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d51bcabec1
Build the infrastructure to create overrides for HVX instructions. We create a new empty file (gen_tcg_hvx.h) that will be populated in subsequent patches. Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Taylor Simpson <tsimpson@quicinc.com>
166 lines
5.5 KiB
Python
Executable File
166 lines
5.5 KiB
Python
Executable File
#!/usr/bin/env python3
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##
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## Copyright(c) 2019-2021 Qualcomm Innovation Center, Inc. All Rights Reserved.
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##
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## This program is free software; you can redistribute it and/or modify
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## it under the terms of the GNU General Public License as published by
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## the Free Software Foundation; either version 2 of the License, or
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## (at your option) any later version.
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##
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## This program is distributed in the hope that it will be useful,
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## but WITHOUT ANY WARRANTY; without even the implied warranty of
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## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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## GNU General Public License for more details.
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##
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## You should have received a copy of the GNU General Public License
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## along with this program; if not, see <http://www.gnu.org/licenses/>.
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##
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import sys
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import re
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import string
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import hex_common
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##
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## Helpers for gen_helper_prototype
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##
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def_helper_types = {
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'N' : 's32',
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'O' : 's32',
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'P' : 's32',
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'M' : 's32',
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'C' : 's32',
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'R' : 's32',
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'V' : 'ptr',
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'Q' : 'ptr'
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}
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def_helper_types_pair = {
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'R' : 's64',
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'C' : 's64',
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'S' : 's64',
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'G' : 's64',
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'V' : 'ptr',
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'Q' : 'ptr'
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}
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def gen_def_helper_opn(f, tag, regtype, regid, toss, numregs, i):
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if (hex_common.is_pair(regid)):
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f.write(", %s" % (def_helper_types_pair[regtype]))
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elif (hex_common.is_single(regid)):
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f.write(", %s" % (def_helper_types[regtype]))
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else:
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print("Bad register parse: ",regtype,regid,toss,numregs)
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##
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## Generate the DEF_HELPER prototype for an instruction
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## For A2_add: Rd32=add(Rs32,Rt32)
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## We produce:
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## DEF_HELPER_3(A2_add, s32, env, s32, s32)
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##
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def gen_helper_prototype(f, tag, tagregs, tagimms):
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regs = tagregs[tag]
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imms = tagimms[tag]
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numresults = 0
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numscalarresults = 0
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numscalarreadwrite = 0
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for regtype,regid,toss,numregs in regs:
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if (hex_common.is_written(regid)):
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numresults += 1
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if (hex_common.is_scalar_reg(regtype)):
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numscalarresults += 1
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if (hex_common.is_readwrite(regid)):
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if (hex_common.is_scalar_reg(regtype)):
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numscalarreadwrite += 1
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if (numscalarresults > 1):
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## The helper is bogus when there is more than one result
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f.write('DEF_HELPER_1(%s, void, env)\n' % tag)
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else:
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## Figure out how many arguments the helper will take
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if (numscalarresults == 0):
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def_helper_size = len(regs)+len(imms)+numscalarreadwrite+1
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if hex_common.need_part1(tag): def_helper_size += 1
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if hex_common.need_slot(tag): def_helper_size += 1
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f.write('DEF_HELPER_%s(%s' % (def_helper_size, tag))
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## The return type is void
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f.write(', void' )
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else:
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def_helper_size = len(regs)+len(imms)+numscalarreadwrite
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if hex_common.need_part1(tag): def_helper_size += 1
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if hex_common.need_slot(tag): def_helper_size += 1
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f.write('DEF_HELPER_%s(%s' % (def_helper_size, tag))
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## Generate the qemu DEF_HELPER type for each result
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## Iterate over this list twice
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## - Emit the scalar result
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## - Emit the vector result
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i=0
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for regtype,regid,toss,numregs in regs:
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if (hex_common.is_written(regid)):
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if (not hex_common.is_hvx_reg(regtype)):
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gen_def_helper_opn(f, tag, regtype, regid, toss, numregs, i)
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i += 1
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## Put the env between the outputs and inputs
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f.write(', env' )
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i += 1
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# Second pass
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for regtype,regid,toss,numregs in regs:
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if (hex_common.is_written(regid)):
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if (hex_common.is_hvx_reg(regtype)):
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gen_def_helper_opn(f, tag, regtype, regid, toss, numregs, i)
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i += 1
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## Generate the qemu type for each input operand (regs and immediates)
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for regtype,regid,toss,numregs in regs:
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if (hex_common.is_read(regid)):
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if (hex_common.is_hvx_reg(regtype) and
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hex_common.is_readwrite(regid)):
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continue
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gen_def_helper_opn(f, tag, regtype, regid, toss, numregs, i)
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i += 1
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for immlett,bits,immshift in imms:
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f.write(", s32")
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## Add the arguments for the instruction slot and part1 (if needed)
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if hex_common.need_slot(tag): f.write(', i32' )
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if hex_common.need_part1(tag): f.write(' , i32' )
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f.write(')\n')
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def main():
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hex_common.read_semantics_file(sys.argv[1])
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hex_common.read_attribs_file(sys.argv[2])
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hex_common.read_overrides_file(sys.argv[3])
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hex_common.read_overrides_file(sys.argv[4])
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hex_common.calculate_attribs()
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tagregs = hex_common.get_tagregs()
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tagimms = hex_common.get_tagimms()
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with open(sys.argv[5], 'w') as f:
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for tag in hex_common.tags:
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## Skip the priv instructions
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if ( "A_PRIV" in hex_common.attribdict[tag] ) :
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continue
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## Skip the guest instructions
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if ( "A_GUEST" in hex_common.attribdict[tag] ) :
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continue
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## Skip the diag instructions
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if ( tag == "Y6_diag" ) :
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continue
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if ( tag == "Y6_diag0" ) :
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continue
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if ( tag == "Y6_diag1" ) :
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continue
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if ( hex_common.skip_qemu_helper(tag) ):
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continue
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gen_helper_prototype(f, tag, tagregs, tagimms)
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if __name__ == "__main__":
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main()
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