2009-11-21 21:41:21 -06:00
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# Defines basic Tcl procs for OpenOCD target module
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2009-11-17 10:29:20 -06:00
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2009-11-21 21:41:21 -06:00
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proc new_target_name { } {
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return [target number [expr [target count] - 1 ]]
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2009-11-17 10:29:20 -06:00
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}
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global in_process_reset
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set in_process_reset 0
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# Catch reset recursion
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proc ocd_process_reset { MODE } {
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global in_process_reset
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if {$in_process_reset} {
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set in_process_reset 0
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return -code error "'reset' can not be invoked recursively"
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}
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set in_process_reset 1
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set success [expr [catch {ocd_process_reset_inner $MODE} result]==0]
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set in_process_reset 0
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if {$success} {
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return $result
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} else {
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return -code error $result
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}
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}
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proc ocd_process_reset_inner { MODE } {
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set targets [target names]
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# If this target must be halted...
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set halt -1
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if { 0 == [string compare $MODE halt] } {
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set halt 1
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}
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if { 0 == [string compare $MODE init] } {
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set halt 1;
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}
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if { 0 == [string compare $MODE run ] } {
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set halt 0;
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}
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if { $halt < 0 } {
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2010-01-11 05:54:49 -06:00
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return -code error "Invalid mode: $MODE, must be one of: halt, init, or run";
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2009-11-17 10:29:20 -06:00
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}
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# Target event handlers *might* change which TAPs are enabled
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# or disabled, so we fire all of them. But don't issue any
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# target "arp_*" commands, which may issue JTAG transactions,
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# unless we know the underlying TAP is active.
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#
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# NOTE: ARP == "Advanced Reset Process" ... "advanced" is
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# relative to a previous restrictive scheme
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foreach t $targets {
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# New event script.
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$t invoke-event reset-start
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}
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# Use TRST or TMS/TCK operations to reset all the tap controllers.
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# TAP reset events get reported; they might enable some taps.
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init_reset $MODE
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# Examine all targets on enabled taps.
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foreach t $targets {
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if {[jtag tapisenabled [$t cget -chain-position]]} {
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$t arp_examine
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}
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}
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# Assert SRST, and report the pre/post events.
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# Note: no target sees SRST before "pre" or after "post".
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foreach t $targets {
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$t invoke-event reset-assert-pre
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}
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foreach t $targets {
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# C code needs to know if we expect to 'halt'
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if {[jtag tapisenabled [$t cget -chain-position]]} {
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$t arp_reset assert $halt
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}
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}
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foreach t $targets {
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$t invoke-event reset-assert-post
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}
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# Now de-assert SRST, and report the pre/post events.
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# Note: no target sees !SRST before "pre" or after "post".
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foreach t $targets {
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$t invoke-event reset-deassert-pre
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}
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foreach t $targets {
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# Again, de-assert code needs to know if we 'halt'
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if {[jtag tapisenabled [$t cget -chain-position]]} {
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$t arp_reset deassert $halt
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}
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}
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foreach t $targets {
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$t invoke-event reset-deassert-post
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}
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# Pass 1 - Now wait for any halt (requested as part of reset
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# assert/deassert) to happen. Ideally it takes effect without
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# first executing any instructions.
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if { $halt } {
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foreach t $targets {
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if {[jtag tapisenabled [$t cget -chain-position]] == 0} {
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continue
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}
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# Wait upto 1 second for target to halt. Why 1sec? Cause
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# the JTAG tap reset signal might be hooked to a slow
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# resistor/capacitor circuit - and it might take a while
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# to charge
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# Catch, but ignore any errors.
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catch { $t arp_waitstate halted 1000 }
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# Did we succeed?
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set s [$t curstate]
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if { 0 != [string compare $s "halted" ] } {
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2010-01-11 05:54:49 -06:00
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return -code error [format "TARGET: %s - Not halted" $t]
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2009-11-17 10:29:20 -06:00
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}
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}
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}
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#Pass 2 - if needed "init"
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if { 0 == [string compare init $MODE] } {
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foreach t $targets {
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if {[jtag tapisenabled [$t cget -chain-position]] == 0} {
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continue
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}
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set err [catch "$t arp_waitstate halted 5000"]
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# Did it halt?
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if { $err == 0 } {
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$t invoke-event reset-init
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}
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}
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}
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foreach t $targets {
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$t invoke-event reset-end
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}
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}
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#########
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# Temporary migration aid. May be removed starting in January 2011.
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proc armv4_5 params {
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echo "DEPRECATED! use 'arm $params' not 'armv4_5 $params'"
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arm $params
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}
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