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197 lines
7.1 KiB
197 lines
7.1 KiB
/* ----------------------------------------------------------------------- * |
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* |
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* Copyright 2009 Erwan Velu - All Rights Reserved |
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* |
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* Permission is hereby granted, free of charge, to any person |
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* obtaining a copy of this software and associated documentation |
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* files (the "Software"), to deal in the Software without |
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* restriction, including without limitation the rights to use, |
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* copy, modify, merge, publish, distribute, sublicense, and/or |
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* sell copies of the Software, and to permit persons to whom |
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* the Software is furnished to do so, subject to the following |
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* conditions: |
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* |
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* The above copyright notice and this permission notice shall |
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* be included in all copies or substantial portions of the Software. |
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* |
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, |
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES |
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* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND |
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT |
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* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, |
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* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING |
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR |
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* OTHER DEALINGS IN THE SOFTWARE. |
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* |
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* ----------------------------------------------------------------------- |
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*/ |
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#include "hdt-menu.h" |
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/* Computing Summary menu */ |
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void compute_summarymenu(struct s_my_menu *menu, struct s_hardware *hardware) |
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{ |
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char buffer[SUBMENULEN + 1]; |
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char statbuffer[STATLEN + 1]; |
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snprintf(buffer, sizeof(buffer), " Summary (%d CPU) ", hardware->physical_cpu_count); |
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menu->menu = add_menu(buffer, -1); |
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menu->items_count = 0; |
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set_menu_pos(SUBMENU_Y, SUBMENU_X); |
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snprintf(buffer, sizeof buffer, "CPU Vendor : %s", hardware->cpu.vendor); |
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snprintf(statbuffer, sizeof statbuffer, "CPU Vendor: %s", |
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hardware->cpu.vendor); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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snprintf(buffer, sizeof buffer, "CPU Model : %s", hardware->cpu.model); |
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snprintf(statbuffer, sizeof statbuffer, "CPU Model: %s", |
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hardware->cpu.model); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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char features[255]={0}; |
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if (hardware->dmi.processor.thread_count != 0) |
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sprintf(buffer, ", %d thread", hardware->dmi.processor.thread_count); |
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else |
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buffer[0] = 0x00; |
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sprintf(features, "%d core%s, %dK L2 Cache", hardware->cpu.num_cores, |
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buffer, hardware->cpu.l2_cache_size); |
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if (hardware->cpu.flags.lm) |
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strcat(features, ", 64bit"); |
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else |
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strcat(features, ", 32bit"); |
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if (hardware->cpu.flags.smp) |
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strcat(features, ", SMP"); |
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if (hardware->cpu.flags.vmx || hardware->cpu.flags.svm) |
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strcat(features, ", HwVIRT"); |
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snprintf(buffer, sizeof buffer, "%s", features); |
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snprintf(statbuffer, sizeof statbuffer, "Features : %s", features); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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add_item("", "", OPT_SEP, "", 0); |
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if (hardware->is_dmi_valid == true) { |
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snprintf(buffer, sizeof buffer, "System Vendor : %s", |
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hardware->dmi.system.manufacturer); |
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snprintf(statbuffer, sizeof statbuffer, "System Vendor: %s", |
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hardware->dmi.system.manufacturer); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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snprintf(buffer, sizeof buffer, "System Product: %s", |
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hardware->dmi.system.product_name); |
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snprintf(statbuffer, sizeof statbuffer, |
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"System Product Name: %s", hardware->dmi.system.product_name); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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snprintf(buffer, sizeof buffer, "System Serial : %s", |
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hardware->dmi.system.serial); |
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snprintf(statbuffer, sizeof statbuffer, |
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"System Serial Number: %s", hardware->dmi.system.serial); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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add_item("", "", OPT_SEP, "", 0); |
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snprintf(buffer, sizeof buffer, "Bios Version : %s", |
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hardware->dmi.bios.version); |
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snprintf(statbuffer, sizeof statbuffer, "Bios Version: %s", |
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hardware->dmi.bios.version); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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snprintf(buffer, sizeof buffer, "Bios Release : %s", |
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hardware->dmi.bios.release_date); |
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snprintf(statbuffer, sizeof statbuffer, "Bios Release Date: %s", |
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hardware->dmi.bios.release_date); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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} |
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add_item("", "", OPT_SEP, "", 0); |
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snprintf(buffer, sizeof buffer, "Memory Size : %lu MiB (%lu KiB)", |
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(hardware->detected_memory_size + (1 << 9)) >> 10, |
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hardware->detected_memory_size); |
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snprintf(statbuffer, sizeof statbuffer, |
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"Detected Memory Size: %lu MiB (%lu KiB)", |
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(hardware->detected_memory_size + (1 << 9)) >> 10, |
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hardware->detected_memory_size); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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add_item("", "", OPT_SEP, "", 0); |
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snprintf(buffer, sizeof buffer, "Nb PCI Devices: %d", |
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hardware->nb_pci_devices); |
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snprintf(statbuffer, sizeof statbuffer, "Number of PCI Devices: %d", |
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hardware->nb_pci_devices); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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if (hardware->is_pxe_valid == true) { |
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add_item("", "", OPT_SEP, "", 0); |
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struct s_pxe *p = &hardware->pxe; |
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snprintf(buffer, sizeof buffer, "PXE MAC Address: %s", p->mac_addr); |
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snprintf(statbuffer, sizeof statbuffer, "PXE MAC Address: %s", |
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p->mac_addr); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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snprintf(buffer, sizeof buffer, "PXE IP Address : %d.%d.%d.%d", |
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p->ip_addr[0], p->ip_addr[1], p->ip_addr[2], p->ip_addr[3]); |
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snprintf(statbuffer, sizeof statbuffer, |
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"PXE IP Address: %d.%d.%d.%d", p->ip_addr[0], |
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p->ip_addr[1], p->ip_addr[2], p->ip_addr[3]); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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} |
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if (hardware->modules_pcimap_return_code != -ENOMODULESPCIMAP) { |
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add_item("", "", OPT_SEP, "", 0); |
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struct pci_device *pci_device; |
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char kernel_modules[LINUX_KERNEL_MODULE_SIZE * |
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MAX_KERNEL_MODULES_PER_PCI_DEVICE]; |
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/* |
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* For every detected pci device, grab its kernel module to compute |
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* this submenu |
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*/ |
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for_each_pci_func(pci_device, hardware->pci_domain) { |
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memset(kernel_modules, 0, sizeof kernel_modules); |
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for (int i = 0; |
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i < pci_device->dev_info->linux_kernel_module_count; i++) { |
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if (i > 0) { |
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strncat(kernel_modules, " | ", 3); |
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} |
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strncat(kernel_modules, |
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pci_device->dev_info->linux_kernel_module[i], |
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LINUX_KERNEL_MODULE_SIZE - 1); |
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} |
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/* No need to add unknown kernel modules */ |
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if (strlen(kernel_modules) > 0) { |
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snprintf(buffer, sizeof buffer, "%s (%s)", |
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kernel_modules, pci_device->dev_info->class_name); |
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snprintf(statbuffer, sizeof statbuffer, |
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"%04x:%04x %s : %s", |
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pci_device->vendor, |
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pci_device->product, |
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pci_device->dev_info->vendor_name, |
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pci_device->dev_info->product_name); |
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add_item(buffer, statbuffer, OPT_INACTIVE, NULL, 0); |
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menu->items_count++; |
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} |
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} |
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} |
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printf("MENU: Summary menu done (%d items)\n", menu->items_count); |
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}
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