The fmc_model and spi_model strings are allocated via g_strdup in
property setters but never freed when the machine object is destroyed.
Fixes: 9820e52fbe ("hw/arm/aspeed: Add machine properties to define the flash models")
Reviewed-by: Cédric Le Goater <clg@redhat.com>
Signed-off-by: Marc-André Lureau <marcandre.lureau@redhat.com>
444 lines
16 KiB
C
444 lines
16 KiB
C
/*
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* OpenPOWER Palmetto BMC
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*
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* Andrew Jeffery <andrew@aj.id.au>
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*
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* Copyright 2016 IBM Corp.
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*
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* This code is licensed under the GPL version 2 or later. See
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* the COPYING file in the top-level directory.
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*/
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#include "qemu/osdep.h"
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#include "qapi/error.h"
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#include "hw/arm/boot.h"
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#include "hw/arm/aspeed.h"
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#include "hw/arm/aspeed_soc.h"
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#include "hw/arm/machines-qom.h"
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#include "hw/block/flash.h"
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#include "hw/gpio/pca9552.h"
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#include "hw/gpio/pca9554.h"
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#include "system/block-backend.h"
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#include "qemu/error-report.h"
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#include "qemu/units.h"
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#include "hw/core/qdev-clock.h"
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#include "system/system.h"
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static struct arm_boot_info aspeed_board_binfo = {
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.board_id = -1, /* device-tree-only board */
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};
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#define AST_SMP_MAILBOX_BASE 0x1e6e2180
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#define AST_SMP_MBOX_FIELD_ENTRY (AST_SMP_MAILBOX_BASE + 0x0)
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#define AST_SMP_MBOX_FIELD_GOSIGN (AST_SMP_MAILBOX_BASE + 0x4)
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#define AST_SMP_MBOX_FIELD_READY (AST_SMP_MAILBOX_BASE + 0x8)
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#define AST_SMP_MBOX_FIELD_POLLINSN (AST_SMP_MAILBOX_BASE + 0xc)
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#define AST_SMP_MBOX_CODE (AST_SMP_MAILBOX_BASE + 0x10)
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#define AST_SMP_MBOX_GOSIGN 0xabbaab00
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static void aspeed_write_smpboot(ARMCPU *cpu,
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const struct arm_boot_info *info)
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{
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AddressSpace *as = arm_boot_address_space(cpu, info);
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static const ARMInsnFixup poll_mailbox_ready[] = {
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/*
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* r2 = per-cpu go sign value
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* r1 = AST_SMP_MBOX_FIELD_ENTRY
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* r0 = AST_SMP_MBOX_FIELD_GOSIGN
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*/
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{ 0xee100fb0 }, /* mrc p15, 0, r0, c0, c0, 5 */
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{ 0xe21000ff }, /* ands r0, r0, #255 */
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{ 0xe59f201c }, /* ldr r2, [pc, #28] */
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{ 0xe1822000 }, /* orr r2, r2, r0 */
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{ 0xe59f1018 }, /* ldr r1, [pc, #24] */
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{ 0xe59f0018 }, /* ldr r0, [pc, #24] */
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{ 0xe320f002 }, /* wfe */
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{ 0xe5904000 }, /* ldr r4, [r0] */
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{ 0xe1520004 }, /* cmp r2, r4 */
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{ 0x1afffffb }, /* bne <wfe> */
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{ 0xe591f000 }, /* ldr pc, [r1] */
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{ AST_SMP_MBOX_GOSIGN },
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{ AST_SMP_MBOX_FIELD_ENTRY },
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{ AST_SMP_MBOX_FIELD_GOSIGN },
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{ 0, FIXUP_TERMINATOR }
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};
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static const uint32_t fixupcontext[FIXUP_MAX] = { 0 };
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arm_write_bootloader("aspeed.smpboot", as, info->smp_loader_start,
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poll_mailbox_ready, fixupcontext);
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}
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static void aspeed_reset_secondary(ARMCPU *cpu,
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const struct arm_boot_info *info)
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{
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AddressSpace *as = arm_boot_address_space(cpu, info);
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CPUState *cs = CPU(cpu);
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/* info->smp_bootreg_addr */
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address_space_stl(as, AST_SMP_MBOX_FIELD_GOSIGN, 0,
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MEMTXATTRS_UNSPECIFIED, NULL);
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cpu_set_pc(cs, info->smp_loader_start);
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}
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static void sdhci_attach_drive(SDHCIState *sdhci, DriveInfo *dinfo, bool emmc,
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bool boot_emmc)
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{
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DeviceState *card;
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if (!dinfo) {
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return;
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}
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card = qdev_new(emmc ? TYPE_EMMC : TYPE_SD_CARD);
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/*
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* Force the boot properties of the eMMC device only when the
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* machine is strapped to boot from eMMC. Without these
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* settings, the machine would not boot.
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*
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* This also allows the machine to use an eMMC device without
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* boot areas when booting from the flash device (or -kernel)
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* Ideally, the device and its properties should be defined on
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* the command line.
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*/
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if (emmc && boot_emmc) {
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qdev_prop_set_uint64(card, "boot-partition-size", 1 * MiB);
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qdev_prop_set_uint8(card, "boot-config", 0x1 << 3);
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}
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qdev_prop_set_drive_err(card, "drive", blk_by_legacy_dinfo(dinfo),
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&error_fatal);
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qdev_realize_and_unref(card,
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qdev_get_child_bus(DEVICE(sdhci), "sd-bus"),
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&error_fatal);
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}
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void aspeed_connect_serial_hds_to_uarts(AspeedMachineState *bmc)
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{
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AspeedMachineClass *amc = ASPEED_MACHINE_GET_CLASS(bmc);
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AspeedSoCState *s = bmc->soc;
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AspeedSoCClass *sc = ASPEED_SOC_GET_CLASS(s);
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int uart_chosen = bmc->uart_chosen ? bmc->uart_chosen : amc->uart_default;
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aspeed_soc_uart_set_chr(s->uart, uart_chosen, sc->uarts_base,
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sc->uarts_num, serial_hd(0));
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for (int i = 1, uart = sc->uarts_base; i < sc->uarts_num; uart++) {
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if (uart == uart_chosen) {
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continue;
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}
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aspeed_soc_uart_set_chr(s->uart, uart, sc->uarts_base, sc->uarts_num,
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serial_hd(i++));
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}
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}
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static void aspeed_machine_init(MachineState *machine)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(machine);
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AspeedMachineClass *amc = ASPEED_MACHINE_GET_CLASS(machine);
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AspeedSoCClass *sc;
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int i;
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const char *bios_name = NULL;
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DriveInfo *emmc0 = NULL;
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bool boot_emmc;
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bmc->soc = ASPEED_SOC(object_new(amc->soc_name));
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object_property_add_child(OBJECT(machine), "soc", OBJECT(bmc->soc));
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object_unref(OBJECT(bmc->soc));
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sc = ASPEED_SOC_GET_CLASS(bmc->soc);
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/*
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* This will error out if the RAM size is not supported by the
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* memory controller of the SoC.
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*/
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object_property_set_uint(OBJECT(bmc->soc), "ram-size", machine->ram_size,
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&error_fatal);
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for (i = 0; i < sc->macs_num; i++) {
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if ((amc->macs_mask & (1 << i)) &&
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!qemu_configure_nic_device(DEVICE(&bmc->soc->ftgmac100[i]),
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true, NULL)) {
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break; /* No configs left; stop asking */
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}
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}
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object_property_set_int(OBJECT(bmc->soc), "hw-strap1", bmc->hw_strap1,
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&error_abort);
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object_property_set_int(OBJECT(bmc->soc), "hw-strap2", amc->hw_strap2,
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&error_abort);
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object_property_set_link(OBJECT(bmc->soc), "memory",
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OBJECT(get_system_memory()), &error_abort);
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object_property_set_link(OBJECT(bmc->soc), "dram",
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OBJECT(machine->ram), &error_abort);
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if (amc->sdhci_wp_inverted) {
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for (i = 0; i < bmc->soc->sdhci.num_slots; i++) {
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object_property_set_bool(OBJECT(&bmc->soc->sdhci.slots[i]),
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"wp-inverted", true, &error_abort);
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}
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}
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if (machine->kernel_filename) {
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/*
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* When booting with a -kernel command line there is no u-boot
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* that runs to unlock the SCU. In this case set the default to
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* be unlocked as the kernel expects
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*/
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object_property_set_int(OBJECT(bmc->soc), "hw-prot-key",
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ASPEED_SCU_PROT_KEY, &error_abort);
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}
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aspeed_connect_serial_hds_to_uarts(bmc);
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qdev_realize(DEVICE(bmc->soc), NULL, &error_abort);
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if (defaults_enabled()) {
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aspeed_board_init_flashes(&bmc->soc->fmc,
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bmc->fmc_model ? bmc->fmc_model : amc->fmc_model,
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amc->num_cs, 0);
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aspeed_board_init_flashes(&bmc->soc->spi[0],
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bmc->spi_model ? bmc->spi_model : amc->spi_model,
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1, amc->num_cs);
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aspeed_board_init_flashes(&bmc->soc->spi[1],
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amc->spi2_model, 1, amc->num_cs2);
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}
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if (machine->kernel_filename && sc->num_cpus > 1) {
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/* With no u-boot we must set up a boot stub for the secondary CPU */
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MemoryRegion *smpboot = g_new(MemoryRegion, 1);
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memory_region_init_ram(smpboot, NULL, "aspeed.smpboot",
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0x80, &error_abort);
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memory_region_add_subregion(get_system_memory(),
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AST_SMP_MAILBOX_BASE, smpboot);
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aspeed_board_binfo.write_secondary_boot = aspeed_write_smpboot;
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aspeed_board_binfo.secondary_cpu_reset_hook = aspeed_reset_secondary;
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aspeed_board_binfo.smp_loader_start = AST_SMP_MBOX_CODE;
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}
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aspeed_board_binfo.ram_size = machine->ram_size;
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aspeed_board_binfo.loader_start = sc->memmap[ASPEED_DEV_SDRAM];
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if (amc->i2c_init) {
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amc->i2c_init(bmc);
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}
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for (i = 0; i < bmc->soc->sdhci.num_slots && defaults_enabled(); i++) {
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sdhci_attach_drive(&bmc->soc->sdhci.slots[i],
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drive_get(IF_SD, 0, i), false, false);
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}
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boot_emmc = sc->boot_from_emmc(bmc->soc);
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if (bmc->soc->emmc.num_slots && defaults_enabled()) {
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emmc0 = drive_get(IF_SD, 0, bmc->soc->sdhci.num_slots);
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sdhci_attach_drive(&bmc->soc->emmc.slots[0], emmc0, true, boot_emmc);
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}
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if (!bmc->mmio_exec) {
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DeviceState *dev = ssi_get_cs(bmc->soc->fmc.spi, 0);
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BlockBackend *fmc0 = dev ? m25p80_get_blk(dev) : NULL;
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if (fmc0 && !boot_emmc) {
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uint64_t rom_size = memory_region_size(&bmc->soc->spi_boot);
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aspeed_install_boot_rom(bmc->soc, fmc0, &bmc->boot_rom, rom_size);
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} else if (emmc0) {
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aspeed_install_boot_rom(bmc->soc, blk_by_legacy_dinfo(emmc0),
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&bmc->boot_rom, 64 * KiB);
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}
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}
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if (amc->vbootrom) {
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bios_name = machine->firmware ?: VBOOTROM_FILE_NAME;
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aspeed_load_vbootrom(bmc->soc, bios_name, &error_abort);
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}
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arm_load_kernel(ARM_CPU(first_cpu), machine, &aspeed_board_binfo);
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}
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void aspeed_create_pca9552(AspeedSoCState *soc, int bus_id, int addr)
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{
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i2c_slave_create_simple(aspeed_i2c_get_bus(&soc->i2c, bus_id),
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TYPE_PCA9552, addr);
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}
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I2CSlave *aspeed_create_pca9554(AspeedSoCState *soc, int bus_id, int addr)
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{
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return i2c_slave_create_simple(aspeed_i2c_get_bus(&soc->i2c, bus_id),
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TYPE_PCA9554, addr);
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}
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static bool aspeed_get_mmio_exec(Object *obj, Error **errp)
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{
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return ASPEED_MACHINE(obj)->mmio_exec;
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}
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static void aspeed_set_mmio_exec(Object *obj, bool value, Error **errp)
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{
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ASPEED_MACHINE(obj)->mmio_exec = value;
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}
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static void aspeed_machine_instance_init(Object *obj)
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{
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AspeedMachineClass *amc = ASPEED_MACHINE_GET_CLASS(obj);
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ASPEED_MACHINE(obj)->mmio_exec = false;
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ASPEED_MACHINE(obj)->hw_strap1 = amc->hw_strap1;
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}
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static char *aspeed_get_fmc_model(Object *obj, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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return g_strdup(bmc->fmc_model);
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}
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static void aspeed_set_fmc_model(Object *obj, const char *value, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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g_free(bmc->fmc_model);
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bmc->fmc_model = g_strdup(value);
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}
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static char *aspeed_get_spi_model(Object *obj, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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return g_strdup(bmc->spi_model);
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}
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static void aspeed_set_spi_model(Object *obj, const char *value, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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g_free(bmc->spi_model);
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bmc->spi_model = g_strdup(value);
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}
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static char *aspeed_get_bmc_console(Object *obj, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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AspeedMachineClass *amc = ASPEED_MACHINE_GET_CLASS(bmc);
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int uart_chosen = bmc->uart_chosen ? bmc->uart_chosen : amc->uart_default;
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return g_strdup_printf("uart%d", aspeed_uart_index(uart_chosen));
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}
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static void aspeed_set_bmc_console(Object *obj, const char *value, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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AspeedMachineClass *amc = ASPEED_MACHINE_GET_CLASS(bmc);
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AspeedSoCClass *sc = ASPEED_SOC_CLASS(object_class_by_name(amc->soc_name));
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int val;
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int uart_first = aspeed_uart_first(sc->uarts_base);
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int uart_last = aspeed_uart_last(sc->uarts_base, sc->uarts_num);
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if (sscanf(value, "uart%u", &val) != 1) {
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error_setg(errp, "Bad value for \"uart\" property");
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return;
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}
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/* The number of UART depends on the SoC */
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if (val < uart_first || val > uart_last) {
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error_setg(errp, "\"uart\" should be in range [%d - %d]",
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uart_first, uart_last);
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return;
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}
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bmc->uart_chosen = val + ASPEED_DEV_UART0;
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}
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static void aspeed_machine_class_props_init(ObjectClass *oc)
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{
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object_class_property_add_bool(oc, "execute-in-place",
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aspeed_get_mmio_exec,
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aspeed_set_mmio_exec);
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object_class_property_set_description(oc, "execute-in-place",
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"boot directly from CE0 flash device");
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object_class_property_add_str(oc, "bmc-console", aspeed_get_bmc_console,
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aspeed_set_bmc_console);
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object_class_property_set_description(oc, "bmc-console",
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"Change the default UART to \"uartX\"");
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object_class_property_add_str(oc, "fmc-model", aspeed_get_fmc_model,
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aspeed_set_fmc_model);
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object_class_property_set_description(oc, "fmc-model",
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"Change the FMC Flash model");
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object_class_property_add_str(oc, "spi-model", aspeed_get_spi_model,
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aspeed_set_spi_model);
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object_class_property_set_description(oc, "spi-model",
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"Change the SPI Flash model");
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}
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void aspeed_machine_class_init_cpus_defaults(MachineClass *mc)
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{
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AspeedMachineClass *amc = ASPEED_MACHINE_CLASS(mc);
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AspeedSoCClass *sc = ASPEED_SOC_CLASS(object_class_by_name(amc->soc_name));
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mc->default_cpus = sc->num_cpus;
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mc->min_cpus = sc->num_cpus;
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mc->max_cpus = sc->num_cpus;
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mc->valid_cpu_types = sc->valid_cpu_types;
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}
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static bool aspeed_machine_ast2600_get_boot_from_emmc(Object *obj, Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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return !!(bmc->hw_strap1 & SCU_AST2600_HW_STRAP_BOOT_SRC_EMMC);
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}
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static void aspeed_machine_ast2600_set_boot_from_emmc(Object *obj, bool value,
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Error **errp)
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{
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AspeedMachineState *bmc = ASPEED_MACHINE(obj);
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if (value) {
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bmc->hw_strap1 |= SCU_AST2600_HW_STRAP_BOOT_SRC_EMMC;
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} else {
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bmc->hw_strap1 &= ~SCU_AST2600_HW_STRAP_BOOT_SRC_EMMC;
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}
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}
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void aspeed_machine_ast2600_class_emmc_init(ObjectClass *oc)
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{
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object_class_property_add_bool(oc, "boot-emmc",
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aspeed_machine_ast2600_get_boot_from_emmc,
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aspeed_machine_ast2600_set_boot_from_emmc);
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object_class_property_set_description(oc, "boot-emmc",
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"Set or unset boot from EMMC");
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}
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static void aspeed_machine_class_init(ObjectClass *oc, const void *data)
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{
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MachineClass *mc = MACHINE_CLASS(oc);
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AspeedMachineClass *amc = ASPEED_MACHINE_CLASS(oc);
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mc->init = aspeed_machine_init;
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mc->no_floppy = 1;
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mc->no_cdrom = 1;
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mc->no_parallel = 1;
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mc->default_ram_id = "ram";
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amc->macs_mask = ASPEED_MAC0_ON;
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amc->uart_default = ASPEED_DEV_UART5;
|
|
|
|
aspeed_machine_class_props_init(oc);
|
|
}
|
|
|
|
static void aspeed_machine_instance_finalize(Object *obj)
|
|
{
|
|
AspeedMachineState *bmc = ASPEED_MACHINE(obj);
|
|
|
|
g_free(bmc->fmc_model);
|
|
g_free(bmc->spi_model);
|
|
}
|
|
|
|
static const TypeInfo aspeed_machine_types[] = {
|
|
{
|
|
.name = TYPE_ASPEED_MACHINE,
|
|
.parent = TYPE_MACHINE,
|
|
.instance_size = sizeof(AspeedMachineState),
|
|
.instance_init = aspeed_machine_instance_init,
|
|
.instance_finalize = aspeed_machine_instance_finalize,
|
|
.class_size = sizeof(AspeedMachineClass),
|
|
.class_init = aspeed_machine_class_init,
|
|
.abstract = true,
|
|
}
|
|
};
|
|
|
|
DEFINE_TYPES(aspeed_machine_types)
|