target/i386: Use assert() to sanity-check b1 in SSE decode
In the SSE decode function gen_sse(), we combine a byte
'b' and a value 'b1' which can be [0..3], and switch on them:
b |= (b1 << 8);
switch (b) {
...
default:
unknown_op:
gen_unknown_opcode(env, s);
return;
}
In three cases inside this switch, we were then also checking for
"if (b1 >= 2) { goto unknown_op; }".
However, this can never happen, because the 'case' values in each place
are 0x0nn or 0x1nn and the switch will have directed the b1 == (2, 3)
cases to the default already.
This check was added in commit c045af25a5
in 2010; the added code
was unnecessary then as well, and was apparently intended only to
ensure that we never accidentally ended up indexing off the end
of an sse_op_table with only 2 entries as a result of future bugs
in the decode logic.
Change the checks to assert() instead, and make sure they're always
immediately before the array access they are protecting.
Fixes: Coverity CID 1460207
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
This commit is contained in:
parent
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commit
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@ -3519,9 +3519,6 @@ static void gen_sse(CPUX86State *env, DisasContext *s, int b,
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case 0x171: /* shift xmm, im */
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case 0x172:
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case 0x173:
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if (b1 >= 2) {
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goto unknown_op;
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}
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val = x86_ldub_code(env, s);
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if (is_xmm) {
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tcg_gen_movi_tl(s->T0, val);
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@ -3540,6 +3537,7 @@ static void gen_sse(CPUX86State *env, DisasContext *s, int b,
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offsetof(CPUX86State, mmx_t0.MMX_L(1)));
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op1_offset = offsetof(CPUX86State,mmx_t0);
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}
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assert(b1 < 2);
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sse_fn_epp = sse_op_table2[((b - 1) & 3) * 8 +
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(((modrm >> 3)) & 7)][b1];
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if (!sse_fn_epp) {
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@ -3770,10 +3768,8 @@ static void gen_sse(CPUX86State *env, DisasContext *s, int b,
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rm = modrm & 7;
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reg = ((modrm >> 3) & 7) | REX_R(s);
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mod = (modrm >> 6) & 3;
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if (b1 >= 2) {
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goto unknown_op;
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}
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assert(b1 < 2);
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sse_fn_epp = sse_op_table6[b].op[b1];
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if (!sse_fn_epp) {
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goto unknown_op;
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@ -4200,10 +4196,8 @@ static void gen_sse(CPUX86State *env, DisasContext *s, int b,
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rm = modrm & 7;
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reg = ((modrm >> 3) & 7) | REX_R(s);
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mod = (modrm >> 6) & 3;
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if (b1 >= 2) {
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goto unknown_op;
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}
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assert(b1 < 2);
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sse_fn_eppi = sse_op_table7[b].op[b1];
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if (!sse_fn_eppi) {
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goto unknown_op;
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