#include #include #include #include #include "ProcessUtils.h" #include "WinUtils.h" #include "DarkMode.h" #include "libtsm\src\tsm\libtsm.h" #include "libtsm\external\xkbcommon\xkbcommon-keysyms.h" #include "resource.h" // TODO // https://stackoverflow.com/questions/5966903/how-to-get-mousemove-and-mouseclick-in-bash // keyboard select mode // specify an icon on command line // remove polling // unicode/emoji // find // status bar ??? // tooltip while resizing ??? // flash window on updates // dynamically change font // transparency // hide scrollbar if scrollback not enabled // support bel // support // ESC [ ? 12 h ATT160 Text Cursor Enable Blinking // ESC [ ? 12 l ATT160 Text Cursor Enable Blinking // ESC ] 4 ; ; rgb : / / ESC Modify Screen Colors // See https://docs.microsoft.com/en-us/windows/console/console-virtual-terminal-sequences // Tabs in frame - see https://docs.microsoft.com/en-au/windows/desktop/dwm/customframe #define PROJ_NAME TEXT("RadTerminal") #define PROJ_CODE TEXT("RadTerminal") #define REG_BASE TEXT("Software\\RadSoft\\") PROJ_CODE template bool MemEqual(const T& a, const T& b) { return memcmp(&a, &b, sizeof(T)) == 0; } void ShowError(HWND hWnd, LPCTSTR msg, HRESULT hr) { TCHAR fullmsg[1024]; _stprintf_s(fullmsg, _T("%s: 0x%08x"), msg, hr); MessageBox(hWnd, fullmsg, PROJ_NAME, MB_ICONERROR); } #define CHECK(x, r) \ if (!(x)) \ { \ ShowError(hWnd, __FUNCTIONW__ TEXT(": ") TEXT(#x), HRESULT_FROM_WIN32(GetLastError())); \ return (r); \ } #define CHECK_ONLY(x) \ if (!(x)) \ { \ ShowError(hWnd, __FUNCTIONW__ TEXT(": ") TEXT(#x), HRESULT_FROM_WIN32(GetLastError())); \ } #define VERIFY(x) \ if (!(x)) \ { \ ShowError(hWnd, __FUNCTIONW__ TEXT(": ") TEXT(#x), 0); \ } HWND CreateRadTerminalFrame(HINSTANCE hInstance); LRESULT CALLBACK RadTerminalWindowProc(HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam); HWND ActionNewWindow(HWND hWnd, bool bParseCmdLine, const std::tstring& profile); ATOM RegisterRadTerminal(HINSTANCE hInstance) { WNDCLASS wc = {}; wc.lpfnWndProc = RadTerminalWindowProc; wc.hIcon = LoadIcon(hInstance, MAKEINTRESOURCE(IDI_ICON1)); wc.hCursor = LoadCursor(NULL, IDC_ARROW); //wc.hbrBackground = GetSysColorBrush(COLOR_WINDOW); wc.hInstance = hInstance; wc.lpszClassName = PROJ_CODE; return RegisterClass(&wc); } ATOM GetRadTerminalAtom(HINSTANCE hInstance) { static ATOM g_atom = RegisterRadTerminal(hInstance); return g_atom; } struct RadTerminalCreate { int iFontHeight; std::tstring strFontFace; std::tstring strScheme; COORD szCon; int sb; std::tstring strCommand; }; void LoadRegistry(RadTerminalCreate& rtc, LPCWSTR strSubKey) { HKEY hMainKey = NULL; if (RegOpenKey(HKEY_CURRENT_USER, REG_BASE TEXT("\\Profiles"), &hMainKey) == ERROR_SUCCESS) { HKEY hKey = NULL; if (RegOpenKey(hMainKey, strSubKey, &hKey) == ERROR_SUCCESS) { rtc.iFontHeight = RegGetDWORD(hKey, _T("FontSize"), rtc.iFontHeight); rtc.strFontFace = RegGetString(hKey, _T("FontFace"), rtc.strFontFace); rtc.strScheme = RegGetString(hKey, _T("Scheme"), rtc.strScheme); rtc.szCon.X = (SHORT) RegGetDWORD(hKey, _T("Width"), rtc.szCon.X); rtc.szCon.Y = (SHORT) RegGetDWORD(hKey, _T("Height"), rtc.szCon.Y); rtc.sb = RegGetDWORD(hKey, _T("Scrollback"), rtc.sb); rtc.strCommand = RegGetString(hKey, _T("Command"), rtc.strCommand); RegCloseKey(hKey); } RegCloseKey(hMainKey); } } void ParseCommandLine(RadTerminalCreate& rtc) { bool command = false; for (int i = 1; i < __argc; ++i) { LPCTSTR arg = __targv[i]; if (command) { rtc.strCommand += ' '; rtc.strCommand += arg; } else if (_tcsicmp(arg, _T("-w")) == 0) rtc.szCon.X = _tstoi(__targv[++i]); else if (_tcsicmp(arg, _T("-h")) == 0) rtc.szCon.Y = _tstoi(__targv[++i]); else if (_tcsicmp(arg, _T("-scheme")) == 0) rtc.strScheme = __targv[++i]; else if (_tcsicmp(arg, _T("-font_face")) == 0) rtc.strFontFace = __targv[++i]; else if (_tcsicmp(arg, _T("-font_size")) == 0) rtc.iFontHeight = _tstoi(__targv[++i]); else if (_tcsicmp(arg, _T("-sb")) == 0) rtc.sb = _tstoi(__targv[++i]); else { rtc.strCommand = arg; command = true; } } } RadTerminalCreate GetTerminalCreate(bool bParseCmdLine, std::tstring profile) { if (profile.empty()) profile = RegGetString(HKEY_CURRENT_USER, REG_BASE, TEXT("Profile"), TEXT("Cmd")); RadTerminalCreate rtc = {}; rtc.iFontHeight = 16; rtc.strFontFace = _T("Consolas"); //rtc.strScheme = _T("solarized"); rtc.szCon = { 80, 25 }; rtc.sb = 1000; //rtc.strCmd = _T("%COMSPEC%"); //rtc.strCmd = _T("cmd"); LoadRegistry(rtc, _T("Default")); LoadRegistry(rtc, profile.c_str()); if (bParseCmdLine) ParseCommandLine(rtc); return rtc; } int WINAPI _tWinMain(HINSTANCE hInstance, HINSTANCE, PTSTR pCmdLine, int nCmdShow) { InitDarkMode(); HWND hWnd = NULL; HWND hWndMDIClient = NULL; HACCEL hAccel = NULL; bool bMDI = RegGetDWORD(HKEY_CURRENT_USER, REG_BASE, TEXT("MDI"), TRUE) > 0; CHECK(GetRadTerminalAtom(hInstance), EXIT_FAILURE); if (bMDI) { hWnd = CreateRadTerminalFrame(hInstance); CHECK(hWnd, EXIT_FAILURE); hWndMDIClient = GetMDIClient(hWnd); hAccel = LoadAccelerators(hInstance, MAKEINTRESOURCE(IDR_ACCELERATOR1)); HWND hChildWnd = ActionNewWindow(hWnd, true, TEXT("")); if (true && hChildWnd != NULL) { RECT r = {}; CHECK(GetWindowRect(hChildWnd, &r), EXIT_FAILURE); CHECK(UnadjustWindowRectEx(&r, GetWindowStyle(hChildWnd), GetMenu(hChildWnd) != NULL, GetWindowExStyle(hChildWnd)), EXIT_FAILURE); CHECK(AdjustWindowRectEx(&r, GetWindowStyle(hWnd), GetMenu(hWnd) != NULL, GetWindowExStyle(hWnd)), EXIT_FAILURE); CHECK(SetWindowPos(hWnd, 0, r.left, r.top, r.right - r.left, r.bottom - r.top, SWP_NOMOVE | SWP_NOZORDER), EXIT_FAILURE); ShowWindow(hChildWnd, SW_MAXIMIZE); } } else { RadTerminalCreate rtc = GetTerminalCreate(true, TEXT("")); hWnd = CreateWindowEx( WS_EX_ACCEPTFILES, MAKEINTATOM(GetRadTerminalAtom(hInstance)), PROJ_NAME, WS_OVERLAPPEDWINDOW | WS_VSCROLL, CW_USEDEFAULT, CW_USEDEFAULT, CW_USEDEFAULT, CW_USEDEFAULT, NULL, // Parent window NULL, // Menu hInstance, &rtc ); CHECK(hWnd, EXIT_FAILURE); } if (g_darkModeEnabled) { SetWindowTheme(hWnd, L"DarkMode_Explorer", NULL); // Needed for scrollbar AllowDarkModeForWindow(hWnd, true); RefreshTitleBarThemeColor(hWnd); } ShowWindow(hWnd, nCmdShow); MSG msg = {}; while (GetMessage(&msg, (HWND) NULL, 0, 0)) { if (!TranslateMDISysAccel(hWndMDIClient, &msg) && !TranslateAccelerator(hWnd, hAccel, &msg)) { TranslateMessage(&msg); DispatchMessage(&msg); } } return EXIT_SUCCESS; } template struct ThreadData2 { typedef void HandleFunc(T hHandle, U hWnd); HandleFunc* pFunc; T t; U u; void Do() const { pFunc(t, u); } }; template DWORD WINAPI MyThread(LPVOID lpParameter) { const T* htd = (T*) lpParameter; htd->Do(); delete htd; return 0; } template void CreateThread(void (*pFunc)(T, U), T t, U u) { ThreadData2* htd = new ThreadData2; htd->pFunc = pFunc; htd->t = t; htd->u = u; CreateThread(nullptr, 0, MyThread>, htd, 0, nullptr); } #define WM_WATCH (WM_USER + 5) void WatchThread(HANDLE hHandle, HWND hWnd) { do { WaitForSingleObject(hHandle, INFINITE); } while (SendMessage(hWnd, WM_WATCH, (WPARAM) hHandle, 0) != 0); } #define WM_READ (WM_USER + 7) void ReadThread(HANDLE hHandle, HWND hWnd) { while (true) { char buf[1024]; const DWORD toread = ARRAYSIZE(buf); DWORD read = 0; if (!ReadFile(hHandle, buf, toread, &read, nullptr)) break; SendMessage(hWnd, WM_READ, (WPARAM) buf, read); } CloseHandle(hHandle); } void tsm_log(void *data, const char *file, int line, const char *func, const char *subs, unsigned int sev, const char *format, va_list args) { char buf[1024]; sprintf_s(buf, "tsm_log: %d %s:%d %s %s - ", sev, strrchr(file, '\\'), line, func, subs); OutputDebugStringA(buf); vsprintf_s(buf, format, args); OutputDebugStringA(buf); OutputDebugStringA("\n"); } struct tsm_screen_draw_info { HFONT hFonts[2][2][2]; // bold, italic, underline TEXTMETRIC tm; }; struct tsm_screen_draw_state { HFONT hFont; COLORREF bg; COLORREF fg; BOOL inverse; }; struct tsm_screen_draw_data { HDC hdc; const tsm_screen_draw_info* info; COORD cur_pos; unsigned int flags; POINT pos; std::tstring drawbuf; tsm_screen_draw_state state; }; inline SIZE GetCellSize(const tsm_screen_draw_info* di) { return { di->tm.tmAveCharWidth, di->tm.tmHeight }; } inline POINT GetScreenPos(const tsm_screen_draw_info* di, COORD pos) { SIZE sz = GetCellSize(di); return { pos.X * sz.cx, pos.Y * sz.cy }; } inline COORD GetCellPos(const tsm_screen_draw_info* di, POINT pos) { SIZE sz = GetCellSize(di); return { (SHORT) (pos.x / sz.cx), (SHORT) (pos.y / sz.cy) }; } void Flush(tsm_screen_draw_data* const draw) { if (!draw->drawbuf.empty()) { HFONT hFontOrig = SelectFont(draw->hdc, draw->state.hFont); SetBkColor(draw->hdc, draw->state.bg); SetTextColor(draw->hdc, draw->state.fg); TextOut(draw->hdc, draw->pos.x, draw->pos.y, draw->drawbuf.c_str(), (int) draw->drawbuf.length()); if (draw->state.inverse) { SIZE sz = GetCellSize(draw->info); sz.cx *= (LONG) draw->drawbuf.length(); RECT rc = Rect(draw->pos, sz); --rc.left; InvertRect(draw->hdc, &rc); } draw->drawbuf.clear(); SelectFont(draw->hdc, hFontOrig); } } static size_t ucs4_to_utf16(uint32_t wc, wchar_t *wbuf) { if (wc < 0x10000) { wbuf[0] = wc; return 1; } else { wc -= 0x10000; wbuf[0] = 0xD800 | ((wc >> 10) & 0x3FF); wbuf[1] = 0xDC00 | (wc & 0x3FF); return 2; } } int tsm_screen_draw(struct tsm_screen *con, uint64_t id, const uint32_t *ch, size_t len, unsigned int width, unsigned int posx, unsigned int posy, const struct tsm_screen_attr *attr, tsm_age_t age, void *data) { tsm_screen_draw_data* const draw = (tsm_screen_draw_data*) data; // TODO Protect, Blink COORD pos = { (SHORT) posx, (SHORT) posy }; tsm_screen_draw_state state = {}; POINT scpos = GetScreenPos(draw->info, pos); state.hFont = draw->info->hFonts[attr->bold][attr->italic][attr->underline]; state.bg = RGB(attr->br, attr->bg, attr->bb); state.fg = RGB(attr->fr, attr->fg, attr->fb); if (MemEqual(draw->cur_pos, pos) && // mouse is inversed in tsm, we undo that here !(draw->flags & TSM_SCREEN_HIDE_CURSOR)) state.inverse = !attr->inverse; else state.inverse = attr->inverse; if (scpos.y != draw->pos.y || !MemEqual(state, draw->state)) { Flush(draw); draw->pos = scpos; draw->state = state; } if (len > 0) { for (int i = 0; i < len; ++i) { uint32_t chr = ch[i]; #ifdef _UNICODE wchar_t buf[2]; size_t buflen = ucs4_to_utf16(chr, buf); draw->drawbuf.append(buf, buflen); #else char buf[4]; size_t buflen = tsm_ucs4_to_utf8(chr, buf); draw->drawbuf.append(buf, buflen); #endif } } else draw->drawbuf += ' '; return 0; } void tsm_vte_write(struct tsm_vte *vte, const char *u8, size_t len, void *data) { const HANDLE hInput = (HANDLE) data; while (len > 0) { DWORD written = 0; WriteFile(hInput, u8, (DWORD) len, &written, nullptr); len -= written; } //FlushFileBuffers(hInput); } void tsm_vte_paste(struct tsm_vte *vte, LPCTSTR lptstr) { const uint32_t keysym = XKB_KEY_NoSymbol; while (*lptstr != '\0') { #ifdef _UNICODE uint32_t ascii = 0; uint32_t unicode = *lptstr; #else uint32_t ascii = *lptstr; uint32_t unicode = 0; #endif unsigned int mods = 0; // TODO Should capital letters be faked with a Shift? tsm_vte_handle_keyboard(vte, keysym, ascii, mods, unicode); ++lptstr; } } void tsm_vte_osc(struct tsm_vte *vte, const char *u8, size_t len, void *data) { if (strncmp(u8, "0;", 2) == 0 || strncmp(u8, "2;", 2) == 0) { HWND hWnd = (HWND) data; SetWindowTextA(hWnd, u8 + 2); } } struct RadTerminalData { struct tsm_screen *screen; struct tsm_vte *vte; tsm_screen_draw_info draw_info; SubProcessData spd; }; void DrawCursor(HDC hdc, const RadTerminalData* const data) { const unsigned int flags = tsm_screen_get_flags(data->screen); if (!(flags & TSM_SCREEN_HIDE_CURSOR)) { const COORD cur_pos = { (SHORT) tsm_screen_get_cursor_x(data->screen), (SHORT) (tsm_screen_get_cursor_y(data->screen) + tsm_screen_sb_depth(data->screen)) }; RECT rc = Rect(GetScreenPos(&data->draw_info, cur_pos), GetCellSize(&data->draw_info)); // TODO Different cursor styles rc.top += (rc.bottom - rc.top) * 8 / 10; InvertRect(hdc, &rc); } } void FixScrollbar(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const unsigned int flags = tsm_screen_get_flags(data->screen); SCROLLINFO si = {}; si.cbSize = sizeof(si); si.fMask = SIF_PAGE | SIF_RANGE | SIF_POS | SIF_DISABLENOSCROLL; si.nPage = tsm_screen_get_height(data->screen); if (!(flags & TSM_SCREEN_ALTERNATE)) { si.nMax = si.nPage + tsm_screen_sb_count(data->screen) - 1; si.nPos = si.nMax - si.nPage - tsm_screen_sb_depth(data->screen) + 1; } else { si.nMax = si.nPage - 1; si.nPos = si.nMax - si.nPage + 1; } SetScrollInfo(hWnd, SB_VERT, &si, TRUE); } BOOL CheckScrollBar(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); int nPage = tsm_screen_get_height(data->screen); int nMax = nPage + tsm_screen_sb_count(data->screen) - 1; int nPos = nMax - nPage - tsm_screen_sb_depth(data->screen) + 1; return GetScrollPos(hWnd, SB_VERT) == nPos; } // trim empty space from end of lines void TrimLines(char* buf, int* plen) { char* lastnonnull = nullptr; for (int i = 0; i < *plen; ++i) { switch (buf[i]) { case ' ': case '\0': //buf[i] = ' '; break; case '\n': if (lastnonnull != nullptr) { strncpy_s(lastnonnull, *plen - (lastnonnull - buf), buf + i, *plen - i); // TODO len should be *plen - (lastnonnull - buf) I think int cut = (int) ((buf + i) - lastnonnull); *plen -= cut; i -= cut; } // fallthrough default: lastnonnull = buf + i + 1; break; } } if (lastnonnull != nullptr) { *lastnonnull = '\0'; int cut = (int) ((buf + *plen) - lastnonnull); *plen -= cut; } } int ActionCopyToClipboard(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); char* buf = nullptr; int len = tsm_screen_selection_copy(data->screen, &buf); if (len > 0) { TrimLines(buf, &len); HGLOBAL hMem = GlobalAlloc(GMEM_MOVEABLE, len + 1); memcpy(GlobalLock(hMem), buf, len + 1); GlobalUnlock(hMem); while (!OpenClipboard(hWnd)) ; CHECK_ONLY(EmptyClipboard()); CHECK_ONLY(SetClipboardData(CF_TEXT, hMem)); CHECK_ONLY(CloseClipboard()); tsm_screen_selection_reset(data->screen); InvalidateRect(hWnd, nullptr, TRUE); } free(buf); return len; } int ActionClearSelection(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); char* buf = nullptr; int len = tsm_screen_selection_copy(data->screen, &buf); if (len > 0) { tsm_screen_selection_reset(data->screen); InvalidateRect(hWnd, nullptr, TRUE); } free(buf); return len; } int ActionPasteFromClipboard(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); if (IsClipboardFormatAvailable(CF_TEXT)) { while (!OpenClipboard(hWnd)) ; #ifdef _UNICODE HANDLE hData = GetClipboardData(CF_UNICODETEXT); #else HANDLE hData = GetClipboardData(CF_TEXT); #endif if (hData != NULL) { LPCTSTR lptstr = (LPCTSTR) GlobalLock(hData); tsm_vte_paste(data->vte, lptstr); GlobalUnlock(hData); } CHECK_ONLY(CloseClipboard()); } return 0; } int ActionScrollbackUp(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const unsigned int flags = tsm_screen_get_flags(data->screen); if (!(flags & TSM_SCREEN_ALTERNATE)) { tsm_screen_sb_up(data->screen, 1); int sp = GetScrollPos(hWnd, SB_VERT); sp -= 1; SetScrollPos(hWnd, SB_VERT, sp, TRUE); VERIFY(CheckScrollBar(hWnd)); InvalidateRect(hWnd, nullptr, TRUE); } return 0; } int ActionScrollbackDown(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const unsigned int flags = tsm_screen_get_flags(data->screen); if (!(flags & TSM_SCREEN_ALTERNATE)) { tsm_screen_sb_down(data->screen, 1); int sp = GetScrollPos(hWnd, SB_VERT); sp += 1; SetScrollPos(hWnd, SB_VERT, sp, TRUE); VERIFY(CheckScrollBar(hWnd)); InvalidateRect(hWnd, nullptr, TRUE); } return 0; } HWND ActionNewWindow(HWND hWnd, bool bParseCmdLine, const std::tstring& profile) { const HINSTANCE hInstance = GetWindowInstance(hWnd); const HWND hWndMDIClient = GetMDIClient(hWnd); BOOL bMaximized = FALSE; GetMDIActive(hWndMDIClient, &bMaximized); const RadTerminalCreate rtc = GetTerminalCreate(bParseCmdLine, profile); HWND hChildWnd = CreateMDIWindow( MAKEINTATOM(GetRadTerminalAtom(hInstance)), PROJ_NAME, (bMaximized ? WS_MAXIMIZE : 0) | WS_OVERLAPPEDWINDOW | WS_VSCROLL, CW_USEDEFAULT, CW_USEDEFAULT, CW_USEDEFAULT, CW_USEDEFAULT, hWndMDIClient, // Parent window hInstance, (LPARAM) &rtc ); CHECK(hChildWnd != NULL, NULL); SetWindowLong(hChildWnd, GWL_EXSTYLE, GetWindowExStyle(hChildWnd) | WS_EX_ACCEPTFILES); if (false && g_darkModeEnabled) // TODO Doesn't seem to work MDI child windows { SetWindowTheme(hWnd, L"DarkMode_Explorer", NULL); // Needed for scrollbar AllowDarkModeForWindow(hWnd, true); RefreshTitleBarThemeColor(hWnd); } return hChildWnd; } inline LRESULT MyDefWindowProc(_In_ HWND hWnd, _In_ UINT Msg, _In_ WPARAM wParam, _In_ LPARAM lParam) { if (IsMDIChild(hWnd)) return DefMDIChildProc(hWnd, Msg, wParam, lParam); else return DefWindowProc(hWnd, Msg, wParam, lParam); } BOOL RadTerminalWindowOnCreate(HWND hWnd, LPCREATESTRUCT lpCreateStruct) { FORWARD_WM_CREATE(hWnd, lpCreateStruct, MyDefWindowProc); MDICREATESTRUCT* mdics = (MDICREATESTRUCT*) lpCreateStruct->lpCreateParams; const RadTerminalCreate* const rtc = IsMDIChild(hWnd) ? (RadTerminalCreate*) mdics->lParam : (RadTerminalCreate*) lpCreateStruct->lpCreateParams; RadTerminalData* const data = new RadTerminalData; ZeroMemory(data, sizeof(RadTerminalData)); SetWindowLongPtr(hWnd, GWLP_USERDATA, (LONG_PTR) data); data->spd = CreateSubProcess(rtc->strCommand.c_str(), rtc->szCon, true); if (data->spd.hr != S_OK) { ShowError(hWnd, _T("CreateSubProcess"), data->spd.hr); return FALSE; } CreateThread(WatchThread, data->spd.pi.hProcess, hWnd); CreateThread(ReadThread, data->spd.hOutput, hWnd); data->spd.hOutput = NULL; // TODO Report error int e = 0; e = tsm_screen_new(&data->screen, tsm_log, nullptr); e = tsm_screen_resize(data->screen, rtc->szCon.X, rtc->szCon.Y); if (rtc->sb > 0) tsm_screen_set_max_sb(data->screen, rtc->sb); e = tsm_vte_new(&data->vte, data->screen, tsm_vte_write, data->spd.hInput, tsm_log, nullptr); tsm_vte_set_osc_cb(data->vte, tsm_vte_osc, hWnd); if (!rtc->strScheme.empty()) { #ifdef _UNICODE char scheme[1024]; WideCharToMultiByte(CP_UTF8, 0, rtc->strScheme.c_str(), -1, scheme, ARRAYSIZE(scheme), nullptr, nullptr); e = tsm_vte_set_palette(data->vte, scheme); #else e = tsm_vte_set_palette(data->vte, rtc->strScheme.c_str()); #endif } for (int b = 0; b < 2; ++b) for (int i = 0; i < 2; ++i) for (int u = 0; u < 2; ++u) CHECK(data->draw_info.hFonts[b][i][u] = CreateFont(rtc->strFontFace.c_str(), rtc->iFontHeight, b == 0 ? FW_NORMAL : FW_BOLD, i, u), FALSE); HDC hdc = GetDC(hWnd); SelectFont(hdc, data->draw_info.hFonts[0][0][0]); GetTextMetrics(hdc, &data->draw_info.tm); VERIFY(!(data->draw_info.tm.tmPitchAndFamily & TMPF_FIXED_PITCH)); ReleaseDC(hWnd, hdc); RECT r = Rect({ 0, 0 }, GetScreenPos(&data->draw_info, rtc->szCon)); const DWORD style = GetWindowStyle(hWnd); const DWORD exstyle = GetWindowExStyle(hWnd); if (style & WS_VSCROLL) r.right += GetSystemMetrics(SM_CXVSCROLL); CHECK(AdjustWindowRectEx(&r, style, GetMenu(hWnd) != NULL, exstyle), FALSE); CHECK(SetWindowPos(hWnd, 0, r.left, r.top, r.right - r.left, r.bottom - r.top, SWP_NOMOVE | SWP_NOZORDER), FALSE); HICON hIconLarge = NULL, hIconSmall = NULL; UINT count = GetIcon(&data->spd, &hIconLarge, &hIconSmall); if (count > 0) { SendMessage(hWnd, WM_SETICON, ICON_BIG, (LPARAM) hIconLarge); SendMessage(hWnd, WM_SETICON, ICON_SMALL, (LPARAM) hIconSmall); } CHECK(SetTimer(hWnd, 2, 500, nullptr), FALSE); return TRUE; } void RadTerminalWindowOnDestroy(HWND hWnd) { FORWARD_WM_DESTROY(hWnd, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); CleanupSubProcess(&data->spd); for (int b = 0; b < 2; ++b) for (int i = 0; i < 2; ++i) for (int u = 0; u < 2; ++u) DeleteFont(data->draw_info.hFonts[b][i][u]); tsm_vte_unref(data->vte); tsm_screen_unref(data->screen); if (!IsMDIChild(hWnd) || CountChildWindows(GetParent(hWnd)) == 1) PostQuitMessage(0); delete data; SetWindowLongPtr(hWnd, GWLP_USERDATA, (LONG_PTR) nullptr); } void RadTerminalWindowOnPaint(HWND hWnd) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); PAINTSTRUCT ps; HDC hdc = BeginPaint(hWnd, &ps); HBRUSH hBrush = (HBRUSH) GetClassLongPtr(hWnd, GCLP_HBRBACKGROUND); if (hBrush != NULL) FillRect(hdc, &ps.rcPaint, hBrush); tsm_screen_draw_data draw = {}; draw.hdc = hdc; draw.info = &data->draw_info; draw.pos.y = -1; draw.cur_pos = { (SHORT) tsm_screen_get_cursor_x(data->screen), (SHORT) (tsm_screen_get_cursor_y(data->screen) + tsm_screen_sb_depth(data->screen)) }; draw.flags = tsm_screen_get_flags(data->screen); tsm_age_t age = tsm_screen_draw(data->screen, tsm_screen_draw, (void*) &draw); Flush(&draw); HWND hActive = MyGetActiveWnd(hWnd); if (hActive == hWnd) DrawCursor(hdc, data); EndPaint(hWnd, &ps); } void RadTerminalWindowOnKeyDown(HWND hWnd, UINT vk, BOOL fDown, int cRepeat, UINT flags) { FORWARD_WM_KEYDOWN(hWnd, vk, cRepeat, flags, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); BYTE KeyState[256]; GetKeyboardState(KeyState); bool bPassOn = true; switch (vk) { case VK_ESCAPE: bPassOn = ActionClearSelection(hWnd) < 0; break; case VK_RETURN: bPassOn = ActionCopyToClipboard(hWnd) < 0; break; case 'C': if (KeyState[VK_CONTROL] & 0x80) bPassOn = ActionCopyToClipboard(hWnd) < 0; break; case 'V': if (KeyState[VK_CONTROL] & 0x80) bPassOn = ActionPasteFromClipboard(hWnd) < 0; break; case VK_UP: if (KeyState[VK_CONTROL] & 0x80) bPassOn = ActionScrollbackUp(hWnd) < 0; break; case VK_DOWN: if (KeyState[VK_CONTROL] & 0x80) bPassOn = ActionScrollbackDown(hWnd) < 0; break; } if (bPassOn) { uint32_t keysym = XKB_KEY_NoSymbol; uint32_t ascii = 0; uint32_t unicode = ascii; unsigned int mods = 0; if (KeyState[VK_SHIFT] & 0x80) mods |= TSM_SHIFT_MASK; if (KeyState[VK_SCROLL] & 0x80) mods |= TSM_LOCK_MASK; if (KeyState[VK_CONTROL] & 0x80) mods |= TSM_CONTROL_MASK; if (KeyState[VK_MENU] & 0x80) mods |= TSM_ALT_MASK; if (KeyState[VK_LWIN] & 0x80) mods |= TSM_LOGO_MASK; UINT scan = (cRepeat >> 8); WORD charsAscii[2] = {}; if (ToAscii(vk, scan, KeyState, charsAscii, 0) > 0) { ascii = charsAscii[0]; keysym = ascii; } WCHAR charsUnicode[4] = {}; if (ToUnicode(vk, scan, KeyState, charsUnicode, ARRAYSIZE(charsUnicode), 0) > 0) { unicode = charsUnicode[0]; keysym = ascii; } switch (vk) { case VK_BACK: keysym = XKB_KEY_BackSpace; break; case VK_TAB: keysym = XKB_KEY_Tab; break; //case VK_: keysym = XKB_KEY_Linefeed; break; case VK_CLEAR: keysym = XKB_KEY_Clear; break; case VK_RETURN: keysym = XKB_KEY_Return; break; case VK_PAUSE: keysym = XKB_KEY_Pause; break; case VK_SCROLL: keysym = XKB_KEY_Scroll_Lock; break; //case VK_: keysym = XKB_KEY_Sys_Req; break; case VK_ESCAPE: keysym = XKB_KEY_Escape; break; case VK_DELETE: keysym = XKB_KEY_Delete; break; case VK_HOME: keysym = XKB_KEY_Home; break; case VK_LEFT: keysym = XKB_KEY_Left; break; case VK_UP: keysym = XKB_KEY_Up; break; case VK_RIGHT: keysym = XKB_KEY_Right; break; case VK_DOWN: keysym = XKB_KEY_Down; break; //case VK_PRIOR: keysym = XKB_KEY_Prior; break; case VK_PRIOR: keysym = XKB_KEY_Page_Up; break; //case VK_NEXT: keysym = XKB_KEY_Next; break; case VK_NEXT: keysym = XKB_KEY_Page_Down; break; case VK_END: keysym = XKB_KEY_End; break; //case VK_: keysym = XKB_KEY_Begin; break; case VK_SELECT: keysym = XKB_KEY_Select; break; case VK_PRINT: keysym = XKB_KEY_Print; break; case VK_EXECUTE: keysym = XKB_KEY_Execute; break; case VK_INSERT: keysym = XKB_KEY_Insert; break; //case VK_: keysym = XKB_KEY_Undo; break; //case VK_: keysym = XKB_KEY_Redo; break; //case VK_: keysym = XKB_KEY_Menu; break; //case VK_: keysym = XKB_KEY_Find; break; case VK_CANCEL: keysym = XKB_KEY_Cancel; break; case VK_HELP: keysym = XKB_KEY_Help; break; //case VK_: keysym = XKB_KEY_Break; break; //case VK_: keysym = XKB_KEY_Mode_switch; break; //case VK_: keysym = XKB_KEY_script_switch; break; case VK_NUMLOCK: keysym = XKB_KEY_Num_Lock; break; //case VK_: keysym = XKB_KEY_KP_Space; break; //case VK_: keysym = XKB_KEY_KP_Tab; break; //case VK_: keysym = XKB_KEY_KP_Enter; break; //case VK_: keysym = XKB_KEY_KP_F1; break; //case VK_: keysym = XKB_KEY_KP_F2; break; //case VK_: keysym = XKB_KEY_KP_F3; break; //case VK_: keysym = XKB_KEY_KP_F4; break; //case VK_: keysym = XKB_KEY_KP_Home; break; //case VK_: keysym = XKB_KEY_KP_Left; break; //case VK_: keysym = XKB_KEY_KP_Up; break; //case VK_: keysym = XKB_KEY_KP_Right; break; //case VK_: keysym = XKB_KEY_KP_Down; break; //case VK_: keysym = XKB_KEY_KP_Prior; break; //case VK_: keysym = XKB_KEY_KP_Page_Up; break; //case VK_: keysym = XKB_KEY_KP_Next; break; //case VK_: keysym = XKB_KEY_KP_Page_Down; break; //case VK_: keysym = XKB_KEY_KP_End 0xff9c //case VK_: keysym = XKB_KEY_KP_Begin 0xff9d //case VK_: keysym = XKB_KEY_KP_Insert 0xff9e //case VK_: keysym = XKB_KEY_KP_Delete 0xff9f //case VK_: keysym = XKB_KEY_KP_Equal 0xffbd /* Equals */ //case VK_: keysym = XKB_KEY_KP_Multiply 0xffaa //case VK_: keysym = XKB_KEY_KP_Add 0xffab //case VK_: keysym = XKB_KEY_KP_Separator 0xffac /* Separator, often comma */ //case VK_: keysym = XKB_KEY_KP_Subtract 0xffad //case VK_: keysym = XKB_KEY_KP_Decimal 0xffae //case VK_: keysym = XKB_KEY_KP_Divide 0xffaf case VK_NUMPAD0: keysym = XKB_KEY_KP_0; break; case VK_NUMPAD1: keysym = XKB_KEY_KP_1; break; case VK_NUMPAD2: keysym = XKB_KEY_KP_2; break; case VK_NUMPAD3: keysym = XKB_KEY_KP_3; break; case VK_NUMPAD4: keysym = XKB_KEY_KP_4; break; case VK_NUMPAD5: keysym = XKB_KEY_KP_5; break; case VK_NUMPAD6: keysym = XKB_KEY_KP_6; break; case VK_NUMPAD7: keysym = XKB_KEY_KP_7; break; case VK_NUMPAD8: keysym = XKB_KEY_KP_8; break; case VK_NUMPAD9: keysym = XKB_KEY_KP_9; break; case VK_F1: keysym = XKB_KEY_F1; break; case VK_F2: keysym = XKB_KEY_F2; break; case VK_F3: keysym = XKB_KEY_F3; break; case VK_F4: keysym = XKB_KEY_F4; break; case VK_F5: keysym = XKB_KEY_F5; break; case VK_F6: keysym = XKB_KEY_F6; break; case VK_F7: keysym = XKB_KEY_F7; break; case VK_F8: keysym = XKB_KEY_F8; break; case VK_F9: keysym = XKB_KEY_F9; break; case VK_F10: keysym = XKB_KEY_F10; break; case VK_F11: keysym = XKB_KEY_F11; break; //case VK_: keysym = XKB_KEY_L1; break; case VK_F12: keysym = XKB_KEY_F12; break; //case VK_: keysym = XKB_KEY_L2; break; case VK_F13: keysym = XKB_KEY_F13; break; //case VK_: keysym = XKB_KEY_L3; break; case VK_F14: keysym = XKB_KEY_F14; break; //case VK_: keysym = XKB_KEY_L4; break; case VK_F15: keysym = XKB_KEY_F15; break; //case VK_: keysym = XKB_KEY_L5; break; case VK_F16: keysym = XKB_KEY_F16; break; //case VK_: keysym = XKB_KEY_L6; break; case VK_F17: keysym = XKB_KEY_F17; break; //case VK_: keysym = XKB_KEY_L7; break; case VK_F18: keysym = XKB_KEY_F18; break; //case VK_: keysym = XKB_KEY_L8; break; case VK_F19: keysym = XKB_KEY_F19; break; //case VK_: keysym = XKB_KEY_L9; break; case VK_F20: keysym = XKB_KEY_F20; break; //case VK_: keysym = XKB_KEY_L10; break; case VK_F21: keysym = XKB_KEY_F21; break; //case VK_: keysym = XKB_KEY_R1; break; case VK_F22: keysym = XKB_KEY_F22; break; //case VK_: keysym = XKB_KEY_R2; break; case VK_F23: keysym = XKB_KEY_F23; break; //case VK_: keysym = XKB_KEY_R3; break; case VK_F24: keysym = XKB_KEY_F24; break; //case VK_: keysym = XKB_KEY_R4; break; //case VK_: keysym = XKB_KEY_F25; break; //case VK_: keysym = XKB_KEY_R5; break; //case VK_: keysym = XKB_KEY_F26; break; //case VK_: keysym = XKB_KEY_R6; break; //case VK_: keysym = XKB_KEY_F27; break; //case VK_: keysym = XKB_KEY_R7; break; //case VK_: keysym = XKB_KEY_F28; break; //case VK_: keysym = XKB_KEY_R8; break; //case VK_: keysym = XKB_KEY_F29; break; //case VK_: keysym = XKB_KEY_R9; break; //case VK_: keysym = XKB_KEY_F30; break; //case VK_: keysym = XKB_KEY_R10; break; //case VK_: keysym = XKB_KEY_F31; break; //case VK_: keysym = XKB_KEY_R11; break; //case VK_: keysym = XKB_KEY_F32; break; //case VK_: keysym = XKB_KEY_R12; break; //case VK_: keysym = XKB_KEY_F33; break; //case VK_: keysym = XKB_KEY_R13; break; //case VK_: keysym = XKB_KEY_F34; break; //case VK_: keysym = XKB_KEY_R14; break; //case VK_: keysym = XKB_KEY_F35; break; //case VK_: keysym = XKB_KEY_R15; break; } tsm_screen_selection_reset(data->screen); if (vk != VK_SHIFT && vk != VK_CONTROL && vk != VK_MENU) tsm_screen_sb_reset(data->screen); bool b = tsm_vte_handle_keyboard(data->vte, keysym, ascii, mods, unicode); InvalidateRect(hWnd, nullptr, TRUE); } FORWARD_WM_KEYDOWN(hWnd, vk, cRepeat, flags, MyDefWindowProc); } int RadTerminalWindowOnMouseActivate(HWND hWnd, HWND hwndTopLevel, UINT codeHitTest, UINT msg) { int result = FORWARD_WM_MOUSEACTIVATE(hWnd, hwndTopLevel, codeHitTest, msg, MyDefWindowProc); static HWND s_hWnd = NULL; // MDI Windows get a WM_MOUSE_ACTIVATE on every mouse click, not just the first to make it active if (s_hWnd != hWnd && result == MA_ACTIVATE && codeHitTest == HTCLIENT) { s_hWnd = hWnd; return MA_ACTIVATEANDEAT; } return result; } void RadTerminalWindowOnMouseMove(HWND hWnd, int x, int y, UINT keyFlags) { FORWARD_WM_MOUSEMOVE(hWnd, x, y, keyFlags, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); if (GetCapture() == hWnd) { const COORD pos = GetCellPos(&data->draw_info, { x, y }); tsm_screen_selection_target(data->screen, pos.X, pos.Y); InvalidateRect(hWnd, nullptr, TRUE); } } void RadTerminalWindowOnLButtonDown(HWND hWnd, BOOL fDoubleClick, int x, int y, UINT keyFlags) { FORWARD_WM_LBUTTONDOWN(hWnd, fDoubleClick, x, y, keyFlags, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); if (MyGetActiveWnd(hWnd) == hWnd) { // TODO Handle fDoubleClick to select word SetCapture(hWnd); COORD pos = GetCellPos(&data->draw_info, { x, y }); tsm_screen_selection_start(data->screen, pos.X, pos.Y); InvalidateRect(hWnd, nullptr, TRUE); } } void RadTerminalWindowOnLButtonUp(HWND hWnd, int x, int y, UINT keyFlags) { FORWARD_WM_LBUTTONUP(hWnd, x, y, keyFlags, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); if (GetCapture() == hWnd) ReleaseCapture(); } void RadTerminalWindowOnRButtonDown(HWND hWnd, BOOL fDoubleClick, int x, int y, UINT keyFlags) { FORWARD_WM_RBUTTONDOWN(hWnd, fDoubleClick, x, y, keyFlags, MyDefWindowProc); if (ActionCopyToClipboard(hWnd) < 0) ActionPasteFromClipboard(hWnd); } void RadTerminalWindowOnTimer(HWND hWnd, UINT id) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); switch (id) { case 2: { HWND hActive = MyGetActiveWnd(hWnd); if (hActive == hWnd) { HDC hdc = GetDC(hWnd); DrawCursor(hdc, data); ReleaseDC(hWnd, hdc); } } break; } } void RadTerminalWindowOnSize(HWND hWnd, UINT state, int cx, int cy) { if (state == SIZE_RESTORED || state == SIZE_MAXIMIZED) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); SIZE sz = GetCellSize(&data->draw_info); COORD size = { (SHORT) (cx / sz.cx), (SHORT) (cy / sz.cy) }; int e = tsm_screen_resize(data->screen, size.X, size.Y); ResizePseudoConsole(data->spd.hPC, size); FixScrollbar(hWnd); } FORWARD_WM_SIZE(hWnd, state, cx, cy, MyDefWindowProc); } void RadTerminalWindowOnSizing(HWND hWnd, UINT edge, LPRECT prRect) { FORWARD_WM_SIZING(hWnd, edge, prRect, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const DWORD style = GetWindowStyle(hWnd); const DWORD exstyle = GetWindowExStyle(hWnd); const BOOL fMenu = GetMenu(hWnd) != NULL; CHECK_ONLY(UnadjustWindowRectEx(prRect, style, fMenu, exstyle)); if (style & WS_VSCROLL) prRect->right -= GetSystemMetrics(SM_CXVSCROLL); SIZE sz = GetCellSize(&data->draw_info); COORD size = { (SHORT) ((prRect->right - prRect->left) / sz.cx), (SHORT) ((prRect->bottom - prRect->top) / sz.cy) }; switch (edge) { case WMSZ_LEFT: case WMSZ_TOPLEFT: case WMSZ_BOTTOMLEFT: prRect->left = prRect->right - size.X * sz.cx; break; case WMSZ_RIGHT: case WMSZ_TOPRIGHT: case WMSZ_BOTTOMRIGHT: prRect->right = prRect->left + size.X * sz.cx; break; } switch (edge) { case WMSZ_TOP: case WMSZ_TOPLEFT: case WMSZ_TOPRIGHT: prRect->top = prRect->bottom - size.Y * sz.cy; break; case WMSZ_BOTTOM: case WMSZ_BOTTOMLEFT: case WMSZ_BOTTOMRIGHT: prRect->bottom = prRect->top + size.Y * sz.cy; break; } if (style & WS_VSCROLL) prRect->right += GetSystemMetrics(SM_CXVSCROLL); CHECK_ONLY(AdjustWindowRectEx(prRect, style, fMenu, exstyle)); //prRect->right += 100; } void RadTerminalWindowOnVScroll(HWND hWnd, HWND hWndCtl, UINT code, int pos) { FORWARD_WM_VSCROLL(hWnd, hWndCtl, code, pos, MyDefWindowProc); const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const int op = GetScrollPos(hWnd, SB_VERT); int d = 0; switch (code) { case SB_LINEUP: d -= 1; break; case SB_LINEDOWN: d += 1; break; case SB_PAGEUP: d -= tsm_screen_get_height(data->screen) - 1; break; case SB_PAGEDOWN: d += tsm_screen_get_height(data->screen) - 1; break; case SB_THUMBTRACK: d = pos - (tsm_screen_sb_count(data->screen) - tsm_screen_sb_depth(data->screen)); break; } if (d != 0) { if (d < 0) tsm_screen_sb_up(data->screen, -d); else tsm_screen_sb_down(data->screen, d); InvalidateRect(hWnd, nullptr, TRUE); SetScrollPos(hWnd, SB_VERT, op + d, TRUE); VERIFY(CheckScrollBar(hWnd)); } } void RadTerminalWindowOnDropFiles(HWND hWnd, HDROP hDrop) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const int count = DragQueryFile(hDrop, 0xFFFFFFFF, nullptr, 0); for (int i = 0; i < count; ++i) { TCHAR buf[MAX_PATH]; DragQueryFile(hDrop, i, buf, ARRAYSIZE(buf)); const uint32_t keysym = XKB_KEY_NoSymbol; if (i != 0) tsm_vte_paste(data->vte, _T(" ")); tsm_vte_paste(data->vte, buf); } DragFinish(hDrop); } void RadTerminalWindowOnCommand(HWND hWnd, int id, HWND hWndCtl, UINT codeNotify) { switch (id) { case ID_FILE_CLOSE: PostMessage(hWnd, WM_CLOSE, 0, 0); break; default: FORWARD_WM_COMMAND(hWnd, id, hWndCtl, codeNotify, MyDefWindowProc); break; } } LRESULT RadTerminalWindowOnWatch(HWND hWnd, WPARAM wParam, LPARAM lParam) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); HANDLE h = (HANDLE) wParam; if (h == data->spd.pi.hProcess) { PostMessage(hWnd, WM_CLOSE, 0, 0); } return 0; } LRESULT RadTerminalWindowOnRead(HWND hWnd, WPARAM wParam, LPARAM lParam) { const RadTerminalData* const data = (RadTerminalData*) GetWindowLongPtr(hWnd, GWLP_USERDATA); const char* buf = (const char*) wParam; DWORD len = (DWORD) lParam; tsm_vte_input(data->vte, buf, len); FixScrollbar(hWnd); InvalidateRect(hWnd, nullptr, TRUE); return 0; } /* LRESULT Cls_StdMessage(HWND hWnd, WPARAM wParam, LPARAM lParam) */ #define HANDLE_STD_MSG(hwnd, message, fn) \ case (message): return fn((hwnd), (wParam), (lParam)) LRESULT CALLBACK RadTerminalWindowProc(HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam) { //return MyDefWindowProc(hWnd, uMsg, wParam, lParam); switch (uMsg) { HANDLE_MSG(hWnd, WM_CREATE, RadTerminalWindowOnCreate); HANDLE_MSG(hWnd, WM_DESTROY, RadTerminalWindowOnDestroy); HANDLE_MSG(hWnd, WM_PAINT, RadTerminalWindowOnPaint); HANDLE_MSG(hWnd, WM_KEYDOWN, RadTerminalWindowOnKeyDown); HANDLE_MSG(hWnd, WM_MOUSEACTIVATE, RadTerminalWindowOnMouseActivate); HANDLE_MSG(hWnd, WM_MOUSEMOVE, RadTerminalWindowOnMouseMove); HANDLE_MSG(hWnd, WM_LBUTTONDOWN, RadTerminalWindowOnLButtonDown); HANDLE_MSG(hWnd, WM_LBUTTONUP, RadTerminalWindowOnLButtonUp); HANDLE_MSG(hWnd, WM_RBUTTONDOWN, RadTerminalWindowOnRButtonDown); HANDLE_MSG(hWnd, WM_TIMER, RadTerminalWindowOnTimer); HANDLE_MSG(hWnd, WM_SIZE, RadTerminalWindowOnSize); HANDLE_MSG(hWnd, WM_SIZING, RadTerminalWindowOnSizing); HANDLE_MSG(hWnd, WM_VSCROLL, RadTerminalWindowOnVScroll); HANDLE_MSG(hWnd, WM_DROPFILES, RadTerminalWindowOnDropFiles); HANDLE_MSG(hWnd, WM_COMMAND, RadTerminalWindowOnCommand); HANDLE_STD_MSG(hWnd, WM_WATCH, RadTerminalWindowOnWatch); HANDLE_STD_MSG(hWnd, WM_READ, RadTerminalWindowOnRead); default: return MyDefWindowProc(hWnd, uMsg, wParam, lParam); } }