2010-11-14 22:48:14 +01:00
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/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2007 Rudolf Marek <r.marek@assembler.cz>
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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; version 2 of the License.
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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, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <string.h>
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#include <stdint.h>
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#include <arch/smp/mpspec.h>
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#include <arch/ioapic.h>
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#include "southbridge/via/vt8237r/vt8237r.h"
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#include "southbridge/via/k8t890/k8t890.h"
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static void *smp_write_config_table(void *v)
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{
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struct mp_config_table *mc;
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2010-11-22 15:14:56 +01:00
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int bus_isa;
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2010-11-14 22:48:14 +01:00
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mc = (void *)(((char *)v) + SMP_FLOATING_TABLE_LEN);
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Get mptable OEM/product ID from kconfig variables.
We currently use "COREBOOT" unconditionally as the "OEM ID" in our
mptable.c files, and hardcode the mainboard name in mptable.c like this:
mptable_init(mc, "DK8-HTX ", LAPIC_ADDR);
However, the spec says
"OEM ID: A string that identifies the manufacturer of the system hardware."
(Table 4-2, page 42)
so "COREBOOT" doesn't match the spec, we should use the hardware vendor name.
Thus, use CONFIG_MAINBOARD_VENDOR which we have already as the "OEM ID"
(truncate/fill it to 8 characters as per spec).
Also, use CONFIG_MAINBOARD_PART_NUMBER (the board name) as "product ID",
and truncate/fill it to 12 characters as per spec, if needed.
Abuild-tested.
Signed-off-by: Uwe Hermann <uwe@hermann-uwe.de>
Acked-by: Stefan Reinauer <stepan@coreboot.org>
git-svn-id: svn://svn.coreboot.org/coreboot/trunk@6183 2b7e53f0-3cfb-0310-b3e9-8179ed1497e1
2010-12-16 20:51:38 +01:00
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mptable_init(mc, LAPIC_ADDR);
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2010-11-14 22:48:14 +01:00
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smp_write_processors(mc);
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2010-11-22 15:14:56 +01:00
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mptable_write_buses(mc, NULL, &bus_isa);
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2010-11-14 22:48:14 +01:00
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/* I/O APICs: APIC ID Version State Address */
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smp_write_ioapic(mc, VT8237R_APIC_ID, 0x20, IO_APIC_ADDR);
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smp_write_ioapic(mc, K8T890_APIC_ID, 0x20, K8T890_APIC_BASE);
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mptable_add_isa_interrupts(mc, bus_isa, VT8237R_APIC_ID, 0);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xb << 2) | 0, VT8237R_APIC_ID, 0x10); //IRQ16
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xb << 2) | 1, VT8237R_APIC_ID, 0x11); //IRQ17
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xb << 2) | 2, VT8237R_APIC_ID, 0x12); //IRQ18
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xb << 2) | 3, VT8237R_APIC_ID, 0x13); //IRQ19
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xc << 2) | 0, VT8237R_APIC_ID, 0x11); //IRQ17
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xc << 2) | 1, VT8237R_APIC_ID, 0x12); //IRQ18
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xc << 2) | 2, VT8237R_APIC_ID, 0x13); //IRQ19
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xc << 2) | 3, VT8237R_APIC_ID, 0x10); //IRQ16
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xd << 2) | 0, VT8237R_APIC_ID, 0x12); //IRQ18
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xd << 2) | 1, VT8237R_APIC_ID, 0x13); //IRQ19
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xd << 2) | 2, VT8237R_APIC_ID, 0x10); //IRQ16
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xd << 2) | 3, VT8237R_APIC_ID, 0x11); //IRQ17
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xf << 2) | 0, VT8237R_APIC_ID, 0x14);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0xf << 2) | 1, VT8237R_APIC_ID, 0x14);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x10 << 2) | 0, VT8237R_APIC_ID, 0x15);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x10 << 2) | 1, VT8237R_APIC_ID, 0x15);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x10 << 2) | 2, VT8237R_APIC_ID, 0x15);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x11 << 2) | 2, VT8237R_APIC_ID, 0x16);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x2 << 2) | 0, K8T890_APIC_ID, 0x3);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x2 << 2) | 1, K8T890_APIC_ID, 0x3);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x2 << 2) | 2, K8T890_APIC_ID, 0x3);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x2 << 2) | 3, K8T890_APIC_ID, 0x3);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x3 << 2) | 0, K8T890_APIC_ID, 0x7);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x3 << 2) | 1, K8T890_APIC_ID, 0xb);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x3 << 2) | 2, K8T890_APIC_ID, 0xf);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x0, (0x3 << 2) | 3, K8T890_APIC_ID, 0x13);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x2, (0x00 << 2) | 0, K8T890_APIC_ID, 0x0);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x2, (0x00 << 2) | 1, K8T890_APIC_ID, 0x1);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x2, (0x00 << 2) | 2, K8T890_APIC_ID, 0x2);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x2, (0x00 << 2) | 3, K8T890_APIC_ID, 0x3);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x3, (0x00 << 2) | 0, K8T890_APIC_ID, 0x4);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x3, (0x00 << 2) | 1, K8T890_APIC_ID, 0x5);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x3, (0x00 << 2) | 2, K8T890_APIC_ID, 0x6);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x3, (0x00 << 2) | 3, K8T890_APIC_ID, 0x7);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x4, (0x00 << 2) | 0, K8T890_APIC_ID, 0x8);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x4, (0x00 << 2) | 1, K8T890_APIC_ID, 0x9);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x4, (0x00 << 2) | 2, K8T890_APIC_ID, 0xa);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x4, (0x00 << 2) | 3, K8T890_APIC_ID, 0xb);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x5, (0x00 << 2) | 0, K8T890_APIC_ID, 0xc);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x5, (0x00 << 2) | 1, K8T890_APIC_ID, 0xd);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x5, (0x00 << 2) | 2, K8T890_APIC_ID, 0xe);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x5, (0x00 << 2) | 3, K8T890_APIC_ID, 0xf);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x6, (0x00 << 2) | 0, K8T890_APIC_ID, 0x10);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x6, (0x00 << 2) | 1, K8T890_APIC_ID, 0x11);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x6, (0x00 << 2) | 2, K8T890_APIC_ID, 0x12);
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smp_write_intsrc(mc, mp_INT, MP_IRQ_TRIGGER_LEVEL|MP_IRQ_POLARITY_LOW, 0x6, (0x00 << 2) | 3, K8T890_APIC_ID, 0x13);
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/* Local Ints: Type Polarity Trigger Bus ID IRQ APIC ID PIN# */
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smp_write_lintsrc(mc, mp_ExtINT, MP_IRQ_TRIGGER_EDGE|MP_IRQ_POLARITY_HIGH, bus_isa, 0x0, MP_APIC_ALL, 0x0);
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smp_write_lintsrc(mc, mp_NMI, MP_IRQ_TRIGGER_EDGE|MP_IRQ_POLARITY_HIGH, bus_isa, 0x0, MP_APIC_ALL, 0x1);
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/* There is no extension information... */
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/* Compute the checksums. */
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mc->mpe_checksum = smp_compute_checksum(smp_next_mpc_entry(mc),
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mc->mpe_length);
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mc->mpc_checksum = smp_compute_checksum(mc, mc->mpc_length);
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return smp_next_mpe_entry(mc);
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}
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unsigned long write_smp_table(unsigned long addr)
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{
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void *v;
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v = smp_write_floating_table(addr);
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return (unsigned long)smp_write_config_table(v);
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}
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