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540 lines
15 KiB
540 lines
15 KiB
# Copyright (C) 2007 The Android Open Source Project |
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# |
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# Licensed under the Apache License, Version 2.0 (the "License"); |
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# you may not use this file except in compliance with the License. |
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# You may obtain a copy of the License at |
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# |
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# http://www.apache.org/licenses/LICENSE-2.0 |
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# |
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# Unless required by applicable law or agreed to in writing, software |
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# distributed under the License is distributed on an "AS IS" BASIS, |
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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# See the License for the specific language governing permissions and |
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# limitations under the License. |
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# |
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# Awk helper script for opcode-gen. |
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# |
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# |
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# Initialization. |
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# |
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BEGIN { |
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MAX_OPCODE = 65535; |
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MAX_PACKED_OPCODE = 511; |
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MAX_PACKED_OPCODE = 255; # TODO: Not for long! |
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initIndexTypes(); |
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initFlags(); |
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if (readBytecodes()) exit 1; |
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deriveOpcodeChains(); |
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createPackedTables(); |
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consumeUntil = ""; |
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emission = ""; |
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} |
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# |
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# General control (must appear above directive handlers). |
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# |
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# Clear out the preexisting output within a directive section. |
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consumeUntil != "" { |
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if (index($0, consumeUntil) != 0) { |
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consumeUntil = ""; |
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print; |
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} |
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next; |
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} |
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# Detect directives. |
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/BEGIN\([a-z-]*\)/ { |
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i = match($0, /BEGIN\([a-z-]*\)/); |
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emission = substr($0, i + 6, RLENGTH - 7); |
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consumeUntil = "END(" emission ")"; |
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emissionHandled = 0; |
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} |
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# Most lines just get copied from the source as-is, including the start |
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# comment for directives. |
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{ |
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print; |
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} |
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# |
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# Handlers for all of the directives. |
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# |
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emission == "opcodes" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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printf(" public static final int %s = 0x%s;\n", |
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constName[i], hex[i]); |
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} |
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} |
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emission == "first-opcodes" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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if (isFirst[i] == "true") { |
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printf(" // Opcodes.%s\n", constName[i]); |
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} |
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} |
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} |
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emission == "dops" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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nextOp = nextOpcode[i]; |
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nextOp = (nextOp == -1) ? "NO_NEXT" : constName[nextOp]; |
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printf(" public static final Dop %s =\n" \ |
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" new Dop(Opcodes.%s, Opcodes.%s,\n" \ |
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" Opcodes.%s, Form%s.THE_ONE, %s);\n\n", |
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constName[i], constName[i], family[i], nextOp, format[i], |
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hasResult[i]); |
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} |
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} |
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emission == "opcode-info-defs" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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itype = toupper(indexType[i]); |
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gsub(/-/, "_", itype); |
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printf(" public static final Info %s =\n" \ |
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" new Info(Opcodes.%s, \"%s\",\n" \ |
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" InstructionCodec.FORMAT_%s, IndexType.%s);\n\n", \ |
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constName[i], constName[i], name[i], toupper(format[i]), itype); |
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} |
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} |
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emission == "dops-init" || emission == "opcode-info-init" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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printf(" set(%s);\n", constName[i]); |
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} |
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} |
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emission == "libcore-opcodes" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i) || isOptimized(i)) continue; |
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printf(" int OP_%-28s = 0x%04x;\n", constName[i], i); |
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} |
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} |
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emission == "libcore-maximum-values" { |
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emissionHandled = 1; |
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printf(" MAXIMUM_VALUE = %d;\n", MAX_OPCODE); |
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printf(" MAXIMUM_PACKED_VALUE = %d;\n", MAX_PACKED_OPCODE); |
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} |
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emission == "libdex-maximum-values" { |
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emissionHandled = 1; |
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printf("#define kMaxOpcodeValue 0x%x\n", MAX_OPCODE); |
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printf("#define kNumPackedOpcodes 0x%x\n", MAX_PACKED_OPCODE + 1); |
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} |
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emission == "libdex-opcode-enum" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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printf(" OP_%-28s = 0x%02x,\n", packedConstName[i], i); |
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} |
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} |
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emission == "libdex-goto-table" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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content = sprintf(" H(OP_%s),", packedConstName[i]); |
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printf("%-78s\\\n", content); |
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} |
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} |
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emission == "libdex-opcode-names" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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printf(" \"%s\",\n", packedName[i]); |
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} |
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} |
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emission == "libdex-widths" { |
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emissionHandled = 1; |
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col = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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value = sprintf("%d,", packedWidth[i]); |
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col = colPrint(value, (i == MAX_PACKED_OPCODE), col, 16, 2, " "); |
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} |
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} |
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emission == "libdex-flags" { |
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emissionHandled = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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value = flagsToC(packedFlags[i]); |
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printf(" %s,\n", value); |
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} |
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} |
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emission == "libdex-formats" { |
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emissionHandled = 1; |
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col = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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value = sprintf("kFmt%s,", packedFormat[i]); |
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col = colPrint(value, (i == MAX_PACKED_OPCODE), col, 7, 9, " "); |
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} |
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} |
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emission == "libdex-index-types" { |
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emissionHandled = 1; |
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col = 1; |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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value = sprintf("%s,", indexTypeValues[packedIndexType[i]]); |
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col = colPrint(value, (i == MAX_PACKED_OPCODE), col, 3, 19, " "); |
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} |
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} |
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# Handle the end of directive processing (must appear after the directive |
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# clauses). |
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emission != "" { |
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if (!emissionHandled) { |
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printf("WARNING: unknown tag \"%s\"\n", emission) >"/dev/stderr"; |
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consumeUntil = ""; |
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} |
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emission = ""; |
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} |
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# |
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# Helper functions. |
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# |
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# Helper to print out an element in a multi-column fashion. It returns |
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# the (one-based) column number that the next element will be printed |
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# in. |
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function colPrint(value, isLast, col, numCols, colWidth, linePrefix) { |
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isLast = (isLast || (col == numCols)); |
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printf("%s%-*s%s", |
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(col == 1) ? linePrefix : " ", |
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isLast ? 1 : colWidth, value, |
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isLast ? "\n" : ""); |
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return (col % numCols) + 1; |
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} |
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# Read the bytecode description file. |
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function readBytecodes(i, parts, line, cmd, status, count) { |
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# locals: parts, line, cmd, status, count |
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for (;;) { |
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# Read a line. |
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status = getline line <bytecodeFile; |
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if (status == 0) break; |
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if (status < 0) { |
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print "trouble reading bytecode file"; |
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exit 1; |
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} |
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# Clean up the line and extract the command. |
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gsub(/ */, " ", line); |
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sub(/ *#.*$/, "", line); |
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sub(/ $/, "", line); |
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sub(/^ /, "", line); |
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count = split(line, parts); |
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if (count == 0) continue; # Blank or comment line. |
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cmd = parts[1]; |
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sub(/^[a-z][a-z]* */, "", line); # Remove the command from line. |
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if (cmd == "op") { |
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status = defineOpcode(line); |
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} else if (cmd == "format") { |
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status = defineFormat(line); |
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} else { |
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status = -1; |
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} |
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if (status != 0) { |
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printf("syntax error on line: %s\n", line) >"/dev/stderr"; |
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return 1; |
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} |
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} |
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return 0; |
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} |
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# Define an opcode. |
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function defineOpcode(line, count, parts, idx) { |
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# locals: count, parts, idx |
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count = split(line, parts); |
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if (count != 6) return -1; |
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idx = parseHex(parts[1]); |
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if (idx < 0) return -1; |
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# Extract directly specified values from the line. |
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hex[idx] = parts[1]; |
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name[idx] = parts[2]; |
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format[idx] = parts[3]; |
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hasResult[idx] = (parts[4] == "n") ? "false" : "true"; |
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indexType[idx] = parts[5]; |
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flags[idx] = parts[6]; |
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# Calculate derived values. |
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constName[idx] = toupper(name[idx]); |
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gsub("[/-]", "_", constName[idx]); # Dash and slash become underscore. |
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gsub("[+^]", "", constName[idx]); # Plus and caret are removed. |
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split(name[idx], parts, "/"); |
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family[idx] = toupper(parts[1]); |
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gsub("-", "_", family[idx]); # Dash becomes underscore. |
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gsub("[+^]", "", family[idx]); # Plus and caret are removed. |
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split(format[idx], parts, ""); # Width is the first format char. |
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width[idx] = parts[1]; |
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# This association is used when computing "next" opcodes. |
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familyFormat[family[idx],format[idx]] = idx; |
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# Verify values. |
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if (nextFormat[format[idx]] == "") { |
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printf("unknown format: %s\n", format[idx]) >"/dev/stderr"; |
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return 1; |
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} |
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if (indexTypeValues[indexType[idx]] == "") { |
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printf("unknown index type: %s\n", indexType[idx]) >"/dev/stderr"; |
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return 1; |
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} |
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if (flagsToC(flags[idx]) == "") { |
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printf("bogus flags: %s\n", flags[idx]) >"/dev/stderr"; |
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return 1; |
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} |
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return 0; |
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} |
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# Define a format family. |
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function defineFormat(line, count, parts, i) { |
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# locals: count, parts, i |
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count = split(line, parts); |
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if (count < 1) return -1; |
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formats[parts[1]] = line; |
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parts[count + 1] = "none"; |
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for (i = 1; i <= count; i++) { |
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nextFormat[parts[i]] = parts[i + 1]; |
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} |
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return 0; |
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} |
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# Produce the nextOpcode and isFirst arrays. The former indicates, for |
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# each opcode, which one should be tried next when doing instruction |
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# fitting. The latter indicates which opcodes are at the head of an |
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# instruction fitting chain. |
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function deriveOpcodeChains(i, op) { |
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# locals: i, op |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i)) continue; |
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isFirst[i] = "true"; |
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} |
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for (i = 0; i <= MAX_OPCODE; i++) { |
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if (isUnused(i)) continue; |
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op = findNextOpcode(i); |
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nextOpcode[i] = op; |
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if (op != -1) { |
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isFirst[op] = "false"; |
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} |
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} |
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} |
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# Given an opcode by index, find the next opcode in the same family |
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# (that is, with the same base name) to try when matching instructions |
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# to opcodes. This simply walks the nextFormat chain looking for a |
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# match. This returns the index of the matching opcode or -1 if there |
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# is none. |
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function findNextOpcode(idx, fam, fmt, result) { |
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# locals: fam, fmt, result |
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fam = family[idx]; |
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fmt = format[idx]; |
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# Not every opcode has a version with every possible format, so |
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# we have to iterate down the chain until we find one or run out of |
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# formats to try. |
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for (fmt = nextFormat[format[idx]]; fmt != "none"; fmt = nextFormat[fmt]) { |
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result = familyFormat[fam,fmt]; |
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if (result != "") { |
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return result; |
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} |
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} |
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return -1; |
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} |
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# Construct the tables of info indexed by packed opcode. The packed opcode |
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# values are in the range 0-0x1ff, whereas the unpacked opcodes sparsely |
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# span the range 0-0xffff. |
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function createPackedTables(i, op) { |
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# locals: i, op |
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for (i = 0; i <= MAX_PACKED_OPCODE; i++) { |
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op = unpackOpcode(i); |
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if (isUnused(op)) { |
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packedName[i] = unusedName(op); |
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packedConstName[i] = unusedConstName(op); |
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packedFormat[i] = "00x"; |
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packedFlags[i] = 0; |
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packedWidth[i] = 0; |
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packedIndexType[i] = "unknown"; |
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} else { |
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packedName[i] = name[op]; |
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packedConstName[i] = constName[op]; |
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packedFormat[i] = format[op]; |
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packedFlags[i] = flags[op]; |
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packedWidth[i] = width[op]; |
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packedIndexType[i] = indexType[op]; |
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} |
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} |
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} |
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# Given a packed opcode, returns the raw (unpacked) opcode value. |
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function unpackOpcode(idx) { |
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# Note: This must be the inverse of the corresponding code in |
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# libdex/DexOpcodes.h. |
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if (idx <= 255) { |
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return idx; |
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} else { |
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idx -= 256; |
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return (idx * 256) + 255; |
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} |
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} |
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# Returns the "unused" name of the given opcode (by index). |
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# That is, this is the human-oriented name to use for an opcode |
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# definition in cases |
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# where the opcode isn't used. |
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function unusedName(idx) { |
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if (idx <= 255) { |
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return sprintf("unused-%02x", idx); |
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} else { |
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return sprintf("unused-%04x", idx); |
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} |
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} |
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# Returns the "unused" constant name of the given opcode (by index). |
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# That is, this is the name to use for a constant definition in cases |
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# where the opcode isn't used. |
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function unusedConstName(idx) { |
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if (idx <= 255) { |
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return toupper(sprintf("UNUSED_%02x", idx)); |
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} else { |
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return toupper(sprintf("UNUSED_%04x", idx)); |
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} |
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} |
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# Convert a hex value to an int. |
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function parseHex(hex, result, chars, count, c, i) { |
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# locals: result, chars, count, c, i |
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hex = tolower(hex); |
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count = split(hex, chars, ""); |
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result = 0; |
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for (i = 1; i <= count; i++) { |
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c = index("0123456789abcdef", chars[i]); |
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if (c == 0) { |
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printf("bogus hex value: %s\n", hex) >"/dev/stderr"; |
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return -1; |
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} |
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result = (result * 16) + c - 1; |
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} |
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return result; |
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} |
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# Initialize the indexTypes data. |
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function initIndexTypes() { |
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indexTypeValues["unknown"] = "kIndexUnknown"; |
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indexTypeValues["none"] = "kIndexNone"; |
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indexTypeValues["varies"] = "kIndexVaries"; |
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indexTypeValues["type-ref"] = "kIndexTypeRef"; |
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indexTypeValues["string-ref"] = "kIndexStringRef"; |
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indexTypeValues["method-ref"] = "kIndexMethodRef"; |
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indexTypeValues["field-ref"] = "kIndexFieldRef"; |
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indexTypeValues["inline-method"] = "kIndexInlineMethod"; |
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indexTypeValues["vtable-offset"] = "kIndexVtableOffset"; |
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indexTypeValues["field-offset"] = "kIndexFieldOffset"; |
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indexTypeValues["method-and-proto-ref"] = "kIndexMethodAndProtoRef"; |
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indexTypeValues["call-site-ref"] = "kCallSiteRef"; |
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} |
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|
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# Initialize the flags data. |
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function initFlags() { |
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flagValues["branch"] = "kInstrCanBranch"; |
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flagValues["continue"] = "kInstrCanContinue"; |
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flagValues["switch"] = "kInstrCanSwitch"; |
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flagValues["throw"] = "kInstrCanThrow"; |
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flagValues["return"] = "kInstrCanReturn"; |
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flagValues["invoke"] = "kInstrInvoke"; |
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flagValues["optimized"] = "0"; # Not represented in C output |
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flagValues["0"] = "0"; |
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} |
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|
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# Translate the given flags into the equivalent C expression. Returns |
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# "" on error. |
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function flagsToC(f, parts, result, i) { |
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# locals: parts, result, i |
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count = split(f, parts, /\|/); # Split input at pipe characters. |
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result = "0"; |
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for (i = 1; i <= count; i++) { |
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f = flagValues[parts[i]]; |
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if (f == "") { |
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printf("bogus flag: %s\n", f) >"/dev/stderr"; |
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return ""; # Bogus flag name. |
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} else if (f == "0") { |
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# Nothing to append for this case. |
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} else if (result == "0") { |
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result = f; |
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} else { |
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result = result "|" f; |
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} |
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} |
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return result; |
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} |
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|
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# Returns true if the given opcode (by index) is an "optimized" opcode. |
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function isOptimized(idx, parts, f) { |
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# locals: parts, f |
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split(flags[idx], parts, /\|/); # Split flags[idx] at pipes. |
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for (f in parts) { |
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if (parts[f] == "optimized") return 1; |
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} |
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return 0; |
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} |
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# Returns true if there is no definition for the given opcode (by index). |
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function isUnused(idx) { |
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return (name[idx] == ""); |
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}
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