emu: modrm displacement, LEA instruction
This commit is contained in:
116
src/emu/i8088.rs
116
src/emu/i8088.rs
@@ -64,7 +64,7 @@ macro_rules! step {
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// Inductive case: decode next arg to be placed in list
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(@code ( $($done:tt)* ),
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$cpu:expr, $bus:expr, $prefix:tt, $modrm:tt, $name:ident, $cycles:literal,
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($next:ident $(= $nextrhs:ident)? $($rest:ident $(= $restrhs:ident)?)*)) => {
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($next:ident $(= $nextrhs:tt)? $($rest:ident $(= $restrhs:tt)?)*)) => {
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step!(@$next$(= $nextrhs)?
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// "cookie" tt to be passed thru to @arg so we have all the args for the recursive step
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( ($($done)*), $cpu, $bus, $prefix, $modrm, $name, $cycles, ($($rest $(= $restrhs)?)*) ),
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@@ -87,8 +87,7 @@ macro_rules! step {
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(@addr $cookie:tt, $cpu:expr, $bus:expr, ($segment:ident, $prefix_loop:lifetime), $modrm:tt) => { {
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let a16 = i8088::next_ip16($cpu.cs.get(), &mut $cpu.ip, $bus);
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let addr = segoff_to_addr($segment.unwrap(), a16);
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step!(@arg $cookie, &mut Addr { bus: $bus, addr: addr } )
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step!(@arg $cookie, &mut Addr { bus: $bus, segment: $segment.unwrap(), offset: a16 } )
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} };
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(@bus $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, $modrm:tt) => {
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@@ -109,33 +108,76 @@ macro_rules! step {
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step!(@arg $cookie, &d16)
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} };
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(@displace0=($reg1:ident $(+ $reg2:ident)? ) $cookie:tt, $cpu:expr, $bus:expr, ($segment:ident, $prefix_loop:lifetime), $modrm:tt) => {
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step!(@arg $cookie, &mut Addr { bus: $bus,
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segment: $segment.unwrap(),
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offset: $cpu.$reg1.get() $(+ $cpu.$reg2.get())? })
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};
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(@displace8=($reg1:ident $(+ $reg2:ident)? ) $cookie:tt, $cpu:expr, $bus:expr, ($segment:ident, $prefix_loop:lifetime), $modrm:tt) => { {
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let d8 = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus);
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step!(@arg $cookie, &mut Addr { bus: $bus,
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segment: $segment.unwrap(),
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offset: $cpu.$reg1.get() $(+ $cpu.$reg2.get())? + d8 as u16 })
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} };
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(@displace16=($reg1:ident $(+ $reg2:ident)? ) $cookie:tt, $cpu:expr, $bus:expr, ($segment:ident, $prefix_loop:lifetime), $modrm:tt) => { {
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let d16 = i8088::next_ip16($cpu.cs.get(), &mut $cpu.ip, $bus);
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step!(@arg $cookie, &mut Addr { bus: $bus,
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segment: $segment.unwrap(),
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offset: $cpu.$reg1.get() $(+ $cpu.$reg2.get())? + d16 })
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} };
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(@mem $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, $modrm:tt) => {
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step!(@arg $cookie, &mut $bus.ram)
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};
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(@modrm16 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt,
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($modrm_val:ident, { $($val:literal => $($args:ident = $argrhs:tt),* / $mode:ident $cycles:literal),*$(,)? }, $modrm8:tt)) => { {
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(@modrm $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt,
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($modrm_val:ident,
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{ $($val:literal => $($args:ident $(= $argrhs:tt)?),* / $mode:ident $cycles:literal),*$(,)? },
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$modrm16:tt,
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$modrm8:tt
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)) => { {
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let modrm_val = $modrm_val & !0x38;
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match modrm_val {
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$( $val => step!(@push $cookie, ($($args = $argrhs)* ) ) ),*,
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$( $val => step!(@push $cookie, ($($args $(= $argrhs)?)* ) ) ),*,
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_ => unimplemented!("modrm: {:02X}({:02X})\ncpu: {:#X?}", $modrm_val, modrm_val, $cpu)
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}
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} };
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(@modrm16 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt,
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($modrm_val:ident,
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{ $($val:literal => $($args:ident $(= $argrhs:tt)?),* / $mode:ident $cycles:literal),*$(,)? },
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{ $($val16:literal => $($args16:ident $(= $argrhs16:tt)?),* / $mode16:ident $cycles16:literal),*$(,)? },
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$modrm8:tt
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)) => { {
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let modrm_val = $modrm_val & !0x38;
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match modrm_val {
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$( $val => step!(@push $cookie, ($($args $(= $argrhs)?)* ) ) ),*,
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$( $val16 => step!(@push $cookie, ($($args16 $(= $argrhs16)?)* ) ) ),*,
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_ => unimplemented!("modrm: {:02X}({:02X})\ncpu: {:#X?}", $modrm_val, modrm_val, $cpu)
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}
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} };
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(@modrm8 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt,
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($modrm_val:ident, $modrm16:tt, { $($val:literal => $($args:ident = $argrhs:tt),* / $mode:ident $cycles:literal),*$(,)? } )) => { {
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($modrm_val:ident,
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{ $($val:literal => $($args:ident $(= $argrhs:tt)?),* / $mode:ident $cycles:literal),*$(,)? },
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$modrm16:tt,
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{ $($val8:literal => $($args8:ident $(= $argrhs8:tt)?),* / $mode8:ident $cycles8:literal),*$(,)? }
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)) => { {
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let modrm_val = $modrm_val & !0x38;
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match modrm_val {
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$( $val => step!(@push $cookie, ($($args = $argrhs)* ) ) ),*,
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$( $val => step!(@push $cookie, ($($args $(= $argrhs)?)* ) ) ),*,
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$( $val8 => step!(@push $cookie, ($($args8 $(= $argrhs8)?)* ) ) ),*,
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_ => unimplemented!("modrm: {:02X}({:02X})\ncpu: {:#X?}", $modrm_val, modrm_val, $cpu)
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}
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} };
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(@prefix $cookie:tt, $cpu:expr, $bus:expr, ($segment:ident, $prefix_loop:lifetime), $modrm:tt) => { continue $prefix_loop; };
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(@r16 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, ($modrm:ident, $modrm16:tt, $modrm8:tt)) => {
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(@r16 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, ($modrm_val:ident, $modrm:tt, $modrm16:tt, $modrm8:tt)) => {
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// TODO: Should these also be passed into the macro like the modrm specs?
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match $modrm >> 3 & 0x7 {
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match $modrm_val >> 3 & 0x7 {
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0 => step!(@arg $cookie, &mut Reg { reg: &$cpu.a } ),
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1 => step!(@arg $cookie, &mut Reg { reg: &$cpu.c } ),
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2 => step!(@arg $cookie, &mut Reg { reg: &$cpu.d } ),
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@@ -148,9 +190,9 @@ macro_rules! step {
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};
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};
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(@r8 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, ($modrm:ident, $modrm16:tt, $modrm8:tt)) => {
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(@r8 $cookie:tt, $cpu:expr, $bus:expr, $prefix:tt, ($modrm_val:ident, $modrm:tt, $modrm16:tt, $modrm8:tt)) => {
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// TODO: Should these also be passed into the macro like the modrm specs?
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match $modrm >> 3 & 0x7 {
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match $modrm_val >> 3 & 0x7 {
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0 => step!(@arg $cookie, &mut RegHi { reg: &$cpu.a } ),
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1 => step!(@arg $cookie, &mut RegHi { reg: &$cpu.c } ),
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2 => step!(@arg $cookie, &mut RegHi { reg: &$cpu.d } ),
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@@ -192,13 +234,13 @@ macro_rules! step {
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} };
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// Group Decoder
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(@group $cpu:expr, $bus:expr, $prefix:tt, ($modrm:ident, $modrm16:tt, $modrm8:tt), $code:literal,
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(@group $cpu:expr, $bus:expr, $prefix:tt, ($modrm_val:ident, $modrm:tt, $modrm16:tt, $modrm8:tt), $code:literal,
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{ $( $subcode:literal =>
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$name:ident[$($args:ident $(= $argrhs:ident)?),*] / $cycles:literal),*$(,)? } ) => { {
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let subcode = $modrm & 0x38;
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$name:ident[$($args:ident $(= $argrhs:tt)?),*] / $cycles:literal),*$(,)? } ) => { {
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let subcode = $modrm_val & 0x38;
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match subcode {
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$( $subcode => step!(@code (), $cpu, $bus, $prefix, ($modrm, $modrm16, $modrm8), $name, $cycles, ($($args $(= $argrhs)?)*)) ),*,
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_ => unimplemented!("opcode: {:02X} {:02X}({:02X})\ncpu: {:#X?}", $code, $modrm, subcode, $cpu)
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$( $subcode => step!(@code (), $cpu, $bus, $prefix, ($modrm_val, $modrm, $modrm16, $modrm8), $name, $cycles, ($($args $(= $argrhs)?)*)) ),*,
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_ => unimplemented!("opcode: {:02X} {:02X}({:02X})\ncpu: {:#X?}", $code, $modrm_val, subcode, $cpu)
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} }
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};
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@@ -209,31 +251,32 @@ macro_rules! step {
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// Non-group opcodes
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$( $($ext:pat)? =>
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$name:ident[$($args:ident $(= $argrhs:ident)?),*] / $cycles:literal
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$name:ident[$($args:ident $(= $argrhs:tt)?),*] / $cycles:literal
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)?
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// Group opcodes
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$( : $subcodes:tt )?
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),*
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$(,)? },
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modrm: $modrm:tt,
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modrm16: $modrm16:tt,
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modrm8: $modrm8:tt
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) => {
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{
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let mut segment = None;
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let modrm: u8; // Type ascription unnecessary but gives better err messages when missing $ext
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let modrm_val: u8; // Type ascription unnecessary but gives better err messages when missing $ext
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'prefix_loop: loop {
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let opcode = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus);
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match(opcode) {
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$( $( $code => {
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$( let $ext = (); /* No-op just to trigger expansion. */
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modrm = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus); )?
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step!(@code (), $cpu, $bus, (segment, 'prefix_loop), (modrm, $modrm16, $modrm8), $name, $cycles, ($($args $(= $argrhs)?)*))
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modrm_val = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus); )?
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step!(@code (), $cpu, $bus, (segment, 'prefix_loop), (modrm_val, $modrm, $modrm16, $modrm8), $name, $cycles, ($($args $(= $argrhs)?)*))
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}
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)?
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$( $code => {
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modrm = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus);
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step!(@group $cpu, $bus, (segment, 'prefix_loop), (modrm, $modrm16, $modrm8), $code, $subcodes)
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modrm_val = i8088::next_ip($cpu.cs.get(), &mut $cpu.ip, $bus);
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step!(@group $cpu, $bus, (segment, 'prefix_loop), (modrm_val, $modrm, $modrm16, $modrm8), $code, $subcodes)
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}
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)?
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),*,
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@@ -265,6 +308,7 @@ impl i8088 {
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0x08 => mov[modrm16, reg=cs] / "2/13+",
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0x10 => mov[modrm16, reg=ss] / "2/13+",
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0x18 => mov[modrm16, reg=ds] / "2/13+", },
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0x8D _ => lea[r16, modrm] / "2+",
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0x8E: { 0x00 => mov[reg=es, modrm16] / "2/12+",
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0x08 => mov[reg=cs, modrm16] / "2/12+",
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0x10 => mov[reg=ss, modrm16] / "2/12+",
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@@ -294,6 +338,32 @@ impl i8088 {
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0xCD => int[cpu, bus, d8] / 71,
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0xE8 => call[reg=ip, regval=ss, reg=sp, mem, rel16] / 23,
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},
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modrm: {
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0x00 => seg=ds, displace0=(b+si) / M 7,
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0x01 => seg=ds, displace0=(b+di) / M 8,
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0x02 => seg=ss, displace0=(bp+si) / M 8,
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0x03 => seg=ss, displace0=(bp+di) / M 7,
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0x04 => seg=ds, displace0=(si) / M 5,
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0x05 => seg=ds, displace0=(di) / M 5,
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0x06 => seg=ds, addr / M 6,
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0x07 => seg=ds, displace0=(b) / M 5,
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0x40 => seg=ds, displace8=(b+si) / M 11,
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0x41 => seg=ds, displace8=(b+di) / M 12,
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0x42 => seg=ss, displace8=(bp+si) / M 12,
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0x43 => seg=ss, displace8=(bp+di) / M 11,
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0x44 => seg=ds, displace8=(si) / M 9,
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0x45 => seg=ds, displace8=(di) / M 9,
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0x46 => seg=ss, displace8=(bp) / M 9,
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0x47 => seg=ds, displace8=(b) / M 9,
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0x80 => seg=ds, displace16=(b+si) / M 11,
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0x81 => seg=ds, displace16=(b+di) / M 12,
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0x82 => seg=ss, displace16=(bp+si) / M 12,
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0x83 => seg=ss, displace16=(bp+di) / M 11,
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0x84 => seg=ds, displace16=(si) / M 9,
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0x85 => seg=ds, displace16=(di) / M 9,
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0x86 => seg=ss, displace16=(bp) / M 9,
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0x87 => seg=ds, displace16=(b) / M 9,
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},
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modrm16: {
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0xC0 => reg=a / R 0,
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0xC1 => reg=c / R 0,
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@@ -1,3 +1,4 @@
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use emu::util::segoff_to_addr;
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use std::cell::Cell;
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use emu::util::{read_hi, read_lo, write_hi, write_lo};
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@@ -35,40 +36,42 @@ impl RValue<u16> for u16 {
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pub struct Addr<'a> {
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pub bus: &'a mut Bus,
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pub addr: usize
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pub segment: u16,
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pub offset: u16
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}
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impl Address for Addr<'_> {
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fn addr(&self) -> usize {
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self.addr
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segoff_to_addr(self.segment, self.offset)
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}
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}
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impl LValue<u8> for Addr<'_> {
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fn write(&mut self, val: u8) {
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self.bus.write(self.addr, val);
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self.bus.write(self.addr(), val);
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}
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}
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impl RValue<u8> for Addr<'_> {
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fn read(&self) -> u8 {
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self.bus.read(self.addr)
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self.bus.read(self.addr())
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}
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}
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impl LValue<u16> for Addr<'_> {
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fn write(&mut self, val: u16) {
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let buf = val.to_le_bytes();
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self.bus.write(self.addr, buf[0]);
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self.bus.write(self.addr + 1, buf[1]);
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self.bus.write(self.addr(), buf[0]);
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self.bus.write(self.addr() + 1, buf[1]);
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}
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}
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impl RValue<u16> for Addr<'_> {
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fn read(&self) -> u16 {
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let addr = self.addr();
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let mut buf = [0u8; 2];
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buf[0] = self.bus.read(self.addr);
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buf[1] = self.bus.read(self.addr + 1);
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buf[0] = self.bus.read(addr);
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buf[1] = self.bus.read(addr + 1);
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u16::from_le_bytes(buf)
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}
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}
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@@ -1,7 +1,7 @@
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use emu::byteorder::{ByteOrder, LittleEndian};
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use emu::dos;
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use emu::i8088::i8088;
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use emu::operands::{Address, LValue, Reg, RValue};
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use emu::operands::{Addr, Address, LValue, Reg, RValue};
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use emu::pc::Bus;
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use emu::util::segoff_to_addr;
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@@ -26,6 +26,10 @@ pub fn int(cpu: &mut i8088, bus: &mut Bus, num: &u8) {
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}
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}
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pub fn lea(dst: &mut Reg, addr: &Addr) {
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dst.write(addr.offset)
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}
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pub fn mov<T>(dst: &mut impl LValue<T>, src: &impl RValue<T>) {
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dst.write(src.read());
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}
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