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https://github.com/riscv-software-src/riscv-isa-sim.git
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It implement v0.6 version reference https://github.com/riscv/zibi/releases/download/v0.6/zibi.pdf https://riscv.atlassian.net/wiki/spaces/USXX/pages/599261201/Branch+with+Immediate+Zibi+Ratification+Plan Signed-off-by: Chih-Min Chao <chihmin.chao@sifive.com>
251 lines
7.4 KiB
C++
251 lines
7.4 KiB
C++
// See LICENSE for license details.
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#ifndef _RISCV_DECODE_H
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#define _RISCV_DECODE_H
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#if (-1 != ~0) || ((-1 >> 1) != -1)
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# error spike requires a two''s-complement c++ implementation
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#endif
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#include "../softfloat/softfloat_types.h"
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#include <algorithm>
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#include <cstdint>
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#include <string.h>
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#include <strings.h>
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#include <cinttypes>
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#include <type_traits>
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typedef int64_t sreg_t;
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typedef uint64_t reg_t;
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typedef float128_t freg_t;
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const int NXPR = 32;
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const int NFPR = 32;
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const int NVPR = 32;
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const int NCSR = 4096;
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#define X_RA 1
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#define X_SP 2
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#define X_T0 5
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#define X_S0 8
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#define X_A0 10
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#define X_A1 11
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#define X_Sn 16
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#define VCSR_VXRM_SHIFT 1
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#define VCSR_VXRM (0x3 << VCSR_VXRM_SHIFT)
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#define VCSR_VXSAT_SHIFT 0
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#define VCSR_VXSAT (0x1 << VCSR_VXSAT_SHIFT)
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#define FP_RD_NE 0
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#define FP_RD_0 1
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#define FP_RD_DN 2
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#define FP_RD_UP 3
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#define FP_RD_NMM 4
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#define FSR_RD_SHIFT 5
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#define FSR_RD (0x7 << FSR_RD_SHIFT)
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#define FPEXC_NX 0x01
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#define FPEXC_UF 0x02
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#define FPEXC_OF 0x04
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#define FPEXC_DZ 0x08
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#define FPEXC_NV 0x10
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#define FSR_AEXC_SHIFT 0
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#define FSR_NVA (FPEXC_NV << FSR_AEXC_SHIFT)
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#define FSR_OFA (FPEXC_OF << FSR_AEXC_SHIFT)
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#define FSR_UFA (FPEXC_UF << FSR_AEXC_SHIFT)
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#define FSR_DZA (FPEXC_DZ << FSR_AEXC_SHIFT)
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#define FSR_NXA (FPEXC_NX << FSR_AEXC_SHIFT)
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#define FSR_AEXC (FSR_NVA | FSR_OFA | FSR_UFA | FSR_DZA | FSR_NXA)
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#define insn_length(x) \
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(((x) & 0x03) < 0x03 ? 2 : \
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((x) & 0x1f) < 0x1f ? 4 : \
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((x) & 0x3f) < 0x3f ? 6 : \
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8)
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#define MAX_INSN_LENGTH 8
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#define PC_ALIGN 2
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#define Sn(n) ((n) < 2 ? X_S0 + (n) : X_Sn + (n))
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typedef uint64_t insn_bits_t;
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class insn_t
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{
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public:
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insn_t() = default;
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insn_t(insn_bits_t bits) : b(bits) {}
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insn_bits_t bits() { return b; }
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int length() { return insn_length(b); }
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[[maybe_unused]] int64_t opcode() { return x(0, 7); }
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[[maybe_unused]] int64_t funct7() { return x(25, 7); }
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[[maybe_unused]] int64_t funct3() { return x(12, 3); }
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[[maybe_unused]] int64_t funct2() { return x(25, 2); }
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int64_t i_imm() { return xs(20, 12); }
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int64_t shamt() { return x(20, 6); }
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int64_t s_imm() { return x(7, 5) + (xs(25, 7) << 5); }
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int64_t sb_imm() { return (x(8, 4) << 1) + (x(25, 6) << 5) + (x(7, 1) << 11) + (imm_sign() << 12); }
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int64_t u_imm() { return xs(12, 20) << 12; }
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int64_t uj_imm() { return (x(21, 10) << 1) + (x(20, 1) << 11) + (x(12, 8) << 12) + (imm_sign() << 20); }
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uint64_t rd() { return x(7, 5); }
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uint64_t rs1() { return x(15, 5); }
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uint64_t rs2() { return x(20, 5); }
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uint64_t rs3() { return x(27, 5); }
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uint64_t rm() { return x(12, 3); }
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uint64_t csr() { return x(20, 12); }
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uint64_t iorw() { return x(20, 8); }
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uint64_t bs() { return x(30, 2); } // Crypto ISE - SM4/AES32 byte select.
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uint64_t rcon() { return x(20, 4); } // Crypto ISE - AES64 round const.
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[[maybe_unused]] int64_t rvc_opcode() { return x(0, 2); }
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int64_t rvc_imm() { return x(2, 5) + (xs(12, 1) << 5); }
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int64_t rvc_zimm() { return x(2, 5) + (x(12, 1) << 5); }
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int64_t rvc_addi4spn_imm() { return (x(6, 1) << 2) + (x(5, 1) << 3) + (x(11, 2) << 4) + (x(7, 4) << 6); }
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int64_t rvc_addi16sp_imm() { return (x(6, 1) << 4) + (x(2, 1) << 5) + (x(5, 1) << 6) + (x(3, 2) << 7) + (xs(12, 1) << 9); }
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int64_t rvc_lwsp_imm() { return (x(4, 3) << 2) + (x(12, 1) << 5) + (x(2, 2) << 6); }
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int64_t rvc_ldsp_imm() { return (x(5, 2) << 3) + (x(12, 1) << 5) + (x(2, 3) << 6); }
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int64_t rvc_swsp_imm() { return (x(9, 4) << 2) + (x(7, 2) << 6); }
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int64_t rvc_sdsp_imm() { return (x(10, 3) << 3) + (x(7, 3) << 6); }
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int64_t rvc_lw_imm() { return (x(6, 1) << 2) + (x(10, 3) << 3) + (x(5, 1) << 6); }
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int64_t rvc_ld_imm() { return (x(10, 3) << 3) + (x(5, 2) << 6); }
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int64_t rvc_j_imm() { return (x(3, 3) << 1) + (x(11, 1) << 4) + (x(2, 1) << 5) + (x(7, 1) << 6) + (x(6, 1) << 7) + (x(9, 2) << 8) + (x(8, 1) << 10) + (xs(12, 1) << 11); }
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int64_t rvc_b_imm() { return (x(3, 2) << 1) + (x(10, 2) << 3) + (x(2, 1) << 5) + (x(5, 2) << 6) + (xs(12, 1) << 8); }
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int64_t rvc_simm3() { return x(10, 3); }
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uint64_t rvc_rd() { return rd(); }
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uint64_t rvc_rs1() { return rd(); }
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uint64_t rvc_rs2() { return x(2, 5); }
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uint64_t rvc_rs1s() { return 8 + x(7, 3); }
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uint64_t rvc_rs2s() { return 8 + x(2, 3); }
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uint64_t rvc_lbimm() { return (x(5, 1) << 1) + x(6, 1); }
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uint64_t rvc_lhimm() { return (x(5, 1) << 1); }
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uint64_t rvc_r1sc() { return x(7, 3); }
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uint64_t rvc_r2sc() { return x(2, 3); }
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uint64_t rvc_rlist() { return x(4, 4); }
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uint64_t rvc_spimm() { return x(2, 2) << 4; }
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uint64_t rvc_index() { return x(2, 8); }
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uint64_t v_vm() { return x(25, 1); }
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uint64_t v_wd() { return x(26, 1); }
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uint64_t v_nf() { return x(29, 3); }
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uint64_t v_simm5() { return xs(15, 5); }
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uint64_t v_zimm5() { return x(15, 5); }
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uint64_t v_zimm10() { return x(20, 10); }
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uint64_t v_zimm11() { return x(20, 11); }
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uint64_t v_lmul() { return x(20, 2); }
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uint64_t v_frac_lmul() { return x(22, 1); }
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uint64_t v_sew() { return 1 << (x(23, 3) + 3); }
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uint64_t v_width() { return x(12, 3); }
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uint64_t v_mop() { return x(26, 2); }
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uint64_t v_lumop() { return x(20, 5); }
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uint64_t v_sumop() { return x(20, 5); }
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uint64_t v_vta() { return x(26, 1); }
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uint64_t v_vma() { return x(27, 1); }
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uint64_t v_mew() { return x(28, 1); }
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uint64_t v_zimm6() { return x(15, 5) + (x(26, 1) << 5); }
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uint64_t p_imm2() { return x(20, 2); }
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uint64_t p_imm3() { return x(20, 3); }
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uint64_t p_imm4() { return x(20, 4); }
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uint64_t p_imm5() { return x(20, 5); }
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uint64_t p_imm6() { return x(20, 6); }
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uint64_t b_imm5() { return (x(20, 5) == 0) ? -1ul : x(20, 5); }
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uint64_t zcmp_regmask() {
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unsigned mask = 0;
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uint64_t rlist = rvc_rlist();
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if (rlist >= 4)
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mask |= 1U << X_RA;
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for (reg_t i = 5; i <= rlist; i++)
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mask |= 1U << Sn(i - 5);
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if (rlist == 15)
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mask |= 1U << Sn(11);
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return mask;
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}
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uint64_t zcmp_stack_adjustment(int xlen) {
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reg_t stack_adj_base = 0;
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switch (rvc_rlist()) {
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case 15:
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stack_adj_base += 16;
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[[fallthrough]];
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case 14:
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if (xlen == 64)
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stack_adj_base += 16;
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[[fallthrough]];
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case 13:
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case 12:
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stack_adj_base += 16;
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[[fallthrough]];
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case 11:
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case 10:
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if (xlen == 64)
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stack_adj_base += 16;
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[[fallthrough]];
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case 9:
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case 8:
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stack_adj_base += 16;
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[[fallthrough]];
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case 7:
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case 6:
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if (xlen == 64)
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stack_adj_base += 16;
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[[fallthrough]];
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case 5:
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case 4:
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stack_adj_base += 16;
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break;
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}
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return stack_adj_base + rvc_spimm();
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}
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private:
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insn_bits_t b;
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uint64_t x(int lo, int len) { return (b >> lo) & ((insn_bits_t(1) << len) - 1); }
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uint64_t xs(int lo, int len) { return int64_t(b) << (64 - lo - len) >> (64 - len); }
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uint64_t imm_sign() { return xs(31, 1); }
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};
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template <class T, size_t N, bool zero_reg>
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class regfile_t
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{
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public:
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void write(size_t i, T value)
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{
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if (!zero_reg || i != 0)
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data[i] = value;
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}
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const T& operator [] (size_t i) const
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{
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return data[i];
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}
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regfile_t()
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{
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reset();
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}
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void reset()
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{
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memset(data, 0, sizeof(data));
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}
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private:
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T data[N];
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};
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#define get_field(reg, mask) \
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(((reg) & (std::remove_cv<decltype(reg)>::type)(mask)) / ((mask) & ~((mask) << 1)))
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#define set_field(reg, mask, val) \
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(((reg) & ~(std::remove_cv<decltype(reg)>::type)(mask)) | (((std::remove_cv<decltype(reg)>::type)(val) * ((mask) & ~((mask) << 1))) & (std::remove_cv<decltype(reg)>::type)(mask)))
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#endif
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