Refactor LC_LZ2 and expand GraphicsEditor
Add CompressV2 and DecompressV2 Add PortablePalette to PaletteEditor
This commit is contained in:
@@ -9,6 +9,7 @@
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#include "absl/status/statusor.h"
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#include "app/editor/palette_editor.h"
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#include "app/gfx/bitmap.h"
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#include "app/gfx/compression.h"
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#include "app/gfx/snes_tile.h"
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#include "app/gui/canvas.h"
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#include "app/gui/input.h"
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@@ -19,9 +20,10 @@ namespace app {
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namespace editor {
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absl::Status GraphicsEditor::Update() {
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BEGIN_TABLE("#gfxEditTable", 2, gfx_edit_flags)
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BEGIN_TABLE("#gfxEditTable", 3, gfx_edit_flags)
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SETUP_COLUMN("Graphics Manager")
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SETUP_COLUMN("Memory Editor")
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SETUP_COLUMN("Preview")
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TABLE_HEADERS()
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NEXT_COLUMN()
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@@ -33,13 +35,14 @@ absl::Status GraphicsEditor::Update() {
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RETURN_IF_ERROR(DrawClipboardImport())
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END_TAB_ITEM()
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END_TAB_BAR()
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ImGui::Separator();
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ImGui::Text("Graphics");
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ImGui::Separator();
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RETURN_IF_ERROR(DrawDecompressedData())
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RETURN_IF_ERROR(DrawPaletteControls())
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NEXT_COLUMN()
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RETURN_IF_ERROR(DrawMemoryEditor())
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NEXT_COLUMN()
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RETURN_IF_ERROR(DrawDecompressedData())
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END_TABLE()
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return absl::OkStatus();
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@@ -95,6 +98,45 @@ absl::Status GraphicsEditor::DrawFileImport() {
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return absl::OkStatus();
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}
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absl::Status GraphicsEditor::DrawPaletteControls() {
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ImGui::Separator();
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ImGui::Text("Palette");
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ImGui::Separator();
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ImGui::Combo("Palette", ¤t_palette_, kPaletteGroupAddressesKeys,
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IM_ARRAYSIZE(kPaletteGroupAddressesKeys));
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ImGui::InputText("COL File", col_file_path_, sizeof(col_file_path_));
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ImGui::SameLine();
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// Open the file dialog when the user clicks the "Browse" button
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if (ImGui::Button("Browse")) {
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ImGuiFileDialog::Instance()->OpenDialog("ImportColKey", "Choose File",
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".col\0", ".");
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}
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if (ImGuiFileDialog::Instance()->Display("ImportColKey")) {
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if (ImGuiFileDialog::Instance()->IsOk()) {
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strncpy(col_file_path_,
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ImGuiFileDialog::Instance()->GetFilePathName().c_str(),
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sizeof(col_file_path_));
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RETURN_IF_ERROR(temp_rom_.LoadFromFile(col_file_path_, /*z3_load=*/false))
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auto col_data_ = gfx::GetColFileData(temp_rom_.data());
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col_file_palette_ = gfx::SNESPalette(col_data_);
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col_file_ = true;
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is_open_ = true;
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}
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// Close the modal
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ImGuiFileDialog::Instance()->Close();
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}
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if (col_file_palette_.size() != 0) {
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palette_editor_.DrawPortablePalette(col_file_palette_);
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}
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return absl::OkStatus();
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}
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absl::Status GraphicsEditor::DrawClipboardImport() {
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static Bytes clipboard_data;
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@@ -114,7 +156,6 @@ absl::Status GraphicsEditor::DrawMemoryEditor() {
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std::string title = "Memory Editor";
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if (is_open_) {
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static MemoryEditor mem_edit;
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// mem_edit.DrawWindow(title.data(), (void *)&temp_rom_, temp_rom_.size());
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mem_edit.DrawContents(temp_rom_.data(), temp_rom_.size());
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}
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return absl::OkStatus();
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@@ -136,17 +177,22 @@ absl::Status GraphicsEditor::DrawDecompressedData() {
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}
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absl::Status GraphicsEditor::DecompressImportData(int size) {
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ASSIGN_OR_RETURN(import_data_, temp_rom_.Decompress(current_offset_, size))
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ASSIGN_OR_RETURN(import_data_, gfx::lc_lz2::DecompressV2(
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temp_rom_.data(), current_offset_, size))
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std::cout << "Size of import data " << import_data_.size() << std::endl;
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Bytes new_sheet;
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auto converted_sheet = gfx::SnesTo8bppSheet(import_data_, 3);
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bitmap_.Create(core::kTilesheetWidth, 0x2000, core::kTilesheetDepth,
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import_data_.data(), size);
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converted_sheet.data(), size);
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if (rom_.isLoaded()) {
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auto palette_group = rom_.GetPaletteGroup("ow_main");
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palette_ = palette_group.palettes[current_palette_];
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bitmap_.ApplyPalette(palette_);
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if (col_file_) {
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bitmap_.ApplyPalette(col_file_palette_);
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} else {
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bitmap_.ApplyPalette(palette_);
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}
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}
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rom_.RenderBitmap(&bitmap_);
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@@ -161,7 +207,6 @@ absl::Status GraphicsEditor::DecompressSuperDonkey() {
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std::stoi(offset, nullptr, 16); // convert hex string to int
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ASSIGN_OR_RETURN(auto decompressed_data,
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temp_rom_.Decompress(offset_value, 0x1000))
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}
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for (const auto& offset : kSuperDonkeySprites) {
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@@ -40,13 +40,21 @@ const std::string kSuperDonkeySprites[] = {
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"BE115", "BE5C2", "BEB63", "BF0CB", "BF607", "BFA55", "BFD71", "C017D",
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"C0567", "C0981", "C0BA7", "C116D", "C166A", "C1FE0", "C24CE", "C2B19"};
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constexpr char* kPaletteGroupAddressesKeys[] = {
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"ow_main", "ow_aux", "ow_animated", "hud",
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"global_sprites", "armors", "swords", "shields",
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"sprites_aux1", "sprites_aux2", "sprites_aux3", "dungeon_main",
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"grass", "3d_object", "ow_mini_map",
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};
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class GraphicsEditor {
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public:
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absl::Status Update();
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void SetupROM(ROM &rom) { rom_ = rom; }
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void SetupROM(ROM& rom) { rom_ = rom; }
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private:
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absl::Status DrawFileImport();
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absl::Status DrawPaletteControls();
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absl::Status DrawClipboardImport();
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absl::Status DrawMemoryEditor();
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absl::Status DrawDecompressedData();
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@@ -61,7 +69,9 @@ class GraphicsEditor {
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bool gfx_loaded_ = false;
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bool is_open_ = false;
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bool super_donkey_ = false;
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bool col_file_ = false;
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char file_path_[256];
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char col_file_path_[256];
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ROM rom_;
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ROM temp_rom_;
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@@ -76,6 +86,7 @@ class GraphicsEditor {
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MemoryEditor memory_editor_;
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gfx::SNESPalette palette_;
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gfx::SNESPalette col_file_palette_;
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ImGuiTableFlags gfx_edit_flags = ImGuiTableFlags_Reorderable |
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ImGuiTableFlags_Resizable |
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@@ -190,6 +190,49 @@ void PaletteEditor::DisplayPalette(gfx::SNESPalette& palette, bool loaded) {
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}
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}
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void PaletteEditor::DrawPortablePalette(gfx::SNESPalette& palette) {
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static bool init = false;
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if (!init) {
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for (int n = 0; n < palette.size_; n++) {
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saved_palette_[n].x = palette.GetColor(n).rgb.x / 255;
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saved_palette_[n].y = palette.GetColor(n).rgb.y / 255;
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saved_palette_[n].z = palette.GetColor(n).rgb.z / 255;
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saved_palette_[n].w = 255; // Alpha
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}
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init = true;
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}
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if (ImGuiID child_id = ImGui::GetID((void*)(intptr_t)3);
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ImGui::BeginChild(child_id, ImGui::GetContentRegionAvail(), true,
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ImGuiWindowFlags_AlwaysVerticalScrollbar)) {
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ImGui::BeginGroup(); // Lock X position
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ImGui::Text("Palette");
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for (int n = 0; n < IM_ARRAYSIZE(saved_palette_); n++) {
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ImGui::PushID(n);
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if ((n % 8) != 0) ImGui::SameLine(0.0f, ImGui::GetStyle().ItemSpacing.y);
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if (ImGui::ColorButton("##palette", saved_palette_[n],
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palette_button_flags_2, ImVec2(20, 20)))
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ImVec4(saved_palette_[n].x, saved_palette_[n].y, saved_palette_[n].z,
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1.0f); // Preserve alpha!
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if (ImGui::BeginDragDropTarget()) {
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if (const ImGuiPayload* payload =
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ImGui::AcceptDragDropPayload(IMGUI_PAYLOAD_TYPE_COLOR_3F))
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memcpy((float*)&saved_palette_[n], payload->Data, sizeof(float) * 3);
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if (const ImGuiPayload* payload =
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ImGui::AcceptDragDropPayload(IMGUI_PAYLOAD_TYPE_COLOR_4F))
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memcpy((float*)&saved_palette_[n], payload->Data, sizeof(float) * 4);
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ImGui::EndDragDropTarget();
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}
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ImGui::PopID();
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}
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ImGui::EndGroup();
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}
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ImGui::EndChild();
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}
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} // namespace editor
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} // namespace app
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} // namespace yaze
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@@ -31,6 +31,8 @@ class PaletteEditor {
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absl::Status Update();
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void DisplayPalette(gfx::SNESPalette& palette, bool loaded);
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void DrawPortablePalette(gfx::SNESPalette& palette);
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auto SetupROM(ROM& rom) { rom_ = rom; }
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private:
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@@ -48,6 +48,16 @@ void CheckByteRepeat(const uchar* rom_data, DataSizeArray& data_size_taken,
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cmd_args[kCommandByteFill][0] = byte_to_repeat;
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}
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void CheckByteRepeatV2(const uchar* data, uint& src_pos, const uint last_pos,
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CompressionCommand& cmd) {
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uint i = 0;
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while (src_pos + i < last_pos && data[src_pos] == data[src_pos + i]) {
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++i;
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}
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cmd.data_size[kCommandByteFill] = i;
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cmd.arguments[kCommandByteFill][0] = data[src_pos];
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}
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void CheckWordRepeat(const uchar* rom_data, DataSizeArray& data_size_taken,
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CommandArgumentArray& cmd_args, uint& src_data_pos,
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const uint last_pos) {
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@@ -70,6 +80,26 @@ void CheckWordRepeat(const uchar* rom_data, DataSizeArray& data_size_taken,
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}
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}
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void CheckWordRepeatV2(const uchar* data, uint& src_pos, const uint last_pos,
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CompressionCommand& cmd) {
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if (src_pos + 2 <= last_pos && data[src_pos] != data[src_pos + 1]) {
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uint pos = src_pos;
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char byte1 = data[pos];
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char byte2 = data[pos + 1];
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pos += 2;
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cmd.data_size[kCommandWordFill] = 2;
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while (pos + 1 <= last_pos) {
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if (data[pos] == byte1 && data[pos + 1] == byte2)
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cmd.data_size[kCommandWordFill] += 2;
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else
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break;
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pos += 2;
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}
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cmd.arguments[kCommandWordFill][0] = byte1;
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cmd.arguments[kCommandWordFill][1] = byte2;
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}
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}
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void CheckIncByte(const uchar* rom_data, DataSizeArray& data_size_taken,
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CommandArgumentArray& cmd_args, uint& src_data_pos,
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const uint last_pos) {
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@@ -86,6 +116,21 @@ void CheckIncByte(const uchar* rom_data, DataSizeArray& data_size_taken,
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cmd_args[kCommandIncreasingFill][0] = rom_data[src_data_pos];
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}
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void CheckIncByteV2(const uchar* rom_data, uint& src_data_pos,
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const uint last_pos, CompressionCommand& cmd) {
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uint pos = src_data_pos;
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char byte = rom_data[pos];
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pos++;
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cmd.data_size[kCommandIncreasingFill] = 1;
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byte++;
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while (pos <= last_pos && byte == rom_data[pos]) {
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cmd.data_size[kCommandIncreasingFill]++;
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byte++;
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pos++;
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}
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cmd.arguments[kCommandIncreasingFill][0] = rom_data[src_data_pos];
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}
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void CheckIntraCopy(const uchar* rom_data, DataSizeArray& data_size_taken,
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CommandArgumentArray& cmd_args, uint& src_data_pos,
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const uint last_pos, uint start) {
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@@ -120,6 +165,40 @@ void CheckIntraCopy(const uchar* rom_data, DataSizeArray& data_size_taken,
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}
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}
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void CheckIntraCopyV2(const uchar* rom_data, uint& src_data_pos,
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const uint last_pos, uint start,
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CompressionCommand& cmd) {
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if (src_data_pos != start) {
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uint searching_pos = start;
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uint current_pos_u = src_data_pos;
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uint copied_size = 0;
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uint search_start = start;
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while (searching_pos < src_data_pos && current_pos_u <= last_pos) {
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while (rom_data[current_pos_u] != rom_data[searching_pos] &&
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searching_pos < src_data_pos)
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searching_pos++;
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search_start = searching_pos;
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while (current_pos_u <= last_pos &&
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rom_data[current_pos_u] == rom_data[searching_pos] &&
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searching_pos < src_data_pos) {
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copied_size++;
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current_pos_u++;
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searching_pos++;
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}
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if (copied_size > cmd.data_size[kCommandRepeatingBytes]) {
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search_start -= start;
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printf("- Found repeat of %d at %d\n", copied_size, search_start);
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cmd.data_size[kCommandRepeatingBytes] = copied_size;
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cmd.arguments[kCommandRepeatingBytes][0] = search_start & kSnesByteMax;
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cmd.arguments[kCommandRepeatingBytes][1] = search_start >> 8;
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}
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current_pos_u = src_data_pos;
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copied_size = 0;
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}
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}
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}
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// Check if a command managed to pick up `max_win` or more bytes
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// Avoids being even with copy command, since it's possible to merge copy
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void ValidateForByteGain(const DataSizeArray& data_size_taken,
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@@ -140,11 +219,32 @@ void ValidateForByteGain(const DataSizeArray& data_size_taken,
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}
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}
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void CompressionCommandAlternative(
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const uchar* rom_data, CompressionPiecePointer& compressed_chain,
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const CommandSizeArray& cmd_size, const CommandArgumentArray& cmd_args,
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uint& src_data_pos, uint& comp_accumulator, uint& cmd_with_max,
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uint& max_win) {
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// Table indicating command sizes, in bytes
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const std::array<int, 5> kCommandSizes = {1, 2, 2, 2, 3};
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// TODO(@scawful): TEST ME
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void ValidateForByteGainV2(const CompressionCommand& cmd, uint& max_win,
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uint& cmd_with_max) {
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for (uint cmd_i = 1; cmd_i < 5; cmd_i++) {
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uint cmd_size_taken = cmd.data_size[cmd_i];
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// Check if the command size exceeds the maximum win and the size in the
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// command sizes table, except for the repeating bytes command when the size
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// taken is 3
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if (cmd_size_taken > max_win && cmd_size_taken > kCommandSizes[cmd_i] &&
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!(cmd_i == kCommandRepeatingBytes && cmd_size_taken == 3)) {
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printf("==> C:%d / S:%d\n", cmd_i, cmd_size_taken);
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cmd_with_max = cmd_i;
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max_win = cmd_size_taken;
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}
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}
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}
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void CompressionCommandAlternative(const uchar* rom_data,
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CompressionPiecePointer& compressed_chain,
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const CommandSizeArray& cmd_size,
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const CommandArgumentArray& cmd_args,
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uint& src_data_pos, uint& comp_accumulator,
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uint& cmd_with_max, uint& max_win) {
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printf("- Ok we get a gain from %d\n", cmd_with_max);
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std::string buffer;
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buffer.push_back(cmd_args[cmd_with_max][0]);
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@@ -174,6 +274,87 @@ void CompressionCommandAlternative(
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comp_accumulator = 0;
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}
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void CompressionCommandAlternativeV2(const uchar* rom_data,
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const CompressionCommand& cmd,
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CompressionPiecePointer& compressed_chain,
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uint& src_data_pos, uint& comp_accumulator,
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uint& cmd_with_max, uint& max_win) {
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printf("- Ok we get a gain from %d\n", cmd_with_max);
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std::string buffer;
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buffer.push_back(cmd.arguments[cmd_with_max][0]);
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if (cmd.cmd_size[cmd_with_max] == 2) {
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buffer.push_back(cmd.arguments[cmd_with_max][1]);
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}
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auto new_comp_piece = std::make_shared<CompressionPiece>(
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cmd_with_max, max_win, buffer, cmd.cmd_size[cmd_with_max]);
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PrintCompressionPiece(new_comp_piece);
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// If we let non compressed stuff, we need to add a copy chunk before
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if (comp_accumulator != 0) {
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std::string copy_buff;
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copy_buff.resize(comp_accumulator);
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for (int i = 0; i < comp_accumulator; ++i) {
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copy_buff[i] = rom_data[i + src_data_pos - comp_accumulator];
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}
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auto copy_chunk = std::make_shared<CompressionPiece>(
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kCommandDirectCopy, comp_accumulator, copy_buff, comp_accumulator);
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compressed_chain->next = copy_chunk;
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compressed_chain = copy_chunk;
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} else {
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compressed_chain->next = new_comp_piece;
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compressed_chain = new_comp_piece;
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}
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src_data_pos += max_win;
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comp_accumulator = 0;
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}
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void AddAlternativeCompressionCommand(
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const uchar* rom_data, CompressionPiecePointer& compressed_chain,
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const CompressionCommand& command, uint& source_data_position,
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uint& uncompressed_data_size, uint& best_command, uint& best_command_gain) {
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std::cout << "- Identified a gain from command: " << best_command
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<< std::endl;
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// Create a buffer to store the arguments for the best command.
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std::string argument_buffer;
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argument_buffer.push_back(command.arguments[best_command][0]);
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if (command.cmd_size[best_command] == 2) {
|
||||
argument_buffer.push_back(command.arguments[best_command][1]);
|
||||
}
|
||||
|
||||
// Create a new compression piece for the best command.
|
||||
auto new_compression_piece = std::make_shared<CompressionPiece>(
|
||||
best_command, best_command_gain, argument_buffer,
|
||||
command.cmd_size[best_command]);
|
||||
PrintCompressionPiece(new_compression_piece);
|
||||
|
||||
// If there is uncompressed data, create a direct copy compression piece for
|
||||
// it.
|
||||
if (uncompressed_data_size != 0) {
|
||||
std::string copy_buffer(uncompressed_data_size, 0);
|
||||
for (int i = 0; i < uncompressed_data_size; ++i) {
|
||||
copy_buffer[i] =
|
||||
rom_data[i + source_data_position - uncompressed_data_size];
|
||||
}
|
||||
auto direct_copy_piece = std::make_shared<CompressionPiece>(
|
||||
kCommandDirectCopy, uncompressed_data_size, copy_buffer,
|
||||
uncompressed_data_size);
|
||||
|
||||
// Append the direct copy piece to the chain.
|
||||
compressed_chain->next = direct_copy_piece;
|
||||
compressed_chain = direct_copy_piece;
|
||||
}
|
||||
|
||||
// Append the new compression piece to the chain.
|
||||
compressed_chain->next = new_compression_piece;
|
||||
compressed_chain = new_compression_piece;
|
||||
|
||||
// Update the position in the source data and reset the uncompressed data
|
||||
// size.
|
||||
source_data_position += best_command_gain;
|
||||
uncompressed_data_size = 0;
|
||||
}
|
||||
|
||||
absl::StatusOr<CompressionPiecePointer> SplitCompressionPiece(
|
||||
CompressionPiecePointer& piece, int mode) {
|
||||
CompressionPiecePointer new_piece;
|
||||
@@ -225,8 +406,7 @@ absl::StatusOr<CompressionPiecePointer> SplitCompressionPiece(
|
||||
return new_piece;
|
||||
}
|
||||
|
||||
Bytes CreateCompressionString(CompressionPiecePointer& start,
|
||||
int mode) {
|
||||
Bytes CreateCompressionString(CompressionPiecePointer& start, int mode) {
|
||||
uint pos = 0;
|
||||
auto piece = start;
|
||||
Bytes output;
|
||||
@@ -327,6 +507,201 @@ CompressionPiecePointer MergeCopy(CompressionPiecePointer& start) {
|
||||
return start;
|
||||
}
|
||||
|
||||
// TODO TEST compressed data border for each cmd
|
||||
absl::StatusOr<Bytes> CompressV2(const uchar* data, const int start,
|
||||
const int length, int mode, bool check) {
|
||||
// Surely there's no need to compress zero...
|
||||
if (length == 0) {
|
||||
return Bytes();
|
||||
}
|
||||
|
||||
// Worst case should be a copy of the string with extended header
|
||||
auto compressed_chain = std::make_shared<CompressionPiece>(1, 1, "aaa", 2);
|
||||
auto compressed_chain_start = compressed_chain;
|
||||
|
||||
CompressionCommand current_cmd = {/*argument*/ {{}},
|
||||
/*cmd_size*/ {0, 1, 2, 1, 2},
|
||||
/*data_size*/ {0, 0, 0, 0, 0}};
|
||||
|
||||
uint src_pos = start;
|
||||
uint last_pos = start + length - 1;
|
||||
uint comp_accumulator = 0; // Used when skipping using copy
|
||||
|
||||
while (true) {
|
||||
current_cmd.data_size.fill({});
|
||||
current_cmd.arguments.fill({{}});
|
||||
|
||||
CheckByteRepeatV2(data, src_pos, last_pos, current_cmd);
|
||||
CheckWordRepeatV2(data, src_pos, last_pos, current_cmd);
|
||||
CheckIncByteV2(data, src_pos, last_pos, current_cmd);
|
||||
CheckIntraCopyV2(data, src_pos, last_pos, start, current_cmd);
|
||||
|
||||
uint max_win = 2;
|
||||
uint cmd_with_max = kCommandDirectCopy;
|
||||
ValidateForByteGainV2(current_cmd, max_win, cmd_with_max);
|
||||
|
||||
if (cmd_with_max == kCommandDirectCopy) {
|
||||
// This is the worst case scenario
|
||||
// Progress through the next byte, in case there's a different
|
||||
// compression command we can implement before we hit 32 bytes.
|
||||
src_pos++;
|
||||
comp_accumulator++;
|
||||
|
||||
// Arbitrary choice to do a 32 bytes grouping for copy.
|
||||
if (comp_accumulator == 32 || src_pos > last_pos) {
|
||||
std::string buffer = SetBuffer(data, src_pos, comp_accumulator);
|
||||
auto new_comp_piece = std::make_shared<CompressionPiece>(
|
||||
kCommandDirectCopy, comp_accumulator, buffer, comp_accumulator);
|
||||
compressed_chain->next = new_comp_piece;
|
||||
compressed_chain = new_comp_piece;
|
||||
comp_accumulator = 0;
|
||||
}
|
||||
} else {
|
||||
AddAlternativeCompressionCommand(data, compressed_chain, current_cmd,
|
||||
src_pos, comp_accumulator, cmd_with_max,
|
||||
max_win);
|
||||
}
|
||||
|
||||
if (src_pos > last_pos) {
|
||||
printf("Breaking compression loop\n");
|
||||
break;
|
||||
}
|
||||
|
||||
if (check) {
|
||||
RETURN_IF_ERROR(ValidateCompressionResult(compressed_chain_start, mode,
|
||||
start, src_pos))
|
||||
}
|
||||
}
|
||||
|
||||
// Skipping compression chain header
|
||||
MergeCopy(compressed_chain_start->next);
|
||||
PrintCompressionChain(compressed_chain_start);
|
||||
return CreateCompressionString(compressed_chain_start->next, mode);
|
||||
}
|
||||
|
||||
absl::StatusOr<Bytes> CompressGraphics(const uchar* data, const int pos,
|
||||
const int length) {
|
||||
return CompressV2(data, pos, length, kNintendoMode2);
|
||||
}
|
||||
|
||||
absl::StatusOr<Bytes> CompressOverworld(const uchar* data, const int pos,
|
||||
const int length) {
|
||||
return CompressV2(data, pos, length, kNintendoMode1);
|
||||
}
|
||||
|
||||
std::string SetBuffer(const uchar* data, int src_pos, int comp_accumulator) {
|
||||
std::string buffer;
|
||||
for (int i = 0; i < comp_accumulator; ++i) {
|
||||
buffer.push_back(data[i + src_pos - comp_accumulator]);
|
||||
}
|
||||
return buffer;
|
||||
}
|
||||
|
||||
void memfill(const uchar* data, Bytes& buffer, int buffer_pos, int offset,
|
||||
int length) {
|
||||
auto a = data[offset];
|
||||
auto b = data[offset + 1];
|
||||
for (int i = 0; i < length; i = i + 2) {
|
||||
buffer[buffer_pos + i] = a;
|
||||
if ((i + 1) < length) buffer[buffer_pos + i + 1] = b;
|
||||
}
|
||||
}
|
||||
|
||||
absl::StatusOr<Bytes> DecompressV2(const uchar* data, int offset, int size,
|
||||
int mode) {
|
||||
if (size == 0) {
|
||||
return Bytes();
|
||||
}
|
||||
|
||||
Bytes buffer(size, 0);
|
||||
uint length = 0;
|
||||
uint buffer_pos = 0;
|
||||
uchar command = 0;
|
||||
uchar header = data[offset];
|
||||
|
||||
while (header != kSnesByteMax) {
|
||||
if ((header & kExpandedMod) == kExpandedMod) {
|
||||
// Expanded Command
|
||||
command = ((header >> 2) & kCommandMod);
|
||||
length = (((header << 8) | data[offset + 1]) & kExpandedLengthMod);
|
||||
offset += 2; // Advance 2 bytes in ROM
|
||||
} else {
|
||||
// Normal Command
|
||||
command = ((header >> 5) & kCommandMod);
|
||||
length = (header & kNormalLengthMod);
|
||||
offset += 1; // Advance 1 byte in ROM
|
||||
}
|
||||
length += 1; // each commands is at least of size 1 even if index 00
|
||||
|
||||
switch (command) {
|
||||
case kCommandDirectCopy: // Does not advance in the ROM
|
||||
memcpy(buffer.data() + buffer_pos, data + offset, length);
|
||||
buffer_pos += length;
|
||||
offset += length;
|
||||
break;
|
||||
case kCommandByteFill:
|
||||
memset(buffer.data() + buffer_pos, (int)(data[offset]), length);
|
||||
buffer_pos += length;
|
||||
offset += 1; // Advances 1 byte in the ROM
|
||||
break;
|
||||
case kCommandWordFill:
|
||||
memfill(data, buffer, buffer_pos, offset, length);
|
||||
buffer_pos += length;
|
||||
offset += 2; // Advance 2 byte in the ROM
|
||||
break;
|
||||
case kCommandIncreasingFill: {
|
||||
auto inc_byte = data[offset];
|
||||
for (int i = 0; i < length; i++) {
|
||||
buffer[buffer_pos] = inc_byte++;
|
||||
buffer_pos++;
|
||||
}
|
||||
offset += 1; // Advance 1 byte in the ROM
|
||||
} break;
|
||||
case kCommandRepeatingBytes: {
|
||||
ushort s1 = ((data[offset + 1] & kSnesByteMax) << 8);
|
||||
ushort s2 = (data[offset] & kSnesByteMax);
|
||||
int addr = (s1 | s2);
|
||||
if (mode == kNintendoMode1) { // Reversed byte order for
|
||||
// overworld maps
|
||||
addr = (data[offset + 1] & kSnesByteMax) |
|
||||
((data[offset] & kSnesByteMax) << 8);
|
||||
}
|
||||
if (addr > offset) {
|
||||
return absl::InternalError(absl::StrFormat(
|
||||
"Decompress: Offset for command copy exceeds current position "
|
||||
"(Offset : %#04x | Pos : %#06x)\n",
|
||||
addr, offset));
|
||||
}
|
||||
if (buffer_pos + length >= size) {
|
||||
size *= 2;
|
||||
buffer.resize(size);
|
||||
}
|
||||
memcpy(buffer.data() + buffer_pos, buffer.data() + addr, length);
|
||||
buffer_pos += length;
|
||||
offset += 2;
|
||||
} break;
|
||||
default: {
|
||||
std::cout << absl::StrFormat(
|
||||
"Decompress: Invalid header (Offset : %#06x, Command: %#04x)\n",
|
||||
offset, command);
|
||||
} break;
|
||||
}
|
||||
// check next byte
|
||||
header = data[offset];
|
||||
}
|
||||
|
||||
return buffer;
|
||||
}
|
||||
|
||||
absl::StatusOr<Bytes> DecompressGraphics(const uchar* data, int pos, int size) {
|
||||
return DecompressV2(data, pos, size, kNintendoMode2);
|
||||
}
|
||||
|
||||
absl::StatusOr<Bytes> DecompressOverworld(const uchar* data, int pos,
|
||||
int size) {
|
||||
return DecompressV2(data, pos, size, kNintendoMode1);
|
||||
}
|
||||
|
||||
} // namespace lc_lz2
|
||||
} // namespace gfx
|
||||
} // namespace app
|
||||
|
||||
@@ -34,9 +34,23 @@ constexpr int kExpandedLengthMod = 0x3FF;
|
||||
constexpr int kNormalLengthMod = 0x1F;
|
||||
constexpr int kCompressionStringMod = 7 << 5;
|
||||
|
||||
// Represents a command in the compression algorithm.
|
||||
struct CompressionCommand {
|
||||
// The command arguments for each possible command.
|
||||
std::array<std::array<char, 2>, 5> arguments;
|
||||
|
||||
// The size of each possible command.
|
||||
std::array<uint, 5> cmd_size;
|
||||
|
||||
// The size of the data processed by each possible command.
|
||||
std::array<uint, 5> data_size;
|
||||
};
|
||||
|
||||
using CommandArgumentArray = std::array<std::array<char, 2>, 5>;
|
||||
using CommandSizeArray = std::array<uint, 5>;
|
||||
using DataSizeArray = std::array<uint, 5>;
|
||||
|
||||
// Represents a piece of compressed data.
|
||||
struct CompressionPiece {
|
||||
char command;
|
||||
int length;
|
||||
@@ -54,6 +68,46 @@ void PrintCompressionPiece(const CompressionPiecePointer& piece);
|
||||
|
||||
void PrintCompressionChain(const CompressionPiecePointer& chain_head);
|
||||
|
||||
// Compression V2
|
||||
|
||||
void CheckByteRepeatV2(const uchar* data, uint& src_pos, const uint last_pos,
|
||||
CompressionCommand& cmd);
|
||||
|
||||
void CheckWordRepeatV2(const uchar* data, uint& src_pos, const uint last_pos,
|
||||
CompressionCommand& cmd);
|
||||
|
||||
void CheckIncByteV2(const uchar* data, uint& src_pos, const uint last_pos,
|
||||
CompressionCommand& cmd);
|
||||
|
||||
void CheckIntraCopyV2(const uchar* data, uint& src_pos, const uint last_pos,
|
||||
uint start, CompressionCommand& cmd);
|
||||
|
||||
void ValidateForByteGainV2(const CompressionCommand& cmd, uint& max_win,
|
||||
uint& cmd_with_max);
|
||||
|
||||
void CompressionCommandAlternativeV2(const uchar* data,
|
||||
const CompressionCommand& cmd,
|
||||
CompressionPiecePointer& compressed_chain,
|
||||
uint& src_pos, uint& comp_accumulator,
|
||||
uint& cmd_with_max, uint& max_win);
|
||||
|
||||
absl::StatusOr<Bytes> CompressV2(const uchar* data, const int start,
|
||||
const int length, int mode = 1,
|
||||
bool check = false);
|
||||
absl::StatusOr<Bytes> CompressGraphics(const int pos, const int length);
|
||||
absl::StatusOr<Bytes> CompressOverworld(const int pos, const int length);
|
||||
|
||||
std::string SetBuffer(const uchar* data, int src_pos, int comp_accumulator);
|
||||
void memfill(const uchar* data, Bytes& buffer, int buffer_pos, int offset,
|
||||
int length);
|
||||
|
||||
absl::StatusOr<Bytes> DecompressV2(const uchar* data, int offset,
|
||||
int size = 0x800, int mode = 1);
|
||||
absl::StatusOr<Bytes> DecompressGraphics(const uchar* data, int pos, int size);
|
||||
absl::StatusOr<Bytes> DecompressOverworld(const uchar* data, int pos, int size);
|
||||
|
||||
// Compression V1
|
||||
|
||||
void CheckByteRepeat(const uchar* rom_data, DataSizeArray& data_size_taken,
|
||||
CommandArgumentArray& cmd_args, uint& src_data_pos,
|
||||
const uint last_pos);
|
||||
|
||||
@@ -72,6 +72,8 @@ SNESColor GetCgxColor(short color) {
|
||||
|
||||
std::vector<SNESColor> GetColFileData(uchar* data) {
|
||||
std::vector<SNESColor> colors;
|
||||
colors.reserve(256);
|
||||
colors.resize(256);
|
||||
|
||||
for (int i = 0; i < 512; i += 2) {
|
||||
colors[i / 2] = GetCgxColor((short)((data[i + 1] << 8) + data[i]));
|
||||
|
||||
@@ -239,8 +239,9 @@ absl::StatusOr<Bytes> ROM::Load2bppGraphics() {
|
||||
const uint8_t sheets[] = {113, 114, 218, 219, 220, 221};
|
||||
|
||||
for (const auto& sheet_id : sheets) {
|
||||
auto offset = GetGraphicsAddress(rom_data_.data(), sheet_id);
|
||||
ASSIGN_OR_RETURN(auto decomp_sheet, Decompress(offset))
|
||||
auto offset = GetGraphicsAddress(data(), sheet_id);
|
||||
ASSIGN_OR_RETURN(auto decomp_sheet,
|
||||
gfx::lc_lz2::DecompressV2(data(), offset))
|
||||
auto converted_sheet = gfx::SnesTo8bppSheet(decomp_sheet, 2);
|
||||
for (const auto& each_pixel : converted_sheet) {
|
||||
sheet.push_back(each_pixel);
|
||||
@@ -263,7 +264,7 @@ absl::Status ROM::LoadAllGraphicsData() {
|
||||
for (int i = 0; i < core::NumberOfSheets; i++) {
|
||||
if (i >= 115 && i <= 126) { // uncompressed sheets
|
||||
sheet.resize(core::Uncompressed3BPPSize);
|
||||
auto offset = GetGraphicsAddress(rom_data_.data(), i);
|
||||
auto offset = GetGraphicsAddress(data(), i);
|
||||
for (int j = 0; j < core::Uncompressed3BPPSize; j++) {
|
||||
sheet[j] = rom_data_[j + offset];
|
||||
}
|
||||
@@ -271,8 +272,8 @@ absl::Status ROM::LoadAllGraphicsData() {
|
||||
} else if (i == 113 || i == 114 || i >= 218) {
|
||||
bpp3 = false;
|
||||
} else {
|
||||
auto offset = GetGraphicsAddress(rom_data_.data(), i);
|
||||
ASSIGN_OR_RETURN(sheet, Decompress(offset))
|
||||
auto offset = GetGraphicsAddress(data(), i);
|
||||
ASSIGN_OR_RETURN(sheet, gfx::lc_lz2::DecompressV2(data(), offset))
|
||||
bpp3 = true;
|
||||
}
|
||||
|
||||
@@ -297,7 +298,8 @@ absl::Status ROM::LoadAllGraphicsData() {
|
||||
|
||||
// ============================================================================
|
||||
|
||||
absl::Status ROM::LoadFromFile(const absl::string_view& filename) {
|
||||
absl::Status ROM::LoadFromFile(const absl::string_view& filename,
|
||||
bool z3_load) {
|
||||
filename_ = filename;
|
||||
std::ifstream file(filename.data(), std::ios::binary);
|
||||
if (!file.is_open()) {
|
||||
@@ -317,7 +319,9 @@ absl::Status ROM::LoadFromFile(const absl::string_view& filename) {
|
||||
memcpy(title_, rom_data_.data() + kTitleStringOffset, kTitleStringLength);
|
||||
|
||||
file.close();
|
||||
LoadAllPalettes();
|
||||
if (z3_load) {
|
||||
LoadAllPalettes();
|
||||
}
|
||||
is_loaded_ = true;
|
||||
return absl::OkStatus();
|
||||
}
|
||||
|
||||
@@ -85,7 +85,8 @@ class ROM {
|
||||
// Load functions
|
||||
absl::StatusOr<Bytes> Load2bppGraphics();
|
||||
absl::Status LoadAllGraphicsData();
|
||||
absl::Status LoadFromFile(const absl::string_view& filename);
|
||||
absl::Status LoadFromFile(const absl::string_view& filename,
|
||||
bool z3_load = true);
|
||||
absl::Status LoadFromPointer(uchar* data, size_t length);
|
||||
absl::Status LoadFromBytes(const Bytes& data);
|
||||
void LoadAllPalettes();
|
||||
|
||||
Reference in New Issue
Block a user