Just so I can play a bit without annoying f|res:)

git-svn-id: https://dolphin-emu.googlecode.com/svn/trunk@2740 8ced0084-cf51-0410-be5f-012b33b47a6e
This commit is contained in:
nakeee 2009-03-23 09:10:32 +00:00
parent fc582ea560
commit 788cc73867
55 changed files with 12244 additions and 0 deletions

View File

@ -67,6 +67,7 @@ dirs = [
'Source/Plugins/Plugin_VideoOGL/Src',
'Source/Plugins/Plugin_DSP_HLE/Src',
'Source/Plugins/Plugin_DSP_LLE/Src',
'Source/Plugins/Plugin_DSP_LLE-testing/Src',
'Source/Plugins/Plugin_PadSimple/Src',
'Source/Plugins/Plugin_PadSimpleEvnt/Src',
'Source/Plugins/Plugin_nJoy_SDL/Src',

View File

@ -0,0 +1,26 @@

Microsoft Visual Studio Solution File, Format Version 9.00
# Visual Studio 2005
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GlobalSection(SolutionConfigurationPlatforms) = preSolution
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Debug|x64 = Debug|x64
Release|Win32 = Release|Win32
Release|x64 = Release|x64
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GlobalSection(ProjectConfigurationPlatforms) = postSolution
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EndGlobal

View File

@ -0,0 +1,869 @@
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// This file is a part of the Windows Template Library.
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// which can be found in the file CPL.TXT at the root of this distribution.
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///////////////////////////////////////////////////////////////////////////////
#ifdef APSTUDIO_INVOKED
#undef APSTUDIO_HIDDEN_SYMBOLS
#endif // APSTUDIO_INVOKED
///////////////////////////////////////////////////////////////////////////////
// Standard window components
#define ID_SEPARATOR 0 // special separator value
#define ID_DEFAULT_PANE 0 // default status bar pane
#ifndef RC_INVOKED // code only
// standard control bars (IDW = window ID)
#define ATL_IDW_TOOLBAR 0xE800 // main Toolbar for window
#define ATL_IDW_STATUS_BAR 0xE801 // Status bar window
#define ATL_IDW_COMMAND_BAR 0xE802 // Command bar window
// parts of a frame window
#define ATL_IDW_CLIENT 0xE900
#define ATL_IDW_PANE_FIRST 0xE900 // first pane (256 max)
#define ATL_IDW_PANE_LAST 0xE9FF
#define ATL_IDW_HSCROLL_FIRST 0xEA00 // first Horz scrollbar (16 max)
#define ATL_IDW_VSCROLL_FIRST 0xEA10 // first Vert scrollbar (16 max)
#define ATL_IDW_SIZE_BOX 0xEA20 // size box for splitters
#define ATL_IDW_PANE_SAVE 0xEA21 // to shift ATL_IDW_PANE_FIRST
// bands for a rebar
#define ATL_IDW_BAND_FIRST 0xEB00
#define ATL_IDW_BAND_LAST 0xEBFF
#endif // !RC_INVOKED
///////////////////////////////////////////////////////////////////////////////
// Standard Commands
// File commands
#define ID_FILE_NEW 0xE100
#define ID_FILE_OPEN 0xE101
#define ID_FILE_CLOSE 0xE102
#define ID_FILE_SAVE 0xE103
#define ID_FILE_SAVE_AS 0xE104
#define ID_FILE_PAGE_SETUP 0xE105
#define ID_FILE_PRINT_SETUP 0xE106
#define ID_FILE_PRINT 0xE107
#define ID_FILE_PRINT_DIRECT 0xE108
#define ID_FILE_PRINT_PREVIEW 0xE109
#define ID_FILE_UPDATE 0xE10A
#define ID_FILE_SAVE_COPY_AS 0xE10B
#define ID_FILE_SEND_MAIL 0xE10C
#define ID_FILE_MRU_FIRST 0xE110
#define ID_FILE_MRU_FILE1 0xE110 // range - 16 max
#define ID_FILE_MRU_FILE2 0xE111
#define ID_FILE_MRU_FILE3 0xE112
#define ID_FILE_MRU_FILE4 0xE113
#define ID_FILE_MRU_FILE5 0xE114
#define ID_FILE_MRU_FILE6 0xE115
#define ID_FILE_MRU_FILE7 0xE116
#define ID_FILE_MRU_FILE8 0xE117
#define ID_FILE_MRU_FILE9 0xE118
#define ID_FILE_MRU_FILE10 0xE119
#define ID_FILE_MRU_FILE11 0xE11A
#define ID_FILE_MRU_FILE12 0xE11B
#define ID_FILE_MRU_FILE13 0xE11C
#define ID_FILE_MRU_FILE14 0xE11D
#define ID_FILE_MRU_FILE15 0xE11E
#define ID_FILE_MRU_FILE16 0xE11F
#define ID_FILE_MRU_LAST 0xE11F
// Edit commands
#define ID_EDIT_CLEAR 0xE120
#define ID_EDIT_CLEAR_ALL 0xE121
#define ID_EDIT_COPY 0xE122
#define ID_EDIT_CUT 0xE123
#define ID_EDIT_FIND 0xE124
#define ID_EDIT_PASTE 0xE125
#define ID_EDIT_PASTE_LINK 0xE126
#define ID_EDIT_PASTE_SPECIAL 0xE127
#define ID_EDIT_REPEAT 0xE128
#define ID_EDIT_REPLACE 0xE129
#define ID_EDIT_SELECT_ALL 0xE12A
#define ID_EDIT_UNDO 0xE12B
#define ID_EDIT_REDO 0xE12C
// Window commands
#define ID_WINDOW_NEW 0xE130
#define ID_WINDOW_ARRANGE 0xE131
#define ID_WINDOW_CASCADE 0xE132
#define ID_WINDOW_TILE_HORZ 0xE133
#define ID_WINDOW_TILE_VERT 0xE134
#define ID_WINDOW_SPLIT 0xE135
#ifndef RC_INVOKED // code only
#define ATL_IDM_WINDOW_FIRST 0xE130
#define ATL_IDM_WINDOW_LAST 0xE13F
#define ATL_IDM_FIRST_MDICHILD 0xFF00 // window list starts here
#define ATL_IDM_LAST_MDICHILD 0xFFFD
#endif // !RC_INVOKED
// TabView
#define ID_WINDOW_TABFIRST 0xFF00 // = ATL_IDM_FIRST_MDICHILD
#define ID_WINDOW_TABLAST 0xFFFD
#define ID_WINDOW_SHOWTABLIST 0xFFFE
// Help and App commands
#define ID_APP_ABOUT 0xE140
#define ID_APP_EXIT 0xE141
#define ID_HELP_INDEX 0xE142
#define ID_HELP_FINDER 0xE143
#define ID_HELP_USING 0xE144
#define ID_CONTEXT_HELP 0xE145 // shift-F1
// special commands for processing help
#define ID_HELP 0xE146 // first attempt for F1
#define ID_DEFAULT_HELP 0xE147 // last attempt
// Misc
#define ID_NEXT_PANE 0xE150
#define ID_PREV_PANE 0xE151
#define ID_PANE_CLOSE 0xE152
// Format
#define ID_FORMAT_FONT 0xE160
// Scroll
#define ID_SCROLL_UP 0xE170
#define ID_SCROLL_DOWN 0xE171
#define ID_SCROLL_PAGE_UP 0xE172
#define ID_SCROLL_PAGE_DOWN 0xE173
#define ID_SCROLL_TOP 0xE174
#define ID_SCROLL_BOTTOM 0xE175
#define ID_SCROLL_LEFT 0xE176
#define ID_SCROLL_RIGHT 0xE177
#define ID_SCROLL_PAGE_LEFT 0xE178
#define ID_SCROLL_PAGE_RIGHT 0xE179
#define ID_SCROLL_ALL_LEFT 0xE17A
#define ID_SCROLL_ALL_RIGHT 0xE17B
// OLE commands
#define ID_OLE_INSERT_NEW 0xE200
#define ID_OLE_EDIT_LINKS 0xE201
#define ID_OLE_EDIT_CONVERT 0xE202
#define ID_OLE_EDIT_CHANGE_ICON 0xE203
#define ID_OLE_EDIT_PROPERTIES 0xE204
#define ID_OLE_VERB_FIRST 0xE210 // range - 16 max
#ifndef RC_INVOKED // code only
#define ID_OLE_VERB_LAST 0xE21F
#endif // !RC_INVOKED
// View commands (same number used as IDW used for toolbar and status bar)
#define ID_VIEW_TOOLBAR 0xE800
#define ID_VIEW_STATUS_BAR 0xE801
#define ID_VIEW_REFRESH 0xE803
///////////////////////////////////////////////////////////////////////////////
// Standard control IDs
#ifdef IDC_STATIC
#undef IDC_STATIC
#endif // IDC_STATIC
#define IDC_STATIC (-1) // all static controls
///////////////////////////////////////////////////////////////////////////////
// Standard string error/warnings
// idle status bar message
#define ATL_IDS_IDLEMESSAGE 0xE001
#ifndef RC_INVOKED // code only
#define ATL_IDS_SCFIRST 0xEF00
#endif // !RC_INVOKED
#define ATL_IDS_SCSIZE 0xEF00
#define ATL_IDS_SCMOVE 0xEF01
#define ATL_IDS_SCMINIMIZE 0xEF02
#define ATL_IDS_SCMAXIMIZE 0xEF03
#define ATL_IDS_SCNEXTWINDOW 0xEF04
#define ATL_IDS_SCPREVWINDOW 0xEF05
#define ATL_IDS_SCCLOSE 0xEF06
#define ATL_IDS_SCRESTORE 0xEF12
#define ATL_IDS_SCTASKLIST 0xEF13
#define ATL_IDS_MDICHILD 0xEF1F
#define ATL_IDS_MRU_FILE 0xEFDA
///////////////////////////////////////////////////////////////////////////////
// Misc. control IDs
// Property Sheet control id's (determined with Spy++)
#define ID_APPLY_NOW 0x3021
#define ID_WIZBACK 0x3023
#define ID_WIZNEXT 0x3024
#define ID_WIZFINISH 0x3025
#define ATL_IDC_TAB_CONTROL 0x3020
#endif // __ATLRES_H__

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//{{NO_DEPENDENCIES}}
// Microsoft Visual C++ generated include file.
// Used by resources.rc
//
#define IDR_MAINFRAME 128
#define IDD_MAINDLG 129
#define IDD_DISASMDLG 129
#define IDD_DISASMDLG1 130
#define IDD_REGISTERDLG 130
#define IDC_LIST1 1000
#define IDC_DISASM_LIST 1000
#define ID_STEP 1001
#define ID_SHOW_REGISTER 1002
#define IDC_ASSERT_INT 1003
#define ID_GO 1004
#define IDC_HALT 1005
#define IDC_HALT2 1006
#define IDC_INIT 1006
#define IDC_GROUP 1007
// Next default values for new objects
//
#ifdef APSTUDIO_INVOKED
#ifndef APSTUDIO_READONLY_SYMBOLS
#define _APS_NEXT_RESOURCE_VALUE 202
#define _APS_NEXT_COMMAND_VALUE 32772
#define _APS_NEXT_CONTROL_VALUE 1008
#define _APS_NEXT_SYMED_VALUE 101
#endif
#endif

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// Microsoft Visual C++ generated resource script.
//
#include "resource.h"
#define APSTUDIO_READONLY_SYMBOLS
/////////////////////////////////////////////////////////////////////////////
//
// Generated from the TEXTINCLUDE 2 resource.
//
#include "atlres.h"
/////////////////////////////////////////////////////////////////////////////
#undef APSTUDIO_READONLY_SYMBOLS
/////////////////////////////////////////////////////////////////////////////
// German (Germany) resources
#if !defined(AFX_RESOURCE_DLL) || defined(AFX_TARG_DEU)
#ifdef _WIN32
LANGUAGE LANG_GERMAN, SUBLANG_GERMAN
#pragma code_page(1252)
#endif //_WIN32
#ifdef APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// TEXTINCLUDE
//
3 TEXTINCLUDE
BEGIN
"\r\0"
END
#endif // APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// Dialog
//
IDR_MAINFRAME DIALOGEX 0, 0, 186, 94
STYLE DS_SETFONT | DS_MODALFRAME | DS_FIXEDSYS | WS_POPUP | WS_CAPTION | WS_SYSMENU
CAPTION "Dialog"
FONT 8, "MS Shell Dlg", 400, 0, 0x1
BEGIN
DEFPUSHBUTTON "OK",IDOK,129,7,50,14
PUSHBUTTON "Cancel",IDCANCEL,129,24,50,14
END
/////////////////////////////////////////////////////////////////////////////
//
// DESIGNINFO
//
#ifdef APSTUDIO_INVOKED
GUIDELINES DESIGNINFO
BEGIN
IDR_MAINFRAME, DIALOG
BEGIN
LEFTMARGIN, 7
RIGHTMARGIN, 179
TOPMARGIN, 7
BOTTOMMARGIN, 87
END
END
#endif // APSTUDIO_INVOKED
#endif // German (Germany) resources
/////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
// English (U.S.) resources
#if !defined(AFX_RESOURCE_DLL) || defined(AFX_TARG_ENU)
#ifdef _WIN32
LANGUAGE LANG_ENGLISH, SUBLANG_ENGLISH_US
#pragma code_page(1252)
#endif //_WIN32
#ifdef APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// TEXTINCLUDE
//
1 TEXTINCLUDE
BEGIN
"resource.h\0"
END
2 TEXTINCLUDE
BEGIN
"#include ""atlres.h""\r\n"
"\0"
END
#endif // APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// Dialog
//
IDD_DISASMDLG DIALOGEX 0, 0, 513, 298
STYLE DS_SETFONT | WS_MINIMIZEBOX | WS_CAPTION | WS_SYSMENU
CAPTION "Debugger"
FONT 8, "Tahoma", 400, 0, 0x0
BEGIN
DEFPUSHBUTTON "Step",ID_STEP,456,7,50,14
CONTROL "",IDC_DISASM_LIST,"SysListView32",LVS_REPORT | LVS_SINGLESEL | LVS_SORTDESCENDING | LVS_ALIGNLEFT | WS_BORDER | WS_TABSTOP,7,7,445,284
PUSHBUTTON "&Show Regs",ID_SHOW_REGISTER,456,277,50,14
DEFPUSHBUTTON "Go",ID_GO,456,23,50,14
CONTROL "AssertInt",IDC_ASSERT_INT,"Button",BS_AUTOCHECKBOX | WS_DISABLED | WS_TABSTOP,455,50,51,9
CONTROL "Halt",IDC_HALT,"Button",BS_AUTOCHECKBOX | WS_DISABLED | WS_TABSTOP,455,63,51,9
CONTROL "Init",IDC_INIT,"Button",BS_AUTOCHECKBOX | WS_DISABLED | WS_TABSTOP,455,75,51,9
END
IDD_REGISTERDLG DIALOGEX 0, 0, 312, 170
STYLE DS_SETFONT | WS_MINIMIZEBOX | WS_CAPTION | WS_SYSMENU
CAPTION "Registers Dialog"
FONT 8, "Tahoma", 400, 0, 0x0
BEGIN
CONTROL "",IDC_DISASM_LIST,"SysListView32",LVS_REPORT | LVS_SINGLESEL | LVS_SHOWSELALWAYS | LVS_SORTDESCENDING | LVS_ALIGNLEFT | LVS_NOSCROLL | WS_BORDER | WS_TABSTOP,7,7,298,156
END
/////////////////////////////////////////////////////////////////////////////
//
// DESIGNINFO
//
#ifdef APSTUDIO_INVOKED
GUIDELINES DESIGNINFO
BEGIN
IDD_DISASMDLG, DIALOG
BEGIN
LEFTMARGIN, 7
RIGHTMARGIN, 506
TOPMARGIN, 7
BOTTOMMARGIN, 291
END
IDD_REGISTERDLG, DIALOG
BEGIN
LEFTMARGIN, 7
RIGHTMARGIN, 305
TOPMARGIN, 7
BOTTOMMARGIN, 163
END
END
#endif // APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// Accelerator
//
IDR_MAINFRAME ACCELERATORS
BEGIN
"N", ID_FILE_NEW, VIRTKEY, CONTROL
"O", ID_FILE_OPEN, VIRTKEY, CONTROL
"S", ID_FILE_SAVE, VIRTKEY, CONTROL
"P", ID_FILE_PRINT, VIRTKEY, CONTROL
"Z", ID_EDIT_UNDO, VIRTKEY, CONTROL
"X", ID_EDIT_CUT, VIRTKEY, CONTROL
"C", ID_EDIT_COPY, VIRTKEY, CONTROL
"V", ID_EDIT_PASTE, VIRTKEY, CONTROL
VK_BACK, ID_EDIT_UNDO, VIRTKEY, ALT
VK_DELETE, ID_EDIT_CUT, VIRTKEY, SHIFT
VK_INSERT, ID_EDIT_COPY, VIRTKEY, CONTROL
VK_INSERT, ID_EDIT_PASTE, VIRTKEY, SHIFT
VK_F6, ID_NEXT_PANE, VIRTKEY
VK_F6, ID_PREV_PANE, VIRTKEY, SHIFT
END
/////////////////////////////////////////////////////////////////////////////
//
// Version
//
VS_VERSION_INFO VERSIONINFO
FILEVERSION 1,0,0,1
PRODUCTVERSION 1,0,0,1
FILEFLAGSMASK 0x3fL
#ifdef _DEBUG
FILEFLAGS 0x1L
#else
FILEFLAGS 0x0L
#endif
FILEOS 0x4L
FILETYPE 0x2L
FILESUBTYPE 0x0L
BEGIN
BLOCK "StringFileInfo"
BEGIN
BLOCK "040904B0"
BEGIN
VALUE "FileDescription", "test1 Module"
VALUE "FileVersion", "1, 0, 0, 1"
VALUE "InternalName", "TEST1"
VALUE "LegalCopyright", "Copyright 2004"
VALUE "OriginalFilename", "demoproject1.exe"
VALUE "ProductName", "demoproject1 Module"
VALUE "ProductVersion", "1, 0, 0, 1"
END
END
BLOCK "VarFileInfo"
BEGIN
VALUE "Translation", 0x409, 1200
END
END
/////////////////////////////////////////////////////////////////////////////
//
// String Table
//
STRINGTABLE
BEGIN
IDR_MAINFRAME "demoproject1"
END
STRINGTABLE
BEGIN
ID_FILE_NEW "Create a new document\nNew"
ID_FILE_OPEN "Open an existing document\nOpen"
ID_FILE_CLOSE "Close the active document\nClose"
ID_FILE_SAVE "Save the active document\nSave"
ID_FILE_SAVE_AS "Save the active document with a new name\nSave As"
ID_FILE_PAGE_SETUP "Change the printing options\nPage Setup"
ID_FILE_PRINT_SETUP "Change the printer and printing options\nPrint Setup"
ID_FILE_PRINT "Print the active document\nPrint"
ID_FILE_PRINT_PREVIEW "Display full pages\nPrint Preview"
END
STRINGTABLE
BEGIN
ID_APP_ABOUT "Display program information, version number and copyright\nAbout"
ID_APP_EXIT "Quit the application; prompts to save documents\nExit"
END
STRINGTABLE
BEGIN
ID_NEXT_PANE "Switch to the next window pane\nNext Pane"
ID_PREV_PANE "Switch back to the previous window pane\nPrevious Pane"
END
STRINGTABLE
BEGIN
ID_WINDOW_NEW "Open another window for the active document\nNew Window"
ID_WINDOW_ARRANGE "Arrange icons at the bottom of the window\nArrange Icons"
ID_WINDOW_CASCADE "Arrange windows so they overlap\nCascade Windows"
ID_WINDOW_TILE_HORZ "Arrange windows as non-overlapping tiles\nTile Windows"
ID_WINDOW_TILE_VERT "Arrange windows as non-overlapping tiles\nTile Windows"
ID_WINDOW_SPLIT "Split the active window into panes\nSplit"
END
STRINGTABLE
BEGIN
ID_EDIT_CLEAR "Erase the selection\nErase"
ID_EDIT_CLEAR_ALL "Erase everything\nErase All"
ID_EDIT_COPY "Copy the selection and put it on the Clipboard\nCopy"
ID_EDIT_CUT "Cut the selection and put it on the Clipboard\nCut"
ID_EDIT_FIND "Find the specified text\nFind"
ID_EDIT_PASTE "Insert Clipboard contents\nPaste"
ID_EDIT_REPEAT "Repeat the last action\nRepeat"
ID_EDIT_REPLACE "Replace specific text with different text\nReplace"
ID_EDIT_SELECT_ALL "Select the entire document\nSelect All"
ID_EDIT_UNDO "Undo the last action\nUndo"
ID_EDIT_REDO "Redo the previously undone action\nRedo"
END
STRINGTABLE
BEGIN
ATL_IDS_SCSIZE "Change the window size"
ATL_IDS_SCMOVE "Change the window position"
ATL_IDS_SCMINIMIZE "Reduce the window to an icon"
ATL_IDS_SCMAXIMIZE "Enlarge the window to full size"
ATL_IDS_SCNEXTWINDOW "Switch to the next document window"
ATL_IDS_SCPREVWINDOW "Switch to the previous document window"
ATL_IDS_SCCLOSE "Close the active window and prompts to save the documents"
END
STRINGTABLE
BEGIN
ATL_IDS_SCRESTORE "Restore the window to normal size"
ATL_IDS_SCTASKLIST "Activate Task List"
ATL_IDS_MDICHILD "Activate this window"
END
STRINGTABLE
BEGIN
ATL_IDS_IDLEMESSAGE "Ready"
END
STRINGTABLE
BEGIN
ATL_IDS_MRU_FILE "Open this document"
END
#endif // English (U.S.) resources
/////////////////////////////////////////////////////////////////////////////
#ifndef APSTUDIO_INVOKED
/////////////////////////////////////////////////////////////////////////////
//
// Generated from the TEXTINCLUDE 3 resource.
//
/////////////////////////////////////////////////////////////////////////////
#endif // not APSTUDIO_INVOKED

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#include <ao/ao.h>
#include <pthread.h>
#include "AOSoundStream.h"
namespace AOSound
{
pthread_t thread;
StreamCallback callback;
char *buffer;
int buf_size;
ao_device *device;
ao_sample_format format;
int default_driver;
int bufferSize;
int totalRenderedBytes;
int sampleRate;
volatile int threadData;
int currentPos;
int lastPos;
short realtimeBuffer[1024 * 1024];
int AOSound_GetSampleRate()
{
return sampleRate;
}
bool WriteDataToBuffer(int dwOffset,char* soundData, int dwSoundBytes)
{
//void* ptr1, * ptr2;
//DWORD numBytes1, numBytes2;
// Obtain memory address of write block. This will be in two parts if the block wraps around.
//HRESULT hr = dsBuffer->Lock(dwOffset, dwSoundBytes, &ptr1, &numBytes1, &ptr2, &numBytes2, 0);
// If the buffer was lost, restore and retry lock.
/*if (DSERR_BUFFERLOST == hr)
{
dsBuffer->Restore();
hr = dsBuffer->Lock(dwOffset, dwSoundBytes, &ptr1, &numBytes1, &ptr2, &numBytes2, 0);
}
if (SUCCEEDED(hr))
{
memcpy(ptr1, soundData, numBytes1);
if (ptr2 != 0)
{
memcpy(ptr2, soundData + numBytes1, numBytes2);
}
// Release the data back to DirectSound.
dsBuffer->Unlock(ptr1, numBytes1, ptr2, numBytes2);
return(true);
}
return(false);*/
ao_play(device, soundData, dwSoundBytes);
return true;
}
void* soundThread(void*)
{
currentPos = 0;
lastPos = 0;
// Prefill buffer?
//writeDataToBuffer(0,realtimeBuffer,bufferSize);
// dsBuffer->Lock(0, bufferSize, (void **)&p1, &num1, (void **)&p2, &num2, 0);
//dsBuffer->Play(0, 0, DSBPLAY_LOOPING);
while (!threadData)
{
// No blocking inside the csection
//dsBuffer->GetCurrentPosition((DWORD*)&currentPos, 0);
int numBytesToRender = 256;
if (numBytesToRender >= 256)
{
(*callback)(realtimeBuffer, numBytesToRender >> 2, 16, 44100, 2);
WriteDataToBuffer(0, (char*)realtimeBuffer, numBytesToRender);
//currentPos = ModBufferSize(lastPos + numBytesToRender);
//totalRenderedBytes += numBytesToRender;
//lastPos = currentPos;
}
//WaitForSingleObject(soundSyncEvent, MAXWAIT);
}
//dsBuffer->Stop();
return(0); //hurra!
}
bool AOSound_StartSound(int _sampleRate, StreamCallback _callback)
{
callback = _callback;
threadData = 0;
sampleRate = _sampleRate;
//no security attributes, automatic resetting, init state nonset, untitled
//soundSyncEvent = CreateEvent(0, false, false, 0);
ao_initialize();
default_driver = ao_default_driver_id();
format.bits = 16;
format.channels = 2;
format.rate = sampleRate;
format.byte_format = AO_FMT_LITTLE;
//vi vill ha access till DSOUND så...
device = ao_open_live(default_driver, &format, NULL /* no options */);
if (device == NULL) {
fprintf(stderr, "DSP_LLE: Error opening AO device.\n");
return 1;
}
buf_size = format.bits/8 * format.channels * format.rate;
buffer = (char*)calloc(buf_size, sizeof(char));
pthread_create(&thread, NULL, soundThread, (void *)NULL);
return(true);
}
void AOSound_StopSound()
{
ao_close(device);
ao_shutdown();
}
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef __AOSOUNDSTREAM_H__
#define __AOSOUNDSTREAM_H__
namespace AOSound
{
typedef void (*StreamCallback)(short* buffer, int numSamples, int bits, int rate, int channels);
bool AOSound_StartSound(int sampleRate, StreamCallback _callback);
void AOSound_UpdateSound();
void AOSound_StopSound();
float AOSound_GetTimer();
int AOSound_GetCurSample();
int AOSound_GetSampleRate();
}
#endif //__AOSOUNDSTREAM_H__

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "stdafx.h"
#include <mmsystem.h>
#include <dsound.h>
#include "DSoundStream.h"
namespace DSound
{
#define BUFSIZE 32768
#define MAXWAIT 70 //ms
//THE ROCK SOLID SYNCED DSOUND ENGINE :)
//våran kritiska sektion och vår syncevent-handle
CRITICAL_SECTION soundCriticalSection;
HANDLE soundSyncEvent;
HANDLE hThread;
StreamCallback callback;
//lite mojs
IDirectSound8* ds;
IDirectSoundBuffer* dsBuffer;
//tja.. behövs
int bufferSize; //i bytes
int totalRenderedBytes;
int sampleRate;
//med den här synkar vi stängning..
//0=vi spelar oväsen, 1=stäng tråden NU! 2=japp,tråden är stängd så fortsätt
volatile int threadData;
//ser till så X kan delas med 32
inline int FIX32(int x)
{
return(x & (~127));
}
int DSound_GetSampleRate()
{
return(sampleRate);
}
//Dags att skapa vår directsound buffert
bool createBuffer()
{
PCMWAVEFORMAT pcmwf;
DSBUFFERDESC dsbdesc;
//ljudformatet
memset(&pcmwf, 0, sizeof(PCMWAVEFORMAT));
memset(&dsbdesc, 0, sizeof(DSBUFFERDESC));
pcmwf.wf.wFormatTag = WAVE_FORMAT_PCM;
pcmwf.wf.nChannels = 2;
pcmwf.wf.nSamplesPerSec = sampleRate;
pcmwf.wf.nBlockAlign = 4;
pcmwf.wf.nAvgBytesPerSec = pcmwf.wf.nSamplesPerSec * pcmwf.wf.nBlockAlign;
pcmwf.wBitsPerSample = 16;
//buffer description
dsbdesc.dwSize = sizeof(DSBUFFERDESC);
dsbdesc.dwFlags = DSBCAPS_GETCURRENTPOSITION2 | DSBCAPS_STICKYFOCUS; //VIKTIGT //DSBCAPS_CTRLPAN | DSBCAPS_CTRLVOLUME | DSBCAPS_CTRLFREQUENCY;
dsbdesc.dwBufferBytes = bufferSize = BUFSIZE; //FIX32(pcmwf.wf.nAvgBytesPerSec); //ändra för att ställa in bufferstorlek
dsbdesc.lpwfxFormat = (WAVEFORMATEX*)&pcmwf;
// nu skapar vi bufferjäveln
if (SUCCEEDED(ds->CreateSoundBuffer(&dsbdesc, &dsBuffer, NULL)))
{
dsBuffer->SetCurrentPosition(0);
return(true);
}
else
{
// Failed.
dsBuffer = NULL;
return(false);
}
}
bool writeDataToBuffer(DWORD dwOffset, // Our own write cursor.
char* soundData, // Start of our data.
DWORD dwSoundBytes) // Size of block to copy.
{
void* ptr1, * ptr2;
DWORD numBytes1, numBytes2;
// Obtain memory address of write block. This will be in two parts if the block wraps around.
HRESULT hr = dsBuffer->Lock(dwOffset, dwSoundBytes, &ptr1, &numBytes1, &ptr2, &numBytes2, 0);
// If the buffer was lost, restore and retry lock.
if (DSERR_BUFFERLOST == hr)
{
dsBuffer->Restore();
hr = dsBuffer->Lock(dwOffset, dwSoundBytes, &ptr1, &numBytes1, &ptr2, &numBytes2, 0);
}
if (SUCCEEDED(hr))
{
memcpy(ptr1, soundData, numBytes1);
if (ptr2 != 0)
{
memcpy(ptr2, soundData + numBytes1, numBytes2);
}
// Release the data back to DirectSound.
dsBuffer->Unlock(ptr1, numBytes1, ptr2, numBytes2);
return(true);
} /*
else
{
char temp[8];
sprintf(temp,"%i\n",hr);
OutputDebugString(temp);
}*/
return(false);
}
inline int ModBufferSize(int x)
{
return((x + bufferSize) % bufferSize);
}
int currentPos;
int lastPos;
short realtimeBuffer[1024 * 1024];
DWORD WINAPI soundThread(void*)
{
currentPos = 0;
lastPos = 0;
//writeDataToBuffer(0,realtimeBuffer,bufferSize);
// dsBuffer->Lock(0, bufferSize, (void **)&p1, &num1, (void **)&p2, &num2, 0);
dsBuffer->Play(0, 0, DSBPLAY_LOOPING);
while (!threadData)
{
EnterCriticalSection(&soundCriticalSection);
dsBuffer->GetCurrentPosition((DWORD*)&currentPos, 0);
int numBytesToRender = FIX32(ModBufferSize(currentPos - lastPos));
//renderStuff(numBytesToRender/2);
//if (numBytesToRender>bufferSize/2) numBytesToRender=0;
if (numBytesToRender >= 256)
{
(*callback)(realtimeBuffer, numBytesToRender >> 2, 16, 44100, 2);
writeDataToBuffer(lastPos, (char*)realtimeBuffer, numBytesToRender);
currentPos = ModBufferSize(lastPos + numBytesToRender);
totalRenderedBytes += numBytesToRender;
lastPos = currentPos;
}
LeaveCriticalSection(&soundCriticalSection);
WaitForSingleObject(soundSyncEvent, MAXWAIT);
}
dsBuffer->Stop();
threadData = 2;
return(0); //hurra!
}
bool DSound_StartSound(HWND window, int _sampleRate, StreamCallback _callback)
{
callback = _callback;
threadData = 0;
sampleRate = _sampleRate;
//no security attributes, automatic resetting, init state nonset, untitled
soundSyncEvent = CreateEvent(0, false, false, 0);
//vi initierar den...........
InitializeCriticalSection(&soundCriticalSection);
//vi vill ha access till DSOUND så...
if (FAILED(DirectSoundCreate8(0, &ds, 0)))
{
return(false);
}
//samarbetsvillig? nää :)
ds->SetCooperativeLevel(window, DSSCL_NORMAL); //DSSCL_PRIORITY?
//så.. skapa buffern
if (!createBuffer())
{
return(false);
}
//rensa den.. ?
DWORD num1;
short* p1;
dsBuffer->Lock(0, bufferSize, (void* *)&p1, &num1, 0, 0, 0);
memset(p1, 0, num1);
dsBuffer->Unlock(p1, num1, 0, 0);
totalRenderedBytes = -bufferSize;
DWORD h;
hThread = CreateThread(0, 0, soundThread, 0, 0, &h);
SetThreadPriority(hThread, THREAD_PRIORITY_ABOVE_NORMAL);
return(true);
}
void DSound_UpdateSound()
{
SetEvent(soundSyncEvent);
}
void DSound_StopSound()
{
EnterCriticalSection(&soundCriticalSection);
threadData = 1;
//kick the thread if it's waiting
SetEvent(soundSyncEvent);
LeaveCriticalSection(&soundCriticalSection);
WaitForSingleObject(hThread, INFINITE);
CloseHandle(hThread);
dsBuffer->Release();
ds->Release();
CloseHandle(soundSyncEvent);
}
int DSound_GetCurSample()
{
EnterCriticalSection(&soundCriticalSection);
int playCursor;
dsBuffer->GetCurrentPosition((DWORD*)&playCursor, 0);
playCursor = ModBufferSize(playCursor - lastPos) + totalRenderedBytes;
LeaveCriticalSection(&soundCriticalSection);
return(playCursor);
}
float DSound_GetTimer()
{
return((float)DSound_GetCurSample() * (1.0f / (4.0f * 44100.0f)));
}
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef __SOUNDSTREAM_H__
#define __SOUNDSTREAM_H__
namespace DSound
{
typedef void (*StreamCallback)(short* buffer, int numSamples, int bits, int rate, int channels);
bool DSound_StartSound(HWND window, int sampleRate, StreamCallback _callback);
void DSound_UpdateSound();
void DSound_StopSound();
float DSound_GetTimer();
int DSound_GetCurSample();
int DSound_GetSampleRate();
}
#endif //__SOUNDSTREAM_H__

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "stdafx.h"
#include "../res/resource.h"
#include "DisAsmDlg.h"
#include "gdsp_memory.h"
#include "gdsp_interpreter.h"
#include "disassemble.h"
#include "RegSettings.h"
CDisAsmDlg::CDisAsmDlg()
: m_CachedStepCounter(-1)
, m_CachedCR(-1)
, m_State(RUN)
, m_CachedUCodeCRC(-1)
{}
BOOL CDisAsmDlg::PreTranslateMessage(MSG* pMsg)
{
return(IsDialogMessage(pMsg));
}
BOOL CDisAsmDlg::OnIdle()
{
return(FALSE);
}
LRESULT CDisAsmDlg::OnInitDialog(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
{
CWindowSettings ws;
if (ws.Load("Software\\Dolphin\\DSP", "DisAsm"))
{
ws.ApplyTo(CWindow(m_hWnd), SW_SHOW);
}
m_DisAsmListViewCtrl.m_hWnd = GetDlgItem(IDC_DISASM_LIST);
UIAddChildWindowContainer(m_hWnd);
m_DisAsmListViewCtrl.AddColumn(_T("BP"), ColumnBP);
m_DisAsmListViewCtrl.AddColumn(_T("Function"), ColumnFunction);
m_DisAsmListViewCtrl.AddColumn(_T("Address"), ColumnAddress);
m_DisAsmListViewCtrl.AddColumn(_T("Mnenmomic"), ColumnMenmomic);
m_DisAsmListViewCtrl.AddColumn(_T("Opcode"), ColumnOpcode);
m_DisAsmListViewCtrl.AddColumn(_T("Ext"), ColumnExt);
m_DisAsmListViewCtrl.AddColumn(_T("Parameter"), ColumnParameter);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnBP, 25);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnFunction, 160);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnAddress, 55);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnMenmomic, 55);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnOpcode, 60);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnExt, 40);
m_DisAsmListViewCtrl.SetColumnWidth(ColumnParameter, 500);
m_DisAsmListViewCtrl.SetExtendedListViewStyle(LVS_EX_FULLROWSELECT | LVS_EX_GRIDLINES);
m_RegisterDlg.Create(m_hWnd);
UpdateDialog();
DlgResize_Init(true, false, WS_THICKFRAME);
return(TRUE);
}
LRESULT CDisAsmDlg::OnDestroy(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
{
CWindowSettings ws;
ws.GetFrom(CWindow(m_hWnd));
ws.Save("Software\\Dolphin\\DSP", "DisAsm");
return(0);
}
LRESULT CDisAsmDlg::OnStep(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/)
{
m_State = STEP;
UpdateButtonTexts();
return(0);
}
LRESULT CDisAsmDlg::OnGo(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/)
{
if ((m_State == RUN) || (m_State == RUN_START))
{
m_State = PAUSE;
}
else
{
m_State = RUN_START;
}
UpdateButtonTexts();
return(0);
}
LRESULT CDisAsmDlg::OnShowRegisters(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/)
{
if (m_RegisterDlg.IsWindowVisible())
{
m_RegisterDlg.ShowWindow(SW_HIDE);
}
else
{
m_RegisterDlg.ShowWindow(SW_SHOW);
}
UpdateButtonTexts();
return(0);
}
LRESULT CDisAsmDlg::OnDblClick(int /*idCtrl*/, LPNMHDR pnmh, BOOL& /*bHandled*/)
{
int Index = m_DisAsmListViewCtrl.GetSelectedIndex();
if (Index != -1)
{
uint16 SelectedPC = static_cast<uint16>(m_DisAsmListViewCtrl.GetItemData(Index));
ToggleBreakPoint(SelectedPC);
}
RedrawDisAsmListView();
return(0);
}
LRESULT CDisAsmDlg::OnRClick(int /*idCtrl*/, LPNMHDR pnmh, BOOL& /*bHandled*/)
{
int Index = m_DisAsmListViewCtrl.GetSelectedIndex();
if (Index != -1)
{
uint16 SelectedPC = static_cast<uint16>(m_DisAsmListViewCtrl.GetItemData(Index));
g_dsp.pc = SelectedPC;
}
RedrawDisAsmListView();
return(0);
}
void CDisAsmDlg::CloseDialog(int nVal)
{
DestroyWindow();
::PostQuitMessage(nVal);
}
int CALLBACK CDisAsmDlg::CompareFunc(LPARAM lParam1, LPARAM lParam2, LPARAM lParamSort)
{
return(lParam1 > lParam2);
}
void CDisAsmDlg::RebuildDisAsmListView()
{
if (!m_DisAsmListViewCtrl.IsWindow())
return;
m_DisAsmListViewCtrl.ShowWindow(SW_HIDE);
m_DisAsmListViewCtrl.DeleteAllItems();
char Buffer[256];
gd_globals_t gdg;
if (g_dsp.pc & 0x8000)
{
gdg.binbuf = g_dsp.irom;
}
else
{
gdg.binbuf = g_dsp.iram;
}
gdg.buffer = Buffer;
gdg.buffer_size = 256;
gdg.ext_separator = (char)0xff;
gdg.show_pc = false;
gdg.show_hex = false;
gdg.print_tabs = true;
gdg.decode_names = true;
gdg.decode_registers = true;
for (gdg.pc = 0; gdg.pc < DSP_IROM_SIZE;)
{
uint16 CurrentPC = gdg.pc;
if (g_dsp.pc & 0x8000)
{
CurrentPC |= 0x8000;
}
char Temp[256];
sprintf_s(Temp, 256, "0x%04x", CurrentPC);
char Temp2[256];
sprintf_s(Temp2, 256, "0x%04x", dsp_imem_read(CurrentPC));
char* pOpcode = gd_dis_opcode(&gdg);
const char* pParameter = NULL;
const char* pExtension = NULL;
size_t WholeString = strlen(pOpcode);
for (size_t i = 0; i < WholeString; i++)
{
if (pOpcode[i] == (char)0xff)
{
pOpcode[i] = 0x00;
pExtension = &pOpcode[i + 1];
}
if (pOpcode[i] == 0x09)
{
pOpcode[i] = 0x00;
pParameter = &pOpcode[i + 1];
}
}
const char* pFunctionName = NULL;
if (m_SymbolMap.find(CurrentPC) != m_SymbolMap.end())
{
pFunctionName = m_SymbolMap[CurrentPC].Name.c_str();
}
int Item = m_DisAsmListViewCtrl.AddItem(0, ColumnBP, _T(" "));
m_DisAsmListViewCtrl.AddItem(Item, ColumnFunction, pFunctionName);
m_DisAsmListViewCtrl.AddItem(Item, ColumnAddress, Temp);
m_DisAsmListViewCtrl.AddItem(Item, ColumnMenmomic, Temp2);
m_DisAsmListViewCtrl.AddItem(Item, ColumnOpcode, pOpcode);
m_DisAsmListViewCtrl.AddItem(Item, ColumnExt, pExtension);
if (!_stricmp(pOpcode, "CALL"))
{
uint32 FunctionAddress = -1;
sscanf(pParameter, "0x%04x", &FunctionAddress);
if (m_SymbolMap.find(FunctionAddress) != m_SymbolMap.end())
{
pParameter = m_SymbolMap[FunctionAddress].Name.c_str();
}
}
m_DisAsmListViewCtrl.AddItem(Item, ColumnParameter, pParameter);
m_DisAsmListViewCtrl.SetItemData(Item, CurrentPC);
}
m_DisAsmListViewCtrl.SortItems(CompareFunc, (LPARAM) this);
m_DisAsmListViewCtrl.ShowWindow(SW_SHOW);
}
void CDisAsmDlg::UpdateDisAsmListView()
{
if (g_dsp.dram == NULL)
{
return;
}
// check if we have to rebuild the list view
if (m_DisAsmListViewCtrl.GetItemCount() == 0)
{
RebuildDisAsmListView();
}
else
{
uint16 FirstPC = static_cast<uint16>(m_DisAsmListViewCtrl.GetItemData(0));
if ((FirstPC & 0x8000) != (g_dsp.pc & 0x8000))
{
RebuildDisAsmListView();
}
}
if (m_CachedStepCounter == g_dsp.step_counter)
{
return;
}
// show PC
for (int i = 0; i < m_DisAsmListViewCtrl.GetItemCount(); i++)
{
if (m_DisAsmListViewCtrl.GetItemData(i) == g_dsp.pc)
{
m_DisAsmListViewCtrl.EnsureVisible(i - 5, FALSE);
m_DisAsmListViewCtrl.EnsureVisible(i + 14, FALSE);
break;
}
}
m_CachedStepCounter = g_dsp.step_counter;
RedrawDisAsmListView();
m_RegisterDlg.UpdateRegisterListView();
}
void CDisAsmDlg::UpdateSymbolMap()
{
if (g_dsp.dram == NULL)
{
return;
}
if (m_CachedUCodeCRC != g_dsp.iram_crc)
{
// load symbol map (if there is one)
m_CachedUCodeCRC = g_dsp.iram_crc;
char FileName[MAX_PATH];
sprintf(FileName, "maps\\DSP_%08x.map", m_CachedUCodeCRC);
LoadSymbolMap(FileName);
// rebuild the disasm
RebuildDisAsmListView();
}
}
void CDisAsmDlg::UpdateRegisterFlags()
{
if (m_CachedCR == g_dsp.cr)
{
return;
}
CButton ButtonAssertInt(GetDlgItem(IDC_ASSERT_INT));
ButtonAssertInt.SetCheck(g_dsp.cr & 0x02 ? BST_CHECKED : BST_UNCHECKED);
CButton ButtonReset(GetDlgItem(IDC_HALT));
ButtonReset.SetCheck(g_dsp.cr & 0x04 ? BST_CHECKED : BST_UNCHECKED);
CButton ButtonInit(GetDlgItem(IDC_INIT));
ButtonInit.SetCheck(g_dsp.cr & 0x800 ? BST_CHECKED : BST_UNCHECKED);
m_CachedCR = g_dsp.cr;
}
bool CDisAsmDlg::CanDoStep()
{
UpdateSymbolMap(); // update the symbols all the time because there a script cmds like bps
switch (m_State)
{
case RUN_START:
m_State = RUN;
return(true);
case RUN:
if (IsBreakPoint(g_dsp.pc))
{
UpdateDialog();
m_State = PAUSE;
return(false);
}
return(true);
case PAUSE:
UpdateDialog();
return(false);
case STEP:
UpdateDialog();
m_State = PAUSE;
return(true);
}
return(false);
}
void CDisAsmDlg::DebugBreak()
{
m_State = PAUSE;
}
void CDisAsmDlg::UpdateButtonTexts()
{
// go button
{
CButton Button(GetDlgItem(ID_GO));
switch (m_State)
{
case RUN_START:
case RUN:
Button.SetWindowText("Pause");
break;
case PAUSE:
case STEP:
Button.SetWindowText("Go");
break;
}
}
// show register
{
CButton Button(GetDlgItem(ID_SHOW_REGISTER));
if (m_RegisterDlg.IsWindowVisible())
{
Button.SetWindowText("Hide Regs");
}
else
{
Button.SetWindowText("Show Regs");
}
}
}
bool CDisAsmDlg::IsBreakPoint(uint16 _Address)
{
return(std::find(m_BreakPoints.begin(), m_BreakPoints.end(), _Address) != m_BreakPoints.end());
}
void CDisAsmDlg::ToggleBreakPoint(uint16 _Address)
{
if (IsBreakPoint(_Address))
{
RemoveBreakPoint(_Address);
}
else
{
AddBreakPoint(_Address);
}
}
void CDisAsmDlg::RemoveBreakPoint(uint16 _Address)
{
CBreakPointList::iterator itr = std::find(m_BreakPoints.begin(), m_BreakPoints.end(), _Address);
if (itr != m_BreakPoints.end())
{
m_BreakPoints.erase(itr);
}
}
void CDisAsmDlg::AddBreakPoint(uint16 _Address)
{
CBreakPointList::iterator itr = std::find(m_BreakPoints.begin(), m_BreakPoints.end(), _Address);
if (itr == m_BreakPoints.end())
{
m_BreakPoints.push_back(_Address);
}
}
void CDisAsmDlg::ClearBreakPoints()
{
m_BreakPoints.clear();
}
LRESULT CDisAsmDlg::OnCustomDraw(int /*idCtrl*/, LPNMHDR pnmh, BOOL& _bHandled)
{
int result = CDRF_DODEFAULT;
NMLVCUSTOMDRAW* pLVCD = reinterpret_cast<NMLVCUSTOMDRAW*>(pnmh);
switch (pLVCD->nmcd.dwDrawStage)
{
case CDDS_PREPAINT:
result = CDRF_NOTIFYITEMDRAW;
break;
case CDDS_ITEMPREPAINT:
result = CDRF_NOTIFYSUBITEMDRAW;
break;
case (CDDS_ITEMPREPAINT | CDDS_SUBITEM):
{
pLVCD->nmcd.uItemState &= ~(CDIS_SELECTED | CDIS_FOCUS);
uint16 CurrentAddress = static_cast<uint16>(m_DisAsmListViewCtrl.GetItemData((int)pLVCD->nmcd.dwItemSpec));
pLVCD->clrTextBk = FindColor(CurrentAddress);
if (CurrentAddress == g_dsp.pc)
{
pLVCD->clrTextBk = RGB(96, 192, 128);
}
switch (pLVCD->iSubItem)
{
case 0x00:
{
if (IsBreakPoint(CurrentAddress))
{
pLVCD->clrTextBk = RGB(255, 64, 64);
}
}
break;
default:
break;
}
}
}
return(result);
}
void CDisAsmDlg::RedrawDisAsmListView()
{
::InvalidateRect(m_DisAsmListViewCtrl.m_hWnd, NULL, FALSE);
}
bool CDisAsmDlg::LoadSymbolMap(const char* _pFileName)
{
m_SymbolMap.clear();
FILE* pFile = fopen(_pFileName, "r");
if (!pFile)
{
return(false);
}
char Name[1024];
uint32 AddressStart, AddressEnd;
while (!feof(pFile))
{
char line[512];
fgets(line, 511, pFile);
if (strlen(line) < 2)
{
continue;
}
// check for comment
if (line[0] == '.')
{
continue;
}
// clear all breakpoints
if (line[0] == 'C')
{
ClearBreakPoints();
continue;
}
// add breakpoint
if (line[0] == 'B')
{
sscanf(line, "B %04x", &AddressStart);
AddBreakPoint(static_cast<uint16>(AddressStart));
continue;
}
// default add new symbol
sscanf(line, "%04x %04x %s", &AddressStart, &AddressEnd, Name);
if (m_SymbolMap.find(AddressStart) == m_SymbolMap.end())
{
m_SymbolMap.insert(std::pair<uint16, SSymbol>(AddressStart, SSymbol(AddressStart, AddressEnd, Name)));
}
else
{
m_SymbolMap[AddressStart] = SSymbol(AddressStart, AddressEnd, Name);
}
}
fclose(pFile);
return(true);
}
DWORD CDisAsmDlg::FindColor(uint16 _Address)
{
size_t Color = 0;
static int Colors[6] = {0xC0FFFF, 0xFFE0C0, 0xC0C0FF, 0xFFC0FF, 0xC0FFC0, 0xFFFFC0};
for (CSymbolMap::const_iterator itr = m_SymbolMap.begin(); itr != m_SymbolMap.end(); itr++)
{
const SSymbol& rSymbol = itr->second;
if ((rSymbol.AddressStart <= _Address) && (_Address <= rSymbol.AddressEnd))
{
return(Colors[Color % 6]);
}
Color++;
}
return(GetSysColor(COLOR_3DLIGHT));
}
void CDisAsmDlg::UpdateDialog()
{
UpdateSymbolMap();
UpdateDisAsmListView();
// UpdateButtonTexts();
UpdateRegisterFlags();
}
LRESULT CDisAsmDlg::OnLvnItemchangedDisasmList(int /*idCtrl*/, LPNMHDR pNMHDR, BOOL& /*bHandled*/)
{
LPNMLISTVIEW pNMLV = reinterpret_cast<LPNMLISTVIEW>(pNMHDR);
// TODO: Add your control notification handler code here
return 0;
}
// TODO: make the members adjust with the dialog
LRESULT CDisAsmDlg::OnSize(UINT /*uMsg*/, WPARAM wParam, LPARAM lParam, BOOL& /*bHandled*/)
{
// we habe to make a group of the items I think
/*
CRect lpRect;
int wid = lpRect.right - lpRect.left - 100;
int hei = lpRect.bottom - lpRect.top - 20;
m_DisAsmListViewCtrl.ResizeClient(wid, hei, true);
*/
return 0;
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "Globals.h"
#include <list>
#include <algorithm>
#include "../res/resource.h"
#include "DisAsmListView.h"
#include "RegisterDlg.h"
class CDisAsmDlg
: public CDialogImpl<CDisAsmDlg>, public CUpdateUI<CDisAsmDlg>, public CDialogResize<CDisAsmDlg>
{
public:
CDisAsmDlg();
enum { IDD = IDD_DISASMDLG };
virtual BOOL PreTranslateMessage(MSG* pMsg);
virtual BOOL OnIdle();
BEGIN_UPDATE_UI_MAP(CDisAsmDlg)
END_UPDATE_UI_MAP()
BEGIN_DLGRESIZE_MAP(CDisAsmDlg)
DLGRESIZE_CONTROL(IDR_MAINFRAME, DLSZ_SIZE_X | DLSZ_SIZE_Y)
END_DLGRESIZE_MAP()
BEGIN_MSG_MAP(CDisAsmDlg)
MESSAGE_HANDLER(WM_INITDIALOG, OnInitDialog)
MESSAGE_HANDLER(WM_DESTROY, OnDestroy)
COMMAND_ID_HANDLER(ID_STEP, OnStep)
COMMAND_ID_HANDLER(ID_GO, OnGo)
COMMAND_ID_HANDLER(ID_SHOW_REGISTER, OnShowRegisters)
NOTIFY_CODE_HANDLER(NM_CLICK, OnDblClick)
NOTIFY_CODE_HANDLER(NM_RETURN, OnDblClick)
NOTIFY_CODE_HANDLER(NM_RCLICK, OnRClick)
NOTIFY_CODE_HANDLER(NM_CUSTOMDRAW, OnCustomDraw)
NOTIFY_HANDLER(IDC_DISASM_LIST, LVN_ITEMCHANGED, OnLvnItemchangedDisasmList)
MESSAGE_HANDLER(WM_SIZE, OnSize)
CHAIN_MSG_MAP(CDialogResize<CDisAsmDlg>)
END_MSG_MAP()
// Handler prototypes (uncomment arguments if needed):
// LRESULT MessageHandler(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
// LRESULT CommandHandler(WORD /*wNotifyCode*/, WORD /*wID*/, HWND /*hWndCtl*/, BOOL& /*bHandled*/)
// LRESULT NotifyHandler(int /*idCtrl*/, LPNMHDR /*pnmh*/, BOOL& /*bHandled*/)
LRESULT OnInitDialog(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL & /*bHandled*/);
LRESULT OnDestroy(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL & /*bHandled*/);
LRESULT OnStep(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL & /*bHandled*/);
LRESULT OnGo(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL & /*bHandled*/);
LRESULT OnShowRegisters(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL & /*bHandled*/);
LRESULT OnCustomDraw(int /*idCtrl*/, LPNMHDR pnmh, BOOL& _bHandled);
LRESULT OnDblClick(int /*idCtrl*/, LPNMHDR pnmh, BOOL& /*bHandled*/);
LRESULT OnRClick(int /*idCtrl*/, LPNMHDR pnmh, BOOL& /*bHandled*/);
void CloseDialog(int nVal);
bool CanDoStep();
void DebugBreak();
private:
enum EColumns
{
ColumnBP = 0,
ColumnFunction = 1,
ColumnAddress = 2,
ColumnMenmomic = 3,
ColumnOpcode = 4,
ColumnExt = 5,
ColumnParameter = 6
};
enum EState
{
PAUSE,
STEP,
RUN,
RUN_START // ignores breakpoints and switches after one step to RUN
};
EState m_State;
CListViewCtrl m_DisAsmListViewCtrl;
CRegisterDlg m_RegisterDlg;
//CWindow GroupLeft
CStatic GroupLeft;
uint64 m_CachedStepCounter;
uint16 m_CachedCR;
uint32 m_CachedUCodeCRC;
typedef std::list<uint16>CBreakPointList;
CBreakPointList m_BreakPoints;
// break point handling
bool IsBreakPoint(uint16 _Address);
void ToggleBreakPoint(uint16 _Address);
void RemoveBreakPoint(uint16 _Address);
void AddBreakPoint(uint16 _Address);
void ClearBreakPoints();
// update dialog
void UpdateDisAsmListView();
void UpdateRegisterFlags();
void UpdateSymbolMap();
void UpdateButtonTexts();
void RedrawDisAsmListView();
void RebuildDisAsmListView();
struct SSymbol
{
uint32 AddressStart;
uint32 AddressEnd;
std::string Name;
SSymbol(uint32 _AddressStart = 0, uint32 _AddressEnd = 0, char* _Name = NULL)
: AddressStart(_AddressStart)
, AddressEnd(_AddressEnd)
, Name(_Name)
{}
};
typedef std::map<uint16, SSymbol>CSymbolMap;
CSymbolMap m_SymbolMap;
void AddSymbol(uint16 _AddressStart, uint16 _AddressEnd, char* _Name);
bool LoadSymbolMap(const char* _pFileName);
DWORD FindColor(uint16 _Address);
void UpdateDialog();
static int CALLBACK CompareFunc(LPARAM lParam1, LPARAM lParam2, LPARAM lParamSort);
public:
LRESULT OnLvnItemchangedDisasmList(int /*idCtrl*/, LPNMHDR pNMHDR, BOOL& /*bHandled*/);
LRESULT OnSize(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/);
};

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef _MYLISTVIEW_H
#define _MYLISTVIEW_H
class CDisAsmListView
: public CWindowImpl<CDisAsmListView, CListViewCtrl>,
public CCustomDraw<CDisAsmListView>
{
public:
BEGIN_MSG_MAP(CDisAsmListView)
CHAIN_MSG_MAP(CCustomDraw<CDisAsmListView>)
END_MSG_MAP()
DWORD OnPrePaint(int /*idCtrl*/, LPNMCUSTOMDRAW /*lpNMCustomDraw*/)
{
return(CDRF_NOTIFYITEMDRAW);
}
DWORD OnItemPrePaint(int /*idCtrl*/, LPNMCUSTOMDRAW lpNMCustomDraw)
{
NMLVCUSTOMDRAW* pLVCD = reinterpret_cast<NMLVCUSTOMDRAW*>(lpNMCustomDraw);
// This is the prepaint stage for an item. Here's where we set the
// item's text color. Our return value will tell Windows to draw the
// item itself, but it will use the new color we set here for the background
COLORREF crText;
if ((pLVCD->nmcd.dwItemSpec % 2) == 0)
{
crText = RGB(200, 200, 255);
}
else
{
crText = RGB(255, 255, 255);
}
// Store the color back in the NMLVCUSTOMDRAW struct.
pLVCD->clrTextBk = crText;
// Tell Windows to paint the control itself.
return(CDRF_DODEFAULT);
}
};
#endif _MYLISTVIEW_H

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include <iostream> // I hope this doesn't break anything
#include <stdio.h>
#include <stdarg.h>
#include "Common.h" // for Common::swap
#include "Globals.h"
#include "gdsp_interpreter.h"
// =======================================================================================
// For PB address detection
// --------------
u32 RAM_MASK = 0x1FFFFFF;
u16 Memory_Read_U16(u32 _uAddress)
{
_uAddress &= RAM_MASK;
return Common::swap16(*(u16*)&g_dsp.cpu_ram[_uAddress]);
}
u32 Memory_Read_U32(u32 _uAddress)
{
_uAddress &= RAM_MASK;
return Common::swap32(*(u32*)&g_dsp.cpu_ram[_uAddress]);
}
#if PROFILE
#define PROFILE_MAP_SIZE 0x10000
u64 g_profileMap[PROFILE_MAP_SIZE];
bool g_profile = false;
void ProfilerStart()
{
g_profile = true;
}
void ProfilerAddDelta(int _addr, int _delta)
{
if (g_profile)
{
g_profileMap[_addr] += _delta;
}
}
void ProfilerInit()
{
memset(g_profileMap, 0, sizeof(g_profileMap));
}
void ProfilerDump(uint64 count)
{
FILE* pFile = fopen("c:\\_\\DSP_Prof.txt", "wt");
if (pFile != NULL)
{
fprintf(pFile, "Number of DSP steps: %llu\n\n", count);
for (int i=0; i<PROFILE_MAP_SIZE;i++)
{
if (g_profileMap[i] > 0)
{
fprintf(pFile, "0x%04X: %llu\n", i, g_profileMap[i]);
}
}
fclose(pFile);
}
}
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef _GLOBALS_H
#define _GLOBALS_H
#include "pluginspecs_dsp.h"
#include "Common.h"
#include <stdio.h>
#define WITH_DSP_ON_THREAD 1
#define DUMP_DSP_IMEM 0
#define PROFILE 1
extern DSPInitialize g_dspInitialize;
void DSP_DebugBreak();
typedef unsigned char uint8;
typedef unsigned short uint16;
typedef unsigned int uint32;
typedef unsigned long long uint64;
typedef unsigned int uint;
typedef signed char sint8;
typedef signed short sint16;
typedef signed int sint32;
typedef signed long long sint64;
typedef const uint32 cuint32;
u16 Memory_Read_U16(u32 _uAddress); // For PB address detection
u32 Memory_Read_U32(u32 _uAddress);
#if PROFILE
void ProfilerDump(uint64 _count);
void ProfilerInit();
void ProfilerAddDelta(int _addr, int _delta);
void ProfilerStart();
#endif
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifdef _WIN32
#include "stdafx.h"
#endif
#include "Globals.h"
#include "gdsp_interpreter.h"
#include "gdsp_memory.h"
#include "gdsp_opcodes_helper.h"
bool WriteDMEM(uint16 addr, uint16 val)
{
return dsp_dmem_write(addr, val);
}
uint16 ReadDMEM(uint16 addr)
{
return dsp_dmem_read(addr);
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef HLE_HELPER_H
#define HLE_HELPER_H
#include "gdsp_interpreter.h"
bool WriteDMEM(uint16 addr, uint16 val);
uint16 ReadDMEM(uint16 addr);
void Update_SR_Register(sint64 _Value);
sint8 GetMultiplyModifier();
template<unsigned N>
class TAccumulator
{
public:
TAccumulator()
{
_assert_(N < 2);
}
void operator=(sint64 val)
{
setValue(val);
}
void operator<<=(sint64 value)
{
sint64 acc = getValue();
acc <<= value;
setValue(acc);
}
void operator>>=(sint64 value)
{
sint64 acc = getValue();
acc >>= value;
setValue(acc);
}
void operator+=(sint64 value)
{
sint64 acc = getValue();
acc += value;
setValue(acc);
}
operator sint64()
{
return getValue();
}
operator uint64()
{
return getValue();
}
inline void setValue(sint64 val)
{
g_dsp.r[0x1c + N] = (uint16)val;
val >>= 16;
g_dsp.r[0x1e + N] = (uint16)val;
val >>= 16;
g_dsp.r[0x10 + N] = (uint16)val;
}
inline sint64 getValue()
{
sint64 val;
sint64 low_acc;
val = (sint8)g_dsp.r[0x10 + N];
val <<= 32;
low_acc = g_dsp.r[0x1e + N];
low_acc <<= 16;
low_acc |= g_dsp.r[0x1c + N];
val |= low_acc;
return(val);
}
};
class CProd
{
public:
CProd()
{
}
void operator=(sint64 val)
{
g_dsp.r[0x14] = (uint16)val;
val >>= 16;
g_dsp.r[0x15] = (uint16)val;
val >>= 16;
g_dsp.r[0x16] = (uint16)val;
g_dsp.r[0x17] = 0;
}
operator sint64()
{
sint64 val;
sint64 low_prod;
val = (sint8)g_dsp.r[0x16];
val <<= 32;
low_prod = g_dsp.r[0x15];
low_prod += g_dsp.r[0x17];
low_prod <<= 16;
low_prod |= g_dsp.r[0x14];
val += low_prod;
return(val);
}
};
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "../Globals.h"
#include "Common.h"
extern u32 m_addressPBs;
// =======================================================================================
// Get the parameter block location - Example SSBM: We get the addr 8049cf00, first we
// always get 0 and go to AXLIST_STUDIOADDR, then we end up at AXLIST_PBADDR.
// --------------
bool AXTask(u32& _uMail)
{
u32 uAddress = _uMail;
DEBUG_LOG(DSPHLE, "AXTask - ================================================================");
DEBUG_LOG(DSPHLE, "AXTask - AXCommandList-Addr: 0x%08x", uAddress);
bool bExecuteList = true;
while (bExecuteList)
{
// ---------------------------------------------------------------------------------------
// SSBM: We get the addr 8049cf00, first we always get 0
u16 iCommand = Memory_Read_U16(uAddress);
uAddress += 2;
// ---------------------------------------------------------------------------------------
switch (iCommand)
{
// ---------------------------------------------------------------------------------------
// ?
case 0: // AXLIST_STUDIOADDR: //00
{
uAddress += 4;
DEBUG_LOG(DSPHLE, "AXLIST AXLIST_SBUFFER: %08x", uAddress);
}
break;
// ---------------------------------------------------------------------------------------
// ---------------------------------------------------------------------------------------
case 2: // AXLIST_PBADDR: // 02
{
m_addressPBs = Memory_Read_U32(uAddress);
uAddress += 4;
DEBUG_LOG(DSPHLE, "AXLIST PB address: %08x", m_addressPBs);
bExecuteList = false;
}
break;
// ---------------------------------------------------------------------------------------
case 7: // AXLIST_SBUFFER: // 7
{
// Hopefully this is where in main ram to write.
uAddress += 4;
DEBUG_LOG(DSPHLE, "AXLIST AXLIST_SBUFFER: %08x", uAddress);
}
break;
default:
{
// ---------------------------------------------------------------------------------------
// Stop the execution of this TaskList
DEBUG_LOG(DSPHLE, "AXLIST default: %08x", uAddress);
bExecuteList = false;
// ---------------------------------------------------------------------------------------
}
break;
} // end of switch
}
DEBUG_LOG(DSPHLE, "AXTask - done, send resume");
DEBUG_LOG(DSPHLE, "AXTask - ================================================================");
// now resume
return true;
}
// =======================================================================================

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifdef _WIN32
// =======================================================================================
// Includes
// --------------
#include <iostream>
#include <vector>
#include <string> // So that we can test if std::string == abc
#include <windows.h>
#include "Common.h"
#include "UCode_AXStructs.h" // they are only in a virtual dir called UCodes AX
// =====================
// =======================================================================================
// Declarations and definitions
// --------------
// ----------------------------------
// Settings
// --------------
#define NUMBER_OF_PBS 64 // Todo: move this to a logging class
// -----------------------------------
// Externals
// --------------
extern u32 m_addressPBs;
float ratioFactor;
int globaliSize;
short globalpBuffer;
u32 gLastBlock;
// --------------
// -----------------------------------
// Vectors and other things
// --------------
std::vector<u32> gloopPos(64);
std::vector<u32> gsampleEnd(64);
std::vector<u32> gsamplePos(64);
std::vector<u32> gratio(64);
std::vector<u32> gratiohi(64);
std::vector<u32> gratiolo(64);
std::vector<u32> gfrac(64);
std::vector<u32> gcoef(64);
// PBSampleRateConverter mixer
std::vector<u16> gvolume_left(64);
std::vector<u16> gvolume_right(64);
std::vector<u16> gmixer_control(64);
std::vector<u16> gcur_volume(64);
std::vector<u16> gcur_volume_delta(64);
std::vector<u16> gaudioFormat(64);
std::vector<u16> glooping(64);
std::vector<u16> gsrc_type(64);
std::vector<u16> gis_stream(64);
// loop
std::vector<u16> gloop1(64);
std::vector<u16> gloop2(64);
std::vector<u16> gloop3(64);
std::vector<u16> gadloop1(64);
std::vector<u16> gadloop2(64);
std::vector<u16> gadloop3(64);
// updates
std::vector<u16> gupdates1(64);
std::vector<u16> gupdates2(64);
std::vector<u16> gupdates3(64);
std::vector<u16> gupdates4(64);
std::vector<u16> gupdates5(64);
std::vector<u32> gupdates_addr(64);
// Other things
std::vector<u16> Jump(64); // this is 1 or 0
std::vector<int> musicLength(64);
std::vector< std::vector<int> > vector1(64, std::vector<int>(100,0));
std::vector<int> numberRunning(64);
int j = 0;
int k = 0;
__int64 l = 0;
int iupd = 0;
bool iupdonce = false;
std::vector<u16> viupd(15); // the length of the update frequency bar
int vectorLength = 15; // the length of the playback history bar and how long
// old blocks are shown
std::vector<u16> vector62(vectorLength);
std::vector<u16> vector63(vectorLength);
int ReadOutPBs(AXParamBlock * _pPBs, int _num);
// =====================
// =======================================================================================
// Main logging function
// --------------
void Logging()
{
// ---------------------------------------------------------------------------------------
// ---------------------------------------------------------------------------------------
// Control how often the screen is updated
j++;
l++;
if (j>1000000) // TODO: make the update frequency adjustable from the logging window
{
AXParamBlock PBs[NUMBER_OF_PBS];
int numberOfPBs = ReadOutPBs(PBs, NUMBER_OF_PBS);
// =======================================================================================
// Vector1 is a vector1[64][100] vector
/*
Move all items back like this
1 to 2
2 3
3 ...
*/
// ----------------
for (int i = 0; i < 64; i++)
{
for (int j = 1; j < vectorLength; j++)
{
vector1.at(i).at(j-1) = vector1.at(i).at(j);
}
}
// =================
// ---------------------------------------------------------------------------------------
// Enter the latest value
for (int i = 0; i < numberOfPBs; i++)
{
vector1.at(i).at(vectorLength-1) = PBs[i].running;
}
// -----------------
// ---------------------------------------------------------------------------------------
// Count how many blocks we have running now
int jj = 0;
for (int i = 0; i < 64; i++)
{
for (int j = 0; j < vectorLength-1; j++)
{
if (vector1.at(i).at(j) == 1)
{
jj++;
}
numberRunning.at(i) = jj;
}
}
// --------------
// ---------------------------------------------------------------------------------------
// Write the first row
char buffer [1000] = "";
std::string sbuff;
//sbuff = sbuff + " Nr | | frac ratio | old new \n"; // 5
sbuff = sbuff + " Nr pos / end lpos | voll volr curv vold mix | isl[pre yn1 yn2] iss | frac ratio[hi lo] | 1 2 3 4 5\n";
// --------------
// ---------------------------------------------------------------------------------------
// Read out values for all blocks
for (int i = 0; i < numberOfPBs; i++)
{
if (numberRunning.at(i) > 0)
{
// =======================================================================================
// Write the playback bar
// -------------
for (int j = 0; j < vectorLength; j++)
{
if(vector1.at(i).at(j) == 0)
{
sbuff = sbuff + " ";
}
else
{
sprintf(buffer, "%c", 177);
sbuff = sbuff + buffer; strcpy(buffer, "");
}
}
// ==============
// ================================================================================================
int sampleJump;
int loopJump;
//if (PBs[i].running && PBs[i].adpcm_loop_info.yn1 && PBs[i].mixer.volume_left)
if (true)
{
// ---------------------------------------------------------------------------------------
// AXPB base
//int running = pb.running;
gcoef[i] = PBs[i].unknown1;
sampleJump = ((PBs[i].audio_addr.cur_addr_hi << 16) | PBs[i].audio_addr.cur_addr_lo) - gsamplePos[i];
loopJump = ((PBs[i].audio_addr.loop_addr_hi << 16) | PBs[i].audio_addr.loop_addr_lo) - gloopPos[i];
gloopPos[i] = (PBs[i].audio_addr.loop_addr_hi << 16) | PBs[i].audio_addr.loop_addr_lo;
gsampleEnd[i] = (PBs[i].audio_addr.end_addr_hi << 16) | PBs[i].audio_addr.end_addr_lo;
gsamplePos[i] = (PBs[i].audio_addr.cur_addr_hi << 16) | PBs[i].audio_addr.cur_addr_lo;
// PBSampleRateConverter src
gratio[i] = (u32)(((PBs[i].src.ratio_hi << 16) + PBs[i].src.ratio_lo) * ratioFactor);
gratiohi[i] = PBs[i].src.ratio_hi;
gratiolo[i] = PBs[i].src.ratio_lo;
gfrac[i] = PBs[i].src.cur_addr_frac;
// adpcm_loop_info
gadloop1[i] = PBs[i].adpcm.pred_scale;
gadloop2[i] = PBs[i].adpcm.yn1;
gadloop3[i] = PBs[i].adpcm.yn2;
gloop1[i] = PBs[i].adpcm_loop_info.pred_scale;
gloop2[i] = PBs[i].adpcm_loop_info.yn1;
gloop3[i] = PBs[i].adpcm_loop_info.yn2;
// updates
gupdates1[i] = PBs[i].updates.num_updates[0];
gupdates2[i] = PBs[i].updates.num_updates[1];
gupdates3[i] = PBs[i].updates.num_updates[2];
gupdates4[i] = PBs[i].updates.num_updates[3];
gupdates5[i] = PBs[i].updates.num_updates[4];
gupdates_addr[i] = (PBs[i].updates.data_hi << 16) | PBs[i].updates.data_lo;
gaudioFormat[i] = PBs[i].audio_addr.sample_format;
glooping[i] = PBs[i].audio_addr.looping;
gsrc_type[i] = PBs[i].src_type;
gis_stream[i] = PBs[i].is_stream;
// mixer
gvolume_left[i] = PBs[i].mixer.volume_left;
gvolume_right[i] = PBs[i].mixer.volume_right;
gmixer_control[i] = PBs[i].mixer_control;
gcur_volume[i] = PBs[i].vol_env.cur_volume;
gcur_volume_delta[i] = PBs[i].vol_env.cur_volume_delta;
// other stuff
Jump[i] = (gfrac[i] >> 16); // This is 1 or 0
musicLength[i] = gsampleEnd[i] - gloopPos[i];
}
// ================================================================================================
// =======================================================================================
// PRESETS
// ---------------------------------------------------------------------------------------
/*
/" Nr pos / end lpos | voll volr curv vold mix | isl[pre yn1 yn2] iss | frac ratio[hi lo] | 1 2 3 4 5\n";
"---------------|00 12341234/12341234 12341234 | 00000 00000 00000 0000 00000 | 0[000 00000 00000] 0 | 00000 00000[0 00000] |
*/
sprintf(buffer,"%c%i %08i/%08i %08i | %05i %05i %05i %04i %05i | %i[%03i %05i %05i] %i | %05i %05i[%i %05i] | %i %i %i %i %i",
223, i, gsamplePos[i], gsampleEnd[i], gloopPos[i],
gvolume_left[i], gvolume_right[i], gcur_volume[i], gcur_volume_delta[i], gmixer_control[i],
glooping[i], gloop1[i], gloop2[i], gloop3[i], gis_stream[i],
gfrac[i], gratio[i], gratiohi[i], gratiolo[i],
gupdates1[i], gupdates2[i], gupdates3[i], gupdates4[i], gupdates5[i]
);
// =======================================================================================
// write a new line
sbuff = sbuff + buffer; strcpy(buffer, "");
sbuff = sbuff + "\n";
} // end of if (true)
} // end of big loop - for (int i = 0; i < numberOfPBs; i++)
// =======================================================================================
// Write global values
sprintf(buffer, "\nParameter blocks span from %08x | to %08x | distance %i %i\n", m_addressPBs, gLastBlock, (gLastBlock-m_addressPBs), (gLastBlock-m_addressPBs) / 192);
sbuff = sbuff + buffer; strcpy(buffer, "");
// ==============
// =======================================================================================
// Show update frequency
// ---------------
sbuff = sbuff + "\n";
if(!iupdonce)
{
/*
for (int i = 0; i < 10; i++)
{
viupd.at(i) == 0;
}
*/
viupd.at(0) = 1;
viupd.at(1) = 1;
viupd.at(2) = 1;
iupdonce = true;
}
for (int i = 0; i < (int)viupd.size(); i++) // 0, 1,..., 9
{
if (i < (int)viupd.size()-1)
{
viupd.at(viupd.size()-i-1) = viupd.at(viupd.size()-i-2); // move all forward
}
else
{
viupd.at(0) = viupd.at(viupd.size()-1);
}
// Correction
if (viupd.at(viupd.size()-3) == 1 && viupd.at(viupd.size()-2) == 1 && viupd.at(viupd.size()-1) == 1)
{
viupd.at(0) = 0;
}
if(viupd.at(0) == 0 && viupd.at(1) == 1 && viupd.at(2) == 1 && viupd.at(3) == 0)
{
viupd.at(0) = 1;
}
}
for (int i = 0; i < (int)viupd.size(); i++)
{
if(viupd.at(i) == 0)
sbuff = sbuff + " ";
else
sbuff = sbuff + ".";
}
// ================
// =======================================================================================
// Print
// ---------------
// Console::ClearScreen();
INFO_LOG(DSPHLE, "%s", sbuff.c_str());
sbuff.clear(); strcpy(buffer, "");
// ---------------
k=0;
j=0;
// ---------------
}
// ---------------------------------------------------------------------------------------
}
// =======================================================================================
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifdef _WIN32
void Logging();
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
// Turn on and off logging modes
// --------------
//#define LOG1 // writes selected parameters only and with more readable formatting
//#define LOG2 // writes all parameters
#include "Common.h"
#include "../Globals.h"
#include "CommonTypes.h" // Pluginspecs
#include "UCode_AXStructs.h" // For the AXParamBlock structure
u32 m_addressPBs = 0;
extern u32 gLastBlock;
#ifdef _WIN32
int m = 0;
int n = 0;
#ifdef LOG2
bool logall = true;
#else
bool logall = false;
#endif
int ReadOutPBs(AXParamBlock * _pPBs, int _num)
{
int count = 0;
u32 blockAddr = m_addressPBs;
u32 OldblockAddr = blockAddr;
u32 paraAddr = blockAddr;
// reading and 'halfword' swap
n++;
//FIXME if (n > 20 && logall) {Console::ClearScreen();}
for (int i = 0; i < _num; i++)
{
// ---------------------------------------------------------------------------------------
// Check if there is something here.
const short * pSrc = (const short *)g_dspInitialize.pGetMemoryPointer(blockAddr);
// -------------
if (pSrc != NULL) // only read non-blank blocks
{
// ---------------------------------------------------------------------------------------
// Create a shortcut that let us update struct members
short * pDest = (short *) & _pPBs[i];
if (n > 20 && logall) {DEBUG_LOG(DSPHLE, "%c%i:", 223, i);} // logging
// --------------
// Here we update the PB. We do it by going through all 192 / 2 = 96 u16 values
for (size_t p = 0; p < sizeof(AXParamBlock) / 2; p++)
{
paraAddr += 2;
if(pSrc != NULL)
{
if (pSrc[p] != 0 && n > 20 && logall)
{
DEBUG_LOG(DSPHLE, "%i %04x | ", p, Common::swap16(pSrc[p]));
}
}
pDest[p] = Common::swap16(pSrc[p]);
}
if(n > 20 && logall) {DEBUG_LOG(DSPHLE, "\n");} // logging
// --------------
// Here we update the block address to the starting point of the next PB
blockAddr = (_pPBs[i].next_pb_hi << 16) | _pPBs[i].next_pb_lo;
// --------------
// save some values
count++;
gLastBlock = paraAddr; // blockAddr
// ============
}
else
{
break;
}
} // end of the big loop
if (n > 20) {n = 0;} // for logging
// return the number of readed PBs
return count;
}
// =======================================================================================
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifdef _WIN32
#ifndef UCODE_AX_STRUCTS
#define UCODE_AX_STRUCTS
struct PBMixer
{
u16 volume_left;
u16 unknown;
u16 volume_right;
u16 unknown2;
u16 unknown3[8];
u16 unknown4[6];
};
struct PBInitialTimeDelay
{
u16 unknown[7];
};
// Update data - read these each 1ms subframe and use them!
// It seems that to provide higher time precisions for MIDI events, some games
// use this thing to update the parameter blocks per 1ms sub-block (a block is 5ms).
// Using this data should fix games that are missing MIDI notes.
struct PBUpdates
{
u16 num_updates[5];
u16 data_hi; // These point to main RAM. Not sure about the structure of the data.
u16 data_lo;
};
struct PBUnknown
{
s16 unknown[9];
};
struct PBVolumeEnvelope
{
u16 cur_volume;
s16 cur_volume_delta;
};
struct PBUnknown2
{
u16 unknown_reserved[3];
};
struct PBAudioAddr
{
u16 looping;
u16 sample_format;
u16 loop_addr_hi; // Start of loop (this will point to a shared "zero" buffer if one-shot mode is active)
u16 loop_addr_lo;
u16 end_addr_hi; // End of sample (and loop), inclusive
u16 end_addr_lo;
u16 cur_addr_hi;
u16 cur_addr_lo;
};
struct PBADPCMInfo
{
s16 coefs[16];
u16 unknown;
u16 pred_scale;
s16 yn1;
s16 yn2;
};
struct PBSampleRateConverter
{
u16 ratio_hi;
u16 ratio_lo;
u16 cur_addr_frac;
u16 last_samples[4];
};
struct PBADPCMLoopInfo
{
u16 pred_scale;
u16 yn1;
u16 yn2;
};
struct AXParamBlock
{
u16 next_pb_hi;
u16 next_pb_lo;
u16 this_pb_hi;
u16 this_pb_lo;
u16 src_type; // Type of sample rate converter (2 = none, ?, linear)
u16 unknown1;
u16 mixer_control;
u16 running; // 1=RUN 0=STOP
u16 is_stream; // 1 = stream, 0 = one shot
PBMixer mixer;
PBInitialTimeDelay initial_time_delay;
PBUpdates updates;
PBUnknown unknown2;
PBVolumeEnvelope vol_env;
PBUnknown2 unknown3;
PBAudioAddr audio_addr;
PBADPCMInfo adpcm;
PBSampleRateConverter src;
PBADPCMLoopInfo adpcm_loop_info;
u16 unknown_maybe_padding[3];
};
enum {
AUDIOFORMAT_ADPCM = 0,
AUDIOFORMAT_PCM8 = 0x19,
AUDIOFORMAT_PCM16 = 0xA,
};
enum {
SRCTYPE_LINEAR = 1,
SRCTYPE_NEAREST = 2,
MIXCONTROL_RAMPING = 8,
};
#endif
#endif // win32

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
// This queue solution is temporary. I'll implement something more efficient later.
#include <queue>
#include "Thread.h"
#include "Mixer.h"
#include "FixedSizeQueue.h"
#ifdef _WIN32
#include "DSoundStream.h"
#else
#include <unistd.h>
#endif
namespace {
Common::CriticalSection push_sync;
// On real hardware, this fifo is much, much smaller. But timing is also tighter than under Windows, so...
const int queue_minlength = 1024 * 4;
const int queue_maxlength = 1024 * 28;
FixedSizeQueue<s16, queue_maxlength> sample_queue;
} // namespace
volatile bool mixer_HLEready = false;
volatile int queue_size = 0;
void Mixer(short *buffer, int numSamples, int bits, int rate, int channels)
{
// silence
memset(buffer, 0, numSamples * 2 * sizeof(short));
push_sync.Enter();
int count = 0;
while (queue_size > queue_minlength && count < numSamples * 2) {
int x = buffer[count];
x += sample_queue.front();
if (x > 32767) x = 32767;
if (x < -32767) x = -32767;
buffer[count++] = x;
sample_queue.pop();
x = buffer[count];
x += sample_queue.front();
if (x > 32767) x = 32767;
if (x < -32767) x = -32767;
buffer[count++] = x;
sample_queue.pop();
queue_size-=2;
}
push_sync.Leave();
}
void Mixer_PushSamples(short *buffer, int num_stereo_samples, int sample_rate) {
// static FILE *f;
// if (!f)
// f = fopen("d:\\hello.raw", "wb");
// fwrite(buffer, num_stereo_samples * 4, 1, f);
if (queue_size == 0)
{
queue_size = queue_minlength;
for (int i = 0; i < queue_minlength; i++)
sample_queue.push((s16)0);
}
static int PV1l=0,PV2l=0,PV3l=0,PV4l=0;
static int PV1r=0,PV2r=0,PV3r=0,PV4r=0;
static int acc=0;
#ifdef _WIN32
if (!GetAsyncKeyState(VK_TAB)) {
while (queue_size > queue_maxlength / 2) {
DSound::DSound_UpdateSound();
Sleep(0);
}
} else {
return;
}
#else
while (queue_size > queue_maxlength) {
sleep(0);
}
#endif
//convert into config option?
const int mode = 2;
push_sync.Enter();
while (num_stereo_samples)
{
acc += sample_rate;
while (num_stereo_samples && (acc >= 48000))
{
PV4l=PV3l;
PV3l=PV2l;
PV2l=PV1l;
PV1l=*(buffer++); //32bit processing
PV4r=PV3r;
PV3r=PV2r;
PV2r=PV1r;
PV1r=*(buffer++); //32bit processing
num_stereo_samples--;
acc-=48000;
}
// defaults to nearest
s32 DataL = PV1l;
s32 DataR = PV1r;
if (mode == 1) //linear
{
DataL = PV1l + ((PV2l - PV1l)*acc)/48000;
DataR = PV1r + ((PV2r - PV1r)*acc)/48000;
}
else if (mode == 2) //cubic
{
s32 a0l = PV1l - PV2l - PV4l + PV3l;
s32 a0r = PV1r - PV2r - PV4r + PV3r;
s32 a1l = PV4l - PV3l - a0l;
s32 a1r = PV4r - PV3r - a0r;
s32 a2l = PV1l - PV4l;
s32 a2r = PV1r - PV4r;
s32 a3l = PV2l;
s32 a3r = PV2r;
s32 t0l = ((a0l )*acc)/48000;
s32 t0r = ((a0r )*acc)/48000;
s32 t1l = ((t0l+a1l)*acc)/48000;
s32 t1r = ((t0r+a1r)*acc)/48000;
s32 t2l = ((t1l+a2l)*acc)/48000;
s32 t2r = ((t1r+a2r)*acc)/48000;
s32 t3l = ((t2l+a3l));
s32 t3r = ((t2r+a3r));
DataL = t3l;
DataR = t3r;
}
int l = DataL, r = DataR;
if (l < -32767) l = -32767;
if (r < -32767) r = -32767;
if (l > 32767) l = 32767;
if (r > 32767) r = 32767;
sample_queue.push(l);
sample_queue.push(r);
}
push_sync.Leave();
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef _MIXER_H
#define _MIXER_H
extern volatile bool mixer_HLEready;
// Called from audio threads
void Mixer(short* buffer, int numSamples, int bits, int rate, int channels);
// Called from main thread
void Mixer_PushSamples(short *buffer, int num_stereo_samples, int sample_rate);
#endif

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// RegSettings.cpp
//
// Copyright (c) 2001 Magomed Abdurakhmanov
// maq@hotbox.ru, http://mickels.iwt.ru/en
//
//
//
// No warranties are given. Use at your own risk.
//
//////////////////////////////////////////////////////////////////////
#include "stdafx.h"
#include "RegSettings.h"
//////////////////////////////////////////////////////////////////////
// CWindowSettings
#define S_WINDOW_PLACEMENT_VAL _T("WindowPlacement")
CWindowSettings::CWindowSettings()
{
m_WindowPlacement.length = sizeof(m_WindowPlacement);
m_WindowPlacement.flags = 0;
m_WindowPlacement.ptMinPosition.x = 0;
m_WindowPlacement.ptMinPosition.y = 0;
m_WindowPlacement.ptMaxPosition.x = 0;
m_WindowPlacement.ptMaxPosition.y = 0;
CRect rc;
SystemParametersInfo(SPI_GETWORKAREA, 0, rc, 0);
rc.DeflateRect(100, 100);
m_WindowPlacement.rcNormalPosition = rc;
m_WindowPlacement.showCmd = SW_SHOWNORMAL;
}
bool CWindowSettings::Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/)
{
CRegKey reg;
DWORD err = reg.Open(hkRootKey, szRegKey, KEY_READ);
if (err == ERROR_SUCCESS)
{
DWORD dwType = NULL;
DWORD dwSize = sizeof(m_WindowPlacement);
err = RegQueryValueEx(reg.m_hKey, CString(szPrefix) + S_WINDOW_PLACEMENT_VAL, NULL, &dwType,
(LPBYTE)&m_WindowPlacement, &dwSize);
}
return(err == ERROR_SUCCESS);
}
bool CWindowSettings::Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/) const
{
CRegKey reg;
DWORD err = reg.Create(hkRootKey, szRegKey);
if (err == ERROR_SUCCESS)
{
err = RegSetValueEx(reg.m_hKey, CString(szPrefix) + S_WINDOW_PLACEMENT_VAL, NULL, REG_BINARY,
(LPBYTE)&m_WindowPlacement, sizeof(m_WindowPlacement));
}
return(err == ERROR_SUCCESS);
}
void CWindowSettings::GetFrom(CWindow& Wnd)
{
ATLASSERT(Wnd.IsWindow());
Wnd.GetWindowPlacement(&m_WindowPlacement);
}
void CWindowSettings::ApplyTo(CWindow& Wnd, int nCmdShow /* = SW_SHOWNORMAL*/) const
{
ATLASSERT(Wnd.IsWindow());
Wnd.SetWindowPlacement(&m_WindowPlacement);
if (SW_SHOWNORMAL != nCmdShow)
{
Wnd.ShowWindow(nCmdShow);
}
else
if (m_WindowPlacement.showCmd == SW_MINIMIZE || m_WindowPlacement.showCmd == SW_SHOWMINIMIZED)
{
Wnd.ShowWindow(SW_SHOWNORMAL);
}
}
//////////////////////////////////////////////////////////////////////
// CReBarSettings
#define S_BAR_BANDCOUNT _T("BandCount")
#define S_BAR_ID_VAL _T("ID")
#define S_BAR_CX_VAL _T("CX")
#define S_BAR_BREAKLINE_VAL _T("BreakLine")
CReBarSettings::CReBarSettings()
{
m_pBands = NULL;
m_cbBandCount = 0;
}
CReBarSettings::~CReBarSettings()
{
if (m_pBands != NULL)
{
delete[] m_pBands;
m_pBands = NULL;
}
}
bool CReBarSettings::Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/)
{
if (m_pBands != NULL)
{
delete[] m_pBands;
m_pBands = NULL;
}
m_pBands = NULL;
m_cbBandCount = 0;
CRegKey reg;
DWORD err = reg.Open(hkRootKey, szRegKey, KEY_READ);
if (err == ERROR_SUCCESS)
{
reg.QueryDWORDValue(CString(szPrefix) + S_BAR_BANDCOUNT, m_cbBandCount);
if (m_cbBandCount > 0)
{
m_pBands = new BandInfo[m_cbBandCount];
}
for (DWORD i = 0; i < m_cbBandCount; i++)
{
CString s;
s.Format(_T("%s%i_"), szPrefix, i);
reg.QueryDWORDValue(s + S_BAR_ID_VAL, m_pBands[i].ID);
reg.QueryDWORDValue(s + S_BAR_CX_VAL, m_pBands[i].cx);
DWORD dw;
reg.QueryDWORDValue(s + S_BAR_BREAKLINE_VAL, dw);
m_pBands[i].BreakLine = dw != 0;
}
}
return(err == ERROR_SUCCESS);
}
bool CReBarSettings::Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/) const
{
CRegKey reg;
DWORD err = reg.Create(hkRootKey, szRegKey);
if (err == ERROR_SUCCESS)
{
reg.SetDWORDValue(CString(szPrefix) + S_BAR_BANDCOUNT, m_cbBandCount);
for (DWORD i = 0; i < m_cbBandCount; i++)
{
CString s;
s.Format(_T("%s%i_"), szPrefix, i);
reg.SetDWORDValue(s + S_BAR_ID_VAL, m_pBands[i].ID);
reg.SetDWORDValue(s + S_BAR_CX_VAL, m_pBands[i].cx);
DWORD dw = m_pBands[i].BreakLine;
reg.SetDWORDValue(s + S_BAR_BREAKLINE_VAL, dw);
}
}
return(err == ERROR_SUCCESS);
}
void CReBarSettings::GetFrom(CReBarCtrl& ReBar)
{
ATLASSERT(ReBar.IsWindow());
if (m_pBands != NULL)
{
delete[] m_pBands;
}
m_pBands = NULL;
m_cbBandCount = ReBar.GetBandCount();
if (m_cbBandCount > 0)
{
m_pBands = new BandInfo[m_cbBandCount];
}
for (UINT i = 0; i < m_cbBandCount; i++)
{
REBARBANDINFO rbi;
rbi.cbSize = sizeof(rbi);
rbi.fMask = RBBIM_ID | RBBIM_SIZE | RBBIM_STYLE;
ReBar.GetBandInfo(i, &rbi);
m_pBands[i].ID = rbi.wID;
m_pBands[i].cx = rbi.cx;
m_pBands[i].BreakLine = (rbi.fStyle & RBBS_BREAK) != 0;
}
}
void CReBarSettings::ApplyTo(CReBarCtrl& ReBar) const
{
ATLASSERT(ReBar.IsWindow());
for (UINT i = 0; i < m_cbBandCount; i++)
{
ReBar.MoveBand(ReBar.IdToIndex(m_pBands[i].ID), i);
REBARBANDINFO rbi;
rbi.cbSize = sizeof(rbi);
rbi.fMask = RBBIM_ID | RBBIM_SIZE | RBBIM_STYLE;
ReBar.GetBandInfo(i, &rbi);
rbi.cx = m_pBands[i].cx;
if (m_pBands[i].BreakLine)
{
rbi.fStyle |= RBBS_BREAK;
}
else
{
rbi.fStyle &= (~RBBS_BREAK);
}
ReBar.SetBandInfo(i, &rbi);
}
}
//////////////////////////////////////////////////////////////////////
// CSplitterSettings
#define S_SPLITTER_POS _T("SplitterPos")
bool CSplitterSettings::Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/)
{
CRegKey reg;
DWORD err = reg.Open(hkRootKey, szRegKey, KEY_READ);
if (err == ERROR_SUCCESS)
{
reg.QueryDWORDValue(CString(szPrefix) + S_SPLITTER_POS, m_dwPos);
}
return(err == ERROR_SUCCESS);
}
bool CSplitterSettings::Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey /* = HKEY_CURRENT_USER*/) const
{
CRegKey reg;
DWORD err = reg.Create(hkRootKey, szRegKey);
if (err == ERROR_SUCCESS)
{
reg.SetDWORDValue(CString(szPrefix) + S_SPLITTER_POS, m_dwPos);
}
return(err == ERROR_SUCCESS);
}

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// RegSettings.h
//
// Copyright (c) 2001 Magomed Abdurakhmanov
// maq@hotbox.ru, http://mickels.iwt.ru/en
//
//
//
// No warranties are given. Use at your own risk.
//
//////////////////////////////////////////////////////////////////////
#if !defined (AFX_REGSETTINGS_H__91E69C67_8104_4819_969A_B5E71A9993D5__INCLUDED_)
#define AFX_REGSETTINGS_H__91E69C67_8104_4819_969A_B5E71A9993D5__INCLUDED_
#if _MSC_VER > 1000
#pragma once
#endif // _MSC_VER > 1000
#include <AtlMisc.h>
#include <AtlCtrls.h>
class CWindowSettings
{
public:
WINDOWPLACEMENT m_WindowPlacement;
CWindowSettings();
void GetFrom(CWindow& Wnd);
void ApplyTo(CWindow& Wnd, int nCmdShow = SW_SHOWNORMAL) const;
bool Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER);
bool Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER) const;
};
class CReBarSettings
{
public:
struct BandInfo
{
DWORD ID;
DWORD cx;
bool BreakLine;
}* m_pBands;
DWORD m_cbBandCount;
CReBarSettings();
~CReBarSettings();
void GetFrom(CReBarCtrl& ReBar);
void ApplyTo(CReBarCtrl& ReBar) const;
bool Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER);
bool Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER) const;
};
class CSplitterSettings
{
public:
DWORD m_dwPos;
template<class T>void GetFrom(const T& Splitter)
{
m_dwPos = Splitter.GetSplitterPos();
}
template<class T>void ApplyTo(T& Splitter) const
{
Splitter.SetSplitterPos(m_dwPos);
}
bool Load(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER);
bool Save(LPCTSTR szRegKey, LPCTSTR szPrefix, HKEY hkRootKey = HKEY_CURRENT_USER) const;
};
#endif // !defined(AFX_REGSETTINGS_H__91E69C67_8104_4819_969A_B5E71A9993D5__INCLUDED_)

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "../res/resource.h"
#include "RegisterDlg.h"
#include "disassemble.h"
#include "gdsp_interpreter.h"
#include "RegSettings.h"
CRegisterDlg::CRegisterDlg()
: m_CachedCounter(-1)
{}
BOOL CRegisterDlg::PreTranslateMessage(MSG* pMsg)
{
return(IsDialogMessage(pMsg));
}
BOOL CRegisterDlg::OnIdle()
{
return(FALSE);
}
LRESULT CRegisterDlg::OnInitDialog(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
{
CWindowSettings ws;
if (ws.Load("Software\\Dolphin\\DSP", "Register"))
{
ws.ApplyTo(CWindow(m_hWnd), SW_SHOW);
}
m_RegisterListViewCtrl.m_hWnd = GetDlgItem(IDC_DISASM_LIST);
UIAddChildWindowContainer(m_hWnd);
m_RegisterListViewCtrl.AddColumn(_T("General"), 0);
m_RegisterListViewCtrl.AddColumn(_T(" "), 1);
m_RegisterListViewCtrl.AddColumn(_T("Special"), 2);
m_RegisterListViewCtrl.AddColumn(_T("0"), 3);
m_RegisterListViewCtrl.SetColumnWidth(0, 50);
m_RegisterListViewCtrl.SetColumnWidth(1, 100);
m_RegisterListViewCtrl.SetColumnWidth(2, 60);
m_RegisterListViewCtrl.SetColumnWidth(3, 100);
m_RegisterListViewCtrl.SetExtendedListViewStyle(LVS_EX_FULLROWSELECT | LVS_EX_GRIDLINES);
m_RegisterListViewCtrl.SetTextBkColor(GetSysColor(COLOR_3DLIGHT));
for (uint16 i = 0; i < 16; i++)
{
// 0-15
int Item = m_RegisterListViewCtrl.AddItem(0, 0, gd_dis_get_reg_name(i));
// 16-31
m_RegisterListViewCtrl.AddItem(Item, 2, gd_dis_get_reg_name(16 + i));
// just for easy sort
m_RegisterListViewCtrl.SetItemData(Item, i);
}
m_RegisterListViewCtrl.SortItems(CompareFunc, (LPARAM) this);
UpdateRegisterListView();
return(TRUE);
}
LRESULT CRegisterDlg::OnDestroy(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
{
CWindowSettings ws;
ws.GetFrom(CWindow(m_hWnd));
ws.Save("Software\\Dolphin\\DSP", "Register");
return(0);
}
void CRegisterDlg::UpdateRegisterListView()
{
if (m_CachedCounter == g_dsp.step_counter)
{
return;
}
m_CachedCounter = g_dsp.step_counter;
char Temp[256];
for (uint16 i = 0; i < 16; i++)
{
// 0-15
if (m_CachedRegs[i] != g_dsp.r[i])
{
m_CachedRegHasChanged[i] = true;
}
else
{
m_CachedRegHasChanged[i] = false;
}
m_CachedRegs[i] = g_dsp.r[i];
sprintf_s(Temp, 256, "0x%04x", g_dsp.r[i]);
m_RegisterListViewCtrl.SetItemText(i, 1, Temp);
// 16-31
if (m_CachedRegs[16 + i] != g_dsp.r[16 + i])
{
m_CachedRegHasChanged[16 + i] = true;
}
else
{
m_CachedRegHasChanged[16 + i] = false;
}
m_CachedRegs[16 + i] = g_dsp.r[16 + i];
sprintf_s(Temp, 256, "0x%04x", g_dsp.r[16 + i]);
m_RegisterListViewCtrl.SetItemText(i, 3, Temp);
}
}
int CALLBACK CRegisterDlg::CompareFunc(LPARAM lParam1, LPARAM lParam2, LPARAM lParamSort)
{
return(lParam1 > lParam2);
}
LRESULT CRegisterDlg::OnCustomDraw(int /*idCtrl*/, LPNMHDR pnmh, BOOL& _bHandled)
{
int result = CDRF_DODEFAULT;
NMLVCUSTOMDRAW* pLVCD = reinterpret_cast<NMLVCUSTOMDRAW*>(pnmh);
switch (pLVCD->nmcd.dwDrawStage)
{
case CDDS_PREPAINT:
result = CDRF_NOTIFYITEMDRAW;
break;
case CDDS_ITEMPREPAINT:
result = CDRF_NOTIFYSUBITEMDRAW;
break;
case (CDDS_ITEMPREPAINT | CDDS_SUBITEM):
{
pLVCD->nmcd.uItemState &= ~(CDIS_SELECTED | CDIS_FOCUS);
int Offset = static_cast<int>(m_RegisterListViewCtrl.GetItemData((int)pLVCD->nmcd.dwItemSpec));
size_t Register = -1;
if (pLVCD->iSubItem == 1)
{
Register = Offset;
}
else if (pLVCD->iSubItem == 3)
{
Register = Offset + 16;
}
if (Register != -1)
{
if (m_CachedRegHasChanged[Register])
{
pLVCD->clrTextBk = RGB(0xFF, 192, 192);
}
else
{
pLVCD->clrTextBk = RGB(0xF0, 0xF0, 0xF0);
}
}
else
{
pLVCD->clrTextBk = RGB(192, 224, 192);
}
// uint16 CurrentAddress = static_cast<uint16>(m_DisAsmListViewCtrl.GetItemData((int)pLVCD->nmcd.dwItemSpec));
}
break;
}
return(result);
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#pragma once
#include "Globals.h"
#include <map>
#include "DisAsmListView.h"
class CRegisterDlg
: public CDialogImpl<CRegisterDlg>, public CUpdateUI<CRegisterDlg>
{
public:
CRegisterDlg();
enum { IDD = IDD_REGISTERDLG };
virtual BOOL PreTranslateMessage(MSG* pMsg);
virtual BOOL OnIdle();
BEGIN_UPDATE_UI_MAP(CRegisterDlg)
END_UPDATE_UI_MAP()
BEGIN_MSG_MAP(CRegisterDlg)
MESSAGE_HANDLER(WM_INITDIALOG, OnInitDialog)
MESSAGE_HANDLER(WM_DESTROY, OnDestroy)
NOTIFY_CODE_HANDLER(NM_CUSTOMDRAW, OnCustomDraw)
// COMMAND_ID_HANDLER(ID_STEP, OnStep)
// COMMAND_ID_HANDLER(ID_GO, OnGo)
// COMMAND_ID_HANDLER(ID_SHOW_REGISTER, OnShowRegisters)
END_MSG_MAP()
// Handler prototypes (uncomment arguments if needed):
// LRESULT MessageHandler(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL& /*bHandled*/)
// LRESULT CommandHandler(WORD /*wNotifyCode*/, WORD /*wID*/, HWND /*hWndCtl*/, BOOL& /*bHandled*/)
// LRESULT NotifyHandler(int /*idCtrl*/, LPNMHDR /*pnmh*/, BOOL& /*bHandled*/)
LRESULT OnInitDialog(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL & /*bHandled*/);
LRESULT OnDestroy(UINT /*uMsg*/, WPARAM /*wParam*/, LPARAM /*lParam*/, BOOL & /*bHandled*/);
LRESULT OnCustomDraw(int /*idCtrl*/, LPNMHDR pnmh, BOOL& _bHandled);
// LRESULT OnStep(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/);
// LRESULT OnGo(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/);
// LRESULT OnShowRegisters(WORD /*wNotifyCode*/, WORD wID, HWND /*hWndCtl*/, BOOL& /*bHandled*/);
void CloseDialog(int nVal);
void UpdateRegisterListView();
private:
CListViewCtrl m_RegisterListViewCtrl;
static int CALLBACK CompareFunc(LPARAM lParam1, LPARAM lParam2, LPARAM lParamSort);
uint64 m_CachedCounter;
uint16 m_CachedRegs[32];
bool m_CachedRegHasChanged[32];
};

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# -*- python -*-
Import('env')
import sys
name = "Plugin_DSP_LLE_Testing"
if not env['HAVE_AO']:
print name + " must have AO to be build"
Return()
files = [
"AOSoundStream.cpp",
# "DisAsmDlg.cpp",
"disassemble.cpp",
# "DSoundStream.cpp",
"gdsp_aram.cpp",
"gdsp_ext_op.cpp",
"gdsp_interface.cpp",
"gdsp_interpreter.cpp",
"gdsp_memory.cpp",
"gdsp_opcodes.cpp",
"gdsp_registers.cpp",
"Globals.cpp",
"HLE_Functions.cpp",
"HLE_Helper.cpp",
"main.cpp",
"Mixer.cpp",
"opcodes.cpp",
# "RegisterDlg.cpp",
# "RegSettings.cpp",
# "stdafx.cpp",
"Tools.cpp",
"Logging/AXTask.cpp",
"Logging/Logging.cpp",
"Logging/ReadPBs.cpp",
]
lleenv = env.Clone()
lleenv.Append(
CXXFLAGS = [ '-fPIC' ],
LIBS = [ 'common' ],
)
lleenv.SharedLibrary(env['plugin_dir']+name, files)

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include <stdio.h>
#include <stdlib.h>
#include "Common.h"
#include "Globals.h"
#include "gdsp_interpreter.h"
bool DumpDSPCode(uint32 _Address, uint32 _Length, uint32 crc)
{
char szFilename[MAX_PATH];
sprintf(szFilename, "c:\\_\\DSP_UC_%08X.bin", crc);
FILE* pFile = fopen(szFilename, "wb");
if (pFile != NULL)
{
fwrite(g_dspInitialize.pGetMemoryPointer(_Address), _Length, 1, pFile);
fclose(pFile);
return(true);
}
else
{
PanicAlert("Cant open file (%s) to dump UCode!!", szFilename);
}
return(false);
}
uint32 GenerateCRC(const unsigned char* _pBuffer, int _pLength)
{
unsigned long CRC = 0xFFFFFFFF;
while (_pLength--)
{
unsigned long Temp = (unsigned long)((CRC & 0xFF) ^ *_pBuffer++);
for (int j = 0; j < 8; j++)
{
if (Temp & 0x1)
{
Temp = (Temp >> 1) ^ 0xEDB88320;
}
else
{
Temp >>= 1;
}
}
CRC = (CRC >> 8) ^ Temp;
}
return(CRC ^ 0xFFFFFFFF);
}
bool DumpCWCode(uint32 _Address, uint32 _Length)
{
FILE* pFile = fopen("d:\\DSP_UCode.bin", "wb");
if (pFile != NULL)
{
for (size_t i = _Address; i < _Address + _Length; i++)
{
uint16 val = Common::swap16(g_dsp.iram[i]);
fprintf(pFile, " cw 0x%04x \n", val);
}
fclose(pFile);
return(true);
}
return(false);
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#pragma once
// UDSPControl
union UDSPControl
{
uint16 Hex;
struct
{
unsigned DSPReset : 1; // Write 1 to reset and waits for 0
unsigned DSPAssertInt : 1;
unsigned DSPHalt : 1;
unsigned AI : 1;
unsigned AI_mask : 1;
unsigned ARAM : 1;
unsigned ARAM_mask : 1;
unsigned DSP : 1;
unsigned DSP_mask : 1;
unsigned ARAM_DMAState : 1; // DSPGetDMAStatus() uses this flag
unsigned unk3 : 1;
unsigned DSPInit : 1; // DSPInit() writes to this flag
unsigned pad : 4;
};
UDSPControl(uint16 _Hex = 0)
: Hex(_Hex) {}
};
bool DumpDSPCode(uint32 _Address, uint32 _Length, uint32 crc);
uint32 GenerateCRC(const unsigned char* _pBuffer, int _pLength);
bool DumpCWCode(uint32 _Address, uint32 _Length);

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/*====================================================================
filename: disassemble.cpp
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include <stdio.h>
#include <memory.h>
#include <stdlib.h>
#include "Globals.h"
#include "disassemble.h"
#include "opcodes.h"
// #include "gdsp_tool.h"
#ifdef _MSC_VER
#pragma warning(disable:4996)
#endif
uint32 unk_opcodes[0x10000];
uint16 swap16(uint16 x);
// predefined labels
typedef struct pdlabel_t
{
uint16 addr;
const char* name;
const char* description;
} pdlabels_t;
const pdlabel_t pdlabels[] =
{
{0xffa0, "COEF_A1_0", "COEF_A1_0",},
{0xffa1, "COEF_A2_0", "COEF_A2_0",},
{0xffa2, "COEF_A1_1", "COEF_A1_1",},
{0xffa3, "COEF_A2_1", "COEF_A2_1",},
{0xffa4, "COEF_A1_2", "COEF_A1_2",},
{0xffa5, "COEF_A2_2", "COEF_A2_2",},
{0xffa6, "COEF_A1_3", "COEF_A1_3",},
{0xffa7, "COEF_A2_3", "COEF_A2_3",},
{0xffa8, "COEF_A1_4", "COEF_A1_4",},
{0xffa9, "COEF_A2_4", "COEF_A2_4",},
{0xffaa, "COEF_A1_5", "COEF_A1_5",},
{0xffab, "COEF_A2_5", "COEF_A2_5",},
{0xffac, "COEF_A1_6", "COEF_A1_6",},
{0xffad, "COEF_A2_6", "COEF_A2_6",},
{0xffae, "COEF_A1_7", "COEF_A1_7",},
{0xffaf, "COEF_A2_7", "COEF_A2_7",},
{0xffc9, "DSCR", "DSP DMA Control Reg",},
{0xffcb, "DSBL", "DSP DMA Block Length",},
{0xffcd, "DSPA", "DSP DMA DMEM Address",},
{0xffce, "DSMAH", "DSP DMA Mem Address H",},
{0xffcf, "DSMAL", "DSP DMA Mem Address L",},
{0xffd1, "SampleFormat", "SampleFormat",},
{0xffd3, "Unk Zelda", "Unk Zelda writes to it",},
{0xffd4, "ACSAH", "Accelerator start address H",},
{0xffd5, "ACSAL", "Accelerator start address L",},
{0xffd6, "ACEAH", "Accelerator end address H",},
{0xffd7, "ACEAL", "Accelerator end address L",},
{0xffd8, "ACCAH", "Accelerator current address H",},
{0xffd9, "ACCAL", "Accelerator current address L",},
{0xffda, "pred_scale", "pred_scale",},
{0xffdb, "yn1", "yn1",},
{0xffdc, "yn2", "yn2",},
{0xffdd, "ARAM", "Direct Read from ARAM (uses ADPCM)",},
{0xffde, "GAIN", "Gain",},
{0xffef, "AMDM", "ARAM DMA Request Mask",},
{0xfffb, "DIRQ", "DSP IRQ Request",},
{0xfffc, "DMBH", "DSP Mailbox H",},
{0xfffd, "DMBL", "DSP Mailbox L",},
{0xfffe, "CMBH", "CPU Mailbox H",},
{0xffff, "CMBL", "CPU Mailbox L",},
};
pdlabel_t regnames[] =
{
{0x00, "R00", "Register 00",},
{0x01, "R01", "Register 01",},
{0x02, "R02", "Register 02",},
{0x03, "R03", "Register 03",},
{0x04, "R04", "Register 04",},
{0x05, "R05", "Register 05",},
{0x06, "R06", "Register 06",},
{0x07, "R07", "Register 07",},
{0x08, "R08", "Register 08",},
{0x09, "R09", "Register 09",},
{0x0a, "R10", "Register 10",},
{0x0b, "R11", "Register 11",},
{0x0c, "ST0", "Call stack",},
{0x0d, "ST1", "Data stack",},
{0x0e, "ST2", "Loop address stack",},
{0x0f, "ST3", "Loop counter",},
{0x00, "ACH0", "Accumulator High 0",},
{0x11, "ACH1", "Accumulator High 1",},
{0x12, "CR", "Config Register",},
{0x13, "SR", "Special Register",},
{0x14, "PROD.L", "PROD L",},
{0x15, "PROD.M1", "PROD M1",},
{0x16, "PROD.H", "PROD H",},
{0x17, "PROD.M2", "PROD M2",},
{0x18, "AX0.L", "Additional Accumulators Low 0",},
{0x19, "AX1.L", "Additional Accumulators Low 1",},
{0x1a, "AX0.H", "Additional Accumulators High 0",},
{0x1b, "AX1.H", "Additional Accumulators High 1",},
{0x1c, "AC0.L", "Register 28",},
{0x1d, "AC1.L", "Register 29",},
{0x1e, "AC0.M", "Register 00",},
{0x1f, "AC1.M", "Register 00",},
// additional to resolve special names
{0x20, "ACC0", "Accumulators 0",},
{0x21, "ACC1", "Accumulators 1",},
{0x22, "AX0", "Additional Accumulators 0",},
{0x23, "AX1", "Additional Accumulators 1",},
};
const char* pdname(uint16 val)
{
static char tmpstr[12]; // nasty
for (int i = 0; i < (int)(sizeof(pdlabels) / sizeof(pdlabel_t)); i++)
{
if (pdlabels[i].addr == val)
{
return(pdlabels[i].name);
}
}
sprintf(tmpstr, "0x%04x", val);
return(tmpstr);
}
char* gd_dis_params(gd_globals_t* gdg, opc_t* opc, uint16 op1, uint16 op2, char* strbuf)
{
char* buf = strbuf;
uint32 val;
int j;
for (j = 0; j < opc->param_count; j++)
{
if (j > 0)
{
sprintf(buf, ", ");
buf += strlen(buf);
}
if (opc->params[j].loc >= 1)
{
val = op2;
}
else
{
val = op1;
}
val &= opc->params[j].mask;
if (opc->params[j].lshift < 0)
{
val = val << (-opc->params[j].lshift);
}
else
{
val = val >> opc->params[j].lshift;
}
uint32 type;
type = opc->params[j].type;
if (type & P_REG)
{
if (type == P_ACCM_D)
{
val = (~val & 0x1) | ((type & P_REGS_MASK) >> 8);
}
else
{
val |= (type & P_REGS_MASK) >> 8;
}
type &= ~P_REGS_MASK;
}
switch (type)
{
case P_REG:
if (gdg->decode_registers){sprintf(buf, "$%s", regnames[val].name);}
else {sprintf(buf, "$%d", val);}
break;
case P_PRG:
if (gdg->decode_registers){sprintf(buf, "@$%s", regnames[val].name);}
else {sprintf(buf, "@$%d", val);}
break;
case P_VAL:
sprintf(buf, "0x%04x", val);
break;
case P_IMM:
if (opc->params[j].size != 2)
{
sprintf(buf, "#0x%02x", val);
}
else
{
sprintf(buf, "#0x%04x", val);
}
break;
case P_MEM:
if (opc->params[j].size != 2)
{
val = (uint16)(sint8)val;
}
if (gdg->decode_names)
{
sprintf(buf, "@%s", pdname(val));
}
else
{
sprintf(buf, "@0x%04x", val);
}
break;
default:
ERROR_LOG(DSPHLE, "Unknown parameter type: %x\n", opc->params[j].type);
exit(-1);
break;
}
buf += strlen(buf);
}
return(strbuf);
}
gd_globals_t* gd_init()
{
gd_globals_t* gdg = (gd_globals_t*)malloc(sizeof(gd_globals_t));
memset(gdg, 0, sizeof(gd_globals_t));
return(gdg);
}
uint16 gd_dis_get_opcode_size(gd_globals_t* gdg)
{
opc_t* opc = 0;
opc_t* opc_ext = 0;
bool extended;
if ((gdg->pc & 0x7fff) >= 0x1000)
{
return(1);
}
uint32 op1 = swap16(gdg->binbuf[gdg->pc & 0x0fff]);
for (uint32 j = 0; j < opcodes_size; j++)
{
uint16 mask;
if (opcodes[j].size & P_EXT)
{
mask = opcodes[j].opcode_mask & 0xff00;
}
else
{
mask = opcodes[j].opcode_mask;
}
if ((op1 & mask) == opcodes[j].opcode)
{
opc = &opcodes[j];
break;
}
}
if (!opc)
{
ERROR_LOG(DSPHLE, "get_opcode_size ARGH");
exit(0);
}
if (opc->size & P_EXT && op1 & 0x00ff)
{
extended = true;
}
else
{
extended = false;
}
if (extended)
{
// opcode has an extension
// find opcode
for (uint32 j = 0; j < opcodes_ext_size; j++)
{
if ((op1 & opcodes_ext[j].opcode_mask) == opcodes_ext[j].opcode)
{
opc_ext = &opcodes_ext[j];
break;
}
}
if (!opc_ext)
{
ERROR_LOG(DSPHLE, "get_opcode_size ext ARGH");
}
return(opc_ext->size);
}
return(opc->size & ~P_EXT);
}
char* gd_dis_opcode(gd_globals_t* gdg)
{
uint32 j;
uint32 op1, op2;
opc_t* opc = NULL;
opc_t* opc_ext = NULL;
uint16 pc;
char* buf = gdg->buffer;
bool extended;
pc = gdg->pc;
*buf = '\0';
if ((pc & 0x7fff) >= 0x1000)
{
gdg->pc++;
return(gdg->buffer);
}
pc &= 0x0fff;
op1 = swap16(gdg->binbuf[pc]);
// find opcode
for (j = 0; j < opcodes_size; j++)
{
uint16 mask;
if (opcodes[j].size & P_EXT)
{
mask = opcodes[j].opcode_mask & 0xff00;
}
else
{
mask = opcodes[j].opcode_mask;
}
if ((op1 & mask) == opcodes[j].opcode)
{
opc = &opcodes[j];
break;
}
}
if (opc->size & P_EXT && op1 & 0x00ff)
{
extended = true;
}
else
{
extended = false;
}
if (extended)
{
// opcode has an extension
// find opcode
for (j = 0; j < opcodes_ext_size; j++)
{
if ((op1 & opcodes_ext[j].opcode_mask) == opcodes_ext[j].opcode)
{
opc_ext = &opcodes_ext[j];
break;
}
}
}
// printing
if (gdg->show_pc){sprintf(buf, "%04x ", gdg->pc);}
buf += strlen(buf);
if ((opc->size & ~P_EXT) == 2)
{
op2 = swap16(gdg->binbuf[pc + 1]);
if (gdg->show_hex){sprintf(buf, "%04x %04x ", op1, op2);}
}
else
{
op2 = 0;
if (gdg->show_hex){sprintf(buf, "%04x ", op1);}
}
buf += strlen(buf);
char tmpbuf[20];
if (extended)
{
sprintf(tmpbuf, "%s%c%s", opc->name, gdg->ext_separator, opc_ext->name);
}
else
{
sprintf(tmpbuf, "%s", opc->name);
}
if (gdg->print_tabs)
{
sprintf(buf, "%s\t", tmpbuf);
}
else
{
sprintf(buf, "%-12s", tmpbuf);
}
buf += strlen(buf);
if (opc->param_count > 0)
{
gd_dis_params(gdg, opc, op1, op2, buf);
}
buf += strlen(buf);
if (extended)
{
if (opc->param_count > 0)
{
sprintf(buf, " ");
}
buf += strlen(buf);
sprintf(buf, ": ");
buf += strlen(buf);
if (opc_ext->param_count > 0)
{
gd_dis_params(gdg, opc_ext, op1, op2, buf);
}
buf += strlen(buf);
}
if (opc->opcode_mask == 0)
{
// unknown opcode
unk_opcodes[op1]++;
sprintf(buf, "\t\t; *** UNKNOWN OPCODE ***");
}
if (extended)
{
gdg->pc += opc_ext->size;
}
else
{
gdg->pc += opc->size & ~P_EXT;
}
return(gdg->buffer);
}
bool gd_dis_file(gd_globals_t* gdg, char* name, FILE* output)
{
FILE* in;
uint32 size;
in = fopen(name, "rb");
if (in == NULL)
{
return(false);
}
fseek(in, 0, SEEK_END);
size = (int)ftell(in);
fseek(in, 0, SEEK_SET);
gdg->binbuf = (uint16*)malloc(size);
fread(gdg->binbuf, 1, size, in);
gdg->buffer = (char*)malloc(256);
gdg->buffer_size = 256;
for (gdg->pc = 0; gdg->pc < (size / 2);)
{
fprintf(output, "%s\n", gd_dis_opcode(gdg));
}
fclose(in);
free(gdg->binbuf);
gdg->binbuf = NULL;
free(gdg->buffer);
gdg->buffer = NULL;
gdg->buffer_size = 0;
return(true);
}
void gd_dis_close_unkop()
{
FILE* uo;
int i, j;
uint32 count = 0;
uo = fopen("uo.bin", "wb");
if (uo)
{
fwrite(unk_opcodes, 1, sizeof(unk_opcodes), uo);
fclose(uo);
}
uo = fopen("unkopc.txt", "w");
if (uo)
{
for (i = 0; i < 0x10000; i++)
{
if (unk_opcodes[i])
{
count++;
fprintf(uo, "OP%04x\t%d", i, unk_opcodes[i]);
for (j = 15; j >= 0; j--)
{
if ((j & 0x3) == 3)
{
fprintf(uo, "\tb");
}
fprintf(uo, "%d", (i >> j) & 0x1);
}
fprintf(uo, "\n");
}
}
fprintf(uo, "Unknown opcodes count: %d\n", count);
fclose(uo);
}
}
void gd_dis_open_unkop()
{
FILE* uo;
uo = fopen("uo.bin", "rb");
if (uo)
{
fread(unk_opcodes, 1, sizeof(unk_opcodes), uo);
fclose(uo);
}
else
{
int i;
for (i = 0; i < 0x10000; i++)
{
unk_opcodes[i] = 0;
}
}
}
const char* gd_dis_get_reg_name(uint16 reg)
{
return(regnames[reg].name);
}

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/*====================================================================
filename: opcodes.h
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#pragma once
typedef struct gd_globals_t
{
bool print_tabs;
bool show_hex;
bool show_pc;
bool decode_names;
bool decode_registers;
uint16* binbuf;
uint16 pc;
char* buffer;
uint16 buffer_size;
char ext_separator;
} gd_globals_t;
char* gd_dis_opcode(gd_globals_t* gdg);
bool gd_dis_file(gd_globals_t* gdg, char* name, FILE* output);
const char* gd_dis_get_reg_name(uint16 reg);

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "Globals.h"
#include "gdsp_interface.h"
extern uint16 dsp_swap16(uint16 x);
// The hardware adpcm decoder :)
sint16 ADPCM_Step(uint32& _rSamplePos, uint32 _BaseAddress)
{
sint16* pCoefTable = (sint16*)&gdsp_ifx_regs[DSP_COEF_A1_0];
if (((_rSamplePos) & 15) == 0)
{
gdsp_ifx_regs[DSP_PRED_SCALE] = g_dspInitialize.pARAM_Read_U8((_rSamplePos & ~15) >> 1);
_rSamplePos += 2;
}
int scale = 1 << (gdsp_ifx_regs[DSP_PRED_SCALE] & 0xF);
int coef_idx = gdsp_ifx_regs[DSP_PRED_SCALE] >> 4;
sint32 coef1 = pCoefTable[coef_idx * 2 + 0];
sint32 coef2 = pCoefTable[coef_idx * 2 + 1];
int temp = (_rSamplePos & 1) ?
(g_dspInitialize.pARAM_Read_U8(_rSamplePos >> 1) & 0xF) :
(g_dspInitialize.pARAM_Read_U8(_rSamplePos >> 1) >> 4);
if (temp >= 8)
temp -= 16;
// 0x400 = 0.5 in 11-bit fixed point
int val = (scale * temp) + ((0x400 + coef1 * (sint16)gdsp_ifx_regs[DSP_YN1] + coef2 * (sint16)gdsp_ifx_regs[DSP_YN2]) >> 11);
// Clamp values.
if (val > 0x7FFF)
val = 0x7FFF;
else if (val < -0x7FFF)
val = -0x7FFF;
gdsp_ifx_regs[DSP_YN2] = gdsp_ifx_regs[DSP_YN1];
gdsp_ifx_regs[DSP_YN1] = val;
_rSamplePos++;
// The advanced interpolation (linear, polyphase,...) is done by the UCode, so we don't
// need to bother with it here.
return val;
}
extern void gdsp_generate_exception(uint8 level);
uint16 dsp_read_aram()
{
// uint32 BaseAddress = (gdsp_ifx_regs[DSP_ACSAH] << 16) | gdsp_ifx_regs[DSP_ACSAL];
uint32 EndAddress = (gdsp_ifx_regs[DSP_ACEAH] << 16) | gdsp_ifx_regs[DSP_ACEAL];
uint32 Address = (gdsp_ifx_regs[DSP_ACCAH] << 16) | gdsp_ifx_regs[DSP_ACCAL];
uint16 val;
// lets the "hardware" decode
switch (gdsp_ifx_regs[DSP_FORMAT])
{
case 0x00:
val = ADPCM_Step(Address, EndAddress);
break;
case 0x0A:
val = (g_dspInitialize.pARAM_Read_U8(Address) << 8) | g_dspInitialize.pARAM_Read_U8(Address + 1);
gdsp_ifx_regs[DSP_YN2] = gdsp_ifx_regs[DSP_YN1];
gdsp_ifx_regs[DSP_YN1] = val;
Address += 2;
break;
default:
val = (g_dspInitialize.pARAM_Read_U8(Address) << 8) | g_dspInitialize.pARAM_Read_U8(Address + 1);
Address += 2;
ERROR_LOG(DSPHLE, "Unknown DSP Format %i", gdsp_ifx_regs[DSP_FORMAT]);
break;
}
// check for loop
if (Address > EndAddress)
{
Address = (gdsp_ifx_regs[DSP_ACSAH] << 16) | gdsp_ifx_regs[DSP_ACSAL];
gdsp_generate_exception(3);
gdsp_generate_exception(5);
// Somehow, YN1 and YN2 must be initialized with their "loop" values, so yeah,
// it seems likely that we should raise an exception to let the DSP program do that,
// at least if DSP_FORMAT == 0x0A.
}
gdsp_ifx_regs[DSP_ACCAH] = Address >> 16;
gdsp_ifx_regs[DSP_ACCAL] = Address & 0xffff;
return(val);
}

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#ifndef _GDSP_ARAM_H
#define _GDSP_ARAM_H
uint16 dsp_read_aram();
#endif

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/*====================================================================
filename: opcodes.h
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
//
//
// At the moment just ls and sl are using the prolog
// perhaps all actions on r03 must be in the prolog
//
#include "Globals.h"
#include "gdsp_opcodes_helper.h"
//
void dsp_op_ext_r_epi(uint16 _Opcode)
{
uint8 op = (_Opcode >> 2) & 0x3;
uint8 reg = _Opcode & 0x3;
switch (op)
{
case 0x00:
ERROR_LOG(DSPHLE, "dsp_op_ext_r_epi");
break;
case 0x01:
g_dsp.r[reg]--;
break;
case 0x02:
g_dsp.r[reg]++;
break;
case 0x03:
g_dsp.r[reg] += g_dsp.r[reg + 4];
break;
}
}
void dsp_op_ext_mv(uint16 _Opcode)
{
uint8 sreg = _Opcode & 0x3;
uint8 dreg = ((_Opcode >> 2) & 0x3);
g_dsp.r[dreg + 0x18] = g_dsp.r[sreg + 0x1c];
}
void dsp_op_ext_s(uint16 _Opcode)
{
uint8 dreg = _Opcode & 0x3;
uint8 sreg = ((_Opcode >> 3) & 0x3) + 0x1c;
dsp_dmem_write(g_dsp.r[dreg], g_dsp.r[sreg]);
if (_Opcode & 0x04)
{
g_dsp.r[dreg] += g_dsp.r[dreg + 4];
}
else
{
g_dsp.r[dreg]++;
}
}
void dsp_op_ext_l(uint16 _Opcode)
{
uint8 sreg = _Opcode & 0x3;
uint8 dreg = ((_Opcode >> 3) & 0x7) + 0x18;
uint16 val = dsp_dmem_read(g_dsp.r[sreg]);
g_dsp.r[dreg] = val;
if (_Opcode & 0x04)
{
g_dsp.r[sreg] += g_dsp.r[sreg + 4];
}
else
{
g_dsp.r[sreg]++;
}
}
void dsp_op_ext_ls_pro(uint16 _Opcode)
{
uint8 areg = (_Opcode & 0x1) + 0x1e;
dsp_dmem_write(g_dsp.r[0x03], g_dsp.r[areg]);
if (_Opcode & 0x8)
{
g_dsp.r[0x03] += g_dsp.r[0x07];
}
else
{
g_dsp.r[0x03]++;
}
}
void dsp_op_ext_ls_epi(uint16 _Opcode)
{
uint8 dreg = ((_Opcode >> 4) & 0x3) + 0x18;
uint16 val = dsp_dmem_read(g_dsp.r[0x00]);
dsp_op_write_reg(dreg, val);
if (_Opcode & 0x4)
{
g_dsp.r[0x00] += g_dsp.r[0x04];
}
else
{
g_dsp.r[0x00]++;
}
}
void dsp_op_ext_sl_pro(uint16 _Opcode)
{
uint8 areg = (_Opcode & 0x1) + 0x1e;
dsp_dmem_write(g_dsp.r[0x00], g_dsp.r[areg]);
if (_Opcode & 0x4)
{
g_dsp.r[0x00] += g_dsp.r[0x04];
}
else
{
g_dsp.r[0x00]++;
}
}
void dsp_op_ext_sl_epi(uint16 _Opcode)
{
uint8 dreg = ((_Opcode >> 4) & 0x3) + 0x18;
uint16 val = dsp_dmem_read(g_dsp.r[0x03]);
dsp_op_write_reg(dreg, val);
if (_Opcode & 0x8)
{
g_dsp.r[0x03] += g_dsp.r[0x07];
}
else
{
g_dsp.r[0x03]++;
}
}
void dsp_op_ext_ld(uint16 _Opcode)
{
uint8 dreg1 = (((_Opcode >> 5) & 0x1) << 1) + 0x18;
uint8 dreg2 = (((_Opcode >> 4) & 0x1) << 1) + 0x19;
uint8 sreg = _Opcode & 0x3;
g_dsp.r[dreg1] = dsp_dmem_read(g_dsp.r[sreg]);
g_dsp.r[dreg2] = dsp_dmem_read(g_dsp.r[0x03]);
if (_Opcode & 0x04)
{
g_dsp.r[sreg] += g_dsp.r[sreg + 0x04];
}
else
{
g_dsp.r[sreg]++;
}
if (_Opcode & 0x08)
{
g_dsp.r[0x03] += g_dsp.r[0x07];
}
else
{
g_dsp.r[0x03]++;
}
}
// ================================================================================
//
//
//
// ================================================================================
void dsp_op_ext_ops_pro(uint16 _Opcode)
{
if ((_Opcode & 0xFF) == 0){return;}
switch ((_Opcode >> 4) & 0xf)
{
case 0x00:
dsp_op_ext_r_epi(_Opcode);
break;
case 0x01:
dsp_op_ext_mv(_Opcode);
break;
case 0x02:
case 0x03:
dsp_op_ext_s(_Opcode);
break;
case 0x04:
case 0x05:
case 0x06:
case 0x07:
dsp_op_ext_l(_Opcode);
break;
case 0x08:
case 0x09:
case 0x0a:
case 0x0b:
if (_Opcode & 0x2)
{
dsp_op_ext_sl_pro(_Opcode);
}
else
{
dsp_op_ext_ls_pro(_Opcode);
}
return;
case 0x0c:
case 0x0d:
case 0x0e:
case 0x0f:
dsp_op_ext_ld(_Opcode);
break;
}
}
void dsp_op_ext_ops_epi(uint16 _Opcode)
{
if ((_Opcode & 0xFF) == 0){return;}
switch ((_Opcode >> 4) & 0xf)
{
case 0x08:
case 0x09:
case 0x0a:
case 0x0b:
if (_Opcode & 0x2)
{
dsp_op_ext_sl_epi(_Opcode);
}
else
{
dsp_op_ext_ls_epi(_Opcode);
}
return;
}
}

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/*====================================================================
filename: opcodes.h
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_EXT_OP_H
#define _GDSP_EXT_OP_H
void dsp_op_ext_ops_pro(uint16 _Opcode);
void dsp_op_ext_ops_epi(uint16 _Opcode);
#endif

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/*====================================================================
filename: gdsp_ifx.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
// ADPCM hw
#ifndef _GDSP_IFX_H
#define _GDSP_IFX_H
void gdsp_ifx_write(uint16 addr, uint16 val);
uint16 gdsp_ifx_read(uint16 addr);
#endif

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/*====================================================================
filename: gdsp_interface.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include <stdlib.h>
#include "Globals.h"
#include "Thread.h"
#include "gdsp_aram.h"
#include "gdsp_interpreter.h"
#include "gdsp_interface.h"
#include "Tools.h"
#ifndef NULL
#define NULL 0
#endif
#ifndef _WIN32
#undef WITH_DSP_ON_THREAD
//TODO FIX
#endif
const char* reg_names[] =
{
// a0
"COEF_A1_0", "COEF_A2_0", "COEF_A1_1", "COEF_A2_1", "COEF_A1_2", "COEF_A2_2", "COEF_A1_3", "COEF_A2_3",
"COEF_A1_4", "COEF_A2_4", "COEF_A1_5", "COEF_A2_5", "COEF_A1_6", "COEF_A2_6", "COEF_A1_7", "COEF_A2_7",
// b0
NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
// c0
NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
NULL, "DSCR", NULL, "DSBL", NULL, "DSPA", "DSMAH", "DSMAL",
// d0
NULL, "SampleFormat", NULL, NULL, "ACSAH", "ACSAL", "ACEAH", "ACEAL",
"ACCAH", "ACCAL", "PRED_SCALE", "YN1", "YN2", "ARAM", "GAIN", NULL,
// e0
NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
NULL, NULL, NULL, NULL, NULL, NULL, NULL, "AMDM",
// f0
NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
NULL, NULL, NULL, NULL, "DMBH", "DMBL", "CMBH", "CMBL",
};
void gdsp_dma();
#ifdef WITH_DSP_ON_THREAD
Common::CriticalSection g_CriticalSection;
#endif
static volatile uint16 gdsp_mbox[2][2];
uint16 gdsp_ifx_regs[256];
void gdsp_ifx_init()
{
int i;
for (i = 0; i < 256; i++)
{
gdsp_ifx_regs[i] = 0;
}
gdsp_mbox[0][0] = 0;
gdsp_mbox[0][1] = 0;
gdsp_mbox[1][0] = 0;
gdsp_mbox[1][1] = 0;
}
uint32 gdsp_mbox_peek(uint8 mbx)
{
#if WITH_DSP_ON_THREAD
g_CriticalSection.Enter();
#endif
uint32 value = ((gdsp_mbox[mbx][0] << 16) | gdsp_mbox[mbx][1]);
#if WITH_DSP_ON_THREAD
g_CriticalSection.Leave();
#endif
return value;
}
void gdsp_mbox_write_h(uint8 mbx, uint16 val)
{
#if WITH_DSP_ON_THREAD
g_CriticalSection.Enter();
#endif
gdsp_mbox[mbx][0] = val & 0x7fff;
#if WITH_DSP_ON_THREAD
g_CriticalSection.Leave();
#endif
}
void gdsp_mbox_write_l(uint8 mbx, uint16 val)
{
#if WITH_DSP_ON_THREAD
g_CriticalSection.Enter();
#endif
gdsp_mbox[mbx][1] = val;
gdsp_mbox[mbx][0] |= 0x8000;
#if WITH_DSP_ON_THREAD
g_CriticalSection.Leave();
#endif
if (mbx == GDSP_MBOX_DSP)
{
DEBUG_LOG(DSPHLE, "- Write DSP Mail: 0x%08x (pc=0x%04x)\n", gdsp_mbox_peek(GDSP_MBOX_DSP), g_dsp.err_pc);
}
}
uint16 gdsp_mbox_read_h(uint8 mbx)
{
return (gdsp_mbox[mbx][0]);
}
uint16 gdsp_mbox_read_l(uint8 mbx)
{
uint16 val;
#if WITH_DSP_ON_THREAD
g_CriticalSection.Enter();
#endif
val = gdsp_mbox[mbx][1];
gdsp_mbox[mbx][0] &= ~0x8000;
#if WITH_DSP_ON_THREAD
g_CriticalSection.Leave();
#endif
return(val);
}
void gdsp_ifx_write(uint16 addr, uint16 val)
{
addr &= 0xff;
switch (addr & 0xff)
{
case 0xfb: // DIRQ
if (val & 0x1)
{
g_dsp.irq_request();
}
break;
case 0xfc: // DMBH
gdsp_mbox_write_h(GDSP_MBOX_DSP, val);
break;
case 0xfd: // DMBL
gdsp_mbox_write_l(GDSP_MBOX_DSP, val);
break;
case 0xcb: // DSBL
gdsp_ifx_regs[addr] = val;
gdsp_dma();
gdsp_ifx_regs[DSP_DSCR] &= ~0x0004;
break;
case 0xcd:
case 0xce:
case 0xcf:
case 0xc9:
gdsp_ifx_regs[addr] = val;
break;
default:
/* if ((addr & 0xff) >= 0xa0 && reg_names[addr - 0xa0])
DEBUG_LOG(DSPHLE, "%04x MW %s (%04x)\n", g_dsp.pc, reg_names[addr - 0xa0], val);
else
DEBUG_LOG(DSPHLE, "%04x MW %04x (%04x)\n", g_dsp.pc, addr, val);*/
gdsp_ifx_regs[addr] = val;
break;
}
}
uint16 gdsp_ifx_read(uint16 addr)
{
uint16 val;
addr &= 0xff;
switch (addr & 0xff)
{
case 0xfc: // DMBH
val = gdsp_mbox_read_h(GDSP_MBOX_DSP);
break;
case 0xfe: // CMBH
val = gdsp_mbox_read_h(GDSP_MBOX_CPU);
break;
case 0xff: // CMBL
val = gdsp_mbox_read_l(GDSP_MBOX_CPU);
break;
case 0xc9:
val = gdsp_ifx_regs[addr];
break;
case 0xdd:
val = dsp_read_aram();
break;
default:
val = gdsp_ifx_regs[addr];
/* if ((addr & 0xff) >= 0xc0 && reg_names[addr & 0x3f])
printf("%04x MR %s (%04x)\n", g_dsp.pc, reg_names[addr & 0x3f], val);
else
printf("%04x MR %04x (%04x)\n", g_dsp.pc, addr, val);*/
break;
}
return(val);
}
void gdsp_idma_in(uint16 dsp_addr, uint32 addr, uint32 size)
{
uint8* dst = ((uint8*)g_dsp.iram);
for (uint32 i = 0; i < size; i += 2)
{
*(uint16*)&dst[dsp_addr + i] = *(uint16*)&g_dsp.cpu_ram[(addr + i) & 0x0fffffff];
}
g_dsp.iram_crc = GenerateCRC(g_dsp.cpu_ram + (addr & 0x0fffffff), size);
DEBUG_LOG(DSPHLE, "*** Copy new UCode from 0x%08x to 0x%04x (crc: %8x)\n", addr, dsp_addr, g_dsp.iram_crc);
#if DUMP_DSP_IMEM
DumpDSPCode(addr, size, g_dsp.iram_crc );
#endif
}
void gdsp_idma_out(uint16 dsp_addr, uint32 addr, uint32 size)
{
ERROR_LOG(DSPHLE, "*** idma_out IRAM_DSP (0x%04x) -> RAM (0x%08x) : size (0x%08x)\n", dsp_addr / 2, addr, size);
}
void gdsp_ddma_in(uint16 dsp_addr, uint32 addr, uint32 size)
{
if ((addr & 0x7FFFFFFF) > 0x01FFFFFF)
{
ERROR_LOG(DSPHLE, "*** ddma_in read from invalid addr (0x%08x)\n", addr);
return;
}
uint8* dst = ((uint8*)g_dsp.dram);
for (uint32 i = 0; i < size; i += 2)
{
*(uint16*)&dst[dsp_addr + i] = *(uint16*)&g_dsp.cpu_ram[(addr + i) & 0x7FFFFFFF];
}
DEBUG_LOG(DSPHLE, "*** ddma_in RAM (0x%08x) -> DRAM_DSP (0x%04x) : size (0x%08x)\n", addr, dsp_addr / 2, size);
}
void gdsp_ddma_out(uint16 dsp_addr, uint32 addr, uint32 size)
{
if ((addr & 0x7FFFFFFF) > 0x01FFFFFF)
{
ERROR_LOG(DSPHLE, "*** gdsp_ddma_out to invalid addr (0x%08x)\n", addr);
return;
}
uint8* src = ((uint8*)g_dsp.dram);
for (uint32 i = 0; i < size; i += 2)
{
*(uint16*)&g_dsp.cpu_ram[(addr + i) & 0x7FFFFFFF] = *(uint16*)&src[dsp_addr + i];
}
DEBUG_LOG(DSPHLE, "*** ddma_out DRAM_DSP (0x%04x) -> RAM (0x%08x) : size (0x%08x)\n", dsp_addr / 2, addr, size);
}
#define DSP_CR_IMEM (2)
#define DSP_CR_DMEM (0)
#define DSP_CR_TO_CPU (1)
#define DSP_CR_FROM_CPU (0)
void gdsp_dma()
{
uint16 ctl;
uint32 addr;
uint16 dsp_addr;
uint16 len;
addr = (gdsp_ifx_regs[DSP_DSMAH] << 16) | gdsp_ifx_regs[DSP_DSMAL];
ctl = gdsp_ifx_regs[DSP_DSCR];
dsp_addr = gdsp_ifx_regs[DSP_DSPA] * 2;
len = gdsp_ifx_regs[DSP_DSBL];
if ((ctl > 3) || (len > 0x4000))
{
ERROR_LOG(DSPHLE, "DMA ERROR pc: %04x ctl: %04x addr: %08x da: %04x size: %04x\n", g_dsp.pc, ctl, addr, dsp_addr, len);
exit(0);
}
switch (ctl & 0x3)
{
case (DSP_CR_DMEM | DSP_CR_TO_CPU):
gdsp_ddma_out(dsp_addr, addr, len);
break;
case (DSP_CR_DMEM | DSP_CR_FROM_CPU):
gdsp_ddma_in(dsp_addr, addr, len);
break;
case (DSP_CR_IMEM | DSP_CR_TO_CPU):
gdsp_idma_out(dsp_addr, addr, len);
break;
case (DSP_CR_IMEM | DSP_CR_FROM_CPU):
gdsp_idma_in(dsp_addr, addr, len);
break;
}
}

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/*====================================================================
filename: gdsp_interface.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_INTERFACE_H
#define _GDSP_INTERFACE_H
#include "Globals.h"
#define GDSP_MBOX_CPU 0
#define GDSP_MBOX_DSP 1
#define DSP_DSMAH 0xce
#define DSP_DSMAL 0xcf
#define DSP_DSCR 0xc9
#define DSP_DSPA 0xcd
#define DSP_DSBL 0xcb
#define DSP_ACSAH 0xd4
#define DSP_ACSAL 0xd5
#define DSP_ACEAH 0xd6
#define DSP_ACEAL 0xd7
#define DSP_ACCAH 0xd8
#define DSP_ACCAL 0xd9
#define DSP_COEF_A1_0 0xa0
#define DSP_FORMAT 0xd1
#define DSP_PRED_SCALE 0xda
#define DSP_YN1 0xdb
#define DSP_YN2 0xdc
#define DSP_ARAM 0xdd
#define DSP_GAIN 0xde
extern uint16 gdsp_ifx_regs[256];
uint32 gdsp_mbox_peek(uint8 mbx);
void gdsp_mbox_write_h(uint8 mbx, uint16 val);
void gdsp_mbox_write_l(uint8 mbx, uint16 val);
uint16 gdsp_mbox_read_h(uint8 mbx);
uint16 gdsp_mbox_read_l(uint8 mbx);
void gdsp_ifx_init();
void gdsp_idma_in(uint16 dsp_addr, uint32 addr, uint32 size);
#endif

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/*====================================================================
filename: gdsp_interpreter.cpp
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include <stdio.h>
#include <stdlib.h>
#include "gdsp_interface.h"
#include "gdsp_opcodes_helper.h"
#include "Tools.h"
//-------------------------------------------------------------------------------
SDSP g_dsp;
uint16 SDSP::r[32];
uint16 SDSP::pc = 0;
uint16 SDSP::err_pc = 0;
uint16* SDSP::iram = 0;
uint16* SDSP::dram = 0;
uint16* SDSP::irom = 0;
uint16* SDSP::drom = 0;
uint16* SDSP::coef = 0;
uint8* SDSP::cpu_ram = 0;
uint16 SDSP::cr = 0;
uint8 SDSP::reg_stack_ptr[4];
// lets make stack depth to 32 for now
uint16 SDSP::reg_stack[4][DSP_STACK_DEPTH];
void (*SDSP::irq_request)() = NULL;
bool SDSP::exception_in_progress_hack = false;
// for debugger only
uint32 SDSP::iram_crc = 0;
uint64 SDSP::step_counter = 0;
//-------------------------------------------------------------------------------
static bool CR_HALT = true;
static bool CR_EXTERNAL_INT = false;
void UpdateCachedCR()
{
CR_HALT = (g_dsp.cr & 0x4) != 0;
CR_EXTERNAL_INT = (g_dsp.cr & 0x02) != 0;
}
//-------------------------------------------------------------------------------
void (*dsp_op[])(uint16 opc) =
{
dsp_op0, dsp_op1, dsp_op2, dsp_op3,
dsp_op4, dsp_op5, dsp_op6, dsp_op7,
dsp_op8, dsp_op9, dsp_opab, dsp_opab,
dsp_opcd, dsp_opcd, dsp_ope, dsp_opf,
};
void dbg_error(char* err_msg)
{
return;
}
void gdsp_init()
{
g_dsp.irom = (uint16*)malloc(DSP_IROM_SIZE * sizeof(uint16));
g_dsp.iram = (uint16*)malloc(DSP_IRAM_SIZE * sizeof(uint16));
g_dsp.drom = (uint16*)malloc(DSP_DROM_SIZE * sizeof(uint16));
g_dsp.dram = (uint16*)malloc(DSP_DRAM_SIZE * sizeof(uint16));
g_dsp.coef = (uint16*)malloc(DSP_COEF_SIZE * sizeof(uint16));
for (int i = 0; i < DSP_IRAM_SIZE; i++)
{
g_dsp.iram[i] = 0x0021; // HALT opcode
}
for (int i = 0; i < DSP_DRAM_SIZE; i++)
{
g_dsp.dram[i] = 0x0021; // HALT opcode
}
for (int i = 0; i < 32; i++)
{
g_dsp.r[i] = 0;
}
for (int i = 0; i < 4; i++)
{
g_dsp.reg_stack_ptr[i] = 0;
for (int j = 0; j < DSP_STACK_DEPTH; j++)
{
g_dsp.reg_stack[i][j] = 0;
}
}
// copied from a real console after the custom UCode has been loaded
g_dsp.r[0x08] = 0xffff;
g_dsp.r[0x09] = 0xffff;
g_dsp.r[0x0a] = 0xffff;
g_dsp.r[0x0b] = 0xffff;
g_dsp.cr = 0x804;
gdsp_ifx_init();
UpdateCachedCR();
}
void gdsp_reset()
{
// _assert_msg_(0, "gdsp_reset()");
_assert_msg_(MASTER_LOG, !g_dsp.exception_in_progress_hack, "assert while exception");
g_dsp.pc = DSP_RESET_VECTOR;
g_dsp.exception_in_progress_hack = false;
}
uint8 gdsp_exceptions = 0;
void gdsp_generate_exception(uint8 level)
{
gdsp_exceptions |= 1 << level;
}
bool gdsp_load_rom(char* fname)
{
FILE* pFile = fopen(fname, "rb");
if (pFile)
{
fread(g_dsp.irom, 1, DSP_IRAM_SIZE, pFile);
fclose(pFile);
return(true);
}
return(false);
}
bool gdsp_load_coef(char* fname)
{
FILE* pFile = fopen(fname, "rb");
if (pFile)
{
fread(g_dsp.coef, 1, DSP_COEF_SIZE, pFile);
fclose(pFile);
return(true);
}
return(false);
}
void gdsp_write_cr(uint16 val)
{
// reset
if (val & 0x0001)
{
gdsp_reset();
}
val &= ~0x0001;
// update cr
g_dsp.cr = val;
UpdateCachedCR();
}
uint16 gdsp_read_cr()
{
if (g_dsp.pc & 0x8000)
{
g_dsp.cr |= 0x800;
}
else
{
g_dsp.cr &= ~0x800;
}
UpdateCachedCR();
return(g_dsp.cr);
}
// special loop step.. because exception in loop or loopi fails
// dunno how we have to fix it
// atm we execute this instructions directly inside the loop command
// so it cant be interrupted by an exception
void gdsp_loop_step()
{
g_dsp.err_pc = g_dsp.pc;
uint16 opc = dsp_fetch_code();
dsp_op[opc >> 12](opc);
}
u16 HLE_ROM_80E7_81F8();
void hacks();
void gdsp_step()
{
g_dsp.step_counter++;
if (g_dsp.pc == 0x80e7)
{
//g_dsp.pc = HLE_ROM_80E7_81F8();
}
g_dsp.err_pc = g_dsp.pc;
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
if (g_dsp.step_counter == 1)
{
ProfilerInit();
}
if ((g_dsp.step_counter & 0xFFFFF) == 0)
{
ProfilerDump(g_dsp.step_counter);
}
#endif
uint16 opc = dsp_fetch_code();
dsp_op[opc >> 12](opc);
uint16& rLoopCounter = g_dsp.r[DSP_REG_ST0 + 3];
if (rLoopCounter > 0)
{
const uint16& rCallAddress = g_dsp.r[DSP_REG_ST0 + 0];
const uint16& rLoopAddress = g_dsp.r[DSP_REG_ST0 + 2];
if (g_dsp.pc == (rLoopAddress + 1))
{
rLoopCounter--;
if (rLoopCounter > 0)
{
g_dsp.pc = rCallAddress;
}
else
{
// end of loop
dsp_reg_load_stack(0);
dsp_reg_load_stack(2);
dsp_reg_load_stack(3);
}
}
}
// check if there is an external interrupt
if (CR_EXTERNAL_INT)
{
if (dsp_SR_is_flag_set(FLAG_ENABLE_INTERUPT) && (g_dsp.exception_in_progress_hack == false))
{
// level 7 is the interrupt exception
gdsp_generate_exception(7);
g_dsp.cr &= ~0x0002;
UpdateCachedCR();
}
}
// check exceptions
if ((gdsp_exceptions > 0) && (!g_dsp.exception_in_progress_hack))
{
for (uint8 i=0; i<8; i++)
{
if (gdsp_exceptions & (1<<i))
{
_assert_msg_(MASTER_LOG, !g_dsp.exception_in_progress_hack, "assert while exception");
dsp_reg_store_stack(DSP_STACK_C, g_dsp.pc);
dsp_reg_store_stack(DSP_STACK_D, g_dsp.r[R_SR]);
g_dsp.pc = i * 2;
gdsp_exceptions &= ~(1<<i);
g_dsp.exception_in_progress_hack = true;
break;
}
}
}
}
bool gdsp_running;
extern volatile uint32 dsp_running;
bool gdsp_run()
{
gdsp_running = true;
while (!CR_HALT)
{
gdsp_step();
}
gdsp_running = false;
return(true);
}
bool gdsp_runx(uint16 cnt)
{
gdsp_running = true;
while (!(g_dsp.cr & 0x4) && gdsp_running)
{
gdsp_step();
cnt--;
if (cnt == 0)
{
break;
}
}
gdsp_running = false;
return(true);
}
void gdsp_stop()
{
gdsp_running = false;
}
///////////////////////////////////////////////////////////////////////////////
//
// From fires for fires :)
//
//
#include "disassemble.h"
#include "WaveFile.h"
#include "Mixer.h"
uint16 r30 = 0, r31 = 0;
extern WaveFileWriter g_wave_writer;
extern uint16 dsp_swap16(uint16 x);
void Hacks()
{
// if (g_wave_writer.GetAudioSize() > 1024*1024*1)
/* if (g_dsp.pc == 0x165)
{
PanicAlert("Opcode_06");
}
if (g_dsp.pc == 0x43b)
{
PanicAlert("Opcode_14");
}
if (g_dsp.pc == 0xb37)
{
PanicAlert("Opcode_08");
}*/
/* if (g_dsp.pc == 0x1bc)
{
r30 = g_dsp.r[30];
r31 = g_dsp.r[31];
}
else if (g_dsp.pc == 0x384)
{
// if ((r30 == 0x1bc) && (r31 == 0xaff))
{
//PanicAlert("%x, %x", r30, r31);
const int numSamples = 0x280;
static short Buffer[numSamples];
uint16 bufferAddr = 0x280; //dsp_dmem_read(0xe44);
for (int i=0; i<numSamples; i++)
{
Buffer[i] = dsp_dmem_read(bufferAddr+i);
}
g_wave_writer.AddStereoSamples(Buffer, numSamples/2); // 2 channels
if (g_wave_writer.GetAudioSize() > 1024*1024*2)
{
//PanicAlert("%x", bufferAddr);
g_wave_writer.Stop();
exit(1);
}
}
} */
if (g_dsp.pc == 0x468)
{
int numSamples = g_dsp.r[25] / 2;
uint16 bufferAddr = g_dsp.r[27];
// PanicAlert("%x %x", bufferAddr, numSamples);
short samples[1024];
for (int i=0; i<numSamples; i++)
{
samples[i] = dsp_dmem_read(bufferAddr+i);
}
Mixer_PushSamples(samples, numSamples / 2, 32000); //sample_rate);
g_wave_writer.AddStereoSamples(samples, numSamples/2); // 2 channels
if (g_wave_writer.GetAudioSize() > 1024*1024*2)
{
//PanicAlert("%x", bufferAddr);
g_wave_writer.Stop();
exit(1);
}
}
}

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/*====================================================================
filename: gdsp_interpreter.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_INTERPRETER_H
#define _GDSP_INTERPRETER_H
#include "Globals.h"
#define DSP_IRAM_SIZE (0x1000)
#define DSP_IRAM_MASK (0x0fff)
#define DSP_IROM_SIZE (0x1000)
#define DSP_IROM_MASK (0x0fff)
#define DSP_DRAM_SIZE (0x1000)
#define DSP_DRAM_MASK (0x0fff)
#define DSP_DROM_SIZE (0x1000)
#define DSP_DROM_MASK (0x0fff)
#define DSP_COEF_SIZE (0x1000)
#define DSP_COEF_MASK (0x0fff)
#define DSP_RESET_VECTOR (0x8000)
#define DSP_STACK_DEPTH 0x20
#define DSP_STACK_MASK 0x1f
struct SDSP
{
static uint16 r[32];
static uint16 pc;
static uint16 err_pc;
static uint16* iram;
static uint16* dram;
static uint16* irom;
static uint16* drom;
static uint16* coef;
static uint8* cpu_ram;
static uint16 cr;
static uint8 reg_stack_ptr[4];
// lets make stack depth to 32 for now
static uint16 reg_stack[4][DSP_STACK_DEPTH];
static void (* irq_request)(void);
// for debugger only
static uint32 iram_crc;
static uint64 step_counter;
static bool exception_in_progress_hack;
};
extern SDSP g_dsp;
void gdsp_init(void);
void gdsp_reset(void);
bool gdsp_load_rom(char* fname);
bool gdsp_load_coef(char* fname);
// steps through DSP code, returns false if error occured
void gdsp_step(void);
void gdsp_loop_step();
bool gdsp_run(void);
bool gdsp_runx(uint16 cnt);
void gdsp_stop(void);
void gdsp_write_cr(uint16 val);
uint16 gdsp_read_cr(void);
uint16* gdsp_get_iram(void);
uint16* gdsp_get_irom(void);
uint16* gdsp_get_dram(void);
uint16* gdsp_get_drom(void);
#endif

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/*====================================================================
filename: gdsp_memory.cpp
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include <stdio.h>
#include "Globals.h"
#include "gdsp_interpreter.h"
#include "gdsp_memory.h"
#include "gdsp_ifx.h"
uint16 dsp_swap16(uint16 x)
{
return((x >> 8) | (x << 8));
}
uint16* gdsp_get_iram(void)
{
return(g_dsp.iram);
}
uint16* gdsp_get_irom(void)
{
return(g_dsp.irom);
}
uint16* gdsp_get_dram(void)
{
return(g_dsp.dram);
}
uint16* gdsp_get_drom(void)
{
return(g_dsp.drom);
}
uint16 dsp_imem_read(uint16 addr)
{
uint16 opc;
if (g_dsp.pc & 0x8000)
{
opc = g_dsp.irom[addr & DSP_IROM_MASK];
}
else
{
opc = g_dsp.iram[addr & DSP_IRAM_MASK];
}
return(dsp_swap16(opc));
}
uint16 dsp_dmem_read(uint16 addr)
{
uint16 val;
switch (addr >> 12)
{
case 0x0: // 0xxx DRAM
val = g_dsp.dram[addr & DSP_DRAM_MASK];
val = dsp_swap16(val);
break;
case 0x8: // 8xxx DROM
DEBUG_LOG(DSPHLE, "someone reads from ROM\n");
val = g_dsp.drom[addr & DSP_DROM_MASK];
val = dsp_swap16(val);
break;
case 0x1: // 1xxx COEF
val = g_dsp.coef[addr & DSP_DROM_MASK];
val = dsp_swap16(val);
break;
case 0xf: // Fxxx HW regs
val = gdsp_ifx_read(addr);
break;
default: // error
// ERROR_LOG(DSPHLE, "%04x DSP ERROR: Read from UNKNOWN (%04x) memory\n", g_dsp.pc, addr);
val = 0;
break;
}
return(val);
}
bool dsp_dmem_write(uint16 addr, uint16 val)
{
switch (addr >> 12)
{
case 0x8: // 8xxx DROM
DEBUG_LOG(DSPHLE, "someone writes to ROM\n");
/* val = dsp_swap16(val);
g_dsp.drom[addr & DSP_DROM_MASK] = val;*/
break;
case 0xf: // Fxxx HW regs
gdsp_ifx_write(addr, val);
break;
case 0x0: // 0xxx DRAM
val = dsp_swap16(val);
g_dsp.dram[addr & DSP_DRAM_MASK] = val;
break;
default: // error
DEBUG_LOG(DSPHLE, "%04x DSP ERROR: Write to UNKNOWN (%04x) memory\n", g_dsp.pc, addr);
break;
}
return(true);
}
uint16 dsp_fetch_code(void)
{
uint16 opc = dsp_imem_read(g_dsp.pc);
g_dsp.pc++;
return(opc);
}
uint16 dsp_peek_code(void)
{
return(dsp_imem_read(g_dsp.pc));
}

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/*====================================================================
filename: gdsp_memory.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_MEMORY_H
#define _GDSP_MEMORY_H
#include "Globals.h"
uint16 dsp_fetch_code(void);
uint16 dsp_peek_code(void);
uint16 dsp_imem_read(uint16 addr);
bool dsp_dmem_write(uint16 addr, uint16 val);
uint16 dsp_dmem_read(uint16 addr);
#endif

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/*====================================================================
filename: gdsp_opcodes.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_OPCODES_H
#define _GDSP_OPCODES_H
#include "Globals.h"
void dsp_op0(uint16 opc);
void dsp_op1(uint16 opc);
void dsp_op2(uint16 opc);
void dsp_op3(uint16 opc);
void dsp_op4(uint16 opc);
void dsp_op5(uint16 opc);
void dsp_op6(uint16 opc);
void dsp_op7(uint16 opc);
void dsp_op8(uint16 opc);
void dsp_op9(uint16 opc);
void dsp_opab(uint16 opc);
void dsp_opcd(uint16 opc);
void dsp_ope(uint16 opc);
void dsp_opf(uint16 opc);
#define R_SR 0x13
#define FLAG_ENABLE_INTERUPT 11
#endif

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/*====================================================================
filename: opcodes.h
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_OPCODES_HELPER_H
#define _GDSP_OPCODES_HELPER_H
#include "Globals.h"
#include "gdsp_opcodes.h"
#include "gdsp_memory.h"
#include "gdsp_interpreter.h"
#include "gdsp_registers.h"
#include "gdsp_ext_op.h"
// ---------------------------------------------------------------------------------------
//
// --- SR
//
// ---------------------------------------------------------------------------------------
inline void dsp_SR_set_flag(uint8 flag)
{
g_dsp.r[R_SR] |= (1 << flag);
}
inline bool dsp_SR_is_flag_set(uint8 flag)
{
return((g_dsp.r[R_SR] & (1 << flag)) > 0);
}
// ---------------------------------------------------------------------------------------
//
// --- reg
//
// ---------------------------------------------------------------------------------------
inline uint16 dsp_op_read_reg(uint8 reg)
{
uint16 val;
switch (reg & 0x1f)
{
case 0x0c:
case 0x0d:
case 0x0e:
case 0x0f:
val = dsp_reg_load_stack(reg - 0x0c);
break;
default:
val = g_dsp.r[reg];
break;
}
return(val);
}
inline void dsp_op_write_reg(uint8 reg, uint16 val)
{
switch (reg & 0x1f)
{
case 0x0c:
case 0x0d:
case 0x0e:
case 0x0f:
dsp_reg_store_stack(reg - 0x0c, val);
break;
default:
g_dsp.r[reg] = val;
break;
}
}
// ---------------------------------------------------------------------------------------
//
// --- prod
//
// ---------------------------------------------------------------------------------------
inline sint64 dsp_get_long_prod()
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
sint64 val;
sint64 low_prod;
val = (sint8)g_dsp.r[0x16];
val <<= 32;
low_prod = g_dsp.r[0x15];
low_prod += g_dsp.r[0x17];
low_prod <<= 16;
low_prod |= g_dsp.r[0x14];
val += low_prod;
return(val);
}
inline void dsp_set_long_prod(sint64 val)
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
g_dsp.r[0x14] = (uint16)val;
val >>= 16;
g_dsp.r[0x15] = (uint16)val;
val >>= 16;
g_dsp.r[0x16] = (uint16)val;
g_dsp.r[0x17] = 0;
}
// ---------------------------------------------------------------------------------------
//
// --- acc
//
// ---------------------------------------------------------------------------------------
inline sint64 dsp_get_long_acc(uint8 reg)
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
_assert_(reg < 2);
sint64 val;
sint64 low_acc;
val = (sint8)g_dsp.r[0x10 + reg];
val <<= 32;
low_acc = g_dsp.r[0x1e + reg];
low_acc <<= 16;
low_acc |= g_dsp.r[0x1c + reg];
val |= low_acc;
return(val);
}
inline uint64 dsp_get_ulong_acc(uint8 reg)
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
_assert_(reg < 2);
uint64 val;
uint64 low_acc;
val = (uint8)g_dsp.r[0x10 + reg];
val <<= 32;
low_acc = g_dsp.r[0x1e + reg];
low_acc <<= 16;
low_acc |= g_dsp.r[0x1c + reg];
val |= low_acc;
return(val);
}
inline void dsp_set_long_acc(uint8 _reg, sint64 val)
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
_assert_(_reg < 2);
g_dsp.r[0x1c + _reg] = (uint16)val;
val >>= 16;
g_dsp.r[0x1e + _reg] = (uint16)val;
val >>= 16;
g_dsp.r[0x10 + _reg] = (uint16)val;
}
inline sint16 dsp_get_acc_l(uint8 _reg)
{
_assert_(_reg < 2);
return(g_dsp.r[0x1c + _reg]);
}
inline sint16 dsp_get_acc_m(uint8 _reg)
{
_assert_(_reg < 2);
return(g_dsp.r[0x1e + _reg]);
}
inline sint16 dsp_get_acc_h(uint8 _reg)
{
_assert_(_reg < 2);
return(g_dsp.r[0x10 + _reg]);
}
// ---------------------------------------------------------------------------------------
//
// --- acx
//
// ---------------------------------------------------------------------------------------
inline sint64 dsp_get_long_acx(uint8 _reg)
{
#if PROFILE
ProfilerAddDelta(g_dsp.err_pc, 1);
#endif
_assert_(_reg < 2);
sint64 val = (sint16)g_dsp.r[0x1a + _reg];
val <<= 16;
sint64 low_acc = g_dsp.r[0x18 + _reg];
val |= low_acc;
return(val);
}
inline sint16 dsp_get_ax_l(uint8 _reg)
{
_assert_(_reg < 2);
return(g_dsp.r[0x18 + _reg]);
}
inline sint16 dsp_get_ax_h(uint8 _reg)
{
_assert_(_reg < 2);
return(g_dsp.r[0x1a + _reg]);
}
#endif

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/*====================================================================
filename: gdsp_registers.cpp
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include "Globals.h"
#include "gdsp_registers.h"
#include "gdsp_interpreter.h"
void dsp_reg_stack_push(uint8 stack_reg)
{
g_dsp.reg_stack_ptr[stack_reg]++;
g_dsp.reg_stack_ptr[stack_reg] &= DSP_STACK_MASK;
g_dsp.reg_stack[stack_reg][g_dsp.reg_stack_ptr[stack_reg]] = g_dsp.r[DSP_REG_ST0 + stack_reg];
}
void dsp_reg_stack_pop(uint8 stack_reg)
{
g_dsp.r[DSP_REG_ST0 + stack_reg] = g_dsp.reg_stack[stack_reg][g_dsp.reg_stack_ptr[stack_reg]];
g_dsp.reg_stack_ptr[stack_reg]--;
g_dsp.reg_stack_ptr[stack_reg] &= DSP_STACK_MASK;
}
void dsp_reg_store_stack(uint8 stack_reg, uint16 val)
{
dsp_reg_stack_push(stack_reg);
g_dsp.r[DSP_REG_ST0 + stack_reg] = val;
}
uint16 dsp_reg_load_stack(uint8 stack_reg)
{
uint16 val = g_dsp.r[DSP_REG_ST0 + stack_reg];
dsp_reg_stack_pop(stack_reg);
return(val);
}

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/*====================================================================
filename: gdsp_registers.h
project: GCemu
created: 2004-6-18
mail: duddie@walla.com
Copyright (c) 2005 Duddie & Tratax
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _GDSP_REGISTERS_H
#define _GDSP_REGISTERS_H
#include "Globals.h"
#define DSP_REG_ST0 0x0c
#define DSP_REG_ST1 0x0c
#define DSP_REG_ST2 0x0c
#define DSP_REG_ST3 0x0c
#define DSP_STACK_C 0
#define DSP_STACK_D 1
void dsp_reg_store_stack(uint8 stack_reg, uint16 val);
uint16 dsp_reg_load_stack(uint8 stack_reg);
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
// =======================================================================================
// Includes
// --------------
#include "Common.h" // Common
#include "WaveFile.h"
#include "CommonTypes.h"
#include "Mixer.h"
#include "Globals.h" // Local
#include "gdsp_interpreter.h"
#include "gdsp_interface.h"
#include "disassemble.h"
#ifdef _WIN32
#include "DisAsmDlg.h"
#include "DSoundStream.h"
#include "Logging/Logging.h" // For Logging
HINSTANCE g_hInstance = NULL;
HANDLE g_hDSPThread = NULL;
CRITICAL_SECTION g_CriticalSection;
CDisAsmDlg g_Dialog;
#else
#define WINAPI
#define LPVOID void*
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <pthread.h>
#include "AOSoundStream.h"
pthread_t g_hDSPThread = NULL;
#endif
#include "ChunkFile.h"
// ==============
// =======================================================================================
// Global declarations and definitions
// --------------
PLUGIN_GLOBALS* globals = NULL;
DSPInitialize g_dspInitialize;
#define GDSP_MBOX_CPU 0
#define GDSP_MBOX_DSP 1
uint32 g_LastDMAAddress = 0;
uint32 g_LastDMASize = 0;
extern u32 m_addressPBs;
bool AXTask(u32& _uMail);
bool bCanWork = false;
// Set this if you want to log audio. search for log_ai in this file to see the filename.
static bool log_ai = false;
WaveFileWriter g_wave_writer;
// ==============
#ifdef _WIN32
BOOL APIENTRY DllMain(HINSTANCE hinstDLL, // DLL module handle
DWORD dwReason, // reason called
LPVOID lpvReserved) // reserved
{
switch (dwReason)
{
case DLL_PROCESS_ATTACH:
break;
case DLL_PROCESS_DETACH:
break;
default:
break;
}
g_hInstance = hinstDLL;
return(TRUE);
}
#endif
void GetDllInfo(PLUGIN_INFO* _PluginInfo)
{
_PluginInfo->Version = 0x0100;
_PluginInfo->Type = PLUGIN_TYPE_DSP;
#ifdef DEBUGFAST
sprintf(_PluginInfo->Name, "Dolphin DSP-LLE-Testing Plugin (DebugFast)");
#else
#ifndef _DEBUG
sprintf(_PluginInfo->Name, "Dolphin DSP-LLE-Testing Plugin");
#else
sprintf(_PluginInfo->Name, "Dolphin DSP-LLE-Testing Plugin (Debug)");
#endif
#endif
}
void SetDllGlobals(PLUGIN_GLOBALS* _pPluginGlobals)
{
globals = _pPluginGlobals;
LogManager::SetInstance((LogManager *)globals->logManager);
}
void DllAbout(HWND _hParent)
{}
void DllConfig(HWND _hParent)
{}
void DoState(unsigned char **ptr, int mode) {
PointerWrap p(ptr, mode);
}
void DllDebugger(HWND _hParent, bool Show)
{
#ifdef _WIN32
#if defined (_DEBUG) || defined (DEBUGFAST)
g_Dialog.Create(NULL); //_hParent);
g_Dialog.ShowWindow(SW_SHOW);
// MoveWindow(g_Dialog.m_hWnd, 450,0, 780,530, true);
// Open the console window
// Console::Open(155, 100, "Sound Debugging"); // give room for 100 rows
// Console::Print("DllDebugger > Console opened\n");
// Todo: Make this adjustable from the Debugging window
// MoveWindow(Console::GetHwnd(), 0,400, 1280,500, true);
#else
MessageBox(0, "Can't open debugging window in the Release build of this plugin.", "DSP LLE", 0);
#endif
#endif
}
// =======================================================================================
// Regular thread
// --------------
#ifdef _WIN32
DWORD WINAPI dsp_thread(LPVOID lpParameter)
#else
void* dsp_thread(void* lpParameter)
#endif
{
while (1)
{
if (!gdsp_run())
{
PanicAlert("ERROR: DSP Halt");
return 0;
}
}
}
// ==============
// =======================================================================================
// Debug thread
// --------------
#ifdef _WIN32
DWORD WINAPI dsp_thread_debug(LPVOID lpParameter)
#else
void* dsp_thread_debug(void* lpParameter)
#endif
{
//if (g_hDSPThread)
//{
// return NULL; // enable this to disable the plugin
//}
#ifdef _WIN32
while (1)
{
Logging(); // logging
if (g_Dialog.CanDoStep())
{
gdsp_runx(1);
}
else
{
Sleep(100);
}
}
#endif
return NULL;
}
// ==============
void DSP_DebugBreak()
{
#ifdef _WIN32
#if defined(_DEBUG) || defined(DEBUGFAST)
g_Dialog.DebugBreak();
#endif
#endif
}
void dspi_req_dsp_irq()
{
g_dspInitialize.pGenerateDSPInterrupt();
}
void Initialize(void *init)
{
bCanWork = true;
g_dspInitialize = *(DSPInitialize*)init;
gdsp_init();
g_dsp.step_counter = 0;
g_dsp.cpu_ram = g_dspInitialize.pGetMemoryPointer(0);
g_dsp.irq_request = dspi_req_dsp_irq;
gdsp_reset();
if (!gdsp_load_rom((char *)DSP_ROM_FILE))
{
bCanWork = false;
PanicAlert("No DSP ROM");
ERROR_LOG(DSPHLE, "Cannot load DSP ROM\n");
}
if (!gdsp_load_coef((char *)DSP_COEF_FILE))
{
bCanWork = false;
PanicAlert("No DSP COEF");
ERROR_LOG(DSPHLE, "Cannot load DSP COEF\n");
}
if(!bCanWork)
return; // TODO: Don't let it work
// ---------------------------------------------------------------------------------------
// First create DSP_UCode.bin by setting "#define DUMP_DSP_IMEM 1" in Globals.h. Then
// make the disassembled file here.
// --------------
// Dump UCode to file...
FILE* t = fopen("C:\\_\\DSP_UC_09CD143F.txt", "wb");
if (t != NULL)
{
gd_globals_t gdg;
gd_dis_file(&gdg, (char *)"C:\\_\\DSP_UC_09CD143F.bin", t);
fclose(t);
}
// --------------
#ifdef _WIN32
#if defined(_DEBUG) || defined(DEBUGFAST)
g_hDSPThread = CreateThread(NULL, 0, dsp_thread_debug, 0, 0, NULL);
#else
g_hDSPThread = CreateThread(NULL, 0, dsp_thread, 0, 0, NULL);
#endif // DEBUG
#else
#if _DEBUG
pthread_create(&g_hDSPThread, NULL, dsp_thread_debug, (void *)NULL);
#else
pthread_create(&g_hDSPThread, NULL, dsp_thread, (void *)NULL);
#endif // DEBUG
#endif // WIN32
if (log_ai) {
g_wave_writer.Start("C:\\_\\ai_log.wav");
g_wave_writer.SetSkipSilence(false);
}
#ifdef _WIN32
InitializeCriticalSection(&g_CriticalSection);
DSound::DSound_StartSound((HWND)g_dspInitialize.hWnd, 48000, Mixer);
#else
AOSound::AOSound_StartSound(48000, Mixer);
#endif
}
void DSP_StopSoundStream()
{
#ifdef _WIN32
if (g_hDSPThread != NULL)
{
TerminateThread(g_hDSPThread, 0);
}
#else
// Isn't pthread_cancel kind of evil?
pthread_cancel(g_hDSPThread);
#endif
}
void Shutdown(void)
{
if (log_ai)
g_wave_writer.Stop();
}
u16 DSP_WriteControlRegister(u16 _uFlag)
{
gdsp_write_cr(_uFlag);
return(gdsp_read_cr());
}
u16 DSP_ReadControlRegister()
{
return(gdsp_read_cr());
}
u16 DSP_ReadMailboxHigh(bool _CPUMailbox)
{
if (_CPUMailbox)
{
return(gdsp_mbox_read_h(GDSP_MBOX_CPU));
}
else
{
return(gdsp_mbox_read_h(GDSP_MBOX_DSP));
}
}
u16 DSP_ReadMailboxLow(bool _CPUMailbox)
{
if (_CPUMailbox)
{
return(gdsp_mbox_read_l(GDSP_MBOX_CPU));
}
else
{
return(gdsp_mbox_read_l(GDSP_MBOX_DSP));
}
}
void DSP_WriteMailboxHigh(bool _CPUMailbox, u16 _uHighMail)
{
if (_CPUMailbox)
{
if (gdsp_mbox_peek(GDSP_MBOX_CPU) & 0x80000000)
{
ERROR_LOG(DSPHLE, "Mailbox isnt empty ... strange");
}
#if PROFILE
if ((_uHighMail) == 0xBABE)
{
ProfilerStart();
}
#endif
gdsp_mbox_write_h(GDSP_MBOX_CPU, _uHighMail);
}
else
{
ERROR_LOG(DSPHLE, "CPU cant write to DSP mailbox");
}
}
void DSP_WriteMailboxLow(bool _CPUMailbox, u16 _uLowMail)
{
if (_CPUMailbox)
{
gdsp_mbox_write_l(GDSP_MBOX_CPU, _uLowMail);
u32 uAddress = gdsp_mbox_peek(GDSP_MBOX_CPU);
u16 errpc = g_dsp.err_pc;
DEBUG_LOG(DSPHLE, "Write CPU Mail: 0x%08x (pc=0x%04x)\n", uAddress, errpc);
// ---------------------------------------------------------------------------------------
// I couldn't find any better way to detect the AX mails so this had to do. Please feel free
// to change it.
// --------------
if ((errpc == 0x0054 || errpc == 0x0055) && m_addressPBs == 0)
{
DEBUG_LOG(DSPHLE, "AXTask ======== 0x%08x (pc=0x%04x)", uAddress, errpc);
AXTask(uAddress);
}
}
else
{
ERROR_LOG(DSPHLE, "CPU cant write to DSP mailbox");
}
}
void DSP_Update(int cycles)
{
if (g_hDSPThread)
{
return;
}
#ifdef _WIN32
if (g_Dialog.CanDoStep())
{
gdsp_runx(100); // cycles
}
#endif
}
void DSP_SendAIBuffer(unsigned int address, int sample_rate)
{
short samples[16] = {0}; // interleaved stereo
if (address) {
for (int i = 0; i < 16; i++) {
samples[i] = Memory_Read_U16(address + i * 2);
}
if (log_ai)
g_wave_writer.AddStereoSamples(samples, 8);
}
Mixer_PushSamples(samples, 32 / 4, sample_rate);
static int counter = 0;
counter++;
#ifdef _WIN32
if ((counter & 255) == 0)
DSound::DSound_UpdateSound();
#endif
}

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/*====================================================================
filename: opcodes.cpp
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#include "Globals.h"
#include "opcodes.h"
opc_t opcodes[] =
{
{"NOP", 0x0000, 0xffff, 1, 0, {},},
{"HALT", 0x0021, 0xffff, 1, 0, {},},
{"RET", 0x02df, 0xffff, 1, 0, {},},
{"RETEQ", 0x02d5, 0xffff, 1, 0, {},},
{"RETNZ", 0x02dd, 0xffff, 1, 0, {},},
{"RTI", 0x02ff, 0xffff, 1, 0, {},},
{"CALL", 0x02bf, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"CALLNE", 0x02b4, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"IF_0", 0x0270, 0xffff, 1, 0, {},},
{"IF_1", 0x0271, 0xffff, 1, 0, {},},
{"IF_2", 0x0272, 0xffff, 1, 0, {},},
{"IF_3", 0x0273, 0xffff, 1, 0, {},},
{"IF_E", 0x0274, 0xffff, 1, 0, {},},
{"IF_Q", 0x0275, 0xffff, 1, 0, {},},
{"IF_R", 0x027c, 0xffff, 1, 0, {},},
{"IF_Z", 0x027d, 0xffff, 1, 0, {},},
{"IF_P", 0x027f, 0xffff, 1, 0, {},},
{"JX0", 0x0290, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JX1", 0x0291, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JX2", 0x0292, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JX3", 0x0293, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JNE", 0x0294, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JEQ", 0x0295, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JZR", 0x029c, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JNZ", 0x029d, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"JMP", 0x029f, 0xffff, 2, 1, {{P_VAL, 2, 1, 0, 0xffff}},},
{"DAR", 0x0004, 0xfffc, 1, 1, {{P_REG, 1, 0, 0, 0x0003}},},
{"IAR", 0x0008, 0xfffc, 1, 1, {{P_REG, 1, 0, 0, 0x0003}},},
{"CALLR", 0x171f, 0xff1f, 1, 1, {{P_REG, 1, 0, 5, 0x00e0}},},
{"JMPR", 0x170f, 0xff1f, 1, 1, {{P_REG, 1, 0, 5, 0x00e0}},},
{"SBCLR", 0x1200, 0xfff8, 1, 1, {{P_IMM, 1, 0, 0, 0x0007}},},
{"SBSET", 0x1300, 0xfff8, 1, 1, {{P_IMM, 1, 0, 0, 0x0007}},},
{"LSL", 0x1400, 0xfec0, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x003f}},},
{"LSR", 0x1440, 0xfec0, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x003f}},},
{"ASL", 0x1480, 0xfec0, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x007f}},},
{"ASR", 0x14c0, 0xfec0, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x007f}},},
{"LRI", 0x0080, 0xffe0, 2, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_IMM, 2, 1, 0, 0xffff}},},
{"LR", 0x00c0, 0xffe0, 2, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_MEM, 2, 1, 0, 0xffff}},},
{"SR", 0x00e0, 0xffe0, 2, 2, {{P_MEM, 2, 1, 0, 0xffff}, {P_REG, 1, 0, 0, 0x001f}},},
{"MRR", 0x1c00, 0xfc00, 1, 2, {{P_REG, 1, 0, 5, 0x03e0}, {P_REG, 1, 0, 0, 0x001f}},},
{"SI", 0x1600, 0xff00, 2, 2, {{P_MEM, 1, 0, 0, 0x00ff}, {P_IMM, 2, 1, 0, 0xffff}},},
{"LRS", 0x2000, 0xf800, 1, 2, {{P_REG18, 1, 0, 8, 0x0700}, {P_MEM, 1, 0, 0, 0x00ff}},},
{"SRS", 0x2800, 0xf800, 1, 2, {{P_MEM, 1, 0, 0, 0x00ff}, {P_REG18, 1, 0, 8, 0x0700}},},
{"LRIS", 0x0800, 0xf800, 1, 2, {{P_REG18, 1, 0, 8, 0x0700}, {P_IMM, 1, 0, 0, 0x00ff}},},
{"ADDIS", 0x0400, 0xfe00, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x00ff}},},
{"CMPIS", 0x0600, 0xfe00, 1, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 1, 0, 0, 0x00ff}},},
{"ANDI", 0x0240, 0xfeff, 2, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"ANDF", 0x02c0, 0xfeff, 2, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"XORI", 0x0220, 0xfeff, 2, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"ANDCF", 0x02a0, 0xfeff, 2, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"ORI", 0x0260, 0xfeff, 2, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"ORF", 0x02e0, 0xfeff, 2, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},},
{"ADDI", 0x0200, 0xfeff, 2, 2, {{P_ACC, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},}, // missing S64
{"CMPI", 0x0280, 0xfeff, 2, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_IMM, 2, 1, 0, 0xffff}},}, // missing S64
{"ILRR", 0x0210, 0xfedc, 1, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_PRG, 1, 0, 0, 0x0003}},},
{"ILRRI", 0x0218, 0xfedc, 1, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_PRG, 1, 0, 0, 0x0003}},},
// load and store value pointed by indexing reg and increment; LRR/SRR variants
{"LRRI", 0x1900, 0xff80, 1, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_PRG, 1, 0, 5, 0x0060}},},
{"LRRD", 0x1880, 0xff80, 1, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_PRG, 1, 0, 5, 0x0060}},},
{"LRRN", 0x1980, 0xff80, 1, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_PRG, 1, 0, 5, 0x0060}},},
{"LRR", 0x1800, 0xff80, 1, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_PRG, 1, 0, 5, 0x0060}},},
{"SRRI", 0x1b00, 0xff80, 1, 2, {{P_PRG, 1, 0, 5, 0x0060}, {P_REG, 1, 0, 0, 0x001f}},},
{"SRRD", 0x1a80, 0xff80, 1, 2, {{P_PRG, 1, 0, 5, 0x0060}, {P_REG, 1, 0, 0, 0x001f}},},
{"SRRN", 0x1b80, 0xff80, 1, 2, {{P_PRG, 1, 0, 5, 0x0060}, {P_REG, 1, 0, 0, 0x001f}},},
{"SRR", 0x1a00, 0xff80, 1, 2, {{P_PRG, 1, 0, 5, 0x0060}, {P_REG, 1, 0, 0, 0x001f}},},
{"LOOPI", 0x1000, 0xff00, 1, 1, {{P_IMM, 1, 0, 0, 0x00ff}},},
{"BLOOPI", 0x1100, 0xff00, 2, 2, {{P_IMM, 1, 0, 0, 0x00ff}, {P_VAL, 2, 1, 0, 0xffff}},},
{"LOOP", 0x0040, 0xffe0, 1, 1, {{P_REG, 1, 0, 0, 0x001f}},},
{"BLOOP", 0x0060, 0xffe0, 2, 2, {{P_REG, 1, 0, 0, 0x001f}, {P_VAL, 2, 1, 0, 0xffff}},},
// opcodes that can be extended
// extended opcodes, note size of opcode will be set to 0
{"NX", 0x8000, 0xffff, 1 | P_EXT, 0, {},},
{"S40", 0x8e00, 0xffff, 1 | P_EXT, 0, {},},
{"S16", 0x8f00, 0xffff, 1 | P_EXT, 0, {},},
{"M2", 0x8a00, 0xffff, 1 | P_EXT, 0, {},},
{"M0", 0x8b00, 0xffff, 1 | P_EXT, 0, {},},
{"CLR15", 0x8c00, 0xffff, 1 | P_EXT, 0, {},},
{"SET15", 0x8d00, 0xffff, 1 | P_EXT, 0, {},},
{"DECM", 0x7800, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"INCM", 0x7400, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"DEC", 0x7a00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"INC", 0x7600, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"NEG", 0x7c00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"TST", 0xb100, 0xf7ff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 11, 0x0800}},},
{"TSTAXH", 0x8600, 0xfeff, 1 | P_EXT, 1, {{P_REG1A, 1, 0, 8, 0x0100}},},
{"CMP", 0x8200, 0xffff, 1 | P_EXT, 0, {},},
{"CMPAXH", 0xc100, 0xe7ff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 12, 0x1000}, {P_REG1A, 1, 0, 11, 0x0800}},},
{"CLR", 0x8100, 0xf7ff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 11, 0x0800}},},
{"CLRP", 0x8400, 0xffff, 1 | P_EXT, 0, {},},
{"MOV", 0x6c00, 0xfeff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_ACCM_D, 1, 0, 8, 0x0100}},},
{"MOVAX", 0x6800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0200}},},
{"MOVR", 0x6000, 0xf8ff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0600}},},
{"MOVP", 0x6e00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"MOVPZ", 0xfe00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"ADDPAXZ", 0xf800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 9, 0x0200}, {P_REG1A, 1, 0, 8, 0x0100}},},
{"ADDP", 0x4e00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"LSL16", 0xf000, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"LSR16", 0xf400, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"ASR16", 0x9100, 0xf7ff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 11, 0x0800}},},
{"XORR", 0x3000, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG1A, 1, 0, 9, 0x0200}},},
{"ANDR", 0x3400, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG1A, 1, 0, 9, 0x0200}},},
{"ORR", 0x3800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG1A, 1, 0, 9, 0x0200}},},
{"ANDC", 0x3C00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"ORC", 0x3E00, 0xfeff, 1 | P_EXT, 1, {{P_ACCM, 1, 0, 8, 0x0100}},},
{"MULX", 0xa000, 0xe7ff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 11, 0x1000}, {P_REG19, 1, 0, 10, 0x0800}},},
{"MULXAC", 0xa400, 0xe6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x1000}, {P_REG19, 1, 0, 10, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULXMV", 0xa600, 0xe6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x1000}, {P_REG19, 1, 0, 10, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULXMVZ", 0xa200, 0xe6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x1000}, {P_REG19, 1, 0, 10, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MUL", 0x9000, 0xf7ff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 11, 0x0800}, {P_REG1A, 1, 0, 11, 0x0800}},},
{"MULAC", 0x9400, 0xf6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x0800}, {P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULMV", 0x9600, 0xf6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x0800}, {P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULMVZ", 0x9200, 0xf6ff, 1 | P_EXT, 3, {{P_REG18, 1, 0, 11, 0x0800}, {P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULC", 0xc000, 0xe7ff, 1 | P_EXT, 2, {{P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 12, 0x1000}},},
{"MULCAC", 0xc400, 0xe6ff, 1 | P_EXT, 3, {{P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 12, 0x1000}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULCMV", 0xc600, 0xe6ff, 1 | P_EXT, 3, {{P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 12, 0x1000}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"MULCMVZ", 0xc200, 0xe6ff, 1 | P_EXT, 3, {{P_REG1A, 1, 0, 11, 0x0800}, {P_ACCM, 1, 0, 12, 0x1000}, {P_ACCM, 1, 0, 8, 0x0100}},},
{"ADDR", 0x4000, 0xf8ff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0600}},},
{"ADDAX", 0x4800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0200}},},
{"ADD", 0x4c00, 0xfeff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_ACCM_D, 1, 0, 8, 0x0100}},},
{"ADDAXL", 0x7000, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0200}},},
{"SUBR", 0x5000, 0xf8ff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0600}},},
{"SUBAX", 0x5800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_REG18, 1, 0, 9, 0x0200}},},
{"SUB", 0x5c00, 0xfeff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 8, 0x0100}, {P_ACCM_D, 1, 0, 8, 0x0100}},},
{"MADD", 0xf200, 0xfeff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 8, 0x0100}, {P_REG1A, 1, 0, 8, 0x0100}},},
{"MSUB", 0xf600, 0xfeff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 8, 0x0100}, {P_REG1A, 1, 0, 8, 0x0100}},},
{"MADDX", 0xe000, 0xfcff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 8, 0x0200}, {P_REG19, 1, 0, 7, 0x0100}},},
{"MSUBX", 0xe400, 0xfcff, 1 | P_EXT, 2, {{P_REG18, 1, 0, 8, 0x0200}, {P_REG19, 1, 0, 7, 0x0100}},},
{"MADDC", 0xe800, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 9, 0x0200}, {P_REG19, 1, 0, 7, 0x0100}},},
{"MSUBC", 0xec00, 0xfcff, 1 | P_EXT, 2, {{P_ACCM, 1, 0, 9, 0x0200}, {P_REG19, 1, 0, 7, 0x0100}},},
// assemble CW
{"CW", 0x0000, 0xffff, 1, 1, {{P_VAL, 2, 0, 0, 0xffff}},},
// unknown opcode for disassemble
{"CW", 0x0000, 0x0000, 1, 1, {{P_VAL, 2, 0, 0, 0xffff}},},
};
opc_t opcodes_ext[] =
{
{"L", 0x0040, 0x00c4, 1, 2, {{P_REG18, 1, 0, 3, 0x0038}, {P_PRG, 1, 0, 0, 0x0003}},},
{"LN", 0x0044, 0x00c4, 1, 2, {{P_REG18, 1, 0, 3, 0x0038}, {P_PRG, 1, 0, 0, 0x0003}},},
{"LS", 0x0080, 0x00ce, 1, 2, {{P_REG18, 1, 0, 4, 0x0030}, {P_ACCM, 1, 0, 0, 0x0001}},},
{"LSN", 0x0084, 0x00ce, 1, 2, {{P_REG18, 1, 0, 4, 0x0030}, {P_ACCM, 1, 0, 0, 0x0001}},},
{"LSM", 0x0088, 0x00ce, 1, 2, {{P_REG18, 1, 0, 4, 0x0030}, {P_ACCM, 1, 0, 0, 0x0001}},},
{"LSNM", 0x008c, 0x00ce, 1, 2, {{P_REG18, 1, 0, 4, 0x0030}, {P_ACCM, 1, 0, 0, 0x0001}},},
{"SL", 0x0082, 0x00ce, 1, 2, {{P_ACCM, 1, 0, 0, 0x0001}, {P_REG18, 1, 0, 4, 0x0030}},},
{"SLN", 0x0086, 0x00ce, 1, 2, {{P_ACCM, 1, 0, 0, 0x0001}, {P_REG18, 1, 0, 4, 0x0030}},},
{"SLM", 0x008a, 0x00ce, 1, 2, {{P_ACCM, 1, 0, 0, 0x0001}, {P_REG18, 1, 0, 4, 0x0030}},},
{"SLNM", 0x008e, 0x00ce, 1, 2, {{P_ACCM, 1, 0, 0, 0x0001}, {P_REG18, 1, 0, 4, 0x0030}},},
{"S", 0x0020, 0x00e4, 1, 2, {{P_PRG, 1, 0, 0, 0x0003}, {P_REG1C, 1, 0, 3, 0x0018}},},
{"SN", 0x0024, 0x00e4, 1, 2, {{P_PRG, 1, 0, 0, 0x0003}, {P_REG1C, 1, 0, 3, 0x0018}},},
{"LDX", 0x00c0, 0x00cf, 1, 3, {{P_REG18, 1, 0, 4, 0x0010}, {P_REG1A, 1, 0, 4, 0x0010}, {P_PRG, 1, 0, 5, 0x0020}},},
{"LDXN", 0x00c4, 0x00cf, 1, 3, {{P_REG18, 1, 0, 4, 0x0010}, {P_REG1A, 1, 0, 4, 0x0010}, {P_PRG, 1, 0, 5, 0x0020}},},
{"LDXM", 0x00c8, 0x00cf, 1, 3, {{P_REG18, 1, 0, 4, 0x0010}, {P_REG1A, 1, 0, 4, 0x0010}, {P_PRG, 1, 0, 5, 0x0020}},},
{"LDXNM", 0x00cc, 0x00cf, 1, 3, {{P_REG18, 1, 0, 4, 0x0010}, {P_REG1A, 1, 0, 4, 0x0010}, {P_PRG, 1, 0, 5, 0x0020}},},
{"LD", 0x00c0, 0x00cc, 1, 3, {{P_REG18, 1, 0, 4, 0x0020}, {P_REG19, 1, 0, 3, 0x0010}, {P_PRG, 1, 0, 0, 0x0003}},},
{"LDN", 0x00c4, 0x00cc, 1, 3, {{P_REG18, 1, 0, 4, 0x0020}, {P_REG19, 1, 0, 3, 0x0010}, {P_PRG, 1, 0, 0, 0x0003}},},
{"LDM", 0x00c8, 0x00cc, 1, 3, {{P_REG18, 1, 0, 4, 0x0020}, {P_REG19, 1, 0, 3, 0x0010}, {P_PRG, 1, 0, 0, 0x0003}},},
{"LDNM", 0x00cc, 0x00cc, 1, 3, {{P_REG18, 1, 0, 4, 0x0020}, {P_REG19, 1, 0, 3, 0x0010}, {P_PRG, 1, 0, 0, 0x0003}},},
{"MV", 0x0010, 0x00f0, 1, 2, {{P_REG18, 1, 0, 2, 0x000c}, {P_REG1C, 1, 0, 0, 0x0003}},},
{"DR", 0x0004, 0x00fc, 1, 1, {{P_REG, 1, 0, 0, 0x0003}},},
{"IR", 0x0008, 0x00fc, 1, 1, {{P_REG, 1, 0, 0, 0x0003}},},
{"NR", 0x000c, 0x00fc, 1, 1, {{P_REG, 1, 0, 0, 0x0003}},},
{"XXX", 0x0000, 0x0000, 1, 1, {{P_VAL, 1, 0, 0, 0x00ff}},},
};
const uint32 opcodes_size = sizeof(opcodes) / sizeof(opc_t);
const uint32 opcodes_ext_size = sizeof(opcodes_ext) / sizeof(opc_t);

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/*====================================================================
filename: opcodes.h
project: GameCube DSP Tool (gcdsp)
created: 2005.03.04
mail: duddie@walla.com
Copyright (c) 2005 Duddie
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
====================================================================*/
#ifndef _OPCODES_H
#define _OPCODES_H
enum partype_t
{
P_NONE = 0x0000,
P_VAL = 0x0001,
P_IMM = 0x0002,
P_MEM = 0x0003,
P_STR = 0x0004,
P_REG = 0x8000,
P_REG08 = P_REG | 0x0800,
P_REG10 = P_REG | 0x1000,
P_REG18 = P_REG | 0x1800,
P_REG19 = P_REG | 0x1900,
P_REG1A = P_REG | 0x1a00,
P_REG1C = P_REG | 0x1c00,
P_ACCM = P_REG | 0x1e00,
P_ACCM_D = P_REG | 0x1e80,
P_ACC = P_REG | 0x2000,
P_ACC_D = P_REG | 0x2080,
P_AX = P_REG | 0x2200,
P_AX_D = P_REG | 0x2280,
P_REGS_MASK = 0x03f80,
P_REF = P_REG | 0x4000,
P_PRG = P_REF | P_REG,
};
#define P_EXT 0x80
typedef struct opcpar_t
{
partype_t type;
uint8 size;
uint8 loc;
sint8 lshift;
uint16 mask;
} opcpar_t;
typedef struct opc_t
{
const char* name;
uint16 opcode;
uint16 opcode_mask;
uint8 size;
uint8 param_count;
opcpar_t params[8];
} opc_t;
extern opc_t opcodes[];
extern const uint32 opcodes_size;
extern opc_t opcodes_ext[];
extern const uint32 opcodes_ext_size;
inline uint16 swap16(uint16 x)
{
return((x >> 8) | (x << 8));
}
#endif

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#include "stdafx.h"

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// Copyright (C) 2003-2008 Dolphin Project.
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, version 2.0.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License 2.0 for more details.
// A copy of the GPL 2.0 should have been included with the program.
// If not, see http://www.gnu.org/licenses/
// Official SVN repository and contact information can be found at
// http://code.google.com/p/dolphin-emu/
#pragma once
#define WIN32_LEAN_AND_MEAN // Exclude rarely-used stuff from Windows headers
#define _CRT_SECURE_NO_DEPRECATE 1
#include <windows.h>
#include <tchar.h>
// WTL
#include <atlbase.h>
#include <atlapp.h>
#include <atlwin.h>
#include <atlframe.h>
#include <atlctrls.h>
#include <atldlgs.h>
#include "PluginSpecs_DSP.h"