tcg/optimize: Split out fold_affected_mask
There are only a few logical operations which can compute an "affected" mask. Split out handling of this optimization to a separate function, only to be called when applicable. Remove the a_mask field from OptContext, as the mask is no longer stored anywhere. Reviewed-by: Pierrick Bouvier <pierrick.bouvier@linaro.org> Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
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@ -64,7 +64,6 @@ typedef struct OptContext {
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QSIMPLEQ_HEAD(, MemCopyInfo) mem_free;
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QSIMPLEQ_HEAD(, MemCopyInfo) mem_free;
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/* In flight values from optimization. */
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/* In flight values from optimization. */
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uint64_t a_mask; /* mask bit is 0 iff value identical to first input */
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uint64_t z_mask; /* mask bit is 0 iff value bit is 0 */
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uint64_t z_mask; /* mask bit is 0 iff value bit is 0 */
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uint64_t s_mask; /* mask of clrsb(value) bits */
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uint64_t s_mask; /* mask of clrsb(value) bits */
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TCGType type;
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TCGType type;
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@ -1047,7 +1046,6 @@ static bool fold_const2_commutative(OptContext *ctx, TCGOp *op)
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static bool fold_masks(OptContext *ctx, TCGOp *op)
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static bool fold_masks(OptContext *ctx, TCGOp *op)
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{
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{
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uint64_t a_mask = ctx->a_mask;
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uint64_t z_mask = ctx->z_mask;
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uint64_t z_mask = ctx->z_mask;
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uint64_t s_mask = ctx->s_mask;
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uint64_t s_mask = ctx->s_mask;
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@ -1059,7 +1057,6 @@ static bool fold_masks(OptContext *ctx, TCGOp *op)
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* type changing opcodes.
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* type changing opcodes.
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*/
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*/
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if (ctx->type == TCG_TYPE_I32) {
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if (ctx->type == TCG_TYPE_I32) {
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a_mask = (int32_t)a_mask;
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z_mask = (int32_t)z_mask;
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z_mask = (int32_t)z_mask;
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s_mask |= MAKE_64BIT_MASK(32, 32);
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s_mask |= MAKE_64BIT_MASK(32, 32);
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ctx->z_mask = z_mask;
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ctx->z_mask = z_mask;
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@ -1069,6 +1066,19 @@ static bool fold_masks(OptContext *ctx, TCGOp *op)
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if (z_mask == 0) {
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if (z_mask == 0) {
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return tcg_opt_gen_movi(ctx, op, op->args[0], 0);
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return tcg_opt_gen_movi(ctx, op, op->args[0], 0);
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}
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}
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return false;
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}
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/*
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* An "affected" mask bit is 0 if and only if the result is identical
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* to the first input. Thus if the entire mask is 0, the operation
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* is equivalent to a copy.
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*/
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static bool fold_affected_mask(OptContext *ctx, TCGOp *op, uint64_t a_mask)
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{
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if (ctx->type == TCG_TYPE_I32) {
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a_mask = (uint32_t)a_mask;
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}
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if (a_mask == 0) {
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if (a_mask == 0) {
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return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
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return tcg_opt_gen_mov(ctx, op, op->args[0], op->args[1]);
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}
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}
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@ -1305,8 +1315,9 @@ static bool fold_and(OptContext *ctx, TCGOp *op)
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* Known-zeros does not imply known-ones. Therefore unless
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* Known-zeros does not imply known-ones. Therefore unless
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* arg2 is constant, we can't infer affected bits from it.
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* arg2 is constant, we can't infer affected bits from it.
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*/
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*/
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if (arg_is_const(op->args[2])) {
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if (arg_is_const(op->args[2]) &&
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ctx->a_mask = z1 & ~z2;
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fold_affected_mask(ctx, op, z1 & ~z2)) {
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return true;
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}
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}
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return fold_masks(ctx, op);
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return fold_masks(ctx, op);
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@ -1331,7 +1342,9 @@ static bool fold_andc(OptContext *ctx, TCGOp *op)
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*/
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*/
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if (arg_is_const(op->args[2])) {
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if (arg_is_const(op->args[2])) {
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uint64_t z2 = ~arg_info(op->args[2])->z_mask;
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uint64_t z2 = ~arg_info(op->args[2])->z_mask;
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ctx->a_mask = z1 & ~z2;
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if (fold_affected_mask(ctx, op, z1 & ~z2)) {
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return true;
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}
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z1 &= z2;
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z1 &= z2;
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}
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}
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ctx->z_mask = z1;
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ctx->z_mask = z1;
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@ -1709,8 +1722,8 @@ static bool fold_extract(OptContext *ctx, TCGOp *op)
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z_mask_old = arg_info(op->args[1])->z_mask;
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z_mask_old = arg_info(op->args[1])->z_mask;
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z_mask = extract64(z_mask_old, pos, len);
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z_mask = extract64(z_mask_old, pos, len);
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if (pos == 0) {
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if (pos == 0 && fold_affected_mask(ctx, op, z_mask_old ^ z_mask)) {
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ctx->a_mask = z_mask_old ^ z_mask;
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return true;
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}
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}
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ctx->z_mask = z_mask;
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ctx->z_mask = z_mask;
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ctx->s_mask = smask_from_zmask(z_mask);
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ctx->s_mask = smask_from_zmask(z_mask);
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@ -1777,8 +1790,8 @@ static bool fold_exts(OptContext *ctx, TCGOp *op)
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ctx->z_mask = z_mask;
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ctx->z_mask = z_mask;
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ctx->s_mask = s_mask;
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ctx->s_mask = s_mask;
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if (!type_change) {
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if (!type_change && fold_affected_mask(ctx, op, s_mask & ~s_mask_old)) {
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ctx->a_mask = s_mask & ~s_mask_old;
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return true;
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}
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}
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return fold_masks(ctx, op);
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return fold_masks(ctx, op);
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@ -1819,8 +1832,8 @@ static bool fold_extu(OptContext *ctx, TCGOp *op)
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ctx->z_mask = z_mask;
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ctx->z_mask = z_mask;
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ctx->s_mask = smask_from_zmask(z_mask);
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ctx->s_mask = smask_from_zmask(z_mask);
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if (!type_change) {
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if (!type_change && fold_affected_mask(ctx, op, z_mask_old ^ z_mask)) {
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ctx->a_mask = z_mask_old ^ z_mask;
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return true;
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}
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}
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return fold_masks(ctx, op);
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return fold_masks(ctx, op);
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}
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}
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@ -2482,8 +2495,8 @@ static bool fold_sextract(OptContext *ctx, TCGOp *op)
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s_mask |= MAKE_64BIT_MASK(len, 64 - len);
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s_mask |= MAKE_64BIT_MASK(len, 64 - len);
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ctx->s_mask = s_mask;
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ctx->s_mask = s_mask;
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if (pos == 0) {
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if (pos == 0 && fold_affected_mask(ctx, op, s_mask & ~s_mask_old)) {
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ctx->a_mask = s_mask & ~s_mask_old;
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return true;
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}
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}
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return fold_masks(ctx, op);
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return fold_masks(ctx, op);
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@ -2843,7 +2856,6 @@ void tcg_optimize(TCGContext *s)
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}
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}
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/* Assume all bits affected, no bits known zero, no sign reps. */
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/* Assume all bits affected, no bits known zero, no sign reps. */
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ctx.a_mask = -1;
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ctx.z_mask = -1;
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ctx.z_mask = -1;
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ctx.s_mask = 0;
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ctx.s_mask = 0;
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