forked from xuos/xiuos
support irq
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213a92330e
commit
52b549c14c
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@ -96,7 +96,7 @@ static void _sys_irq_init(int cpu_id)
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// Set Interrupt handler start address
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vector_base[1] = (uint32_t)trap_undefined_instruction; // Undefined Instruction
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vector_base[2] = (uint32_t)user_trap_swi_enter; // Software Interrupt
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// vector_base[3] = (uint32_t)trap_iabort; // Prefetch Abort
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vector_base[3] = (uint32_t)trap_iabort; // Prefetch Abort
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vector_base[4] = (uint32_t)trap_dabort; // Data Abort
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vector_base[5] = (uint32_t)handle_reserved; // Reserved
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vector_base[6] = (uint32_t)trap_irq_enter; // IRQ
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@ -23,7 +23,7 @@ INC_DIR = -I$(KERNEL_ROOT)/services/shell/letter-shell \
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-I$(KERNEL_ROOT)/services/boards/$(BOARD) \
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-I$(KERNEL_ROOT)/services/app
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all: init test_fs simple_client simple_server shell fs_server test_priority readme.txt | bin
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all: init test_fs simple_client simple_server shell fs_server test_priority test_irq_hdlr test_irq_send readme.txt | bin
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../tools/mkfs/mkfs ./fs.img $^
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@mv $(filter-out readme.txt, $^) bin
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@mv *.o bin
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@ -32,6 +32,14 @@ all: init test_fs simple_client simple_server shell fs_server test_priority read
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bin:
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@mkdir -p bin
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test_irq_send: test_irq_sender.o usyscall.o libserial.o
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@${ld} ${user_ldflags} -e main -o $@ $^ ${board_specs}
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@${objdump} -S $@ > $@.asm
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test_irq_hdlr: test_irq_handler.o libserial.o libipc.o session.o usyscall.o libmem.o
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@${ld} ${user_ldflags} -e main -o $@ $^ ${board_specs}
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@${objdump} -S $@ > $@.asm
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shell: shell_port.o libserial.o shell_cmd_list.o shell.o shell_ext.o libfs_to_client.o libipc.o session.o usyscall.o libmem.o
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@${ld} ${user_ldflags} -e main -o $@ $^ ${board_specs}
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@${objdump} -S $@ > $@.asm
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@ -0,0 +1,42 @@
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/*
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* Copyright (c) 2020 AIIT XUOS Lab
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* XiUOS is licensed under Mulan PSL v2.
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* You can use this software according to the terms and conditions of the Mulan PSL v2.
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* You may obtain a copy of Mulan PSL v2 at:
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* http://license.coscl.org.cn/MulanPSL2
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* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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* See the Mulan PSL v2 for more details.
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*/
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#include "libipc.h"
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#include "libserial.h"
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#include "usyscall.h"
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IPC_SERVICES(IpcSwIntrHandler, Ipc_intr_3);
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enum {
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SW_INTERRUPT_3 = 3,
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};
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void sgi_test_handler(void)
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{
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printf("TEST_SW_HDLR: In %s()\n", __func__);
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}
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int IPC_DO_SERVE_FUNC(Ipc_intr_3)(void* useless)
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{
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sgi_test_handler();
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return 0;
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}
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IPC_SERVER_INTERFACE(Ipc_intr_3, 1);
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IPC_SERVER_REGISTER_INTERFACES(IpcSwIntrHandler, 1, Ipc_intr_3);
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int main()
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{
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register_irq(SW_INTERRUPT_3, Ipc_intr_3);
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ipc_server_loop(&IpcSwIntrHandler);
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exit();
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}
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@ -18,7 +18,7 @@ INC_DIR = -I$(KERNEL_ROOT)/services/fs/libfs \
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-I$(KERNEL_ROOT)/services/boards/$(BOARD) \
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-I$(KERNEL_ROOT)/services/app
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board: libserial.o usyscall.o
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board: libserial.o usyscall.o test_irq_sender.o
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@mv $^ ../../app
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%.o: %.c
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@ -0,0 +1,82 @@
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/*
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* Copyright (c) 2020 AIIT XUOS Lab
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* XiUOS is licensed under Mulan PSL v2.
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* You can use this software according to the terms and conditions of the Mulan PSL v2.
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* You may obtain a copy of Mulan PSL v2 at:
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* http://license.coscl.org.cn/MulanPSL2
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* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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* See the Mulan PSL v2 for more details.
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*/
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#include "libserial.h"
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#include "usyscall.h"
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enum {
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SW_INTERRUPT_3 = 3,
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};
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enum {
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ARM_PERIPHERAL_BASE = 0x00A00000,
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MX6Q_GICD_BASE_OFFSET = 0x1000,
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MX6Q_GICC_BASE_OFFSET = 0x100,
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ARM_PERIPHERAL_VIRT_BASE = 0x50000000,
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};
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struct _gicd_registers {
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uint32_t CTLR; //!< Distributor Control Register.
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uint32_t TYPER; //!< Interrupt Controller Type Register.
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uint32_t IIDR; //!< Distributor Implementer Identification Register.
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uint32_t _reserved0[29];
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uint32_t IGROUPRn[8]; //!< Interrupt Group Registers.
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uint32_t _reserved1[24];
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uint32_t ISENABLERn[32]; //!< Interrupt Set-Enable Registers.
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uint32_t ICENABLERn[32]; //!< Interrupt Clear-Enable Registers.
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uint32_t ISPENDRn[32]; //!< Interrupt Set-Pending Registers.
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uint32_t ICPENDRn[32]; //!< Interrupt Clear-Pending Registers.
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uint32_t ICDABRn[32]; //!< Active Bit Registers.
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uint32_t _reserved2[32];
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uint8_t IPRIORITYRn[255 * sizeof(uint32_t)]; //!< Interrupt Priority Registers. (Byte accessible)
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uint32_t _reserved3;
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uint8_t ITARGETSRn[255 * sizeof(uint32_t)]; //!< Interrupt Processor Targets Registers. (Byte accessible)
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uint32_t _reserved4;
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uint32_t ICFGRn[64]; //!< Interrupt Configuration Registers.
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uint32_t _reserved5[128];
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uint32_t SGIR; //!< Software Generated Interrupt Register
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};
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typedef volatile struct _gicd_registers gicd_t;
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enum _gicd_sgir_fields {
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kBP_GICD_SGIR_TargetListFilter = 24,
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kBM_GICD_SGIR_TargetListFilter = (0x3 << kBP_GICD_SGIR_TargetListFilter),
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kBP_GICD_SGIR_CPUTargetList = 16,
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kBM_GICD_SGIR_CPUTargetList = (0xff << kBP_GICD_SGIR_CPUTargetList),
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kBP_GICD_SGIR_NSATT = 15,
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kBM_GICD_SGIR_NSATT = (1 << kBP_GICD_SGIR_NSATT),
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kBP_GICD_SGIR_SGIINTID = 0,
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kBM_GICD_SGIR_SGIINTID = 0xf
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};
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void gic_send_sgi(uint32_t irqID, uint32_t target_list, uint32_t filter_list)
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{
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gicd_t* gicd = (gicd_t*)(ARM_PERIPHERAL_VIRT_BASE + MX6Q_GICD_BASE_OFFSET);
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gicd->SGIR = (filter_list << kBP_GICD_SGIR_TargetListFilter) //
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| (target_list << kBP_GICD_SGIR_CPUTargetList) //
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| (irqID & 0xf);
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}
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int main()
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{
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static char prog_name[] = "TEST_IRQ_SEND";
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printf("%s: Mapping GIC\n", prog_name);
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mmap(ARM_PERIPHERAL_VIRT_BASE, ARM_PERIPHERAL_BASE, 0x2000, true);
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printf("%s: Sending soft interrupt\n", prog_name);
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gic_send_sgi(SW_INTERRUPT_3, 0, 2);
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printf("%s: Soft interrupt send done\n", prog_name);
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exit();
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}
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@ -48,6 +48,7 @@ enum ProcState {
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READY,
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RUNNING,
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DEAD,
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NEVER_RUN,
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};
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/* Thread Control Block */
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@ -104,7 +104,7 @@ static uintptr_t map_task_share_page(struct TaskMicroDescriptor* task, const uin
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ERROR("Alloc task buddy failed.\n");
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return (uintptr_t)NULL;
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}
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vaddr = (uintptr_t)KBuddyAlloc(task->massive_ipc_allocator, nr_pages * 2);
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return map_task_share_page(task, paddr, nr_pages);
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}
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}
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@ -34,40 +34,55 @@ Modification:
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#include "actracer.h"
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#include "assert.h"
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#include "ipc.h"
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#include "mmu_common.h"
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#include "multicores.h"
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#include "share_page.h"
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#include "syscall.h"
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#include "task.h"
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static struct TaskMicroDescriptor kernel_irq_proxy;
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static struct TaskMicroDescriptor* kernel_irq_proxy;
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static struct {
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struct TaskMicroDescriptor* handle_task;
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struct Session* session;
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struct Session session;
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int opcode;
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} irq_forward_table[NR_IRQS];
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static void send_irq_to_user(int irq_num)
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{
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struct Session* session = &irq_forward_table[irq_num].session;
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int len = IPC_ARG_INFO_BASE_OFFSET;
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len += sizeof(struct IpcArgInfo);
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/* add session tail */
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struct IpcMsg* buf = irq_forward_table[irq_num].session->buf + irq_forward_table[irq_num].session->tail;
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irq_forward_table[irq_num].session->tail += len;
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struct IpcMsg* buf = session->buf + session->tail;
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memset((void*)buf, 0, len);
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session->tail = (session->tail + len) % session->capacity;
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/* construct message */
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buf->header.len = len;
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buf->header.nr_args = 0;
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buf->header.nr_args = 1;
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buf->header.init = 1;
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buf->header.opcode = irq_forward_table[irq_num].opcode;
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buf->header.done = 0;
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buf->header.magic = IPC_MSG_MAGIC;
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buf->header.valid = 1;
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/* add session head */
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irq_forward_table[irq_num].session->head += len;
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session->head = (session->head + len) % session->capacity;
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}
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int user_irq_handler(int irq, void* tf, void* arg)
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{
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static struct MmuCommonDone* p_mmu_driver = NULL;
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if (p_mmu_driver == NULL) {
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struct TraceTag mmu_driver_tag;
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AchieveResourceTag(&mmu_driver_tag, RequireRootTag(), "/hardkernel/mmu-ac-resource");
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p_mmu_driver = (struct MmuCommonDone*)AchieveResource(&mmu_driver_tag);
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}
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p_mmu_driver->LoadPgdir((uintptr_t)V2P(kernel_irq_proxy->pgdir.pd_addr));
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send_irq_to_user(irq);
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p_mmu_driver->LoadPgdir((uintptr_t)V2P(cur_cpu()->task->pgdir.pd_addr));
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next_task_emergency = irq_forward_table[irq].handle_task;
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xizi_task_manager.cur_task_yield_noschedule();
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return 0;
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@ -77,6 +92,7 @@ extern int create_session_inner(struct TaskMicroDescriptor* client, struct TaskM
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/// @warning no tested.
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int sys_register_irq(int irq_num, int irq_opcode)
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{
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// init intr resource;
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static struct TraceTag intr_ac_tag;
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if (!AchieveResourceTag(&intr_ac_tag, RequireRootTag(), "hardkernel/intr-ac-resource")) {
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ERROR("intr not initialized.\n");
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@ -84,6 +100,15 @@ int sys_register_irq(int irq_num, int irq_opcode)
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}
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struct XiziTrapDriver* p_intr_driver = AchieveResource(&intr_ac_tag);
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// init kerenl sender proxy
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if (kernel_irq_proxy == NULL) {
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kernel_irq_proxy = xizi_task_manager.new_task_cb();
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kernel_irq_proxy->state = NEVER_RUN;
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xizi_pager.new_pgdir(&kernel_irq_proxy->pgdir);
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memcpy(kernel_irq_proxy->pgdir.pd_addr, kern_pgdir.pd_addr, TOPLEVLE_PAGEDIR_SIZE);
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}
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// bind irq to session
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if (p_intr_driver->sw_irqtbl[irq_num].handler != NULL) {
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ERROR("irq %d is occupied.\n", irq_num);
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return -1;
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@ -91,7 +116,7 @@ int sys_register_irq(int irq_num, int irq_opcode)
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struct TaskMicroDescriptor* cur_task = cur_cpu()->task;
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irq_forward_table[irq_num].handle_task = cur_task;
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irq_forward_table[irq_num].opcode = irq_opcode;
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create_session_inner(&kernel_irq_proxy, cur_task, PAGE_SIZE, irq_forward_table[irq_num].session);
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create_session_inner(kernel_irq_proxy, cur_task, PAGE_SIZE, &irq_forward_table[irq_num].session);
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p_intr_driver->bind_irq_handler(irq_num, user_irq_handler);
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return 0;
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@ -179,7 +179,7 @@ static void _scheduler(struct SchedulerRightGroup right_group)
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next_task = NULL;
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/* find next runnable task */
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assert(cur_cpu()->task == NULL);
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if (next_task_emergency != NULL) {
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if (next_task_emergency != NULL && next_task->state == READY) {
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next_task = next_task_emergency;
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next_task->state = RUNNING;
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next_task_emergency = NULL;
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