mirror of
https://github.com/limine-bootloader/limine
synced 2024-11-29 20:03:19 +03:00
228 lines
6.2 KiB
C
228 lines
6.2 KiB
C
#include <pxe/tftp.h>
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#include <pxe/pxe.h>
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#if defined (BIOS)
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# include <lib/real.h>
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#elif defined (UEFI)
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# include <efi.h>
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#endif
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#include <lib/print.h>
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#include <lib/libc.h>
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#include <mm/pmm.h>
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#include <lib/misc.h>
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// cache the dhcp packet
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uint8_t cached_dhcp_packet[DHCP_ACK_PACKET_LEN] = { 0 };
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bool cached_dhcp_ack_valid = false;
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#if defined (BIOS)
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static uint32_t get_boot_server_info(void) {
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struct pxenv_get_cached_info cachedinfo = { 0 };
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cachedinfo.packet_type = PXENV_PACKET_TYPE_CACHED_REPLY;
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pxe_call(PXENV_GET_CACHED_INFO, ((uint16_t)rm_seg(&cachedinfo)), (uint16_t)rm_off(&cachedinfo));
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struct bootph *ph = (struct bootph*)(void *) (((((uint32_t)cachedinfo.buffer) >> 16) << 4) + (((uint32_t)cachedinfo.buffer) & 0xFFFF));
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if (!cached_dhcp_ack_valid) {
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memcpy(cached_dhcp_packet, ph, DHCP_ACK_PACKET_LEN);
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cached_dhcp_ack_valid = true;
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}
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return ph->sip;
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}
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static uint32_t parse_ip_addr(const char *server_addr) {
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uint32_t out;
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if (!server_addr || !strlen(server_addr)) {
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return get_boot_server_info();
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}
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if (inet_pton(server_addr, &out)) {
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panic(true, "tftp: Invalid IPv4 address: \"%s\"", server_addr);
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}
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return out;
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}
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struct file_handle *tftp_open(struct volume *part, const char *server_addr, const char *name) {
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uint32_t server_ip = parse_ip_addr(server_addr);
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const uint16_t server_port = 69; // This couldn't be changed previously either
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int ret = 0;
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(void)part;
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struct PXENV_UNDI_GET_INFORMATION undi_info = { 0 };
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ret = pxe_call(UNDI_GET_INFORMATION, ((uint16_t)rm_seg(&undi_info)), (uint16_t)rm_off(&undi_info));
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if (ret) {
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return NULL;
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}
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//TODO figure out a more proper way to do this.
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uint16_t mtu = undi_info.MaxTranUnit - 48;
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struct pxenv_get_file_size fsize = {
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.status = 0,
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.sip = server_ip,
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};
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strcpy((char*)fsize.name, name);
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ret = pxe_call(TFTP_GET_FILE_SIZE, ((uint16_t)rm_seg(&fsize)), (uint16_t)rm_off(&fsize));
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if (ret) {
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return NULL;
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}
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struct file_handle *handle = ext_mem_alloc(sizeof(struct file_handle));
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handle->size = fsize.file_size;
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handle->is_memfile = true;
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handle->pxe = true;
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handle->pxe_ip = server_ip;
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handle->pxe_port = server_port;
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size_t name_len = strlen(name);
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handle->path = ext_mem_alloc(1 + name_len + 1);
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handle->path[0] = '/';
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memcpy(&handle->path[1], name, name_len);
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handle->path_len = 1 + name_len + 1;
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struct pxenv_open open = {
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.status = 0,
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.sip = server_ip,
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.port = (server_port) << 8,
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.packet_size = mtu
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};
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strcpy((char*)open.name, name);
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ret = pxe_call(TFTP_OPEN, ((uint16_t)rm_seg(&open)), (uint16_t)rm_off(&open));
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if (ret) {
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print("tftp: Failed to open file %x or bad packet size", open.status);
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pmm_free(handle, sizeof(struct file_handle));
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return NULL;
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}
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mtu = open.packet_size;
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uint8_t *buf = conv_mem_alloc(mtu);
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handle->fd = ext_mem_alloc(handle->size);
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size_t progress = 0;
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bool slow = false;
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while (progress < handle->size) {
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struct pxenv_read read = {
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.boff = ((uint16_t)rm_off(buf)),
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.bseg = ((uint16_t)rm_seg(buf)),
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};
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ret = pxe_call(TFTP_READ, ((uint16_t)rm_seg(&read)), (uint16_t)rm_off(&read));
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if (ret) {
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panic(false, "tftp: Read failure");
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}
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memcpy(handle->fd + progress, buf, read.bsize);
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progress += read.bsize;
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if (read.bsize < mtu && !slow && progress < handle->size) {
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slow = true;
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print("tftp: Server is sending the file in smaller packets (it sent %d bytes), download might take longer.\n", read.bsize);
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}
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}
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uint16_t close = 0;
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ret = pxe_call(TFTP_CLOSE, ((uint16_t)rm_seg(&close)), (uint16_t)rm_off(&close));
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if (ret) {
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panic(false, "tftp: Close failure");
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}
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pmm_free(buf, mtu);
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return handle;
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}
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#elif defined (UEFI)
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static EFI_IP_ADDRESS *parse_ip_addr(struct volume *part, const char *server_addr) {
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static EFI_IP_ADDRESS out;
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if (!server_addr || !strlen(server_addr)) {
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EFI_PXE_BASE_CODE_PACKET* packet;
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if (part->pxe_base_code->Mode->PxeReplyReceived) packet = &part->pxe_base_code->Mode->PxeReply;
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else if (part->pxe_base_code->Mode->ProxyOfferReceived) packet = &part->pxe_base_code->Mode->ProxyOffer;
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else packet = &part->pxe_base_code->Mode->DhcpAck;
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memcpy(out.Addr, packet->Dhcpv4.BootpSiAddr, 4);
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if (!cached_dhcp_ack_valid) {
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memcpy(cached_dhcp_packet, packet, DHCP_ACK_PACKET_LEN);
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cached_dhcp_ack_valid = true;
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}
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} else {
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if (inet_pton(server_addr, &out.Addr)) {
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panic(true, "tftp: Invalid IPv4 address: \"%s\"", server_addr);
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}
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}
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return &out;
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}
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struct file_handle *tftp_open(struct volume *part, const char *server_addr, const char *name) {
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if (!part->pxe_base_code) {
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return NULL;
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}
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EFI_IP_ADDRESS *ip = parse_ip_addr(part, server_addr);
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uint64_t file_size;
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EFI_STATUS status;
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status = part->pxe_base_code->Mtftp(
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part->pxe_base_code,
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EFI_PXE_BASE_CODE_TFTP_GET_FILE_SIZE,
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NULL,
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false,
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&file_size,
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NULL,
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ip,
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(uint8_t *)name,
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NULL,
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false);
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if (status) {
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return NULL;
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}
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struct file_handle *handle = ext_mem_alloc(sizeof(struct file_handle));
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handle->size = file_size;
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handle->is_memfile = true;
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handle->pxe = true;
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handle->pxe_ip = *(uint32_t *)&ip;
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handle->pxe_port = 69;
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size_t name_len = strlen(name);
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handle->path = ext_mem_alloc(1 + name_len + 1);
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handle->path[0] = '/';
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memcpy(&handle->path[1], name, name_len);
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handle->path_len = 1 + name_len + 1;
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handle->fd = ext_mem_alloc(handle->size);
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status = part->pxe_base_code->Mtftp(
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part->pxe_base_code,
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EFI_PXE_BASE_CODE_TFTP_READ_FILE,
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handle->fd,
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false,
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&file_size,
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NULL,
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ip,
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(uint8_t *)name,
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NULL,
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false);
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if (status) {
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return NULL;
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}
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return handle;
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}
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#endif
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