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956f5e8ba8
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v0.8.0
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b6ee119824 | ||
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2425e8177e |
2
Cargo.lock
generated
2
Cargo.lock
generated
@@ -288,7 +288,7 @@ dependencies = [
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[[package]]
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name = "xex2tractor"
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version = "0.7.0"
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version = "0.8.0"
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dependencies = [
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"aes",
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"cbc",
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@@ -1,6 +1,6 @@
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[package]
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name = "xex2tractor"
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version = "0.7.0"
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version = "0.8.0"
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edition = "2024"
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description = "A tool for extracting and inspecting Xbox 360 XEX2 executable files"
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license = "MIT"
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127
src/imports.rs
127
src/imports.rs
@@ -109,6 +109,118 @@ pub fn decode_import_records(pe_image: &[u8], xex: &Xex2File) -> Result<Vec<Reso
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Ok(resolved)
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}
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/// Summary of import resolution results.
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#[derive(Debug)]
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pub struct ImportResolutionSummary {
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/// Total number of import records processed.
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pub total: usize,
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/// Number of variable slots written.
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pub variables_written: usize,
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/// Number of thunk stubs written.
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pub thunks_written: usize,
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/// Per-library breakdown: (library_name, count).
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pub per_library: Vec<(String, usize)>,
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}
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impl fmt::Display for ImportResolutionSummary {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(
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f,
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"Resolved {} imports ({} variables, {} thunks)",
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self.total, self.variables_written, self.thunks_written
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)?;
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for (lib, count) in &self.per_library {
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write!(f, "\n {lib}: {count}")?;
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}
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Ok(())
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}
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}
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/// Resolves imports in the PE image by writing Xenia-style values.
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///
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/// For variable imports (type 0): writes `0xD000BEEF | (ordinal & 0xFFF) << 16`.
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/// For thunk imports (type 1): rewrites the first 8 bytes to valid PowerPC:
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/// - word 0: `li r3, 0` (0x38600000)
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/// - word 1: `li r4, <ordinal>` (0x38800000 | ordinal)
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/// - words 2-3 are left unchanged (already mtspr CTR, r11 + bctr)
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pub fn resolve_imports(
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pe_image: &mut [u8],
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xex: &Xex2File,
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) -> Result<ImportResolutionSummary> {
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let imports = xex
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.optional_headers
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.import_libraries
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.as_ref()
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.ok_or_else(|| Xex2Error::InvalidPeImage("no import libraries header".into()))?;
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let load_address = xex.security_info.load_address;
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let mut total = 0;
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let mut variables_written = 0;
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let mut thunks_written = 0;
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let mut per_library: Vec<(String, usize)> = Vec::new();
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for lib in &imports.libraries {
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let mut lib_count = 0;
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for &addr in &lib.import_addresses {
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let pe_offset = (addr.wrapping_sub(load_address)) as usize;
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let raw = read_u32_be(pe_image, pe_offset).map_err(|_| {
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Xex2Error::InvalidPeImage(format!(
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"import address 0x{addr:08X} (offset 0x{pe_offset:08X}) out of bounds"
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))
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})?;
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let record_type_byte = (raw >> 24) & 0xFF;
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let ordinal = (raw & 0xFFFF) as u16;
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match record_type_byte {
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0x00 => {
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// Variable: write 0xD000BEEF | (ordinal & 0xFFF) << 16
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let resolved_val: u32 =
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0xD000BEEF | ((ordinal as u32 & 0xFFF) << 16);
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pe_image[pe_offset..pe_offset + 4]
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.copy_from_slice(&resolved_val.to_be_bytes());
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variables_written += 1;
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}
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0x01 => {
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// Thunk: rewrite first 8 bytes to valid PPC
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if pe_offset + 16 > pe_image.len() {
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return Err(Xex2Error::InvalidPeImage(format!(
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"thunk at 0x{addr:08X} (offset 0x{pe_offset:08X}) extends past PE image"
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)));
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}
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// li r3, 0
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let word0: u32 = 0x38600000;
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// li r4, <ordinal>
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let word1: u32 = 0x38800000 | ordinal as u32;
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pe_image[pe_offset..pe_offset + 4]
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.copy_from_slice(&word0.to_be_bytes());
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pe_image[pe_offset + 4..pe_offset + 8]
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.copy_from_slice(&word1.to_be_bytes());
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// words 2-3 (mtspr CTR, r11 + bctr) left unchanged
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thunks_written += 1;
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}
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_ => {
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// Unknown record type — skip
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}
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}
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lib_count += 1;
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total += 1;
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}
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per_library.push((lib.name.clone(), lib_count));
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}
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Ok(ImportResolutionSummary {
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total,
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variables_written,
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thunks_written,
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per_library,
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})
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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@@ -118,4 +230,19 @@ mod tests {
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assert_eq!(ImportRecordType::Variable.to_string(), "variable");
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assert_eq!(ImportRecordType::Thunk.to_string(), "thunk");
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}
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#[test]
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fn test_resolution_summary_display() {
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let summary = ImportResolutionSummary {
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total: 10,
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variables_written: 5,
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thunks_written: 5,
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per_library: vec![("xboxkrnl.exe".into(), 10)],
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};
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let s = summary.to_string();
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assert!(s.contains("10 imports"));
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assert!(s.contains("5 variables"));
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assert!(s.contains("5 thunks"));
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assert!(s.contains("xboxkrnl.exe: 10"));
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}
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}
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23
src/main.rs
23
src/main.rs
@@ -23,6 +23,9 @@ enum Command {
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file: PathBuf,
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/// Output path for the extracted PE file (default: same name with .exe extension)
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output: Option<PathBuf>,
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/// Resolve imports by writing Xenia-style thunk stubs and variable slots
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#[arg(short = 'r', long = "resolve-imports")]
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resolve_imports: bool,
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},
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}
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@@ -31,7 +34,11 @@ fn main() {
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match cli.command {
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Command::Inspect { file } => cmd_inspect(&file),
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Command::Extract { file, output } => cmd_extract(&file, output),
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Command::Extract {
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file,
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output,
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resolve_imports,
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} => cmd_extract(&file, output, resolve_imports),
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}
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}
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@@ -61,7 +68,7 @@ fn cmd_inspect(path: &PathBuf) {
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}
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}
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fn cmd_extract(path: &PathBuf, output: Option<PathBuf>) {
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fn cmd_extract(path: &PathBuf, output: Option<PathBuf>, resolve_imports: bool) {
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let output_path = output.unwrap_or_else(|| path.with_extension("exe"));
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let data = read_file(path);
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@@ -73,7 +80,7 @@ fn cmd_extract(path: &PathBuf, output: Option<PathBuf>) {
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println!("Compression: {}", fmt.compression_type);
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}
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let pe_image = match xex2tractor::extract::extract_pe_image(&data, &xex) {
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let mut pe_image = match xex2tractor::extract::extract_pe_image(&data, &xex) {
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Ok(img) => img,
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Err(e) => {
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eprintln!("Error extracting PE image: {e}");
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@@ -81,6 +88,16 @@ fn cmd_extract(path: &PathBuf, output: Option<PathBuf>) {
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}
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};
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if resolve_imports {
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match xex2tractor::imports::resolve_imports(&mut pe_image, &xex) {
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Ok(summary) => println!("{summary}"),
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Err(e) => {
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eprintln!("Error resolving imports: {e}");
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process::exit(1);
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}
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}
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}
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if let Err(e) = std::fs::write(&output_path, &pe_image) {
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eprintln!("Error writing {}: {e}", output_path.display());
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process::exit(1);
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@@ -552,6 +552,113 @@ fn test_decode_import_names_resolved() {
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assert!(has_dbg_break, "should find DbgBreakPoint import");
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}
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#[test]
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fn test_resolve_imports_variables() {
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let data = sample_data();
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let xex = xex2tractor::parse(&data).unwrap();
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let mut pe_image = extract::extract_pe_image(&data, &xex).unwrap();
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let summary = imports::resolve_imports(&mut pe_image, &xex).unwrap();
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assert!(summary.variables_written > 0);
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assert!(summary.thunks_written > 0);
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assert_eq!(
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summary.total,
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summary.variables_written + summary.thunks_written
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);
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// Check first xam.xex variable at PE offset 0x600 (ordinal 0x028C)
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// Should be 0xD000BEEF | (0x28C & 0xFFF) << 16 = 0xD28CBEEF
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let val = u32::from_be_bytes([
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pe_image[0x600],
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pe_image[0x601],
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pe_image[0x602],
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pe_image[0x603],
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]);
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assert_eq!(val, 0xD28CBEEF, "variable slot should have 0xD000BEEF pattern");
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}
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#[test]
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fn test_resolve_imports_thunks() {
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let data = sample_data();
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let xex = xex2tractor::parse(&data).unwrap();
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let mut pe_image = extract::extract_pe_image(&data, &xex).unwrap();
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imports::resolve_imports(&mut pe_image, &xex).unwrap();
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// Check first xam.xex thunk at PE offset 0x84DA7C (ordinal 0x028C)
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let off = 0x0084DA7C;
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let w0 = u32::from_be_bytes([pe_image[off], pe_image[off + 1], pe_image[off + 2], pe_image[off + 3]]);
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let w1 = u32::from_be_bytes([pe_image[off + 4], pe_image[off + 5], pe_image[off + 6], pe_image[off + 7]]);
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let w2 = u32::from_be_bytes([pe_image[off + 8], pe_image[off + 9], pe_image[off + 10], pe_image[off + 11]]);
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let w3 = u32::from_be_bytes([pe_image[off + 12], pe_image[off + 13], pe_image[off + 14], pe_image[off + 15]]);
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assert_eq!(w0, 0x38600000, "thunk word 0 should be li r3, 0");
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assert_eq!(w1, 0x3880028C, "thunk word 1 should be li r4, 0x028C");
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assert_eq!(w2, 0x7D6903A6, "thunk word 2 should be mtspr CTR, r11");
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assert_eq!(w3, 0x4E800420, "thunk word 3 should be bctr");
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}
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#[test]
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fn test_extract_without_resolve_unchanged() {
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let data = sample_data();
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let xex = xex2tractor::parse(&data).unwrap();
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let pe_unresolved = extract::extract_pe_image(&data, &xex).unwrap();
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// Without resolve, variable at 0x600 should be the raw descriptor
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let val = u32::from_be_bytes([
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pe_unresolved[0x600],
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pe_unresolved[0x601],
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pe_unresolved[0x602],
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pe_unresolved[0x603],
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]);
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assert_eq!(val, 0x0000028C, "unresolved variable should be raw descriptor");
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// Thunk word 0 should be the record marker, not a PPC instruction
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let off = 0x0084DA7C;
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let w0 = u32::from_be_bytes([
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pe_unresolved[off],
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pe_unresolved[off + 1],
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pe_unresolved[off + 2],
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pe_unresolved[off + 3],
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]);
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assert_eq!(w0, 0x0100028C, "unresolved thunk word 0 should be record marker");
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}
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#[test]
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fn test_resolve_imports_pe_still_valid() {
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let data = sample_data();
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let xex = xex2tractor::parse(&data).unwrap();
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let mut pe_image = extract::extract_pe_image(&data, &xex).unwrap();
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imports::resolve_imports(&mut pe_image, &xex).unwrap();
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// PE verification should still pass (MZ + PE headers untouched)
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assert!(extract::verify_pe_image(&pe_image).is_ok());
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}
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#[test]
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fn test_cli_extract_resolve_imports() {
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let path = format!("{}/tests/data/default.xex", env!("CARGO_MANIFEST_DIR"));
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let output_path = format!(
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"{}/target/test_resolve_output.exe",
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env!("CARGO_MANIFEST_DIR")
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);
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let _ = std::fs::remove_file(&output_path);
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let output = std::process::Command::new(env!("CARGO_BIN_EXE_xex2tractor"))
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.args(["extract", "-r", &path, &output_path])
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.output()
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.expect("failed to run xex2tractor");
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assert!(output.status.success(), "CLI extract -r should succeed");
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let stdout = String::from_utf8_lossy(&output.stdout);
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assert!(stdout.contains("Resolved"), "should print resolution summary");
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assert!(stdout.contains("variables"), "should mention variables");
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assert!(stdout.contains("thunks"), "should mention thunks");
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let _ = std::fs::remove_file(&output_path);
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}
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#[test]
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fn test_cli_inspect_shows_resolved_imports() {
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let path = format!("{}/tests/data/default.xex", env!("CARGO_MANIFEST_DIR"));
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