#pragma once #include #include #include "icons.h" static const int FS_CHARS_MAX = 80; // max bytes per wrapped line // Shared, non-reentrant wrap scratch. The UI renders on a single thread, and the // fullscreen message view and the history list are never laid out in the same // frame (opening the fullscreen view early-returns before the list loop runs), // so one static buffer serves both. This keeps ~1.5 KB of line buffers off the // render-call stack at the cost of a fixed RAM allocation. Only used inside // render()/wrap helpers — never across a yield, so the single instance is safe. static char s_wrap_trans[512]; static char s_wrap_lines[12][FS_CHARS_MAX]; // Parse a leading "@[nick] " reply prefix. Returns the message body that // follows it (and any leading whitespace); when nick/nick_n are supplied, // fills nick with the addressee, or "" when there's no prefix. One parser for // both the history list (body only — see MessagesScreen::skipReplyPrefix) and // the fullscreen view (which also shows the "To:" nick). static inline const char* msgReplyBody(const char* text, char* nick = nullptr, int nick_n = 0) { if (nick && nick_n > 0) nick[0] = '\0'; const char* body = text; if (text[0] == '@' && text[1] == '[') { const char* close = strchr(text + 2, ']'); if (close && close[1] == ' ' && close[2]) { if (nick && nick_n > 0) { int len = (int)(close - text) - 2; if (len > nick_n - 1) len = nick_n - 1; memcpy(nick, text + 2, len); nick[len] = '\0'; } body = close + 2; } } while (*body == '\n' || *body == '\r' || *body == ' ') body++; return body; } struct FullscreenMsgView { int scroll; bool active; int _max_scroll; // last value computed in render(); bounds KEY_DOWN FullscreenMsgView() : scroll(0), active(false), _max_scroll(0) {} enum Result { NONE, PREV, NEXT, CLOSE, REPLY }; void begin() { scroll = 0; active = true; } // Pixel-accurate word-wrap: breaks at last space that fits within max_px, // hard-breaks long words. Walks the string codepoint-by-codepoint, summing // per-codepoint widths via DisplayDriver::getCodepointWidth — O(n) instead // of O(n²) substring re-measurement. Works for both fixed- and // variable-width fonts. static int wrapLines(DisplayDriver& display, const char* text, int max_px, char out[][FS_CHARS_MAX], int max_lines) { int count = 0; const uint8_t* seg = (const uint8_t*)text; while (*seg && count < max_lines) { const uint8_t* p = seg; const uint8_t* last_sp = nullptr; // pointer to space byte (cut here, drop the space) const uint8_t* last_fit = seg; // farthest point that still fits int width = 0; while (*p && (p - seg) < FS_CHARS_MAX - 1) { const uint8_t* cp_start = p; uint32_t cp = DisplayDriver::decodeCodepoint(p); if ((p - seg) >= FS_CHARS_MAX) { p = cp_start; break; } uint16_t cw = display.getCodepointWidth(cp); if (width + cw > max_px && cp_start > seg) { p = cp_start; break; } if (cp == ' ') last_sp = cp_start; width += cw; last_fit = p; } const uint8_t* end; const uint8_t* next_seg; if (!*p) { end = p; next_seg = p; } else if (last_sp && last_sp > seg) { end = last_sp; next_seg = last_sp + 1; } else { end = last_fit; next_seg = last_fit; } int len = (int)(end - seg); if (len <= 0) { seg = *seg ? seg + 1 : seg; continue; } if (len > FS_CHARS_MAX - 1) len = FS_CHARS_MAX - 1; memcpy(out[count], seg, len); out[count][len] = '\0'; count++; seg = next_seg; } return count; } int render(DisplayDriver& display, const char* sender, const char* text, bool has_prev, bool has_next) { display.setTextSize(1); const int lineH = display.getLineHeight(); const int max_px = display.width() - 6; // "@[nick] " reply prefix → "To:" header + body (shared parser). char to_nick[32]; const char* body = msgReplyBody(text, to_nick, sizeof(to_nick)); const int cw = display.getCharWidth(); const int header_h = to_nick[0] ? (lineH * 2 + 4) : (lineH + 2); const int startY = header_h + 2; const int visible = (display.height() - startY - lineH) / lineH; display.setColor(DisplayDriver::LIGHT); display.fillRect(0, 0, display.width(), header_h); display.setColor(DisplayDriver::DARK); display.drawTextEllipsized(2, 1, display.width() - 4, sender); if (to_nick[0]) { char trans_nick[32], to_label[36]; display.translateUTF8ToBlocks(trans_nick, to_nick, sizeof(trans_nick)); snprintf(to_label, sizeof(to_label), "To: %s", trans_nick); display.drawTextEllipsized(2, lineH + 3, display.width() - 4, to_label); } display.setColor(DisplayDriver::LIGHT); display.translateUTF8ToBlocks(s_wrap_trans, body, sizeof(s_wrap_trans)); int lcount = wrapLines(display, s_wrap_trans, max_px, s_wrap_lines, 12); // Reserve the right-edge column for the scroll indicator and re-wrap so text // can't run under it. Reserve appears only once the list overflows, and a // narrower second pass only ever yields more lines — so it stays overflowing. int reserve = scrollIndicatorReserve(display, lcount, visible); if (reserve > 0) lcount = wrapLines(display, s_wrap_trans, max_px - reserve, s_wrap_lines, 12); int max_scroll = lcount > visible ? lcount - visible : 0; _max_scroll = max_scroll; if (scroll > max_scroll) scroll = max_scroll; for (int i = 0; i < visible && (scroll + i) < lcount; i++) { display.setCursor(0, startY + i * lineH); display.print(s_wrap_lines[scroll + i]); } drawScrollIndicator(display, startY, visible * lineH, lcount, visible, scroll); const int nav_y = display.height() - lineH; if (has_next) { display.setCursor(0, nav_y); display.print("<"); } if (has_prev) { display.setCursor(display.width() - cw, nav_y); display.print(">"); } return 2000; } Result handleInput(char c) { if (c == KEY_UP) { if (scroll > 0) scroll--; return NONE; } if (c == KEY_DOWN) { if (scroll < _max_scroll) scroll++; return NONE; } if (keyIsPrev(c)) return NEXT; // page between messages (encoder too) if (keyIsNext(c)) return PREV; if (c == KEY_CONTEXT_MENU) return REPLY; if (c == KEY_ENTER || c == KEY_CANCEL) return CLOSE; return NONE; } };