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riscv, bpf: make some atomic operations fully ordered
The BPF atomic operations with the BPF_FETCH modifier along with
BPF_XCHG and BPF_CMPXCHG are fully ordered but the RISC-V JIT implements
all atomic operations except BPF_CMPXCHG with relaxed ordering.
Section 8.1 of the "The RISC-V Instruction Set Manual Volume I:
Unprivileged ISA" [1], titled, "Specifying Ordering of Atomic
Instructions" says:
| To provide more efficient support for release consistency [5], each
| atomic instruction has two bits, aq and rl, used to specify additional
| memory ordering constraints as viewed by other RISC-V harts.
and
| If only the aq bit is set, the atomic memory operation is treated as
| an acquire access.
| If only the rl bit is set, the atomic memory operation is treated as a
| release access.
|
| If both the aq and rl bits are set, the atomic memory operation is
| sequentially consistent.
Fix this by setting both aq and rl bits as 1 for operations with
BPF_FETCH and BPF_XCHG.
[1] https://riscv.org/wp-content/uploads/2017/05/riscv-spec-v2.2.pdf
Fixes: dd642ccb45
("riscv, bpf: Implement more atomic operations for RV64")
Signed-off-by: Puranjay Mohan <puranjay@kernel.org>
Reviewed-by: Pu Lehui <pulehui@huawei.com>
Link: https://lore.kernel.org/r/20240505201633.123115-1-puranjay@kernel.org
Signed-off-by: Alexei Starovoitov <ast@kernel.org>
This commit is contained in:
parent
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@ -504,33 +504,33 @@ static void emit_atomic(u8 rd, u8 rs, s16 off, s32 imm, bool is64,
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break;
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/* src_reg = atomic_fetch_<op>(dst_reg + off16, src_reg) */
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case BPF_ADD | BPF_FETCH:
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emit(is64 ? rv_amoadd_d(rs, rs, rd, 0, 0) :
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rv_amoadd_w(rs, rs, rd, 0, 0), ctx);
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emit(is64 ? rv_amoadd_d(rs, rs, rd, 1, 1) :
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rv_amoadd_w(rs, rs, rd, 1, 1), ctx);
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if (!is64)
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emit_zextw(rs, rs, ctx);
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break;
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case BPF_AND | BPF_FETCH:
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emit(is64 ? rv_amoand_d(rs, rs, rd, 0, 0) :
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rv_amoand_w(rs, rs, rd, 0, 0), ctx);
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emit(is64 ? rv_amoand_d(rs, rs, rd, 1, 1) :
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rv_amoand_w(rs, rs, rd, 1, 1), ctx);
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if (!is64)
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emit_zextw(rs, rs, ctx);
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break;
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case BPF_OR | BPF_FETCH:
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emit(is64 ? rv_amoor_d(rs, rs, rd, 0, 0) :
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rv_amoor_w(rs, rs, rd, 0, 0), ctx);
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emit(is64 ? rv_amoor_d(rs, rs, rd, 1, 1) :
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rv_amoor_w(rs, rs, rd, 1, 1), ctx);
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if (!is64)
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emit_zextw(rs, rs, ctx);
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break;
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case BPF_XOR | BPF_FETCH:
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emit(is64 ? rv_amoxor_d(rs, rs, rd, 0, 0) :
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rv_amoxor_w(rs, rs, rd, 0, 0), ctx);
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emit(is64 ? rv_amoxor_d(rs, rs, rd, 1, 1) :
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rv_amoxor_w(rs, rs, rd, 1, 1), ctx);
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if (!is64)
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emit_zextw(rs, rs, ctx);
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break;
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/* src_reg = atomic_xchg(dst_reg + off16, src_reg); */
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case BPF_XCHG:
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emit(is64 ? rv_amoswap_d(rs, rs, rd, 0, 0) :
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rv_amoswap_w(rs, rs, rd, 0, 0), ctx);
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emit(is64 ? rv_amoswap_d(rs, rs, rd, 1, 1) :
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rv_amoswap_w(rs, rs, rd, 1, 1), ctx);
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if (!is64)
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emit_zextw(rs, rs, ctx);
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break;
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