mirror of https://gitee.com/openkylin/qemu.git
187 lines
6.0 KiB
C
187 lines
6.0 KiB
C
/*
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* Tiny Code Generator for QEMU
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*
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* Copyright (c) 2009, 2011 Stefan Weil
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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/*
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* This code implements a TCG which does not generate machine code for some
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* real target machine but which generates virtual machine code for an
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* interpreter. Interpreted pseudo code is slow, but it works on any host.
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*
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* Some remarks might help in understanding the code:
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*
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* "target" or "TCG target" is the machine which runs the generated code.
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* This is different to the usual meaning in QEMU where "target" is the
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* emulated machine. So normally QEMU host is identical to TCG target.
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* Here the TCG target is a virtual machine, but this virtual machine must
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* use the same word size like the real machine.
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* Therefore, we need both 32 and 64 bit virtual machines (interpreter).
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*/
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#if !defined(TCG_TARGET_H)
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#define TCG_TARGET_H
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#include "config-host.h"
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#define TCG_TARGET_INTERPRETER 1
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#define TCG_TARGET_INSN_UNIT_SIZE 1
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#define TCG_TARGET_TLB_DISPLACEMENT_BITS 32
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#if UINTPTR_MAX == UINT32_MAX
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# define TCG_TARGET_REG_BITS 32
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#elif UINTPTR_MAX == UINT64_MAX
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# define TCG_TARGET_REG_BITS 64
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#else
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# error Unknown pointer size for tci target
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#endif
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#ifdef CONFIG_DEBUG_TCG
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/* Enable debug output. */
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#define CONFIG_DEBUG_TCG_INTERPRETER
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#endif
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/* Optional instructions. */
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#define TCG_TARGET_HAS_bswap16_i32 1
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#define TCG_TARGET_HAS_bswap32_i32 1
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#define TCG_TARGET_HAS_div_i32 1
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#define TCG_TARGET_HAS_rem_i32 1
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#define TCG_TARGET_HAS_ext8s_i32 1
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#define TCG_TARGET_HAS_ext16s_i32 1
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#define TCG_TARGET_HAS_ext8u_i32 1
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#define TCG_TARGET_HAS_ext16u_i32 1
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#define TCG_TARGET_HAS_andc_i32 0
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#define TCG_TARGET_HAS_deposit_i32 1
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#define TCG_TARGET_HAS_eqv_i32 0
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#define TCG_TARGET_HAS_nand_i32 0
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#define TCG_TARGET_HAS_nor_i32 0
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#define TCG_TARGET_HAS_neg_i32 1
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#define TCG_TARGET_HAS_not_i32 1
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#define TCG_TARGET_HAS_orc_i32 0
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#define TCG_TARGET_HAS_rot_i32 1
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#define TCG_TARGET_HAS_movcond_i32 0
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#define TCG_TARGET_HAS_muls2_i32 0
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#define TCG_TARGET_HAS_muluh_i32 0
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#define TCG_TARGET_HAS_mulsh_i32 0
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#if TCG_TARGET_REG_BITS == 64
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#define TCG_TARGET_HAS_extrl_i64_i32 0
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#define TCG_TARGET_HAS_extrh_i64_i32 0
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#define TCG_TARGET_HAS_bswap16_i64 1
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#define TCG_TARGET_HAS_bswap32_i64 1
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#define TCG_TARGET_HAS_bswap64_i64 1
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#define TCG_TARGET_HAS_deposit_i64 1
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#define TCG_TARGET_HAS_div_i64 0
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#define TCG_TARGET_HAS_rem_i64 0
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#define TCG_TARGET_HAS_ext8s_i64 1
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#define TCG_TARGET_HAS_ext16s_i64 1
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#define TCG_TARGET_HAS_ext32s_i64 1
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#define TCG_TARGET_HAS_ext8u_i64 1
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#define TCG_TARGET_HAS_ext16u_i64 1
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#define TCG_TARGET_HAS_ext32u_i64 1
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#define TCG_TARGET_HAS_andc_i64 0
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#define TCG_TARGET_HAS_eqv_i64 0
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#define TCG_TARGET_HAS_nand_i64 0
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#define TCG_TARGET_HAS_nor_i64 0
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#define TCG_TARGET_HAS_neg_i64 1
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#define TCG_TARGET_HAS_not_i64 1
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#define TCG_TARGET_HAS_orc_i64 0
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#define TCG_TARGET_HAS_rot_i64 1
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#define TCG_TARGET_HAS_movcond_i64 0
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#define TCG_TARGET_HAS_muls2_i64 0
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#define TCG_TARGET_HAS_add2_i32 0
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#define TCG_TARGET_HAS_sub2_i32 0
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#define TCG_TARGET_HAS_mulu2_i32 0
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#define TCG_TARGET_HAS_add2_i64 0
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#define TCG_TARGET_HAS_sub2_i64 0
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#define TCG_TARGET_HAS_mulu2_i64 0
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#define TCG_TARGET_HAS_muluh_i64 0
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#define TCG_TARGET_HAS_mulsh_i64 0
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#else
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#define TCG_TARGET_HAS_mulu2_i32 1
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#endif /* TCG_TARGET_REG_BITS == 64 */
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/* Number of registers available.
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For 32 bit hosts, we need more than 8 registers (call arguments). */
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/* #define TCG_TARGET_NB_REGS 8 */
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#define TCG_TARGET_NB_REGS 16
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/* #define TCG_TARGET_NB_REGS 32 */
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/* List of registers which are used by TCG. */
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typedef enum {
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TCG_REG_R0 = 0,
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TCG_REG_R1,
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TCG_REG_R2,
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TCG_REG_R3,
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TCG_REG_R4,
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TCG_REG_R5,
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TCG_REG_R6,
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TCG_REG_R7,
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#if TCG_TARGET_NB_REGS >= 16
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TCG_REG_R8,
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TCG_REG_R9,
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TCG_REG_R10,
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TCG_REG_R11,
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TCG_REG_R12,
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TCG_REG_R13,
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TCG_REG_R14,
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TCG_REG_R15,
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#if TCG_TARGET_NB_REGS >= 32
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TCG_REG_R16,
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TCG_REG_R17,
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TCG_REG_R18,
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TCG_REG_R19,
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TCG_REG_R20,
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TCG_REG_R21,
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TCG_REG_R22,
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TCG_REG_R23,
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TCG_REG_R24,
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TCG_REG_R25,
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TCG_REG_R26,
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TCG_REG_R27,
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TCG_REG_R28,
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TCG_REG_R29,
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TCG_REG_R30,
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TCG_REG_R31,
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#endif
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#endif
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/* Special value UINT8_MAX is used by TCI to encode constant values. */
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TCG_CONST = UINT8_MAX
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} TCGReg;
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#define TCG_AREG0 (TCG_TARGET_NB_REGS - 2)
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/* Used for function call generation. */
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#define TCG_REG_CALL_STACK (TCG_TARGET_NB_REGS - 1)
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#define TCG_TARGET_CALL_STACK_OFFSET 0
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#define TCG_TARGET_STACK_ALIGN 16
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void tci_disas(uint8_t opc);
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#define HAVE_TCG_QEMU_TB_EXEC
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static inline void flush_icache_range(uintptr_t start, uintptr_t stop)
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{
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}
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#endif /* TCG_TARGET_H */
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