542 lines
16 KiB
C++
542 lines
16 KiB
C++
// Copyright (C) 2003-2008 Dolphin Project.
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, version 2.0.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License 2.0 for more details.
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// A copy of the GPL 2.0 should have been included with the program.
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// If not, see http://www.gnu.org/licenses/
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// Official SVN repository and contact information can be found at
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// http://code.google.com/p/dolphin-emu/
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#include "pluginspecs_wiimote.h"
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#include <vector>
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#include <string>
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#include "Common.h"
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#include "wiimote_hid.h"
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#include "EmuSubroutines.h"
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#include "EmuDefinitions.h"
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#include "Console.h" // for startConsoleWin, wprintf, GetConsoleHwnd
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#include "Config.h" // for g_Config
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extern SWiimoteInitialize g_WiimoteInitialize;
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//extern void __Log(int log, const char *format, ...);
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//extern void __Log(int log, int v, const char *format, ...);
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namespace WiiMoteEmu
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{
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//******************************************************************************
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// Subroutines
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//******************************************************************************
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//wm_request_status global_struct;
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//extern wm_request_status global_struct;
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//extern u16 g_channelID;
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//void ReadExt();
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// ===================================================
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/* Here we process the Output Reports that the Wii sends. Our response will be an Input Report
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back to the Wii. Input and Output is from the Wii's perspective, Output means data to
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the Wiimote (from the Wii), Input means data from the Wiimote. */
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// ----------------
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void HidOutputReport(u16 _channelID, wm_report* sr) {
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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LOGV(WII_IPC_WIIMOTE, 0, "HidOutputReport(0x%02x)", sr->channel);
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switch(sr->channel)
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{
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case 0x10:
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LOGV(WII_IPC_WIIMOTE, 0, "HidOutputReport: unknown sr->channel 0x10");
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break;
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case WM_LEDS:
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WmLeds(_channelID, (wm_leds*)sr->data);
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break;
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case WM_READ_DATA:
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WmReadData(_channelID, (wm_read_data*)sr->data);
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break;
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case WM_REQUEST_STATUS:
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//global_struct = (wm_request_status*)sr->data;
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WmRequestStatus(_channelID, (wm_request_status*)sr->data);
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break;
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case WM_IR_PIXEL_CLOCK:
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case WM_IR_LOGIC:
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LOGV(WII_IPC_WIIMOTE, 0, " IR Enable 0x%02x 0x%02x", sr->channel, sr->data[0]);
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break;
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case WM_WRITE_DATA:
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WmWriteData(_channelID, (wm_write_data*)sr->data);
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break;
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case WM_DATA_REPORTING:
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WmDataReporting(_channelID, (wm_data_reporting*)sr->data);
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break;
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case WM_SPEAKER_ENABLE:
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LOGV(WII_IPC_WIIMOTE, 1, " WM Speaker Enable 0x%02x 0x%02x", sr->channel, sr->data[0]);
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break;
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case WM_SPEAKER_MUTE:
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LOGV(WII_IPC_WIIMOTE, 1, " WM Mute Enable 0x%02x 0x%02x", sr->channel, sr->data[0]);
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break;
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default:
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PanicAlert("HidOutputReport: Unknown channel 0x%02x", sr->channel);
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return;
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}
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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}
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void WmLeds(u16 _channelID, wm_leds* leds) {
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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LOG(WII_IPC_WIIMOTE, " Set LEDs");
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LOG(WII_IPC_WIIMOTE, " Leds: %x", leds->leds);
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LOG(WII_IPC_WIIMOTE, " Rumble: %x", leds->rumble);
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g_Leds = leds->leds;
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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}
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void WmSendAck(u16 _channelID, u8 _reportID)
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{
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u8 DataFrame[1024];
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u32 Offset = 0;
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// header
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hid_packet* pHidHeader = (hid_packet*)(DataFrame + Offset);
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pHidHeader->type = HID_TYPE_DATA;
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pHidHeader->param = HID_PARAM_INPUT;
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Offset += sizeof(hid_packet);
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wm_acknowledge* pData = (wm_acknowledge*)(DataFrame + Offset);
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pData->Channel = WM_WRITE_DATA_REPLY;
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pData->unk0 = 0;
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pData->unk1 = 0;
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pData->reportID = _reportID;
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pData->errorID = 0;
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Offset += sizeof(wm_acknowledge);
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LOGV(WII_IPC_WIIMOTE, 2, " WMSendAck()");
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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}
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void WmDataReporting(u16 _channelID, wm_data_reporting* dr)
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{
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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LOG(WII_IPC_WIIMOTE, " Set Data reporting mode");
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LOG(WII_IPC_WIIMOTE, " Rumble: %x", dr->rumble);
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LOG(WII_IPC_WIIMOTE, " Continuous: %x", dr->continuous);
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LOG(WII_IPC_WIIMOTE, " All The Time: %x (not only on data change)", dr->all_the_time);
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LOG(WII_IPC_WIIMOTE, " Rumble: %x", dr->rumble);
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LOG(WII_IPC_WIIMOTE, " Mode: 0x%02x", dr->mode);
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g_ReportingMode = dr->mode;
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g_ReportingChannel = _channelID;
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switch(dr->mode) { //see Wiimote_Update()
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case WM_REPORT_CORE:
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case WM_REPORT_CORE_ACCEL:
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case WM_REPORT_CORE_ACCEL_IR12:
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case WM_REPORT_CORE_ACCEL_IR10_EXT6:
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break;
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default:
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PanicAlert("Wiimote: Unknown reporting mode 0x%x", dr->mode);
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}
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// WmSendAck(_channelID, WM_DATA_REPORTING);
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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}
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void SendReportCore(u16 _channelID)
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{
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_REPORT_CORE);
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wm_report_core* pReport = (wm_report_core*)(DataFrame + Offset);
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Offset += sizeof(wm_report_core);
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memset(pReport, 0, sizeof(wm_report_core));
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FillReportInfo(pReport->c);
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LOG(WII_IPC_WIIMOTE, " SendReportCore()");
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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}
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void SendReportCoreAccelIr12(u16 _channelID) {
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_REPORT_CORE_ACCEL_IR12);
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wm_report_core_accel_ir12* pReport = (wm_report_core_accel_ir12*)(DataFrame + Offset);
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Offset += sizeof(wm_report_core_accel_ir12);
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memset(pReport, 0, sizeof(wm_report_core_accel_ir12));
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FillReportInfo(pReport->c);
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FillReportAcc(pReport->a);
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FillReportIR(pReport->ir[0], pReport->ir[1]);
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LOGV(WII_IPC_WIIMOTE, 2, " SendReportCoreAccelIr12()");
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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}
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void SendReportCoreAccelIr10Ext(u16 _channelID)
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{
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_REPORT_CORE_ACCEL_IR10_EXT6);
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wm_report_core_accel_ir10_ext6* pReport = (wm_report_core_accel_ir10_ext6*)(DataFrame + Offset);
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Offset += sizeof(wm_report_core_accel_ir10_ext6);
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memset(pReport, 0, sizeof(wm_report_core_accel_ir10_ext6));
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FillReportInfo(pReport->c);
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FillReportAcc(pReport->a);
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FillReportIRBasic(pReport->ir[0], pReport->ir[1]);
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LOG(WII_IPC_WIIMOTE, " SendReportCoreAccelIr10Ext()");
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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}
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void SendReportCoreAccel(u16 _channelID)
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{
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_REPORT_CORE_ACCEL);
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wm_report_core_accel* pReport = (wm_report_core_accel*)(DataFrame + Offset);
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Offset += sizeof(wm_report_core_accel);
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memset(pReport, 0, sizeof(wm_report_core_accel));
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FillReportInfo(pReport->c);
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FillReportAcc(pReport->a);
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LOG(WII_IPC_WIIMOTE, " SendReportCoreAccel()");
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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}
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void WmReadData(u16 _channelID, wm_read_data* rd)
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{
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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u32 address = convert24bit(rd->address);
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u16 size = convert16bit(rd->size);
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LOG(WII_IPC_WIIMOTE, " Read data");
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LOG(WII_IPC_WIIMOTE, " Address space: %x", rd->space);
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LOG(WII_IPC_WIIMOTE, " Address: 0x%06x", address);
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LOG(WII_IPC_WIIMOTE, " Size: 0x%04x", size);
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LOG(WII_IPC_WIIMOTE, " Rumble: %x", rd->rumble);
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if(rd->space == 0)
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{
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if (address + size > WIIMOTE_EEPROM_SIZE)
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{
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PanicAlert("WmReadData: address + size out of bounds!");
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return;
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}
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SendReadDataReply(_channelID, g_Eeprom+address, address, (u8)size);
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}
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else if(rd->space == WM_SPACE_REGS1 || rd->space == WM_SPACE_REGS2)
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{
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u8* block;
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u32 blockSize;
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switch((address >> 16) & 0xFE)
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{
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/* case 0xA2:
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block = g_RegSpeaker;
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blockSize = WIIMOTE_REG_SPEAKER_SIZE;
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break;*/
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case 0xA4:
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block = g_RegExt;
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blockSize = WIIMOTE_REG_EXT_SIZE;
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//PanicAlert("WmReadData: 0xA4 g_RegExt");
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LOGV(WII_IPC_WIIMOTE, 0, " Case 0xA4: Read ExtReg ****************************");
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//wprintf("WmReadData\n"); ReadExt();
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break;
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/* case 0xB0:
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block = g_RegIr;
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blockSize = WIIMOTE_REG_IR_SIZE;
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//PanicAlert("WmReadData: 0xB0 g_RegIr");
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LOGV(WII_IPC_WIIMOTE, 0, "WmReadData: 0xB0 g_RegIr");
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break;*/
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default:
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PanicAlert("WmWriteData: bad register block!");
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return;
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}
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address &= 0xFFFF;
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if(address + size > blockSize) {
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PanicAlert("WmReadData: address + size out of bounds!");
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return;
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}
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/*// Debugging
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wprintf("WmReadData %08x %i\n", address, (u8)size);
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for (int i = 0; i < sizeof(block+address); i++)
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{
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wprintf("%02x ", g_RegExt[i]);
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if((i + 1) % 25 == 0) wprintf("\n");
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}
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wprintf("\n\n");
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//---------*/
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SendReadDataReply(_channelID, block+address, address, (u8)size);
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}
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else
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{
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PanicAlert("WmReadData: unimplemented parameters (size: %i, addr: 0x%x!", size, rd->space);
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}
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LOGV(WII_IPC_WIIMOTE, 0, "===========================================================");
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}
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void WmWriteData(u16 _channelID, wm_write_data* wd)
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{
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LOGV(WII_IPC_WIIMOTE, 0, "========================================================");
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u32 address = convert24bit(wd->address);
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LOG(WII_IPC_WIIMOTE, " Write data");
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LOG(WII_IPC_WIIMOTE, " Address space: %x", wd->space);
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LOG(WII_IPC_WIIMOTE, " Address: 0x%06x", address);
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LOG(WII_IPC_WIIMOTE, " Size: 0x%02x", wd->size);
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LOG(WII_IPC_WIIMOTE, " Rumble: %x", wd->rumble);
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// Write to EEPROM
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if(wd->size <= 16 && wd->space == WM_SPACE_EEPROM)
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{
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if(address + wd->size > WIIMOTE_EEPROM_SIZE) {
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PanicAlert("WmWriteData: address + size out of bounds!");
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return;
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}
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memcpy(g_Eeprom + address, wd->data, wd->size);
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// WmSendAck(_channelID, WM_WRITE_DATA);
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}
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// Write to registers
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else if(wd->size <= 16 && (wd->space == WM_SPACE_REGS1 || wd->space == WM_SPACE_REGS2))
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{
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u8* block;
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u32 blockSize;
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switch((address >> 16) & 0xFE)
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{
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case 0xA2:
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block = g_RegSpeaker;
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blockSize = WIIMOTE_REG_SPEAKER_SIZE;
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break;
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case 0xA4:
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block = g_RegExt; // Extension Controller register
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blockSize = WIIMOTE_REG_EXT_SIZE;
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LOGV(WII_IPC_WIIMOTE, 0, " Case 0xA4: Write ExtReg *********************************");
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//PanicAlert(" Case 0xA4: Write g_RegExt");
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//wprintf("WmWriteData\n"); ReadExt();
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break;
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case 0xB0:
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block = g_RegIr;
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blockSize = WIIMOTE_REG_IR_SIZE;
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break;
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default:
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PanicAlert("WmWriteData: bad register block!");
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return;
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}
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address &= 0xFFFF;
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if(address + wd->size > blockSize) {
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PanicAlert("WmWriteData: address + size out of bounds!");
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return;
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}
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// finally write the registers to memory
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/*// Debugging
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if( ((address >> 16) & 0xFE) == 0xa4 )
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{
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wprintf("WmWriteData %i\n", wd->size);
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for (int i = 0; i < sizeof(wd->data); i++)
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{
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wprintf("%02x ", wd->data[i]);
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if((i + 1) % 25 == 0) wprintf("\n");
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}
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wprintf("\n\n");
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}
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//---------*/
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memcpy(wd->data, block + address, wd->size);
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} else {
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PanicAlert("WmWriteData: unimplemented parameters!");
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}
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// just added for home brew.... hmmmm
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WmSendAck(_channelID, WM_WRITE_DATA);
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LOGV(WII_IPC_WIIMOTE, 0, "==========================================================");
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}
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int WriteWmReport(u8* dst, u8 channel) {
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u32 Offset = 0;
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hid_packet* pHidHeader = (hid_packet*)(dst + Offset);
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Offset += sizeof(hid_packet);
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pHidHeader->type = HID_TYPE_DATA;
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pHidHeader->param = HID_PARAM_INPUT;
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wm_report* pReport = (wm_report*)(dst + Offset);
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Offset += sizeof(wm_report);
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pReport->channel = channel;
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return Offset;
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}
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// ===================================================
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/* Here we produce status report to send to the Wii. We currently ignore the status
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request rs and all its eventual instructions it may include (for example turn off
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rumble or something else) and just send the status report. */
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// ----------------
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void WmRequestStatus_(u16 _channelID)
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{
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//PanicAlert("WmRequestStatus");
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LOGV(WII_IPC_WIIMOTE, 0, "================================================");
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LOGV(WII_IPC_WIIMOTE, 0, " Request Status");
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LOGV(WII_IPC_WIIMOTE, 0, " Channel: %04x", _channelID);
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//SendStatusReport();
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_STATUS_REPORT);
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wm_status_report* pStatus = (wm_status_report*)(DataFrame + Offset);
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Offset += sizeof(wm_status_report);
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memset(pStatus, 0, sizeof(wm_status_report)); // fill the status report with zeroes
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pStatus->leds = g_Leds;
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pStatus->ir = 1;
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pStatus->battery = 0x4F; //arbitrary number
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// this gets us passed the first error, but later brings up the disconnected error
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if(g_Config.bExtensionConnected)
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pStatus->extension = 1;
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else
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pStatus->extension = 0;
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LOGV(WII_IPC_WIIMOTE, 0, " Extension: %x", pStatus->extension);
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LOGV(WII_IPC_WIIMOTE, 0, " SendStatusReport()");
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LOGV(WII_IPC_WIIMOTE, 0, " Flags: 0x%02x", pStatus->padding1[2]);
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LOGV(WII_IPC_WIIMOTE, 0, " Battery: %d", pStatus->battery);
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g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
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LOGV(WII_IPC_WIIMOTE, 0, "=================================================");
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}
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void WmRequestStatus(u16 _channelID, wm_request_status* rs)
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{
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//PanicAlert("WmRequestStatus");
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LOGV(WII_IPC_WIIMOTE, 0, "================================================");
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LOGV(WII_IPC_WIIMOTE, 0, " Request Status");
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LOGV(WII_IPC_WIIMOTE, 0, " Rumble: %x", rs->rumble);
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LOGV(WII_IPC_WIIMOTE, 0, " Channel: %04x", _channelID);
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//SendStatusReport();
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u8 DataFrame[1024];
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u32 Offset = WriteWmReport(DataFrame, WM_STATUS_REPORT);
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wm_status_report* pStatus = (wm_status_report*)(DataFrame + Offset);
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Offset += sizeof(wm_status_report);
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memset(pStatus, 0, sizeof(wm_status_report)); // fill the status report with zeroes
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pStatus->leds = g_Leds;
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pStatus->ir = 1;
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pStatus->battery = 0x4F; //arbitrary number
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// this gets us passed the first error, but later brings up the disconnected error
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if(g_Config.bExtensionConnected)
|
|
pStatus->extension = 1;
|
|
else
|
|
pStatus->extension = 0;
|
|
|
|
LOGV(WII_IPC_WIIMOTE, 0, " Extension: %x", pStatus->extension);
|
|
LOGV(WII_IPC_WIIMOTE, 0, " SendStatusReport()");
|
|
LOGV(WII_IPC_WIIMOTE, 0, " Flags: 0x%02x", pStatus->padding1[2]);
|
|
LOGV(WII_IPC_WIIMOTE, 0, " Battery: %d", pStatus->battery);
|
|
|
|
g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
|
|
LOGV(WII_IPC_WIIMOTE, 0, "=================================================");
|
|
}
|
|
|
|
|
|
void SendReadDataReply(u16 _channelID, void* _Base, u16 _Address, u8 _Size)
|
|
{
|
|
LOGV(WII_IPC_WIIMOTE, 0, "=========================================");
|
|
int dataOffset = 0;
|
|
while (_Size > 0)
|
|
{
|
|
u8 DataFrame[1024];
|
|
u32 Offset = WriteWmReport(DataFrame, WM_READ_DATA_REPLY);
|
|
|
|
int copySize = _Size;
|
|
if (copySize > 16)
|
|
{
|
|
copySize = 16;
|
|
}
|
|
|
|
wm_read_data_reply* pReply = (wm_read_data_reply*)(DataFrame + Offset);
|
|
Offset += sizeof(wm_read_data_reply);
|
|
pReply->buttons = 0;
|
|
pReply->error = 0;
|
|
pReply->size = (copySize - 1) & 0xF;
|
|
pReply->address = Common::swap16(_Address + dataOffset);
|
|
|
|
|
|
memcpy(pReply->data + dataOffset, _Base, copySize);
|
|
|
|
|
|
if(copySize < 16)
|
|
{
|
|
memset(pReply->data + copySize, 0, 16 - copySize);
|
|
}
|
|
dataOffset += copySize;
|
|
|
|
LOG(WII_IPC_WIIMOTE, " SendReadDataReply()");
|
|
LOG(WII_IPC_WIIMOTE, " Buttons: 0x%04x", pReply->buttons);
|
|
LOG(WII_IPC_WIIMOTE, " Error: 0x%x", pReply->error);
|
|
LOG(WII_IPC_WIIMOTE, " Size: 0x%x", pReply->size);
|
|
LOG(WII_IPC_WIIMOTE, " Address: 0x%04x", pReply->address);
|
|
|
|
// Debugging
|
|
/*
|
|
wprintf("SendReadDataReply\n");
|
|
for (int i = 0; i < sizeof(DataFrame); i++)
|
|
{
|
|
wprintf("%02x ", g_RegExt[i]);
|
|
if((i + 1) % 25 == 0) wprintf("\n");
|
|
}
|
|
wprintf("\n\n");
|
|
*/
|
|
//---------
|
|
|
|
g_WiimoteInitialize.pWiimoteInput(_channelID, DataFrame, Offset);
|
|
|
|
_Size -= copySize;
|
|
}
|
|
|
|
if (_Size != 0)
|
|
{
|
|
PanicAlert("WiiMote-Plugin: SendReadDataReply() failed");
|
|
}
|
|
LOGV(WII_IPC_WIIMOTE, 0, "==========================================");
|
|
}
|
|
|
|
|
|
} // end of namespace
|