1 //===-- IOHandlerCursesGUI.cpp --------------------------------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "lldb/Core/IOHandlerCursesGUI.h" 10 #include "lldb/Host/Config.h" 11 12 #if LLDB_ENABLE_CURSES 13 #if CURSES_HAVE_NCURSES_CURSES_H 14 #include <ncurses/curses.h> 15 #include <ncurses/panel.h> 16 #else 17 #include <curses.h> 18 #include <panel.h> 19 #endif 20 #endif 21 22 #if defined(__APPLE__) 23 #include <deque> 24 #endif 25 #include <string> 26 27 #include "lldb/Core/Debugger.h" 28 #include "lldb/Core/StreamFile.h" 29 #include "lldb/Core/ValueObjectUpdater.h" 30 #include "lldb/Host/File.h" 31 #include "lldb/Utility/AnsiTerminal.h" 32 #include "lldb/Utility/Predicate.h" 33 #include "lldb/Utility/Status.h" 34 #include "lldb/Utility/StreamString.h" 35 #include "lldb/Utility/StringList.h" 36 #include "lldb/lldb-forward.h" 37 38 #include "lldb/Interpreter/CommandCompletions.h" 39 #include "lldb/Interpreter/CommandInterpreter.h" 40 #include "lldb/Interpreter/OptionGroupPlatform.h" 41 42 #if LLDB_ENABLE_CURSES 43 #include "lldb/Breakpoint/BreakpointLocation.h" 44 #include "lldb/Core/Module.h" 45 #include "lldb/Core/PluginManager.h" 46 #include "lldb/Core/ValueObject.h" 47 #include "lldb/Core/ValueObjectRegister.h" 48 #include "lldb/Symbol/Block.h" 49 #include "lldb/Symbol/CompileUnit.h" 50 #include "lldb/Symbol/Function.h" 51 #include "lldb/Symbol/Symbol.h" 52 #include "lldb/Symbol/VariableList.h" 53 #include "lldb/Target/Process.h" 54 #include "lldb/Target/RegisterContext.h" 55 #include "lldb/Target/StackFrame.h" 56 #include "lldb/Target/StopInfo.h" 57 #include "lldb/Target/Target.h" 58 #include "lldb/Target/Thread.h" 59 #include "lldb/Utility/State.h" 60 #endif 61 62 #include "llvm/ADT/StringRef.h" 63 64 #ifdef _WIN32 65 #include "lldb/Host/windows/windows.h" 66 #endif 67 68 #include <memory> 69 #include <mutex> 70 71 #include <cassert> 72 #include <cctype> 73 #include <cerrno> 74 #include <cstdint> 75 #include <cstdio> 76 #include <cstring> 77 #include <functional> 78 #include <optional> 79 #include <type_traits> 80 81 using namespace lldb; 82 using namespace lldb_private; 83 using llvm::StringRef; 84 85 // we may want curses to be disabled for some builds for instance, windows 86 #if LLDB_ENABLE_CURSES 87 88 #define KEY_CTRL_A 1 89 #define KEY_CTRL_E 5 90 #define KEY_CTRL_K 11 91 #define KEY_RETURN 10 92 #define KEY_ESCAPE 27 93 #define KEY_DELETE 127 94 95 #define KEY_SHIFT_TAB (KEY_MAX + 1) 96 #define KEY_ALT_ENTER (KEY_MAX + 2) 97 98 namespace curses { 99 class Menu; 100 class MenuDelegate; 101 class Window; 102 class WindowDelegate; 103 typedef std::shared_ptr<Menu> MenuSP; 104 typedef std::shared_ptr<MenuDelegate> MenuDelegateSP; 105 typedef std::shared_ptr<Window> WindowSP; 106 typedef std::shared_ptr<WindowDelegate> WindowDelegateSP; 107 typedef std::vector<MenuSP> Menus; 108 typedef std::vector<WindowSP> Windows; 109 typedef std::vector<WindowDelegateSP> WindowDelegates; 110 111 #if 0 112 type summary add -s "x=${var.x}, y=${var.y}" curses::Point 113 type summary add -s "w=${var.width}, h=${var.height}" curses::Size 114 type summary add -s "${var.origin%S} ${var.size%S}" curses::Rect 115 #endif 116 117 struct Point { 118 int x; 119 int y; 120 121 Point(int _x = 0, int _y = 0) : x(_x), y(_y) {} 122 123 void Clear() { 124 x = 0; 125 y = 0; 126 } 127 128 Point &operator+=(const Point &rhs) { 129 x += rhs.x; 130 y += rhs.y; 131 return *this; 132 } 133 134 void Dump() { printf("(x=%i, y=%i)\n", x, y); } 135 }; 136 137 bool operator==(const Point &lhs, const Point &rhs) { 138 return lhs.x == rhs.x && lhs.y == rhs.y; 139 } 140 141 bool operator!=(const Point &lhs, const Point &rhs) { 142 return lhs.x != rhs.x || lhs.y != rhs.y; 143 } 144 145 struct Size { 146 int width; 147 int height; 148 Size(int w = 0, int h = 0) : width(w), height(h) {} 149 150 void Clear() { 151 width = 0; 152 height = 0; 153 } 154 155 void Dump() { printf("(w=%i, h=%i)\n", width, height); } 156 }; 157 158 bool operator==(const Size &lhs, const Size &rhs) { 159 return lhs.width == rhs.width && lhs.height == rhs.height; 160 } 161 162 bool operator!=(const Size &lhs, const Size &rhs) { 163 return lhs.width != rhs.width || lhs.height != rhs.height; 164 } 165 166 struct Rect { 167 Point origin; 168 Size size; 169 170 Rect() : origin(), size() {} 171 172 Rect(const Point &p, const Size &s) : origin(p), size(s) {} 173 174 void Clear() { 175 origin.Clear(); 176 size.Clear(); 177 } 178 179 void Dump() { 180 printf("(x=%i, y=%i), w=%i, h=%i)\n", origin.x, origin.y, size.width, 181 size.height); 182 } 183 184 void Inset(int w, int h) { 185 if (size.width > w * 2) 186 size.width -= w * 2; 187 origin.x += w; 188 189 if (size.height > h * 2) 190 size.height -= h * 2; 191 origin.y += h; 192 } 193 194 // Return a status bar rectangle which is the last line of this rectangle. 195 // This rectangle will be modified to not include the status bar area. 196 Rect MakeStatusBar() { 197 Rect status_bar; 198 if (size.height > 1) { 199 status_bar.origin.x = origin.x; 200 status_bar.origin.y = size.height; 201 status_bar.size.width = size.width; 202 status_bar.size.height = 1; 203 --size.height; 204 } 205 return status_bar; 206 } 207 208 // Return a menubar rectangle which is the first line of this rectangle. This 209 // rectangle will be modified to not include the menubar area. 210 Rect MakeMenuBar() { 211 Rect menubar; 212 if (size.height > 1) { 213 menubar.origin.x = origin.x; 214 menubar.origin.y = origin.y; 215 menubar.size.width = size.width; 216 menubar.size.height = 1; 217 ++origin.y; 218 --size.height; 219 } 220 return menubar; 221 } 222 223 void HorizontalSplitPercentage(float top_percentage, Rect &top, 224 Rect &bottom) const { 225 float top_height = top_percentage * size.height; 226 HorizontalSplit(top_height, top, bottom); 227 } 228 229 void HorizontalSplit(int top_height, Rect &top, Rect &bottom) const { 230 top = *this; 231 if (top_height < size.height) { 232 top.size.height = top_height; 233 bottom.origin.x = origin.x; 234 bottom.origin.y = origin.y + top.size.height; 235 bottom.size.width = size.width; 236 bottom.size.height = size.height - top.size.height; 237 } else { 238 bottom.Clear(); 239 } 240 } 241 242 void VerticalSplitPercentage(float left_percentage, Rect &left, 243 Rect &right) const { 244 float left_width = left_percentage * size.width; 245 VerticalSplit(left_width, left, right); 246 } 247 248 void VerticalSplit(int left_width, Rect &left, Rect &right) const { 249 left = *this; 250 if (left_width < size.width) { 251 left.size.width = left_width; 252 right.origin.x = origin.x + left.size.width; 253 right.origin.y = origin.y; 254 right.size.width = size.width - left.size.width; 255 right.size.height = size.height; 256 } else { 257 right.Clear(); 258 } 259 } 260 }; 261 262 bool operator==(const Rect &lhs, const Rect &rhs) { 263 return lhs.origin == rhs.origin && lhs.size == rhs.size; 264 } 265 266 bool operator!=(const Rect &lhs, const Rect &rhs) { 267 return lhs.origin != rhs.origin || lhs.size != rhs.size; 268 } 269 270 enum HandleCharResult { 271 eKeyNotHandled = 0, 272 eKeyHandled = 1, 273 eQuitApplication = 2 274 }; 275 276 enum class MenuActionResult { 277 Handled, 278 NotHandled, 279 Quit // Exit all menus and quit 280 }; 281 282 struct KeyHelp { 283 int ch; 284 const char *description; 285 }; 286 287 // COLOR_PAIR index names 288 enum { 289 // First 16 colors are 8 black background and 8 blue background colors, 290 // needed by OutputColoredStringTruncated(). 291 BlackOnBlack = 1, 292 RedOnBlack, 293 GreenOnBlack, 294 YellowOnBlack, 295 BlueOnBlack, 296 MagentaOnBlack, 297 CyanOnBlack, 298 WhiteOnBlack, 299 BlackOnBlue, 300 RedOnBlue, 301 GreenOnBlue, 302 YellowOnBlue, 303 BlueOnBlue, 304 MagentaOnBlue, 305 CyanOnBlue, 306 WhiteOnBlue, 307 // Other colors, as needed. 308 BlackOnWhite, 309 MagentaOnWhite, 310 LastColorPairIndex = MagentaOnWhite 311 }; 312 313 class WindowDelegate { 314 public: 315 virtual ~WindowDelegate() = default; 316 317 virtual bool WindowDelegateDraw(Window &window, bool force) { 318 return false; // Drawing not handled 319 } 320 321 virtual HandleCharResult WindowDelegateHandleChar(Window &window, int key) { 322 return eKeyNotHandled; 323 } 324 325 virtual const char *WindowDelegateGetHelpText() { return nullptr; } 326 327 virtual KeyHelp *WindowDelegateGetKeyHelp() { return nullptr; } 328 }; 329 330 class HelpDialogDelegate : public WindowDelegate { 331 public: 332 HelpDialogDelegate(const char *text, KeyHelp *key_help_array); 333 334 ~HelpDialogDelegate() override; 335 336 bool WindowDelegateDraw(Window &window, bool force) override; 337 338 HandleCharResult WindowDelegateHandleChar(Window &window, int key) override; 339 340 size_t GetNumLines() const { return m_text.GetSize(); } 341 342 size_t GetMaxLineLength() const { return m_text.GetMaxStringLength(); } 343 344 protected: 345 StringList m_text; 346 int m_first_visible_line = 0; 347 }; 348 349 // A surface is an abstraction for something than can be drawn on. The surface 350 // have a width, a height, a cursor position, and a multitude of drawing 351 // operations. This type should be sub-classed to get an actually useful ncurses 352 // object, such as a Window or a Pad. 353 class Surface { 354 public: 355 enum class Type { Window, Pad }; 356 357 Surface(Surface::Type type) : m_type(type) {} 358 359 WINDOW *get() { return m_window; } 360 361 operator WINDOW *() { return m_window; } 362 363 Surface SubSurface(Rect bounds) { 364 Surface subSurface(m_type); 365 if (m_type == Type::Pad) 366 subSurface.m_window = 367 ::subpad(m_window, bounds.size.height, bounds.size.width, 368 bounds.origin.y, bounds.origin.x); 369 else 370 subSurface.m_window = 371 ::derwin(m_window, bounds.size.height, bounds.size.width, 372 bounds.origin.y, bounds.origin.x); 373 return subSurface; 374 } 375 376 // Copy a region of the surface to another surface. 377 void CopyToSurface(Surface &target, Point source_origin, Point target_origin, 378 Size size) { 379 ::copywin(m_window, target.get(), source_origin.y, source_origin.x, 380 target_origin.y, target_origin.x, 381 target_origin.y + size.height - 1, 382 target_origin.x + size.width - 1, false); 383 } 384 385 int GetCursorX() const { return getcurx(m_window); } 386 int GetCursorY() const { return getcury(m_window); } 387 void MoveCursor(int x, int y) { ::wmove(m_window, y, x); } 388 389 void AttributeOn(attr_t attr) { ::wattron(m_window, attr); } 390 void AttributeOff(attr_t attr) { ::wattroff(m_window, attr); } 391 392 int GetMaxX() const { return getmaxx(m_window); } 393 int GetMaxY() const { return getmaxy(m_window); } 394 int GetWidth() const { return GetMaxX(); } 395 int GetHeight() const { return GetMaxY(); } 396 Size GetSize() const { return Size(GetWidth(), GetHeight()); } 397 // Get a zero origin rectangle width the surface size. 398 Rect GetFrame() const { return Rect(Point(), GetSize()); } 399 400 void Clear() { ::wclear(m_window); } 401 void Erase() { ::werase(m_window); } 402 403 void SetBackground(int color_pair_idx) { 404 ::wbkgd(m_window, COLOR_PAIR(color_pair_idx)); 405 } 406 407 void PutChar(int ch) { ::waddch(m_window, ch); } 408 void PutCString(const char *s, int len = -1) { ::waddnstr(m_window, s, len); } 409 410 void PutCStringTruncated(int right_pad, const char *s, int len = -1) { 411 int bytes_left = GetWidth() - GetCursorX(); 412 if (bytes_left > right_pad) { 413 bytes_left -= right_pad; 414 ::waddnstr(m_window, s, len < 0 ? bytes_left : std::min(bytes_left, len)); 415 } 416 } 417 418 void Printf(const char *format, ...) __attribute__((format(printf, 2, 3))) { 419 va_list args; 420 va_start(args, format); 421 vw_printw(m_window, format, args); 422 va_end(args); 423 } 424 425 void PrintfTruncated(int right_pad, const char *format, ...) 426 __attribute__((format(printf, 3, 4))) { 427 va_list args; 428 va_start(args, format); 429 StreamString strm; 430 strm.PrintfVarArg(format, args); 431 va_end(args); 432 PutCStringTruncated(right_pad, strm.GetData()); 433 } 434 435 void VerticalLine(int n, chtype v_char = ACS_VLINE) { 436 ::wvline(m_window, v_char, n); 437 } 438 void HorizontalLine(int n, chtype h_char = ACS_HLINE) { 439 ::whline(m_window, h_char, n); 440 } 441 void Box(chtype v_char = ACS_VLINE, chtype h_char = ACS_HLINE) { 442 ::box(m_window, v_char, h_char); 443 } 444 445 void TitledBox(const char *title, chtype v_char = ACS_VLINE, 446 chtype h_char = ACS_HLINE) { 447 Box(v_char, h_char); 448 int title_offset = 2; 449 MoveCursor(title_offset, 0); 450 PutChar('['); 451 PutCString(title, GetWidth() - title_offset); 452 PutChar(']'); 453 } 454 455 void Box(const Rect &bounds, chtype v_char = ACS_VLINE, 456 chtype h_char = ACS_HLINE) { 457 MoveCursor(bounds.origin.x, bounds.origin.y); 458 VerticalLine(bounds.size.height); 459 HorizontalLine(bounds.size.width); 460 PutChar(ACS_ULCORNER); 461 462 MoveCursor(bounds.origin.x + bounds.size.width - 1, bounds.origin.y); 463 VerticalLine(bounds.size.height); 464 PutChar(ACS_URCORNER); 465 466 MoveCursor(bounds.origin.x, bounds.origin.y + bounds.size.height - 1); 467 HorizontalLine(bounds.size.width); 468 PutChar(ACS_LLCORNER); 469 470 MoveCursor(bounds.origin.x + bounds.size.width - 1, 471 bounds.origin.y + bounds.size.height - 1); 472 PutChar(ACS_LRCORNER); 473 } 474 475 void TitledBox(const Rect &bounds, const char *title, 476 chtype v_char = ACS_VLINE, chtype h_char = ACS_HLINE) { 477 Box(bounds, v_char, h_char); 478 int title_offset = 2; 479 MoveCursor(bounds.origin.x + title_offset, bounds.origin.y); 480 PutChar('['); 481 PutCString(title, bounds.size.width - title_offset); 482 PutChar(']'); 483 } 484 485 // Curses doesn't allow direct output of color escape sequences, but that's 486 // how we get source lines from the Highligher class. Read the line and 487 // convert color escape sequences to curses color attributes. Use 488 // first_skip_count to skip leading visible characters. Returns false if all 489 // visible characters were skipped due to first_skip_count. 490 bool OutputColoredStringTruncated(int right_pad, StringRef string, 491 size_t skip_first_count, 492 bool use_blue_background) { 493 attr_t saved_attr; 494 short saved_pair; 495 bool result = false; 496 wattr_get(m_window, &saved_attr, &saved_pair, nullptr); 497 if (use_blue_background) 498 ::wattron(m_window, COLOR_PAIR(WhiteOnBlue)); 499 while (!string.empty()) { 500 size_t esc_pos = string.find(ANSI_ESC_START); 501 if (esc_pos == StringRef::npos) { 502 string = string.substr(skip_first_count); 503 if (!string.empty()) { 504 PutCStringTruncated(right_pad, string.data(), string.size()); 505 result = true; 506 } 507 break; 508 } 509 if (esc_pos > 0) { 510 if (skip_first_count > 0) { 511 int skip = std::min(esc_pos, skip_first_count); 512 string = string.substr(skip); 513 skip_first_count -= skip; 514 esc_pos -= skip; 515 } 516 if (esc_pos > 0) { 517 PutCStringTruncated(right_pad, string.data(), esc_pos); 518 result = true; 519 string = string.drop_front(esc_pos); 520 } 521 } 522 bool consumed = string.consume_front(ANSI_ESC_START); 523 assert(consumed); 524 UNUSED_IF_ASSERT_DISABLED(consumed); 525 // This is written to match our Highlighter classes, which seem to 526 // generate only foreground color escape sequences. If necessary, this 527 // will need to be extended. 528 // Only 8 basic foreground colors, underline and reset, our Highlighter 529 // doesn't use anything else. 530 int value; 531 if (!!string.consumeInteger(10, value) || // Returns false on success. 532 !(value == 0 || value == ANSI_CTRL_UNDERLINE || 533 (value >= ANSI_FG_COLOR_BLACK && value <= ANSI_FG_COLOR_WHITE))) { 534 llvm::errs() << "No valid color code in color escape sequence.\n"; 535 continue; 536 } 537 if (!string.consume_front(ANSI_ESC_END)) { 538 llvm::errs() << "Missing '" << ANSI_ESC_END 539 << "' in color escape sequence.\n"; 540 continue; 541 } 542 if (value == 0) { // Reset. 543 wattr_set(m_window, saved_attr, saved_pair, nullptr); 544 if (use_blue_background) 545 ::wattron(m_window, COLOR_PAIR(WhiteOnBlue)); 546 } else if (value == ANSI_CTRL_UNDERLINE) { 547 ::wattron(m_window, A_UNDERLINE); 548 } else { 549 // Mapped directly to first 16 color pairs (black/blue background). 550 ::wattron(m_window, COLOR_PAIR(value - ANSI_FG_COLOR_BLACK + 1 + 551 (use_blue_background ? 8 : 0))); 552 } 553 } 554 wattr_set(m_window, saved_attr, saved_pair, nullptr); 555 return result; 556 } 557 558 protected: 559 Type m_type; 560 WINDOW *m_window = nullptr; 561 }; 562 563 class Pad : public Surface { 564 public: 565 Pad(Size size) : Surface(Surface::Type::Pad) { 566 m_window = ::newpad(size.height, size.width); 567 } 568 569 ~Pad() { ::delwin(m_window); } 570 }; 571 572 class Window : public Surface { 573 public: 574 Window(const char *name) 575 : Surface(Surface::Type::Window), m_name(name), m_panel(nullptr), 576 m_parent(nullptr), m_subwindows(), m_delegate_sp(), 577 m_curr_active_window_idx(UINT32_MAX), 578 m_prev_active_window_idx(UINT32_MAX), m_delete(false), 579 m_needs_update(true), m_can_activate(true), m_is_subwin(false) {} 580 581 Window(const char *name, WINDOW *w, bool del = true) 582 : Surface(Surface::Type::Window), m_name(name), m_panel(nullptr), 583 m_parent(nullptr), m_subwindows(), m_delegate_sp(), 584 m_curr_active_window_idx(UINT32_MAX), 585 m_prev_active_window_idx(UINT32_MAX), m_delete(del), 586 m_needs_update(true), m_can_activate(true), m_is_subwin(false) { 587 if (w) 588 Reset(w); 589 } 590 591 Window(const char *name, const Rect &bounds) 592 : Surface(Surface::Type::Window), m_name(name), m_panel(nullptr), 593 m_parent(nullptr), m_subwindows(), m_delegate_sp(), 594 m_curr_active_window_idx(UINT32_MAX), 595 m_prev_active_window_idx(UINT32_MAX), m_delete(false), 596 m_needs_update(true), m_can_activate(true), m_is_subwin(false) { 597 Reset(::newwin(bounds.size.height, bounds.size.width, bounds.origin.y, 598 bounds.origin.y)); 599 } 600 601 virtual ~Window() { 602 RemoveSubWindows(); 603 Reset(); 604 } 605 606 void Reset(WINDOW *w = nullptr, bool del = true) { 607 if (m_window == w) 608 return; 609 610 if (m_panel) { 611 ::del_panel(m_panel); 612 m_panel = nullptr; 613 } 614 if (m_window && m_delete) { 615 ::delwin(m_window); 616 m_window = nullptr; 617 m_delete = false; 618 } 619 if (w) { 620 m_window = w; 621 m_panel = ::new_panel(m_window); 622 m_delete = del; 623 } 624 } 625 626 // Get the rectangle in our parent window 627 Rect GetBounds() const { return Rect(GetParentOrigin(), GetSize()); } 628 629 Rect GetCenteredRect(int width, int height) { 630 Size size = GetSize(); 631 width = std::min(size.width, width); 632 height = std::min(size.height, height); 633 int x = (size.width - width) / 2; 634 int y = (size.height - height) / 2; 635 return Rect(Point(x, y), Size(width, height)); 636 } 637 638 int GetChar() { return ::wgetch(m_window); } 639 Point GetParentOrigin() const { return Point(GetParentX(), GetParentY()); } 640 int GetParentX() const { return getparx(m_window); } 641 int GetParentY() const { return getpary(m_window); } 642 void MoveWindow(int x, int y) { MoveWindow(Point(x, y)); } 643 void Resize(int w, int h) { ::wresize(m_window, h, w); } 644 void Resize(const Size &size) { 645 ::wresize(m_window, size.height, size.width); 646 } 647 void MoveWindow(const Point &origin) { 648 const bool moving_window = origin != GetParentOrigin(); 649 if (m_is_subwin && moving_window) { 650 // Can't move subwindows, must delete and re-create 651 Size size = GetSize(); 652 Reset(::subwin(m_parent->m_window, size.height, size.width, origin.y, 653 origin.x), 654 true); 655 } else { 656 ::mvwin(m_window, origin.y, origin.x); 657 } 658 } 659 660 void SetBounds(const Rect &bounds) { 661 const bool moving_window = bounds.origin != GetParentOrigin(); 662 if (m_is_subwin && moving_window) { 663 // Can't move subwindows, must delete and re-create 664 Reset(::subwin(m_parent->m_window, bounds.size.height, bounds.size.width, 665 bounds.origin.y, bounds.origin.x), 666 true); 667 } else { 668 if (moving_window) 669 MoveWindow(bounds.origin); 670 Resize(bounds.size); 671 } 672 } 673 674 void Touch() { 675 ::touchwin(m_window); 676 if (m_parent) 677 m_parent->Touch(); 678 } 679 680 WindowSP CreateSubWindow(const char *name, const Rect &bounds, 681 bool make_active) { 682 auto get_window = [this, &bounds]() { 683 return m_window 684 ? ::subwin(m_window, bounds.size.height, bounds.size.width, 685 bounds.origin.y, bounds.origin.x) 686 : ::newwin(bounds.size.height, bounds.size.width, 687 bounds.origin.y, bounds.origin.x); 688 }; 689 WindowSP subwindow_sp = std::make_shared<Window>(name, get_window(), true); 690 subwindow_sp->m_is_subwin = subwindow_sp.operator bool(); 691 subwindow_sp->m_parent = this; 692 if (make_active) { 693 m_prev_active_window_idx = m_curr_active_window_idx; 694 m_curr_active_window_idx = m_subwindows.size(); 695 } 696 m_subwindows.push_back(subwindow_sp); 697 ::top_panel(subwindow_sp->m_panel); 698 m_needs_update = true; 699 return subwindow_sp; 700 } 701 702 bool RemoveSubWindow(Window *window) { 703 Windows::iterator pos, end = m_subwindows.end(); 704 size_t i = 0; 705 for (pos = m_subwindows.begin(); pos != end; ++pos, ++i) { 706 if ((*pos).get() == window) { 707 if (m_prev_active_window_idx == i) 708 m_prev_active_window_idx = UINT32_MAX; 709 else if (m_prev_active_window_idx != UINT32_MAX && 710 m_prev_active_window_idx > i) 711 --m_prev_active_window_idx; 712 713 if (m_curr_active_window_idx == i) 714 m_curr_active_window_idx = UINT32_MAX; 715 else if (m_curr_active_window_idx != UINT32_MAX && 716 m_curr_active_window_idx > i) 717 --m_curr_active_window_idx; 718 window->Erase(); 719 m_subwindows.erase(pos); 720 m_needs_update = true; 721 if (m_parent) 722 m_parent->Touch(); 723 else 724 ::touchwin(stdscr); 725 return true; 726 } 727 } 728 return false; 729 } 730 731 WindowSP FindSubWindow(const char *name) { 732 Windows::iterator pos, end = m_subwindows.end(); 733 size_t i = 0; 734 for (pos = m_subwindows.begin(); pos != end; ++pos, ++i) { 735 if ((*pos)->m_name == name) 736 return *pos; 737 } 738 return WindowSP(); 739 } 740 741 void RemoveSubWindows() { 742 m_curr_active_window_idx = UINT32_MAX; 743 m_prev_active_window_idx = UINT32_MAX; 744 for (Windows::iterator pos = m_subwindows.begin(); 745 pos != m_subwindows.end(); pos = m_subwindows.erase(pos)) { 746 (*pos)->Erase(); 747 } 748 if (m_parent) 749 m_parent->Touch(); 750 else 751 ::touchwin(stdscr); 752 } 753 754 // Window drawing utilities 755 void DrawTitleBox(const char *title, const char *bottom_message = nullptr) { 756 attr_t attr = 0; 757 if (IsActive()) 758 attr = A_BOLD | COLOR_PAIR(BlackOnWhite); 759 else 760 attr = 0; 761 if (attr) 762 AttributeOn(attr); 763 764 Box(); 765 MoveCursor(3, 0); 766 767 if (title && title[0]) { 768 PutChar('<'); 769 PutCString(title); 770 PutChar('>'); 771 } 772 773 if (bottom_message && bottom_message[0]) { 774 int bottom_message_length = strlen(bottom_message); 775 int x = GetWidth() - 3 - (bottom_message_length + 2); 776 777 if (x > 0) { 778 MoveCursor(x, GetHeight() - 1); 779 PutChar('['); 780 PutCString(bottom_message); 781 PutChar(']'); 782 } else { 783 MoveCursor(1, GetHeight() - 1); 784 PutChar('['); 785 PutCStringTruncated(1, bottom_message); 786 } 787 } 788 if (attr) 789 AttributeOff(attr); 790 } 791 792 virtual void Draw(bool force) { 793 if (m_delegate_sp && m_delegate_sp->WindowDelegateDraw(*this, force)) 794 return; 795 796 for (auto &subwindow_sp : m_subwindows) 797 subwindow_sp->Draw(force); 798 } 799 800 bool CreateHelpSubwindow() { 801 if (m_delegate_sp) { 802 const char *text = m_delegate_sp->WindowDelegateGetHelpText(); 803 KeyHelp *key_help = m_delegate_sp->WindowDelegateGetKeyHelp(); 804 if ((text && text[0]) || key_help) { 805 std::unique_ptr<HelpDialogDelegate> help_delegate_up( 806 new HelpDialogDelegate(text, key_help)); 807 const size_t num_lines = help_delegate_up->GetNumLines(); 808 const size_t max_length = help_delegate_up->GetMaxLineLength(); 809 Rect bounds = GetBounds(); 810 bounds.Inset(1, 1); 811 if (max_length + 4 < static_cast<size_t>(bounds.size.width)) { 812 bounds.origin.x += (bounds.size.width - max_length + 4) / 2; 813 bounds.size.width = max_length + 4; 814 } else { 815 if (bounds.size.width > 100) { 816 const int inset_w = bounds.size.width / 4; 817 bounds.origin.x += inset_w; 818 bounds.size.width -= 2 * inset_w; 819 } 820 } 821 822 if (num_lines + 2 < static_cast<size_t>(bounds.size.height)) { 823 bounds.origin.y += (bounds.size.height - num_lines + 2) / 2; 824 bounds.size.height = num_lines + 2; 825 } else { 826 if (bounds.size.height > 100) { 827 const int inset_h = bounds.size.height / 4; 828 bounds.origin.y += inset_h; 829 bounds.size.height -= 2 * inset_h; 830 } 831 } 832 WindowSP help_window_sp; 833 Window *parent_window = GetParent(); 834 if (parent_window) 835 help_window_sp = parent_window->CreateSubWindow("Help", bounds, true); 836 else 837 help_window_sp = CreateSubWindow("Help", bounds, true); 838 help_window_sp->SetDelegate( 839 WindowDelegateSP(help_delegate_up.release())); 840 return true; 841 } 842 } 843 return false; 844 } 845 846 virtual HandleCharResult HandleChar(int key) { 847 // Always check the active window first 848 HandleCharResult result = eKeyNotHandled; 849 WindowSP active_window_sp = GetActiveWindow(); 850 if (active_window_sp) { 851 result = active_window_sp->HandleChar(key); 852 if (result != eKeyNotHandled) 853 return result; 854 } 855 856 if (m_delegate_sp) { 857 result = m_delegate_sp->WindowDelegateHandleChar(*this, key); 858 if (result != eKeyNotHandled) 859 return result; 860 } 861 862 // Then check for any windows that want any keys that weren't handled. This 863 // is typically only for a menubar. Make a copy of the subwindows in case 864 // any HandleChar() functions muck with the subwindows. If we don't do 865 // this, we can crash when iterating over the subwindows. 866 Windows subwindows(m_subwindows); 867 for (auto subwindow_sp : subwindows) { 868 if (!subwindow_sp->m_can_activate) { 869 HandleCharResult result = subwindow_sp->HandleChar(key); 870 if (result != eKeyNotHandled) 871 return result; 872 } 873 } 874 875 return eKeyNotHandled; 876 } 877 878 WindowSP GetActiveWindow() { 879 if (!m_subwindows.empty()) { 880 if (m_curr_active_window_idx >= m_subwindows.size()) { 881 if (m_prev_active_window_idx < m_subwindows.size()) { 882 m_curr_active_window_idx = m_prev_active_window_idx; 883 m_prev_active_window_idx = UINT32_MAX; 884 } else if (IsActive()) { 885 m_prev_active_window_idx = UINT32_MAX; 886 m_curr_active_window_idx = UINT32_MAX; 887 888 // Find first window that wants to be active if this window is active 889 const size_t num_subwindows = m_subwindows.size(); 890 for (size_t i = 0; i < num_subwindows; ++i) { 891 if (m_subwindows[i]->GetCanBeActive()) { 892 m_curr_active_window_idx = i; 893 break; 894 } 895 } 896 } 897 } 898 899 if (m_curr_active_window_idx < m_subwindows.size()) 900 return m_subwindows[m_curr_active_window_idx]; 901 } 902 return WindowSP(); 903 } 904 905 bool GetCanBeActive() const { return m_can_activate; } 906 907 void SetCanBeActive(bool b) { m_can_activate = b; } 908 909 void SetDelegate(const WindowDelegateSP &delegate_sp) { 910 m_delegate_sp = delegate_sp; 911 } 912 913 Window *GetParent() const { return m_parent; } 914 915 bool IsActive() const { 916 if (m_parent) 917 return m_parent->GetActiveWindow().get() == this; 918 else 919 return true; // Top level window is always active 920 } 921 922 void SelectNextWindowAsActive() { 923 // Move active focus to next window 924 const int num_subwindows = m_subwindows.size(); 925 int start_idx = 0; 926 if (m_curr_active_window_idx != UINT32_MAX) { 927 m_prev_active_window_idx = m_curr_active_window_idx; 928 start_idx = m_curr_active_window_idx + 1; 929 } 930 for (int idx = start_idx; idx < num_subwindows; ++idx) { 931 if (m_subwindows[idx]->GetCanBeActive()) { 932 m_curr_active_window_idx = idx; 933 return; 934 } 935 } 936 for (int idx = 0; idx < start_idx; ++idx) { 937 if (m_subwindows[idx]->GetCanBeActive()) { 938 m_curr_active_window_idx = idx; 939 break; 940 } 941 } 942 } 943 944 void SelectPreviousWindowAsActive() { 945 // Move active focus to previous window 946 const int num_subwindows = m_subwindows.size(); 947 int start_idx = num_subwindows - 1; 948 if (m_curr_active_window_idx != UINT32_MAX) { 949 m_prev_active_window_idx = m_curr_active_window_idx; 950 start_idx = m_curr_active_window_idx - 1; 951 } 952 for (int idx = start_idx; idx >= 0; --idx) { 953 if (m_subwindows[idx]->GetCanBeActive()) { 954 m_curr_active_window_idx = idx; 955 return; 956 } 957 } 958 for (int idx = num_subwindows - 1; idx > start_idx; --idx) { 959 if (m_subwindows[idx]->GetCanBeActive()) { 960 m_curr_active_window_idx = idx; 961 break; 962 } 963 } 964 } 965 966 const char *GetName() const { return m_name.c_str(); } 967 968 protected: 969 std::string m_name; 970 PANEL *m_panel; 971 Window *m_parent; 972 Windows m_subwindows; 973 WindowDelegateSP m_delegate_sp; 974 uint32_t m_curr_active_window_idx; 975 uint32_t m_prev_active_window_idx; 976 bool m_delete; 977 bool m_needs_update; 978 bool m_can_activate; 979 bool m_is_subwin; 980 981 private: 982 Window(const Window &) = delete; 983 const Window &operator=(const Window &) = delete; 984 }; 985 986 ///////// 987 // Forms 988 ///////// 989 990 // A scroll context defines a vertical region that needs to be visible in a 991 // scrolling area. The region is defined by the index of the start and end lines 992 // of the region. The start and end lines may be equal, in which case, the 993 // region is a single line. 994 struct ScrollContext { 995 int start; 996 int end; 997 998 ScrollContext(int line) : start(line), end(line) {} 999 ScrollContext(int _start, int _end) : start(_start), end(_end) {} 1000 1001 void Offset(int offset) { 1002 start += offset; 1003 end += offset; 1004 } 1005 }; 1006 1007 class FieldDelegate { 1008 public: 1009 virtual ~FieldDelegate() = default; 1010 1011 // Returns the number of lines needed to draw the field. The draw method will 1012 // be given a surface that have exactly this number of lines. 1013 virtual int FieldDelegateGetHeight() = 0; 1014 1015 // Returns the scroll context in the local coordinates of the field. By 1016 // default, the scroll context spans the whole field. Bigger fields with 1017 // internal navigation should override this method to provide a finer context. 1018 // Typical override methods would first get the scroll context of the internal 1019 // element then add the offset of the element in the field. 1020 virtual ScrollContext FieldDelegateGetScrollContext() { 1021 return ScrollContext(0, FieldDelegateGetHeight() - 1); 1022 } 1023 1024 // Draw the field in the given subpad surface. The surface have a height that 1025 // is equal to the height returned by FieldDelegateGetHeight(). If the field 1026 // is selected in the form window, then is_selected will be true. 1027 virtual void FieldDelegateDraw(Surface &surface, bool is_selected) = 0; 1028 1029 // Handle the key that wasn't handled by the form window or a container field. 1030 virtual HandleCharResult FieldDelegateHandleChar(int key) { 1031 return eKeyNotHandled; 1032 } 1033 1034 // This is executed once the user exists the field, that is, once the user 1035 // navigates to the next or the previous field. This is particularly useful to 1036 // do in-field validation and error setting. Fields with internal navigation 1037 // should call this method on their fields. 1038 virtual void FieldDelegateExitCallback() {} 1039 1040 // Fields may have internal navigation, for instance, a List Field have 1041 // multiple internal elements, which needs to be navigated. To allow for this 1042 // mechanism, the window shouldn't handle the navigation keys all the time, 1043 // and instead call the key handing method of the selected field. It should 1044 // only handle the navigation keys when the field contains a single element or 1045 // have the last or first element selected depending on if the user is 1046 // navigating forward or backward. Additionally, once a field is selected in 1047 // the forward or backward direction, its first or last internal element 1048 // should be selected. The following methods implements those mechanisms. 1049 1050 // Returns true if the first element in the field is selected or if the field 1051 // contains a single element. 1052 virtual bool FieldDelegateOnFirstOrOnlyElement() { return true; } 1053 1054 // Returns true if the last element in the field is selected or if the field 1055 // contains a single element. 1056 virtual bool FieldDelegateOnLastOrOnlyElement() { return true; } 1057 1058 // Select the first element in the field if multiple elements exists. 1059 virtual void FieldDelegateSelectFirstElement() {} 1060 1061 // Select the last element in the field if multiple elements exists. 1062 virtual void FieldDelegateSelectLastElement() {} 1063 1064 // Returns true if the field has an error, false otherwise. 1065 virtual bool FieldDelegateHasError() { return false; } 1066 1067 bool FieldDelegateIsVisible() { return m_is_visible; } 1068 1069 void FieldDelegateHide() { m_is_visible = false; } 1070 1071 void FieldDelegateShow() { m_is_visible = true; } 1072 1073 protected: 1074 bool m_is_visible = true; 1075 }; 1076 1077 typedef std::unique_ptr<FieldDelegate> FieldDelegateUP; 1078 1079 class TextFieldDelegate : public FieldDelegate { 1080 public: 1081 TextFieldDelegate(const char *label, const char *content, bool required) 1082 : m_label(label), m_required(required) { 1083 if (content) 1084 m_content = content; 1085 } 1086 1087 // Text fields are drawn as titled boxes of a single line, with a possible 1088 // error messages at the end. 1089 // 1090 // __[Label]___________ 1091 // | | 1092 // |__________________| 1093 // - Error message if it exists. 1094 1095 // The text field has a height of 3 lines. 2 lines for borders and 1 line for 1096 // the content. 1097 int GetFieldHeight() { return 3; } 1098 1099 // The text field has a full height of 3 or 4 lines. 3 lines for the actual 1100 // field and an optional line for an error if it exists. 1101 int FieldDelegateGetHeight() override { 1102 int height = GetFieldHeight(); 1103 if (FieldDelegateHasError()) 1104 height++; 1105 return height; 1106 } 1107 1108 // Get the cursor X position in the surface coordinate. 1109 int GetCursorXPosition() { return m_cursor_position - m_first_visibile_char; } 1110 1111 int GetContentLength() { return m_content.length(); } 1112 1113 void DrawContent(Surface &surface, bool is_selected) { 1114 UpdateScrolling(surface.GetWidth()); 1115 1116 surface.MoveCursor(0, 0); 1117 const char *text = m_content.c_str() + m_first_visibile_char; 1118 surface.PutCString(text, surface.GetWidth()); 1119 1120 // Highlight the cursor. 1121 surface.MoveCursor(GetCursorXPosition(), 0); 1122 if (is_selected) 1123 surface.AttributeOn(A_REVERSE); 1124 if (m_cursor_position == GetContentLength()) 1125 // Cursor is past the last character. Highlight an empty space. 1126 surface.PutChar(' '); 1127 else 1128 surface.PutChar(m_content[m_cursor_position]); 1129 if (is_selected) 1130 surface.AttributeOff(A_REVERSE); 1131 } 1132 1133 void DrawField(Surface &surface, bool is_selected) { 1134 surface.TitledBox(m_label.c_str()); 1135 1136 Rect content_bounds = surface.GetFrame(); 1137 content_bounds.Inset(1, 1); 1138 Surface content_surface = surface.SubSurface(content_bounds); 1139 1140 DrawContent(content_surface, is_selected); 1141 } 1142 1143 void DrawError(Surface &surface) { 1144 if (!FieldDelegateHasError()) 1145 return; 1146 surface.MoveCursor(0, 0); 1147 surface.AttributeOn(COLOR_PAIR(RedOnBlack)); 1148 surface.PutChar(ACS_DIAMOND); 1149 surface.PutChar(' '); 1150 surface.PutCStringTruncated(1, GetError().c_str()); 1151 surface.AttributeOff(COLOR_PAIR(RedOnBlack)); 1152 } 1153 1154 void FieldDelegateDraw(Surface &surface, bool is_selected) override { 1155 Rect frame = surface.GetFrame(); 1156 Rect field_bounds, error_bounds; 1157 frame.HorizontalSplit(GetFieldHeight(), field_bounds, error_bounds); 1158 Surface field_surface = surface.SubSurface(field_bounds); 1159 Surface error_surface = surface.SubSurface(error_bounds); 1160 1161 DrawField(field_surface, is_selected); 1162 DrawError(error_surface); 1163 } 1164 1165 // Get the position of the last visible character. 1166 int GetLastVisibleCharPosition(int width) { 1167 int position = m_first_visibile_char + width - 1; 1168 return std::min(position, GetContentLength()); 1169 } 1170 1171 void UpdateScrolling(int width) { 1172 if (m_cursor_position < m_first_visibile_char) { 1173 m_first_visibile_char = m_cursor_position; 1174 return; 1175 } 1176 1177 if (m_cursor_position > GetLastVisibleCharPosition(width)) 1178 m_first_visibile_char = m_cursor_position - (width - 1); 1179 } 1180 1181 // The cursor is allowed to move one character past the string. 1182 // m_cursor_position is in range [0, GetContentLength()]. 1183 void MoveCursorRight() { 1184 if (m_cursor_position < GetContentLength()) 1185 m_cursor_position++; 1186 } 1187 1188 void MoveCursorLeft() { 1189 if (m_cursor_position > 0) 1190 m_cursor_position--; 1191 } 1192 1193 void MoveCursorToStart() { m_cursor_position = 0; } 1194 1195 void MoveCursorToEnd() { m_cursor_position = GetContentLength(); } 1196 1197 void ScrollLeft() { 1198 if (m_first_visibile_char > 0) 1199 m_first_visibile_char--; 1200 } 1201 1202 // Insert a character at the current cursor position and advance the cursor 1203 // position. 1204 void InsertChar(char character) { 1205 m_content.insert(m_cursor_position, 1, character); 1206 m_cursor_position++; 1207 ClearError(); 1208 } 1209 1210 // Remove the character before the cursor position, retreat the cursor 1211 // position, and scroll left. 1212 void RemovePreviousChar() { 1213 if (m_cursor_position == 0) 1214 return; 1215 1216 m_content.erase(m_cursor_position - 1, 1); 1217 m_cursor_position--; 1218 ScrollLeft(); 1219 ClearError(); 1220 } 1221 1222 // Remove the character after the cursor position. 1223 void RemoveNextChar() { 1224 if (m_cursor_position == GetContentLength()) 1225 return; 1226 1227 m_content.erase(m_cursor_position, 1); 1228 ClearError(); 1229 } 1230 1231 // Clear characters from the current cursor position to the end. 1232 void ClearToEnd() { 1233 m_content.erase(m_cursor_position); 1234 ClearError(); 1235 } 1236 1237 void Clear() { 1238 m_content.clear(); 1239 m_cursor_position = 0; 1240 ClearError(); 1241 } 1242 1243 // True if the key represents a char that can be inserted in the field 1244 // content, false otherwise. 1245 virtual bool IsAcceptableChar(int key) { 1246 // The behavior of isprint is undefined when the value is not representable 1247 // as an unsigned char. So explicitly check for non-ascii key codes. 1248 if (key > 127) 1249 return false; 1250 return isprint(key); 1251 } 1252 1253 HandleCharResult FieldDelegateHandleChar(int key) override { 1254 if (IsAcceptableChar(key)) { 1255 ClearError(); 1256 InsertChar((char)key); 1257 return eKeyHandled; 1258 } 1259 1260 switch (key) { 1261 case KEY_HOME: 1262 case KEY_CTRL_A: 1263 MoveCursorToStart(); 1264 return eKeyHandled; 1265 case KEY_END: 1266 case KEY_CTRL_E: 1267 MoveCursorToEnd(); 1268 return eKeyHandled; 1269 case KEY_RIGHT: 1270 case KEY_SF: 1271 MoveCursorRight(); 1272 return eKeyHandled; 1273 case KEY_LEFT: 1274 case KEY_SR: 1275 MoveCursorLeft(); 1276 return eKeyHandled; 1277 case KEY_BACKSPACE: 1278 case KEY_DELETE: 1279 RemovePreviousChar(); 1280 return eKeyHandled; 1281 case KEY_DC: 1282 RemoveNextChar(); 1283 return eKeyHandled; 1284 case KEY_EOL: 1285 case KEY_CTRL_K: 1286 ClearToEnd(); 1287 return eKeyHandled; 1288 case KEY_DL: 1289 case KEY_CLEAR: 1290 Clear(); 1291 return eKeyHandled; 1292 default: 1293 break; 1294 } 1295 return eKeyNotHandled; 1296 } 1297 1298 bool FieldDelegateHasError() override { return !m_error.empty(); } 1299 1300 void FieldDelegateExitCallback() override { 1301 if (!IsSpecified() && m_required) 1302 SetError("This field is required!"); 1303 } 1304 1305 bool IsSpecified() { return !m_content.empty(); } 1306 1307 void ClearError() { m_error.clear(); } 1308 1309 const std::string &GetError() { return m_error; } 1310 1311 void SetError(const char *error) { m_error = error; } 1312 1313 const std::string &GetText() { return m_content; } 1314 1315 void SetText(const char *text) { 1316 if (text == nullptr) { 1317 m_content.clear(); 1318 return; 1319 } 1320 m_content = text; 1321 } 1322 1323 protected: 1324 std::string m_label; 1325 bool m_required; 1326 // The position of the top left corner character of the border. 1327 std::string m_content; 1328 // The cursor position in the content string itself. Can be in the range 1329 // [0, GetContentLength()]. 1330 int m_cursor_position = 0; 1331 // The index of the first visible character in the content. 1332 int m_first_visibile_char = 0; 1333 // Optional error message. If empty, field is considered to have no error. 1334 std::string m_error; 1335 }; 1336 1337 class IntegerFieldDelegate : public TextFieldDelegate { 1338 public: 1339 IntegerFieldDelegate(const char *label, int content, bool required) 1340 : TextFieldDelegate(label, std::to_string(content).c_str(), required) {} 1341 1342 // Only accept digits. 1343 bool IsAcceptableChar(int key) override { return isdigit(key); } 1344 1345 // Returns the integer content of the field. 1346 int GetInteger() { return std::stoi(m_content); } 1347 }; 1348 1349 class FileFieldDelegate : public TextFieldDelegate { 1350 public: 1351 FileFieldDelegate(const char *label, const char *content, bool need_to_exist, 1352 bool required) 1353 : TextFieldDelegate(label, content, required), 1354 m_need_to_exist(need_to_exist) {} 1355 1356 void FieldDelegateExitCallback() override { 1357 TextFieldDelegate::FieldDelegateExitCallback(); 1358 if (!IsSpecified()) 1359 return; 1360 1361 if (!m_need_to_exist) 1362 return; 1363 1364 FileSpec file = GetResolvedFileSpec(); 1365 if (!FileSystem::Instance().Exists(file)) { 1366 SetError("File doesn't exist!"); 1367 return; 1368 } 1369 if (FileSystem::Instance().IsDirectory(file)) { 1370 SetError("Not a file!"); 1371 return; 1372 } 1373 } 1374 1375 FileSpec GetFileSpec() { 1376 FileSpec file_spec(GetPath()); 1377 return file_spec; 1378 } 1379 1380 FileSpec GetResolvedFileSpec() { 1381 FileSpec file_spec(GetPath()); 1382 FileSystem::Instance().Resolve(file_spec); 1383 return file_spec; 1384 } 1385 1386 const std::string &GetPath() { return m_content; } 1387 1388 protected: 1389 bool m_need_to_exist; 1390 }; 1391 1392 class DirectoryFieldDelegate : public TextFieldDelegate { 1393 public: 1394 DirectoryFieldDelegate(const char *label, const char *content, 1395 bool need_to_exist, bool required) 1396 : TextFieldDelegate(label, content, required), 1397 m_need_to_exist(need_to_exist) {} 1398 1399 void FieldDelegateExitCallback() override { 1400 TextFieldDelegate::FieldDelegateExitCallback(); 1401 if (!IsSpecified()) 1402 return; 1403 1404 if (!m_need_to_exist) 1405 return; 1406 1407 FileSpec file = GetResolvedFileSpec(); 1408 if (!FileSystem::Instance().Exists(file)) { 1409 SetError("Directory doesn't exist!"); 1410 return; 1411 } 1412 if (!FileSystem::Instance().IsDirectory(file)) { 1413 SetError("Not a directory!"); 1414 return; 1415 } 1416 } 1417 1418 FileSpec GetFileSpec() { 1419 FileSpec file_spec(GetPath()); 1420 return file_spec; 1421 } 1422 1423 FileSpec GetResolvedFileSpec() { 1424 FileSpec file_spec(GetPath()); 1425 FileSystem::Instance().Resolve(file_spec); 1426 return file_spec; 1427 } 1428 1429 const std::string &GetPath() { return m_content; } 1430 1431 protected: 1432 bool m_need_to_exist; 1433 }; 1434 1435 class ArchFieldDelegate : public TextFieldDelegate { 1436 public: 1437 ArchFieldDelegate(const char *label, const char *content, bool required) 1438 : TextFieldDelegate(label, content, required) {} 1439 1440 void FieldDelegateExitCallback() override { 1441 TextFieldDelegate::FieldDelegateExitCallback(); 1442 if (!IsSpecified()) 1443 return; 1444 1445 if (!GetArchSpec().IsValid()) 1446 SetError("Not a valid arch!"); 1447 } 1448 1449 const std::string &GetArchString() { return m_content; } 1450 1451 ArchSpec GetArchSpec() { return ArchSpec(GetArchString()); } 1452 }; 1453 1454 class BooleanFieldDelegate : public FieldDelegate { 1455 public: 1456 BooleanFieldDelegate(const char *label, bool content) 1457 : m_label(label), m_content(content) {} 1458 1459 // Boolean fields are drawn as checkboxes. 1460 // 1461 // [X] Label or [ ] Label 1462 1463 // Boolean fields are have a single line. 1464 int FieldDelegateGetHeight() override { return 1; } 1465 1466 void FieldDelegateDraw(Surface &surface, bool is_selected) override { 1467 surface.MoveCursor(0, 0); 1468 surface.PutChar('['); 1469 if (is_selected) 1470 surface.AttributeOn(A_REVERSE); 1471 surface.PutChar(m_content ? ACS_DIAMOND : ' '); 1472 if (is_selected) 1473 surface.AttributeOff(A_REVERSE); 1474 surface.PutChar(']'); 1475 surface.PutChar(' '); 1476 surface.PutCString(m_label.c_str()); 1477 } 1478 1479 void ToggleContent() { m_content = !m_content; } 1480 1481 void SetContentToTrue() { m_content = true; } 1482 1483 void SetContentToFalse() { m_content = false; } 1484 1485 HandleCharResult FieldDelegateHandleChar(int key) override { 1486 switch (key) { 1487 case 't': 1488 case '1': 1489 SetContentToTrue(); 1490 return eKeyHandled; 1491 case 'f': 1492 case '0': 1493 SetContentToFalse(); 1494 return eKeyHandled; 1495 case ' ': 1496 case '\r': 1497 case '\n': 1498 case KEY_ENTER: 1499 ToggleContent(); 1500 return eKeyHandled; 1501 default: 1502 break; 1503 } 1504 return eKeyNotHandled; 1505 } 1506 1507 // Returns the boolean content of the field. 1508 bool GetBoolean() { return m_content; } 1509 1510 protected: 1511 std::string m_label; 1512 bool m_content; 1513 }; 1514 1515 class ChoicesFieldDelegate : public FieldDelegate { 1516 public: 1517 ChoicesFieldDelegate(const char *label, int number_of_visible_choices, 1518 std::vector<std::string> choices) 1519 : m_label(label), m_number_of_visible_choices(number_of_visible_choices), 1520 m_choices(choices) {} 1521 1522 // Choices fields are drawn as titles boxses of a number of visible choices. 1523 // The rest of the choices become visible as the user scroll. The selected 1524 // choice is denoted by a diamond as the first character. 1525 // 1526 // __[Label]___________ 1527 // |-Choice 1 | 1528 // | Choice 2 | 1529 // | Choice 3 | 1530 // |__________________| 1531 1532 // Choices field have two border characters plus the number of visible 1533 // choices. 1534 int FieldDelegateGetHeight() override { 1535 return m_number_of_visible_choices + 2; 1536 } 1537 1538 int GetNumberOfChoices() { return m_choices.size(); } 1539 1540 // Get the index of the last visible choice. 1541 int GetLastVisibleChoice() { 1542 int index = m_first_visibile_choice + m_number_of_visible_choices; 1543 return std::min(index, GetNumberOfChoices()) - 1; 1544 } 1545 1546 void DrawContent(Surface &surface, bool is_selected) { 1547 int choices_to_draw = GetLastVisibleChoice() - m_first_visibile_choice + 1; 1548 for (int i = 0; i < choices_to_draw; i++) { 1549 surface.MoveCursor(0, i); 1550 int current_choice = m_first_visibile_choice + i; 1551 const char *text = m_choices[current_choice].c_str(); 1552 bool highlight = is_selected && current_choice == m_choice; 1553 if (highlight) 1554 surface.AttributeOn(A_REVERSE); 1555 surface.PutChar(current_choice == m_choice ? ACS_DIAMOND : ' '); 1556 surface.PutCString(text); 1557 if (highlight) 1558 surface.AttributeOff(A_REVERSE); 1559 } 1560 } 1561 1562 void FieldDelegateDraw(Surface &surface, bool is_selected) override { 1563 UpdateScrolling(); 1564 1565 surface.TitledBox(m_label.c_str()); 1566 1567 Rect content_bounds = surface.GetFrame(); 1568 content_bounds.Inset(1, 1); 1569 Surface content_surface = surface.SubSurface(content_bounds); 1570 1571 DrawContent(content_surface, is_selected); 1572 } 1573 1574 void SelectPrevious() { 1575 if (m_choice > 0) 1576 m_choice--; 1577 } 1578 1579 void SelectNext() { 1580 if (m_choice < GetNumberOfChoices() - 1) 1581 m_choice++; 1582 } 1583 1584 void UpdateScrolling() { 1585 if (m_choice > GetLastVisibleChoice()) { 1586 m_first_visibile_choice = m_choice - (m_number_of_visible_choices - 1); 1587 return; 1588 } 1589 1590 if (m_choice < m_first_visibile_choice) 1591 m_first_visibile_choice = m_choice; 1592 } 1593 1594 HandleCharResult FieldDelegateHandleChar(int key) override { 1595 switch (key) { 1596 case KEY_UP: 1597 SelectPrevious(); 1598 return eKeyHandled; 1599 case KEY_DOWN: 1600 SelectNext(); 1601 return eKeyHandled; 1602 default: 1603 break; 1604 } 1605 return eKeyNotHandled; 1606 } 1607 1608 // Returns the content of the choice as a string. 1609 std::string GetChoiceContent() { return m_choices[m_choice]; } 1610 1611 // Returns the index of the choice. 1612 int GetChoice() { return m_choice; } 1613 1614 void SetChoice(llvm::StringRef choice) { 1615 for (int i = 0; i < GetNumberOfChoices(); i++) { 1616 if (choice == m_choices[i]) { 1617 m_choice = i; 1618 return; 1619 } 1620 } 1621 } 1622 1623 protected: 1624 std::string m_label; 1625 int m_number_of_visible_choices; 1626 std::vector<std::string> m_choices; 1627 // The index of the selected choice. 1628 int m_choice = 0; 1629 // The index of the first visible choice in the field. 1630 int m_first_visibile_choice = 0; 1631 }; 1632 1633 class PlatformPluginFieldDelegate : public ChoicesFieldDelegate { 1634 public: 1635 PlatformPluginFieldDelegate(Debugger &debugger) 1636 : ChoicesFieldDelegate("Platform Plugin", 3, GetPossiblePluginNames()) { 1637 PlatformSP platform_sp = debugger.GetPlatformList().GetSelectedPlatform(); 1638 if (platform_sp) 1639 SetChoice(platform_sp->GetPluginName()); 1640 } 1641 1642 std::vector<std::string> GetPossiblePluginNames() { 1643 std::vector<std::string> names; 1644 size_t i = 0; 1645 for (llvm::StringRef name = 1646 PluginManager::GetPlatformPluginNameAtIndex(i++); 1647 !name.empty(); name = PluginManager::GetProcessPluginNameAtIndex(i++)) 1648 names.push_back(name.str()); 1649 return names; 1650 } 1651 1652 std::string GetPluginName() { 1653 std::string plugin_name = GetChoiceContent(); 1654 return plugin_name; 1655 } 1656 }; 1657 1658 class ProcessPluginFieldDelegate : public ChoicesFieldDelegate { 1659 public: 1660 ProcessPluginFieldDelegate() 1661 : ChoicesFieldDelegate("Process Plugin", 3, GetPossiblePluginNames()) {} 1662 1663 std::vector<std::string> GetPossiblePluginNames() { 1664 std::vector<std::string> names; 1665 names.push_back("<default>"); 1666 1667 size_t i = 0; 1668 for (llvm::StringRef name = PluginManager::GetProcessPluginNameAtIndex(i++); 1669 !name.empty(); name = PluginManager::GetProcessPluginNameAtIndex(i++)) 1670 names.push_back(name.str()); 1671 return names; 1672 } 1673 1674 std::string GetPluginName() { 1675 std::string plugin_name = GetChoiceContent(); 1676 if (plugin_name == "<default>") 1677 return ""; 1678 return plugin_name; 1679 } 1680 }; 1681 1682 class LazyBooleanFieldDelegate : public ChoicesFieldDelegate { 1683 public: 1684 LazyBooleanFieldDelegate(const char *label, const char *calculate_label) 1685 : ChoicesFieldDelegate(label, 3, GetPossibleOptions(calculate_label)) {} 1686 1687 static constexpr const char *kNo = "No"; 1688 static constexpr const char *kYes = "Yes"; 1689 1690 std::vector<std::string> GetPossibleOptions(const char *calculate_label) { 1691 std::vector<std::string> options; 1692 options.push_back(calculate_label); 1693 options.push_back(kYes); 1694 options.push_back(kNo); 1695 return options; 1696 } 1697 1698 LazyBool GetLazyBoolean() { 1699 std::string choice = GetChoiceContent(); 1700 if (choice == kNo) 1701 return eLazyBoolNo; 1702 else if (choice == kYes) 1703 return eLazyBoolYes; 1704 else 1705 return eLazyBoolCalculate; 1706 } 1707 }; 1708 1709 template <class T> class ListFieldDelegate : public FieldDelegate { 1710 public: 1711 ListFieldDelegate(const char *label, T default_field) 1712 : m_label(label), m_default_field(default_field), 1713 m_selection_type(SelectionType::NewButton) {} 1714 1715 // Signify which element is selected. If a field or a remove button is 1716 // selected, then m_selection_index signifies the particular field that 1717 // is selected or the field that the remove button belongs to. 1718 enum class SelectionType { Field, RemoveButton, NewButton }; 1719 1720 // A List field is drawn as a titled box of a number of other fields of the 1721 // same type. Each field has a Remove button next to it that removes the 1722 // corresponding field. Finally, the last line contains a New button to add a 1723 // new field. 1724 // 1725 // __[Label]___________ 1726 // | Field 0 [Remove] | 1727 // | Field 1 [Remove] | 1728 // | Field 2 [Remove] | 1729 // | [New] | 1730 // |__________________| 1731 1732 // List fields have two lines for border characters, 1 line for the New 1733 // button, and the total height of the available fields. 1734 int FieldDelegateGetHeight() override { 1735 // 2 border characters. 1736 int height = 2; 1737 // Total height of the fields. 1738 for (int i = 0; i < GetNumberOfFields(); i++) { 1739 height += m_fields[i].FieldDelegateGetHeight(); 1740 } 1741 // A line for the New button. 1742 height++; 1743 return height; 1744 } 1745 1746 ScrollContext FieldDelegateGetScrollContext() override { 1747 int height = FieldDelegateGetHeight(); 1748 if (m_selection_type == SelectionType::NewButton) 1749 return ScrollContext(height - 2, height - 1); 1750 1751 FieldDelegate &field = m_fields[m_selection_index]; 1752 ScrollContext context = field.FieldDelegateGetScrollContext(); 1753 1754 // Start at 1 because of the top border. 1755 int offset = 1; 1756 for (int i = 0; i < m_selection_index; i++) { 1757 offset += m_fields[i].FieldDelegateGetHeight(); 1758 } 1759 context.Offset(offset); 1760 1761 // If the scroll context is touching the top border, include it in the 1762 // context to show the label. 1763 if (context.start == 1) 1764 context.start--; 1765 1766 // If the scroll context is touching the new button, include it as well as 1767 // the bottom border in the context. 1768 if (context.end == height - 3) 1769 context.end += 2; 1770 1771 return context; 1772 } 1773 1774 void DrawRemoveButton(Surface &surface, int highlight) { 1775 surface.MoveCursor(1, surface.GetHeight() / 2); 1776 if (highlight) 1777 surface.AttributeOn(A_REVERSE); 1778 surface.PutCString("[Remove]"); 1779 if (highlight) 1780 surface.AttributeOff(A_REVERSE); 1781 } 1782 1783 void DrawFields(Surface &surface, bool is_selected) { 1784 int line = 0; 1785 int width = surface.GetWidth(); 1786 for (int i = 0; i < GetNumberOfFields(); i++) { 1787 int height = m_fields[i].FieldDelegateGetHeight(); 1788 Rect bounds = Rect(Point(0, line), Size(width, height)); 1789 Rect field_bounds, remove_button_bounds; 1790 bounds.VerticalSplit(bounds.size.width - sizeof(" [Remove]"), 1791 field_bounds, remove_button_bounds); 1792 Surface field_surface = surface.SubSurface(field_bounds); 1793 Surface remove_button_surface = surface.SubSurface(remove_button_bounds); 1794 1795 bool is_element_selected = m_selection_index == i && is_selected; 1796 bool is_field_selected = 1797 is_element_selected && m_selection_type == SelectionType::Field; 1798 bool is_remove_button_selected = 1799 is_element_selected && 1800 m_selection_type == SelectionType::RemoveButton; 1801 m_fields[i].FieldDelegateDraw(field_surface, is_field_selected); 1802 DrawRemoveButton(remove_button_surface, is_remove_button_selected); 1803 1804 line += height; 1805 } 1806 } 1807 1808 void DrawNewButton(Surface &surface, bool is_selected) { 1809 const char *button_text = "[New]"; 1810 int x = (surface.GetWidth() - sizeof(button_text) - 1) / 2; 1811 surface.MoveCursor(x, 0); 1812 bool highlight = 1813 is_selected && m_selection_type == SelectionType::NewButton; 1814 if (highlight) 1815 surface.AttributeOn(A_REVERSE); 1816 surface.PutCString(button_text); 1817 if (highlight) 1818 surface.AttributeOff(A_REVERSE); 1819 } 1820 1821 void FieldDelegateDraw(Surface &surface, bool is_selected) override { 1822 surface.TitledBox(m_label.c_str()); 1823 1824 Rect content_bounds = surface.GetFrame(); 1825 content_bounds.Inset(1, 1); 1826 Rect fields_bounds, new_button_bounds; 1827 content_bounds.HorizontalSplit(content_bounds.size.height - 1, 1828 fields_bounds, new_button_bounds); 1829 Surface fields_surface = surface.SubSurface(fields_bounds); 1830 Surface new_button_surface = surface.SubSurface(new_button_bounds); 1831 1832 DrawFields(fields_surface, is_selected); 1833 DrawNewButton(new_button_surface, is_selected); 1834 } 1835 1836 void AddNewField() { 1837 m_fields.push_back(m_default_field); 1838 m_selection_index = GetNumberOfFields() - 1; 1839 m_selection_type = SelectionType::Field; 1840 FieldDelegate &field = m_fields[m_selection_index]; 1841 field.FieldDelegateSelectFirstElement(); 1842 } 1843 1844 void RemoveField() { 1845 m_fields.erase(m_fields.begin() + m_selection_index); 1846 if (m_selection_index != 0) 1847 m_selection_index--; 1848 1849 if (GetNumberOfFields() > 0) { 1850 m_selection_type = SelectionType::Field; 1851 FieldDelegate &field = m_fields[m_selection_index]; 1852 field.FieldDelegateSelectFirstElement(); 1853 } else 1854 m_selection_type = SelectionType::NewButton; 1855 } 1856 1857 HandleCharResult SelectNext(int key) { 1858 if (m_selection_type == SelectionType::NewButton) 1859 return eKeyNotHandled; 1860 1861 if (m_selection_type == SelectionType::RemoveButton) { 1862 if (m_selection_index == GetNumberOfFields() - 1) { 1863 m_selection_type = SelectionType::NewButton; 1864 return eKeyHandled; 1865 } 1866 m_selection_index++; 1867 m_selection_type = SelectionType::Field; 1868 FieldDelegate &next_field = m_fields[m_selection_index]; 1869 next_field.FieldDelegateSelectFirstElement(); 1870 return eKeyHandled; 1871 } 1872 1873 FieldDelegate &field = m_fields[m_selection_index]; 1874 if (!field.FieldDelegateOnLastOrOnlyElement()) { 1875 return field.FieldDelegateHandleChar(key); 1876 } 1877 1878 field.FieldDelegateExitCallback(); 1879 1880 m_selection_type = SelectionType::RemoveButton; 1881 return eKeyHandled; 1882 } 1883 1884 HandleCharResult SelectPrevious(int key) { 1885 if (FieldDelegateOnFirstOrOnlyElement()) 1886 return eKeyNotHandled; 1887 1888 if (m_selection_type == SelectionType::RemoveButton) { 1889 m_selection_type = SelectionType::Field; 1890 FieldDelegate &field = m_fields[m_selection_index]; 1891 field.FieldDelegateSelectLastElement(); 1892 return eKeyHandled; 1893 } 1894 1895 if (m_selection_type == SelectionType::NewButton) { 1896 m_selection_type = SelectionType::RemoveButton; 1897 m_selection_index = GetNumberOfFields() - 1; 1898 return eKeyHandled; 1899 } 1900 1901 FieldDelegate &field = m_fields[m_selection_index]; 1902 if (!field.FieldDelegateOnFirstOrOnlyElement()) { 1903 return field.FieldDelegateHandleChar(key); 1904 } 1905 1906 field.FieldDelegateExitCallback(); 1907 1908 m_selection_type = SelectionType::RemoveButton; 1909 m_selection_index--; 1910 return eKeyHandled; 1911 } 1912 1913 // If the last element of the field is selected and it didn't handle the key. 1914 // Select the next field or new button if the selected field is the last one. 1915 HandleCharResult SelectNextInList(int key) { 1916 assert(m_selection_type == SelectionType::Field); 1917 1918 FieldDelegate &field = m_fields[m_selection_index]; 1919 if (field.FieldDelegateHandleChar(key) == eKeyHandled) 1920 return eKeyHandled; 1921 1922 if (!field.FieldDelegateOnLastOrOnlyElement()) 1923 return eKeyNotHandled; 1924 1925 field.FieldDelegateExitCallback(); 1926 1927 if (m_selection_index == GetNumberOfFields() - 1) { 1928 m_selection_type = SelectionType::NewButton; 1929 return eKeyHandled; 1930 } 1931 1932 m_selection_index++; 1933 FieldDelegate &next_field = m_fields[m_selection_index]; 1934 next_field.FieldDelegateSelectFirstElement(); 1935 return eKeyHandled; 1936 } 1937 1938 HandleCharResult FieldDelegateHandleChar(int key) override { 1939 switch (key) { 1940 case '\r': 1941 case '\n': 1942 case KEY_ENTER: 1943 switch (m_selection_type) { 1944 case SelectionType::NewButton: 1945 AddNewField(); 1946 return eKeyHandled; 1947 case SelectionType::RemoveButton: 1948 RemoveField(); 1949 return eKeyHandled; 1950 case SelectionType::Field: 1951 return SelectNextInList(key); 1952 } 1953 break; 1954 case '\t': 1955 return SelectNext(key); 1956 case KEY_SHIFT_TAB: 1957 return SelectPrevious(key); 1958 default: 1959 break; 1960 } 1961 1962 // If the key wasn't handled and one of the fields is selected, pass the key 1963 // to that field. 1964 if (m_selection_type == SelectionType::Field) { 1965 return m_fields[m_selection_index].FieldDelegateHandleChar(key); 1966 } 1967 1968 return eKeyNotHandled; 1969 } 1970 1971 bool FieldDelegateOnLastOrOnlyElement() override { 1972 if (m_selection_type == SelectionType::NewButton) { 1973 return true; 1974 } 1975 return false; 1976 } 1977 1978 bool FieldDelegateOnFirstOrOnlyElement() override { 1979 if (m_selection_type == SelectionType::NewButton && 1980 GetNumberOfFields() == 0) 1981 return true; 1982 1983 if (m_selection_type == SelectionType::Field && m_selection_index == 0) { 1984 FieldDelegate &field = m_fields[m_selection_index]; 1985 return field.FieldDelegateOnFirstOrOnlyElement(); 1986 } 1987 1988 return false; 1989 } 1990 1991 void FieldDelegateSelectFirstElement() override { 1992 if (GetNumberOfFields() == 0) { 1993 m_selection_type = SelectionType::NewButton; 1994 return; 1995 } 1996 1997 m_selection_type = SelectionType::Field; 1998 m_selection_index = 0; 1999 } 2000 2001 void FieldDelegateSelectLastElement() override { 2002 m_selection_type = SelectionType::NewButton; 2003 } 2004 2005 int GetNumberOfFields() { return m_fields.size(); } 2006 2007 // Returns the form delegate at the current index. 2008 T &GetField(int index) { return m_fields[index]; } 2009 2010 protected: 2011 std::string m_label; 2012 // The default field delegate instance from which new field delegates will be 2013 // created though a copy. 2014 T m_default_field; 2015 std::vector<T> m_fields; 2016 int m_selection_index = 0; 2017 // See SelectionType class enum. 2018 SelectionType m_selection_type; 2019 }; 2020 2021 class ArgumentsFieldDelegate : public ListFieldDelegate<TextFieldDelegate> { 2022 public: 2023 ArgumentsFieldDelegate() 2024 : ListFieldDelegate("Arguments", 2025 TextFieldDelegate("Argument", "", false)) {} 2026 2027 Args GetArguments() { 2028 Args arguments; 2029 for (int i = 0; i < GetNumberOfFields(); i++) { 2030 arguments.AppendArgument(GetField(i).GetText()); 2031 } 2032 return arguments; 2033 } 2034 2035 void AddArguments(const Args &arguments) { 2036 for (size_t i = 0; i < arguments.GetArgumentCount(); i++) { 2037 AddNewField(); 2038 TextFieldDelegate &field = GetField(GetNumberOfFields() - 1); 2039 field.SetText(arguments.GetArgumentAtIndex(i)); 2040 } 2041 } 2042 }; 2043 2044 template <class KeyFieldDelegateType, class ValueFieldDelegateType> 2045 class MappingFieldDelegate : public FieldDelegate { 2046 public: 2047 MappingFieldDelegate(KeyFieldDelegateType key_field, 2048 ValueFieldDelegateType value_field) 2049 : m_key_field(key_field), m_value_field(value_field), 2050 m_selection_type(SelectionType::Key) {} 2051 2052 // Signify which element is selected. The key field or its value field. 2053 enum class SelectionType { Key, Value }; 2054 2055 // A mapping field is drawn as two text fields with a right arrow in between. 2056 // The first field stores the key of the mapping and the second stores the 2057 // value if the mapping. 2058 // 2059 // __[Key]_____________ __[Value]___________ 2060 // | | > | | 2061 // |__________________| |__________________| 2062 // - Error message if it exists. 2063 2064 // The mapping field has a height that is equal to the maximum height between 2065 // the key and value fields. 2066 int FieldDelegateGetHeight() override { 2067 return std::max(m_key_field.FieldDelegateGetHeight(), 2068 m_value_field.FieldDelegateGetHeight()); 2069 } 2070 2071 void DrawArrow(Surface &surface) { 2072 surface.MoveCursor(0, 1); 2073 surface.PutChar(ACS_RARROW); 2074 } 2075 2076 void FieldDelegateDraw(Surface &surface, bool is_selected) override { 2077 Rect bounds = surface.GetFrame(); 2078 Rect key_field_bounds, arrow_and_value_field_bounds; 2079 bounds.VerticalSplit(bounds.size.width / 2, key_field_bounds, 2080 arrow_and_value_field_bounds); 2081 Rect arrow_bounds, value_field_bounds; 2082 arrow_and_value_field_bounds.VerticalSplit(1, arrow_bounds, 2083 value_field_bounds); 2084 2085 Surface key_field_surface = surface.SubSurface(key_field_bounds); 2086 Surface arrow_surface = surface.SubSurface(arrow_bounds); 2087 Surface value_field_surface = surface.SubSurface(value_field_bounds); 2088 2089 bool key_is_selected = 2090 m_selection_type == SelectionType::Key && is_selected; 2091 m_key_field.FieldDelegateDraw(key_field_surface, key_is_selected); 2092 DrawArrow(arrow_surface); 2093 bool value_is_selected = 2094 m_selection_type == SelectionType::Value && is_selected; 2095 m_value_field.FieldDelegateDraw(value_field_surface, value_is_selected); 2096 } 2097 2098 HandleCharResult SelectNext(int key) { 2099 if (FieldDelegateOnLastOrOnlyElement()) 2100 return eKeyNotHandled; 2101 2102 if (!m_key_field.FieldDelegateOnLastOrOnlyElement()) { 2103 return m_key_field.FieldDelegateHandleChar(key); 2104 } 2105 2106 m_key_field.FieldDelegateExitCallback(); 2107 m_selection_type = SelectionType::Value; 2108 m_value_field.FieldDelegateSelectFirstElement(); 2109 return eKeyHandled; 2110 } 2111 2112 HandleCharResult SelectPrevious(int key) { 2113 if (FieldDelegateOnFirstOrOnlyElement()) 2114 return eKeyNotHandled; 2115 2116 if (!m_value_field.FieldDelegateOnFirstOrOnlyElement()) { 2117 return m_value_field.FieldDelegateHandleChar(key); 2118 } 2119 2120 m_value_field.FieldDelegateExitCallback(); 2121 m_selection_type = SelectionType::Key; 2122 m_key_field.FieldDelegateSelectLastElement(); 2123 return eKeyHandled; 2124 } 2125 2126 // If the value field is selected, pass the key to it. If the key field is 2127 // selected, its last element is selected, and it didn't handle the key, then 2128 // select its corresponding value field. 2129 HandleCharResult SelectNextField(int key) { 2130 if (m_selection_type == SelectionType::Value) { 2131 return m_value_field.FieldDelegateHandleChar(key); 2132 } 2133 2134 if (m_key_field.FieldDelegateHandleChar(key) == eKeyHandled) 2135 return eKeyHandled; 2136 2137 if (!m_key_field.FieldDelegateOnLastOrOnlyElement()) 2138 return eKeyNotHandled; 2139 2140 m_key_field.FieldDelegateExitCallback(); 2141 m_selection_type = SelectionType::Value; 2142 m_value_field.FieldDelegateSelectFirstElement(); 2143 return eKeyHandled; 2144 } 2145 2146 HandleCharResult FieldDelegateHandleChar(int key) override { 2147 switch (key) { 2148 case KEY_RETURN: 2149 return SelectNextField(key); 2150 case '\t': 2151 return SelectNext(key); 2152 case KEY_SHIFT_TAB: 2153 return SelectPrevious(key); 2154 default: 2155 break; 2156 } 2157 2158 // If the key wasn't handled, pass the key to the selected field. 2159 if (m_selection_type == SelectionType::Key) 2160 return m_key_field.FieldDelegateHandleChar(key); 2161 else 2162 return m_value_field.FieldDelegateHandleChar(key); 2163 2164 return eKeyNotHandled; 2165 } 2166 2167 bool FieldDelegateOnFirstOrOnlyElement() override { 2168 return m_selection_type == SelectionType::Key; 2169 } 2170 2171 bool FieldDelegateOnLastOrOnlyElement() override { 2172 return m_selection_type == SelectionType::Value; 2173 } 2174 2175 void FieldDelegateSelectFirstElement() override { 2176 m_selection_type = SelectionType::Key; 2177 } 2178 2179 void FieldDelegateSelectLastElement() override { 2180 m_selection_type = SelectionType::Value; 2181 } 2182 2183 bool FieldDelegateHasError() override { 2184 return m_key_field.FieldDelegateHasError() || 2185 m_value_field.FieldDelegateHasError(); 2186 } 2187 2188 KeyFieldDelegateType &GetKeyField() { return m_key_field; } 2189 2190 ValueFieldDelegateType &GetValueField() { return m_value_field; } 2191 2192 protected: 2193 KeyFieldDelegateType m_key_field; 2194 ValueFieldDelegateType m_value_field; 2195 // See SelectionType class enum. 2196 SelectionType m_selection_type; 2197 }; 2198 2199 class EnvironmentVariableNameFieldDelegate : public TextFieldDelegate { 2200 public: 2201 EnvironmentVariableNameFieldDelegate(const char *content) 2202 : TextFieldDelegate("Name", content, true) {} 2203 2204 // Environment variable names can't contain an equal sign. 2205 bool IsAcceptableChar(int key) override { 2206 return TextFieldDelegate::IsAcceptableChar(key) && key != '='; 2207 } 2208 2209 const std::string &GetName() { return m_content; } 2210 }; 2211 2212 class EnvironmentVariableFieldDelegate 2213 : public MappingFieldDelegate<EnvironmentVariableNameFieldDelegate, 2214 TextFieldDelegate> { 2215 public: 2216 EnvironmentVariableFieldDelegate() 2217 : MappingFieldDelegate( 2218 EnvironmentVariableNameFieldDelegate(""), 2219 TextFieldDelegate("Value", "", /*required=*/false)) {} 2220 2221 const std::string &GetName() { return GetKeyField().GetName(); } 2222 2223 const std::string &GetValue() { return GetValueField().GetText(); } 2224 2225 void SetName(const char *name) { return GetKeyField().SetText(name); } 2226 2227 void SetValue(const char *value) { return GetValueField().SetText(value); } 2228 }; 2229 2230 class EnvironmentVariableListFieldDelegate 2231 : public ListFieldDelegate<EnvironmentVariableFieldDelegate> { 2232 public: 2233 EnvironmentVariableListFieldDelegate(const char *label) 2234 : ListFieldDelegate(label, EnvironmentVariableFieldDelegate()) {} 2235 2236 Environment GetEnvironment() { 2237 Environment environment; 2238 for (int i = 0; i < GetNumberOfFields(); i++) { 2239 environment.insert( 2240 std::make_pair(GetField(i).GetName(), GetField(i).GetValue())); 2241 } 2242 return environment; 2243 } 2244 2245 void AddEnvironmentVariables(const Environment &environment) { 2246 for (auto &variable : environment) { 2247 AddNewField(); 2248 EnvironmentVariableFieldDelegate &field = 2249 GetField(GetNumberOfFields() - 1); 2250 field.SetName(variable.getKey().str().c_str()); 2251 field.SetValue(variable.getValue().c_str()); 2252 } 2253 } 2254 }; 2255 2256 class FormAction { 2257 public: 2258 FormAction(const char *label, std::function<void(Window &)> action) 2259 : m_action(action) { 2260 if (label) 2261 m_label = label; 2262 } 2263 2264 // Draw a centered [Label]. 2265 void Draw(Surface &surface, bool is_selected) { 2266 int x = (surface.GetWidth() - m_label.length()) / 2; 2267 surface.MoveCursor(x, 0); 2268 if (is_selected) 2269 surface.AttributeOn(A_REVERSE); 2270 surface.PutChar('['); 2271 surface.PutCString(m_label.c_str()); 2272 surface.PutChar(']'); 2273 if (is_selected) 2274 surface.AttributeOff(A_REVERSE); 2275 } 2276 2277 void Execute(Window &window) { m_action(window); } 2278 2279 const std::string &GetLabel() { return m_label; } 2280 2281 protected: 2282 std::string m_label; 2283 std::function<void(Window &)> m_action; 2284 }; 2285 2286 class FormDelegate { 2287 public: 2288 FormDelegate() = default; 2289 2290 virtual ~FormDelegate() = default; 2291 2292 virtual std::string GetName() = 0; 2293 2294 virtual void UpdateFieldsVisibility() {} 2295 2296 FieldDelegate *GetField(uint32_t field_index) { 2297 if (field_index < m_fields.size()) 2298 return m_fields[field_index].get(); 2299 return nullptr; 2300 } 2301 2302 FormAction &GetAction(int action_index) { return m_actions[action_index]; } 2303 2304 int GetNumberOfFields() { return m_fields.size(); } 2305 2306 int GetNumberOfActions() { return m_actions.size(); } 2307 2308 bool HasError() { return !m_error.empty(); } 2309 2310 void ClearError() { m_error.clear(); } 2311 2312 const std::string &GetError() { return m_error; } 2313 2314 void SetError(const char *error) { m_error = error; } 2315 2316 // If all fields are valid, true is returned. Otherwise, an error message is 2317 // set and false is returned. This method is usually called at the start of an 2318 // action that requires valid fields. 2319 bool CheckFieldsValidity() { 2320 for (int i = 0; i < GetNumberOfFields(); i++) { 2321 GetField(i)->FieldDelegateExitCallback(); 2322 if (GetField(i)->FieldDelegateHasError()) { 2323 SetError("Some fields are invalid!"); 2324 return false; 2325 } 2326 } 2327 return true; 2328 } 2329 2330 // Factory methods to create and add fields of specific types. 2331 2332 TextFieldDelegate *AddTextField(const char *label, const char *content, 2333 bool required) { 2334 TextFieldDelegate *delegate = 2335 new TextFieldDelegate(label, content, required); 2336 m_fields.push_back(FieldDelegateUP(delegate)); 2337 return delegate; 2338 } 2339 2340 FileFieldDelegate *AddFileField(const char *label, const char *content, 2341 bool need_to_exist, bool required) { 2342 FileFieldDelegate *delegate = 2343 new FileFieldDelegate(label, content, need_to_exist, required); 2344 m_fields.push_back(FieldDelegateUP(delegate)); 2345 return delegate; 2346 } 2347 2348 DirectoryFieldDelegate *AddDirectoryField(const char *label, 2349 const char *content, 2350 bool need_to_exist, bool required) { 2351 DirectoryFieldDelegate *delegate = 2352 new DirectoryFieldDelegate(label, content, need_to_exist, required); 2353 m_fields.push_back(FieldDelegateUP(delegate)); 2354 return delegate; 2355 } 2356 2357 ArchFieldDelegate *AddArchField(const char *label, const char *content, 2358 bool required) { 2359 ArchFieldDelegate *delegate = 2360 new ArchFieldDelegate(label, content, required); 2361 m_fields.push_back(FieldDelegateUP(delegate)); 2362 return delegate; 2363 } 2364 2365 IntegerFieldDelegate *AddIntegerField(const char *label, int content, 2366 bool required) { 2367 IntegerFieldDelegate *delegate = 2368 new IntegerFieldDelegate(label, content, required); 2369 m_fields.push_back(FieldDelegateUP(delegate)); 2370 return delegate; 2371 } 2372 2373 BooleanFieldDelegate *AddBooleanField(const char *label, bool content) { 2374 BooleanFieldDelegate *delegate = new BooleanFieldDelegate(label, content); 2375 m_fields.push_back(FieldDelegateUP(delegate)); 2376 return delegate; 2377 } 2378 2379 LazyBooleanFieldDelegate *AddLazyBooleanField(const char *label, 2380 const char *calculate_label) { 2381 LazyBooleanFieldDelegate *delegate = 2382 new LazyBooleanFieldDelegate(label, calculate_label); 2383 m_fields.push_back(FieldDelegateUP(delegate)); 2384 return delegate; 2385 } 2386 2387 ChoicesFieldDelegate *AddChoicesField(const char *label, int height, 2388 std::vector<std::string> choices) { 2389 ChoicesFieldDelegate *delegate = 2390 new ChoicesFieldDelegate(label, height, choices); 2391 m_fields.push_back(FieldDelegateUP(delegate)); 2392 return delegate; 2393 } 2394 2395 PlatformPluginFieldDelegate *AddPlatformPluginField(Debugger &debugger) { 2396 PlatformPluginFieldDelegate *delegate = 2397 new PlatformPluginFieldDelegate(debugger); 2398 m_fields.push_back(FieldDelegateUP(delegate)); 2399 return delegate; 2400 } 2401 2402 ProcessPluginFieldDelegate *AddProcessPluginField() { 2403 ProcessPluginFieldDelegate *delegate = new ProcessPluginFieldDelegate(); 2404 m_fields.push_back(FieldDelegateUP(delegate)); 2405 return delegate; 2406 } 2407 2408 template <class T> 2409 ListFieldDelegate<T> *AddListField(const char *label, T default_field) { 2410 ListFieldDelegate<T> *delegate = 2411 new ListFieldDelegate<T>(label, default_field); 2412 m_fields.push_back(FieldDelegateUP(delegate)); 2413 return delegate; 2414 } 2415 2416 ArgumentsFieldDelegate *AddArgumentsField() { 2417 ArgumentsFieldDelegate *delegate = new ArgumentsFieldDelegate(); 2418 m_fields.push_back(FieldDelegateUP(delegate)); 2419 return delegate; 2420 } 2421 2422 template <class K, class V> 2423 MappingFieldDelegate<K, V> *AddMappingField(K key_field, V value_field) { 2424 MappingFieldDelegate<K, V> *delegate = 2425 new MappingFieldDelegate<K, V>(key_field, value_field); 2426 m_fields.push_back(FieldDelegateUP(delegate)); 2427 return delegate; 2428 } 2429 2430 EnvironmentVariableNameFieldDelegate * 2431 AddEnvironmentVariableNameField(const char *content) { 2432 EnvironmentVariableNameFieldDelegate *delegate = 2433 new EnvironmentVariableNameFieldDelegate(content); 2434 m_fields.push_back(FieldDelegateUP(delegate)); 2435 return delegate; 2436 } 2437 2438 EnvironmentVariableFieldDelegate *AddEnvironmentVariableField() { 2439 EnvironmentVariableFieldDelegate *delegate = 2440 new EnvironmentVariableFieldDelegate(); 2441 m_fields.push_back(FieldDelegateUP(delegate)); 2442 return delegate; 2443 } 2444 2445 EnvironmentVariableListFieldDelegate * 2446 AddEnvironmentVariableListField(const char *label) { 2447 EnvironmentVariableListFieldDelegate *delegate = 2448 new EnvironmentVariableListFieldDelegate(label); 2449 m_fields.push_back(FieldDelegateUP(delegate)); 2450 return delegate; 2451 } 2452 2453 // Factory methods for adding actions. 2454 2455 void AddAction(const char *label, std::function<void(Window &)> action) { 2456 m_actions.push_back(FormAction(label, action)); 2457 } 2458 2459 protected: 2460 std::vector<FieldDelegateUP> m_fields; 2461 std::vector<FormAction> m_actions; 2462 // Optional error message. If empty, form is considered to have no error. 2463 std::string m_error; 2464 }; 2465 2466 typedef std::shared_ptr<FormDelegate> FormDelegateSP; 2467 2468 class FormWindowDelegate : public WindowDelegate { 2469 public: 2470 FormWindowDelegate(FormDelegateSP &delegate_sp) : m_delegate_sp(delegate_sp) { 2471 assert(m_delegate_sp->GetNumberOfActions() > 0); 2472 if (m_delegate_sp->GetNumberOfFields() > 0) 2473 m_selection_type = SelectionType::Field; 2474 else 2475 m_selection_type = SelectionType::Action; 2476 } 2477 2478 // Signify which element is selected. If a field or an action is selected, 2479 // then m_selection_index signifies the particular field or action that is 2480 // selected. 2481 enum class SelectionType { Field, Action }; 2482 2483 // A form window is padded by one character from all sides. First, if an error 2484 // message exists, it is drawn followed by a separator. Then one or more 2485 // fields are drawn. Finally, all available actions are drawn on a single 2486 // line. 2487 // 2488 // ___<Form Name>_________________________________________________ 2489 // | | 2490 // | - Error message if it exists. | 2491 // |-------------------------------------------------------------| 2492 // | Form elements here. | 2493 // | Form actions here. | 2494 // | | 2495 // |______________________________________[Press Esc to cancel]__| 2496 // 2497 2498 // One line for the error and another for the horizontal line. 2499 int GetErrorHeight() { 2500 if (m_delegate_sp->HasError()) 2501 return 2; 2502 return 0; 2503 } 2504 2505 // Actions span a single line. 2506 int GetActionsHeight() { 2507 if (m_delegate_sp->GetNumberOfActions() > 0) 2508 return 1; 2509 return 0; 2510 } 2511 2512 // Get the total number of needed lines to draw the contents. 2513 int GetContentHeight() { 2514 int height = 0; 2515 height += GetErrorHeight(); 2516 for (int i = 0; i < m_delegate_sp->GetNumberOfFields(); i++) { 2517 if (!m_delegate_sp->GetField(i)->FieldDelegateIsVisible()) 2518 continue; 2519 height += m_delegate_sp->GetField(i)->FieldDelegateGetHeight(); 2520 } 2521 height += GetActionsHeight(); 2522 return height; 2523 } 2524 2525 ScrollContext GetScrollContext() { 2526 if (m_selection_type == SelectionType::Action) 2527 return ScrollContext(GetContentHeight() - 1); 2528 2529 FieldDelegate *field = m_delegate_sp->GetField(m_selection_index); 2530 ScrollContext context = field->FieldDelegateGetScrollContext(); 2531 2532 int offset = GetErrorHeight(); 2533 for (int i = 0; i < m_selection_index; i++) { 2534 if (!m_delegate_sp->GetField(i)->FieldDelegateIsVisible()) 2535 continue; 2536 offset += m_delegate_sp->GetField(i)->FieldDelegateGetHeight(); 2537 } 2538 context.Offset(offset); 2539 2540 // If the context is touching the error, include the error in the context as 2541 // well. 2542 if (context.start == GetErrorHeight()) 2543 context.start = 0; 2544 2545 return context; 2546 } 2547 2548 void UpdateScrolling(Surface &surface) { 2549 ScrollContext context = GetScrollContext(); 2550 int content_height = GetContentHeight(); 2551 int surface_height = surface.GetHeight(); 2552 int visible_height = std::min(content_height, surface_height); 2553 int last_visible_line = m_first_visible_line + visible_height - 1; 2554 2555 // If the last visible line is bigger than the content, then it is invalid 2556 // and needs to be set to the last line in the content. This can happen when 2557 // a field has shrunk in height. 2558 if (last_visible_line > content_height - 1) { 2559 m_first_visible_line = content_height - visible_height; 2560 } 2561 2562 if (context.start < m_first_visible_line) { 2563 m_first_visible_line = context.start; 2564 return; 2565 } 2566 2567 if (context.end > last_visible_line) { 2568 m_first_visible_line = context.end - visible_height + 1; 2569 } 2570 } 2571 2572 void DrawError(Surface &surface) { 2573 if (!m_delegate_sp->HasError()) 2574 return; 2575 surface.MoveCursor(0, 0); 2576 surface.AttributeOn(COLOR_PAIR(RedOnBlack)); 2577 surface.PutChar(ACS_DIAMOND); 2578 surface.PutChar(' '); 2579 surface.PutCStringTruncated(1, m_delegate_sp->GetError().c_str()); 2580 surface.AttributeOff(COLOR_PAIR(RedOnBlack)); 2581 2582 surface.MoveCursor(0, 1); 2583 surface.HorizontalLine(surface.GetWidth()); 2584 } 2585 2586 void DrawFields(Surface &surface) { 2587 int line = 0; 2588 int width = surface.GetWidth(); 2589 bool a_field_is_selected = m_selection_type == SelectionType::Field; 2590 for (int i = 0; i < m_delegate_sp->GetNumberOfFields(); i++) { 2591 FieldDelegate *field = m_delegate_sp->GetField(i); 2592 if (!field->FieldDelegateIsVisible()) 2593 continue; 2594 bool is_field_selected = a_field_is_selected && m_selection_index == i; 2595 int height = field->FieldDelegateGetHeight(); 2596 Rect bounds = Rect(Point(0, line), Size(width, height)); 2597 Surface field_surface = surface.SubSurface(bounds); 2598 field->FieldDelegateDraw(field_surface, is_field_selected); 2599 line += height; 2600 } 2601 } 2602 2603 void DrawActions(Surface &surface) { 2604 int number_of_actions = m_delegate_sp->GetNumberOfActions(); 2605 int width = surface.GetWidth() / number_of_actions; 2606 bool an_action_is_selected = m_selection_type == SelectionType::Action; 2607 int x = 0; 2608 for (int i = 0; i < number_of_actions; i++) { 2609 bool is_action_selected = an_action_is_selected && m_selection_index == i; 2610 FormAction &action = m_delegate_sp->GetAction(i); 2611 Rect bounds = Rect(Point(x, 0), Size(width, 1)); 2612 Surface action_surface = surface.SubSurface(bounds); 2613 action.Draw(action_surface, is_action_selected); 2614 x += width; 2615 } 2616 } 2617 2618 void DrawElements(Surface &surface) { 2619 Rect frame = surface.GetFrame(); 2620 Rect fields_bounds, actions_bounds; 2621 frame.HorizontalSplit(surface.GetHeight() - GetActionsHeight(), 2622 fields_bounds, actions_bounds); 2623 Surface fields_surface = surface.SubSurface(fields_bounds); 2624 Surface actions_surface = surface.SubSurface(actions_bounds); 2625 2626 DrawFields(fields_surface); 2627 DrawActions(actions_surface); 2628 } 2629 2630 // Contents are first drawn on a pad. Then a subset of that pad is copied to 2631 // the derived window starting at the first visible line. This essentially 2632 // provides scrolling functionality. 2633 void DrawContent(Surface &surface) { 2634 UpdateScrolling(surface); 2635 2636 int width = surface.GetWidth(); 2637 int height = GetContentHeight(); 2638 Pad pad = Pad(Size(width, height)); 2639 2640 Rect frame = pad.GetFrame(); 2641 Rect error_bounds, elements_bounds; 2642 frame.HorizontalSplit(GetErrorHeight(), error_bounds, elements_bounds); 2643 Surface error_surface = pad.SubSurface(error_bounds); 2644 Surface elements_surface = pad.SubSurface(elements_bounds); 2645 2646 DrawError(error_surface); 2647 DrawElements(elements_surface); 2648 2649 int copy_height = std::min(surface.GetHeight(), pad.GetHeight()); 2650 pad.CopyToSurface(surface, Point(0, m_first_visible_line), Point(), 2651 Size(width, copy_height)); 2652 } 2653 2654 void DrawSubmitHint(Surface &surface, bool is_active) { 2655 surface.MoveCursor(2, surface.GetHeight() - 1); 2656 if (is_active) 2657 surface.AttributeOn(A_BOLD | COLOR_PAIR(BlackOnWhite)); 2658 surface.Printf("[Press Alt+Enter to %s]", 2659 m_delegate_sp->GetAction(0).GetLabel().c_str()); 2660 if (is_active) 2661 surface.AttributeOff(A_BOLD | COLOR_PAIR(BlackOnWhite)); 2662 } 2663 2664 bool WindowDelegateDraw(Window &window, bool force) override { 2665 m_delegate_sp->UpdateFieldsVisibility(); 2666 2667 window.Erase(); 2668 2669 window.DrawTitleBox(m_delegate_sp->GetName().c_str(), 2670 "Press Esc to Cancel"); 2671 DrawSubmitHint(window, window.IsActive()); 2672 2673 Rect content_bounds = window.GetFrame(); 2674 content_bounds.Inset(2, 2); 2675 Surface content_surface = window.SubSurface(content_bounds); 2676 2677 DrawContent(content_surface); 2678 return true; 2679 } 2680 2681 void SkipNextHiddenFields() { 2682 while (true) { 2683 if (m_delegate_sp->GetField(m_selection_index)->FieldDelegateIsVisible()) 2684 return; 2685 2686 if (m_selection_index == m_delegate_sp->GetNumberOfFields() - 1) { 2687 m_selection_type = SelectionType::Action; 2688 m_selection_index = 0; 2689 return; 2690 } 2691 2692 m_selection_index++; 2693 } 2694 } 2695 2696 HandleCharResult SelectNext(int key) { 2697 if (m_selection_type == SelectionType::Action) { 2698 if (m_selection_index < m_delegate_sp->GetNumberOfActions() - 1) { 2699 m_selection_index++; 2700 return eKeyHandled; 2701 } 2702 2703 m_selection_index = 0; 2704 m_selection_type = SelectionType::Field; 2705 SkipNextHiddenFields(); 2706 if (m_selection_type == SelectionType::Field) { 2707 FieldDelegate *next_field = m_delegate_sp->GetField(m_selection_index); 2708 next_field->FieldDelegateSelectFirstElement(); 2709 } 2710 return eKeyHandled; 2711 } 2712 2713 FieldDelegate *field = m_delegate_sp->GetField(m_selection_index); 2714 if (!field->FieldDelegateOnLastOrOnlyElement()) { 2715 return field->FieldDelegateHandleChar(key); 2716 } 2717 2718 field->FieldDelegateExitCallback(); 2719 2720 if (m_selection_index == m_delegate_sp->GetNumberOfFields() - 1) { 2721 m_selection_type = SelectionType::Action; 2722 m_selection_index = 0; 2723 return eKeyHandled; 2724 } 2725 2726 m_selection_index++; 2727 SkipNextHiddenFields(); 2728 2729 if (m_selection_type == SelectionType::Field) { 2730 FieldDelegate *next_field = m_delegate_sp->GetField(m_selection_index); 2731 next_field->FieldDelegateSelectFirstElement(); 2732 } 2733 2734 return eKeyHandled; 2735 } 2736 2737 void SkipPreviousHiddenFields() { 2738 while (true) { 2739 if (m_delegate_sp->GetField(m_selection_index)->FieldDelegateIsVisible()) 2740 return; 2741 2742 if (m_selection_index == 0) { 2743 m_selection_type = SelectionType::Action; 2744 m_selection_index = 0; 2745 return; 2746 } 2747 2748 m_selection_index--; 2749 } 2750 } 2751 2752 HandleCharResult SelectPrevious(int key) { 2753 if (m_selection_type == SelectionType::Action) { 2754 if (m_selection_index > 0) { 2755 m_selection_index--; 2756 return eKeyHandled; 2757 } 2758 m_selection_index = m_delegate_sp->GetNumberOfFields() - 1; 2759 m_selection_type = SelectionType::Field; 2760 SkipPreviousHiddenFields(); 2761 if (m_selection_type == SelectionType::Field) { 2762 FieldDelegate *previous_field = 2763 m_delegate_sp->GetField(m_selection_index); 2764 previous_field->FieldDelegateSelectLastElement(); 2765 } 2766 return eKeyHandled; 2767 } 2768 2769 FieldDelegate *field = m_delegate_sp->GetField(m_selection_index); 2770 if (!field->FieldDelegateOnFirstOrOnlyElement()) { 2771 return field->FieldDelegateHandleChar(key); 2772 } 2773 2774 field->FieldDelegateExitCallback(); 2775 2776 if (m_selection_index == 0) { 2777 m_selection_type = SelectionType::Action; 2778 m_selection_index = m_delegate_sp->GetNumberOfActions() - 1; 2779 return eKeyHandled; 2780 } 2781 2782 m_selection_index--; 2783 SkipPreviousHiddenFields(); 2784 2785 if (m_selection_type == SelectionType::Field) { 2786 FieldDelegate *previous_field = 2787 m_delegate_sp->GetField(m_selection_index); 2788 previous_field->FieldDelegateSelectLastElement(); 2789 } 2790 2791 return eKeyHandled; 2792 } 2793 2794 void ExecuteAction(Window &window, int index) { 2795 FormAction &action = m_delegate_sp->GetAction(index); 2796 action.Execute(window); 2797 if (m_delegate_sp->HasError()) { 2798 m_first_visible_line = 0; 2799 m_selection_index = 0; 2800 m_selection_type = SelectionType::Field; 2801 } 2802 } 2803 2804 // Always return eKeyHandled to absorb all events since forms are always 2805 // added as pop-ups that should take full control until canceled or submitted. 2806 HandleCharResult WindowDelegateHandleChar(Window &window, int key) override { 2807 switch (key) { 2808 case '\r': 2809 case '\n': 2810 case KEY_ENTER: 2811 if (m_selection_type == SelectionType::Action) { 2812 ExecuteAction(window, m_selection_index); 2813 return eKeyHandled; 2814 } 2815 break; 2816 case KEY_ALT_ENTER: 2817 ExecuteAction(window, 0); 2818 return eKeyHandled; 2819 case '\t': 2820 SelectNext(key); 2821 return eKeyHandled; 2822 case KEY_SHIFT_TAB: 2823 SelectPrevious(key); 2824 return eKeyHandled; 2825 case KEY_ESCAPE: 2826 window.GetParent()->RemoveSubWindow(&window); 2827 return eKeyHandled; 2828 default: 2829 break; 2830 } 2831 2832 // If the key wasn't handled and one of the fields is selected, pass the key 2833 // to that field. 2834 if (m_selection_type == SelectionType::Field) { 2835 FieldDelegate *field = m_delegate_sp->GetField(m_selection_index); 2836 if (field->FieldDelegateHandleChar(key) == eKeyHandled) 2837 return eKeyHandled; 2838 } 2839 2840 // If the key wasn't handled by the possibly selected field, handle some 2841 // extra keys for navigation. 2842 switch (key) { 2843 case KEY_DOWN: 2844 SelectNext(key); 2845 return eKeyHandled; 2846 case KEY_UP: 2847 SelectPrevious(key); 2848 return eKeyHandled; 2849 default: 2850 break; 2851 } 2852 2853 return eKeyHandled; 2854 } 2855 2856 protected: 2857 FormDelegateSP m_delegate_sp; 2858 // The index of the currently selected SelectionType. 2859 int m_selection_index = 0; 2860 // See SelectionType class enum. 2861 SelectionType m_selection_type; 2862 // The first visible line from the pad. 2863 int m_first_visible_line = 0; 2864 }; 2865 2866 /////////////////////////// 2867 // Form Delegate Instances 2868 /////////////////////////// 2869 2870 class DetachOrKillProcessFormDelegate : public FormDelegate { 2871 public: 2872 DetachOrKillProcessFormDelegate(Process *process) : m_process(process) { 2873 SetError("There is a running process, either detach or kill it."); 2874 2875 m_keep_stopped_field = 2876 AddBooleanField("Keep process stopped when detaching.", false); 2877 2878 AddAction("Detach", [this](Window &window) { Detach(window); }); 2879 AddAction("Kill", [this](Window &window) { Kill(window); }); 2880 } 2881 2882 std::string GetName() override { return "Detach/Kill Process"; } 2883 2884 void Kill(Window &window) { 2885 Status destroy_status(m_process->Destroy(false)); 2886 if (destroy_status.Fail()) { 2887 SetError("Failed to kill process."); 2888 return; 2889 } 2890 window.GetParent()->RemoveSubWindow(&window); 2891 } 2892 2893 void Detach(Window &window) { 2894 Status detach_status(m_process->Detach(m_keep_stopped_field->GetBoolean())); 2895 if (detach_status.Fail()) { 2896 SetError("Failed to detach from process."); 2897 return; 2898 } 2899 window.GetParent()->RemoveSubWindow(&window); 2900 } 2901 2902 protected: 2903 Process *m_process; 2904 BooleanFieldDelegate *m_keep_stopped_field; 2905 }; 2906 2907 class ProcessAttachFormDelegate : public FormDelegate { 2908 public: 2909 ProcessAttachFormDelegate(Debugger &debugger, WindowSP main_window_sp) 2910 : m_debugger(debugger), m_main_window_sp(main_window_sp) { 2911 std::vector<std::string> types; 2912 types.push_back(std::string("Name")); 2913 types.push_back(std::string("PID")); 2914 m_type_field = AddChoicesField("Attach By", 2, types); 2915 m_pid_field = AddIntegerField("PID", 0, true); 2916 m_name_field = 2917 AddTextField("Process Name", GetDefaultProcessName().c_str(), true); 2918 m_continue_field = AddBooleanField("Continue once attached.", false); 2919 m_wait_for_field = AddBooleanField("Wait for process to launch.", false); 2920 m_include_existing_field = 2921 AddBooleanField("Include existing processes.", false); 2922 m_show_advanced_field = AddBooleanField("Show advanced settings.", false); 2923 m_plugin_field = AddProcessPluginField(); 2924 2925 AddAction("Attach", [this](Window &window) { Attach(window); }); 2926 } 2927 2928 std::string GetName() override { return "Attach Process"; } 2929 2930 void UpdateFieldsVisibility() override { 2931 if (m_type_field->GetChoiceContent() == "Name") { 2932 m_pid_field->FieldDelegateHide(); 2933 m_name_field->FieldDelegateShow(); 2934 m_wait_for_field->FieldDelegateShow(); 2935 if (m_wait_for_field->GetBoolean()) 2936 m_include_existing_field->FieldDelegateShow(); 2937 else 2938 m_include_existing_field->FieldDelegateHide(); 2939 } else { 2940 m_pid_field->FieldDelegateShow(); 2941 m_name_field->FieldDelegateHide(); 2942 m_wait_for_field->FieldDelegateHide(); 2943 m_include_existing_field->FieldDelegateHide(); 2944 } 2945 if (m_show_advanced_field->GetBoolean()) 2946 m_plugin_field->FieldDelegateShow(); 2947 else 2948 m_plugin_field->FieldDelegateHide(); 2949 } 2950 2951 // Get the basename of the target's main executable if available, empty string 2952 // otherwise. 2953 std::string GetDefaultProcessName() { 2954 Target *target = m_debugger.GetSelectedTarget().get(); 2955 if (target == nullptr) 2956 return ""; 2957 2958 ModuleSP module_sp = target->GetExecutableModule(); 2959 if (!module_sp->IsExecutable()) 2960 return ""; 2961 2962 return module_sp->GetFileSpec().GetFilename().AsCString(); 2963 } 2964 2965 bool StopRunningProcess() { 2966 ExecutionContext exe_ctx = 2967 m_debugger.GetCommandInterpreter().GetExecutionContext(); 2968 2969 if (!exe_ctx.HasProcessScope()) 2970 return false; 2971 2972 Process *process = exe_ctx.GetProcessPtr(); 2973 if (!(process && process->IsAlive())) 2974 return false; 2975 2976 FormDelegateSP form_delegate_sp = 2977 FormDelegateSP(new DetachOrKillProcessFormDelegate(process)); 2978 Rect bounds = m_main_window_sp->GetCenteredRect(85, 8); 2979 WindowSP form_window_sp = m_main_window_sp->CreateSubWindow( 2980 form_delegate_sp->GetName().c_str(), bounds, true); 2981 WindowDelegateSP window_delegate_sp = 2982 WindowDelegateSP(new FormWindowDelegate(form_delegate_sp)); 2983 form_window_sp->SetDelegate(window_delegate_sp); 2984 2985 return true; 2986 } 2987 2988 Target *GetTarget() { 2989 Target *target = m_debugger.GetSelectedTarget().get(); 2990 2991 if (target != nullptr) 2992 return target; 2993 2994 TargetSP new_target_sp; 2995 m_debugger.GetTargetList().CreateTarget( 2996 m_debugger, "", "", eLoadDependentsNo, nullptr, new_target_sp); 2997 2998 target = new_target_sp.get(); 2999 3000 if (target == nullptr) 3001 SetError("Failed to create target."); 3002 3003 m_debugger.GetTargetList().SetSelectedTarget(new_target_sp); 3004 3005 return target; 3006 } 3007 3008 ProcessAttachInfo GetAttachInfo() { 3009 ProcessAttachInfo attach_info; 3010 attach_info.SetContinueOnceAttached(m_continue_field->GetBoolean()); 3011 if (m_type_field->GetChoiceContent() == "Name") { 3012 attach_info.GetExecutableFile().SetFile(m_name_field->GetText(), 3013 FileSpec::Style::native); 3014 attach_info.SetWaitForLaunch(m_wait_for_field->GetBoolean()); 3015 if (m_wait_for_field->GetBoolean()) 3016 attach_info.SetIgnoreExisting(!m_include_existing_field->GetBoolean()); 3017 } else { 3018 attach_info.SetProcessID(m_pid_field->GetInteger()); 3019 } 3020 attach_info.SetProcessPluginName(m_plugin_field->GetPluginName()); 3021 3022 return attach_info; 3023 } 3024 3025 void Attach(Window &window) { 3026 ClearError(); 3027 3028 bool all_fields_are_valid = CheckFieldsValidity(); 3029 if (!all_fields_are_valid) 3030 return; 3031 3032 bool process_is_running = StopRunningProcess(); 3033 if (process_is_running) 3034 return; 3035 3036 Target *target = GetTarget(); 3037 if (HasError()) 3038 return; 3039 3040 StreamString stream; 3041 ProcessAttachInfo attach_info = GetAttachInfo(); 3042 Status status = target->Attach(attach_info, &stream); 3043 3044 if (status.Fail()) { 3045 SetError(status.AsCString()); 3046 return; 3047 } 3048 3049 ProcessSP process_sp(target->GetProcessSP()); 3050 if (!process_sp) { 3051 SetError("Attached sucessfully but target has no process."); 3052 return; 3053 } 3054 3055 if (attach_info.GetContinueOnceAttached()) 3056 process_sp->Resume(); 3057 3058 window.GetParent()->RemoveSubWindow(&window); 3059 } 3060 3061 protected: 3062 Debugger &m_debugger; 3063 WindowSP m_main_window_sp; 3064 3065 ChoicesFieldDelegate *m_type_field; 3066 IntegerFieldDelegate *m_pid_field; 3067 TextFieldDelegate *m_name_field; 3068 BooleanFieldDelegate *m_continue_field; 3069 BooleanFieldDelegate *m_wait_for_field; 3070 BooleanFieldDelegate *m_include_existing_field; 3071 BooleanFieldDelegate *m_show_advanced_field; 3072 ProcessPluginFieldDelegate *m_plugin_field; 3073 }; 3074 3075 class TargetCreateFormDelegate : public FormDelegate { 3076 public: 3077 TargetCreateFormDelegate(Debugger &debugger) : m_debugger(debugger) { 3078 m_executable_field = AddFileField("Executable", "", /*need_to_exist=*/true, 3079 /*required=*/true); 3080 m_core_file_field = AddFileField("Core File", "", /*need_to_exist=*/true, 3081 /*required=*/false); 3082 m_symbol_file_field = AddFileField( 3083 "Symbol File", "", /*need_to_exist=*/true, /*required=*/false); 3084 m_show_advanced_field = AddBooleanField("Show advanced settings.", false); 3085 m_remote_file_field = AddFileField( 3086 "Remote File", "", /*need_to_exist=*/false, /*required=*/false); 3087 m_arch_field = AddArchField("Architecture", "", /*required=*/false); 3088 m_platform_field = AddPlatformPluginField(debugger); 3089 m_load_dependent_files_field = 3090 AddChoicesField("Load Dependents", 3, GetLoadDependentFilesChoices()); 3091 3092 AddAction("Create", [this](Window &window) { CreateTarget(window); }); 3093 } 3094 3095 std::string GetName() override { return "Create Target"; } 3096 3097 void UpdateFieldsVisibility() override { 3098 if (m_show_advanced_field->GetBoolean()) { 3099 m_remote_file_field->FieldDelegateShow(); 3100 m_arch_field->FieldDelegateShow(); 3101 m_platform_field->FieldDelegateShow(); 3102 m_load_dependent_files_field->FieldDelegateShow(); 3103 } else { 3104 m_remote_file_field->FieldDelegateHide(); 3105 m_arch_field->FieldDelegateHide(); 3106 m_platform_field->FieldDelegateHide(); 3107 m_load_dependent_files_field->FieldDelegateHide(); 3108 } 3109 } 3110 3111 static constexpr const char *kLoadDependentFilesNo = "No"; 3112 static constexpr const char *kLoadDependentFilesYes = "Yes"; 3113 static constexpr const char *kLoadDependentFilesExecOnly = "Executable only"; 3114 3115 std::vector<std::string> GetLoadDependentFilesChoices() { 3116 std::vector<std::string> load_dependents_options; 3117 load_dependents_options.push_back(kLoadDependentFilesExecOnly); 3118 load_dependents_options.push_back(kLoadDependentFilesYes); 3119 load_dependents_options.push_back(kLoadDependentFilesNo); 3120 return load_dependents_options; 3121 } 3122 3123 LoadDependentFiles GetLoadDependentFiles() { 3124 std::string choice = m_load_dependent_files_field->GetChoiceContent(); 3125 if (choice == kLoadDependentFilesNo) 3126 return eLoadDependentsNo; 3127 if (choice == kLoadDependentFilesYes) 3128 return eLoadDependentsYes; 3129 return eLoadDependentsDefault; 3130 } 3131 3132 OptionGroupPlatform GetPlatformOptions() { 3133 OptionGroupPlatform platform_options(false); 3134 platform_options.SetPlatformName(m_platform_field->GetPluginName().c_str()); 3135 return platform_options; 3136 } 3137 3138 TargetSP GetTarget() { 3139 OptionGroupPlatform platform_options = GetPlatformOptions(); 3140 TargetSP target_sp; 3141 Status status = m_debugger.GetTargetList().CreateTarget( 3142 m_debugger, m_executable_field->GetPath(), 3143 m_arch_field->GetArchString(), GetLoadDependentFiles(), 3144 &platform_options, target_sp); 3145 3146 if (status.Fail()) { 3147 SetError(status.AsCString()); 3148 return nullptr; 3149 } 3150 3151 m_debugger.GetTargetList().SetSelectedTarget(target_sp); 3152 3153 return target_sp; 3154 } 3155 3156 void SetSymbolFile(TargetSP target_sp) { 3157 if (!m_symbol_file_field->IsSpecified()) 3158 return; 3159 3160 ModuleSP module_sp(target_sp->GetExecutableModule()); 3161 if (!module_sp) 3162 return; 3163 3164 module_sp->SetSymbolFileFileSpec( 3165 m_symbol_file_field->GetResolvedFileSpec()); 3166 } 3167 3168 void SetCoreFile(TargetSP target_sp) { 3169 if (!m_core_file_field->IsSpecified()) 3170 return; 3171 3172 FileSpec core_file_spec = m_core_file_field->GetResolvedFileSpec(); 3173 3174 FileSpec core_file_directory_spec; 3175 core_file_directory_spec.SetDirectory(core_file_spec.GetDirectory()); 3176 target_sp->AppendExecutableSearchPaths(core_file_directory_spec); 3177 3178 ProcessSP process_sp(target_sp->CreateProcess( 3179 m_debugger.GetListener(), llvm::StringRef(), &core_file_spec, false)); 3180 3181 if (!process_sp) { 3182 SetError("Unable to find process plug-in for core file!"); 3183 return; 3184 } 3185 3186 Status status = process_sp->LoadCore(); 3187 if (status.Fail()) { 3188 SetError("Can't find plug-in for core file!"); 3189 return; 3190 } 3191 } 3192 3193 void SetRemoteFile(TargetSP target_sp) { 3194 if (!m_remote_file_field->IsSpecified()) 3195 return; 3196 3197 ModuleSP module_sp(target_sp->GetExecutableModule()); 3198 if (!module_sp) 3199 return; 3200 3201 FileSpec remote_file_spec = m_remote_file_field->GetFileSpec(); 3202 module_sp->SetPlatformFileSpec(remote_file_spec); 3203 } 3204 3205 void RemoveTarget(TargetSP target_sp) { 3206 m_debugger.GetTargetList().DeleteTarget(target_sp); 3207 } 3208 3209 void CreateTarget(Window &window) { 3210 ClearError(); 3211 3212 bool all_fields_are_valid = CheckFieldsValidity(); 3213 if (!all_fields_are_valid) 3214 return; 3215 3216 TargetSP target_sp = GetTarget(); 3217 if (HasError()) 3218 return; 3219 3220 SetSymbolFile(target_sp); 3221 if (HasError()) { 3222 RemoveTarget(target_sp); 3223 return; 3224 } 3225 3226 SetCoreFile(target_sp); 3227 if (HasError()) { 3228 RemoveTarget(target_sp); 3229 return; 3230 } 3231 3232 SetRemoteFile(target_sp); 3233 if (HasError()) { 3234 RemoveTarget(target_sp); 3235 return; 3236 } 3237 3238 window.GetParent()->RemoveSubWindow(&window); 3239 } 3240 3241 protected: 3242 Debugger &m_debugger; 3243 3244 FileFieldDelegate *m_executable_field; 3245 FileFieldDelegate *m_core_file_field; 3246 FileFieldDelegate *m_symbol_file_field; 3247 BooleanFieldDelegate *m_show_advanced_field; 3248 FileFieldDelegate *m_remote_file_field; 3249 ArchFieldDelegate *m_arch_field; 3250 PlatformPluginFieldDelegate *m_platform_field; 3251 ChoicesFieldDelegate *m_load_dependent_files_field; 3252 }; 3253 3254 class ProcessLaunchFormDelegate : public FormDelegate { 3255 public: 3256 ProcessLaunchFormDelegate(Debugger &debugger, WindowSP main_window_sp) 3257 : m_debugger(debugger), m_main_window_sp(main_window_sp) { 3258 3259 m_arguments_field = AddArgumentsField(); 3260 SetArgumentsFieldDefaultValue(); 3261 m_target_environment_field = 3262 AddEnvironmentVariableListField("Target Environment Variables"); 3263 SetTargetEnvironmentFieldDefaultValue(); 3264 m_working_directory_field = AddDirectoryField( 3265 "Working Directory", GetDefaultWorkingDirectory().c_str(), true, false); 3266 3267 m_show_advanced_field = AddBooleanField("Show advanced settings.", false); 3268 3269 m_stop_at_entry_field = AddBooleanField("Stop at entry point.", false); 3270 m_detach_on_error_field = 3271 AddBooleanField("Detach on error.", GetDefaultDetachOnError()); 3272 m_disable_aslr_field = 3273 AddBooleanField("Disable ASLR", GetDefaultDisableASLR()); 3274 m_plugin_field = AddProcessPluginField(); 3275 m_arch_field = AddArchField("Architecture", "", false); 3276 m_shell_field = AddFileField("Shell", "", true, false); 3277 m_expand_shell_arguments_field = 3278 AddBooleanField("Expand shell arguments.", false); 3279 3280 m_disable_standard_io_field = 3281 AddBooleanField("Disable Standard IO", GetDefaultDisableStandardIO()); 3282 m_standard_output_field = 3283 AddFileField("Standard Output File", "", /*need_to_exist=*/false, 3284 /*required=*/false); 3285 m_standard_error_field = 3286 AddFileField("Standard Error File", "", /*need_to_exist=*/false, 3287 /*required=*/false); 3288 m_standard_input_field = 3289 AddFileField("Standard Input File", "", /*need_to_exist=*/false, 3290 /*required=*/false); 3291 3292 m_show_inherited_environment_field = 3293 AddBooleanField("Show inherited environment variables.", false); 3294 m_inherited_environment_field = 3295 AddEnvironmentVariableListField("Inherited Environment Variables"); 3296 SetInheritedEnvironmentFieldDefaultValue(); 3297 3298 AddAction("Launch", [this](Window &window) { Launch(window); }); 3299 } 3300 3301 std::string GetName() override { return "Launch Process"; } 3302 3303 void UpdateFieldsVisibility() override { 3304 if (m_show_advanced_field->GetBoolean()) { 3305 m_stop_at_entry_field->FieldDelegateShow(); 3306 m_detach_on_error_field->FieldDelegateShow(); 3307 m_disable_aslr_field->FieldDelegateShow(); 3308 m_plugin_field->FieldDelegateShow(); 3309 m_arch_field->FieldDelegateShow(); 3310 m_shell_field->FieldDelegateShow(); 3311 m_expand_shell_arguments_field->FieldDelegateShow(); 3312 m_disable_standard_io_field->FieldDelegateShow(); 3313 if (m_disable_standard_io_field->GetBoolean()) { 3314 m_standard_input_field->FieldDelegateHide(); 3315 m_standard_output_field->FieldDelegateHide(); 3316 m_standard_error_field->FieldDelegateHide(); 3317 } else { 3318 m_standard_input_field->FieldDelegateShow(); 3319 m_standard_output_field->FieldDelegateShow(); 3320 m_standard_error_field->FieldDelegateShow(); 3321 } 3322 m_show_inherited_environment_field->FieldDelegateShow(); 3323 if (m_show_inherited_environment_field->GetBoolean()) 3324 m_inherited_environment_field->FieldDelegateShow(); 3325 else 3326 m_inherited_environment_field->FieldDelegateHide(); 3327 } else { 3328 m_stop_at_entry_field->FieldDelegateHide(); 3329 m_detach_on_error_field->FieldDelegateHide(); 3330 m_disable_aslr_field->FieldDelegateHide(); 3331 m_plugin_field->FieldDelegateHide(); 3332 m_arch_field->FieldDelegateHide(); 3333 m_shell_field->FieldDelegateHide(); 3334 m_expand_shell_arguments_field->FieldDelegateHide(); 3335 m_disable_standard_io_field->FieldDelegateHide(); 3336 m_standard_input_field->FieldDelegateHide(); 3337 m_standard_output_field->FieldDelegateHide(); 3338 m_standard_error_field->FieldDelegateHide(); 3339 m_show_inherited_environment_field->FieldDelegateHide(); 3340 m_inherited_environment_field->FieldDelegateHide(); 3341 } 3342 } 3343 3344 // Methods for setting the default value of the fields. 3345 3346 void SetArgumentsFieldDefaultValue() { 3347 TargetSP target = m_debugger.GetSelectedTarget(); 3348 if (target == nullptr) 3349 return; 3350 3351 const Args &target_arguments = 3352 target->GetProcessLaunchInfo().GetArguments(); 3353 m_arguments_field->AddArguments(target_arguments); 3354 } 3355 3356 void SetTargetEnvironmentFieldDefaultValue() { 3357 TargetSP target = m_debugger.GetSelectedTarget(); 3358 if (target == nullptr) 3359 return; 3360 3361 const Environment &target_environment = target->GetTargetEnvironment(); 3362 m_target_environment_field->AddEnvironmentVariables(target_environment); 3363 } 3364 3365 void SetInheritedEnvironmentFieldDefaultValue() { 3366 TargetSP target = m_debugger.GetSelectedTarget(); 3367 if (target == nullptr) 3368 return; 3369 3370 const Environment &inherited_environment = 3371 target->GetInheritedEnvironment(); 3372 m_inherited_environment_field->AddEnvironmentVariables( 3373 inherited_environment); 3374 } 3375 3376 std::string GetDefaultWorkingDirectory() { 3377 TargetSP target = m_debugger.GetSelectedTarget(); 3378 if (target == nullptr) 3379 return ""; 3380 3381 PlatformSP platform = target->GetPlatform(); 3382 return platform->GetWorkingDirectory().GetPath(); 3383 } 3384 3385 bool GetDefaultDisableASLR() { 3386 TargetSP target = m_debugger.GetSelectedTarget(); 3387 if (target == nullptr) 3388 return false; 3389 3390 return target->GetDisableASLR(); 3391 } 3392 3393 bool GetDefaultDisableStandardIO() { 3394 TargetSP target = m_debugger.GetSelectedTarget(); 3395 if (target == nullptr) 3396 return true; 3397 3398 return target->GetDisableSTDIO(); 3399 } 3400 3401 bool GetDefaultDetachOnError() { 3402 TargetSP target = m_debugger.GetSelectedTarget(); 3403 if (target == nullptr) 3404 return true; 3405 3406 return target->GetDetachOnError(); 3407 } 3408 3409 // Methods for getting the necessary information and setting them to the 3410 // ProcessLaunchInfo. 3411 3412 void GetExecutableSettings(ProcessLaunchInfo &launch_info) { 3413 TargetSP target = m_debugger.GetSelectedTarget(); 3414 ModuleSP executable_module = target->GetExecutableModule(); 3415 llvm::StringRef target_settings_argv0 = target->GetArg0(); 3416 3417 if (!target_settings_argv0.empty()) { 3418 launch_info.GetArguments().AppendArgument(target_settings_argv0); 3419 launch_info.SetExecutableFile(executable_module->GetPlatformFileSpec(), 3420 false); 3421 return; 3422 } 3423 3424 launch_info.SetExecutableFile(executable_module->GetPlatformFileSpec(), 3425 true); 3426 } 3427 3428 void GetArguments(ProcessLaunchInfo &launch_info) { 3429 TargetSP target = m_debugger.GetSelectedTarget(); 3430 Args arguments = m_arguments_field->GetArguments(); 3431 launch_info.GetArguments().AppendArguments(arguments); 3432 } 3433 3434 void GetEnvironment(ProcessLaunchInfo &launch_info) { 3435 Environment target_environment = 3436 m_target_environment_field->GetEnvironment(); 3437 Environment inherited_environment = 3438 m_inherited_environment_field->GetEnvironment(); 3439 launch_info.GetEnvironment().insert(target_environment.begin(), 3440 target_environment.end()); 3441 launch_info.GetEnvironment().insert(inherited_environment.begin(), 3442 inherited_environment.end()); 3443 } 3444 3445 void GetWorkingDirectory(ProcessLaunchInfo &launch_info) { 3446 if (m_working_directory_field->IsSpecified()) 3447 launch_info.SetWorkingDirectory( 3448 m_working_directory_field->GetResolvedFileSpec()); 3449 } 3450 3451 void GetStopAtEntry(ProcessLaunchInfo &launch_info) { 3452 if (m_stop_at_entry_field->GetBoolean()) 3453 launch_info.GetFlags().Set(eLaunchFlagStopAtEntry); 3454 else 3455 launch_info.GetFlags().Clear(eLaunchFlagStopAtEntry); 3456 } 3457 3458 void GetDetachOnError(ProcessLaunchInfo &launch_info) { 3459 if (m_detach_on_error_field->GetBoolean()) 3460 launch_info.GetFlags().Set(eLaunchFlagDetachOnError); 3461 else 3462 launch_info.GetFlags().Clear(eLaunchFlagDetachOnError); 3463 } 3464 3465 void GetDisableASLR(ProcessLaunchInfo &launch_info) { 3466 if (m_disable_aslr_field->GetBoolean()) 3467 launch_info.GetFlags().Set(eLaunchFlagDisableASLR); 3468 else 3469 launch_info.GetFlags().Clear(eLaunchFlagDisableASLR); 3470 } 3471 3472 void GetPlugin(ProcessLaunchInfo &launch_info) { 3473 launch_info.SetProcessPluginName(m_plugin_field->GetPluginName()); 3474 } 3475 3476 void GetArch(ProcessLaunchInfo &launch_info) { 3477 if (!m_arch_field->IsSpecified()) 3478 return; 3479 3480 TargetSP target_sp = m_debugger.GetSelectedTarget(); 3481 PlatformSP platform_sp = 3482 target_sp ? target_sp->GetPlatform() : PlatformSP(); 3483 launch_info.GetArchitecture() = Platform::GetAugmentedArchSpec( 3484 platform_sp.get(), m_arch_field->GetArchString()); 3485 } 3486 3487 void GetShell(ProcessLaunchInfo &launch_info) { 3488 if (!m_shell_field->IsSpecified()) 3489 return; 3490 3491 launch_info.SetShell(m_shell_field->GetResolvedFileSpec()); 3492 launch_info.SetShellExpandArguments( 3493 m_expand_shell_arguments_field->GetBoolean()); 3494 } 3495 3496 void GetStandardIO(ProcessLaunchInfo &launch_info) { 3497 if (m_disable_standard_io_field->GetBoolean()) { 3498 launch_info.GetFlags().Set(eLaunchFlagDisableSTDIO); 3499 return; 3500 } 3501 3502 FileAction action; 3503 if (m_standard_input_field->IsSpecified()) { 3504 if (action.Open(STDIN_FILENO, m_standard_input_field->GetFileSpec(), true, 3505 false)) 3506 launch_info.AppendFileAction(action); 3507 } 3508 if (m_standard_output_field->IsSpecified()) { 3509 if (action.Open(STDOUT_FILENO, m_standard_output_field->GetFileSpec(), 3510 false, true)) 3511 launch_info.AppendFileAction(action); 3512 } 3513 if (m_standard_error_field->IsSpecified()) { 3514 if (action.Open(STDERR_FILENO, m_standard_error_field->GetFileSpec(), 3515 false, true)) 3516 launch_info.AppendFileAction(action); 3517 } 3518 } 3519 3520 void GetInheritTCC(ProcessLaunchInfo &launch_info) { 3521 if (m_debugger.GetSelectedTarget()->GetInheritTCC()) 3522 launch_info.GetFlags().Set(eLaunchFlagInheritTCCFromParent); 3523 } 3524 3525 ProcessLaunchInfo GetLaunchInfo() { 3526 ProcessLaunchInfo launch_info; 3527 3528 GetExecutableSettings(launch_info); 3529 GetArguments(launch_info); 3530 GetEnvironment(launch_info); 3531 GetWorkingDirectory(launch_info); 3532 GetStopAtEntry(launch_info); 3533 GetDetachOnError(launch_info); 3534 GetDisableASLR(launch_info); 3535 GetPlugin(launch_info); 3536 GetArch(launch_info); 3537 GetShell(launch_info); 3538 GetStandardIO(launch_info); 3539 GetInheritTCC(launch_info); 3540 3541 return launch_info; 3542 } 3543 3544 bool StopRunningProcess() { 3545 ExecutionContext exe_ctx = 3546 m_debugger.GetCommandInterpreter().GetExecutionContext(); 3547 3548 if (!exe_ctx.HasProcessScope()) 3549 return false; 3550 3551 Process *process = exe_ctx.GetProcessPtr(); 3552 if (!(process && process->IsAlive())) 3553 return false; 3554 3555 FormDelegateSP form_delegate_sp = 3556 FormDelegateSP(new DetachOrKillProcessFormDelegate(process)); 3557 Rect bounds = m_main_window_sp->GetCenteredRect(85, 8); 3558 WindowSP form_window_sp = m_main_window_sp->CreateSubWindow( 3559 form_delegate_sp->GetName().c_str(), bounds, true); 3560 WindowDelegateSP window_delegate_sp = 3561 WindowDelegateSP(new FormWindowDelegate(form_delegate_sp)); 3562 form_window_sp->SetDelegate(window_delegate_sp); 3563 3564 return true; 3565 } 3566 3567 Target *GetTarget() { 3568 Target *target = m_debugger.GetSelectedTarget().get(); 3569 3570 if (target == nullptr) { 3571 SetError("No target exists!"); 3572 return nullptr; 3573 } 3574 3575 ModuleSP exe_module_sp = target->GetExecutableModule(); 3576 3577 if (exe_module_sp == nullptr) { 3578 SetError("No executable in target!"); 3579 return nullptr; 3580 } 3581 3582 return target; 3583 } 3584 3585 void Launch(Window &window) { 3586 ClearError(); 3587 3588 bool all_fields_are_valid = CheckFieldsValidity(); 3589 if (!all_fields_are_valid) 3590 return; 3591 3592 bool process_is_running = StopRunningProcess(); 3593 if (process_is_running) 3594 return; 3595 3596 Target *target = GetTarget(); 3597 if (HasError()) 3598 return; 3599 3600 StreamString stream; 3601 ProcessLaunchInfo launch_info = GetLaunchInfo(); 3602 Status status = target->Launch(launch_info, &stream); 3603 3604 if (status.Fail()) { 3605 SetError(status.AsCString()); 3606 return; 3607 } 3608 3609 ProcessSP process_sp(target->GetProcessSP()); 3610 if (!process_sp) { 3611 SetError("Launched successfully but target has no process!"); 3612 return; 3613 } 3614 3615 window.GetParent()->RemoveSubWindow(&window); 3616 } 3617 3618 protected: 3619 Debugger &m_debugger; 3620 WindowSP m_main_window_sp; 3621 3622 ArgumentsFieldDelegate *m_arguments_field; 3623 EnvironmentVariableListFieldDelegate *m_target_environment_field; 3624 DirectoryFieldDelegate *m_working_directory_field; 3625 3626 BooleanFieldDelegate *m_show_advanced_field; 3627 3628 BooleanFieldDelegate *m_stop_at_entry_field; 3629 BooleanFieldDelegate *m_detach_on_error_field; 3630 BooleanFieldDelegate *m_disable_aslr_field; 3631 ProcessPluginFieldDelegate *m_plugin_field; 3632 ArchFieldDelegate *m_arch_field; 3633 FileFieldDelegate *m_shell_field; 3634 BooleanFieldDelegate *m_expand_shell_arguments_field; 3635 BooleanFieldDelegate *m_disable_standard_io_field; 3636 FileFieldDelegate *m_standard_input_field; 3637 FileFieldDelegate *m_standard_output_field; 3638 FileFieldDelegate *m_standard_error_field; 3639 3640 BooleanFieldDelegate *m_show_inherited_environment_field; 3641 EnvironmentVariableListFieldDelegate *m_inherited_environment_field; 3642 }; 3643 3644 //////////// 3645 // Searchers 3646 //////////// 3647 3648 class SearcherDelegate { 3649 public: 3650 SearcherDelegate() = default; 3651 3652 virtual ~SearcherDelegate() = default; 3653 3654 virtual int GetNumberOfMatches() = 0; 3655 3656 // Get the string that will be displayed for the match at the input index. 3657 virtual const std::string &GetMatchTextAtIndex(int index) = 0; 3658 3659 // Update the matches of the search. This is executed every time the text 3660 // field handles an event. 3661 virtual void UpdateMatches(const std::string &text) = 0; 3662 3663 // Execute the user callback given the index of some match. This is executed 3664 // once the user selects a match. 3665 virtual void ExecuteCallback(int match_index) = 0; 3666 }; 3667 3668 typedef std::shared_ptr<SearcherDelegate> SearcherDelegateSP; 3669 3670 class SearcherWindowDelegate : public WindowDelegate { 3671 public: 3672 SearcherWindowDelegate(SearcherDelegateSP &delegate_sp) 3673 : m_delegate_sp(delegate_sp), m_text_field("Search", "", false) { 3674 ; 3675 } 3676 3677 // A completion window is padded by one character from all sides. A text field 3678 // is first drawn for inputting the searcher request, then a list of matches 3679 // are displayed in a scrollable list. 3680 // 3681 // ___<Searcher Window Name>____________________________ 3682 // | | 3683 // | __[Search]_______________________________________ | 3684 // | | | | 3685 // | |_______________________________________________| | 3686 // | - Match 1. | 3687 // | - Match 2. | 3688 // | - ... | 3689 // | | 3690 // |____________________________[Press Esc to Cancel]__| 3691 // 3692 3693 // Get the index of the last visible match. Assuming at least one match 3694 // exists. 3695 int GetLastVisibleMatch(int height) { 3696 int index = m_first_visible_match + height; 3697 return std::min(index, m_delegate_sp->GetNumberOfMatches()) - 1; 3698 } 3699 3700 int GetNumberOfVisibleMatches(int height) { 3701 return GetLastVisibleMatch(height) - m_first_visible_match + 1; 3702 } 3703 3704 void UpdateScrolling(Surface &surface) { 3705 if (m_selected_match < m_first_visible_match) { 3706 m_first_visible_match = m_selected_match; 3707 return; 3708 } 3709 3710 int height = surface.GetHeight(); 3711 int last_visible_match = GetLastVisibleMatch(height); 3712 if (m_selected_match > last_visible_match) { 3713 m_first_visible_match = m_selected_match - height + 1; 3714 } 3715 } 3716 3717 void DrawMatches(Surface &surface) { 3718 if (m_delegate_sp->GetNumberOfMatches() == 0) 3719 return; 3720 3721 UpdateScrolling(surface); 3722 3723 int count = GetNumberOfVisibleMatches(surface.GetHeight()); 3724 for (int i = 0; i < count; i++) { 3725 surface.MoveCursor(1, i); 3726 int current_match = m_first_visible_match + i; 3727 if (current_match == m_selected_match) 3728 surface.AttributeOn(A_REVERSE); 3729 surface.PutCString( 3730 m_delegate_sp->GetMatchTextAtIndex(current_match).c_str()); 3731 if (current_match == m_selected_match) 3732 surface.AttributeOff(A_REVERSE); 3733 } 3734 } 3735 3736 void DrawContent(Surface &surface) { 3737 Rect content_bounds = surface.GetFrame(); 3738 Rect text_field_bounds, matchs_bounds; 3739 content_bounds.HorizontalSplit(m_text_field.FieldDelegateGetHeight(), 3740 text_field_bounds, matchs_bounds); 3741 Surface text_field_surface = surface.SubSurface(text_field_bounds); 3742 Surface matches_surface = surface.SubSurface(matchs_bounds); 3743 3744 m_text_field.FieldDelegateDraw(text_field_surface, true); 3745 DrawMatches(matches_surface); 3746 } 3747 3748 bool WindowDelegateDraw(Window &window, bool force) override { 3749 window.Erase(); 3750 3751 window.DrawTitleBox(window.GetName(), "Press Esc to Cancel"); 3752 3753 Rect content_bounds = window.GetFrame(); 3754 content_bounds.Inset(2, 2); 3755 Surface content_surface = window.SubSurface(content_bounds); 3756 3757 DrawContent(content_surface); 3758 return true; 3759 } 3760 3761 void SelectNext() { 3762 if (m_selected_match != m_delegate_sp->GetNumberOfMatches() - 1) 3763 m_selected_match++; 3764 } 3765 3766 void SelectPrevious() { 3767 if (m_selected_match != 0) 3768 m_selected_match--; 3769 } 3770 3771 void ExecuteCallback(Window &window) { 3772 m_delegate_sp->ExecuteCallback(m_selected_match); 3773 window.GetParent()->RemoveSubWindow(&window); 3774 } 3775 3776 void UpdateMatches() { 3777 m_delegate_sp->UpdateMatches(m_text_field.GetText()); 3778 m_selected_match = 0; 3779 } 3780 3781 HandleCharResult WindowDelegateHandleChar(Window &window, int key) override { 3782 switch (key) { 3783 case '\r': 3784 case '\n': 3785 case KEY_ENTER: 3786 ExecuteCallback(window); 3787 return eKeyHandled; 3788 case '\t': 3789 case KEY_DOWN: 3790 SelectNext(); 3791 return eKeyHandled; 3792 case KEY_SHIFT_TAB: 3793 case KEY_UP: 3794 SelectPrevious(); 3795 return eKeyHandled; 3796 case KEY_ESCAPE: 3797 window.GetParent()->RemoveSubWindow(&window); 3798 return eKeyHandled; 3799 default: 3800 break; 3801 } 3802 3803 if (m_text_field.FieldDelegateHandleChar(key) == eKeyHandled) 3804 UpdateMatches(); 3805 3806 return eKeyHandled; 3807 } 3808 3809 protected: 3810 SearcherDelegateSP m_delegate_sp; 3811 TextFieldDelegate m_text_field; 3812 // The index of the currently selected match. 3813 int m_selected_match = 0; 3814 // The index of the first visible match. 3815 int m_first_visible_match = 0; 3816 }; 3817 3818 ////////////////////////////// 3819 // Searcher Delegate Instances 3820 ////////////////////////////// 3821 3822 // This is a searcher delegate wrapper around CommandCompletions common 3823 // callbacks. The callbacks are only given the match string. The completion_mask 3824 // can be a combination of CommonCompletionTypes. 3825 class CommonCompletionSearcherDelegate : public SearcherDelegate { 3826 public: 3827 typedef std::function<void(const std::string &)> CallbackType; 3828 3829 CommonCompletionSearcherDelegate(Debugger &debugger, uint32_t completion_mask, 3830 CallbackType callback) 3831 : m_debugger(debugger), m_completion_mask(completion_mask), 3832 m_callback(callback) {} 3833 3834 int GetNumberOfMatches() override { return m_matches.GetSize(); } 3835 3836 const std::string &GetMatchTextAtIndex(int index) override { 3837 return m_matches[index]; 3838 } 3839 3840 void UpdateMatches(const std::string &text) override { 3841 CompletionResult result; 3842 CompletionRequest request(text.c_str(), text.size(), result); 3843 CommandCompletions::InvokeCommonCompletionCallbacks( 3844 m_debugger.GetCommandInterpreter(), m_completion_mask, request, 3845 nullptr); 3846 result.GetMatches(m_matches); 3847 } 3848 3849 void ExecuteCallback(int match_index) override { 3850 m_callback(m_matches[match_index]); 3851 } 3852 3853 protected: 3854 Debugger &m_debugger; 3855 // A compound mask from CommonCompletionTypes. 3856 uint32_t m_completion_mask; 3857 // A callback to execute once the user selects a match. The match is passed to 3858 // the callback as a string. 3859 CallbackType m_callback; 3860 StringList m_matches; 3861 }; 3862 3863 //////// 3864 // Menus 3865 //////// 3866 3867 class MenuDelegate { 3868 public: 3869 virtual ~MenuDelegate() = default; 3870 3871 virtual MenuActionResult MenuDelegateAction(Menu &menu) = 0; 3872 }; 3873 3874 class Menu : public WindowDelegate { 3875 public: 3876 enum class Type { Invalid, Bar, Item, Separator }; 3877 3878 // Menubar or separator constructor 3879 Menu(Type type); 3880 3881 // Menuitem constructor 3882 Menu(const char *name, const char *key_name, int key_value, 3883 uint64_t identifier); 3884 3885 ~Menu() override = default; 3886 3887 const MenuDelegateSP &GetDelegate() const { return m_delegate_sp; } 3888 3889 void SetDelegate(const MenuDelegateSP &delegate_sp) { 3890 m_delegate_sp = delegate_sp; 3891 } 3892 3893 void RecalculateNameLengths(); 3894 3895 void AddSubmenu(const MenuSP &menu_sp); 3896 3897 int DrawAndRunMenu(Window &window); 3898 3899 void DrawMenuTitle(Window &window, bool highlight); 3900 3901 bool WindowDelegateDraw(Window &window, bool force) override; 3902 3903 HandleCharResult WindowDelegateHandleChar(Window &window, int key) override; 3904 3905 MenuActionResult ActionPrivate(Menu &menu) { 3906 MenuActionResult result = MenuActionResult::NotHandled; 3907 if (m_delegate_sp) { 3908 result = m_delegate_sp->MenuDelegateAction(menu); 3909 if (result != MenuActionResult::NotHandled) 3910 return result; 3911 } else if (m_parent) { 3912 result = m_parent->ActionPrivate(menu); 3913 if (result != MenuActionResult::NotHandled) 3914 return result; 3915 } 3916 return m_canned_result; 3917 } 3918 3919 MenuActionResult Action() { 3920 // Call the recursive action so it can try to handle it with the menu 3921 // delegate, and if not, try our parent menu 3922 return ActionPrivate(*this); 3923 } 3924 3925 void SetCannedResult(MenuActionResult result) { m_canned_result = result; } 3926 3927 Menus &GetSubmenus() { return m_submenus; } 3928 3929 const Menus &GetSubmenus() const { return m_submenus; } 3930 3931 int GetSelectedSubmenuIndex() const { return m_selected; } 3932 3933 void SetSelectedSubmenuIndex(int idx) { m_selected = idx; } 3934 3935 Type GetType() const { return m_type; } 3936 3937 int GetStartingColumn() const { return m_start_col; } 3938 3939 void SetStartingColumn(int col) { m_start_col = col; } 3940 3941 int GetKeyValue() const { return m_key_value; } 3942 3943 std::string &GetName() { return m_name; } 3944 3945 int GetDrawWidth() const { 3946 return m_max_submenu_name_length + m_max_submenu_key_name_length + 8; 3947 } 3948 3949 uint64_t GetIdentifier() const { return m_identifier; } 3950 3951 void SetIdentifier(uint64_t identifier) { m_identifier = identifier; } 3952 3953 protected: 3954 std::string m_name; 3955 std::string m_key_name; 3956 uint64_t m_identifier; 3957 Type m_type; 3958 int m_key_value; 3959 int m_start_col; 3960 int m_max_submenu_name_length; 3961 int m_max_submenu_key_name_length; 3962 int m_selected; 3963 Menu *m_parent; 3964 Menus m_submenus; 3965 WindowSP m_menu_window_sp; 3966 MenuActionResult m_canned_result; 3967 MenuDelegateSP m_delegate_sp; 3968 }; 3969 3970 // Menubar or separator constructor 3971 Menu::Menu(Type type) 3972 : m_name(), m_key_name(), m_identifier(0), m_type(type), m_key_value(0), 3973 m_start_col(0), m_max_submenu_name_length(0), 3974 m_max_submenu_key_name_length(0), m_selected(0), m_parent(nullptr), 3975 m_submenus(), m_canned_result(MenuActionResult::NotHandled), 3976 m_delegate_sp() {} 3977 3978 // Menuitem constructor 3979 Menu::Menu(const char *name, const char *key_name, int key_value, 3980 uint64_t identifier) 3981 : m_name(), m_key_name(), m_identifier(identifier), m_type(Type::Invalid), 3982 m_key_value(key_value), m_start_col(0), m_max_submenu_name_length(0), 3983 m_max_submenu_key_name_length(0), m_selected(0), m_parent(nullptr), 3984 m_submenus(), m_canned_result(MenuActionResult::NotHandled), 3985 m_delegate_sp() { 3986 if (name && name[0]) { 3987 m_name = name; 3988 m_type = Type::Item; 3989 if (key_name && key_name[0]) 3990 m_key_name = key_name; 3991 } else { 3992 m_type = Type::Separator; 3993 } 3994 } 3995 3996 void Menu::RecalculateNameLengths() { 3997 m_max_submenu_name_length = 0; 3998 m_max_submenu_key_name_length = 0; 3999 Menus &submenus = GetSubmenus(); 4000 const size_t num_submenus = submenus.size(); 4001 for (size_t i = 0; i < num_submenus; ++i) { 4002 Menu *submenu = submenus[i].get(); 4003 if (static_cast<size_t>(m_max_submenu_name_length) < submenu->m_name.size()) 4004 m_max_submenu_name_length = submenu->m_name.size(); 4005 if (static_cast<size_t>(m_max_submenu_key_name_length) < 4006 submenu->m_key_name.size()) 4007 m_max_submenu_key_name_length = submenu->m_key_name.size(); 4008 } 4009 } 4010 4011 void Menu::AddSubmenu(const MenuSP &menu_sp) { 4012 menu_sp->m_parent = this; 4013 if (static_cast<size_t>(m_max_submenu_name_length) < menu_sp->m_name.size()) 4014 m_max_submenu_name_length = menu_sp->m_name.size(); 4015 if (static_cast<size_t>(m_max_submenu_key_name_length) < 4016 menu_sp->m_key_name.size()) 4017 m_max_submenu_key_name_length = menu_sp->m_key_name.size(); 4018 m_submenus.push_back(menu_sp); 4019 } 4020 4021 void Menu::DrawMenuTitle(Window &window, bool highlight) { 4022 if (m_type == Type::Separator) { 4023 window.MoveCursor(0, window.GetCursorY()); 4024 window.PutChar(ACS_LTEE); 4025 int width = window.GetWidth(); 4026 if (width > 2) { 4027 width -= 2; 4028 for (int i = 0; i < width; ++i) 4029 window.PutChar(ACS_HLINE); 4030 } 4031 window.PutChar(ACS_RTEE); 4032 } else { 4033 const int shortcut_key = m_key_value; 4034 bool underlined_shortcut = false; 4035 const attr_t highlight_attr = A_REVERSE; 4036 if (highlight) 4037 window.AttributeOn(highlight_attr); 4038 if (llvm::isPrint(shortcut_key)) { 4039 size_t lower_pos = m_name.find(tolower(shortcut_key)); 4040 size_t upper_pos = m_name.find(toupper(shortcut_key)); 4041 const char *name = m_name.c_str(); 4042 size_t pos = std::min<size_t>(lower_pos, upper_pos); 4043 if (pos != std::string::npos) { 4044 underlined_shortcut = true; 4045 if (pos > 0) { 4046 window.PutCString(name, pos); 4047 name += pos; 4048 } 4049 const attr_t shortcut_attr = A_UNDERLINE | A_BOLD; 4050 window.AttributeOn(shortcut_attr); 4051 window.PutChar(name[0]); 4052 window.AttributeOff(shortcut_attr); 4053 name++; 4054 if (name[0]) 4055 window.PutCString(name); 4056 } 4057 } 4058 4059 if (!underlined_shortcut) { 4060 window.PutCString(m_name.c_str()); 4061 } 4062 4063 if (highlight) 4064 window.AttributeOff(highlight_attr); 4065 4066 if (m_key_name.empty()) { 4067 if (!underlined_shortcut && llvm::isPrint(m_key_value)) { 4068 window.AttributeOn(COLOR_PAIR(MagentaOnWhite)); 4069 window.Printf(" (%c)", m_key_value); 4070 window.AttributeOff(COLOR_PAIR(MagentaOnWhite)); 4071 } 4072 } else { 4073 window.AttributeOn(COLOR_PAIR(MagentaOnWhite)); 4074 window.Printf(" (%s)", m_key_name.c_str()); 4075 window.AttributeOff(COLOR_PAIR(MagentaOnWhite)); 4076 } 4077 } 4078 } 4079 4080 bool Menu::WindowDelegateDraw(Window &window, bool force) { 4081 Menus &submenus = GetSubmenus(); 4082 const size_t num_submenus = submenus.size(); 4083 const int selected_idx = GetSelectedSubmenuIndex(); 4084 Menu::Type menu_type = GetType(); 4085 switch (menu_type) { 4086 case Menu::Type::Bar: { 4087 window.SetBackground(BlackOnWhite); 4088 window.MoveCursor(0, 0); 4089 for (size_t i = 0; i < num_submenus; ++i) { 4090 Menu *menu = submenus[i].get(); 4091 if (i > 0) 4092 window.PutChar(' '); 4093 menu->SetStartingColumn(window.GetCursorX()); 4094 window.PutCString("| "); 4095 menu->DrawMenuTitle(window, false); 4096 } 4097 window.PutCString(" |"); 4098 } break; 4099 4100 case Menu::Type::Item: { 4101 int y = 1; 4102 int x = 3; 4103 // Draw the menu 4104 int cursor_x = 0; 4105 int cursor_y = 0; 4106 window.Erase(); 4107 window.SetBackground(BlackOnWhite); 4108 window.Box(); 4109 for (size_t i = 0; i < num_submenus; ++i) { 4110 const bool is_selected = (i == static_cast<size_t>(selected_idx)); 4111 window.MoveCursor(x, y + i); 4112 if (is_selected) { 4113 // Remember where we want the cursor to be 4114 cursor_x = x - 1; 4115 cursor_y = y + i; 4116 } 4117 submenus[i]->DrawMenuTitle(window, is_selected); 4118 } 4119 window.MoveCursor(cursor_x, cursor_y); 4120 } break; 4121 4122 default: 4123 case Menu::Type::Separator: 4124 break; 4125 } 4126 return true; // Drawing handled... 4127 } 4128 4129 HandleCharResult Menu::WindowDelegateHandleChar(Window &window, int key) { 4130 HandleCharResult result = eKeyNotHandled; 4131 4132 Menus &submenus = GetSubmenus(); 4133 const size_t num_submenus = submenus.size(); 4134 const int selected_idx = GetSelectedSubmenuIndex(); 4135 Menu::Type menu_type = GetType(); 4136 if (menu_type == Menu::Type::Bar) { 4137 MenuSP run_menu_sp; 4138 switch (key) { 4139 case KEY_DOWN: 4140 case KEY_UP: 4141 // Show last menu or first menu 4142 if (selected_idx < static_cast<int>(num_submenus)) 4143 run_menu_sp = submenus[selected_idx]; 4144 else if (!submenus.empty()) 4145 run_menu_sp = submenus.front(); 4146 result = eKeyHandled; 4147 break; 4148 4149 case KEY_RIGHT: 4150 ++m_selected; 4151 if (m_selected >= static_cast<int>(num_submenus)) 4152 m_selected = 0; 4153 if (m_selected < static_cast<int>(num_submenus)) 4154 run_menu_sp = submenus[m_selected]; 4155 else if (!submenus.empty()) 4156 run_menu_sp = submenus.front(); 4157 result = eKeyHandled; 4158 break; 4159 4160 case KEY_LEFT: 4161 --m_selected; 4162 if (m_selected < 0) 4163 m_selected = num_submenus - 1; 4164 if (m_selected < static_cast<int>(num_submenus)) 4165 run_menu_sp = submenus[m_selected]; 4166 else if (!submenus.empty()) 4167 run_menu_sp = submenus.front(); 4168 result = eKeyHandled; 4169 break; 4170 4171 default: 4172 for (size_t i = 0; i < num_submenus; ++i) { 4173 if (submenus[i]->GetKeyValue() == key) { 4174 SetSelectedSubmenuIndex(i); 4175 run_menu_sp = submenus[i]; 4176 result = eKeyHandled; 4177 break; 4178 } 4179 } 4180 break; 4181 } 4182 4183 if (run_menu_sp) { 4184 // Run the action on this menu in case we need to populate the menu with 4185 // dynamic content and also in case check marks, and any other menu 4186 // decorations need to be calculated 4187 if (run_menu_sp->Action() == MenuActionResult::Quit) 4188 return eQuitApplication; 4189 4190 Rect menu_bounds; 4191 menu_bounds.origin.x = run_menu_sp->GetStartingColumn(); 4192 menu_bounds.origin.y = 1; 4193 menu_bounds.size.width = run_menu_sp->GetDrawWidth(); 4194 menu_bounds.size.height = run_menu_sp->GetSubmenus().size() + 2; 4195 if (m_menu_window_sp) 4196 window.GetParent()->RemoveSubWindow(m_menu_window_sp.get()); 4197 4198 m_menu_window_sp = window.GetParent()->CreateSubWindow( 4199 run_menu_sp->GetName().c_str(), menu_bounds, true); 4200 m_menu_window_sp->SetDelegate(run_menu_sp); 4201 } 4202 } else if (menu_type == Menu::Type::Item) { 4203 switch (key) { 4204 case KEY_DOWN: 4205 if (m_submenus.size() > 1) { 4206 const int start_select = m_selected; 4207 while (++m_selected != start_select) { 4208 if (static_cast<size_t>(m_selected) >= num_submenus) 4209 m_selected = 0; 4210 if (m_submenus[m_selected]->GetType() == Type::Separator) 4211 continue; 4212 else 4213 break; 4214 } 4215 return eKeyHandled; 4216 } 4217 break; 4218 4219 case KEY_UP: 4220 if (m_submenus.size() > 1) { 4221 const int start_select = m_selected; 4222 while (--m_selected != start_select) { 4223 if (m_selected < static_cast<int>(0)) 4224 m_selected = num_submenus - 1; 4225 if (m_submenus[m_selected]->GetType() == Type::Separator) 4226 continue; 4227 else 4228 break; 4229 } 4230 return eKeyHandled; 4231 } 4232 break; 4233 4234 case KEY_RETURN: 4235 if (static_cast<size_t>(selected_idx) < num_submenus) { 4236 if (submenus[selected_idx]->Action() == MenuActionResult::Quit) 4237 return eQuitApplication; 4238 window.GetParent()->RemoveSubWindow(&window); 4239 return eKeyHandled; 4240 } 4241 break; 4242 4243 case KEY_ESCAPE: // Beware: pressing escape key has 1 to 2 second delay in 4244 // case other chars are entered for escaped sequences 4245 window.GetParent()->RemoveSubWindow(&window); 4246 return eKeyHandled; 4247 4248 default: 4249 for (size_t i = 0; i < num_submenus; ++i) { 4250 Menu *menu = submenus[i].get(); 4251 if (menu->GetKeyValue() == key) { 4252 SetSelectedSubmenuIndex(i); 4253 window.GetParent()->RemoveSubWindow(&window); 4254 if (menu->Action() == MenuActionResult::Quit) 4255 return eQuitApplication; 4256 return eKeyHandled; 4257 } 4258 } 4259 break; 4260 } 4261 } else if (menu_type == Menu::Type::Separator) { 4262 } 4263 return result; 4264 } 4265 4266 class Application { 4267 public: 4268 Application(FILE *in, FILE *out) : m_window_sp(), m_in(in), m_out(out) {} 4269 4270 ~Application() { 4271 m_window_delegates.clear(); 4272 m_window_sp.reset(); 4273 if (m_screen) { 4274 ::delscreen(m_screen); 4275 m_screen = nullptr; 4276 } 4277 } 4278 4279 void Initialize() { 4280 m_screen = ::newterm(nullptr, m_out, m_in); 4281 ::start_color(); 4282 ::curs_set(0); 4283 ::noecho(); 4284 ::keypad(stdscr, TRUE); 4285 } 4286 4287 void Terminate() { ::endwin(); } 4288 4289 void Run(Debugger &debugger) { 4290 bool done = false; 4291 int delay_in_tenths_of_a_second = 1; 4292 4293 // Alas the threading model in curses is a bit lame so we need to resort 4294 // to polling every 0.5 seconds. We could poll for stdin ourselves and 4295 // then pass the keys down but then we need to translate all of the escape 4296 // sequences ourselves. So we resort to polling for input because we need 4297 // to receive async process events while in this loop. 4298 4299 halfdelay(delay_in_tenths_of_a_second); // Poll using some number of 4300 // tenths of seconds seconds when 4301 // calling Window::GetChar() 4302 4303 ListenerSP listener_sp( 4304 Listener::MakeListener("lldb.IOHandler.curses.Application")); 4305 ConstString broadcaster_class_process(Process::GetStaticBroadcasterClass()); 4306 debugger.EnableForwardEvents(listener_sp); 4307 4308 m_update_screen = true; 4309 #if defined(__APPLE__) 4310 std::deque<int> escape_chars; 4311 #endif 4312 4313 while (!done) { 4314 if (m_update_screen) { 4315 m_window_sp->Draw(false); 4316 // All windows should be calling Window::DeferredRefresh() instead of 4317 // Window::Refresh() so we can do a single update and avoid any screen 4318 // blinking 4319 update_panels(); 4320 4321 // Cursor hiding isn't working on MacOSX, so hide it in the top left 4322 // corner 4323 m_window_sp->MoveCursor(0, 0); 4324 4325 doupdate(); 4326 m_update_screen = false; 4327 } 4328 4329 #if defined(__APPLE__) 4330 // Terminal.app doesn't map its function keys correctly, F1-F4 default 4331 // to: \033OP, \033OQ, \033OR, \033OS, so lets take care of this here if 4332 // possible 4333 int ch; 4334 if (escape_chars.empty()) 4335 ch = m_window_sp->GetChar(); 4336 else { 4337 ch = escape_chars.front(); 4338 escape_chars.pop_front(); 4339 } 4340 if (ch == KEY_ESCAPE) { 4341 int ch2 = m_window_sp->GetChar(); 4342 if (ch2 == 'O') { 4343 int ch3 = m_window_sp->GetChar(); 4344 switch (ch3) { 4345 case 'P': 4346 ch = KEY_F(1); 4347 break; 4348 case 'Q': 4349 ch = KEY_F(2); 4350 break; 4351 case 'R': 4352 ch = KEY_F(3); 4353 break; 4354 case 'S': 4355 ch = KEY_F(4); 4356 break; 4357 default: 4358 escape_chars.push_back(ch2); 4359 if (ch3 != -1) 4360 escape_chars.push_back(ch3); 4361 break; 4362 } 4363 } else if (ch2 != -1) 4364 escape_chars.push_back(ch2); 4365 } 4366 #else 4367 int ch = m_window_sp->GetChar(); 4368 4369 #endif 4370 if (ch == -1) { 4371 if (feof(m_in) || ferror(m_in)) { 4372 done = true; 4373 } else { 4374 // Just a timeout from using halfdelay(), check for events 4375 EventSP event_sp; 4376 while (listener_sp->PeekAtNextEvent()) { 4377 listener_sp->GetEvent(event_sp, std::chrono::seconds(0)); 4378 4379 if (event_sp) { 4380 Broadcaster *broadcaster = event_sp->GetBroadcaster(); 4381 if (broadcaster) { 4382 // uint32_t event_type = event_sp->GetType(); 4383 ConstString broadcaster_class( 4384 broadcaster->GetBroadcasterClass()); 4385 if (broadcaster_class == broadcaster_class_process) { 4386 m_update_screen = true; 4387 continue; // Don't get any key, just update our view 4388 } 4389 } 4390 } 4391 } 4392 } 4393 } else { 4394 HandleCharResult key_result = m_window_sp->HandleChar(ch); 4395 switch (key_result) { 4396 case eKeyHandled: 4397 m_update_screen = true; 4398 break; 4399 case eKeyNotHandled: 4400 if (ch == 12) { // Ctrl+L, force full redraw 4401 redrawwin(m_window_sp->get()); 4402 m_update_screen = true; 4403 } 4404 break; 4405 case eQuitApplication: 4406 done = true; 4407 break; 4408 } 4409 } 4410 } 4411 4412 debugger.CancelForwardEvents(listener_sp); 4413 } 4414 4415 WindowSP &GetMainWindow() { 4416 if (!m_window_sp) 4417 m_window_sp = std::make_shared<Window>("main", stdscr, false); 4418 return m_window_sp; 4419 } 4420 4421 void TerminalSizeChanged() { 4422 ::endwin(); 4423 ::refresh(); 4424 Rect content_bounds = m_window_sp->GetFrame(); 4425 m_window_sp->SetBounds(content_bounds); 4426 if (WindowSP menubar_window_sp = m_window_sp->FindSubWindow("Menubar")) 4427 menubar_window_sp->SetBounds(content_bounds.MakeMenuBar()); 4428 if (WindowSP status_window_sp = m_window_sp->FindSubWindow("Status")) 4429 status_window_sp->SetBounds(content_bounds.MakeStatusBar()); 4430 4431 WindowSP source_window_sp = m_window_sp->FindSubWindow("Source"); 4432 WindowSP variables_window_sp = m_window_sp->FindSubWindow("Variables"); 4433 WindowSP registers_window_sp = m_window_sp->FindSubWindow("Registers"); 4434 WindowSP threads_window_sp = m_window_sp->FindSubWindow("Threads"); 4435 4436 Rect threads_bounds; 4437 Rect source_variables_bounds; 4438 content_bounds.VerticalSplitPercentage(0.80, source_variables_bounds, 4439 threads_bounds); 4440 if (threads_window_sp) 4441 threads_window_sp->SetBounds(threads_bounds); 4442 else 4443 source_variables_bounds = content_bounds; 4444 4445 Rect source_bounds; 4446 Rect variables_registers_bounds; 4447 source_variables_bounds.HorizontalSplitPercentage( 4448 0.70, source_bounds, variables_registers_bounds); 4449 if (variables_window_sp || registers_window_sp) { 4450 if (variables_window_sp && registers_window_sp) { 4451 Rect variables_bounds; 4452 Rect registers_bounds; 4453 variables_registers_bounds.VerticalSplitPercentage( 4454 0.50, variables_bounds, registers_bounds); 4455 variables_window_sp->SetBounds(variables_bounds); 4456 registers_window_sp->SetBounds(registers_bounds); 4457 } else if (variables_window_sp) { 4458 variables_window_sp->SetBounds(variables_registers_bounds); 4459 } else { 4460 registers_window_sp->SetBounds(variables_registers_bounds); 4461 } 4462 } else { 4463 source_bounds = source_variables_bounds; 4464 } 4465 4466 source_window_sp->SetBounds(source_bounds); 4467 4468 touchwin(stdscr); 4469 redrawwin(m_window_sp->get()); 4470 m_update_screen = true; 4471 } 4472 4473 protected: 4474 WindowSP m_window_sp; 4475 WindowDelegates m_window_delegates; 4476 SCREEN *m_screen = nullptr; 4477 FILE *m_in; 4478 FILE *m_out; 4479 bool m_update_screen = false; 4480 }; 4481 4482 } // namespace curses 4483 4484 using namespace curses; 4485 4486 struct Row { 4487 ValueObjectUpdater value; 4488 Row *parent; 4489 // The process stop ID when the children were calculated. 4490 uint32_t children_stop_id = 0; 4491 int row_idx = 0; 4492 int x = 1; 4493 int y = 1; 4494 bool might_have_children; 4495 bool expanded = false; 4496 bool calculated_children = false; 4497 std::vector<Row> children; 4498 4499 Row(const ValueObjectSP &v, Row *p) 4500 : value(v), parent(p), 4501 might_have_children(v ? v->MightHaveChildren() : false) {} 4502 4503 size_t GetDepth() const { 4504 if (parent) 4505 return 1 + parent->GetDepth(); 4506 return 0; 4507 } 4508 4509 void Expand() { expanded = true; } 4510 4511 std::vector<Row> &GetChildren() { 4512 ProcessSP process_sp = value.GetProcessSP(); 4513 auto stop_id = process_sp->GetStopID(); 4514 if (process_sp && stop_id != children_stop_id) { 4515 children_stop_id = stop_id; 4516 calculated_children = false; 4517 } 4518 if (!calculated_children) { 4519 children.clear(); 4520 calculated_children = true; 4521 ValueObjectSP valobj = value.GetSP(); 4522 if (valobj) { 4523 const size_t num_children = valobj->GetNumChildren(); 4524 for (size_t i = 0; i < num_children; ++i) { 4525 children.push_back(Row(valobj->GetChildAtIndex(i, true), this)); 4526 } 4527 } 4528 } 4529 return children; 4530 } 4531 4532 void Unexpand() { 4533 expanded = false; 4534 calculated_children = false; 4535 children.clear(); 4536 } 4537 4538 void DrawTree(Window &window) { 4539 if (parent) 4540 parent->DrawTreeForChild(window, this, 0); 4541 4542 if (might_have_children && 4543 (!calculated_children || !GetChildren().empty())) { 4544 // It we can get UTF8 characters to work we should try to use the 4545 // "symbol" UTF8 string below 4546 // const char *symbol = ""; 4547 // if (row.expanded) 4548 // symbol = "\xe2\x96\xbd "; 4549 // else 4550 // symbol = "\xe2\x96\xb7 "; 4551 // window.PutCString (symbol); 4552 4553 // The ACS_DARROW and ACS_RARROW don't look very nice they are just a 'v' 4554 // or '>' character... 4555 // if (expanded) 4556 // window.PutChar (ACS_DARROW); 4557 // else 4558 // window.PutChar (ACS_RARROW); 4559 // Since we can't find any good looking right arrow/down arrow symbols, 4560 // just use a diamond... 4561 window.PutChar(ACS_DIAMOND); 4562 window.PutChar(ACS_HLINE); 4563 } 4564 } 4565 4566 void DrawTreeForChild(Window &window, Row *child, uint32_t reverse_depth) { 4567 if (parent) 4568 parent->DrawTreeForChild(window, this, reverse_depth + 1); 4569 4570 if (&GetChildren().back() == child) { 4571 // Last child 4572 if (reverse_depth == 0) { 4573 window.PutChar(ACS_LLCORNER); 4574 window.PutChar(ACS_HLINE); 4575 } else { 4576 window.PutChar(' '); 4577 window.PutChar(' '); 4578 } 4579 } else { 4580 if (reverse_depth == 0) { 4581 window.PutChar(ACS_LTEE); 4582 window.PutChar(ACS_HLINE); 4583 } else { 4584 window.PutChar(ACS_VLINE); 4585 window.PutChar(' '); 4586 } 4587 } 4588 } 4589 }; 4590 4591 struct DisplayOptions { 4592 bool show_types; 4593 }; 4594 4595 class TreeItem; 4596 4597 class TreeDelegate { 4598 public: 4599 TreeDelegate() = default; 4600 virtual ~TreeDelegate() = default; 4601 4602 virtual void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) = 0; 4603 virtual void TreeDelegateGenerateChildren(TreeItem &item) = 0; 4604 virtual void TreeDelegateUpdateSelection(TreeItem &root, int &selection_index, 4605 TreeItem *&selected_item) {} 4606 // This is invoked when a tree item is selected. If true is returned, the 4607 // views are updated. 4608 virtual bool TreeDelegateItemSelected(TreeItem &item) = 0; 4609 virtual bool TreeDelegateExpandRootByDefault() { return false; } 4610 // This is mostly useful for root tree delegates. If false is returned, 4611 // drawing will be skipped completely. This is needed, for instance, in 4612 // skipping drawing of the threads tree if there is no running process. 4613 virtual bool TreeDelegateShouldDraw() { return true; } 4614 }; 4615 4616 typedef std::shared_ptr<TreeDelegate> TreeDelegateSP; 4617 4618 class TreeItem { 4619 public: 4620 TreeItem(TreeItem *parent, TreeDelegate &delegate, bool might_have_children) 4621 : m_parent(parent), m_delegate(delegate), m_children(), 4622 m_might_have_children(might_have_children) { 4623 if (m_parent == nullptr) 4624 m_is_expanded = m_delegate.TreeDelegateExpandRootByDefault(); 4625 } 4626 4627 TreeItem &operator=(const TreeItem &rhs) { 4628 if (this != &rhs) { 4629 m_parent = rhs.m_parent; 4630 m_delegate = rhs.m_delegate; 4631 m_user_data = rhs.m_user_data; 4632 m_identifier = rhs.m_identifier; 4633 m_row_idx = rhs.m_row_idx; 4634 m_children = rhs.m_children; 4635 m_might_have_children = rhs.m_might_have_children; 4636 m_is_expanded = rhs.m_is_expanded; 4637 } 4638 return *this; 4639 } 4640 4641 TreeItem(const TreeItem &) = default; 4642 4643 size_t GetDepth() const { 4644 if (m_parent) 4645 return 1 + m_parent->GetDepth(); 4646 return 0; 4647 } 4648 4649 int GetRowIndex() const { return m_row_idx; } 4650 4651 void ClearChildren() { m_children.clear(); } 4652 4653 void Resize(size_t n, const TreeItem &t) { m_children.resize(n, t); } 4654 4655 TreeItem &operator[](size_t i) { return m_children[i]; } 4656 4657 void SetRowIndex(int row_idx) { m_row_idx = row_idx; } 4658 4659 size_t GetNumChildren() { 4660 m_delegate.TreeDelegateGenerateChildren(*this); 4661 return m_children.size(); 4662 } 4663 4664 void ItemWasSelected() { m_delegate.TreeDelegateItemSelected(*this); } 4665 4666 void CalculateRowIndexes(int &row_idx) { 4667 SetRowIndex(row_idx); 4668 ++row_idx; 4669 4670 const bool expanded = IsExpanded(); 4671 4672 // The root item must calculate its children, or we must calculate the 4673 // number of children if the item is expanded 4674 if (m_parent == nullptr || expanded) 4675 GetNumChildren(); 4676 4677 for (auto &item : m_children) { 4678 if (expanded) 4679 item.CalculateRowIndexes(row_idx); 4680 else 4681 item.SetRowIndex(-1); 4682 } 4683 } 4684 4685 TreeItem *GetParent() { return m_parent; } 4686 4687 bool IsExpanded() const { return m_is_expanded; } 4688 4689 void Expand() { m_is_expanded = true; } 4690 4691 void Unexpand() { m_is_expanded = false; } 4692 4693 bool Draw(Window &window, const int first_visible_row, 4694 const uint32_t selected_row_idx, int &row_idx, int &num_rows_left) { 4695 if (num_rows_left <= 0) 4696 return false; 4697 4698 if (m_row_idx >= first_visible_row) { 4699 window.MoveCursor(2, row_idx + 1); 4700 4701 if (m_parent) 4702 m_parent->DrawTreeForChild(window, this, 0); 4703 4704 if (m_might_have_children) { 4705 // It we can get UTF8 characters to work we should try to use the 4706 // "symbol" UTF8 string below 4707 // const char *symbol = ""; 4708 // if (row.expanded) 4709 // symbol = "\xe2\x96\xbd "; 4710 // else 4711 // symbol = "\xe2\x96\xb7 "; 4712 // window.PutCString (symbol); 4713 4714 // The ACS_DARROW and ACS_RARROW don't look very nice they are just a 4715 // 'v' or '>' character... 4716 // if (expanded) 4717 // window.PutChar (ACS_DARROW); 4718 // else 4719 // window.PutChar (ACS_RARROW); 4720 // Since we can't find any good looking right arrow/down arrow symbols, 4721 // just use a diamond... 4722 window.PutChar(ACS_DIAMOND); 4723 window.PutChar(ACS_HLINE); 4724 } 4725 bool highlight = (selected_row_idx == static_cast<size_t>(m_row_idx)) && 4726 window.IsActive(); 4727 4728 if (highlight) 4729 window.AttributeOn(A_REVERSE); 4730 4731 m_delegate.TreeDelegateDrawTreeItem(*this, window); 4732 4733 if (highlight) 4734 window.AttributeOff(A_REVERSE); 4735 ++row_idx; 4736 --num_rows_left; 4737 } 4738 4739 if (num_rows_left <= 0) 4740 return false; // We are done drawing... 4741 4742 if (IsExpanded()) { 4743 for (auto &item : m_children) { 4744 // If we displayed all the rows and item.Draw() returns false we are 4745 // done drawing and can exit this for loop 4746 if (!item.Draw(window, first_visible_row, selected_row_idx, row_idx, 4747 num_rows_left)) 4748 break; 4749 } 4750 } 4751 return num_rows_left >= 0; // Return true if not done drawing yet 4752 } 4753 4754 void DrawTreeForChild(Window &window, TreeItem *child, 4755 uint32_t reverse_depth) { 4756 if (m_parent) 4757 m_parent->DrawTreeForChild(window, this, reverse_depth + 1); 4758 4759 if (&m_children.back() == child) { 4760 // Last child 4761 if (reverse_depth == 0) { 4762 window.PutChar(ACS_LLCORNER); 4763 window.PutChar(ACS_HLINE); 4764 } else { 4765 window.PutChar(' '); 4766 window.PutChar(' '); 4767 } 4768 } else { 4769 if (reverse_depth == 0) { 4770 window.PutChar(ACS_LTEE); 4771 window.PutChar(ACS_HLINE); 4772 } else { 4773 window.PutChar(ACS_VLINE); 4774 window.PutChar(' '); 4775 } 4776 } 4777 } 4778 4779 TreeItem *GetItemForRowIndex(uint32_t row_idx) { 4780 if (static_cast<uint32_t>(m_row_idx) == row_idx) 4781 return this; 4782 if (m_children.empty()) 4783 return nullptr; 4784 if (IsExpanded()) { 4785 for (auto &item : m_children) { 4786 TreeItem *selected_item_ptr = item.GetItemForRowIndex(row_idx); 4787 if (selected_item_ptr) 4788 return selected_item_ptr; 4789 } 4790 } 4791 return nullptr; 4792 } 4793 4794 void *GetUserData() const { return m_user_data; } 4795 4796 void SetUserData(void *user_data) { m_user_data = user_data; } 4797 4798 uint64_t GetIdentifier() const { return m_identifier; } 4799 4800 void SetIdentifier(uint64_t identifier) { m_identifier = identifier; } 4801 4802 const std::string &GetText() const { return m_text; } 4803 4804 void SetText(const char *text) { 4805 if (text == nullptr) { 4806 m_text.clear(); 4807 return; 4808 } 4809 m_text = text; 4810 } 4811 4812 void SetMightHaveChildren(bool b) { m_might_have_children = b; } 4813 4814 protected: 4815 TreeItem *m_parent; 4816 TreeDelegate &m_delegate; 4817 void *m_user_data = nullptr; 4818 uint64_t m_identifier = 0; 4819 std::string m_text; 4820 int m_row_idx = -1; // Zero based visible row index, -1 if not visible or for 4821 // the root item 4822 std::vector<TreeItem> m_children; 4823 bool m_might_have_children; 4824 bool m_is_expanded = false; 4825 }; 4826 4827 class TreeWindowDelegate : public WindowDelegate { 4828 public: 4829 TreeWindowDelegate(Debugger &debugger, const TreeDelegateSP &delegate_sp) 4830 : m_debugger(debugger), m_delegate_sp(delegate_sp), 4831 m_root(nullptr, *delegate_sp, true) {} 4832 4833 int NumVisibleRows() const { return m_max_y - m_min_y; } 4834 4835 bool WindowDelegateDraw(Window &window, bool force) override { 4836 m_min_x = 2; 4837 m_min_y = 1; 4838 m_max_x = window.GetWidth() - 1; 4839 m_max_y = window.GetHeight() - 1; 4840 4841 window.Erase(); 4842 window.DrawTitleBox(window.GetName()); 4843 4844 if (!m_delegate_sp->TreeDelegateShouldDraw()) { 4845 m_selected_item = nullptr; 4846 return true; 4847 } 4848 4849 const int num_visible_rows = NumVisibleRows(); 4850 m_num_rows = 0; 4851 m_root.CalculateRowIndexes(m_num_rows); 4852 m_delegate_sp->TreeDelegateUpdateSelection(m_root, m_selected_row_idx, 4853 m_selected_item); 4854 4855 // If we unexpanded while having something selected our total number of 4856 // rows is less than the num visible rows, then make sure we show all the 4857 // rows by setting the first visible row accordingly. 4858 if (m_first_visible_row > 0 && m_num_rows < num_visible_rows) 4859 m_first_visible_row = 0; 4860 4861 // Make sure the selected row is always visible 4862 if (m_selected_row_idx < m_first_visible_row) 4863 m_first_visible_row = m_selected_row_idx; 4864 else if (m_first_visible_row + num_visible_rows <= m_selected_row_idx) 4865 m_first_visible_row = m_selected_row_idx - num_visible_rows + 1; 4866 4867 int row_idx = 0; 4868 int num_rows_left = num_visible_rows; 4869 m_root.Draw(window, m_first_visible_row, m_selected_row_idx, row_idx, 4870 num_rows_left); 4871 // Get the selected row 4872 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4873 4874 return true; // Drawing handled 4875 } 4876 4877 const char *WindowDelegateGetHelpText() override { 4878 return "Thread window keyboard shortcuts:"; 4879 } 4880 4881 KeyHelp *WindowDelegateGetKeyHelp() override { 4882 static curses::KeyHelp g_source_view_key_help[] = { 4883 {KEY_UP, "Select previous item"}, 4884 {KEY_DOWN, "Select next item"}, 4885 {KEY_RIGHT, "Expand the selected item"}, 4886 {KEY_LEFT, 4887 "Unexpand the selected item or select parent if not expanded"}, 4888 {KEY_PPAGE, "Page up"}, 4889 {KEY_NPAGE, "Page down"}, 4890 {'h', "Show help dialog"}, 4891 {' ', "Toggle item expansion"}, 4892 {',', "Page up"}, 4893 {'.', "Page down"}, 4894 {'\0', nullptr}}; 4895 return g_source_view_key_help; 4896 } 4897 4898 HandleCharResult WindowDelegateHandleChar(Window &window, int c) override { 4899 switch (c) { 4900 case ',': 4901 case KEY_PPAGE: 4902 // Page up key 4903 if (m_first_visible_row > 0) { 4904 if (m_first_visible_row > m_max_y) 4905 m_first_visible_row -= m_max_y; 4906 else 4907 m_first_visible_row = 0; 4908 m_selected_row_idx = m_first_visible_row; 4909 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4910 if (m_selected_item) 4911 m_selected_item->ItemWasSelected(); 4912 } 4913 return eKeyHandled; 4914 4915 case '.': 4916 case KEY_NPAGE: 4917 // Page down key 4918 if (m_num_rows > m_max_y) { 4919 if (m_first_visible_row + m_max_y < m_num_rows) { 4920 m_first_visible_row += m_max_y; 4921 m_selected_row_idx = m_first_visible_row; 4922 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4923 if (m_selected_item) 4924 m_selected_item->ItemWasSelected(); 4925 } 4926 } 4927 return eKeyHandled; 4928 4929 case KEY_UP: 4930 if (m_selected_row_idx > 0) { 4931 --m_selected_row_idx; 4932 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4933 if (m_selected_item) 4934 m_selected_item->ItemWasSelected(); 4935 } 4936 return eKeyHandled; 4937 4938 case KEY_DOWN: 4939 if (m_selected_row_idx + 1 < m_num_rows) { 4940 ++m_selected_row_idx; 4941 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4942 if (m_selected_item) 4943 m_selected_item->ItemWasSelected(); 4944 } 4945 return eKeyHandled; 4946 4947 case KEY_RIGHT: 4948 if (m_selected_item) { 4949 if (!m_selected_item->IsExpanded()) 4950 m_selected_item->Expand(); 4951 } 4952 return eKeyHandled; 4953 4954 case KEY_LEFT: 4955 if (m_selected_item) { 4956 if (m_selected_item->IsExpanded()) 4957 m_selected_item->Unexpand(); 4958 else if (m_selected_item->GetParent()) { 4959 m_selected_row_idx = m_selected_item->GetParent()->GetRowIndex(); 4960 m_selected_item = m_root.GetItemForRowIndex(m_selected_row_idx); 4961 if (m_selected_item) 4962 m_selected_item->ItemWasSelected(); 4963 } 4964 } 4965 return eKeyHandled; 4966 4967 case ' ': 4968 // Toggle expansion state when SPACE is pressed 4969 if (m_selected_item) { 4970 if (m_selected_item->IsExpanded()) 4971 m_selected_item->Unexpand(); 4972 else 4973 m_selected_item->Expand(); 4974 } 4975 return eKeyHandled; 4976 4977 case 'h': 4978 window.CreateHelpSubwindow(); 4979 return eKeyHandled; 4980 4981 default: 4982 break; 4983 } 4984 return eKeyNotHandled; 4985 } 4986 4987 protected: 4988 Debugger &m_debugger; 4989 TreeDelegateSP m_delegate_sp; 4990 TreeItem m_root; 4991 TreeItem *m_selected_item = nullptr; 4992 int m_num_rows = 0; 4993 int m_selected_row_idx = 0; 4994 int m_first_visible_row = 0; 4995 int m_min_x = 0; 4996 int m_min_y = 0; 4997 int m_max_x = 0; 4998 int m_max_y = 0; 4999 }; 5000 5001 // A tree delegate that just draws the text member of the tree item, it doesn't 5002 // have any children or actions. 5003 class TextTreeDelegate : public TreeDelegate { 5004 public: 5005 TextTreeDelegate() : TreeDelegate() {} 5006 5007 ~TextTreeDelegate() override = default; 5008 5009 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5010 window.PutCStringTruncated(1, item.GetText().c_str()); 5011 } 5012 5013 void TreeDelegateGenerateChildren(TreeItem &item) override {} 5014 5015 bool TreeDelegateItemSelected(TreeItem &item) override { return false; } 5016 }; 5017 5018 class FrameTreeDelegate : public TreeDelegate { 5019 public: 5020 FrameTreeDelegate() : TreeDelegate() { 5021 FormatEntity::Parse( 5022 "#${frame.index}: {${function.name}${function.pc-offset}}}", m_format); 5023 } 5024 5025 ~FrameTreeDelegate() override = default; 5026 5027 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5028 Thread *thread = (Thread *)item.GetUserData(); 5029 if (thread) { 5030 const uint64_t frame_idx = item.GetIdentifier(); 5031 StackFrameSP frame_sp = thread->GetStackFrameAtIndex(frame_idx); 5032 if (frame_sp) { 5033 StreamString strm; 5034 const SymbolContext &sc = 5035 frame_sp->GetSymbolContext(eSymbolContextEverything); 5036 ExecutionContext exe_ctx(frame_sp); 5037 if (FormatEntity::Format(m_format, strm, &sc, &exe_ctx, nullptr, 5038 nullptr, false, false)) { 5039 int right_pad = 1; 5040 window.PutCStringTruncated(right_pad, strm.GetString().str().c_str()); 5041 } 5042 } 5043 } 5044 } 5045 5046 void TreeDelegateGenerateChildren(TreeItem &item) override { 5047 // No children for frames yet... 5048 } 5049 5050 bool TreeDelegateItemSelected(TreeItem &item) override { 5051 Thread *thread = (Thread *)item.GetUserData(); 5052 if (thread) { 5053 thread->GetProcess()->GetThreadList().SetSelectedThreadByID( 5054 thread->GetID()); 5055 const uint64_t frame_idx = item.GetIdentifier(); 5056 thread->SetSelectedFrameByIndex(frame_idx); 5057 return true; 5058 } 5059 return false; 5060 } 5061 5062 protected: 5063 FormatEntity::Entry m_format; 5064 }; 5065 5066 class ThreadTreeDelegate : public TreeDelegate { 5067 public: 5068 ThreadTreeDelegate(Debugger &debugger) 5069 : TreeDelegate(), m_debugger(debugger) { 5070 FormatEntity::Parse("thread #${thread.index}: tid = ${thread.id}{, stop " 5071 "reason = ${thread.stop-reason}}", 5072 m_format); 5073 } 5074 5075 ~ThreadTreeDelegate() override = default; 5076 5077 ProcessSP GetProcess() { 5078 return m_debugger.GetCommandInterpreter() 5079 .GetExecutionContext() 5080 .GetProcessSP(); 5081 } 5082 5083 ThreadSP GetThread(const TreeItem &item) { 5084 ProcessSP process_sp = GetProcess(); 5085 if (process_sp) 5086 return process_sp->GetThreadList().FindThreadByID(item.GetIdentifier()); 5087 return ThreadSP(); 5088 } 5089 5090 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5091 ThreadSP thread_sp = GetThread(item); 5092 if (thread_sp) { 5093 StreamString strm; 5094 ExecutionContext exe_ctx(thread_sp); 5095 if (FormatEntity::Format(m_format, strm, nullptr, &exe_ctx, nullptr, 5096 nullptr, false, false)) { 5097 int right_pad = 1; 5098 window.PutCStringTruncated(right_pad, strm.GetString().str().c_str()); 5099 } 5100 } 5101 } 5102 5103 void TreeDelegateGenerateChildren(TreeItem &item) override { 5104 ProcessSP process_sp = GetProcess(); 5105 if (process_sp && process_sp->IsAlive()) { 5106 StateType state = process_sp->GetState(); 5107 if (StateIsStoppedState(state, true)) { 5108 ThreadSP thread_sp = GetThread(item); 5109 if (thread_sp) { 5110 if (m_stop_id == process_sp->GetStopID() && 5111 thread_sp->GetID() == m_tid) 5112 return; // Children are already up to date 5113 if (!m_frame_delegate_sp) { 5114 // Always expand the thread item the first time we show it 5115 m_frame_delegate_sp = std::make_shared<FrameTreeDelegate>(); 5116 } 5117 5118 m_stop_id = process_sp->GetStopID(); 5119 m_tid = thread_sp->GetID(); 5120 5121 TreeItem t(&item, *m_frame_delegate_sp, false); 5122 size_t num_frames = thread_sp->GetStackFrameCount(); 5123 item.Resize(num_frames, t); 5124 for (size_t i = 0; i < num_frames; ++i) { 5125 item[i].SetUserData(thread_sp.get()); 5126 item[i].SetIdentifier(i); 5127 } 5128 } 5129 return; 5130 } 5131 } 5132 item.ClearChildren(); 5133 } 5134 5135 bool TreeDelegateItemSelected(TreeItem &item) override { 5136 ProcessSP process_sp = GetProcess(); 5137 if (process_sp && process_sp->IsAlive()) { 5138 StateType state = process_sp->GetState(); 5139 if (StateIsStoppedState(state, true)) { 5140 ThreadSP thread_sp = GetThread(item); 5141 if (thread_sp) { 5142 ThreadList &thread_list = thread_sp->GetProcess()->GetThreadList(); 5143 std::lock_guard<std::recursive_mutex> guard(thread_list.GetMutex()); 5144 ThreadSP selected_thread_sp = thread_list.GetSelectedThread(); 5145 if (selected_thread_sp->GetID() != thread_sp->GetID()) { 5146 thread_list.SetSelectedThreadByID(thread_sp->GetID()); 5147 return true; 5148 } 5149 } 5150 } 5151 } 5152 return false; 5153 } 5154 5155 protected: 5156 Debugger &m_debugger; 5157 std::shared_ptr<FrameTreeDelegate> m_frame_delegate_sp; 5158 lldb::user_id_t m_tid = LLDB_INVALID_THREAD_ID; 5159 uint32_t m_stop_id = UINT32_MAX; 5160 FormatEntity::Entry m_format; 5161 }; 5162 5163 class ThreadsTreeDelegate : public TreeDelegate { 5164 public: 5165 ThreadsTreeDelegate(Debugger &debugger) 5166 : TreeDelegate(), m_thread_delegate_sp(), m_debugger(debugger) { 5167 FormatEntity::Parse("process ${process.id}{, name = ${process.name}}", 5168 m_format); 5169 } 5170 5171 ~ThreadsTreeDelegate() override = default; 5172 5173 ProcessSP GetProcess() { 5174 return m_debugger.GetCommandInterpreter() 5175 .GetExecutionContext() 5176 .GetProcessSP(); 5177 } 5178 5179 bool TreeDelegateShouldDraw() override { 5180 ProcessSP process = GetProcess(); 5181 if (!process) 5182 return false; 5183 5184 if (StateIsRunningState(process->GetState())) 5185 return false; 5186 5187 return true; 5188 } 5189 5190 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5191 ProcessSP process_sp = GetProcess(); 5192 if (process_sp && process_sp->IsAlive()) { 5193 StreamString strm; 5194 ExecutionContext exe_ctx(process_sp); 5195 if (FormatEntity::Format(m_format, strm, nullptr, &exe_ctx, nullptr, 5196 nullptr, false, false)) { 5197 int right_pad = 1; 5198 window.PutCStringTruncated(right_pad, strm.GetString().str().c_str()); 5199 } 5200 } 5201 } 5202 5203 void TreeDelegateGenerateChildren(TreeItem &item) override { 5204 ProcessSP process_sp = GetProcess(); 5205 m_update_selection = false; 5206 if (process_sp && process_sp->IsAlive()) { 5207 StateType state = process_sp->GetState(); 5208 if (StateIsStoppedState(state, true)) { 5209 const uint32_t stop_id = process_sp->GetStopID(); 5210 if (m_stop_id == stop_id) 5211 return; // Children are already up to date 5212 5213 m_stop_id = stop_id; 5214 m_update_selection = true; 5215 5216 if (!m_thread_delegate_sp) { 5217 // Always expand the thread item the first time we show it 5218 // item.Expand(); 5219 m_thread_delegate_sp = 5220 std::make_shared<ThreadTreeDelegate>(m_debugger); 5221 } 5222 5223 TreeItem t(&item, *m_thread_delegate_sp, false); 5224 ThreadList &threads = process_sp->GetThreadList(); 5225 std::lock_guard<std::recursive_mutex> guard(threads.GetMutex()); 5226 ThreadSP selected_thread = threads.GetSelectedThread(); 5227 size_t num_threads = threads.GetSize(); 5228 item.Resize(num_threads, t); 5229 for (size_t i = 0; i < num_threads; ++i) { 5230 ThreadSP thread = threads.GetThreadAtIndex(i); 5231 item[i].SetIdentifier(thread->GetID()); 5232 item[i].SetMightHaveChildren(true); 5233 if (selected_thread->GetID() == thread->GetID()) 5234 item[i].Expand(); 5235 } 5236 return; 5237 } 5238 } 5239 item.ClearChildren(); 5240 } 5241 5242 void TreeDelegateUpdateSelection(TreeItem &root, int &selection_index, 5243 TreeItem *&selected_item) override { 5244 if (!m_update_selection) 5245 return; 5246 5247 ProcessSP process_sp = GetProcess(); 5248 if (!(process_sp && process_sp->IsAlive())) 5249 return; 5250 5251 StateType state = process_sp->GetState(); 5252 if (!StateIsStoppedState(state, true)) 5253 return; 5254 5255 ThreadList &threads = process_sp->GetThreadList(); 5256 std::lock_guard<std::recursive_mutex> guard(threads.GetMutex()); 5257 ThreadSP selected_thread = threads.GetSelectedThread(); 5258 size_t num_threads = threads.GetSize(); 5259 for (size_t i = 0; i < num_threads; ++i) { 5260 ThreadSP thread = threads.GetThreadAtIndex(i); 5261 if (selected_thread->GetID() == thread->GetID()) { 5262 selected_item = &root[i][thread->GetSelectedFrameIndex()]; 5263 selection_index = selected_item->GetRowIndex(); 5264 return; 5265 } 5266 } 5267 } 5268 5269 bool TreeDelegateItemSelected(TreeItem &item) override { return false; } 5270 5271 bool TreeDelegateExpandRootByDefault() override { return true; } 5272 5273 protected: 5274 std::shared_ptr<ThreadTreeDelegate> m_thread_delegate_sp; 5275 Debugger &m_debugger; 5276 uint32_t m_stop_id = UINT32_MAX; 5277 bool m_update_selection = false; 5278 FormatEntity::Entry m_format; 5279 }; 5280 5281 class BreakpointLocationTreeDelegate : public TreeDelegate { 5282 public: 5283 BreakpointLocationTreeDelegate(Debugger &debugger) 5284 : TreeDelegate(), m_debugger(debugger) {} 5285 5286 ~BreakpointLocationTreeDelegate() override = default; 5287 5288 Process *GetProcess() { 5289 ExecutionContext exe_ctx( 5290 m_debugger.GetCommandInterpreter().GetExecutionContext()); 5291 return exe_ctx.GetProcessPtr(); 5292 } 5293 5294 BreakpointLocationSP GetBreakpointLocation(const TreeItem &item) { 5295 Breakpoint *breakpoint = (Breakpoint *)item.GetUserData(); 5296 return breakpoint->GetLocationAtIndex(item.GetIdentifier()); 5297 } 5298 5299 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5300 BreakpointLocationSP breakpoint_location = GetBreakpointLocation(item); 5301 Process *process = GetProcess(); 5302 StreamString stream; 5303 stream.Printf("%i.%i: ", breakpoint_location->GetBreakpoint().GetID(), 5304 breakpoint_location->GetID()); 5305 Address address = breakpoint_location->GetAddress(); 5306 address.Dump(&stream, process, Address::DumpStyleResolvedDescription, 5307 Address::DumpStyleInvalid); 5308 window.PutCStringTruncated(1, stream.GetString().str().c_str()); 5309 } 5310 5311 StringList ComputeDetailsList(BreakpointLocationSP breakpoint_location) { 5312 StringList details; 5313 5314 Address address = breakpoint_location->GetAddress(); 5315 SymbolContext symbol_context; 5316 address.CalculateSymbolContext(&symbol_context); 5317 5318 if (symbol_context.module_sp) { 5319 StreamString module_stream; 5320 module_stream.PutCString("module = "); 5321 symbol_context.module_sp->GetFileSpec().Dump( 5322 module_stream.AsRawOstream()); 5323 details.AppendString(module_stream.GetString()); 5324 } 5325 5326 if (symbol_context.comp_unit != nullptr) { 5327 StreamString compile_unit_stream; 5328 compile_unit_stream.PutCString("compile unit = "); 5329 symbol_context.comp_unit->GetPrimaryFile().GetFilename().Dump( 5330 &compile_unit_stream); 5331 details.AppendString(compile_unit_stream.GetString()); 5332 5333 if (symbol_context.function != nullptr) { 5334 StreamString function_stream; 5335 function_stream.PutCString("function = "); 5336 function_stream.PutCString( 5337 symbol_context.function->GetName().AsCString("<unknown>")); 5338 details.AppendString(function_stream.GetString()); 5339 } 5340 5341 if (symbol_context.line_entry.line > 0) { 5342 StreamString location_stream; 5343 location_stream.PutCString("location = "); 5344 symbol_context.line_entry.DumpStopContext(&location_stream, true); 5345 details.AppendString(location_stream.GetString()); 5346 } 5347 5348 } else { 5349 if (symbol_context.symbol) { 5350 StreamString symbol_stream; 5351 if (breakpoint_location->IsReExported()) 5352 symbol_stream.PutCString("re-exported target = "); 5353 else 5354 symbol_stream.PutCString("symbol = "); 5355 symbol_stream.PutCString( 5356 symbol_context.symbol->GetName().AsCString("<unknown>")); 5357 details.AppendString(symbol_stream.GetString()); 5358 } 5359 } 5360 5361 Process *process = GetProcess(); 5362 5363 StreamString address_stream; 5364 address.Dump(&address_stream, process, Address::DumpStyleLoadAddress, 5365 Address::DumpStyleModuleWithFileAddress); 5366 details.AppendString(address_stream.GetString()); 5367 5368 BreakpointSiteSP breakpoint_site = breakpoint_location->GetBreakpointSite(); 5369 if (breakpoint_location->IsIndirect() && breakpoint_site) { 5370 Address resolved_address; 5371 resolved_address.SetLoadAddress(breakpoint_site->GetLoadAddress(), 5372 &breakpoint_location->GetTarget()); 5373 Symbol *resolved_symbol = resolved_address.CalculateSymbolContextSymbol(); 5374 if (resolved_symbol) { 5375 StreamString indirect_target_stream; 5376 indirect_target_stream.PutCString("indirect target = "); 5377 indirect_target_stream.PutCString( 5378 resolved_symbol->GetName().GetCString()); 5379 details.AppendString(indirect_target_stream.GetString()); 5380 } 5381 } 5382 5383 bool is_resolved = breakpoint_location->IsResolved(); 5384 StreamString resolved_stream; 5385 resolved_stream.Printf("resolved = %s", is_resolved ? "true" : "false"); 5386 details.AppendString(resolved_stream.GetString()); 5387 5388 bool is_hardware = is_resolved && breakpoint_site->IsHardware(); 5389 StreamString hardware_stream; 5390 hardware_stream.Printf("hardware = %s", is_hardware ? "true" : "false"); 5391 details.AppendString(hardware_stream.GetString()); 5392 5393 StreamString hit_count_stream; 5394 hit_count_stream.Printf("hit count = %-4u", 5395 breakpoint_location->GetHitCount()); 5396 details.AppendString(hit_count_stream.GetString()); 5397 5398 return details; 5399 } 5400 5401 void TreeDelegateGenerateChildren(TreeItem &item) override { 5402 BreakpointLocationSP breakpoint_location = GetBreakpointLocation(item); 5403 StringList details = ComputeDetailsList(breakpoint_location); 5404 5405 if (!m_string_delegate_sp) 5406 m_string_delegate_sp = std::make_shared<TextTreeDelegate>(); 5407 TreeItem details_tree_item(&item, *m_string_delegate_sp, false); 5408 5409 item.Resize(details.GetSize(), details_tree_item); 5410 for (size_t i = 0; i < details.GetSize(); i++) { 5411 item[i].SetText(details.GetStringAtIndex(i)); 5412 } 5413 } 5414 5415 bool TreeDelegateItemSelected(TreeItem &item) override { return false; } 5416 5417 protected: 5418 Debugger &m_debugger; 5419 std::shared_ptr<TextTreeDelegate> m_string_delegate_sp; 5420 }; 5421 5422 class BreakpointTreeDelegate : public TreeDelegate { 5423 public: 5424 BreakpointTreeDelegate(Debugger &debugger) 5425 : TreeDelegate(), m_debugger(debugger), 5426 m_breakpoint_location_delegate_sp() {} 5427 5428 ~BreakpointTreeDelegate() override = default; 5429 5430 BreakpointSP GetBreakpoint(const TreeItem &item) { 5431 TargetSP target = m_debugger.GetSelectedTarget(); 5432 BreakpointList &breakpoints = target->GetBreakpointList(false); 5433 return breakpoints.GetBreakpointAtIndex(item.GetIdentifier()); 5434 } 5435 5436 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5437 BreakpointSP breakpoint = GetBreakpoint(item); 5438 StreamString stream; 5439 stream.Format("{0}: ", breakpoint->GetID()); 5440 breakpoint->GetResolverDescription(&stream); 5441 breakpoint->GetFilterDescription(&stream); 5442 window.PutCStringTruncated(1, stream.GetString().str().c_str()); 5443 } 5444 5445 void TreeDelegateGenerateChildren(TreeItem &item) override { 5446 BreakpointSP breakpoint = GetBreakpoint(item); 5447 5448 if (!m_breakpoint_location_delegate_sp) 5449 m_breakpoint_location_delegate_sp = 5450 std::make_shared<BreakpointLocationTreeDelegate>(m_debugger); 5451 TreeItem breakpoint_location_tree_item( 5452 &item, *m_breakpoint_location_delegate_sp, true); 5453 5454 item.Resize(breakpoint->GetNumLocations(), breakpoint_location_tree_item); 5455 for (size_t i = 0; i < breakpoint->GetNumLocations(); i++) { 5456 item[i].SetIdentifier(i); 5457 item[i].SetUserData(breakpoint.get()); 5458 } 5459 } 5460 5461 bool TreeDelegateItemSelected(TreeItem &item) override { return false; } 5462 5463 protected: 5464 Debugger &m_debugger; 5465 std::shared_ptr<BreakpointLocationTreeDelegate> 5466 m_breakpoint_location_delegate_sp; 5467 }; 5468 5469 class BreakpointsTreeDelegate : public TreeDelegate { 5470 public: 5471 BreakpointsTreeDelegate(Debugger &debugger) 5472 : TreeDelegate(), m_debugger(debugger), m_breakpoint_delegate_sp() {} 5473 5474 ~BreakpointsTreeDelegate() override = default; 5475 5476 bool TreeDelegateShouldDraw() override { 5477 TargetSP target = m_debugger.GetSelectedTarget(); 5478 if (!target) 5479 return false; 5480 5481 return true; 5482 } 5483 5484 void TreeDelegateDrawTreeItem(TreeItem &item, Window &window) override { 5485 window.PutCString("Breakpoints"); 5486 } 5487 5488 void TreeDelegateGenerateChildren(TreeItem &item) override { 5489 TargetSP target = m_debugger.GetSelectedTarget(); 5490 5491 BreakpointList &breakpoints = target->GetBreakpointList(false); 5492 std::unique_lock<std::recursive_mutex> lock; 5493 breakpoints.GetListMutex(lock); 5494 5495 if (!m_breakpoint_delegate_sp) 5496 m_breakpoint_delegate_sp = 5497 std::make_shared<BreakpointTreeDelegate>(m_debugger); 5498 TreeItem breakpoint_tree_item(&item, *m_breakpoint_delegate_sp, true); 5499 5500 item.Resize(breakpoints.GetSize(), breakpoint_tree_item); 5501 for (size_t i = 0; i < breakpoints.GetSize(); i++) { 5502 item[i].SetIdentifier(i); 5503 } 5504 } 5505 5506 bool TreeDelegateItemSelected(TreeItem &item) override { return false; } 5507 5508 bool TreeDelegateExpandRootByDefault() override { return true; } 5509 5510 protected: 5511 Debugger &m_debugger; 5512 std::shared_ptr<BreakpointTreeDelegate> m_breakpoint_delegate_sp; 5513 }; 5514 5515 class ValueObjectListDelegate : public WindowDelegate { 5516 public: 5517 ValueObjectListDelegate() : m_rows() {} 5518 5519 ValueObjectListDelegate(ValueObjectList &valobj_list) : m_rows() { 5520 SetValues(valobj_list); 5521 } 5522 5523 ~ValueObjectListDelegate() override = default; 5524 5525 void SetValues(ValueObjectList &valobj_list) { 5526 m_selected_row = nullptr; 5527 m_selected_row_idx = 0; 5528 m_first_visible_row = 0; 5529 m_num_rows = 0; 5530 m_rows.clear(); 5531 for (auto &valobj_sp : valobj_list.GetObjects()) 5532 m_rows.push_back(Row(valobj_sp, nullptr)); 5533 } 5534 5535 bool WindowDelegateDraw(Window &window, bool force) override { 5536 m_num_rows = 0; 5537 m_min_x = 2; 5538 m_min_y = 1; 5539 m_max_x = window.GetWidth() - 1; 5540 m_max_y = window.GetHeight() - 1; 5541 5542 window.Erase(); 5543 window.DrawTitleBox(window.GetName()); 5544 5545 const int num_visible_rows = NumVisibleRows(); 5546 const int num_rows = CalculateTotalNumberRows(m_rows); 5547 5548 // If we unexpanded while having something selected our total number of 5549 // rows is less than the num visible rows, then make sure we show all the 5550 // rows by setting the first visible row accordingly. 5551 if (m_first_visible_row > 0 && num_rows < num_visible_rows) 5552 m_first_visible_row = 0; 5553 5554 // Make sure the selected row is always visible 5555 if (m_selected_row_idx < m_first_visible_row) 5556 m_first_visible_row = m_selected_row_idx; 5557 else if (m_first_visible_row + num_visible_rows <= m_selected_row_idx) 5558 m_first_visible_row = m_selected_row_idx - num_visible_rows + 1; 5559 5560 DisplayRows(window, m_rows, g_options); 5561 5562 // Get the selected row 5563 m_selected_row = GetRowForRowIndex(m_selected_row_idx); 5564 // Keep the cursor on the selected row so the highlight and the cursor are 5565 // always on the same line 5566 if (m_selected_row) 5567 window.MoveCursor(m_selected_row->x, m_selected_row->y); 5568 5569 return true; // Drawing handled 5570 } 5571 5572 KeyHelp *WindowDelegateGetKeyHelp() override { 5573 static curses::KeyHelp g_source_view_key_help[] = { 5574 {KEY_UP, "Select previous item"}, 5575 {KEY_DOWN, "Select next item"}, 5576 {KEY_RIGHT, "Expand selected item"}, 5577 {KEY_LEFT, "Unexpand selected item or select parent if not expanded"}, 5578 {KEY_PPAGE, "Page up"}, 5579 {KEY_NPAGE, "Page down"}, 5580 {'A', "Format as annotated address"}, 5581 {'b', "Format as binary"}, 5582 {'B', "Format as hex bytes with ASCII"}, 5583 {'c', "Format as character"}, 5584 {'d', "Format as a signed integer"}, 5585 {'D', "Format selected value using the default format for the type"}, 5586 {'f', "Format as float"}, 5587 {'h', "Show help dialog"}, 5588 {'i', "Format as instructions"}, 5589 {'o', "Format as octal"}, 5590 {'p', "Format as pointer"}, 5591 {'s', "Format as C string"}, 5592 {'t', "Toggle showing/hiding type names"}, 5593 {'u', "Format as an unsigned integer"}, 5594 {'x', "Format as hex"}, 5595 {'X', "Format as uppercase hex"}, 5596 {' ', "Toggle item expansion"}, 5597 {',', "Page up"}, 5598 {'.', "Page down"}, 5599 {'\0', nullptr}}; 5600 return g_source_view_key_help; 5601 } 5602 5603 HandleCharResult WindowDelegateHandleChar(Window &window, int c) override { 5604 switch (c) { 5605 case 'x': 5606 case 'X': 5607 case 'o': 5608 case 's': 5609 case 'u': 5610 case 'd': 5611 case 'D': 5612 case 'i': 5613 case 'A': 5614 case 'p': 5615 case 'c': 5616 case 'b': 5617 case 'B': 5618 case 'f': 5619 // Change the format for the currently selected item 5620 if (m_selected_row) { 5621 auto valobj_sp = m_selected_row->value.GetSP(); 5622 if (valobj_sp) 5623 valobj_sp->SetFormat(FormatForChar(c)); 5624 } 5625 return eKeyHandled; 5626 5627 case 't': 5628 // Toggle showing type names 5629 g_options.show_types = !g_options.show_types; 5630 return eKeyHandled; 5631 5632 case ',': 5633 case KEY_PPAGE: 5634 // Page up key 5635 if (m_first_visible_row > 0) { 5636 if (static_cast<int>(m_first_visible_row) > m_max_y) 5637 m_first_visible_row -= m_max_y; 5638 else 5639 m_first_visible_row = 0; 5640 m_selected_row_idx = m_first_visible_row; 5641 } 5642 return eKeyHandled; 5643 5644 case '.': 5645 case KEY_NPAGE: 5646 // Page down key 5647 if (m_num_rows > static_cast<size_t>(m_max_y)) { 5648 if (m_first_visible_row + m_max_y < m_num_rows) { 5649 m_first_visible_row += m_max_y; 5650 m_selected_row_idx = m_first_visible_row; 5651 } 5652 } 5653 return eKeyHandled; 5654 5655 case KEY_UP: 5656 if (m_selected_row_idx > 0) 5657 --m_selected_row_idx; 5658 return eKeyHandled; 5659 5660 case KEY_DOWN: 5661 if (m_selected_row_idx + 1 < m_num_rows) 5662 ++m_selected_row_idx; 5663 return eKeyHandled; 5664 5665 case KEY_RIGHT: 5666 if (m_selected_row) { 5667 if (!m_selected_row->expanded) 5668 m_selected_row->Expand(); 5669 } 5670 return eKeyHandled; 5671 5672 case KEY_LEFT: 5673 if (m_selected_row) { 5674 if (m_selected_row->expanded) 5675 m_selected_row->Unexpand(); 5676 else if (m_selected_row->parent) 5677 m_selected_row_idx = m_selected_row->parent->row_idx; 5678 } 5679 return eKeyHandled; 5680 5681 case ' ': 5682 // Toggle expansion state when SPACE is pressed 5683 if (m_selected_row) { 5684 if (m_selected_row->expanded) 5685 m_selected_row->Unexpand(); 5686 else 5687 m_selected_row->Expand(); 5688 } 5689 return eKeyHandled; 5690 5691 case 'h': 5692 window.CreateHelpSubwindow(); 5693 return eKeyHandled; 5694 5695 default: 5696 break; 5697 } 5698 return eKeyNotHandled; 5699 } 5700 5701 protected: 5702 std::vector<Row> m_rows; 5703 Row *m_selected_row = nullptr; 5704 uint32_t m_selected_row_idx = 0; 5705 uint32_t m_first_visible_row = 0; 5706 uint32_t m_num_rows = 0; 5707 int m_min_x = 0; 5708 int m_min_y = 0; 5709 int m_max_x = 0; 5710 int m_max_y = 0; 5711 5712 static Format FormatForChar(int c) { 5713 switch (c) { 5714 case 'x': 5715 return eFormatHex; 5716 case 'X': 5717 return eFormatHexUppercase; 5718 case 'o': 5719 return eFormatOctal; 5720 case 's': 5721 return eFormatCString; 5722 case 'u': 5723 return eFormatUnsigned; 5724 case 'd': 5725 return eFormatDecimal; 5726 case 'D': 5727 return eFormatDefault; 5728 case 'i': 5729 return eFormatInstruction; 5730 case 'A': 5731 return eFormatAddressInfo; 5732 case 'p': 5733 return eFormatPointer; 5734 case 'c': 5735 return eFormatChar; 5736 case 'b': 5737 return eFormatBinary; 5738 case 'B': 5739 return eFormatBytesWithASCII; 5740 case 'f': 5741 return eFormatFloat; 5742 } 5743 return eFormatDefault; 5744 } 5745 5746 bool DisplayRowObject(Window &window, Row &row, DisplayOptions &options, 5747 bool highlight, bool last_child) { 5748 ValueObject *valobj = row.value.GetSP().get(); 5749 5750 if (valobj == nullptr) 5751 return false; 5752 5753 const char *type_name = 5754 options.show_types ? valobj->GetTypeName().GetCString() : nullptr; 5755 const char *name = valobj->GetName().GetCString(); 5756 const char *value = valobj->GetValueAsCString(); 5757 const char *summary = valobj->GetSummaryAsCString(); 5758 5759 window.MoveCursor(row.x, row.y); 5760 5761 row.DrawTree(window); 5762 5763 if (highlight) 5764 window.AttributeOn(A_REVERSE); 5765 5766 if (type_name && type_name[0]) 5767 window.PrintfTruncated(1, "(%s) ", type_name); 5768 5769 if (name && name[0]) 5770 window.PutCStringTruncated(1, name); 5771 5772 attr_t changd_attr = 0; 5773 if (valobj->GetValueDidChange()) 5774 changd_attr = COLOR_PAIR(RedOnBlack) | A_BOLD; 5775 5776 if (value && value[0]) { 5777 window.PutCStringTruncated(1, " = "); 5778 if (changd_attr) 5779 window.AttributeOn(changd_attr); 5780 window.PutCStringTruncated(1, value); 5781 if (changd_attr) 5782 window.AttributeOff(changd_attr); 5783 } 5784 5785 if (summary && summary[0]) { 5786 window.PutCStringTruncated(1, " "); 5787 if (changd_attr) 5788 window.AttributeOn(changd_attr); 5789 window.PutCStringTruncated(1, summary); 5790 if (changd_attr) 5791 window.AttributeOff(changd_attr); 5792 } 5793 5794 if (highlight) 5795 window.AttributeOff(A_REVERSE); 5796 5797 return true; 5798 } 5799 5800 void DisplayRows(Window &window, std::vector<Row> &rows, 5801 DisplayOptions &options) { 5802 // > 0x25B7 5803 // \/ 0x25BD 5804 5805 bool window_is_active = window.IsActive(); 5806 for (auto &row : rows) { 5807 const bool last_child = row.parent && &rows[rows.size() - 1] == &row; 5808 // Save the row index in each Row structure 5809 row.row_idx = m_num_rows; 5810 if ((m_num_rows >= m_first_visible_row) && 5811 ((m_num_rows - m_first_visible_row) < 5812 static_cast<size_t>(NumVisibleRows()))) { 5813 row.x = m_min_x; 5814 row.y = m_num_rows - m_first_visible_row + 1; 5815 if (DisplayRowObject(window, row, options, 5816 window_is_active && 5817 m_num_rows == m_selected_row_idx, 5818 last_child)) { 5819 ++m_num_rows; 5820 } else { 5821 row.x = 0; 5822 row.y = 0; 5823 } 5824 } else { 5825 row.x = 0; 5826 row.y = 0; 5827 ++m_num_rows; 5828 } 5829 5830 if (row.expanded) { 5831 auto &children = row.GetChildren(); 5832 if (!children.empty()) { 5833 DisplayRows(window, children, options); 5834 } 5835 } 5836 } 5837 } 5838 5839 int CalculateTotalNumberRows(std::vector<Row> &rows) { 5840 int row_count = 0; 5841 for (auto &row : rows) { 5842 ++row_count; 5843 if (row.expanded) 5844 row_count += CalculateTotalNumberRows(row.GetChildren()); 5845 } 5846 return row_count; 5847 } 5848 5849 static Row *GetRowForRowIndexImpl(std::vector<Row> &rows, size_t &row_index) { 5850 for (auto &row : rows) { 5851 if (row_index == 0) 5852 return &row; 5853 else { 5854 --row_index; 5855 if (row.expanded) { 5856 auto &children = row.GetChildren(); 5857 if (!children.empty()) { 5858 Row *result = GetRowForRowIndexImpl(children, row_index); 5859 if (result) 5860 return result; 5861 } 5862 } 5863 } 5864 } 5865 return nullptr; 5866 } 5867 5868 Row *GetRowForRowIndex(size_t row_index) { 5869 return GetRowForRowIndexImpl(m_rows, row_index); 5870 } 5871 5872 int NumVisibleRows() const { return m_max_y - m_min_y; } 5873 5874 static DisplayOptions g_options; 5875 }; 5876 5877 class FrameVariablesWindowDelegate : public ValueObjectListDelegate { 5878 public: 5879 FrameVariablesWindowDelegate(Debugger &debugger) 5880 : ValueObjectListDelegate(), m_debugger(debugger) {} 5881 5882 ~FrameVariablesWindowDelegate() override = default; 5883 5884 const char *WindowDelegateGetHelpText() override { 5885 return "Frame variable window keyboard shortcuts:"; 5886 } 5887 5888 bool WindowDelegateDraw(Window &window, bool force) override { 5889 ExecutionContext exe_ctx( 5890 m_debugger.GetCommandInterpreter().GetExecutionContext()); 5891 Process *process = exe_ctx.GetProcessPtr(); 5892 Block *frame_block = nullptr; 5893 StackFrame *frame = nullptr; 5894 5895 if (process) { 5896 StateType state = process->GetState(); 5897 if (StateIsStoppedState(state, true)) { 5898 frame = exe_ctx.GetFramePtr(); 5899 if (frame) 5900 frame_block = frame->GetFrameBlock(); 5901 } else if (StateIsRunningState(state)) { 5902 return true; // Don't do any updating when we are running 5903 } 5904 } 5905 5906 ValueObjectList local_values; 5907 if (frame_block) { 5908 // Only update the variables if they have changed 5909 if (m_frame_block != frame_block) { 5910 m_frame_block = frame_block; 5911 5912 VariableList *locals = frame->GetVariableList(true, nullptr); 5913 if (locals) { 5914 const DynamicValueType use_dynamic = eDynamicDontRunTarget; 5915 for (const VariableSP &local_sp : *locals) { 5916 ValueObjectSP value_sp = 5917 frame->GetValueObjectForFrameVariable(local_sp, use_dynamic); 5918 if (value_sp) { 5919 ValueObjectSP synthetic_value_sp = value_sp->GetSyntheticValue(); 5920 if (synthetic_value_sp) 5921 local_values.Append(synthetic_value_sp); 5922 else 5923 local_values.Append(value_sp); 5924 } 5925 } 5926 // Update the values 5927 SetValues(local_values); 5928 } 5929 } 5930 } else { 5931 m_frame_block = nullptr; 5932 // Update the values with an empty list if there is no frame 5933 SetValues(local_values); 5934 } 5935 5936 return ValueObjectListDelegate::WindowDelegateDraw(window, force); 5937 } 5938 5939 protected: 5940 Debugger &m_debugger; 5941 Block *m_frame_block = nullptr; 5942 }; 5943 5944 class RegistersWindowDelegate : public ValueObjectListDelegate { 5945 public: 5946 RegistersWindowDelegate(Debugger &debugger) 5947 : ValueObjectListDelegate(), m_debugger(debugger) {} 5948 5949 ~RegistersWindowDelegate() override = default; 5950 5951 const char *WindowDelegateGetHelpText() override { 5952 return "Register window keyboard shortcuts:"; 5953 } 5954 5955 bool WindowDelegateDraw(Window &window, bool force) override { 5956 ExecutionContext exe_ctx( 5957 m_debugger.GetCommandInterpreter().GetExecutionContext()); 5958 StackFrame *frame = exe_ctx.GetFramePtr(); 5959 5960 ValueObjectList value_list; 5961 if (frame) { 5962 if (frame->GetStackID() != m_stack_id) { 5963 m_stack_id = frame->GetStackID(); 5964 RegisterContextSP reg_ctx(frame->GetRegisterContext()); 5965 if (reg_ctx) { 5966 const uint32_t num_sets = reg_ctx->GetRegisterSetCount(); 5967 for (uint32_t set_idx = 0; set_idx < num_sets; ++set_idx) { 5968 value_list.Append( 5969 ValueObjectRegisterSet::Create(frame, reg_ctx, set_idx)); 5970 } 5971 } 5972 SetValues(value_list); 5973 } 5974 } else { 5975 Process *process = exe_ctx.GetProcessPtr(); 5976 if (process && process->IsAlive()) 5977 return true; // Don't do any updating if we are running 5978 else { 5979 // Update the values with an empty list if there is no process or the 5980 // process isn't alive anymore 5981 SetValues(value_list); 5982 } 5983 } 5984 return ValueObjectListDelegate::WindowDelegateDraw(window, force); 5985 } 5986 5987 protected: 5988 Debugger &m_debugger; 5989 StackID m_stack_id; 5990 }; 5991 5992 static const char *CursesKeyToCString(int ch) { 5993 static char g_desc[32]; 5994 if (ch >= KEY_F0 && ch < KEY_F0 + 64) { 5995 snprintf(g_desc, sizeof(g_desc), "F%u", ch - KEY_F0); 5996 return g_desc; 5997 } 5998 switch (ch) { 5999 case KEY_DOWN: 6000 return "down"; 6001 case KEY_UP: 6002 return "up"; 6003 case KEY_LEFT: 6004 return "left"; 6005 case KEY_RIGHT: 6006 return "right"; 6007 case KEY_HOME: 6008 return "home"; 6009 case KEY_BACKSPACE: 6010 return "backspace"; 6011 case KEY_DL: 6012 return "delete-line"; 6013 case KEY_IL: 6014 return "insert-line"; 6015 case KEY_DC: 6016 return "delete-char"; 6017 case KEY_IC: 6018 return "insert-char"; 6019 case KEY_CLEAR: 6020 return "clear"; 6021 case KEY_EOS: 6022 return "clear-to-eos"; 6023 case KEY_EOL: 6024 return "clear-to-eol"; 6025 case KEY_SF: 6026 return "scroll-forward"; 6027 case KEY_SR: 6028 return "scroll-backward"; 6029 case KEY_NPAGE: 6030 return "page-down"; 6031 case KEY_PPAGE: 6032 return "page-up"; 6033 case KEY_STAB: 6034 return "set-tab"; 6035 case KEY_CTAB: 6036 return "clear-tab"; 6037 case KEY_CATAB: 6038 return "clear-all-tabs"; 6039 case KEY_ENTER: 6040 return "enter"; 6041 case KEY_PRINT: 6042 return "print"; 6043 case KEY_LL: 6044 return "lower-left key"; 6045 case KEY_A1: 6046 return "upper left of keypad"; 6047 case KEY_A3: 6048 return "upper right of keypad"; 6049 case KEY_B2: 6050 return "center of keypad"; 6051 case KEY_C1: 6052 return "lower left of keypad"; 6053 case KEY_C3: 6054 return "lower right of keypad"; 6055 case KEY_BTAB: 6056 return "back-tab key"; 6057 case KEY_BEG: 6058 return "begin key"; 6059 case KEY_CANCEL: 6060 return "cancel key"; 6061 case KEY_CLOSE: 6062 return "close key"; 6063 case KEY_COMMAND: 6064 return "command key"; 6065 case KEY_COPY: 6066 return "copy key"; 6067 case KEY_CREATE: 6068 return "create key"; 6069 case KEY_END: 6070 return "end key"; 6071 case KEY_EXIT: 6072 return "exit key"; 6073 case KEY_FIND: 6074 return "find key"; 6075 case KEY_HELP: 6076 return "help key"; 6077 case KEY_MARK: 6078 return "mark key"; 6079 case KEY_MESSAGE: 6080 return "message key"; 6081 case KEY_MOVE: 6082 return "move key"; 6083 case KEY_NEXT: 6084 return "next key"; 6085 case KEY_OPEN: 6086 return "open key"; 6087 case KEY_OPTIONS: 6088 return "options key"; 6089 case KEY_PREVIOUS: 6090 return "previous key"; 6091 case KEY_REDO: 6092 return "redo key"; 6093 case KEY_REFERENCE: 6094 return "reference key"; 6095 case KEY_REFRESH: 6096 return "refresh key"; 6097 case KEY_REPLACE: 6098 return "replace key"; 6099 case KEY_RESTART: 6100 return "restart key"; 6101 case KEY_RESUME: 6102 return "resume key"; 6103 case KEY_SAVE: 6104 return "save key"; 6105 case KEY_SBEG: 6106 return "shifted begin key"; 6107 case KEY_SCANCEL: 6108 return "shifted cancel key"; 6109 case KEY_SCOMMAND: 6110 return "shifted command key"; 6111 case KEY_SCOPY: 6112 return "shifted copy key"; 6113 case KEY_SCREATE: 6114 return "shifted create key"; 6115 case KEY_SDC: 6116 return "shifted delete-character key"; 6117 case KEY_SDL: 6118 return "shifted delete-line key"; 6119 case KEY_SELECT: 6120 return "select key"; 6121 case KEY_SEND: 6122 return "shifted end key"; 6123 case KEY_SEOL: 6124 return "shifted clear-to-end-of-line key"; 6125 case KEY_SEXIT: 6126 return "shifted exit key"; 6127 case KEY_SFIND: 6128 return "shifted find key"; 6129 case KEY_SHELP: 6130 return "shifted help key"; 6131 case KEY_SHOME: 6132 return "shifted home key"; 6133 case KEY_SIC: 6134 return "shifted insert-character key"; 6135 case KEY_SLEFT: 6136 return "shifted left-arrow key"; 6137 case KEY_SMESSAGE: 6138 return "shifted message key"; 6139 case KEY_SMOVE: 6140 return "shifted move key"; 6141 case KEY_SNEXT: 6142 return "shifted next key"; 6143 case KEY_SOPTIONS: 6144 return "shifted options key"; 6145 case KEY_SPREVIOUS: 6146 return "shifted previous key"; 6147 case KEY_SPRINT: 6148 return "shifted print key"; 6149 case KEY_SREDO: 6150 return "shifted redo key"; 6151 case KEY_SREPLACE: 6152 return "shifted replace key"; 6153 case KEY_SRIGHT: 6154 return "shifted right-arrow key"; 6155 case KEY_SRSUME: 6156 return "shifted resume key"; 6157 case KEY_SSAVE: 6158 return "shifted save key"; 6159 case KEY_SSUSPEND: 6160 return "shifted suspend key"; 6161 case KEY_SUNDO: 6162 return "shifted undo key"; 6163 case KEY_SUSPEND: 6164 return "suspend key"; 6165 case KEY_UNDO: 6166 return "undo key"; 6167 case KEY_MOUSE: 6168 return "Mouse event has occurred"; 6169 case KEY_RESIZE: 6170 return "Terminal resize event"; 6171 #ifdef KEY_EVENT 6172 case KEY_EVENT: 6173 return "We were interrupted by an event"; 6174 #endif 6175 case KEY_RETURN: 6176 return "return"; 6177 case ' ': 6178 return "space"; 6179 case '\t': 6180 return "tab"; 6181 case KEY_ESCAPE: 6182 return "escape"; 6183 default: 6184 if (llvm::isPrint(ch)) 6185 snprintf(g_desc, sizeof(g_desc), "%c", ch); 6186 else 6187 snprintf(g_desc, sizeof(g_desc), "\\x%2.2x", ch); 6188 return g_desc; 6189 } 6190 return nullptr; 6191 } 6192 6193 HelpDialogDelegate::HelpDialogDelegate(const char *text, 6194 KeyHelp *key_help_array) 6195 : m_text() { 6196 if (text && text[0]) { 6197 m_text.SplitIntoLines(text); 6198 m_text.AppendString(""); 6199 } 6200 if (key_help_array) { 6201 for (KeyHelp *key = key_help_array; key->ch; ++key) { 6202 StreamString key_description; 6203 key_description.Printf("%10s - %s", CursesKeyToCString(key->ch), 6204 key->description); 6205 m_text.AppendString(key_description.GetString()); 6206 } 6207 } 6208 } 6209 6210 HelpDialogDelegate::~HelpDialogDelegate() = default; 6211 6212 bool HelpDialogDelegate::WindowDelegateDraw(Window &window, bool force) { 6213 window.Erase(); 6214 const int window_height = window.GetHeight(); 6215 int x = 2; 6216 int y = 1; 6217 const int min_y = y; 6218 const int max_y = window_height - 1 - y; 6219 const size_t num_visible_lines = max_y - min_y + 1; 6220 const size_t num_lines = m_text.GetSize(); 6221 const char *bottom_message; 6222 if (num_lines <= num_visible_lines) 6223 bottom_message = "Press any key to exit"; 6224 else 6225 bottom_message = "Use arrows to scroll, any other key to exit"; 6226 window.DrawTitleBox(window.GetName(), bottom_message); 6227 while (y <= max_y) { 6228 window.MoveCursor(x, y); 6229 window.PutCStringTruncated( 6230 1, m_text.GetStringAtIndex(m_first_visible_line + y - min_y)); 6231 ++y; 6232 } 6233 return true; 6234 } 6235 6236 HandleCharResult HelpDialogDelegate::WindowDelegateHandleChar(Window &window, 6237 int key) { 6238 bool done = false; 6239 const size_t num_lines = m_text.GetSize(); 6240 const size_t num_visible_lines = window.GetHeight() - 2; 6241 6242 if (num_lines <= num_visible_lines) { 6243 done = true; 6244 // If we have all lines visible and don't need scrolling, then any key 6245 // press will cause us to exit 6246 } else { 6247 switch (key) { 6248 case KEY_UP: 6249 if (m_first_visible_line > 0) 6250 --m_first_visible_line; 6251 break; 6252 6253 case KEY_DOWN: 6254 if (m_first_visible_line + num_visible_lines < num_lines) 6255 ++m_first_visible_line; 6256 break; 6257 6258 case KEY_PPAGE: 6259 case ',': 6260 if (m_first_visible_line > 0) { 6261 if (static_cast<size_t>(m_first_visible_line) >= num_visible_lines) 6262 m_first_visible_line -= num_visible_lines; 6263 else 6264 m_first_visible_line = 0; 6265 } 6266 break; 6267 6268 case KEY_NPAGE: 6269 case '.': 6270 if (m_first_visible_line + num_visible_lines < num_lines) { 6271 m_first_visible_line += num_visible_lines; 6272 if (static_cast<size_t>(m_first_visible_line) > num_lines) 6273 m_first_visible_line = num_lines - num_visible_lines; 6274 } 6275 break; 6276 6277 default: 6278 done = true; 6279 break; 6280 } 6281 } 6282 if (done) 6283 window.GetParent()->RemoveSubWindow(&window); 6284 return eKeyHandled; 6285 } 6286 6287 class ApplicationDelegate : public WindowDelegate, public MenuDelegate { 6288 public: 6289 enum { 6290 eMenuID_LLDB = 1, 6291 eMenuID_LLDBAbout, 6292 eMenuID_LLDBExit, 6293 6294 eMenuID_Target, 6295 eMenuID_TargetCreate, 6296 eMenuID_TargetDelete, 6297 6298 eMenuID_Process, 6299 eMenuID_ProcessAttach, 6300 eMenuID_ProcessDetachResume, 6301 eMenuID_ProcessDetachSuspended, 6302 eMenuID_ProcessLaunch, 6303 eMenuID_ProcessContinue, 6304 eMenuID_ProcessHalt, 6305 eMenuID_ProcessKill, 6306 6307 eMenuID_Thread, 6308 eMenuID_ThreadStepIn, 6309 eMenuID_ThreadStepOver, 6310 eMenuID_ThreadStepOut, 6311 6312 eMenuID_View, 6313 eMenuID_ViewBacktrace, 6314 eMenuID_ViewRegisters, 6315 eMenuID_ViewSource, 6316 eMenuID_ViewVariables, 6317 eMenuID_ViewBreakpoints, 6318 6319 eMenuID_Help, 6320 eMenuID_HelpGUIHelp 6321 }; 6322 6323 ApplicationDelegate(Application &app, Debugger &debugger) 6324 : WindowDelegate(), MenuDelegate(), m_app(app), m_debugger(debugger) {} 6325 6326 ~ApplicationDelegate() override = default; 6327 6328 bool WindowDelegateDraw(Window &window, bool force) override { 6329 return false; // Drawing not handled, let standard window drawing happen 6330 } 6331 6332 HandleCharResult WindowDelegateHandleChar(Window &window, int key) override { 6333 switch (key) { 6334 case '\t': 6335 window.SelectNextWindowAsActive(); 6336 return eKeyHandled; 6337 6338 case KEY_SHIFT_TAB: 6339 window.SelectPreviousWindowAsActive(); 6340 return eKeyHandled; 6341 6342 case 'h': 6343 window.CreateHelpSubwindow(); 6344 return eKeyHandled; 6345 6346 case KEY_ESCAPE: 6347 return eQuitApplication; 6348 6349 default: 6350 break; 6351 } 6352 return eKeyNotHandled; 6353 } 6354 6355 const char *WindowDelegateGetHelpText() override { 6356 return "Welcome to the LLDB curses GUI.\n\n" 6357 "Press the TAB key to change the selected view.\n" 6358 "Each view has its own keyboard shortcuts, press 'h' to open a " 6359 "dialog to display them.\n\n" 6360 "Common key bindings for all views:"; 6361 } 6362 6363 KeyHelp *WindowDelegateGetKeyHelp() override { 6364 static curses::KeyHelp g_source_view_key_help[] = { 6365 {'\t', "Select next view"}, 6366 {KEY_BTAB, "Select previous view"}, 6367 {'h', "Show help dialog with view specific key bindings"}, 6368 {',', "Page up"}, 6369 {'.', "Page down"}, 6370 {KEY_UP, "Select previous"}, 6371 {KEY_DOWN, "Select next"}, 6372 {KEY_LEFT, "Unexpand or select parent"}, 6373 {KEY_RIGHT, "Expand"}, 6374 {KEY_PPAGE, "Page up"}, 6375 {KEY_NPAGE, "Page down"}, 6376 {'\0', nullptr}}; 6377 return g_source_view_key_help; 6378 } 6379 6380 MenuActionResult MenuDelegateAction(Menu &menu) override { 6381 switch (menu.GetIdentifier()) { 6382 case eMenuID_TargetCreate: { 6383 WindowSP main_window_sp = m_app.GetMainWindow(); 6384 FormDelegateSP form_delegate_sp = 6385 FormDelegateSP(new TargetCreateFormDelegate(m_debugger)); 6386 Rect bounds = main_window_sp->GetCenteredRect(80, 19); 6387 WindowSP form_window_sp = main_window_sp->CreateSubWindow( 6388 form_delegate_sp->GetName().c_str(), bounds, true); 6389 WindowDelegateSP window_delegate_sp = 6390 WindowDelegateSP(new FormWindowDelegate(form_delegate_sp)); 6391 form_window_sp->SetDelegate(window_delegate_sp); 6392 return MenuActionResult::Handled; 6393 } 6394 case eMenuID_ThreadStepIn: { 6395 ExecutionContext exe_ctx = 6396 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6397 if (exe_ctx.HasThreadScope()) { 6398 Process *process = exe_ctx.GetProcessPtr(); 6399 if (process && process->IsAlive() && 6400 StateIsStoppedState(process->GetState(), true)) 6401 exe_ctx.GetThreadRef().StepIn(true); 6402 } 6403 } 6404 return MenuActionResult::Handled; 6405 6406 case eMenuID_ThreadStepOut: { 6407 ExecutionContext exe_ctx = 6408 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6409 if (exe_ctx.HasThreadScope()) { 6410 Process *process = exe_ctx.GetProcessPtr(); 6411 if (process && process->IsAlive() && 6412 StateIsStoppedState(process->GetState(), true)) { 6413 Thread *thread = exe_ctx.GetThreadPtr(); 6414 uint32_t frame_idx = thread->GetSelectedFrameIndex(); 6415 exe_ctx.GetThreadRef().StepOut(frame_idx); 6416 } 6417 } 6418 } 6419 return MenuActionResult::Handled; 6420 6421 case eMenuID_ThreadStepOver: { 6422 ExecutionContext exe_ctx = 6423 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6424 if (exe_ctx.HasThreadScope()) { 6425 Process *process = exe_ctx.GetProcessPtr(); 6426 if (process && process->IsAlive() && 6427 StateIsStoppedState(process->GetState(), true)) 6428 exe_ctx.GetThreadRef().StepOver(true); 6429 } 6430 } 6431 return MenuActionResult::Handled; 6432 6433 case eMenuID_ProcessAttach: { 6434 WindowSP main_window_sp = m_app.GetMainWindow(); 6435 FormDelegateSP form_delegate_sp = FormDelegateSP( 6436 new ProcessAttachFormDelegate(m_debugger, main_window_sp)); 6437 Rect bounds = main_window_sp->GetCenteredRect(80, 22); 6438 WindowSP form_window_sp = main_window_sp->CreateSubWindow( 6439 form_delegate_sp->GetName().c_str(), bounds, true); 6440 WindowDelegateSP window_delegate_sp = 6441 WindowDelegateSP(new FormWindowDelegate(form_delegate_sp)); 6442 form_window_sp->SetDelegate(window_delegate_sp); 6443 return MenuActionResult::Handled; 6444 } 6445 case eMenuID_ProcessLaunch: { 6446 WindowSP main_window_sp = m_app.GetMainWindow(); 6447 FormDelegateSP form_delegate_sp = FormDelegateSP( 6448 new ProcessLaunchFormDelegate(m_debugger, main_window_sp)); 6449 Rect bounds = main_window_sp->GetCenteredRect(80, 22); 6450 WindowSP form_window_sp = main_window_sp->CreateSubWindow( 6451 form_delegate_sp->GetName().c_str(), bounds, true); 6452 WindowDelegateSP window_delegate_sp = 6453 WindowDelegateSP(new FormWindowDelegate(form_delegate_sp)); 6454 form_window_sp->SetDelegate(window_delegate_sp); 6455 return MenuActionResult::Handled; 6456 } 6457 6458 case eMenuID_ProcessContinue: { 6459 ExecutionContext exe_ctx = 6460 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6461 if (exe_ctx.HasProcessScope()) { 6462 Process *process = exe_ctx.GetProcessPtr(); 6463 if (process && process->IsAlive() && 6464 StateIsStoppedState(process->GetState(), true)) 6465 process->Resume(); 6466 } 6467 } 6468 return MenuActionResult::Handled; 6469 6470 case eMenuID_ProcessKill: { 6471 ExecutionContext exe_ctx = 6472 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6473 if (exe_ctx.HasProcessScope()) { 6474 Process *process = exe_ctx.GetProcessPtr(); 6475 if (process && process->IsAlive()) 6476 process->Destroy(false); 6477 } 6478 } 6479 return MenuActionResult::Handled; 6480 6481 case eMenuID_ProcessHalt: { 6482 ExecutionContext exe_ctx = 6483 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6484 if (exe_ctx.HasProcessScope()) { 6485 Process *process = exe_ctx.GetProcessPtr(); 6486 if (process && process->IsAlive()) 6487 process->Halt(); 6488 } 6489 } 6490 return MenuActionResult::Handled; 6491 6492 case eMenuID_ProcessDetachResume: 6493 case eMenuID_ProcessDetachSuspended: { 6494 ExecutionContext exe_ctx = 6495 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6496 if (exe_ctx.HasProcessScope()) { 6497 Process *process = exe_ctx.GetProcessPtr(); 6498 if (process && process->IsAlive()) 6499 process->Detach(menu.GetIdentifier() == 6500 eMenuID_ProcessDetachSuspended); 6501 } 6502 } 6503 return MenuActionResult::Handled; 6504 6505 case eMenuID_Process: { 6506 // Populate the menu with all of the threads if the process is stopped 6507 // when the Process menu gets selected and is about to display its 6508 // submenu. 6509 Menus &submenus = menu.GetSubmenus(); 6510 ExecutionContext exe_ctx = 6511 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6512 Process *process = exe_ctx.GetProcessPtr(); 6513 if (process && process->IsAlive() && 6514 StateIsStoppedState(process->GetState(), true)) { 6515 if (submenus.size() == 7) 6516 menu.AddSubmenu(MenuSP(new Menu(Menu::Type::Separator))); 6517 else if (submenus.size() > 8) 6518 submenus.erase(submenus.begin() + 8, submenus.end()); 6519 6520 ThreadList &threads = process->GetThreadList(); 6521 std::lock_guard<std::recursive_mutex> guard(threads.GetMutex()); 6522 size_t num_threads = threads.GetSize(); 6523 for (size_t i = 0; i < num_threads; ++i) { 6524 ThreadSP thread_sp = threads.GetThreadAtIndex(i); 6525 char menu_char = '\0'; 6526 if (i < 9) 6527 menu_char = '1' + i; 6528 StreamString thread_menu_title; 6529 thread_menu_title.Printf("Thread %u", thread_sp->GetIndexID()); 6530 const char *thread_name = thread_sp->GetName(); 6531 if (thread_name && thread_name[0]) 6532 thread_menu_title.Printf(" %s", thread_name); 6533 else { 6534 const char *queue_name = thread_sp->GetQueueName(); 6535 if (queue_name && queue_name[0]) 6536 thread_menu_title.Printf(" %s", queue_name); 6537 } 6538 menu.AddSubmenu( 6539 MenuSP(new Menu(thread_menu_title.GetString().str().c_str(), 6540 nullptr, menu_char, thread_sp->GetID()))); 6541 } 6542 } else if (submenus.size() > 7) { 6543 // Remove the separator and any other thread submenu items that were 6544 // previously added 6545 submenus.erase(submenus.begin() + 7, submenus.end()); 6546 } 6547 // Since we are adding and removing items we need to recalculate the 6548 // name lengths 6549 menu.RecalculateNameLengths(); 6550 } 6551 return MenuActionResult::Handled; 6552 6553 case eMenuID_ViewVariables: { 6554 WindowSP main_window_sp = m_app.GetMainWindow(); 6555 WindowSP source_window_sp = main_window_sp->FindSubWindow("Source"); 6556 WindowSP variables_window_sp = main_window_sp->FindSubWindow("Variables"); 6557 WindowSP registers_window_sp = main_window_sp->FindSubWindow("Registers"); 6558 const Rect source_bounds = source_window_sp->GetBounds(); 6559 6560 if (variables_window_sp) { 6561 const Rect variables_bounds = variables_window_sp->GetBounds(); 6562 6563 main_window_sp->RemoveSubWindow(variables_window_sp.get()); 6564 6565 if (registers_window_sp) { 6566 // We have a registers window, so give all the area back to the 6567 // registers window 6568 Rect registers_bounds = variables_bounds; 6569 registers_bounds.size.width = source_bounds.size.width; 6570 registers_window_sp->SetBounds(registers_bounds); 6571 } else { 6572 // We have no registers window showing so give the bottom area back 6573 // to the source view 6574 source_window_sp->Resize(source_bounds.size.width, 6575 source_bounds.size.height + 6576 variables_bounds.size.height); 6577 } 6578 } else { 6579 Rect new_variables_rect; 6580 if (registers_window_sp) { 6581 // We have a registers window so split the area of the registers 6582 // window into two columns where the left hand side will be the 6583 // variables and the right hand side will be the registers 6584 const Rect variables_bounds = registers_window_sp->GetBounds(); 6585 Rect new_registers_rect; 6586 variables_bounds.VerticalSplitPercentage(0.50, new_variables_rect, 6587 new_registers_rect); 6588 registers_window_sp->SetBounds(new_registers_rect); 6589 } else { 6590 // No registers window, grab the bottom part of the source window 6591 Rect new_source_rect; 6592 source_bounds.HorizontalSplitPercentage(0.70, new_source_rect, 6593 new_variables_rect); 6594 source_window_sp->SetBounds(new_source_rect); 6595 } 6596 WindowSP new_window_sp = main_window_sp->CreateSubWindow( 6597 "Variables", new_variables_rect, false); 6598 new_window_sp->SetDelegate( 6599 WindowDelegateSP(new FrameVariablesWindowDelegate(m_debugger))); 6600 } 6601 touchwin(stdscr); 6602 } 6603 return MenuActionResult::Handled; 6604 6605 case eMenuID_ViewRegisters: { 6606 WindowSP main_window_sp = m_app.GetMainWindow(); 6607 WindowSP source_window_sp = main_window_sp->FindSubWindow("Source"); 6608 WindowSP variables_window_sp = main_window_sp->FindSubWindow("Variables"); 6609 WindowSP registers_window_sp = main_window_sp->FindSubWindow("Registers"); 6610 const Rect source_bounds = source_window_sp->GetBounds(); 6611 6612 if (registers_window_sp) { 6613 if (variables_window_sp) { 6614 const Rect variables_bounds = variables_window_sp->GetBounds(); 6615 6616 // We have a variables window, so give all the area back to the 6617 // variables window 6618 variables_window_sp->Resize(variables_bounds.size.width + 6619 registers_window_sp->GetWidth(), 6620 variables_bounds.size.height); 6621 } else { 6622 // We have no variables window showing so give the bottom area back 6623 // to the source view 6624 source_window_sp->Resize(source_bounds.size.width, 6625 source_bounds.size.height + 6626 registers_window_sp->GetHeight()); 6627 } 6628 main_window_sp->RemoveSubWindow(registers_window_sp.get()); 6629 } else { 6630 Rect new_regs_rect; 6631 if (variables_window_sp) { 6632 // We have a variables window, split it into two columns where the 6633 // left hand side will be the variables and the right hand side will 6634 // be the registers 6635 const Rect variables_bounds = variables_window_sp->GetBounds(); 6636 Rect new_vars_rect; 6637 variables_bounds.VerticalSplitPercentage(0.50, new_vars_rect, 6638 new_regs_rect); 6639 variables_window_sp->SetBounds(new_vars_rect); 6640 } else { 6641 // No variables window, grab the bottom part of the source window 6642 Rect new_source_rect; 6643 source_bounds.HorizontalSplitPercentage(0.70, new_source_rect, 6644 new_regs_rect); 6645 source_window_sp->SetBounds(new_source_rect); 6646 } 6647 WindowSP new_window_sp = 6648 main_window_sp->CreateSubWindow("Registers", new_regs_rect, false); 6649 new_window_sp->SetDelegate( 6650 WindowDelegateSP(new RegistersWindowDelegate(m_debugger))); 6651 } 6652 touchwin(stdscr); 6653 } 6654 return MenuActionResult::Handled; 6655 6656 case eMenuID_ViewBreakpoints: { 6657 WindowSP main_window_sp = m_app.GetMainWindow(); 6658 WindowSP threads_window_sp = main_window_sp->FindSubWindow("Threads"); 6659 WindowSP breakpoints_window_sp = 6660 main_window_sp->FindSubWindow("Breakpoints"); 6661 const Rect threads_bounds = threads_window_sp->GetBounds(); 6662 6663 // If a breakpoints window already exists, remove it and give the area 6664 // it used to occupy to the threads window. If it doesn't exist, split 6665 // the threads window horizontally into two windows where the top window 6666 // is the threads window and the bottom window is a newly added 6667 // breakpoints window. 6668 if (breakpoints_window_sp) { 6669 threads_window_sp->Resize(threads_bounds.size.width, 6670 threads_bounds.size.height + 6671 breakpoints_window_sp->GetHeight()); 6672 main_window_sp->RemoveSubWindow(breakpoints_window_sp.get()); 6673 } else { 6674 Rect new_threads_bounds, breakpoints_bounds; 6675 threads_bounds.HorizontalSplitPercentage(0.70, new_threads_bounds, 6676 breakpoints_bounds); 6677 threads_window_sp->SetBounds(new_threads_bounds); 6678 breakpoints_window_sp = main_window_sp->CreateSubWindow( 6679 "Breakpoints", breakpoints_bounds, false); 6680 TreeDelegateSP breakpoints_delegate_sp( 6681 new BreakpointsTreeDelegate(m_debugger)); 6682 breakpoints_window_sp->SetDelegate(WindowDelegateSP( 6683 new TreeWindowDelegate(m_debugger, breakpoints_delegate_sp))); 6684 } 6685 touchwin(stdscr); 6686 return MenuActionResult::Handled; 6687 } 6688 6689 case eMenuID_HelpGUIHelp: 6690 m_app.GetMainWindow()->CreateHelpSubwindow(); 6691 return MenuActionResult::Handled; 6692 6693 default: 6694 break; 6695 } 6696 6697 return MenuActionResult::NotHandled; 6698 } 6699 6700 protected: 6701 Application &m_app; 6702 Debugger &m_debugger; 6703 }; 6704 6705 class StatusBarWindowDelegate : public WindowDelegate { 6706 public: 6707 StatusBarWindowDelegate(Debugger &debugger) : m_debugger(debugger) { 6708 FormatEntity::Parse("Thread: ${thread.id%tid}", m_format); 6709 } 6710 6711 ~StatusBarWindowDelegate() override = default; 6712 6713 bool WindowDelegateDraw(Window &window, bool force) override { 6714 ExecutionContext exe_ctx = 6715 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6716 Process *process = exe_ctx.GetProcessPtr(); 6717 Thread *thread = exe_ctx.GetThreadPtr(); 6718 StackFrame *frame = exe_ctx.GetFramePtr(); 6719 window.Erase(); 6720 window.SetBackground(BlackOnWhite); 6721 window.MoveCursor(0, 0); 6722 if (process) { 6723 const StateType state = process->GetState(); 6724 window.Printf("Process: %5" PRIu64 " %10s", process->GetID(), 6725 StateAsCString(state)); 6726 6727 if (StateIsStoppedState(state, true)) { 6728 StreamString strm; 6729 if (thread && FormatEntity::Format(m_format, strm, nullptr, &exe_ctx, 6730 nullptr, nullptr, false, false)) { 6731 window.MoveCursor(40, 0); 6732 window.PutCStringTruncated(1, strm.GetString().str().c_str()); 6733 } 6734 6735 window.MoveCursor(60, 0); 6736 if (frame) 6737 window.Printf("Frame: %3u PC = 0x%16.16" PRIx64, 6738 frame->GetFrameIndex(), 6739 frame->GetFrameCodeAddress().GetOpcodeLoadAddress( 6740 exe_ctx.GetTargetPtr())); 6741 } else if (state == eStateExited) { 6742 const char *exit_desc = process->GetExitDescription(); 6743 const int exit_status = process->GetExitStatus(); 6744 if (exit_desc && exit_desc[0]) 6745 window.Printf(" with status = %i (%s)", exit_status, exit_desc); 6746 else 6747 window.Printf(" with status = %i", exit_status); 6748 } 6749 } 6750 return true; 6751 } 6752 6753 protected: 6754 Debugger &m_debugger; 6755 FormatEntity::Entry m_format; 6756 }; 6757 6758 class SourceFileWindowDelegate : public WindowDelegate { 6759 public: 6760 SourceFileWindowDelegate(Debugger &debugger) 6761 : WindowDelegate(), m_debugger(debugger), m_sc(), m_file_sp(), 6762 m_disassembly_sp(), m_disassembly_range(), m_title() {} 6763 6764 ~SourceFileWindowDelegate() override = default; 6765 6766 void Update(const SymbolContext &sc) { m_sc = sc; } 6767 6768 uint32_t NumVisibleLines() const { return m_max_y - m_min_y; } 6769 6770 const char *WindowDelegateGetHelpText() override { 6771 return "Source/Disassembly window keyboard shortcuts:"; 6772 } 6773 6774 KeyHelp *WindowDelegateGetKeyHelp() override { 6775 static curses::KeyHelp g_source_view_key_help[] = { 6776 {KEY_RETURN, "Run to selected line with one shot breakpoint"}, 6777 {KEY_UP, "Select previous source line"}, 6778 {KEY_DOWN, "Select next source line"}, 6779 {KEY_LEFT, "Scroll to the left"}, 6780 {KEY_RIGHT, "Scroll to the right"}, 6781 {KEY_PPAGE, "Page up"}, 6782 {KEY_NPAGE, "Page down"}, 6783 {'b', "Set breakpoint on selected source/disassembly line"}, 6784 {'c', "Continue process"}, 6785 {'D', "Detach with process suspended"}, 6786 {'h', "Show help dialog"}, 6787 {'n', "Step over (source line)"}, 6788 {'N', "Step over (single instruction)"}, 6789 {'f', "Step out (finish)"}, 6790 {'s', "Step in (source line)"}, 6791 {'S', "Step in (single instruction)"}, 6792 {'u', "Frame up"}, 6793 {'d', "Frame down"}, 6794 {',', "Page up"}, 6795 {'.', "Page down"}, 6796 {'\0', nullptr}}; 6797 return g_source_view_key_help; 6798 } 6799 6800 bool WindowDelegateDraw(Window &window, bool force) override { 6801 ExecutionContext exe_ctx = 6802 m_debugger.GetCommandInterpreter().GetExecutionContext(); 6803 Process *process = exe_ctx.GetProcessPtr(); 6804 Thread *thread = nullptr; 6805 6806 bool update_location = false; 6807 if (process) { 6808 StateType state = process->GetState(); 6809 if (StateIsStoppedState(state, true)) { 6810 // We are stopped, so it is ok to 6811 update_location = true; 6812 } 6813 } 6814 6815 m_min_x = 1; 6816 m_min_y = 2; 6817 m_max_x = window.GetMaxX() - 1; 6818 m_max_y = window.GetMaxY() - 1; 6819 6820 const uint32_t num_visible_lines = NumVisibleLines(); 6821 StackFrameSP frame_sp; 6822 bool set_selected_line_to_pc = false; 6823 6824 if (update_location) { 6825 const bool process_alive = process->IsAlive(); 6826 bool thread_changed = false; 6827 if (process_alive) { 6828 thread = exe_ctx.GetThreadPtr(); 6829 if (thread) { 6830 frame_sp = thread->GetSelectedFrame(); 6831 auto tid = thread->GetID(); 6832 thread_changed = tid != m_tid; 6833 m_tid = tid; 6834 } else { 6835 if (m_tid != LLDB_INVALID_THREAD_ID) { 6836 thread_changed = true; 6837 m_tid = LLDB_INVALID_THREAD_ID; 6838 } 6839 } 6840 } 6841 const uint32_t stop_id = process ? process->GetStopID() : 0; 6842 const bool stop_id_changed = stop_id != m_stop_id; 6843 bool frame_changed = false; 6844 m_stop_id = stop_id; 6845 m_title.Clear(); 6846 if (frame_sp) { 6847 m_sc = frame_sp->GetSymbolContext(eSymbolContextEverything); 6848 if (m_sc.module_sp) { 6849 m_title.Printf( 6850 "%s", m_sc.module_sp->GetFileSpec().GetFilename().GetCString()); 6851 ConstString func_name = m_sc.GetFunctionName(); 6852 if (func_name) 6853 m_title.Printf("`%s", func_name.GetCString()); 6854 } 6855 const uint32_t frame_idx = frame_sp->GetFrameIndex(); 6856 frame_changed = frame_idx != m_frame_idx; 6857 m_frame_idx = frame_idx; 6858 } else { 6859 m_sc.Clear(true); 6860 frame_changed = m_frame_idx != UINT32_MAX; 6861 m_frame_idx = UINT32_MAX; 6862 } 6863 6864 const bool context_changed = 6865 thread_changed || frame_changed || stop_id_changed; 6866 6867 if (process_alive) { 6868 if (m_sc.line_entry.IsValid()) { 6869 m_pc_line = m_sc.line_entry.line; 6870 if (m_pc_line != UINT32_MAX) 6871 --m_pc_line; // Convert to zero based line number... 6872 // Update the selected line if the stop ID changed... 6873 if (context_changed) 6874 m_selected_line = m_pc_line; 6875 6876 if (m_file_sp && m_file_sp->GetFileSpec() == m_sc.line_entry.file) { 6877 // Same file, nothing to do, we should either have the lines or 6878 // not (source file missing) 6879 if (m_selected_line >= static_cast<size_t>(m_first_visible_line)) { 6880 if (m_selected_line >= m_first_visible_line + num_visible_lines) 6881 m_first_visible_line = m_selected_line - 10; 6882 } else { 6883 if (m_selected_line > 10) 6884 m_first_visible_line = m_selected_line - 10; 6885 else 6886 m_first_visible_line = 0; 6887 } 6888 } else { 6889 // File changed, set selected line to the line with the PC 6890 m_selected_line = m_pc_line; 6891 m_file_sp = 6892 m_debugger.GetSourceManager().GetFile(m_sc.line_entry.file); 6893 if (m_file_sp) { 6894 const size_t num_lines = m_file_sp->GetNumLines(); 6895 m_line_width = 1; 6896 for (size_t n = num_lines; n >= 10; n = n / 10) 6897 ++m_line_width; 6898 6899 if (num_lines < num_visible_lines || 6900 m_selected_line < num_visible_lines) 6901 m_first_visible_line = 0; 6902 else 6903 m_first_visible_line = m_selected_line - 10; 6904 } 6905 } 6906 } else { 6907 m_file_sp.reset(); 6908 } 6909 6910 if (!m_file_sp || m_file_sp->GetNumLines() == 0) { 6911 // Show disassembly 6912 bool prefer_file_cache = false; 6913 if (m_sc.function) { 6914 if (m_disassembly_scope != m_sc.function) { 6915 m_disassembly_scope = m_sc.function; 6916 m_disassembly_sp = m_sc.function->GetInstructions( 6917 exe_ctx, nullptr, !prefer_file_cache); 6918 if (m_disassembly_sp) { 6919 set_selected_line_to_pc = true; 6920 m_disassembly_range = m_sc.function->GetAddressRange(); 6921 } else { 6922 m_disassembly_range.Clear(); 6923 } 6924 } else { 6925 set_selected_line_to_pc = context_changed; 6926 } 6927 } else if (m_sc.symbol) { 6928 if (m_disassembly_scope != m_sc.symbol) { 6929 m_disassembly_scope = m_sc.symbol; 6930 m_disassembly_sp = m_sc.symbol->GetInstructions( 6931 exe_ctx, nullptr, prefer_file_cache); 6932 if (m_disassembly_sp) { 6933 set_selected_line_to_pc = true; 6934 m_disassembly_range.GetBaseAddress() = 6935 m_sc.symbol->GetAddress(); 6936 m_disassembly_range.SetByteSize(m_sc.symbol->GetByteSize()); 6937 } else { 6938 m_disassembly_range.Clear(); 6939 } 6940 } else { 6941 set_selected_line_to_pc = context_changed; 6942 } 6943 } 6944 } 6945 } else { 6946 m_pc_line = UINT32_MAX; 6947 } 6948 } 6949 6950 const int window_width = window.GetWidth(); 6951 window.Erase(); 6952 window.DrawTitleBox("Sources"); 6953 if (!m_title.GetString().empty()) { 6954 window.AttributeOn(A_REVERSE); 6955 window.MoveCursor(1, 1); 6956 window.PutChar(' '); 6957 window.PutCStringTruncated(1, m_title.GetString().str().c_str()); 6958 int x = window.GetCursorX(); 6959 if (x < window_width - 1) { 6960 window.Printf("%*s", window_width - x - 1, ""); 6961 } 6962 window.AttributeOff(A_REVERSE); 6963 } 6964 6965 Target *target = exe_ctx.GetTargetPtr(); 6966 const size_t num_source_lines = GetNumSourceLines(); 6967 if (num_source_lines > 0) { 6968 // Display source 6969 BreakpointLines bp_lines; 6970 if (target) { 6971 BreakpointList &bp_list = target->GetBreakpointList(); 6972 const size_t num_bps = bp_list.GetSize(); 6973 for (size_t bp_idx = 0; bp_idx < num_bps; ++bp_idx) { 6974 BreakpointSP bp_sp = bp_list.GetBreakpointAtIndex(bp_idx); 6975 const size_t num_bps_locs = bp_sp->GetNumLocations(); 6976 for (size_t bp_loc_idx = 0; bp_loc_idx < num_bps_locs; ++bp_loc_idx) { 6977 BreakpointLocationSP bp_loc_sp = 6978 bp_sp->GetLocationAtIndex(bp_loc_idx); 6979 LineEntry bp_loc_line_entry; 6980 if (bp_loc_sp->GetAddress().CalculateSymbolContextLineEntry( 6981 bp_loc_line_entry)) { 6982 if (m_file_sp->GetFileSpec() == bp_loc_line_entry.file) { 6983 bp_lines.insert(bp_loc_line_entry.line); 6984 } 6985 } 6986 } 6987 } 6988 } 6989 6990 for (size_t i = 0; i < num_visible_lines; ++i) { 6991 const uint32_t curr_line = m_first_visible_line + i; 6992 if (curr_line < num_source_lines) { 6993 const int line_y = m_min_y + i; 6994 window.MoveCursor(1, line_y); 6995 const bool is_pc_line = curr_line == m_pc_line; 6996 const bool line_is_selected = m_selected_line == curr_line; 6997 // Highlight the line as the PC line first (done by passing 6998 // argument to OutputColoredStringTruncated()), then if the selected 6999 // line isn't the same as the PC line, highlight it differently. 7000 attr_t highlight_attr = 0; 7001 attr_t bp_attr = 0; 7002 if (line_is_selected && !is_pc_line) 7003 highlight_attr = A_REVERSE; 7004 7005 if (bp_lines.find(curr_line + 1) != bp_lines.end()) 7006 bp_attr = COLOR_PAIR(BlackOnWhite); 7007 7008 if (bp_attr) 7009 window.AttributeOn(bp_attr); 7010 7011 window.Printf(" %*u ", m_line_width, curr_line + 1); 7012 7013 if (bp_attr) 7014 window.AttributeOff(bp_attr); 7015 7016 window.PutChar(ACS_VLINE); 7017 // Mark the line with the PC with a diamond 7018 if (is_pc_line) 7019 window.PutChar(ACS_DIAMOND); 7020 else 7021 window.PutChar(' '); 7022 7023 if (highlight_attr) 7024 window.AttributeOn(highlight_attr); 7025 7026 StreamString lineStream; 7027 7028 std::optional<size_t> column; 7029 if (is_pc_line && m_sc.line_entry.IsValid() && m_sc.line_entry.column) 7030 column = m_sc.line_entry.column - 1; 7031 m_file_sp->DisplaySourceLines(curr_line + 1, column, 0, 0, 7032 &lineStream); 7033 StringRef line = lineStream.GetString(); 7034 if (line.endswith("\n")) 7035 line = line.drop_back(); 7036 bool wasWritten = window.OutputColoredStringTruncated( 7037 1, line, m_first_visible_column, is_pc_line); 7038 if (!wasWritten && (line_is_selected || is_pc_line)) { 7039 // Draw an empty space to show the selected/PC line if empty, 7040 // or draw '<' if nothing is visible because of scrolling too much 7041 // to the right. 7042 window.PutCStringTruncated( 7043 1, line.empty() && m_first_visible_column == 0 ? " " : "<"); 7044 } 7045 7046 if (is_pc_line && frame_sp && 7047 frame_sp->GetConcreteFrameIndex() == 0) { 7048 StopInfoSP stop_info_sp; 7049 if (thread) 7050 stop_info_sp = thread->GetStopInfo(); 7051 if (stop_info_sp) { 7052 const char *stop_description = stop_info_sp->GetDescription(); 7053 if (stop_description && stop_description[0]) { 7054 size_t stop_description_len = strlen(stop_description); 7055 int desc_x = window_width - stop_description_len - 16; 7056 if (desc_x - window.GetCursorX() > 0) 7057 window.Printf("%*s", desc_x - window.GetCursorX(), ""); 7058 window.MoveCursor(window_width - stop_description_len - 16, 7059 line_y); 7060 const attr_t stop_reason_attr = COLOR_PAIR(WhiteOnBlue); 7061 window.AttributeOn(stop_reason_attr); 7062 window.PrintfTruncated(1, " <<< Thread %u: %s ", 7063 thread->GetIndexID(), stop_description); 7064 window.AttributeOff(stop_reason_attr); 7065 } 7066 } else { 7067 window.Printf("%*s", window_width - window.GetCursorX() - 1, ""); 7068 } 7069 } 7070 if (highlight_attr) 7071 window.AttributeOff(highlight_attr); 7072 } else { 7073 break; 7074 } 7075 } 7076 } else { 7077 size_t num_disassembly_lines = GetNumDisassemblyLines(); 7078 if (num_disassembly_lines > 0) { 7079 // Display disassembly 7080 BreakpointAddrs bp_file_addrs; 7081 Target *target = exe_ctx.GetTargetPtr(); 7082 if (target) { 7083 BreakpointList &bp_list = target->GetBreakpointList(); 7084 const size_t num_bps = bp_list.GetSize(); 7085 for (size_t bp_idx = 0; bp_idx < num_bps; ++bp_idx) { 7086 BreakpointSP bp_sp = bp_list.GetBreakpointAtIndex(bp_idx); 7087 const size_t num_bps_locs = bp_sp->GetNumLocations(); 7088 for (size_t bp_loc_idx = 0; bp_loc_idx < num_bps_locs; 7089 ++bp_loc_idx) { 7090 BreakpointLocationSP bp_loc_sp = 7091 bp_sp->GetLocationAtIndex(bp_loc_idx); 7092 LineEntry bp_loc_line_entry; 7093 const lldb::addr_t file_addr = 7094 bp_loc_sp->GetAddress().GetFileAddress(); 7095 if (file_addr != LLDB_INVALID_ADDRESS) { 7096 if (m_disassembly_range.ContainsFileAddress(file_addr)) 7097 bp_file_addrs.insert(file_addr); 7098 } 7099 } 7100 } 7101 } 7102 7103 const attr_t selected_highlight_attr = A_REVERSE; 7104 const attr_t pc_highlight_attr = COLOR_PAIR(WhiteOnBlue); 7105 7106 StreamString strm; 7107 7108 InstructionList &insts = m_disassembly_sp->GetInstructionList(); 7109 Address pc_address; 7110 7111 if (frame_sp) 7112 pc_address = frame_sp->GetFrameCodeAddress(); 7113 const uint32_t pc_idx = 7114 pc_address.IsValid() 7115 ? insts.GetIndexOfInstructionAtAddress(pc_address) 7116 : UINT32_MAX; 7117 if (set_selected_line_to_pc) { 7118 m_selected_line = pc_idx; 7119 } 7120 7121 const uint32_t non_visible_pc_offset = (num_visible_lines / 5); 7122 if (static_cast<size_t>(m_first_visible_line) >= num_disassembly_lines) 7123 m_first_visible_line = 0; 7124 7125 if (pc_idx < num_disassembly_lines) { 7126 if (pc_idx < static_cast<uint32_t>(m_first_visible_line) || 7127 pc_idx >= m_first_visible_line + num_visible_lines) 7128 m_first_visible_line = pc_idx - non_visible_pc_offset; 7129 } 7130 7131 for (size_t i = 0; i < num_visible_lines; ++i) { 7132 const uint32_t inst_idx = m_first_visible_line + i; 7133 Instruction *inst = insts.GetInstructionAtIndex(inst_idx).get(); 7134 if (!inst) 7135 break; 7136 7137 const int line_y = m_min_y + i; 7138 window.MoveCursor(1, line_y); 7139 const bool is_pc_line = frame_sp && inst_idx == pc_idx; 7140 const bool line_is_selected = m_selected_line == inst_idx; 7141 // Highlight the line as the PC line first, then if the selected 7142 // line isn't the same as the PC line, highlight it differently 7143 attr_t highlight_attr = 0; 7144 attr_t bp_attr = 0; 7145 if (is_pc_line) 7146 highlight_attr = pc_highlight_attr; 7147 else if (line_is_selected) 7148 highlight_attr = selected_highlight_attr; 7149 7150 if (bp_file_addrs.find(inst->GetAddress().GetFileAddress()) != 7151 bp_file_addrs.end()) 7152 bp_attr = COLOR_PAIR(BlackOnWhite); 7153 7154 if (bp_attr) 7155 window.AttributeOn(bp_attr); 7156 7157 window.Printf(" 0x%16.16llx ", 7158 static_cast<unsigned long long>( 7159 inst->GetAddress().GetLoadAddress(target))); 7160 7161 if (bp_attr) 7162 window.AttributeOff(bp_attr); 7163 7164 window.PutChar(ACS_VLINE); 7165 // Mark the line with the PC with a diamond 7166 if (is_pc_line) 7167 window.PutChar(ACS_DIAMOND); 7168 else 7169 window.PutChar(' '); 7170 7171 if (highlight_attr) 7172 window.AttributeOn(highlight_attr); 7173 7174 const char *mnemonic = inst->GetMnemonic(&exe_ctx); 7175 const char *operands = inst->GetOperands(&exe_ctx); 7176 const char *comment = inst->GetComment(&exe_ctx); 7177 7178 if (mnemonic != nullptr && mnemonic[0] == '\0') 7179 mnemonic = nullptr; 7180 if (operands != nullptr && operands[0] == '\0') 7181 operands = nullptr; 7182 if (comment != nullptr && comment[0] == '\0') 7183 comment = nullptr; 7184 7185 strm.Clear(); 7186 7187 if (mnemonic != nullptr && operands != nullptr && comment != nullptr) 7188 strm.Printf("%-8s %-25s ; %s", mnemonic, operands, comment); 7189 else if (mnemonic != nullptr && operands != nullptr) 7190 strm.Printf("%-8s %s", mnemonic, operands); 7191 else if (mnemonic != nullptr) 7192 strm.Printf("%s", mnemonic); 7193 7194 int right_pad = 1; 7195 window.PutCStringTruncated( 7196 right_pad, 7197 strm.GetString().substr(m_first_visible_column).data()); 7198 7199 if (is_pc_line && frame_sp && 7200 frame_sp->GetConcreteFrameIndex() == 0) { 7201 StopInfoSP stop_info_sp; 7202 if (thread) 7203 stop_info_sp = thread->GetStopInfo(); 7204 if (stop_info_sp) { 7205 const char *stop_description = stop_info_sp->GetDescription(); 7206 if (stop_description && stop_description[0]) { 7207 size_t stop_description_len = strlen(stop_description); 7208 int desc_x = window_width - stop_description_len - 16; 7209 if (desc_x - window.GetCursorX() > 0) 7210 window.Printf("%*s", desc_x - window.GetCursorX(), ""); 7211 window.MoveCursor(window_width - stop_description_len - 15, 7212 line_y); 7213 if (thread) 7214 window.PrintfTruncated(1, "<<< Thread %u: %s ", 7215 thread->GetIndexID(), 7216 stop_description); 7217 } 7218 } else { 7219 window.Printf("%*s", window_width - window.GetCursorX() - 1, ""); 7220 } 7221 } 7222 if (highlight_attr) 7223 window.AttributeOff(highlight_attr); 7224 } 7225 } 7226 } 7227 return true; // Drawing handled 7228 } 7229 7230 size_t GetNumLines() { 7231 size_t num_lines = GetNumSourceLines(); 7232 if (num_lines == 0) 7233 num_lines = GetNumDisassemblyLines(); 7234 return num_lines; 7235 } 7236 7237 size_t GetNumSourceLines() const { 7238 if (m_file_sp) 7239 return m_file_sp->GetNumLines(); 7240 return 0; 7241 } 7242 7243 size_t GetNumDisassemblyLines() const { 7244 if (m_disassembly_sp) 7245 return m_disassembly_sp->GetInstructionList().GetSize(); 7246 return 0; 7247 } 7248 7249 HandleCharResult WindowDelegateHandleChar(Window &window, int c) override { 7250 const uint32_t num_visible_lines = NumVisibleLines(); 7251 const size_t num_lines = GetNumLines(); 7252 7253 switch (c) { 7254 case ',': 7255 case KEY_PPAGE: 7256 // Page up key 7257 if (static_cast<uint32_t>(m_first_visible_line) > num_visible_lines) 7258 m_first_visible_line -= num_visible_lines; 7259 else 7260 m_first_visible_line = 0; 7261 m_selected_line = m_first_visible_line; 7262 return eKeyHandled; 7263 7264 case '.': 7265 case KEY_NPAGE: 7266 // Page down key 7267 { 7268 if (m_first_visible_line + num_visible_lines < num_lines) 7269 m_first_visible_line += num_visible_lines; 7270 else if (num_lines < num_visible_lines) 7271 m_first_visible_line = 0; 7272 else 7273 m_first_visible_line = num_lines - num_visible_lines; 7274 m_selected_line = m_first_visible_line; 7275 } 7276 return eKeyHandled; 7277 7278 case KEY_UP: 7279 if (m_selected_line > 0) { 7280 m_selected_line--; 7281 if (static_cast<size_t>(m_first_visible_line) > m_selected_line) 7282 m_first_visible_line = m_selected_line; 7283 } 7284 return eKeyHandled; 7285 7286 case KEY_DOWN: 7287 if (m_selected_line + 1 < num_lines) { 7288 m_selected_line++; 7289 if (m_first_visible_line + num_visible_lines < m_selected_line) 7290 m_first_visible_line++; 7291 } 7292 return eKeyHandled; 7293 7294 case KEY_LEFT: 7295 if (m_first_visible_column > 0) 7296 --m_first_visible_column; 7297 return eKeyHandled; 7298 7299 case KEY_RIGHT: 7300 ++m_first_visible_column; 7301 return eKeyHandled; 7302 7303 case '\r': 7304 case '\n': 7305 case KEY_ENTER: 7306 // Set a breakpoint and run to the line using a one shot breakpoint 7307 if (GetNumSourceLines() > 0) { 7308 ExecutionContext exe_ctx = 7309 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7310 if (exe_ctx.HasProcessScope() && exe_ctx.GetProcessRef().IsAlive()) { 7311 BreakpointSP bp_sp = exe_ctx.GetTargetRef().CreateBreakpoint( 7312 nullptr, // Don't limit the breakpoint to certain modules 7313 m_file_sp->GetFileSpec(), // Source file 7314 m_selected_line + 7315 1, // Source line number (m_selected_line is zero based) 7316 0, // Unspecified column. 7317 0, // No offset 7318 eLazyBoolCalculate, // Check inlines using global setting 7319 eLazyBoolCalculate, // Skip prologue using global setting, 7320 false, // internal 7321 false, // request_hardware 7322 eLazyBoolCalculate); // move_to_nearest_code 7323 // Make breakpoint one shot 7324 bp_sp->GetOptions().SetOneShot(true); 7325 exe_ctx.GetProcessRef().Resume(); 7326 } 7327 } else if (m_selected_line < GetNumDisassemblyLines()) { 7328 const Instruction *inst = m_disassembly_sp->GetInstructionList() 7329 .GetInstructionAtIndex(m_selected_line) 7330 .get(); 7331 ExecutionContext exe_ctx = 7332 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7333 if (exe_ctx.HasTargetScope()) { 7334 Address addr = inst->GetAddress(); 7335 BreakpointSP bp_sp = exe_ctx.GetTargetRef().CreateBreakpoint( 7336 addr, // lldb_private::Address 7337 false, // internal 7338 false); // request_hardware 7339 // Make breakpoint one shot 7340 bp_sp->GetOptions().SetOneShot(true); 7341 exe_ctx.GetProcessRef().Resume(); 7342 } 7343 } 7344 return eKeyHandled; 7345 7346 case 'b': // 'b' == toggle breakpoint on currently selected line 7347 ToggleBreakpointOnSelectedLine(); 7348 return eKeyHandled; 7349 7350 case 'D': // 'D' == detach and keep stopped 7351 { 7352 ExecutionContext exe_ctx = 7353 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7354 if (exe_ctx.HasProcessScope()) 7355 exe_ctx.GetProcessRef().Detach(true); 7356 } 7357 return eKeyHandled; 7358 7359 case 'c': 7360 // 'c' == continue 7361 { 7362 ExecutionContext exe_ctx = 7363 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7364 if (exe_ctx.HasProcessScope()) 7365 exe_ctx.GetProcessRef().Resume(); 7366 } 7367 return eKeyHandled; 7368 7369 case 'f': 7370 // 'f' == step out (finish) 7371 { 7372 ExecutionContext exe_ctx = 7373 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7374 if (exe_ctx.HasThreadScope() && 7375 StateIsStoppedState(exe_ctx.GetProcessRef().GetState(), true)) { 7376 Thread *thread = exe_ctx.GetThreadPtr(); 7377 uint32_t frame_idx = thread->GetSelectedFrameIndex(); 7378 exe_ctx.GetThreadRef().StepOut(frame_idx); 7379 } 7380 } 7381 return eKeyHandled; 7382 7383 case 'n': // 'n' == step over 7384 case 'N': // 'N' == step over instruction 7385 { 7386 ExecutionContext exe_ctx = 7387 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7388 if (exe_ctx.HasThreadScope() && 7389 StateIsStoppedState(exe_ctx.GetProcessRef().GetState(), true)) { 7390 bool source_step = (c == 'n'); 7391 exe_ctx.GetThreadRef().StepOver(source_step); 7392 } 7393 } 7394 return eKeyHandled; 7395 7396 case 's': // 's' == step into 7397 case 'S': // 'S' == step into instruction 7398 { 7399 ExecutionContext exe_ctx = 7400 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7401 if (exe_ctx.HasThreadScope() && 7402 StateIsStoppedState(exe_ctx.GetProcessRef().GetState(), true)) { 7403 bool source_step = (c == 's'); 7404 exe_ctx.GetThreadRef().StepIn(source_step); 7405 } 7406 } 7407 return eKeyHandled; 7408 7409 case 'u': // 'u' == frame up 7410 case 'd': // 'd' == frame down 7411 { 7412 ExecutionContext exe_ctx = 7413 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7414 if (exe_ctx.HasThreadScope()) { 7415 Thread *thread = exe_ctx.GetThreadPtr(); 7416 uint32_t frame_idx = thread->GetSelectedFrameIndex(); 7417 if (frame_idx == UINT32_MAX) 7418 frame_idx = 0; 7419 if (c == 'u' && frame_idx + 1 < thread->GetStackFrameCount()) 7420 ++frame_idx; 7421 else if (c == 'd' && frame_idx > 0) 7422 --frame_idx; 7423 if (thread->SetSelectedFrameByIndex(frame_idx, true)) 7424 exe_ctx.SetFrameSP(thread->GetSelectedFrame()); 7425 } 7426 } 7427 return eKeyHandled; 7428 7429 case 'h': 7430 window.CreateHelpSubwindow(); 7431 return eKeyHandled; 7432 7433 default: 7434 break; 7435 } 7436 return eKeyNotHandled; 7437 } 7438 7439 void ToggleBreakpointOnSelectedLine() { 7440 ExecutionContext exe_ctx = 7441 m_debugger.GetCommandInterpreter().GetExecutionContext(); 7442 if (!exe_ctx.HasTargetScope()) 7443 return; 7444 if (GetNumSourceLines() > 0) { 7445 // Source file breakpoint. 7446 BreakpointList &bp_list = exe_ctx.GetTargetRef().GetBreakpointList(); 7447 const size_t num_bps = bp_list.GetSize(); 7448 for (size_t bp_idx = 0; bp_idx < num_bps; ++bp_idx) { 7449 BreakpointSP bp_sp = bp_list.GetBreakpointAtIndex(bp_idx); 7450 const size_t num_bps_locs = bp_sp->GetNumLocations(); 7451 for (size_t bp_loc_idx = 0; bp_loc_idx < num_bps_locs; ++bp_loc_idx) { 7452 BreakpointLocationSP bp_loc_sp = 7453 bp_sp->GetLocationAtIndex(bp_loc_idx); 7454 LineEntry bp_loc_line_entry; 7455 if (bp_loc_sp->GetAddress().CalculateSymbolContextLineEntry( 7456 bp_loc_line_entry)) { 7457 if (m_file_sp->GetFileSpec() == bp_loc_line_entry.file && 7458 m_selected_line + 1 == bp_loc_line_entry.line) { 7459 bool removed = 7460 exe_ctx.GetTargetRef().RemoveBreakpointByID(bp_sp->GetID()); 7461 assert(removed); 7462 UNUSED_IF_ASSERT_DISABLED(removed); 7463 return; // Existing breakpoint removed. 7464 } 7465 } 7466 } 7467 } 7468 // No breakpoint found on the location, add it. 7469 BreakpointSP bp_sp = exe_ctx.GetTargetRef().CreateBreakpoint( 7470 nullptr, // Don't limit the breakpoint to certain modules 7471 m_file_sp->GetFileSpec(), // Source file 7472 m_selected_line + 7473 1, // Source line number (m_selected_line is zero based) 7474 0, // No column specified. 7475 0, // No offset 7476 eLazyBoolCalculate, // Check inlines using global setting 7477 eLazyBoolCalculate, // Skip prologue using global setting, 7478 false, // internal 7479 false, // request_hardware 7480 eLazyBoolCalculate); // move_to_nearest_code 7481 } else { 7482 // Disassembly breakpoint. 7483 assert(GetNumDisassemblyLines() > 0); 7484 assert(m_selected_line < GetNumDisassemblyLines()); 7485 const Instruction *inst = m_disassembly_sp->GetInstructionList() 7486 .GetInstructionAtIndex(m_selected_line) 7487 .get(); 7488 Address addr = inst->GetAddress(); 7489 // Try to find it. 7490 BreakpointList &bp_list = exe_ctx.GetTargetRef().GetBreakpointList(); 7491 const size_t num_bps = bp_list.GetSize(); 7492 for (size_t bp_idx = 0; bp_idx < num_bps; ++bp_idx) { 7493 BreakpointSP bp_sp = bp_list.GetBreakpointAtIndex(bp_idx); 7494 const size_t num_bps_locs = bp_sp->GetNumLocations(); 7495 for (size_t bp_loc_idx = 0; bp_loc_idx < num_bps_locs; ++bp_loc_idx) { 7496 BreakpointLocationSP bp_loc_sp = 7497 bp_sp->GetLocationAtIndex(bp_loc_idx); 7498 LineEntry bp_loc_line_entry; 7499 const lldb::addr_t file_addr = 7500 bp_loc_sp->GetAddress().GetFileAddress(); 7501 if (file_addr == addr.GetFileAddress()) { 7502 bool removed = 7503 exe_ctx.GetTargetRef().RemoveBreakpointByID(bp_sp->GetID()); 7504 assert(removed); 7505 UNUSED_IF_ASSERT_DISABLED(removed); 7506 return; // Existing breakpoint removed. 7507 } 7508 } 7509 } 7510 // No breakpoint found on the address, add it. 7511 BreakpointSP bp_sp = 7512 exe_ctx.GetTargetRef().CreateBreakpoint(addr, // lldb_private::Address 7513 false, // internal 7514 false); // request_hardware 7515 } 7516 } 7517 7518 protected: 7519 typedef std::set<uint32_t> BreakpointLines; 7520 typedef std::set<lldb::addr_t> BreakpointAddrs; 7521 7522 Debugger &m_debugger; 7523 SymbolContext m_sc; 7524 SourceManager::FileSP m_file_sp; 7525 SymbolContextScope *m_disassembly_scope = nullptr; 7526 lldb::DisassemblerSP m_disassembly_sp; 7527 AddressRange m_disassembly_range; 7528 StreamString m_title; 7529 lldb::user_id_t m_tid = LLDB_INVALID_THREAD_ID; 7530 int m_line_width = 4; 7531 uint32_t m_selected_line = 0; // The selected line 7532 uint32_t m_pc_line = 0; // The line with the PC 7533 uint32_t m_stop_id = 0; 7534 uint32_t m_frame_idx = UINT32_MAX; 7535 int m_first_visible_line = 0; 7536 int m_first_visible_column = 0; 7537 int m_min_x = 0; 7538 int m_min_y = 0; 7539 int m_max_x = 0; 7540 int m_max_y = 0; 7541 }; 7542 7543 DisplayOptions ValueObjectListDelegate::g_options = {true}; 7544 7545 IOHandlerCursesGUI::IOHandlerCursesGUI(Debugger &debugger) 7546 : IOHandler(debugger, IOHandler::Type::Curses) {} 7547 7548 void IOHandlerCursesGUI::Activate() { 7549 IOHandler::Activate(); 7550 if (!m_app_ap) { 7551 m_app_ap = std::make_unique<Application>(GetInputFILE(), GetOutputFILE()); 7552 7553 // This is both a window and a menu delegate 7554 std::shared_ptr<ApplicationDelegate> app_delegate_sp( 7555 new ApplicationDelegate(*m_app_ap, m_debugger)); 7556 7557 MenuDelegateSP app_menu_delegate_sp = 7558 std::static_pointer_cast<MenuDelegate>(app_delegate_sp); 7559 MenuSP lldb_menu_sp( 7560 new Menu("LLDB", "F1", KEY_F(1), ApplicationDelegate::eMenuID_LLDB)); 7561 MenuSP exit_menuitem_sp( 7562 new Menu("Exit", nullptr, 'x', ApplicationDelegate::eMenuID_LLDBExit)); 7563 exit_menuitem_sp->SetCannedResult(MenuActionResult::Quit); 7564 lldb_menu_sp->AddSubmenu(MenuSP(new Menu( 7565 "About LLDB", nullptr, 'a', ApplicationDelegate::eMenuID_LLDBAbout))); 7566 lldb_menu_sp->AddSubmenu(MenuSP(new Menu(Menu::Type::Separator))); 7567 lldb_menu_sp->AddSubmenu(exit_menuitem_sp); 7568 7569 MenuSP target_menu_sp(new Menu("Target", "F2", KEY_F(2), 7570 ApplicationDelegate::eMenuID_Target)); 7571 target_menu_sp->AddSubmenu(MenuSP(new Menu( 7572 "Create", nullptr, 'c', ApplicationDelegate::eMenuID_TargetCreate))); 7573 target_menu_sp->AddSubmenu(MenuSP(new Menu( 7574 "Delete", nullptr, 'd', ApplicationDelegate::eMenuID_TargetDelete))); 7575 7576 MenuSP process_menu_sp(new Menu("Process", "F3", KEY_F(3), 7577 ApplicationDelegate::eMenuID_Process)); 7578 process_menu_sp->AddSubmenu(MenuSP(new Menu( 7579 "Attach", nullptr, 'a', ApplicationDelegate::eMenuID_ProcessAttach))); 7580 process_menu_sp->AddSubmenu( 7581 MenuSP(new Menu("Detach and resume", nullptr, 'd', 7582 ApplicationDelegate::eMenuID_ProcessDetachResume))); 7583 process_menu_sp->AddSubmenu( 7584 MenuSP(new Menu("Detach suspended", nullptr, 's', 7585 ApplicationDelegate::eMenuID_ProcessDetachSuspended))); 7586 process_menu_sp->AddSubmenu(MenuSP(new Menu( 7587 "Launch", nullptr, 'l', ApplicationDelegate::eMenuID_ProcessLaunch))); 7588 process_menu_sp->AddSubmenu(MenuSP(new Menu(Menu::Type::Separator))); 7589 process_menu_sp->AddSubmenu( 7590 MenuSP(new Menu("Continue", nullptr, 'c', 7591 ApplicationDelegate::eMenuID_ProcessContinue))); 7592 process_menu_sp->AddSubmenu(MenuSP(new Menu( 7593 "Halt", nullptr, 'h', ApplicationDelegate::eMenuID_ProcessHalt))); 7594 process_menu_sp->AddSubmenu(MenuSP(new Menu( 7595 "Kill", nullptr, 'k', ApplicationDelegate::eMenuID_ProcessKill))); 7596 7597 MenuSP thread_menu_sp(new Menu("Thread", "F4", KEY_F(4), 7598 ApplicationDelegate::eMenuID_Thread)); 7599 thread_menu_sp->AddSubmenu(MenuSP(new Menu( 7600 "Step In", nullptr, 'i', ApplicationDelegate::eMenuID_ThreadStepIn))); 7601 thread_menu_sp->AddSubmenu( 7602 MenuSP(new Menu("Step Over", nullptr, 'v', 7603 ApplicationDelegate::eMenuID_ThreadStepOver))); 7604 thread_menu_sp->AddSubmenu(MenuSP(new Menu( 7605 "Step Out", nullptr, 'o', ApplicationDelegate::eMenuID_ThreadStepOut))); 7606 7607 MenuSP view_menu_sp( 7608 new Menu("View", "F5", KEY_F(5), ApplicationDelegate::eMenuID_View)); 7609 view_menu_sp->AddSubmenu( 7610 MenuSP(new Menu("Backtrace", nullptr, 't', 7611 ApplicationDelegate::eMenuID_ViewBacktrace))); 7612 view_menu_sp->AddSubmenu( 7613 MenuSP(new Menu("Registers", nullptr, 'r', 7614 ApplicationDelegate::eMenuID_ViewRegisters))); 7615 view_menu_sp->AddSubmenu(MenuSP(new Menu( 7616 "Source", nullptr, 's', ApplicationDelegate::eMenuID_ViewSource))); 7617 view_menu_sp->AddSubmenu( 7618 MenuSP(new Menu("Variables", nullptr, 'v', 7619 ApplicationDelegate::eMenuID_ViewVariables))); 7620 view_menu_sp->AddSubmenu( 7621 MenuSP(new Menu("Breakpoints", nullptr, 'b', 7622 ApplicationDelegate::eMenuID_ViewBreakpoints))); 7623 7624 MenuSP help_menu_sp( 7625 new Menu("Help", "F6", KEY_F(6), ApplicationDelegate::eMenuID_Help)); 7626 help_menu_sp->AddSubmenu(MenuSP(new Menu( 7627 "GUI Help", nullptr, 'g', ApplicationDelegate::eMenuID_HelpGUIHelp))); 7628 7629 m_app_ap->Initialize(); 7630 WindowSP &main_window_sp = m_app_ap->GetMainWindow(); 7631 7632 MenuSP menubar_sp(new Menu(Menu::Type::Bar)); 7633 menubar_sp->AddSubmenu(lldb_menu_sp); 7634 menubar_sp->AddSubmenu(target_menu_sp); 7635 menubar_sp->AddSubmenu(process_menu_sp); 7636 menubar_sp->AddSubmenu(thread_menu_sp); 7637 menubar_sp->AddSubmenu(view_menu_sp); 7638 menubar_sp->AddSubmenu(help_menu_sp); 7639 menubar_sp->SetDelegate(app_menu_delegate_sp); 7640 7641 Rect content_bounds = main_window_sp->GetFrame(); 7642 Rect menubar_bounds = content_bounds.MakeMenuBar(); 7643 Rect status_bounds = content_bounds.MakeStatusBar(); 7644 Rect source_bounds; 7645 Rect variables_bounds; 7646 Rect threads_bounds; 7647 Rect source_variables_bounds; 7648 content_bounds.VerticalSplitPercentage(0.80, source_variables_bounds, 7649 threads_bounds); 7650 source_variables_bounds.HorizontalSplitPercentage(0.70, source_bounds, 7651 variables_bounds); 7652 7653 WindowSP menubar_window_sp = 7654 main_window_sp->CreateSubWindow("Menubar", menubar_bounds, false); 7655 // Let the menubar get keys if the active window doesn't handle the keys 7656 // that are typed so it can respond to menubar key presses. 7657 menubar_window_sp->SetCanBeActive( 7658 false); // Don't let the menubar become the active window 7659 menubar_window_sp->SetDelegate(menubar_sp); 7660 7661 WindowSP source_window_sp( 7662 main_window_sp->CreateSubWindow("Source", source_bounds, true)); 7663 WindowSP variables_window_sp( 7664 main_window_sp->CreateSubWindow("Variables", variables_bounds, false)); 7665 WindowSP threads_window_sp( 7666 main_window_sp->CreateSubWindow("Threads", threads_bounds, false)); 7667 WindowSP status_window_sp( 7668 main_window_sp->CreateSubWindow("Status", status_bounds, false)); 7669 status_window_sp->SetCanBeActive( 7670 false); // Don't let the status bar become the active window 7671 main_window_sp->SetDelegate( 7672 std::static_pointer_cast<WindowDelegate>(app_delegate_sp)); 7673 source_window_sp->SetDelegate( 7674 WindowDelegateSP(new SourceFileWindowDelegate(m_debugger))); 7675 variables_window_sp->SetDelegate( 7676 WindowDelegateSP(new FrameVariablesWindowDelegate(m_debugger))); 7677 TreeDelegateSP thread_delegate_sp(new ThreadsTreeDelegate(m_debugger)); 7678 threads_window_sp->SetDelegate(WindowDelegateSP( 7679 new TreeWindowDelegate(m_debugger, thread_delegate_sp))); 7680 status_window_sp->SetDelegate( 7681 WindowDelegateSP(new StatusBarWindowDelegate(m_debugger))); 7682 7683 // All colors with black background. 7684 init_pair(1, COLOR_BLACK, COLOR_BLACK); 7685 init_pair(2, COLOR_RED, COLOR_BLACK); 7686 init_pair(3, COLOR_GREEN, COLOR_BLACK); 7687 init_pair(4, COLOR_YELLOW, COLOR_BLACK); 7688 init_pair(5, COLOR_BLUE, COLOR_BLACK); 7689 init_pair(6, COLOR_MAGENTA, COLOR_BLACK); 7690 init_pair(7, COLOR_CYAN, COLOR_BLACK); 7691 init_pair(8, COLOR_WHITE, COLOR_BLACK); 7692 // All colors with blue background. 7693 init_pair(9, COLOR_BLACK, COLOR_BLUE); 7694 init_pair(10, COLOR_RED, COLOR_BLUE); 7695 init_pair(11, COLOR_GREEN, COLOR_BLUE); 7696 init_pair(12, COLOR_YELLOW, COLOR_BLUE); 7697 init_pair(13, COLOR_BLUE, COLOR_BLUE); 7698 init_pair(14, COLOR_MAGENTA, COLOR_BLUE); 7699 init_pair(15, COLOR_CYAN, COLOR_BLUE); 7700 init_pair(16, COLOR_WHITE, COLOR_BLUE); 7701 // These must match the order in the color indexes enum. 7702 init_pair(17, COLOR_BLACK, COLOR_WHITE); 7703 init_pair(18, COLOR_MAGENTA, COLOR_WHITE); 7704 static_assert(LastColorPairIndex == 18, "Color indexes do not match."); 7705 7706 define_key("\033[Z", KEY_SHIFT_TAB); 7707 define_key("\033\015", KEY_ALT_ENTER); 7708 } 7709 } 7710 7711 void IOHandlerCursesGUI::Deactivate() { m_app_ap->Terminate(); } 7712 7713 void IOHandlerCursesGUI::Run() { 7714 m_app_ap->Run(m_debugger); 7715 SetIsDone(true); 7716 } 7717 7718 IOHandlerCursesGUI::~IOHandlerCursesGUI() = default; 7719 7720 void IOHandlerCursesGUI::Cancel() {} 7721 7722 bool IOHandlerCursesGUI::Interrupt() { 7723 return m_debugger.GetCommandInterpreter().IOHandlerInterrupt(*this); 7724 } 7725 7726 void IOHandlerCursesGUI::GotEOF() {} 7727 7728 void IOHandlerCursesGUI::TerminalSizeChanged() { 7729 m_app_ap->TerminalSizeChanged(); 7730 } 7731 7732 #endif // LLDB_ENABLE_CURSES 7733