selftests/bpf: adjust test_align expected output
since verifier started to print liveness state of the registers adjust expected output of test_align. Now this test checks for both proper alignment handling by verifier and correctness of liveness marks. Signed-off-by: Alexei Starovoitov <ast@kernel.org> Acked-by: Daniel Borkmann <daniel@iogearbox.net> Signed-off-by: Daniel Borkmann <daniel@iogearbox.net>
This commit is contained in:

committed by
Daniel Borkmann

parent
914cb781ee
commit
6a28b446b7
@@ -64,11 +64,11 @@ static struct bpf_align_test tests[] = {
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.matches = {
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{1, "R1=ctx(id=0,off=0,imm=0)"},
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{1, "R10=fp0"},
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{1, "R3=inv2"},
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{2, "R3=inv4"},
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{3, "R3=inv8"},
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{4, "R3=inv16"},
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{5, "R3=inv32"},
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{1, "R3_w=inv2"},
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{2, "R3_w=inv4"},
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{3, "R3_w=inv8"},
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{4, "R3_w=inv16"},
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{5, "R3_w=inv32"},
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},
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},
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{
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@@ -92,17 +92,17 @@ static struct bpf_align_test tests[] = {
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.matches = {
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{1, "R1=ctx(id=0,off=0,imm=0)"},
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{1, "R10=fp0"},
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{1, "R3=inv1"},
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{2, "R3=inv2"},
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{3, "R3=inv4"},
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{4, "R3=inv8"},
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{5, "R3=inv16"},
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{6, "R3=inv1"},
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{7, "R4=inv32"},
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{8, "R4=inv16"},
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{9, "R4=inv8"},
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{10, "R4=inv4"},
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{11, "R4=inv2"},
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{1, "R3_w=inv1"},
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{2, "R3_w=inv2"},
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{3, "R3_w=inv4"},
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{4, "R3_w=inv8"},
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{5, "R3_w=inv16"},
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{6, "R3_w=inv1"},
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{7, "R4_w=inv32"},
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{8, "R4_w=inv16"},
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{9, "R4_w=inv8"},
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{10, "R4_w=inv4"},
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{11, "R4_w=inv2"},
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},
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},
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{
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@@ -121,12 +121,12 @@ static struct bpf_align_test tests[] = {
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.matches = {
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{1, "R1=ctx(id=0,off=0,imm=0)"},
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{1, "R10=fp0"},
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{1, "R3=inv4"},
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{2, "R3=inv8"},
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{3, "R3=inv10"},
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{4, "R4=inv8"},
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{5, "R4=inv12"},
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{6, "R4=inv14"},
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{1, "R3_w=inv4"},
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{2, "R3_w=inv8"},
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{3, "R3_w=inv10"},
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{4, "R4_w=inv8"},
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{5, "R4_w=inv12"},
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{6, "R4_w=inv14"},
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},
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},
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{
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@@ -143,10 +143,10 @@ static struct bpf_align_test tests[] = {
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.matches = {
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{1, "R1=ctx(id=0,off=0,imm=0)"},
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{1, "R10=fp0"},
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{1, "R3=inv7"},
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{2, "R3=inv7"},
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{3, "R3=inv14"},
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{4, "R3=inv56"},
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{1, "R3_w=inv7"},
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{2, "R3_w=inv7"},
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{3, "R3_w=inv14"},
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{4, "R3_w=inv56"},
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},
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},
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@@ -185,18 +185,18 @@ static struct bpf_align_test tests[] = {
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.prog_type = BPF_PROG_TYPE_SCHED_CLS,
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.matches = {
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{7, "R0=pkt(id=0,off=8,r=8,imm=0)"},
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{7, "R3=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{8, "R3=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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{9, "R3=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{10, "R3=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{11, "R3=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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{7, "R3_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{8, "R3_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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{9, "R3_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{10, "R3_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{11, "R3_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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{18, "R3=pkt_end(id=0,off=0,imm=0)"},
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{18, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{19, "R4=inv(id=0,umax_value=8160,var_off=(0x0; 0x1fe0))"},
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{20, "R4=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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{21, "R4=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{22, "R4=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{23, "R4=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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{18, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{19, "R4_w=inv(id=0,umax_value=8160,var_off=(0x0; 0x1fe0))"},
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{20, "R4_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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{21, "R4_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{22, "R4_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{23, "R4_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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},
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},
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{
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@@ -217,16 +217,16 @@ static struct bpf_align_test tests[] = {
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},
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.prog_type = BPF_PROG_TYPE_SCHED_CLS,
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.matches = {
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{7, "R3=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{8, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{9, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{10, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{11, "R4=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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{12, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{13, "R4=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{14, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{15, "R4=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{16, "R4=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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{7, "R3_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{8, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{9, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{10, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{11, "R4_w=inv(id=0,umax_value=510,var_off=(0x0; 0x1fe))"},
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{12, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{13, "R4_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{14, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{15, "R4_w=inv(id=0,umax_value=2040,var_off=(0x0; 0x7f8))"},
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{16, "R4_w=inv(id=0,umax_value=4080,var_off=(0x0; 0xff0))"},
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},
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},
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{
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@@ -257,14 +257,14 @@ static struct bpf_align_test tests[] = {
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},
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.prog_type = BPF_PROG_TYPE_SCHED_CLS,
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.matches = {
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{4, "R5=pkt(id=0,off=0,r=0,imm=0)"},
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{5, "R5=pkt(id=0,off=14,r=0,imm=0)"},
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{6, "R4=pkt(id=0,off=14,r=0,imm=0)"},
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{4, "R5_w=pkt(id=0,off=0,r=0,imm=0)"},
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{5, "R5_w=pkt(id=0,off=14,r=0,imm=0)"},
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{6, "R4_w=pkt(id=0,off=14,r=0,imm=0)"},
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{10, "R2=pkt(id=0,off=0,r=18,imm=0)"},
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{10, "R5=pkt(id=0,off=14,r=18,imm=0)"},
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{10, "R4=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{14, "R4=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"},
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{15, "R4=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"},
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{10, "R4_w=inv(id=0,umax_value=255,var_off=(0x0; 0xff))"},
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{14, "R4_w=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"},
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{15, "R4_w=inv(id=0,umax_value=65535,var_off=(0x0; 0xffff))"},
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},
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},
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{
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@@ -320,11 +320,11 @@ static struct bpf_align_test tests[] = {
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* alignment of 4.
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*/
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{8, "R2=pkt(id=0,off=0,r=8,imm=0)"},
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{8, "R6=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{8, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Offset is added to packet pointer R5, resulting in
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* known fixed offset, and variable offset from R6.
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*/
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{11, "R5=pkt(id=1,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{11, "R5_w=pkt(id=1,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* At the time the word size load is performed from R5,
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* it's total offset is NET_IP_ALIGN + reg->off (0) +
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* reg->aux_off (14) which is 16. Then the variable
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@@ -336,11 +336,11 @@ static struct bpf_align_test tests[] = {
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/* Variable offset is added to R5 packet pointer,
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* resulting in auxiliary alignment of 4.
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*/
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{18, "R5=pkt(id=2,off=0,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{18, "R5_w=pkt(id=2,off=0,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Constant offset is added to R5, resulting in
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* reg->off of 14.
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*/
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{19, "R5=pkt(id=2,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{19, "R5_w=pkt(id=2,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* At the time the word size load is performed from R5,
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* its total fixed offset is NET_IP_ALIGN + reg->off
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* (14) which is 16. Then the variable offset is 4-byte
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@@ -352,18 +352,18 @@ static struct bpf_align_test tests[] = {
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/* Constant offset is added to R5 packet pointer,
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* resulting in reg->off value of 14.
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*/
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{26, "R5=pkt(id=0,off=14,r=8"},
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{26, "R5_w=pkt(id=0,off=14,r=8"},
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/* Variable offset is added to R5, resulting in a
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* variable offset of (4n).
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*/
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{27, "R5=pkt(id=3,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{27, "R5_w=pkt(id=3,off=14,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Constant is added to R5 again, setting reg->off to 18. */
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{28, "R5=pkt(id=3,off=18,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{28, "R5_w=pkt(id=3,off=18,r=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* And once more we add a variable; resulting var_off
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* is still (4n), fixed offset is not changed.
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* Also, we create a new reg->id.
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*/
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{29, "R5=pkt(id=4,off=18,r=0,umax_value=2040,var_off=(0x0; 0x7fc))"},
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{29, "R5_w=pkt(id=4,off=18,r=0,umax_value=2040,var_off=(0x0; 0x7fc))"},
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/* At the time the word size load is performed from R5,
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* its total fixed offset is NET_IP_ALIGN + reg->off (18)
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* which is 20. Then the variable offset is (4n), so
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@@ -410,11 +410,11 @@ static struct bpf_align_test tests[] = {
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* alignment of 4.
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*/
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{8, "R2=pkt(id=0,off=0,r=8,imm=0)"},
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{8, "R6=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{8, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Adding 14 makes R6 be (4n+2) */
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{9, "R6=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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{9, "R6_w=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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/* Packet pointer has (4n+2) offset */
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{11, "R5=pkt(id=1,off=0,r=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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{11, "R5_w=pkt(id=1,off=0,r=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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{13, "R4=pkt(id=1,off=4,r=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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/* At the time the word size load is performed from R5,
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* its total fixed offset is NET_IP_ALIGN + reg->off (0)
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@@ -426,11 +426,11 @@ static struct bpf_align_test tests[] = {
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/* Newly read value in R6 was shifted left by 2, so has
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* known alignment of 4.
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*/
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{18, "R6=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{18, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Added (4n) to packet pointer's (4n+2) var_off, giving
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* another (4n+2).
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*/
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{19, "R5=pkt(id=2,off=0,r=0,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc))"},
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{19, "R5_w=pkt(id=2,off=0,r=0,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc))"},
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{21, "R4=pkt(id=2,off=4,r=0,umin_value=14,umax_value=2054,var_off=(0x2; 0xffc))"},
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/* At the time the word size load is performed from R5,
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* its total fixed offset is NET_IP_ALIGN + reg->off (0)
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@@ -473,11 +473,11 @@ static struct bpf_align_test tests[] = {
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.prog_type = BPF_PROG_TYPE_SCHED_CLS,
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.result = REJECT,
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.matches = {
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{4, "R5=pkt(id=0,off=0,r=0,imm=0)"},
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{4, "R5_w=pkt(id=0,off=0,r=0,imm=0)"},
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/* ptr & 0x40 == either 0 or 0x40 */
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{5, "R5=inv(id=0,umax_value=64,var_off=(0x0; 0x40))"},
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{5, "R5_w=inv(id=0,umax_value=64,var_off=(0x0; 0x40))"},
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/* ptr << 2 == unknown, (4n) */
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{7, "R5=inv(id=0,smax_value=9223372036854775804,umax_value=18446744073709551612,var_off=(0x0; 0xfffffffffffffffc))"},
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{7, "R5_w=inv(id=0,smax_value=9223372036854775804,umax_value=18446744073709551612,var_off=(0x0; 0xfffffffffffffffc))"},
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/* (4n) + 14 == (4n+2). We blow our bounds, because
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* the add could overflow.
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*/
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@@ -485,7 +485,7 @@ static struct bpf_align_test tests[] = {
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/* Checked s>=0 */
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{10, "R5=inv(id=0,umin_value=2,umax_value=9223372036854775806,var_off=(0x2; 0x7ffffffffffffffc))"},
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/* packet pointer + nonnegative (4n+2) */
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{12, "R6=pkt(id=1,off=0,r=0,umin_value=2,umax_value=9223372036854775806,var_off=(0x2; 0x7ffffffffffffffc))"},
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{12, "R6_w=pkt(id=1,off=0,r=0,umin_value=2,umax_value=9223372036854775806,var_off=(0x2; 0x7ffffffffffffffc))"},
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{14, "R4=pkt(id=1,off=4,r=0,umin_value=2,umax_value=9223372036854775806,var_off=(0x2; 0x7ffffffffffffffc))"},
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/* NET_IP_ALIGN + (4n+2) == (4n), alignment is fine.
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* We checked the bounds, but it might have been able
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@@ -530,11 +530,11 @@ static struct bpf_align_test tests[] = {
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* alignment of 4.
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*/
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{7, "R2=pkt(id=0,off=0,r=8,imm=0)"},
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{9, "R6=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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{9, "R6_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
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/* Adding 14 makes R6 be (4n+2) */
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{10, "R6=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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{10, "R6_w=inv(id=0,umin_value=14,umax_value=1034,var_off=(0x2; 0x7fc))"},
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/* New unknown value in R7 is (4n) */
|
||||
{11, "R7=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
|
||||
{11, "R7_w=inv(id=0,umax_value=1020,var_off=(0x0; 0x3fc))"},
|
||||
/* Subtracting it from R6 blows our unsigned bounds */
|
||||
{12, "R6=inv(id=0,smin_value=-1006,smax_value=1034,var_off=(0x2; 0xfffffffffffffffc))"},
|
||||
/* Checked s>= 0 */
|
||||
@@ -583,15 +583,15 @@ static struct bpf_align_test tests[] = {
|
||||
* alignment of 4.
|
||||
*/
|
||||
{7, "R2=pkt(id=0,off=0,r=8,imm=0)"},
|
||||
{10, "R6=inv(id=0,umax_value=60,var_off=(0x0; 0x3c))"},
|
||||
{10, "R6_w=inv(id=0,umax_value=60,var_off=(0x0; 0x3c))"},
|
||||
/* Adding 14 makes R6 be (4n+2) */
|
||||
{11, "R6=inv(id=0,umin_value=14,umax_value=74,var_off=(0x2; 0x7c))"},
|
||||
{11, "R6_w=inv(id=0,umin_value=14,umax_value=74,var_off=(0x2; 0x7c))"},
|
||||
/* Subtracting from packet pointer overflows ubounds */
|
||||
{13, "R5=pkt(id=1,off=0,r=8,umin_value=18446744073709551542,umax_value=18446744073709551602,var_off=(0xffffffffffffff82; 0x7c))"},
|
||||
{13, "R5_w=pkt(id=1,off=0,r=8,umin_value=18446744073709551542,umax_value=18446744073709551602,var_off=(0xffffffffffffff82; 0x7c))"},
|
||||
/* New unknown value in R7 is (4n), >= 76 */
|
||||
{15, "R7=inv(id=0,umin_value=76,umax_value=1096,var_off=(0x0; 0x7fc))"},
|
||||
{15, "R7_w=inv(id=0,umin_value=76,umax_value=1096,var_off=(0x0; 0x7fc))"},
|
||||
/* Adding it to packet pointer gives nice bounds again */
|
||||
{16, "R5=pkt(id=2,off=0,r=0,umin_value=2,umax_value=1082,var_off=(0x2; 0x7fc))"},
|
||||
{16, "R5_w=pkt(id=2,off=0,r=0,umin_value=2,umax_value=1082,var_off=(0x2; 0x7fc))"},
|
||||
/* At the time the word size load is performed from R5,
|
||||
* its total fixed offset is NET_IP_ALIGN + reg->off (0)
|
||||
* which is 2. Then the variable offset is (4n+2), so
|
||||
|
Reference in New Issue
Block a user