167 lines
4.3 KiB
C
167 lines
4.3 KiB
C
/* This file is part of the program psim.
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Copyright (C) 1994-1996, Andrew Cagney <cagney@highland.com.au>
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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 3 of the License, or
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(at your option) any later version.
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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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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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#ifndef _HW_CPU_C_
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#define _HW_CPU_C_
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#ifndef STATIC_INLINE_HW_CPU
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#define STATIC_INLINE_HW_CPU STATIC_INLINE
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#endif
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#include "device_table.h"
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#include "hw_cpu.h"
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#include "interrupts.h"
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#include "cpu.h"
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/* DEVICE
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cpu - Interface to a Processor
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DESCRIPTION
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The CPU device provides the connection between the interrupt net
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(linking the devices and the interrupt controller) and the
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simulated model of each processor. This device contains interrupt
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ports that correspond directly to the external interrupt stimulus
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that can be sent to a given processor. Sending an interrupt to one
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of the ports results in an interrupt being delivered to the
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corresponding processor.
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Typically, an interrupt controller would have its inputs connected
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to device interrupt sources and its outputs (sreset, int, et.al.)
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connected to this device.
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PROPERTIES
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cpu-nr = <integer> (required)
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Specify the processor (1..N) that this cpu device node should
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control.
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EXAMPLES
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Connect an OpenPIC interrupt controller interrupt ports to
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processor zero.
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| -o '/phb/opic@0 > irq0 int /cpus/cpu@0' \
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| -o '/phb/opic@0 > init hreset /cpus/cpu@0' \
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*/
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typedef struct _hw_cpu_device {
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int cpu_nr;
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cpu *processor;
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} hw_cpu_device;
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static const device_interrupt_port_descriptor hw_cpu_interrupt_ports[] = {
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{ "hreset", hw_cpu_hard_reset },
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{ "sreset", hw_cpu_soft_reset },
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{ "int", hw_cpu_external_interrupt },
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{ "mci", hw_cpu_machine_check_interrupt },
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{ "smi", hw_cpu_system_management_interrupt },
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{ NULL }
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};
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static void *
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hw_cpu_create(const char *name,
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const device_unit *unit_address,
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const char *args)
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{
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hw_cpu_device *hw_cpu = ZALLOC(hw_cpu_device);
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return hw_cpu;
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}
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/* during address initialization ensure that any missing cpu
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properties are added to this devices node */
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static void
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hw_cpu_init_address(device *me)
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{
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hw_cpu_device *hw_cpu = (hw_cpu_device*)device_data(me);
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/* populate the node with properties */
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/* clear our data */
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memset(hw_cpu, 0x0, sizeof(hw_cpu_device));
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hw_cpu->cpu_nr = device_find_integer_property(me, "cpu-nr");
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hw_cpu->processor = psim_cpu(device_system(me), hw_cpu->cpu_nr);
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}
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/* Take the interrupt and synchronize its delivery with the clock. If
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we've not yet scheduled an interrupt for the next clock tick, take
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the oportunity to do it now */
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static void
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hw_cpu_interrupt_event(device *me,
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int my_port,
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device *source,
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int source_port,
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int level,
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cpu *processor,
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unsigned_word cia)
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{
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hw_cpu_device *hw_cpu = (hw_cpu_device*)device_data(me);
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if (my_port < 0 || my_port >= hw_cpu_nr_interrupt_ports)
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error("hw_cpu_interrupt_event_callback: interrupt port out of range %d\n",
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my_port);
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switch (my_port) {
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/*case hw_cpu_hard_reset:*/
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/*case hw_cpu_soft_reset:*/
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case hw_cpu_external_interrupt:
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external_interrupt(hw_cpu->processor, level);
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break;
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/*case hw_cpu_machine_check_interrupt:*/
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default:
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error("hw_cpu_deliver_interrupt: unimplemented interrupt port %d\n",
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my_port);
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break;
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}
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}
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static device_callbacks const hw_cpu_callbacks = {
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{ hw_cpu_init_address, }, /* init */
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{ NULL, }, /* address */
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{ NULL, }, /* io */
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{ NULL, }, /* DMA */
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{ hw_cpu_interrupt_event, NULL, hw_cpu_interrupt_ports }, /* interrupts */
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{ NULL, NULL, },
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};
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const device_descriptor hw_cpu_device_descriptor[] = {
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{ "hw-cpu", hw_cpu_create, &hw_cpu_callbacks },
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{ "cpu", hw_cpu_create, &hw_cpu_callbacks },
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{ NULL, },
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};
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#endif /* _HW_CPU_C_ */
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