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Raw Panama bindings for libbpf generated for jextract on 64-bit Linux
The newest version!
// Generated by jextract
package me.bechberger.ebpf.bpf.raw;
import java.lang.invoke.*;
import java.lang.foreign.*;
import java.nio.ByteOrder;
import java.util.*;
import java.util.function.*;
import java.util.stream.*;
import static java.lang.foreign.ValueLayout.*;
import static java.lang.foreign.MemoryLayout.PathElement.*;
/**
* {@snippet lang=c :
* struct fanout_args {
* __u16 id;
* __u16 type_flags;
* __u32 max_num_members;
* }
* }
*/
public class fanout_args {
fanout_args() {
// Should not be called directly
}
private static final GroupLayout $LAYOUT = MemoryLayout.structLayout(
Lib.C_SHORT.withName("id"),
Lib.C_SHORT.withName("type_flags"),
Lib.C_INT.withName("max_num_members")
).withName("fanout_args");
/**
* The layout of this struct
*/
public static final GroupLayout layout() {
return $LAYOUT;
}
private static final OfShort id$LAYOUT = (OfShort)$LAYOUT.select(groupElement("id"));
/**
* Layout for field:
* {@snippet lang=c :
* __u16 id
* }
*/
public static final OfShort id$layout() {
return id$LAYOUT;
}
private static final long id$OFFSET = 0;
/**
* Offset for field:
* {@snippet lang=c :
* __u16 id
* }
*/
public static final long id$offset() {
return id$OFFSET;
}
/**
* Getter for field:
* {@snippet lang=c :
* __u16 id
* }
*/
public static short id(MemorySegment struct) {
return struct.get(id$LAYOUT, id$OFFSET);
}
/**
* Setter for field:
* {@snippet lang=c :
* __u16 id
* }
*/
public static void id(MemorySegment struct, short fieldValue) {
struct.set(id$LAYOUT, id$OFFSET, fieldValue);
}
private static final OfShort type_flags$LAYOUT = (OfShort)$LAYOUT.select(groupElement("type_flags"));
/**
* Layout for field:
* {@snippet lang=c :
* __u16 type_flags
* }
*/
public static final OfShort type_flags$layout() {
return type_flags$LAYOUT;
}
private static final long type_flags$OFFSET = 2;
/**
* Offset for field:
* {@snippet lang=c :
* __u16 type_flags
* }
*/
public static final long type_flags$offset() {
return type_flags$OFFSET;
}
/**
* Getter for field:
* {@snippet lang=c :
* __u16 type_flags
* }
*/
public static short type_flags(MemorySegment struct) {
return struct.get(type_flags$LAYOUT, type_flags$OFFSET);
}
/**
* Setter for field:
* {@snippet lang=c :
* __u16 type_flags
* }
*/
public static void type_flags(MemorySegment struct, short fieldValue) {
struct.set(type_flags$LAYOUT, type_flags$OFFSET, fieldValue);
}
private static final OfInt max_num_members$LAYOUT = (OfInt)$LAYOUT.select(groupElement("max_num_members"));
/**
* Layout for field:
* {@snippet lang=c :
* __u32 max_num_members
* }
*/
public static final OfInt max_num_members$layout() {
return max_num_members$LAYOUT;
}
private static final long max_num_members$OFFSET = 4;
/**
* Offset for field:
* {@snippet lang=c :
* __u32 max_num_members
* }
*/
public static final long max_num_members$offset() {
return max_num_members$OFFSET;
}
/**
* Getter for field:
* {@snippet lang=c :
* __u32 max_num_members
* }
*/
public static int max_num_members(MemorySegment struct) {
return struct.get(max_num_members$LAYOUT, max_num_members$OFFSET);
}
/**
* Setter for field:
* {@snippet lang=c :
* __u32 max_num_members
* }
*/
public static void max_num_members(MemorySegment struct, int fieldValue) {
struct.set(max_num_members$LAYOUT, max_num_members$OFFSET, fieldValue);
}
/**
* Obtains a slice of {@code arrayParam} which selects the array element at {@code index}.
* The returned segment has address {@code arrayParam.address() + index * layout().byteSize()}
*/
public static MemorySegment asSlice(MemorySegment array, long index) {
return array.asSlice(layout().byteSize() * index);
}
/**
* The size (in bytes) of this struct
*/
public static long sizeof() { return layout().byteSize(); }
/**
* Allocate a segment of size {@code layout().byteSize()} using {@code allocator}
*/
public static MemorySegment allocate(SegmentAllocator allocator) {
return allocator.allocate(layout());
}
/**
* Allocate an array of size {@code elementCount} using {@code allocator}.
* The returned segment has size {@code elementCount * layout().byteSize()}.
*/
public static MemorySegment allocateArray(long elementCount, SegmentAllocator allocator) {
return allocator.allocate(MemoryLayout.sequenceLayout(elementCount, layout()));
}
/**
* Reinterprets {@code addr} using target {@code arena} and {@code cleanupAction} (if any).
* The returned segment has size {@code layout().byteSize()}
*/
public static MemorySegment reinterpret(MemorySegment addr, Arena arena, Consumer cleanup) {
return reinterpret(addr, 1, arena, cleanup);
}
/**
* Reinterprets {@code addr} using target {@code arena} and {@code cleanupAction} (if any).
* The returned segment has size {@code elementCount * layout().byteSize()}
*/
public static MemorySegment reinterpret(MemorySegment addr, long elementCount, Arena arena, Consumer cleanup) {
return addr.reinterpret(layout().byteSize() * elementCount, arena, cleanup);
}
}