mirror of
https://github.com/libretro/RetroArch
synced 2025-01-31 15:32:59 +00:00
4b2f27eff8
Fixed SR close match refresh bug. Added menu high resolution option. Fixed desktop restore bug cuusing endless resolution change requests. Fixed file conflicts Added destop restore resolution back in for manu only. Pulled Switchres fixes. Added better PI rsolution support. Ver 0.7 SR2 (Switchres API) Implimantation Removed HH experimetal check. This is better done via teh switchres.ini at present. Fixed refresh rate bug. Now new resolution and refesh is added correctly. Removed SR deinit from menu restore. Meanu now stays at last content resolution. Ver 0.6.2 SR2 (Switchres API) Implimantation Fixed super resolution bug casuing abnormal video size and aspect ratio Fixed logging issue casuing seg falts on RA exit Ver 0.6 SR2 (Switchres API) Implimantation Ver 0.2 SR2 (Switchres API) Implimantation Added forced super resolutions. Added Multi-monitor/monitor selection support. Added desktop resolution restore when switching back to menu only. Added new menu items for 31KHz standard and 120hz monitor profiles. Added new menu item INI. load monitor profile from switchrss.ini. Fixed winraw driver. Coordinates new refreshed after a resolution change. Fixed Menu aspect ratio in super resolutions. Removed static glabals. These have been added to videocrt_switch struct. Ver 0.1 SR2 (Switchres API) Implimantation Removed old CRTSwitchRes method. Added new SR2 API implimantaion. Resolution swithcing is now done by switchres libs. Both Linux and Windows working with native and super resolutions. Working multi-monitor support with monitor index selection. Working 31KHz support with standard and 120Hxz modes. The monitor index selection is still done via the RA UI. Only choose native and 15KHz form the CRT options in the RA UI as all options are now set in the switchres.ini. All other CRT optoins in the RA UI currently do nothing. Added SR wrapper to fix compile issues. Added back RPi functionality Fixed windows resize/scaling issues on resolution change Thanks @Calamity no more need for crt_switch_driver_refresh() Fix broken case after prevous commit Monitor preset options 15/31KHz now active. Added new meu option. Moitor persets can now be choosen fom the RA UI. 15KHz and 31KHz will set arcade_15 and aracde_31 respectivly. New option INI, if this is chosen your monitor preset will be selected from your switchres.ini file. Added 3KHhz, 120Hz. for old RA users. Renamed 31KHz to 31 KHz, Standard Fixed winraw input coordinates after switching resolution. Code cleanup Fixed menu aspect ratio issue Added menu resolution restore after closing content Fixed aspect ratio after menu resolution restore. code clean up Fxed menu Resulition Restore Aspect Ratio. When SR uses non integer scalled resolution. super width bug with restoring menu resolution fix added super resolution check after setting desktop resolutoion variables when menu active only sr_deinit() used to restore desktop mode. Fixed menu sr_deinit bug. now setting sr_active false Removed static globals, added them to video_switch struct Fixex compile bug due to comment // Fixed compile issues doe to c++ comments in teh switchres_wrapper.h Temporarily removed SR2 logging to fix compile isses for c90 added logging back in. Removed support for winnt and osx Added define for C89. Disabled SR if defined C89 Removed all RA compile fixes fro C89 C90 etc. Swithing now working again. Put Switchres behind HAVE_SR2. HAVE_SR2=no by default. --enable-sr2 Ver 0.5 SR2 Implimentation. Ver 0.4 SR2 Implimantation. Bake SR inside RA Removed temporary log files Disable switchres when C89/C99 builds. Removed C89 and C90 checks for SR Fixed switchres_wrapper.h location Ver 0.3 SR2 Implimenation Dissable logging for C89 __STDC__ Fix For RPi fixed missing EOL fixed RPi function definition added vidrocrt_switch stuct to RPI funcion fixed xoffset for RPi Removed old RPi function call SR disabled for videocore until VC4 switching ported Reverted back to state 5c8a56c Bake SR inside RA Use native win32 api for threads. Fix static lib linking LIBERROR would be defined twice otherwise + improper function names prefixed by __imp_ Added lidstc++ to makefile.common for switchres Fixed RPi switching. Disabled Switchres for videocore unill it is ported. removed RAA.log. Should not exist Added check for when SR fails to set mode with an aspect ratio fix. added video driver re init for RPi GB, GBA and GBC core check, adjusted reseolutions and scale. Please turn on integer scalling in the RA UI Added logas back in. Checking STDC verstion >= C11 Fixed c89 for loop declaration. Code clean up. Added new functions Fix resolution switching bug introduces with HH code clean up. Fixed menu restore bug on closw content after code clean up Moved SR logging to relevant RA logs Update makefile. Checks for X11 and xrandr fixed makefile Use native win32 api for threads. Fix static lib linking LIBERROR would be defined twice otherwise + improper function names prefixed by __imp_ Update switchres_wrapper.* header comments Update year copyright DRMKMS: build only if libdrm has the required version XRANDR: build only if xrandr is available Simplified maklefile Fixed RPI compile error with unsued functions. As before Disable Griffin. No switching support available. Never has been Removed log file 1 Added Win32 static define Added SR source Removed Videocore check on destroy SR Moved SR deinit to trigger earlier on RA exit. Fixed compile error after upstream rebase Fixed aspect ration bug cused by super resolutions. Temporarily disbabled SR logging Re inabled runtim eSR loggind. Disableed all RARCH logging on retro_deinit_drivers Removed srdeinit from menu restore. Menu stays in current reolution until a fix can be found Fixed refresh rate changes when no reolution change is detected. Forgot to add teh resolution cahge in with the refresh change oops Fixed endless no detection log. Removed HH check. This can been better adjusted using the switchres.ini fixed compile issue Added better PI crt switching and fixed typo Pulled Swicthres fixes. Updated desktop restore resolution. removed unused makefile Lockec menu refresh to 60hz fixed missing new line Fixed file conflicts Forced 640x480@60 for menu Added high resolution menu option Removed item logg checker Fixed typos Removed unused functions Fixed SR close match refesh bug. Fixed typo
629 lines
18 KiB
C++
629 lines
18 KiB
C++
/**************************************************************
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custom_video_pstrip.cpp - PowerStrip interface routines
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---------------------------------------------------------
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Switchres Modeline generation engine for emulation
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License GPL-2.0+
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Copyright 2010-2021 Chris Kennedy, Antonio Giner,
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Alexandre Wodarczyk, Gil Delescluse
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**************************************************************/
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/* http://forums.entechtaiwan.com/index.php?topic=5534.msg20902;topicseen#msg20902
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UM_SETCUSTOMTIMING = WM_USER+200;
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wparam = monitor number, zero-based
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lparam = atom for string pointer
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lresult = -1 for failure else current pixel clock (integer in Hz)
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Note: pass full PowerStrip timing string*
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UM_SETREFRESHRATE = WM_USER+201;
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wparam = monitor number, zero-based
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lparam = refresh rate (integer in Hz), or 0 for read-only
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lresult = -1 for failure else current refresh rate (integer in Hz)
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UM_SETPOLARITY = WM_USER+202;
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wparam = monitor number, zero-based
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lparam = polarity bits
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lresult = -1 for failure else current polarity bits+1
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UM_REMOTECONTROL = WM_USER+210;
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wparam = 99
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lparam =
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0 to hide tray icon
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1 to show tray icon,
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2 to get build number
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10 to show Performance profiles
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11 to show Color profiles
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12 to show Display profiles
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13 to show Application profiles
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14 to show Adapter information
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15 to show Monitor information
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16 to show Hotkey manager
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17 to show Resource manager
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18 to show Preferences
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19 to show Online services
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20 to show About screen
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21 to show Tip-of-the-day
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22 to show Setup wizard
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23 to show Screen fonts
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24 to show Advanced timing options
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25 to show Custom resolutions
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99 to close PS
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lresult = -1 for failure else lparam+1 for success or build number (e.g., 335)
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if lparam was 2
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UM_SETGAMMARAMP = WM_USER+203;
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wparam = monitor number, zero-based
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lparam = atom for string pointer
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lresult = -1 for failure, 1 for success
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UM_CREATERESOLUTION = WM_USER+204;
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wparam = monitor number, zero-based
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lparam = atom for string pointer
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lresult = -1 for failure, 1 for success
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Note: pass full PowerStrip timing string*; reboot is usually necessary to see if
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the resolution is accepted by the display driver
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UM_GETTIMING = WM_USER+205;
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wparam = monitor number, zero-based
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lresult = -1 for failure else GlobalAtom number identifiying the timing string*
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Note: be sure to call GlobalDeleteAtom after reading the string associated with
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the atom
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UM_GETSETCLOCKS = WM_USER+206;
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wparam = monitor number, zero-based
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lparam = atom for string pointer
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lresult = -1 for failure else GlobalAtom number identifiying the performance
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string**
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Note: pass full PowerStrip performance string** to set the clocks, and ull to
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get clocks; be sure to call GlobalDeleteAtom after reading the string associated
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with the atom
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NegativeHorizontalPolarity = 0x02;
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NegativeVerticalPolarity = 0x04;
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*Timing string parameter definition:
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1 = horizontal active pixels
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2 = horizontal front porch
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3 = horizontal sync width
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4 = horizontal back porch
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5 = vertical active pixels
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6 = vertical front porch
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7 = vertical sync width
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8 = vertical back porch
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9 = pixel clock in hertz
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10 = timing flags, where bit:
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1 = negative horizontal porlarity
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2 = negative vertical polarity
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3 = interlaced
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5 = composite sync
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7 = sync-on-green
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all other bits reserved
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**Performance string parameter definition:
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1 = memory clock in hertz
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2 = engine clock in hertz
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3 = reserved
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4 = reserved
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5 = reserved
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6 = reserved
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7 = reserved
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8 = reserved
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9 = 2D memory clock in hertz (if different from 3D)
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10 = 2D engine clock in hertz (if different from 3D) */
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#include <windows.h>
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#include <stdio.h>
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#include "custom_video_pstrip.h"
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#include "log.h"
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//============================================================
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// CONSTANTS
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//============================================================
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#define UM_SETCUSTOMTIMING (WM_USER+200)
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#define UM_SETREFRESHRATE (WM_USER+201)
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#define UM_SETPOLARITY (WM_USER+202)
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#define UM_REMOTECONTROL (WM_USER+210)
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#define UM_SETGAMMARAMP (WM_USER+203)
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#define UM_CREATERESOLUTION (WM_USER+204)
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#define UM_GETTIMING (WM_USER+205)
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#define UM_GETSETCLOCKS (WM_USER+206)
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#define UM_SETCUSTOMTIMINGFAST (WM_USER+211) // glitches vertical sync with PS 3.65 build 568
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#define NegativeHorizontalPolarity 0x02
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#define NegativeVerticalPolarity 0x04
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#define Interlace 0x08
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#define HideTrayIcon 0x00
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#define ShowTrayIcon 0x01
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#define ClosePowerStrip 0x63
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//============================================================
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// pstrip_timing::pstrip_timing
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//============================================================
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pstrip_timing::pstrip_timing(char *device_name, custom_video_settings *vs)
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{
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m_vs = *vs;
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strcpy (m_device_name, device_name);
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strcpy (m_ps_timing, m_vs.custom_timing);
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}
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//============================================================
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// pstrip_timing::~pstrip_timing()
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//============================================================
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pstrip_timing::~pstrip_timing()
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{
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ps_reset();
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}
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//============================================================
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// pstrip_timing::init
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//============================================================
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bool pstrip_timing::init()
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{
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m_monitor_index = ps_monitor_index(m_device_name);
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hPSWnd = FindWindowA("TPShidden", NULL);
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if (hPSWnd)
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{
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log_verbose("PStrip: PowerStrip found!\n");
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// Save current settings
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ps_get_monitor_timing(&m_timing_backup);
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// If we have a -ps_timing string defined, use it as user defined modeline
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if (strcmp(m_ps_timing, "auto"))
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{
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MonitorTiming timing;
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if (ps_read_timing_string(m_ps_timing, &timing))
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{
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ps_pstiming_to_modeline(&timing, &m_user_mode);
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m_user_mode.type |= CUSTOM_VIDEO_TIMING_POWERSTRIP;
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char modeline_txt[256]={'\x00'};
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log_verbose("SwitchRes: ps_string: %s (%s)\n", m_ps_timing, modeline_print(&m_user_mode, modeline_txt, MS_PARAMS));
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}
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else
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log_verbose("Switchres: ps_timing string with invalid format\n");
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}
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}
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else
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{
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log_verbose("PStrip: Could not get PowerStrip API interface\n");
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return false;
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}
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return true;
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}
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//============================================================
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// pstrip_timing::get_timing
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//============================================================
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bool pstrip_timing::get_timing(modeline *mode)
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{
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// If we have an user defined mode (ps_timing), lock any non matching mode
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if (m_user_mode.hactive)
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{
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if (mode->width != m_user_mode.width || mode->height != m_user_mode.height)
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{
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mode->type |= MODE_DISABLED;
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return false;
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}
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}
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modeline m_temp = {};
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if (ps_get_modeline(&m_temp))
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{
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// We can only get the timings of the current desktop mode, so filter out anything different
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if (m_temp.width == mode->width && m_temp.height == mode->height && m_temp.refresh == mode->refresh)
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{
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*mode = m_temp;
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}
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mode->type |= CUSTOM_VIDEO_TIMING_POWERSTRIP;
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return true;
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}
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return false;
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}
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//============================================================
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// pstrip_timing::set_timing
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//============================================================
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bool pstrip_timing::set_timing(modeline *mode)
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{
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// In case -ps_timing is provided, pass it as raw string
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if (m_user_mode.hactive)
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ps_set_monitor_timing_string(m_ps_timing);
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// Otherwise pass it as modeline
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else
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ps_set_modeline(mode);
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Sleep(100);
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return true;
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}
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//============================================================
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// pstrip_timing::ps_reset
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//============================================================
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int pstrip_timing::ps_reset()
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{
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return ps_set_monitor_timing(&m_timing_backup);
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}
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//============================================================
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// ps_get_modeline
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//============================================================
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int pstrip_timing::ps_get_modeline(modeline *modeline)
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{
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MonitorTiming timing = {};
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if (ps_get_monitor_timing(&timing))
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{
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ps_pstiming_to_modeline(&timing, modeline);
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return 1;
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}
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else return 0;
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}
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//============================================================
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// pstrip_timing::ps_set_modeline
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//============================================================
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bool pstrip_timing::ps_set_modeline(modeline *modeline)
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{
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MonitorTiming timing = {};
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if (!ps_modeline_to_pstiming(modeline, &timing))
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return false;
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timing.PixelClockInKiloHertz = ps_best_pclock(&timing, timing.PixelClockInKiloHertz);
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if (ps_set_monitor_timing(&timing))
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return true;
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else
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return false;
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}
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//============================================================
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// pstrip_timing::ps_get_monitor_timing
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//============================================================
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int pstrip_timing::ps_get_monitor_timing(MonitorTiming *timing)
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{
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LRESULT lresult;
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char in[256];
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if (!hPSWnd) return 0;
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lresult = SendMessage(hPSWnd, UM_GETTIMING, m_monitor_index, 0);
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if (lresult == -1)
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{
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log_verbose("PStrip: Could not get PowerStrip timing string\n");
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return 0;
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}
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if (!GlobalGetAtomNameA(lresult, in, sizeof(in)))
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{
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log_verbose("PStrip: GlobalGetAtomName failed\n");
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return 0;
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}
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log_verbose("PStrip: ps_get_monitor_timing(%d): %s\n", m_monitor_index, in);
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ps_read_timing_string(in, timing);
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GlobalDeleteAtom(lresult); // delete atom created by PowerStrip
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return 1;
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}
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//============================================================
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// pstrip_timing::ps_set_monitor_timing
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//============================================================
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int pstrip_timing::ps_set_monitor_timing(MonitorTiming *timing)
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{
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LRESULT lresult;
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ATOM atom;
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char out[256];
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if (!hPSWnd) return 0;
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ps_fill_timing_string(out, timing);
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atom = GlobalAddAtomA(out);
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if (atom)
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{
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lresult = SendMessage(hPSWnd, UM_SETCUSTOMTIMING, m_monitor_index, atom);
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if (lresult < 0)
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{
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log_verbose("PStrip: SendMessage failed\n");
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GlobalDeleteAtom(atom);
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}
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else
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{
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log_verbose("PStrip: ps_set_monitor_timing(%d): %s\n", m_monitor_index, out);
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return 1;
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}
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}
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else log_verbose("PStrip: ps_set_monitor_timing atom creation failed\n");
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return 0;
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}
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//============================================================
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// pstrip_timing::ps_set_monitor_timing_string
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//============================================================
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int pstrip_timing::ps_set_monitor_timing_string(char *in)
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{
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MonitorTiming timing = {};
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ps_read_timing_string(in, &timing);
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return ps_set_monitor_timing(&timing);
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}
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//============================================================
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// pstrip_timing::ps_set_refresh
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//============================================================
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int pstrip_timing::ps_set_refresh(double vfreq)
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{
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MonitorTiming timing = {};
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int hht, vvt, new_vvt;
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int desired_pClock;
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int best_pClock;
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memcpy(&timing, &m_timing_backup, sizeof(MonitorTiming));
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hht = timing.HorizontalActivePixels
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+ timing.HorizontalFrontPorch
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+ timing.HorizontalSyncWidth
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+ timing.HorizontalBackPorch;
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vvt = timing.VerticalActivePixels
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+ timing.VerticalFrontPorch
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+ timing.VerticalSyncWidth
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+ timing.VerticalBackPorch;
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desired_pClock = hht * vvt * vfreq / 1000;
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best_pClock = ps_best_pclock(&timing, desired_pClock);
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new_vvt = best_pClock * 1000 / (vfreq * hht);
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timing.VerticalBackPorch += (new_vvt - vvt);
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timing.PixelClockInKiloHertz = best_pClock;
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ps_set_monitor_timing(&timing);
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ps_get_monitor_timing(&timing);
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return 1;
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}
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//============================================================
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// pstrip_timing::ps_best_pclock
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//============================================================
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int pstrip_timing::ps_best_pclock(MonitorTiming *timing, int desired_pclock)
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{
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MonitorTiming timing_read = {};
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int best_pclock = 0;
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log_verbose("PStrip: ps_best_pclock(%d), getting stable dotclocks for %d...\n", m_monitor_index, desired_pclock);
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for (int i = -50; i <= 50; i += 25)
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{
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timing->PixelClockInKiloHertz = desired_pclock + i;
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ps_set_monitor_timing(timing);
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ps_get_monitor_timing(&timing_read);
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if (abs(timing_read.PixelClockInKiloHertz - desired_pclock) < abs(desired_pclock - best_pclock))
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best_pclock = timing_read.PixelClockInKiloHertz;
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}
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log_verbose("PStrip: ps_best_pclock(%d), new dotclock: %d\n", m_monitor_index, best_pclock);
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return best_pclock;
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}
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//============================================================
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// pstrip_timing::ps_create_resolution
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//============================================================
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|
int pstrip_timing::ps_create_resolution(modeline *modeline)
|
|
{
|
|
LRESULT lresult;
|
|
ATOM atom;
|
|
char out[256];
|
|
MonitorTiming timing = {};
|
|
|
|
if (!hPSWnd) return 0;
|
|
|
|
ps_modeline_to_pstiming(modeline, &timing);
|
|
|
|
ps_fill_timing_string(out, &timing);
|
|
atom = GlobalAddAtomA(out);
|
|
|
|
if (atom)
|
|
{
|
|
lresult = SendMessage(hPSWnd, UM_CREATERESOLUTION, m_monitor_index, atom);
|
|
|
|
if (lresult < 0)
|
|
{
|
|
log_verbose("PStrip: SendMessage failed\n");
|
|
GlobalDeleteAtom(atom);
|
|
}
|
|
else
|
|
{
|
|
log_verbose("PStrip: ps_create_resolution(%d): %dx%d succeded \n",
|
|
modeline->width, modeline->height, m_monitor_index);
|
|
return 1;
|
|
}
|
|
}
|
|
else log_verbose("PStrip: ps_create_resolution atom creation failed\n");
|
|
|
|
return 0;
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::ps_read_timing_string
|
|
//============================================================
|
|
|
|
bool pstrip_timing::ps_read_timing_string(char *in, MonitorTiming *timing)
|
|
{
|
|
if (sscanf(in,"%d,%d,%d,%d,%d,%d,%d,%d,%d,%d",
|
|
&timing->HorizontalActivePixels,
|
|
&timing->HorizontalFrontPorch,
|
|
&timing->HorizontalSyncWidth,
|
|
&timing->HorizontalBackPorch,
|
|
&timing->VerticalActivePixels,
|
|
&timing->VerticalFrontPorch,
|
|
&timing->VerticalSyncWidth,
|
|
&timing->VerticalBackPorch,
|
|
&timing->PixelClockInKiloHertz,
|
|
&timing->TimingFlags.w) == 10) return true;
|
|
|
|
return false;
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::ps_fill_timing_string
|
|
//============================================================
|
|
|
|
void pstrip_timing::ps_fill_timing_string(char *out, MonitorTiming *timing)
|
|
{
|
|
sprintf(out, "%d,%d,%d,%d,%d,%d,%d,%d,%d,%d",
|
|
timing->HorizontalActivePixels,
|
|
timing->HorizontalFrontPorch,
|
|
timing->HorizontalSyncWidth,
|
|
timing->HorizontalBackPorch,
|
|
timing->VerticalActivePixels,
|
|
timing->VerticalFrontPorch,
|
|
timing->VerticalSyncWidth,
|
|
timing->VerticalBackPorch,
|
|
timing->PixelClockInKiloHertz,
|
|
timing->TimingFlags.w);
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::ps_modeline_to_pstiming
|
|
//============================================================
|
|
|
|
bool pstrip_timing::ps_modeline_to_pstiming(modeline *modeline, MonitorTiming *timing)
|
|
{
|
|
if (modeline->pclock == 0 || modeline->hactive == 0 || modeline->vactive == 0)
|
|
{
|
|
log_verbose("ps_modeline_to_pstiming error: invalid modeline\n");
|
|
return false;
|
|
}
|
|
|
|
timing->HorizontalActivePixels = modeline->hactive;
|
|
timing->HorizontalFrontPorch = modeline->hbegin - modeline->hactive;
|
|
timing->HorizontalSyncWidth = modeline->hend - modeline->hbegin;
|
|
timing->HorizontalBackPorch = modeline->htotal - modeline->hend;
|
|
|
|
timing->VerticalActivePixels = modeline->vactive;
|
|
timing->VerticalFrontPorch = modeline->vbegin - modeline->vactive;
|
|
timing->VerticalSyncWidth = modeline->vend - modeline->vbegin;
|
|
timing->VerticalBackPorch = modeline->vtotal - modeline->vend;
|
|
|
|
timing->PixelClockInKiloHertz = modeline->pclock / 1000;
|
|
|
|
if (modeline->hsync == 0)
|
|
timing->TimingFlags.w |= NegativeHorizontalPolarity;
|
|
if (modeline->vsync == 0)
|
|
timing->TimingFlags.w |= NegativeVerticalPolarity;
|
|
if (modeline->interlace)
|
|
timing->TimingFlags.w |= Interlace;
|
|
|
|
return true;
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::ps_pstiming_to_modeline
|
|
//============================================================
|
|
|
|
int pstrip_timing::ps_pstiming_to_modeline(MonitorTiming *timing, modeline *modeline)
|
|
{
|
|
modeline->hactive = timing->HorizontalActivePixels;
|
|
modeline->hbegin = modeline->hactive + timing->HorizontalFrontPorch;
|
|
modeline->hend = modeline->hbegin + timing->HorizontalSyncWidth;
|
|
modeline->htotal = modeline->hend + timing->HorizontalBackPorch;
|
|
|
|
modeline->vactive = timing->VerticalActivePixels;
|
|
modeline->vbegin = modeline->vactive + timing->VerticalFrontPorch;
|
|
modeline->vend = modeline->vbegin + timing->VerticalSyncWidth;
|
|
modeline->vtotal = modeline->vend + timing->VerticalBackPorch;
|
|
|
|
modeline->width = modeline->hactive;
|
|
modeline->height = modeline->vactive;
|
|
|
|
modeline->pclock = timing->PixelClockInKiloHertz * 1000;
|
|
|
|
if (!(timing->TimingFlags.w & NegativeHorizontalPolarity))
|
|
modeline->hsync = 1;
|
|
|
|
if (!(timing->TimingFlags.w & NegativeVerticalPolarity))
|
|
modeline->vsync = 1;
|
|
|
|
if ((timing->TimingFlags.w & Interlace))
|
|
modeline->interlace = 1;
|
|
|
|
modeline->hfreq = modeline->pclock / modeline->htotal;
|
|
modeline->vfreq = modeline->hfreq / modeline->vtotal * (modeline->interlace?2:1);
|
|
modeline->refresh = int(modeline->vfreq);
|
|
|
|
return 0;
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::ps_monitor_index
|
|
//============================================================
|
|
|
|
int pstrip_timing::ps_monitor_index (const char *display_name)
|
|
{
|
|
int monitor_index = 0;
|
|
char sub_index[2];
|
|
|
|
sub_index[0] = display_name[strlen(display_name)-1];
|
|
sub_index[1] = 0;
|
|
if (sscanf(sub_index,"%d", &monitor_index) == 1)
|
|
monitor_index --;
|
|
|
|
return monitor_index;
|
|
}
|
|
|
|
//============================================================
|
|
// pstrip_timing::update_mode
|
|
//============================================================
|
|
|
|
bool pstrip_timing::update_mode(modeline *mode)
|
|
{
|
|
if (!set_timing(mode))
|
|
{
|
|
return false;
|
|
}
|
|
|
|
mode->type |= CUSTOM_VIDEO_TIMING_POWERSTRIP;
|
|
return true;
|
|
}
|