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9213dd13bc
Author | SHA1 | Date |
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Bananymous | 9213dd13bc | |
Bananymous | 4273f43be1 | |
Bananymous | 139bb5c2a5 | |
Bananymous | 95e861bcdd |
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@ -1,6 +1,7 @@
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#pragma once
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#include <BAN/Assert.h>
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#include <BAN/PlacementNew.h>
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#include <stdint.h>
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#include <stddef.h>
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@ -2,7 +2,7 @@
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#include <BAN/Errors.h>
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#include <BAN/Move.h>
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#include <BAN/New.h>
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#include <BAN/PlacementNew.h>
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namespace BAN
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{
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@ -3,6 +3,7 @@
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#include <BAN/Errors.h>
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#include <BAN/Move.h>
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#include <BAN/New.h>
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#include <BAN/PlacementNew.h>
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namespace BAN
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{
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@ -16,6 +16,3 @@ namespace BAN
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static constexpr void(&deallocator)(void*) = free;
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#endif
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}
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inline void* operator new(size_t, void* addr) { return addr; }
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inline void* operator new[](size_t, void* addr) { return addr; }
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@ -2,6 +2,7 @@
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#include <BAN/Assert.h>
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#include <BAN/Move.h>
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#include <BAN/PlacementNew.h>
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#include <stdint.h>
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@ -0,0 +1,4 @@
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#pragma once
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inline void* operator new(size_t, void* addr) { return addr; }
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inline void* operator new[](size_t, void* addr) { return addr; }
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@ -5,6 +5,7 @@
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#include <BAN/Math.h>
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#include <BAN/Move.h>
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#include <BAN/New.h>
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#include <BAN/PlacementNew.h>
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namespace BAN
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{
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@ -3,7 +3,7 @@
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#include <BAN/Assert.h>
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#include <BAN/Math.h>
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#include <BAN/Move.h>
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#include <BAN/New.h>
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#include <BAN/PlacementNew.h>
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#include <string.h>
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@ -5,6 +5,7 @@
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#include <BAN/Math.h>
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#include <BAN/Move.h>
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#include <BAN/New.h>
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#include <BAN/PlacementNew.h>
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#include <BAN/Span.h>
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namespace BAN
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@ -19,11 +19,11 @@ SECTIONS
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g_userspace_start = .;
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*(.userspace)
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g_userspace_end = .;
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g_kernel_execute_end = .;
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}
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.rodata ALIGN(4K) : AT(ADDR(.rodata) - KERNEL_OFFSET)
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{
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*(.rodata.*)
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g_kernel_execute_end = .;
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}
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.data ALIGN(4K) : AT(ADDR(.data) - KERNEL_OFFSET)
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{
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@ -35,9 +35,8 @@ namespace Kernel
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bool is_locked() const;
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private:
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BAN::Atomic<pid_t> m_locker = -1;
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BAN::Atomic<uint32_t> m_lock_depth = 0;
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SpinLock m_lock;
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BAN::Atomic<pid_t> m_locker = -1;
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BAN::Atomic<uint32_t> m_lock_depth = 0;
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};
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class RecursivePrioritySpinLock
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@ -54,10 +53,9 @@ namespace Kernel
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uint32_t lock_depth() const { return m_lock_depth; }
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private:
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pid_t m_locker = -1;
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uint32_t m_queue_length = 0;
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uint32_t m_lock_depth = 0;
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SpinLock m_lock;
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BAN::Atomic<pid_t> m_locker = -1;
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BAN::Atomic<uint32_t> m_lock_depth = 0;
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BAN::Atomic<uint32_t> m_queue_length = 0;
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};
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}
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@ -25,40 +25,21 @@ namespace Kernel
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void RecursiveSpinLock::lock()
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{
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pid_t tid = Scheduler::current_tid();
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while (true)
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if (m_locker != tid)
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{
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m_lock.lock();
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if (m_locker == tid)
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{
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m_lock_depth++;
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break;
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}
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if (m_locker == -1)
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{
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m_locker = tid;
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m_lock_depth = 1;
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break;
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}
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m_lock.unlock();
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while (!m_locker.compare_exchange(-1, tid))
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Scheduler::get().reschedule();
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ASSERT(m_lock_depth == 0);
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}
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m_lock.unlock();
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m_lock_depth++;
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}
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void RecursiveSpinLock::unlock()
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{
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m_lock.lock();
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ASSERT(m_lock_depth > 0);
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ASSERT(m_locker == Scheduler::current_tid());
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m_lock_depth--;
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if (m_lock_depth == 0)
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if (--m_lock_depth == 0)
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m_locker = -1;
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m_lock.unlock();
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}
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bool RecursiveSpinLock::is_locked() const
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@ -71,38 +52,20 @@ namespace Kernel
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pid_t tid = Scheduler::current_tid();
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bool has_priority = !Thread::current().is_userspace();
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if (has_priority)
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{
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m_lock.lock();
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m_queue_length++;
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m_lock.unlock();
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}
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while (true)
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if (m_locker != tid)
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{
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m_lock.lock();
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if (m_locker == tid)
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{
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m_lock_depth++;
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break;
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}
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if (m_locker == -1 && (has_priority || m_queue_length == 0))
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{
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m_locker = tid;
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m_lock_depth = 1;
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break;
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}
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m_lock.unlock();
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while (!((has_priority || m_queue_length == 0) && m_locker.compare_exchange(-1, tid)))
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Scheduler::get().reschedule();
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ASSERT(m_lock_depth == 0);
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}
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m_lock.unlock();
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m_lock_depth++;
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}
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void RecursivePrioritySpinLock::unlock()
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{
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m_lock.lock();
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ASSERT(m_lock_depth > 0);
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ASSERT(m_locker == Scheduler::current_tid());
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@ -110,12 +73,8 @@ namespace Kernel
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if (has_priority)
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m_queue_length--;
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m_lock_depth--;
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if (m_lock_depth == 0)
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if (--m_lock_depth == 0)
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m_locker = -1;
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m_lock.unlock();
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}
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bool RecursivePrioritySpinLock::is_locked() const
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@ -1,5 +1,6 @@
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#include <ctype.h>
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#include <fcntl.h>
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#include <inttypes.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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@ -7,35 +8,91 @@
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#define CURRENT_NS() ({ timespec ts; clock_gettime(CLOCK_MONOTONIC, &ts); ts.tv_sec * 1'000'000'000 + ts.tv_nsec; })
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int parse_int(const char* val)
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uint64_t parse_sized_u64(const char* val)
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{
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int result = 0;
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for (const char* ptr = val; *ptr; ptr++)
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{
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if (!isdigit(*ptr))
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{
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fprintf(stderr, "invalid number: %s\n", val);
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exit(1);
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}
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uint64_t result = 0;
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const char* ptr = val;
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for (; *ptr && isdigit(*ptr); ptr++)
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result = (result * 10) + (*ptr - '0');
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switch (*ptr)
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{
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case 'E': result *= 1024; // fall through
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case 'P': result *= 1024; // fall through
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case 'T': result *= 1024; // fall through
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case 'G': result *= 1024; // fall through
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case 'M': result *= 1024; // fall through
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case 'K': case 'k': result *= 1024; ptr++; break;
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}
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if (*ptr != '\0')
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{
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fprintf(stderr, "invalid number: %s\n", val);
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exit(1);
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}
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return result;
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}
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void print_time(uint64_t start_ns, uint64_t end_ns, size_t transfered)
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void print_value_with_unit(uint64_t value_x10, unsigned base, const char* units[])
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{
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unsigned index = 0;
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while (value_x10 / 10 >= base)
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{
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index++;
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value_x10 /= base;
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}
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if (value_x10 < 100)
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printf("%u.%u %s", (unsigned)value_x10 / 10, (unsigned)value_x10 % 10, units[index]);
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else
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printf("%u %s", (unsigned)value_x10 / 10, units[index]);
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}
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void print_time(uint64_t start_ns, uint64_t end_ns, uint64_t transfered, bool last = false)
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{
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static bool first = true;
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uint64_t duration_ns = end_ns - start_ns;
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printf("%s%zu bytes copied, %d.%09d s\e[K\n", (first ? "" : "\e[F"), transfered, (int)(duration_ns / 1'000'000'000), (int)(duration_ns % 1'000'000'000));
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if (!first)
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printf("\e[F");
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first = false;
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printf("%" PRIu64 " bytes", transfered);
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if (transfered >= 1000)
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{
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printf(" (");
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{
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const char* units[] { "", "kB", "MB", "GB", "TB", "PB", "EB", "ZB", "YB", "RB", "QB" };
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print_value_with_unit(transfered * 10, 1000, units);
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}
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if (transfered >= 1024)
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{
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printf(", ");
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const char* units[] { "", "KiB", "MiB", "GiB", "TiB", "PiB", "EiB", "ZiB", "YiB", "RiB", "QiB" };
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print_value_with_unit(transfered * 10, 1024, units);
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}
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printf(")");
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}
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printf(" copied");
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double duration_s = (end_ns - start_ns) / 1e9;
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if (last)
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printf(", %f s, ", duration_s);
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else
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printf(", %u s, ", (unsigned)duration_s);
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const char* units[] { "B/s", "kB/s", "MB/s", "GB/s", "TB/s", "PB/s", "EB/s", "ZB/s", "YB/s", "RB/s", "QB/s" };
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print_value_with_unit(10 * transfered / duration_s, 1000, units);
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printf("\e[K\n");
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}
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int main(int argc, char** argv)
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{
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const char* input = nullptr;
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const char* output = nullptr;
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int bs = 512;
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int count = -1;
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uint64_t bs = 512;
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uint64_t count = ~(uint64_t)0;
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bool print_progress = false;
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for (int i = 1; i < argc; i++)
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@ -45,9 +102,9 @@ int main(int argc, char** argv)
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else if (strncmp(argv[i], "of=", 3) == 0)
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output = argv[i] + 3;
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else if (strncmp(argv[i], "bs=", 3) == 0)
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bs = parse_int(argv[i] + 3);
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bs = parse_sized_u64(argv[i] + 3);
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else if (strncmp(argv[i], "count=", 6) == 0)
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count = parse_int(argv[i] + 6);
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count = parse_sized_u64(argv[i] + 6);
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else if (strcmp(argv[i], "status=progress") == 0)
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print_progress = true;
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else
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@ -86,12 +143,11 @@ int main(int argc, char** argv)
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return 1;
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}
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size_t total_transfered = 0;
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uint64_t total_transfered = 0;
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uint64_t start_ns = CURRENT_NS();
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uint64_t last_print_ns = 0;
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uint64_t last_print_s = 0;
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for (int i = 0; i != count; i++)
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for (uint64_t i = 0; i != count; i++)
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{
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ssize_t nread = read(ifd, buffer, bs);
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if (nread == -1)
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@ -109,21 +165,21 @@ int main(int argc, char** argv)
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total_transfered += nwrite;
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if (nread < bs || nwrite < bs)
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if ((size_t)nread < bs || (size_t)nwrite < bs)
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break;
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if (print_progress)
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{
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uint64_t current_ns = CURRENT_NS();
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if (current_ns >= last_print_ns + 1'000'000'000)
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if ((current_ns - start_ns) / 1'000'000'000 > last_print_s)
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{
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print_time(start_ns, current_ns, total_transfered);
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last_print_ns = current_ns;
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last_print_s = (current_ns - start_ns) / 1'000'000'000;
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}
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}
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}
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print_time(start_ns, CURRENT_NS(), total_transfered);
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print_time(start_ns, CURRENT_NS(), total_transfered, true);
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close(ifd);
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close(ofd);
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