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https://bpftrace.org/about

About bpftrace | bpftrace

bpftrace uses LLVM as a backend to compile scripts to eBPF-bytecode and makes use of libbpf and bcc for interacting with the Linux BPF subsystem, as well as existing Linux tracing capabilities: kernel dynamic tracing (kprobes), user-level dynamic tracing (uprobes), tracepoints, etc. The bpftrace language is inspired by awk, C, and predecessor tracers such as DTrace and SystemTap.



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About bpftrace | bpftrace

https://bpftrace.org/about

bpftrace uses LLVM as a backend to compile scripts to eBPF-bytecode and makes use of libbpf and bcc for interacting with the Linux BPF subsystem, as well as existing Linux tracing capabilities: kernel dynamic tracing (kprobes), user-level dynamic tracing (uprobes), tracepoints, etc. The bpftrace language is inspired by awk, C, and predecessor tracers such as DTrace and SystemTap.



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https://bpftrace.org/about

About bpftrace | bpftrace

bpftrace uses LLVM as a backend to compile scripts to eBPF-bytecode and makes use of libbpf and bcc for interacting with the Linux BPF subsystem, as well as existing Linux tracing capabilities: kernel dynamic tracing (kprobes), user-level dynamic tracing (uprobes), tracepoints, etc. The bpftrace language is inspired by awk, C, and predecessor tracers such as DTrace and SystemTap.

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      bpftrace uses LLVM as a backend to compile scripts to eBPF-bytecode and makes use of libbpf and bcc for interacting with the Linux BPF subsystem, as well as existing Linux tracing capabilities: kernel dynamic tracing (kprobes), user-level dynamic tracing (uprobes), tracepoints, etc. The bpftrace language is inspired by awk, C, and predecessor tracers such as DTrace and SystemTap.
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