mirror of
https://github.com/daveallie/crosspoint-reader.git
synced 2025-12-18 23:27:44 +03:00
Merge d60378719c into 5cabba7712
This commit is contained in:
commit
a31532cac2
1
.gitignore
vendored
1
.gitignore
vendored
@ -1,3 +1,4 @@
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.pio
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.idea
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.DS_Store
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.vscode
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174
lib/BmpToMono/BmpToMono.cpp
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174
lib/BmpToMono/BmpToMono.cpp
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@ -0,0 +1,174 @@
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#include "BmpToMono.h"
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#include <cstdlib>
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#include <cstring>
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uint16_t BmpToMono::readLE16(File& f) {
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const int c0 = f.read();
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const int c1 = f.read();
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const uint8_t b0 = (uint8_t)(c0 < 0 ? 0 : c0);
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const uint8_t b1 = (uint8_t)(c1 < 0 ? 0 : c1);
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return (uint16_t)b0 | ((uint16_t)b1 << 8);
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}
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uint32_t BmpToMono::readLE32(File& f) {
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const int c0 = f.read();
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const int c1 = f.read();
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const int c2 = f.read();
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const int c3 = f.read();
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const uint8_t b0 = (uint8_t)(c0 < 0 ? 0 : c0);
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const uint8_t b1 = (uint8_t)(c1 < 0 ? 0 : c1);
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const uint8_t b2 = (uint8_t)(c2 < 0 ? 0 : c2);
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const uint8_t b3 = (uint8_t)(c3 < 0 ? 0 : c3);
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return (uint32_t)b0 | ((uint32_t)b1 << 8) | ((uint32_t)b2 << 16) | ((uint32_t)b3 << 24);
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}
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void BmpToMono::freeMonoBitmap(MonoBitmap& bmp) {
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if (bmp.data) {
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free(bmp.data);
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bmp.data = nullptr;
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}
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bmp.width = 0;
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bmp.height = 0;
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bmp.len = 0;
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}
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const char* BmpToMono::errorToString(BmpToMonoError err) {
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switch (err) {
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case BmpToMonoError::Ok:
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return "Ok";
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case BmpToMonoError::FileInvalid:
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return "FileInvalid";
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case BmpToMonoError::SeekStartFailed:
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return "SeekStartFailed";
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case BmpToMonoError::NotBMP:
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return "NotBMP (missing 'BM')";
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case BmpToMonoError::DIBTooSmall:
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return "DIBTooSmall (<40 bytes)";
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case BmpToMonoError::BadPlanes:
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return "BadPlanes (!= 1)";
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case BmpToMonoError::UnsupportedBpp:
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return "UnsupportedBpp (expected 24)";
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case BmpToMonoError::UnsupportedCompression:
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return "UnsupportedCompression (expected BI_RGB)";
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case BmpToMonoError::BadDimensions:
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return "BadDimensions";
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case BmpToMonoError::SeekPixelDataFailed:
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return "SeekPixelDataFailed";
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case BmpToMonoError::OomOutput:
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return "OomOutput";
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case BmpToMonoError::OomRowBuffer:
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return "OomRowBuffer";
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case BmpToMonoError::ShortReadRow:
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return "ShortReadRow";
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}
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return "Unknown";
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}
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BmpToMonoError BmpToMono::convert24BitRotate90CCW(File& file, MonoBitmap& out, uint8_t threshold) {
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return convert24BitImpl(file, out, threshold, true);
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}
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BmpToMonoError BmpToMono::convert24BitImpl(File& f, MonoBitmap& out, uint8_t threshold, bool rotate90CCW) {
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freeMonoBitmap(out);
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if (!f) return BmpToMonoError::FileInvalid;
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if (!f.seek(0)) return BmpToMonoError::SeekStartFailed;
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// --- BMP FILE HEADER ---
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const uint16_t bfType = readLE16(f);
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if (bfType != 0x4D42) return BmpToMonoError::NotBMP;
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(void)readLE32(f);
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(void)readLE16(f);
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(void)readLE16(f);
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const uint32_t bfOffBits = readLE32(f);
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// --- DIB HEADER ---
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const uint32_t biSize = readLE32(f);
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if (biSize < 40) return BmpToMonoError::DIBTooSmall;
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const int32_t srcW = (int32_t)readLE32(f);
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int32_t srcHRaw = (int32_t)readLE32(f);
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const uint16_t planes = readLE16(f);
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const uint16_t bpp = readLE16(f);
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const uint32_t comp = readLE32(f);
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if (planes != 1) return BmpToMonoError::BadPlanes;
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if (bpp != 24) return BmpToMonoError::UnsupportedBpp;
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if (comp != 0) return BmpToMonoError::UnsupportedCompression;
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(void)readLE32(f);
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(void)readLE32(f);
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(void)readLE32(f);
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(void)readLE32(f);
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(void)readLE32(f);
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if (srcW <= 0) return BmpToMonoError::BadDimensions;
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const bool topDown = (srcHRaw < 0);
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const int32_t srcH = topDown ? -srcHRaw : srcHRaw;
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if (srcH <= 0) return BmpToMonoError::BadDimensions;
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// Output dimensions
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out.width = rotate90CCW ? (int)srcH : (int)srcW;
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out.height = rotate90CCW ? (int)srcW : (int)srcH;
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const size_t outBytesPerRow = (size_t)(out.width + 7) / 8;
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out.len = outBytesPerRow * (size_t)out.height;
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out.data = (uint8_t*)malloc(out.len);
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if (!out.data) return BmpToMonoError::OomOutput;
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memset(out.data, 0xFF, out.len);
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// Source row stride (padded to 4 bytes)
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const uint32_t srcBytesPerRow24 = (uint32_t)srcW * 3u;
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const uint32_t srcRowStride = (srcBytesPerRow24 + 3u) & ~3u;
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if (!f.seek(bfOffBits)) {
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freeMonoBitmap(out);
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return BmpToMonoError::SeekPixelDataFailed;
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}
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uint8_t* rowBuf = (uint8_t*)malloc(srcRowStride);
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if (!rowBuf) {
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freeMonoBitmap(out);
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return BmpToMonoError::OomRowBuffer;
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}
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for (int fileRow = 0; fileRow < (int)srcH; fileRow++) {
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if (f.read(rowBuf, srcRowStride) != (int)srcRowStride) {
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free(rowBuf);
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freeMonoBitmap(out);
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return BmpToMonoError::ShortReadRow;
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}
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const int srcY = topDown ? fileRow : ((int)srcH - 1 - fileRow);
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for (int srcX = 0; srcX < (int)srcW; srcX++) {
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const uint8_t b = rowBuf[srcX * 3 + 0];
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const uint8_t g = rowBuf[srcX * 3 + 1];
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const uint8_t r = rowBuf[srcX * 3 + 2];
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const uint8_t lum = (uint8_t)((77u * r + 150u * g + 29u * b) >> 8);
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bool isBlack = (lum < threshold);
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int outX, outY;
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if (!rotate90CCW) {
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outX = srcX;
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outY = srcY;
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} else {
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// 90° counter-clockwise: (x,y) -> (y, w-1-x)
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outX = srcY;
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outY = (int)srcW - 1 - srcX;
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}
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setMonoPixel(out.data, out.width, outX, outY, isBlack);
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}
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}
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free(rowBuf);
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return BmpToMonoError::Ok;
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}
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58
lib/BmpToMono/BmpToMono.h
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58
lib/BmpToMono/BmpToMono.h
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@ -0,0 +1,58 @@
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#pragma once
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#include <Arduino.h>
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#include <FS.h>
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struct MonoBitmap {
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int width = 0;
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int height = 0;
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size_t len = 0; // bytesPerRow * height
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uint8_t* data = nullptr; // row-aligned, MSB-first, 1=white 0=black
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};
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enum class BmpToMonoError : uint8_t {
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Ok = 0,
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FileInvalid,
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SeekStartFailed,
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NotBMP,
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DIBTooSmall,
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BadPlanes,
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UnsupportedBpp,
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UnsupportedCompression,
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BadDimensions,
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SeekPixelDataFailed,
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OomOutput,
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OomRowBuffer,
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ShortReadRow,
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};
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class BmpToMono {
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public:
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// Rotate 90° counter-clockwise: (w,h) -> (h,w)
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// Used for converting portrait BMP (480x800) into landscape framebuffer (800x480)
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static BmpToMonoError convert24BitRotate90CCW(File& file, MonoBitmap& out, uint8_t threshold = 160);
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static void freeMonoBitmap(MonoBitmap& bmp);
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static const char* errorToString(BmpToMonoError err);
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private:
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static uint16_t readLE16(File& f);
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static uint32_t readLE32(File& f);
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// Writes a single pixel into a row-aligned 1bpp buffer (MSB-first), 0=black, 1=white
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static inline void setMonoPixel(uint8_t* buf, int w, int x, int y, bool isBlack) {
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const size_t bytesPerRow = (size_t)(w + 7) / 8;
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const size_t idx = (size_t)y * bytesPerRow + (size_t)(x >> 3);
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const uint8_t mask = (uint8_t)(0x80u >> (x & 7));
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if (isBlack)
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buf[idx] &= (uint8_t)~mask;
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else
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buf[idx] |= mask;
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}
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static BmpToMonoError convert24BitImpl(File& file, MonoBitmap& out, uint8_t threshold, bool rotate90CW);
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};
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@ -2,6 +2,8 @@
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#include <Utf8.h>
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#include "BmpToMono.h"
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void GfxRenderer::insertFont(const int fontId, EpdFontFamily font) { fontMap.insert({fontId, font}); }
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void GfxRenderer::drawPixel(const int x, const int y, const bool state) const {
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@ -119,6 +121,37 @@ void GfxRenderer::drawImage(const uint8_t bitmap[], const int x, const int y, co
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einkDisplay.drawImage(bitmap, y, x, height, width);
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}
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bool GfxRenderer::drawFullScreenBmp(File& file) {
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if (!file) {
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Serial.printf("[%lu] [GFX] drawFullScreenBmp: invalid file\n", millis());
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return false;
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}
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file.seek(0); // Ensure we're at the start of the file
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MonoBitmap bmp;
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auto err = BmpToMono::convert24BitRotate90CCW(file, bmp);
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if (err != BmpToMonoError::Ok) {
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Serial.printf("[%lu] [GFX] BMP convert failed: %s\n", millis(), BmpToMono::errorToString(err));
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return false;
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}
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// Hard requirement: must match panel exactly
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if (bmp.width != EInkDisplay::DISPLAY_WIDTH || bmp.height != EInkDisplay::DISPLAY_HEIGHT) {
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Serial.printf("[%lu] [GFX] drawFullScreenBmp: rotated BMP size %dx%d does not match panel %dx%d\n", millis(),
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bmp.width, bmp.height, EInkDisplay::DISPLAY_WIDTH, EInkDisplay::DISPLAY_HEIGHT);
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BmpToMono::freeMonoBitmap(bmp);
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return false;
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}
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// Full-screen blit
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einkDisplay.drawImage(bmp.data, 0, 0, bmp.width, bmp.height);
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BmpToMono::freeMonoBitmap(bmp);
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return true;
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}
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void GfxRenderer::clearScreen(const uint8_t color) const { einkDisplay.clearScreen(color); }
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void GfxRenderer::invertScreen() const {
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@ -2,6 +2,7 @@
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#include <EInkDisplay.h>
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#include <EpdFontFamily.h>
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#include <FS.h>
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#include <map>
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@ -36,6 +37,7 @@ class GfxRenderer {
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void drawRect(int x, int y, int width, int height, bool state = true) const;
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void fillRect(int x, int y, int width, int height, bool state = true) const;
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void drawImage(const uint8_t bitmap[], int x, int y, int width, int height) const;
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bool drawFullScreenBmp(File& file);
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// Text
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int getTextWidth(int fontId, const char* text, EpdFontStyle style = REGULAR) const;
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@ -199,6 +199,12 @@ void setup() {
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// SD Card Initialization
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SD.begin(SD_SPI_CS, SPI, SPI_FQ);
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// TODO: Remove testing code before merging
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// exitScreen();
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// enterNewScreen(new SleepScreen(renderer, inputManager));
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// waitForPowerRelease();
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// return;
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appState.loadFromFile();
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if (!appState.openEpubPath.empty()) {
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auto epub = loadEpub(appState.openEpubPath);
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@ -2,10 +2,23 @@
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#include <GfxRenderer.h>
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#include "SD.h"
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#include "config.h"
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#include "images/CrossLarge.h"
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void SleepScreen::onEnter() {
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// Look for sleep.bmp on the root of the sd card to determine if we should
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// render a custom sleep screen instead of the default.
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auto file = SD.open("/sleep.bmp");
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if (file) {
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renderCustomSleepScreen(file);
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return;
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}
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renderDefaultSleepScreen();
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}
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void SleepScreen::renderDefaultSleepScreen() {
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const auto pageWidth = GfxRenderer::getScreenWidth();
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const auto pageHeight = GfxRenderer::getScreenHeight();
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@ -16,3 +29,15 @@ void SleepScreen::onEnter() {
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renderer.invertScreen();
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renderer.displayBuffer(EInkDisplay::HALF_REFRESH);
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}
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void SleepScreen::renderCustomSleepScreen(File& file) {
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renderer.clearScreen();
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bool didImageDrawSuccessfully = renderer.drawFullScreenBmp(file);
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if (!didImageDrawSuccessfully) {
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renderer.clearScreen();
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renderer.drawCenteredText(UI_FONT_ID, GfxRenderer::getScreenHeight() / 2, "BAD CUSTOM SLEEP SCREEN", true, BOLD);
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}
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renderer.displayBuffer(EInkDisplay::HALF_REFRESH);
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}
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@ -1,8 +1,11 @@
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#pragma once
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#include "SD.h"
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#include "Screen.h"
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class SleepScreen final : public Screen {
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public:
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explicit SleepScreen(GfxRenderer& renderer, InputManager& inputManager) : Screen(renderer, inputManager) {}
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void onEnter() override;
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void renderDefaultSleepScreen();
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void renderCustomSleepScreen(File& file);
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};
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