mirror of
https://github.com/verilator/verilator.git
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237 lines
9.2 KiB
C++
237 lines
9.2 KiB
C++
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// -*- mode: C++; c-file-style: "cc-mode" -*-
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//*************************************************************************
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//
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// Copyright 2009-2020 by Wilson Snyder. This program is free software; you can
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// redistribute it and/or modify it under the terms of either the GNU
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// Lesser General Public License Version 3 or the Perl Artistic License
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// Version 2.0.
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// SPDX-License-Identifier: LGPL-3.0-only OR Artistic-2.0
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//
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//*************************************************************************
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#include <cstdio>
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#include <cstring>
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#include <iostream>
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#include "svdpi.h"
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//======================================================================
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// clang-format off
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#if defined(VERILATOR)
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# include "Vt_dpi_open_vecval__Dpi.h"
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#elif defined(VCS)
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# include "../vc_hdrs.h"
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#elif defined(NC)
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# define NEED_EXTERNS
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// #elif defined(MS)
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// # define NEED_EXTERNS
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#else
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# error "Unknown simulator for DPI test"
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#endif
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// clang-format on
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#ifdef NEED_EXTERNS
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extern "C" {
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// If get ncsim: *F,NOFDPI: Function {foo} not found in default libdpi.
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// Then probably forgot to list a function here.
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extern int dpii_failure();
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}
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#endif
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int failure = 0;
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int dpii_failure() { return failure; }
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#define CHECK_RESULT_HEX(got, exp) \
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do { \
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if ((got) != (exp)) { \
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std::cout << std::dec << "%Error: " << __FILE__ << ":" << __LINE__ << std::hex \
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<< ": GOT=" << (got) << " EXP=" << (exp) << std::endl; \
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failure = __LINE__; \
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} \
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} while (0)
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#define CHECK_RESULT_HEX_NE(got, exp) \
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do { \
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if ((got) == (exp)) { \
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std::cout << std::dec << "%Error: " << __FILE__ << ":" << __LINE__ << std::hex \
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<< ": GOT=" << (got) << " EXP!=" << (exp) << std::endl; \
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failure = __LINE__; \
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} \
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} while (0)
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static void _invert(int bits, svBitVecVal o[], const svBitVecVal i[]) {
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for (int w = 0; w < SV_PACKED_DATA_NELEMS(bits); ++w) o[w] = ~i[w];
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o[SV_PACKED_DATA_NELEMS(bits) - 1] &= SV_MASK(bits & 31);
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}
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static void _invert(int bits, svLogicVecVal o[], const svLogicVecVal i[]) {
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for (int w = 0; w < SV_PACKED_DATA_NELEMS(bits); ++w) {
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o[w].aval = ~i[w].aval;
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o[w].bval = 0;
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}
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o[SV_PACKED_DATA_NELEMS(bits) - 1].aval &= SV_MASK(bits & 31);
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o[SV_PACKED_DATA_NELEMS(bits) - 1].bval &= SV_MASK(bits & 31);
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}
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static bool _same(int bits, const svBitVecVal o[], const svBitVecVal i[]) {
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for (int w = 0; w < SV_PACKED_DATA_NELEMS(bits); ++w) {
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svBitVecVal mask = 0xffffffff;
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if (w == SV_PACKED_DATA_NELEMS(bits) - 1) mask = SV_MASK(bits & 31);
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if ((o[w] & mask) != (i[w] & mask)) return false;
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}
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return true;
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}
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static bool _same(int bits, const svLogicVecVal o[], const svLogicVecVal i[]) {
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for (int w = 0; w < SV_PACKED_DATA_NELEMS(bits); ++w) {
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svBitVecVal mask = 0xffffffff;
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if (w == SV_PACKED_DATA_NELEMS(bits) - 1) mask = SV_MASK(bits & 31);
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if ((o[w].aval & mask) != (i[w].aval & mask)) return false;
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if ((o[w].bval & mask) != (i[w].bval & mask)) return false;
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}
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return true;
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}
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void dpii_unused(const svOpenArrayHandle u) {}
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//======================================================================
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static void _dpii_bit_vecval_ux(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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printf("%s: bits=%d p=%d u=%d\n", __func__, bits, p, u);
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int dim = svDimensions(i);
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#ifndef NC
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// NC always returns zero and warns
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CHECK_RESULT_HEX(dim, u);
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#endif
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svBitVecVal vv[SV_PACKED_DATA_NELEMS(bits)];
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svBitVecVal vv2[SV_PACKED_DATA_NELEMS(bits)];
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svBitVecVal vo[SV_PACKED_DATA_NELEMS(bits)];
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for (int a = svLow(i, 1); a <= svHigh(i, 1); ++a) {
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fflush(stdout);
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if (dim == 1) {
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svGetBitArrElemVecVal(vv, i, a);
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svGetBitArrElem1VecVal(vv2, i, a);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutBitArrElemVecVal(o, vo, a);
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svPutBitArrElem1VecVal(q, vo, a);
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} else {
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for (int b = svLow(i, 2); b <= svHigh(i, 2); ++b) {
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if (dim == 2) {
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svGetBitArrElemVecVal(vv, i, a, b);
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svGetBitArrElem2VecVal(vv2, i, a, b);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutBitArrElemVecVal(o, vo, a, b);
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svPutBitArrElem2VecVal(q, vo, a, b);
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} else {
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for (int c = svLow(i, 3); c <= svHigh(i, 3); ++c) {
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if (dim == 3) {
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svGetBitArrElemVecVal(vv, i, a, b, c);
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svGetBitArrElem3VecVal(vv2, i, a, b, c);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutBitArrElemVecVal(o, vo, a, b, c);
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svPutBitArrElem3VecVal(q, vo, a, b, c);
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}
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}
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}
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}
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}
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}
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fflush(stdout);
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}
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void dpii_bit_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_bit_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_bit61_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_bit_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_bit92_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_bit_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_bit12_vecval_p1_u2(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_bit_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_bit29_vecval_p1_u3(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_bit_vecval_ux(bits, p, u, i, o, q);
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}
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//======================================================================
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static void _dpii_logic_vecval_ux(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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printf("%s: bits=%d p=%d u=%d\n", __func__, bits, p, u);
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int dim = svDimensions(i);
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#ifndef NC
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// NC always returns zero and warns
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CHECK_RESULT_HEX(dim, u);
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#endif
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svLogicVecVal vv[SV_PACKED_DATA_NELEMS(bits)];
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svLogicVecVal vv2[SV_PACKED_DATA_NELEMS(bits)];
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svLogicVecVal vo[SV_PACKED_DATA_NELEMS(bits)];
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for (int a = svLow(i, 1); a <= svHigh(i, 1); ++a) {
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fflush(stdout);
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if (dim == 1) {
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svGetLogicArrElemVecVal(vv, i, a);
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svGetLogicArrElem1VecVal(vv2, i, a);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutLogicArrElemVecVal(o, vo, a);
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svPutLogicArrElem1VecVal(q, vo, a);
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} else {
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for (int b = svLow(i, 2); b <= svHigh(i, 2); ++b) {
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if (dim == 2) {
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svGetLogicArrElemVecVal(vv, i, a, b);
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svGetLogicArrElem2VecVal(vv2, i, a, b);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutLogicArrElemVecVal(o, vo, a, b);
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svPutLogicArrElem2VecVal(q, vo, a, b);
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} else {
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for (int c = svLow(i, 3); c <= svHigh(i, 3); ++c) {
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if (dim == 3) {
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svGetLogicArrElemVecVal(vv, i, a, b, c);
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svGetLogicArrElem3VecVal(vv2, i, a, b, c);
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CHECK_RESULT_HEX(_same(bits, vv, vv2), true);
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_invert(bits, vo, vv);
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svPutLogicArrElemVecVal(o, vo, a, b, c);
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svPutLogicArrElem3VecVal(q, vo, a, b, c);
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}
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}
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}
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}
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}
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}
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fflush(stdout);
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}
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void dpii_logic_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_logic_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_logic61_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_logic_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_logic92_vecval_p1_u1(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_logic_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_logic12_vecval_p1_u2(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_logic_vecval_ux(bits, p, u, i, o, q);
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}
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void dpii_logic29_vecval_p1_u3(int bits, int p, int u, const svOpenArrayHandle i,
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const svOpenArrayHandle o, const svOpenArrayHandle q) {
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_dpii_logic_vecval_ux(bits, p, u, i, o, q);
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}
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