006A
#define GLUT_KEY_END 0x006B
#define GLUT_KEY_INSERT 0x006C
/*
* GLUT API macro definitions -- mouse state definitions
*/
#define GLUT_LEFT_BUTTON 0x0000
#define GLUT_MIDDLE_BUTTON 0x0001
#define GLUT_RIGHT_BUTTON 0x0002
#define GLUT_DOWN 0x0000
#define GLUT_UP 0x0001
#define GLUT_LEFT 0x0000
#define GLUT_ENTERED 0x0001
/*
* GLUT API macro definitions -- the display mode definitions
*/
#define GLUT_RGB 0x0000
#define GLUT_RGBA 0x0000
#define GLUT_INDEX 0x0001
#define GLUT_SINGLE 0x0000
#define GLUT_DOUBLE 0x0002
#define GLUT_ACCUM 0x0004
#define GLUT_ALPHA 0x0008
#define GLUT_DEPTH 0x0010
#define GLUT_STENCIL 0x0020
#define GLUT_MULTISAMPLE 0x0080
#define GLUT_STEREO 0x0100
#define GLUT_LUMINANCE 0x0200
/*
* GLUT API macro definitions -- windows and menu related definitions
*/
#define GLUT_MENU_NOT_IN_USE 0x0000
#define GLUT_MENU_IN_USE 0x0001
#define GLUT_NOT_VISIBLE 0x0000
#define GLUT_VISIBLE 0x0001
#define GLUT_HIDDEN 0x0000
#define GLUT_FULLY_RETAINED 0x0001
#define GLUT_PARTIALLY_RETAINED 0x0002
#define GLUT_FULLY_COVERED 0x0003
/*
* GLUT API macro definitions -- fonts definitions
*
* Steve Baker suggested to make it binary compatible with GLUT:
*/
#if defined(_MSC_VER) || defined(__CYGWIN__) || defined(__MINGW32__) || defined(__WATCOMC__)
# define GLUT_STROKE_ROMAN ((void *)0x0000)
# define GLUT_STROKE_MONO_ROMAN ((void *)0x0001)
# define GLUT_BITMAP_9_BY_15 ((void *)0x0002)
# define GLUT_BITMAP_8_BY_13 ((void *)0x0003)
# define GLUT_BITMAP_TIMES_ROMAN_10 ((void *)0x0004)
# define GLUT_BITMAP_TIMES_ROMAN_24 ((void *)0x0005)
# define GLUT_BITMAP_HELVETICA_10 ((void *)0x0006)
# define GLUT_BITMAP_HELVETICA_12 ((void *)0x0007)
# define GLUT_BITMAP_HELVETICA_18 ((void *)0x0008)
#else
/*
* I don't really know if it's a good idea... But here it goes:
*/
extern void* glutStrokeRoman;
extern void* glutStrokeMonoRoman;
extern void* glutBitmap9By15;
extern void* glutBitmap8By13;
extern void* glutBitmapTimesRoman10;
extern void* glutBitmapTimesRoman24;
extern void* glutBitmapHelvetica10;
extern void* glutBitmapHelvetica12;
extern void* glutBitmapHelvetica18;
/*
* Those pointers will be used by following definitions:
*/
# define GLUT_STROKE_ROMAN ((void *) &glutStrokeRoman)
# define GLUT_STROKE_MONO_ROMAN ((void *) &glutStrokeMonoRoman)
# define GLUT_BITMAP_9_BY_15 ((void *) &glutBitmap9By15)
# define GLUT_BITMAP_8_BY_13 ((void *) &glutBitmap8By13)
# define GLUT_BITMAP_TIMES_ROMAN_10 ((void *) &glutBitmapTimesRoman10)
# define GLUT_BITMAP_TIMES_ROMAN_24 ((void *) &glutBitmapTimesRoman24)
# define GLUT_BITMAP_HELVETICA_10 ((void *) &glutBitmapHelvetica10)
# define GLUT_BITMAP_HELVETICA_12 ((void *) &glutBitmapHelvetica12)
# define GLUT_BITMAP_HELVETICA_18 ((void *) &glutBitmapHelvetica18)
#endif
/*
* GLUT API macro definitions -- the glutGet parameters
*/
#define GLUT_WINDOW_X 0x0064
#define GLUT_WINDOW_Y 0x0065
#define GLUT_WINDOW_WIDTH 0x0066
#define GLUT_WINDOW_HEIGHT 0x0067
#define GLUT_WINDOW_BUFFER_SIZE 0x0068
#define GLUT_WINDOW_STENCIL_SIZE 0x0069
#define GLUT_WINDOW_DEPTH_SIZE 0x006A
#define GLUT_WINDOW_RED_SIZE 0x006B
#define GLUT_WINDOW_GREEN_SIZE 0x006C
#define GLUT_WINDOW_BLUE_SIZE 0x006D
#define GLUT_WINDOW_ALPHA_SIZE 0x006E
#define GLUT_WINDOW_ACCUM_RED_SIZE 0x006F
#define GLUT_WINDOW_ACCUM_GREEN_SIZE 0x0070
#define GLUT_WINDOW_ACCUM_BLUE_SIZE 0x0071
#define GLUT_WINDOW_ACCUM_ALPHA_SIZE 0x0072
#define GLUT_WINDOW_DOUBLEBUFFER 0x0073
#define GLUT_WINDOW_RGBA 0x0074
#define GLUT_WINDOW_PARENT 0x0075
#define GLUT_WINDOW_NUM_CHILDREN 0x0076
#define GLUT_WINDOW_COLORMAP_SIZE 0x0077
#define GLUT_WINDOW_NUM_SAMPLES 0x0078
#define GLUT_WINDOW_STEREO 0x0079
#define GLUT_WINDOW_CURSOR 0x007A
#define GLUT_SCREEN_WIDTH 0x00C8
#define GLUT_SCREEN_HEIGHT 0x00C9
#define GLUT_SCREEN_WIDTH_MM 0x00CA
#define GLUT_SCREEN_HEIGHT_MM 0x00CB
#define GLUT_MENU_NUM_ITEMS 0x012C
#define GLUT_DISPLAY_MODE_POSSIBLE 0x0190
#define GLUT_INIT_WINDOW_X 0x01F4
#define GLUT_INIT_WINDOW_Y 0x01F5
#define GLUT_INIT_WINDOW_WIDTH 0x01F6
#define GLUT_INIT_WINDOW_HEIGHT 0x01F7
#define GLUT_INIT_DISPLAY_MODE 0x01F8
#define GLUT_ELAPSED_TIME 0x02BC
#define GLUT_WINDOW_FORMAT_ID 0x007B
/*
* GLUT API macro definitions -- the glutDeviceGet parameters
*/
#define GLUT_HAS_KEYBOARD 0x0258
#define GLUT_HAS_MOUSE 0x0259
#define GLUT_HAS_SPACEBALL 0x025A
#define GLUT_HAS_DIAL_AND_BUTTON_BOX 0x025B
#define GLUT_HAS_TABLET 0x025C
#define GLUT_NUM_MOUSE_BUTTONS 0x025D
#define GLUT_NUM_SPACEBALL_BUTTONS 0x025E
#define GLUT_NUM_BUTTON_BOX_BUTTONS 0x025F
#define GLUT_NUM_DIALS 0x0260
#define GLUT_NUM_TABLET_BUTTONS 0x0261
#define GLUT_DEVICE_IGNORE_KEY_REPEAT 0x0262
#define GLUT_DEVICE_KEY_REPEAT 0x0263
#define GLUT_HAS_JOYSTICK 0x0264
#define GLUT_OWNS_JOYSTICK 0x0265
#define GLUT_JOYSTICK_BUTTONS 0x0266
#define GLUT_JOYSTICK_AXES 0x0267
#define GLUT_JOYSTICK_POLL_RATE 0x0268
/*
* GLUT API macro definitions -- the glutLayerGet parameters
*/
#define GLUT_OVERLAY_POSSIBLE 0x0320
#define GLUT_LAYER_IN_USE 0x0321
#define GLUT_HAS_OVERLAY 0x0322
#define GLUT_TRANSPARENT_INDEX 0x0323
#define GLUT_NORMAL_DAMAGED 0x0324
#define GLUT_OVERLAY_DAMAGED 0x0325
/*
* GLUT API macro definitions -- the glutVideoResizeGet parameters
*/
#define GLUT_VIDEO_RESIZE_POSSIBLE 0x0384
#define GLUT_VIDEO_RESIZE_IN_USE 0x0385
#define GLUT_VIDEO_RESIZE_X_DELTA 0x0386
#define GLUT_VIDEO_RESIZE_Y_DELTA 0x0387
#define GLUT_VIDEO_RESIZE_WIDTH_DELTA 0x0388
#define GLUT_VIDEO_RESIZE_HEIGHT_DELTA 0x0389
#define GLUT_VIDEO_RESIZE_X 0x038A
#define GLUT_VIDEO_RESIZE_Y 0x038B
#define GLUT_VIDEO_RESIZE_WIDTH 0x038C
#define GLUT_VIDEO_RESIZE_HEIGHT 0x038D
/*
* GLUT API macro definitions -- the glutUseLayer parameters
*/
#define GLUT_NORMAL 0x0000
#define GLUT_OVERLAY 0x0001
/*
* GLUT API macro definitions -- the glutGetModifiers parameters
*/
#define GLUT_ACTIVE_SHIFT 0x0001
#define GLUT_ACTIVE_CTRL 0x0002
#define GLUT_ACTIVE_ALT 0x0004
/*
* GLUT API macro definitions -- the glutSetCursor parameters
*/
#define GLUT_CURSOR_RIGHT_ARROW 0x0000
#define GLUT_CURSOR_LEFT_ARROW 0x0001
#define GLUT_CURSOR_INFO 0x0002
#define GLUT_CURSOR_DESTROY 0x0003
#define GLUT_CURSOR_HELP 0x0004
#define GLUT_CURSOR_CYCLE 0x0005
#define GLUT_CURSOR_SPRAY 0x0006
#define GLUT_CURSOR_WAIT 0x0007
#define GLUT_CURSOR_TEXT 0x0008
#define GLUT_CURSOR_CROSSHAIR 0x0009
#define GLUT_CURSOR_UP_DOWN 0x000A
#define GLUT_CURSOR_LEFT_RIGHT 0x000B
#define GLUT_CURSOR_TOP_SIDE 0x000C
#define GLUT_CURSOR_BOTTOM_SIDE 0x000D
#define GLUT_CURSOR_LEFT_SIDE 0x000E
#define GLUT_CURSOR_RIGHT_SIDE 0x000F
#define GLUT_CURSOR_TOP_LEFT_CORNER 0x0010
#define GLUT_CURSOR_TOP_RIGHT_CORNER 0x0011
#define GLUT_CURSOR_BOTTOM_RIGHT_CORNER 0x0012
#define GLUT_CURSOR_BOTTOM_LEFT_CORNER 0x0013
#define GLUT_CURSOR_INHERIT 0x0064
#define GLUT_CURSOR_NONE 0x0065
#define GLUT_CURSOR_FULL_CROSSHAIR 0x0066
/*
* GLUT API macro definitions -- RGB color component specification definitions
*/
#define GLUT_RED 0x0000
#define GLUT_GREEN 0x0001
#define GLUT_BLUE 0x0002
/*
* GLUT API macro definitions -- additional keyboard and joystick definitions
*/
#define GLUT_KEY_REPEAT_OFF 0x0000
#define GLUT_KEY_REPEAT_ON 0x0001
#define GLUT_KEY_REPEAT_DEFAULT 0x0002
#define GLUT_JOYSTICK_BUTTON_A 0x0001
#define GLUT_JOYSTICK_BUTTON_B 0x0002
#define GLUT_JOYSTICK_BUTTON_C 0x0004
#define GLUT_JOYSTICK_BUTTON_D 0x0008
/*
* GLUT API macro definitions -- game mode definitions
*/
#define GLUT_GAME_MODE_ACTIVE 0x0000
#define GLUT_GAME_MODE_POSSIBLE 0x0001
#define GLUT_GAME_MODE_WIDTH 0x0002
#define GLUT_GAME_MODE_HEIGHT 0x0003
#define GLUT_GAME_MODE_PIXEL_DEPTH 0x0004
#define GLUT_GAME_MODE_REFRESH_RATE 0x0005
#define GLUT_GAME_MODE_DISPLAY_CHANGED 0x0006
/*
* Initialization functions, see fglut_init.c
*/
FGAPI void FGAPIENTRY glutInit( int* pargc, char** argv );
FGAPI void FGAPIENTRY glutInitWindowPosition( int x, int y );
FGAPI void FGAPIENTRY glutInitWindowSize( int width, int height );
FGAPI void FGAPIENTRY glutInitDisplayMode( unsigned int displayMode );
FGAPI void FGAPIENTRY glutInitDisplayString( const char* displayMode );
/*
* Process loop function, see fg_main.c
*/
FGAPI void FGAPIENTRY glutMainLoop( void );
/*
* Window management functions, see fg_window.c
*/
FGAPI int FGAPIENTRY glutCreateWindow( const char* title );
FGAPI int FGAPIENTRY glutCreateSubWindow( int window, int x, int y, int width, int height );
FGAPI void FGAPIENTRY glutDestroyWindow( int window );
FGAPI void FGAPIENTRY glutSetWindow( int window );
FGAPI int FGAPIENTRY glutGetWindow( void );
FGAPI void FGAPIENTRY glutSetWindowTitle( const char* title );
FGAPI void FGAPIENTRY glutSetIconTitle( const char* title );
FGAPI void FGAPIENTRY glutReshapeWindow( int width, int height );
FGAPI void FGAPIENTRY glutPositionWindow( int x, int y );
FGAPI void FGAPIENTRY glutShowWindow( void );
FGAPI void FGAPIENTRY glutHideWindow( void );
FGAPI void FGAPIENTRY glutIconifyWindow( void );
FGAPI void FGAPIENTRY glutPushWindow( void );
FGAPI void FGAPIENTRY glutPopWindow( void );
FGAPI void FGAPIENTRY glutFullScreen( void );
/*
* Display-related functions, see fg_display.c
*/
FGAPI void FGAPIENTRY glutPostWindowRedisplay( int window );
FGAPI void FGAPIENTRY glutPostRedisplay( void );
FGAPI void FGAPIENTRY glutSwapBuffers( void );
/*
* Mouse cursor functions, see fg_cursor.c
*/
FGAPI void FGAPIENTRY glutWarpPointer( int x, int y );
FGAPI void FGAPIENTRY glutSetCursor( int cursor );
/*
* Overlay stuff, see fg_overlay.c
*/
FGAPI void FGAPIENTRY glutEstablishOverlay( void );
FGAPI void FGAPIENTRY glutRemoveOverlay( void );
FGAPI void FGAPIENTRY glutUseLayer( GLenum layer );
FGAPI void FGAPIENTRY glutPostOverlayRedisplay( void );
FGAPI void FGAPIENTRY glutPostWindowOverlayRedisplay( int window );
FGAPI void FGAPIENTRY glutShowOverlay( void );
FGAPI void FGAPIENTRY glutHideOverlay( void );
/*
* Menu stuff, see fg_menu.c
*/
FGAPI int FGAPIENTRY glutCreateMenu( void (* callback)( int menu ) );
FGAPI void FGAPIENTRY glutDestroyMenu( int menu );
FGAPI int FGAPIENTRY glutGetMenu( void );
FGAPI void FGAPIENTRY glutSetMenu( int menu );
FGAPI void FGAPIENTRY glutAddMenuEntry( const char* label, int value );
FGAPI void FGAPIENTRY glutAddSubMenu( const char* label, int subMenu );
FGAPI void FGAPIENTRY glutChangeToMenuEntry( int item, const char* label, int value );
FGAPI void FGAPIENTRY glutChangeToSubMenu( int item, const char* label, int value );
FGAPI void FGAPIENTRY glutRemoveMenuItem( int item );
FGAPI void FGAPIENTRY glutAttachMenu( int button );
FGAPI void FGAPIENTRY glutDetachMenu( int button );
/*
* Global callback functions, see fg_callbacks.c
*/
FGAPI void FGAPIENTRY glutTimerFunc( unsigned int time, void (* callback)( int ), int value );
FGAPI void FGAPIENTRY glutIdleFunc( void (* callback)( void ) );
/*
* Window-specific callback functions, see fg_callbacks.c
*/
FGAPI void FGAPIENTRY glutKeyboardFunc( void (* callback)( unsigned char, int, int ) );
FGAPI void FGAPIENTRY glutSpecialFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutReshapeFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutVisibilityFunc( void (* callback)( int ) );
FGAPI void FGAPIENTRY glutDisplayFunc( void (* callback)( void ) );
FGAPI void FGAPIENTRY glutMouseFunc( void (* callback)( int, int, int, int ) );
FGAPI void FGAPIENTRY glutMotionFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutPassiveMotionFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutEntryFunc( void (* callback)( int ) );
FGAPI void FGAPIENTRY glutKeyboardUpFunc( void (* callback)( unsigned char, int, int ) );
FGAPI void FGAPIENTRY glutSpecialUpFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutJoystickFunc( void (* callback)( unsigned int, int, int, int ), int pollInterval );
FGAPI void FGAPIENTRY glutMenuStateFunc( void (* callback)( int ) );
FGAPI void FGAPIENTRY glutMenuStatusFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutOverlayDisplayFunc( void (* callback)( void ) );
FGAPI void FGAPIENTRY glutWindowStatusFunc( void (* callback)( int ) );
FGAPI void FGAPIENTRY glutSpaceballMotionFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutSpaceballRotateFunc( void (* callback)( int, int, int ) );
FGAPI void FGAPIENTRY glutSpaceballButtonFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutButtonBoxFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutDialsFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutTabletMotionFunc( void (* callback)( int, int ) );
FGAPI void FGAPIENTRY glutTabletButtonFunc( void (* callback)( int, int, int, int ) );
/*
* State setting and retrieval functions, see fg_state.c
*/
FGAPI int FGAPIENTRY glutGet( GLenum query );
FGAPI int FGAPIENTRY glutDeviceGet( GLenum query );
FGAPI int FGAPIENTRY glutGetModifiers( void );
FGAPI int FGAPIENTRY glutLayerGet( GLenum query );
/*
* Font stuff, see fg_font.c
*/
FGAPI void FGAPIENTRY glutBitmapCharacter( void* font, int character );
FGAPI int FGAPIENTRY glutBitmapWidth( void* font, int character );
FGAPI void FGAPIENTRY glutStrokeCharacter( void* font, int character );
FGAPI int FGAPIENTRY glutStrokeWidth( void* font, int character );
FGAPI GLfloat FGAPIENTRY glutStrokeWidthf( void* font, int character ); /* GLUT 3.8 */
FGAPI int FGAPIENTRY glutBitmapLength( void* font, const unsigned char* string );
FGAPI int FGAPIENTRY glutStrokeLength( void* font, const unsigned char* string );
FGAPI GLfloat FGAPIENTRY glutStrokeLengthf( void* font, const unsigned char *string ); /* GLUT 3.8 */
/*
* Geometry functions, see fg_geometry.c
*/
FGAPI void FGAPIENTRY glutWireCube( double size );
FGAPI void FGAPIENTRY glutSolidCube( double size );
FGAPI void FGAPIENTRY glutWireSphere( double radius, GLint slices, GLint stacks );
FGAPI void FGAPIENTRY glutSolidSphere( double radius, GLint slices, GLint stacks );
FGAPI void FGAPIENTRY glutWireCone( double base, double height, GLint slices, GLint stacks );
FGAPI void FGAPIENTRY glutSolidCone( double base, double height, GLint slices, GLint stacks );
FGAPI void FGAPIENTRY glutWireTorus( double innerRadius, double outerRadius, GLint sides, GLint rings );
FGAPI void FGAPIENTRY glutSolidTorus( double innerRadius, double outerRadius, GLint sides, GLint rings );
FGAPI void FGAPIENTRY glutWireDodecahedron( void );
FGAPI void FGAPIENTRY glutSolidDodecahedron( void );
FGAPI void FGAPIENTRY glutWireOctahedron( void );
FGAPI void FGAPIENTRY glutSolidOctahedron( void );
FGAPI void FGAPIENTRY glutWireTetrahedron( void );
FGAPI void FGAPIENTRY glutSolidTetrahedron( void );
FGAPI void FGAPIENTRY glutWireIcosahedron( void );
FGAPI void FGAPIENTRY glutSolidIcosahedron( void );
/*
* Teapot rendering functions, found in fg_teapot.c
* NB: front facing polygons have clockwise winding, not counter clockwise
*/
FGAPI void FGAPIENTRY glutWireTeapot( double size );
FGAPI void FGAPIENTRY glutSolidTeapot( double size );
/*
* Game mode functions, see fg_gamemode.c
*/
FGAPI void FGAPIENTRY glutGameModeString( const char* string );
FGAPI int FGAPIENTRY glutEnterGameMode( void );
FGAPI void FGAPIENTRY glutLeaveGameMode( void );
FGAPI int FGAPIENTRY glutGameModeGet( GLenum query );
/*
* Video resize functions, see fg_videoresize.c
*/
FGAPI int FGAPIENTRY glutVideoResizeGet( GLenum query );
FGAPI void FGAPIENTRY glutSetupVideoResizing( void );
FGAPI void FGAPIENTRY glutStopVideoResizing( void );
FGAPI void FGAPIENTRY glutVideoResize( int x, int y, int width, int height );
FGAPI void FGAPIENTRY glutVideoPan( int x, int y, int width, int height );
/*
* Colormap functions, see fg_misc.c
*/
FGAPI void FGAPIENTRY glutSetColor( int color, GLfloat red, GLfloat green, GLfloat blue );
FGAPI GLfloat FGAPIENTRY glutGetColor( int color, int component );
FGAPI void FGAPIENTRY glutCopyColormap( int window );
/*
* Misc keyboard and joystick functions, see fg_misc.c
*/
FGAPI void FGAPIENTRY glutIgnoreKeyRepeat( int ignore );
FGAPI void FGAPIENTRY glutSetKeyRepeat( int repeatMode );
FGAPI void FGAPIENTRY glutForceJoystickFunc( void );
/*
* Misc functions, see fg_misc.c
*/
FGAPI int FGAPIENTRY glutExtensionSupported( const char* extension );
FGAPI void FGAPIENTRY glutReportErrors( void );
/* Comment from glut.h of classic GLUT:
Win32 has an annoying issue where there are multiple C run-time
libraries (CRTs). If the executable is linked with a different CRT
from the GLUT DLL, the GLUT DLL will not share the same CRT static
data seen by the executable. In particular, atexit callbacks registered
in the executable will not be called if GLUT calls its (different)
exit routine). GLUT is typically built with the
"/MD" option (the CRT with multithreading DLL support), but the Visual
C++ linker default is "/ML" (the single threaded CRT).
One workaround to this issue is requiring users to always link with
the same CRT as GLUT is compiled with. That requires users supply a
non-standard option. GLUT 3.7 has its own built-in workaround where
the executable's "exit" function pointer is covertly passed to GLUT.
GLUT then calls the executable's exit function pointer to ensure that
any "atexit" calls registered by the application are called if GLUT
needs to exit.
Note that the __glut*WithExit routines should NEVER be called directly.
To avoid the atexit workaround, #define GLUT_DISABLE_ATEXIT_HACK. */
/* to get the prototype for exit() */
#include <stdlib.h>
#if defined(_WIN32) && !defined(GLUT_DISABLE_ATEXIT_HACK) && !defined(__WATCOMC__)
FGAPI void FGAPIENTRY __glutInitWithExit(int *argcp, char **argv, void (__cdecl *exitfunc)(int));
FGAPI int FGAPIENTRY __glutCreateWindowWithExit(const char *title, void (__cdecl *exitfunc)(int));
FGAPI int FGAPIENTRY __glutCreateMenuWithExit(void (* func)(int), void (__cdecl *exitfunc)(int));
#ifndef FREEGLUT_BUILDING_LIB
#if defined(__GNUC__)
#define FGUNUSED __attribute__((unused))
#else
#define FGUNUSED
#endif
static void FGAPIENTRY FGUNUSED glutInit_ATEXIT_HACK(int *argcp, char **argv) { __glutInitWithExit(argcp, argv, exit); }
#define glutInit glutInit_ATEXIT_HACK
static int FGAPIENTRY FGUNUSED glutCreateWindow_ATEXIT_HACK(const char *title) { return __glutCreateWindowWithExit(title, exit); }
#define glutCreateWindow glutCreateWindow_ATEXIT_HACK
static int FGAPIENTRY FGUNUSED glutCreateMenu_ATEXIT_HACK(void (* func)(int)) { return __glutCreateMenuWithExit(func, exit); }
#define glutCreateMenu glutCreateMenu_ATEXIT_HACK
#endif
#endif
#ifdef __cplusplus
}
#endif
/*** END OF FILE ***/
#endif /* __FREEGLUT_STD_H__ */
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#ifndef __GLUT_H__
#define __GLUT_H__
/*
* glut.h
*
* The freeglut library include file
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
* OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
* PAWEL W. OLSZTA BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
* IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/
#include "freeglut_std.h"
/*** END OF FILE ***/
#endif /* __GLUT_H__ */
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#include "json.h"
#include <iomanip>
#include <sstream>
#include <iostream>
#include <cmath>
#include <cfloat>
#include <set>
#include <cstdlib>
#include <math.h>
#include <stdlib.h>
namespace json
{
Value Value::null;
//constructors
Value::Value()
{
type = Type::nullValue;
value.objectValue = NULL;
}
Value::Value(Type type)
{
this->type = type;
if (type == Type::stringValue)
value.stringValue = new std::string();
if (type == Type::arrayValue)
value.arrayValue = new std::vector<Value>();
if (type == Type::objectValue)
value.objectValue = new std::map<std::string, Value>();
}
Value::Value(int value)
{
type = Type::intValue;
this->value.intValue = value;
}
Value::Value(float value)
{
type = Type::floatValue;
this->value.floatValue = value;
}
Value::Value(bool value)
{
type = Type::boolValue;
this->value.boolValue = value;
}
Value::Value(const std::string &value)
{
type = Type::stringValue;
this->value.stringValue = new std::string();
this->value.stringValue->assign(value);
}
Value::Value(const char* value)
{
type = Type::stringValue;
this->value.stringValue = new std::string();
this->value.stringValue->assign(value);
}
Value::Value(const Value& other) : Value(other.type)
{
if (type == Type::objectValue)
*this->value.objectValue = *other.value.objectValue;
else if (type == Type::arrayValue)
*this->value.arrayValue = *other.value.arrayValue;
else if (type == Type::stringValue)
this->value.stringValue->assign(*other.value.stringValue);
else
this->value = other.value;
}
void Value::operator=(const Value& other)
{
if (type != other.type)
{
if (type == Type::stringValue)
delete value.stringValue;
if (type == Type::arrayValue)
delete value.arrayValue;
if (type == Type::objectValue)
delete value.objectValue;
this->type = other.type;
if (type == Type::stringValue)
value.stringValue = new std::string();
if (type == Type::arrayValue)
value.arrayValue = new std::vector<Value>();
if (type == Type::objectValue)
value.objectValue = new std::map<std::string, Value>();
}
if (type == Type::objectValue)
*this->value.objectValue = *other.value.objectValue;
else if (type == Type::arrayValue)
*this->value.arrayValue = *other.value.arrayValue;
else if (type == Type::stringValue)
this->value.stringValue->assign(*other.value.stringValue);
else
this->value = other.value;
}
Value::~Value()
{
if (type == Type::stringValue)
delete value.stringValue;
else if (type == Type::arrayValue)
delete value.arrayValue;
else if (type == Type::objectValue)
delete value.objectValue;
}
size_t Value::size() const
{
assert(type == Type::arrayValue || type == Type::objectValue);
if (type == Type::arrayValue)
return value.arrayValue->size();
else if (type == Type::objectValue)
return value.objectValue->size();
throw "Unsupported";
}
void Value::push_back(const Value& value)
{
assert(type == Type::arrayValue || type == Type::nullValue);
if (type == Type::nullValue)
{
type = Type::arrayValue;
this->value.arrayValue = new std::vector<Value>();
}
this->value.arrayValue->push_back(value);
}
Value& Value::operator[](const std::string &key)
{
assert(type == Type::objectValue);
return (*value.objectValue)[key];
}
Value& Value::operator[](const std::string &key) const
{
assert(type == Type::objectValue);
return (*value.objectValue)[key];
}
Value& Value::operator[](const char* key)
{
assert(type == Type::objectValue || type == Type::nullValue);
if (type == Type::nullValue)
{
type = Type::objectValue;
value.objectValue = new std::map<std::string, Value>();
}
return (*value.objectValue)[std::string(key)];
}
Value& Value::operator[](const char* key) const
{
assert(type == Type::objectValue);
return (*value.objectValue)[std::string(key)];
}
Value& Value::operator[](size_t index)
{
assert(type == Type::arrayValue);
return (*value.arrayValue)[index];
}
Value& Value::operator[](size_t index) const
{
assert(type == Type::arrayValue);
return (*value.arrayValue)[index];
}
Value& Value::operator[](int index)
{
assert(type == Type::arrayValue);
return (*value.arrayValue)[index];
}
Value& Value::operator[](int index) const
{
assert(type == Type::arrayValue);
return (*value.arrayValue)[index];
}
void Value::erase(size_t index)
{
throw "Cannot cast";
}
Value::Iterator Value::end() const
{
if (type == Type::objectValue)
return Iterator(value.objectValue->end());
else if (type == Type::arrayValue)
return Iterator(value.arrayValue->end());
throw "oops";
}
Value::Iterator Value::begin() const
{
if (type == Type::objectValue)
return Iterator(value.objectValue->begin());
else if (type == Type::arrayValue)
return Iterator(value.arrayValue->begin());
throw "oops";
}
///iterator stuff
Value Value::Iterator::operator*()
{
if (type == Type::objectValue)
return this->objectIterator->second;
else if (type == Type::arrayValue)
return *arrayIterator;
throw "Oops";
}
bool Value::Iterator::operator!=(const Iterator &other)
{
if (type == Type::objectValue)
return this->objectIterator != other.objectIterator;
else if (type == Type::arrayValue)
return this->arrayIterator != other.arrayIterator;
throw "Oops";
}
void Value::Iterator::operator++()
{
if (type == Type::objectValue)
this->objectIterator++;
else if (type == Type::arrayValue)
this->arrayIterator++;
}
void Value::Iterator::operator++(int)
{
if (type == Type::objectValue)
this->objectIterator++;
else if (type == Type::arrayValue)
this->arrayIterator++;
}
Value::Iterator::Iterator(const std::vector<Value>::iterator& arrayIterator)
{
type = Type::arrayValue;
this->arrayIterator = arrayIterator;
}
Value::Iterator::Iterator(const std::map<std::string, Value>::iterator& objectIterator)
{
type = Type::objectValue;
this->objectIterator = objectIterator;
}
std::string Value::Iterator::key()
{
assert(type == Type::objectValue);
return this->objectIterator->first;
}
Value& Value::Iterator::value()
{
assert(type == Type::objectValue);
return this->objectIterator->second;
}
static void ltrim(std::istream& stream);
static void eatComment(std::istream& stream);
static Value eatString(std::istream& stream);
static Value eatObject(std::istream& stream);
static Value eatArray(std::istream& stream);
static Value eatNumeric(std::istream& stream, char firstChar);
static Value eatBool(std::istream& stream);
static Value eatNull(std::istream& stream);
static Value eatValue(std::istream& stream);
//reading
static void ltrim(std::istream& stream)
{
char c = stream.peek();
while (c == ' ' || c == '\t' || c == '\n' || c == '\r')
{
stream.get();
c = stream.peek();
}
};
static Value eatString(std::istream& stream)
{
std::string value = "";
bool escaped = false;
while (!stream.eof())
{
char c = stream.get();
if (c == '\\' && !escaped)
escaped = !escaped;
else if (c == '\"' && !escaped)
return Value(value);
else
{
value += c;
escaped = false;
}
}
return Value(value);
};
static Value eatObject(std::istream& stream)
{
Value obj(Type::objectValue);
while (!stream.eof())
{
ltrim(stream);
char token = stream.get();
if (token == '}')
break; //empty object
if (token == '/')
{
eatComment(stream);
token = stream.get();
}
assert(token == '"');
Value key = eatString(stream);
ltrim(stream);
token = stream.get();
assert(token == ':');
ltrim(stream);
Value val = eatValue(stream);
obj[key.asString()] = val;
ltrim(stream);
token = stream.get();
if (token == '}')
break;
assert(token == ',');
}
return obj;
};
static Value eatArray(std::istream& stream)
{
Value obj(Type::arrayValue);
while (!stream.eof())
{
ltrim(stream);
if (stream.peek() == ']')
{
stream.get();
break;
}
obj.push_back(eatValue(stream));
ltrim(stream);
char token = stream.get();
if (token == '/')
{
eatComment(stream);
token = stream.get();
}
if (token == ']')
break;
assert(token == ',');
}
return obj;
};
static Value eatNumeric(std::istream& stream, char firstChar)
{
std::string numeric(1, firstChar);
while (!stream.eof())
{
char token = stream.peek();
if ((token >= '0' && token <= '9') || token == '.' || token == '-')
numeric += stream.get();
else
break;
}
if (numeric.find('.') == std::string::npos)
return Value(atoi(numeric.c_str()));
else
return Value((float)atof(numeric.c_str()));
};
static Value eatBool(std::istream& stream)
{
char token = stream.get();
if (token == 'a') //fAlse
{
stream.get(); //l
stream.get(); //s
stream.get(); //e
return false;
}
else if (token == 'r') //tRue
{
stream.get(); // u
stream.get(); // e
return true;
}
return Value(Type::nullValue);
};
static Value eatNull(std::istream& stream)
{
return Value(Type::nullValue);
};
//precondition: / is already eaten
static void eatComment(std::istream& stream)
{
char token = stream.get();
assert(token == '/' || token == '*');
if (token == '*')
{
char last = token;
while ((last != '*' || token != '/') && !stream.eof())
{
last = token;
token = stream.get();
}
}
else if (token == '/')
while (token != '\n' && !stream.eof())
token = stream.get();
ltrim(stream);
}
static Value eatValue(std::istream& stream)
{
ltrim(stream);
char token = stream.get();
if (token == '{')
return eatObject(stream);
if (token == '[')
return eatArray(stream);
if ((token >= '0' && token <= '9') || token == '.' || token == '-')
return eatNumeric(stream, token);
if (token == '"')
return eatString(stream);
if (token == 't' || token == 'f')
return eatBool(stream);
if (token == 'n')
return eatNull(stream);
if (token == '/')
{
eatComment(stream);
return eatValue(stream);
}
throw "Unable to parse json";
};
Value readJson(const std::string &data)
{
std::stringstream stream;
stream << data;
printf("%s", "test");
return eatValue(stream);
}
Value readJson(std::istream &stream)
{
return eatValue(stream);
}
std::ostream& indent(std::ostream& stream, int level)
{
for (int i = 0; i < level; i++)
stream << '\t';
return stream;
}
std::ostream& Value::prettyPrint(std::ostream& stream, json::Value& printConfig, int level) const
{
stream << std::fixed << std::setprecision(6);
switch (type)
{
case Type::intValue:
stream << value.intValue;
break;
case Type::floatValue:
assert(!isnan(value.floatValue));
//assert(isnormal(value.floatValue));
if (value.floatValue >= 0)
stream << " ";
stream << value.floatValue;
break;
case Type::boolValue:
stream << (value.boolValue ? "true" : "false");
break;
case Type::stringValue:
stream << "\"" << *value.stringValue << "\""; //TODO: escape \'s
break;
case Type::arrayValue:
{
stream << "[";
int wrap = 99999;
if (value.arrayValue->size() > 10)
wrap = 1;
if (value.arrayValue->at(0).isArray() || value.arrayValue->at(0).isObject())
wrap = 1;
else
wrap = 3;
std::string seperator = " ";
if (!printConfig.isNull() && printConfig.isMember("wrap"))
wrap = printConfig["wrap"];
if (!printConfig.isNull() && printConfig.isMember("seperator"))
seperator = printConfig["seperator"].asString();
int index = 0;
if ((long)size() > wrap)
{
stream << "\n";
indent(stream, level + 1);
}
for (auto v : *this)
{
if (index > 0)
{
stream << "," << seperator;
if (index % wrap == 0)
{
stream << "\n";
indent(stream, level + 1);
}
}
json::Value childPrintConfig = json::Value::null;
if (!printConfig.isNull())
{
if (printConfig.isMember("elements"))
childPrintConfig = printConfig["elements"];
else if (printConfig.isMember("recursive") && printConfig["recursive"].asBool() == true)
childPrintConfig = printConfig;
}
v.prettyPrint(stream, childPrintConfig, level + 1);
index++;
}
if ((long)size() > wrap)
{
stream << "\n";
indent(stream, level);
}
stream << "]";
break;
}
case Type::objectValue:
{
stream << "{\n";
int wrap = 99999;
if (value.arrayValue->size() > 10)
wrap = 1;
if (value.arrayValue->at(0).isArray() || value.arrayValue->at(0).isObject())
wrap = 1;
else
wrap = 3;
std::string seperator = " ";
if (!printConfig.isNull() && printConfig.isMember("wrap"))
wrap = printConfig["wrap"];
if (!printConfig.isNull() && printConfig.isMember("seperator"))
seperator = printConfig["seperator"].asString();
int index = 0;
indent(stream, level + 1);
//for (auto v : *value.objectValue)
auto printEl = [&](const std::pair<const std::string&, const Value&> v)
{
if (index > 0)
{
stream << "," << seperator;
if (index % wrap == 0)
{
stream << "\n";
indent(stream, level + 1);
}
}
stream << "\"" << v.first << "\" : ";
if (
(v.second.isArray() || v.second.isObject()) &&
(printConfig.isNull() ||
(
printConfig.isMember(v.first) &&
printConfig[v.first].isObject() &&
printConfig[v.first].isMember("wrap") &&
printConfig[v.first]["wrap"].asInt() < (int)v.second.size())
)
)
{
stream << "\n";
indent(stream, level + 1);
}
json::Value childPrintConfig = json::Value::null;
if (!printConfig.isNull())
{
if (printConfig.isMember(v.first))
childPrintConfig = printConfig[v.first];
else if (printConfig.isMember("recursive") && printConfig["recursive"].asBool() == true)
childPrintConfig = printConfig;
}
v.second.prettyPrint(stream, childPrintConfig, level + 1);;
index++;
};
std::set<std::string> printed;
if (!printConfig.isNull())
{
if (printConfig.isMember("sort"))
{
for (std::string el : printConfig["sort"])
{
if (isMember(el))
{
printEl(std::pair<const std::string&, const Value&>(el, (*value.objectValue)[el]));
printed.insert(el);
}
}
}
}
for (auto v : *value.objectValue)
if (printed.find(v.first) == printed.end())
printEl(v);
stream << "\n";
indent(stream, level);
stream << "}";
break;
}
case Type::nullValue:
stream << "null";
break;
}
return stream;
}
std::ostream & operator<<(std::ostream &stream, const Value& value)
{
stream << std::fixed<< std::setprecision(6);
switch (value.type)
{
case Type::intValue:
stream << value.value.intValue;
break;
case Type::floatValue:
assert(!isnan(value.value.floatValue));
//assert(isnormal(value.value.floatValue));
stream << value.value.floatValue;
break;
case Type::boolValue:
stream << (value.value.boolValue ? "true" : "false");
break;
case Type::stringValue:
stream << "\"" << *value.value.stringValue << "\""; //TODO: escape \'s
break;
case Type::arrayValue:
{
stream << "[";
bool first = true;
for (auto v : value)
{
if (!first)
stream << ", ";
stream << v;
first = false;
}
stream << "]";
break;
}
case Type::objectValue:
{
stream << "{";
bool first = true;
for (auto v : *value.value.objectValue)
{
if (!first)
stream << ", ";
stream << "\"" << v.first << "\" : " << v.second << std::endl;
first = false;
}
stream << "}";
break;
}
case Type::nullValue:
stream << "null";
break;
}
return stream;
}
}
+124
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#pragma once
#include <string>
#include <map>
#include <vector>
#include <assert.h>
namespace json
{
enum class Type
{
intValue,
floatValue,
boolValue,
stringValue,
arrayValue,
objectValue,
nullValue
};
class Value
{
public:
Type type;
union ValueHolder
{
int intValue;
float floatValue;
bool boolValue;
std::string* stringValue;
std::vector<Value>* arrayValue;
std::map<std::string, Value>* objectValue;
} value;
static Value null;
Value();
Value(Type type);
Value(int value);
Value(float value);
Value(bool value);
Value(const std::string &value);
Value(const char* value);
Value(const Value& other);
virtual ~Value();
void operator = (const Value& other);
inline operator int() const { return asInt(); }
inline operator float() const { return asFloat(); }
inline operator bool() const { return asBool(); }
inline operator const std::string&() const { return asString(); }
inline int asInt() const { assert(type == Type::intValue); return value.intValue; }
inline float asFloat() const { assert(type == Type::floatValue || type == Type::intValue); return type == Type::floatValue ? value.floatValue : value.intValue; }
inline bool asBool() const { assert(type == Type::boolValue); return value.boolValue; }
inline const std::string& asString() const { assert(type == Type::stringValue); return *value.stringValue; }
inline bool isNull() const { return type == Type::nullValue; }
inline bool isString() const { return type == Type::stringValue; }
inline bool isInt() const { return type == Type::intValue; }
inline bool isBool() const { return type == Type::boolValue; }
inline bool isFloat() const { return type == Type::floatValue; }
inline bool isObject() const { return type == Type::objectValue; }
inline bool isArray() const { return type == Type::arrayValue; }
inline bool isMember(const std::string &name) const { assert(type == Type::objectValue); return value.objectValue->find(name) != value.objectValue->end(); }
//array/object
virtual size_t size() const;
//array
virtual void push_back(const Value& value);
virtual void erase(size_t index);
virtual Value& operator [] (size_t index);
virtual Value& operator [] (int index);
virtual Value& operator [] (size_t index) const;
virtual Value& operator [] (int index) const;
virtual Value& operator [] (const std::string &key);
virtual Value& operator [] (const char* key);
virtual Value& operator [] (const std::string &key) const;
virtual Value& operator [] (const char* key) const;
virtual bool operator == (const std::string &other) { return asString() == other; }
virtual bool operator == (const int other) { return asInt() == other; }
virtual bool operator == (const float other) { return asFloat() == other; }
std::ostream& prettyPrint(std::ostream& stream, json::Value& printConfig = null, int level = 0) const;
class Iterator;
Iterator begin() const;
Iterator end() const;
};
class Value::Iterator
{
private:
Type type;
std::map<std::string, Value>::iterator objectIterator;
std::vector<Value>::iterator arrayIterator;
public:
Iterator(const std::map<std::string, Value>::iterator& objectIterator);
Iterator(const std::vector<Value>::iterator& arrayIterator);
void operator ++();
void operator ++(int);
bool operator != (const Iterator &other);
Value operator*();
std::string key();
Value& value();
};
Value readJson(const std::string &data);
Value readJson(std::istream &stream);
std::ostream &operator << (std::ostream &stream, const Value& value); //serializes json data
}
+221
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/*!
* \file serial/impl/unix.h
* \author William Woodall <wjwwood@gmail.com>
* \author John Harrison <ash@greaterthaninfinity.com>
* \version 0.1
*
* \section LICENSE
*
* The MIT License
*
* Copyright (c) 2012 William Woodall, John Harrison
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*
* \section DESCRIPTION
*
* This provides a unix based pimpl for the Serial class. This implementation is
* based off termios.h and uses select for multiplexing the IO ports.
*
*/
#if !defined(_WIN32)
#ifndef SERIAL_IMPL_UNIX_H
#define SERIAL_IMPL_UNIX_H
#include <pthread.h>
#include "../serial.h"
namespace serial {
using std::size_t;
using std::string;
using std::invalid_argument;
using serial::SerialException;
using serial::IOException;
class MillisecondTimer {
public:
MillisecondTimer(const uint32_t millis);
int64_t remaining();
private:
static timespec timespec_now();
timespec expiry;
};
class serial::Serial::SerialImpl {
public:
SerialImpl (const string &port,
unsigned long baudrate,
bytesize_t bytesize,
parity_t parity,
stopbits_t stopbits,
flowcontrol_t flowcontrol);
virtual ~SerialImpl ();
void
open ();
void
close ();
bool
isOpen () const;
size_t
available ();
bool
waitReadable (uint32_t timeout);
void
waitByteTimes (size_t count);
size_t
read (uint8_t *buf, size_t size = 1);
size_t
write (const uint8_t *data, size_t length);
void
flush ();
void
flushInput ();
void
flushOutput ();
void
sendBreak (int duration);
void
setBreak (bool level);
void
setRTS (bool level);
void
setDTR (bool level);
bool
waitForChange ();
bool
getCTS ();
bool
getDSR ();
bool
getRI ();
bool
getCD ();
void
setPort (const string &port);
string
getPort () const;
void
setTimeout (Timeout &timeout);
Timeout
getTimeout () const;
void
setBaudrate (unsigned long baudrate);
unsigned long
getBaudrate () const;
void
setBytesize (bytesize_t bytesize);
bytesize_t
getBytesize () const;
void
setParity (parity_t parity);
parity_t
getParity () const;
void
setStopbits (stopbits_t stopbits);
stopbits_t
getStopbits () const;
void
setFlowcontrol (flowcontrol_t flowcontrol);
flowcontrol_t
getFlowcontrol () const;
void
readLock ();
void
readUnlock ();
void
writeLock ();
void
writeUnlock ();
protected:
void reconfigurePort ();
private:
string port_; // Path to the file descriptor
int fd_; // The current file descriptor
bool is_open_;
bool xonxoff_;
bool rtscts_;
Timeout timeout_; // Timeout for read operations
unsigned long baudrate_; // Baudrate
uint32_t byte_time_ns_; // Nanoseconds to transmit/receive a single byte
parity_t parity_; // Parity
bytesize_t bytesize_; // Size of the bytes
stopbits_t stopbits_; // Stop Bits
flowcontrol_t flowcontrol_; // Flow Control
// Mutex used to lock the read functions
pthread_mutex_t read_mutex;
// Mutex used to lock the write functions
pthread_mutex_t write_mutex;
};
}
#endif // SERIAL_IMPL_UNIX_H
#endif // !defined(_WIN32)
+207
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/*!
* \file serial/impl/windows.h
* \author William Woodall <wjwwood@gmail.com>
* \author John Harrison <ash@greaterthaninfinity.com>
* \version 0.1
*
* \section LICENSE
*
* The MIT License
*
* Copyright (c) 2012 William Woodall, John Harrison
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*
* \section DESCRIPTION
*
* This provides a windows implementation of the Serial class interface.
*
*/
#if defined(_WIN32)
#ifndef SERIAL_IMPL_WINDOWS_H
#define SERIAL_IMPL_WINDOWS_H
#include "include/serial.h"
#include "windows.h"
namespace serial {
using std::string;
using std::wstring;
using std::invalid_argument;
using serial::SerialException;
using serial::IOException;
class serial::Serial::SerialImpl {
public:
SerialImpl (const string &port,
unsigned long baudrate,
bytesize_t bytesize,
parity_t parity,
stopbits_t stopbits,
flowcontrol_t flowcontrol);
virtual ~SerialImpl ();
void
open ();
void
close ();
bool
isOpen () const;
size_t
available ();
bool
waitReadable (uint32_t timeout);
void
waitByteTimes (size_t count);
size_t
read (uint8_t *buf, size_t size = 1);
size_t
write (const uint8_t *data, size_t length);
void
flush ();
void
flushInput ();
void
flushOutput ();
void
sendBreak (int duration);
void
setBreak (bool level);
void
setRTS (bool level);
void
setDTR (bool level);
bool
waitForChange ();
bool
getCTS ();
bool
getDSR ();
bool
getRI ();
bool
getCD ();
void
setPort (const string &port);
string
getPort () const;
void
setTimeout (Timeout &timeout);
Timeout
getTimeout () const;
void
setBaudrate (unsigned long baudrate);
unsigned long
getBaudrate () const;
void
setBytesize (bytesize_t bytesize);
bytesize_t
getBytesize () const;
void
setParity (parity_t parity);
parity_t
getParity () const;
void
setStopbits (stopbits_t stopbits);
stopbits_t
getStopbits () const;
void
setFlowcontrol (flowcontrol_t flowcontrol);
flowcontrol_t
getFlowcontrol () const;
void
readLock ();
void
readUnlock ();
void
writeLock ();
void
writeUnlock ();
protected:
void reconfigurePort ();
private:
wstring port_; // Path to the file descriptor
HANDLE fd_;
bool is_open_;
Timeout timeout_; // Timeout for read operations
unsigned long baudrate_; // Baudrate
parity_t parity_; // Parity
bytesize_t bytesize_; // Size of the bytes
stopbits_t stopbits_; // Stop Bits
flowcontrol_t flowcontrol_; // Flow Control
// Mutex used to lock the read functions
HANDLE read_mutex;
// Mutex used to lock the write functions
HANDLE write_mutex;
};
}
#endif // SERIAL_IMPL_WINDOWS_H
#endif // if defined(_WIN32)
+772
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@@ -0,0 +1,772 @@
/*!
* \file serial/serial.h
* \author William Woodall <wjwwood@gmail.com>
* \author John Harrison <ash.gti@gmail.com>
* \version 0.1
*
* \section LICENSE
*
* The MIT License
*
* Copyright (c) 2012 William Woodall
*
* Permission is hereby granted, free of charge, to any person obtaining a
* copy of this software and associated documentation files (the "Software"),
* to deal in the Software without restriction, including without limitation
* the rights to use, copy, modify, merge, publish, distribute, sublicense,
* and/or sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
* DEALINGS IN THE SOFTWARE.
*
* \section DESCRIPTION
*
* This provides a cross platform interface for interacting with Serial Ports.
*/
#ifndef SERIAL_H
#define SERIAL_H
#include <limits>
#include <vector>
#include <string>
#include <cstring>
#include <sstream>
#include <exception>
#include <stdexcept>
#define THROW(exceptionClass, message) throw exceptionClass(__FILE__, \
__LINE__, (message) )
namespace serial {
/*!
* Enumeration defines the possible bytesizes for the serial port.
*/
typedef enum {
fivebits = 5,
sixbits = 6,
sevenbits = 7,
eightbits = 8
} bytesize_t;
/*!
* Enumeration defines the possible parity types for the serial port.
*/
typedef enum {
parity_none = 0,
parity_odd = 1,
parity_even = 2,
parity_mark = 3,
parity_space = 4
} parity_t;
/*!
* Enumeration defines the possible stopbit types for the serial port.
*/
typedef enum {
stopbits_one = 1,
stopbits_two = 2,
stopbits_one_point_five
} stopbits_t;
/*!
* Enumeration defines the possible flowcontrol types for the serial port.
*/
typedef enum {
flowcontrol_none = 0,
flowcontrol_software,
flowcontrol_hardware
} flowcontrol_t;
/*!
* Structure for setting the timeout of the serial port, times are
* in milliseconds.
*
* In order to disable the interbyte timeout, set it to Timeout::max().
*/
struct Timeout {
#ifdef max
# undef max
#endif
static uint32_t max() {return std::numeric_limits<uint32_t>::max();}
/*!
* Convenience function to generate Timeout structs using a
* single absolute timeout.
*
* \param timeout A long that defines the time in milliseconds until a
* timeout occurs after a call to read or write is made.
*
* \return Timeout struct that represents this simple timeout provided.
*/
static Timeout simpleTimeout(uint32_t timeout) {
return Timeout(max(), timeout, 0, timeout, 0);
}
/*! Number of milliseconds between bytes received to timeout on. */
uint32_t inter_byte_timeout;
/*! A constant number of milliseconds to wait after calling read. */
uint32_t read_timeout_constant;
/*! A multiplier against the number of requested bytes to wait after
* calling read.
*/
uint32_t read_timeout_multiplier;
/*! A constant number of milliseconds to wait after calling write. */
uint32_t write_timeout_constant;
/*! A multiplier against the number of requested bytes to wait after
* calling write.
*/
uint32_t write_timeout_multiplier;
explicit Timeout (uint32_t inter_byte_timeout_=0,
uint32_t read_timeout_constant_=0,
uint32_t read_timeout_multiplier_=0,
uint32_t write_timeout_constant_=0,
uint32_t write_timeout_multiplier_=0)
: inter_byte_timeout(inter_byte_timeout_),
read_timeout_constant(read_timeout_constant_),
read_timeout_multiplier(read_timeout_multiplier_),
write_timeout_constant(write_timeout_constant_),
write_timeout_multiplier(write_timeout_multiplier_)
{}
};
/*!
* Class that provides a portable serial port interface.
*/
class Serial {
public:
/*!
* Creates a Serial object and opens the port if a port is specified,
* otherwise it remains closed until serial::Serial::open is called.
*
* \param port A std::string containing the address of the serial port,
* which would be something like 'COM1' on Windows and '/dev/ttyS0'
* on Linux.
*
* \param baudrate An unsigned 32-bit integer that represents the baudrate
*
* \param timeout A serial::Timeout struct that defines the timeout
* conditions for the serial port. \see serial::Timeout
*
* \param bytesize Size of each byte in the serial transmission of data,
* default is eightbits, possible values are: fivebits, sixbits, sevenbits,
* eightbits
*
* \param parity Method of parity, default is parity_none, possible values
* are: parity_none, parity_odd, parity_even
*
* \param stopbits Number of stop bits used, default is stopbits_one,
* possible values are: stopbits_one, stopbits_one_point_five, stopbits_two
*
* \param flowcontrol Type of flowcontrol used, default is
* flowcontrol_none, possible values are: flowcontrol_none,
* flowcontrol_software, flowcontrol_hardware
*
* \throw serial::PortNotOpenedException
* \throw serial::IOException
* \throw std::invalid_argument
*/
Serial (const std::string &port = "",
uint32_t baudrate = 9600,
Timeout timeout = Timeout(),
bytesize_t bytesize = eightbits,
parity_t parity = parity_none,
stopbits_t stopbits = stopbits_one,
flowcontrol_t flowcontrol = flowcontrol_none);
/*! Destructor */
virtual ~Serial ();
/*!
* Opens the serial port as long as the port is set and the port isn't
* already open.
*
* If the port is provided to the constructor then an explicit call to open
* is not needed.
*
* \see Serial::Serial
*
* \throw std::invalid_argument
* \throw serial::SerialException
* \throw serial::IOException
*/
void
open ();
/*! Gets the open status of the serial port.
*
* \return Returns true if the port is open, false otherwise.
*/
bool
isOpen () const;
/*! Closes the serial port. */
void
close ();
/*! Return the number of characters in the buffer. */
size_t
available ();
/*! Block until there is serial data to read or read_timeout_constant
* number of milliseconds have elapsed. The return value is true when
* the function exits with the port in a readable state, false otherwise
* (due to timeout or select interruption). */
bool
waitReadable ();
/*! Block for a period of time corresponding to the transmission time of
* count characters at present serial settings. This may be used in con-
* junction with waitReadable to read larger blocks of data from the
* port. */
void
waitByteTimes (size_t count);
/*! Read a given amount of bytes from the serial port into a given buffer.
*
* The read function will return in one of three cases:
* * The number of requested bytes was read.
* * In this case the number of bytes requested will match the size_t
* returned by read.
* * A timeout occurred, in this case the number of bytes read will not
* match the amount requested, but no exception will be thrown. One of
* two possible timeouts occurred:
* * The inter byte timeout expired, this means that number of
* milliseconds elapsed between receiving bytes from the serial port
* exceeded the inter byte timeout.
* * The total timeout expired, which is calculated by multiplying the
* read timeout multiplier by the number of requested bytes and then
* added to the read timeout constant. If that total number of
* milliseconds elapses after the initial call to read a timeout will
* occur.
* * An exception occurred, in this case an actual exception will be thrown.
*
* \param buffer An uint8_t array of at least the requested size.
* \param size A size_t defining how many bytes to be read.
*
* \return A size_t representing the number of bytes read as a result of the
* call to read.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
size_t
read (uint8_t *buffer, size_t size);
/*! Read a given amount of bytes from the serial port into a give buffer.
*
* \param buffer A reference to a std::vector of uint8_t.
* \param size A size_t defining how many bytes to be read.
*
* \return A size_t representing the number of bytes read as a result of the
* call to read.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
size_t
read (std::vector<uint8_t> &buffer, size_t size = 1);
/*! Read a given amount of bytes from the serial port into a give buffer.
*
* \param buffer A reference to a std::string.
* \param size A size_t defining how many bytes to be read.
*
* \return A size_t representing the number of bytes read as a result of the
* call to read.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
size_t
read (std::string &buffer, size_t size = 1);
/*! Read a given amount of bytes from the serial port and return a string
* containing the data.
*
* \param size A size_t defining how many bytes to be read.
*
* \return A std::string containing the data read from the port.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
std::string
read (size_t size = 1);
/*! Reads in a line or until a given delimiter has been processed.
*
* Reads from the serial port until a single line has been read.
*
* \param buffer A std::string reference used to store the data.
* \param size A maximum length of a line, defaults to 65536 (2^16)
* \param eol A string to match against for the EOL.
*
* \return A size_t representing the number of bytes read.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
size_t
readline (std::string &buffer, size_t size = 65536, std::string eol = "\n");
/*! Reads in a line or until a given delimiter has been processed.
*
* Reads from the serial port until a single line has been read.
*
* \param size A maximum length of a line, defaults to 65536 (2^16)
* \param eol A string to match against for the EOL.
*
* \return A std::string containing the line.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
std::string
readline (size_t size = 65536, std::string eol = "\n");
/*! Reads in multiple lines until the serial port times out.
*
* This requires a timeout > 0 before it can be run. It will read until a
* timeout occurs and return a list of strings.
*
* \param size A maximum length of combined lines, defaults to 65536 (2^16)
*
* \param eol A string to match against for the EOL.
*
* \return A vector<string> containing the lines.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
*/
std::vector<std::string>
readlines (size_t size = 65536, std::string eol = "\n");
/*! Write a string to the serial port.
*
* \param data A const reference containing the data to be written
* to the serial port.
*
* \param size A size_t that indicates how many bytes should be written from
* the given data buffer.
*
* \return A size_t representing the number of bytes actually written to
* the serial port.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
* \throw serial::IOException
*/
size_t
write (const uint8_t *data, size_t size);
/*! Write a string to the serial port.
*
* \param data A const reference containing the data to be written
* to the serial port.
*
* \return A size_t representing the number of bytes actually written to
* the serial port.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
* \throw serial::IOException
*/
size_t
write (const std::vector<uint8_t> &data);
/*! Write a string to the serial port.
*
* \param data A const reference containing the data to be written
* to the serial port.
*
* \return A size_t representing the number of bytes actually written to
* the serial port.
*
* \throw serial::PortNotOpenedException
* \throw serial::SerialException
* \throw serial::IOException
*/
size_t
write (const std::string &data);
/*! Sets the serial port identifier.
*
* \param port A const std::string reference containing the address of the
* serial port, which would be something like 'COM1' on Windows and
* '/dev/ttyS0' on Linux.
*
* \throw std::invalid_argument
*/
void
setPort (const std::string &port);
/*! Gets the serial port identifier.
*
* \see Serial::setPort
*
* \throw std::invalid_argument
*/
std::string
getPort () const;
/*! Sets the timeout for reads and writes using the Timeout struct.
*
* There are two timeout conditions described here:
* * The inter byte timeout:
* * The inter_byte_timeout component of serial::Timeout defines the
* maximum amount of time, in milliseconds, between receiving bytes on
* the serial port that can pass before a timeout occurs. Setting this
* to zero will prevent inter byte timeouts from occurring.
* * Total time timeout:
* * The constant and multiplier component of this timeout condition,
* for both read and write, are defined in serial::Timeout. This
* timeout occurs if the total time since the read or write call was
* made exceeds the specified time in milliseconds.
* * The limit is defined by multiplying the multiplier component by the
* number of requested bytes and adding that product to the constant
* component. In this way if you want a read call, for example, to
* timeout after exactly one second regardless of the number of bytes
* you asked for then set the read_timeout_constant component of
* serial::Timeout to 1000 and the read_timeout_multiplier to zero.
* This timeout condition can be used in conjunction with the inter
* byte timeout condition with out any problems, timeout will simply
* occur when one of the two timeout conditions is met. This allows
* users to have maximum control over the trade-off between
* responsiveness and efficiency.
*
* Read and write functions will return in one of three cases. When the
* reading or writing is complete, when a timeout occurs, or when an
* exception occurs.
*
* \param timeout A serial::Timeout struct containing the inter byte
* timeout, and the read and write timeout constants and multipliers.
*
* \see serial::Timeout
*/
void
setTimeout (Timeout &timeout);
/*! Sets the timeout for reads and writes. */
void
setTimeout (uint32_t inter_byte_timeout, uint32_t read_timeout_constant,
uint32_t read_timeout_multiplier, uint32_t write_timeout_constant,
uint32_t write_timeout_multiplier)
{
Timeout timeout(inter_byte_timeout, read_timeout_constant,
read_timeout_multiplier, write_timeout_constant,
write_timeout_multiplier);
return setTimeout(timeout);
}
/*! Gets the timeout for reads in seconds.
*
* \return A Timeout struct containing the inter_byte_timeout, and read
* and write timeout constants and multipliers.
*
* \see Serial::setTimeout
*/
Timeout
getTimeout () const;
/*! Sets the baudrate for the serial port.
*
* Possible baudrates depends on the system but some safe baudrates include:
* 110, 300, 600, 1200, 2400, 4800, 9600, 14400, 19200, 28800, 38400, 56000,
* 57600, 115200
* Some other baudrates that are supported by some comports:
* 128000, 153600, 230400, 256000, 460800, 921600
*
* \param baudrate An integer that sets the baud rate for the serial port.
*
* \throw std::invalid_argument
*/
void
setBaudrate (uint32_t baudrate);
/*! Gets the baudrate for the serial port.
*
* \return An integer that sets the baud rate for the serial port.
*
* \see Serial::setBaudrate
*
* \throw std::invalid_argument
*/
uint32_t
getBaudrate () const;
/*! Sets the bytesize for the serial port.
*
* \param bytesize Size of each byte in the serial transmission of data,
* default is eightbits, possible values are: fivebits, sixbits, sevenbits,
* eightbits
*
* \throw std::invalid_argument
*/
void
setBytesize (bytesize_t bytesize);
/*! Gets the bytesize for the serial port.
*
* \see Serial::setBytesize
*
* \throw std::invalid_argument
*/
bytesize_t
getBytesize () const;
/*! Sets the parity for the serial port.
*
* \param parity Method of parity, default is parity_none, possible values
* are: parity_none, parity_odd, parity_even
*
* \throw std::invalid_argument
*/
void
setParity (parity_t parity);
/*! Gets the parity for the serial port.
*
* \see Serial::setParity
*
* \throw std::invalid_argument
*/
parity_t
getParity () const;
/*! Sets the stopbits for the serial port.
*
* \param stopbits Number of stop bits used, default is stopbits_one,
* possible values are: stopbits_one, stopbits_one_point_five, stopbits_two
*
* \throw std::invalid_argument
*/
void
setStopbits (stopbits_t stopbits);
/*! Gets the stopbits for the serial port.
*
* \see Serial::setStopbits
*
* \throw std::invalid_argument
*/
stopbits_t
getStopbits () const;
/*! Sets the flow control for the serial port.
*
* \param flowcontrol Type of flowcontrol used, default is flowcontrol_none,
* possible values are: flowcontrol_none, flowcontrol_software,
* flowcontrol_hardware
*
* \throw std::invalid_argument
*/
void
setFlowcontrol (flowcontrol_t flowcontrol);
/*! Gets the flow control for the serial port.
*
* \see Serial::setFlowcontrol
*
* \throw std::invalid_argument
*/
flowcontrol_t
getFlowcontrol () const;
/*! Flush the input and output buffers */
void
flush ();
/*! Flush only the input buffer */
void
flushInput ();
/*! Flush only the output buffer */
void
flushOutput ();
/*! Sends the RS-232 break signal. See tcsendbreak(3). */
void
sendBreak (int duration);
/*! Set the break condition to a given level. Defaults to true. */
void
setBreak (bool level = true);
/*! Set the RTS handshaking line to the given level. Defaults to true. */
void
setRTS (bool level = true);
/*! Set the DTR handshaking line to the given level. Defaults to true. */
void
setDTR (bool level = true);
/*!
* Blocks until CTS, DSR, RI, CD changes or something interrupts it.
*
* Can throw an exception if an error occurs while waiting.
* You can check the status of CTS, DSR, RI, and CD once this returns.
* Uses TIOCMIWAIT via ioctl if available (mostly only on Linux) with a
* resolution of less than +-1ms and as good as +-0.2ms. Otherwise a
* polling method is used which can give +-2ms.
*
* \return Returns true if one of the lines changed, false if something else
* occurred.
*
* \throw SerialException
*/
bool
waitForChange ();
/*! Returns the current status of the CTS line. */
bool
getCTS ();
/*! Returns the current status of the DSR line. */
bool
getDSR ();
/*! Returns the current status of the RI line. */
bool
getRI ();
/*! Returns the current status of the CD line. */
bool
getCD ();
private:
// Disable copy constructors
Serial(const Serial&);
Serial& operator=(const Serial&);
// Pimpl idiom, d_pointer
class SerialImpl;
SerialImpl *pimpl_;
// Scoped Lock Classes
class ScopedReadLock;
class ScopedWriteLock;
// Read common function
size_t
read_ (uint8_t *buffer, size_t size);
// Write common function
size_t
write_ (const uint8_t *data, size_t length);
};
class SerialException : public std::exception
{
// Disable copy constructors
SerialException& operator=(const SerialException&);
std::string e_what_;
public:
SerialException (const char *description) {
std::stringstream ss;
ss << "SerialException " << description << " failed.";
e_what_ = ss.str();
}
SerialException (const SerialException& other) : e_what_(other.e_what_) {}
virtual ~SerialException() throw() {}
virtual const char* what () const throw () {
return e_what_.c_str();
}
};
class IOException : public std::exception
{
// Disable copy constructors
IOException& operator=(const IOException&);
std::string file_;
int line_;
std::string e_what_;
int errno_;
public:
explicit IOException (std::string file, int line, int errnum)
: file_(file), line_(line), errno_(errnum) {
std::stringstream ss;
#if defined(_WIN32) && !defined(__MINGW32__)
char error_str [1024];
strerror_s(error_str, 1024, errnum);
#else
char * error_str = strerror(errnum);
#endif
ss << "IO Exception (" << errno_ << "): " << error_str;
ss << ", file " << file_ << ", line " << line_ << ".";
e_what_ = ss.str();
}
explicit IOException (std::string file, int line, const char * description)
: file_(file), line_(line), errno_(0) {
std::stringstream ss;
ss << "IO Exception: " << description;
ss << ", file " << file_ << ", line " << line_ << ".";
e_what_ = ss.str();
}
virtual ~IOException() throw() {}
IOException (const IOException& other) : line_(other.line_), e_what_(other.e_what_), errno_(other.errno_) {}
int getErrorNumber () { return errno_; }
virtual const char* what () const throw () {
return e_what_.c_str();
}
};
class PortNotOpenedException : public std::exception
{
// Disable copy constructors
const PortNotOpenedException& operator=(PortNotOpenedException);
std::string e_what_;
public:
PortNotOpenedException (const char * description) {
std::stringstream ss;
ss << "PortNotOpenedException " << description << " failed.";
e_what_ = ss.str();
}
PortNotOpenedException (const PortNotOpenedException& other) : e_what_(other.e_what_) {}
virtual ~PortNotOpenedException() throw() {}
virtual const char* what () const throw () {
return e_what_.c_str();
}
};
/*!
* Structure that describes a serial device.
*/
struct PortInfo {
/*! Address of the serial port (this can be passed to the constructor of Serial). */
std::string port;
/*! Human readable description of serial device if available. */
std::string description;
/*! Hardware ID (e.g. VID:PID of USB serial devices) or "n/a" if not available. */
std::string hardware_id;
};
/* Lists the serial ports available on the system
*
* Returns a vector of available serial ports, each represented
* by a serial::PortInfo data structure:
*
* \return vector of serial::PortInfo.
*/
std::vector<PortInfo>
list_ports();
} // namespace serial
#endif
+57
View File
@@ -0,0 +1,57 @@
// This header is from the v8 google project:
// http://code.google.com/p/v8/source/browse/trunk/include/v8stdint.h
// Copyright 2012 the V8 project authors. All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following
// disclaimer in the documentation and/or other materials provided
// with the distribution.
// * Neither the name of Google Inc. nor the names of its
// contributors may be used to endorse or promote products derived
// from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
// Load definitions of standard types.
#ifndef V8STDINT_H_
#define V8STDINT_H_
#include <stddef.h>
#include <stdio.h>
#if defined(_WIN32) && !defined(__MINGW32__)
typedef signed char int8_t;
typedef unsigned char uint8_t;
typedef short int16_t; // NOLINT
typedef unsigned short uint16_t; // NOLINT
typedef int int32_t;
typedef unsigned int uint32_t;
typedef __int64 int64_t;
typedef unsigned __int64 uint64_t;
// intptr_t and friends are defined in crtdefs.h through stdio.h.
#else
#include <stdint.h>
#endif
#endif // V8STDINT_H_
@@ -0,0 +1,335 @@
#if defined(__linux__)
/*
* Copyright (c) 2014 Craig Lilley <cralilley@gmail.com>
* This software is made available under the terms of the MIT licence.
* A copy of the licence can be obtained from:
* http://opensource.org/licenses/MIT
*/
#include <vector>
#include <string>
#include <sstream>
#include <stdexcept>
#include <iostream>
#include <fstream>
#include <cstdio>
#include <cstdarg>
#include <cstdlib>
#include <glob.h>
#include <sys/types.h>
#include <sys/stat.h>
#include <unistd.h>
#include "../../../include/serial.h"
using serial::PortInfo;
using std::istringstream;
using std::ifstream;
using std::getline;
using std::vector;
using std::string;
using std::cout;
using std::endl;
static vector<string> glob(const vector<string>& patterns);
static string basename(const string& path);
static string dirname(const string& path);
static bool path_exists(const string& path);
static string realpath(const string& path);
static string usb_sysfs_friendly_name(const string& sys_usb_path);
static vector<string> get_sysfs_info(const string& device_path);
static string read_line(const string& file);
static string usb_sysfs_hw_string(const string& sysfs_path);
static string format(const char* format, ...);
vector<string>
glob(const vector<string>& patterns)
{
vector<string> paths_found;
if(patterns.size() == 0)
return paths_found;
glob_t glob_results;
int glob_retval = glob(patterns[0].c_str(), 0, NULL, &glob_results);
vector<string>::const_iterator iter = patterns.begin();
while(++iter != patterns.end())
{
glob_retval = glob(iter->c_str(), GLOB_APPEND, NULL, &glob_results);
}
for(int path_index = 0; path_index < glob_results.gl_pathc; path_index++)
{
paths_found.push_back(glob_results.gl_pathv[path_index]);
}
globfree(&glob_results);
return paths_found;
}
string
basename(const string& path)
{
size_t pos = path.rfind("/");
if(pos == std::string::npos)
return path;
return string(path, pos+1, string::npos);
}
string
dirname(const string& path)
{
size_t pos = path.rfind("/");
if(pos == std::string::npos)
return path;
else if(pos == 0)
return "/";
return string(path, 0, pos);
}
bool
path_exists(const string& path)
{
struct stat sb;
if( stat(path.c_str(), &sb ) == 0 )
return true;
return false;
}
string
realpath(const string& path)
{
char* real_path = realpath(path.c_str(), NULL);
string result;
if(real_path != NULL)
{
result = real_path;
free(real_path);
}
return result;
}
string
usb_sysfs_friendly_name(const string& sys_usb_path)
{
unsigned int device_number = 0;
istringstream( read_line(sys_usb_path + "/devnum") ) >> device_number;
string manufacturer = read_line( sys_usb_path + "/manufacturer" );
string product = read_line( sys_usb_path + "/product" );
string serial = read_line( sys_usb_path + "/serial" );
if( manufacturer.empty() && product.empty() && serial.empty() )
return "";
return format("%s %s %s", manufacturer.c_str(), product.c_str(), serial.c_str() );
}
vector<string>
get_sysfs_info(const string& device_path)
{
string device_name = basename( device_path );
string friendly_name;
string hardware_id;
string sys_device_path = format( "/sys/class/tty/%s/device", device_name.c_str() );
if( device_name.compare(0,6,"ttyUSB") == 0 )
{
sys_device_path = dirname( dirname( realpath( sys_device_path ) ) );
if( path_exists( sys_device_path ) )
{
friendly_name = usb_sysfs_friendly_name( sys_device_path );
hardware_id = usb_sysfs_hw_string( sys_device_path );
}
}
else if( device_name.compare(0,6,"ttyACM") == 0 )
{
sys_device_path = dirname( realpath( sys_device_path ) );
if( path_exists( sys_device_path ) )
{
friendly_name = usb_sysfs_friendly_name( sys_device_path );
hardware_id = usb_sysfs_hw_string( sys_device_path );
}
}
else
{
// Try to read ID string of PCI device
string sys_id_path = sys_device_path + "/id";
if( path_exists( sys_id_path ) )
hardware_id = read_line( sys_id_path );
}
if( friendly_name.empty() )
friendly_name = device_name;
if( hardware_id.empty() )
hardware_id = "n/a";
vector<string> result;
result.push_back(friendly_name);
result.push_back(hardware_id);
return result;
}
string
read_line(const string& file)
{
ifstream ifs(file.c_str(), ifstream::in);
string line;
if(ifs)
{
getline(ifs, line);
}
return line;
}
string
format(const char* format, ...)
{
va_list ap;
size_t buffer_size_bytes = 256;
string result;
char* buffer = (char*)malloc(buffer_size_bytes);
if( buffer == NULL )
return result;
bool done = false;
unsigned int loop_count = 0;
while(!done)
{
va_start(ap, format);
int return_value = vsnprintf(buffer, buffer_size_bytes, format, ap);
if( return_value < 0 )
{
done = true;
}
else if( return_value >= buffer_size_bytes )
{
// Realloc and try again.
buffer_size_bytes = return_value + 1;
char* new_buffer_ptr = (char*)realloc(buffer, buffer_size_bytes);
if( new_buffer_ptr == NULL )
{
done = true;
}
else
{
buffer = new_buffer_ptr;
}
}
else
{
result = buffer;
done = true;
}
va_end(ap);
if( ++loop_count > 5 )
done = true;
}
free(buffer);
return result;
}
string
usb_sysfs_hw_string(const string& sysfs_path)
{
string serial_number = read_line( sysfs_path + "/serial" );
if( serial_number.length() > 0 )
{
serial_number = format( "SNR=%s", serial_number.c_str() );
}
string vid = read_line( sysfs_path + "/idVendor" );
string pid = read_line( sysfs_path + "/idProduct" );
return format("USB VID:PID=%s:%s %s", vid.c_str(), pid.c_str(), serial_number.c_str() );
}
vector<PortInfo>
serial::list_ports()
{
vector<PortInfo> results;
vector<string> search_globs;
search_globs.push_back("/dev/ttyACM*");
search_globs.push_back("/dev/ttyS*");
search_globs.push_back("/dev/ttyUSB*");
search_globs.push_back("/dev/tty.*");
search_globs.push_back("/dev/cu.*");
vector<string> devices_found = glob( search_globs );
vector<string>::iterator iter = devices_found.begin();
while( iter != devices_found.end() )
{
string device = *iter++;
vector<string> sysfs_info = get_sysfs_info( device );
string friendly_name = sysfs_info[0];
string hardware_id = sysfs_info[1];
PortInfo device_entry;
device_entry.port = device;
device_entry.description = friendly_name;
device_entry.hardware_id = hardware_id;
results.push_back( device_entry );
}
return results;
}
#endif // defined(__linux__)
@@ -0,0 +1,286 @@
#if defined(__APPLE__)
#include <sys/param.h>
#include <stdint.h>
#include <CoreFoundation/CoreFoundation.h>
#include <IOKit/IOKitLib.h>
#include <IOKit/serial/IOSerialKeys.h>
#include <IOKit/IOBSD.h>
#include <iostream>
#include <string>
#include <vector>
#include "serial/serial.h"
using serial::PortInfo;
using std::string;
using std::vector;
#define HARDWARE_ID_STRING_LENGTH 128
string cfstring_to_string( CFStringRef cfstring );
string get_device_path( io_object_t& serial_port );
string get_class_name( io_object_t& obj );
io_registry_entry_t get_parent_iousb_device( io_object_t& serial_port );
string get_string_property( io_object_t& device, const char* property );
uint16_t get_int_property( io_object_t& device, const char* property );
string rtrim(const string& str);
string
cfstring_to_string( CFStringRef cfstring )
{
char cstring[MAXPATHLEN];
string result;
if( cfstring )
{
Boolean success = CFStringGetCString( cfstring,
cstring,
sizeof(cstring),
kCFStringEncodingASCII );
if( success )
result = cstring;
}
return result;
}
string
get_device_path( io_object_t& serial_port )
{
CFTypeRef callout_path;
string device_path;
callout_path = IORegistryEntryCreateCFProperty( serial_port,
CFSTR(kIOCalloutDeviceKey),
kCFAllocatorDefault,
0 );
if (callout_path)
{
if( CFGetTypeID(callout_path) == CFStringGetTypeID() )
device_path = cfstring_to_string( static_cast<CFStringRef>(callout_path) );
CFRelease(callout_path);
}
return device_path;
}
string
get_class_name( io_object_t& obj )
{
string result;
io_name_t class_name;
kern_return_t kern_result;
kern_result = IOObjectGetClass( obj, class_name );
if( kern_result == KERN_SUCCESS )
result = class_name;
return result;
}
io_registry_entry_t
get_parent_iousb_device( io_object_t& serial_port )
{
io_object_t device = serial_port;
io_registry_entry_t parent = 0;
io_registry_entry_t result = 0;
kern_return_t kern_result = KERN_FAILURE;
string name = get_class_name(device);
// Walk the IO Registry tree looking for this devices parent IOUSBDevice.
while( name != "IOUSBDevice" )
{
kern_result = IORegistryEntryGetParentEntry( device,
kIOServicePlane,
&parent );
if(kern_result != KERN_SUCCESS)
{
result = 0;
break;
}
device = parent;
name = get_class_name(device);
}
if(kern_result == KERN_SUCCESS)
result = device;
return result;
}
string
get_string_property( io_object_t& device, const char* property )
{
string property_name;
if( device )
{
CFStringRef property_as_cfstring = CFStringCreateWithCString (
kCFAllocatorDefault,
property,
kCFStringEncodingASCII );
CFTypeRef name_as_cfstring = IORegistryEntryCreateCFProperty(
device,
property_as_cfstring,
kCFAllocatorDefault,
0 );
if( name_as_cfstring )
{
if( CFGetTypeID(name_as_cfstring) == CFStringGetTypeID() )
property_name = cfstring_to_string( static_cast<CFStringRef>(name_as_cfstring) );
CFRelease(name_as_cfstring);
}
if(property_as_cfstring)
CFRelease(property_as_cfstring);
}
return property_name;
}
uint16_t
get_int_property( io_object_t& device, const char* property )
{
uint16_t result = 0;
if( device )
{
CFStringRef property_as_cfstring = CFStringCreateWithCString (
kCFAllocatorDefault,
property,
kCFStringEncodingASCII );
CFTypeRef number = IORegistryEntryCreateCFProperty( device,
property_as_cfstring,
kCFAllocatorDefault,
0 );
if(property_as_cfstring)
CFRelease(property_as_cfstring);
if( number )
{
if( CFGetTypeID(number) == CFNumberGetTypeID() )
{
bool success = CFNumberGetValue( static_cast<CFNumberRef>(number),
kCFNumberSInt16Type,
&result );
if( !success )
result = 0;
}
CFRelease(number);
}
}
return result;
}
string rtrim(const string& str)
{
string result = str;
string whitespace = " \t\f\v\n\r";
std::size_t found = result.find_last_not_of(whitespace);
if (found != std::string::npos)
result.erase(found+1);
else
result.clear();
return result;
}
vector<PortInfo>
serial::list_ports(void)
{
vector<PortInfo> devices_found;
CFMutableDictionaryRef classes_to_match;
io_iterator_t serial_port_iterator;
io_object_t serial_port;
mach_port_t master_port;
kern_return_t kern_result;
kern_result = IOMasterPort(MACH_PORT_NULL, &master_port);
if(kern_result != KERN_SUCCESS)
return devices_found;
classes_to_match = IOServiceMatching(kIOSerialBSDServiceValue);
if (classes_to_match == NULL)
return devices_found;
CFDictionarySetValue( classes_to_match,
CFSTR(kIOSerialBSDTypeKey),
CFSTR(kIOSerialBSDAllTypes) );
kern_result = IOServiceGetMatchingServices(master_port, classes_to_match, &serial_port_iterator);
if (KERN_SUCCESS != kern_result)
return devices_found;
while ( (serial_port = IOIteratorNext(serial_port_iterator)) )
{
string device_path = get_device_path( serial_port );
io_registry_entry_t parent = get_parent_iousb_device( serial_port );
IOObjectRelease(serial_port);
if( device_path.empty() )
continue;
PortInfo port_info;
port_info.port = device_path;
port_info.description = "n/a";
port_info.hardware_id = "n/a";
string device_name = rtrim( get_string_property( parent, "USB Product Name" ) );
string vendor_name = rtrim( get_string_property( parent, "USB Vendor Name") );
string description = rtrim( vendor_name + " " + device_name );
if( !description.empty() )
port_info.description = description;
string serial_number = rtrim(get_string_property( parent, "USB Serial Number" ) );
uint16_t vendor_id = get_int_property( parent, "idVendor" );
uint16_t product_id = get_int_property( parent, "idProduct" );
if( vendor_id && product_id )
{
char cstring[HARDWARE_ID_STRING_LENGTH];
if(serial_number.empty())
serial_number = "None";
int ret = snprintf( cstring, HARDWARE_ID_STRING_LENGTH, "USB VID:PID=%04x:%04x SNR=%s",
vendor_id,
product_id,
serial_number.c_str() );
if( (ret >= 0) && (ret < HARDWARE_ID_STRING_LENGTH) )
port_info.hardware_id = cstring;
}
devices_found.push_back(port_info);
}
IOObjectRelease(serial_port_iterator);
return devices_found;
}
#endif // defined(__APPLE__)
@@ -0,0 +1,152 @@
#if defined(_WIN32)
/*
* Copyright (c) 2014 Craig Lilley <cralilley@gmail.com>
* This software is made available under the terms of the MIT licence.
* A copy of the licence can be obtained from:
* http://opensource.org/licenses/MIT
*/
#include "include/serial.h"
#include <tchar.h>
#include <windows.h>
#include <setupapi.h>
#include <initguid.h>
#include <devguid.h>
#include <cstring>
using serial::PortInfo;
using std::vector;
using std::string;
static const DWORD port_name_max_length = 256;
static const DWORD friendly_name_max_length = 256;
static const DWORD hardware_id_max_length = 256;
// Convert a wide Unicode string to an UTF8 string
std::string utf8_encode(const std::wstring &wstr)
{
int size_needed = WideCharToMultiByte(CP_UTF8, 0, &wstr[0], (int)wstr.size(), NULL, 0, NULL, NULL);
std::string strTo( size_needed, 0 );
WideCharToMultiByte (CP_UTF8, 0, &wstr[0], (int)wstr.size(), &strTo[0], size_needed, NULL, NULL);
return strTo;
}
vector<PortInfo>
serial::list_ports()
{
vector<PortInfo> devices_found;
HDEVINFO device_info_set = SetupDiGetClassDevs(
(const GUID *) &GUID_DEVCLASS_PORTS,
NULL,
NULL,
DIGCF_PRESENT);
unsigned int device_info_set_index = 0;
SP_DEVINFO_DATA device_info_data;
device_info_data.cbSize = sizeof(SP_DEVINFO_DATA);
while(SetupDiEnumDeviceInfo(device_info_set, device_info_set_index, &device_info_data))
{
device_info_set_index++;
// Get port name
HKEY hkey = SetupDiOpenDevRegKey(
device_info_set,
&device_info_data,
DICS_FLAG_GLOBAL,
0,
DIREG_DEV,
KEY_READ);
TCHAR port_name[port_name_max_length];
DWORD port_name_length = port_name_max_length;
LONG return_code = RegQueryValueEx(
hkey,
_T("PortName"),
NULL,
NULL,
(LPBYTE)port_name,
&port_name_length);
RegCloseKey(hkey);
if(return_code != EXIT_SUCCESS)
continue;
if(port_name_length > 0 && port_name_length <= port_name_max_length)
port_name[port_name_length-1] = '\0';
else
port_name[0] = '\0';
// Ignore parallel ports
if(_tcsstr(port_name, _T("LPT")) != NULL)
continue;
// Get port friendly name
TCHAR friendly_name[friendly_name_max_length];
DWORD friendly_name_actual_length = 0;
BOOL got_friendly_name = SetupDiGetDeviceRegistryProperty(
device_info_set,
&device_info_data,
SPDRP_FRIENDLYNAME,
NULL,
(PBYTE)friendly_name,
friendly_name_max_length,
&friendly_name_actual_length);
if(got_friendly_name == TRUE && friendly_name_actual_length > 0)
friendly_name[friendly_name_actual_length-1] = '\0';
else
friendly_name[0] = '\0';
// Get hardware ID
TCHAR hardware_id[hardware_id_max_length];
DWORD hardware_id_actual_length = 0;
BOOL got_hardware_id = SetupDiGetDeviceRegistryProperty(
device_info_set,
&device_info_data,
SPDRP_HARDWAREID,
NULL,
(PBYTE)hardware_id,
hardware_id_max_length,
&hardware_id_actual_length);
if(got_hardware_id == TRUE && hardware_id_actual_length > 0)
hardware_id[hardware_id_actual_length-1] = '\0';
else
hardware_id[0] = '\0';
#ifdef UNICODE
std::string portName = utf8_encode(port_name);
std::string friendlyName = utf8_encode(friendly_name);
std::string hardwareId = utf8_encode(hardware_id);
#else
std::string portName = port_name;
std::string friendlyName = friendly_name;
std::string hardwareId = hardware_id;
#endif
PortInfo port_entry;
port_entry.port = portName;
port_entry.description = friendlyName;
port_entry.hardware_id = hardwareId;
devices_found.push_back(port_entry);
}
SetupDiDestroyDeviceInfoList(device_info_set);
return devices_found;
}
#endif // #if defined(_WIN32)
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#if defined(_WIN32)
/* Copyright 2012 William Woodall and John Harrison */
#include <sstream>
#include "include/impl/win.h"
using std::string;
using std::wstring;
using std::stringstream;
using std::invalid_argument;
using serial::Serial;
using serial::Timeout;
using serial::bytesize_t;
using serial::parity_t;
using serial::stopbits_t;
using serial::flowcontrol_t;
using serial::SerialException;
using serial::PortNotOpenedException;
using serial::IOException;
inline wstring
_prefix_port_if_needed(const wstring &input)
{
static wstring windows_com_port_prefix = L"\\\\.\\";
if (input.compare(windows_com_port_prefix) != 0)
{
return windows_com_port_prefix + input;
}
return input;
}
Serial::SerialImpl::SerialImpl (const string &port, unsigned long baudrate,
bytesize_t bytesize,
parity_t parity, stopbits_t stopbits,
flowcontrol_t flowcontrol)
: port_ (port.begin(), port.end()), fd_ (INVALID_HANDLE_VALUE), is_open_ (false),
baudrate_ (baudrate), parity_ (parity),
bytesize_ (bytesize), stopbits_ (stopbits), flowcontrol_ (flowcontrol)
{
read_mutex = CreateMutex(NULL, false, NULL);
write_mutex = CreateMutex(NULL, false, NULL);
if (port_.empty () == false)
open ();
}
Serial::SerialImpl::~SerialImpl ()
{
this->close();
CloseHandle(read_mutex);
CloseHandle(write_mutex);
}
void
Serial::SerialImpl::open ()
{
if (port_.empty ()) {
throw invalid_argument ("Empty port is invalid.");
}
if (is_open_ == true) {
throw SerialException ("Serial port already open.");
}
// See: https://github.com/wjwwood/serial/issues/84
wstring port_with_prefix = _prefix_port_if_needed(port_);
LPCWSTR lp_port = port_with_prefix.c_str();
fd_ = CreateFileW(lp_port,
GENERIC_READ | GENERIC_WRITE,
0,
0,
OPEN_EXISTING,
FILE_ATTRIBUTE_NORMAL,
0);
if (fd_ == INVALID_HANDLE_VALUE) {
DWORD errno_ = GetLastError();
stringstream ss;
switch (errno_) {
case ERROR_FILE_NOT_FOUND:
// Use this->getPort to convert to a std::string
ss << "Specified port, " << this->getPort() << ", does not exist.";
THROW (IOException, ss.str().c_str());
default:
ss << "Unknown error opening the serial port: " << errno;
THROW (IOException, ss.str().c_str());
}
}
reconfigurePort();
is_open_ = true;
}
void
Serial::SerialImpl::reconfigurePort ()
{
if (fd_ == INVALID_HANDLE_VALUE) {
// Can only operate on a valid file descriptor
THROW (IOException, "Invalid file descriptor, is the serial port open?");
}
DCB dcbSerialParams = {0};
dcbSerialParams.DCBlength=sizeof(dcbSerialParams);
if (!GetCommState(fd_, &dcbSerialParams)) {
//error getting state
THROW (IOException, "Error getting the serial port state.");
}
// setup baud rate
switch (baudrate_) {
#ifdef CBR_0
case 0: dcbSerialParams.BaudRate = CBR_0; break;
#endif
#ifdef CBR_50
case 50: dcbSerialParams.BaudRate = CBR_50; break;
#endif
#ifdef CBR_75
case 75: dcbSerialParams.BaudRate = CBR_75; break;
#endif
#ifdef CBR_110
case 110: dcbSerialParams.BaudRate = CBR_110; break;
#endif
#ifdef CBR_134
case 134: dcbSerialParams.BaudRate = CBR_134; break;
#endif
#ifdef CBR_150
case 150: dcbSerialParams.BaudRate = CBR_150; break;
#endif
#ifdef CBR_200
case 200: dcbSerialParams.BaudRate = CBR_200; break;
#endif
#ifdef CBR_300
case 300: dcbSerialParams.BaudRate = CBR_300; break;
#endif
#ifdef CBR_600
case 600: dcbSerialParams.BaudRate = CBR_600; break;
#endif
#ifdef CBR_1200
case 1200: dcbSerialParams.BaudRate = CBR_1200; break;
#endif
#ifdef CBR_1800
case 1800: dcbSerialParams.BaudRate = CBR_1800; break;
#endif
#ifdef CBR_2400
case 2400: dcbSerialParams.BaudRate = CBR_2400; break;
#endif
#ifdef CBR_4800
case 4800: dcbSerialParams.BaudRate = CBR_4800; break;
#endif
#ifdef CBR_7200
case 7200: dcbSerialParams.BaudRate = CBR_7200; break;
#endif
#ifdef CBR_9600
case 9600: dcbSerialParams.BaudRate = CBR_9600; break;
#endif
#ifdef CBR_14400
case 14400: dcbSerialParams.BaudRate = CBR_14400; break;
#endif
#ifdef CBR_19200
case 19200: dcbSerialParams.BaudRate = CBR_19200; break;
#endif
#ifdef CBR_28800
case 28800: dcbSerialParams.BaudRate = CBR_28800; break;
#endif
#ifdef CBR_57600
case 57600: dcbSerialParams.BaudRate = CBR_57600; break;
#endif
#ifdef CBR_76800
case 76800: dcbSerialParams.BaudRate = CBR_76800; break;
#endif
#ifdef CBR_38400
case 38400: dcbSerialParams.BaudRate = CBR_38400; break;
#endif
#ifdef CBR_115200
case 115200: dcbSerialParams.BaudRate = CBR_115200; break;
#endif
#ifdef CBR_128000
case 128000: dcbSerialParams.BaudRate = CBR_128000; break;
#endif
#ifdef CBR_153600
case 153600: dcbSerialParams.BaudRate = CBR_153600; break;
#endif
#ifdef CBR_230400
case 230400: dcbSerialParams.BaudRate = CBR_230400; break;
#endif
#ifdef CBR_256000
case 256000: dcbSerialParams.BaudRate = CBR_256000; break;
#endif
#ifdef CBR_460800
case 460800: dcbSerialParams.BaudRate = CBR_460800; break;
#endif
#ifdef CBR_921600
case 921600: dcbSerialParams.BaudRate = CBR_921600; break;
#endif
default:
// Try to blindly assign it
dcbSerialParams.BaudRate = baudrate_;
}
// setup char len
if (bytesize_ == eightbits)
dcbSerialParams.ByteSize = 8;
else if (bytesize_ == sevenbits)
dcbSerialParams.ByteSize = 7;
else if (bytesize_ == sixbits)
dcbSerialParams.ByteSize = 6;
else if (bytesize_ == fivebits)
dcbSerialParams.ByteSize = 5;
else
throw invalid_argument ("invalid char len");
// setup stopbits
if (stopbits_ == stopbits_one)
dcbSerialParams.StopBits = ONESTOPBIT;
else if (stopbits_ == stopbits_one_point_five)
dcbSerialParams.StopBits = ONE5STOPBITS;
else if (stopbits_ == stopbits_two)
dcbSerialParams.StopBits = TWOSTOPBITS;
else
throw invalid_argument ("invalid stop bit");
// setup parity
if (parity_ == parity_none) {
dcbSerialParams.Parity = NOPARITY;
} else if (parity_ == parity_even) {
dcbSerialParams.Parity = EVENPARITY;
} else if (parity_ == parity_odd) {
dcbSerialParams.Parity = ODDPARITY;
} else if (parity_ == parity_mark) {
dcbSerialParams.Parity = MARKPARITY;
} else if (parity_ == parity_space) {
dcbSerialParams.Parity = SPACEPARITY;
} else {
throw invalid_argument ("invalid parity");
}
// setup flowcontrol
if (flowcontrol_ == flowcontrol_none) {
dcbSerialParams.fOutxCtsFlow = false;
dcbSerialParams.fRtsControl = 0x00;
dcbSerialParams.fOutX = false;
dcbSerialParams.fInX = false;
}
if (flowcontrol_ == flowcontrol_software) {
dcbSerialParams.fOutxCtsFlow = false;
dcbSerialParams.fRtsControl = 0x00;
dcbSerialParams.fOutX = true;
dcbSerialParams.fInX = true;
}
if (flowcontrol_ == flowcontrol_hardware) {
dcbSerialParams.fOutxCtsFlow = true;
dcbSerialParams.fRtsControl = 0x03;
dcbSerialParams.fOutX = false;
dcbSerialParams.fInX = false;
}
// activate settings
if (!SetCommState(fd_, &dcbSerialParams)){
CloseHandle(fd_);
THROW (IOException, "Error setting serial port settings.");
}
// Setup timeouts
COMMTIMEOUTS timeouts = {0};
timeouts.ReadIntervalTimeout = timeout_.inter_byte_timeout;
timeouts.ReadTotalTimeoutConstant = timeout_.read_timeout_constant;
timeouts.ReadTotalTimeoutMultiplier = timeout_.read_timeout_multiplier;
timeouts.WriteTotalTimeoutConstant = timeout_.write_timeout_constant;
timeouts.WriteTotalTimeoutMultiplier = timeout_.write_timeout_multiplier;
if (!SetCommTimeouts(fd_, &timeouts)) {
THROW (IOException, "Error setting timeouts.");
}
}
void
Serial::SerialImpl::close ()
{
if (is_open_ == true) {
if (fd_ != INVALID_HANDLE_VALUE) {
int ret;
ret = CloseHandle(fd_);
if (ret == 0) {
stringstream ss;
ss << "Error while closing serial port: " << GetLastError();
THROW (IOException, ss.str().c_str());
} else {
fd_ = INVALID_HANDLE_VALUE;
}
}
is_open_ = false;
}
}
bool
Serial::SerialImpl::isOpen () const
{
return is_open_;
}
size_t
Serial::SerialImpl::available ()
{
if (!is_open_) {
return 0;
}
COMSTAT cs;
if (!ClearCommError(fd_, NULL, &cs)) {
stringstream ss;
ss << "Error while checking status of the serial port: " << GetLastError();
THROW (IOException, ss.str().c_str());
}
return static_cast<size_t>(cs.cbInQue);
}
bool
Serial::SerialImpl::waitReadable (uint32_t /*timeout*/)
{
THROW (IOException, "waitReadable is not implemented on Windows.");
return false;
}
void
Serial::SerialImpl::waitByteTimes (size_t /*count*/)
{
THROW (IOException, "waitByteTimes is not implemented on Windows.");
}
size_t
Serial::SerialImpl::read (uint8_t *buf, size_t size)
{
if (!is_open_) {
throw PortNotOpenedException ("Serial::read");
}
DWORD bytes_read;
if (!ReadFile(fd_, buf, static_cast<DWORD>(size), &bytes_read, NULL)) {
stringstream ss;
ss << "Error while reading from the serial port: " << GetLastError();
THROW (IOException, ss.str().c_str());
}
return (size_t) (bytes_read);
}
size_t
Serial::SerialImpl::write (const uint8_t *data, size_t length)
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::write");
}
DWORD bytes_written;
if (!WriteFile(fd_, data, static_cast<DWORD>(length), &bytes_written, NULL)) {
stringstream ss;
ss << "Error while writing to the serial port: " << GetLastError();
THROW (IOException, ss.str().c_str());
}
return (size_t) (bytes_written);
}
void
Serial::SerialImpl::setPort (const string &port)
{
port_ = wstring(port.begin(), port.end());
}
string
Serial::SerialImpl::getPort () const
{
return string(port_.begin(), port_.end());
}
void
Serial::SerialImpl::setTimeout (serial::Timeout &timeout)
{
timeout_ = timeout;
if (is_open_) {
reconfigurePort ();
}
}
serial::Timeout
Serial::SerialImpl::getTimeout () const
{
return timeout_;
}
void
Serial::SerialImpl::setBaudrate (unsigned long baudrate)
{
baudrate_ = baudrate;
if (is_open_) {
reconfigurePort ();
}
}
unsigned long
Serial::SerialImpl::getBaudrate () const
{
return baudrate_;
}
void
Serial::SerialImpl::setBytesize (serial::bytesize_t bytesize)
{
bytesize_ = bytesize;
if (is_open_) {
reconfigurePort ();
}
}
serial::bytesize_t
Serial::SerialImpl::getBytesize () const
{
return bytesize_;
}
void
Serial::SerialImpl::setParity (serial::parity_t parity)
{
parity_ = parity;
if (is_open_) {
reconfigurePort ();
}
}
serial::parity_t
Serial::SerialImpl::getParity () const
{
return parity_;
}
void
Serial::SerialImpl::setStopbits (serial::stopbits_t stopbits)
{
stopbits_ = stopbits;
if (is_open_) {
reconfigurePort ();
}
}
serial::stopbits_t
Serial::SerialImpl::getStopbits () const
{
return stopbits_;
}
void
Serial::SerialImpl::setFlowcontrol (serial::flowcontrol_t flowcontrol)
{
flowcontrol_ = flowcontrol;
if (is_open_) {
reconfigurePort ();
}
}
serial::flowcontrol_t
Serial::SerialImpl::getFlowcontrol () const
{
return flowcontrol_;
}
void
Serial::SerialImpl::flush ()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::flush");
}
FlushFileBuffers (fd_);
}
void
Serial::SerialImpl::flushInput ()
{
THROW (IOException, "flushInput is not supported on Windows.");
}
void
Serial::SerialImpl::flushOutput ()
{
THROW (IOException, "flushOutput is not supported on Windows.");
}
void
Serial::SerialImpl::sendBreak (int /*duration*/)
{
THROW (IOException, "sendBreak is not supported on Windows.");
}
void
Serial::SerialImpl::setBreak (bool level)
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::setBreak");
}
if (level) {
EscapeCommFunction (fd_, SETBREAK);
} else {
EscapeCommFunction (fd_, CLRBREAK);
}
}
void
Serial::SerialImpl::setRTS (bool level)
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::setRTS");
}
if (level) {
EscapeCommFunction (fd_, SETRTS);
} else {
EscapeCommFunction (fd_, CLRRTS);
}
}
void
Serial::SerialImpl::setDTR (bool level)
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::setDTR");
}
if (level) {
EscapeCommFunction (fd_, SETDTR);
} else {
EscapeCommFunction (fd_, CLRDTR);
}
}
bool
Serial::SerialImpl::waitForChange ()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::waitForChange");
}
DWORD dwCommEvent;
if (!SetCommMask(fd_, EV_CTS | EV_DSR | EV_RING | EV_RLSD)) {
// Error setting communications mask
return false;
}
if (!WaitCommEvent(fd_, &dwCommEvent, NULL)) {
// An error occurred waiting for the event.
return false;
} else {
// Event has occurred.
return true;
}
}
bool
Serial::SerialImpl::getCTS ()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::getCTS");
}
DWORD dwModemStatus;
if (!GetCommModemStatus(fd_, &dwModemStatus)) {
THROW (IOException, "Error getting the status of the CTS line.");
}
return (MS_CTS_ON & dwModemStatus) != 0;
}
bool
Serial::SerialImpl::getDSR ()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::getDSR");
}
DWORD dwModemStatus;
if (!GetCommModemStatus(fd_, &dwModemStatus)) {
THROW (IOException, "Error getting the status of the DSR line.");
}
return (MS_DSR_ON & dwModemStatus) != 0;
}
bool
Serial::SerialImpl::getRI()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::getRI");
}
DWORD dwModemStatus;
if (!GetCommModemStatus(fd_, &dwModemStatus)) {
THROW (IOException, "Error getting the status of the RI line.");
}
return (MS_RING_ON & dwModemStatus) != 0;
}
bool
Serial::SerialImpl::getCD()
{
if (is_open_ == false) {
throw PortNotOpenedException ("Serial::getCD");
}
DWORD dwModemStatus;
if (!GetCommModemStatus(fd_, &dwModemStatus)) {
// Error in GetCommModemStatus;
THROW (IOException, "Error getting the status of the CD line.");
}
return (MS_RLSD_ON & dwModemStatus) != 0;
}
void
Serial::SerialImpl::readLock()
{
if (WaitForSingleObject(read_mutex, INFINITE) != WAIT_OBJECT_0) {
THROW (IOException, "Error claiming read mutex.");
}
}
void
Serial::SerialImpl::readUnlock()
{
if (!ReleaseMutex(read_mutex)) {
THROW (IOException, "Error releasing read mutex.");
}
}
void
Serial::SerialImpl::writeLock()
{
if (WaitForSingleObject(write_mutex, INFINITE) != WAIT_OBJECT_0) {
THROW (IOException, "Error claiming write mutex.");
}
}
void
Serial::SerialImpl::writeUnlock()
{
if (!ReleaseMutex(write_mutex)) {
THROW (IOException, "Error releasing write mutex.");
}
}
#endif // #if defined(_WIN32)
+415
View File
@@ -0,0 +1,415 @@
/* Copyright 2012 William Woodall and John Harrison */
#include <algorithm>
#if !defined(_WIN32) && !defined(__OpenBSD__) && !defined(__FreeBSD__)
# include <alloca.h>
#endif
#if defined (__MINGW32__)
# define alloca __builtin_alloca
#endif
#ifdef _WIN32
#include "include/serial.h"
#include "include/impl/win.h"
#else
#include "../include/serial.h"
#include "../include/impl/unix.h"
#endif
using std::invalid_argument;
using std::min;
using std::numeric_limits;
using std::vector;
using std::size_t;
using std::string;
using serial::Serial;
using serial::SerialException;
using serial::IOException;
using serial::bytesize_t;
using serial::parity_t;
using serial::stopbits_t;
using serial::flowcontrol_t;
class Serial::ScopedReadLock {
public:
ScopedReadLock(SerialImpl *pimpl) : pimpl_(pimpl) {
this->pimpl_->readLock();
}
~ScopedReadLock() {
this->pimpl_->readUnlock();
}
private:
// Disable copy constructors
ScopedReadLock(const ScopedReadLock&);
const ScopedReadLock& operator=(ScopedReadLock);
SerialImpl *pimpl_;
};
class Serial::ScopedWriteLock {
public:
ScopedWriteLock(SerialImpl *pimpl) : pimpl_(pimpl) {
this->pimpl_->writeLock();
}
~ScopedWriteLock() {
this->pimpl_->writeUnlock();
}
private:
// Disable copy constructors
ScopedWriteLock(const ScopedWriteLock&);
const ScopedWriteLock& operator=(ScopedWriteLock);
SerialImpl *pimpl_;
};
Serial::Serial (const string &port, uint32_t baudrate, serial::Timeout timeout,
bytesize_t bytesize, parity_t parity, stopbits_t stopbits,
flowcontrol_t flowcontrol)
: pimpl_(new SerialImpl (port, baudrate, bytesize, parity,
stopbits, flowcontrol))
{
pimpl_->setTimeout(timeout);
}
Serial::~Serial ()
{
delete pimpl_;
}
void
Serial::open ()
{
pimpl_->open ();
}
void
Serial::close ()
{
pimpl_->close ();
}
bool
Serial::isOpen () const
{
return pimpl_->isOpen ();
}
size_t
Serial::available ()
{
return pimpl_->available ();
}
bool
Serial::waitReadable ()
{
serial::Timeout timeout(pimpl_->getTimeout ());
return pimpl_->waitReadable(timeout.read_timeout_constant);
}
void
Serial::waitByteTimes (size_t count)
{
pimpl_->waitByteTimes(count);
}
size_t
Serial::read_ (uint8_t *buffer, size_t size)
{
return this->pimpl_->read (buffer, size);
}
size_t
Serial::read (uint8_t *buffer, size_t size)
{
ScopedReadLock lock(this->pimpl_);
return this->pimpl_->read (buffer, size);
}
size_t
Serial::read (std::vector<uint8_t> &buffer, size_t size)
{
ScopedReadLock lock(this->pimpl_);
uint8_t *buffer_ = new uint8_t[size];
size_t bytes_read = this->pimpl_->read (buffer_, size);
buffer.insert (buffer.end (), buffer_, buffer_+bytes_read);
delete[] buffer_;
return bytes_read;
}
size_t
Serial::read (std::string &buffer, size_t size)
{
ScopedReadLock lock(this->pimpl_);
uint8_t *buffer_ = new uint8_t[size];
size_t bytes_read = this->pimpl_->read (buffer_, size);
buffer.append (reinterpret_cast<const char*>(buffer_), bytes_read);
delete[] buffer_;
return bytes_read;
}
string
Serial::read (size_t size)
{
std::string buffer;
this->read (buffer, size);
return buffer;
}
size_t
Serial::readline (string &buffer, size_t size, string eol)
{
ScopedReadLock lock(this->pimpl_);
size_t eol_len = eol.length ();
uint8_t *buffer_ = static_cast<uint8_t*>
(alloca (size * sizeof (uint8_t)));
size_t read_so_far = 0;
while (true)
{
size_t bytes_read = this->read_ (buffer_ + read_so_far, 1);
read_so_far += bytes_read;
if (bytes_read == 0) {
break; // Timeout occured on reading 1 byte
}
if (string (reinterpret_cast<const char*>
(buffer_ + read_so_far - eol_len), eol_len) == eol) {
break; // EOL found
}
if (read_so_far == size) {
break; // Reached the maximum read length
}
}
buffer.append(reinterpret_cast<const char*> (buffer_), read_so_far);
return read_so_far;
}
string
Serial::readline (size_t size, string eol)
{
std::string buffer;
this->readline (buffer, size, eol);
return buffer;
}
vector<string>
Serial::readlines (size_t size, string eol)
{
ScopedReadLock lock(this->pimpl_);
std::vector<std::string> lines;
size_t eol_len = eol.length ();
uint8_t *buffer_ = static_cast<uint8_t*>
(alloca (size * sizeof (uint8_t)));
size_t read_so_far = 0;
size_t start_of_line = 0;
while (read_so_far < size) {
size_t bytes_read = this->read_ (buffer_+read_so_far, 1);
read_so_far += bytes_read;
if (bytes_read == 0) {
if (start_of_line != read_so_far) {
lines.push_back (
string (reinterpret_cast<const char*> (buffer_ + start_of_line),
read_so_far - start_of_line));
}
break; // Timeout occured on reading 1 byte
}
if (string (reinterpret_cast<const char*>
(buffer_ + read_so_far - eol_len), eol_len) == eol) {
// EOL found
lines.push_back(
string(reinterpret_cast<const char*> (buffer_ + start_of_line),
read_so_far - start_of_line));
start_of_line = read_so_far;
}
if (read_so_far == size) {
if (start_of_line != read_so_far) {
lines.push_back(
string(reinterpret_cast<const char*> (buffer_ + start_of_line),
read_so_far - start_of_line));
}
break; // Reached the maximum read length
}
}
return lines;
}
size_t
Serial::write (const string &data)
{
ScopedWriteLock lock(this->pimpl_);
return this->write_ (reinterpret_cast<const uint8_t*>(data.c_str()),
data.length());
}
size_t
Serial::write (const std::vector<uint8_t> &data)
{
ScopedWriteLock lock(this->pimpl_);
return this->write_ (&data[0], data.size());
}
size_t
Serial::write (const uint8_t *data, size_t size)
{
ScopedWriteLock lock(this->pimpl_);
return this->write_(data, size);
}
size_t
Serial::write_ (const uint8_t *data, size_t length)
{
return pimpl_->write (data, length);
}
void
Serial::setPort (const string &port)
{
ScopedReadLock rlock(this->pimpl_);
ScopedWriteLock wlock(this->pimpl_);
bool was_open = pimpl_->isOpen ();
if (was_open) close();
pimpl_->setPort (port);
if (was_open) open ();
}
string
Serial::getPort () const
{
return pimpl_->getPort ();
}
void
Serial::setTimeout (serial::Timeout &timeout)
{
pimpl_->setTimeout (timeout);
}
serial::Timeout
Serial::getTimeout () const {
return pimpl_->getTimeout ();
}
void
Serial::setBaudrate (uint32_t baudrate)
{
pimpl_->setBaudrate (baudrate);
}
uint32_t
Serial::getBaudrate () const
{
return uint32_t(pimpl_->getBaudrate ());
}
void
Serial::setBytesize (bytesize_t bytesize)
{
pimpl_->setBytesize (bytesize);
}
bytesize_t
Serial::getBytesize () const
{
return pimpl_->getBytesize ();
}
void
Serial::setParity (parity_t parity)
{
pimpl_->setParity (parity);
}
parity_t
Serial::getParity () const
{
return pimpl_->getParity ();
}
void
Serial::setStopbits (stopbits_t stopbits)
{
pimpl_->setStopbits (stopbits);
}
stopbits_t
Serial::getStopbits () const
{
return pimpl_->getStopbits ();
}
void
Serial::setFlowcontrol (flowcontrol_t flowcontrol)
{
pimpl_->setFlowcontrol (flowcontrol);
}
flowcontrol_t
Serial::getFlowcontrol () const
{
return pimpl_->getFlowcontrol ();
}
void Serial::flush ()
{
ScopedReadLock rlock(this->pimpl_);
ScopedWriteLock wlock(this->pimpl_);
pimpl_->flush ();
}
void Serial::flushInput ()
{
ScopedReadLock lock(this->pimpl_);
pimpl_->flushInput ();
}
void Serial::flushOutput ()
{
ScopedWriteLock lock(this->pimpl_);
pimpl_->flushOutput ();
}
void Serial::sendBreak (int duration)
{
pimpl_->sendBreak (duration);
}
void Serial::setBreak (bool level)
{
pimpl_->setBreak (level);
}
void Serial::setRTS (bool level)
{
pimpl_->setRTS (level);
}
void Serial::setDTR (bool level)
{
pimpl_->setDTR (level);
}
bool Serial::waitForChange()
{
return pimpl_->waitForChange();
}
bool Serial::getCTS ()
{
return pimpl_->getCTS ();
}
bool Serial::getDSR ()
{
return pimpl_->getDSR ();
}
bool Serial::getRI ()
{
return pimpl_->getRI ();
}
bool Serial::getCD ()
{
return pimpl_->getCD ();
}
+113
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@@ -0,0 +1,113 @@
newmtl bob1:initialShadingGroup
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View File
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View File
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View File
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