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@ -551,22 +551,39 @@ impl Btf {
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types.types[i] = enum_type;
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}
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// Sanitize FUNC
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BtfType::Func(ty) if !features.btf_func => {
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debug!("{}: not supported. replacing with TYPEDEF", kind);
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let typedef_type = BtfType::Typedef(Typedef::new(ty.name_offset, ty.btf_type));
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types.types[i] = typedef_type;
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}
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// Sanitize BTF_FUNC_GLOBAL
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BtfType::Func(ty) if !features.btf_func_global => {
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let mut fixed_ty = ty.clone();
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if ty.linkage() == FuncLinkage::Global {
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debug!(
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"{}: BTF_FUNC_GLOBAL not supported. replacing with BTF_FUNC_STATIC",
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kind
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);
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fixed_ty.set_linkage(FuncLinkage::Static);
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BtfType::Func(ty) => {
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let name = self.string_at(ty.name_offset)?;
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// Sanitize FUNC
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if !features.btf_func {
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debug!("{}: not supported. replacing with TYPEDEF", kind);
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let typedef_type =
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BtfType::Typedef(Typedef::new(ty.name_offset, ty.btf_type));
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types.types[i] = typedef_type;
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} else if !features.btf_func_global
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|| name == "memset"
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|| name == "memcpy"
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|| name == "memmove"
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|| name == "memcmp"
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{
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// Sanitize BTF_FUNC_GLOBAL when not supported and ensure that
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// memory builtins are marked as static. Globals are type checked
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// and verified separately from their callers, while instead we
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// want tracking info (eg bound checks) to be propagated to the
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// memory builtins.
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let mut fixed_ty = ty.clone();
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if ty.linkage() == FuncLinkage::Global {
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if !features.btf_func_global {
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debug!(
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"{}: BTF_FUNC_GLOBAL not supported. replacing with BTF_FUNC_STATIC",
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kind
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);
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} else {
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debug!("changing FUNC {name} linkage to BTF_FUNC_STATIC");
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}
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fixed_ty.set_linkage(FuncLinkage::Static);
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}
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types.types[i] = BtfType::Func(fixed_ty);
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}
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types.types[i] = BtfType::Func(fixed_ty);
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}
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// Sanitize FLOAT
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BtfType::Float(ty) if !features.btf_float => {
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@ -1365,6 +1382,60 @@ mod tests {
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Btf::parse(&raw, Endianness::default()).unwrap();
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}
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#[test]
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fn test_sanitize_mem_builtins() {
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let mut btf = Btf::new();
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let name_offset = btf.add_string("int".to_string());
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let int_type_id = btf.add_type(BtfType::Int(Int::new(
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name_offset,
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4,
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IntEncoding::Signed,
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0,
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)));
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let params = vec![
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BtfParam {
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name_offset: btf.add_string("a".to_string()),
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btf_type: int_type_id,
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},
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BtfParam {
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name_offset: btf.add_string("b".to_string()),
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btf_type: int_type_id,
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},
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];
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let func_proto_type_id =
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btf.add_type(BtfType::FuncProto(FuncProto::new(params, int_type_id)));
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let builtins = ["memset", "memcpy", "memcmp", "memmove"];
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for fname in builtins {
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let func_name_offset = btf.add_string(fname.to_string());
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let func_type_id = btf.add_type(BtfType::Func(Func::new(
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func_name_offset,
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func_proto_type_id,
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FuncLinkage::Global,
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)));
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let features = BtfFeatures {
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btf_func: true,
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btf_func_global: true, // to force function name check
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..Default::default()
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};
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btf.fixup_and_sanitize(&HashMap::new(), &HashMap::new(), &features)
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.unwrap();
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if let BtfType::Func(fixed) = btf.type_by_id(func_type_id).unwrap() {
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assert!(fixed.linkage() == FuncLinkage::Static);
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} else {
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panic!("not a func")
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}
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// Ensure we can convert to bytes and back again
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let raw = btf.to_bytes();
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Btf::parse(&raw, Endianness::default()).unwrap();
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}
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}
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#[test]
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fn test_sanitize_float() {
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let mut btf = Btf::new();
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