author | thartmann |
Fri, 20 Nov 2015 10:09:42 +0100 | |
changeset 34204 | 5ad1ba3afecc |
parent 34162 | 16b54851eaf6 |
child 46528 | cf0da758e7b5 |
permissions | -rw-r--r-- |
1 | 1 |
/* |
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* Copyright (c) 2007, 2014, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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*/ |
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||
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#include "precompiled.hpp" |
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#include "memory/allocation.inline.hpp" |
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#include "opto/connode.hpp" |
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#include "opto/vectornode.hpp" |
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//------------------------------VectorNode-------------------------------------- |
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||
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// Return the vector operator for the specified scalar operation |
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// and vector length. |
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int VectorNode::opcode(int sopc, BasicType bt) { |
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switch (sopc) { |
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case Op_AddI: |
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switch (bt) { |
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case T_BOOLEAN: |
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case T_BYTE: return Op_AddVB; |
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case T_CHAR: |
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case T_SHORT: return Op_AddVS; |
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case T_INT: return Op_AddVI; |
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} |
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ShouldNotReachHere(); |
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case Op_AddL: |
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assert(bt == T_LONG, "must be"); |
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return Op_AddVL; |
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case Op_AddF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_AddVF; |
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case Op_AddD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_AddVD; |
|
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case Op_SubI: |
|
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switch (bt) { |
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case T_BOOLEAN: |
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case T_BYTE: return Op_SubVB; |
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case T_CHAR: |
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case T_SHORT: return Op_SubVS; |
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case T_INT: return Op_SubVI; |
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} |
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ShouldNotReachHere(); |
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case Op_SubL: |
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assert(bt == T_LONG, "must be"); |
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return Op_SubVL; |
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case Op_SubF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_SubVF; |
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case Op_SubD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_SubVD; |
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case Op_MulI: |
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switch (bt) { |
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case T_BOOLEAN: |
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case T_BYTE: return 0; // Unimplemented |
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case T_CHAR: |
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case T_SHORT: return Op_MulVS; |
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case T_INT: return Op_MulVI; |
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} |
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ShouldNotReachHere(); |
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case Op_MulL: |
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assert(bt == T_LONG, "must be"); |
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return Op_MulVL; |
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case Op_MulF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_MulVF; |
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case Op_MulD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_MulVD; |
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case Op_CMoveD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_CMoveVD; |
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case Op_DivF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_DivVF; |
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case Op_DivD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_DivVD; |
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case Op_AbsF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_AbsVF; |
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case Op_AbsD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_AbsVD; |
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case Op_NegF: |
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assert(bt == T_FLOAT, "must be"); |
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return Op_NegVF; |
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case Op_NegD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_NegVD; |
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case Op_SqrtD: |
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assert(bt == T_DOUBLE, "must be"); |
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return Op_SqrtVD; |
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case Op_LShiftI: |
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switch (bt) { |
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case T_BOOLEAN: |
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case T_BYTE: return Op_LShiftVB; |
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case T_CHAR: |
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case T_SHORT: return Op_LShiftVS; |
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case T_INT: return Op_LShiftVI; |
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} |
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ShouldNotReachHere(); |
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case Op_LShiftL: |
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assert(bt == T_LONG, "must be"); |
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return Op_LShiftVL; |
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case Op_RShiftI: |
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switch (bt) { |
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case T_BOOLEAN:return Op_URShiftVB; // boolean is unsigned value |
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case T_CHAR: return Op_URShiftVS; // char is unsigned value |
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case T_BYTE: return Op_RShiftVB; |
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case T_SHORT: return Op_RShiftVS; |
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case T_INT: return Op_RShiftVI; |
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} |
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ShouldNotReachHere(); |
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case Op_RShiftL: |
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assert(bt == T_LONG, "must be"); |
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return Op_RShiftVL; |
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case Op_URShiftI: |
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switch (bt) { |
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case T_BOOLEAN:return Op_URShiftVB; |
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case T_CHAR: return Op_URShiftVS; |
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case T_BYTE: |
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case T_SHORT: return 0; // Vector logical right shift for signed short |
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// values produces incorrect Java result for |
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// negative data because java code should convert |
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// a short value into int value with sign |
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// extension before a shift. |
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case T_INT: return Op_URShiftVI; |
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} |
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ShouldNotReachHere(); |
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case Op_URShiftL: |
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assert(bt == T_LONG, "must be"); |
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return Op_URShiftVL; |
1 | 153 |
case Op_AndI: |
154 |
case Op_AndL: |
|
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return Op_AndV; |
|
156 |
case Op_OrI: |
|
157 |
case Op_OrL: |
|
158 |
return Op_OrV; |
|
159 |
case Op_XorI: |
|
160 |
case Op_XorL: |
|
161 |
return Op_XorV; |
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162 |
||
163 |
case Op_LoadB: |
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case Op_LoadUB: |
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case Op_LoadUS: |
1 | 166 |
case Op_LoadS: |
167 |
case Op_LoadI: |
|
168 |
case Op_LoadL: |
|
169 |
case Op_LoadF: |
|
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case Op_LoadD: |
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return Op_LoadVector; |
1 | 172 |
|
173 |
case Op_StoreB: |
|
174 |
case Op_StoreC: |
|
175 |
case Op_StoreI: |
|
176 |
case Op_StoreL: |
|
177 |
case Op_StoreF: |
|
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case Op_StoreD: |
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return Op_StoreVector; |
1 | 180 |
} |
181 |
return 0; // Unimplemented |
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182 |
} |
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183 |
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// Also used to check if the code generator |
185 |
// supports the vector operation. |
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bool VectorNode::implemented(int opc, uint vlen, BasicType bt) { |
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if (is_java_primitive(bt) && |
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(vlen > 1) && is_power_of_2(vlen) && |
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Matcher::vector_size_supported(bt, vlen)) { |
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int vopc = VectorNode::opcode(opc, bt); |
34162 | 191 |
return vopc > 0 && Matcher::match_rule_supported_vector(vopc, vlen); |
1 | 192 |
} |
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return false; |
1 | 194 |
} |
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bool VectorNode::is_shift(Node* n) { |
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switch (n->Opcode()) { |
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case Op_LShiftI: |
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case Op_LShiftL: |
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case Op_RShiftI: |
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case Op_RShiftL: |
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case Op_URShiftI: |
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case Op_URShiftL: |
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return true; |
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205 |
} |
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return false; |
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207 |
} |
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|
13488 | 209 |
// Check if input is loop invariant vector. |
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bool VectorNode::is_invariant_vector(Node* n) { |
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// Only Replicate vector nodes are loop invariant for now. |
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switch (n->Opcode()) { |
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case Op_ReplicateB: |
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case Op_ReplicateS: |
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case Op_ReplicateI: |
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case Op_ReplicateL: |
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217 |
case Op_ReplicateF: |
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218 |
case Op_ReplicateD: |
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219 |
return true; |
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220 |
} |
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|
221 |
return false; |
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|
222 |
} |
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|
223 |
|
13490
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224 |
// [Start, end) half-open range defining which operands are vectors |
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|
225 |
void VectorNode::vector_operands(Node* n, uint* start, uint* end) { |
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|
226 |
switch (n->Opcode()) { |
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|
227 |
case Op_LoadB: case Op_LoadUB: |
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|
228 |
case Op_LoadS: case Op_LoadUS: |
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229 |
case Op_LoadI: case Op_LoadL: |
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|
230 |
case Op_LoadF: case Op_LoadD: |
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|
231 |
case Op_LoadP: case Op_LoadN: |
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|
232 |
*start = 0; |
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|
233 |
*end = 0; // no vector operands |
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|
234 |
break; |
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|
235 |
case Op_StoreB: case Op_StoreC: |
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|
236 |
case Op_StoreI: case Op_StoreL: |
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|
237 |
case Op_StoreF: case Op_StoreD: |
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|
238 |
case Op_StoreP: case Op_StoreN: |
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|
239 |
*start = MemNode::ValueIn; |
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|
240 |
*end = MemNode::ValueIn + 1; // 1 vector operand |
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|
241 |
break; |
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|
242 |
case Op_LShiftI: case Op_LShiftL: |
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|
243 |
case Op_RShiftI: case Op_RShiftL: |
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244 |
case Op_URShiftI: case Op_URShiftL: |
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245 |
*start = 1; |
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|
246 |
*end = 2; // 1 vector operand |
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|
247 |
break; |
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|
248 |
case Op_AddI: case Op_AddL: case Op_AddF: case Op_AddD: |
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|
249 |
case Op_SubI: case Op_SubL: case Op_SubF: case Op_SubD: |
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|
250 |
case Op_MulI: case Op_MulL: case Op_MulF: case Op_MulD: |
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|
251 |
case Op_DivF: case Op_DivD: |
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|
252 |
case Op_AndI: case Op_AndL: |
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|
253 |
case Op_OrI: case Op_OrL: |
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|
254 |
case Op_XorI: case Op_XorL: |
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|
255 |
*start = 1; |
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|
256 |
*end = 3; // 2 vector operands |
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|
257 |
break; |
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|
258 |
case Op_CMoveI: case Op_CMoveL: case Op_CMoveF: case Op_CMoveD: |
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|
259 |
*start = 2; |
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|
260 |
*end = n->req(); |
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|
261 |
break; |
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|
262 |
default: |
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|
263 |
*start = 1; |
d19348851d2e
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|
264 |
*end = n->req(); // default is all operands |
d19348851d2e
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|
265 |
} |
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|
266 |
} |
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|
267 |
|
1 | 268 |
// Return the vector version of a scalar operation node. |
25930 | 269 |
VectorNode* VectorNode::make(int opc, Node* n1, Node* n2, uint vlen, BasicType bt) { |
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270 |
const TypeVect* vt = TypeVect::make(bt, vlen); |
13490
d19348851d2e
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|
271 |
int vopc = VectorNode::opcode(opc, bt); |
13930 | 272 |
// This method should not be called for unimplemented vectors. |
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|
273 |
guarantee(vopc > 0, "Vector for '%s' is not implemented", NodeClassNames[opc]); |
1 | 274 |
switch (vopc) { |
24923
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|
275 |
case Op_AddVB: return new AddVBNode(n1, n2, vt); |
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|
276 |
case Op_AddVS: return new AddVSNode(n1, n2, vt); |
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|
277 |
case Op_AddVI: return new AddVINode(n1, n2, vt); |
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|
278 |
case Op_AddVL: return new AddVLNode(n1, n2, vt); |
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|
279 |
case Op_AddVF: return new AddVFNode(n1, n2, vt); |
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|
280 |
case Op_AddVD: return new AddVDNode(n1, n2, vt); |
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|
281 |
|
24923
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|
282 |
case Op_SubVB: return new SubVBNode(n1, n2, vt); |
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|
283 |
case Op_SubVS: return new SubVSNode(n1, n2, vt); |
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|
284 |
case Op_SubVI: return new SubVINode(n1, n2, vt); |
9631f7d691dc
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|
285 |
case Op_SubVL: return new SubVLNode(n1, n2, vt); |
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|
286 |
case Op_SubVF: return new SubVFNode(n1, n2, vt); |
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|
287 |
case Op_SubVD: return new SubVDNode(n1, n2, vt); |
1 | 288 |
|
24923
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|
289 |
case Op_MulVS: return new MulVSNode(n1, n2, vt); |
9631f7d691dc
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|
290 |
case Op_MulVI: return new MulVINode(n1, n2, vt); |
30624 | 291 |
case Op_MulVL: return new MulVLNode(n1, n2, vt); |
24923
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|
292 |
case Op_MulVF: return new MulVFNode(n1, n2, vt); |
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|
293 |
case Op_MulVD: return new MulVDNode(n1, n2, vt); |
13104
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|
294 |
|
24923
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|
295 |
case Op_DivVF: return new DivVFNode(n1, n2, vt); |
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|
296 |
case Op_DivVD: return new DivVDNode(n1, n2, vt); |
13104
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|
297 |
|
33088
34fe49ecee13
8138583: aarch64: add support for vectorizing fabs/fneg
enevill
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|
298 |
case Op_AbsVF: return new AbsVFNode(n1, vt); |
34fe49ecee13
8138583: aarch64: add support for vectorizing fabs/fneg
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|
299 |
case Op_AbsVD: return new AbsVDNode(n1, vt); |
34fe49ecee13
8138583: aarch64: add support for vectorizing fabs/fneg
enevill
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|
300 |
|
34fe49ecee13
8138583: aarch64: add support for vectorizing fabs/fneg
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|
301 |
case Op_NegVF: return new NegVFNode(n1, vt); |
34fe49ecee13
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|
302 |
case Op_NegVD: return new NegVDNode(n1, vt); |
34fe49ecee13
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enevill
parents:
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diff
changeset
|
303 |
|
32723
56534fb3d71a
8135028: support for vectorizing double precision sqrt
mcberg
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31035
diff
changeset
|
304 |
// Currently only supports double precision sqrt |
56534fb3d71a
8135028: support for vectorizing double precision sqrt
mcberg
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diff
changeset
|
305 |
case Op_SqrtVD: return new SqrtVDNode(n1, vt); |
56534fb3d71a
8135028: support for vectorizing double precision sqrt
mcberg
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diff
changeset
|
306 |
|
24923
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changeset
|
307 |
case Op_LShiftVB: return new LShiftVBNode(n1, n2, vt); |
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|
308 |
case Op_LShiftVS: return new LShiftVSNode(n1, n2, vt); |
9631f7d691dc
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|
309 |
case Op_LShiftVI: return new LShiftVINode(n1, n2, vt); |
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|
310 |
case Op_LShiftVL: return new LShiftVLNode(n1, n2, vt); |
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|
311 |
|
24923
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|
312 |
case Op_RShiftVB: return new RShiftVBNode(n1, n2, vt); |
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|
313 |
case Op_RShiftVS: return new RShiftVSNode(n1, n2, vt); |
9631f7d691dc
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|
314 |
case Op_RShiftVI: return new RShiftVINode(n1, n2, vt); |
9631f7d691dc
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changeset
|
315 |
case Op_RShiftVL: return new RShiftVLNode(n1, n2, vt); |
13485
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6340864: Implement vectorization optimizations in hotspot-server
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|
316 |
|
24923
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changeset
|
317 |
case Op_URShiftVB: return new URShiftVBNode(n1, n2, vt); |
9631f7d691dc
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changeset
|
318 |
case Op_URShiftVS: return new URShiftVSNode(n1, n2, vt); |
9631f7d691dc
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changeset
|
319 |
case Op_URShiftVI: return new URShiftVINode(n1, n2, vt); |
9631f7d691dc
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changeset
|
320 |
case Op_URShiftVL: return new URShiftVLNode(n1, n2, vt); |
1 | 321 |
|
24923
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|
322 |
case Op_AndV: return new AndVNode(n1, n2, vt); |
9631f7d691dc
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changeset
|
323 |
case Op_OrV: return new OrVNode (n1, n2, vt); |
9631f7d691dc
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changeset
|
324 |
case Op_XorV: return new XorVNode(n1, n2, vt); |
13104
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|
325 |
} |
33105
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|
326 |
fatal("Missed vector creation for '%s'", NodeClassNames[vopc]); |
13104
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changeset
|
327 |
return NULL; |
1 | 328 |
|
13104
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|
329 |
} |
1 | 330 |
|
13104
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7119644: Increase superword's vector size up to 256 bits
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changeset
|
331 |
// Scalar promotion |
25930 | 332 |
VectorNode* VectorNode::scalar2vector(Node* s, uint vlen, const Type* opd_t) { |
13104
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7119644: Increase superword's vector size up to 256 bits
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changeset
|
333 |
BasicType bt = opd_t->array_element_basic_type(); |
657b387034fb
7119644: Increase superword's vector size up to 256 bits
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changeset
|
334 |
const TypeVect* vt = opd_t->singleton() ? TypeVect::make(opd_t, vlen) |
657b387034fb
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335 |
: TypeVect::make(bt, vlen); |
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|
336 |
switch (bt) { |
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|
337 |
case T_BOOLEAN: |
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|
338 |
case T_BYTE: |
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|
339 |
return new ReplicateBNode(s, vt); |
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|
340 |
case T_CHAR: |
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|
341 |
case T_SHORT: |
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|
342 |
return new ReplicateSNode(s, vt); |
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|
343 |
case T_INT: |
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|
344 |
return new ReplicateINode(s, vt); |
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|
345 |
case T_LONG: |
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|
346 |
return new ReplicateLNode(s, vt); |
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|
347 |
case T_FLOAT: |
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|
348 |
return new ReplicateFNode(s, vt); |
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|
349 |
case T_DOUBLE: |
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|
350 |
return new ReplicateDNode(s, vt); |
1 | 351 |
} |
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|
352 |
fatal("Type '%s' is not supported for vectors", type2name(bt)); |
13930 | 353 |
return NULL; |
354 |
} |
|
355 |
||
25930 | 356 |
VectorNode* VectorNode::shift_count(Node* shift, Node* cnt, uint vlen, BasicType bt) { |
13930 | 357 |
assert(VectorNode::is_shift(shift) && !cnt->is_Con(), "only variable shift count"); |
358 |
// Match shift count type with shift vector type. |
|
359 |
const TypeVect* vt = TypeVect::make(bt, vlen); |
|
360 |
switch (shift->Opcode()) { |
|
361 |
case Op_LShiftI: |
|
362 |
case Op_LShiftL: |
|
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|
363 |
return new LShiftCntVNode(cnt, vt); |
13930 | 364 |
case Op_RShiftI: |
365 |
case Op_RShiftL: |
|
366 |
case Op_URShiftI: |
|
367 |
case Op_URShiftL: |
|
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|
368 |
return new RShiftCntVNode(cnt, vt); |
13930 | 369 |
} |
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|
370 |
fatal("Missed vector creation for '%s'", NodeClassNames[shift->Opcode()]); |
1 | 371 |
return NULL; |
372 |
} |
|
373 |
||
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|
374 |
// Return initial Pack node. Additional operands added with add_opd() calls. |
25930 | 375 |
PackNode* PackNode::make(Node* s, uint vlen, BasicType bt) { |
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|
376 |
const TypeVect* vt = TypeVect::make(bt, vlen); |
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|
377 |
switch (bt) { |
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|
378 |
case T_BOOLEAN: |
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|
379 |
case T_BYTE: |
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|
380 |
return new PackBNode(s, vt); |
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|
381 |
case T_CHAR: |
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|
382 |
case T_SHORT: |
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|
383 |
return new PackSNode(s, vt); |
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|
384 |
case T_INT: |
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|
385 |
return new PackINode(s, vt); |
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|
386 |
case T_LONG: |
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|
387 |
return new PackLNode(s, vt); |
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|
388 |
case T_FLOAT: |
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|
389 |
return new PackFNode(s, vt); |
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|
390 |
case T_DOUBLE: |
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|
391 |
return new PackDNode(s, vt); |
1 | 392 |
} |
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|
393 |
fatal("Type '%s' is not supported for vectors", type2name(bt)); |
1 | 394 |
return NULL; |
395 |
} |
|
396 |
||
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|
397 |
// Create a binary tree form for Packs. [lo, hi) (half-open) range |
25930 | 398 |
PackNode* PackNode::binary_tree_pack(int lo, int hi) { |
13104
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|
399 |
int ct = hi - lo; |
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|
400 |
assert(is_power_of_2(ct), "power of 2"); |
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|
401 |
if (ct == 2) { |
25930 | 402 |
PackNode* pk = PackNode::make(in(lo), 2, vect_type()->element_basic_type()); |
13490
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changeset
|
403 |
pk->add_opd(in(lo+1)); |
13104
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|
404 |
return pk; |
1 | 405 |
|
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|
406 |
} else { |
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changeset
|
407 |
int mid = lo + ct/2; |
25930 | 408 |
PackNode* n1 = binary_tree_pack(lo, mid); |
409 |
PackNode* n2 = binary_tree_pack(mid, hi ); |
|
1 | 410 |
|
13490
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changeset
|
411 |
BasicType bt = n1->vect_type()->element_basic_type(); |
d19348851d2e
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changeset
|
412 |
assert(bt == n2->vect_type()->element_basic_type(), "should be the same"); |
13104
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changeset
|
413 |
switch (bt) { |
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changeset
|
414 |
case T_BOOLEAN: |
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changeset
|
415 |
case T_BYTE: |
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changeset
|
416 |
return new PackSNode(n1, n2, TypeVect::make(T_SHORT, 2)); |
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changeset
|
417 |
case T_CHAR: |
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changeset
|
418 |
case T_SHORT: |
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changeset
|
419 |
return new PackINode(n1, n2, TypeVect::make(T_INT, 2)); |
13104
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|
420 |
case T_INT: |
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changeset
|
421 |
return new PackLNode(n1, n2, TypeVect::make(T_LONG, 2)); |
13104
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|
422 |
case T_LONG: |
24923
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changeset
|
423 |
return new Pack2LNode(n1, n2, TypeVect::make(T_LONG, 2)); |
13104
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|
424 |
case T_FLOAT: |
24923
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diff
changeset
|
425 |
return new PackDNode(n1, n2, TypeVect::make(T_DOUBLE, 2)); |
13104
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changeset
|
426 |
case T_DOUBLE: |
24923
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changeset
|
427 |
return new Pack2DNode(n1, n2, TypeVect::make(T_DOUBLE, 2)); |
13104
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changeset
|
428 |
} |
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parents:
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diff
changeset
|
429 |
fatal("Type '%s' is not supported for vectors", type2name(bt)); |
1 | 430 |
} |
431 |
return NULL; |
|
432 |
} |
|
433 |
||
13104
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changeset
|
434 |
// Return the vector version of a scalar load node. |
25930 | 435 |
LoadVectorNode* LoadVectorNode::make(int opc, Node* ctl, Node* mem, |
31035
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roland
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30624
diff
changeset
|
436 |
Node* adr, const TypePtr* atyp, |
0f0743952c41
8077504: Unsafe load can loose control dependency and cause crash
roland
parents:
30624
diff
changeset
|
437 |
uint vlen, BasicType bt, |
0f0743952c41
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roland
parents:
30624
diff
changeset
|
438 |
ControlDependency control_dependency) { |
13104
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changeset
|
439 |
const TypeVect* vt = TypeVect::make(bt, vlen); |
31035
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8077504: Unsafe load can loose control dependency and cause crash
roland
parents:
30624
diff
changeset
|
440 |
return new LoadVectorNode(ctl, mem, adr, atyp, vt, control_dependency); |
13104
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diff
changeset
|
441 |
} |
657b387034fb
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diff
changeset
|
442 |
|
657b387034fb
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diff
changeset
|
443 |
// Return the vector version of a scalar store node. |
25930 | 444 |
StoreVectorNode* StoreVectorNode::make(int opc, Node* ctl, Node* mem, |
13104
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changeset
|
445 |
Node* adr, const TypePtr* atyp, Node* val, |
657b387034fb
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diff
changeset
|
446 |
uint vlen) { |
24923
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diff
changeset
|
447 |
return new StoreVectorNode(ctl, mem, adr, atyp, val); |
13104
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diff
changeset
|
448 |
} |
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changeset
|
449 |
|
1 | 450 |
// Extract a scalar element of vector. |
25930 | 451 |
Node* ExtractNode::make(Node* v, uint position, BasicType bt) { |
13104
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kvn
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diff
changeset
|
452 |
assert((int)position < Matcher::max_vector_size(bt), "pos in range"); |
25930 | 453 |
ConINode* pos = ConINode::make((int)position); |
1 | 454 |
switch (bt) { |
455 |
case T_BOOLEAN: |
|
24923
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thartmann
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diff
changeset
|
456 |
return new ExtractUBNode(v, pos); |
1 | 457 |
case T_BYTE: |
24923
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thartmann
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diff
changeset
|
458 |
return new ExtractBNode(v, pos); |
1 | 459 |
case T_CHAR: |
24923
9631f7d691dc
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thartmann
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diff
changeset
|
460 |
return new ExtractCNode(v, pos); |
1 | 461 |
case T_SHORT: |
24923
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thartmann
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14131
diff
changeset
|
462 |
return new ExtractSNode(v, pos); |
1 | 463 |
case T_INT: |
24923
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thartmann
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14131
diff
changeset
|
464 |
return new ExtractINode(v, pos); |
1 | 465 |
case T_LONG: |
24923
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thartmann
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diff
changeset
|
466 |
return new ExtractLNode(v, pos); |
1 | 467 |
case T_FLOAT: |
24923
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thartmann
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diff
changeset
|
468 |
return new ExtractFNode(v, pos); |
1 | 469 |
case T_DOUBLE: |
24923
9631f7d691dc
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thartmann
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14131
diff
changeset
|
470 |
return new ExtractDNode(v, pos); |
1 | 471 |
} |
33105
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david
parents:
32723
diff
changeset
|
472 |
fatal("Type '%s' is not supported for vectors", type2name(bt)); |
1 | 473 |
return NULL; |
474 |
} |
|
13104
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kvn
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changeset
|
475 |
|
30211 | 476 |
int ReductionNode::opcode(int opc, BasicType bt) { |
477 |
int vopc = opc; |
|
478 |
switch (opc) { |
|
479 |
case Op_AddI: |
|
480 |
assert(bt == T_INT, "must be"); |
|
481 |
vopc = Op_AddReductionVI; |
|
482 |
break; |
|
483 |
case Op_AddL: |
|
484 |
assert(bt == T_LONG, "must be"); |
|
485 |
vopc = Op_AddReductionVL; |
|
486 |
break; |
|
487 |
case Op_AddF: |
|
488 |
assert(bt == T_FLOAT, "must be"); |
|
489 |
vopc = Op_AddReductionVF; |
|
490 |
break; |
|
491 |
case Op_AddD: |
|
492 |
assert(bt == T_DOUBLE, "must be"); |
|
493 |
vopc = Op_AddReductionVD; |
|
494 |
break; |
|
495 |
case Op_MulI: |
|
496 |
assert(bt == T_INT, "must be"); |
|
497 |
vopc = Op_MulReductionVI; |
|
498 |
break; |
|
30624 | 499 |
case Op_MulL: |
500 |
assert(bt == T_LONG, "must be"); |
|
501 |
vopc = Op_MulReductionVL; |
|
502 |
break; |
|
30211 | 503 |
case Op_MulF: |
504 |
assert(bt == T_FLOAT, "must be"); |
|
505 |
vopc = Op_MulReductionVF; |
|
506 |
break; |
|
507 |
case Op_MulD: |
|
508 |
assert(bt == T_DOUBLE, "must be"); |
|
509 |
vopc = Op_MulReductionVD; |
|
510 |
break; |
|
511 |
// TODO: add MulL for targets that support it |
|
512 |
default: |
|
513 |
break; |
|
514 |
} |
|
515 |
return vopc; |
|
516 |
} |
|
517 |
||
518 |
// Return the appropriate reduction node. |
|
519 |
ReductionNode* ReductionNode::make(int opc, Node *ctrl, Node* n1, Node* n2, BasicType bt) { |
|
520 |
||
521 |
int vopc = opcode(opc, bt); |
|
522 |
||
523 |
// This method should not be called for unimplemented vectors. |
|
33105
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parents:
32723
diff
changeset
|
524 |
guarantee(vopc != opc, "Vector for '%s' is not implemented", NodeClassNames[opc]); |
30211 | 525 |
|
526 |
switch (vopc) { |
|
527 |
case Op_AddReductionVI: return new AddReductionVINode(ctrl, n1, n2); |
|
528 |
case Op_AddReductionVL: return new AddReductionVLNode(ctrl, n1, n2); |
|
529 |
case Op_AddReductionVF: return new AddReductionVFNode(ctrl, n1, n2); |
|
530 |
case Op_AddReductionVD: return new AddReductionVDNode(ctrl, n1, n2); |
|
531 |
case Op_MulReductionVI: return new MulReductionVINode(ctrl, n1, n2); |
|
30624 | 532 |
case Op_MulReductionVL: return new MulReductionVLNode(ctrl, n1, n2); |
30211 | 533 |
case Op_MulReductionVF: return new MulReductionVFNode(ctrl, n1, n2); |
534 |
case Op_MulReductionVD: return new MulReductionVDNode(ctrl, n1, n2); |
|
535 |
} |
|
33105
294e48b4f704
8080775: Better argument formatting for assert() and friends
david
parents:
32723
diff
changeset
|
536 |
fatal("Missed vector creation for '%s'", NodeClassNames[vopc]); |
30211 | 537 |
return NULL; |
538 |
} |
|
539 |
||
540 |
bool ReductionNode::implemented(int opc, uint vlen, BasicType bt) { |
|
541 |
if (is_java_primitive(bt) && |
|
542 |
(vlen > 1) && is_power_of_2(vlen) && |
|
543 |
Matcher::vector_size_supported(bt, vlen)) { |
|
544 |
int vopc = ReductionNode::opcode(opc, bt); |
|
545 |
return vopc != opc && Matcher::match_rule_supported(vopc); |
|
546 |
} |
|
547 |
return false; |
|
548 |
} |
|
549 |